xref: /spdk/test/unit/lib/bdev/crypto.c/crypto_ut.c (revision ae7b5890ef728af40bd233a5011b924c482603bf)
1 /*-
2  *   BSD LICENSE
3  *
4  *   Copyright (c) Intel Corporation.
5  *   All rights reserved.
6  *
7  *   Redistribution and use in source and binary forms, with or without
8  *   modification, are permitted provided that the following conditions
9  *   are met:
10  *
11  *     * Redistributions of source code must retain the above copyright
12  *       notice, this list of conditions and the following disclaimer.
13  *     * Redistributions in binary form must reproduce the above copyright
14  *       notice, this list of conditions and the following disclaimer in
15  *       the documentation and/or other materials provided with the
16  *       distribution.
17  *     * Neither the name of Intel Corporation nor the names of its
18  *       contributors may be used to endorse or promote products derived
19  *       from this software without specific prior written permission.
20  *
21  *   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
22  *   "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
23  *   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
24  *   A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
25  *   OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
26  *   SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
27  *   LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
28  *   DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
29  *   THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
30  *   (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
31  *   OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
32  */
33 
34 #include "spdk_cunit.h"
35 
36 #include "common/lib/test_env.c"
37 #include "spdk_internal/mock.h"
38 #include "unit/lib/json_mock.c"
39 
40 #include <rte_crypto.h>
41 #include <rte_cryptodev.h>
42 
43 #define MAX_TEST_BLOCKS 8192
44 struct rte_crypto_op *g_test_crypto_ops[MAX_TEST_BLOCKS];
45 struct rte_crypto_op *g_test_dev_full_ops[MAX_TEST_BLOCKS];
46 
47 uint16_t g_dequeue_mock;
48 uint16_t g_enqueue_mock;
49 unsigned ut_rte_crypto_op_bulk_alloc;
50 int ut_rte_crypto_op_attach_sym_session = 0;
51 int ut_rte_cryptodev_info_get = 0;
52 bool ut_rte_cryptodev_info_get_mocked = false;
53 
54 /* Those functions are defined as static inline in DPDK, so we can't
55  * mock them straight away. We use defines to redirect them into
56  * our custom functions.
57  */
58 #define rte_cryptodev_enqueue_burst mock_rte_cryptodev_enqueue_burst
59 static inline uint16_t
60 mock_rte_cryptodev_enqueue_burst(uint8_t dev_id, uint16_t qp_id,
61 				 struct rte_crypto_op **ops, uint16_t nb_ops)
62 {
63 	int i;
64 
65 	CU_ASSERT(nb_ops > 0);
66 
67 	for (i = 0; i < nb_ops; i++) {
68 		/* Use this empty (til now) array of pointers to store
69 		 * enqueued operations for assertion in dev_full test.
70 		 */
71 		g_test_dev_full_ops[i] = *ops++;
72 	}
73 
74 	return g_enqueue_mock;
75 }
76 
77 /* This is pretty ugly but in order to complete an IO via the
78  * poller in the submit path, we need to first call to this func
79  * to return the dequeued value and also decrement it.  On the subsequent
80  * call it needs to return 0 to indicate to the caller that there are
81  * no more IOs to drain.
82  */
83 int g_test_overflow = 0;
84 #define rte_cryptodev_dequeue_burst mock_rte_cryptodev_dequeue_burst
85 static inline uint16_t
86 mock_rte_cryptodev_dequeue_burst(uint8_t dev_id, uint16_t qp_id,
87 				 struct rte_crypto_op **ops, uint16_t nb_ops)
88 {
89 	CU_ASSERT(nb_ops > 0);
90 
91 	/* A crypto device can be full on enqueue, the driver is designed to drain
92 	 * the device at the time by calling the poller until it's empty, then
93 	 * submitting the remaining crypto ops.
94 	 */
95 	if (g_test_overflow) {
96 		if (g_dequeue_mock == 0) {
97 			return 0;
98 		}
99 		*ops = g_test_crypto_ops[g_enqueue_mock];
100 		(*ops)->status = RTE_CRYPTO_OP_STATUS_SUCCESS;
101 		g_dequeue_mock -= 1;
102 	}
103 	return (g_dequeue_mock + 1);
104 }
105 
106 /* Instead of allocating real memory, assign the allocations to our
107  * test array for assertion in tests.
108  */
109 #define rte_crypto_op_bulk_alloc mock_rte_crypto_op_bulk_alloc
110 static inline unsigned
111 mock_rte_crypto_op_bulk_alloc(struct rte_mempool *mempool,
112 			      enum rte_crypto_op_type type,
113 			      struct rte_crypto_op **ops, uint16_t nb_ops)
114 {
115 	int i;
116 
117 	for (i = 0; i < nb_ops; i++) {
118 		*ops++ = g_test_crypto_ops[i];
119 	}
120 	return ut_rte_crypto_op_bulk_alloc;
121 }
122 
123 #define rte_mempool_put_bulk mock_rte_mempool_put_bulk
124 static __rte_always_inline void
125 mock_rte_mempool_put_bulk(struct rte_mempool *mp, void *const *obj_table,
126 			  unsigned int n)
127 {
128 	return;
129 }
130 
131 #define rte_crypto_op_attach_sym_session mock_rte_crypto_op_attach_sym_session
132 static inline int
133 mock_rte_crypto_op_attach_sym_session(struct rte_crypto_op *op,
134 				      struct rte_cryptodev_sym_session *sess)
135 {
136 	return ut_rte_crypto_op_attach_sym_session;
137 }
138 
139 #include "bdev/crypto/vbdev_crypto.c"
140 
141 /* SPDK stubs */
142 DEFINE_STUB(spdk_bdev_queue_io_wait, int, (struct spdk_bdev *bdev, struct spdk_io_channel *ch,
143 		struct spdk_bdev_io_wait_entry *entry), 0);
144 DEFINE_STUB(spdk_conf_find_section, struct spdk_conf_section *,
145 	    (struct spdk_conf *cp, const char *name), NULL);
146 DEFINE_STUB(spdk_conf_section_get_nval, char *,
147 	    (struct spdk_conf_section *sp, const char *key, int idx), NULL);
148 DEFINE_STUB(spdk_conf_section_get_nmval, char *,
149 	    (struct spdk_conf_section *sp, const char *key, int idx1, int idx2), NULL);
150 DEFINE_STUB_V(spdk_bdev_module_list_add, (struct spdk_bdev_module *bdev_module));
151 DEFINE_STUB_V(spdk_bdev_free_io, (struct spdk_bdev_io *g_bdev_io));
152 DEFINE_STUB(spdk_bdev_io_type_supported, bool, (struct spdk_bdev *bdev,
153 		enum spdk_bdev_io_type io_type), 0);
154 DEFINE_STUB_V(spdk_bdev_module_release_bdev, (struct spdk_bdev *bdev));
155 DEFINE_STUB_V(spdk_bdev_close, (struct spdk_bdev_desc *desc));
156 DEFINE_STUB(spdk_bdev_get_name, const char *, (const struct spdk_bdev *bdev), 0);
157 DEFINE_STUB(spdk_bdev_get_buf_align, size_t, (const struct spdk_bdev *bdev), 0);
158 DEFINE_STUB(spdk_bdev_get_io_channel, struct spdk_io_channel *, (struct spdk_bdev_desc *desc), 0);
159 DEFINE_STUB_V(spdk_bdev_unregister, (struct spdk_bdev *bdev, spdk_bdev_unregister_cb cb_fn,
160 				     void *cb_arg));
161 DEFINE_STUB(spdk_bdev_open, int, (struct spdk_bdev *bdev, bool write,
162 				  spdk_bdev_remove_cb_t remove_cb,
163 				  void *remove_ctx, struct spdk_bdev_desc **_desc), 0);
164 DEFINE_STUB(spdk_bdev_module_claim_bdev, int, (struct spdk_bdev *bdev, struct spdk_bdev_desc *desc,
165 		struct spdk_bdev_module *module), 0);
166 DEFINE_STUB_V(spdk_bdev_module_examine_done, (struct spdk_bdev_module *module));
167 DEFINE_STUB(spdk_bdev_register, int, (struct spdk_bdev *vbdev), 0);
168 
169 /* DPDK stubs */
170 DEFINE_STUB(rte_cryptodev_count, uint8_t, (void), 0);
171 DEFINE_STUB(rte_eal_get_configuration, struct rte_config *, (void), NULL);
172 DEFINE_STUB_V(rte_mempool_free, (struct rte_mempool *mp));
173 DEFINE_STUB(rte_mempool_create, struct rte_mempool *, (const char *name, unsigned n,
174 		unsigned elt_size,
175 		unsigned cache_size, unsigned private_data_size,
176 		rte_mempool_ctor_t *mp_init, void *mp_init_arg,
177 		rte_mempool_obj_cb_t *obj_init, void *obj_init_arg,
178 		int socket_id, unsigned flags), (struct rte_mempool *)1);
179 DEFINE_STUB(rte_socket_id, unsigned, (void), 0);
180 DEFINE_STUB(rte_crypto_op_pool_create, struct rte_mempool *,
181 	    (const char *name, enum rte_crypto_op_type type, unsigned nb_elts,
182 	     unsigned cache_size, uint16_t priv_size, int socket_id), (struct rte_mempool *)1);
183 DEFINE_STUB(rte_cryptodev_device_count_by_driver, uint8_t, (uint8_t driver_id), 0);
184 DEFINE_STUB(rte_cryptodev_configure, int, (uint8_t dev_id, struct rte_cryptodev_config *config), 0);
185 #if RTE_VERSION >= RTE_VERSION_NUM(19, 02, 0, 0)
186 DEFINE_STUB(rte_cryptodev_queue_pair_setup, int, (uint8_t dev_id, uint16_t queue_pair_id,
187 		const struct rte_cryptodev_qp_conf *qp_conf, int socket_id), 0);
188 DEFINE_STUB(rte_cryptodev_sym_session_pool_create, struct rte_mempool *, (const char *name,
189 		uint32_t nb_elts,
190 		uint32_t elt_size, uint32_t cache_size, uint16_t priv_size,
191 		int socket_id), (struct rte_mempool *)1);
192 #else
193 DEFINE_STUB(rte_cryptodev_queue_pair_setup, int, (uint8_t dev_id, uint16_t queue_pair_id,
194 		const struct rte_cryptodev_qp_conf *qp_conf,
195 		int socket_id, struct rte_mempool *session_pool), 0);
196 #endif
197 DEFINE_STUB(rte_cryptodev_start, int, (uint8_t dev_id), 0);
198 DEFINE_STUB_V(rte_cryptodev_stop, (uint8_t dev_id));
199 DEFINE_STUB(rte_cryptodev_sym_session_create, struct rte_cryptodev_sym_session *,
200 	    (struct rte_mempool *mempool), (struct rte_cryptodev_sym_session *)1);
201 DEFINE_STUB(rte_cryptodev_sym_session_init, int, (uint8_t dev_id,
202 		struct rte_cryptodev_sym_session *sess,
203 		struct rte_crypto_sym_xform *xforms, struct rte_mempool *mempool), 0);
204 DEFINE_STUB(rte_vdev_init, int, (const char *name, const char *args), 0);
205 DEFINE_STUB(rte_cryptodev_sym_session_free, int, (struct rte_cryptodev_sym_session *sess), 0);
206 DEFINE_STUB(rte_vdev_uninit, int, (const char *name), 0);
207 
208 struct rte_cryptodev *rte_cryptodevs;
209 
210 /* global vars and setup/cleanup functions used for all test functions */
211 struct spdk_bdev_io *g_bdev_io;
212 struct crypto_bdev_io *g_io_ctx;
213 struct crypto_io_channel *g_crypto_ch;
214 struct spdk_io_channel *g_io_ch;
215 struct vbdev_dev g_device;
216 struct vbdev_crypto g_crypto_bdev;
217 struct rte_config *g_test_config;
218 struct device_qp g_dev_qp;
219 
220 void
221 rte_cryptodev_info_get(uint8_t dev_id, struct rte_cryptodev_info *dev_info)
222 {
223 	dev_info->max_nb_queue_pairs = ut_rte_cryptodev_info_get;
224 }
225 
226 unsigned int
227 rte_cryptodev_sym_get_private_session_size(uint8_t dev_id)
228 {
229 	return (unsigned int)dev_id;
230 }
231 
232 void
233 spdk_bdev_io_get_buf(struct spdk_bdev_io *bdev_io, spdk_bdev_io_get_buf_cb cb, uint64_t len)
234 {
235 	cb(g_io_ch, g_bdev_io, true);
236 }
237 
238 /* Mock these functions to call the callback and then return the value we require */
239 int ut_spdk_bdev_readv_blocks = 0;
240 bool ut_spdk_bdev_readv_blocks_mocked = false;
241 int
242 spdk_bdev_readv_blocks(struct spdk_bdev_desc *desc, struct spdk_io_channel *ch,
243 		       struct iovec *iov, int iovcnt,
244 		       uint64_t offset_blocks, uint64_t num_blocks,
245 		       spdk_bdev_io_completion_cb cb, void *cb_arg)
246 {
247 	cb(g_bdev_io, !ut_spdk_bdev_readv_blocks, cb_arg);
248 	return ut_spdk_bdev_readv_blocks;
249 }
250 
251 int ut_spdk_bdev_writev_blocks = 0;
252 bool ut_spdk_bdev_writev_blocks_mocked = false;
253 int
254 spdk_bdev_writev_blocks(struct spdk_bdev_desc *desc, struct spdk_io_channel *ch,
255 			struct iovec *iov, int iovcnt,
256 			uint64_t offset_blocks, uint64_t num_blocks,
257 			spdk_bdev_io_completion_cb cb, void *cb_arg)
258 {
259 	cb(g_bdev_io, !ut_spdk_bdev_writev_blocks, cb_arg);
260 	return ut_spdk_bdev_writev_blocks;
261 }
262 
263 int ut_spdk_bdev_unmap_blocks = 0;
264 bool ut_spdk_bdev_unmap_blocks_mocked = false;
265 int
266 spdk_bdev_unmap_blocks(struct spdk_bdev_desc *desc, struct spdk_io_channel *ch,
267 		       uint64_t offset_blocks, uint64_t num_blocks,
268 		       spdk_bdev_io_completion_cb cb, void *cb_arg)
269 {
270 	cb(g_bdev_io, !ut_spdk_bdev_unmap_blocks, cb_arg);
271 	return ut_spdk_bdev_unmap_blocks;
272 }
273 
274 int ut_spdk_bdev_flush_blocks = 0;
275 bool ut_spdk_bdev_flush_blocks_mocked = false;
276 int
277 spdk_bdev_flush_blocks(struct spdk_bdev_desc *desc, struct spdk_io_channel *ch,
278 		       uint64_t offset_blocks, uint64_t num_blocks, spdk_bdev_io_completion_cb cb,
279 		       void *cb_arg)
280 {
281 	cb(g_bdev_io, !ut_spdk_bdev_flush_blocks, cb_arg);
282 	return ut_spdk_bdev_flush_blocks;
283 }
284 
285 int ut_spdk_bdev_reset = 0;
286 bool ut_spdk_bdev_reset_mocked = false;
287 int
288 spdk_bdev_reset(struct spdk_bdev_desc *desc, struct spdk_io_channel *ch,
289 		spdk_bdev_io_completion_cb cb, void *cb_arg)
290 {
291 	cb(g_bdev_io, !ut_spdk_bdev_reset, cb_arg);
292 	return ut_spdk_bdev_reset;
293 }
294 
295 bool g_completion_called = false;
296 void
297 spdk_bdev_io_complete(struct spdk_bdev_io *bdev_io, enum spdk_bdev_io_status status)
298 {
299 	bdev_io->internal.status = status;
300 	g_completion_called = true;
301 }
302 
303 /* Global setup for all tests that share a bunch of preparation... */
304 static int
305 test_setup(void)
306 {
307 	int i, rc;
308 
309 	/* Prepare essential variables for test routines */
310 	g_bdev_io = calloc(1, sizeof(struct spdk_bdev_io) + sizeof(struct crypto_bdev_io));
311 	g_bdev_io->u.bdev.iovs = calloc(1, sizeof(struct iovec) * 128);
312 	g_bdev_io->bdev = &g_crypto_bdev.crypto_bdev;
313 	g_io_ch = calloc(1, sizeof(struct spdk_io_channel) + sizeof(struct crypto_io_channel));
314 	g_crypto_ch = (struct crypto_io_channel *)((uint8_t *)g_io_ch + sizeof(struct spdk_io_channel));
315 	g_io_ctx = (struct crypto_bdev_io *)g_bdev_io->driver_ctx;
316 	memset(&g_device, 0, sizeof(struct vbdev_dev));
317 	memset(&g_crypto_bdev, 0, sizeof(struct vbdev_crypto));
318 	g_dev_qp.device = &g_device;
319 	g_io_ctx->crypto_ch = g_crypto_ch;
320 	g_io_ctx->crypto_bdev = &g_crypto_bdev;
321 	g_crypto_ch->device_qp = &g_dev_qp;
322 	g_test_config = calloc(1, sizeof(struct rte_config));
323 	g_test_config->lcore_count = 1;
324 	TAILQ_INIT(&g_crypto_ch->pending_cry_ios);
325 
326 	/* Allocate a real mbuf pool so we can test error paths */
327 	g_mbuf_mp = spdk_mempool_create("mbuf_mp", NUM_MBUFS, sizeof(struct rte_mbuf),
328 					SPDK_MEMPOOL_DEFAULT_CACHE_SIZE,
329 					SPDK_ENV_SOCKET_ID_ANY);
330 
331 	/* Instead of allocating real rte mempools for these, it's easier and provides the
332 	 * same coverage just calloc them here.
333 	 */
334 	for (i = 0; i < MAX_TEST_BLOCKS; i++) {
335 		rc = posix_memalign((void **)&g_test_crypto_ops[i], 64,
336 				    sizeof(struct rte_crypto_op) + sizeof(struct rte_crypto_sym_op) +
337 				    AES_CBC_IV_LENGTH);
338 		if (rc != 0) {
339 			assert(false);
340 		}
341 		memset(g_test_crypto_ops[i], 0, sizeof(struct rte_crypto_op) +
342 		       sizeof(struct rte_crypto_sym_op));
343 	}
344 	return 0;
345 }
346 
347 /* Global teardown for all tests */
348 static int
349 test_cleanup(void)
350 {
351 	int i;
352 
353 	free(g_test_config);
354 	spdk_mempool_free(g_mbuf_mp);
355 	for (i = 0; i < MAX_TEST_BLOCKS; i++) {
356 		free(g_test_crypto_ops[i]);
357 	}
358 	free(g_bdev_io->u.bdev.iovs);
359 	free(g_bdev_io);
360 	free(g_io_ch);
361 	return 0;
362 }
363 
364 static void
365 test_error_paths(void)
366 {
367 	/* Single element block size write, just to test error paths
368 	 * in vbdev_crypto_submit_request().
369 	 */
370 	g_bdev_io->internal.status = SPDK_BDEV_IO_STATUS_SUCCESS;
371 	g_bdev_io->u.bdev.iovcnt = 1;
372 	g_bdev_io->u.bdev.num_blocks = 1;
373 	g_bdev_io->u.bdev.iovs[0].iov_len = 512;
374 	g_crypto_bdev.crypto_bdev.blocklen = 512;
375 	g_bdev_io->type = SPDK_BDEV_IO_TYPE_WRITE;
376 	g_enqueue_mock = g_dequeue_mock = ut_rte_crypto_op_bulk_alloc = 1;
377 
378 	/* test failure of spdk_mempool_get_bulk(), will result in success becuase it
379 	 * will get queued.
380 	 */
381 	g_bdev_io->internal.status = SPDK_BDEV_IO_STATUS_SUCCESS;
382 	MOCK_SET(spdk_mempool_get, NULL);
383 	vbdev_crypto_submit_request(g_io_ch, g_bdev_io);
384 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_SUCCESS);
385 
386 	/* same thing but switch to reads to test error path in _crypto_complete_io() */
387 	g_bdev_io->type = SPDK_BDEV_IO_TYPE_READ;
388 	g_bdev_io->internal.status = SPDK_BDEV_IO_STATUS_SUCCESS;
389 	TAILQ_INSERT_TAIL(&g_crypto_ch->pending_cry_ios, g_bdev_io, module_link);
390 	vbdev_crypto_submit_request(g_io_ch, g_bdev_io);
391 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_FAILED);
392 	/* Now with the read_blocks failing */
393 	g_bdev_io->type = SPDK_BDEV_IO_TYPE_READ;
394 	g_bdev_io->internal.status = SPDK_BDEV_IO_STATUS_SUCCESS;
395 	MOCK_SET(spdk_bdev_readv_blocks, -1);
396 	vbdev_crypto_submit_request(g_io_ch, g_bdev_io);
397 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_FAILED);
398 	MOCK_SET(spdk_bdev_readv_blocks, 0);
399 	MOCK_CLEAR(spdk_mempool_get);
400 
401 	/* test failure of rte_crypto_op_bulk_alloc() */
402 	g_bdev_io->internal.status = SPDK_BDEV_IO_STATUS_SUCCESS;
403 	ut_rte_crypto_op_bulk_alloc = 0;
404 	vbdev_crypto_submit_request(g_io_ch, g_bdev_io);
405 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_FAILED);
406 	ut_rte_crypto_op_bulk_alloc = 1;
407 
408 	/* test failure of rte_crypto_op_attach_sym_session() */
409 	g_bdev_io->internal.status = SPDK_BDEV_IO_STATUS_SUCCESS;
410 	ut_rte_crypto_op_attach_sym_session = -1;
411 	vbdev_crypto_submit_request(g_io_ch, g_bdev_io);
412 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_FAILED);
413 	ut_rte_crypto_op_attach_sym_session = 0;
414 }
415 
416 static void
417 test_simple_write(void)
418 {
419 	/* Single element block size write */
420 	g_bdev_io->internal.status = SPDK_BDEV_IO_STATUS_SUCCESS;
421 	g_bdev_io->u.bdev.iovcnt = 1;
422 	g_bdev_io->u.bdev.num_blocks = 1;
423 	g_bdev_io->u.bdev.offset_blocks = 0;
424 	g_bdev_io->u.bdev.iovs[0].iov_len = 512;
425 	g_bdev_io->u.bdev.iovs[0].iov_base = &test_simple_write;
426 	g_crypto_bdev.crypto_bdev.blocklen = 512;
427 	g_bdev_io->type = SPDK_BDEV_IO_TYPE_WRITE;
428 	g_enqueue_mock = g_dequeue_mock = ut_rte_crypto_op_bulk_alloc = 1;
429 
430 	vbdev_crypto_submit_request(g_io_ch, g_bdev_io);
431 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_SUCCESS);
432 	CU_ASSERT(g_io_ctx->cryop_cnt_remaining == 1);
433 	CU_ASSERT(g_io_ctx->cry_iov.iov_len == 512);
434 	CU_ASSERT(g_io_ctx->cry_iov.iov_base != NULL);
435 	CU_ASSERT(g_io_ctx->cry_offset_blocks == 0);
436 	CU_ASSERT(g_io_ctx->cry_num_blocks == 1);
437 	CU_ASSERT(g_test_crypto_ops[0]->sym->m_src->buf_addr == &test_simple_write);
438 	CU_ASSERT(g_test_crypto_ops[0]->sym->m_src->data_len == 512);
439 	CU_ASSERT(g_test_crypto_ops[0]->sym->m_src->next == NULL);
440 	CU_ASSERT(g_test_crypto_ops[0]->sym->cipher.data.length == 512);
441 	CU_ASSERT(g_test_crypto_ops[0]->sym->cipher.data.offset == 0);
442 	CU_ASSERT(g_test_crypto_ops[0]->sym->m_src->userdata == g_bdev_io);
443 	CU_ASSERT(g_test_crypto_ops[0]->sym->m_dst->buf_addr != NULL);
444 	CU_ASSERT(g_test_crypto_ops[0]->sym->m_dst->data_len == 512);
445 
446 	spdk_free(g_io_ctx->cry_iov.iov_base);
447 	spdk_mempool_put(g_mbuf_mp, g_test_crypto_ops[0]->sym->m_src);
448 	spdk_mempool_put(g_mbuf_mp, g_test_crypto_ops[0]->sym->m_dst);
449 }
450 
451 static void
452 test_simple_read(void)
453 {
454 	/* Single element block size read */
455 	g_bdev_io->internal.status = SPDK_BDEV_IO_STATUS_SUCCESS;
456 	g_bdev_io->u.bdev.iovcnt = 1;
457 	g_bdev_io->u.bdev.num_blocks = 1;
458 	g_bdev_io->u.bdev.iovs[0].iov_len = 512;
459 	g_bdev_io->u.bdev.iovs[0].iov_base = &test_simple_read;
460 	g_crypto_bdev.crypto_bdev.blocklen = 512;
461 	g_bdev_io->type = SPDK_BDEV_IO_TYPE_READ;
462 	g_enqueue_mock = g_dequeue_mock = ut_rte_crypto_op_bulk_alloc = 1;
463 
464 	vbdev_crypto_submit_request(g_io_ch, g_bdev_io);
465 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_SUCCESS);
466 	CU_ASSERT(g_io_ctx->cryop_cnt_remaining == 1);
467 	CU_ASSERT(g_test_crypto_ops[0]->sym->m_src->buf_addr == &test_simple_read);
468 	CU_ASSERT(g_test_crypto_ops[0]->sym->m_src->data_len == 512);
469 	CU_ASSERT(g_test_crypto_ops[0]->sym->m_src->next == NULL);
470 	CU_ASSERT(g_test_crypto_ops[0]->sym->cipher.data.length == 512);
471 	CU_ASSERT(g_test_crypto_ops[0]->sym->cipher.data.offset == 0);
472 	CU_ASSERT(g_test_crypto_ops[0]->sym->m_src->userdata == g_bdev_io);
473 	CU_ASSERT(g_test_crypto_ops[0]->sym->m_dst == NULL);
474 
475 	spdk_mempool_put(g_mbuf_mp, g_test_crypto_ops[0]->sym->m_src);
476 }
477 
478 static void
479 test_large_rw(void)
480 {
481 	unsigned block_len = 512;
482 	unsigned num_blocks = CRYPTO_MAX_IO / block_len;
483 	unsigned io_len = block_len * num_blocks;
484 	unsigned i;
485 
486 	/* Multi block size read, multi-element */
487 	g_bdev_io->internal.status = SPDK_BDEV_IO_STATUS_SUCCESS;
488 	g_bdev_io->u.bdev.iovcnt = 1;
489 	g_bdev_io->u.bdev.num_blocks = num_blocks;
490 	g_bdev_io->u.bdev.iovs[0].iov_len = io_len;
491 	g_bdev_io->u.bdev.iovs[0].iov_base = &test_large_rw;
492 	g_crypto_bdev.crypto_bdev.blocklen = block_len;
493 	g_bdev_io->type = SPDK_BDEV_IO_TYPE_READ;
494 	g_enqueue_mock = g_dequeue_mock = ut_rte_crypto_op_bulk_alloc = num_blocks;
495 
496 	vbdev_crypto_submit_request(g_io_ch, g_bdev_io);
497 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_SUCCESS);
498 	CU_ASSERT(g_io_ctx->cryop_cnt_remaining == (int)num_blocks);
499 
500 	for (i = 0; i < num_blocks; i++) {
501 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_src->buf_addr == &test_large_rw + (i * block_len));
502 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_src->data_len == block_len);
503 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_src->next == NULL);
504 		CU_ASSERT(g_test_crypto_ops[i]->sym->cipher.data.length == block_len);
505 		CU_ASSERT(g_test_crypto_ops[i]->sym->cipher.data.offset == 0);
506 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_src->userdata == g_bdev_io);
507 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_dst == NULL);
508 		spdk_mempool_put(g_mbuf_mp, g_test_crypto_ops[i]->sym->m_src);
509 	}
510 
511 	/* Multi block size write, multi-element */
512 	g_bdev_io->internal.status = SPDK_BDEV_IO_STATUS_SUCCESS;
513 	g_bdev_io->u.bdev.iovcnt = 1;
514 	g_bdev_io->u.bdev.num_blocks = num_blocks;
515 	g_bdev_io->u.bdev.iovs[0].iov_len = io_len;
516 	g_bdev_io->u.bdev.iovs[0].iov_base = &test_large_rw;
517 	g_crypto_bdev.crypto_bdev.blocklen = block_len;
518 	g_bdev_io->type = SPDK_BDEV_IO_TYPE_WRITE;
519 	g_enqueue_mock = g_dequeue_mock = ut_rte_crypto_op_bulk_alloc = num_blocks;
520 
521 	vbdev_crypto_submit_request(g_io_ch, g_bdev_io);
522 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_SUCCESS);
523 	CU_ASSERT(g_io_ctx->cryop_cnt_remaining == (int)num_blocks);
524 
525 	for (i = 0; i < num_blocks; i++) {
526 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_src->buf_addr == &test_large_rw + (i * block_len));
527 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_src->data_len == block_len);
528 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_src->next == NULL);
529 		CU_ASSERT(g_test_crypto_ops[i]->sym->cipher.data.length == block_len);
530 		CU_ASSERT(g_test_crypto_ops[i]->sym->cipher.data.offset == 0);
531 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_src->userdata == g_bdev_io);
532 		CU_ASSERT(g_io_ctx->cry_iov.iov_len == io_len);
533 		CU_ASSERT(g_io_ctx->cry_iov.iov_base != NULL);
534 		CU_ASSERT(g_io_ctx->cry_offset_blocks == 0);
535 		CU_ASSERT(g_io_ctx->cry_num_blocks == num_blocks);
536 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_dst->buf_addr != NULL);
537 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_dst->data_len == block_len);
538 		spdk_mempool_put(g_mbuf_mp, g_test_crypto_ops[i]->sym->m_src);
539 		spdk_mempool_put(g_mbuf_mp, g_test_crypto_ops[i]->sym->m_dst);
540 	}
541 	spdk_free(g_io_ctx->cry_iov.iov_base);
542 }
543 
544 static void
545 test_dev_full(void)
546 {
547 	unsigned block_len = 512;
548 	unsigned num_blocks = 2;
549 	unsigned io_len = block_len * num_blocks;
550 	unsigned i;
551 
552 	g_test_overflow = 1;
553 
554 	/* Multi block size read, multi-element */
555 	g_bdev_io->internal.status = SPDK_BDEV_IO_STATUS_SUCCESS;
556 	g_bdev_io->u.bdev.iovcnt = 1;
557 	g_bdev_io->u.bdev.num_blocks = num_blocks;
558 	g_bdev_io->u.bdev.iovs[0].iov_len = io_len;
559 	g_bdev_io->u.bdev.iovs[0].iov_base = &test_dev_full;
560 	g_crypto_bdev.crypto_bdev.blocklen = block_len;
561 	g_bdev_io->type = SPDK_BDEV_IO_TYPE_READ;
562 	g_enqueue_mock = g_dequeue_mock = 1;
563 	ut_rte_crypto_op_bulk_alloc = num_blocks;
564 
565 	vbdev_crypto_submit_request(g_io_ch, g_bdev_io);
566 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_SUCCESS);
567 
568 	/* this test only completes one of the 2 IOs (in the drain path) */
569 	CU_ASSERT(g_io_ctx->cryop_cnt_remaining == 1);
570 
571 	for (i = 0; i < num_blocks; i++) {
572 		/* One of the src_mbufs was freed because of the device full condition so
573 		 * we can't assert its value here.
574 		 */
575 		CU_ASSERT(g_test_dev_full_ops[i]->sym->cipher.data.length == block_len);
576 		CU_ASSERT(g_test_dev_full_ops[i]->sym->cipher.data.offset == 0);
577 		CU_ASSERT(g_test_dev_full_ops[i]->sym->m_src == g_test_dev_full_ops[i]->sym->m_src);
578 		CU_ASSERT(g_test_dev_full_ops[i]->sym->m_dst == NULL);
579 	}
580 
581 	/* Only one of the 2 blocks in the test was freed on completion by design, so
582 	 * we need to free th other one here.
583 	 */
584 	spdk_mempool_put(g_mbuf_mp, g_test_crypto_ops[0]->sym->m_src);
585 	g_test_overflow = 0;
586 }
587 
588 static void
589 test_crazy_rw(void)
590 {
591 	unsigned block_len = 512;
592 	int num_blocks = 4;
593 	int i;
594 
595 	/* Multi block size read, single element, strange IOV makeup */
596 	g_bdev_io->internal.status = SPDK_BDEV_IO_STATUS_SUCCESS;
597 	g_bdev_io->u.bdev.iovcnt = 3;
598 	g_bdev_io->u.bdev.num_blocks = num_blocks;
599 	g_bdev_io->u.bdev.iovs[0].iov_len = 512;
600 	g_bdev_io->u.bdev.iovs[0].iov_base = &test_crazy_rw;
601 	g_bdev_io->u.bdev.iovs[1].iov_len = 1024;
602 	g_bdev_io->u.bdev.iovs[1].iov_base = &test_crazy_rw + 512;
603 	g_bdev_io->u.bdev.iovs[2].iov_len = 512;
604 	g_bdev_io->u.bdev.iovs[2].iov_base = &test_crazy_rw + 512 + 1024;
605 
606 	g_crypto_bdev.crypto_bdev.blocklen = block_len;
607 	g_bdev_io->type = SPDK_BDEV_IO_TYPE_READ;
608 	g_enqueue_mock = g_dequeue_mock = ut_rte_crypto_op_bulk_alloc = num_blocks;
609 
610 	vbdev_crypto_submit_request(g_io_ch, g_bdev_io);
611 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_SUCCESS);
612 	CU_ASSERT(g_io_ctx->cryop_cnt_remaining == num_blocks);
613 
614 	for (i = 0; i < num_blocks; i++) {
615 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_src->buf_addr == &test_crazy_rw + (i * block_len));
616 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_src->data_len == block_len);
617 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_src->next == NULL);
618 		CU_ASSERT(g_test_crypto_ops[i]->sym->cipher.data.length == block_len);
619 		CU_ASSERT(g_test_crypto_ops[i]->sym->cipher.data.offset == 0);
620 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_src->userdata == g_bdev_io);
621 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_src == g_test_crypto_ops[i]->sym->m_src);
622 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_dst == NULL);
623 		spdk_mempool_put(g_mbuf_mp, g_test_crypto_ops[i]->sym->m_src);
624 	}
625 
626 	/* Multi block size write, single element strange IOV makeup */
627 	num_blocks = 8;
628 	g_bdev_io->internal.status = SPDK_BDEV_IO_STATUS_SUCCESS;
629 	g_bdev_io->u.bdev.iovcnt = 4;
630 	g_bdev_io->u.bdev.num_blocks = num_blocks;
631 	g_bdev_io->u.bdev.iovs[0].iov_len = 2048;
632 	g_bdev_io->u.bdev.iovs[0].iov_base = &test_crazy_rw;
633 	g_bdev_io->u.bdev.iovs[1].iov_len = 512;
634 	g_bdev_io->u.bdev.iovs[1].iov_base = &test_crazy_rw + 2048;
635 	g_bdev_io->u.bdev.iovs[2].iov_len = 512;
636 	g_bdev_io->u.bdev.iovs[2].iov_base = &test_crazy_rw + 2048 + 512;
637 	g_bdev_io->u.bdev.iovs[3].iov_len = 1024;
638 	g_bdev_io->u.bdev.iovs[3].iov_base = &test_crazy_rw + 2048 + 512 + 512;
639 
640 	g_crypto_bdev.crypto_bdev.blocklen = block_len;
641 	g_bdev_io->type = SPDK_BDEV_IO_TYPE_WRITE;
642 	g_enqueue_mock = g_dequeue_mock = ut_rte_crypto_op_bulk_alloc = num_blocks;
643 
644 	vbdev_crypto_submit_request(g_io_ch, g_bdev_io);
645 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_SUCCESS);
646 	CU_ASSERT(g_io_ctx->cryop_cnt_remaining == num_blocks);
647 
648 	for (i = 0; i < num_blocks; i++) {
649 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_src->buf_addr == &test_crazy_rw + (i * block_len));
650 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_src->data_len == block_len);
651 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_src->next == NULL);
652 		CU_ASSERT(g_test_crypto_ops[i]->sym->cipher.data.length == block_len);
653 		CU_ASSERT(g_test_crypto_ops[i]->sym->cipher.data.offset == 0);
654 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_src->userdata == g_bdev_io);
655 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_src == g_test_crypto_ops[i]->sym->m_src);
656 		CU_ASSERT(g_test_crypto_ops[i]->sym->m_dst == g_test_crypto_ops[i]->sym->m_dst);
657 		spdk_mempool_put(g_mbuf_mp, g_test_crypto_ops[i]->sym->m_src);
658 		spdk_mempool_put(g_mbuf_mp, g_test_crypto_ops[i]->sym->m_dst);
659 	}
660 	spdk_free(g_io_ctx->cry_iov.iov_base);
661 }
662 
663 static void
664 test_passthru(void)
665 {
666 	/* Make sure these follow our completion callback, test success & fail. */
667 	g_bdev_io->type = SPDK_BDEV_IO_TYPE_UNMAP;
668 	MOCK_SET(spdk_bdev_unmap_blocks, 0);
669 	vbdev_crypto_submit_request(g_io_ch, g_bdev_io);
670 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_SUCCESS);
671 	MOCK_SET(spdk_bdev_unmap_blocks, -1);
672 	vbdev_crypto_submit_request(g_io_ch, g_bdev_io);
673 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_FAILED);
674 	MOCK_CLEAR(spdk_bdev_unmap_blocks);
675 
676 	g_bdev_io->type = SPDK_BDEV_IO_TYPE_FLUSH;
677 	MOCK_SET(spdk_bdev_flush_blocks, 0);
678 	vbdev_crypto_submit_request(g_io_ch, g_bdev_io);
679 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_SUCCESS);
680 	MOCK_SET(spdk_bdev_flush_blocks, -1);
681 	vbdev_crypto_submit_request(g_io_ch, g_bdev_io);
682 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_FAILED);
683 	MOCK_CLEAR(spdk_bdev_flush_blocks);
684 
685 	/* We should never get a WZ command, we report that we don't support it. */
686 	g_bdev_io->type = SPDK_BDEV_IO_TYPE_WRITE_ZEROES;
687 	vbdev_crypto_submit_request(g_io_ch, g_bdev_io);
688 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_FAILED);
689 }
690 
691 static void
692 test_reset(void)
693 {
694 	/* TODO: There are a few different ways to do this given that
695 	 * the code uses spdk_for_each_channel() to implement reset
696 	 * handling. SUbmitting w/o UT for this function for now and
697 	 * will follow up with something shortly.
698 	 */
699 }
700 
701 static void
702 test_initdrivers(void)
703 {
704 	int rc;
705 	static struct spdk_mempool *orig_mbuf_mp;
706 	static struct rte_mempool *orig_session_mp;
707 	static struct rte_mempool *orig_session_mp_priv;
708 
709 
710 	/* These tests will alloc and free our g_mbuf_mp
711 	 * so save that off here and restore it after each test is over.
712 	 */
713 	orig_mbuf_mp = g_mbuf_mp;
714 	orig_session_mp = g_session_mp;
715 	orig_session_mp_priv = g_session_mp_priv;
716 
717 	g_session_mp_priv = NULL;
718 	g_session_mp = NULL;
719 	g_mbuf_mp = NULL;
720 
721 	/* No drivers available, not an error though */
722 	MOCK_SET(rte_eal_get_configuration, g_test_config);
723 	MOCK_SET(rte_cryptodev_count, 0);
724 	rc = vbdev_crypto_init_crypto_drivers();
725 	CU_ASSERT(rc == 0);
726 	CU_ASSERT(g_mbuf_mp == NULL);
727 	CU_ASSERT(g_session_mp == NULL);
728 	CU_ASSERT(g_session_mp_priv == NULL);
729 
730 	/* Test failure of DPDK dev init. */
731 	MOCK_SET(rte_cryptodev_count, 2);
732 	MOCK_SET(rte_vdev_init, -1);
733 	rc = vbdev_crypto_init_crypto_drivers();
734 	CU_ASSERT(rc == -EINVAL);
735 	CU_ASSERT(g_mbuf_mp == NULL);
736 	CU_ASSERT(g_session_mp == NULL);
737 	CU_ASSERT(g_session_mp_priv == NULL);
738 	MOCK_SET(rte_vdev_init, 0);
739 
740 	/* Can't create session pool. */
741 	MOCK_SET(spdk_mempool_create, NULL);
742 	rc = vbdev_crypto_init_crypto_drivers();
743 	CU_ASSERT(rc == -ENOMEM);
744 	CU_ASSERT(g_mbuf_mp == NULL);
745 	CU_ASSERT(g_session_mp == NULL);
746 	CU_ASSERT(g_session_mp_priv == NULL);
747 	MOCK_CLEAR(spdk_mempool_create);
748 
749 	/* Can't create op pool. */
750 	MOCK_SET(rte_crypto_op_pool_create, NULL);
751 	rc = vbdev_crypto_init_crypto_drivers();
752 	CU_ASSERT(rc == -ENOMEM);
753 	CU_ASSERT(g_mbuf_mp == NULL);
754 	CU_ASSERT(g_session_mp == NULL);
755 	CU_ASSERT(g_session_mp_priv == NULL);
756 	MOCK_SET(rte_crypto_op_pool_create, (struct rte_mempool *)1);
757 
758 	/* Check resources are not sufficient */
759 	MOCK_CLEARED_ASSERT(spdk_mempool_create);
760 	rc = vbdev_crypto_init_crypto_drivers();
761 	CU_ASSERT(rc == -EINVAL);
762 
763 	/* Test crypto dev configure failure. */
764 	MOCK_SET(rte_cryptodev_device_count_by_driver, 2);
765 	MOCK_SET(rte_cryptodev_info_get, 1);
766 	MOCK_SET(rte_cryptodev_configure, -1);
767 	MOCK_CLEARED_ASSERT(spdk_mempool_create);
768 	rc = vbdev_crypto_init_crypto_drivers();
769 	MOCK_SET(rte_cryptodev_configure, 0);
770 	CU_ASSERT(g_mbuf_mp == NULL);
771 	CU_ASSERT(g_session_mp == NULL);
772 	CU_ASSERT(g_session_mp_priv == NULL);
773 	CU_ASSERT(rc == -EINVAL);
774 
775 	/* Test failure of qp setup. */
776 	MOCK_SET(rte_cryptodev_queue_pair_setup, -1);
777 	MOCK_CLEARED_ASSERT(spdk_mempool_create);
778 	rc = vbdev_crypto_init_crypto_drivers();
779 	CU_ASSERT(rc == -EINVAL);
780 	CU_ASSERT(g_mbuf_mp == NULL);
781 	CU_ASSERT(g_session_mp == NULL);
782 	CU_ASSERT(g_session_mp_priv == NULL);
783 	MOCK_SET(rte_cryptodev_queue_pair_setup, 0);
784 
785 	/* Test failure of dev start. */
786 	MOCK_SET(rte_cryptodev_start, -1);
787 	MOCK_CLEARED_ASSERT(spdk_mempool_create);
788 	rc = vbdev_crypto_init_crypto_drivers();
789 	CU_ASSERT(rc == -EINVAL);
790 	CU_ASSERT(g_mbuf_mp == NULL);
791 	CU_ASSERT(g_session_mp == NULL);
792 	CU_ASSERT(g_session_mp_priv == NULL);
793 	MOCK_SET(rte_cryptodev_start, 0);
794 
795 	/* Test happy path. */
796 	MOCK_CLEARED_ASSERT(spdk_mempool_create);
797 	rc = vbdev_crypto_init_crypto_drivers();
798 	/* We don't have spdk_mempool_create mocked right now, so make sure to free the mempools. */
799 	CU_ASSERT(g_mbuf_mp != NULL);
800 	CU_ASSERT(g_session_mp != NULL);
801 	spdk_mempool_free(g_mbuf_mp);
802 	rte_mempool_free(g_session_mp);
803 	if (g_session_mp_priv != NULL) {
804 		/* g_session_mp_priv may or may not be set depending on the DPDK version */
805 		rte_mempool_free(g_session_mp_priv);
806 	}
807 	CU_ASSERT(rc == 0);
808 
809 	/* restore our initial values. */
810 	g_mbuf_mp = orig_mbuf_mp;
811 	g_session_mp = orig_session_mp;
812 	g_session_mp_priv = orig_session_mp_priv;
813 }
814 
815 static void
816 test_crypto_op_complete(void)
817 {
818 	/* Need to prove to scan-build that we are setting iov_bases properly. */
819 	void *old_iov_base;
820 	struct crypto_bdev_io *orig_ctx;
821 
822 	/* Make sure completion code respects failure. */
823 	g_bdev_io->internal.status = SPDK_BDEV_IO_STATUS_FAILED;
824 	g_completion_called = false;
825 	_crypto_operation_complete(g_bdev_io);
826 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_FAILED);
827 	CU_ASSERT(g_completion_called == true);
828 
829 	/* Test read completion. */
830 	g_bdev_io->internal.status = SPDK_BDEV_IO_STATUS_SUCCESS;
831 	g_bdev_io->type = SPDK_BDEV_IO_TYPE_READ;
832 	g_completion_called = false;
833 	_crypto_operation_complete(g_bdev_io);
834 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_SUCCESS);
835 	CU_ASSERT(g_completion_called == true);
836 
837 	/* Test write completion success. */
838 	g_bdev_io->internal.status = SPDK_BDEV_IO_STATUS_SUCCESS;
839 	g_bdev_io->type = SPDK_BDEV_IO_TYPE_WRITE;
840 	g_completion_called = false;
841 	MOCK_SET(spdk_bdev_writev_blocks, 0);
842 	/* Code under test will free this, if not ASAN will complain. */
843 	g_io_ctx->cry_iov.iov_base = spdk_malloc(16, 0x10, NULL, SPDK_ENV_LCORE_ID_ANY,
844 				     SPDK_MALLOC_DMA);
845 	orig_ctx = (struct crypto_bdev_io *)g_bdev_io->driver_ctx;
846 	old_iov_base = orig_ctx->cry_iov.iov_base;
847 	_crypto_operation_complete(g_bdev_io);
848 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_SUCCESS);
849 	CU_ASSERT(g_completion_called == true);
850 
851 	/* Test write completion failed. */
852 	g_bdev_io->internal.status = SPDK_BDEV_IO_STATUS_SUCCESS;
853 	g_bdev_io->type = SPDK_BDEV_IO_TYPE_WRITE;
854 	g_completion_called = false;
855 	MOCK_SET(spdk_bdev_writev_blocks, -1);
856 	/* Code under test will free this, if not ASAN will complain. */
857 	g_io_ctx->cry_iov.iov_base = spdk_malloc(16, 0x40, NULL, SPDK_ENV_LCORE_ID_ANY,
858 				     SPDK_MALLOC_DMA);
859 	/* To Do: remove this garbage assert as soon as scan-build stops throwing a
860 	 * heap use after free error.
861 	 */
862 	SPDK_CU_ASSERT_FATAL(old_iov_base != orig_ctx->cry_iov.iov_base);
863 	_crypto_operation_complete(g_bdev_io);
864 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_FAILED);
865 	CU_ASSERT(g_completion_called == true);
866 
867 	/* Test bogus type for this completion. */
868 	g_bdev_io->internal.status = SPDK_BDEV_IO_STATUS_SUCCESS;
869 	g_bdev_io->type = SPDK_BDEV_IO_TYPE_RESET;
870 	g_completion_called = false;
871 	_crypto_operation_complete(g_bdev_io);
872 	CU_ASSERT(g_bdev_io->internal.status == SPDK_BDEV_IO_STATUS_FAILED);
873 	CU_ASSERT(g_completion_called == true);
874 }
875 
876 static void
877 test_supported_io(void)
878 {
879 	void *ctx = NULL;
880 	bool rc = true;
881 
882 	/* Make sure we always report false to WZ, we need the bdev layer to
883 	 * send real 0's so we can encrypt/decrypt them.
884 	 */
885 	rc = vbdev_crypto_io_type_supported(ctx, SPDK_BDEV_IO_TYPE_WRITE_ZEROES);
886 	CU_ASSERT(rc == false);
887 }
888 
889 int
890 main(int argc, char **argv)
891 {
892 	CU_pSuite	suite = NULL;
893 	unsigned int	num_failures;
894 
895 	if (CU_initialize_registry() != CUE_SUCCESS) {
896 		return CU_get_error();
897 	}
898 
899 	suite = CU_add_suite("crypto", test_setup, test_cleanup);
900 	if (suite == NULL) {
901 		CU_cleanup_registry();
902 		return CU_get_error();
903 	}
904 
905 	if (CU_add_test(suite, "test_error_paths",
906 			test_error_paths) == NULL ||
907 	    CU_add_test(suite, "test_simple_write",
908 			test_simple_write) == NULL ||
909 	    CU_add_test(suite, "test_simple_read",
910 			test_simple_read) == NULL ||
911 	    CU_add_test(suite, "test_large_rw",
912 			test_large_rw) == NULL ||
913 	    CU_add_test(suite, "test_dev_full",
914 			test_dev_full) == NULL ||
915 	    CU_add_test(suite, "test_crazy_rw",
916 			test_crazy_rw) == NULL ||
917 	    CU_add_test(suite, "test_passthru",
918 			test_passthru) == NULL ||
919 	    CU_add_test(suite, "test_initdrivers",
920 			test_initdrivers) == NULL ||
921 	    CU_add_test(suite, "test_crypto_op_complete",
922 			test_crypto_op_complete) == NULL ||
923 	    CU_add_test(suite, "test_supported_io",
924 			test_supported_io) == NULL ||
925 	    CU_add_test(suite, "test_reset",
926 			test_reset) == NULL
927 	   ) {
928 		CU_cleanup_registry();
929 		return CU_get_error();
930 	}
931 
932 	CU_basic_set_mode(CU_BRM_VERBOSE);
933 	CU_basic_run_tests();
934 	num_failures = CU_get_number_of_failures();
935 	CU_cleanup_registry();
936 	return num_failures;
937 }
938