xref: /spdk/test/unit/lib/nvmf/ctrlr_bdev.c/ctrlr_bdev_ut.c (revision c4fafdb2158529f43d225fec5e3509bb0c5ba0c7)
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/stdinc.h"
35 
36 #include "spdk_cunit.h"
37 
38 #include "spdk_internal/mock.h"
39 
40 #include "nvmf/ctrlr_bdev.c"
41 
42 #include "spdk/bdev_module.h"
43 
44 SPDK_LOG_REGISTER_COMPONENT(nvmf)
45 
46 DEFINE_STUB(spdk_nvmf_request_complete, int, (struct spdk_nvmf_request *req), -1);
47 
48 DEFINE_STUB(spdk_bdev_get_name, const char *, (const struct spdk_bdev *bdev), "test");
49 
50 DEFINE_STUB(spdk_bdev_get_physical_block_size, uint32_t,
51 	    (const struct spdk_bdev *bdev), 4096);
52 
53 DEFINE_STUB(nvmf_ctrlr_process_admin_cmd, int, (struct spdk_nvmf_request *req), 0);
54 
55 DEFINE_STUB(spdk_bdev_comparev_blocks, int, (struct spdk_bdev_desc *desc,
56 		struct spdk_io_channel *ch, struct iovec *iov, int iovcnt,
57 		uint64_t offset_blocks, uint64_t num_blocks,
58 		spdk_bdev_io_completion_cb cb, void *cb_arg), 0);
59 
60 DEFINE_STUB(spdk_bdev_nvme_admin_passthru, int,
61 	    (struct spdk_bdev_desc *desc, struct spdk_io_channel *ch,
62 	     const struct spdk_nvme_cmd *cmd, void *buf, size_t nbytes,
63 	     spdk_bdev_io_completion_cb cb, void *cb_arg), 0);
64 
65 DEFINE_STUB(spdk_bdev_abort, int,
66 	    (struct spdk_bdev_desc *desc, struct spdk_io_channel *ch,
67 	     void *bio_cb_arg, spdk_bdev_io_completion_cb cb, void *cb_arg), 0);
68 
69 uint32_t
70 spdk_bdev_get_optimal_io_boundary(const struct spdk_bdev *bdev)
71 {
72 	return bdev->optimal_io_boundary;
73 }
74 
75 uint32_t
76 spdk_bdev_get_md_size(const struct spdk_bdev *bdev)
77 {
78 	return bdev->md_len;
79 }
80 
81 bool
82 spdk_bdev_is_md_interleaved(const struct spdk_bdev *bdev)
83 {
84 	return (bdev->md_len != 0) && bdev->md_interleave;
85 }
86 
87 enum spdk_dif_type spdk_bdev_get_dif_type(const struct spdk_bdev *bdev)
88 {
89 	if (bdev->md_len != 0) {
90 		return bdev->dif_type;
91 	} else {
92 		return SPDK_DIF_DISABLE;
93 	}
94 }
95 
96 bool
97 spdk_bdev_is_dif_head_of_md(const struct spdk_bdev *bdev)
98 {
99 	if (spdk_bdev_get_dif_type(bdev) != SPDK_DIF_DISABLE) {
100 		return bdev->dif_is_head_of_md;
101 	} else {
102 		return false;
103 	}
104 }
105 
106 uint32_t
107 spdk_bdev_get_data_block_size(const struct spdk_bdev *bdev)
108 {
109 	if (spdk_bdev_is_md_interleaved(bdev)) {
110 		return bdev->blocklen - bdev->md_len;
111 	} else {
112 		return bdev->blocklen;
113 	}
114 }
115 
116 uint16_t
117 spdk_bdev_get_acwu(const struct spdk_bdev *bdev)
118 {
119 	return bdev->acwu;
120 }
121 
122 uint32_t
123 spdk_bdev_get_block_size(const struct spdk_bdev *bdev)
124 {
125 	return bdev->blocklen;
126 }
127 
128 uint64_t
129 spdk_bdev_get_num_blocks(const struct spdk_bdev *bdev)
130 {
131 	return bdev->blockcnt;
132 }
133 
134 DEFINE_STUB(spdk_bdev_comparev_and_writev_blocks, int,
135 	    (struct spdk_bdev_desc *desc, struct spdk_io_channel *ch,
136 	     struct iovec *compare_iov, int compare_iovcnt,
137 	     struct iovec *write_iov, int write_iovcnt,
138 	     uint64_t offset_blocks, uint64_t num_blocks,
139 	     spdk_bdev_io_completion_cb cb, void *cb_arg),
140 	    0);
141 
142 DEFINE_STUB(nvmf_ctrlr_process_io_cmd, int, (struct spdk_nvmf_request *req), 0);
143 
144 DEFINE_STUB_V(spdk_bdev_io_get_nvme_fused_status, (const struct spdk_bdev_io *bdev_io,
145 		uint32_t *cdw0, int *cmp_sct, int *cmp_sc, int *wr_sct, int *wr_sc));
146 
147 DEFINE_STUB(spdk_bdev_is_dif_check_enabled, bool,
148 	    (const struct spdk_bdev *bdev, enum spdk_dif_check_type check_type), false);
149 
150 DEFINE_STUB(spdk_bdev_get_io_channel, struct spdk_io_channel *,
151 	    (struct spdk_bdev_desc *desc), NULL);
152 
153 DEFINE_STUB(spdk_bdev_flush_blocks, int,
154 	    (struct spdk_bdev_desc *desc, struct spdk_io_channel *ch,
155 	     uint64_t offset_blocks, uint64_t num_blocks,
156 	     spdk_bdev_io_completion_cb cb, void *cb_arg),
157 	    0);
158 
159 DEFINE_STUB(spdk_bdev_unmap_blocks, int,
160 	    (struct spdk_bdev_desc *desc, struct spdk_io_channel *ch,
161 	     uint64_t offset_blocks, uint64_t num_blocks,
162 	     spdk_bdev_io_completion_cb cb, void *cb_arg),
163 	    0);
164 
165 DEFINE_STUB(spdk_bdev_io_type_supported, bool,
166 	    (struct spdk_bdev *bdev, enum spdk_bdev_io_type io_type), false);
167 
168 DEFINE_STUB(spdk_bdev_queue_io_wait, int,
169 	    (struct spdk_bdev *bdev, struct spdk_io_channel *ch,
170 	     struct spdk_bdev_io_wait_entry *entry),
171 	    0);
172 
173 DEFINE_STUB(spdk_bdev_write_blocks, int,
174 	    (struct spdk_bdev_desc *desc, struct spdk_io_channel *ch, void *buf,
175 	     uint64_t offset_blocks, uint64_t num_blocks,
176 	     spdk_bdev_io_completion_cb cb, void *cb_arg),
177 	    0);
178 
179 DEFINE_STUB(spdk_bdev_writev_blocks, int,
180 	    (struct spdk_bdev_desc *desc, struct spdk_io_channel *ch,
181 	     struct iovec *iov, int iovcnt, uint64_t offset_blocks, uint64_t num_blocks,
182 	     spdk_bdev_io_completion_cb cb, void *cb_arg),
183 	    0);
184 
185 DEFINE_STUB(spdk_bdev_read_blocks, int,
186 	    (struct spdk_bdev_desc *desc, struct spdk_io_channel *ch, void *buf,
187 	     uint64_t offset_blocks, uint64_t num_blocks,
188 	     spdk_bdev_io_completion_cb cb, void *cb_arg),
189 	    0);
190 
191 DEFINE_STUB(spdk_bdev_readv_blocks, int,
192 	    (struct spdk_bdev_desc *desc, struct spdk_io_channel *ch,
193 	     struct iovec *iov, int iovcnt, uint64_t offset_blocks, uint64_t num_blocks,
194 	     spdk_bdev_io_completion_cb cb, void *cb_arg),
195 	    0);
196 
197 DEFINE_STUB(spdk_bdev_write_zeroes_blocks, int,
198 	    (struct spdk_bdev_desc *desc, struct spdk_io_channel *ch,
199 	     uint64_t offset_blocks, uint64_t num_blocks,
200 	     spdk_bdev_io_completion_cb cb, void *cb_arg),
201 	    0);
202 
203 DEFINE_STUB(spdk_bdev_nvme_io_passthru, int,
204 	    (struct spdk_bdev_desc *desc, struct spdk_io_channel *ch,
205 	     const struct spdk_nvme_cmd *cmd, void *buf, size_t nbytes,
206 	     spdk_bdev_io_completion_cb cb, void *cb_arg),
207 	    0);
208 
209 DEFINE_STUB_V(spdk_bdev_free_io, (struct spdk_bdev_io *bdev_io));
210 
211 DEFINE_STUB(spdk_nvmf_subsystem_get_nqn, const char *,
212 	    (const struct spdk_nvmf_subsystem *subsystem), NULL);
213 
214 struct spdk_nvmf_ns *
215 spdk_nvmf_subsystem_get_ns(struct spdk_nvmf_subsystem *subsystem, uint32_t nsid)
216 {
217 	abort();
218 	return NULL;
219 }
220 
221 struct spdk_nvmf_ns *
222 spdk_nvmf_subsystem_get_first_ns(struct spdk_nvmf_subsystem *subsystem)
223 {
224 	abort();
225 	return NULL;
226 }
227 
228 struct spdk_nvmf_ns *
229 spdk_nvmf_subsystem_get_next_ns(struct spdk_nvmf_subsystem *subsystem, struct spdk_nvmf_ns *prev_ns)
230 {
231 	abort();
232 	return NULL;
233 }
234 
235 DEFINE_STUB_V(spdk_bdev_io_get_nvme_status,
236 	      (const struct spdk_bdev_io *bdev_io, uint32_t *cdw0, int *sct, int *sc));
237 
238 int
239 spdk_dif_ctx_init(struct spdk_dif_ctx *ctx, uint32_t block_size, uint32_t md_size,
240 		  bool md_interleave, bool dif_loc, enum spdk_dif_type dif_type, uint32_t dif_flags,
241 		  uint32_t init_ref_tag, uint16_t apptag_mask, uint16_t app_tag,
242 		  uint32_t data_offset, uint16_t guard_seed)
243 {
244 	ctx->block_size = block_size;
245 	ctx->md_size = md_size;
246 	ctx->init_ref_tag = init_ref_tag;
247 
248 	return 0;
249 }
250 
251 static void
252 test_get_rw_params(void)
253 {
254 	struct spdk_nvme_cmd cmd = {0};
255 	uint64_t lba;
256 	uint64_t count;
257 
258 	lba = 0;
259 	count = 0;
260 	to_le64(&cmd.cdw10, 0x1234567890ABCDEF);
261 	to_le32(&cmd.cdw12, 0x9875 | SPDK_NVME_IO_FLAGS_FORCE_UNIT_ACCESS);
262 	nvmf_bdev_ctrlr_get_rw_params(&cmd, &lba, &count);
263 	CU_ASSERT(lba == 0x1234567890ABCDEF);
264 	CU_ASSERT(count == 0x9875 + 1); /* NOTE: this field is 0's based, hence the +1 */
265 }
266 
267 static void
268 test_lba_in_range(void)
269 {
270 	/* Trivial cases (no overflow) */
271 	CU_ASSERT(nvmf_bdev_ctrlr_lba_in_range(1000, 0, 1) == true);
272 	CU_ASSERT(nvmf_bdev_ctrlr_lba_in_range(1000, 0, 1000) == true);
273 	CU_ASSERT(nvmf_bdev_ctrlr_lba_in_range(1000, 0, 1001) == false);
274 	CU_ASSERT(nvmf_bdev_ctrlr_lba_in_range(1000, 1, 999) == true);
275 	CU_ASSERT(nvmf_bdev_ctrlr_lba_in_range(1000, 1, 1000) == false);
276 	CU_ASSERT(nvmf_bdev_ctrlr_lba_in_range(1000, 999, 1) == true);
277 	CU_ASSERT(nvmf_bdev_ctrlr_lba_in_range(1000, 1000, 1) == false);
278 	CU_ASSERT(nvmf_bdev_ctrlr_lba_in_range(1000, 1001, 1) == false);
279 
280 	/* Overflow edge cases */
281 	CU_ASSERT(nvmf_bdev_ctrlr_lba_in_range(UINT64_MAX, 0, UINT64_MAX) == true);
282 	CU_ASSERT(nvmf_bdev_ctrlr_lba_in_range(UINT64_MAX, 1, UINT64_MAX) == false);
283 	CU_ASSERT(nvmf_bdev_ctrlr_lba_in_range(UINT64_MAX, UINT64_MAX - 1, 1) == true);
284 	CU_ASSERT(nvmf_bdev_ctrlr_lba_in_range(UINT64_MAX, UINT64_MAX, 1) == false);
285 }
286 
287 static void
288 test_get_dif_ctx(void)
289 {
290 	struct spdk_bdev bdev = {};
291 	struct spdk_nvme_cmd cmd = {};
292 	struct spdk_dif_ctx dif_ctx = {};
293 	bool ret;
294 
295 	bdev.md_len = 0;
296 
297 	ret = nvmf_bdev_ctrlr_get_dif_ctx(&bdev, &cmd, &dif_ctx);
298 	CU_ASSERT(ret == false);
299 
300 	to_le64(&cmd.cdw10, 0x1234567890ABCDEF);
301 	bdev.blocklen = 520;
302 	bdev.md_len = 8;
303 
304 	ret = nvmf_bdev_ctrlr_get_dif_ctx(&bdev, &cmd, &dif_ctx);
305 	CU_ASSERT(ret == true);
306 	CU_ASSERT(dif_ctx.block_size = 520);
307 	CU_ASSERT(dif_ctx.md_size == 8);
308 	CU_ASSERT(dif_ctx.init_ref_tag == 0x90ABCDEF);
309 }
310 
311 static void
312 test_spdk_nvmf_bdev_ctrlr_compare_and_write_cmd(void)
313 {
314 	int rc;
315 	struct spdk_bdev bdev = {};
316 	struct spdk_bdev_desc *desc = NULL;
317 	struct spdk_io_channel ch = {};
318 
319 	struct spdk_nvmf_request cmp_req = {};
320 	union nvmf_c2h_msg cmp_rsp = {};
321 
322 	struct spdk_nvmf_request write_req = {};
323 	union nvmf_c2h_msg write_rsp = {};
324 
325 	struct spdk_nvmf_qpair qpair = {};
326 
327 	struct spdk_nvme_cmd cmp_cmd = {};
328 	struct spdk_nvme_cmd write_cmd = {};
329 
330 	struct spdk_nvmf_ctrlr ctrlr = {};
331 	struct spdk_nvmf_subsystem subsystem = {};
332 	struct spdk_nvmf_ns ns = {};
333 	struct spdk_nvmf_ns *subsys_ns[1] = {};
334 
335 	struct spdk_nvmf_poll_group group = {};
336 	struct spdk_nvmf_subsystem_poll_group sgroups = {};
337 	struct spdk_nvmf_subsystem_pg_ns_info ns_info = {};
338 
339 	bdev.blocklen = 512;
340 	bdev.blockcnt = 10;
341 	ns.bdev = &bdev;
342 
343 	subsystem.id = 0;
344 	subsystem.max_nsid = 1;
345 	subsys_ns[0] = &ns;
346 	subsystem.ns = (struct spdk_nvmf_ns **)&subsys_ns;
347 
348 	/* Enable controller */
349 	ctrlr.vcprop.cc.bits.en = 1;
350 	ctrlr.subsys = &subsystem;
351 
352 	group.num_sgroups = 1;
353 	sgroups.num_ns = 1;
354 	sgroups.ns_info = &ns_info;
355 	group.sgroups = &sgroups;
356 
357 	qpair.ctrlr = &ctrlr;
358 	qpair.group = &group;
359 
360 	cmp_req.qpair = &qpair;
361 	cmp_req.cmd = (union nvmf_h2c_msg *)&cmp_cmd;
362 	cmp_req.rsp = &cmp_rsp;
363 
364 	cmp_cmd.nsid = 1;
365 	cmp_cmd.fuse = SPDK_NVME_CMD_FUSE_FIRST;
366 	cmp_cmd.opc = SPDK_NVME_OPC_COMPARE;
367 
368 	write_req.qpair = &qpair;
369 	write_req.cmd = (union nvmf_h2c_msg *)&write_cmd;
370 	write_req.rsp = &write_rsp;
371 
372 	write_cmd.nsid = 1;
373 	write_cmd.fuse = SPDK_NVME_CMD_FUSE_SECOND;
374 	write_cmd.opc = SPDK_NVME_OPC_WRITE;
375 
376 	/* 1. SUCCESS */
377 	cmp_cmd.cdw10 = 1;	/* SLBA: CDW10 and CDW11 */
378 	cmp_cmd.cdw12 = 1;	/* NLB: CDW12 bits 15:00, 0's based */
379 
380 	write_cmd.cdw10 = 1;	/* SLBA: CDW10 and CDW11 */
381 	write_cmd.cdw12 = 1;	/* NLB: CDW12 bits 15:00, 0's based */
382 	write_req.length = (write_cmd.cdw12 + 1) * bdev.blocklen;
383 
384 	rc = nvmf_bdev_ctrlr_compare_and_write_cmd(&bdev, desc, &ch, &cmp_req, &write_req);
385 
386 	CU_ASSERT(rc == SPDK_NVMF_REQUEST_EXEC_STATUS_ASYNCHRONOUS);
387 	CU_ASSERT(cmp_rsp.nvme_cpl.status.sct == 0);
388 	CU_ASSERT(cmp_rsp.nvme_cpl.status.sc == 0);
389 	CU_ASSERT(write_rsp.nvme_cpl.status.sct == 0);
390 	CU_ASSERT(write_rsp.nvme_cpl.status.sc == 0);
391 
392 	/* 2. Fused command start lba / num blocks mismatch */
393 	cmp_cmd.cdw10 = 1;	/* SLBA: CDW10 and CDW11 */
394 	cmp_cmd.cdw12 = 2;	/* NLB: CDW12 bits 15:00, 0's based */
395 
396 	write_cmd.cdw10 = 1;	/* SLBA: CDW10 and CDW11 */
397 	write_cmd.cdw12 = 1;	/* NLB: CDW12 bits 15:00, 0's based */
398 	write_req.length = (write_cmd.cdw12 + 1) * bdev.blocklen;
399 
400 	rc = nvmf_bdev_ctrlr_compare_and_write_cmd(&bdev, desc, &ch, &cmp_req, &write_req);
401 
402 	CU_ASSERT(rc == SPDK_NVMF_REQUEST_EXEC_STATUS_COMPLETE);
403 	CU_ASSERT(cmp_rsp.nvme_cpl.status.sct == 0);
404 	CU_ASSERT(cmp_rsp.nvme_cpl.status.sc == 0);
405 	CU_ASSERT(write_rsp.nvme_cpl.status.sct == SPDK_NVME_SCT_GENERIC);
406 	CU_ASSERT(write_rsp.nvme_cpl.status.sc == SPDK_NVME_SC_INVALID_FIELD);
407 
408 	/* 3. SPDK_NVME_SC_LBA_OUT_OF_RANGE */
409 	cmp_cmd.cdw10 = 1;	/* SLBA: CDW10 and CDW11 */
410 	cmp_cmd.cdw12 = 100;	/* NLB: CDW12 bits 15:00, 0's based */
411 
412 	write_cmd.cdw10 = 1;	/* SLBA: CDW10 and CDW11 */
413 	write_cmd.cdw12 = 100;	/* NLB: CDW12 bits 15:00, 0's based */
414 	write_req.length = (write_cmd.cdw12 + 1) * bdev.blocklen;
415 
416 	rc = nvmf_bdev_ctrlr_compare_and_write_cmd(&bdev, desc, &ch, &cmp_req, &write_req);
417 
418 	CU_ASSERT(rc == SPDK_NVMF_REQUEST_EXEC_STATUS_COMPLETE);
419 	CU_ASSERT(cmp_rsp.nvme_cpl.status.sct == 0);
420 	CU_ASSERT(cmp_rsp.nvme_cpl.status.sc == 0);
421 	CU_ASSERT(write_rsp.nvme_cpl.status.sct == SPDK_NVME_SCT_GENERIC);
422 	CU_ASSERT(write_rsp.nvme_cpl.status.sc == SPDK_NVME_SC_LBA_OUT_OF_RANGE);
423 
424 	/* 4. SPDK_NVME_SC_DATA_SGL_LENGTH_INVALID */
425 	cmp_cmd.cdw10 = 1;	/* SLBA: CDW10 and CDW11 */
426 	cmp_cmd.cdw12 = 1;	/* NLB: CDW12 bits 15:00, 0's based */
427 
428 	write_cmd.cdw10 = 1;	/* SLBA: CDW10 and CDW11 */
429 	write_cmd.cdw12 = 1;	/* NLB: CDW12 bits 15:00, 0's based */
430 	write_req.length = (write_cmd.cdw12 + 1) * bdev.blocklen - 1;
431 
432 	rc = nvmf_bdev_ctrlr_compare_and_write_cmd(&bdev, desc, &ch, &cmp_req, &write_req);
433 
434 	CU_ASSERT(rc == SPDK_NVMF_REQUEST_EXEC_STATUS_COMPLETE);
435 	CU_ASSERT(cmp_rsp.nvme_cpl.status.sct == 0);
436 	CU_ASSERT(cmp_rsp.nvme_cpl.status.sc == 0);
437 	CU_ASSERT(write_rsp.nvme_cpl.status.sct == SPDK_NVME_SCT_GENERIC);
438 	CU_ASSERT(write_rsp.nvme_cpl.status.sc == SPDK_NVME_SC_DATA_SGL_LENGTH_INVALID);
439 }
440 
441 static void
442 test_nvmf_bdev_ctrlr_identify_ns(void)
443 {
444 	struct spdk_nvmf_ns ns = {};
445 	struct spdk_nvme_ns_data nsdata = {};
446 	struct spdk_bdev bdev = {};
447 	uint8_t ns_g_id[16] = "abcdefgh";
448 	uint8_t eui64[8] = "12345678";
449 
450 	ns.bdev = &bdev;
451 	ns.ptpl_file = (void *)0xDEADBEEF;
452 	memcpy(ns.opts.nguid, ns_g_id, 16);
453 	memcpy(ns.opts.eui64, eui64, 8);
454 
455 	bdev.blockcnt = 10;
456 	bdev.acwu = 0;
457 	bdev.md_len = 512;
458 	bdev.dif_type = SPDK_DIF_TYPE1;
459 	bdev.blocklen = 4096;
460 	bdev.md_interleave = 0;
461 	bdev.optimal_io_boundary = BDEV_IO_NUM_CHILD_IOV;
462 	bdev.dif_is_head_of_md = true;
463 
464 	nvmf_bdev_ctrlr_identify_ns(&ns, &nsdata, false);
465 	CU_ASSERT(nsdata.nsze == 10);
466 	CU_ASSERT(nsdata.ncap == 10);
467 	CU_ASSERT(nsdata.nuse == 10);
468 	CU_ASSERT(nsdata.nlbaf == 0);
469 	CU_ASSERT(nsdata.flbas.format == 0);
470 	CU_ASSERT(nsdata.nacwu == 0);
471 	CU_ASSERT(nsdata.lbaf[0].lbads == spdk_u32log2(4096));
472 	CU_ASSERT(nsdata.lbaf[0].ms == 512);
473 	CU_ASSERT(nsdata.dpc.pit1 == 1);
474 	CU_ASSERT(nsdata.dps.pit == SPDK_NVME_FMT_NVM_PROTECTION_TYPE1);
475 	CU_ASSERT(nsdata.noiob == BDEV_IO_NUM_CHILD_IOV);
476 	CU_ASSERT(nsdata.nmic.can_share == 1);
477 	CU_ASSERT(nsdata.nsrescap.rescap.persist == 1);
478 	CU_ASSERT(nsdata.nsrescap.rescap.write_exclusive == 1);
479 	CU_ASSERT(nsdata.nsrescap.rescap.exclusive_access == 1);
480 	CU_ASSERT(nsdata.nsrescap.rescap.write_exclusive_reg_only == 1);
481 	CU_ASSERT(nsdata.nsrescap.rescap.exclusive_access_reg_only == 1);
482 	CU_ASSERT(nsdata.nsrescap.rescap.write_exclusive_all_reg == 1);
483 	CU_ASSERT(nsdata.nsrescap.rescap.exclusive_access_all_reg == 1);
484 	CU_ASSERT(nsdata.nsrescap.rescap.ignore_existing_key == 1);
485 	CU_ASSERT(nsdata.flbas.extended == 1);
486 	CU_ASSERT(nsdata.mc.extended == 1);
487 	CU_ASSERT(nsdata.mc.pointer == 0);
488 	CU_ASSERT(nsdata.dps.md_start == true);
489 	CU_ASSERT(!strncmp(nsdata.nguid, ns_g_id, 16));
490 	CU_ASSERT(!strncmp((uint8_t *)&nsdata.eui64, eui64, 8));
491 
492 	memset(&nsdata, 0, sizeof(nsdata));
493 	nvmf_bdev_ctrlr_identify_ns(&ns, &nsdata, true);
494 	CU_ASSERT(nsdata.nsze == 10);
495 	CU_ASSERT(nsdata.ncap == 10);
496 	CU_ASSERT(nsdata.nuse == 10);
497 	CU_ASSERT(nsdata.nlbaf == 0);
498 	CU_ASSERT(nsdata.flbas.format == 0);
499 	CU_ASSERT(nsdata.nacwu == 0);
500 	CU_ASSERT(nsdata.lbaf[0].lbads == spdk_u32log2(4096));
501 	CU_ASSERT(nsdata.noiob == BDEV_IO_NUM_CHILD_IOV);
502 	CU_ASSERT(nsdata.nmic.can_share == 1);
503 	CU_ASSERT(nsdata.lbaf[0].ms == 0);
504 	CU_ASSERT(nsdata.nsrescap.rescap.persist == 1);
505 	CU_ASSERT(nsdata.nsrescap.rescap.write_exclusive == 1);
506 	CU_ASSERT(nsdata.nsrescap.rescap.exclusive_access == 1);
507 	CU_ASSERT(nsdata.nsrescap.rescap.write_exclusive_reg_only == 1);
508 	CU_ASSERT(nsdata.nsrescap.rescap.exclusive_access_reg_only == 1);
509 	CU_ASSERT(nsdata.nsrescap.rescap.write_exclusive_all_reg == 1);
510 	CU_ASSERT(nsdata.nsrescap.rescap.exclusive_access_all_reg == 1);
511 	CU_ASSERT(nsdata.nsrescap.rescap.ignore_existing_key == 1);
512 	CU_ASSERT(!strncmp(nsdata.nguid, ns_g_id, 16));
513 	CU_ASSERT(!strncmp((uint8_t *)&nsdata.eui64, eui64, 8));
514 }
515 
516 int main(int argc, char **argv)
517 {
518 	CU_pSuite	suite = NULL;
519 	unsigned int	num_failures;
520 
521 	CU_set_error_action(CUEA_ABORT);
522 	CU_initialize_registry();
523 
524 	suite = CU_add_suite("nvmf", NULL, NULL);
525 
526 	CU_ADD_TEST(suite, test_get_rw_params);
527 	CU_ADD_TEST(suite, test_lba_in_range);
528 	CU_ADD_TEST(suite, test_get_dif_ctx);
529 	CU_ADD_TEST(suite, test_nvmf_bdev_ctrlr_identify_ns);
530 
531 	CU_ADD_TEST(suite, test_spdk_nvmf_bdev_ctrlr_compare_and_write_cmd);
532 
533 	CU_basic_set_mode(CU_BRM_VERBOSE);
534 	CU_basic_run_tests();
535 	num_failures = CU_get_number_of_failures();
536 	CU_cleanup_registry();
537 	return num_failures;
538 }
539