xref: /freebsd/sys/dev/nvme/nvme.h (revision 82f70a0070a30a448eeeb47471749c8b382273c3)
1 /*-
2  * SPDX-License-Identifier: BSD-2-Clause
3  *
4  * Copyright (C) 2012-2013 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  * 1. Redistributions of source code must retain the above copyright
11  *    notice, this list of conditions and the following disclaimer.
12  * 2. Redistributions in binary form must reproduce the above copyright
13  *    notice, this list of conditions and the following disclaimer in the
14  *    documentation and/or other materials provided with the distribution.
15  *
16  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
17  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
20  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26  * SUCH DAMAGE.
27  */
28 
29 #ifndef __NVME_H__
30 #define __NVME_H__
31 
32 #include <sys/param.h>
33 #ifdef _KERNEL
34 #include <sys/systm.h>
35 #include <sys/disk.h>
36 #else
37 #include <stdbool.h>
38 #endif
39 #include <sys/endian.h>
40 
41 struct sbuf;
42 
43 #define	NVME_PASSTHROUGH_CMD		_IOWR('n', 0, struct nvme_pt_command)
44 #define	NVME_RESET_CONTROLLER		_IO('n', 1)
45 #define	NVME_GET_NSID			_IOR('n', 2, struct nvme_get_nsid)
46 #define	NVME_GET_MAX_XFER_SIZE		_IOR('n', 3, uint64_t)
47 #define	NVME_GET_CONTROLLER_DATA	_IOR('n', 4, struct nvme_controller_data)
48 
49 #define	NVME_IO_TEST			_IOWR('n', 100, struct nvme_io_test)
50 #define	NVME_BIO_TEST			_IOWR('n', 101, struct nvme_io_test)
51 
52 /* NB: Fabrics-specific ioctls defined in nvmf.h start at 200. */
53 
54 /*
55  * Macros to deal with NVME revisions, as defined VS register
56  */
57 #define NVME_REV(x, y)			(((x) << 16) | ((y) << 8))
58 #define NVME_MAJOR(r)			(((r) >> 16) & 0xffff)
59 #define NVME_MINOR(r)			(((r) >> 8) & 0xff)
60 
61 /*
62  * Use to mark a command to apply to all namespaces, or to retrieve global
63  *  log pages.
64  */
65 #define NVME_GLOBAL_NAMESPACE_TAG	((uint32_t)0xFFFFFFFF)
66 
67 /* Host memory buffer sizes are always in 4096 byte chunks */
68 #define	NVME_HMB_UNITS			4096
69 
70 /* Many items are expressed in terms of power of two times MPS */
71 #define NVME_MPS_SHIFT			12
72 
73 /* Limits on queue sizes: See 4.1.3 Queue Size in NVMe 1.4b. */
74 #define NVME_MIN_ADMIN_ENTRIES		2
75 #define NVME_MAX_ADMIN_ENTRIES		4096
76 
77 #define NVME_MIN_IO_ENTRIES		2
78 #define NVME_MAX_IO_ENTRIES		65536
79 
80 /* Register field definitions */
81 #define NVME_CAP_LO_REG_MQES_SHIFT			(0)
82 #define NVME_CAP_LO_REG_MQES_MASK			(0xFFFF)
83 #define NVME_CAP_LO_REG_CQR_SHIFT			(16)
84 #define NVME_CAP_LO_REG_CQR_MASK			(0x1)
85 #define NVME_CAP_LO_REG_AMS_SHIFT			(17)
86 #define NVME_CAP_LO_REG_AMS_MASK			(0x3)
87 #define NVME_CAP_LO_REG_TO_SHIFT			(24)
88 #define NVME_CAP_LO_REG_TO_MASK				(0xFF)
89 #define NVME_CAP_LO_MQES(x) \
90 	NVMEV(NVME_CAP_LO_REG_MQES, x)
91 #define NVME_CAP_LO_CQR(x) \
92 	NVMEV(NVME_CAP_LO_REG_CQR, x)
93 #define NVME_CAP_LO_AMS(x) \
94 	NVMEV(NVME_CAP_LO_REG_AMS, x)
95 #define NVME_CAP_LO_TO(x) \
96 	NVMEV(NVME_CAP_LO_REG_TO, x)
97 
98 #define NVME_CAP_HI_REG_DSTRD_SHIFT			(0)
99 #define NVME_CAP_HI_REG_DSTRD_MASK			(0xF)
100 #define NVME_CAP_HI_REG_NSSRS_SHIFT			(4)
101 #define NVME_CAP_HI_REG_NSSRS_MASK			(0x1)
102 #define NVME_CAP_HI_REG_CSS_SHIFT			(5)
103 #define NVME_CAP_HI_REG_CSS_MASK			(0xff)
104 #define NVME_CAP_HI_REG_CSS_NVM_SHIFT			(5)
105 #define NVME_CAP_HI_REG_CSS_NVM_MASK			(0x1)
106 #define NVME_CAP_HI_REG_BPS_SHIFT			(13)
107 #define NVME_CAP_HI_REG_BPS_MASK			(0x1)
108 #define NVME_CAP_HI_REG_CPS_SHIFT			(14)
109 #define NVME_CAP_HI_REG_CPS_MASK			(0x3)
110 #define NVME_CAP_HI_REG_MPSMIN_SHIFT			(16)
111 #define NVME_CAP_HI_REG_MPSMIN_MASK			(0xF)
112 #define NVME_CAP_HI_REG_MPSMAX_SHIFT			(20)
113 #define NVME_CAP_HI_REG_MPSMAX_MASK			(0xF)
114 #define NVME_CAP_HI_REG_PMRS_SHIFT			(24)
115 #define NVME_CAP_HI_REG_PMRS_MASK			(0x1)
116 #define NVME_CAP_HI_REG_CMBS_SHIFT			(25)
117 #define NVME_CAP_HI_REG_CMBS_MASK			(0x1)
118 #define NVME_CAP_HI_REG_NSSS_SHIFT			(26)
119 #define NVME_CAP_HI_REG_NSSS_MASK			(0x1)
120 #define NVME_CAP_HI_REG_CRWMS_SHIFT			(27)
121 #define NVME_CAP_HI_REG_CRWMS_MASK			(0x1)
122 #define NVME_CAP_HI_REG_CRIMS_SHIFT			(28)
123 #define NVME_CAP_HI_REG_CRIMS_MASK			(0x1)
124 #define NVME_CAP_HI_DSTRD(x) \
125 	NVMEV(NVME_CAP_HI_REG_DSTRD, x)
126 #define NVME_CAP_HI_NSSRS(x) \
127 	NVMEV(NVME_CAP_HI_REG_NSSRS, x)
128 #define NVME_CAP_HI_CSS(x) \
129 	NVMEV(NVME_CAP_HI_REG_CSS, x)
130 #define NVME_CAP_HI_CSS_NVM(x) \
131 	NVMEV(NVME_CAP_HI_REG_CSS_NVM, x)
132 #define NVME_CAP_HI_BPS(x) \
133 	NVMEV(NVME_CAP_HI_REG_BPS, x)
134 #define NVME_CAP_HI_CPS(x) \
135 	NVMEV(NVME_CAP_HI_REG_CPS, x)
136 #define NVME_CAP_HI_MPSMIN(x) \
137 	NVMEV(NVME_CAP_HI_REG_MPSMIN, x)
138 #define NVME_CAP_HI_MPSMAX(x) \
139 	NVMEV(NVME_CAP_HI_REG_MPSMAX, x)
140 #define NVME_CAP_HI_PMRS(x) \
141 	NVMEV(NVME_CAP_HI_REG_PMRS, x)
142 #define NVME_CAP_HI_CMBS(x) \
143 	NVMEV(NVME_CAP_HI_REG_CMBS, x)
144 #define NVME_CAP_HI_NSSS(x) \
145 	NVMEV(NVME_CAP_HI_REG_NSSS, x)
146 #define NVME_CAP_HI_CRWMS(x) \
147 	NVMEV(NVME_CAP_HI_REG_CRWMS, x)
148 #define NVME_CAP_HI_CRIMS(x) \
149 	NVMEV(NVME_CAP_HI_REG_CRIMS, x)
150 
151 #define NVME_CC_REG_EN_SHIFT				(0)
152 #define NVME_CC_REG_EN_MASK				(0x1)
153 #define NVME_CC_REG_CSS_SHIFT				(4)
154 #define NVME_CC_REG_CSS_MASK				(0x7)
155 #define NVME_CC_REG_MPS_SHIFT				(7)
156 #define NVME_CC_REG_MPS_MASK				(0xF)
157 #define NVME_CC_REG_AMS_SHIFT				(11)
158 #define NVME_CC_REG_AMS_MASK				(0x7)
159 #define NVME_CC_REG_SHN_SHIFT				(14)
160 #define NVME_CC_REG_SHN_MASK				(0x3)
161 #define NVME_CC_REG_IOSQES_SHIFT			(16)
162 #define NVME_CC_REG_IOSQES_MASK				(0xF)
163 #define NVME_CC_REG_IOCQES_SHIFT			(20)
164 #define NVME_CC_REG_IOCQES_MASK				(0xF)
165 #define NVME_CC_REG_CRIME_SHIFT				(24)
166 #define NVME_CC_REG_CRIME_MASK				(0x1)
167 
168 #define NVME_CSTS_REG_RDY_SHIFT				(0)
169 #define NVME_CSTS_REG_RDY_MASK				(0x1)
170 #define NVME_CSTS_REG_CFS_SHIFT				(1)
171 #define NVME_CSTS_REG_CFS_MASK				(0x1)
172 #define NVME_CSTS_REG_SHST_SHIFT			(2)
173 #define NVME_CSTS_REG_SHST_MASK				(0x3)
174 #define NVME_CSTS_REG_NVSRO_SHIFT			(4)
175 #define NVME_CSTS_REG_NVSRO_MASK			(0x1)
176 #define NVME_CSTS_REG_PP_SHIFT				(5)
177 #define NVME_CSTS_REG_PP_MASK				(0x1)
178 #define NVME_CSTS_REG_ST_SHIFT				(6)
179 #define NVME_CSTS_REG_ST_MASK				(0x1)
180 
181 #define NVME_CSTS_GET_SHST(csts) \
182 	NVMEV(NVME_CSTS_REG_SHST, csts)
183 
184 #define NVME_AQA_REG_ASQS_SHIFT				(0)
185 #define NVME_AQA_REG_ASQS_MASK				(0xFFF)
186 #define NVME_AQA_REG_ACQS_SHIFT				(16)
187 #define NVME_AQA_REG_ACQS_MASK				(0xFFF)
188 
189 #define NVME_PMRCAP_REG_RDS_SHIFT			(3)
190 #define NVME_PMRCAP_REG_RDS_MASK			(0x1)
191 #define NVME_PMRCAP_REG_WDS_SHIFT			(4)
192 #define NVME_PMRCAP_REG_WDS_MASK			(0x1)
193 #define NVME_PMRCAP_REG_BIR_SHIFT			(5)
194 #define NVME_PMRCAP_REG_BIR_MASK			(0x7)
195 #define NVME_PMRCAP_REG_PMRTU_SHIFT			(8)
196 #define NVME_PMRCAP_REG_PMRTU_MASK			(0x3)
197 #define NVME_PMRCAP_REG_PMRWBM_SHIFT			(10)
198 #define NVME_PMRCAP_REG_PMRWBM_MASK			(0xf)
199 #define NVME_PMRCAP_REG_PMRTO_SHIFT			(16)
200 #define NVME_PMRCAP_REG_PMRTO_MASK			(0xff)
201 #define NVME_PMRCAP_REG_CMSS_SHIFT			(24)
202 #define NVME_PMRCAP_REG_CMSS_MASK			(0x1)
203 
204 #define NVME_PMRCAP_RDS(x) \
205 	NVMEV(NVME_PMRCAP_REG_RDS, x)
206 #define NVME_PMRCAP_WDS(x) \
207 	NVMEV(NVME_PMRCAP_REG_WDS, x)
208 #define NVME_PMRCAP_BIR(x) \
209 	NVMEV(NVME_PMRCAP_REG_BIR, x)
210 #define NVME_PMRCAP_PMRTU(x) \
211 	NVMEV(NVME_PMRCAP_REG_PMRTU, x)
212 #define NVME_PMRCAP_PMRWBM(x) \
213 	NVMEV(NVME_PMRCAP_REG_PMRWBM, x)
214 #define NVME_PMRCAP_PMRTO(x) \
215 	NVMEV(NVME_PMRCAP_REG_PMRTO, x)
216 #define NVME_PMRCAP_CMSS(x) \
217 	NVMEV(NVME_PMRCAP_REG_CMSS, x)
218 
219 /* Command field definitions */
220 
221 enum nvme_fuse {
222 	NVME_FUSE_NORMAL				= 0x0,
223 	NVME_FUSE_FIRST					= 0x1,
224 	NVME_FUSE_SECOND				= 0x2
225 };
226 #define NVME_CMD_FUSE_SHIFT				(0)
227 #define NVME_CMD_FUSE_MASK				(0x3)
228 
229 enum nvme_psdt {
230 	NVME_PSDT_PRP					= 0x0,
231 	NVME_PSDT_SGL					= 0x1,
232 	NVME_PSDT_SGL_MPTR				= 0x2
233 };
234 #define	NVME_CMD_PSDT_SHIFT				(6)
235 #define	NVME_CMD_PSDT_MASK				(0x3)
236 
237 /* Create I/O Submission Queue, cdw11 */
238 #define NVME_CREATE_IO_SQ_PC				(0x1)
239 #define NVME_CREATE_IO_SQ_QPRIO_SHIFT			(1)
240 #define NVME_CREATE_IO_SQ_QPRIO_MASK			(0x3)
241 
242 /* Create I/O Completion Queue, cdw11 */
243 #define NVME_CREATE_IO_CQ_PC				(0x1)
244 #define NVME_CREATE_IO_CQ_IEN				(0x2)
245 
246 /* Queue priority classes, used with weighted round robin arbitration. */
247 #define NVME_QPRIO_URGENT				(0)
248 #define NVME_QPRIO_HIGH					(1)
249 #define NVME_QPRIO_MEDIUM				(2)
250 #define NVME_QPRIO_LOW					(3)
251 
252 #define NVME_STATUS_P_SHIFT				(0)
253 #define NVME_STATUS_P_MASK				(0x1)
254 #define NVME_STATUS_SC_SHIFT				(1)
255 #define NVME_STATUS_SC_MASK				(0xFF)
256 #define NVME_STATUS_SCT_SHIFT				(9)
257 #define NVME_STATUS_SCT_MASK				(0x7)
258 #define NVME_STATUS_CRD_SHIFT				(12)
259 #define NVME_STATUS_CRD_MASK				(0x3)
260 #define NVME_STATUS_M_SHIFT				(14)
261 #define NVME_STATUS_M_MASK				(0x1)
262 #define NVME_STATUS_DNR_SHIFT				(15)
263 #define NVME_STATUS_DNR_MASK				(0x1)
264 
265 #define NVME_STATUS_GET_P(st) \
266 	NVMEV(NVME_STATUS_P, st)
267 #define NVME_STATUS_GET_SC(st) \
268 	NVMEV(NVME_STATUS_SC, st)
269 #define NVME_STATUS_GET_SCT(st) \
270 	NVMEV(NVME_STATUS_SCT, st)
271 #define NVME_STATUS_GET_CRD(st) \
272 	NVMEV(NVME_STATUS_CRD, st)
273 #define NVME_STATUS_GET_M(st) \
274 	NVMEV(NVME_STATUS_M, st)
275 #define NVME_STATUS_GET_DNR(st) \
276 	NVMEV(NVME_STATUS_DNR, st)
277 
278 #define NVME_PWR_ST_MPS_SHIFT				(0)
279 #define NVME_PWR_ST_MPS_MASK				(0x1)
280 #define NVME_PWR_ST_NOPS_SHIFT				(1)
281 #define NVME_PWR_ST_NOPS_MASK				(0x1)
282 #define NVME_PWR_ST_RRT_SHIFT				(0)
283 #define NVME_PWR_ST_RRT_MASK				(0x1F)
284 #define NVME_PWR_ST_RRL_SHIFT				(0)
285 #define NVME_PWR_ST_RRL_MASK				(0x1F)
286 #define NVME_PWR_ST_RWT_SHIFT				(0)
287 #define NVME_PWR_ST_RWT_MASK				(0x1F)
288 #define NVME_PWR_ST_RWL_SHIFT				(0)
289 #define NVME_PWR_ST_RWL_MASK				(0x1F)
290 #define NVME_PWR_ST_IPS_SHIFT				(6)
291 #define NVME_PWR_ST_IPS_MASK				(0x3)
292 #define NVME_PWR_ST_APW_SHIFT				(0)
293 #define NVME_PWR_ST_APW_MASK				(0x7)
294 #define NVME_PWR_ST_APS_SHIFT				(6)
295 #define NVME_PWR_ST_APS_MASK				(0x3)
296 
297 /** Controller Multi-path I/O and Namespace Sharing Capabilities */
298 /* More then one port */
299 #define NVME_CTRLR_DATA_MIC_MPORTS_SHIFT		(0)
300 #define NVME_CTRLR_DATA_MIC_MPORTS_MASK			(0x1)
301 /* More then one controller */
302 #define NVME_CTRLR_DATA_MIC_MCTRLRS_SHIFT		(1)
303 #define NVME_CTRLR_DATA_MIC_MCTRLRS_MASK		(0x1)
304 /* SR-IOV Virtual Function */
305 #define NVME_CTRLR_DATA_MIC_SRIOVVF_SHIFT		(2)
306 #define NVME_CTRLR_DATA_MIC_SRIOVVF_MASK		(0x1)
307 /* Asymmetric Namespace Access Reporting */
308 #define NVME_CTRLR_DATA_MIC_ANAR_SHIFT			(3)
309 #define NVME_CTRLR_DATA_MIC_ANAR_MASK			(0x1)
310 
311 /** OAES - Optional Asynchronous Events Supported */
312 /* supports Namespace Attribute Notices event */
313 #define NVME_CTRLR_DATA_OAES_NS_ATTR_SHIFT		(8)
314 #define NVME_CTRLR_DATA_OAES_NS_ATTR_MASK		(0x1)
315 /* supports Firmware Activation Notices event */
316 #define NVME_CTRLR_DATA_OAES_FW_ACTIVATE_SHIFT		(9)
317 #define NVME_CTRLR_DATA_OAES_FW_ACTIVATE_MASK		(0x1)
318 /* supports Asymmetric Namespace Access Change Notices event */
319 #define NVME_CTRLR_DATA_OAES_ASYM_NS_CHANGE_SHIFT	(11)
320 #define NVME_CTRLR_DATA_OAES_ASYM_NS_CHANGE_MASK	(0x1)
321 /* supports Predictable Latency Event Aggregate Log Change Notices event */
322 #define NVME_CTRLR_DATA_OAES_PREDICT_LATENCY_SHIFT	(12)
323 #define NVME_CTRLR_DATA_OAES_PREDICT_LATENCY_MASK	(0x1)
324 /* supports LBA Status Information Notices event */
325 #define NVME_CTRLR_DATA_OAES_LBA_STATUS_SHIFT		(13)
326 #define NVME_CTRLR_DATA_OAES_LBA_STATUS_MASK		(0x1)
327 /* supports Endurance Group Event Aggregate Log Page Changes Notices event */
328 #define NVME_CTRLR_DATA_OAES_ENDURANCE_GROUP_SHIFT	(14)
329 #define NVME_CTRLR_DATA_OAES_ENDURANCE_GROUP_MASK	(0x1)
330 /* supports Normal NVM Subsystem Shutdown event */
331 #define NVME_CTRLR_DATA_OAES_NORMAL_SHUTDOWN_SHIFT	(15)
332 #define NVME_CTRLR_DATA_OAES_NORMAL_SHUTDOWN_MASK	(0x1)
333 /* supports Zone Descriptor Changed Notices event */
334 #define NVME_CTRLR_DATA_OAES_ZONE_DESC_CHANGE_SHIFT	(27)
335 #define NVME_CTRLR_DATA_OAES_ZONE_DESC_CHANGE_MASK	(0x1)
336 /* supports Discovery Log Page Change Notification event */
337 #define NVME_CTRLR_DATA_OAES_LOG_PAGE_CHANGE_SHIFT	(31)
338 #define NVME_CTRLR_DATA_OAES_LOG_PAGE_CHANGE_MASK	(0x1)
339 
340 /** CTRATT - Controller Attributes */
341 /* supports 128-bit Host Identifier */
342 #define NVME_CTRLR_DATA_CTRATT_128BIT_HOSTID_SHIFT	(0)
343 #define NVME_CTRLR_DATA_CTRATT_128BIT_HOSTID_MASK	(0x1)
344 /* supports Non-Operational Power State Permissive Mode */
345 #define NVME_CTRLR_DATA_CTRATT_NONOP_POWER_STATE_SHIFT	(1)
346 #define NVME_CTRLR_DATA_CTRATT_NONOP_POWER_STATE_MASK	(0x1)
347 /* supports NVM Sets */
348 #define NVME_CTRLR_DATA_CTRATT_NVM_SETS_SHIFT		(2)
349 #define NVME_CTRLR_DATA_CTRATT_NVM_SETS_MASK		(0x1)
350 /* supports Read Recovery Levels */
351 #define NVME_CTRLR_DATA_CTRATT_READ_RECOVERY_LVLS_SHIFT	(3)
352 #define NVME_CTRLR_DATA_CTRATT_READ_RECOVERY_LVLS_MASK	(0x1)
353 /* supports Endurance Groups */
354 #define NVME_CTRLR_DATA_CTRATT_ENDURANCE_GROUPS_SHIFT	(4)
355 #define NVME_CTRLR_DATA_CTRATT_ENDURANCE_GROUPS_MASK	(0x1)
356 /* supports Predictable Latency Mode */
357 #define NVME_CTRLR_DATA_CTRATT_PREDICTABLE_LATENCY_SHIFT (5)
358 #define NVME_CTRLR_DATA_CTRATT_PREDICTABLE_LATENCY_MASK	(0x1)
359 /* supports Traffic Based Keep Alive Support */
360 #define NVME_CTRLR_DATA_CTRATT_TBKAS_SHIFT		(6)
361 #define NVME_CTRLR_DATA_CTRATT_TBKAS_MASK		(0x1)
362 /* supports Namespace Granularity */
363 #define NVME_CTRLR_DATA_CTRATT_NAMESPACE_GRANULARITY_SHIFT (7)
364 #define NVME_CTRLR_DATA_CTRATT_NAMESPACE_GRANULARITY_MASK (0x1)
365 /* supports SQ Associations */
366 #define NVME_CTRLR_DATA_CTRATT_SQ_ASSOCIATIONS_SHIFT	(8)
367 #define NVME_CTRLR_DATA_CTRATT_SQ_ASSOCIATIONS_MASK	(0x1)
368 /* supports UUID List */
369 #define NVME_CTRLR_DATA_CTRATT_UUID_LIST_SHIFT		(9)
370 #define NVME_CTRLR_DATA_CTRATT_UUID_LIST_MASK		(0x1)
371 
372 /** OACS - optional admin command support */
373 /* supports security send/receive commands */
374 #define NVME_CTRLR_DATA_OACS_SECURITY_SHIFT		(0)
375 #define NVME_CTRLR_DATA_OACS_SECURITY_MASK		(0x1)
376 /* supports format nvm command */
377 #define NVME_CTRLR_DATA_OACS_FORMAT_SHIFT		(1)
378 #define NVME_CTRLR_DATA_OACS_FORMAT_MASK		(0x1)
379 /* supports firmware activate/download commands */
380 #define NVME_CTRLR_DATA_OACS_FIRMWARE_SHIFT		(2)
381 #define NVME_CTRLR_DATA_OACS_FIRMWARE_MASK		(0x1)
382 /* supports namespace management commands */
383 #define NVME_CTRLR_DATA_OACS_NSMGMT_SHIFT		(3)
384 #define NVME_CTRLR_DATA_OACS_NSMGMT_MASK		(0x1)
385 /* supports Device Self-test command */
386 #define NVME_CTRLR_DATA_OACS_SELFTEST_SHIFT		(4)
387 #define NVME_CTRLR_DATA_OACS_SELFTEST_MASK		(0x1)
388 /* supports Directives */
389 #define NVME_CTRLR_DATA_OACS_DIRECTIVES_SHIFT		(5)
390 #define NVME_CTRLR_DATA_OACS_DIRECTIVES_MASK		(0x1)
391 /* supports NVMe-MI Send/Receive */
392 #define NVME_CTRLR_DATA_OACS_NVMEMI_SHIFT		(6)
393 #define NVME_CTRLR_DATA_OACS_NVMEMI_MASK		(0x1)
394 /* supports Virtualization Management */
395 #define NVME_CTRLR_DATA_OACS_VM_SHIFT			(7)
396 #define NVME_CTRLR_DATA_OACS_VM_MASK			(0x1)
397 /* supports Doorbell Buffer Config */
398 #define NVME_CTRLR_DATA_OACS_DBBUFFER_SHIFT		(8)
399 #define NVME_CTRLR_DATA_OACS_DBBUFFER_MASK		(0x1)
400 /* supports Get LBA Status */
401 #define NVME_CTRLR_DATA_OACS_GETLBA_SHIFT		(9)
402 #define NVME_CTRLR_DATA_OACS_GETLBA_MASK		(0x1)
403 
404 /** firmware updates */
405 /* first slot is read-only */
406 #define NVME_CTRLR_DATA_FRMW_SLOT1_RO_SHIFT		(0)
407 #define NVME_CTRLR_DATA_FRMW_SLOT1_RO_MASK		(0x1)
408 /* number of firmware slots */
409 #define NVME_CTRLR_DATA_FRMW_NUM_SLOTS_SHIFT		(1)
410 #define NVME_CTRLR_DATA_FRMW_NUM_SLOTS_MASK		(0x7)
411 /* firmware activation without reset */
412 #define NVME_CTRLR_DATA_FRMW_ACT_WO_RESET_SHIFT		(4)
413 #define NVME_CTRLR_DATA_FRMW_ACT_WO_RESET_MASK		(0x1)
414 
415 /** log page attributes */
416 /* per namespace smart/health log page */
417 #define NVME_CTRLR_DATA_LPA_NS_SMART_SHIFT		(0)
418 #define NVME_CTRLR_DATA_LPA_NS_SMART_MASK		(0x1)
419 /* Commands Supported and Effects log page */
420 #define NVME_CTRLR_DATA_LPA_CMD_EFFECTS_SHIFT		(1)
421 #define NVME_CTRLR_DATA_LPA_CMD_EFFECTS_MASK		(0x1)
422 /* extended data for Get Log Page command */
423 #define NVME_CTRLR_DATA_LPA_EXT_DATA_SHIFT		(2)
424 #define NVME_CTRLR_DATA_LPA_EXT_DATA_MASK		(0x1)
425 /* telemetry */
426 #define NVME_CTRLR_DATA_LPA_TELEMETRY_SHIFT		(3)
427 #define NVME_CTRLR_DATA_LPA_TELEMETRY_MASK		(0x1)
428 /* persistent event */
429 #define NVME_CTRLR_DATA_LPA_PERSISTENT_EVENT_SHIFT	(4)
430 #define NVME_CTRLR_DATA_LPA_PERSISTENT_EVENT_MASK	(0x1)
431 /* Supported log pages, etc */
432 #define NVME_CTRLR_DATA_LPA_LOG_PAGES_PAGE_SHIFT	(5)
433 #define NVME_CTRLR_DATA_LPA_LOG_PAGES_PAGE_MASK		(0x1)
434 /* Data Area 4 for Telemetry */
435 #define NVME_CTRLR_DATA_LPA_DA4_TELEMETRY_SHIFT		(6)
436 #define NVME_CTRLR_DATA_LPA_DA4_TELEMETRY_MASK		(0x1)
437 
438 /** AVSCC - admin vendor specific command configuration */
439 /* admin vendor specific commands use spec format */
440 #define NVME_CTRLR_DATA_AVSCC_SPEC_FORMAT_SHIFT		(0)
441 #define NVME_CTRLR_DATA_AVSCC_SPEC_FORMAT_MASK		(0x1)
442 
443 /** Autonomous Power State Transition Attributes */
444 /* Autonomous Power State Transitions supported */
445 #define NVME_CTRLR_DATA_APSTA_APST_SUPP_SHIFT		(0)
446 #define NVME_CTRLR_DATA_APSTA_APST_SUPP_MASK		(0x1)
447 
448 /** Sanitize Capabilities */
449 /* Crypto Erase Support  */
450 #define NVME_CTRLR_DATA_SANICAP_CES_SHIFT		(0)
451 #define NVME_CTRLR_DATA_SANICAP_CES_MASK		(0x1)
452 /* Block Erase Support */
453 #define NVME_CTRLR_DATA_SANICAP_BES_SHIFT		(1)
454 #define NVME_CTRLR_DATA_SANICAP_BES_MASK		(0x1)
455 /* Overwrite Support */
456 #define NVME_CTRLR_DATA_SANICAP_OWS_SHIFT		(2)
457 #define NVME_CTRLR_DATA_SANICAP_OWS_MASK		(0x1)
458 /* No-Deallocate Inhibited  */
459 #define NVME_CTRLR_DATA_SANICAP_NDI_SHIFT		(29)
460 #define NVME_CTRLR_DATA_SANICAP_NDI_MASK		(0x1)
461 /* No-Deallocate Modifies Media After Sanitize */
462 #define NVME_CTRLR_DATA_SANICAP_NODMMAS_SHIFT		(30)
463 #define NVME_CTRLR_DATA_SANICAP_NODMMAS_MASK		(0x3)
464 #define NVME_CTRLR_DATA_SANICAP_NODMMAS_UNDEF		(0)
465 #define NVME_CTRLR_DATA_SANICAP_NODMMAS_NO		(1)
466 #define NVME_CTRLR_DATA_SANICAP_NODMMAS_YES		(2)
467 
468 /** submission queue entry size */
469 #define NVME_CTRLR_DATA_SQES_MIN_SHIFT			(0)
470 #define NVME_CTRLR_DATA_SQES_MIN_MASK			(0xF)
471 #define NVME_CTRLR_DATA_SQES_MAX_SHIFT			(4)
472 #define NVME_CTRLR_DATA_SQES_MAX_MASK			(0xF)
473 
474 /** completion queue entry size */
475 #define NVME_CTRLR_DATA_CQES_MIN_SHIFT			(0)
476 #define NVME_CTRLR_DATA_CQES_MIN_MASK			(0xF)
477 #define NVME_CTRLR_DATA_CQES_MAX_SHIFT			(4)
478 #define NVME_CTRLR_DATA_CQES_MAX_MASK			(0xF)
479 
480 /** optional nvm command support */
481 #define NVME_CTRLR_DATA_ONCS_COMPARE_SHIFT		(0)
482 #define NVME_CTRLR_DATA_ONCS_COMPARE_MASK		(0x1)
483 #define NVME_CTRLR_DATA_ONCS_WRITE_UNC_SHIFT		(1)
484 #define NVME_CTRLR_DATA_ONCS_WRITE_UNC_MASK		(0x1)
485 #define NVME_CTRLR_DATA_ONCS_DSM_SHIFT			(2)
486 #define NVME_CTRLR_DATA_ONCS_DSM_MASK			(0x1)
487 #define NVME_CTRLR_DATA_ONCS_WRZERO_SHIFT		(3)
488 #define NVME_CTRLR_DATA_ONCS_WRZERO_MASK		(0x1)
489 #define NVME_CTRLR_DATA_ONCS_SAVEFEAT_SHIFT		(4)
490 #define NVME_CTRLR_DATA_ONCS_SAVEFEAT_MASK		(0x1)
491 #define NVME_CTRLR_DATA_ONCS_RESERV_SHIFT		(5)
492 #define NVME_CTRLR_DATA_ONCS_RESERV_MASK		(0x1)
493 #define NVME_CTRLR_DATA_ONCS_TIMESTAMP_SHIFT		(6)
494 #define NVME_CTRLR_DATA_ONCS_TIMESTAMP_MASK		(0x1)
495 #define NVME_CTRLR_DATA_ONCS_VERIFY_SHIFT		(7)
496 #define NVME_CTRLR_DATA_ONCS_VERIFY_MASK		(0x1)
497 
498 /** Fused Operation Support */
499 #define NVME_CTRLR_DATA_FUSES_CNW_SHIFT		(0)
500 #define NVME_CTRLR_DATA_FUSES_CNW_MASK		(0x1)
501 
502 /** Format NVM Attributes */
503 #define NVME_CTRLR_DATA_FNA_FORMAT_ALL_SHIFT		(0)
504 #define NVME_CTRLR_DATA_FNA_FORMAT_ALL_MASK		(0x1)
505 #define NVME_CTRLR_DATA_FNA_ERASE_ALL_SHIFT		(1)
506 #define NVME_CTRLR_DATA_FNA_ERASE_ALL_MASK		(0x1)
507 #define NVME_CTRLR_DATA_FNA_CRYPTO_ERASE_SHIFT		(2)
508 #define NVME_CTRLR_DATA_FNA_CRYPTO_ERASE_MASK		(0x1)
509 
510 /** volatile write cache */
511 /* volatile write cache present */
512 #define NVME_CTRLR_DATA_VWC_PRESENT_SHIFT		(0)
513 #define NVME_CTRLR_DATA_VWC_PRESENT_MASK		(0x1)
514 /* flush all namespaces supported */
515 #define NVME_CTRLR_DATA_VWC_ALL_SHIFT			(1)
516 #define NVME_CTRLR_DATA_VWC_ALL_MASK			(0x3)
517 #define NVME_CTRLR_DATA_VWC_ALL_UNKNOWN			(0)
518 #define NVME_CTRLR_DATA_VWC_ALL_NO			(2)
519 #define NVME_CTRLR_DATA_VWC_ALL_YES			(3)
520 
521 /** SGL Support */
522 /* NVM command set SGL support */
523 #define	NVME_CTRLR_DATA_SGLS_NVM_COMMAND_SET_SHIFT	(0)
524 #define	NVME_CTRLR_DATA_SGLS_NVM_COMMAND_SET_MASK	(0x3)
525 #define	NVME_CTRLR_DATA_SGLS_KEYED_DATA_BLOCK_SHIFT	(2)
526 #define	NVME_CTRLR_DATA_SGLS_KEYED_DATA_BLOCK_MASK	(0x1)
527 #define	NVME_CTRLR_DATA_SGLS_BIT_BUCKET_SHIFT		(16)
528 #define	NVME_CTRLR_DATA_SGLS_BIT_BUCKET_MASK		(0x1)
529 #define	NVME_CTRLR_DATA_SGLS_CONTIG_MPTR_SHIFT		(17)
530 #define	NVME_CTRLR_DATA_SGLS_CONTIG_MPTR_MASK		(0x1)
531 #define	NVME_CTRLR_DATA_SGLS_OVERSIZED_SHIFT		(18)
532 #define	NVME_CTRLR_DATA_SGLS_OVERSIZED_MASK		(0x1)
533 #define	NVME_CTRLR_DATA_SGLS_MPTR_SGL_SHIFT		(19)
534 #define	NVME_CTRLR_DATA_SGLS_MPTR_SGL_MASK		(0x1)
535 #define	NVME_CTRLR_DATA_SGLS_ADDRESS_AS_OFFSET_SHIFT	(20)
536 #define	NVME_CTRLR_DATA_SGLS_ADDRESS_AS_OFFSET_MASK	(0x1)
537 #define	NVME_CTRLR_DATA_SGLS_TRANSPORT_DATA_BLOCK_SHIFT	(21)
538 #define	NVME_CTRLR_DATA_SGLS_TRANSPORT_DATA_BLOCK_MASK	(0x1)
539 
540 /** namespace features */
541 /* thin provisioning */
542 #define NVME_NS_DATA_NSFEAT_THIN_PROV_SHIFT		(0)
543 #define NVME_NS_DATA_NSFEAT_THIN_PROV_MASK		(0x1)
544 /* NAWUN, NAWUPF, and NACWU fields are valid */
545 #define NVME_NS_DATA_NSFEAT_NA_FIELDS_SHIFT		(1)
546 #define NVME_NS_DATA_NSFEAT_NA_FIELDS_MASK		(0x1)
547 /* Deallocated or Unwritten Logical Block errors supported */
548 #define NVME_NS_DATA_NSFEAT_DEALLOC_SHIFT		(2)
549 #define NVME_NS_DATA_NSFEAT_DEALLOC_MASK		(0x1)
550 /* NGUID and EUI64 fields are not reusable */
551 #define NVME_NS_DATA_NSFEAT_NO_ID_REUSE_SHIFT		(3)
552 #define NVME_NS_DATA_NSFEAT_NO_ID_REUSE_MASK		(0x1)
553 /* NPWG, NPWA, NPDG, NPDA, and NOWS are valid */
554 #define NVME_NS_DATA_NSFEAT_NPVALID_SHIFT		(4)
555 #define NVME_NS_DATA_NSFEAT_NPVALID_MASK		(0x1)
556 
557 /** formatted lba size */
558 #define NVME_NS_DATA_FLBAS_FORMAT_SHIFT			(0)
559 #define NVME_NS_DATA_FLBAS_FORMAT_MASK			(0xF)
560 #define NVME_NS_DATA_FLBAS_EXTENDED_SHIFT		(4)
561 #define NVME_NS_DATA_FLBAS_EXTENDED_MASK		(0x1)
562 
563 /** metadata capabilities */
564 /* metadata can be transferred as part of data prp list */
565 #define NVME_NS_DATA_MC_EXTENDED_SHIFT			(0)
566 #define NVME_NS_DATA_MC_EXTENDED_MASK			(0x1)
567 /* metadata can be transferred with separate metadata pointer */
568 #define NVME_NS_DATA_MC_POINTER_SHIFT			(1)
569 #define NVME_NS_DATA_MC_POINTER_MASK			(0x1)
570 
571 /** end-to-end data protection capabilities */
572 /* protection information type 1 */
573 #define NVME_NS_DATA_DPC_PIT1_SHIFT			(0)
574 #define NVME_NS_DATA_DPC_PIT1_MASK			(0x1)
575 /* protection information type 2 */
576 #define NVME_NS_DATA_DPC_PIT2_SHIFT			(1)
577 #define NVME_NS_DATA_DPC_PIT2_MASK			(0x1)
578 /* protection information type 3 */
579 #define NVME_NS_DATA_DPC_PIT3_SHIFT			(2)
580 #define NVME_NS_DATA_DPC_PIT3_MASK			(0x1)
581 /* first eight bytes of metadata */
582 #define NVME_NS_DATA_DPC_MD_START_SHIFT			(3)
583 #define NVME_NS_DATA_DPC_MD_START_MASK			(0x1)
584 /* last eight bytes of metadata */
585 #define NVME_NS_DATA_DPC_MD_END_SHIFT			(4)
586 #define NVME_NS_DATA_DPC_MD_END_MASK			(0x1)
587 
588 /** end-to-end data protection type settings */
589 /* protection information type */
590 #define NVME_NS_DATA_DPS_PIT_SHIFT			(0)
591 #define NVME_NS_DATA_DPS_PIT_MASK			(0x7)
592 /* 1 == protection info transferred at start of metadata */
593 /* 0 == protection info transferred at end of metadata */
594 #define NVME_NS_DATA_DPS_MD_START_SHIFT			(3)
595 #define NVME_NS_DATA_DPS_MD_START_MASK			(0x1)
596 
597 /** Namespace Multi-path I/O and Namespace Sharing Capabilities */
598 /* the namespace may be attached to two or more controllers */
599 #define NVME_NS_DATA_NMIC_MAY_BE_SHARED_SHIFT		(0)
600 #define NVME_NS_DATA_NMIC_MAY_BE_SHARED_MASK		(0x1)
601 
602 /** Reservation Capabilities */
603 /* Persist Through Power Loss */
604 #define NVME_NS_DATA_RESCAP_PTPL_SHIFT		(0)
605 #define NVME_NS_DATA_RESCAP_PTPL_MASK		(0x1)
606 /* supports the Write Exclusive */
607 #define NVME_NS_DATA_RESCAP_WR_EX_SHIFT		(1)
608 #define NVME_NS_DATA_RESCAP_WR_EX_MASK		(0x1)
609 /* supports the Exclusive Access */
610 #define NVME_NS_DATA_RESCAP_EX_AC_SHIFT		(2)
611 #define NVME_NS_DATA_RESCAP_EX_AC_MASK		(0x1)
612 /* supports the Write Exclusive – Registrants Only */
613 #define NVME_NS_DATA_RESCAP_WR_EX_RO_SHIFT	(3)
614 #define NVME_NS_DATA_RESCAP_WR_EX_RO_MASK	(0x1)
615 /* supports the Exclusive Access - Registrants Only */
616 #define NVME_NS_DATA_RESCAP_EX_AC_RO_SHIFT	(4)
617 #define NVME_NS_DATA_RESCAP_EX_AC_RO_MASK	(0x1)
618 /* supports the Write Exclusive – All Registrants */
619 #define NVME_NS_DATA_RESCAP_WR_EX_AR_SHIFT	(5)
620 #define NVME_NS_DATA_RESCAP_WR_EX_AR_MASK	(0x1)
621 /* supports the Exclusive Access - All Registrants */
622 #define NVME_NS_DATA_RESCAP_EX_AC_AR_SHIFT	(6)
623 #define NVME_NS_DATA_RESCAP_EX_AC_AR_MASK	(0x1)
624 /* Ignore Existing Key is used as defined in revision 1.3 or later */
625 #define NVME_NS_DATA_RESCAP_IEKEY13_SHIFT	(7)
626 #define NVME_NS_DATA_RESCAP_IEKEY13_MASK	(0x1)
627 
628 /** Format Progress Indicator */
629 /* percentage of the Format NVM command that remains to be completed */
630 #define NVME_NS_DATA_FPI_PERC_SHIFT		(0)
631 #define NVME_NS_DATA_FPI_PERC_MASK		(0x7f)
632 /* namespace supports the Format Progress Indicator */
633 #define NVME_NS_DATA_FPI_SUPP_SHIFT		(7)
634 #define NVME_NS_DATA_FPI_SUPP_MASK		(0x1)
635 
636 /** Deallocate Logical Block Features */
637 /* deallocated logical block read behavior */
638 #define NVME_NS_DATA_DLFEAT_READ_SHIFT		(0)
639 #define NVME_NS_DATA_DLFEAT_READ_MASK		(0x07)
640 #define NVME_NS_DATA_DLFEAT_READ_NR		(0x00)
641 #define NVME_NS_DATA_DLFEAT_READ_00		(0x01)
642 #define NVME_NS_DATA_DLFEAT_READ_FF		(0x02)
643 /* supports the Deallocate bit in the Write Zeroes */
644 #define NVME_NS_DATA_DLFEAT_DWZ_SHIFT		(3)
645 #define NVME_NS_DATA_DLFEAT_DWZ_MASK		(0x01)
646 /* Guard field for deallocated logical blocks is set to the CRC  */
647 #define NVME_NS_DATA_DLFEAT_GCRC_SHIFT		(4)
648 #define NVME_NS_DATA_DLFEAT_GCRC_MASK		(0x01)
649 
650 /** lba format support */
651 /* metadata size */
652 #define NVME_NS_DATA_LBAF_MS_SHIFT			(0)
653 #define NVME_NS_DATA_LBAF_MS_MASK			(0xFFFF)
654 /* lba data size */
655 #define NVME_NS_DATA_LBAF_LBADS_SHIFT			(16)
656 #define NVME_NS_DATA_LBAF_LBADS_MASK			(0xFF)
657 /* relative performance */
658 #define NVME_NS_DATA_LBAF_RP_SHIFT			(24)
659 #define NVME_NS_DATA_LBAF_RP_MASK			(0x3)
660 
661 enum nvme_critical_warning_state {
662 	NVME_CRIT_WARN_ST_AVAILABLE_SPARE		= 0x1,
663 	NVME_CRIT_WARN_ST_TEMPERATURE			= 0x2,
664 	NVME_CRIT_WARN_ST_DEVICE_RELIABILITY		= 0x4,
665 	NVME_CRIT_WARN_ST_READ_ONLY			= 0x8,
666 	NVME_CRIT_WARN_ST_VOLATILE_MEMORY_BACKUP	= 0x10,
667 	NVME_CRIT_WARN_ST_PERSISTENT_MEMORY_REGION	= 0x20,
668 };
669 #define NVME_CRIT_WARN_ST_RESERVED_MASK			(0xC0)
670 #define	NVME_ASYNC_EVENT_NS_ATTRIBUTE			(1U << 8)
671 #define	NVME_ASYNC_EVENT_FW_ACTIVATE			(1U << 9)
672 #define	NVME_ASYNC_EVENT_TELEMETRY_LOG			(1U << 10)
673 #define	NVME_ASYNC_EVENT_ASYM_NS_ACC			(1U << 11)
674 #define	NVME_ASYNC_EVENT_PRED_LAT_DELTA			(1U << 12)
675 #define	NVME_ASYNC_EVENT_LBA_STATUS			(1U << 13)
676 #define	NVME_ASYNC_EVENT_ENDURANCE_DELTA		(1U << 14)
677 #define	NVME_ASYNC_EVENT_NVM_SHUTDOWN			(1U << 15)
678 #define	NVME_ASYNC_EVENT_ZONE_DELTA			(1U << 27)
679 #define	NVME_ASYNC_EVENT_DISCOVERY_DELTA		(1U << 31)
680 
681 /* slot for current FW */
682 #define NVME_FIRMWARE_PAGE_AFI_SLOT_SHIFT		(0)
683 #define NVME_FIRMWARE_PAGE_AFI_SLOT_MASK		(0x7)
684 
685 /* Commands Supported and Effects */
686 #define	NVME_CE_PAGE_CSUP_SHIFT				(0)
687 #define	NVME_CE_PAGE_CSUP_MASK				(0x1)
688 #define	NVME_CE_PAGE_LBCC_SHIFT				(1)
689 #define	NVME_CE_PAGE_LBCC_MASK				(0x1)
690 #define	NVME_CE_PAGE_NCC_SHIFT				(2)
691 #define	NVME_CE_PAGE_NCC_MASK				(0x1)
692 #define	NVME_CE_PAGE_NIC_SHIFT				(3)
693 #define	NVME_CE_PAGE_NIC_MASK				(0x1)
694 #define	NVME_CE_PAGE_CCC_SHIFT				(4)
695 #define	NVME_CE_PAGE_CCC_MASK				(0x1)
696 #define	NVME_CE_PAGE_CSE_SHIFT				(16)
697 #define	NVME_CE_PAGE_CSE_MASK				(0x7)
698 #define	NVME_CE_PAGE_UUID_SHIFT				(19)
699 #define	NVME_CE_PAGE_UUID_MASK				(0x1)
700 
701 /* Sanitize Status */
702 #define	NVME_SS_PAGE_SSTAT_STATUS_SHIFT			(0)
703 #define	NVME_SS_PAGE_SSTAT_STATUS_MASK			(0x7)
704 #define	NVME_SS_PAGE_SSTAT_STATUS_NEVER			(0)
705 #define	NVME_SS_PAGE_SSTAT_STATUS_COMPLETED		(1)
706 #define	NVME_SS_PAGE_SSTAT_STATUS_INPROG		(2)
707 #define	NVME_SS_PAGE_SSTAT_STATUS_FAILED		(3)
708 #define	NVME_SS_PAGE_SSTAT_STATUS_COMPLETEDWD		(4)
709 #define	NVME_SS_PAGE_SSTAT_PASSES_SHIFT			(3)
710 #define	NVME_SS_PAGE_SSTAT_PASSES_MASK			(0x1f)
711 #define	NVME_SS_PAGE_SSTAT_GDE_SHIFT			(8)
712 #define	NVME_SS_PAGE_SSTAT_GDE_MASK			(0x1)
713 
714 /* Features */
715 /* Get Features */
716 #define NVME_FEAT_GET_SEL_SHIFT				(8)
717 #define NVME_FEAT_GET_SEL_MASK				(0x7)
718 #define NVME_FEAT_GET_FID_SHIFT				(0)
719 #define NVME_FEAT_GET_FID_MASK				(0xff)
720 
721 /* Set Features */
722 #define NVME_FEAT_SET_SV_SHIFT				(31)
723 #define NVME_FEAT_SET_SV_MASK				(0x1)
724 #define NVME_FEAT_SET_FID_SHIFT				(0)
725 #define NVME_FEAT_SET_FID_MASK				(0xff)
726 
727 /* Async Events */
728 #define	NVME_ASYNC_EVENT_TYPE_SHIFT			(0)
729 #define	NVME_ASYNC_EVENT_TYPE_MASK			(0x7)
730 #define	NVME_ASYNC_EVENT_INFO_SHIFT			(8)
731 #define	NVME_ASYNC_EVENT_INFO_MASK			(0xff)
732 #define	NVME_ASYNC_EVENT_LOG_PAGE_ID_SHIFT		(16)
733 #define	NVME_ASYNC_EVENT_LOG_PAGE_ID_MASK		(0xff)
734 
735 /* Helper macro to combine *_MASK and *_SHIFT defines */
736 #define NVMEM(name)	(name##_MASK << name##_SHIFT)
737 
738 /* Helper macro to extract value from x */
739 #define NVMEV(name, x)  (((x) >> name##_SHIFT) & name##_MASK)
740 
741 /* Helper macro to construct a field value */
742 #define	NVMEF(name, x)	(((x) & name##_MASK) << name##_SHIFT)
743 
744 /* CC register SHN field values */
745 enum shn_value {
746 	NVME_SHN_NORMAL		= 0x1,
747 	NVME_SHN_ABRUPT		= 0x2,
748 };
749 
750 /* CSTS register SHST field values */
751 enum shst_value {
752 	NVME_SHST_NORMAL	= 0x0,
753 	NVME_SHST_OCCURRING	= 0x1,
754 	NVME_SHST_COMPLETE	= 0x2,
755 };
756 
757 struct nvme_registers {
758 	uint32_t	cap_lo; /* controller capabilities */
759 	uint32_t	cap_hi;
760 	uint32_t	vs;	/* version */
761 	uint32_t	intms;	/* interrupt mask set */
762 	uint32_t	intmc;	/* interrupt mask clear */
763 	uint32_t	cc;	/* controller configuration */
764 	uint32_t	reserved1;
765 	uint32_t	csts;	/* controller status */
766 	uint32_t	nssr;	/* NVM Subsystem Reset */
767 	uint32_t	aqa;	/* admin queue attributes */
768 	uint64_t	asq;	/* admin submission queue base addr */
769 	uint64_t	acq;	/* admin completion queue base addr */
770 	uint32_t	cmbloc;	/* Controller Memory Buffer Location */
771 	uint32_t	cmbsz;	/* Controller Memory Buffer Size */
772 	uint32_t	bpinfo;	/* Boot Partition Information */
773 	uint32_t	bprsel;	/* Boot Partition Read Select */
774 	uint64_t	bpmbl;	/* Boot Partition Memory Buffer Location */
775 	uint64_t	cmbmsc;	/* Controller Memory Buffer Memory Space Control */
776 	uint32_t	cmbsts;	/* Controller Memory Buffer Status */
777 	uint32_t	cmbebs;	/* Controller Memory Buffer Elasticity Buffer Size */
778 	uint32_t	cmbswtp;/* Controller Memory Buffer Sustained Write Throughput */
779 	uint32_t	nssd;	/* NVM Subsystem Shutdown */
780 	uint32_t	crto;	/* Controller Ready Timeouts */
781 	uint8_t		reserved3[3476]; /* 6Ch - DFFh */
782 	uint32_t	pmrcap;	/* Persistent Memory Capabilities */
783 	uint32_t	pmrctl;	/* Persistent Memory Region Control */
784 	uint32_t	pmrsts;	/* Persistent Memory Region Status */
785 	uint32_t	pmrebs;	/* Persistent Memory Region Elasticity Buffer Size */
786 	uint32_t	pmrswtp; /* Persistent Memory Region Sustained Write Throughput */
787 	uint32_t	pmrmsc_lo; /* Persistent Memory Region Controller Memory Space Control */
788 	uint32_t	pmrmsc_hi;
789 	uint8_t		reserved4[484]; /* E1Ch - FFFh */
790 	struct {
791 	    uint32_t	sq_tdbl; /* submission queue tail doorbell */
792 	    uint32_t	cq_hdbl; /* completion queue head doorbell */
793 	} doorbell[1];
794 };
795 
796 _Static_assert(sizeof(struct nvme_registers) == 0x1008, "bad size for nvme_registers");
797 
798 #define NVME_SGL_SUBTYPE_SHIFT				(0)
799 #define NVME_SGL_SUBTYPE_MASK				(0xF)
800 #define NVME_SGL_TYPE_SHIFT				(4)
801 #define NVME_SGL_TYPE_MASK				(0xF)
802 
803 #define	NVME_SGL_TYPE(type, subtype)		\
804 	((subtype) << NVME_SGL_SUBTYPE_SHIFT | (type) << NVME_SGL_TYPE_SHIFT)
805 
806 enum nvme_sgl_type {
807 	NVME_SGL_TYPE_DATA_BLOCK		= 0x0,
808 	NVME_SGL_TYPE_BIT_BUCKET		= 0x1,
809 	NVME_SGL_TYPE_SEGMENT			= 0x2,
810 	NVME_SGL_TYPE_LAST_SEGMENT		= 0x3,
811 	NVME_SGL_TYPE_KEYED_DATA_BLOCK		= 0x4,
812 	NVME_SGL_TYPE_TRANSPORT_DATA_BLOCK	= 0x5,
813 };
814 
815 enum nvme_sgl_subtype {
816 	NVME_SGL_SUBTYPE_ADDRESS		= 0x0,
817 	NVME_SGL_SUBTYPE_OFFSET			= 0x1,
818 	NVME_SGL_SUBTYPE_TRANSPORT		= 0xa,
819 };
820 
821 struct nvme_sgl_descriptor {
822 	uint64_t address;
823 	uint32_t length;
824 	uint8_t reserved[3];
825 	uint8_t type;
826 };
827 
828 _Static_assert(sizeof(struct nvme_sgl_descriptor) == 16, "bad size for nvme_sgl_descriptor");
829 
830 struct nvme_command {
831 	/* dword 0 */
832 	uint8_t opc;		/* opcode */
833 	uint8_t fuse;		/* fused operation */
834 	uint16_t cid;		/* command identifier */
835 
836 	/* dword 1 */
837 	uint32_t nsid;		/* namespace identifier */
838 
839 	/* dword 2-3 */
840 	uint32_t rsvd2;
841 	uint32_t rsvd3;
842 
843 	/* dword 4-5 */
844 	uint64_t mptr;		/* metadata pointer */
845 
846 	/* dword 6-9 */
847 	union {
848 		struct {
849 			uint64_t prp1;	/* prp entry 1 */
850 			uint64_t prp2;	/* prp entry 2 */
851 		};
852 		struct nvme_sgl_descriptor sgl;
853 	};
854 
855 	/* dword 10-15 */
856 	uint32_t cdw10;		/* command-specific */
857 	uint32_t cdw11;		/* command-specific */
858 	uint32_t cdw12;		/* command-specific */
859 	uint32_t cdw13;		/* command-specific */
860 	uint32_t cdw14;		/* command-specific */
861 	uint32_t cdw15;		/* command-specific */
862 } __aligned(8);
863 
864 _Static_assert(sizeof(struct nvme_command) == 16 * 4, "bad size for nvme_command");
865 
866 struct nvme_completion {
867 	/* dword 0 */
868 	uint32_t		cdw0;	/* command-specific */
869 
870 	/* dword 1 */
871 	uint32_t		rsvd1;
872 
873 	/* dword 2 */
874 	uint16_t		sqhd;	/* submission queue head pointer */
875 	uint16_t		sqid;	/* submission queue identifier */
876 
877 	/* dword 3 */
878 	uint16_t		cid;	/* command identifier */
879 	uint16_t		status;
880 } __aligned(8);	/* riscv: nvme_qpair_process_completions has better code gen */
881 
882 _Static_assert(sizeof(struct nvme_completion) == 4 * 4, "bad size for nvme_completion");
883 
884 struct nvme_dsm_range {
885 	uint32_t attributes;
886 	uint32_t length;
887 	uint64_t starting_lba;
888 };
889 
890 /* Largest DSM Trim that can be done */
891 #define NVME_MAX_DSM_TRIM		4096
892 
893 _Static_assert(sizeof(struct nvme_dsm_range) == 16, "bad size for nvme_dsm_ranage");
894 
895 /* status code types */
896 enum nvme_status_code_type {
897 	NVME_SCT_GENERIC		= 0x0,
898 	NVME_SCT_COMMAND_SPECIFIC	= 0x1,
899 	NVME_SCT_MEDIA_ERROR		= 0x2,
900 	NVME_SCT_PATH_RELATED		= 0x3,
901 	/* 0x3-0x6 - reserved */
902 	NVME_SCT_VENDOR_SPECIFIC	= 0x7,
903 };
904 
905 /* generic command status codes */
906 enum nvme_generic_command_status_code {
907 	NVME_SC_SUCCESS				= 0x00,
908 	NVME_SC_INVALID_OPCODE			= 0x01,
909 	NVME_SC_INVALID_FIELD			= 0x02,
910 	NVME_SC_COMMAND_ID_CONFLICT		= 0x03,
911 	NVME_SC_DATA_TRANSFER_ERROR		= 0x04,
912 	NVME_SC_ABORTED_POWER_LOSS		= 0x05,
913 	NVME_SC_INTERNAL_DEVICE_ERROR		= 0x06,
914 	NVME_SC_ABORTED_BY_REQUEST		= 0x07,
915 	NVME_SC_ABORTED_SQ_DELETION		= 0x08,
916 	NVME_SC_ABORTED_FAILED_FUSED		= 0x09,
917 	NVME_SC_ABORTED_MISSING_FUSED		= 0x0a,
918 	NVME_SC_INVALID_NAMESPACE_OR_FORMAT	= 0x0b,
919 	NVME_SC_COMMAND_SEQUENCE_ERROR		= 0x0c,
920 	NVME_SC_INVALID_SGL_SEGMENT_DESCR	= 0x0d,
921 	NVME_SC_INVALID_NUMBER_OF_SGL_DESCR	= 0x0e,
922 	NVME_SC_DATA_SGL_LENGTH_INVALID		= 0x0f,
923 	NVME_SC_METADATA_SGL_LENGTH_INVALID	= 0x10,
924 	NVME_SC_SGL_DESCRIPTOR_TYPE_INVALID	= 0x11,
925 	NVME_SC_INVALID_USE_OF_CMB		= 0x12,
926 	NVME_SC_PRP_OFFET_INVALID		= 0x13,
927 	NVME_SC_ATOMIC_WRITE_UNIT_EXCEEDED	= 0x14,
928 	NVME_SC_OPERATION_DENIED		= 0x15,
929 	NVME_SC_SGL_OFFSET_INVALID		= 0x16,
930 	/* 0x17 - reserved */
931 	NVME_SC_HOST_ID_INCONSISTENT_FORMAT	= 0x18,
932 	NVME_SC_KEEP_ALIVE_TIMEOUT_EXPIRED	= 0x19,
933 	NVME_SC_KEEP_ALIVE_TIMEOUT_INVALID	= 0x1a,
934 	NVME_SC_ABORTED_DUE_TO_PREEMPT		= 0x1b,
935 	NVME_SC_SANITIZE_FAILED			= 0x1c,
936 	NVME_SC_SANITIZE_IN_PROGRESS		= 0x1d,
937 	NVME_SC_SGL_DATA_BLOCK_GRAN_INVALID	= 0x1e,
938 	NVME_SC_NOT_SUPPORTED_IN_CMB		= 0x1f,
939 	NVME_SC_NAMESPACE_IS_WRITE_PROTECTED	= 0x20,
940 	NVME_SC_COMMAND_INTERRUPTED		= 0x21,
941 	NVME_SC_TRANSIENT_TRANSPORT_ERROR	= 0x22,
942 
943 	NVME_SC_LBA_OUT_OF_RANGE		= 0x80,
944 	NVME_SC_CAPACITY_EXCEEDED		= 0x81,
945 	NVME_SC_NAMESPACE_NOT_READY		= 0x82,
946 	NVME_SC_RESERVATION_CONFLICT		= 0x83,
947 	NVME_SC_FORMAT_IN_PROGRESS		= 0x84,
948 };
949 
950 /* command specific status codes */
951 enum nvme_command_specific_status_code {
952 	NVME_SC_COMPLETION_QUEUE_INVALID	= 0x00,
953 	NVME_SC_INVALID_QUEUE_IDENTIFIER	= 0x01,
954 	NVME_SC_MAXIMUM_QUEUE_SIZE_EXCEEDED	= 0x02,
955 	NVME_SC_ABORT_COMMAND_LIMIT_EXCEEDED	= 0x03,
956 	/* 0x04 - reserved */
957 	NVME_SC_ASYNC_EVENT_REQUEST_LIMIT_EXCEEDED = 0x05,
958 	NVME_SC_INVALID_FIRMWARE_SLOT		= 0x06,
959 	NVME_SC_INVALID_FIRMWARE_IMAGE		= 0x07,
960 	NVME_SC_INVALID_INTERRUPT_VECTOR	= 0x08,
961 	NVME_SC_INVALID_LOG_PAGE		= 0x09,
962 	NVME_SC_INVALID_FORMAT			= 0x0a,
963 	NVME_SC_FIRMWARE_REQUIRES_RESET		= 0x0b,
964 	NVME_SC_INVALID_QUEUE_DELETION		= 0x0c,
965 	NVME_SC_FEATURE_NOT_SAVEABLE		= 0x0d,
966 	NVME_SC_FEATURE_NOT_CHANGEABLE		= 0x0e,
967 	NVME_SC_FEATURE_NOT_NS_SPECIFIC		= 0x0f,
968 	NVME_SC_FW_ACT_REQUIRES_NVMS_RESET	= 0x10,
969 	NVME_SC_FW_ACT_REQUIRES_RESET		= 0x11,
970 	NVME_SC_FW_ACT_REQUIRES_TIME		= 0x12,
971 	NVME_SC_FW_ACT_PROHIBITED		= 0x13,
972 	NVME_SC_OVERLAPPING_RANGE		= 0x14,
973 	NVME_SC_NS_INSUFFICIENT_CAPACITY	= 0x15,
974 	NVME_SC_NS_ID_UNAVAILABLE		= 0x16,
975 	/* 0x17 - reserved */
976 	NVME_SC_NS_ALREADY_ATTACHED		= 0x18,
977 	NVME_SC_NS_IS_PRIVATE			= 0x19,
978 	NVME_SC_NS_NOT_ATTACHED			= 0x1a,
979 	NVME_SC_THIN_PROV_NOT_SUPPORTED		= 0x1b,
980 	NVME_SC_CTRLR_LIST_INVALID		= 0x1c,
981 	NVME_SC_SELF_TEST_IN_PROGRESS		= 0x1d,
982 	NVME_SC_BOOT_PART_WRITE_PROHIB		= 0x1e,
983 	NVME_SC_INVALID_CTRLR_ID		= 0x1f,
984 	NVME_SC_INVALID_SEC_CTRLR_STATE		= 0x20,
985 	NVME_SC_INVALID_NUM_OF_CTRLR_RESRC	= 0x21,
986 	NVME_SC_INVALID_RESOURCE_ID		= 0x22,
987 	NVME_SC_SANITIZE_PROHIBITED_WPMRE	= 0x23,
988 	NVME_SC_ANA_GROUP_ID_INVALID		= 0x24,
989 	NVME_SC_ANA_ATTACH_FAILED		= 0x25,
990 
991 	NVME_SC_CONFLICTING_ATTRIBUTES		= 0x80,
992 	NVME_SC_INVALID_PROTECTION_INFO		= 0x81,
993 	NVME_SC_ATTEMPTED_WRITE_TO_RO_PAGE	= 0x82,
994 };
995 
996 /* media error status codes */
997 enum nvme_media_error_status_code {
998 	NVME_SC_WRITE_FAULTS			= 0x80,
999 	NVME_SC_UNRECOVERED_READ_ERROR		= 0x81,
1000 	NVME_SC_GUARD_CHECK_ERROR		= 0x82,
1001 	NVME_SC_APPLICATION_TAG_CHECK_ERROR	= 0x83,
1002 	NVME_SC_REFERENCE_TAG_CHECK_ERROR	= 0x84,
1003 	NVME_SC_COMPARE_FAILURE			= 0x85,
1004 	NVME_SC_ACCESS_DENIED			= 0x86,
1005 	NVME_SC_DEALLOCATED_OR_UNWRITTEN	= 0x87,
1006 };
1007 
1008 /* path related status codes */
1009 enum nvme_path_related_status_code {
1010 	NVME_SC_INTERNAL_PATH_ERROR		= 0x00,
1011 	NVME_SC_ASYMMETRIC_ACCESS_PERSISTENT_LOSS = 0x01,
1012 	NVME_SC_ASYMMETRIC_ACCESS_INACCESSIBLE	= 0x02,
1013 	NVME_SC_ASYMMETRIC_ACCESS_TRANSITION	= 0x03,
1014 	NVME_SC_CONTROLLER_PATHING_ERROR	= 0x60,
1015 	NVME_SC_HOST_PATHING_ERROR		= 0x70,
1016 	NVME_SC_COMMAND_ABORTED_BY_HOST		= 0x71,
1017 };
1018 
1019 /* admin opcodes */
1020 enum nvme_admin_opcode {
1021 	NVME_OPC_DELETE_IO_SQ			= 0x00,
1022 	NVME_OPC_CREATE_IO_SQ			= 0x01,
1023 	NVME_OPC_GET_LOG_PAGE			= 0x02,
1024 	/* 0x03 - reserved */
1025 	NVME_OPC_DELETE_IO_CQ			= 0x04,
1026 	NVME_OPC_CREATE_IO_CQ			= 0x05,
1027 	NVME_OPC_IDENTIFY			= 0x06,
1028 	/* 0x07 - reserved */
1029 	NVME_OPC_ABORT				= 0x08,
1030 	NVME_OPC_SET_FEATURES			= 0x09,
1031 	NVME_OPC_GET_FEATURES			= 0x0a,
1032 	/* 0x0b - reserved */
1033 	NVME_OPC_ASYNC_EVENT_REQUEST		= 0x0c,
1034 	NVME_OPC_NAMESPACE_MANAGEMENT		= 0x0d,
1035 	/* 0x0e-0x0f - reserved */
1036 	NVME_OPC_FIRMWARE_ACTIVATE		= 0x10,
1037 	NVME_OPC_FIRMWARE_IMAGE_DOWNLOAD	= 0x11,
1038 	/* 0x12-0x13 - reserved */
1039 	NVME_OPC_DEVICE_SELF_TEST		= 0x14,
1040 	NVME_OPC_NAMESPACE_ATTACHMENT		= 0x15,
1041 	/* 0x16-0x17 - reserved */
1042 	NVME_OPC_KEEP_ALIVE			= 0x18,
1043 	NVME_OPC_DIRECTIVE_SEND			= 0x19,
1044 	NVME_OPC_DIRECTIVE_RECEIVE		= 0x1a,
1045 	/* 0x1b - reserved */
1046 	NVME_OPC_VIRTUALIZATION_MANAGEMENT	= 0x1c,
1047 	NVME_OPC_NVME_MI_SEND			= 0x1d,
1048 	NVME_OPC_NVME_MI_RECEIVE		= 0x1e,
1049 	/* 0x1f - reserved */
1050 	NVME_OPC_CAPACITY_MANAGEMENT		= 0x20,
1051 	/* 0x21-0x23 - reserved */
1052 	NVME_OPC_LOCKDOWN			= 0x24,
1053 	/* 0x25-0x7b - reserved */
1054 	NVME_OPC_DOORBELL_BUFFER_CONFIG		= 0x7c,
1055 	/* 0x7d-0x7e - reserved */
1056 	NVME_OPC_FABRICS_COMMANDS		= 0x7f,
1057 
1058 	NVME_OPC_FORMAT_NVM			= 0x80,
1059 	NVME_OPC_SECURITY_SEND			= 0x81,
1060 	NVME_OPC_SECURITY_RECEIVE		= 0x82,
1061 	/* 0x83 - reserved */
1062 	NVME_OPC_SANITIZE			= 0x84,
1063 	/* 0x85 - reserved */
1064 	NVME_OPC_GET_LBA_STATUS			= 0x86,
1065 };
1066 
1067 /* nvme nvm opcodes */
1068 enum nvme_nvm_opcode {
1069 	NVME_OPC_FLUSH				= 0x00,
1070 	NVME_OPC_WRITE				= 0x01,
1071 	NVME_OPC_READ				= 0x02,
1072 	/* 0x03 - reserved */
1073 	NVME_OPC_WRITE_UNCORRECTABLE		= 0x04,
1074 	NVME_OPC_COMPARE			= 0x05,
1075 	/* 0x06-0x07 - reserved */
1076 	NVME_OPC_WRITE_ZEROES			= 0x08,
1077 	NVME_OPC_DATASET_MANAGEMENT		= 0x09,
1078 	/* 0x0a-0x0b - reserved */
1079 	NVME_OPC_VERIFY				= 0x0c,
1080 	NVME_OPC_RESERVATION_REGISTER		= 0x0d,
1081 	NVME_OPC_RESERVATION_REPORT		= 0x0e,
1082 	/* 0x0f-0x10 - reserved */
1083 	NVME_OPC_RESERVATION_ACQUIRE		= 0x11,
1084 	/* 0x12-0x14 - reserved */
1085 	NVME_OPC_RESERVATION_RELEASE		= 0x15,
1086 	/* 0x16-0x18 - reserved */
1087 	NVME_OPC_COPY				= 0x19,
1088 };
1089 
1090 enum nvme_feature {
1091 	/* 0x00 - reserved */
1092 	NVME_FEAT_ARBITRATION			= 0x01,
1093 	NVME_FEAT_POWER_MANAGEMENT		= 0x02,
1094 	NVME_FEAT_LBA_RANGE_TYPE		= 0x03,
1095 	NVME_FEAT_TEMPERATURE_THRESHOLD		= 0x04,
1096 	NVME_FEAT_ERROR_RECOVERY		= 0x05,
1097 	NVME_FEAT_VOLATILE_WRITE_CACHE		= 0x06,
1098 	NVME_FEAT_NUMBER_OF_QUEUES		= 0x07,
1099 	NVME_FEAT_INTERRUPT_COALESCING		= 0x08,
1100 	NVME_FEAT_INTERRUPT_VECTOR_CONFIGURATION = 0x09,
1101 	NVME_FEAT_WRITE_ATOMICITY		= 0x0A,
1102 	NVME_FEAT_ASYNC_EVENT_CONFIGURATION	= 0x0B,
1103 	NVME_FEAT_AUTONOMOUS_POWER_STATE_TRANSITION = 0x0C,
1104 	NVME_FEAT_HOST_MEMORY_BUFFER		= 0x0D,
1105 	NVME_FEAT_TIMESTAMP			= 0x0E,
1106 	NVME_FEAT_KEEP_ALIVE_TIMER		= 0x0F,
1107 	NVME_FEAT_HOST_CONTROLLED_THERMAL_MGMT	= 0x10,
1108 	NVME_FEAT_NON_OP_POWER_STATE_CONFIG	= 0x11,
1109 	NVME_FEAT_READ_RECOVERY_LEVEL_CONFIG	= 0x12,
1110 	NVME_FEAT_PREDICTABLE_LATENCY_MODE_CONFIG = 0x13,
1111 	NVME_FEAT_PREDICTABLE_LATENCY_MODE_WINDOW = 0x14,
1112 	NVME_FEAT_LBA_STATUS_INFORMATION_ATTRIBUTES = 0x15,
1113 	NVME_FEAT_HOST_BEHAVIOR_SUPPORT		= 0x16,
1114 	NVME_FEAT_SANITIZE_CONFIG		= 0x17,
1115 	NVME_FEAT_ENDURANCE_GROUP_EVENT_CONFIGURATION = 0x18,
1116 	/* 0x19-0x77 - reserved */
1117 	/* 0x78-0x7f - NVMe Management Interface */
1118 	NVME_FEAT_SOFTWARE_PROGRESS_MARKER	= 0x80,
1119 	NVME_FEAT_HOST_IDENTIFIER		= 0x81,
1120 	NVME_FEAT_RESERVATION_NOTIFICATION_MASK	= 0x82,
1121 	NVME_FEAT_RESERVATION_PERSISTENCE	= 0x83,
1122 	NVME_FEAT_NAMESPACE_WRITE_PROTECTION_CONFIG = 0x84,
1123 	/* 0x85-0xBF - command set specific (reserved) */
1124 	/* 0xC0-0xFF - vendor specific */
1125 };
1126 
1127 enum nvme_dsm_attribute {
1128 	NVME_DSM_ATTR_INTEGRAL_READ		= 0x1,
1129 	NVME_DSM_ATTR_INTEGRAL_WRITE		= 0x2,
1130 	NVME_DSM_ATTR_DEALLOCATE		= 0x4,
1131 };
1132 
1133 enum nvme_activate_action {
1134 	NVME_AA_REPLACE_NO_ACTIVATE		= 0x0,
1135 	NVME_AA_REPLACE_ACTIVATE		= 0x1,
1136 	NVME_AA_ACTIVATE			= 0x2,
1137 };
1138 
1139 struct nvme_power_state {
1140 	/** Maximum Power */
1141 	uint16_t	mp;			/* Maximum Power */
1142 	uint8_t		ps_rsvd1;
1143 	uint8_t		mps_nops;		/* Max Power Scale, Non-Operational State */
1144 
1145 	uint32_t	enlat;			/* Entry Latency */
1146 	uint32_t	exlat;			/* Exit Latency */
1147 
1148 	uint8_t		rrt;			/* Relative Read Throughput */
1149 	uint8_t		rrl;			/* Relative Read Latency */
1150 	uint8_t		rwt;			/* Relative Write Throughput */
1151 	uint8_t		rwl;			/* Relative Write Latency */
1152 
1153 	uint16_t	idlp;			/* Idle Power */
1154 	uint8_t		ips;			/* Idle Power Scale */
1155 	uint8_t		ps_rsvd8;
1156 
1157 	uint16_t	actp;			/* Active Power */
1158 	uint8_t		apw_aps;		/* Active Power Workload, Active Power Scale */
1159 	uint8_t		ps_rsvd10[9];
1160 } __packed;
1161 
1162 _Static_assert(sizeof(struct nvme_power_state) == 32, "bad size for nvme_power_state");
1163 
1164 #define NVME_SERIAL_NUMBER_LENGTH	20
1165 #define NVME_MODEL_NUMBER_LENGTH	40
1166 #define NVME_FIRMWARE_REVISION_LENGTH	8
1167 
1168 struct nvme_controller_data {
1169 	/* bytes 0-255: controller capabilities and features */
1170 
1171 	/** pci vendor id */
1172 	uint16_t		vid;
1173 
1174 	/** pci subsystem vendor id */
1175 	uint16_t		ssvid;
1176 
1177 	/** serial number */
1178 	uint8_t			sn[NVME_SERIAL_NUMBER_LENGTH];
1179 
1180 	/** model number */
1181 	uint8_t			mn[NVME_MODEL_NUMBER_LENGTH];
1182 
1183 	/** firmware revision */
1184 	uint8_t			fr[NVME_FIRMWARE_REVISION_LENGTH];
1185 
1186 	/** recommended arbitration burst */
1187 	uint8_t			rab;
1188 
1189 	/** ieee oui identifier */
1190 	uint8_t			ieee[3];
1191 
1192 	/** multi-interface capabilities */
1193 	uint8_t			mic;
1194 
1195 	/** maximum data transfer size */
1196 	uint8_t			mdts;
1197 
1198 	/** Controller ID */
1199 	uint16_t		ctrlr_id;
1200 
1201 	/** Version */
1202 	uint32_t		ver;
1203 
1204 	/** RTD3 Resume Latency */
1205 	uint32_t		rtd3r;
1206 
1207 	/** RTD3 Enter Latency */
1208 	uint32_t		rtd3e;
1209 
1210 	/** Optional Asynchronous Events Supported */
1211 	uint32_t		oaes;	/* bitfield really */
1212 
1213 	/** Controller Attributes */
1214 	uint32_t		ctratt;	/* bitfield really */
1215 
1216 	/** Read Recovery Levels Supported */
1217 	uint16_t		rrls;
1218 
1219 	uint8_t			reserved1[9];
1220 
1221 	/** Controller Type */
1222 	uint8_t			cntrltype;
1223 
1224 	/** FRU Globally Unique Identifier */
1225 	uint8_t			fguid[16];
1226 
1227 	/** Command Retry Delay Time 1 */
1228 	uint16_t		crdt1;
1229 
1230 	/** Command Retry Delay Time 2 */
1231 	uint16_t		crdt2;
1232 
1233 	/** Command Retry Delay Time 3 */
1234 	uint16_t		crdt3;
1235 
1236 	uint8_t			reserved2[122];
1237 
1238 	/* bytes 256-511: admin command set attributes */
1239 
1240 	/** optional admin command support */
1241 	uint16_t		oacs;
1242 
1243 	/** abort command limit */
1244 	uint8_t			acl;
1245 
1246 	/** asynchronous event request limit */
1247 	uint8_t			aerl;
1248 
1249 	/** firmware updates */
1250 	uint8_t			frmw;
1251 
1252 	/** log page attributes */
1253 	uint8_t			lpa;
1254 
1255 	/** error log page entries */
1256 	uint8_t			elpe;
1257 
1258 	/** number of power states supported */
1259 	uint8_t			npss;
1260 
1261 	/** admin vendor specific command configuration */
1262 	uint8_t			avscc;
1263 
1264 	/** Autonomous Power State Transition Attributes */
1265 	uint8_t			apsta;
1266 
1267 	/** Warning Composite Temperature Threshold */
1268 	uint16_t		wctemp;
1269 
1270 	/** Critical Composite Temperature Threshold */
1271 	uint16_t		cctemp;
1272 
1273 	/** Maximum Time for Firmware Activation */
1274 	uint16_t		mtfa;
1275 
1276 	/** Host Memory Buffer Preferred Size */
1277 	uint32_t		hmpre;
1278 
1279 	/** Host Memory Buffer Minimum Size */
1280 	uint32_t		hmmin;
1281 
1282 	/** Name space capabilities  */
1283 	struct {
1284 		/* if nsmgmt, report tnvmcap and unvmcap */
1285 		uint8_t    tnvmcap[16];
1286 		uint8_t    unvmcap[16];
1287 	} __packed untncap;
1288 
1289 	/** Replay Protected Memory Block Support */
1290 	uint32_t		rpmbs; /* Really a bitfield */
1291 
1292 	/** Extended Device Self-test Time */
1293 	uint16_t		edstt;
1294 
1295 	/** Device Self-test Options */
1296 	uint8_t			dsto; /* Really a bitfield */
1297 
1298 	/** Firmware Update Granularity */
1299 	uint8_t			fwug;
1300 
1301 	/** Keep Alive Support */
1302 	uint16_t		kas;
1303 
1304 	/** Host Controlled Thermal Management Attributes */
1305 	uint16_t		hctma; /* Really a bitfield */
1306 
1307 	/** Minimum Thermal Management Temperature */
1308 	uint16_t		mntmt;
1309 
1310 	/** Maximum Thermal Management Temperature */
1311 	uint16_t		mxtmt;
1312 
1313 	/** Sanitize Capabilities */
1314 	uint32_t		sanicap; /* Really a bitfield */
1315 
1316 	/** Host Memory Buffer Minimum Descriptor Entry Size */
1317 	uint32_t		hmminds;
1318 
1319 	/** Host Memory Maximum Descriptors Entries */
1320 	uint16_t		hmmaxd;
1321 
1322 	/** NVM Set Identifier Maximum */
1323 	uint16_t		nsetidmax;
1324 
1325 	/** Endurance Group Identifier Maximum */
1326 	uint16_t		endgidmax;
1327 
1328 	/** ANA Transition Time */
1329 	uint8_t			anatt;
1330 
1331 	/** Asymmetric Namespace Access Capabilities */
1332 	uint8_t			anacap;
1333 
1334 	/** ANA Group Identifier Maximum */
1335 	uint32_t		anagrpmax;
1336 
1337 	/** Number of ANA Group Identifiers */
1338 	uint32_t		nanagrpid;
1339 
1340 	/** Persistent Event Log Size */
1341 	uint32_t		pels;
1342 
1343 	uint8_t			reserved3[156];
1344 	/* bytes 512-703: nvm command set attributes */
1345 
1346 	/** submission queue entry size */
1347 	uint8_t			sqes;
1348 
1349 	/** completion queue entry size */
1350 	uint8_t			cqes;
1351 
1352 	/** Maximum Outstanding Commands */
1353 	uint16_t		maxcmd;
1354 
1355 	/** number of namespaces */
1356 	uint32_t		nn;
1357 
1358 	/** optional nvm command support */
1359 	uint16_t		oncs;
1360 
1361 	/** fused operation support */
1362 	uint16_t		fuses;
1363 
1364 	/** format nvm attributes */
1365 	uint8_t			fna;
1366 
1367 	/** volatile write cache */
1368 	uint8_t			vwc;
1369 
1370 	/** Atomic Write Unit Normal */
1371 	uint16_t		awun;
1372 
1373 	/** Atomic Write Unit Power Fail */
1374 	uint16_t		awupf;
1375 
1376 	/** NVM Vendor Specific Command Configuration */
1377 	uint8_t			nvscc;
1378 
1379 	/** Namespace Write Protection Capabilities */
1380 	uint8_t			nwpc;
1381 
1382 	/** Atomic Compare & Write Unit */
1383 	uint16_t		acwu;
1384 	uint16_t		reserved6;
1385 
1386 	/** SGL Support */
1387 	uint32_t		sgls;
1388 
1389 	/** Maximum Number of Allowed Namespaces */
1390 	uint32_t		mnan;
1391 
1392 	/* bytes 540-767: Reserved */
1393 	uint8_t			reserved7[224];
1394 
1395 	/** NVM Subsystem NVMe Qualified Name */
1396 	uint8_t			subnqn[256];
1397 
1398 	/* bytes 1024-1791: Reserved */
1399 	uint8_t			reserved8[768];
1400 
1401 	/* bytes 1792-2047: NVMe over Fabrics specification */
1402 	uint32_t		ioccsz;
1403 	uint32_t		iorcsz;
1404 	uint16_t		icdoff;
1405 	uint8_t			fcatt;
1406 	uint8_t			msdbd;
1407 	uint16_t		ofcs;
1408 	uint8_t			reserved9[242];
1409 
1410 	/* bytes 2048-3071: power state descriptors */
1411 	struct nvme_power_state power_state[32];
1412 
1413 	/* bytes 3072-4095: vendor specific */
1414 	uint8_t			vs[1024];
1415 } __packed __aligned(4);
1416 
1417 _Static_assert(sizeof(struct nvme_controller_data) == 4096, "bad size for nvme_controller_data");
1418 
1419 struct nvme_namespace_data {
1420 	/** namespace size */
1421 	uint64_t		nsze;
1422 
1423 	/** namespace capacity */
1424 	uint64_t		ncap;
1425 
1426 	/** namespace utilization */
1427 	uint64_t		nuse;
1428 
1429 	/** namespace features */
1430 	uint8_t			nsfeat;
1431 
1432 	/** number of lba formats */
1433 	uint8_t			nlbaf;
1434 
1435 	/** formatted lba size */
1436 	uint8_t			flbas;
1437 
1438 	/** metadata capabilities */
1439 	uint8_t			mc;
1440 
1441 	/** end-to-end data protection capabilities */
1442 	uint8_t			dpc;
1443 
1444 	/** end-to-end data protection type settings */
1445 	uint8_t			dps;
1446 
1447 	/** Namespace Multi-path I/O and Namespace Sharing Capabilities */
1448 	uint8_t			nmic;
1449 
1450 	/** Reservation Capabilities */
1451 	uint8_t			rescap;
1452 
1453 	/** Format Progress Indicator */
1454 	uint8_t			fpi;
1455 
1456 	/** Deallocate Logical Block Features */
1457 	uint8_t			dlfeat;
1458 
1459 	/** Namespace Atomic Write Unit Normal  */
1460 	uint16_t		nawun;
1461 
1462 	/** Namespace Atomic Write Unit Power Fail */
1463 	uint16_t		nawupf;
1464 
1465 	/** Namespace Atomic Compare & Write Unit */
1466 	uint16_t		nacwu;
1467 
1468 	/** Namespace Atomic Boundary Size Normal */
1469 	uint16_t		nabsn;
1470 
1471 	/** Namespace Atomic Boundary Offset */
1472 	uint16_t		nabo;
1473 
1474 	/** Namespace Atomic Boundary Size Power Fail */
1475 	uint16_t		nabspf;
1476 
1477 	/** Namespace Optimal IO Boundary */
1478 	uint16_t		noiob;
1479 
1480 	/** NVM Capacity */
1481 	uint8_t			nvmcap[16];
1482 
1483 	/** Namespace Preferred Write Granularity  */
1484 	uint16_t		npwg;
1485 
1486 	/** Namespace Preferred Write Alignment */
1487 	uint16_t		npwa;
1488 
1489 	/** Namespace Preferred Deallocate Granularity */
1490 	uint16_t		npdg;
1491 
1492 	/** Namespace Preferred Deallocate Alignment */
1493 	uint16_t		npda;
1494 
1495 	/** Namespace Optimal Write Size */
1496 	uint16_t		nows;
1497 
1498 	/* bytes 74-91: Reserved */
1499 	uint8_t			reserved5[18];
1500 
1501 	/** ANA Group Identifier */
1502 	uint32_t		anagrpid;
1503 
1504 	/* bytes 96-98: Reserved */
1505 	uint8_t			reserved6[3];
1506 
1507 	/** Namespace Attributes */
1508 	uint8_t			nsattr;
1509 
1510 	/** NVM Set Identifier */
1511 	uint16_t		nvmsetid;
1512 
1513 	/** Endurance Group Identifier */
1514 	uint16_t		endgid;
1515 
1516 	/** Namespace Globally Unique Identifier */
1517 	uint8_t			nguid[16];
1518 
1519 	/** IEEE Extended Unique Identifier */
1520 	uint8_t			eui64[8];
1521 
1522 	/** lba format support */
1523 	uint32_t		lbaf[64];
1524 
1525 	uint8_t			vendor_specific[3712];
1526 } __packed __aligned(4);
1527 
1528 _Static_assert(sizeof(struct nvme_namespace_data) == 4096, "bad size for nvme_namepsace_data");
1529 
1530 enum nvme_log_page {
1531 	/* 0x00 - reserved */
1532 	NVME_LOG_ERROR			= 0x01,
1533 	NVME_LOG_HEALTH_INFORMATION	= 0x02,
1534 	NVME_LOG_FIRMWARE_SLOT		= 0x03,
1535 	NVME_LOG_CHANGED_NAMESPACE	= 0x04,
1536 	NVME_LOG_COMMAND_EFFECT		= 0x05,
1537 	NVME_LOG_DEVICE_SELF_TEST	= 0x06,
1538 	NVME_LOG_TELEMETRY_HOST_INITIATED = 0x07,
1539 	NVME_LOG_TELEMETRY_CONTROLLER_INITIATED = 0x08,
1540 	NVME_LOG_ENDURANCE_GROUP_INFORMATION = 0x09,
1541 	NVME_LOG_PREDICTABLE_LATENCY_PER_NVM_SET = 0x0a,
1542 	NVME_LOG_PREDICTABLE_LATENCY_EVENT_AGGREGATE = 0x0b,
1543 	NVME_LOG_ASYMMETRIC_NAMESPACE_ACCESS = 0x0c,
1544 	NVME_LOG_PERSISTENT_EVENT_LOG	= 0x0d,
1545 	NVME_LOG_LBA_STATUS_INFORMATION	= 0x0e,
1546 	NVME_LOG_ENDURANCE_GROUP_EVENT_AGGREGATE = 0x0f,
1547 	NVME_LOG_DISCOVERY		= 0x70,
1548 	/* 0x06-0x7F - reserved */
1549 	/* 0x80-0xBF - I/O command set specific */
1550 	NVME_LOG_RES_NOTIFICATION	= 0x80,
1551 	NVME_LOG_SANITIZE_STATUS	= 0x81,
1552 	/* 0x82-0xBF - reserved */
1553 	/* 0xC0-0xFF - vendor specific */
1554 
1555 	/*
1556 	 * The following are Intel Specific log pages for older models.
1557 	 */
1558 	INTEL_LOG_READ_LAT_LOG		= 0xc1,
1559 	INTEL_LOG_WRITE_LAT_LOG		= 0xc2,
1560 	INTEL_LOG_TEMP_STATS		= 0xc5,
1561 	INTEL_LOG_ADD_SMART		= 0xca,
1562 	INTEL_LOG_DRIVE_MKT_NAME	= 0xdd,
1563 
1564 	/*
1565 	 * HGST log page, with lots of sub pages.
1566 	 */
1567 	HGST_INFO_LOG			= 0xc1,
1568 };
1569 
1570 struct nvme_error_information_entry {
1571 	uint64_t		error_count;
1572 	uint16_t		sqid;
1573 	uint16_t		cid;
1574 	uint16_t		status;
1575 	uint16_t		error_location;
1576 	uint64_t		lba;
1577 	uint32_t		nsid;
1578 	uint8_t			vendor_specific;
1579 	uint8_t			trtype;
1580 	uint16_t		reserved30;
1581 	uint64_t		csi;
1582 	uint16_t		ttsi;
1583 	uint8_t			reserved[22];
1584 } __packed __aligned(4);
1585 
1586 _Static_assert(sizeof(struct nvme_error_information_entry) == 64, "bad size for nvme_error_information_entry");
1587 
1588 struct nvme_health_information_page {
1589 	uint8_t			critical_warning;
1590 	uint16_t		temperature;
1591 	uint8_t			available_spare;
1592 	uint8_t			available_spare_threshold;
1593 	uint8_t			percentage_used;
1594 
1595 	uint8_t			reserved[26];
1596 
1597 	/*
1598 	 * Note that the following are 128-bit values, but are
1599 	 *  defined as an array of 2 64-bit values.
1600 	 */
1601 	/* Data Units Read is always in 512-byte units. */
1602 	uint64_t		data_units_read[2];
1603 	/* Data Units Written is always in 512-byte units. */
1604 	uint64_t		data_units_written[2];
1605 	/* For NVM command set, this includes Compare commands. */
1606 	uint64_t		host_read_commands[2];
1607 	uint64_t		host_write_commands[2];
1608 	/* Controller Busy Time is reported in minutes. */
1609 	uint64_t		controller_busy_time[2];
1610 	uint64_t		power_cycles[2];
1611 	uint64_t		power_on_hours[2];
1612 	uint64_t		unsafe_shutdowns[2];
1613 	uint64_t		media_errors[2];
1614 	uint64_t		num_error_info_log_entries[2];
1615 	uint32_t		warning_temp_time;
1616 	uint32_t		error_temp_time;
1617 	uint16_t		temp_sensor[8];
1618 	/* Thermal Management Temperature 1 Transition Count */
1619 	uint32_t		tmt1tc;
1620 	/* Thermal Management Temperature 2 Transition Count */
1621 	uint32_t		tmt2tc;
1622 	/* Total Time For Thermal Management Temperature 1 */
1623 	uint32_t		ttftmt1;
1624 	/* Total Time For Thermal Management Temperature 2 */
1625 	uint32_t		ttftmt2;
1626 
1627 	uint8_t			reserved2[280];
1628 } __packed __aligned(8);
1629 
1630 _Static_assert(sizeof(struct nvme_health_information_page) == 512, "bad size for nvme_health_information_page");
1631 
1632 struct nvme_firmware_page {
1633 	uint8_t			afi;
1634 	uint8_t			reserved[7];
1635 	/* revisions for 7 slots */
1636 	uint8_t			revision[7][NVME_FIRMWARE_REVISION_LENGTH];
1637 	uint8_t			reserved2[448];
1638 } __packed __aligned(4);
1639 
1640 _Static_assert(sizeof(struct nvme_firmware_page) == 512, "bad size for nvme_firmware_page");
1641 
1642 struct nvme_ns_list {
1643 	uint32_t		ns[1024];
1644 } __packed __aligned(4);
1645 
1646 _Static_assert(sizeof(struct nvme_ns_list) == 4096, "bad size for nvme_ns_list");
1647 
1648 struct nvme_command_effects_page {
1649 	uint32_t		acs[256];
1650 	uint32_t		iocs[256];
1651 	uint8_t			reserved[2048];
1652 } __packed __aligned(4);
1653 
1654 _Static_assert(sizeof(struct nvme_command_effects_page) == 4096,
1655     "bad size for nvme_command_effects_page");
1656 
1657 struct nvme_device_self_test_page {
1658 	uint8_t			curr_operation;
1659 	uint8_t			curr_compl;
1660 	uint8_t			rsvd2[2];
1661 	struct {
1662 		uint8_t		status;
1663 		uint8_t		segment_num;
1664 		uint8_t		valid_diag_info;
1665 		uint8_t		rsvd3;
1666 		uint64_t	poh;
1667 		uint32_t	nsid;
1668 		/* Define as an array to simplify alignment issues */
1669 		uint8_t		failing_lba[8];
1670 		uint8_t		status_code_type;
1671 		uint8_t		status_code;
1672 		uint8_t		vendor_specific[2];
1673 	} __packed result[20];
1674 } __packed __aligned(4);
1675 
1676 _Static_assert(sizeof(struct nvme_device_self_test_page) == 564,
1677     "bad size for nvme_device_self_test_page");
1678 
1679 /*
1680  * Header structure for both host initiated telemetry (page 7) and controller
1681  * initiated telemetry (page 8).
1682  */
1683 struct nvme_telemetry_log_page {
1684 	uint8_t			identifier;
1685 	uint8_t			rsvd[4];
1686 	uint8_t			oui[3];
1687 	uint16_t		da1_last;
1688 	uint16_t		da2_last;
1689 	uint16_t		da3_last;
1690 	uint8_t			rsvd2[2];
1691 	uint32_t		da4_last;
1692 	uint8_t			rsvd3[361];
1693 	uint8_t			hi_gen;
1694 	uint8_t			ci_avail;
1695 	uint8_t			ci_gen;
1696 	uint8_t			reason[128];
1697 	/* Blocks of telemetry data follow */
1698 } __packed __aligned(4);
1699 
1700 _Static_assert(sizeof(struct nvme_telemetry_log_page) == 512,
1701     "bad size for nvme_telemetry_log");
1702 
1703 struct nvme_discovery_log_entry {
1704 	uint8_t			trtype;
1705 	uint8_t			adrfam;
1706 	uint8_t			subtype;
1707 	uint8_t			treq;
1708 	uint16_t		portid;
1709 	uint16_t		cntlid;
1710 	uint16_t		aqsz;
1711 	uint8_t			reserved1[22];
1712 	uint8_t			trsvcid[32];
1713 	uint8_t			reserved2[192];
1714 	uint8_t			subnqn[256];
1715 	uint8_t			traddr[256];
1716 	union {
1717 		struct {
1718 			uint8_t	rdma_qptype;
1719 			uint8_t	rdma_prtype;
1720 			uint8_t	rdma_cms;
1721 			uint8_t	reserved[5];
1722 			uint16_t rdma_pkey;
1723 		} rdma;
1724 		struct {
1725 			uint8_t	sectype;
1726 		} tcp;
1727 		uint8_t		reserved[256];
1728 	} tsas;
1729 } __packed __aligned(4);
1730 
1731 _Static_assert(sizeof(struct nvme_discovery_log_entry) == 1024,
1732     "bad size for nvme_discovery_log_entry");
1733 
1734 struct nvme_discovery_log {
1735 	uint64_t		genctr;
1736 	uint64_t		numrec;
1737 	uint16_t		recfmt;
1738 	uint8_t			reserved[1006];
1739 	struct nvme_discovery_log_entry entries[];
1740 } __packed __aligned(4);
1741 
1742 _Static_assert(sizeof(struct nvme_discovery_log) == 1024,
1743     "bad size for nvme_discovery_log");
1744 
1745 struct nvme_res_notification_page {
1746 	uint64_t		log_page_count;
1747 	uint8_t			log_page_type;
1748 	uint8_t			available_log_pages;
1749 	uint8_t			reserved2;
1750 	uint32_t		nsid;
1751 	uint8_t			reserved[48];
1752 } __packed __aligned(4);
1753 
1754 _Static_assert(sizeof(struct nvme_res_notification_page) == 64,
1755     "bad size for nvme_res_notification_page");
1756 
1757 struct nvme_sanitize_status_page {
1758 	uint16_t		sprog;
1759 	uint16_t		sstat;
1760 	uint32_t		scdw10;
1761 	uint32_t		etfo;
1762 	uint32_t		etfbe;
1763 	uint32_t		etfce;
1764 	uint32_t		etfownd;
1765 	uint32_t		etfbewnd;
1766 	uint32_t		etfcewnd;
1767 	uint8_t			reserved[480];
1768 } __packed __aligned(4);
1769 
1770 _Static_assert(sizeof(struct nvme_sanitize_status_page) == 512,
1771     "bad size for nvme_sanitize_status_page");
1772 
1773 struct intel_log_temp_stats {
1774 	uint64_t	current;
1775 	uint64_t	overtemp_flag_last;
1776 	uint64_t	overtemp_flag_life;
1777 	uint64_t	max_temp;
1778 	uint64_t	min_temp;
1779 	uint64_t	_rsvd[5];
1780 	uint64_t	max_oper_temp;
1781 	uint64_t	min_oper_temp;
1782 	uint64_t	est_offset;
1783 } __packed __aligned(4);
1784 
1785 _Static_assert(sizeof(struct intel_log_temp_stats) == 13 * 8, "bad size for intel_log_temp_stats");
1786 
1787 struct nvme_resv_reg_ctrlr {
1788 	uint16_t		ctrlr_id;	/* Controller ID */
1789 	uint8_t			rcsts;		/* Reservation Status */
1790 	uint8_t			reserved3[5];
1791 	uint64_t		hostid;		/* Host Identifier */
1792 	uint64_t		rkey;		/* Reservation Key */
1793 } __packed __aligned(4);
1794 
1795 _Static_assert(sizeof(struct nvme_resv_reg_ctrlr) == 24, "bad size for nvme_resv_reg_ctrlr");
1796 
1797 struct nvme_resv_reg_ctrlr_ext {
1798 	uint16_t		ctrlr_id;	/* Controller ID */
1799 	uint8_t			rcsts;		/* Reservation Status */
1800 	uint8_t			reserved3[5];
1801 	uint64_t		rkey;		/* Reservation Key */
1802 	uint64_t		hostid[2];	/* Host Identifier */
1803 	uint8_t			reserved32[32];
1804 } __packed __aligned(4);
1805 
1806 _Static_assert(sizeof(struct nvme_resv_reg_ctrlr_ext) == 64, "bad size for nvme_resv_reg_ctrlr_ext");
1807 
1808 struct nvme_resv_status {
1809 	uint32_t		gen;		/* Generation */
1810 	uint8_t			rtype;		/* Reservation Type */
1811 	uint8_t			regctl[2];	/* Number of Registered Controllers */
1812 	uint8_t			reserved7[2];
1813 	uint8_t			ptpls;		/* Persist Through Power Loss State */
1814 	uint8_t			reserved10[14];
1815 	struct nvme_resv_reg_ctrlr	ctrlr[0];
1816 } __packed __aligned(4);
1817 
1818 _Static_assert(sizeof(struct nvme_resv_status) == 24, "bad size for nvme_resv_status");
1819 
1820 struct nvme_resv_status_ext {
1821 	uint32_t		gen;		/* Generation */
1822 	uint8_t			rtype;		/* Reservation Type */
1823 	uint8_t			regctl[2];	/* Number of Registered Controllers */
1824 	uint8_t			reserved7[2];
1825 	uint8_t			ptpls;		/* Persist Through Power Loss State */
1826 	uint8_t			reserved10[14];
1827 	uint8_t			reserved24[40];
1828 	struct nvme_resv_reg_ctrlr_ext	ctrlr[0];
1829 } __packed __aligned(4);
1830 
1831 _Static_assert(sizeof(struct nvme_resv_status_ext) == 64, "bad size for nvme_resv_status_ext");
1832 
1833 #define NVME_TEST_MAX_THREADS	128
1834 
1835 struct nvme_io_test {
1836 	enum nvme_nvm_opcode	opc;
1837 	uint32_t		size;
1838 	uint32_t		time;	/* in seconds */
1839 	uint32_t		num_threads;
1840 	uint32_t		flags;
1841 	uint64_t		io_completed[NVME_TEST_MAX_THREADS];
1842 };
1843 
1844 enum nvme_io_test_flags {
1845 	/*
1846 	 * Specifies whether dev_refthread/dev_relthread should be
1847 	 *  called during NVME_BIO_TEST.  Ignored for other test
1848 	 *  types.
1849 	 */
1850 	NVME_TEST_FLAG_REFTHREAD =	0x1,
1851 };
1852 
1853 struct nvme_pt_command {
1854 	/*
1855 	 * cmd is used to specify a passthrough command to a controller or
1856 	 *  namespace.
1857 	 *
1858 	 * The following fields from cmd may be specified by the caller:
1859 	 *	* opc  (opcode)
1860 	 *	* nsid (namespace id) - for admin commands only
1861 	 *	* cdw10-cdw15
1862 	 *
1863 	 * Remaining fields must be set to 0 by the caller.
1864 	 */
1865 	struct nvme_command	cmd;
1866 
1867 	/*
1868 	 * cpl returns completion status for the passthrough command
1869 	 *  specified by cmd.
1870 	 *
1871 	 * The following fields will be filled out by the driver, for
1872 	 *  consumption by the caller:
1873 	 *	* cdw0
1874 	 *	* status (except for phase)
1875 	 *
1876 	 * Remaining fields will be set to 0 by the driver.
1877 	 */
1878 	struct nvme_completion	cpl;
1879 
1880 	/* buf is the data buffer associated with this passthrough command. */
1881 	void *			buf;
1882 
1883 	/*
1884 	 * len is the length of the data buffer associated with this
1885 	 *  passthrough command.
1886 	 */
1887 	uint32_t		len;
1888 
1889 	/*
1890 	 * is_read = 1 if the passthrough command will read data into the
1891 	 *  supplied buffer from the controller.
1892 	 *
1893 	 * is_read = 0 if the passthrough command will write data from the
1894 	 *  supplied buffer to the controller.
1895 	 */
1896 	uint32_t		is_read;
1897 
1898 	/*
1899 	 * driver_lock is used by the driver only.  It must be set to 0
1900 	 *  by the caller.
1901 	 */
1902 	struct mtx *		driver_lock;
1903 };
1904 
1905 struct nvme_get_nsid {
1906 	char		cdev[SPECNAMELEN + 1];
1907 	uint32_t	nsid;
1908 };
1909 
1910 struct nvme_hmb_desc {
1911 	uint64_t	addr;
1912 	uint32_t	size;
1913 	uint32_t	reserved;
1914 };
1915 
1916 #define nvme_completion_is_error(cpl)					\
1917 	(NVME_STATUS_GET_SC((cpl)->status) != 0 || NVME_STATUS_GET_SCT((cpl)->status) != 0)
1918 
1919 void	nvme_cpl_sbuf(const struct nvme_completion *cpl, struct sbuf *sbuf);
1920 void	nvme_opcode_sbuf(bool admin, uint8_t opc, struct sbuf *sb);
1921 void	nvme_sc_sbuf(const struct nvme_completion *cpl, struct sbuf *sbuf);
1922 void	nvme_strvis(uint8_t *dst, const uint8_t *src, int dstlen, int srclen);
1923 
1924 #ifdef _KERNEL
1925 struct bio;
1926 struct thread;
1927 
1928 struct nvme_namespace;
1929 struct nvme_controller;
1930 struct nvme_passthru_cmd;
1931 
1932 typedef void (*nvme_cb_fn_t)(void *, const struct nvme_completion *);
1933 
1934 enum nvme_namespace_flags {
1935 	NVME_NS_DEALLOCATE_SUPPORTED	= 0x01,
1936 	NVME_NS_FLUSH_SUPPORTED		= 0x02,
1937 	NVME_NS_ALIVE			= 0x04,
1938 	NVME_NS_DELTA			= 0x08,
1939 	NVME_NS_GONE			= 0x10,
1940 };
1941 
1942 int	nvme_ctrlr_passthrough_cmd(struct nvme_controller *ctrlr,
1943 				   struct nvme_pt_command *pt,
1944 				   uint32_t nsid, int is_user_buffer,
1945 				   int is_admin_cmd);
1946 
1947 int	nvme_ctrlr_linux_passthru_cmd(struct nvme_controller *ctrlr,
1948 				      struct nvme_passthru_cmd *npc,
1949 				      uint32_t nsid, bool is_user,
1950 				      bool is_admin);
1951 
1952 /* Admin functions */
1953 void	nvme_ctrlr_cmd_set_feature(struct nvme_controller *ctrlr,
1954 				   uint8_t feature, uint32_t cdw11,
1955 				   uint32_t cdw12, uint32_t cdw13,
1956 				   uint32_t cdw14, uint32_t cdw15,
1957 				   void *payload, uint32_t payload_size,
1958 				   nvme_cb_fn_t cb_fn, void *cb_arg);
1959 void	nvme_ctrlr_cmd_get_feature(struct nvme_controller *ctrlr,
1960 				   uint8_t feature, uint32_t cdw11,
1961 				   void *payload, uint32_t payload_size,
1962 				   nvme_cb_fn_t cb_fn, void *cb_arg);
1963 void	nvme_ctrlr_cmd_get_log_page(struct nvme_controller *ctrlr,
1964 				    uint8_t log_page, uint32_t nsid,
1965 				    void *payload, uint32_t payload_size,
1966 				    nvme_cb_fn_t cb_fn, void *cb_arg);
1967 
1968 /* NVM I/O functions */
1969 int	nvme_ns_cmd_write(struct nvme_namespace *ns, void *payload,
1970 			  uint64_t lba, uint32_t lba_count, nvme_cb_fn_t cb_fn,
1971 			  void *cb_arg);
1972 int	nvme_ns_cmd_write_bio(struct nvme_namespace *ns, struct bio *bp,
1973 			      nvme_cb_fn_t cb_fn, void *cb_arg);
1974 int	nvme_ns_cmd_read(struct nvme_namespace *ns, void *payload,
1975 			 uint64_t lba, uint32_t lba_count, nvme_cb_fn_t cb_fn,
1976 			 void *cb_arg);
1977 int	nvme_ns_cmd_read_bio(struct nvme_namespace *ns, struct bio *bp,
1978 			      nvme_cb_fn_t cb_fn, void *cb_arg);
1979 int	nvme_ns_cmd_deallocate(struct nvme_namespace *ns, void *payload,
1980 			       uint8_t num_ranges, nvme_cb_fn_t cb_fn,
1981 			       void *cb_arg);
1982 int	nvme_ns_cmd_flush(struct nvme_namespace *ns, nvme_cb_fn_t cb_fn,
1983 			  void *cb_arg);
1984 int	nvme_ns_dump(struct nvme_namespace *ns, void *virt, off_t offset,
1985 		     size_t len);
1986 
1987 /* Controller helper functions */
1988 device_t	nvme_ctrlr_get_device(struct nvme_controller *ctrlr);
1989 const struct nvme_controller_data *
1990 		nvme_ctrlr_get_data(struct nvme_controller *ctrlr);
1991 static inline bool
nvme_ctrlr_has_dataset_mgmt(const struct nvme_controller_data * cd)1992 nvme_ctrlr_has_dataset_mgmt(const struct nvme_controller_data *cd)
1993 {
1994 	/* Assumes cd was byte swapped by nvme_controller_data_swapbytes() */
1995 	return (NVMEV(NVME_CTRLR_DATA_ONCS_DSM, cd->oncs) != 0);
1996 }
1997 
1998 /*
1999  * Copy the NVME device's serial number to the provided buffer, which must be
2000  * at least DISK_IDENT_SIZE bytes large.
2001  */
2002 static inline void
nvme_cdata_get_disk_ident(const struct nvme_controller_data * cdata,uint8_t * sn)2003 nvme_cdata_get_disk_ident(const struct nvme_controller_data *cdata, uint8_t *sn)
2004 {
2005 	_Static_assert(NVME_SERIAL_NUMBER_LENGTH < DISK_IDENT_SIZE,
2006 		"NVME serial number too big for disk ident");
2007 
2008 	memcpy(sn, cdata->sn, NVME_SERIAL_NUMBER_LENGTH);
2009 	sn[NVME_SERIAL_NUMBER_LENGTH] = '\0';
2010 	for (int i = 0; sn[i] != '\0'; i++) {
2011 		if (sn[i] < 0x20 || sn[i] >= 0x80)
2012 			sn[i] = ' ';
2013 	}
2014 }
2015 
2016 /* Namespace helper functions */
2017 uint32_t	nvme_ns_get_max_io_xfer_size(struct nvme_namespace *ns);
2018 uint32_t	nvme_ns_get_sector_size(struct nvme_namespace *ns);
2019 uint64_t	nvme_ns_get_num_sectors(struct nvme_namespace *ns);
2020 uint64_t	nvme_ns_get_size(struct nvme_namespace *ns);
2021 uint32_t	nvme_ns_get_flags(struct nvme_namespace *ns);
2022 const char *	nvme_ns_get_serial_number(struct nvme_namespace *ns);
2023 const char *	nvme_ns_get_model_number(struct nvme_namespace *ns);
2024 const struct nvme_namespace_data *
2025 		nvme_ns_get_data(struct nvme_namespace *ns);
2026 uint32_t	nvme_ns_get_stripesize(struct nvme_namespace *ns);
2027 
2028 int	nvme_ns_bio_process(struct nvme_namespace *ns, struct bio *bp,
2029 			    nvme_cb_fn_t cb_fn);
2030 int	nvme_ns_ioctl_process(struct nvme_namespace *ns, u_long cmd,
2031     caddr_t arg, int flag, struct thread *td);
2032 
2033 /*
2034  * Command building helper functions -- shared with CAM
2035  * These functions assume allocator zeros out cmd structure
2036  * CAM's xpt_get_ccb and the request allocator for nvme both
2037  * do zero'd allocations.
2038  */
2039 static inline
nvme_ns_flush_cmd(struct nvme_command * cmd,uint32_t nsid)2040 void	nvme_ns_flush_cmd(struct nvme_command *cmd, uint32_t nsid)
2041 {
2042 
2043 	cmd->opc = NVME_OPC_FLUSH;
2044 	cmd->nsid = htole32(nsid);
2045 }
2046 
2047 static inline
nvme_ns_rw_cmd(struct nvme_command * cmd,uint32_t rwcmd,uint32_t nsid,uint64_t lba,uint32_t count)2048 void	nvme_ns_rw_cmd(struct nvme_command *cmd, uint32_t rwcmd, uint32_t nsid,
2049     uint64_t lba, uint32_t count)
2050 {
2051 	cmd->opc = rwcmd;
2052 	cmd->nsid = htole32(nsid);
2053 	cmd->cdw10 = htole32(lba & 0xffffffffu);
2054 	cmd->cdw11 = htole32(lba >> 32);
2055 	cmd->cdw12 = htole32(count-1);
2056 }
2057 
2058 static inline
nvme_ns_write_cmd(struct nvme_command * cmd,uint32_t nsid,uint64_t lba,uint32_t count)2059 void	nvme_ns_write_cmd(struct nvme_command *cmd, uint32_t nsid,
2060     uint64_t lba, uint32_t count)
2061 {
2062 	nvme_ns_rw_cmd(cmd, NVME_OPC_WRITE, nsid, lba, count);
2063 }
2064 
2065 static inline
nvme_ns_read_cmd(struct nvme_command * cmd,uint32_t nsid,uint64_t lba,uint32_t count)2066 void	nvme_ns_read_cmd(struct nvme_command *cmd, uint32_t nsid,
2067     uint64_t lba, uint32_t count)
2068 {
2069 	nvme_ns_rw_cmd(cmd, NVME_OPC_READ, nsid, lba, count);
2070 }
2071 
2072 static inline
nvme_ns_trim_cmd(struct nvme_command * cmd,uint32_t nsid,uint32_t num_ranges)2073 void	nvme_ns_trim_cmd(struct nvme_command *cmd, uint32_t nsid,
2074     uint32_t num_ranges)
2075 {
2076 	cmd->opc = NVME_OPC_DATASET_MANAGEMENT;
2077 	cmd->nsid = htole32(nsid);
2078 	cmd->cdw10 = htole32(num_ranges - 1);
2079 	cmd->cdw11 = htole32(NVME_DSM_ATTR_DEALLOCATE);
2080 }
2081 
2082 extern int nvme_use_nvd;
2083 
2084 #endif /* _KERNEL */
2085 
2086 /* Endianess conversion functions for NVMe structs */
2087 static inline
nvme_completion_swapbytes(struct nvme_completion * s __unused)2088 void	nvme_completion_swapbytes(struct nvme_completion *s __unused)
2089 {
2090 #if _BYTE_ORDER != _LITTLE_ENDIAN
2091 
2092 	s->cdw0 = le32toh(s->cdw0);
2093 	/* omit rsvd1 */
2094 	s->sqhd = le16toh(s->sqhd);
2095 	s->sqid = le16toh(s->sqid);
2096 	/* omit cid */
2097 	s->status = le16toh(s->status);
2098 #endif
2099 }
2100 
2101 static inline
nvme_power_state_swapbytes(struct nvme_power_state * s __unused)2102 void	nvme_power_state_swapbytes(struct nvme_power_state *s __unused)
2103 {
2104 #if _BYTE_ORDER != _LITTLE_ENDIAN
2105 
2106 	s->mp = le16toh(s->mp);
2107 	s->enlat = le32toh(s->enlat);
2108 	s->exlat = le32toh(s->exlat);
2109 	s->idlp = le16toh(s->idlp);
2110 	s->actp = le16toh(s->actp);
2111 #endif
2112 }
2113 
2114 static inline
nvme_controller_data_swapbytes(struct nvme_controller_data * s __unused)2115 void	nvme_controller_data_swapbytes(struct nvme_controller_data *s __unused)
2116 {
2117 #if _BYTE_ORDER != _LITTLE_ENDIAN
2118 	int i;
2119 
2120 	s->vid = le16toh(s->vid);
2121 	s->ssvid = le16toh(s->ssvid);
2122 	s->ctrlr_id = le16toh(s->ctrlr_id);
2123 	s->ver = le32toh(s->ver);
2124 	s->rtd3r = le32toh(s->rtd3r);
2125 	s->rtd3e = le32toh(s->rtd3e);
2126 	s->oaes = le32toh(s->oaes);
2127 	s->ctratt = le32toh(s->ctratt);
2128 	s->rrls = le16toh(s->rrls);
2129 	s->crdt1 = le16toh(s->crdt1);
2130 	s->crdt2 = le16toh(s->crdt2);
2131 	s->crdt3 = le16toh(s->crdt3);
2132 	s->oacs = le16toh(s->oacs);
2133 	s->wctemp = le16toh(s->wctemp);
2134 	s->cctemp = le16toh(s->cctemp);
2135 	s->mtfa = le16toh(s->mtfa);
2136 	s->hmpre = le32toh(s->hmpre);
2137 	s->hmmin = le32toh(s->hmmin);
2138 	s->rpmbs = le32toh(s->rpmbs);
2139 	s->edstt = le16toh(s->edstt);
2140 	s->kas = le16toh(s->kas);
2141 	s->hctma = le16toh(s->hctma);
2142 	s->mntmt = le16toh(s->mntmt);
2143 	s->mxtmt = le16toh(s->mxtmt);
2144 	s->sanicap = le32toh(s->sanicap);
2145 	s->hmminds = le32toh(s->hmminds);
2146 	s->hmmaxd = le16toh(s->hmmaxd);
2147 	s->nsetidmax = le16toh(s->nsetidmax);
2148 	s->endgidmax = le16toh(s->endgidmax);
2149 	s->anagrpmax = le32toh(s->anagrpmax);
2150 	s->nanagrpid = le32toh(s->nanagrpid);
2151 	s->pels = le32toh(s->pels);
2152 	s->maxcmd = le16toh(s->maxcmd);
2153 	s->nn = le32toh(s->nn);
2154 	s->oncs = le16toh(s->oncs);
2155 	s->fuses = le16toh(s->fuses);
2156 	s->awun = le16toh(s->awun);
2157 	s->awupf = le16toh(s->awupf);
2158 	s->acwu = le16toh(s->acwu);
2159 	s->sgls = le32toh(s->sgls);
2160 	s->mnan = le32toh(s->mnan);
2161 	s->ioccsz = le32toh(s->ioccsz);
2162 	s->iorcsz = le32toh(s->iorcsz);
2163 	s->icdoff = le16toh(s->icdoff);
2164 	s->ofcs = le16toh(s->ofcs);
2165 	for (i = 0; i < 32; i++)
2166 		nvme_power_state_swapbytes(&s->power_state[i]);
2167 #endif
2168 }
2169 
2170 static inline
nvme_namespace_data_swapbytes(struct nvme_namespace_data * s __unused)2171 void	nvme_namespace_data_swapbytes(struct nvme_namespace_data *s __unused)
2172 {
2173 #if _BYTE_ORDER != _LITTLE_ENDIAN
2174 	s->nsze = le64toh(s->nsze);
2175 	s->ncap = le64toh(s->ncap);
2176 	s->nuse = le64toh(s->nuse);
2177 	s->nawun = le16toh(s->nawun);
2178 	s->nawupf = le16toh(s->nawupf);
2179 	s->nacwu = le16toh(s->nacwu);
2180 	s->nabsn = le16toh(s->nabsn);
2181 	s->nabo = le16toh(s->nabo);
2182 	s->nabspf = le16toh(s->nabspf);
2183 	s->noiob = le16toh(s->noiob);
2184 	s->npwg = le16toh(s->npwg);
2185 	s->npwa = le16toh(s->npwa);
2186 	s->npdg = le16toh(s->npdg);
2187 	s->npda = le16toh(s->npda);
2188 	s->nows = le16toh(s->nows);
2189 	s->anagrpid = le32toh(s->anagrpid);
2190 	s->nvmsetid = le16toh(s->nvmsetid);
2191 	s->endgid = le16toh(s->endgid);
2192 	for (unsigned int i = 0; i < nitems(s->lbaf); i++)
2193 		s->lbaf[i] = le32toh(s->lbaf[i]);
2194 #endif
2195 }
2196 
2197 static inline
nvme_error_information_entry_swapbytes(struct nvme_error_information_entry * s __unused)2198 void	nvme_error_information_entry_swapbytes(
2199     struct nvme_error_information_entry *s __unused)
2200 {
2201 #if _BYTE_ORDER != _LITTLE_ENDIAN
2202 
2203 	s->error_count = le64toh(s->error_count);
2204 	s->sqid = le16toh(s->sqid);
2205 	s->cid = le16toh(s->cid);
2206 	s->status = le16toh(s->status);
2207 	s->error_location = le16toh(s->error_location);
2208 	s->lba = le64toh(s->lba);
2209 	s->nsid = le32toh(s->nsid);
2210 	s->csi = le64toh(s->csi);
2211 	s->ttsi = le16toh(s->ttsi);
2212 #endif
2213 }
2214 
2215 static inline
nvme_le128toh(void * p __unused)2216 void	nvme_le128toh(void *p __unused)
2217 {
2218 #if _BYTE_ORDER != _LITTLE_ENDIAN
2219 	/* Swap 16 bytes in place */
2220 	char *tmp = (char*)p;
2221 	char b;
2222 	int i;
2223 	for (i = 0; i < 8; i++) {
2224 		b = tmp[i];
2225 		tmp[i] = tmp[15-i];
2226 		tmp[15-i] = b;
2227 	}
2228 #endif
2229 }
2230 
2231 static inline
nvme_health_information_page_swapbytes(struct nvme_health_information_page * s __unused)2232 void	nvme_health_information_page_swapbytes(
2233     struct nvme_health_information_page *s __unused)
2234 {
2235 #if _BYTE_ORDER != _LITTLE_ENDIAN
2236 	int i;
2237 
2238 	s->temperature = le16toh(s->temperature);
2239 	nvme_le128toh((void *)s->data_units_read);
2240 	nvme_le128toh((void *)s->data_units_written);
2241 	nvme_le128toh((void *)s->host_read_commands);
2242 	nvme_le128toh((void *)s->host_write_commands);
2243 	nvme_le128toh((void *)s->controller_busy_time);
2244 	nvme_le128toh((void *)s->power_cycles);
2245 	nvme_le128toh((void *)s->power_on_hours);
2246 	nvme_le128toh((void *)s->unsafe_shutdowns);
2247 	nvme_le128toh((void *)s->media_errors);
2248 	nvme_le128toh((void *)s->num_error_info_log_entries);
2249 	s->warning_temp_time = le32toh(s->warning_temp_time);
2250 	s->error_temp_time = le32toh(s->error_temp_time);
2251 	for (i = 0; i < 8; i++)
2252 		s->temp_sensor[i] = le16toh(s->temp_sensor[i]);
2253 	s->tmt1tc = le32toh(s->tmt1tc);
2254 	s->tmt2tc = le32toh(s->tmt2tc);
2255 	s->ttftmt1 = le32toh(s->ttftmt1);
2256 	s->ttftmt2 = le32toh(s->ttftmt2);
2257 #endif
2258 }
2259 
2260 static inline
nvme_ns_list_swapbytes(struct nvme_ns_list * s __unused)2261 void	nvme_ns_list_swapbytes(struct nvme_ns_list *s __unused)
2262 {
2263 #if _BYTE_ORDER != _LITTLE_ENDIAN
2264 	int i;
2265 
2266 	for (i = 0; i < 1024; i++)
2267 		s->ns[i] = le32toh(s->ns[i]);
2268 #endif
2269 }
2270 
2271 static inline
nvme_command_effects_page_swapbytes(struct nvme_command_effects_page * s __unused)2272 void	nvme_command_effects_page_swapbytes(
2273     struct nvme_command_effects_page *s __unused)
2274 {
2275 #if _BYTE_ORDER != _LITTLE_ENDIAN
2276 	int i;
2277 
2278 	for (i = 0; i < 256; i++)
2279 		s->acs[i] = le32toh(s->acs[i]);
2280 	for (i = 0; i < 256; i++)
2281 		s->iocs[i] = le32toh(s->iocs[i]);
2282 #endif
2283 }
2284 
2285 static inline
nvme_res_notification_page_swapbytes(struct nvme_res_notification_page * s __unused)2286 void	nvme_res_notification_page_swapbytes(
2287     struct nvme_res_notification_page *s __unused)
2288 {
2289 #if _BYTE_ORDER != _LITTLE_ENDIAN
2290 	s->log_page_count = le64toh(s->log_page_count);
2291 	s->nsid = le32toh(s->nsid);
2292 #endif
2293 }
2294 
2295 static inline
nvme_sanitize_status_page_swapbytes(struct nvme_sanitize_status_page * s __unused)2296 void	nvme_sanitize_status_page_swapbytes(
2297     struct nvme_sanitize_status_page *s __unused)
2298 {
2299 #if _BYTE_ORDER != _LITTLE_ENDIAN
2300 	s->sprog = le16toh(s->sprog);
2301 	s->sstat = le16toh(s->sstat);
2302 	s->scdw10 = le32toh(s->scdw10);
2303 	s->etfo = le32toh(s->etfo);
2304 	s->etfbe = le32toh(s->etfbe);
2305 	s->etfce = le32toh(s->etfce);
2306 	s->etfownd = le32toh(s->etfownd);
2307 	s->etfbewnd = le32toh(s->etfbewnd);
2308 	s->etfcewnd = le32toh(s->etfcewnd);
2309 #endif
2310 }
2311 
2312 static inline
nvme_resv_status_swapbytes(struct nvme_resv_status * s __unused,size_t size __unused)2313 void	nvme_resv_status_swapbytes(struct nvme_resv_status *s __unused,
2314     size_t size __unused)
2315 {
2316 #if _BYTE_ORDER != _LITTLE_ENDIAN
2317 	size_t i, n;
2318 
2319 	s->gen = le32toh(s->gen);
2320 	n = (s->regctl[1] << 8) | s->regctl[0];
2321 	n = MIN(n, (size - sizeof(s)) / sizeof(s->ctrlr[0]));
2322 	for (i = 0; i < n; i++) {
2323 		s->ctrlr[i].ctrlr_id = le16toh(s->ctrlr[i].ctrlr_id);
2324 		s->ctrlr[i].hostid = le64toh(s->ctrlr[i].hostid);
2325 		s->ctrlr[i].rkey = le64toh(s->ctrlr[i].rkey);
2326 	}
2327 #endif
2328 }
2329 
2330 static inline
nvme_resv_status_ext_swapbytes(struct nvme_resv_status_ext * s __unused,size_t size __unused)2331 void	nvme_resv_status_ext_swapbytes(struct nvme_resv_status_ext *s __unused,
2332     size_t size __unused)
2333 {
2334 #if _BYTE_ORDER != _LITTLE_ENDIAN
2335 	size_t i, n;
2336 
2337 	s->gen = le32toh(s->gen);
2338 	n = (s->regctl[1] << 8) | s->regctl[0];
2339 	n = MIN(n, (size - sizeof(s)) / sizeof(s->ctrlr[0]));
2340 	for (i = 0; i < n; i++) {
2341 		s->ctrlr[i].ctrlr_id = le16toh(s->ctrlr[i].ctrlr_id);
2342 		s->ctrlr[i].rkey = le64toh(s->ctrlr[i].rkey);
2343 		nvme_le128toh((void *)s->ctrlr[i].hostid);
2344 	}
2345 #endif
2346 }
2347 
2348 static inline void
nvme_device_self_test_swapbytes(struct nvme_device_self_test_page * s __unused)2349 nvme_device_self_test_swapbytes(struct nvme_device_self_test_page *s __unused)
2350 {
2351 #if _BYTE_ORDER != _LITTLE_ENDIAN
2352 	uint8_t *tmp;
2353 	uint32_t r, i;
2354 	uint8_t b;
2355 
2356 	for (r = 0; r < 20; r++) {
2357 		s->result[r].poh = le64toh(s->result[r].poh);
2358 		s->result[r].nsid = le32toh(s->result[r].nsid);
2359 		/* Unaligned 64-bit loads fail on some architectures */
2360 		tmp = s->result[r].failing_lba;
2361 		for (i = 0; i < 4; i++) {
2362 			b = tmp[i];
2363 			tmp[i] = tmp[7-i];
2364 			tmp[7-i] = b;
2365 		}
2366 	}
2367 #endif
2368 }
2369 
2370 static inline void
nvme_discovery_log_entry_swapbytes(struct nvme_discovery_log_entry * s __unused)2371 nvme_discovery_log_entry_swapbytes(struct nvme_discovery_log_entry *s __unused)
2372 {
2373 #if _BYTE_ORDER != _LITTLE_ENDIAN
2374 	s->portid = le16toh(s->portid);
2375 	s->cntlid = le16toh(s->cntlid);
2376 	s->aqsz = le16toh(s->aqsz);
2377 	if (s->trtype == 0x01 /* RDMA */) {
2378 		s->tsas.rdma.rdma_pkey = le16toh(s->tsas.rdma.rdma_pkey);
2379 	}
2380 #endif
2381 }
2382 
2383 static inline void
nvme_discovery_log_swapbytes(struct nvme_discovery_log * s __unused)2384 nvme_discovery_log_swapbytes(struct nvme_discovery_log *s __unused)
2385 {
2386 #if _BYTE_ORDER != _LITTLE_ENDIAN
2387 	s->genctr = le64toh(s->genctr);
2388 	s->numrec = le64toh(s->numrec);
2389 	s->recfmt = le16toh(s->recfmt);
2390 #endif
2391 }
2392 #endif /* __NVME_H__ */
2393