1 /*- 2 * SPDX-License-Identifier: BSD-2-Clause-FreeBSD 3 * 4 * Copyright (C) 2012-2013 Intel Corporation 5 * All rights reserved. 6 * Copyright (C) 2018-2019 Alexander Motin <mav@FreeBSD.org> 7 * 8 * Redistribution and use in source and binary forms, with or without 9 * modification, are permitted provided that the following conditions 10 * are met: 11 * 1. Redistributions of source code must retain the above copyright 12 * notice, this list of conditions and the following disclaimer. 13 * 2. Redistributions in binary form must reproduce the above copyright 14 * notice, this list of conditions and the following disclaimer in the 15 * documentation and/or other materials provided with the distribution. 16 * 17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 18 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 19 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 20 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 21 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 22 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 23 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 24 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 25 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 26 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 27 * SUCH DAMAGE. 28 */ 29 30 #include <sys/cdefs.h> 31 __FBSDID("$FreeBSD$"); 32 33 #include <sys/param.h> 34 35 #include <ctype.h> 36 #include <err.h> 37 #include <fcntl.h> 38 #include <stdbool.h> 39 #include <stddef.h> 40 #include <stdio.h> 41 #include <stdlib.h> 42 #include <string.h> 43 #include <unistd.h> 44 45 #include "nvmecontrol.h" 46 #include "nvmecontrol_ext.h" 47 48 #define NONE 0xfffffffeu 49 50 static struct options { 51 bool hex; 52 bool verbose; 53 const char *dev; 54 uint32_t nsid; 55 } opt = { 56 .hex = false, 57 .verbose = false, 58 .dev = NULL, 59 .nsid = NONE, 60 }; 61 62 void 63 print_namespace(struct nvme_namespace_data *nsdata) 64 { 65 char cbuf[UINT128_DIG + 1]; 66 uint32_t i; 67 uint32_t lbaf, lbads, ms, rp; 68 uint8_t thin_prov, ptype; 69 uint8_t flbas_fmt, t; 70 71 thin_prov = (nsdata->nsfeat >> NVME_NS_DATA_NSFEAT_THIN_PROV_SHIFT) & 72 NVME_NS_DATA_NSFEAT_THIN_PROV_MASK; 73 74 flbas_fmt = (nsdata->flbas >> NVME_NS_DATA_FLBAS_FORMAT_SHIFT) & 75 NVME_NS_DATA_FLBAS_FORMAT_MASK; 76 77 printf("Size: %lld blocks\n", 78 (long long)nsdata->nsze); 79 printf("Capacity: %lld blocks\n", 80 (long long)nsdata->ncap); 81 printf("Utilization: %lld blocks\n", 82 (long long)nsdata->nuse); 83 printf("Thin Provisioning: %s\n", 84 thin_prov ? "Supported" : "Not Supported"); 85 printf("Number of LBA Formats: %d\n", nsdata->nlbaf+1); 86 printf("Current LBA Format: LBA Format #%02d\n", flbas_fmt); 87 printf("Data Protection Caps: %s%s%s%s%s%s\n", 88 (nsdata->dpc == 0) ? "Not Supported" : "", 89 ((nsdata->dpc >> NVME_NS_DATA_DPC_MD_END_SHIFT) & 90 NVME_NS_DATA_DPC_MD_END_MASK) ? "Last Bytes, " : "", 91 ((nsdata->dpc >> NVME_NS_DATA_DPC_MD_START_SHIFT) & 92 NVME_NS_DATA_DPC_MD_START_MASK) ? "First Bytes, " : "", 93 ((nsdata->dpc >> NVME_NS_DATA_DPC_PIT3_SHIFT) & 94 NVME_NS_DATA_DPC_PIT3_MASK) ? "Type 3, " : "", 95 ((nsdata->dpc >> NVME_NS_DATA_DPC_PIT2_SHIFT) & 96 NVME_NS_DATA_DPC_PIT2_MASK) ? "Type 2, " : "", 97 ((nsdata->dpc >> NVME_NS_DATA_DPC_PIT1_SHIFT) & 98 NVME_NS_DATA_DPC_PIT1_MASK) ? "Type 1" : ""); 99 printf("Data Protection Settings: "); 100 ptype = (nsdata->dps >> NVME_NS_DATA_DPS_PIT_SHIFT) & 101 NVME_NS_DATA_DPS_PIT_MASK; 102 if (ptype) { 103 printf("Type %d, %s Bytes\n", ptype, 104 ((nsdata->dps >> NVME_NS_DATA_DPS_MD_START_SHIFT) & 105 NVME_NS_DATA_DPS_MD_START_MASK) ? "First" : "Last"); 106 } else { 107 printf("Not Enabled\n"); 108 } 109 printf("Multi-Path I/O Capabilities: %s%s\n", 110 (nsdata->nmic == 0) ? "Not Supported" : "", 111 ((nsdata->nmic >> NVME_NS_DATA_NMIC_MAY_BE_SHARED_SHIFT) & 112 NVME_NS_DATA_NMIC_MAY_BE_SHARED_MASK) ? "May be shared" : ""); 113 printf("Reservation Capabilities: %s%s%s%s%s%s%s%s%s\n", 114 (nsdata->rescap == 0) ? "Not Supported" : "", 115 ((nsdata->rescap >> NVME_NS_DATA_RESCAP_IEKEY13_SHIFT) & 116 NVME_NS_DATA_RESCAP_IEKEY13_MASK) ? "IEKEY13, " : "", 117 ((nsdata->rescap >> NVME_NS_DATA_RESCAP_EX_AC_AR_SHIFT) & 118 NVME_NS_DATA_RESCAP_EX_AC_AR_MASK) ? "EX_AC_AR, " : "", 119 ((nsdata->rescap >> NVME_NS_DATA_RESCAP_WR_EX_AR_SHIFT) & 120 NVME_NS_DATA_RESCAP_WR_EX_AR_MASK) ? "WR_EX_AR, " : "", 121 ((nsdata->rescap >> NVME_NS_DATA_RESCAP_EX_AC_RO_SHIFT) & 122 NVME_NS_DATA_RESCAP_EX_AC_RO_MASK) ? "EX_AC_RO, " : "", 123 ((nsdata->rescap >> NVME_NS_DATA_RESCAP_WR_EX_RO_SHIFT) & 124 NVME_NS_DATA_RESCAP_WR_EX_RO_MASK) ? "WR_EX_RO, " : "", 125 ((nsdata->rescap >> NVME_NS_DATA_RESCAP_EX_AC_SHIFT) & 126 NVME_NS_DATA_RESCAP_EX_AC_MASK) ? "EX_AC, " : "", 127 ((nsdata->rescap >> NVME_NS_DATA_RESCAP_WR_EX_SHIFT) & 128 NVME_NS_DATA_RESCAP_WR_EX_MASK) ? "WR_EX, " : "", 129 ((nsdata->rescap >> NVME_NS_DATA_RESCAP_PTPL_SHIFT) & 130 NVME_NS_DATA_RESCAP_PTPL_MASK) ? "PTPL" : ""); 131 printf("Format Progress Indicator: "); 132 if ((nsdata->fpi >> NVME_NS_DATA_FPI_SUPP_SHIFT) & 133 NVME_NS_DATA_FPI_SUPP_MASK) { 134 printf("%u%% remains\n", 135 (nsdata->fpi >> NVME_NS_DATA_FPI_PERC_SHIFT) & 136 NVME_NS_DATA_FPI_PERC_MASK); 137 } else 138 printf("Not Supported\n"); 139 t = (nsdata->dlfeat >> NVME_NS_DATA_DLFEAT_READ_SHIFT) & 140 NVME_NS_DATA_DLFEAT_READ_MASK; 141 printf("Deallocate Logical Block: Read %s%s%s\n", 142 (t == NVME_NS_DATA_DLFEAT_READ_NR) ? "Not Reported" : 143 (t == NVME_NS_DATA_DLFEAT_READ_00) ? "00h" : 144 (t == NVME_NS_DATA_DLFEAT_READ_FF) ? "FFh" : "Unknown", 145 (nsdata->dlfeat >> NVME_NS_DATA_DLFEAT_DWZ_SHIFT) & 146 NVME_NS_DATA_DLFEAT_DWZ_MASK ? ", Write Zero" : "", 147 (nsdata->dlfeat >> NVME_NS_DATA_DLFEAT_GCRC_SHIFT) & 148 NVME_NS_DATA_DLFEAT_GCRC_MASK ? ", Guard CRC" : ""); 149 printf("Optimal I/O Boundary: %u blocks\n", nsdata->noiob); 150 printf("NVM Capacity: %s bytes\n", 151 uint128_to_str(to128(nsdata->nvmcap), cbuf, sizeof(cbuf))); 152 if ((nsdata->nsfeat >> NVME_NS_DATA_NSFEAT_NPVALID_SHIFT) & 153 NVME_NS_DATA_NSFEAT_NPVALID_MASK) { 154 printf("Preferred Write Granularity: %u blocks\n", 155 nsdata->npwg + 1); 156 printf("Preferred Write Alignment: %u blocks\n", 157 nsdata->npwa + 1); 158 printf("Preferred Deallocate Granul: %u blocks\n", 159 nsdata->npdg + 1); 160 printf("Preferred Deallocate Align: %u blocks\n", 161 nsdata->npda + 1); 162 printf("Optimal Write Size: %u blocks\n", 163 nsdata->nows + 1); 164 } 165 printf("Globally Unique Identifier: "); 166 for (i = 0; i < sizeof(nsdata->nguid); i++) 167 printf("%02x", nsdata->nguid[i]); 168 printf("\n"); 169 printf("IEEE EUI64: "); 170 for (i = 0; i < sizeof(nsdata->eui64); i++) 171 printf("%02x", nsdata->eui64[i]); 172 printf("\n"); 173 for (i = 0; i <= nsdata->nlbaf; i++) { 174 lbaf = nsdata->lbaf[i]; 175 lbads = (lbaf >> NVME_NS_DATA_LBAF_LBADS_SHIFT) & 176 NVME_NS_DATA_LBAF_LBADS_MASK; 177 ms = (lbaf >> NVME_NS_DATA_LBAF_MS_SHIFT) & 178 NVME_NS_DATA_LBAF_MS_MASK; 179 rp = (lbaf >> NVME_NS_DATA_LBAF_RP_SHIFT) & 180 NVME_NS_DATA_LBAF_RP_MASK; 181 printf("LBA Format #%02d: Data Size: %5d Metadata Size: %5d" 182 " Performance: %s\n", 183 i, 1 << lbads, ms, (rp == 0) ? "Best" : 184 (rp == 1) ? "Better" : (rp == 2) ? "Good" : "Degraded"); 185 } 186 } 187 188 static void 189 identify_ctrlr(int fd) 190 { 191 struct nvme_controller_data cdata; 192 int hexlength; 193 194 read_controller_data(fd, &cdata); 195 close(fd); 196 197 if (opt.hex) { 198 if (opt.verbose) 199 hexlength = sizeof(struct nvme_controller_data); 200 else 201 hexlength = offsetof(struct nvme_controller_data, 202 reserved8); 203 print_hex(&cdata, hexlength); 204 exit(0); 205 } 206 207 nvme_print_controller(&cdata); 208 exit(0); 209 } 210 211 static void 212 identify_ns(int fd, uint32_t nsid) 213 { 214 struct nvme_namespace_data nsdata; 215 int hexlength; 216 217 read_namespace_data(fd, nsid, &nsdata); 218 close(fd); 219 220 if (opt.hex) { 221 if (opt.verbose) 222 hexlength = sizeof(struct nvme_namespace_data); 223 else 224 hexlength = offsetof(struct nvme_namespace_data, 225 reserved6); 226 print_hex(&nsdata, hexlength); 227 exit(0); 228 } 229 230 print_namespace(&nsdata); 231 exit(0); 232 } 233 234 static void 235 identify(const struct cmd *f, int argc, char *argv[]) 236 { 237 char *path; 238 int fd; 239 uint32_t nsid; 240 241 if (arg_parse(argc, argv, f)) 242 return; 243 244 open_dev(opt.dev, &fd, 0, 1); 245 get_nsid(fd, &path, &nsid); 246 if (nsid != 0) { 247 /* 248 * We got namespace device, but we need to send IDENTIFY 249 * commands to the controller, not the namespace, since it 250 * is an admin cmd. The namespace ID will be specified in 251 * the IDENTIFY command itself. 252 */ 253 close(fd); 254 open_dev(path, &fd, 0, 1); 255 } 256 free(path); 257 if (opt.nsid != NONE) 258 nsid = opt.nsid; 259 260 if (nsid == 0) 261 identify_ctrlr(fd); 262 else 263 identify_ns(fd, nsid); 264 } 265 266 static const struct opts identify_opts[] = { 267 #define OPT(l, s, t, opt, addr, desc) { l, s, t, &opt.addr, desc } 268 OPT("hex", 'x', arg_none, opt, hex, 269 "Print identiy information in hex"), 270 OPT("verbose", 'v', arg_none, opt, verbose, 271 "More verbosity: print entire identify table"), 272 OPT("nsid", 'n', arg_uint32, opt, nsid, 273 "Namespace ID to use if not in device name"), 274 { NULL, 0, arg_none, NULL, NULL } 275 }; 276 #undef OPT 277 278 static const struct args identify_args[] = { 279 { arg_string, &opt.dev, "controller-id|namespace-id" }, 280 { arg_none, NULL, NULL }, 281 }; 282 283 static struct cmd identify_cmd = { 284 .name = "identify", 285 .fn = identify, 286 .descr = "Print summary of the IDENTIFY information", 287 .ctx_size = sizeof(opt), 288 .opts = identify_opts, 289 .args = identify_args, 290 }; 291 292 CMD_COMMAND(identify_cmd); 293