bioctl.c revision 1.20 1 1.20 rin /* $NetBSD: bioctl.c,v 1.20 2023/08/04 03:45:07 rin Exp $ */
2 1.7 xtraeme /* $OpenBSD: bioctl.c,v 1.52 2007/03/20 15:26:06 jmc Exp $ */
3 1.1 bouyer
4 1.1 bouyer /*
5 1.7 xtraeme * Copyright (c) 2007, 2008 Juan Romero Pardines
6 1.1 bouyer * Copyright (c) 2004, 2005 Marco Peereboom
7 1.1 bouyer * All rights reserved.
8 1.1 bouyer *
9 1.1 bouyer * Redistribution and use in source and binary forms, with or without
10 1.1 bouyer * modification, are permitted provided that the following conditions
11 1.1 bouyer * are met:
12 1.1 bouyer * 1. Redistributions of source code must retain the above copyright
13 1.1 bouyer * notice, this list of conditions and the following disclaimer.
14 1.1 bouyer * 2. Redistributions in binary form must reproduce the above copyright
15 1.1 bouyer * notice, this list of conditions and the following disclaimer in the
16 1.1 bouyer * documentation and/or other materials provided with the distribution.
17 1.1 bouyer *
18 1.1 bouyer * THIS SOFTWARE IS PROVIDED BY THE AUTHORS AND CONTRIBUTORS ``AS IS'' AND
19 1.1 bouyer * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
20 1.1 bouyer * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
21 1.1 bouyer * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHORS OR CONTRIBUTORS BE LIABLE FOR
22 1.1 bouyer * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
23 1.1 bouyer * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
24 1.1 bouyer * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
25 1.1 bouyer * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
26 1.1 bouyer * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
27 1.1 bouyer * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
28 1.1 bouyer * SUCH DAMAGE.
29 1.1 bouyer *
30 1.1 bouyer */
31 1.1 bouyer #include <sys/cdefs.h>
32 1.1 bouyer
33 1.1 bouyer #ifndef lint
34 1.20 rin __RCSID("$NetBSD: bioctl.c,v 1.20 2023/08/04 03:45:07 rin Exp $");
35 1.1 bouyer #endif
36 1.1 bouyer
37 1.7 xtraeme #include <sys/types.h>
38 1.1 bouyer #include <sys/ioctl.h>
39 1.1 bouyer #include <sys/param.h>
40 1.1 bouyer #include <sys/queue.h>
41 1.1 bouyer #include <dev/biovar.h>
42 1.1 bouyer
43 1.1 bouyer #include <errno.h>
44 1.1 bouyer #include <err.h>
45 1.1 bouyer #include <fcntl.h>
46 1.1 bouyer #include <util.h>
47 1.7 xtraeme #include <stdbool.h>
48 1.1 bouyer #include <stdio.h>
49 1.1 bouyer #include <stdlib.h>
50 1.1 bouyer #include <string.h>
51 1.1 bouyer #include <unistd.h>
52 1.1 bouyer #include <ctype.h>
53 1.1 bouyer #include <util.h>
54 1.1 bouyer
55 1.7 xtraeme struct command {
56 1.7 xtraeme const char *cmd_name;
57 1.7 xtraeme const char *arg_names;
58 1.7 xtraeme void (*cmd_func)(int, int, char **);
59 1.7 xtraeme };
60 1.7 xtraeme
61 1.7 xtraeme struct biotmp {
62 1.7 xtraeme struct bioc_inq *bi;
63 1.7 xtraeme struct bioc_vol *bv;
64 1.7 xtraeme char volname[64];
65 1.7 xtraeme int fd;
66 1.7 xtraeme int volid;
67 1.7 xtraeme int diskid;
68 1.7 xtraeme bool format;
69 1.7 xtraeme bool show_disknovol;
70 1.7 xtraeme };
71 1.7 xtraeme
72 1.1 bouyer struct locator {
73 1.1 bouyer int channel;
74 1.1 bouyer int target;
75 1.1 bouyer int lun;
76 1.1 bouyer };
77 1.1 bouyer
78 1.15 joerg __dead static void usage(void);
79 1.7 xtraeme static void bio_alarm(int, int, char **);
80 1.7 xtraeme static void bio_show_common(int, int, char **);
81 1.20 rin static int bio_show_volumes(struct biotmp *, struct bioc_vol *);
82 1.7 xtraeme static void bio_show_disks(struct biotmp *);
83 1.7 xtraeme static void bio_setblink(int, int, char **);
84 1.7 xtraeme static void bio_blink(int, char *, int, int);
85 1.7 xtraeme static void bio_setstate_hotspare(int, int, char **);
86 1.7 xtraeme static void bio_setstate_passthru(int, int, char **);
87 1.7 xtraeme static void bio_setstate_common(int, char *, struct bioc_setstate *,
88 1.7 xtraeme struct locator *);
89 1.7 xtraeme static void bio_setstate_consistency(int, int, char **);
90 1.7 xtraeme static void bio_volops_create(int, int, char **);
91 1.7 xtraeme #ifdef notyet
92 1.7 xtraeme static void bio_volops_modify(int, int, char **);
93 1.7 xtraeme #endif
94 1.7 xtraeme static void bio_volops_remove(int, int, char **);
95 1.7 xtraeme
96 1.2 xtraeme static const char *str2locator(const char *, struct locator *);
97 1.1 bouyer
98 1.7 xtraeme static struct bio_locate bl;
99 1.7 xtraeme static struct command commands[] = {
100 1.7 xtraeme {
101 1.7 xtraeme "show",
102 1.7 xtraeme "[disks] | [volumes]",
103 1.7 xtraeme bio_show_common },
104 1.7 xtraeme {
105 1.7 xtraeme "alarm",
106 1.7 xtraeme "[enable] | [disable] | [silence] | [test]",
107 1.7 xtraeme bio_alarm },
108 1.7 xtraeme {
109 1.7 xtraeme "blink",
110 1.11 xtraeme "start [channel:target[.lun]] | stop [channel:target[.lun]]",
111 1.7 xtraeme bio_setblink },
112 1.7 xtraeme {
113 1.7 xtraeme "hotspare",
114 1.11 xtraeme "add channel:target.lun | remove channel:target.lun",
115 1.7 xtraeme bio_setstate_hotspare },
116 1.7 xtraeme {
117 1.7 xtraeme "passthru",
118 1.11 xtraeme "add DISKID channel:target.lun | remove channel:target.lun",
119 1.7 xtraeme bio_setstate_passthru },
120 1.7 xtraeme {
121 1.7 xtraeme "check",
122 1.11 xtraeme "start VOLID | stop VOLID",
123 1.7 xtraeme bio_setstate_consistency },
124 1.7 xtraeme {
125 1.7 xtraeme "create",
126 1.7 xtraeme "volume VOLID DISKIDs [SIZE] STRIPE RAID_LEVEL channel:target.lun",
127 1.7 xtraeme bio_volops_create },
128 1.7 xtraeme #ifdef notyet
129 1.7 xtraeme {
130 1.7 xtraeme "modify",
131 1.7 xtraeme "volume VOLID STRIPE RAID_LEVEL channel:target.lun",
132 1.7 xtraeme bio_volops_modify },
133 1.7 xtraeme #endif
134 1.7 xtraeme {
135 1.7 xtraeme "remove",
136 1.7 xtraeme "volume VOLID channel:target.lun",
137 1.7 xtraeme bio_volops_remove },
138 1.2 xtraeme
139 1.7 xtraeme { NULL, NULL, NULL }
140 1.7 xtraeme };
141 1.1 bouyer
142 1.1 bouyer int
143 1.7 xtraeme main(int argc, char **argv)
144 1.1 bouyer {
145 1.7 xtraeme char *dvname;
146 1.7 xtraeme const char *cmdname;
147 1.7 xtraeme int fd = 0, i;
148 1.1 bouyer
149 1.7 xtraeme /* Must have at least: device command */
150 1.7 xtraeme if (argc < 3)
151 1.1 bouyer usage();
152 1.1 bouyer
153 1.7 xtraeme /* Skip program name, get and skip device name and command */
154 1.2 xtraeme setprogname(*argv);
155 1.7 xtraeme dvname = argv[1];
156 1.7 xtraeme cmdname = argv[2];
157 1.7 xtraeme argv += 3;
158 1.7 xtraeme argc -= 3;
159 1.7 xtraeme
160 1.7 xtraeme /* Look up and call the command */
161 1.7 xtraeme for (i = 0; commands[i].cmd_name != NULL; i++)
162 1.7 xtraeme if (strcmp(cmdname, commands[i].cmd_name) == 0)
163 1.7 xtraeme break;
164 1.7 xtraeme if (commands[i].cmd_name == NULL)
165 1.7 xtraeme errx(EXIT_FAILURE, "unknown command: %s", cmdname);
166 1.7 xtraeme
167 1.7 xtraeme /* Locate the device by issuing the BIOCLOCATE ioctl */
168 1.7 xtraeme fd = open("/dev/bio", O_RDWR);
169 1.7 xtraeme if (fd == -1)
170 1.7 xtraeme err(EXIT_FAILURE, "Can't open /dev/bio");
171 1.7 xtraeme
172 1.7 xtraeme bl.bl_name = dvname;
173 1.7 xtraeme if (ioctl(fd, BIOCLOCATE, &bl) == -1)
174 1.7 xtraeme errx(EXIT_FAILURE, "Can't locate %s device via /dev/bio",
175 1.7 xtraeme bl.bl_name);
176 1.2 xtraeme
177 1.7 xtraeme /* and execute the command */
178 1.7 xtraeme (*commands[i].cmd_func)(fd, argc, argv);
179 1.1 bouyer
180 1.7 xtraeme (void)close(fd);
181 1.2 xtraeme exit(EXIT_SUCCESS);
182 1.1 bouyer }
183 1.1 bouyer
184 1.2 xtraeme static void
185 1.1 bouyer usage(void)
186 1.1 bouyer {
187 1.7 xtraeme int i;
188 1.7 xtraeme
189 1.7 xtraeme (void)fprintf(stderr, "usage: %s device command [arg [...]]\n",
190 1.7 xtraeme getprogname());
191 1.7 xtraeme
192 1.7 xtraeme (void)fprintf(stderr, "Available commands:\n");
193 1.7 xtraeme for (i = 0; commands[i].cmd_name != NULL; i++)
194 1.7 xtraeme (void)fprintf(stderr, " %s %s\n", commands[i].cmd_name,
195 1.7 xtraeme commands[i].arg_names);
196 1.7 xtraeme
197 1.2 xtraeme exit(EXIT_FAILURE);
198 1.2 xtraeme /* NOTREACHED */
199 1.1 bouyer }
200 1.1 bouyer
201 1.2 xtraeme static const char *
202 1.1 bouyer str2locator(const char *string, struct locator *location)
203 1.1 bouyer {
204 1.7 xtraeme const char *errstr;
205 1.7 xtraeme char parse[80], *targ, *lun;
206 1.1 bouyer
207 1.1 bouyer strlcpy(parse, string, sizeof parse);
208 1.1 bouyer targ = strchr(parse, ':');
209 1.1 bouyer if (targ == NULL)
210 1.7 xtraeme return "target not specified";
211 1.7 xtraeme
212 1.1 bouyer *targ++ = '\0';
213 1.1 bouyer lun = strchr(targ, '.');
214 1.1 bouyer if (lun != NULL) {
215 1.1 bouyer *lun++ = '\0';
216 1.1 bouyer location->lun = strtonum(lun, 0, 256, &errstr);
217 1.1 bouyer if (errstr)
218 1.2 xtraeme return errstr;
219 1.1 bouyer } else
220 1.1 bouyer location->lun = 0;
221 1.1 bouyer
222 1.1 bouyer location->target = strtonum(targ, 0, 256, &errstr);
223 1.1 bouyer if (errstr)
224 1.2 xtraeme return errstr;
225 1.1 bouyer location->channel = strtonum(parse, 0, 256, &errstr);
226 1.1 bouyer if (errstr)
227 1.2 xtraeme return errstr;
228 1.2 xtraeme return NULL;
229 1.1 bouyer }
230 1.1 bouyer
231 1.7 xtraeme /*
232 1.7 xtraeme * Shows info about available RAID volumes.
233 1.7 xtraeme */
234 1.7 xtraeme static int
235 1.20 rin bio_show_volumes(struct biotmp *bt, struct bioc_vol *bv)
236 1.7 xtraeme {
237 1.10 xtraeme const char *status, *rtypestr, *stripestr;
238 1.7 xtraeme char size[64], percent[16], seconds[20];
239 1.18 mrg char rtype[16], stripe[16], tmp[48];
240 1.7 xtraeme
241 1.10 xtraeme rtypestr = stripestr = NULL;
242 1.10 xtraeme
243 1.20 rin memset(bv, 0, sizeof(*bv));
244 1.20 rin bv->bv_cookie = bl.bl_cookie;
245 1.20 rin bv->bv_volid = bt->volid;
246 1.20 rin bv->bv_percent = -1;
247 1.20 rin bv->bv_seconds = 0;
248 1.7 xtraeme
249 1.20 rin if (ioctl(bt->fd, BIOCVOL, bv) == -1)
250 1.7 xtraeme err(EXIT_FAILURE, "BIOCVOL");
251 1.7 xtraeme
252 1.7 xtraeme percent[0] = '\0';
253 1.7 xtraeme seconds[0] = '\0';
254 1.20 rin if (bv->bv_percent != -1)
255 1.7 xtraeme snprintf(percent, sizeof(percent),
256 1.20 rin " %3.2f%% done", bv->bv_percent / 10.0);
257 1.20 rin if (bv->bv_seconds)
258 1.7 xtraeme snprintf(seconds, sizeof(seconds),
259 1.20 rin " %u seconds", bv->bv_seconds);
260 1.7 xtraeme
261 1.20 rin switch (bv->bv_status) {
262 1.7 xtraeme case BIOC_SVONLINE:
263 1.7 xtraeme status = BIOC_SVONLINE_S;
264 1.7 xtraeme break;
265 1.7 xtraeme case BIOC_SVOFFLINE:
266 1.7 xtraeme status = BIOC_SVOFFLINE_S;
267 1.7 xtraeme break;
268 1.7 xtraeme case BIOC_SVDEGRADED:
269 1.7 xtraeme status = BIOC_SVDEGRADED_S;
270 1.7 xtraeme break;
271 1.7 xtraeme case BIOC_SVBUILDING:
272 1.7 xtraeme status = BIOC_SVBUILDING_S;
273 1.7 xtraeme break;
274 1.7 xtraeme case BIOC_SVREBUILD:
275 1.7 xtraeme status = BIOC_SVREBUILD_S;
276 1.7 xtraeme break;
277 1.7 xtraeme case BIOC_SVMIGRATING:
278 1.7 xtraeme status = BIOC_SVMIGRATING_S;
279 1.7 xtraeme break;
280 1.7 xtraeme case BIOC_SVSCRUB:
281 1.7 xtraeme status = BIOC_SVSCRUB_S;
282 1.7 xtraeme break;
283 1.7 xtraeme case BIOC_SVCHECKING:
284 1.7 xtraeme status = BIOC_SVCHECKING_S;
285 1.7 xtraeme break;
286 1.7 xtraeme case BIOC_SVINVALID:
287 1.7 xtraeme default:
288 1.7 xtraeme status = BIOC_SVINVALID_S;
289 1.7 xtraeme break;
290 1.7 xtraeme }
291 1.7 xtraeme
292 1.20 rin snprintf(bt->volname, sizeof(bt->volname), "%u", bv->bv_volid);
293 1.20 rin if (bv->bv_vendor[0])
294 1.20 rin snprintf(tmp, sizeof(tmp), "%s %s", bv->bv_dev, bv->bv_vendor);
295 1.7 xtraeme else
296 1.20 rin snprintf(tmp, sizeof(tmp), "%s", bv->bv_dev);
297 1.7 xtraeme
298 1.20 rin switch (bv->bv_level) {
299 1.7 xtraeme case BIOC_SVOL_HOTSPARE:
300 1.10 xtraeme rtypestr = "Hot spare";
301 1.10 xtraeme stripestr = "N/A";
302 1.7 xtraeme break;
303 1.7 xtraeme case BIOC_SVOL_PASSTHRU:
304 1.10 xtraeme rtypestr = "Pass through";
305 1.10 xtraeme stripestr = "N/A";
306 1.10 xtraeme break;
307 1.10 xtraeme case BIOC_SVOL_RAID01:
308 1.10 xtraeme rtypestr = "RAID 0+1";
309 1.10 xtraeme break;
310 1.10 xtraeme case BIOC_SVOL_RAID10:
311 1.10 xtraeme rtypestr = "RAID 1+0";
312 1.7 xtraeme break;
313 1.7 xtraeme default:
314 1.20 rin snprintf(rtype, sizeof(rtype), "RAID %u", bv->bv_level);
315 1.20 rin if (bv->bv_level == 1 || bv->bv_stripe_size == 0)
316 1.10 xtraeme stripestr = "N/A";
317 1.7 xtraeme break;
318 1.7 xtraeme }
319 1.7 xtraeme
320 1.10 xtraeme if (rtypestr)
321 1.14 joerg strlcpy(rtype, rtypestr, sizeof(rtype));
322 1.10 xtraeme if (stripestr)
323 1.14 joerg strlcpy(stripe, stripestr, sizeof(stripe));
324 1.10 xtraeme else
325 1.20 rin snprintf(stripe, sizeof(stripe), "%uK", bv->bv_stripe_size);
326 1.10 xtraeme
327 1.20 rin humanize_number(size, 5, (int64_t)bv->bv_size, "", HN_AUTOSCALE,
328 1.7 xtraeme HN_B | HN_NOSPACE | HN_DECIMAL);
329 1.7 xtraeme
330 1.9 xtraeme printf("%6s %-12s %4s %20s %8s %6s %s%s\n",
331 1.7 xtraeme bt->volname, status, size, tmp,
332 1.7 xtraeme rtype, stripe, percent, seconds);
333 1.7 xtraeme
334 1.20 rin bt->bv = bv;
335 1.7 xtraeme
336 1.20 rin return bv->bv_nodisk;
337 1.7 xtraeme }
338 1.7 xtraeme
339 1.7 xtraeme /*
340 1.7 xtraeme * Shows info about physical disks.
341 1.7 xtraeme */
342 1.2 xtraeme static void
343 1.7 xtraeme bio_show_disks(struct biotmp *bt)
344 1.1 bouyer {
345 1.7 xtraeme struct bioc_disk bd;
346 1.7 xtraeme const char *status;
347 1.18 mrg char size[64], serial[32], scsiname[34];
348 1.7 xtraeme
349 1.7 xtraeme memset(&bd, 0, sizeof(bd));
350 1.7 xtraeme bd.bd_cookie = bl.bl_cookie;
351 1.7 xtraeme bd.bd_diskid = bt->diskid;
352 1.7 xtraeme bd.bd_volid = bt->volid;
353 1.7 xtraeme
354 1.7 xtraeme if (bt->show_disknovol) {
355 1.7 xtraeme if (ioctl(bt->fd, BIOCDISK_NOVOL, &bd) == -1)
356 1.7 xtraeme err(EXIT_FAILURE, "BIOCDISK_NOVOL");
357 1.7 xtraeme if (!bd.bd_disknovol)
358 1.7 xtraeme return;
359 1.7 xtraeme } else {
360 1.7 xtraeme if (ioctl(bt->fd, BIOCDISK, &bd) == -1)
361 1.7 xtraeme err(EXIT_FAILURE, "BIOCDISK");
362 1.7 xtraeme }
363 1.7 xtraeme
364 1.7 xtraeme switch (bd.bd_status) {
365 1.7 xtraeme case BIOC_SDONLINE:
366 1.7 xtraeme status = BIOC_SDONLINE_S;
367 1.7 xtraeme break;
368 1.7 xtraeme case BIOC_SDOFFLINE:
369 1.7 xtraeme status = BIOC_SDOFFLINE_S;
370 1.7 xtraeme break;
371 1.7 xtraeme case BIOC_SDFAILED:
372 1.7 xtraeme status = BIOC_SDFAILED_S;
373 1.7 xtraeme break;
374 1.7 xtraeme case BIOC_SDREBUILD:
375 1.7 xtraeme status = BIOC_SDREBUILD_S;
376 1.7 xtraeme break;
377 1.7 xtraeme case BIOC_SDHOTSPARE:
378 1.7 xtraeme status = BIOC_SDHOTSPARE_S;
379 1.7 xtraeme break;
380 1.7 xtraeme case BIOC_SDUNUSED:
381 1.7 xtraeme status = BIOC_SDUNUSED_S;
382 1.7 xtraeme break;
383 1.7 xtraeme case BIOC_SDSCRUB:
384 1.7 xtraeme status = BIOC_SDSCRUB_S;
385 1.7 xtraeme break;
386 1.7 xtraeme case BIOC_SDPASSTHRU:
387 1.7 xtraeme status = BIOC_SDPASSTHRU_S;
388 1.7 xtraeme break;
389 1.7 xtraeme case BIOC_SDINVALID:
390 1.7 xtraeme default:
391 1.7 xtraeme status = BIOC_SDINVALID_S;
392 1.7 xtraeme break;
393 1.7 xtraeme }
394 1.7 xtraeme
395 1.7 xtraeme if (bt->format)
396 1.7 xtraeme snprintf(bt->volname, sizeof(bt->volname),
397 1.7 xtraeme "%u:%u", bt->bv->bv_volid, bd.bd_diskid);
398 1.7 xtraeme
399 1.7 xtraeme humanize_number(size, 5, bd.bd_size, "", HN_AUTOSCALE,
400 1.7 xtraeme HN_B | HN_NOSPACE | HN_DECIMAL);
401 1.7 xtraeme
402 1.7 xtraeme if (bd.bd_procdev[0])
403 1.7 xtraeme snprintf(scsiname, sizeof(scsiname), "%u:%u.%u %s",
404 1.7 xtraeme bd.bd_channel, bd.bd_target, bd.bd_lun,
405 1.7 xtraeme bd.bd_procdev);
406 1.7 xtraeme else
407 1.7 xtraeme snprintf(scsiname, sizeof(scsiname), "%u:%u.%u noencl",
408 1.7 xtraeme bd.bd_channel, bd.bd_target, bd.bd_lun);
409 1.7 xtraeme
410 1.7 xtraeme if (bd.bd_serial[0])
411 1.7 xtraeme strlcpy(serial, bd.bd_serial, sizeof(serial));
412 1.7 xtraeme else
413 1.7 xtraeme strlcpy(serial, "unknown serial", sizeof(serial));
414 1.7 xtraeme
415 1.7 xtraeme if (bt->format)
416 1.7 xtraeme printf("%6s %-12s %4s %20s <%s>\n",
417 1.7 xtraeme bt->volname, status, size, scsiname,
418 1.7 xtraeme bd.bd_vendor);
419 1.7 xtraeme else
420 1.7 xtraeme printf("%5d [%-28s] %-12s %-6s %12s\n",
421 1.7 xtraeme bt->diskid, bd.bd_vendor, status, size, scsiname);
422 1.1 bouyer
423 1.7 xtraeme }
424 1.7 xtraeme
425 1.7 xtraeme /*
426 1.7 xtraeme * Shows info about volumes/disks.
427 1.7 xtraeme */
428 1.7 xtraeme static void
429 1.7 xtraeme bio_show_common(int fd, int argc, char **argv)
430 1.7 xtraeme {
431 1.7 xtraeme struct biotmp *biot;
432 1.7 xtraeme struct bioc_inq bi;
433 1.20 rin struct bioc_vol bv;
434 1.7 xtraeme int i, d, ndisks;
435 1.7 xtraeme bool show_all, show_disks;
436 1.7 xtraeme bool show_vols, show_caps;
437 1.1 bouyer
438 1.7 xtraeme show_all = show_disks = show_vols = show_caps = false;
439 1.1 bouyer
440 1.7 xtraeme if (argc > 1)
441 1.7 xtraeme usage();
442 1.1 bouyer
443 1.7 xtraeme if (argv[0]) {
444 1.7 xtraeme if (strcmp(argv[0], "disks") == 0)
445 1.7 xtraeme show_disks = true;
446 1.7 xtraeme else if (strcmp(argv[0], "volumes") == 0)
447 1.7 xtraeme show_vols = true;
448 1.7 xtraeme else
449 1.7 xtraeme usage();
450 1.7 xtraeme } else
451 1.7 xtraeme show_all = true;
452 1.1 bouyer
453 1.7 xtraeme memset(&bi, 0, sizeof(bi));
454 1.7 xtraeme bi.bi_cookie = bl.bl_cookie;
455 1.1 bouyer
456 1.7 xtraeme if (ioctl(fd, BIOCINQ, &bi) == -1)
457 1.7 xtraeme err(EXIT_FAILURE, "BIOCINQ");
458 1.1 bouyer
459 1.7 xtraeme /*
460 1.7 xtraeme * If there are volumes there's no point to continue.
461 1.7 xtraeme */
462 1.7 xtraeme if (show_all || show_vols) {
463 1.7 xtraeme if (!bi.bi_novol) {
464 1.7 xtraeme warnx("no volumes available");
465 1.7 xtraeme return;
466 1.1 bouyer }
467 1.7 xtraeme }
468 1.1 bouyer
469 1.7 xtraeme biot = calloc(1, sizeof(*biot));
470 1.7 xtraeme if (!biot)
471 1.7 xtraeme err(EXIT_FAILURE, "biotemp calloc");
472 1.7 xtraeme
473 1.7 xtraeme biot->fd = fd;
474 1.7 xtraeme biot->bi = &bi;
475 1.7 xtraeme /*
476 1.7 xtraeme * Go to the disks section if that was specified.
477 1.7 xtraeme */
478 1.7 xtraeme if (show_disks)
479 1.7 xtraeme goto disks;
480 1.7 xtraeme
481 1.7 xtraeme /*
482 1.7 xtraeme * Common code to show only info about volumes and disks
483 1.7 xtraeme * associated to them.
484 1.7 xtraeme */
485 1.9 xtraeme printf("%6s %-12s %4s %20s %8s %6s\n",
486 1.7 xtraeme "Volume", "Status", "Size", "Device/Label",
487 1.9 xtraeme "Level", "Stripe");
488 1.7 xtraeme printf("=============================================="
489 1.9 xtraeme "===============\n");
490 1.1 bouyer
491 1.7 xtraeme for (i = 0; i < bi.bi_novol; i++) {
492 1.7 xtraeme biot->format = true;
493 1.7 xtraeme biot->volid = i;
494 1.20 rin ndisks = bio_show_volumes(biot, &bv);
495 1.7 xtraeme if (show_vols)
496 1.7 xtraeme continue;
497 1.7 xtraeme
498 1.7 xtraeme for (d = 0; d < ndisks; d++) {
499 1.7 xtraeme biot->diskid = d;
500 1.7 xtraeme bio_show_disks(biot);
501 1.1 bouyer }
502 1.1 bouyer
503 1.7 xtraeme }
504 1.7 xtraeme goto out;
505 1.1 bouyer
506 1.7 xtraeme disks:
507 1.7 xtraeme /*
508 1.7 xtraeme * show info about all disks connected to the raid controller,
509 1.7 xtraeme * even if they aren't associated with a volume or raid set.
510 1.7 xtraeme */
511 1.7 xtraeme if (show_disks) {
512 1.7 xtraeme printf("%5s %-30s %-12s %-6s %12s\n",
513 1.7 xtraeme "Disk", "Model/Serial", "Status", "Size", "Location");
514 1.7 xtraeme printf("==============================================="
515 1.7 xtraeme "======================\n");
516 1.7 xtraeme for (d = 0; d < bi.bi_nodisk; d++) {
517 1.7 xtraeme biot->show_disknovol = true;
518 1.7 xtraeme biot->diskid = d;
519 1.7 xtraeme bio_show_disks(biot);
520 1.1 bouyer }
521 1.1 bouyer }
522 1.7 xtraeme out:
523 1.7 xtraeme free(biot);
524 1.1 bouyer }
525 1.1 bouyer
526 1.7 xtraeme /*
527 1.7 xtraeme * To handle the alarm feature.
528 1.7 xtraeme */
529 1.2 xtraeme static void
530 1.7 xtraeme bio_alarm(int fd, int argc, char **argv)
531 1.1 bouyer {
532 1.7 xtraeme struct bioc_alarm ba;
533 1.7 xtraeme bool show = false;
534 1.1 bouyer
535 1.7 xtraeme memset(&ba, 0, sizeof(ba));
536 1.1 bouyer ba.ba_cookie = bl.bl_cookie;
537 1.1 bouyer
538 1.7 xtraeme if (argc > 1)
539 1.7 xtraeme usage();
540 1.7 xtraeme
541 1.7 xtraeme if (argc == 0) {
542 1.7 xtraeme /* show alarm status */
543 1.7 xtraeme ba.ba_opcode = BIOC_GASTATUS;
544 1.7 xtraeme show = true;
545 1.7 xtraeme } else if (strcmp(argv[0], "silence") == 0) {
546 1.7 xtraeme /* silence alarm */
547 1.1 bouyer ba.ba_opcode = BIOC_SASILENCE;
548 1.7 xtraeme } else if (strcmp(argv[0], "enable") == 0) {
549 1.7 xtraeme /* enable alarm */
550 1.7 xtraeme ba.ba_opcode = BIOC_SAENABLE;
551 1.7 xtraeme } else if (strcmp(argv[0], "disable") == 0) {
552 1.7 xtraeme /* disable alarm */
553 1.7 xtraeme ba.ba_opcode = BIOC_SADISABLE;
554 1.7 xtraeme } else if (strcmp(argv[0], "test") == 0) {
555 1.7 xtraeme /* test alarm */
556 1.7 xtraeme ba.ba_opcode = BIOC_SATEST;
557 1.7 xtraeme } else
558 1.7 xtraeme usage();
559 1.7 xtraeme
560 1.7 xtraeme if (ioctl(fd, BIOCALARM, &ba) == -1)
561 1.7 xtraeme err(EXIT_FAILURE, "BIOCALARM");
562 1.7 xtraeme
563 1.7 xtraeme if (show)
564 1.7 xtraeme printf("alarm is currently %s\n",
565 1.7 xtraeme ba.ba_status ? "enabled" : "disabled");
566 1.7 xtraeme }
567 1.7 xtraeme
568 1.7 xtraeme /*
569 1.7 xtraeme * To add/remove a hotspare disk.
570 1.7 xtraeme */
571 1.7 xtraeme static void
572 1.7 xtraeme bio_setstate_hotspare(int fd, int argc, char **argv)
573 1.7 xtraeme {
574 1.7 xtraeme struct bioc_setstate bs;
575 1.7 xtraeme struct locator location;
576 1.7 xtraeme
577 1.7 xtraeme memset(&bs, 0, sizeof(bs));
578 1.7 xtraeme
579 1.7 xtraeme if (argc != 2)
580 1.7 xtraeme usage();
581 1.7 xtraeme
582 1.7 xtraeme if (strcmp(argv[0], "add") == 0)
583 1.7 xtraeme bs.bs_status = BIOC_SSHOTSPARE;
584 1.7 xtraeme else if (strcmp(argv[0], "remove") == 0)
585 1.7 xtraeme bs.bs_status = BIOC_SSDELHOTSPARE;
586 1.7 xtraeme else
587 1.7 xtraeme usage();
588 1.7 xtraeme
589 1.7 xtraeme bio_setstate_common(fd, argv[1], &bs, &location);
590 1.7 xtraeme }
591 1.7 xtraeme
592 1.7 xtraeme /*
593 1.7 xtraeme * To add/remove a pass through disk.
594 1.7 xtraeme */
595 1.7 xtraeme static void
596 1.7 xtraeme bio_setstate_passthru(int fd, int argc, char **argv)
597 1.7 xtraeme {
598 1.7 xtraeme struct bioc_setstate bs;
599 1.7 xtraeme struct locator location;
600 1.7 xtraeme char *endptr;
601 1.7 xtraeme bool rem = false;
602 1.7 xtraeme
603 1.13 ahoka if (argc < 2 || argc > 3)
604 1.7 xtraeme usage();
605 1.7 xtraeme
606 1.7 xtraeme memset(&bs, 0, sizeof(bs));
607 1.7 xtraeme
608 1.7 xtraeme if (strcmp(argv[0], "add") == 0) {
609 1.7 xtraeme if (argv[1] == NULL || argv[2] == NULL)
610 1.7 xtraeme usage();
611 1.7 xtraeme
612 1.7 xtraeme bs.bs_status = BIOC_SSPASSTHRU;
613 1.7 xtraeme } else if (strcmp(argv[0], "remove") == 0) {
614 1.7 xtraeme if (argv[1] == NULL)
615 1.7 xtraeme usage();
616 1.7 xtraeme
617 1.7 xtraeme bs.bs_status = BIOC_SSDELPASSTHRU;
618 1.7 xtraeme rem = true;
619 1.7 xtraeme } else
620 1.7 xtraeme usage();
621 1.7 xtraeme
622 1.7 xtraeme if (rem)
623 1.7 xtraeme bio_setstate_common(fd, argv[1], &bs, &location);
624 1.7 xtraeme else {
625 1.7 xtraeme bs.bs_other_id = (unsigned int)strtoul(argv[1], &endptr, 10);
626 1.7 xtraeme if (*endptr != '\0')
627 1.7 xtraeme errx(EXIT_FAILURE, "Invalid Volume ID value");
628 1.7 xtraeme
629 1.7 xtraeme bio_setstate_common(fd, argv[2], &bs, &location);
630 1.7 xtraeme }
631 1.7 xtraeme }
632 1.7 xtraeme
633 1.7 xtraeme /*
634 1.7 xtraeme * To start/stop a consistency check in a RAID volume.
635 1.7 xtraeme */
636 1.7 xtraeme static void
637 1.7 xtraeme bio_setstate_consistency(int fd, int argc, char **argv)
638 1.7 xtraeme {
639 1.7 xtraeme struct bioc_setstate bs;
640 1.7 xtraeme char *endptr;
641 1.7 xtraeme
642 1.13 ahoka if (argc != 2)
643 1.7 xtraeme usage();
644 1.7 xtraeme
645 1.8 xtraeme memset(&bs, 0, sizeof(bs));
646 1.8 xtraeme
647 1.7 xtraeme if (strcmp(argv[0], "start") == 0)
648 1.7 xtraeme bs.bs_status = BIOC_SSCHECKSTART_VOL;
649 1.7 xtraeme else if (strcmp(argv[0], "stop") == 0)
650 1.7 xtraeme bs.bs_status = BIOC_SSCHECKSTOP_VOL;
651 1.7 xtraeme else
652 1.7 xtraeme usage();
653 1.7 xtraeme
654 1.8 xtraeme bs.bs_volid = (unsigned int)strtoul(argv[1], &endptr, 10);
655 1.7 xtraeme if (*endptr != '\0')
656 1.7 xtraeme errx(EXIT_FAILURE, "Invalid Volume ID value");
657 1.7 xtraeme
658 1.7 xtraeme bio_setstate_common(fd, NULL, &bs, NULL);
659 1.7 xtraeme }
660 1.7 xtraeme
661 1.7 xtraeme static void
662 1.7 xtraeme bio_setstate_common(int fd, char *arg, struct bioc_setstate *bs,
663 1.7 xtraeme struct locator *location)
664 1.7 xtraeme {
665 1.7 xtraeme const char *errstr;
666 1.7 xtraeme
667 1.7 xtraeme if (!arg || !location)
668 1.7 xtraeme goto send;
669 1.7 xtraeme
670 1.7 xtraeme errstr = str2locator(arg, location);
671 1.7 xtraeme if (errstr)
672 1.7 xtraeme errx(EXIT_FAILURE, "Target %s: %s", arg, errstr);
673 1.7 xtraeme
674 1.7 xtraeme bs->bs_channel = location->channel;
675 1.7 xtraeme bs->bs_target = location->target;
676 1.7 xtraeme bs->bs_lun = location->lun;
677 1.7 xtraeme
678 1.7 xtraeme send:
679 1.7 xtraeme bs->bs_cookie = bl.bl_cookie;
680 1.7 xtraeme
681 1.7 xtraeme if (ioctl(fd, BIOCSETSTATE, bs) == -1)
682 1.7 xtraeme err(EXIT_FAILURE, "BIOCSETSTATE");
683 1.7 xtraeme }
684 1.7 xtraeme
685 1.7 xtraeme /*
686 1.7 xtraeme * To create a RAID volume.
687 1.7 xtraeme */
688 1.7 xtraeme static void
689 1.7 xtraeme bio_volops_create(int fd, int argc, char **argv)
690 1.7 xtraeme {
691 1.7 xtraeme struct bioc_volops bc;
692 1.7 xtraeme struct bioc_inq bi;
693 1.7 xtraeme struct bioc_disk bd;
694 1.7 xtraeme struct locator location;
695 1.10 xtraeme uint64_t total_size = 0, disksize = 0;
696 1.7 xtraeme int64_t volsize = 0;
697 1.7 xtraeme const char *errstr;
698 1.10 xtraeme char *endptr, *stripe, levelstr[32];
699 1.7 xtraeme char *scsiname, *raid_level, size[64];
700 1.7 xtraeme int disk_first = 0, disk_end = 0;
701 1.7 xtraeme int i, nfreedisks = 0;
702 1.7 xtraeme int user_disks = 0;
703 1.7 xtraeme
704 1.7 xtraeme if (argc < 6 || argc > 7)
705 1.7 xtraeme usage();
706 1.7 xtraeme
707 1.7 xtraeme if (strcmp(argv[0], "volume") != 0)
708 1.7 xtraeme usage();
709 1.7 xtraeme
710 1.7 xtraeme /*
711 1.7 xtraeme * No size requested, use max size depending on RAID level.
712 1.7 xtraeme */
713 1.7 xtraeme if (argc == 6) {
714 1.7 xtraeme stripe = argv[3];
715 1.7 xtraeme raid_level = argv[4];
716 1.7 xtraeme scsiname = argv[5];
717 1.7 xtraeme } else {
718 1.7 xtraeme stripe = argv[4];
719 1.7 xtraeme raid_level = argv[5];
720 1.7 xtraeme scsiname = argv[6];
721 1.7 xtraeme }
722 1.7 xtraeme
723 1.7 xtraeme memset(&bd, 0, sizeof(bd));
724 1.7 xtraeme memset(&bc, 0, sizeof(bc));
725 1.7 xtraeme memset(&bi, 0, sizeof(bi));
726 1.7 xtraeme
727 1.7 xtraeme bc.bc_cookie = bd.bd_cookie = bi.bi_cookie = bl.bl_cookie;
728 1.7 xtraeme bc.bc_opcode = BIOC_VCREATE_VOLUME;
729 1.7 xtraeme
730 1.7 xtraeme bc.bc_volid = (unsigned int)strtoul(argv[1], &endptr, 10);
731 1.7 xtraeme if (*endptr != '\0')
732 1.7 xtraeme errx(EXIT_FAILURE, "Invalid Volume ID value");
733 1.7 xtraeme
734 1.7 xtraeme if (argc == 7)
735 1.12 lukem if (dehumanize_number(argv[3], &volsize) == -1
736 1.12 lukem || volsize < 0)
737 1.7 xtraeme errx(EXIT_FAILURE, "Invalid SIZE value");
738 1.7 xtraeme
739 1.7 xtraeme bc.bc_stripe = (unsigned int)strtoul(stripe, &endptr, 10);
740 1.7 xtraeme if (*endptr != '\0')
741 1.7 xtraeme errx(EXIT_FAILURE, "Invalid STRIPE size value");
742 1.7 xtraeme
743 1.7 xtraeme bc.bc_level = (unsigned int)strtoul(raid_level, &endptr, 10);
744 1.7 xtraeme if (*endptr != '\0')
745 1.7 xtraeme errx(EXIT_FAILURE, "Invalid RAID_LEVEL value");
746 1.7 xtraeme
747 1.7 xtraeme errstr = str2locator(scsiname, &location);
748 1.7 xtraeme if (errstr)
749 1.7 xtraeme errx(EXIT_FAILURE, "Target %s: %s", scsiname, errstr);
750 1.7 xtraeme
751 1.7 xtraeme /*
752 1.7 xtraeme * Parse the device list that will be used for the volume,
753 1.7 xtraeme * by using a bit field for the disks.
754 1.7 xtraeme */
755 1.7 xtraeme if ((isdigit((unsigned char)argv[2][0]) == 0) || argv[2][1] != '-' ||
756 1.7 xtraeme (isdigit((unsigned char)argv[2][2]) == 0))
757 1.7 xtraeme errx(EXIT_FAILURE, "Invalid DISKIDs value");
758 1.7 xtraeme
759 1.7 xtraeme disk_first = atoi(&argv[2][0]);
760 1.7 xtraeme disk_end = atoi(&argv[2][2]);
761 1.7 xtraeme
762 1.7 xtraeme for (i = disk_first; i < disk_end + 1; i++) {
763 1.7 xtraeme bc.bc_devmask |= (1 << i);
764 1.7 xtraeme user_disks++;
765 1.7 xtraeme }
766 1.7 xtraeme
767 1.7 xtraeme /*
768 1.7 xtraeme * Find out how many disks are free and how much size we
769 1.7 xtraeme * have available for the new volume.
770 1.7 xtraeme */
771 1.7 xtraeme if (ioctl(fd, BIOCINQ, &bi) == -1)
772 1.7 xtraeme err(EXIT_FAILURE, "BIOCINQ");
773 1.7 xtraeme
774 1.7 xtraeme for (i = 0; i < bi.bi_nodisk; i++) {
775 1.7 xtraeme bd.bd_diskid = i;
776 1.7 xtraeme if (ioctl(fd, BIOCDISK_NOVOL, &bd) == -1)
777 1.7 xtraeme err(EXIT_FAILURE, "BIOCDISK_NOVOL");
778 1.7 xtraeme
779 1.7 xtraeme if (bd.bd_status == BIOC_SDUNUSED) {
780 1.7 xtraeme if (i == 0)
781 1.10 xtraeme disksize = bd.bd_size;
782 1.7 xtraeme
783 1.10 xtraeme total_size += bd.bd_size;
784 1.7 xtraeme nfreedisks++;
785 1.7 xtraeme }
786 1.7 xtraeme }
787 1.7 xtraeme
788 1.10 xtraeme if (user_disks > nfreedisks)
789 1.10 xtraeme errx(EXIT_FAILURE, "specified disks number is higher than "
790 1.10 xtraeme "available free disks");
791 1.10 xtraeme
792 1.7 xtraeme /*
793 1.7 xtraeme * Basic checks to be sure we don't do something stupid.
794 1.7 xtraeme */
795 1.7 xtraeme if (nfreedisks == 0)
796 1.7 xtraeme errx(EXIT_FAILURE, "No free disks available");
797 1.7 xtraeme
798 1.7 xtraeme switch (bc.bc_level) {
799 1.7 xtraeme case 0: /* RAID 0 requires at least one disk */
800 1.7 xtraeme if (argc == 7) {
801 1.12 lukem if ((uint64_t)volsize > (disksize * user_disks))
802 1.7 xtraeme errx(EXIT_FAILURE, "volume size specified "
803 1.7 xtraeme "is larger than available on free disks");
804 1.7 xtraeme bc.bc_size = (uint64_t)volsize;
805 1.7 xtraeme } else
806 1.10 xtraeme bc.bc_size = disksize * user_disks;
807 1.1 bouyer
808 1.1 bouyer break;
809 1.10 xtraeme case 1: /* RAID 1 requires two disks and size is total / 2 */
810 1.7 xtraeme if (nfreedisks < 2 || user_disks < 2)
811 1.7 xtraeme errx(EXIT_FAILURE, "2 disks are required at least for "
812 1.7 xtraeme "this RAID level");
813 1.7 xtraeme
814 1.10 xtraeme /* RAID 1+0 requires three disks at least */
815 1.10 xtraeme if (nfreedisks > 2 && user_disks > 2)
816 1.10 xtraeme bc.bc_level = BIOC_SVOL_RAID10;
817 1.10 xtraeme
818 1.7 xtraeme if (argc == 7) {
819 1.12 lukem if ((uint64_t)volsize > ((disksize * user_disks) / 2))
820 1.7 xtraeme errx(EXIT_FAILURE, "volume size specified "
821 1.7 xtraeme "is larger than available on free disks");
822 1.7 xtraeme bc.bc_size = (uint64_t)volsize;
823 1.7 xtraeme } else
824 1.10 xtraeme bc.bc_size = ((disksize * user_disks) / 2);
825 1.1 bouyer
826 1.1 bouyer break;
827 1.10 xtraeme case 3: /* RAID 3/5 requires three disks and size is total - 1 disk */
828 1.7 xtraeme case 5:
829 1.7 xtraeme if (nfreedisks < 3 || user_disks < 3)
830 1.7 xtraeme errx(EXIT_FAILURE, "3 disks are required at least for "
831 1.7 xtraeme "this RAID level");
832 1.7 xtraeme
833 1.7 xtraeme if (argc == 7) {
834 1.12 lukem if ((uint64_t)volsize > (disksize * (user_disks - 1)))
835 1.7 xtraeme errx(EXIT_FAILURE, "volume size specified "
836 1.7 xtraeme "is larger than available on free disks");
837 1.7 xtraeme bc.bc_size = (uint64_t)volsize;
838 1.7 xtraeme } else
839 1.10 xtraeme bc.bc_size = (disksize * (user_disks - 1));
840 1.1 bouyer
841 1.1 bouyer break;
842 1.7 xtraeme case 6: /* RAID 6 requires four disks and size is total - 2 disks */
843 1.7 xtraeme if (nfreedisks < 4 || user_disks < 4)
844 1.7 xtraeme errx(EXIT_FAILURE, "4 disks are required at least for "
845 1.7 xtraeme "this RAID level");
846 1.7 xtraeme
847 1.7 xtraeme if (argc == 7) {
848 1.12 lukem if ((uint64_t)volsize >
849 1.10 xtraeme ((disksize * user_disks) - (disksize * 2)))
850 1.7 xtraeme err(EXIT_FAILURE, "volume size specified "
851 1.7 xtraeme "is larger than available on free disks");
852 1.7 xtraeme bc.bc_size = (uint64_t)volsize;
853 1.7 xtraeme } else
854 1.10 xtraeme bc.bc_size =
855 1.10 xtraeme (((disksize * user_disks) - (disksize * 2)));
856 1.1 bouyer
857 1.1 bouyer break;
858 1.1 bouyer default:
859 1.7 xtraeme errx(EXIT_FAILURE, "Unsupported RAID level");
860 1.1 bouyer }
861 1.1 bouyer
862 1.7 xtraeme bc.bc_channel = location.channel;
863 1.7 xtraeme bc.bc_target = location.target;
864 1.7 xtraeme bc.bc_lun = location.lun;
865 1.7 xtraeme
866 1.7 xtraeme if (ioctl(fd, BIOCVOLOPS, &bc) == -1)
867 1.7 xtraeme err(EXIT_FAILURE, "BIOCVOLOPS");
868 1.7 xtraeme
869 1.7 xtraeme humanize_number(size, 5, bc.bc_size, "", HN_AUTOSCALE,
870 1.7 xtraeme HN_B | HN_NOSPACE | HN_DECIMAL);
871 1.7 xtraeme
872 1.10 xtraeme if (bc.bc_level == BIOC_SVOL_RAID10)
873 1.10 xtraeme snprintf(levelstr, sizeof(levelstr), "1+0");
874 1.10 xtraeme else
875 1.10 xtraeme snprintf(levelstr, sizeof(levelstr), "%u", bc.bc_level);
876 1.10 xtraeme
877 1.10 xtraeme printf("Created volume %u size: %s stripe: %uK level: %s "
878 1.7 xtraeme "SCSI location: %u:%u.%u\n", bc.bc_volid, size, bc.bc_stripe,
879 1.10 xtraeme levelstr, bc.bc_channel, bc.bc_target, bc.bc_lun);
880 1.7 xtraeme }
881 1.1 bouyer
882 1.7 xtraeme #ifdef notyet
883 1.7 xtraeme /*
884 1.7 xtraeme * To modify a RAID volume.
885 1.7 xtraeme */
886 1.7 xtraeme static void
887 1.7 xtraeme bio_volops_modify(int fd, int argc, char **argv)
888 1.7 xtraeme {
889 1.7 xtraeme /* XTRAEME: TODO */
890 1.1 bouyer }
891 1.7 xtraeme #endif
892 1.1 bouyer
893 1.7 xtraeme /*
894 1.7 xtraeme * To remove a RAID volume.
895 1.7 xtraeme */
896 1.2 xtraeme static void
897 1.7 xtraeme bio_volops_remove(int fd, int argc, char **argv)
898 1.1 bouyer {
899 1.7 xtraeme struct bioc_volops bc;
900 1.1 bouyer struct locator location;
901 1.1 bouyer const char *errstr;
902 1.7 xtraeme char *endptr;
903 1.1 bouyer
904 1.7 xtraeme if (argc != 3 || strcmp(argv[0], "volume") != 0)
905 1.7 xtraeme usage();
906 1.7 xtraeme
907 1.7 xtraeme memset(&bc, 0, sizeof(bc));
908 1.7 xtraeme bc.bc_cookie = bl.bl_cookie;
909 1.7 xtraeme bc.bc_opcode = BIOC_VREMOVE_VOLUME;
910 1.7 xtraeme
911 1.7 xtraeme bc.bc_volid = (unsigned int)strtoul(argv[1], &endptr, 10);
912 1.7 xtraeme if (*endptr != '\0')
913 1.7 xtraeme errx(EXIT_FAILURE, "Invalid Volume ID value");
914 1.7 xtraeme
915 1.7 xtraeme errstr = str2locator(argv[2], &location);
916 1.1 bouyer if (errstr)
917 1.7 xtraeme errx(EXIT_FAILURE, "Target %s: %s", argv[2], errstr);
918 1.7 xtraeme
919 1.7 xtraeme bc.bc_channel = location.channel;
920 1.7 xtraeme bc.bc_target = location.target;
921 1.7 xtraeme bc.bc_lun = location.lun;
922 1.1 bouyer
923 1.7 xtraeme if (ioctl(fd, BIOCVOLOPS, &bc) == -1)
924 1.7 xtraeme err(EXIT_FAILURE, "BIOCVOLOPS");
925 1.1 bouyer
926 1.7 xtraeme printf("Removed volume %u at SCSI location %u:%u.%u\n",
927 1.7 xtraeme bc.bc_volid, bc.bc_channel, bc.bc_target, bc.bc_lun);
928 1.1 bouyer }
929 1.1 bouyer
930 1.7 xtraeme /*
931 1.7 xtraeme * To blink/unblink a disk in enclosures.
932 1.7 xtraeme */
933 1.2 xtraeme static void
934 1.7 xtraeme bio_setblink(int fd, int argc, char **argv)
935 1.1 bouyer {
936 1.1 bouyer struct locator location;
937 1.1 bouyer struct bioc_inq bi;
938 1.1 bouyer struct bioc_vol bv;
939 1.1 bouyer struct bioc_disk bd;
940 1.1 bouyer struct bioc_blink bb;
941 1.1 bouyer const char *errstr;
942 1.7 xtraeme int v, d, rv, blink = 0;
943 1.7 xtraeme
944 1.7 xtraeme if (argc != 2)
945 1.7 xtraeme usage();
946 1.1 bouyer
947 1.7 xtraeme if (strcmp(argv[0], "start") == 0)
948 1.7 xtraeme blink = BIOC_SBBLINK;
949 1.7 xtraeme else if (strcmp(argv[0], "stop") == 0)
950 1.7 xtraeme blink = BIOC_SBUNBLINK;
951 1.7 xtraeme else
952 1.7 xtraeme usage();
953 1.7 xtraeme
954 1.7 xtraeme errstr = str2locator(argv[1], &location);
955 1.1 bouyer if (errstr)
956 1.7 xtraeme errx(EXIT_FAILURE, "Target %s: %s", argv[1], errstr);
957 1.1 bouyer
958 1.1 bouyer /* try setting blink on the device directly */
959 1.1 bouyer memset(&bb, 0, sizeof(bb));
960 1.1 bouyer bb.bb_cookie = bl.bl_cookie;
961 1.1 bouyer bb.bb_status = blink;
962 1.1 bouyer bb.bb_target = location.target;
963 1.1 bouyer bb.bb_channel = location.channel;
964 1.2 xtraeme rv = ioctl(fd, BIOCBLINK, &bb);
965 1.1 bouyer if (rv == 0)
966 1.1 bouyer return;
967 1.1 bouyer
968 1.1 bouyer /* if the blink didnt work, try to find something that will */
969 1.1 bouyer memset(&bi, 0, sizeof(bi));
970 1.1 bouyer bi.bi_cookie = bl.bl_cookie;
971 1.2 xtraeme rv = ioctl(fd, BIOCINQ, &bi);
972 1.7 xtraeme if (rv == -1)
973 1.7 xtraeme err(EXIT_FAILURE, "BIOCINQ");
974 1.1 bouyer
975 1.1 bouyer for (v = 0; v < bi.bi_novol; v++) {
976 1.1 bouyer memset(&bv, 0, sizeof(bv));
977 1.1 bouyer bv.bv_cookie = bl.bl_cookie;
978 1.1 bouyer bv.bv_volid = v;
979 1.2 xtraeme rv = ioctl(fd, BIOCVOL, &bv);
980 1.4 xtraeme if (rv == -1)
981 1.7 xtraeme err(EXIT_FAILURE, "BIOCVOL");
982 1.1 bouyer
983 1.1 bouyer for (d = 0; d < bv.bv_nodisk; d++) {
984 1.1 bouyer memset(&bd, 0, sizeof(bd));
985 1.1 bouyer bd.bd_cookie = bl.bl_cookie;
986 1.1 bouyer bd.bd_volid = v;
987 1.1 bouyer bd.bd_diskid = d;
988 1.1 bouyer
989 1.2 xtraeme rv = ioctl(fd, BIOCDISK, &bd);
990 1.4 xtraeme if (rv == -1)
991 1.7 xtraeme err(EXIT_FAILURE, "BIOCDISK");
992 1.1 bouyer
993 1.1 bouyer if (bd.bd_channel == location.channel &&
994 1.1 bouyer bd.bd_target == location.target &&
995 1.1 bouyer bd.bd_lun == location.lun) {
996 1.1 bouyer if (bd.bd_procdev[0] != '\0') {
997 1.2 xtraeme bio_blink(fd, bd.bd_procdev,
998 1.1 bouyer location.target, blink);
999 1.1 bouyer } else
1000 1.7 xtraeme warnx("Disk %s is not in an enclosure",
1001 1.7 xtraeme argv[1]);
1002 1.1 bouyer return;
1003 1.1 bouyer }
1004 1.1 bouyer }
1005 1.1 bouyer }
1006 1.1 bouyer
1007 1.7 xtraeme warnx("Disk %s does not exist", argv[1]);
1008 1.1 bouyer }
1009 1.1 bouyer
1010 1.2 xtraeme static void
1011 1.2 xtraeme bio_blink(int fd, char *enclosure, int target, int blinktype)
1012 1.1 bouyer {
1013 1.1 bouyer struct bio_locate bio;
1014 1.1 bouyer struct bioc_blink blink;
1015 1.1 bouyer
1016 1.1 bouyer bio.bl_name = enclosure;
1017 1.7 xtraeme if (ioctl(fd, BIOCLOCATE, &bio) == -1)
1018 1.4 xtraeme errx(EXIT_FAILURE,
1019 1.7 xtraeme "Can't locate %s device via /dev/bio", enclosure);
1020 1.1 bouyer
1021 1.1 bouyer memset(&blink, 0, sizeof(blink));
1022 1.1 bouyer blink.bb_cookie = bio.bl_cookie;
1023 1.1 bouyer blink.bb_status = blinktype;
1024 1.1 bouyer blink.bb_target = target;
1025 1.1 bouyer
1026 1.7 xtraeme if (ioctl(fd, BIOCBLINK, &blink) == -1)
1027 1.7 xtraeme err(EXIT_FAILURE, "BIOCBLINK");
1028 1.1 bouyer }
1029