rf_disks.c revision 1.83.2.2 1 1.83.2.2 tls /* $NetBSD: rf_disks.c,v 1.83.2.2 2014/08/20 00:03:49 tls Exp $ */
2 1.6 oster /*-
3 1.6 oster * Copyright (c) 1999 The NetBSD Foundation, Inc.
4 1.6 oster * All rights reserved.
5 1.6 oster *
6 1.6 oster * This code is derived from software contributed to The NetBSD Foundation
7 1.6 oster * by Greg Oster
8 1.6 oster *
9 1.6 oster * Redistribution and use in source and binary forms, with or without
10 1.6 oster * modification, are permitted provided that the following conditions
11 1.6 oster * are met:
12 1.6 oster * 1. Redistributions of source code must retain the above copyright
13 1.6 oster * notice, this list of conditions and the following disclaimer.
14 1.6 oster * 2. Redistributions in binary form must reproduce the above copyright
15 1.6 oster * notice, this list of conditions and the following disclaimer in the
16 1.6 oster * documentation and/or other materials provided with the distribution.
17 1.6 oster *
18 1.6 oster * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
19 1.6 oster * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
20 1.6 oster * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
21 1.6 oster * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
22 1.6 oster * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
23 1.6 oster * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
24 1.6 oster * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
25 1.6 oster * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
26 1.6 oster * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
27 1.6 oster * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
28 1.6 oster * POSSIBILITY OF SUCH DAMAGE.
29 1.6 oster */
30 1.6 oster
31 1.1 oster /*
32 1.1 oster * Copyright (c) 1995 Carnegie-Mellon University.
33 1.1 oster * All rights reserved.
34 1.1 oster *
35 1.1 oster * Author: Mark Holland
36 1.1 oster *
37 1.1 oster * Permission to use, copy, modify and distribute this software and
38 1.1 oster * its documentation is hereby granted, provided that both the copyright
39 1.1 oster * notice and this permission notice appear in all copies of the
40 1.1 oster * software, derivative works or modified versions, and any portions
41 1.1 oster * thereof, and that both notices appear in supporting documentation.
42 1.1 oster *
43 1.1 oster * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS "AS IS"
44 1.1 oster * CONDITION. CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND
45 1.1 oster * FOR ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE.
46 1.1 oster *
47 1.1 oster * Carnegie Mellon requests users of this software to return to
48 1.1 oster *
49 1.1 oster * Software Distribution Coordinator or Software.Distribution (at) CS.CMU.EDU
50 1.1 oster * School of Computer Science
51 1.1 oster * Carnegie Mellon University
52 1.1 oster * Pittsburgh PA 15213-3890
53 1.1 oster *
54 1.1 oster * any improvements or extensions that they make and grant Carnegie the
55 1.1 oster * rights to redistribute these changes.
56 1.1 oster */
57 1.1 oster
58 1.1 oster /***************************************************************
59 1.1 oster * rf_disks.c -- code to perform operations on the actual disks
60 1.1 oster ***************************************************************/
61 1.37 lukem
62 1.37 lukem #include <sys/cdefs.h>
63 1.83.2.2 tls __KERNEL_RCSID(0, "$NetBSD: rf_disks.c,v 1.83.2.2 2014/08/20 00:03:49 tls Exp $");
64 1.1 oster
65 1.35 oster #include <dev/raidframe/raidframevar.h>
66 1.35 oster
67 1.1 oster #include "rf_raid.h"
68 1.1 oster #include "rf_alloclist.h"
69 1.1 oster #include "rf_utils.h"
70 1.1 oster #include "rf_general.h"
71 1.1 oster #include "rf_options.h"
72 1.14 oster #include "rf_kintf.h"
73 1.15 oster #include "rf_netbsd.h"
74 1.1 oster
75 1.1 oster #include <sys/param.h>
76 1.1 oster #include <sys/systm.h>
77 1.1 oster #include <sys/proc.h>
78 1.1 oster #include <sys/ioctl.h>
79 1.1 oster #include <sys/fcntl.h>
80 1.1 oster #include <sys/vnode.h>
81 1.75 dholland #include <sys/namei.h> /* for pathbuf */
82 1.60 elad #include <sys/kauth.h>
83 1.83.2.1 tls #include <sys/atomic.h>
84 1.83.2.1 tls #include <sys/disk.h>
85 1.1 oster
86 1.83.2.2 tls #include <miscfs/specfs/specdev.h> /* for v_rdev */
87 1.83.2.2 tls
88 1.15 oster static int rf_AllocDiskStructures(RF_Raid_t *, RF_Config_t *);
89 1.57 perry static void rf_print_label_status( RF_Raid_t *, int, char *,
90 1.26 oster RF_ComponentLabel_t *);
91 1.57 perry static int rf_check_label_vitals( RF_Raid_t *, int, int, char *,
92 1.26 oster RF_ComponentLabel_t *, int, int );
93 1.1 oster
94 1.1 oster #define DPRINTF6(a,b,c,d,e,f) if (rf_diskDebug) printf(a,b,c,d,e,f)
95 1.1 oster #define DPRINTF7(a,b,c,d,e,f,g) if (rf_diskDebug) printf(a,b,c,d,e,f,g)
96 1.1 oster
97 1.6 oster /**************************************************************************
98 1.1 oster *
99 1.1 oster * initialize the disks comprising the array
100 1.1 oster *
101 1.57 perry * We want the spare disks to have regular row,col numbers so that we can
102 1.57 perry * easily substitue a spare for a failed disk. But, the driver code assumes
103 1.57 perry * throughout that the array contains numRow by numCol _non-spare_ disks, so
104 1.6 oster * it's not clear how to fit in the spares. This is an unfortunate holdover
105 1.57 perry * from raidSim. The quick and dirty fix is to make row zero bigger than the
106 1.57 perry * rest, and put all the spares in it. This probably needs to get changed
107 1.6 oster * eventually.
108 1.1 oster *
109 1.6 oster **************************************************************************/
110 1.6 oster
111 1.57 perry int
112 1.64 christos rf_ConfigureDisks(RF_ShutdownList_t **listp, RF_Raid_t *raidPtr,
113 1.49 oster RF_Config_t *cfgPtr)
114 1.1 oster {
115 1.46 oster RF_RaidDisk_t *disks;
116 1.5 oster RF_SectorCount_t min_numblks = (RF_SectorCount_t) 0x7FFFFFFFFFFFLL;
117 1.46 oster RF_RowCol_t c;
118 1.6 oster int bs, ret;
119 1.5 oster unsigned i, count, foundone = 0, numFailuresThisRow;
120 1.7 oster int force;
121 1.5 oster
122 1.7 oster force = cfgPtr->force;
123 1.5 oster
124 1.22 oster ret = rf_AllocDiskStructures(raidPtr, cfgPtr);
125 1.22 oster if (ret)
126 1.5 oster goto fail;
127 1.5 oster
128 1.22 oster disks = raidPtr->Disks;
129 1.22 oster
130 1.46 oster numFailuresThisRow = 0;
131 1.46 oster for (c = 0; c < raidPtr->numCol; c++) {
132 1.57 perry ret = rf_ConfigureDisk(raidPtr,
133 1.46 oster &cfgPtr->devnames[0][c][0],
134 1.46 oster &disks[c], c);
135 1.57 perry
136 1.46 oster if (ret)
137 1.46 oster goto fail;
138 1.57 perry
139 1.46 oster if (disks[c].status == rf_ds_optimal) {
140 1.73 jld ret = raidfetch_component_label(raidPtr, c);
141 1.73 jld if (ret)
142 1.73 jld goto fail;
143 1.80 oster
144 1.80 oster /* mark it as failed if the label looks bogus... */
145 1.80 oster if (!rf_reasonable_label(&raidPtr->raid_cinfo[c].ci_label,0) && !force) {
146 1.80 oster disks[c].status = rf_ds_failed;
147 1.80 oster }
148 1.46 oster }
149 1.7 oster
150 1.46 oster if (disks[c].status != rf_ds_optimal) {
151 1.46 oster numFailuresThisRow++;
152 1.46 oster } else {
153 1.46 oster if (disks[c].numBlocks < min_numblks)
154 1.46 oster min_numblks = disks[c].numBlocks;
155 1.71 sborrill DPRINTF6("Disk at col %d: dev %s numBlocks %" PRIu64 " blockSize %d (%ld MB)\n",
156 1.46 oster c, disks[c].devname,
157 1.71 sborrill disks[c].numBlocks,
158 1.46 oster disks[c].blockSize,
159 1.46 oster (long int) disks[c].numBlocks *
160 1.46 oster disks[c].blockSize / 1024 / 1024);
161 1.5 oster }
162 1.5 oster }
163 1.46 oster /* XXX fix for n-fault tolerant */
164 1.46 oster /* XXX this should probably check to see how many failures
165 1.46 oster we can handle for this configuration! */
166 1.46 oster if (numFailuresThisRow > 0)
167 1.46 oster raidPtr->status = rf_rs_degraded;
168 1.6 oster
169 1.5 oster /* all disks must be the same size & have the same block size, bs must
170 1.5 oster * be a power of 2 */
171 1.5 oster bs = 0;
172 1.46 oster foundone = 0;
173 1.46 oster for (c = 0; c < raidPtr->numCol; c++) {
174 1.46 oster if (disks[c].status == rf_ds_optimal) {
175 1.46 oster bs = disks[c].blockSize;
176 1.46 oster foundone = 1;
177 1.46 oster break;
178 1.5 oster }
179 1.5 oster }
180 1.5 oster if (!foundone) {
181 1.5 oster RF_ERRORMSG("RAIDFRAME: Did not find any live disks in the array.\n");
182 1.5 oster ret = EINVAL;
183 1.5 oster goto fail;
184 1.5 oster }
185 1.5 oster for (count = 0, i = 1; i; i <<= 1)
186 1.5 oster if (bs & i)
187 1.5 oster count++;
188 1.5 oster if (count != 1) {
189 1.5 oster RF_ERRORMSG1("Error: block size on disks (%d) must be a power of 2\n", bs);
190 1.5 oster ret = EINVAL;
191 1.5 oster goto fail;
192 1.5 oster }
193 1.6 oster
194 1.6 oster if (rf_CheckLabels( raidPtr, cfgPtr )) {
195 1.7 oster printf("raid%d: There were fatal errors\n", raidPtr->raidid);
196 1.7 oster if (force != 0) {
197 1.7 oster printf("raid%d: Fatal errors being ignored.\n",
198 1.7 oster raidPtr->raidid);
199 1.7 oster } else {
200 1.7 oster ret = EINVAL;
201 1.7 oster goto fail;
202 1.57 perry }
203 1.6 oster }
204 1.7 oster
205 1.46 oster for (c = 0; c < raidPtr->numCol; c++) {
206 1.46 oster if (disks[c].status == rf_ds_optimal) {
207 1.46 oster if (disks[c].blockSize != bs) {
208 1.46 oster RF_ERRORMSG1("Error: block size of disk at c %d different from disk at c 0\n", c);
209 1.46 oster ret = EINVAL;
210 1.46 oster goto fail;
211 1.46 oster }
212 1.46 oster if (disks[c].numBlocks != min_numblks) {
213 1.46 oster RF_ERRORMSG2("WARNING: truncating disk at c %d to %d blocks\n",
214 1.46 oster c, (int) min_numblks);
215 1.46 oster disks[c].numBlocks = min_numblks;
216 1.5 oster }
217 1.5 oster }
218 1.5 oster }
219 1.5 oster
220 1.5 oster raidPtr->sectorsPerDisk = min_numblks;
221 1.5 oster raidPtr->logBytesPerSector = ffs(bs) - 1;
222 1.5 oster raidPtr->bytesPerSector = bs;
223 1.5 oster raidPtr->sectorMask = bs - 1;
224 1.5 oster return (0);
225 1.1 oster
226 1.1 oster fail:
227 1.57 perry
228 1.6 oster rf_UnconfigureVnodes( raidPtr );
229 1.1 oster
230 1.5 oster return (ret);
231 1.1 oster }
232 1.1 oster
233 1.1 oster
234 1.6 oster /****************************************************************************
235 1.1 oster * set up the data structures describing the spare disks in the array
236 1.1 oster * recall from the above comment that the spare disk descriptors are stored
237 1.1 oster * in row zero, which is specially expanded to hold them.
238 1.6 oster ****************************************************************************/
239 1.57 perry int
240 1.64 christos rf_ConfigureSpareDisks(RF_ShutdownList_t **listp, RF_Raid_t *raidPtr,
241 1.49 oster RF_Config_t *cfgPtr)
242 1.1 oster {
243 1.6 oster int i, ret;
244 1.6 oster unsigned int bs;
245 1.5 oster RF_RaidDisk_t *disks;
246 1.5 oster int num_spares_done;
247 1.1 oster
248 1.5 oster num_spares_done = 0;
249 1.5 oster
250 1.5 oster /* The space for the spares should have already been allocated by
251 1.5 oster * ConfigureDisks() */
252 1.5 oster
253 1.46 oster disks = &raidPtr->Disks[raidPtr->numCol];
254 1.5 oster for (i = 0; i < raidPtr->numSpare; i++) {
255 1.5 oster ret = rf_ConfigureDisk(raidPtr, &cfgPtr->spare_names[i][0],
256 1.46 oster &disks[i], raidPtr->numCol + i);
257 1.5 oster if (ret)
258 1.5 oster goto fail;
259 1.5 oster if (disks[i].status != rf_ds_optimal) {
260 1.57 perry RF_ERRORMSG1("Warning: spare disk %s failed TUR\n",
261 1.6 oster &cfgPtr->spare_names[i][0]);
262 1.5 oster } else {
263 1.5 oster disks[i].status = rf_ds_spare; /* change status to
264 1.5 oster * spare */
265 1.71 sborrill DPRINTF6("Spare Disk %d: dev %s numBlocks %" PRIu64 " blockSize %d (%ld MB)\n", i,
266 1.5 oster disks[i].devname,
267 1.71 sborrill disks[i].numBlocks, disks[i].blockSize,
268 1.57 perry (long int) disks[i].numBlocks *
269 1.6 oster disks[i].blockSize / 1024 / 1024);
270 1.5 oster }
271 1.5 oster num_spares_done++;
272 1.5 oster }
273 1.1 oster
274 1.5 oster /* check sizes and block sizes on spare disks */
275 1.5 oster bs = 1 << raidPtr->logBytesPerSector;
276 1.5 oster for (i = 0; i < raidPtr->numSpare; i++) {
277 1.5 oster if (disks[i].blockSize != bs) {
278 1.5 oster RF_ERRORMSG3("Block size of %d on spare disk %s is not the same as on other disks (%d)\n", disks[i].blockSize, disks[i].devname, bs);
279 1.5 oster ret = EINVAL;
280 1.5 oster goto fail;
281 1.5 oster }
282 1.5 oster if (disks[i].numBlocks < raidPtr->sectorsPerDisk) {
283 1.71 sborrill RF_ERRORMSG3("Spare disk %s (%d blocks) is too small to serve as a spare (need %" PRIu64 " blocks)\n",
284 1.57 perry disks[i].devname, disks[i].blockSize,
285 1.71 sborrill raidPtr->sectorsPerDisk);
286 1.5 oster ret = EINVAL;
287 1.5 oster goto fail;
288 1.5 oster } else
289 1.5 oster if (disks[i].numBlocks > raidPtr->sectorsPerDisk) {
290 1.71 sborrill RF_ERRORMSG3("Warning: truncating spare disk %s to %" PRIu64 " blocks (from %" PRIu64 ")\n",
291 1.56 tron disks[i].devname,
292 1.71 sborrill raidPtr->sectorsPerDisk,
293 1.71 sborrill disks[i].numBlocks);
294 1.5 oster
295 1.5 oster disks[i].numBlocks = raidPtr->sectorsPerDisk;
296 1.5 oster }
297 1.5 oster }
298 1.5 oster
299 1.5 oster return (0);
300 1.1 oster
301 1.1 oster fail:
302 1.2 oster
303 1.5 oster /* Release the hold on the main components. We've failed to allocate
304 1.57 perry * a spare, and since we're failing, we need to free things..
305 1.57 perry
306 1.57 perry XXX failing to allocate a spare is *not* that big of a deal...
307 1.6 oster We *can* survive without it, if need be, esp. if we get hot
308 1.57 perry adding working.
309 1.1 oster
310 1.57 perry If we don't fail out here, then we need a way to remove this spare...
311 1.57 perry that should be easier to do here than if we are "live"...
312 1.1 oster
313 1.6 oster */
314 1.1 oster
315 1.6 oster rf_UnconfigureVnodes( raidPtr );
316 1.57 perry
317 1.5 oster return (ret);
318 1.1 oster }
319 1.1 oster
320 1.15 oster static int
321 1.64 christos rf_AllocDiskStructures(RF_Raid_t *raidPtr, RF_Config_t *cfgPtr)
322 1.15 oster {
323 1.15 oster int ret;
324 1.1 oster
325 1.46 oster /* We allocate RF_MAXSPARE on the first row so that we
326 1.46 oster have room to do hot-swapping of spares */
327 1.47 oster RF_MallocAndAdd(raidPtr->Disks, (raidPtr->numCol + RF_MAXSPARE) *
328 1.57 perry sizeof(RF_RaidDisk_t), (RF_RaidDisk_t *),
329 1.46 oster raidPtr->cleanupList);
330 1.46 oster if (raidPtr->Disks == NULL) {
331 1.15 oster ret = ENOMEM;
332 1.15 oster goto fail;
333 1.15 oster }
334 1.46 oster
335 1.46 oster /* get space for device specific stuff.. */
336 1.47 oster RF_MallocAndAdd(raidPtr->raid_cinfo,
337 1.57 perry (raidPtr->numCol + RF_MAXSPARE) *
338 1.46 oster sizeof(struct raidcinfo), (struct raidcinfo *),
339 1.46 oster raidPtr->cleanupList);
340 1.47 oster
341 1.15 oster if (raidPtr->raid_cinfo == NULL) {
342 1.15 oster ret = ENOMEM;
343 1.15 oster goto fail;
344 1.15 oster }
345 1.15 oster
346 1.15 oster return(0);
347 1.57 perry fail:
348 1.15 oster rf_UnconfigureVnodes( raidPtr );
349 1.15 oster
350 1.15 oster return(ret);
351 1.15 oster }
352 1.15 oster
353 1.15 oster
354 1.15 oster /* configure a single disk during auto-configuration at boot */
355 1.15 oster int
356 1.49 oster rf_AutoConfigureDisks(RF_Raid_t *raidPtr, RF_Config_t *cfgPtr,
357 1.49 oster RF_AutoConfig_t *auto_config)
358 1.15 oster {
359 1.46 oster RF_RaidDisk_t *disks;
360 1.15 oster RF_RaidDisk_t *diskPtr;
361 1.57 perry RF_RowCol_t c;
362 1.15 oster RF_SectorCount_t min_numblks = (RF_SectorCount_t) 0x7FFFFFFFFFFFLL;
363 1.15 oster int bs, ret;
364 1.15 oster int numFailuresThisRow;
365 1.15 oster RF_AutoConfig_t *ac;
366 1.17 oster int parity_good;
367 1.20 oster int mod_counter;
368 1.30 oster int mod_counter_found;
369 1.15 oster
370 1.15 oster #if DEBUG
371 1.15 oster printf("Starting autoconfiguration of RAID set...\n");
372 1.15 oster #endif
373 1.15 oster
374 1.15 oster ret = rf_AllocDiskStructures(raidPtr, cfgPtr);
375 1.15 oster if (ret)
376 1.15 oster goto fail;
377 1.15 oster
378 1.15 oster disks = raidPtr->Disks;
379 1.15 oster
380 1.17 oster /* assume the parity will be fine.. */
381 1.17 oster parity_good = RF_RAID_CLEAN;
382 1.17 oster
383 1.20 oster /* Check for mod_counters that are too low */
384 1.30 oster mod_counter_found = 0;
385 1.34 oster mod_counter = 0;
386 1.20 oster ac = auto_config;
387 1.20 oster while(ac!=NULL) {
388 1.30 oster if (mod_counter_found==0) {
389 1.20 oster mod_counter = ac->clabel->mod_counter;
390 1.30 oster mod_counter_found = 1;
391 1.30 oster } else {
392 1.20 oster if (ac->clabel->mod_counter > mod_counter) {
393 1.20 oster mod_counter = ac->clabel->mod_counter;
394 1.20 oster }
395 1.20 oster }
396 1.30 oster ac->flag = 0; /* clear the general purpose flag */
397 1.30 oster ac = ac->next;
398 1.20 oster }
399 1.20 oster
400 1.34 oster bs = 0;
401 1.15 oster
402 1.46 oster numFailuresThisRow = 0;
403 1.46 oster for (c = 0; c < raidPtr->numCol; c++) {
404 1.46 oster diskPtr = &disks[c];
405 1.57 perry
406 1.46 oster /* find this row/col in the autoconfig */
407 1.15 oster #if DEBUG
408 1.46 oster printf("Looking for %d in autoconfig\n",c);
409 1.15 oster #endif
410 1.46 oster ac = auto_config;
411 1.46 oster while(ac!=NULL) {
412 1.46 oster if (ac->clabel==NULL) {
413 1.46 oster /* big-time bad news. */
414 1.46 oster goto fail;
415 1.46 oster }
416 1.46 oster if ((ac->clabel->column == c) &&
417 1.46 oster (ac->clabel->mod_counter == mod_counter)) {
418 1.46 oster /* it's this one... */
419 1.46 oster /* flag it as 'used', so we don't
420 1.46 oster free it later. */
421 1.46 oster ac->flag = 1;
422 1.46 oster #if DEBUG
423 1.46 oster printf("Found: %s at %d\n",
424 1.46 oster ac->devname,c);
425 1.46 oster #endif
426 1.57 perry
427 1.46 oster break;
428 1.46 oster }
429 1.46 oster ac=ac->next;
430 1.46 oster }
431 1.57 perry
432 1.46 oster if (ac==NULL) {
433 1.46 oster /* we didn't find an exact match with a
434 1.46 oster correct mod_counter above... can we find
435 1.46 oster one with an incorrect mod_counter to use
436 1.46 oster instead? (this one, if we find it, will be
437 1.57 perry marked as failed once the set configures)
438 1.46 oster */
439 1.46 oster
440 1.15 oster ac = auto_config;
441 1.15 oster while(ac!=NULL) {
442 1.15 oster if (ac->clabel==NULL) {
443 1.15 oster /* big-time bad news. */
444 1.15 oster goto fail;
445 1.15 oster }
446 1.46 oster if (ac->clabel->column == c) {
447 1.57 perry /* it's this one...
448 1.57 perry flag it as 'used', so we
449 1.46 oster don't free it later. */
450 1.29 oster ac->flag = 1;
451 1.15 oster #if DEBUG
452 1.46 oster printf("Found(low mod_counter): %s at %d\n",
453 1.46 oster ac->devname,c);
454 1.15 oster #endif
455 1.57 perry
456 1.15 oster break;
457 1.15 oster }
458 1.15 oster ac=ac->next;
459 1.15 oster }
460 1.46 oster }
461 1.29 oster
462 1.29 oster
463 1.29 oster
464 1.46 oster if (ac!=NULL) {
465 1.46 oster /* Found it. Configure it.. */
466 1.46 oster diskPtr->blockSize = ac->clabel->blockSize;
467 1.78 enami diskPtr->numBlocks =
468 1.78 enami rf_component_label_numblocks(ac->clabel);
469 1.57 perry /* Note: rf_protectedSectors is already
470 1.46 oster factored into numBlocks here */
471 1.46 oster raidPtr->raid_cinfo[c].ci_vp = ac->vp;
472 1.46 oster raidPtr->raid_cinfo[c].ci_dev = ac->dev;
473 1.57 perry
474 1.72 jld memcpy(raidget_component_label(raidPtr, c),
475 1.52 itojun ac->clabel, sizeof(*ac->clabel));
476 1.52 itojun snprintf(diskPtr->devname, sizeof(diskPtr->devname),
477 1.52 itojun "/dev/%s", ac->devname);
478 1.57 perry
479 1.46 oster /* note the fact that this component was
480 1.46 oster autoconfigured. You'll need this info
481 1.46 oster later. Trust me :) */
482 1.46 oster diskPtr->auto_configured = 1;
483 1.46 oster diskPtr->dev = ac->dev;
484 1.57 perry
485 1.57 perry /*
486 1.46 oster * we allow the user to specify that
487 1.46 oster * only a fraction of the disks should
488 1.46 oster * be used this is just for debug: it
489 1.57 perry * speeds up the parity scan
490 1.46 oster */
491 1.57 perry
492 1.57 perry diskPtr->numBlocks = diskPtr->numBlocks *
493 1.46 oster rf_sizePercentage / 100;
494 1.57 perry
495 1.57 perry /* XXX these will get set multiple times,
496 1.46 oster but since we're autoconfiguring, they'd
497 1.46 oster better be always the same each time!
498 1.46 oster If not, this is the least of your worries */
499 1.46 oster
500 1.46 oster bs = diskPtr->blockSize;
501 1.46 oster min_numblks = diskPtr->numBlocks;
502 1.57 perry
503 1.46 oster /* this gets done multiple times, but that's
504 1.46 oster fine -- the serial number will be the same
505 1.46 oster for all components, guaranteed */
506 1.46 oster raidPtr->serial_number = ac->clabel->serial_number;
507 1.46 oster /* check the last time the label was modified */
508 1.46 oster
509 1.46 oster if (ac->clabel->mod_counter != mod_counter) {
510 1.46 oster /* Even though we've filled in all of
511 1.46 oster the above, we don't trust this
512 1.46 oster component since it's modification
513 1.46 oster counter is not in sync with the
514 1.46 oster rest, and we really consider it to
515 1.46 oster be failed. */
516 1.46 oster disks[c].status = rf_ds_failed;
517 1.46 oster numFailuresThisRow++;
518 1.46 oster } else {
519 1.46 oster if (ac->clabel->clean != RF_RAID_CLEAN) {
520 1.46 oster parity_good = RF_RAID_DIRTY;
521 1.17 oster }
522 1.15 oster }
523 1.46 oster } else {
524 1.46 oster /* Didn't find it at all!! Component must
525 1.46 oster really be dead */
526 1.46 oster disks[c].status = rf_ds_failed;
527 1.52 itojun snprintf(disks[c].devname, sizeof(disks[c].devname),
528 1.52 itojun "component%d", c);
529 1.46 oster numFailuresThisRow++;
530 1.15 oster }
531 1.29 oster }
532 1.46 oster /* XXX fix for n-fault tolerant */
533 1.46 oster /* XXX this should probably check to see how many failures
534 1.46 oster we can handle for this configuration! */
535 1.51 oster if (numFailuresThisRow > 0) {
536 1.46 oster raidPtr->status = rf_rs_degraded;
537 1.51 oster raidPtr->numFailures = numFailuresThisRow;
538 1.51 oster }
539 1.57 perry
540 1.29 oster /* close the device for the ones that didn't get used */
541 1.29 oster
542 1.29 oster ac = auto_config;
543 1.29 oster while(ac!=NULL) {
544 1.29 oster if (ac->flag == 0) {
545 1.32 oster vn_lock(ac->vp, LK_EXCLUSIVE | LK_RETRY);
546 1.68 pooka VOP_CLOSE(ac->vp, FREAD | FWRITE, NOCRED);
547 1.29 oster vput(ac->vp);
548 1.29 oster ac->vp = NULL;
549 1.57 perry #if DEBUG
550 1.29 oster printf("Released %s from auto-config set.\n",
551 1.29 oster ac->devname);
552 1.29 oster #endif
553 1.29 oster }
554 1.29 oster ac = ac->next;
555 1.15 oster }
556 1.20 oster
557 1.20 oster raidPtr->mod_counter = mod_counter;
558 1.15 oster
559 1.17 oster /* note the state of the parity, if any */
560 1.17 oster raidPtr->parity_good = parity_good;
561 1.15 oster raidPtr->sectorsPerDisk = min_numblks;
562 1.15 oster raidPtr->logBytesPerSector = ffs(bs) - 1;
563 1.15 oster raidPtr->bytesPerSector = bs;
564 1.15 oster raidPtr->sectorMask = bs - 1;
565 1.15 oster return (0);
566 1.15 oster
567 1.15 oster fail:
568 1.57 perry
569 1.15 oster rf_UnconfigureVnodes( raidPtr );
570 1.15 oster
571 1.15 oster return (ret);
572 1.15 oster
573 1.15 oster }
574 1.1 oster
575 1.1 oster /* configure a single disk in the array */
576 1.57 perry int
577 1.58 christos rf_ConfigureDisk(RF_Raid_t *raidPtr, char *bf, RF_RaidDisk_t *diskPtr,
578 1.49 oster RF_RowCol_t col)
579 1.1 oster {
580 1.5 oster char *p;
581 1.75 dholland struct pathbuf *pb;
582 1.1 oster struct vnode *vp;
583 1.5 oster int error;
584 1.1 oster
585 1.58 christos p = rf_find_non_white(bf);
586 1.5 oster if (p[strlen(p) - 1] == '\n') {
587 1.5 oster /* strip off the newline */
588 1.5 oster p[strlen(p) - 1] = '\0';
589 1.5 oster }
590 1.5 oster (void) strcpy(diskPtr->devname, p);
591 1.1 oster
592 1.5 oster /* Let's start by claiming the component is fine and well... */
593 1.5 oster diskPtr->status = rf_ds_optimal;
594 1.5 oster
595 1.46 oster raidPtr->raid_cinfo[col].ci_vp = NULL;
596 1.46 oster raidPtr->raid_cinfo[col].ci_dev = 0;
597 1.5 oster
598 1.53 oster if (!strcmp("absent", diskPtr->devname)) {
599 1.53 oster printf("Ignoring missing component at column %d\n", col);
600 1.83.2.2 tls snprintf(diskPtr->devname, sizeof(diskPtr->devname),
601 1.83.2.2 tls "component%d", col);
602 1.53 oster diskPtr->status = rf_ds_failed;
603 1.53 oster return (0);
604 1.53 oster }
605 1.53 oster
606 1.75 dholland pb = pathbuf_create(diskPtr->devname);
607 1.75 dholland if (pb == NULL) {
608 1.75 dholland printf("pathbuf_create for device: %s failed!\n",
609 1.75 dholland diskPtr->devname);
610 1.75 dholland return ENOMEM;
611 1.75 dholland }
612 1.75 dholland error = dk_lookup(pb, curlwp, &vp);
613 1.75 dholland pathbuf_destroy(pb);
614 1.5 oster if (error) {
615 1.62 christos printf("dk_lookup on device: %s failed!\n", diskPtr->devname);
616 1.5 oster if (error == ENXIO) {
617 1.6 oster /* the component isn't there... must be dead :-( */
618 1.5 oster diskPtr->status = rf_ds_failed;
619 1.76 mrg return 0;
620 1.5 oster } else {
621 1.5 oster return (error);
622 1.5 oster }
623 1.5 oster }
624 1.76 mrg
625 1.81 oster if ((error = rf_getdisksize(vp, diskPtr)) != 0)
626 1.76 mrg return (error);
627 1.76 mrg
628 1.76 mrg /*
629 1.76 mrg * If this raidPtr's bytesPerSector is zero, fill it in with this
630 1.76 mrg * components blockSize. This will give us something to work with
631 1.76 mrg * initially, and if it is wrong, we'll get errors later.
632 1.76 mrg */
633 1.76 mrg if (raidPtr->bytesPerSector == 0)
634 1.76 mrg raidPtr->bytesPerSector = diskPtr->blockSize;
635 1.76 mrg
636 1.5 oster if (diskPtr->status == rf_ds_optimal) {
637 1.46 oster raidPtr->raid_cinfo[col].ci_vp = vp;
638 1.83.2.2 tls raidPtr->raid_cinfo[col].ci_dev = vp->v_rdev;
639 1.57 perry
640 1.16 oster /* This component was not automatically configured */
641 1.16 oster diskPtr->auto_configured = 0;
642 1.83.2.2 tls diskPtr->dev = vp->v_rdev;
643 1.57 perry
644 1.6 oster /* we allow the user to specify that only a fraction of the
645 1.6 oster * disks should be used this is just for debug: it speeds up
646 1.6 oster * the parity scan */
647 1.57 perry diskPtr->numBlocks = diskPtr->numBlocks *
648 1.6 oster rf_sizePercentage / 100;
649 1.6 oster }
650 1.83.2.1 tls
651 1.83.2.1 tls /*
652 1.83.2.1 tls * Tell the rest of the kernel to check whether anything's
653 1.83.2.1 tls * maximum transfer size has changed -- like, for example,
654 1.83.2.1 tls * a filesystem that might be mounted on a set where we're
655 1.83.2.1 tls * adding a spare with a smaller maximum transfer size than
656 1.83.2.1 tls * the original set members.
657 1.83.2.1 tls */
658 1.83.2.1 tls atomic_inc_uint(&disk_serial);
659 1.6 oster return (0);
660 1.6 oster }
661 1.6 oster
662 1.7 oster static void
663 1.49 oster rf_print_label_status(RF_Raid_t *raidPtr, int column, char *dev_name,
664 1.49 oster RF_ComponentLabel_t *ci_label)
665 1.7 oster {
666 1.7 oster
667 1.57 perry printf("raid%d: Component %s being configured at col: %d\n",
668 1.46 oster raidPtr->raidid, dev_name, column );
669 1.46 oster printf(" Column: %d Num Columns: %d\n",
670 1.57 perry ci_label->column,
671 1.46 oster ci_label->num_columns);
672 1.7 oster printf(" Version: %d Serial Number: %d Mod Counter: %d\n",
673 1.7 oster ci_label->version, ci_label->serial_number,
674 1.7 oster ci_label->mod_counter);
675 1.11 oster printf(" Clean: %s Status: %d\n",
676 1.11 oster ci_label->clean ? "Yes" : "No", ci_label->status );
677 1.7 oster }
678 1.7 oster
679 1.49 oster static int rf_check_label_vitals(RF_Raid_t *raidPtr, int row, int column,
680 1.49 oster char *dev_name, RF_ComponentLabel_t *ci_label,
681 1.49 oster int serial_number, int mod_counter)
682 1.7 oster {
683 1.7 oster int fatal_error = 0;
684 1.7 oster
685 1.7 oster if (serial_number != ci_label->serial_number) {
686 1.57 perry printf("%s has a different serial number: %d %d\n",
687 1.7 oster dev_name, serial_number, ci_label->serial_number);
688 1.7 oster fatal_error = 1;
689 1.7 oster }
690 1.7 oster if (mod_counter != ci_label->mod_counter) {
691 1.65 christos printf("%s has a different modification count: %d %d\n",
692 1.7 oster dev_name, mod_counter, ci_label->mod_counter);
693 1.7 oster }
694 1.57 perry
695 1.7 oster if (row != ci_label->row) {
696 1.57 perry printf("Row out of alignment for: %s\n", dev_name);
697 1.7 oster fatal_error = 1;
698 1.7 oster }
699 1.7 oster if (column != ci_label->column) {
700 1.7 oster printf("Column out of alignment for: %s\n", dev_name);
701 1.7 oster fatal_error = 1;
702 1.7 oster }
703 1.7 oster if (raidPtr->numCol != ci_label->num_columns) {
704 1.7 oster printf("Number of columns do not match for: %s\n", dev_name);
705 1.7 oster fatal_error = 1;
706 1.7 oster }
707 1.7 oster if (ci_label->clean == 0) {
708 1.7 oster /* it's not clean, but that's not fatal */
709 1.7 oster printf("%s is not clean!\n", dev_name);
710 1.7 oster }
711 1.7 oster return(fatal_error);
712 1.7 oster }
713 1.7 oster
714 1.7 oster
715 1.57 perry /*
716 1.6 oster
717 1.6 oster rf_CheckLabels() - check all the component labels for consistency.
718 1.6 oster Return an error if there is anything major amiss.
719 1.6 oster
720 1.6 oster */
721 1.1 oster
722 1.57 perry int
723 1.49 oster rf_CheckLabels(RF_Raid_t *raidPtr, RF_Config_t *cfgPtr)
724 1.6 oster {
725 1.46 oster int c;
726 1.6 oster char *dev_name;
727 1.6 oster RF_ComponentLabel_t *ci_label;
728 1.6 oster int serial_number = 0;
729 1.7 oster int mod_number = 0;
730 1.6 oster int fatal_error = 0;
731 1.7 oster int mod_values[4];
732 1.7 oster int mod_count[4];
733 1.7 oster int ser_values[4];
734 1.7 oster int ser_count[4];
735 1.7 oster int num_ser;
736 1.7 oster int num_mod;
737 1.7 oster int i;
738 1.7 oster int found;
739 1.7 oster int hosed_column;
740 1.7 oster int too_fatal;
741 1.7 oster int parity_good;
742 1.7 oster int force;
743 1.7 oster
744 1.7 oster hosed_column = -1;
745 1.7 oster too_fatal = 0;
746 1.7 oster force = cfgPtr->force;
747 1.7 oster
748 1.57 perry /*
749 1.57 perry We're going to try to be a little intelligent here. If one
750 1.7 oster component's label is bogus, and we can identify that it's the
751 1.7 oster *only* one that's gone, we'll mark it as "failed" and allow
752 1.7 oster the configuration to proceed. This will be the *only* case
753 1.7 oster that we'll proceed if there would be (otherwise) fatal errors.
754 1.57 perry
755 1.7 oster Basically we simply keep a count of how many components had
756 1.7 oster what serial number. If all but one agree, we simply mark
757 1.57 perry the disagreeing component as being failed, and allow
758 1.7 oster things to come up "normally".
759 1.57 perry
760 1.7 oster We do this first for serial numbers, and then for "mod_counter".
761 1.6 oster
762 1.7 oster */
763 1.7 oster
764 1.7 oster num_ser = 0;
765 1.7 oster num_mod = 0;
766 1.46 oster
767 1.80 oster ser_values[0] = ser_values[1] = ser_values[2] = ser_values[3] = 0;
768 1.80 oster ser_count[0] = ser_count[1] = ser_count[2] = ser_count[3] = 0;
769 1.83 pooka mod_values[0] = mod_values[1] = mod_values[2] = mod_values[3] = 0;
770 1.83 pooka mod_count[0] = mod_count[1] = mod_count[2] = mod_count[3] = 0;
771 1.80 oster
772 1.46 oster for (c = 0; c < raidPtr->numCol; c++) {
773 1.80 oster if (raidPtr->Disks[c].status != rf_ds_optimal)
774 1.80 oster continue;
775 1.72 jld ci_label = raidget_component_label(raidPtr, c);
776 1.46 oster found=0;
777 1.46 oster for(i=0;i<num_ser;i++) {
778 1.46 oster if (ser_values[i] == ci_label->serial_number) {
779 1.46 oster ser_count[i]++;
780 1.46 oster found=1;
781 1.46 oster break;
782 1.7 oster }
783 1.46 oster }
784 1.46 oster if (!found) {
785 1.46 oster ser_values[num_ser] = ci_label->serial_number;
786 1.46 oster ser_count[num_ser] = 1;
787 1.46 oster num_ser++;
788 1.46 oster if (num_ser>2) {
789 1.46 oster fatal_error = 1;
790 1.46 oster break;
791 1.7 oster }
792 1.46 oster }
793 1.46 oster found=0;
794 1.46 oster for(i=0;i<num_mod;i++) {
795 1.46 oster if (mod_values[i] == ci_label->mod_counter) {
796 1.46 oster mod_count[i]++;
797 1.46 oster found=1;
798 1.46 oster break;
799 1.7 oster }
800 1.46 oster }
801 1.46 oster if (!found) {
802 1.46 oster mod_values[num_mod] = ci_label->mod_counter;
803 1.46 oster mod_count[num_mod] = 1;
804 1.46 oster num_mod++;
805 1.46 oster if (num_mod>2) {
806 1.46 oster fatal_error = 1;
807 1.46 oster break;
808 1.7 oster }
809 1.7 oster }
810 1.7 oster }
811 1.7 oster #if DEBUG
812 1.7 oster printf("raid%d: Summary of serial numbers:\n", raidPtr->raidid);
813 1.7 oster for(i=0;i<num_ser;i++) {
814 1.7 oster printf("%d %d\n", ser_values[i], ser_count[i]);
815 1.7 oster }
816 1.7 oster printf("raid%d: Summary of mod counters:\n", raidPtr->raidid);
817 1.7 oster for(i=0;i<num_mod;i++) {
818 1.7 oster printf("%d %d\n", mod_values[i], mod_count[i]);
819 1.7 oster }
820 1.7 oster #endif
821 1.7 oster serial_number = ser_values[0];
822 1.7 oster if (num_ser == 2) {
823 1.7 oster if ((ser_count[0] == 1) || (ser_count[1] == 1)) {
824 1.7 oster /* Locate the maverick component */
825 1.7 oster if (ser_count[1] > ser_count[0]) {
826 1.7 oster serial_number = ser_values[1];
827 1.57 perry }
828 1.46 oster
829 1.46 oster for (c = 0; c < raidPtr->numCol; c++) {
830 1.80 oster if (raidPtr->Disks[c].status != rf_ds_optimal)
831 1.80 oster continue;
832 1.72 jld ci_label = raidget_component_label(raidPtr, c);
833 1.46 oster if (serial_number != ci_label->serial_number) {
834 1.46 oster hosed_column = c;
835 1.46 oster break;
836 1.7 oster }
837 1.7 oster }
838 1.7 oster printf("Hosed component: %s\n",
839 1.46 oster &cfgPtr->devnames[0][hosed_column][0]);
840 1.7 oster if (!force) {
841 1.7 oster /* we'll fail this component, as if there are
842 1.7 oster other major errors, we arn't forcing things
843 1.7 oster and we'll abort the config anyways */
844 1.46 oster raidPtr->Disks[hosed_column].status
845 1.7 oster = rf_ds_failed;
846 1.7 oster raidPtr->numFailures++;
847 1.46 oster raidPtr->status = rf_rs_degraded;
848 1.7 oster }
849 1.7 oster } else {
850 1.7 oster too_fatal = 1;
851 1.7 oster }
852 1.7 oster if (cfgPtr->parityConfig == '0') {
853 1.57 perry /* We've identified two different serial numbers.
854 1.7 oster RAID 0 can't cope with that, so we'll punt */
855 1.7 oster too_fatal = 1;
856 1.7 oster }
857 1.7 oster
858 1.57 perry }
859 1.7 oster
860 1.7 oster /* record the serial number for later. If we bail later, setting
861 1.57 perry this doesn't matter, otherwise we've got the best guess at the
862 1.7 oster correct serial number */
863 1.7 oster raidPtr->serial_number = serial_number;
864 1.7 oster
865 1.7 oster mod_number = mod_values[0];
866 1.7 oster if (num_mod == 2) {
867 1.7 oster if ((mod_count[0] == 1) || (mod_count[1] == 1)) {
868 1.7 oster /* Locate the maverick component */
869 1.7 oster if (mod_count[1] > mod_count[0]) {
870 1.7 oster mod_number = mod_values[1];
871 1.8 oster } else if (mod_count[1] < mod_count[0]) {
872 1.8 oster mod_number = mod_values[0];
873 1.8 oster } else {
874 1.8 oster /* counts of different modification values
875 1.57 perry are the same. Assume greater value is
876 1.57 perry the correct one, all other things
877 1.8 oster considered */
878 1.8 oster if (mod_values[0] > mod_values[1]) {
879 1.8 oster mod_number = mod_values[0];
880 1.8 oster } else {
881 1.8 oster mod_number = mod_values[1];
882 1.8 oster }
883 1.57 perry
884 1.8 oster }
885 1.46 oster
886 1.46 oster for (c = 0; c < raidPtr->numCol; c++) {
887 1.80 oster if (raidPtr->Disks[c].status != rf_ds_optimal)
888 1.80 oster continue;
889 1.80 oster
890 1.72 jld ci_label = raidget_component_label(raidPtr, c);
891 1.46 oster if (mod_number != ci_label->mod_counter) {
892 1.46 oster if (hosed_column == c) {
893 1.46 oster /* same one. Can
894 1.46 oster deal with it. */
895 1.46 oster } else {
896 1.46 oster hosed_column = c;
897 1.46 oster if (num_ser != 1) {
898 1.46 oster too_fatal = 1;
899 1.46 oster break;
900 1.7 oster }
901 1.7 oster }
902 1.7 oster }
903 1.7 oster }
904 1.7 oster printf("Hosed component: %s\n",
905 1.46 oster &cfgPtr->devnames[0][hosed_column][0]);
906 1.7 oster if (!force) {
907 1.7 oster /* we'll fail this component, as if there are
908 1.7 oster other major errors, we arn't forcing things
909 1.7 oster and we'll abort the config anyways */
910 1.46 oster if (raidPtr->Disks[hosed_column].status != rf_ds_failed) {
911 1.46 oster raidPtr->Disks[hosed_column].status
912 1.9 oster = rf_ds_failed;
913 1.9 oster raidPtr->numFailures++;
914 1.46 oster raidPtr->status = rf_rs_degraded;
915 1.9 oster }
916 1.7 oster }
917 1.7 oster } else {
918 1.7 oster too_fatal = 1;
919 1.7 oster }
920 1.7 oster if (cfgPtr->parityConfig == '0') {
921 1.7 oster /* We've identified two different mod counters.
922 1.7 oster RAID 0 can't cope with that, so we'll punt */
923 1.7 oster too_fatal = 1;
924 1.7 oster }
925 1.57 perry }
926 1.7 oster
927 1.7 oster raidPtr->mod_counter = mod_number;
928 1.7 oster
929 1.7 oster if (too_fatal) {
930 1.7 oster /* we've had both a serial number mismatch, and a mod_counter
931 1.7 oster mismatch -- and they involved two different components!!
932 1.7 oster Bail -- make things fail so that the user must force
933 1.7 oster the issue... */
934 1.7 oster hosed_column = -1;
935 1.54 oster fatal_error = 1;
936 1.7 oster }
937 1.7 oster
938 1.7 oster if (num_ser > 2) {
939 1.57 perry printf("raid%d: Too many different serial numbers!\n",
940 1.7 oster raidPtr->raidid);
941 1.54 oster fatal_error = 1;
942 1.7 oster }
943 1.7 oster
944 1.7 oster if (num_mod > 2) {
945 1.57 perry printf("raid%d: Too many different mod counters!\n",
946 1.7 oster raidPtr->raidid);
947 1.54 oster fatal_error = 1;
948 1.7 oster }
949 1.7 oster
950 1.80 oster for (c = 0; c < raidPtr->numCol; c++) {
951 1.80 oster if (raidPtr->Disks[c].status != rf_ds_optimal) {
952 1.80 oster hosed_column = c;
953 1.80 oster break;
954 1.80 oster }
955 1.80 oster }
956 1.80 oster
957 1.7 oster /* we start by assuming the parity will be good, and flee from
958 1.7 oster that notion at the slightest sign of trouble */
959 1.7 oster
960 1.7 oster parity_good = RF_RAID_CLEAN;
961 1.46 oster
962 1.46 oster for (c = 0; c < raidPtr->numCol; c++) {
963 1.46 oster dev_name = &cfgPtr->devnames[0][c][0];
964 1.72 jld ci_label = raidget_component_label(raidPtr, c);
965 1.57 perry
966 1.46 oster if (c == hosed_column) {
967 1.46 oster printf("raid%d: Ignoring %s\n",
968 1.46 oster raidPtr->raidid, dev_name);
969 1.57 perry } else {
970 1.46 oster rf_print_label_status( raidPtr, c, dev_name, ci_label);
971 1.57 perry if (rf_check_label_vitals( raidPtr, 0, c,
972 1.46 oster dev_name, ci_label,
973 1.57 perry serial_number,
974 1.46 oster mod_number )) {
975 1.46 oster fatal_error = 1;
976 1.46 oster }
977 1.46 oster if (ci_label->clean != RF_RAID_CLEAN) {
978 1.46 oster parity_good = RF_RAID_DIRTY;
979 1.6 oster }
980 1.6 oster }
981 1.6 oster }
982 1.57 perry
983 1.7 oster if (fatal_error) {
984 1.7 oster parity_good = RF_RAID_DIRTY;
985 1.7 oster }
986 1.7 oster
987 1.7 oster /* we note the state of the parity */
988 1.7 oster raidPtr->parity_good = parity_good;
989 1.6 oster
990 1.57 perry return(fatal_error);
991 1.6 oster }
992 1.6 oster
993 1.6 oster int
994 1.49 oster rf_add_hot_spare(RF_Raid_t *raidPtr, RF_SingleComponent_t *sparePtr)
995 1.6 oster {
996 1.6 oster RF_RaidDisk_t *disks;
997 1.9 oster RF_DiskQueue_t *spareQueues;
998 1.6 oster int ret;
999 1.6 oster unsigned int bs;
1000 1.6 oster int spare_number;
1001 1.6 oster
1002 1.40 oster ret=0;
1003 1.40 oster
1004 1.6 oster if (raidPtr->numSpare >= RF_MAXSPARE) {
1005 1.6 oster RF_ERRORMSG1("Too many spares: %d\n", raidPtr->numSpare);
1006 1.6 oster return(EINVAL);
1007 1.6 oster }
1008 1.9 oster
1009 1.79 mrg rf_lock_mutex2(raidPtr->mutex);
1010 1.79 mrg while (raidPtr->adding_hot_spare == 1) {
1011 1.79 mrg rf_wait_cond2(raidPtr->adding_hot_spare_cv, raidPtr->mutex);
1012 1.40 oster }
1013 1.79 mrg raidPtr->adding_hot_spare = 1;
1014 1.79 mrg rf_unlock_mutex2(raidPtr->mutex);
1015 1.10 oster
1016 1.6 oster /* the beginning of the spares... */
1017 1.46 oster disks = &raidPtr->Disks[raidPtr->numCol];
1018 1.6 oster
1019 1.6 oster spare_number = raidPtr->numSpare;
1020 1.1 oster
1021 1.7 oster ret = rf_ConfigureDisk(raidPtr, sparePtr->component_name,
1022 1.46 oster &disks[spare_number],
1023 1.6 oster raidPtr->numCol + spare_number);
1024 1.1 oster
1025 1.6 oster if (ret)
1026 1.6 oster goto fail;
1027 1.6 oster if (disks[spare_number].status != rf_ds_optimal) {
1028 1.57 perry RF_ERRORMSG1("Warning: spare disk %s failed TUR\n",
1029 1.7 oster sparePtr->component_name);
1030 1.46 oster rf_close_component(raidPtr, raidPtr->raid_cinfo[raidPtr->numCol+spare_number].ci_vp, 0);
1031 1.6 oster ret=EINVAL;
1032 1.6 oster goto fail;
1033 1.6 oster } else {
1034 1.6 oster disks[spare_number].status = rf_ds_spare;
1035 1.71 sborrill DPRINTF6("Spare Disk %d: dev %s numBlocks %" PRIu64 " blockSize %d (%ld MB)\n",
1036 1.71 sborrill spare_number,
1037 1.6 oster disks[spare_number].devname,
1038 1.71 sborrill disks[spare_number].numBlocks,
1039 1.6 oster disks[spare_number].blockSize,
1040 1.57 perry (long int) disks[spare_number].numBlocks *
1041 1.6 oster disks[spare_number].blockSize / 1024 / 1024);
1042 1.6 oster }
1043 1.57 perry
1044 1.1 oster
1045 1.6 oster /* check sizes and block sizes on the spare disk */
1046 1.6 oster bs = 1 << raidPtr->logBytesPerSector;
1047 1.6 oster if (disks[spare_number].blockSize != bs) {
1048 1.6 oster RF_ERRORMSG3("Block size of %d on spare disk %s is not the same as on other disks (%d)\n", disks[spare_number].blockSize, disks[spare_number].devname, bs);
1049 1.46 oster rf_close_component(raidPtr, raidPtr->raid_cinfo[raidPtr->numCol+spare_number].ci_vp, 0);
1050 1.6 oster ret = EINVAL;
1051 1.6 oster goto fail;
1052 1.6 oster }
1053 1.6 oster if (disks[spare_number].numBlocks < raidPtr->sectorsPerDisk) {
1054 1.71 sborrill RF_ERRORMSG3("Spare disk %s (%d blocks) is too small to serve as a spare (need %" PRIu64 " blocks)\n",
1055 1.57 perry disks[spare_number].devname,
1056 1.57 perry disks[spare_number].blockSize,
1057 1.71 sborrill raidPtr->sectorsPerDisk);
1058 1.46 oster rf_close_component(raidPtr, raidPtr->raid_cinfo[raidPtr->numCol+spare_number].ci_vp, 0);
1059 1.6 oster ret = EINVAL;
1060 1.6 oster goto fail;
1061 1.6 oster } else {
1062 1.57 perry if (disks[spare_number].numBlocks >
1063 1.6 oster raidPtr->sectorsPerDisk) {
1064 1.71 sborrill RF_ERRORMSG3("Warning: truncating spare disk %s to %" PRIu64 " blocks (from %" PRIu64 ")\n",
1065 1.57 perry disks[spare_number].devname,
1066 1.71 sborrill raidPtr->sectorsPerDisk,
1067 1.71 sborrill disks[spare_number].numBlocks);
1068 1.57 perry
1069 1.6 oster disks[spare_number].numBlocks = raidPtr->sectorsPerDisk;
1070 1.6 oster }
1071 1.5 oster }
1072 1.6 oster
1073 1.46 oster spareQueues = &raidPtr->Queues[raidPtr->numCol];
1074 1.15 oster ret = rf_ConfigureDiskQueue( raidPtr, &spareQueues[spare_number],
1075 1.57 perry raidPtr->numCol + spare_number,
1076 1.19 oster raidPtr->qType,
1077 1.9 oster raidPtr->sectorsPerDisk,
1078 1.57 perry raidPtr->Disks[raidPtr->numCol +
1079 1.19 oster spare_number].dev,
1080 1.18 oster raidPtr->maxOutstanding,
1081 1.9 oster &raidPtr->shutdownList,
1082 1.9 oster raidPtr->cleanupList);
1083 1.57 perry
1084 1.79 mrg rf_lock_mutex2(raidPtr->mutex);
1085 1.6 oster raidPtr->numSpare++;
1086 1.79 mrg rf_unlock_mutex2(raidPtr->mutex);
1087 1.6 oster
1088 1.6 oster fail:
1089 1.79 mrg rf_lock_mutex2(raidPtr->mutex);
1090 1.79 mrg raidPtr->adding_hot_spare = 0;
1091 1.79 mrg rf_signal_cond2(raidPtr->adding_hot_spare_cv);
1092 1.79 mrg rf_unlock_mutex2(raidPtr->mutex);
1093 1.40 oster
1094 1.6 oster return(ret);
1095 1.6 oster }
1096 1.6 oster
1097 1.6 oster int
1098 1.49 oster rf_remove_hot_spare(RF_Raid_t *raidPtr, RF_SingleComponent_t *sparePtr)
1099 1.6 oster {
1100 1.83.2.2 tls #if 0
1101 1.6 oster int spare_number;
1102 1.83.2.2 tls #endif
1103 1.6 oster
1104 1.6 oster if (raidPtr->numSpare==0) {
1105 1.6 oster printf("No spares to remove!\n");
1106 1.6 oster return(EINVAL);
1107 1.6 oster }
1108 1.6 oster
1109 1.6 oster return(EINVAL); /* XXX not implemented yet */
1110 1.6 oster #if 0
1111 1.83.2.2 tls spare_number = sparePtr->column;
1112 1.83.2.2 tls
1113 1.6 oster if (spare_number < 0 || spare_number > raidPtr->numSpare) {
1114 1.6 oster return(EINVAL);
1115 1.6 oster }
1116 1.6 oster
1117 1.6 oster /* verify that this spare isn't in use... */
1118 1.6 oster
1119 1.6 oster
1120 1.6 oster
1121 1.6 oster
1122 1.6 oster /* it's gone.. */
1123 1.6 oster
1124 1.6 oster raidPtr->numSpare--;
1125 1.6 oster
1126 1.6 oster return(0);
1127 1.6 oster #endif
1128 1.1 oster }
1129 1.6 oster
1130 1.6 oster
1131 1.25 oster int
1132 1.49 oster rf_delete_component(RF_Raid_t *raidPtr, RF_SingleComponent_t *component)
1133 1.25 oster {
1134 1.83.2.2 tls #if 0
1135 1.25 oster RF_RaidDisk_t *disks;
1136 1.83.2.2 tls #endif
1137 1.25 oster
1138 1.57 perry if ((component->column < 0) ||
1139 1.25 oster (component->column >= raidPtr->numCol)) {
1140 1.25 oster return(EINVAL);
1141 1.25 oster }
1142 1.25 oster
1143 1.83.2.2 tls #if 0
1144 1.46 oster disks = &raidPtr->Disks[component->column];
1145 1.83.2.2 tls #endif
1146 1.25 oster
1147 1.25 oster /* 1. This component must be marked as 'failed' */
1148 1.25 oster
1149 1.25 oster return(EINVAL); /* Not implemented yet. */
1150 1.25 oster }
1151 1.25 oster
1152 1.25 oster int
1153 1.64 christos rf_incorporate_hot_spare(RF_Raid_t *raidPtr,
1154 1.64 christos RF_SingleComponent_t *component)
1155 1.25 oster {
1156 1.25 oster
1157 1.57 perry /* Issues here include how to 'move' this in if there is IO
1158 1.25 oster taking place (e.g. component queues and such) */
1159 1.25 oster
1160 1.25 oster return(EINVAL); /* Not implemented yet. */
1161 1.25 oster }
1162