raidctl.c revision 1.84 1 1.84 rillig /* $NetBSD: raidctl.c,v 1.84 2024/11/05 19:52:18 rillig Exp $ */
2 1.18 thorpej
3 1.1 oster /*-
4 1.1 oster * Copyright (c) 1996, 1997, 1998 The NetBSD Foundation, Inc.
5 1.1 oster * All rights reserved.
6 1.1 oster *
7 1.1 oster * This code is derived from software contributed to The NetBSD Foundation
8 1.1 oster * by Greg Oster
9 1.1 oster *
10 1.1 oster * Redistribution and use in source and binary forms, with or without
11 1.1 oster * modification, are permitted provided that the following conditions
12 1.1 oster * are met:
13 1.1 oster * 1. Redistributions of source code must retain the above copyright
14 1.1 oster * notice, this list of conditions and the following disclaimer.
15 1.1 oster * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 oster * notice, this list of conditions and the following disclaimer in the
17 1.1 oster * documentation and/or other materials provided with the distribution.
18 1.1 oster *
19 1.1 oster * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 oster * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 oster * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 oster * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 oster * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 oster * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 oster * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 oster * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 oster * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 oster * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 oster * POSSIBILITY OF SUCH DAMAGE.
30 1.1 oster */
31 1.1 oster
32 1.1 oster /*
33 1.18 thorpej * This program is a re-write of the original rf_ctrl program
34 1.18 thorpej * distributed by CMU with RAIDframe 1.1.
35 1.18 thorpej *
36 1.18 thorpej * This program is the user-land interface to the RAIDframe kernel
37 1.18 thorpej * driver in NetBSD.
38 1.1 oster */
39 1.33 agc #include <sys/cdefs.h>
40 1.33 agc
41 1.33 agc #ifndef lint
42 1.84 rillig __RCSID("$NetBSD: raidctl.c,v 1.84 2024/11/05 19:52:18 rillig Exp $");
43 1.33 agc #endif
44 1.33 agc
45 1.1 oster
46 1.1 oster #include <sys/param.h>
47 1.1 oster #include <sys/ioctl.h>
48 1.1 oster #include <sys/stat.h>
49 1.18 thorpej #include <sys/disklabel.h>
50 1.18 thorpej
51 1.1 oster #include <ctype.h>
52 1.1 oster #include <err.h>
53 1.2 mjacob #include <errno.h>
54 1.25 lukem #include <fcntl.h>
55 1.25 lukem #include <stdio.h>
56 1.25 lukem #include <stdlib.h>
57 1.1 oster #include <string.h>
58 1.59 christos #include <inttypes.h>
59 1.3 oster #include <unistd.h>
60 1.25 lukem #include <util.h>
61 1.3 oster
62 1.29 oster #include <dev/raidframe/raidframevar.h>
63 1.29 oster #include <dev/raidframe/raidframeio.h>
64 1.29 oster #include "rf_configure.h"
65 1.50 pooka #include "prog_ops.h"
66 1.1 oster
67 1.79 oster #ifndef RAIDFRAME_REMOVE_COMPONENT
68 1.79 oster #define RAIDFRAME_REMOVE_COMPONENT RAIDFRAME_REMOVE_HOT_SPARE
69 1.79 oster #endif
70 1.79 oster
71 1.78 kre #define CONFIGURE_TEST 1 /* must be different from any raidframe ioctl */
72 1.78 kre
73 1.36 xtraeme void do_ioctl(int, u_long, void *, const char *);
74 1.36 xtraeme static void rf_configure(int, char*, int);
75 1.36 xtraeme static const char *device_status(RF_DiskStatus_t);
76 1.36 xtraeme static void rf_get_device_status(int);
77 1.36 xtraeme static void rf_output_configuration(int, const char *);
78 1.36 xtraeme static void get_component_number(int, char *, int *, int *);
79 1.36 xtraeme static void rf_fail_disk(int, char *, int);
80 1.53 joerg __dead static void usage(void);
81 1.36 xtraeme static void get_component_label(int, char *);
82 1.36 xtraeme static void set_component_label(int, char *);
83 1.36 xtraeme static void init_component_labels(int, int);
84 1.36 xtraeme static void set_autoconfig(int, int, char *);
85 1.36 xtraeme static void add_hot_spare(int, char *);
86 1.79 oster static void remove_component(int, char *);
87 1.36 xtraeme static void rebuild_in_place(int, char *);
88 1.36 xtraeme static void check_status(int,int);
89 1.36 xtraeme static void check_parity(int,int, char *);
90 1.36 xtraeme static void do_meter(int, u_long);
91 1.36 xtraeme static void get_bar(char *, double, int);
92 1.68 mrg static void get_time_string(char *, size_t, int);
93 1.42 jld static void rf_output_pmstat(int, int);
94 1.42 jld static void rf_pm_configure(int, int, char *, int[]);
95 1.80 oster static void rf_simple_create(int, int, char *[]);
96 1.59 christos static unsigned int xstrtouint(const char *);
97 1.10 oster
98 1.18 thorpej int verbose;
99 1.1 oster
100 1.57 christos static const char *rootpart[] = { "No", "Force", "Soft", "*invalid*" };
101 1.57 christos
102 1.72 mlelstv static void
103 1.72 mlelstv get_comp(char *buf, char *arg, size_t bufsz)
104 1.72 mlelstv {
105 1.72 mlelstv if (getfsspecname(buf, bufsz, arg) == NULL)
106 1.72 mlelstv errx(1,"%s",buf);
107 1.72 mlelstv }
108 1.72 mlelstv
109 1.1 oster int
110 1.36 xtraeme main(int argc,char *argv[])
111 1.1 oster {
112 1.42 jld int ch, i;
113 1.1 oster int num_options;
114 1.1 oster unsigned long action;
115 1.1 oster char config_filename[PATH_MAX];
116 1.1 oster char dev_name[PATH_MAX];
117 1.1 oster char name[PATH_MAX];
118 1.5 oster char component[PATH_MAX];
119 1.12 oster char autoconf[10];
120 1.42 jld char *parityconf = NULL;
121 1.42 jld int parityparams[3];
122 1.27 lukem int do_output;
123 1.1 oster int do_recon;
124 1.7 oster int do_rewrite;
125 1.1 oster int raidID;
126 1.5 oster int serial_number;
127 1.1 oster struct stat st;
128 1.1 oster int fd;
129 1.5 oster int force;
130 1.30 simonb int openmode;
131 1.64 christos int last_unit;
132 1.80 oster struct timeval tv;
133 1.80 oster
134 1.1 oster num_options = 0;
135 1.1 oster action = 0;
136 1.27 lukem do_output = 0;
137 1.1 oster do_recon = 0;
138 1.7 oster do_rewrite = 0;
139 1.38 lukem serial_number = 0;
140 1.5 oster force = 0;
141 1.64 christos last_unit = 0;
142 1.30 simonb openmode = O_RDWR; /* default to read/write */
143 1.1 oster
144 1.80 oster if (argc > 5) {
145 1.80 oster /* we have at least 5 args, so it might be a simplified config */
146 1.80 oster
147 1.80 oster strlcpy(name, argv[1], sizeof(name));
148 1.80 oster fd = opendisk(name, openmode, dev_name, sizeof(dev_name), 0);
149 1.80 oster if (fd != -1) {
150 1.80 oster /* we were able to open the device... */
151 1.80 oster if (fstat(fd, &st) == -1)
152 1.80 oster err(1, "stat failure on: %s", dev_name);
153 1.80 oster if (!S_ISBLK(st.st_mode) && !S_ISCHR(st.st_mode))
154 1.80 oster err(1, "invalid device: %s", dev_name);
155 1.80 oster
156 1.80 oster raidID = DISKUNIT(st.st_rdev);
157 1.80 oster if (strncmp(argv[2],"create",6)==0) {
158 1.80 oster rf_simple_create(fd,argc-3,&argv[3]);
159 1.80 oster
160 1.80 oster /* set serial number, set autoconfig, init parity */
161 1.80 oster
162 1.80 oster if (gettimeofday(&tv,NULL) == -1) {
163 1.80 oster serial_number = 12345777;
164 1.80 oster } else {
165 1.80 oster serial_number = tv.tv_sec;
166 1.80 oster }
167 1.80 oster init_component_labels(fd, serial_number);
168 1.80 oster strlcpy(autoconf, "yes", sizeof(autoconf));
169 1.80 oster set_autoconfig(fd, raidID, autoconf);
170 1.80 oster
171 1.80 oster } else
172 1.80 oster usage();
173 1.80 oster
174 1.80 oster close(fd);
175 1.80 oster exit(0);
176 1.80 oster }
177 1.80 oster
178 1.80 oster /* otherwise we go back to regular parsing */
179 1.80 oster }
180 1.80 oster
181 1.78 kre while ((ch = getopt(argc, argv,
182 1.84 rillig "a:A:c:C:f:F:g:GiI:l:LmM:r:R:sSpPt:uU:v")) != -1)
183 1.78 kre switch (ch) {
184 1.5 oster case 'a':
185 1.5 oster action = RAIDFRAME_ADD_HOT_SPARE;
186 1.72 mlelstv get_comp(component, optarg, sizeof(component));
187 1.5 oster num_options++;
188 1.5 oster break;
189 1.12 oster case 'A':
190 1.12 oster action = RAIDFRAME_SET_AUTOCONFIG;
191 1.32 itojun strlcpy(autoconf, optarg, sizeof(autoconf));
192 1.12 oster num_options++;
193 1.12 oster break;
194 1.1 oster case 'c':
195 1.6 oster action = RAIDFRAME_CONFIGURE;
196 1.32 itojun strlcpy(config_filename, optarg,
197 1.32 itojun sizeof(config_filename));
198 1.6 oster force = 0;
199 1.1 oster num_options++;
200 1.1 oster break;
201 1.1 oster case 'C':
202 1.32 itojun strlcpy(config_filename, optarg,
203 1.32 itojun sizeof(config_filename));
204 1.6 oster action = RAIDFRAME_CONFIGURE;
205 1.6 oster force = 1;
206 1.1 oster num_options++;
207 1.1 oster break;
208 1.1 oster case 'f':
209 1.1 oster action = RAIDFRAME_FAIL_DISK;
210 1.72 mlelstv get_comp(component, optarg, sizeof(component));
211 1.1 oster do_recon = 0;
212 1.1 oster num_options++;
213 1.1 oster break;
214 1.1 oster case 'F':
215 1.1 oster action = RAIDFRAME_FAIL_DISK;
216 1.72 mlelstv get_comp(component, optarg, sizeof(component));
217 1.1 oster do_recon = 1;
218 1.5 oster num_options++;
219 1.5 oster break;
220 1.5 oster case 'g':
221 1.5 oster action = RAIDFRAME_GET_COMPONENT_LABEL;
222 1.72 mlelstv get_comp(component, optarg, sizeof(component));
223 1.30 simonb openmode = O_RDONLY;
224 1.5 oster num_options++;
225 1.5 oster break;
226 1.27 lukem case 'G':
227 1.27 lukem action = RAIDFRAME_GET_INFO;
228 1.30 simonb openmode = O_RDONLY;
229 1.27 lukem do_output = 1;
230 1.27 lukem num_options++;
231 1.27 lukem break;
232 1.6 oster case 'i':
233 1.6 oster action = RAIDFRAME_REWRITEPARITY;
234 1.6 oster num_options++;
235 1.6 oster break;
236 1.5 oster case 'I':
237 1.5 oster action = RAIDFRAME_INIT_LABELS;
238 1.59 christos serial_number = xstrtouint(optarg);
239 1.5 oster num_options++;
240 1.5 oster break;
241 1.73 oster case 'l':
242 1.73 oster action = RAIDFRAME_SET_COMPONENT_LABEL;
243 1.73 oster get_comp(component, optarg, sizeof(component));
244 1.73 oster num_options++;
245 1.73 oster break;
246 1.74 oster case 'L':
247 1.74 oster action = RAIDFRAME_RESCAN;
248 1.74 oster num_options++;
249 1.74 oster break;
250 1.42 jld case 'm':
251 1.42 jld action = RAIDFRAME_PARITYMAP_STATUS;
252 1.42 jld openmode = O_RDONLY;
253 1.42 jld num_options++;
254 1.42 jld break;
255 1.42 jld case 'M':
256 1.42 jld action = RAIDFRAME_PARITYMAP_SET_DISABLE;
257 1.42 jld parityconf = strdup(optarg);
258 1.42 jld num_options++;
259 1.58 manu /* XXXjld: should rf_pm_configure do the strtol()s? */
260 1.42 jld i = 0;
261 1.42 jld while (i < 3 && optind < argc &&
262 1.42 jld isdigit((int)argv[optind][0]))
263 1.59 christos parityparams[i++] = xstrtouint(argv[optind++]);
264 1.42 jld while (i < 3)
265 1.42 jld parityparams[i++] = 0;
266 1.42 jld break;
267 1.76 kre case 'p':
268 1.76 kre action = RAIDFRAME_CHECK_PARITY;
269 1.76 kre openmode = O_RDONLY;
270 1.76 kre num_options++;
271 1.76 kre break;
272 1.76 kre case 'P':
273 1.76 kre action = RAIDFRAME_CHECK_PARITY;
274 1.76 kre do_rewrite = 1;
275 1.76 kre num_options++;
276 1.76 kre break;
277 1.1 oster case 'r':
278 1.79 oster action = RAIDFRAME_REMOVE_COMPONENT;
279 1.72 mlelstv get_comp(component, optarg, sizeof(component));
280 1.1 oster num_options++;
281 1.1 oster break;
282 1.1 oster case 'R':
283 1.72 mlelstv get_comp(component, optarg, sizeof(component));
284 1.6 oster action = RAIDFRAME_REBUILD_IN_PLACE;
285 1.1 oster num_options++;
286 1.1 oster break;
287 1.1 oster case 's':
288 1.1 oster action = RAIDFRAME_GET_INFO;
289 1.30 simonb openmode = O_RDONLY;
290 1.1 oster num_options++;
291 1.1 oster break;
292 1.6 oster case 'S':
293 1.19 oster action = RAIDFRAME_CHECK_RECON_STATUS_EXT;
294 1.30 simonb openmode = O_RDONLY;
295 1.6 oster num_options++;
296 1.6 oster break;
297 1.78 kre case 't':
298 1.78 kre action = CONFIGURE_TEST;
299 1.78 kre strlcpy(config_filename, optarg,
300 1.78 kre sizeof(config_filename));
301 1.78 kre num_options++;
302 1.78 kre break;
303 1.1 oster case 'u':
304 1.1 oster action = RAIDFRAME_SHUTDOWN;
305 1.1 oster num_options++;
306 1.1 oster break;
307 1.64 christos case 'U':
308 1.64 christos action = RAIDFRAME_SET_LAST_UNIT;
309 1.64 christos num_options++;
310 1.64 christos last_unit = atoi(optarg);
311 1.64 christos if (last_unit < 0)
312 1.64 christos errx(1, "Bad last unit %s", optarg);
313 1.64 christos break;
314 1.10 oster case 'v':
315 1.10 oster verbose = 1;
316 1.10 oster /* Don't bump num_options, as '-v' is not
317 1.10 oster an option like the others */
318 1.10 oster /* num_options++; */
319 1.10 oster break;
320 1.1 oster default:
321 1.1 oster usage();
322 1.1 oster }
323 1.1 oster argc -= optind;
324 1.1 oster argv += optind;
325 1.1 oster
326 1.78 kre if (num_options > 1)
327 1.78 kre usage();
328 1.78 kre
329 1.78 kre if (action == CONFIGURE_TEST) {
330 1.78 kre RF_Config_t cfg;
331 1.78 kre
332 1.78 kre if (argc != 0)
333 1.78 kre usage();
334 1.78 kre if (rf_MakeConfig(config_filename, &cfg) != 0)
335 1.78 kre exit(1);
336 1.78 kre exit(0);;
337 1.78 kre }
338 1.78 kre
339 1.78 kre if (argc != 1)
340 1.1 oster usage();
341 1.1 oster
342 1.50 pooka if (prog_init && prog_init() == -1)
343 1.50 pooka err(1, "init failed");
344 1.50 pooka
345 1.32 itojun strlcpy(name, argv[0], sizeof(name));
346 1.41 pooka fd = opendisk1(name, openmode, dev_name, sizeof(dev_name), 0,
347 1.50 pooka prog_open);
348 1.45 christos if (fd == -1)
349 1.45 christos err(1, "Unable to open device file: %s", name);
350 1.51 pooka if (prog_fstat(fd, &st) == -1)
351 1.45 christos err(1, "stat failure on: %s", dev_name);
352 1.45 christos if (!S_ISBLK(st.st_mode) && !S_ISCHR(st.st_mode))
353 1.45 christos err(1, "invalid device: %s", dev_name);
354 1.1 oster
355 1.28 oster raidID = DISKUNIT(st.st_rdev);
356 1.1 oster
357 1.75 kre switch (action) {
358 1.5 oster case RAIDFRAME_ADD_HOT_SPARE:
359 1.12 oster add_hot_spare(fd, component);
360 1.5 oster break;
361 1.79 oster case RAIDFRAME_REMOVE_COMPONENT:
362 1.79 oster remove_component(fd, component);
363 1.6 oster break;
364 1.1 oster case RAIDFRAME_CONFIGURE:
365 1.12 oster rf_configure(fd, config_filename, force);
366 1.12 oster break;
367 1.12 oster case RAIDFRAME_SET_AUTOCONFIG:
368 1.12 oster set_autoconfig(fd, raidID, autoconf);
369 1.1 oster break;
370 1.1 oster case RAIDFRAME_FAIL_DISK:
371 1.12 oster rf_fail_disk(fd, component, do_recon);
372 1.5 oster break;
373 1.5 oster case RAIDFRAME_SET_COMPONENT_LABEL:
374 1.12 oster set_component_label(fd, component);
375 1.5 oster break;
376 1.5 oster case RAIDFRAME_GET_COMPONENT_LABEL:
377 1.12 oster get_component_label(fd, component);
378 1.5 oster break;
379 1.5 oster case RAIDFRAME_INIT_LABELS:
380 1.12 oster init_component_labels(fd, serial_number);
381 1.1 oster break;
382 1.1 oster case RAIDFRAME_REWRITEPARITY:
383 1.1 oster printf("Initiating re-write of parity\n");
384 1.1 oster do_ioctl(fd, RAIDFRAME_REWRITEPARITY, NULL,
385 1.1 oster "RAIDFRAME_REWRITEPARITY");
386 1.10 oster if (verbose) {
387 1.10 oster sleep(3); /* XXX give it time to get started */
388 1.10 oster printf("Parity Re-write status:\n");
389 1.19 oster do_meter(fd, RAIDFRAME_CHECK_PARITYREWRITE_STATUS_EXT);
390 1.10 oster }
391 1.1 oster break;
392 1.19 oster case RAIDFRAME_CHECK_RECON_STATUS_EXT:
393 1.14 oster check_status(fd,1);
394 1.1 oster break;
395 1.1 oster case RAIDFRAME_GET_INFO:
396 1.27 lukem if (do_output)
397 1.27 lukem rf_output_configuration(fd, dev_name);
398 1.27 lukem else
399 1.27 lukem rf_get_device_status(fd);
400 1.1 oster break;
401 1.42 jld case RAIDFRAME_PARITYMAP_STATUS:
402 1.42 jld rf_output_pmstat(fd, raidID);
403 1.42 jld break;
404 1.42 jld case RAIDFRAME_PARITYMAP_SET_DISABLE:
405 1.42 jld rf_pm_configure(fd, raidID, parityconf, parityparams);
406 1.42 jld break;
407 1.6 oster case RAIDFRAME_REBUILD_IN_PLACE:
408 1.12 oster rebuild_in_place(fd, component);
409 1.6 oster break;
410 1.7 oster case RAIDFRAME_CHECK_PARITY:
411 1.12 oster check_parity(fd, do_rewrite, dev_name);
412 1.7 oster break;
413 1.1 oster case RAIDFRAME_SHUTDOWN:
414 1.1 oster do_ioctl(fd, RAIDFRAME_SHUTDOWN, NULL, "RAIDFRAME_SHUTDOWN");
415 1.1 oster break;
416 1.64 christos case RAIDFRAME_SET_LAST_UNIT:
417 1.64 christos do_ioctl(fd, RAIDFRAME_SET_LAST_UNIT, &last_unit,
418 1.64 christos "RAIDFRAME_SET_LAST_UNIT");
419 1.64 christos break;
420 1.74 oster case RAIDFRAME_RESCAN:
421 1.74 oster do_ioctl(fd, RAIDFRAME_RESCAN, NULL, "RAIDFRAME_RESCAN");
422 1.74 oster break;
423 1.1 oster default:
424 1.1 oster break;
425 1.1 oster }
426 1.1 oster
427 1.50 pooka prog_close(fd);
428 1.1 oster exit(0);
429 1.1 oster }
430 1.1 oster
431 1.10 oster void
432 1.36 xtraeme do_ioctl(int fd, unsigned long command, void *arg, const char *ioctl_name)
433 1.1 oster {
434 1.50 pooka if (prog_ioctl(fd, command, arg) == -1)
435 1.45 christos err(1, "ioctl (%s) failed", ioctl_name);
436 1.1 oster }
437 1.1 oster
438 1.1 oster
439 1.1 oster static void
440 1.36 xtraeme rf_configure(int fd, char *config_file, int force)
441 1.1 oster {
442 1.1 oster void *generic;
443 1.1 oster RF_Config_t cfg;
444 1.1 oster
445 1.45 christos if (rf_MakeConfig( config_file, &cfg ) != 0)
446 1.45 christos err(1, "Unable to create RAIDframe configuration structure");
447 1.1 oster
448 1.6 oster cfg.force = force;
449 1.6 oster
450 1.1 oster /*
451 1.18 thorpej * Note the extra level of redirection needed here, since
452 1.18 thorpej * what we really want to pass in is a pointer to the pointer to
453 1.18 thorpej * the configuration structure.
454 1.1 oster */
455 1.1 oster
456 1.45 christos generic = &cfg;
457 1.6 oster do_ioctl(fd, RAIDFRAME_CONFIGURE, &generic, "RAIDFRAME_CONFIGURE");
458 1.1 oster }
459 1.1 oster
460 1.18 thorpej static const char *
461 1.36 xtraeme device_status(RF_DiskStatus_t status)
462 1.1 oster {
463 1.1 oster
464 1.1 oster switch (status) {
465 1.1 oster case rf_ds_optimal:
466 1.18 thorpej return ("optimal");
467 1.1 oster break;
468 1.1 oster case rf_ds_failed:
469 1.18 thorpej return ("failed");
470 1.1 oster break;
471 1.1 oster case rf_ds_reconstructing:
472 1.18 thorpej return ("reconstructing");
473 1.1 oster break;
474 1.1 oster case rf_ds_dist_spared:
475 1.18 thorpej return ("dist_spared");
476 1.1 oster break;
477 1.1 oster case rf_ds_spared:
478 1.18 thorpej return ("spared");
479 1.1 oster break;
480 1.1 oster case rf_ds_spare:
481 1.18 thorpej return ("spare");
482 1.1 oster break;
483 1.1 oster case rf_ds_used_spare:
484 1.18 thorpej return ("used_spare");
485 1.1 oster break;
486 1.1 oster default:
487 1.18 thorpej return ("UNKNOWN");
488 1.1 oster }
489 1.18 thorpej /* NOTREACHED */
490 1.1 oster }
491 1.1 oster
492 1.1 oster static void
493 1.36 xtraeme rf_get_device_status(int fd)
494 1.1 oster {
495 1.1 oster RF_DeviceConfig_t device_config;
496 1.1 oster void *cfg_ptr;
497 1.8 oster int is_clean;
498 1.70 mlelstv int i, nspares;
499 1.1 oster
500 1.1 oster cfg_ptr = &device_config;
501 1.1 oster
502 1.1 oster do_ioctl(fd, RAIDFRAME_GET_INFO, &cfg_ptr, "RAIDFRAME_GET_INFO");
503 1.1 oster
504 1.1 oster printf("Components:\n");
505 1.1 oster for(i=0; i < device_config.ndevs; i++) {
506 1.1 oster printf("%20s: %s\n", device_config.devs[i].devname,
507 1.1 oster device_status(device_config.devs[i].status));
508 1.1 oster }
509 1.70 mlelstv
510 1.71 mlelstv nspares = MIN(device_config.nspares,
511 1.70 mlelstv __arraycount(device_config.spares));
512 1.70 mlelstv
513 1.70 mlelstv if (nspares > 0) {
514 1.1 oster printf("Spares:\n");
515 1.70 mlelstv for(i=0; i < nspares; i++) {
516 1.5 oster printf("%20s: %s\n",
517 1.1 oster device_config.spares[i].devname,
518 1.1 oster device_status(device_config.spares[i].status));
519 1.1 oster }
520 1.1 oster } else {
521 1.1 oster printf("No spares.\n");
522 1.8 oster }
523 1.14 oster for(i=0; i < device_config.ndevs; i++) {
524 1.14 oster if (device_config.devs[i].status == rf_ds_optimal) {
525 1.14 oster get_component_label(fd, device_config.devs[i].devname);
526 1.14 oster } else {
527 1.14 oster printf("%s status is: %s. Skipping label.\n",
528 1.14 oster device_config.devs[i].devname,
529 1.14 oster device_status(device_config.devs[i].status));
530 1.14 oster }
531 1.14 oster }
532 1.23 oster
533 1.70 mlelstv if (nspares > 0) {
534 1.70 mlelstv for(i=0; i < nspares; i++) {
535 1.21 oster if ((device_config.spares[i].status ==
536 1.21 oster rf_ds_optimal) ||
537 1.21 oster (device_config.spares[i].status ==
538 1.21 oster rf_ds_used_spare)) {
539 1.21 oster get_component_label(fd,
540 1.21 oster device_config.spares[i].devname);
541 1.21 oster } else {
542 1.21 oster printf("%s status is: %s. Skipping label.\n",
543 1.21 oster device_config.spares[i].devname,
544 1.75 kre device_status(
545 1.75 kre device_config.spares[i].status));
546 1.21 oster }
547 1.21 oster }
548 1.21 oster }
549 1.23 oster
550 1.8 oster do_ioctl(fd, RAIDFRAME_CHECK_PARITY, &is_clean,
551 1.8 oster "RAIDFRAME_CHECK_PARITY");
552 1.8 oster if (is_clean) {
553 1.8 oster printf("Parity status: clean\n");
554 1.8 oster } else {
555 1.8 oster printf("Parity status: DIRTY\n");
556 1.1 oster }
557 1.14 oster check_status(fd,0);
558 1.1 oster }
559 1.1 oster
560 1.1 oster static void
561 1.42 jld rf_output_pmstat(int fd, int raidID)
562 1.42 jld {
563 1.42 jld char srs[7];
564 1.47 plunky unsigned int i, j;
565 1.47 plunky int dis, dr;
566 1.42 jld struct rf_pmstat st;
567 1.42 jld
568 1.50 pooka if (prog_ioctl(fd, RAIDFRAME_PARITYMAP_STATUS, &st) == -1) {
569 1.48 jld if (errno == EINVAL) {
570 1.48 jld printf("raid%d: has no parity; parity map disabled\n",
571 1.48 jld raidID);
572 1.48 jld return;
573 1.48 jld }
574 1.48 jld err(1, "ioctl (%s) failed", "RAIDFRAME_PARITYMAP_STATUS");
575 1.48 jld }
576 1.48 jld
577 1.42 jld if (st.enabled) {
578 1.42 jld if (0 > humanize_number(srs, 7, st.region_size * DEV_BSIZE,
579 1.42 jld "B", HN_AUTOSCALE, HN_NOSPACE))
580 1.42 jld strlcpy(srs, "???", 7);
581 1.42 jld
582 1.42 jld printf("raid%d: parity map enabled with %u regions of %s\n",
583 1.42 jld raidID, st.params.regions, srs);
584 1.43 jld printf("raid%d: regions marked clean after %d intervals of"
585 1.42 jld " %d.%03ds\n", raidID, st.params.cooldown,
586 1.42 jld st.params.tickms / 1000, st.params.tickms % 1000);
587 1.42 jld printf("raid%d: write/sync/clean counters "
588 1.42 jld "%"PRIu64"/%"PRIu64"/%"PRIu64"\n", raidID,
589 1.42 jld st.ctrs.nwrite, st.ctrs.ncachesync, st.ctrs.nclearing);
590 1.42 jld
591 1.42 jld dr = 0;
592 1.46 jld for (i = 0; i < st.params.regions; i++)
593 1.42 jld if (isset(st.dirty, i))
594 1.42 jld dr++;
595 1.42 jld printf("raid%d: %d dirty region%s\n", raidID, dr,
596 1.42 jld dr == 1 ? "" : "s");
597 1.42 jld
598 1.42 jld if (verbose > 0) {
599 1.42 jld for (i = 0; i < RF_PARITYMAP_NBYTE; i += 32) {
600 1.42 jld printf(" ");
601 1.42 jld for (j = i; j < RF_PARITYMAP_NBYTE
602 1.42 jld && j < i + 32; j++)
603 1.42 jld printf("%x%x", st.dirty[j] & 15,
604 1.42 jld (st.dirty[j] >> 4) & 15);
605 1.42 jld printf("\n");
606 1.42 jld }
607 1.42 jld }
608 1.42 jld } else {
609 1.42 jld printf("raid%d: parity map disabled\n", raidID);
610 1.42 jld }
611 1.42 jld
612 1.42 jld do_ioctl(fd, RAIDFRAME_PARITYMAP_GET_DISABLE, &dis,
613 1.42 jld "RAIDFRAME_PARITYMAP_GET_DISABLE");
614 1.42 jld printf("raid%d: parity map will %s %sabled on next configure\n",
615 1.42 jld raidID, dis == st.enabled ? "be" : "remain", dis ? "dis" : "en");
616 1.42 jld }
617 1.42 jld
618 1.42 jld static void
619 1.42 jld rf_pm_configure(int fd, int raidID, char *parityconf, int parityparams[])
620 1.42 jld {
621 1.42 jld int dis;
622 1.42 jld struct rf_pmparams params;
623 1.42 jld
624 1.42 jld if (strcasecmp(parityconf, "yes") == 0)
625 1.42 jld dis = 0;
626 1.42 jld else if (strcasecmp(parityconf, "no") == 0)
627 1.42 jld dis = 1;
628 1.42 jld else if (strcasecmp(parityconf, "set") == 0) {
629 1.42 jld params.cooldown = parityparams[0];
630 1.42 jld params.tickms = parityparams[1];
631 1.42 jld params.regions = parityparams[2];
632 1.42 jld
633 1.42 jld do_ioctl(fd, RAIDFRAME_PARITYMAP_SET_PARAMS, ¶ms,
634 1.42 jld "RAIDFRAME_PARITYMAP_SET_PARAMS");
635 1.42 jld
636 1.42 jld if (params.cooldown != 0 || params.tickms != 0) {
637 1.42 jld printf("raid%d: parity cleaned after", raidID);
638 1.42 jld if (params.cooldown != 0)
639 1.42 jld printf(" %d", params.cooldown);
640 1.42 jld printf(" intervals");
641 1.42 jld if (params.tickms != 0) {
642 1.42 jld printf(" of %d.%03ds", params.tickms / 1000,
643 1.42 jld params.tickms % 1000);
644 1.42 jld }
645 1.42 jld printf("\n");
646 1.42 jld }
647 1.42 jld if (params.regions != 0)
648 1.42 jld printf("raid%d: will use %d regions on next"
649 1.42 jld " configuration\n", raidID, params.regions);
650 1.42 jld
651 1.42 jld return;
652 1.42 jld /* XXX the control flow here could be prettier. */
653 1.45 christos } else
654 1.45 christos err(1, "`%s' is not a valid parity map command", parityconf);
655 1.42 jld
656 1.42 jld do_ioctl(fd, RAIDFRAME_PARITYMAP_SET_DISABLE, &dis,
657 1.42 jld "RAIDFRAME_PARITYMAP_SET_DISABLE");
658 1.42 jld printf("raid%d: parity map will be %sabled on next configure\n",
659 1.42 jld raidID, dis ? "dis" : "en");
660 1.42 jld }
661 1.42 jld
662 1.62 mrg /* convert "component0" into "absent" */
663 1.63 bad static const char *rf_output_devname(const char *name)
664 1.62 mrg {
665 1.62 mrg
666 1.63 bad if (strncmp(name, "component", 9) == 0)
667 1.62 mrg return "absent";
668 1.63 bad return name;
669 1.62 mrg }
670 1.42 jld
671 1.42 jld static void
672 1.36 xtraeme rf_output_configuration(int fd, const char *name)
673 1.27 lukem {
674 1.27 lukem RF_DeviceConfig_t device_config;
675 1.27 lukem void *cfg_ptr;
676 1.71 mlelstv int i, nspares;
677 1.27 lukem RF_ComponentLabel_t component_label;
678 1.27 lukem void *label_ptr;
679 1.27 lukem int component_num;
680 1.27 lukem int num_cols;
681 1.27 lukem
682 1.27 lukem cfg_ptr = &device_config;
683 1.27 lukem
684 1.27 lukem printf("# raidctl config file for %s\n", name);
685 1.27 lukem printf("\n");
686 1.27 lukem do_ioctl(fd, RAIDFRAME_GET_INFO, &cfg_ptr, "RAIDFRAME_GET_INFO");
687 1.27 lukem
688 1.71 mlelstv nspares = MIN(device_config.nspares,
689 1.71 mlelstv __arraycount(device_config.spares));
690 1.71 mlelstv
691 1.27 lukem printf("START array\n");
692 1.77 kre printf("# numCol numSpare\n");
693 1.77 kre printf("%d %d\n", device_config.cols, device_config.nspares);
694 1.27 lukem printf("\n");
695 1.27 lukem
696 1.27 lukem printf("START disks\n");
697 1.27 lukem for(i=0; i < device_config.ndevs; i++)
698 1.62 mrg printf("%s\n",
699 1.62 mrg rf_output_devname(device_config.devs[i].devname));
700 1.27 lukem printf("\n");
701 1.27 lukem
702 1.71 mlelstv if (nspares > 0) {
703 1.27 lukem printf("START spare\n");
704 1.71 mlelstv for(i=0; i < nspares; i++)
705 1.27 lukem printf("%s\n", device_config.spares[i].devname);
706 1.27 lukem printf("\n");
707 1.27 lukem }
708 1.27 lukem
709 1.27 lukem for(i=0; i < device_config.ndevs; i++) {
710 1.27 lukem if (device_config.devs[i].status == rf_ds_optimal)
711 1.27 lukem break;
712 1.27 lukem }
713 1.27 lukem if (i == device_config.ndevs) {
714 1.27 lukem printf("# WARNING: no optimal components; using %s\n",
715 1.27 lukem device_config.devs[0].devname);
716 1.27 lukem i = 0;
717 1.27 lukem }
718 1.27 lukem get_component_number(fd, device_config.devs[i].devname,
719 1.27 lukem &component_num, &num_cols);
720 1.27 lukem memset(&component_label, 0, sizeof(RF_ComponentLabel_t));
721 1.27 lukem component_label.row = component_num / num_cols;
722 1.27 lukem component_label.column = component_num % num_cols;
723 1.27 lukem label_ptr = &component_label;
724 1.67 nakayama do_ioctl(fd, RAIDFRAME_GET_COMPONENT_LABEL, label_ptr,
725 1.27 lukem "RAIDFRAME_GET_COMPONENT_LABEL");
726 1.27 lukem
727 1.27 lukem printf("START layout\n");
728 1.27 lukem printf(
729 1.27 lukem "# sectPerSU SUsPerParityUnit SUsPerReconUnit RAID_level_%c\n",
730 1.27 lukem (char) component_label.parityConfig);
731 1.27 lukem printf("%d %d %d %c\n",
732 1.27 lukem component_label.sectPerSU, component_label.SUsPerPU,
733 1.27 lukem component_label.SUsPerRU, (char) component_label.parityConfig);
734 1.27 lukem printf("\n");
735 1.27 lukem
736 1.27 lukem printf("START queue\n");
737 1.27 lukem printf("fifo %d\n", device_config.maxqdepth);
738 1.27 lukem }
739 1.27 lukem
740 1.27 lukem static void
741 1.36 xtraeme get_component_number(int fd, char *component_name, int *component_number,
742 1.36 xtraeme int *num_columns)
743 1.1 oster {
744 1.1 oster RF_DeviceConfig_t device_config;
745 1.1 oster void *cfg_ptr;
746 1.71 mlelstv int i, nspares;
747 1.1 oster int found;
748 1.1 oster
749 1.6 oster *component_number = -1;
750 1.1 oster
751 1.1 oster /* Assuming a full path spec... */
752 1.1 oster cfg_ptr = &device_config;
753 1.1 oster do_ioctl(fd, RAIDFRAME_GET_INFO, &cfg_ptr,
754 1.1 oster "RAIDFRAME_GET_INFO");
755 1.6 oster
756 1.6 oster *num_columns = device_config.cols;
757 1.71 mlelstv
758 1.71 mlelstv nspares = MIN(device_config.nspares,
759 1.71 mlelstv __arraycount(device_config.spares));
760 1.6 oster
761 1.1 oster found = 0;
762 1.1 oster for(i=0; i < device_config.ndevs; i++) {
763 1.6 oster if (strncmp(component_name, device_config.devs[i].devname,
764 1.1 oster PATH_MAX)==0) {
765 1.1 oster found = 1;
766 1.6 oster *component_number = i;
767 1.1 oster }
768 1.1 oster }
769 1.21 oster if (!found) { /* maybe it's a spare? */
770 1.71 mlelstv for(i=0; i < nspares; i++) {
771 1.21 oster if (strncmp(component_name,
772 1.21 oster device_config.spares[i].devname,
773 1.21 oster PATH_MAX)==0) {
774 1.21 oster found = 1;
775 1.21 oster *component_number = i + device_config.ndevs;
776 1.23 oster /* the way spares are done should
777 1.23 oster really change... */
778 1.23 oster *num_columns = device_config.cols +
779 1.23 oster device_config.nspares;
780 1.21 oster }
781 1.21 oster }
782 1.21 oster }
783 1.21 oster
784 1.45 christos if (!found)
785 1.45 christos err(1,"%s is not a component of this device", component_name);
786 1.6 oster }
787 1.6 oster
788 1.6 oster static void
789 1.36 xtraeme rf_fail_disk(int fd, char *component_to_fail, int do_recon)
790 1.6 oster {
791 1.6 oster struct rf_recon_req recon_request;
792 1.6 oster int component_num;
793 1.6 oster int num_cols;
794 1.6 oster
795 1.6 oster get_component_number(fd, component_to_fail, &component_num, &num_cols);
796 1.1 oster
797 1.6 oster recon_request.col = component_num % num_cols;
798 1.1 oster if (do_recon) {
799 1.1 oster recon_request.flags = RF_FDFLAGS_RECON;
800 1.1 oster } else {
801 1.1 oster recon_request.flags = RF_FDFLAGS_NONE;
802 1.1 oster }
803 1.1 oster do_ioctl(fd, RAIDFRAME_FAIL_DISK, &recon_request,
804 1.1 oster "RAIDFRAME_FAIL_DISK");
805 1.10 oster if (do_recon && verbose) {
806 1.10 oster printf("Reconstruction status:\n");
807 1.10 oster sleep(3); /* XXX give reconstruction a chance to start */
808 1.19 oster do_meter(fd,RAIDFRAME_CHECK_RECON_STATUS_EXT);
809 1.10 oster }
810 1.1 oster }
811 1.1 oster
812 1.1 oster static void
813 1.36 xtraeme get_component_label(int fd, char *component)
814 1.5 oster {
815 1.5 oster RF_ComponentLabel_t component_label;
816 1.5 oster void *label_ptr;
817 1.5 oster int component_num;
818 1.6 oster int num_cols;
819 1.5 oster
820 1.6 oster get_component_number(fd, component, &component_num, &num_cols);
821 1.5 oster
822 1.5 oster memset( &component_label, 0, sizeof(RF_ComponentLabel_t));
823 1.6 oster component_label.row = component_num / num_cols;
824 1.6 oster component_label.column = component_num % num_cols;
825 1.5 oster
826 1.5 oster label_ptr = &component_label;
827 1.67 nakayama do_ioctl( fd, RAIDFRAME_GET_COMPONENT_LABEL, label_ptr,
828 1.5 oster "RAIDFRAME_GET_COMPONENT_LABEL");
829 1.5 oster
830 1.5 oster printf("Component label for %s:\n",component);
831 1.12 oster
832 1.25 lukem printf(" Row: %d, Column: %d, Num Rows: %d, Num Columns: %d\n",
833 1.12 oster component_label.row, component_label.column,
834 1.12 oster component_label.num_rows, component_label.num_columns);
835 1.54 mrg printf(" Version: %d, Serial Number: %u, Mod Counter: %d\n",
836 1.12 oster component_label.version, component_label.serial_number,
837 1.12 oster component_label.mod_counter);
838 1.25 lukem printf(" Clean: %s, Status: %d\n",
839 1.12 oster component_label.clean ? "Yes" : "No",
840 1.12 oster component_label.status );
841 1.25 lukem printf(" sectPerSU: %d, SUsPerPU: %d, SUsPerRU: %d\n",
842 1.12 oster component_label.sectPerSU, component_label.SUsPerPU,
843 1.12 oster component_label.SUsPerRU);
844 1.52 enami printf(" Queue size: %d, blocksize: %d, numBlocks: %"PRIu64"\n",
845 1.25 lukem component_label.maxOutstanding, component_label.blockSize,
846 1.52 enami rf_component_label_numblocks(&component_label));
847 1.25 lukem printf(" RAID Level: %c\n", (char) component_label.parityConfig);
848 1.12 oster printf(" Autoconfig: %s\n",
849 1.12 oster component_label.autoconfigure ? "Yes" : "No" );
850 1.15 oster printf(" Root partition: %s\n",
851 1.57 christos rootpart[component_label.root_partition & 3]);
852 1.12 oster printf(" Last configured as: raid%d\n", component_label.last_unit );
853 1.5 oster }
854 1.5 oster
855 1.5 oster static void
856 1.36 xtraeme set_component_label(int fd, char *component)
857 1.5 oster {
858 1.5 oster RF_ComponentLabel_t component_label;
859 1.5 oster int component_num;
860 1.6 oster int num_cols;
861 1.5 oster
862 1.6 oster get_component_number(fd, component, &component_num, &num_cols);
863 1.6 oster
864 1.6 oster /* XXX This is currently here for testing, and future expandability */
865 1.5 oster
866 1.5 oster component_label.version = 1;
867 1.5 oster component_label.serial_number = 123456;
868 1.5 oster component_label.mod_counter = 0;
869 1.6 oster component_label.row = component_num / num_cols;
870 1.6 oster component_label.column = component_num % num_cols;
871 1.5 oster component_label.num_rows = 0;
872 1.5 oster component_label.num_columns = 5;
873 1.5 oster component_label.clean = 0;
874 1.5 oster component_label.status = 1;
875 1.5 oster
876 1.5 oster do_ioctl( fd, RAIDFRAME_SET_COMPONENT_LABEL, &component_label,
877 1.5 oster "RAIDFRAME_SET_COMPONENT_LABEL");
878 1.5 oster }
879 1.5 oster
880 1.5 oster
881 1.5 oster static void
882 1.36 xtraeme init_component_labels(int fd, int serial_number)
883 1.5 oster {
884 1.5 oster RF_ComponentLabel_t component_label;
885 1.5 oster
886 1.5 oster component_label.version = 0;
887 1.5 oster component_label.serial_number = serial_number;
888 1.5 oster component_label.mod_counter = 0;
889 1.5 oster component_label.row = 0;
890 1.5 oster component_label.column = 0;
891 1.5 oster component_label.num_rows = 0;
892 1.5 oster component_label.num_columns = 0;
893 1.5 oster component_label.clean = 0;
894 1.5 oster component_label.status = 0;
895 1.5 oster
896 1.5 oster do_ioctl( fd, RAIDFRAME_INIT_LABELS, &component_label,
897 1.69 oster "RAIDFRAME_INIT_LABELS");
898 1.12 oster }
899 1.12 oster
900 1.12 oster static void
901 1.36 xtraeme set_autoconfig(int fd, int raidID, char *autoconf)
902 1.12 oster {
903 1.12 oster int auto_config;
904 1.12 oster int root_config;
905 1.12 oster
906 1.12 oster auto_config = 0;
907 1.12 oster root_config = 0;
908 1.12 oster
909 1.57 christos if (strncasecmp(autoconf, "root", 4) == 0 ||
910 1.57 christos strncasecmp(autoconf, "hard", 4) == 0 ||
911 1.61 sborrill strncasecmp(autoconf, "force", 5) == 0) {
912 1.12 oster root_config = 1;
913 1.57 christos } else if (strncasecmp(autoconf, "soft", 4) == 0) {
914 1.57 christos root_config = 2;
915 1.12 oster }
916 1.12 oster
917 1.12 oster if ((strncasecmp(autoconf,"yes", 3) == 0) ||
918 1.57 christos root_config > 0) {
919 1.12 oster auto_config = 1;
920 1.12 oster }
921 1.12 oster
922 1.12 oster do_ioctl(fd, RAIDFRAME_SET_AUTOCONFIG, &auto_config,
923 1.12 oster "RAIDFRAME_SET_AUTOCONFIG");
924 1.12 oster
925 1.12 oster do_ioctl(fd, RAIDFRAME_SET_ROOT, &root_config,
926 1.12 oster "RAIDFRAME_SET_ROOT");
927 1.12 oster
928 1.80 oster if (verbose) {
929 1.80 oster printf("raid%d: Autoconfigure: %s\n", raidID,
930 1.80 oster auto_config ? "Yes" : "No");
931 1.80 oster if (auto_config == 1) {
932 1.80 oster printf("raid%d: Root: %s\n", raidID, rootpart[root_config]);
933 1.80 oster }
934 1.12 oster }
935 1.5 oster }
936 1.5 oster
937 1.5 oster static void
938 1.36 xtraeme add_hot_spare(int fd, char *component)
939 1.5 oster {
940 1.6 oster RF_SingleComponent_t hot_spare;
941 1.5 oster
942 1.6 oster hot_spare.row = 0;
943 1.6 oster hot_spare.column = 0;
944 1.6 oster strncpy(hot_spare.component_name, component,
945 1.6 oster sizeof(hot_spare.component_name));
946 1.5 oster
947 1.5 oster do_ioctl( fd, RAIDFRAME_ADD_HOT_SPARE, &hot_spare,
948 1.5 oster "RAIDFRAME_ADD_HOT_SPARE");
949 1.6 oster }
950 1.6 oster
951 1.6 oster static void
952 1.79 oster remove_component(int fd, char *component)
953 1.6 oster {
954 1.79 oster RF_SingleComponent_t comp;
955 1.6 oster int component_num;
956 1.6 oster int num_cols;
957 1.5 oster
958 1.6 oster get_component_number(fd, component, &component_num, &num_cols);
959 1.6 oster
960 1.79 oster comp.row = component_num / num_cols;
961 1.79 oster comp.column = component_num % num_cols;
962 1.6 oster
963 1.79 oster strncpy(comp.component_name, component,
964 1.79 oster sizeof(comp.component_name));
965 1.6 oster
966 1.79 oster do_ioctl( fd, RAIDFRAME_REMOVE_COMPONENT, &comp,
967 1.79 oster "RAIDFRAME_REMOVE_COMPONENT");
968 1.6 oster }
969 1.6 oster
970 1.6 oster static void
971 1.36 xtraeme rebuild_in_place(int fd, char *component)
972 1.6 oster {
973 1.6 oster RF_SingleComponent_t comp;
974 1.6 oster int component_num;
975 1.6 oster int num_cols;
976 1.6 oster
977 1.6 oster get_component_number(fd, component, &component_num, &num_cols);
978 1.6 oster
979 1.6 oster comp.row = 0;
980 1.6 oster comp.column = component_num;
981 1.6 oster strncpy(comp.component_name, component, sizeof(comp.component_name));
982 1.6 oster
983 1.6 oster do_ioctl( fd, RAIDFRAME_REBUILD_IN_PLACE, &comp,
984 1.6 oster "RAIDFRAME_REBUILD_IN_PLACE");
985 1.10 oster
986 1.10 oster if (verbose) {
987 1.10 oster printf("Reconstruction status:\n");
988 1.10 oster sleep(3); /* XXX give reconstruction a chance to start */
989 1.19 oster do_meter(fd,RAIDFRAME_CHECK_RECON_STATUS_EXT);
990 1.10 oster }
991 1.10 oster
992 1.10 oster }
993 1.10 oster
994 1.10 oster static void
995 1.36 xtraeme check_parity(int fd, int do_rewrite, char *dev_name)
996 1.10 oster {
997 1.10 oster int is_clean;
998 1.10 oster int percent_done;
999 1.10 oster
1000 1.10 oster is_clean = 0;
1001 1.10 oster percent_done = 0;
1002 1.10 oster do_ioctl(fd, RAIDFRAME_CHECK_PARITY, &is_clean,
1003 1.10 oster "RAIDFRAME_CHECK_PARITY");
1004 1.10 oster if (is_clean) {
1005 1.10 oster printf("%s: Parity status: clean\n",dev_name);
1006 1.10 oster } else {
1007 1.10 oster printf("%s: Parity status: DIRTY\n",dev_name);
1008 1.10 oster if (do_rewrite) {
1009 1.10 oster printf("%s: Initiating re-write of parity\n",
1010 1.10 oster dev_name);
1011 1.10 oster do_ioctl(fd, RAIDFRAME_REWRITEPARITY, NULL,
1012 1.10 oster "RAIDFRAME_REWRITEPARITY");
1013 1.10 oster sleep(3); /* XXX give it time to
1014 1.10 oster get started. */
1015 1.10 oster if (verbose) {
1016 1.10 oster printf("Parity Re-write status:\n");
1017 1.75 kre do_meter(fd,
1018 1.75 kre RAIDFRAME_CHECK_PARITYREWRITE_STATUS_EXT);
1019 1.10 oster } else {
1020 1.10 oster do_ioctl(fd,
1021 1.10 oster RAIDFRAME_CHECK_PARITYREWRITE_STATUS,
1022 1.10 oster &percent_done,
1023 1.10 oster "RAIDFRAME_CHECK_PARITYREWRITE_STATUS"
1024 1.10 oster );
1025 1.10 oster while( percent_done < 100 ) {
1026 1.24 oster sleep(3); /* wait a bit... */
1027 1.75 kre do_ioctl(fd,
1028 1.75 kre RAIDFRAME_CHECK_PARITYREWRITE_STATUS,
1029 1.75 kre &percent_done,
1030 1.75 kre "RAIDFRAME_CHECK_PARITYREWRITE_STATUS");
1031 1.10 oster }
1032 1.10 oster
1033 1.10 oster }
1034 1.75 kre printf("%s: Parity Re-write complete\n", dev_name);
1035 1.10 oster } else {
1036 1.10 oster /* parity is wrong, and is not being fixed.
1037 1.10 oster Exit w/ an error. */
1038 1.10 oster exit(1);
1039 1.10 oster }
1040 1.10 oster }
1041 1.10 oster }
1042 1.10 oster
1043 1.10 oster
1044 1.10 oster static void
1045 1.36 xtraeme check_status(int fd, int meter)
1046 1.10 oster {
1047 1.10 oster int recon_percent_done = 0;
1048 1.10 oster int parity_percent_done = 0;
1049 1.10 oster
1050 1.10 oster do_ioctl(fd, RAIDFRAME_CHECK_RECON_STATUS, &recon_percent_done,
1051 1.10 oster "RAIDFRAME_CHECK_RECON_STATUS");
1052 1.10 oster printf("Reconstruction is %d%% complete.\n", recon_percent_done);
1053 1.10 oster do_ioctl(fd, RAIDFRAME_CHECK_PARITYREWRITE_STATUS,
1054 1.10 oster &parity_percent_done,
1055 1.10 oster "RAIDFRAME_CHECK_PARITYREWRITE_STATUS");
1056 1.10 oster printf("Parity Re-write is %d%% complete.\n", parity_percent_done);
1057 1.10 oster
1058 1.14 oster if (meter) {
1059 1.14 oster /* These 3 should be mutually exclusive at this point */
1060 1.14 oster if (recon_percent_done < 100) {
1061 1.14 oster printf("Reconstruction status:\n");
1062 1.19 oster do_meter(fd,RAIDFRAME_CHECK_RECON_STATUS_EXT);
1063 1.14 oster } else if (parity_percent_done < 100) {
1064 1.14 oster printf("Parity Re-write status:\n");
1065 1.19 oster do_meter(fd,RAIDFRAME_CHECK_PARITYREWRITE_STATUS_EXT);
1066 1.14 oster }
1067 1.10 oster }
1068 1.10 oster }
1069 1.10 oster
1070 1.18 thorpej const char *tbits = "|/-\\";
1071 1.10 oster
1072 1.10 oster static void
1073 1.36 xtraeme do_meter(int fd, u_long option)
1074 1.10 oster {
1075 1.10 oster int percent_done;
1076 1.37 oster RF_uint64 start_value;
1077 1.19 oster RF_ProgressInfo_t progressInfo;
1078 1.19 oster void *pInfoPtr;
1079 1.10 oster struct timeval start_time;
1080 1.10 oster struct timeval current_time;
1081 1.10 oster double elapsed;
1082 1.10 oster int elapsed_sec;
1083 1.10 oster int elapsed_usec;
1084 1.20 oster int simple_eta,last_eta;
1085 1.10 oster double rate;
1086 1.37 oster RF_uint64 amount;
1087 1.10 oster int tbit_value;
1088 1.10 oster char bar_buffer[1024];
1089 1.10 oster char eta_buffer[1024];
1090 1.10 oster
1091 1.45 christos if (gettimeofday(&start_time,NULL) == -1)
1092 1.45 christos err(1, "gettimeofday failed!?!?");
1093 1.19 oster memset(&progressInfo, 0, sizeof(RF_ProgressInfo_t));
1094 1.19 oster pInfoPtr=&progressInfo;
1095 1.19 oster
1096 1.10 oster percent_done = 0;
1097 1.67 nakayama do_ioctl(fd, option, pInfoPtr, "");
1098 1.37 oster start_value = progressInfo.completed;
1099 1.10 oster current_time = start_time;
1100 1.38 lukem simple_eta = 0;
1101 1.38 lukem last_eta = 0;
1102 1.10 oster
1103 1.10 oster tbit_value = 0;
1104 1.19 oster while(progressInfo.completed < progressInfo.total) {
1105 1.10 oster
1106 1.19 oster percent_done = (progressInfo.completed * 100) /
1107 1.19 oster progressInfo.total;
1108 1.10 oster
1109 1.10 oster get_bar(bar_buffer, percent_done, 40);
1110 1.10 oster
1111 1.20 oster elapsed_sec = current_time.tv_sec - start_time.tv_sec;
1112 1.20 oster elapsed_usec = current_time.tv_usec - start_time.tv_usec;
1113 1.10 oster if (elapsed_usec < 0) {
1114 1.10 oster elapsed_usec-=1000000;
1115 1.10 oster elapsed_sec++;
1116 1.10 oster }
1117 1.20 oster
1118 1.10 oster elapsed = (double) elapsed_sec +
1119 1.10 oster (double) elapsed_usec / 1000000.0;
1120 1.19 oster
1121 1.20 oster amount = progressInfo.completed - start_value;
1122 1.19 oster
1123 1.10 oster if (amount <= 0) { /* we don't do negatives (yet?) */
1124 1.10 oster amount = 0;
1125 1.10 oster }
1126 1.20 oster
1127 1.22 oster if (elapsed == 0)
1128 1.22 oster rate = 0.0;
1129 1.22 oster else
1130 1.22 oster rate = amount / elapsed;
1131 1.10 oster
1132 1.10 oster if (rate > 0.0) {
1133 1.19 oster simple_eta = (int) (((double)progressInfo.total -
1134 1.20 oster (double) progressInfo.completed)
1135 1.19 oster / rate);
1136 1.10 oster } else {
1137 1.10 oster simple_eta = -1;
1138 1.10 oster }
1139 1.19 oster
1140 1.10 oster if (simple_eta <=0) {
1141 1.10 oster simple_eta = last_eta;
1142 1.10 oster } else {
1143 1.10 oster last_eta = simple_eta;
1144 1.10 oster }
1145 1.10 oster
1146 1.68 mrg get_time_string(eta_buffer, sizeof eta_buffer, simple_eta);
1147 1.10 oster
1148 1.55 christos fprintf(stdout,"\r%3d%% |%s| ETA: %s %c",
1149 1.55 christos percent_done,bar_buffer,eta_buffer,tbits[tbit_value]);
1150 1.10 oster fflush(stdout);
1151 1.10 oster
1152 1.10 oster if (++tbit_value>3)
1153 1.10 oster tbit_value = 0;
1154 1.10 oster
1155 1.10 oster sleep(2);
1156 1.10 oster
1157 1.45 christos if (gettimeofday(¤t_time,NULL) == -1)
1158 1.45 christos err(1, "gettimeofday failed!?!?");
1159 1.10 oster
1160 1.67 nakayama do_ioctl( fd, option, pInfoPtr, "");
1161 1.10 oster
1162 1.10 oster
1163 1.10 oster }
1164 1.10 oster printf("\n");
1165 1.10 oster }
1166 1.10 oster /* 40 '*''s per line, then 40 ' ''s line. */
1167 1.10 oster /* If you've got a screen wider than 160 characters, "tough" */
1168 1.10 oster
1169 1.10 oster #define STAR_MIDPOINT 4*40
1170 1.10 oster const char stars[] = "****************************************"
1171 1.10 oster "****************************************"
1172 1.10 oster "****************************************"
1173 1.10 oster "****************************************"
1174 1.10 oster " "
1175 1.10 oster " "
1176 1.10 oster " "
1177 1.10 oster " "
1178 1.10 oster " ";
1179 1.10 oster
1180 1.10 oster static void
1181 1.36 xtraeme get_bar(char *string, double percent, int max_strlen)
1182 1.10 oster {
1183 1.10 oster int offset;
1184 1.10 oster
1185 1.10 oster if (max_strlen > STAR_MIDPOINT) {
1186 1.10 oster max_strlen = STAR_MIDPOINT;
1187 1.10 oster }
1188 1.10 oster offset = STAR_MIDPOINT -
1189 1.10 oster (int)((percent * max_strlen)/ 100);
1190 1.10 oster if (offset < 0)
1191 1.10 oster offset = 0;
1192 1.60 pooka snprintf(string,max_strlen,"%s",stars+offset);
1193 1.10 oster }
1194 1.10 oster
1195 1.10 oster static void
1196 1.68 mrg get_time_string(char *string, size_t len, int simple_time)
1197 1.10 oster {
1198 1.10 oster int minutes, seconds, hours;
1199 1.68 mrg char hours_buffer[8];
1200 1.10 oster char minutes_buffer[5];
1201 1.10 oster char seconds_buffer[5];
1202 1.10 oster
1203 1.10 oster if (simple_time >= 0) {
1204 1.10 oster
1205 1.68 mrg minutes = simple_time / 60;
1206 1.68 mrg seconds = simple_time - 60*minutes;
1207 1.10 oster hours = minutes / 60;
1208 1.10 oster minutes = minutes - 60*hours;
1209 1.68 mrg #if defined(__GNUC__)
1210 1.68 mrg /*
1211 1.68 mrg * snprintf() truncation checker fails to detect that seconds
1212 1.68 mrg * and minutes will be 0-59 range.
1213 1.68 mrg */
1214 1.68 mrg if (minutes < 0 || minutes > 60)
1215 1.68 mrg minutes = 60;
1216 1.68 mrg if (seconds < 0 || seconds > 60)
1217 1.68 mrg seconds = 60;
1218 1.68 mrg #endif
1219 1.10 oster
1220 1.10 oster if (hours > 0) {
1221 1.75 kre snprintf(hours_buffer,sizeof hours_buffer,
1222 1.75 kre "%02d:",hours);
1223 1.10 oster } else {
1224 1.68 mrg snprintf(hours_buffer,sizeof hours_buffer," ");
1225 1.10 oster }
1226 1.10 oster
1227 1.68 mrg snprintf(minutes_buffer,sizeof minutes_buffer,"%02d:",minutes);
1228 1.68 mrg snprintf(seconds_buffer,sizeof seconds_buffer,"%02d",seconds);
1229 1.68 mrg snprintf(string,len,"%s%s%s",
1230 1.10 oster hours_buffer, minutes_buffer, seconds_buffer);
1231 1.10 oster } else {
1232 1.68 mrg snprintf(string,len," --:--");
1233 1.10 oster }
1234 1.10 oster
1235 1.5 oster }
1236 1.5 oster
1237 1.80 oster /* Simplified RAID creation with a single command line... */
1238 1.80 oster static void
1239 1.80 oster rf_simple_create(int fd, int argc, char *argv[])
1240 1.80 oster {
1241 1.80 oster int i;
1242 1.80 oster int level;
1243 1.80 oster int num_components;
1244 1.80 oster char *components[RF_MAXCOL];
1245 1.80 oster void *generic;
1246 1.80 oster RF_Config_t cfg;
1247 1.80 oster
1248 1.80 oster /*
1249 1.80 oster * Note the extra level of redirection needed here, since
1250 1.80 oster * what we really want to pass in is a pointer to the pointer to
1251 1.80 oster * the configuration structure.
1252 1.80 oster */
1253 1.80 oster
1254 1.80 oster
1255 1.80 oster if (strcmp(argv[0],"mirror")==0) {
1256 1.80 oster level = 1;
1257 1.80 oster } else
1258 1.80 oster level = atoi(argv[0]);
1259 1.80 oster
1260 1.80 oster if (level != 0 && level != 1 && level !=5)
1261 1.80 oster usage();
1262 1.80 oster
1263 1.80 oster /* remaining args must be components */
1264 1.80 oster num_components = 0;
1265 1.80 oster for (i=1 ; i<argc ; i++) {
1266 1.80 oster components[i-1] = argv[i];
1267 1.80 oster num_components++;
1268 1.80 oster }
1269 1.80 oster
1270 1.80 oster /* Level 0 must have at least two components.
1271 1.80 oster Level 1 must have exactly two components.
1272 1.80 oster Level 5 must have at least three components. */
1273 1.80 oster if ((level == 0 && num_components < 2) ||
1274 1.80 oster (level == 1 && num_components != 2) ||
1275 1.80 oster (level == 5 && num_components < 3))
1276 1.80 oster usage();
1277 1.80 oster
1278 1.80 oster /* build a config... */
1279 1.80 oster
1280 1.80 oster memset(&cfg, 0, sizeof(cfg));
1281 1.80 oster
1282 1.80 oster cfg.numCol = num_components;
1283 1.80 oster cfg.numSpare = 0;
1284 1.80 oster
1285 1.80 oster for (i=0 ; i<num_components; i++) {
1286 1.80 oster strlcpy(cfg.devnames[0][i], components[i],
1287 1.80 oster sizeof(cfg.devnames[0][i]));
1288 1.80 oster }
1289 1.80 oster
1290 1.80 oster /* pick some reasonable values for sectPerSU, etc. */
1291 1.80 oster if (level == 0) {
1292 1.80 oster if (num_components == 2) {
1293 1.80 oster /* 64 blocks (32K) per component - 64K data per stripe */
1294 1.80 oster cfg.sectPerSU = 64;
1295 1.80 oster } else if (num_components == 3 || num_components == 4) {
1296 1.80 oster /* 32 blocks (16K) per component - 64K data per strip for
1297 1.80 oster the 4-component case. */
1298 1.80 oster cfg.sectPerSU = 32;
1299 1.80 oster } else {
1300 1.80 oster /* 16 blocks (8K) per component */
1301 1.80 oster cfg.sectPerSU = 16;
1302 1.80 oster }
1303 1.80 oster } else if (level == 1) {
1304 1.83 andvar /* 128 blocks (64K per component) - 64K per stripe */
1305 1.80 oster cfg.sectPerSU = 128;
1306 1.80 oster } else if (level == 5) {
1307 1.80 oster if (num_components == 3) {
1308 1.80 oster /* 64 blocks (32K) per disk - 64K data per stripe */
1309 1.80 oster cfg.sectPerSU = 64;
1310 1.80 oster } else if (num_components >= 4 && num_components < 9) {
1311 1.80 oster /* 4 components makes 3 data components. No power of 2 is
1312 1.80 oster evenly divisible by 3 so performance will be lousy
1313 1.80 oster regardless of what number we choose here. 5 components is
1314 1.80 oster what we are really hoping for here, as 5 components with 4
1315 1.80 oster data components on RAID 5 means 32 blocks (16K) per data
1316 1.80 oster component, or 64K per stripe */
1317 1.80 oster cfg.sectPerSU = 32;
1318 1.80 oster } else {
1319 1.80 oster /* 9 components here is optimal for 16 blocks (8K) per data
1320 1.80 oster component */
1321 1.80 oster cfg.sectPerSU = 16;
1322 1.80 oster }
1323 1.80 oster } else
1324 1.80 oster usage();
1325 1.80 oster
1326 1.80 oster cfg.SUsPerPU = 1;
1327 1.80 oster cfg.SUsPerRU = 1;
1328 1.80 oster cfg.parityConfig = '0' + level;
1329 1.80 oster strlcpy(cfg.diskQueueType, "fifo", sizeof(cfg.diskQueueType));
1330 1.80 oster cfg.maxOutstandingDiskReqs = 1;
1331 1.80 oster cfg.force = 1;
1332 1.80 oster
1333 1.80 oster /* configure... */
1334 1.80 oster
1335 1.80 oster generic = &cfg;
1336 1.80 oster do_ioctl(fd, RAIDFRAME_CONFIGURE, &generic, "RAIDFRAME_CONFIGURE");
1337 1.80 oster
1338 1.80 oster if (level == 1 || level == 5)
1339 1.80 oster do_ioctl(fd, RAIDFRAME_REWRITEPARITY, NULL,
1340 1.80 oster "RAIDFRAME_REWRITEPARITY");
1341 1.80 oster }
1342 1.80 oster
1343 1.80 oster
1344 1.5 oster static void
1345 1.36 xtraeme usage(void)
1346 1.1 oster {
1347 1.26 cgd const char *progname = getprogname();
1348 1.26 cgd
1349 1.75 kre fprintf(stderr,
1350 1.80 oster "usage: %s dev create [0 | 1 | mirror | 5] component component ...\n",
1351 1.80 oster progname);
1352 1.80 oster fprintf(stderr, " %s [-v] -A [yes | no | softroot | hardroot] dev\n",
1353 1.80 oster progname);
1354 1.65 wiz fprintf(stderr, " %s [-v] -a component dev\n", progname);
1355 1.26 cgd fprintf(stderr, " %s [-v] -B dev\n", progname);
1356 1.65 wiz fprintf(stderr, " %s [-v] -C config_file dev\n", progname);
1357 1.26 cgd fprintf(stderr, " %s [-v] -c config_file dev\n", progname);
1358 1.65 wiz fprintf(stderr, " %s [-v] -F component dev\n", progname);
1359 1.26 cgd fprintf(stderr, " %s [-v] -f component dev\n", progname);
1360 1.65 wiz fprintf(stderr, " %s [-v] -G dev\n", progname);
1361 1.26 cgd fprintf(stderr, " %s [-v] -g component dev\n", progname);
1362 1.65 wiz fprintf(stderr, " %s [-v] -I serial_number dev\n", progname);
1363 1.26 cgd fprintf(stderr, " %s [-v] -i dev\n", progname);
1364 1.42 jld fprintf(stderr, " %s [-v] -M [yes | no | set params] dev\n",
1365 1.42 jld progname);
1366 1.65 wiz fprintf(stderr, " %s [-v] -m dev\n", progname);
1367 1.65 wiz fprintf(stderr, " %s [-v] -P dev\n", progname);
1368 1.31 oster fprintf(stderr, " %s [-v] -p dev\n", progname);
1369 1.65 wiz fprintf(stderr, " %s [-v] -R component dev\n", progname);
1370 1.26 cgd fprintf(stderr, " %s [-v] -r component dev\n", progname);
1371 1.65 wiz fprintf(stderr, " %s [-v] -S dev\n", progname);
1372 1.26 cgd fprintf(stderr, " %s [-v] -s dev\n", progname);
1373 1.78 kre fprintf(stderr, " %s [-v] -t config_file\n", progname);
1374 1.65 wiz fprintf(stderr, " %s [-v] -U unit dev\n", progname);
1375 1.26 cgd fprintf(stderr, " %s [-v] -u dev\n", progname);
1376 1.1 oster exit(1);
1377 1.1 oster /* NOTREACHED */
1378 1.1 oster }
1379 1.58 manu
1380 1.58 manu static unsigned int
1381 1.59 christos xstrtouint(const char *str)
1382 1.58 manu {
1383 1.59 christos int e;
1384 1.59 christos unsigned int num = (unsigned int)strtou(str, NULL, 10, 0, INT_MAX, &e);
1385 1.59 christos if (e)
1386 1.59 christos errc(EXIT_FAILURE, e, "Bad number `%s'", str);
1387 1.59 christos return num;
1388 1.58 manu }
1389