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) 106 107 /* CAP.CSS command set support flags */ 108 #define NVME_CAP_CSS_NVM (0x01) 109 #define NVME_CAP_CSS_IOCSS (0x40) 110 #define NVME_CAP_CSS_NOIOCSS (0x80) 111 #define NVME_CAP_HI_REG_BPS_SHIFT (13) 112 #define NVME_CAP_HI_REG_BPS_MASK (0x1) 113 #define NVME_CAP_HI_REG_CPS_SHIFT (14) 114 #define NVME_CAP_HI_REG_CPS_MASK (0x3) 115 #define NVME_CAP_HI_REG_MPSMIN_SHIFT (16) 116 #define NVME_CAP_HI_REG_MPSMIN_MASK (0xF) 117 #define NVME_CAP_HI_REG_MPSMAX_SHIFT (20) 118 #define NVME_CAP_HI_REG_MPSMAX_MASK (0xF) 119 #define NVME_CAP_HI_REG_PMRS_SHIFT (24) 120 #define NVME_CAP_HI_REG_PMRS_MASK (0x1) 121 #define NVME_CAP_HI_REG_CMBS_SHIFT (25) 122 #define NVME_CAP_HI_REG_CMBS_MASK (0x1) 123 #define NVME_CAP_HI_REG_NSSS_SHIFT (26) 124 #define NVME_CAP_HI_REG_NSSS_MASK (0x1) 125 #define NVME_CAP_HI_REG_CRWMS_SHIFT (27) 126 #define NVME_CAP_HI_REG_CRWMS_MASK (0x1) 127 #define NVME_CAP_HI_REG_CRIMS_SHIFT (28) 128 #define NVME_CAP_HI_REG_CRIMS_MASK (0x1) 129 #define NVME_CAP_HI_DSTRD(x) \ 130 NVMEV(NVME_CAP_HI_REG_DSTRD, x) 131 #define NVME_CAP_HI_NSSRS(x) \ 132 NVMEV(NVME_CAP_HI_REG_NSSRS, x) 133 #define NVME_CAP_HI_CSS(x) \ 134 NVMEV(NVME_CAP_HI_REG_CSS, x) 135 #define NVME_CAP_HI_CSS_NVM(x) \ 136 NVMEV(NVME_CAP_HI_REG_CSS_NVM, x) 137 #define NVME_CAP_HI_BPS(x) \ 138 NVMEV(NVME_CAP_HI_REG_BPS, x) 139 #define NVME_CAP_HI_CPS(x) \ 140 NVMEV(NVME_CAP_HI_REG_CPS, x) 141 #define NVME_CAP_HI_MPSMIN(x) \ 142 NVMEV(NVME_CAP_HI_REG_MPSMIN, x) 143 #define NVME_CAP_HI_MPSMAX(x) \ 144 NVMEV(NVME_CAP_HI_REG_MPSMAX, x) 145 #define NVME_CAP_HI_PMRS(x) \ 146 NVMEV(NVME_CAP_HI_REG_PMRS, x) 147 #define NVME_CAP_HI_CMBS(x) \ 148 NVMEV(NVME_CAP_HI_REG_CMBS, x) 149 #define NVME_CAP_HI_NSSS(x) \ 150 NVMEV(NVME_CAP_HI_REG_NSSS, x) 151 #define NVME_CAP_HI_CRWMS(x) \ 152 NVMEV(NVME_CAP_HI_REG_CRWMS, x) 153 #define NVME_CAP_HI_CRIMS(x) \ 154 NVMEV(NVME_CAP_HI_REG_CRIMS, x) 155 156 #define NVME_CC_REG_EN_SHIFT (0) 157 #define NVME_CC_REG_EN_MASK (0x1) 158 #define NVME_CC_REG_CSS_SHIFT (4) 159 #define NVME_CC_REG_CSS_MASK (0x7) 160 /* CC.CSS values */ 161 #define NVME_CC_CSS_NVM (0x0) 162 #define NVME_CC_CSS_IOCSS (0x6) 163 #define NVME_CC_CSS_ADMIN (0x7) 164 #define NVME_CC_REG_MPS_SHIFT (7) 165 #define NVME_CC_REG_MPS_MASK (0xF) 166 #define NVME_CC_REG_AMS_SHIFT (11) 167 #define NVME_CC_REG_AMS_MASK (0x7) 168 #define NVME_CC_REG_SHN_SHIFT (14) 169 #define NVME_CC_REG_SHN_MASK (0x3) 170 #define NVME_CC_REG_IOSQES_SHIFT (16) 171 #define NVME_CC_REG_IOSQES_MASK (0xF) 172 #define NVME_CC_REG_IOCQES_SHIFT (20) 173 #define NVME_CC_REG_IOCQES_MASK (0xF) 174 #define NVME_CC_REG_CRIME_SHIFT (24) 175 #define NVME_CC_REG_CRIME_MASK (0x1) 176 177 #define NVME_CSTS_REG_RDY_SHIFT (0) 178 #define NVME_CSTS_REG_RDY_MASK (0x1) 179 #define NVME_CSTS_REG_CFS_SHIFT (1) 180 #define NVME_CSTS_REG_CFS_MASK (0x1) 181 #define NVME_CSTS_REG_SHST_SHIFT (2) 182 #define NVME_CSTS_REG_SHST_MASK (0x3) 183 #define NVME_CSTS_REG_NVSRO_SHIFT (4) 184 #define NVME_CSTS_REG_NVSRO_MASK (0x1) 185 #define NVME_CSTS_REG_PP_SHIFT (5) 186 #define NVME_CSTS_REG_PP_MASK (0x1) 187 #define NVME_CSTS_REG_ST_SHIFT (6) 188 #define NVME_CSTS_REG_ST_MASK (0x1) 189 190 #define NVME_CSTS_GET_SHST(csts) \ 191 NVMEV(NVME_CSTS_REG_SHST, csts) 192 193 #define NVME_AQA_REG_ASQS_SHIFT (0) 194 #define NVME_AQA_REG_ASQS_MASK (0xFFF) 195 #define NVME_AQA_REG_ACQS_SHIFT (16) 196 #define NVME_AQA_REG_ACQS_MASK (0xFFF) 197 198 #define NVME_PMRCAP_REG_RDS_SHIFT (3) 199 #define NVME_PMRCAP_REG_RDS_MASK (0x1) 200 #define NVME_PMRCAP_REG_WDS_SHIFT (4) 201 #define NVME_PMRCAP_REG_WDS_MASK (0x1) 202 #define NVME_PMRCAP_REG_BIR_SHIFT (5) 203 #define NVME_PMRCAP_REG_BIR_MASK (0x7) 204 #define NVME_PMRCAP_REG_PMRTU_SHIFT (8) 205 #define NVME_PMRCAP_REG_PMRTU_MASK (0x3) 206 #define NVME_PMRCAP_REG_PMRWBM_SHIFT (10) 207 #define NVME_PMRCAP_REG_PMRWBM_MASK (0xf) 208 #define NVME_PMRCAP_REG_PMRTO_SHIFT (16) 209 #define NVME_PMRCAP_REG_PMRTO_MASK (0xff) 210 #define NVME_PMRCAP_REG_CMSS_SHIFT (24) 211 #define NVME_PMRCAP_REG_CMSS_MASK (0x1) 212 213 #define NVME_PMRCAP_RDS(x) \ 214 NVMEV(NVME_PMRCAP_REG_RDS, x) 215 #define NVME_PMRCAP_WDS(x) \ 216 NVMEV(NVME_PMRCAP_REG_WDS, x) 217 #define NVME_PMRCAP_BIR(x) \ 218 NVMEV(NVME_PMRCAP_REG_BIR, x) 219 #define NVME_PMRCAP_PMRTU(x) \ 220 NVMEV(NVME_PMRCAP_REG_PMRTU, x) 221 #define NVME_PMRCAP_PMRWBM(x) \ 222 NVMEV(NVME_PMRCAP_REG_PMRWBM, x) 223 #define NVME_PMRCAP_PMRTO(x) \ 224 NVMEV(NVME_PMRCAP_REG_PMRTO, x) 225 #define NVME_PMRCAP_CMSS(x) \ 226 NVMEV(NVME_PMRCAP_REG_CMSS, x) 227 228 /* Command field definitions */ 229 230 enum nvme_fuse { 231 NVME_FUSE_NORMAL = 0x0, 232 NVME_FUSE_FIRST = 0x1, 233 NVME_FUSE_SECOND = 0x2 234 }; 235 #define NVME_CMD_FUSE_SHIFT (0) 236 #define NVME_CMD_FUSE_MASK (0x3) 237 238 enum nvme_psdt { 239 NVME_PSDT_PRP = 0x0, 240 NVME_PSDT_SGL = 0x1, 241 NVME_PSDT_SGL_MPTR = 0x2 242 }; 243 #define NVME_CMD_PSDT_SHIFT (6) 244 #define NVME_CMD_PSDT_MASK (0x3) 245 246 /* Create I/O Submission Queue, cdw11 */ 247 #define NVME_CREATE_IO_SQ_PC (0x1) 248 #define NVME_CREATE_IO_SQ_QPRIO_SHIFT (1) 249 #define NVME_CREATE_IO_SQ_QPRIO_MASK (0x3) 250 251 /* Create I/O Completion Queue, cdw11 */ 252 #define NVME_CREATE_IO_CQ_PC (0x1) 253 #define NVME_CREATE_IO_CQ_IEN (0x2) 254 255 /* Queue priority classes, used with weighted round robin arbitration. */ 256 #define NVME_QPRIO_URGENT (0) 257 #define NVME_QPRIO_HIGH (1) 258 #define NVME_QPRIO_MEDIUM (2) 259 #define NVME_QPRIO_LOW (3) 260 261 #define NVME_STATUS_P_SHIFT (0) 262 #define NVME_STATUS_P_MASK (0x1) 263 #define NVME_STATUS_SC_SHIFT (1) 264 #define NVME_STATUS_SC_MASK (0xFF) 265 #define NVME_STATUS_SCT_SHIFT (9) 266 #define NVME_STATUS_SCT_MASK (0x7) 267 #define NVME_STATUS_CRD_SHIFT (12) 268 #define NVME_STATUS_CRD_MASK (0x3) 269 #define NVME_STATUS_M_SHIFT (14) 270 #define NVME_STATUS_M_MASK (0x1) 271 #define NVME_STATUS_DNR_SHIFT (15) 272 #define NVME_STATUS_DNR_MASK (0x1) 273 274 #define NVME_STATUS_GET_P(st) \ 275 NVMEV(NVME_STATUS_P, st) 276 #define NVME_STATUS_GET_SC(st) \ 277 NVMEV(NVME_STATUS_SC, st) 278 #define NVME_STATUS_GET_SCT(st) \ 279 NVMEV(NVME_STATUS_SCT, st) 280 #define NVME_STATUS_GET_CRD(st) \ 281 NVMEV(NVME_STATUS_CRD, st) 282 #define NVME_STATUS_GET_M(st) \ 283 NVMEV(NVME_STATUS_M, st) 284 #define NVME_STATUS_GET_DNR(st) \ 285 NVMEV(NVME_STATUS_DNR, st) 286 287 #define NVME_PWR_ST_MPS_SHIFT (0) 288 #define NVME_PWR_ST_MPS_MASK (0x1) 289 #define NVME_PWR_ST_NOPS_SHIFT (1) 290 #define NVME_PWR_ST_NOPS_MASK (0x1) 291 #define NVME_PWR_ST_RRT_SHIFT (0) 292 #define NVME_PWR_ST_RRT_MASK (0x1F) 293 #define NVME_PWR_ST_RRL_SHIFT (0) 294 #define NVME_PWR_ST_RRL_MASK (0x1F) 295 #define NVME_PWR_ST_RWT_SHIFT (0) 296 #define NVME_PWR_ST_RWT_MASK (0x1F) 297 #define NVME_PWR_ST_RWL_SHIFT (0) 298 #define NVME_PWR_ST_RWL_MASK (0x1F) 299 #define NVME_PWR_ST_IPS_SHIFT (6) 300 #define NVME_PWR_ST_IPS_MASK (0x3) 301 #define NVME_PWR_ST_APW_SHIFT (0) 302 #define NVME_PWR_ST_APW_MASK (0x7) 303 #define NVME_PWR_ST_APS_SHIFT (6) 304 #define NVME_PWR_ST_APS_MASK (0x3) 305 306 /** Controller Multi-path I/O and Namespace Sharing Capabilities */ 307 /* More then one port */ 308 #define NVME_CTRLR_DATA_MIC_MPORTS_SHIFT (0) 309 #define NVME_CTRLR_DATA_MIC_MPORTS_MASK (0x1) 310 /* More then one controller */ 311 #define NVME_CTRLR_DATA_MIC_MCTRLRS_SHIFT (1) 312 #define NVME_CTRLR_DATA_MIC_MCTRLRS_MASK (0x1) 313 /* SR-IOV Virtual Function */ 314 #define NVME_CTRLR_DATA_MIC_SRIOVVF_SHIFT (2) 315 #define NVME_CTRLR_DATA_MIC_SRIOVVF_MASK (0x1) 316 /* Asymmetric Namespace Access Reporting */ 317 #define NVME_CTRLR_DATA_MIC_ANAR_SHIFT (3) 318 #define NVME_CTRLR_DATA_MIC_ANAR_MASK (0x1) 319 320 /** OAES - Optional Asynchronous Events Supported */ 321 /* supports Namespace Attribute Notices event */ 322 #define NVME_CTRLR_DATA_OAES_NS_ATTR_SHIFT (8) 323 #define NVME_CTRLR_DATA_OAES_NS_ATTR_MASK (0x1) 324 /* supports Firmware Activation Notices event */ 325 #define NVME_CTRLR_DATA_OAES_FW_ACTIVATE_SHIFT (9) 326 #define NVME_CTRLR_DATA_OAES_FW_ACTIVATE_MASK (0x1) 327 /* supports Asymmetric Namespace Access Change Notices event */ 328 #define NVME_CTRLR_DATA_OAES_ASYM_NS_CHANGE_SHIFT (11) 329 #define NVME_CTRLR_DATA_OAES_ASYM_NS_CHANGE_MASK (0x1) 330 /* supports Predictable Latency Event Aggregate Log Change Notices event */ 331 #define NVME_CTRLR_DATA_OAES_PREDICT_LATENCY_SHIFT (12) 332 #define NVME_CTRLR_DATA_OAES_PREDICT_LATENCY_MASK (0x1) 333 /* supports LBA Status Information Notices event */ 334 #define NVME_CTRLR_DATA_OAES_LBA_STATUS_SHIFT (13) 335 #define NVME_CTRLR_DATA_OAES_LBA_STATUS_MASK (0x1) 336 /* supports Endurance Group Event Aggregate Log Page Changes Notices event */ 337 #define NVME_CTRLR_DATA_OAES_ENDURANCE_GROUP_SHIFT (14) 338 #define NVME_CTRLR_DATA_OAES_ENDURANCE_GROUP_MASK (0x1) 339 /* supports Normal NVM Subsystem Shutdown event */ 340 #define NVME_CTRLR_DATA_OAES_NORMAL_SHUTDOWN_SHIFT (15) 341 #define NVME_CTRLR_DATA_OAES_NORMAL_SHUTDOWN_MASK (0x1) 342 /* supports Zone Descriptor Changed Notices event */ 343 #define NVME_CTRLR_DATA_OAES_ZONE_DESC_CHANGE_SHIFT (27) 344 #define NVME_CTRLR_DATA_OAES_ZONE_DESC_CHANGE_MASK (0x1) 345 /* supports Discovery Log Page Change Notification event */ 346 #define NVME_CTRLR_DATA_OAES_LOG_PAGE_CHANGE_SHIFT (31) 347 #define NVME_CTRLR_DATA_OAES_LOG_PAGE_CHANGE_MASK (0x1) 348 349 /** CTRATT - Controller Attributes */ 350 /* supports 128-bit Host Identifier */ 351 #define NVME_CTRLR_DATA_CTRATT_128BIT_HOSTID_SHIFT (0) 352 #define NVME_CTRLR_DATA_CTRATT_128BIT_HOSTID_MASK (0x1) 353 /* supports Non-Operational Power State Permissive Mode */ 354 #define NVME_CTRLR_DATA_CTRATT_NONOP_POWER_STATE_SHIFT (1) 355 #define NVME_CTRLR_DATA_CTRATT_NONOP_POWER_STATE_MASK (0x1) 356 /* supports NVM Sets */ 357 #define NVME_CTRLR_DATA_CTRATT_NVM_SETS_SHIFT (2) 358 #define NVME_CTRLR_DATA_CTRATT_NVM_SETS_MASK (0x1) 359 /* supports Read Recovery Levels */ 360 #define NVME_CTRLR_DATA_CTRATT_READ_RECOVERY_LVLS_SHIFT (3) 361 #define NVME_CTRLR_DATA_CTRATT_READ_RECOVERY_LVLS_MASK (0x1) 362 /* supports Endurance Groups */ 363 #define NVME_CTRLR_DATA_CTRATT_ENDURANCE_GROUPS_SHIFT (4) 364 #define NVME_CTRLR_DATA_CTRATT_ENDURANCE_GROUPS_MASK (0x1) 365 /* supports Predictable Latency Mode */ 366 #define NVME_CTRLR_DATA_CTRATT_PREDICTABLE_LATENCY_SHIFT (5) 367 #define NVME_CTRLR_DATA_CTRATT_PREDICTABLE_LATENCY_MASK (0x1) 368 /* supports Traffic Based Keep Alive Support */ 369 #define NVME_CTRLR_DATA_CTRATT_TBKAS_SHIFT (6) 370 #define NVME_CTRLR_DATA_CTRATT_TBKAS_MASK (0x1) 371 /* supports Namespace Granularity */ 372 #define NVME_CTRLR_DATA_CTRATT_NAMESPACE_GRANULARITY_SHIFT (7) 373 #define NVME_CTRLR_DATA_CTRATT_NAMESPACE_GRANULARITY_MASK (0x1) 374 /* supports SQ Associations */ 375 #define NVME_CTRLR_DATA_CTRATT_SQ_ASSOCIATIONS_SHIFT (8) 376 #define NVME_CTRLR_DATA_CTRATT_SQ_ASSOCIATIONS_MASK (0x1) 377 /* supports UUID List */ 378 #define NVME_CTRLR_DATA_CTRATT_UUID_LIST_SHIFT (9) 379 #define NVME_CTRLR_DATA_CTRATT_UUID_LIST_MASK (0x1) 380 381 /** OACS - optional admin command support */ 382 /* supports security send/receive commands */ 383 #define NVME_CTRLR_DATA_OACS_SECURITY_SHIFT (0) 384 #define NVME_CTRLR_DATA_OACS_SECURITY_MASK (0x1) 385 /* supports format nvm command */ 386 #define NVME_CTRLR_DATA_OACS_FORMAT_SHIFT (1) 387 #define NVME_CTRLR_DATA_OACS_FORMAT_MASK (0x1) 388 /* supports firmware activate/download commands */ 389 #define NVME_CTRLR_DATA_OACS_FIRMWARE_SHIFT (2) 390 #define NVME_CTRLR_DATA_OACS_FIRMWARE_MASK (0x1) 391 /* supports namespace management commands */ 392 #define NVME_CTRLR_DATA_OACS_NSMGMT_SHIFT (3) 393 #define NVME_CTRLR_DATA_OACS_NSMGMT_MASK (0x1) 394 /* supports Device Self-test command */ 395 #define NVME_CTRLR_DATA_OACS_SELFTEST_SHIFT (4) 396 #define NVME_CTRLR_DATA_OACS_SELFTEST_MASK (0x1) 397 /* supports Directives */ 398 #define NVME_CTRLR_DATA_OACS_DIRECTIVES_SHIFT (5) 399 #define NVME_CTRLR_DATA_OACS_DIRECTIVES_MASK (0x1) 400 /* supports NVMe-MI Send/Receive */ 401 #define NVME_CTRLR_DATA_OACS_NVMEMI_SHIFT (6) 402 #define NVME_CTRLR_DATA_OACS_NVMEMI_MASK (0x1) 403 /* supports Virtualization Management */ 404 #define NVME_CTRLR_DATA_OACS_VM_SHIFT (7) 405 #define NVME_CTRLR_DATA_OACS_VM_MASK (0x1) 406 /* supports Doorbell Buffer Config */ 407 #define NVME_CTRLR_DATA_OACS_DBBUFFER_SHIFT (8) 408 #define NVME_CTRLR_DATA_OACS_DBBUFFER_MASK (0x1) 409 /* supports Get LBA Status */ 410 #define NVME_CTRLR_DATA_OACS_GETLBA_SHIFT (9) 411 #define NVME_CTRLR_DATA_OACS_GETLBA_MASK (0x1) 412 413 /** firmware updates */ 414 /* first slot is read-only */ 415 #define NVME_CTRLR_DATA_FRMW_SLOT1_RO_SHIFT (0) 416 #define NVME_CTRLR_DATA_FRMW_SLOT1_RO_MASK (0x1) 417 /* number of firmware slots */ 418 #define NVME_CTRLR_DATA_FRMW_NUM_SLOTS_SHIFT (1) 419 #define NVME_CTRLR_DATA_FRMW_NUM_SLOTS_MASK (0x7) 420 /* firmware activation without reset */ 421 #define NVME_CTRLR_DATA_FRMW_ACT_WO_RESET_SHIFT (4) 422 #define NVME_CTRLR_DATA_FRMW_ACT_WO_RESET_MASK (0x1) 423 424 /** log page attributes */ 425 /* per namespace smart/health log page */ 426 #define NVME_CTRLR_DATA_LPA_NS_SMART_SHIFT (0) 427 #define NVME_CTRLR_DATA_LPA_NS_SMART_MASK (0x1) 428 /* Commands Supported and Effects log page */ 429 #define NVME_CTRLR_DATA_LPA_CMD_EFFECTS_SHIFT (1) 430 #define NVME_CTRLR_DATA_LPA_CMD_EFFECTS_MASK (0x1) 431 /* extended data for Get Log Page command */ 432 #define NVME_CTRLR_DATA_LPA_EXT_DATA_SHIFT (2) 433 #define NVME_CTRLR_DATA_LPA_EXT_DATA_MASK (0x1) 434 /* telemetry */ 435 #define NVME_CTRLR_DATA_LPA_TELEMETRY_SHIFT (3) 436 #define NVME_CTRLR_DATA_LPA_TELEMETRY_MASK (0x1) 437 /* persistent event */ 438 #define NVME_CTRLR_DATA_LPA_PERSISTENT_EVENT_SHIFT (4) 439 #define NVME_CTRLR_DATA_LPA_PERSISTENT_EVENT_MASK (0x1) 440 /* Supported log pages, etc */ 441 #define NVME_CTRLR_DATA_LPA_LOG_PAGES_PAGE_SHIFT (5) 442 #define NVME_CTRLR_DATA_LPA_LOG_PAGES_PAGE_MASK (0x1) 443 /* Data Area 4 for Telemetry */ 444 #define NVME_CTRLR_DATA_LPA_DA4_TELEMETRY_SHIFT (6) 445 #define NVME_CTRLR_DATA_LPA_DA4_TELEMETRY_MASK (0x1) 446 447 /** AVSCC - admin vendor specific command configuration */ 448 /* admin vendor specific commands use spec format */ 449 #define NVME_CTRLR_DATA_AVSCC_SPEC_FORMAT_SHIFT (0) 450 #define NVME_CTRLR_DATA_AVSCC_SPEC_FORMAT_MASK (0x1) 451 452 /** Autonomous Power State Transition Attributes */ 453 /* Autonomous Power State Transitions supported */ 454 #define NVME_CTRLR_DATA_APSTA_APST_SUPP_SHIFT (0) 455 #define NVME_CTRLR_DATA_APSTA_APST_SUPP_MASK (0x1) 456 457 /** Sanitize Capabilities */ 458 /* Crypto Erase Support */ 459 #define NVME_CTRLR_DATA_SANICAP_CES_SHIFT (0) 460 #define NVME_CTRLR_DATA_SANICAP_CES_MASK (0x1) 461 /* Block Erase Support */ 462 #define NVME_CTRLR_DATA_SANICAP_BES_SHIFT (1) 463 #define NVME_CTRLR_DATA_SANICAP_BES_MASK (0x1) 464 /* Overwrite Support */ 465 #define NVME_CTRLR_DATA_SANICAP_OWS_SHIFT (2) 466 #define NVME_CTRLR_DATA_SANICAP_OWS_MASK (0x1) 467 /* No-Deallocate Inhibited */ 468 #define NVME_CTRLR_DATA_SANICAP_NDI_SHIFT (29) 469 #define NVME_CTRLR_DATA_SANICAP_NDI_MASK (0x1) 470 /* No-Deallocate Modifies Media After Sanitize */ 471 #define NVME_CTRLR_DATA_SANICAP_NODMMAS_SHIFT (30) 472 #define NVME_CTRLR_DATA_SANICAP_NODMMAS_MASK (0x3) 473 #define NVME_CTRLR_DATA_SANICAP_NODMMAS_UNDEF (0) 474 #define NVME_CTRLR_DATA_SANICAP_NODMMAS_NO (1) 475 #define NVME_CTRLR_DATA_SANICAP_NODMMAS_YES (2) 476 477 /** submission queue entry size */ 478 #define NVME_CTRLR_DATA_SQES_MIN_SHIFT (0) 479 #define NVME_CTRLR_DATA_SQES_MIN_MASK (0xF) 480 #define NVME_CTRLR_DATA_SQES_MAX_SHIFT (4) 481 #define NVME_CTRLR_DATA_SQES_MAX_MASK (0xF) 482 483 /** completion queue entry size */ 484 #define NVME_CTRLR_DATA_CQES_MIN_SHIFT (0) 485 #define NVME_CTRLR_DATA_CQES_MIN_MASK (0xF) 486 #define NVME_CTRLR_DATA_CQES_MAX_SHIFT (4) 487 #define NVME_CTRLR_DATA_CQES_MAX_MASK (0xF) 488 489 /** optional nvm command support */ 490 #define NVME_CTRLR_DATA_ONCS_COMPARE_SHIFT (0) 491 #define NVME_CTRLR_DATA_ONCS_COMPARE_MASK (0x1) 492 #define NVME_CTRLR_DATA_ONCS_WRITE_UNC_SHIFT (1) 493 #define NVME_CTRLR_DATA_ONCS_WRITE_UNC_MASK (0x1) 494 #define NVME_CTRLR_DATA_ONCS_DSM_SHIFT (2) 495 #define NVME_CTRLR_DATA_ONCS_DSM_MASK (0x1) 496 #define NVME_CTRLR_DATA_ONCS_WRZERO_SHIFT (3) 497 #define NVME_CTRLR_DATA_ONCS_WRZERO_MASK (0x1) 498 #define NVME_CTRLR_DATA_ONCS_SAVEFEAT_SHIFT (4) 499 #define NVME_CTRLR_DATA_ONCS_SAVEFEAT_MASK (0x1) 500 #define NVME_CTRLR_DATA_ONCS_RESERV_SHIFT (5) 501 #define NVME_CTRLR_DATA_ONCS_RESERV_MASK (0x1) 502 #define NVME_CTRLR_DATA_ONCS_TIMESTAMP_SHIFT (6) 503 #define NVME_CTRLR_DATA_ONCS_TIMESTAMP_MASK (0x1) 504 #define NVME_CTRLR_DATA_ONCS_VERIFY_SHIFT (7) 505 #define NVME_CTRLR_DATA_ONCS_VERIFY_MASK (0x1) 506 507 /** Fused Operation Support */ 508 #define NVME_CTRLR_DATA_FUSES_CNW_SHIFT (0) 509 #define NVME_CTRLR_DATA_FUSES_CNW_MASK (0x1) 510 511 /** Format NVM Attributes */ 512 #define NVME_CTRLR_DATA_FNA_FORMAT_ALL_SHIFT (0) 513 #define NVME_CTRLR_DATA_FNA_FORMAT_ALL_MASK (0x1) 514 #define NVME_CTRLR_DATA_FNA_ERASE_ALL_SHIFT (1) 515 #define NVME_CTRLR_DATA_FNA_ERASE_ALL_MASK (0x1) 516 #define NVME_CTRLR_DATA_FNA_CRYPTO_ERASE_SHIFT (2) 517 #define NVME_CTRLR_DATA_FNA_CRYPTO_ERASE_MASK (0x1) 518 519 /** volatile write cache */ 520 /* volatile write cache present */ 521 #define NVME_CTRLR_DATA_VWC_PRESENT_SHIFT (0) 522 #define NVME_CTRLR_DATA_VWC_PRESENT_MASK (0x1) 523 /* flush all namespaces supported */ 524 #define NVME_CTRLR_DATA_VWC_ALL_SHIFT (1) 525 #define NVME_CTRLR_DATA_VWC_ALL_MASK (0x3) 526 #define NVME_CTRLR_DATA_VWC_ALL_UNKNOWN (0) 527 #define NVME_CTRLR_DATA_VWC_ALL_NO (2) 528 #define NVME_CTRLR_DATA_VWC_ALL_YES (3) 529 530 /** SGL Support */ 531 /* NVM command set SGL support */ 532 #define NVME_CTRLR_DATA_SGLS_NVM_COMMAND_SET_SHIFT (0) 533 #define NVME_CTRLR_DATA_SGLS_NVM_COMMAND_SET_MASK (0x3) 534 #define NVME_CTRLR_DATA_SGLS_KEYED_DATA_BLOCK_SHIFT (2) 535 #define NVME_CTRLR_DATA_SGLS_KEYED_DATA_BLOCK_MASK (0x1) 536 #define NVME_CTRLR_DATA_SGLS_BIT_BUCKET_SHIFT (16) 537 #define NVME_CTRLR_DATA_SGLS_BIT_BUCKET_MASK (0x1) 538 #define NVME_CTRLR_DATA_SGLS_CONTIG_MPTR_SHIFT (17) 539 #define NVME_CTRLR_DATA_SGLS_CONTIG_MPTR_MASK (0x1) 540 #define NVME_CTRLR_DATA_SGLS_OVERSIZED_SHIFT (18) 541 #define NVME_CTRLR_DATA_SGLS_OVERSIZED_MASK (0x1) 542 #define NVME_CTRLR_DATA_SGLS_MPTR_SGL_SHIFT (19) 543 #define NVME_CTRLR_DATA_SGLS_MPTR_SGL_MASK (0x1) 544 #define NVME_CTRLR_DATA_SGLS_ADDRESS_AS_OFFSET_SHIFT (20) 545 #define NVME_CTRLR_DATA_SGLS_ADDRESS_AS_OFFSET_MASK (0x1) 546 #define NVME_CTRLR_DATA_SGLS_TRANSPORT_DATA_BLOCK_SHIFT (21) 547 #define NVME_CTRLR_DATA_SGLS_TRANSPORT_DATA_BLOCK_MASK (0x1) 548 549 /** namespace features */ 550 /* thin provisioning */ 551 #define NVME_NS_DATA_NSFEAT_THIN_PROV_SHIFT (0) 552 #define NVME_NS_DATA_NSFEAT_THIN_PROV_MASK (0x1) 553 /* NAWUN, NAWUPF, and NACWU fields are valid */ 554 #define NVME_NS_DATA_NSFEAT_NA_FIELDS_SHIFT (1) 555 #define NVME_NS_DATA_NSFEAT_NA_FIELDS_MASK (0x1) 556 /* Deallocated or Unwritten Logical Block errors supported */ 557 #define NVME_NS_DATA_NSFEAT_DEALLOC_SHIFT (2) 558 #define NVME_NS_DATA_NSFEAT_DEALLOC_MASK (0x1) 559 /* NGUID and EUI64 fields are not reusable */ 560 #define NVME_NS_DATA_NSFEAT_NO_ID_REUSE_SHIFT (3) 561 #define NVME_NS_DATA_NSFEAT_NO_ID_REUSE_MASK (0x1) 562 /* NPWG, NPWA, NPDG, NPDA, and NOWS are valid */ 563 #define NVME_NS_DATA_NSFEAT_NPVALID_SHIFT (4) 564 #define NVME_NS_DATA_NSFEAT_NPVALID_MASK (0x1) 565 566 /** formatted lba size */ 567 #define NVME_NS_DATA_FLBAS_FORMAT_SHIFT (0) 568 #define NVME_NS_DATA_FLBAS_FORMAT_MASK (0xF) 569 #define NVME_NS_DATA_FLBAS_EXTENDED_SHIFT (4) 570 #define NVME_NS_DATA_FLBAS_EXTENDED_MASK (0x1) 571 #define NVME_NS_DATA_FLBAS_FORMAT_MSB_SHIFT (5) 572 #define NVME_NS_DATA_FLBAS_FORMAT_MSB_MASK (0x3) 573 /* FIDXL width, and the format count below which FIDXU is reserved. */ 574 #define NVME_NS_DATA_FLBAS_FIDXL_BITS (4) 575 #define NVME_NS_DATA_LBAF_BASE_COUNT (16) 576 577 /** metadata capabilities */ 578 /* metadata can be transferred as part of data prp list */ 579 #define NVME_NS_DATA_MC_EXTENDED_SHIFT (0) 580 #define NVME_NS_DATA_MC_EXTENDED_MASK (0x1) 581 /* metadata can be transferred with separate metadata pointer */ 582 #define NVME_NS_DATA_MC_POINTER_SHIFT (1) 583 #define NVME_NS_DATA_MC_POINTER_MASK (0x1) 584 585 /** end-to-end data protection capabilities */ 586 /* protection information type 1 */ 587 #define NVME_NS_DATA_DPC_PIT1_SHIFT (0) 588 #define NVME_NS_DATA_DPC_PIT1_MASK (0x1) 589 /* protection information type 2 */ 590 #define NVME_NS_DATA_DPC_PIT2_SHIFT (1) 591 #define NVME_NS_DATA_DPC_PIT2_MASK (0x1) 592 /* protection information type 3 */ 593 #define NVME_NS_DATA_DPC_PIT3_SHIFT (2) 594 #define NVME_NS_DATA_DPC_PIT3_MASK (0x1) 595 /* first eight bytes of metadata */ 596 #define NVME_NS_DATA_DPC_MD_START_SHIFT (3) 597 #define NVME_NS_DATA_DPC_MD_START_MASK (0x1) 598 /* last eight bytes of metadata */ 599 #define NVME_NS_DATA_DPC_MD_END_SHIFT (4) 600 #define NVME_NS_DATA_DPC_MD_END_MASK (0x1) 601 602 /** end-to-end data protection type settings */ 603 /* protection information type */ 604 #define NVME_NS_DATA_DPS_PIT_SHIFT (0) 605 #define NVME_NS_DATA_DPS_PIT_MASK (0x7) 606 /* 1 == protection info transferred at start of metadata */ 607 /* 0 == protection info transferred at end of metadata */ 608 #define NVME_NS_DATA_DPS_MD_START_SHIFT (3) 609 #define NVME_NS_DATA_DPS_MD_START_MASK (0x1) 610 611 /** Namespace Multi-path I/O and Namespace Sharing Capabilities */ 612 /* the namespace may be attached to two or more controllers */ 613 #define NVME_NS_DATA_NMIC_MAY_BE_SHARED_SHIFT (0) 614 #define NVME_NS_DATA_NMIC_MAY_BE_SHARED_MASK (0x1) 615 616 /** Reservation Capabilities */ 617 /* Persist Through Power Loss */ 618 #define NVME_NS_DATA_RESCAP_PTPL_SHIFT (0) 619 #define NVME_NS_DATA_RESCAP_PTPL_MASK (0x1) 620 /* supports the Write Exclusive */ 621 #define NVME_NS_DATA_RESCAP_WR_EX_SHIFT (1) 622 #define NVME_NS_DATA_RESCAP_WR_EX_MASK (0x1) 623 /* supports the Exclusive Access */ 624 #define NVME_NS_DATA_RESCAP_EX_AC_SHIFT (2) 625 #define NVME_NS_DATA_RESCAP_EX_AC_MASK (0x1) 626 /* supports the Write Exclusive – Registrants Only */ 627 #define NVME_NS_DATA_RESCAP_WR_EX_RO_SHIFT (3) 628 #define NVME_NS_DATA_RESCAP_WR_EX_RO_MASK (0x1) 629 /* supports the Exclusive Access - Registrants Only */ 630 #define NVME_NS_DATA_RESCAP_EX_AC_RO_SHIFT (4) 631 #define NVME_NS_DATA_RESCAP_EX_AC_RO_MASK (0x1) 632 /* supports the Write Exclusive – All Registrants */ 633 #define NVME_NS_DATA_RESCAP_WR_EX_AR_SHIFT (5) 634 #define NVME_NS_DATA_RESCAP_WR_EX_AR_MASK (0x1) 635 /* supports the Exclusive Access - All Registrants */ 636 #define NVME_NS_DATA_RESCAP_EX_AC_AR_SHIFT (6) 637 #define NVME_NS_DATA_RESCAP_EX_AC_AR_MASK (0x1) 638 /* Ignore Existing Key is used as defined in revision 1.3 or later */ 639 #define NVME_NS_DATA_RESCAP_IEKEY13_SHIFT (7) 640 #define NVME_NS_DATA_RESCAP_IEKEY13_MASK (0x1) 641 642 /** Format Progress Indicator */ 643 /* percentage of the Format NVM command that remains to be completed */ 644 #define NVME_NS_DATA_FPI_PERC_SHIFT (0) 645 #define NVME_NS_DATA_FPI_PERC_MASK (0x7f) 646 /* namespace supports the Format Progress Indicator */ 647 #define NVME_NS_DATA_FPI_SUPP_SHIFT (7) 648 #define NVME_NS_DATA_FPI_SUPP_MASK (0x1) 649 650 /** Deallocate Logical Block Features */ 651 /* deallocated logical block read behavior */ 652 #define NVME_NS_DATA_DLFEAT_READ_SHIFT (0) 653 #define NVME_NS_DATA_DLFEAT_READ_MASK (0x07) 654 #define NVME_NS_DATA_DLFEAT_READ_NR (0x00) 655 #define NVME_NS_DATA_DLFEAT_READ_00 (0x01) 656 #define NVME_NS_DATA_DLFEAT_READ_FF (0x02) 657 /* supports the Deallocate bit in the Write Zeroes */ 658 #define NVME_NS_DATA_DLFEAT_DWZ_SHIFT (3) 659 #define NVME_NS_DATA_DLFEAT_DWZ_MASK (0x01) 660 /* Guard field for deallocated logical blocks is set to the CRC */ 661 #define NVME_NS_DATA_DLFEAT_GCRC_SHIFT (4) 662 #define NVME_NS_DATA_DLFEAT_GCRC_MASK (0x01) 663 664 /** lba format support */ 665 /* metadata size */ 666 #define NVME_NS_DATA_LBAF_MS_SHIFT (0) 667 #define NVME_NS_DATA_LBAF_MS_MASK (0xFFFF) 668 /* lba data size */ 669 #define NVME_NS_DATA_LBAF_LBADS_SHIFT (16) 670 #define NVME_NS_DATA_LBAF_LBADS_MASK (0xFF) 671 /* relative performance */ 672 #define NVME_NS_DATA_LBAF_RP_SHIFT (24) 673 #define NVME_NS_DATA_LBAF_RP_MASK (0x3) 674 675 enum nvme_critical_warning_state { 676 NVME_CRIT_WARN_ST_AVAILABLE_SPARE = 0x1, 677 NVME_CRIT_WARN_ST_TEMPERATURE = 0x2, 678 NVME_CRIT_WARN_ST_DEVICE_RELIABILITY = 0x4, 679 NVME_CRIT_WARN_ST_READ_ONLY = 0x8, 680 NVME_CRIT_WARN_ST_VOLATILE_MEMORY_BACKUP = 0x10, 681 NVME_CRIT_WARN_ST_PERSISTENT_MEMORY_REGION = 0x20, 682 }; 683 #define NVME_CRIT_WARN_ST_RESERVED_MASK (0xC0) 684 #define NVME_ASYNC_EVENT_NS_ATTRIBUTE (1U << 8) 685 #define NVME_ASYNC_EVENT_FW_ACTIVATE (1U << 9) 686 #define NVME_ASYNC_EVENT_TELEMETRY_LOG (1U << 10) 687 #define NVME_ASYNC_EVENT_ASYM_NS_ACC (1U << 11) 688 #define NVME_ASYNC_EVENT_PRED_LAT_DELTA (1U << 12) 689 #define NVME_ASYNC_EVENT_LBA_STATUS (1U << 13) 690 #define NVME_ASYNC_EVENT_ENDURANCE_DELTA (1U << 14) 691 #define NVME_ASYNC_EVENT_NVM_SHUTDOWN (1U << 15) 692 #define NVME_ASYNC_EVENT_ZONE_DELTA (1U << 27) 693 #define NVME_ASYNC_EVENT_DISCOVERY_DELTA (1U << 31) 694 695 /* slot for current FW */ 696 #define NVME_FIRMWARE_PAGE_AFI_SLOT_SHIFT (0) 697 #define NVME_FIRMWARE_PAGE_AFI_SLOT_MASK (0x7) 698 699 /* Commands Supported and Effects */ 700 #define NVME_CE_PAGE_CSUP_SHIFT (0) 701 #define NVME_CE_PAGE_CSUP_MASK (0x1) 702 #define NVME_CE_PAGE_LBCC_SHIFT (1) 703 #define NVME_CE_PAGE_LBCC_MASK (0x1) 704 #define NVME_CE_PAGE_NCC_SHIFT (2) 705 #define NVME_CE_PAGE_NCC_MASK (0x1) 706 #define NVME_CE_PAGE_NIC_SHIFT (3) 707 #define NVME_CE_PAGE_NIC_MASK (0x1) 708 #define NVME_CE_PAGE_CCC_SHIFT (4) 709 #define NVME_CE_PAGE_CCC_MASK (0x1) 710 #define NVME_CE_PAGE_CSE_SHIFT (16) 711 #define NVME_CE_PAGE_CSE_MASK (0x7) 712 #define NVME_CE_PAGE_UUID_SHIFT (19) 713 #define NVME_CE_PAGE_UUID_MASK (0x1) 714 715 /* Sanitize Status */ 716 #define NVME_SS_PAGE_SSTAT_STATUS_SHIFT (0) 717 #define NVME_SS_PAGE_SSTAT_STATUS_MASK (0x7) 718 #define NVME_SS_PAGE_SSTAT_STATUS_NEVER (0) 719 #define NVME_SS_PAGE_SSTAT_STATUS_COMPLETED (1) 720 #define NVME_SS_PAGE_SSTAT_STATUS_INPROG (2) 721 #define NVME_SS_PAGE_SSTAT_STATUS_FAILED (3) 722 #define NVME_SS_PAGE_SSTAT_STATUS_COMPLETEDWD (4) 723 #define NVME_SS_PAGE_SSTAT_PASSES_SHIFT (3) 724 #define NVME_SS_PAGE_SSTAT_PASSES_MASK (0x1f) 725 #define NVME_SS_PAGE_SSTAT_GDE_SHIFT (8) 726 #define NVME_SS_PAGE_SSTAT_GDE_MASK (0x1) 727 728 /* Features */ 729 /* Get Features */ 730 #define NVME_FEAT_GET_SEL_SHIFT (8) 731 #define NVME_FEAT_GET_SEL_MASK (0x7) 732 #define NVME_FEAT_GET_FID_SHIFT (0) 733 #define NVME_FEAT_GET_FID_MASK (0xff) 734 735 /* Set Features */ 736 #define NVME_FEAT_SET_SV_SHIFT (31) 737 #define NVME_FEAT_SET_SV_MASK (0x1) 738 #define NVME_FEAT_SET_FID_SHIFT (0) 739 #define NVME_FEAT_SET_FID_MASK (0xff) 740 741 /* Async Events */ 742 #define NVME_ASYNC_EVENT_TYPE_SHIFT (0) 743 #define NVME_ASYNC_EVENT_TYPE_MASK (0x7) 744 #define NVME_ASYNC_EVENT_INFO_SHIFT (8) 745 #define NVME_ASYNC_EVENT_INFO_MASK (0xff) 746 #define NVME_ASYNC_EVENT_LOG_PAGE_ID_SHIFT (16) 747 #define NVME_ASYNC_EVENT_LOG_PAGE_ID_MASK (0xff) 748 749 /* Helper macro to combine *_MASK and *_SHIFT defines */ 750 #define NVMEM(name) (name##_MASK << name##_SHIFT) 751 752 /* Helper macro to extract value from x */ 753 #define NVMEV(name, x) (((x) >> name##_SHIFT) & name##_MASK) 754 755 /* Helper macro to construct a field value */ 756 #define NVMEF(name, x) (((x) & name##_MASK) << name##_SHIFT) 757 758 /* CC register SHN field values */ 759 enum shn_value { 760 NVME_SHN_NORMAL = 0x1, 761 NVME_SHN_ABRUPT = 0x2, 762 }; 763 764 /* CSTS register SHST field values */ 765 enum shst_value { 766 NVME_SHST_NORMAL = 0x0, 767 NVME_SHST_OCCURRING = 0x1, 768 NVME_SHST_COMPLETE = 0x2, 769 }; 770 771 struct nvme_registers { 772 uint32_t cap_lo; /* controller capabilities */ 773 uint32_t cap_hi; 774 uint32_t vs; /* version */ 775 uint32_t intms; /* interrupt mask set */ 776 uint32_t intmc; /* interrupt mask clear */ 777 uint32_t cc; /* controller configuration */ 778 uint32_t reserved1; 779 uint32_t csts; /* controller status */ 780 uint32_t nssr; /* NVM Subsystem Reset */ 781 uint32_t aqa; /* admin queue attributes */ 782 uint64_t asq; /* admin submission queue base addr */ 783 uint64_t acq; /* admin completion queue base addr */ 784 uint32_t cmbloc; /* Controller Memory Buffer Location */ 785 uint32_t cmbsz; /* Controller Memory Buffer Size */ 786 uint32_t bpinfo; /* Boot Partition Information */ 787 uint32_t bprsel; /* Boot Partition Read Select */ 788 uint64_t bpmbl; /* Boot Partition Memory Buffer Location */ 789 uint64_t cmbmsc; /* Controller Memory Buffer Memory Space Control */ 790 uint32_t cmbsts; /* Controller Memory Buffer Status */ 791 uint32_t cmbebs; /* Controller Memory Buffer Elasticity Buffer Size */ 792 uint32_t cmbswtp;/* Controller Memory Buffer Sustained Write Throughput */ 793 uint32_t nssd; /* NVM Subsystem Shutdown */ 794 uint32_t crto; /* Controller Ready Timeouts */ 795 uint8_t reserved3[3476]; /* 6Ch - DFFh */ 796 uint32_t pmrcap; /* Persistent Memory Capabilities */ 797 uint32_t pmrctl; /* Persistent Memory Region Control */ 798 uint32_t pmrsts; /* Persistent Memory Region Status */ 799 uint32_t pmrebs; /* Persistent Memory Region Elasticity Buffer Size */ 800 uint32_t pmrswtp; /* Persistent Memory Region Sustained Write Throughput */ 801 uint32_t pmrmsc_lo; /* Persistent Memory Region Controller Memory Space Control */ 802 uint32_t pmrmsc_hi; 803 uint8_t reserved4[484]; /* E1Ch - FFFh */ 804 struct { 805 uint32_t sq_tdbl; /* submission queue tail doorbell */ 806 uint32_t cq_hdbl; /* completion queue head doorbell */ 807 } doorbell[1]; 808 }; 809 810 _Static_assert(sizeof(struct nvme_registers) == 0x1008, "bad size for nvme_registers"); 811 812 #define NVME_SGL_SUBTYPE_SHIFT (0) 813 #define NVME_SGL_SUBTYPE_MASK (0xF) 814 #define NVME_SGL_TYPE_SHIFT (4) 815 #define NVME_SGL_TYPE_MASK (0xF) 816 817 #define NVME_SGL_TYPE(type, subtype) \ 818 ((subtype) << NVME_SGL_SUBTYPE_SHIFT | (type) << NVME_SGL_TYPE_SHIFT) 819 820 enum nvme_sgl_type { 821 NVME_SGL_TYPE_DATA_BLOCK = 0x0, 822 NVME_SGL_TYPE_BIT_BUCKET = 0x1, 823 NVME_SGL_TYPE_SEGMENT = 0x2, 824 NVME_SGL_TYPE_LAST_SEGMENT = 0x3, 825 NVME_SGL_TYPE_KEYED_DATA_BLOCK = 0x4, 826 NVME_SGL_TYPE_TRANSPORT_DATA_BLOCK = 0x5, 827 }; 828 829 enum nvme_sgl_subtype { 830 NVME_SGL_SUBTYPE_ADDRESS = 0x0, 831 NVME_SGL_SUBTYPE_OFFSET = 0x1, 832 NVME_SGL_SUBTYPE_TRANSPORT = 0xa, 833 }; 834 835 struct nvme_sgl_descriptor { 836 uint64_t address; 837 uint32_t length; 838 uint8_t reserved[3]; 839 uint8_t type; 840 }; 841 842 _Static_assert(sizeof(struct nvme_sgl_descriptor) == 16, "bad size for nvme_sgl_descriptor"); 843 844 struct nvme_command { 845 /* dword 0 */ 846 uint8_t opc; /* opcode */ 847 uint8_t fuse; /* fused operation */ 848 uint16_t cid; /* command identifier */ 849 850 /* dword 1 */ 851 uint32_t nsid; /* namespace identifier */ 852 853 /* dword 2-3 */ 854 uint32_t rsvd2; 855 uint32_t rsvd3; 856 857 /* dword 4-5 */ 858 uint64_t mptr; /* metadata pointer */ 859 860 /* dword 6-9 */ 861 union { 862 struct { 863 uint64_t prp1; /* prp entry 1 */ 864 uint64_t prp2; /* prp entry 2 */ 865 }; 866 struct nvme_sgl_descriptor sgl; 867 }; 868 869 /* dword 10-15 */ 870 uint32_t cdw10; /* command-specific */ 871 uint32_t cdw11; /* command-specific */ 872 uint32_t cdw12; /* command-specific */ 873 uint32_t cdw13; /* command-specific */ 874 uint32_t cdw14; /* command-specific */ 875 uint32_t cdw15; /* command-specific */ 876 } __aligned(8); 877 878 _Static_assert(sizeof(struct nvme_command) == 16 * 4, "bad size for nvme_command"); 879 880 struct nvme_completion { 881 /* dword 0 */ 882 uint32_t cdw0; /* command-specific */ 883 884 /* dword 1 */ 885 uint32_t rsvd1; 886 887 /* dword 2 */ 888 uint16_t sqhd; /* submission queue head pointer */ 889 uint16_t sqid; /* submission queue identifier */ 890 891 /* dword 3 */ 892 uint16_t cid; /* command identifier */ 893 uint16_t status; 894 } __aligned(8); /* riscv: nvme_qpair_process_completions has better code gen */ 895 896 _Static_assert(sizeof(struct nvme_completion) == 4 * 4, "bad size for nvme_completion"); 897 898 struct nvme_dsm_range { 899 uint32_t attributes; 900 uint32_t length; 901 uint64_t starting_lba; 902 }; 903 904 /* Largest DSM Trim that can be done */ 905 #define NVME_MAX_DSM_TRIM 4096 906 907 _Static_assert(sizeof(struct nvme_dsm_range) == 16, "bad size for nvme_dsm_ranage"); 908 909 /* status code types */ 910 enum nvme_status_code_type { 911 NVME_SCT_GENERIC = 0x0, 912 NVME_SCT_COMMAND_SPECIFIC = 0x1, 913 NVME_SCT_MEDIA_ERROR = 0x2, 914 NVME_SCT_PATH_RELATED = 0x3, 915 /* 0x3-0x6 - reserved */ 916 NVME_SCT_VENDOR_SPECIFIC = 0x7, 917 }; 918 919 /* generic command status codes */ 920 enum nvme_generic_command_status_code { 921 NVME_SC_SUCCESS = 0x00, 922 NVME_SC_INVALID_OPCODE = 0x01, 923 NVME_SC_INVALID_FIELD = 0x02, 924 NVME_SC_COMMAND_ID_CONFLICT = 0x03, 925 NVME_SC_DATA_TRANSFER_ERROR = 0x04, 926 NVME_SC_ABORTED_POWER_LOSS = 0x05, 927 NVME_SC_INTERNAL_DEVICE_ERROR = 0x06, 928 NVME_SC_ABORTED_BY_REQUEST = 0x07, 929 NVME_SC_ABORTED_SQ_DELETION = 0x08, 930 NVME_SC_ABORTED_FAILED_FUSED = 0x09, 931 NVME_SC_ABORTED_MISSING_FUSED = 0x0a, 932 NVME_SC_INVALID_NAMESPACE_OR_FORMAT = 0x0b, 933 NVME_SC_COMMAND_SEQUENCE_ERROR = 0x0c, 934 NVME_SC_INVALID_SGL_SEGMENT_DESCR = 0x0d, 935 NVME_SC_INVALID_NUMBER_OF_SGL_DESCR = 0x0e, 936 NVME_SC_DATA_SGL_LENGTH_INVALID = 0x0f, 937 NVME_SC_METADATA_SGL_LENGTH_INVALID = 0x10, 938 NVME_SC_SGL_DESCRIPTOR_TYPE_INVALID = 0x11, 939 NVME_SC_INVALID_USE_OF_CMB = 0x12, 940 NVME_SC_PRP_OFFET_INVALID = 0x13, 941 NVME_SC_ATOMIC_WRITE_UNIT_EXCEEDED = 0x14, 942 NVME_SC_OPERATION_DENIED = 0x15, 943 NVME_SC_SGL_OFFSET_INVALID = 0x16, 944 /* 0x17 - reserved */ 945 NVME_SC_HOST_ID_INCONSISTENT_FORMAT = 0x18, 946 NVME_SC_KEEP_ALIVE_TIMEOUT_EXPIRED = 0x19, 947 NVME_SC_KEEP_ALIVE_TIMEOUT_INVALID = 0x1a, 948 NVME_SC_ABORTED_DUE_TO_PREEMPT = 0x1b, 949 NVME_SC_SANITIZE_FAILED = 0x1c, 950 NVME_SC_SANITIZE_IN_PROGRESS = 0x1d, 951 NVME_SC_SGL_DATA_BLOCK_GRAN_INVALID = 0x1e, 952 NVME_SC_NOT_SUPPORTED_IN_CMB = 0x1f, 953 NVME_SC_NAMESPACE_IS_WRITE_PROTECTED = 0x20, 954 NVME_SC_COMMAND_INTERRUPTED = 0x21, 955 NVME_SC_TRANSIENT_TRANSPORT_ERROR = 0x22, 956 957 NVME_SC_LBA_OUT_OF_RANGE = 0x80, 958 NVME_SC_CAPACITY_EXCEEDED = 0x81, 959 NVME_SC_NAMESPACE_NOT_READY = 0x82, 960 NVME_SC_RESERVATION_CONFLICT = 0x83, 961 NVME_SC_FORMAT_IN_PROGRESS = 0x84, 962 }; 963 964 /* command specific status codes */ 965 enum nvme_command_specific_status_code { 966 NVME_SC_COMPLETION_QUEUE_INVALID = 0x00, 967 NVME_SC_INVALID_QUEUE_IDENTIFIER = 0x01, 968 NVME_SC_MAXIMUM_QUEUE_SIZE_EXCEEDED = 0x02, 969 NVME_SC_ABORT_COMMAND_LIMIT_EXCEEDED = 0x03, 970 /* 0x04 - reserved */ 971 NVME_SC_ASYNC_EVENT_REQUEST_LIMIT_EXCEEDED = 0x05, 972 NVME_SC_INVALID_FIRMWARE_SLOT = 0x06, 973 NVME_SC_INVALID_FIRMWARE_IMAGE = 0x07, 974 NVME_SC_INVALID_INTERRUPT_VECTOR = 0x08, 975 NVME_SC_INVALID_LOG_PAGE = 0x09, 976 NVME_SC_INVALID_FORMAT = 0x0a, 977 NVME_SC_FIRMWARE_REQUIRES_RESET = 0x0b, 978 NVME_SC_INVALID_QUEUE_DELETION = 0x0c, 979 NVME_SC_FEATURE_NOT_SAVEABLE = 0x0d, 980 NVME_SC_FEATURE_NOT_CHANGEABLE = 0x0e, 981 NVME_SC_FEATURE_NOT_NS_SPECIFIC = 0x0f, 982 NVME_SC_FW_ACT_REQUIRES_NVMS_RESET = 0x10, 983 NVME_SC_FW_ACT_REQUIRES_RESET = 0x11, 984 NVME_SC_FW_ACT_REQUIRES_TIME = 0x12, 985 NVME_SC_FW_ACT_PROHIBITED = 0x13, 986 NVME_SC_OVERLAPPING_RANGE = 0x14, 987 NVME_SC_NS_INSUFFICIENT_CAPACITY = 0x15, 988 NVME_SC_NS_ID_UNAVAILABLE = 0x16, 989 /* 0x17 - reserved */ 990 NVME_SC_NS_ALREADY_ATTACHED = 0x18, 991 NVME_SC_NS_IS_PRIVATE = 0x19, 992 NVME_SC_NS_NOT_ATTACHED = 0x1a, 993 NVME_SC_THIN_PROV_NOT_SUPPORTED = 0x1b, 994 NVME_SC_CTRLR_LIST_INVALID = 0x1c, 995 NVME_SC_SELF_TEST_IN_PROGRESS = 0x1d, 996 NVME_SC_BOOT_PART_WRITE_PROHIB = 0x1e, 997 NVME_SC_INVALID_CTRLR_ID = 0x1f, 998 NVME_SC_INVALID_SEC_CTRLR_STATE = 0x20, 999 NVME_SC_INVALID_NUM_OF_CTRLR_RESRC = 0x21, 1000 NVME_SC_INVALID_RESOURCE_ID = 0x22, 1001 NVME_SC_SANITIZE_PROHIBITED_WPMRE = 0x23, 1002 NVME_SC_ANA_GROUP_ID_INVALID = 0x24, 1003 NVME_SC_ANA_ATTACH_FAILED = 0x25, 1004 1005 NVME_SC_CONFLICTING_ATTRIBUTES = 0x80, 1006 NVME_SC_INVALID_PROTECTION_INFO = 0x81, 1007 NVME_SC_ATTEMPTED_WRITE_TO_RO_PAGE = 0x82, 1008 }; 1009 1010 /* media error status codes */ 1011 enum nvme_media_error_status_code { 1012 NVME_SC_WRITE_FAULTS = 0x80, 1013 NVME_SC_UNRECOVERED_READ_ERROR = 0x81, 1014 NVME_SC_GUARD_CHECK_ERROR = 0x82, 1015 NVME_SC_APPLICATION_TAG_CHECK_ERROR = 0x83, 1016 NVME_SC_REFERENCE_TAG_CHECK_ERROR = 0x84, 1017 NVME_SC_COMPARE_FAILURE = 0x85, 1018 NVME_SC_ACCESS_DENIED = 0x86, 1019 NVME_SC_DEALLOCATED_OR_UNWRITTEN = 0x87, 1020 }; 1021 1022 /* path related status codes */ 1023 enum nvme_path_related_status_code { 1024 NVME_SC_INTERNAL_PATH_ERROR = 0x00, 1025 NVME_SC_ASYMMETRIC_ACCESS_PERSISTENT_LOSS = 0x01, 1026 NVME_SC_ASYMMETRIC_ACCESS_INACCESSIBLE = 0x02, 1027 NVME_SC_ASYMMETRIC_ACCESS_TRANSITION = 0x03, 1028 NVME_SC_CONTROLLER_PATHING_ERROR = 0x60, 1029 NVME_SC_HOST_PATHING_ERROR = 0x70, 1030 NVME_SC_COMMAND_ABORTED_BY_HOST = 0x71, 1031 }; 1032 1033 /* admin opcodes */ 1034 enum nvme_admin_opcode { 1035 NVME_OPC_DELETE_IO_SQ = 0x00, 1036 NVME_OPC_CREATE_IO_SQ = 0x01, 1037 NVME_OPC_GET_LOG_PAGE = 0x02, 1038 /* 0x03 - reserved */ 1039 NVME_OPC_DELETE_IO_CQ = 0x04, 1040 NVME_OPC_CREATE_IO_CQ = 0x05, 1041 NVME_OPC_IDENTIFY = 0x06, 1042 /* 0x07 - reserved */ 1043 NVME_OPC_ABORT = 0x08, 1044 NVME_OPC_SET_FEATURES = 0x09, 1045 NVME_OPC_GET_FEATURES = 0x0a, 1046 /* 0x0b - reserved */ 1047 NVME_OPC_ASYNC_EVENT_REQUEST = 0x0c, 1048 NVME_OPC_NAMESPACE_MANAGEMENT = 0x0d, 1049 /* 0x0e-0x0f - reserved */ 1050 NVME_OPC_FIRMWARE_ACTIVATE = 0x10, 1051 NVME_OPC_FIRMWARE_IMAGE_DOWNLOAD = 0x11, 1052 /* 0x12-0x13 - reserved */ 1053 NVME_OPC_DEVICE_SELF_TEST = 0x14, 1054 NVME_OPC_NAMESPACE_ATTACHMENT = 0x15, 1055 /* 0x16-0x17 - reserved */ 1056 NVME_OPC_KEEP_ALIVE = 0x18, 1057 NVME_OPC_DIRECTIVE_SEND = 0x19, 1058 NVME_OPC_DIRECTIVE_RECEIVE = 0x1a, 1059 /* 0x1b - reserved */ 1060 NVME_OPC_VIRTUALIZATION_MANAGEMENT = 0x1c, 1061 NVME_OPC_NVME_MI_SEND = 0x1d, 1062 NVME_OPC_NVME_MI_RECEIVE = 0x1e, 1063 /* 0x1f - reserved */ 1064 NVME_OPC_CAPACITY_MANAGEMENT = 0x20, 1065 /* 0x21-0x23 - reserved */ 1066 NVME_OPC_LOCKDOWN = 0x24, 1067 /* 0x25-0x7b - reserved */ 1068 NVME_OPC_DOORBELL_BUFFER_CONFIG = 0x7c, 1069 /* 0x7d-0x7e - reserved */ 1070 NVME_OPC_FABRICS_COMMANDS = 0x7f, 1071 1072 NVME_OPC_FORMAT_NVM = 0x80, 1073 NVME_OPC_SECURITY_SEND = 0x81, 1074 NVME_OPC_SECURITY_RECEIVE = 0x82, 1075 /* 0x83 - reserved */ 1076 NVME_OPC_SANITIZE = 0x84, 1077 /* 0x85 - reserved */ 1078 NVME_OPC_GET_LBA_STATUS = 0x86, 1079 }; 1080 1081 /* nvme nvm opcodes */ 1082 enum nvme_nvm_opcode { 1083 NVME_OPC_FLUSH = 0x00, 1084 NVME_OPC_WRITE = 0x01, 1085 NVME_OPC_READ = 0x02, 1086 /* 0x03 - reserved */ 1087 NVME_OPC_WRITE_UNCORRECTABLE = 0x04, 1088 NVME_OPC_COMPARE = 0x05, 1089 /* 0x06-0x07 - reserved */ 1090 NVME_OPC_WRITE_ZEROES = 0x08, 1091 NVME_OPC_DATASET_MANAGEMENT = 0x09, 1092 /* 0x0a-0x0b - reserved */ 1093 NVME_OPC_VERIFY = 0x0c, 1094 NVME_OPC_RESERVATION_REGISTER = 0x0d, 1095 NVME_OPC_RESERVATION_REPORT = 0x0e, 1096 /* 0x0f-0x10 - reserved */ 1097 NVME_OPC_RESERVATION_ACQUIRE = 0x11, 1098 /* 0x12-0x14 - reserved */ 1099 NVME_OPC_RESERVATION_RELEASE = 0x15, 1100 /* 0x16-0x18 - reserved */ 1101 NVME_OPC_COPY = 0x19, 1102 }; 1103 1104 enum nvme_feature { 1105 /* 0x00 - reserved */ 1106 NVME_FEAT_ARBITRATION = 0x01, 1107 NVME_FEAT_POWER_MANAGEMENT = 0x02, 1108 NVME_FEAT_LBA_RANGE_TYPE = 0x03, 1109 NVME_FEAT_TEMPERATURE_THRESHOLD = 0x04, 1110 NVME_FEAT_ERROR_RECOVERY = 0x05, 1111 NVME_FEAT_VOLATILE_WRITE_CACHE = 0x06, 1112 NVME_FEAT_NUMBER_OF_QUEUES = 0x07, 1113 NVME_FEAT_INTERRUPT_COALESCING = 0x08, 1114 NVME_FEAT_INTERRUPT_VECTOR_CONFIGURATION = 0x09, 1115 NVME_FEAT_WRITE_ATOMICITY = 0x0A, 1116 NVME_FEAT_ASYNC_EVENT_CONFIGURATION = 0x0B, 1117 NVME_FEAT_AUTONOMOUS_POWER_STATE_TRANSITION = 0x0C, 1118 NVME_FEAT_HOST_MEMORY_BUFFER = 0x0D, 1119 NVME_FEAT_TIMESTAMP = 0x0E, 1120 NVME_FEAT_KEEP_ALIVE_TIMER = 0x0F, 1121 NVME_FEAT_HOST_CONTROLLED_THERMAL_MGMT = 0x10, 1122 NVME_FEAT_NON_OP_POWER_STATE_CONFIG = 0x11, 1123 NVME_FEAT_READ_RECOVERY_LEVEL_CONFIG = 0x12, 1124 NVME_FEAT_PREDICTABLE_LATENCY_MODE_CONFIG = 0x13, 1125 NVME_FEAT_PREDICTABLE_LATENCY_MODE_WINDOW = 0x14, 1126 NVME_FEAT_LBA_STATUS_INFORMATION_ATTRIBUTES = 0x15, 1127 NVME_FEAT_HOST_BEHAVIOR_SUPPORT = 0x16, 1128 NVME_FEAT_SANITIZE_CONFIG = 0x17, 1129 NVME_FEAT_ENDURANCE_GROUP_EVENT_CONFIGURATION = 0x18, 1130 /* 0x19-0x77 - reserved */ 1131 /* 0x78-0x7f - NVMe Management Interface */ 1132 NVME_FEAT_SOFTWARE_PROGRESS_MARKER = 0x80, 1133 NVME_FEAT_HOST_IDENTIFIER = 0x81, 1134 NVME_FEAT_RESERVATION_NOTIFICATION_MASK = 0x82, 1135 NVME_FEAT_RESERVATION_PERSISTENCE = 0x83, 1136 NVME_FEAT_NAMESPACE_WRITE_PROTECTION_CONFIG = 0x84, 1137 /* 0x85-0xBF - command set specific (reserved) */ 1138 /* 0xC0-0xFF - vendor specific */ 1139 }; 1140 1141 enum nvme_dsm_attribute { 1142 NVME_DSM_ATTR_INTEGRAL_READ = 0x1, 1143 NVME_DSM_ATTR_INTEGRAL_WRITE = 0x2, 1144 NVME_DSM_ATTR_DEALLOCATE = 0x4, 1145 }; 1146 1147 enum nvme_activate_action { 1148 NVME_AA_REPLACE_NO_ACTIVATE = 0x0, 1149 NVME_AA_REPLACE_ACTIVATE = 0x1, 1150 NVME_AA_ACTIVATE = 0x2, 1151 }; 1152 1153 struct nvme_power_state { 1154 /** Maximum Power */ 1155 uint16_t mp; /* Maximum Power */ 1156 uint8_t ps_rsvd1; 1157 uint8_t mps_nops; /* Max Power Scale, Non-Operational State */ 1158 1159 uint32_t enlat; /* Entry Latency */ 1160 uint32_t exlat; /* Exit Latency */ 1161 1162 uint8_t rrt; /* Relative Read Throughput */ 1163 uint8_t rrl; /* Relative Read Latency */ 1164 uint8_t rwt; /* Relative Write Throughput */ 1165 uint8_t rwl; /* Relative Write Latency */ 1166 1167 uint16_t idlp; /* Idle Power */ 1168 uint8_t ips; /* Idle Power Scale */ 1169 uint8_t ps_rsvd8; 1170 1171 uint16_t actp; /* Active Power */ 1172 uint8_t apw_aps; /* Active Power Workload, Active Power Scale */ 1173 uint8_t ps_rsvd10[9]; 1174 } __packed; 1175 1176 _Static_assert(sizeof(struct nvme_power_state) == 32, "bad size for nvme_power_state"); 1177 1178 #define NVME_SERIAL_NUMBER_LENGTH 20 1179 #define NVME_MODEL_NUMBER_LENGTH 40 1180 #define NVME_FIRMWARE_REVISION_LENGTH 8 1181 1182 struct nvme_controller_data { 1183 /* bytes 0-255: controller capabilities and features */ 1184 1185 /** pci vendor id */ 1186 uint16_t vid; 1187 1188 /** pci subsystem vendor id */ 1189 uint16_t ssvid; 1190 1191 /** serial number */ 1192 uint8_t sn[NVME_SERIAL_NUMBER_LENGTH]; 1193 1194 /** model number */ 1195 uint8_t mn[NVME_MODEL_NUMBER_LENGTH]; 1196 1197 /** firmware revision */ 1198 uint8_t fr[NVME_FIRMWARE_REVISION_LENGTH]; 1199 1200 /** recommended arbitration burst */ 1201 uint8_t rab; 1202 1203 /** ieee oui identifier */ 1204 uint8_t ieee[3]; 1205 1206 /** multi-interface capabilities */ 1207 uint8_t mic; 1208 1209 /** maximum data transfer size */ 1210 uint8_t mdts; 1211 1212 /** Controller ID */ 1213 uint16_t ctrlr_id; 1214 1215 /** Version */ 1216 uint32_t ver; 1217 1218 /** RTD3 Resume Latency */ 1219 uint32_t rtd3r; 1220 1221 /** RTD3 Enter Latency */ 1222 uint32_t rtd3e; 1223 1224 /** Optional Asynchronous Events Supported */ 1225 uint32_t oaes; /* bitfield really */ 1226 1227 /** Controller Attributes */ 1228 uint32_t ctratt; /* bitfield really */ 1229 1230 /** Read Recovery Levels Supported */ 1231 uint16_t rrls; 1232 1233 uint8_t reserved1[9]; 1234 1235 /** Controller Type */ 1236 uint8_t cntrltype; 1237 1238 /** FRU Globally Unique Identifier */ 1239 uint8_t fguid[16]; 1240 1241 /** Command Retry Delay Time 1 */ 1242 uint16_t crdt1; 1243 1244 /** Command Retry Delay Time 2 */ 1245 uint16_t crdt2; 1246 1247 /** Command Retry Delay Time 3 */ 1248 uint16_t crdt3; 1249 1250 uint8_t reserved2[122]; 1251 1252 /* bytes 256-511: admin command set attributes */ 1253 1254 /** optional admin command support */ 1255 uint16_t oacs; 1256 1257 /** abort command limit */ 1258 uint8_t acl; 1259 1260 /** asynchronous event request limit */ 1261 uint8_t aerl; 1262 1263 /** firmware updates */ 1264 uint8_t frmw; 1265 1266 /** log page attributes */ 1267 uint8_t lpa; 1268 1269 /** error log page entries */ 1270 uint8_t elpe; 1271 1272 /** number of power states supported */ 1273 uint8_t npss; 1274 1275 /** admin vendor specific command configuration */ 1276 uint8_t avscc; 1277 1278 /** Autonomous Power State Transition Attributes */ 1279 uint8_t apsta; 1280 1281 /** Warning Composite Temperature Threshold */ 1282 uint16_t wctemp; 1283 1284 /** Critical Composite Temperature Threshold */ 1285 uint16_t cctemp; 1286 1287 /** Maximum Time for Firmware Activation */ 1288 uint16_t mtfa; 1289 1290 /** Host Memory Buffer Preferred Size */ 1291 uint32_t hmpre; 1292 1293 /** Host Memory Buffer Minimum Size */ 1294 uint32_t hmmin; 1295 1296 /** Name space capabilities */ 1297 struct { 1298 /* if nsmgmt, report tnvmcap and unvmcap */ 1299 uint8_t tnvmcap[16]; 1300 uint8_t unvmcap[16]; 1301 } __packed untncap; 1302 1303 /** Replay Protected Memory Block Support */ 1304 uint32_t rpmbs; /* Really a bitfield */ 1305 1306 /** Extended Device Self-test Time */ 1307 uint16_t edstt; 1308 1309 /** Device Self-test Options */ 1310 uint8_t dsto; /* Really a bitfield */ 1311 1312 /** Firmware Update Granularity */ 1313 uint8_t fwug; 1314 1315 /** Keep Alive Support */ 1316 uint16_t kas; 1317 1318 /** Host Controlled Thermal Management Attributes */ 1319 uint16_t hctma; /* Really a bitfield */ 1320 1321 /** Minimum Thermal Management Temperature */ 1322 uint16_t mntmt; 1323 1324 /** Maximum Thermal Management Temperature */ 1325 uint16_t mxtmt; 1326 1327 /** Sanitize Capabilities */ 1328 uint32_t sanicap; /* Really a bitfield */ 1329 1330 /** Host Memory Buffer Minimum Descriptor Entry Size */ 1331 uint32_t hmminds; 1332 1333 /** Host Memory Maximum Descriptors Entries */ 1334 uint16_t hmmaxd; 1335 1336 /** NVM Set Identifier Maximum */ 1337 uint16_t nsetidmax; 1338 1339 /** Endurance Group Identifier Maximum */ 1340 uint16_t endgidmax; 1341 1342 /** ANA Transition Time */ 1343 uint8_t anatt; 1344 1345 /** Asymmetric Namespace Access Capabilities */ 1346 uint8_t anacap; 1347 1348 /** ANA Group Identifier Maximum */ 1349 uint32_t anagrpmax; 1350 1351 /** Number of ANA Group Identifiers */ 1352 uint32_t nanagrpid; 1353 1354 /** Persistent Event Log Size */ 1355 uint32_t pels; 1356 1357 uint8_t reserved3[156]; 1358 /* bytes 512-703: nvm command set attributes */ 1359 1360 /** submission queue entry size */ 1361 uint8_t sqes; 1362 1363 /** completion queue entry size */ 1364 uint8_t cqes; 1365 1366 /** Maximum Outstanding Commands */ 1367 uint16_t maxcmd; 1368 1369 /** number of namespaces */ 1370 uint32_t nn; 1371 1372 /** optional nvm command support */ 1373 uint16_t oncs; 1374 1375 /** fused operation support */ 1376 uint16_t fuses; 1377 1378 /** format nvm attributes */ 1379 uint8_t fna; 1380 1381 /** volatile write cache */ 1382 uint8_t vwc; 1383 1384 /** Atomic Write Unit Normal */ 1385 uint16_t awun; 1386 1387 /** Atomic Write Unit Power Fail */ 1388 uint16_t awupf; 1389 1390 /** NVM Vendor Specific Command Configuration */ 1391 uint8_t nvscc; 1392 1393 /** Namespace Write Protection Capabilities */ 1394 uint8_t nwpc; 1395 1396 /** Atomic Compare & Write Unit */ 1397 uint16_t acwu; 1398 uint16_t reserved6; 1399 1400 /** SGL Support */ 1401 uint32_t sgls; 1402 1403 /** Maximum Number of Allowed Namespaces */ 1404 uint32_t mnan; 1405 1406 /* bytes 540-767: Reserved */ 1407 uint8_t reserved7[224]; 1408 1409 /** NVM Subsystem NVMe Qualified Name */ 1410 uint8_t subnqn[256]; 1411 1412 /* bytes 1024-1791: Reserved */ 1413 uint8_t reserved8[768]; 1414 1415 /* bytes 1792-2047: NVMe over Fabrics specification */ 1416 uint32_t ioccsz; 1417 uint32_t iorcsz; 1418 uint16_t icdoff; 1419 uint8_t fcatt; 1420 uint8_t msdbd; 1421 uint16_t ofcs; 1422 uint8_t reserved9[242]; 1423 1424 /* bytes 2048-3071: power state descriptors */ 1425 struct nvme_power_state power_state[32]; 1426 1427 /* bytes 3072-4095: vendor specific */ 1428 uint8_t vs[1024]; 1429 } __packed __aligned(4); 1430 1431 _Static_assert(sizeof(struct nvme_controller_data) == 4096, "bad size for nvme_controller_data"); 1432 1433 struct nvme_namespace_data { 1434 /** namespace size */ 1435 uint64_t nsze; 1436 1437 /** namespace capacity */ 1438 uint64_t ncap; 1439 1440 /** namespace utilization */ 1441 uint64_t nuse; 1442 1443 /** namespace features */ 1444 uint8_t nsfeat; 1445 1446 /** number of lba formats */ 1447 uint8_t nlbaf; 1448 1449 /** formatted lba size */ 1450 uint8_t flbas; 1451 1452 /** metadata capabilities */ 1453 uint8_t mc; 1454 1455 /** end-to-end data protection capabilities */ 1456 uint8_t dpc; 1457 1458 /** end-to-end data protection type settings */ 1459 uint8_t dps; 1460 1461 /** Namespace Multi-path I/O and Namespace Sharing Capabilities */ 1462 uint8_t nmic; 1463 1464 /** Reservation Capabilities */ 1465 uint8_t rescap; 1466 1467 /** Format Progress Indicator */ 1468 uint8_t fpi; 1469 1470 /** Deallocate Logical Block Features */ 1471 uint8_t dlfeat; 1472 1473 /** Namespace Atomic Write Unit Normal */ 1474 uint16_t nawun; 1475 1476 /** Namespace Atomic Write Unit Power Fail */ 1477 uint16_t nawupf; 1478 1479 /** Namespace Atomic Compare & Write Unit */ 1480 uint16_t nacwu; 1481 1482 /** Namespace Atomic Boundary Size Normal */ 1483 uint16_t nabsn; 1484 1485 /** Namespace Atomic Boundary Offset */ 1486 uint16_t nabo; 1487 1488 /** Namespace Atomic Boundary Size Power Fail */ 1489 uint16_t nabspf; 1490 1491 /** Namespace Optimal IO Boundary */ 1492 uint16_t noiob; 1493 1494 /** NVM Capacity */ 1495 uint8_t nvmcap[16]; 1496 1497 /** Namespace Preferred Write Granularity */ 1498 uint16_t npwg; 1499 1500 /** Namespace Preferred Write Alignment */ 1501 uint16_t npwa; 1502 1503 /** Namespace Preferred Deallocate Granularity */ 1504 uint16_t npdg; 1505 1506 /** Namespace Preferred Deallocate Alignment */ 1507 uint16_t npda; 1508 1509 /** Namespace Optimal Write Size */ 1510 uint16_t nows; 1511 1512 /* bytes 74-91: Reserved */ 1513 uint8_t reserved5[18]; 1514 1515 /** ANA Group Identifier */ 1516 uint32_t anagrpid; 1517 1518 /* bytes 96-98: Reserved */ 1519 uint8_t reserved6[3]; 1520 1521 /** Namespace Attributes */ 1522 uint8_t nsattr; 1523 1524 /** NVM Set Identifier */ 1525 uint16_t nvmsetid; 1526 1527 /** Endurance Group Identifier */ 1528 uint16_t endgid; 1529 1530 /** Namespace Globally Unique Identifier */ 1531 uint8_t nguid[16]; 1532 1533 /** IEEE Extended Unique Identifier */ 1534 uint8_t eui64[8]; 1535 1536 /** lba format support */ 1537 uint32_t lbaf[64]; 1538 1539 uint8_t vendor_specific[3712]; 1540 } __packed __aligned(4); 1541 1542 _Static_assert(sizeof(struct nvme_namespace_data) == 4096, "bad size for nvme_namepsace_data"); 1543 1544 enum nvme_log_page { 1545 /* 0x00 - reserved */ 1546 NVME_LOG_ERROR = 0x01, 1547 NVME_LOG_HEALTH_INFORMATION = 0x02, 1548 NVME_LOG_FIRMWARE_SLOT = 0x03, 1549 NVME_LOG_CHANGED_NAMESPACE = 0x04, 1550 NVME_LOG_COMMAND_EFFECT = 0x05, 1551 NVME_LOG_DEVICE_SELF_TEST = 0x06, 1552 NVME_LOG_TELEMETRY_HOST_INITIATED = 0x07, 1553 NVME_LOG_TELEMETRY_CONTROLLER_INITIATED = 0x08, 1554 NVME_LOG_ENDURANCE_GROUP_INFORMATION = 0x09, 1555 NVME_LOG_PREDICTABLE_LATENCY_PER_NVM_SET = 0x0a, 1556 NVME_LOG_PREDICTABLE_LATENCY_EVENT_AGGREGATE = 0x0b, 1557 NVME_LOG_ASYMMETRIC_NAMESPACE_ACCESS = 0x0c, 1558 NVME_LOG_PERSISTENT_EVENT_LOG = 0x0d, 1559 NVME_LOG_LBA_STATUS_INFORMATION = 0x0e, 1560 NVME_LOG_ENDURANCE_GROUP_EVENT_AGGREGATE = 0x0f, 1561 NVME_LOG_DISCOVERY = 0x70, 1562 /* 0x06-0x7F - reserved */ 1563 /* 0x80-0xBF - I/O command set specific */ 1564 NVME_LOG_RES_NOTIFICATION = 0x80, 1565 NVME_LOG_SANITIZE_STATUS = 0x81, 1566 /* 0x82-0xBF - reserved */ 1567 /* 0xC0-0xFF - vendor specific */ 1568 1569 /* 1570 * The following are Intel Specific log pages for older models. 1571 */ 1572 INTEL_LOG_READ_LAT_LOG = 0xc1, 1573 INTEL_LOG_WRITE_LAT_LOG = 0xc2, 1574 INTEL_LOG_TEMP_STATS = 0xc5, 1575 INTEL_LOG_ADD_SMART = 0xca, 1576 INTEL_LOG_DRIVE_MKT_NAME = 0xdd, 1577 1578 /* 1579 * HGST log page, with lots of sub pages. 1580 */ 1581 HGST_INFO_LOG = 0xc1, 1582 }; 1583 1584 struct nvme_error_information_entry { 1585 uint64_t error_count; 1586 uint16_t sqid; 1587 uint16_t cid; 1588 uint16_t status; 1589 uint16_t error_location; 1590 uint64_t lba; 1591 uint32_t nsid; 1592 uint8_t vendor_specific; 1593 uint8_t trtype; 1594 uint16_t reserved30; 1595 uint64_t csi; 1596 uint16_t ttsi; 1597 uint8_t reserved[22]; 1598 } __packed __aligned(4); 1599 1600 _Static_assert(sizeof(struct nvme_error_information_entry) == 64, "bad size for nvme_error_information_entry"); 1601 1602 struct nvme_health_information_page { 1603 uint8_t critical_warning; 1604 uint16_t temperature; 1605 uint8_t available_spare; 1606 uint8_t available_spare_threshold; 1607 uint8_t percentage_used; 1608 1609 uint8_t reserved[26]; 1610 1611 /* 1612 * Note that the following are 128-bit values, but are 1613 * defined as an array of 2 64-bit values. 1614 */ 1615 /* Data Units Read is always in 512-byte units. */ 1616 uint64_t data_units_read[2]; 1617 /* Data Units Written is always in 512-byte units. */ 1618 uint64_t data_units_written[2]; 1619 /* For NVM command set, this includes Compare commands. */ 1620 uint64_t host_read_commands[2]; 1621 uint64_t host_write_commands[2]; 1622 /* Controller Busy Time is reported in minutes. */ 1623 uint64_t controller_busy_time[2]; 1624 uint64_t power_cycles[2]; 1625 uint64_t power_on_hours[2]; 1626 uint64_t unsafe_shutdowns[2]; 1627 uint64_t media_errors[2]; 1628 uint64_t num_error_info_log_entries[2]; 1629 uint32_t warning_temp_time; 1630 uint32_t error_temp_time; 1631 uint16_t temp_sensor[8]; 1632 /* Thermal Management Temperature 1 Transition Count */ 1633 uint32_t tmt1tc; 1634 /* Thermal Management Temperature 2 Transition Count */ 1635 uint32_t tmt2tc; 1636 /* Total Time For Thermal Management Temperature 1 */ 1637 uint32_t ttftmt1; 1638 /* Total Time For Thermal Management Temperature 2 */ 1639 uint32_t ttftmt2; 1640 1641 uint8_t reserved2[280]; 1642 } __packed __aligned(8); 1643 1644 _Static_assert(sizeof(struct nvme_health_information_page) == 512, "bad size for nvme_health_information_page"); 1645 1646 struct nvme_firmware_page { 1647 uint8_t afi; 1648 uint8_t reserved[7]; 1649 /* revisions for 7 slots */ 1650 uint8_t revision[7][NVME_FIRMWARE_REVISION_LENGTH]; 1651 uint8_t reserved2[448]; 1652 } __packed __aligned(4); 1653 1654 _Static_assert(sizeof(struct nvme_firmware_page) == 512, "bad size for nvme_firmware_page"); 1655 1656 struct nvme_ns_list { 1657 uint32_t ns[1024]; 1658 } __packed __aligned(4); 1659 1660 _Static_assert(sizeof(struct nvme_ns_list) == 4096, "bad size for nvme_ns_list"); 1661 1662 struct nvme_command_effects_page { 1663 uint32_t acs[256]; 1664 uint32_t iocs[256]; 1665 uint8_t reserved[2048]; 1666 } __packed __aligned(4); 1667 1668 _Static_assert(sizeof(struct nvme_command_effects_page) == 4096, 1669 "bad size for nvme_command_effects_page"); 1670 1671 struct nvme_device_self_test_page { 1672 uint8_t curr_operation; 1673 uint8_t curr_compl; 1674 uint8_t rsvd2[2]; 1675 struct { 1676 uint8_t status; 1677 uint8_t segment_num; 1678 uint8_t valid_diag_info; 1679 uint8_t rsvd3; 1680 uint64_t poh; 1681 uint32_t nsid; 1682 /* Define as an array to simplify alignment issues */ 1683 uint8_t failing_lba[8]; 1684 uint8_t status_code_type; 1685 uint8_t status_code; 1686 uint8_t vendor_specific[2]; 1687 } __packed result[20]; 1688 } __packed __aligned(4); 1689 1690 _Static_assert(sizeof(struct nvme_device_self_test_page) == 564, 1691 "bad size for nvme_device_self_test_page"); 1692 1693 /* 1694 * Header structure for both host initiated telemetry (page 7) and controller 1695 * initiated telemetry (page 8). 1696 */ 1697 struct nvme_telemetry_log_page { 1698 uint8_t identifier; 1699 uint8_t rsvd[4]; 1700 uint8_t oui[3]; 1701 uint16_t da1_last; 1702 uint16_t da2_last; 1703 uint16_t da3_last; 1704 uint8_t rsvd2[2]; 1705 uint32_t da4_last; 1706 uint8_t rsvd3[361]; 1707 uint8_t hi_gen; 1708 uint8_t ci_avail; 1709 uint8_t ci_gen; 1710 uint8_t reason[128]; 1711 /* Blocks of telemetry data follow */ 1712 } __packed __aligned(4); 1713 1714 _Static_assert(sizeof(struct nvme_telemetry_log_page) == 512, 1715 "bad size for nvme_telemetry_log"); 1716 1717 struct nvme_discovery_log_entry { 1718 uint8_t trtype; 1719 uint8_t adrfam; 1720 uint8_t subtype; 1721 uint8_t treq; 1722 uint16_t portid; 1723 uint16_t cntlid; 1724 uint16_t aqsz; 1725 uint8_t reserved1[22]; 1726 uint8_t trsvcid[32]; 1727 uint8_t reserved2[192]; 1728 uint8_t subnqn[256]; 1729 uint8_t traddr[256]; 1730 union { 1731 struct { 1732 uint8_t rdma_qptype; 1733 uint8_t rdma_prtype; 1734 uint8_t rdma_cms; 1735 uint8_t reserved[5]; 1736 uint16_t rdma_pkey; 1737 } rdma; 1738 struct { 1739 uint8_t sectype; 1740 } tcp; 1741 uint8_t reserved[256]; 1742 } tsas; 1743 } __packed __aligned(4); 1744 1745 _Static_assert(sizeof(struct nvme_discovery_log_entry) == 1024, 1746 "bad size for nvme_discovery_log_entry"); 1747 1748 struct nvme_discovery_log { 1749 uint64_t genctr; 1750 uint64_t numrec; 1751 uint16_t recfmt; 1752 uint8_t reserved[1006]; 1753 struct nvme_discovery_log_entry entries[]; 1754 } __packed __aligned(4); 1755 1756 _Static_assert(sizeof(struct nvme_discovery_log) == 1024, 1757 "bad size for nvme_discovery_log"); 1758 1759 struct nvme_res_notification_page { 1760 uint64_t log_page_count; 1761 uint8_t log_page_type; 1762 uint8_t available_log_pages; 1763 uint8_t reserved2; 1764 uint32_t nsid; 1765 uint8_t reserved[48]; 1766 } __packed __aligned(4); 1767 1768 _Static_assert(sizeof(struct nvme_res_notification_page) == 64, 1769 "bad size for nvme_res_notification_page"); 1770 1771 struct nvme_sanitize_status_page { 1772 uint16_t sprog; 1773 uint16_t sstat; 1774 uint32_t scdw10; 1775 uint32_t etfo; 1776 uint32_t etfbe; 1777 uint32_t etfce; 1778 uint32_t etfownd; 1779 uint32_t etfbewnd; 1780 uint32_t etfcewnd; 1781 uint8_t reserved[480]; 1782 } __packed __aligned(4); 1783 1784 _Static_assert(sizeof(struct nvme_sanitize_status_page) == 512, 1785 "bad size for nvme_sanitize_status_page"); 1786 1787 struct intel_log_temp_stats { 1788 uint64_t current; 1789 uint64_t overtemp_flag_last; 1790 uint64_t overtemp_flag_life; 1791 uint64_t max_temp; 1792 uint64_t min_temp; 1793 uint64_t _rsvd[5]; 1794 uint64_t max_oper_temp; 1795 uint64_t min_oper_temp; 1796 uint64_t est_offset; 1797 } __packed __aligned(4); 1798 1799 _Static_assert(sizeof(struct intel_log_temp_stats) == 13 * 8, "bad size for intel_log_temp_stats"); 1800 1801 struct nvme_resv_reg_ctrlr { 1802 uint16_t ctrlr_id; /* Controller ID */ 1803 uint8_t rcsts; /* Reservation Status */ 1804 uint8_t reserved3[5]; 1805 uint64_t hostid; /* Host Identifier */ 1806 uint64_t rkey; /* Reservation Key */ 1807 } __packed __aligned(4); 1808 1809 _Static_assert(sizeof(struct nvme_resv_reg_ctrlr) == 24, "bad size for nvme_resv_reg_ctrlr"); 1810 1811 struct nvme_resv_reg_ctrlr_ext { 1812 uint16_t ctrlr_id; /* Controller ID */ 1813 uint8_t rcsts; /* Reservation Status */ 1814 uint8_t reserved3[5]; 1815 uint64_t rkey; /* Reservation Key */ 1816 uint64_t hostid[2]; /* Host Identifier */ 1817 uint8_t reserved32[32]; 1818 } __packed __aligned(4); 1819 1820 _Static_assert(sizeof(struct nvme_resv_reg_ctrlr_ext) == 64, "bad size for nvme_resv_reg_ctrlr_ext"); 1821 1822 struct nvme_resv_status { 1823 uint32_t gen; /* Generation */ 1824 uint8_t rtype; /* Reservation Type */ 1825 uint8_t regctl[2]; /* Number of Registered Controllers */ 1826 uint8_t reserved7[2]; 1827 uint8_t ptpls; /* Persist Through Power Loss State */ 1828 uint8_t reserved10[14]; 1829 struct nvme_resv_reg_ctrlr ctrlr[0]; 1830 } __packed __aligned(4); 1831 1832 _Static_assert(sizeof(struct nvme_resv_status) == 24, "bad size for nvme_resv_status"); 1833 1834 struct nvme_resv_status_ext { 1835 uint32_t gen; /* Generation */ 1836 uint8_t rtype; /* Reservation Type */ 1837 uint8_t regctl[2]; /* Number of Registered Controllers */ 1838 uint8_t reserved7[2]; 1839 uint8_t ptpls; /* Persist Through Power Loss State */ 1840 uint8_t reserved10[14]; 1841 uint8_t reserved24[40]; 1842 struct nvme_resv_reg_ctrlr_ext ctrlr[0]; 1843 } __packed __aligned(4); 1844 1845 _Static_assert(sizeof(struct nvme_resv_status_ext) == 64, "bad size for nvme_resv_status_ext"); 1846 1847 #define NVME_TEST_MAX_THREADS 128 1848 1849 struct nvme_io_test { 1850 enum nvme_nvm_opcode opc; 1851 uint32_t size; 1852 uint32_t time; /* in seconds */ 1853 uint32_t num_threads; 1854 uint32_t flags; 1855 uint64_t io_completed[NVME_TEST_MAX_THREADS]; 1856 }; 1857 1858 enum nvme_io_test_flags { 1859 /* 1860 * Specifies whether dev_refthread/dev_relthread should be 1861 * called during NVME_BIO_TEST. Ignored for other test 1862 * types. 1863 */ 1864 NVME_TEST_FLAG_REFTHREAD = 0x1, 1865 }; 1866 1867 struct nvme_pt_command { 1868 /* 1869 * cmd is used to specify a passthrough command to a controller or 1870 * namespace. 1871 * 1872 * The following fields from cmd may be specified by the caller: 1873 * * opc (opcode) 1874 * * nsid (namespace id) - for admin commands only 1875 * * cdw10-cdw15 1876 * 1877 * Remaining fields must be set to 0 by the caller. 1878 */ 1879 struct nvme_command cmd; 1880 1881 /* 1882 * cpl returns completion status for the passthrough command 1883 * specified by cmd. 1884 * 1885 * The following fields will be filled out by the driver, for 1886 * consumption by the caller: 1887 * * cdw0 1888 * * status (except for phase) 1889 * 1890 * Remaining fields will be set to 0 by the driver. 1891 */ 1892 struct nvme_completion cpl; 1893 1894 /* buf is the data buffer associated with this passthrough command. */ 1895 void * buf; 1896 1897 /* 1898 * len is the length of the data buffer associated with this 1899 * passthrough command. 1900 */ 1901 uint32_t len; 1902 1903 /* 1904 * is_read = 1 if the passthrough command will read data into the 1905 * supplied buffer from the controller. 1906 * 1907 * is_read = 0 if the passthrough command will write data from the 1908 * supplied buffer to the controller. 1909 */ 1910 uint32_t is_read; 1911 1912 /* 1913 * driver_lock is used by the driver only. It must be set to 0 1914 * by the caller. 1915 */ 1916 struct mtx * driver_lock; 1917 }; 1918 1919 struct nvme_get_nsid { 1920 char cdev[SPECNAMELEN + 1]; 1921 uint32_t nsid; 1922 }; 1923 1924 struct nvme_hmb_desc { 1925 uint64_t addr; 1926 uint32_t size; 1927 uint32_t reserved; 1928 }; 1929 1930 #define nvme_completion_is_error(cpl) \ 1931 (NVME_STATUS_GET_SC((cpl)->status) != 0 || NVME_STATUS_GET_SCT((cpl)->status) != 0) 1932 1933 void nvme_cpl_sbuf(const struct nvme_completion *cpl, struct sbuf *sbuf); 1934 void nvme_opcode_sbuf(bool admin, uint8_t opc, struct sbuf *sb); 1935 void nvme_sc_sbuf(const struct nvme_completion *cpl, struct sbuf *sbuf); 1936 void nvme_strvis(uint8_t *dst, const uint8_t *src, int dstlen, int srclen); 1937 1938 #ifdef _KERNEL 1939 struct bio; 1940 struct thread; 1941 1942 struct nvme_namespace; 1943 struct nvme_controller; 1944 struct nvme_passthru_cmd; 1945 1946 typedef void (*nvme_cb_fn_t)(void *, const struct nvme_completion *); 1947 1948 enum nvme_namespace_flags { 1949 NVME_NS_DEALLOCATE_SUPPORTED = 0x01, 1950 NVME_NS_FLUSH_SUPPORTED = 0x02, 1951 NVME_NS_ALIVE = 0x04, 1952 NVME_NS_DELTA = 0x08, 1953 NVME_NS_GONE = 0x10, 1954 }; 1955 1956 int nvme_ctrlr_passthrough_cmd(struct nvme_controller *ctrlr, 1957 struct nvme_pt_command *pt, 1958 uint32_t nsid, int is_user_buffer, 1959 int is_admin_cmd); 1960 1961 int nvme_ctrlr_linux_passthru_cmd(struct nvme_controller *ctrlr, 1962 struct nvme_passthru_cmd *npc, 1963 uint32_t nsid, bool is_user, 1964 bool is_admin); 1965 1966 /* Admin functions */ 1967 void nvme_ctrlr_cmd_set_feature(struct nvme_controller *ctrlr, 1968 uint8_t feature, uint32_t cdw11, 1969 uint32_t cdw12, uint32_t cdw13, 1970 uint32_t cdw14, uint32_t cdw15, 1971 void *payload, uint32_t payload_size, 1972 nvme_cb_fn_t cb_fn, void *cb_arg); 1973 void nvme_ctrlr_cmd_get_feature(struct nvme_controller *ctrlr, 1974 uint8_t feature, uint32_t cdw11, 1975 void *payload, uint32_t payload_size, 1976 nvme_cb_fn_t cb_fn, void *cb_arg); 1977 void nvme_ctrlr_cmd_get_log_page(struct nvme_controller *ctrlr, 1978 uint8_t log_page, uint32_t nsid, 1979 void *payload, uint32_t payload_size, 1980 nvme_cb_fn_t cb_fn, void *cb_arg); 1981 1982 /* NVM I/O functions */ 1983 int nvme_ns_cmd_write(struct nvme_namespace *ns, void *payload, 1984 uint64_t lba, uint32_t lba_count, nvme_cb_fn_t cb_fn, 1985 void *cb_arg); 1986 int nvme_ns_cmd_write_bio(struct nvme_namespace *ns, struct bio *bp, 1987 nvme_cb_fn_t cb_fn, void *cb_arg); 1988 int nvme_ns_cmd_read(struct nvme_namespace *ns, void *payload, 1989 uint64_t lba, uint32_t lba_count, nvme_cb_fn_t cb_fn, 1990 void *cb_arg); 1991 int nvme_ns_cmd_read_bio(struct nvme_namespace *ns, struct bio *bp, 1992 nvme_cb_fn_t cb_fn, void *cb_arg); 1993 int nvme_ns_cmd_deallocate(struct nvme_namespace *ns, void *payload, 1994 uint8_t num_ranges, nvme_cb_fn_t cb_fn, 1995 void *cb_arg); 1996 int nvme_ns_cmd_flush(struct nvme_namespace *ns, nvme_cb_fn_t cb_fn, 1997 void *cb_arg); 1998 int nvme_ns_dump(struct nvme_namespace *ns, void *virt, off_t offset, 1999 size_t len); 2000 2001 /* Controller helper functions */ 2002 device_t nvme_ctrlr_get_device(struct nvme_controller *ctrlr); 2003 const struct nvme_controller_data * 2004 nvme_ctrlr_get_data(struct nvme_controller *ctrlr); 2005 static inline bool 2006 nvme_ctrlr_has_dataset_mgmt(const struct nvme_controller_data *cd) 2007 { 2008 /* Assumes cd was byte swapped by nvme_controller_data_swapbytes() */ 2009 return (NVMEV(NVME_CTRLR_DATA_ONCS_DSM, cd->oncs) != 0); 2010 } 2011 2012 /* 2013 * Copy the NVME device's serial number to the provided buffer, which must be 2014 * at least DISK_IDENT_SIZE bytes large. 2015 */ 2016 static inline void 2017 nvme_cdata_get_disk_ident(const struct nvme_controller_data *cdata, uint8_t *sn) 2018 { 2019 _Static_assert(NVME_SERIAL_NUMBER_LENGTH < DISK_IDENT_SIZE, 2020 "NVME serial number too big for disk ident"); 2021 2022 memcpy(sn, cdata->sn, NVME_SERIAL_NUMBER_LENGTH); 2023 sn[NVME_SERIAL_NUMBER_LENGTH] = '\0'; 2024 for (int i = 0; sn[i] != '\0'; i++) { 2025 if (sn[i] < 0x20 || sn[i] >= 0x80) 2026 sn[i] = ' '; 2027 } 2028 } 2029 2030 /* Namespace helper functions */ 2031 uint32_t nvme_ns_get_max_io_xfer_size(struct nvme_namespace *ns); 2032 uint32_t nvme_ns_get_sector_size(struct nvme_namespace *ns); 2033 uint64_t nvme_ns_get_num_sectors(struct nvme_namespace *ns); 2034 uint64_t nvme_ns_get_size(struct nvme_namespace *ns); 2035 uint32_t nvme_ns_get_flags(struct nvme_namespace *ns); 2036 const char * nvme_ns_get_serial_number(struct nvme_namespace *ns); 2037 const char * nvme_ns_get_model_number(struct nvme_namespace *ns); 2038 const struct nvme_namespace_data * 2039 nvme_ns_get_data(struct nvme_namespace *ns); 2040 uint32_t nvme_ns_get_stripesize(struct nvme_namespace *ns); 2041 2042 int nvme_ns_bio_process(struct nvme_namespace *ns, struct bio *bp, 2043 nvme_cb_fn_t cb_fn); 2044 int nvme_ns_ioctl_process(struct nvme_namespace *ns, u_long cmd, 2045 caddr_t arg, int flag, struct thread *td); 2046 2047 /* 2048 * Command building helper functions -- shared with CAM 2049 * These functions assume allocator zeros out cmd structure 2050 * CAM's xpt_get_ccb and the request allocator for nvme both 2051 * do zero'd allocations. 2052 */ 2053 static inline 2054 void nvme_ns_flush_cmd(struct nvme_command *cmd, uint32_t nsid) 2055 { 2056 2057 cmd->opc = NVME_OPC_FLUSH; 2058 cmd->nsid = htole32(nsid); 2059 } 2060 2061 static inline 2062 void nvme_ns_rw_cmd(struct nvme_command *cmd, uint32_t rwcmd, uint32_t nsid, 2063 uint64_t lba, uint32_t count) 2064 { 2065 cmd->opc = rwcmd; 2066 cmd->nsid = htole32(nsid); 2067 cmd->cdw10 = htole32(lba & 0xffffffffu); 2068 cmd->cdw11 = htole32(lba >> 32); 2069 cmd->cdw12 = htole32(count-1); 2070 } 2071 2072 static inline 2073 void nvme_ns_write_cmd(struct nvme_command *cmd, uint32_t nsid, 2074 uint64_t lba, uint32_t count) 2075 { 2076 nvme_ns_rw_cmd(cmd, NVME_OPC_WRITE, nsid, lba, count); 2077 } 2078 2079 static inline 2080 void nvme_ns_read_cmd(struct nvme_command *cmd, uint32_t nsid, 2081 uint64_t lba, uint32_t count) 2082 { 2083 nvme_ns_rw_cmd(cmd, NVME_OPC_READ, nsid, lba, count); 2084 } 2085 2086 static inline 2087 void nvme_ns_trim_cmd(struct nvme_command *cmd, uint32_t nsid, 2088 uint32_t num_ranges) 2089 { 2090 cmd->opc = NVME_OPC_DATASET_MANAGEMENT; 2091 cmd->nsid = htole32(nsid); 2092 cmd->cdw10 = htole32(num_ranges - 1); 2093 cmd->cdw11 = htole32(NVME_DSM_ATTR_DEALLOCATE); 2094 } 2095 2096 extern int nvme_use_nvd; 2097 2098 #endif /* _KERNEL */ 2099 2100 static inline uint8_t 2101 nvme_ns_data_format_index(const struct nvme_namespace_data *nsdata) 2102 { 2103 uint8_t fmt; 2104 2105 fmt = NVMEV(NVME_NS_DATA_FLBAS_FORMAT, nsdata->flbas); 2106 /* FIDXU is valid only above the base count; NLBAF is 0's based. */ 2107 if (nsdata->nlbaf + 1 > NVME_NS_DATA_LBAF_BASE_COUNT) 2108 fmt |= NVMEV(NVME_NS_DATA_FLBAS_FORMAT_MSB, nsdata->flbas) << 2109 NVME_NS_DATA_FLBAS_FIDXL_BITS; 2110 return (fmt); 2111 } 2112 2113 /* Endianess conversion functions for NVMe structs */ 2114 static inline 2115 void nvme_completion_swapbytes(struct nvme_completion *s __unused) 2116 { 2117 #if _BYTE_ORDER != _LITTLE_ENDIAN 2118 2119 s->cdw0 = le32toh(s->cdw0); 2120 /* omit rsvd1 */ 2121 s->sqhd = le16toh(s->sqhd); 2122 s->sqid = le16toh(s->sqid); 2123 /* omit cid */ 2124 s->status = le16toh(s->status); 2125 #endif 2126 } 2127 2128 static inline 2129 void nvme_power_state_swapbytes(struct nvme_power_state *s __unused) 2130 { 2131 #if _BYTE_ORDER != _LITTLE_ENDIAN 2132 2133 s->mp = le16toh(s->mp); 2134 s->enlat = le32toh(s->enlat); 2135 s->exlat = le32toh(s->exlat); 2136 s->idlp = le16toh(s->idlp); 2137 s->actp = le16toh(s->actp); 2138 #endif 2139 } 2140 2141 static inline 2142 void nvme_controller_data_swapbytes(struct nvme_controller_data *s __unused) 2143 { 2144 #if _BYTE_ORDER != _LITTLE_ENDIAN 2145 int i; 2146 2147 s->vid = le16toh(s->vid); 2148 s->ssvid = le16toh(s->ssvid); 2149 s->ctrlr_id = le16toh(s->ctrlr_id); 2150 s->ver = le32toh(s->ver); 2151 s->rtd3r = le32toh(s->rtd3r); 2152 s->rtd3e = le32toh(s->rtd3e); 2153 s->oaes = le32toh(s->oaes); 2154 s->ctratt = le32toh(s->ctratt); 2155 s->rrls = le16toh(s->rrls); 2156 s->crdt1 = le16toh(s->crdt1); 2157 s->crdt2 = le16toh(s->crdt2); 2158 s->crdt3 = le16toh(s->crdt3); 2159 s->oacs = le16toh(s->oacs); 2160 s->wctemp = le16toh(s->wctemp); 2161 s->cctemp = le16toh(s->cctemp); 2162 s->mtfa = le16toh(s->mtfa); 2163 s->hmpre = le32toh(s->hmpre); 2164 s->hmmin = le32toh(s->hmmin); 2165 s->rpmbs = le32toh(s->rpmbs); 2166 s->edstt = le16toh(s->edstt); 2167 s->kas = le16toh(s->kas); 2168 s->hctma = le16toh(s->hctma); 2169 s->mntmt = le16toh(s->mntmt); 2170 s->mxtmt = le16toh(s->mxtmt); 2171 s->sanicap = le32toh(s->sanicap); 2172 s->hmminds = le32toh(s->hmminds); 2173 s->hmmaxd = le16toh(s->hmmaxd); 2174 s->nsetidmax = le16toh(s->nsetidmax); 2175 s->endgidmax = le16toh(s->endgidmax); 2176 s->anagrpmax = le32toh(s->anagrpmax); 2177 s->nanagrpid = le32toh(s->nanagrpid); 2178 s->pels = le32toh(s->pels); 2179 s->maxcmd = le16toh(s->maxcmd); 2180 s->nn = le32toh(s->nn); 2181 s->oncs = le16toh(s->oncs); 2182 s->fuses = le16toh(s->fuses); 2183 s->awun = le16toh(s->awun); 2184 s->awupf = le16toh(s->awupf); 2185 s->acwu = le16toh(s->acwu); 2186 s->sgls = le32toh(s->sgls); 2187 s->mnan = le32toh(s->mnan); 2188 s->ioccsz = le32toh(s->ioccsz); 2189 s->iorcsz = le32toh(s->iorcsz); 2190 s->icdoff = le16toh(s->icdoff); 2191 s->ofcs = le16toh(s->ofcs); 2192 for (i = 0; i < 32; i++) 2193 nvme_power_state_swapbytes(&s->power_state[i]); 2194 #endif 2195 } 2196 2197 static inline 2198 void nvme_namespace_data_swapbytes(struct nvme_namespace_data *s __unused) 2199 { 2200 #if _BYTE_ORDER != _LITTLE_ENDIAN 2201 s->nsze = le64toh(s->nsze); 2202 s->ncap = le64toh(s->ncap); 2203 s->nuse = le64toh(s->nuse); 2204 s->nawun = le16toh(s->nawun); 2205 s->nawupf = le16toh(s->nawupf); 2206 s->nacwu = le16toh(s->nacwu); 2207 s->nabsn = le16toh(s->nabsn); 2208 s->nabo = le16toh(s->nabo); 2209 s->nabspf = le16toh(s->nabspf); 2210 s->noiob = le16toh(s->noiob); 2211 s->npwg = le16toh(s->npwg); 2212 s->npwa = le16toh(s->npwa); 2213 s->npdg = le16toh(s->npdg); 2214 s->npda = le16toh(s->npda); 2215 s->nows = le16toh(s->nows); 2216 s->anagrpid = le32toh(s->anagrpid); 2217 s->nvmsetid = le16toh(s->nvmsetid); 2218 s->endgid = le16toh(s->endgid); 2219 for (unsigned int i = 0; i < nitems(s->lbaf); i++) 2220 s->lbaf[i] = le32toh(s->lbaf[i]); 2221 #endif 2222 } 2223 2224 static inline 2225 void nvme_error_information_entry_swapbytes( 2226 struct nvme_error_information_entry *s __unused) 2227 { 2228 #if _BYTE_ORDER != _LITTLE_ENDIAN 2229 2230 s->error_count = le64toh(s->error_count); 2231 s->sqid = le16toh(s->sqid); 2232 s->cid = le16toh(s->cid); 2233 s->status = le16toh(s->status); 2234 s->error_location = le16toh(s->error_location); 2235 s->lba = le64toh(s->lba); 2236 s->nsid = le32toh(s->nsid); 2237 s->csi = le64toh(s->csi); 2238 s->ttsi = le16toh(s->ttsi); 2239 #endif 2240 } 2241 2242 static inline 2243 void nvme_le128toh(void *p __unused) 2244 { 2245 #if _BYTE_ORDER != _LITTLE_ENDIAN 2246 /* Swap 16 bytes in place */ 2247 char *tmp = (char*)p; 2248 char b; 2249 int i; 2250 for (i = 0; i < 8; i++) { 2251 b = tmp[i]; 2252 tmp[i] = tmp[15-i]; 2253 tmp[15-i] = b; 2254 } 2255 #endif 2256 } 2257 2258 static inline 2259 void nvme_health_information_page_swapbytes( 2260 struct nvme_health_information_page *s __unused) 2261 { 2262 #if _BYTE_ORDER != _LITTLE_ENDIAN 2263 int i; 2264 2265 s->temperature = le16toh(s->temperature); 2266 nvme_le128toh((void *)s->data_units_read); 2267 nvme_le128toh((void *)s->data_units_written); 2268 nvme_le128toh((void *)s->host_read_commands); 2269 nvme_le128toh((void *)s->host_write_commands); 2270 nvme_le128toh((void *)s->controller_busy_time); 2271 nvme_le128toh((void *)s->power_cycles); 2272 nvme_le128toh((void *)s->power_on_hours); 2273 nvme_le128toh((void *)s->unsafe_shutdowns); 2274 nvme_le128toh((void *)s->media_errors); 2275 nvme_le128toh((void *)s->num_error_info_log_entries); 2276 s->warning_temp_time = le32toh(s->warning_temp_time); 2277 s->error_temp_time = le32toh(s->error_temp_time); 2278 for (i = 0; i < 8; i++) 2279 s->temp_sensor[i] = le16toh(s->temp_sensor[i]); 2280 s->tmt1tc = le32toh(s->tmt1tc); 2281 s->tmt2tc = le32toh(s->tmt2tc); 2282 s->ttftmt1 = le32toh(s->ttftmt1); 2283 s->ttftmt2 = le32toh(s->ttftmt2); 2284 #endif 2285 } 2286 2287 static inline 2288 void nvme_ns_list_swapbytes(struct nvme_ns_list *s __unused) 2289 { 2290 #if _BYTE_ORDER != _LITTLE_ENDIAN 2291 int i; 2292 2293 for (i = 0; i < 1024; i++) 2294 s->ns[i] = le32toh(s->ns[i]); 2295 #endif 2296 } 2297 2298 static inline 2299 void nvme_command_effects_page_swapbytes( 2300 struct nvme_command_effects_page *s __unused) 2301 { 2302 #if _BYTE_ORDER != _LITTLE_ENDIAN 2303 int i; 2304 2305 for (i = 0; i < 256; i++) 2306 s->acs[i] = le32toh(s->acs[i]); 2307 for (i = 0; i < 256; i++) 2308 s->iocs[i] = le32toh(s->iocs[i]); 2309 #endif 2310 } 2311 2312 static inline 2313 void nvme_res_notification_page_swapbytes( 2314 struct nvme_res_notification_page *s __unused) 2315 { 2316 #if _BYTE_ORDER != _LITTLE_ENDIAN 2317 s->log_page_count = le64toh(s->log_page_count); 2318 s->nsid = le32toh(s->nsid); 2319 #endif 2320 } 2321 2322 static inline 2323 void nvme_sanitize_status_page_swapbytes( 2324 struct nvme_sanitize_status_page *s __unused) 2325 { 2326 #if _BYTE_ORDER != _LITTLE_ENDIAN 2327 s->sprog = le16toh(s->sprog); 2328 s->sstat = le16toh(s->sstat); 2329 s->scdw10 = le32toh(s->scdw10); 2330 s->etfo = le32toh(s->etfo); 2331 s->etfbe = le32toh(s->etfbe); 2332 s->etfce = le32toh(s->etfce); 2333 s->etfownd = le32toh(s->etfownd); 2334 s->etfbewnd = le32toh(s->etfbewnd); 2335 s->etfcewnd = le32toh(s->etfcewnd); 2336 #endif 2337 } 2338 2339 static inline 2340 void nvme_resv_status_swapbytes(struct nvme_resv_status *s __unused, 2341 size_t size __unused) 2342 { 2343 #if _BYTE_ORDER != _LITTLE_ENDIAN 2344 size_t i, n; 2345 2346 s->gen = le32toh(s->gen); 2347 n = (s->regctl[1] << 8) | s->regctl[0]; 2348 n = MIN(n, (size - sizeof(s)) / sizeof(s->ctrlr[0])); 2349 for (i = 0; i < n; i++) { 2350 s->ctrlr[i].ctrlr_id = le16toh(s->ctrlr[i].ctrlr_id); 2351 s->ctrlr[i].hostid = le64toh(s->ctrlr[i].hostid); 2352 s->ctrlr[i].rkey = le64toh(s->ctrlr[i].rkey); 2353 } 2354 #endif 2355 } 2356 2357 static inline 2358 void nvme_resv_status_ext_swapbytes(struct nvme_resv_status_ext *s __unused, 2359 size_t size __unused) 2360 { 2361 #if _BYTE_ORDER != _LITTLE_ENDIAN 2362 size_t i, n; 2363 2364 s->gen = le32toh(s->gen); 2365 n = (s->regctl[1] << 8) | s->regctl[0]; 2366 n = MIN(n, (size - sizeof(s)) / sizeof(s->ctrlr[0])); 2367 for (i = 0; i < n; i++) { 2368 s->ctrlr[i].ctrlr_id = le16toh(s->ctrlr[i].ctrlr_id); 2369 s->ctrlr[i].rkey = le64toh(s->ctrlr[i].rkey); 2370 nvme_le128toh((void *)s->ctrlr[i].hostid); 2371 } 2372 #endif 2373 } 2374 2375 static inline void 2376 nvme_device_self_test_swapbytes(struct nvme_device_self_test_page *s __unused) 2377 { 2378 #if _BYTE_ORDER != _LITTLE_ENDIAN 2379 uint8_t *tmp; 2380 uint32_t r, i; 2381 uint8_t b; 2382 2383 for (r = 0; r < 20; r++) { 2384 s->result[r].poh = le64toh(s->result[r].poh); 2385 s->result[r].nsid = le32toh(s->result[r].nsid); 2386 /* Unaligned 64-bit loads fail on some architectures */ 2387 tmp = s->result[r].failing_lba; 2388 for (i = 0; i < 4; i++) { 2389 b = tmp[i]; 2390 tmp[i] = tmp[7-i]; 2391 tmp[7-i] = b; 2392 } 2393 } 2394 #endif 2395 } 2396 2397 static inline void 2398 nvme_discovery_log_entry_swapbytes(struct nvme_discovery_log_entry *s __unused) 2399 { 2400 #if _BYTE_ORDER != _LITTLE_ENDIAN 2401 s->portid = le16toh(s->portid); 2402 s->cntlid = le16toh(s->cntlid); 2403 s->aqsz = le16toh(s->aqsz); 2404 if (s->trtype == 0x01 /* RDMA */) { 2405 s->tsas.rdma.rdma_pkey = le16toh(s->tsas.rdma.rdma_pkey); 2406 } 2407 #endif 2408 } 2409 2410 static inline void 2411 nvme_discovery_log_swapbytes(struct nvme_discovery_log *s __unused) 2412 { 2413 #if _BYTE_ORDER != _LITTLE_ENDIAN 2414 s->genctr = le64toh(s->genctr); 2415 s->numrec = le64toh(s->numrec); 2416 s->recfmt = le16toh(s->recfmt); 2417 #endif 2418 } 2419 #endif /* __NVME_H__ */ 2420