rf_netbsdkintf.c revision 1.109.2.5 1 1.109.2.5 fvdl /* $NetBSD: rf_netbsdkintf.c,v 1.109.2.5 2001/10/11 00:02:20 fvdl Exp $ */
2 1.1 oster /*-
3 1.1 oster * Copyright (c) 1996, 1997, 1998 The NetBSD Foundation, Inc.
4 1.1 oster * All rights reserved.
5 1.1 oster *
6 1.1 oster * This code is derived from software contributed to The NetBSD Foundation
7 1.1 oster * by Greg Oster; Jason R. Thorpe.
8 1.1 oster *
9 1.1 oster * Redistribution and use in source and binary forms, with or without
10 1.1 oster * modification, are permitted provided that the following conditions
11 1.1 oster * are met:
12 1.1 oster * 1. Redistributions of source code must retain the above copyright
13 1.1 oster * notice, this list of conditions and the following disclaimer.
14 1.1 oster * 2. Redistributions in binary form must reproduce the above copyright
15 1.1 oster * notice, this list of conditions and the following disclaimer in the
16 1.1 oster * documentation and/or other materials provided with the distribution.
17 1.1 oster * 3. All advertising materials mentioning features or use of this software
18 1.1 oster * must display the following acknowledgement:
19 1.1 oster * This product includes software developed by the NetBSD
20 1.1 oster * Foundation, Inc. and its contributors.
21 1.1 oster * 4. Neither the name of The NetBSD Foundation nor the names of its
22 1.1 oster * contributors may be used to endorse or promote products derived
23 1.1 oster * from this software without specific prior written permission.
24 1.1 oster *
25 1.1 oster * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
26 1.1 oster * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
27 1.1 oster * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
28 1.1 oster * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
29 1.1 oster * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
30 1.1 oster * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
31 1.1 oster * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
32 1.1 oster * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
33 1.1 oster * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
34 1.1 oster * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
35 1.1 oster * POSSIBILITY OF SUCH DAMAGE.
36 1.1 oster */
37 1.1 oster
38 1.1 oster /*
39 1.1 oster * Copyright (c) 1988 University of Utah.
40 1.1 oster * Copyright (c) 1990, 1993
41 1.1 oster * The Regents of the University of California. All rights reserved.
42 1.1 oster *
43 1.1 oster * This code is derived from software contributed to Berkeley by
44 1.1 oster * the Systems Programming Group of the University of Utah Computer
45 1.1 oster * Science Department.
46 1.1 oster *
47 1.1 oster * Redistribution and use in source and binary forms, with or without
48 1.1 oster * modification, are permitted provided that the following conditions
49 1.1 oster * are met:
50 1.1 oster * 1. Redistributions of source code must retain the above copyright
51 1.1 oster * notice, this list of conditions and the following disclaimer.
52 1.1 oster * 2. Redistributions in binary form must reproduce the above copyright
53 1.1 oster * notice, this list of conditions and the following disclaimer in the
54 1.1 oster * documentation and/or other materials provided with the distribution.
55 1.1 oster * 3. All advertising materials mentioning features or use of this software
56 1.1 oster * must display the following acknowledgement:
57 1.1 oster * This product includes software developed by the University of
58 1.1 oster * California, Berkeley and its contributors.
59 1.1 oster * 4. Neither the name of the University nor the names of its contributors
60 1.1 oster * may be used to endorse or promote products derived from this software
61 1.1 oster * without specific prior written permission.
62 1.1 oster *
63 1.1 oster * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
64 1.1 oster * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
65 1.1 oster * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
66 1.1 oster * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
67 1.1 oster * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
68 1.1 oster * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
69 1.1 oster * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
70 1.1 oster * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
71 1.1 oster * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
72 1.1 oster * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
73 1.1 oster * SUCH DAMAGE.
74 1.1 oster *
75 1.1 oster * from: Utah $Hdr: cd.c 1.6 90/11/28$
76 1.1 oster *
77 1.1 oster * @(#)cd.c 8.2 (Berkeley) 11/16/93
78 1.1 oster */
79 1.1 oster
80 1.1 oster /*
81 1.1 oster * Copyright (c) 1995 Carnegie-Mellon University.
82 1.1 oster * All rights reserved.
83 1.1 oster *
84 1.1 oster * Authors: Mark Holland, Jim Zelenka
85 1.1 oster *
86 1.1 oster * Permission to use, copy, modify and distribute this software and
87 1.1 oster * its documentation is hereby granted, provided that both the copyright
88 1.1 oster * notice and this permission notice appear in all copies of the
89 1.1 oster * software, derivative works or modified versions, and any portions
90 1.1 oster * thereof, and that both notices appear in supporting documentation.
91 1.1 oster *
92 1.1 oster * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS "AS IS"
93 1.1 oster * CONDITION. CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND
94 1.1 oster * FOR ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE.
95 1.1 oster *
96 1.1 oster * Carnegie Mellon requests users of this software to return to
97 1.1 oster *
98 1.1 oster * Software Distribution Coordinator or Software.Distribution (at) CS.CMU.EDU
99 1.1 oster * School of Computer Science
100 1.1 oster * Carnegie Mellon University
101 1.1 oster * Pittsburgh PA 15213-3890
102 1.1 oster *
103 1.1 oster * any improvements or extensions that they make and grant Carnegie the
104 1.1 oster * rights to redistribute these changes.
105 1.1 oster */
106 1.1 oster
107 1.1 oster /***********************************************************
108 1.1 oster *
109 1.1 oster * rf_kintf.c -- the kernel interface routines for RAIDframe
110 1.1 oster *
111 1.1 oster ***********************************************************/
112 1.1 oster
113 1.1 oster #include <sys/errno.h>
114 1.1 oster #include <sys/param.h>
115 1.1 oster #include <sys/pool.h>
116 1.1 oster #include <sys/queue.h>
117 1.1 oster #include <sys/disk.h>
118 1.1 oster #include <sys/device.h>
119 1.1 oster #include <sys/stat.h>
120 1.1 oster #include <sys/ioctl.h>
121 1.1 oster #include <sys/fcntl.h>
122 1.1 oster #include <sys/systm.h>
123 1.1 oster #include <sys/namei.h>
124 1.1 oster #include <sys/vnode.h>
125 1.1 oster #include <sys/param.h>
126 1.1 oster #include <sys/types.h>
127 1.1 oster #include <machine/types.h>
128 1.1 oster #include <sys/disklabel.h>
129 1.1 oster #include <sys/conf.h>
130 1.1 oster #include <sys/lock.h>
131 1.1 oster #include <sys/buf.h>
132 1.1 oster #include <sys/user.h>
133 1.65 oster #include <sys/reboot.h>
134 1.8 oster
135 1.109.2.5 fvdl #include <dev/raidframe/raidframevar.h>
136 1.109.2.5 fvdl #include <dev/raidframe/raidframeio.h>
137 1.8 oster #include "raid.h"
138 1.62 oster #include "opt_raid_autoconfig.h"
139 1.1 oster #include "rf_raid.h"
140 1.44 oster #include "rf_copyback.h"
141 1.1 oster #include "rf_dag.h"
142 1.1 oster #include "rf_dagflags.h"
143 1.99 oster #include "rf_desc.h"
144 1.1 oster #include "rf_diskqueue.h"
145 1.1 oster #include "rf_acctrace.h"
146 1.1 oster #include "rf_etimer.h"
147 1.1 oster #include "rf_general.h"
148 1.1 oster #include "rf_debugMem.h"
149 1.1 oster #include "rf_kintf.h"
150 1.1 oster #include "rf_options.h"
151 1.1 oster #include "rf_driver.h"
152 1.1 oster #include "rf_parityscan.h"
153 1.1 oster #include "rf_debugprint.h"
154 1.1 oster #include "rf_threadstuff.h"
155 1.1 oster
156 1.9 oster int rf_kdebug_level = 0;
157 1.1 oster
158 1.1 oster #ifdef DEBUG
159 1.1 oster #define db1_printf(a) if (rf_kdebug_level > 0) printf a
160 1.9 oster #else /* DEBUG */
161 1.1 oster #define db1_printf(a) { }
162 1.9 oster #endif /* DEBUG */
163 1.1 oster
164 1.9 oster static RF_Raid_t **raidPtrs; /* global raid device descriptors */
165 1.1 oster
166 1.11 oster RF_DECLARE_STATIC_MUTEX(rf_sparet_wait_mutex)
167 1.1 oster
168 1.10 oster static RF_SparetWait_t *rf_sparet_wait_queue; /* requests to install a
169 1.10 oster * spare table */
170 1.10 oster static RF_SparetWait_t *rf_sparet_resp_queue; /* responses from
171 1.10 oster * installation process */
172 1.10 oster
173 1.1 oster /* prototypes */
174 1.10 oster static void KernelWakeupFunc(struct buf * bp);
175 1.10 oster static void InitBP(struct buf * bp, struct vnode *, unsigned rw_flag,
176 1.109.2.1 thorpej RF_SectorNum_t startSect, RF_SectorCount_t numSect,
177 1.109.2.1 thorpej caddr_t buf, void (*cbFunc) (struct buf *), void *cbArg,
178 1.10 oster int logBytesPerSector, struct proc * b_proc);
179 1.104 oster static void raidinit(RF_Raid_t *);
180 1.1 oster
181 1.104 oster void raidattach(int);
182 1.1 oster
183 1.1 oster /*
184 1.1 oster * Pilfered from ccd.c
185 1.1 oster */
186 1.1 oster
187 1.10 oster struct raidbuf {
188 1.10 oster struct buf rf_buf; /* new I/O buf. MUST BE FIRST!!! */
189 1.10 oster struct buf *rf_obp; /* ptr. to original I/O buf */
190 1.10 oster int rf_flags; /* misc. flags */
191 1.11 oster RF_DiskQueueData_t *req;/* the request that this was part of.. */
192 1.10 oster };
193 1.1 oster
194 1.1 oster
195 1.1 oster #define RAIDGETBUF(rs) pool_get(&(rs)->sc_cbufpool, PR_NOWAIT)
196 1.1 oster #define RAIDPUTBUF(rs, cbp) pool_put(&(rs)->sc_cbufpool, cbp)
197 1.1 oster
198 1.9 oster /* XXX Not sure if the following should be replacing the raidPtrs above,
199 1.53 oster or if it should be used in conjunction with that...
200 1.59 oster */
201 1.1 oster
202 1.10 oster struct raid_softc {
203 1.10 oster int sc_flags; /* flags */
204 1.10 oster int sc_cflags; /* configuration flags */
205 1.11 oster size_t sc_size; /* size of the raid device */
206 1.10 oster char sc_xname[20]; /* XXX external name */
207 1.10 oster struct disk sc_dkdev; /* generic disk device info */
208 1.10 oster struct pool sc_cbufpool; /* component buffer pool */
209 1.47 thorpej struct buf_queue buf_queue; /* used for the device queue */
210 1.10 oster };
211 1.1 oster /* sc_flags */
212 1.1 oster #define RAIDF_INITED 0x01 /* unit has been initialized */
213 1.1 oster #define RAIDF_WLABEL 0x02 /* label area is writable */
214 1.1 oster #define RAIDF_LABELLING 0x04 /* unit is currently being labelled */
215 1.1 oster #define RAIDF_WANTED 0x40 /* someone is waiting to obtain a lock */
216 1.1 oster #define RAIDF_LOCKED 0x80 /* unit is locked */
217 1.1 oster
218 1.1 oster #define raidunit(x) DISKUNIT(x)
219 1.48 oster int numraid = 0;
220 1.1 oster
221 1.20 oster /*
222 1.20 oster * Allow RAIDOUTSTANDING number of simultaneous IO's to this RAID device.
223 1.20 oster * Be aware that large numbers can allow the driver to consume a lot of
224 1.28 oster * kernel memory, especially on writes, and in degraded mode reads.
225 1.28 oster *
226 1.28 oster * For example: with a stripe width of 64 blocks (32k) and 5 disks,
227 1.28 oster * a single 64K write will typically require 64K for the old data,
228 1.28 oster * 64K for the old parity, and 64K for the new parity, for a total
229 1.28 oster * of 192K (if the parity buffer is not re-used immediately).
230 1.109.2.5 fvdl * Even it if is used immediately, that's still 128K, which when multiplied
231 1.28 oster * by say 10 requests, is 1280K, *on top* of the 640K of incoming data.
232 1.28 oster *
233 1.28 oster * Now in degraded mode, for example, a 64K read on the above setup may
234 1.28 oster * require data reconstruction, which will require *all* of the 4 remaining
235 1.28 oster * disks to participate -- 4 * 32K/disk == 128K again.
236 1.20 oster */
237 1.20 oster
238 1.20 oster #ifndef RAIDOUTSTANDING
239 1.28 oster #define RAIDOUTSTANDING 6
240 1.20 oster #endif
241 1.20 oster
242 1.1 oster #define RAIDLABELDEV(dev) \
243 1.1 oster (MAKEDISKDEV(major((dev)), raidunit((dev)), RAW_PART))
244 1.1 oster
245 1.1 oster /* declared here, and made public, for the benefit of KVM stuff.. */
246 1.10 oster struct raid_softc *raid_softc;
247 1.9 oster
248 1.104 oster static void raidgetdefaultlabel(RF_Raid_t *, struct raid_softc *,
249 1.104 oster struct disklabel *);
250 1.109.2.1 thorpej static void raidgetdisklabel(struct vnode *);
251 1.104 oster static void raidmakedisklabel(struct raid_softc *);
252 1.1 oster
253 1.104 oster static int raidlock(struct raid_softc *);
254 1.104 oster static void raidunlock(struct raid_softc *);
255 1.1 oster
256 1.104 oster static void rf_markalldirty(RF_Raid_t *);
257 1.104 oster void rf_mountroot_hook(struct device *);
258 1.48 oster
259 1.48 oster struct device *raidrootdev;
260 1.1 oster
261 1.104 oster void rf_ReconThread(struct rf_recon_req *);
262 1.37 oster /* XXX what I want is: */
263 1.104 oster /*void rf_ReconThread(RF_Raid_t *raidPtr); */
264 1.104 oster void rf_RewriteParityThread(RF_Raid_t *raidPtr);
265 1.104 oster void rf_CopybackThread(RF_Raid_t *raidPtr);
266 1.104 oster void rf_ReconstructInPlaceThread(struct rf_recon_req *);
267 1.104 oster void rf_buildroothack(void *);
268 1.104 oster
269 1.104 oster RF_AutoConfig_t *rf_find_raid_components(void);
270 1.104 oster RF_ConfigSet_t *rf_create_auto_sets(RF_AutoConfig_t *);
271 1.104 oster static int rf_does_it_fit(RF_ConfigSet_t *,RF_AutoConfig_t *);
272 1.104 oster static int rf_reasonable_label(RF_ComponentLabel_t *);
273 1.104 oster void rf_create_configuration(RF_AutoConfig_t *,RF_Config_t *, RF_Raid_t *);
274 1.104 oster int rf_set_autoconfig(RF_Raid_t *, int);
275 1.104 oster int rf_set_rootpartition(RF_Raid_t *, int);
276 1.104 oster void rf_release_all_vps(RF_ConfigSet_t *);
277 1.104 oster void rf_cleanup_config_set(RF_ConfigSet_t *);
278 1.104 oster int rf_have_enough_components(RF_ConfigSet_t *);
279 1.104 oster int rf_auto_config_set(RF_ConfigSet_t *, int *);
280 1.48 oster
281 1.48 oster static int raidautoconfig = 0; /* Debugging, mostly. Set to 0 to not
282 1.62 oster allow autoconfig to take place.
283 1.62 oster Note that this is overridden by having
284 1.62 oster RAID_AUTOCONFIG as an option in the
285 1.62 oster kernel config file. */
286 1.37 oster
287 1.10 oster void
288 1.10 oster raidattach(num)
289 1.9 oster int num;
290 1.1 oster {
291 1.14 oster int raidID;
292 1.14 oster int i, rc;
293 1.48 oster RF_AutoConfig_t *ac_list; /* autoconfig list */
294 1.48 oster RF_ConfigSet_t *config_sets;
295 1.1 oster
296 1.1 oster #ifdef DEBUG
297 1.9 oster printf("raidattach: Asked for %d units\n", num);
298 1.1 oster #endif
299 1.1 oster
300 1.1 oster if (num <= 0) {
301 1.1 oster #ifdef DIAGNOSTIC
302 1.1 oster panic("raidattach: count <= 0");
303 1.1 oster #endif
304 1.1 oster return;
305 1.1 oster }
306 1.9 oster /* This is where all the initialization stuff gets done. */
307 1.1 oster
308 1.50 oster numraid = num;
309 1.50 oster
310 1.1 oster /* Make some space for requested number of units... */
311 1.1 oster
312 1.1 oster RF_Calloc(raidPtrs, num, sizeof(RF_Raid_t *), (RF_Raid_t **));
313 1.1 oster if (raidPtrs == NULL) {
314 1.1 oster panic("raidPtrs is NULL!!\n");
315 1.1 oster }
316 1.14 oster
317 1.14 oster rc = rf_mutex_init(&rf_sparet_wait_mutex);
318 1.14 oster if (rc) {
319 1.14 oster RF_PANIC();
320 1.14 oster }
321 1.14 oster
322 1.14 oster rf_sparet_wait_queue = rf_sparet_resp_queue = NULL;
323 1.14 oster
324 1.58 oster for (i = 0; i < num; i++)
325 1.14 oster raidPtrs[i] = NULL;
326 1.14 oster rc = rf_BootRaidframe();
327 1.14 oster if (rc == 0)
328 1.14 oster printf("Kernelized RAIDframe activated\n");
329 1.14 oster else
330 1.1 oster panic("Serious error booting RAID!!\n");
331 1.14 oster
332 1.9 oster /* put together some datastructures like the CCD device does.. This
333 1.9 oster * lets us lock the device and what-not when it gets opened. */
334 1.1 oster
335 1.1 oster raid_softc = (struct raid_softc *)
336 1.48 oster malloc(num * sizeof(struct raid_softc),
337 1.48 oster M_RAIDFRAME, M_NOWAIT);
338 1.1 oster if (raid_softc == NULL) {
339 1.1 oster printf("WARNING: no memory for RAIDframe driver\n");
340 1.1 oster return;
341 1.1 oster }
342 1.50 oster
343 1.108 thorpej memset(raid_softc, 0, num * sizeof(struct raid_softc));
344 1.34 oster
345 1.48 oster raidrootdev = (struct device *)malloc(num * sizeof(struct device),
346 1.48 oster M_RAIDFRAME, M_NOWAIT);
347 1.48 oster if (raidrootdev == NULL) {
348 1.48 oster panic("No memory for RAIDframe driver!!?!?!\n");
349 1.48 oster }
350 1.48 oster
351 1.9 oster for (raidID = 0; raidID < num; raidID++) {
352 1.47 thorpej BUFQ_INIT(&raid_softc[raidID].buf_queue);
353 1.48 oster
354 1.48 oster raidrootdev[raidID].dv_class = DV_DISK;
355 1.48 oster raidrootdev[raidID].dv_cfdata = NULL;
356 1.48 oster raidrootdev[raidID].dv_unit = raidID;
357 1.48 oster raidrootdev[raidID].dv_parent = NULL;
358 1.48 oster raidrootdev[raidID].dv_flags = 0;
359 1.48 oster sprintf(raidrootdev[raidID].dv_xname,"raid%d",raidID);
360 1.48 oster
361 1.9 oster RF_Calloc(raidPtrs[raidID], 1, sizeof(RF_Raid_t),
362 1.11 oster (RF_Raid_t *));
363 1.9 oster if (raidPtrs[raidID] == NULL) {
364 1.39 oster printf("WARNING: raidPtrs[%d] is NULL\n", raidID);
365 1.39 oster numraid = raidID;
366 1.39 oster return;
367 1.1 oster }
368 1.1 oster }
369 1.48 oster
370 1.62 oster #if RAID_AUTOCONFIG
371 1.62 oster raidautoconfig = 1;
372 1.62 oster #endif
373 1.62 oster
374 1.48 oster if (raidautoconfig) {
375 1.48 oster /* 1. locate all RAID components on the system */
376 1.48 oster
377 1.48 oster #if DEBUG
378 1.48 oster printf("Searching for raid components...\n");
379 1.48 oster #endif
380 1.48 oster ac_list = rf_find_raid_components();
381 1.48 oster
382 1.48 oster /* 2. sort them into their respective sets */
383 1.48 oster
384 1.48 oster config_sets = rf_create_auto_sets(ac_list);
385 1.48 oster
386 1.48 oster /* 3. evaluate each set and configure the valid ones
387 1.48 oster This gets done in rf_buildroothack() */
388 1.48 oster
389 1.48 oster /* schedule the creation of the thread to do the
390 1.48 oster "/ on RAID" stuff */
391 1.48 oster
392 1.48 oster kthread_create(rf_buildroothack,config_sets);
393 1.48 oster
394 1.48 oster #if 0
395 1.48 oster mountroothook_establish(rf_mountroot_hook, &raidrootdev[0]);
396 1.48 oster #endif
397 1.48 oster }
398 1.48 oster
399 1.48 oster }
400 1.48 oster
401 1.48 oster void
402 1.48 oster rf_buildroothack(arg)
403 1.48 oster void *arg;
404 1.48 oster {
405 1.48 oster RF_ConfigSet_t *config_sets = arg;
406 1.48 oster RF_ConfigSet_t *cset;
407 1.48 oster RF_ConfigSet_t *next_cset;
408 1.51 oster int retcode;
409 1.48 oster int raidID;
410 1.51 oster int rootID;
411 1.51 oster int num_root;
412 1.48 oster
413 1.101 oster rootID = 0;
414 1.51 oster num_root = 0;
415 1.48 oster cset = config_sets;
416 1.48 oster while(cset != NULL ) {
417 1.48 oster next_cset = cset->next;
418 1.51 oster if (rf_have_enough_components(cset) &&
419 1.51 oster cset->ac->clabel->autoconfigure==1) {
420 1.51 oster retcode = rf_auto_config_set(cset,&raidID);
421 1.51 oster if (!retcode) {
422 1.51 oster if (cset->rootable) {
423 1.51 oster rootID = raidID;
424 1.51 oster num_root++;
425 1.51 oster }
426 1.51 oster } else {
427 1.51 oster /* The autoconfig didn't work :( */
428 1.51 oster #if DEBUG
429 1.51 oster printf("Autoconfig failed with code %d for raid%d\n", retcode, raidID);
430 1.51 oster #endif
431 1.51 oster rf_release_all_vps(cset);
432 1.48 oster }
433 1.48 oster } else {
434 1.48 oster /* we're not autoconfiguring this set...
435 1.48 oster release the associated resources */
436 1.49 oster rf_release_all_vps(cset);
437 1.48 oster }
438 1.48 oster /* cleanup */
439 1.49 oster rf_cleanup_config_set(cset);
440 1.48 oster cset = next_cset;
441 1.48 oster }
442 1.51 oster if (boothowto & RB_ASKNAME) {
443 1.51 oster /* We don't auto-config... */
444 1.51 oster } else {
445 1.51 oster /* They didn't ask, and we found something bootable... */
446 1.61 oster
447 1.51 oster if (num_root == 1) {
448 1.51 oster booted_device = &raidrootdev[rootID];
449 1.51 oster } else if (num_root > 1) {
450 1.51 oster /* we can't guess.. require the user to answer... */
451 1.51 oster boothowto |= RB_ASKNAME;
452 1.51 oster }
453 1.51 oster }
454 1.1 oster }
455 1.1 oster
456 1.1 oster
457 1.1 oster int
458 1.1 oster raidsize(dev)
459 1.9 oster dev_t dev;
460 1.1 oster {
461 1.109.2.1 thorpej #if 1 /* XXXthorpej */
462 1.109.2.1 thorpej return (-1);
463 1.109.2.1 thorpej #else
464 1.1 oster struct raid_softc *rs;
465 1.1 oster struct disklabel *lp;
466 1.9 oster int part, unit, omask, size;
467 1.1 oster
468 1.1 oster unit = raidunit(dev);
469 1.1 oster if (unit >= numraid)
470 1.1 oster return (-1);
471 1.1 oster rs = &raid_softc[unit];
472 1.1 oster
473 1.1 oster if ((rs->sc_flags & RAIDF_INITED) == 0)
474 1.1 oster return (-1);
475 1.1 oster
476 1.1 oster part = DISKPART(dev);
477 1.1 oster omask = rs->sc_dkdev.dk_openmask & (1 << part);
478 1.1 oster lp = rs->sc_dkdev.dk_label;
479 1.1 oster
480 1.1 oster if (omask == 0 && raidopen(dev, 0, S_IFBLK, curproc))
481 1.1 oster return (-1);
482 1.1 oster
483 1.1 oster if (lp->d_partitions[part].p_fstype != FS_SWAP)
484 1.1 oster size = -1;
485 1.1 oster else
486 1.1 oster size = lp->d_partitions[part].p_size *
487 1.1 oster (lp->d_secsize / DEV_BSIZE);
488 1.1 oster
489 1.1 oster if (omask == 0 && raidclose(dev, 0, S_IFBLK, curproc))
490 1.1 oster return (-1);
491 1.1 oster
492 1.1 oster return (size);
493 1.109.2.1 thorpej #endif
494 1.1 oster }
495 1.1 oster
496 1.1 oster int
497 1.1 oster raiddump(dev, blkno, va, size)
498 1.9 oster dev_t dev;
499 1.1 oster daddr_t blkno;
500 1.1 oster caddr_t va;
501 1.9 oster size_t size;
502 1.1 oster {
503 1.1 oster /* Not implemented. */
504 1.1 oster return ENXIO;
505 1.1 oster }
506 1.109.2.1 thorpej
507 1.1 oster /* ARGSUSED */
508 1.1 oster int
509 1.109.2.1 thorpej raidopen(devvp, flags, fmt, p)
510 1.109.2.1 thorpej struct vnode *devvp;
511 1.9 oster int flags, fmt;
512 1.1 oster struct proc *p;
513 1.1 oster {
514 1.109.2.3 fvdl int unit = raidunit(vdev_rdev(devvp));
515 1.1 oster struct raid_softc *rs;
516 1.1 oster struct disklabel *lp;
517 1.9 oster int part, pmask;
518 1.9 oster int error = 0;
519 1.9 oster
520 1.1 oster if (unit >= numraid)
521 1.1 oster return (ENXIO);
522 1.1 oster rs = &raid_softc[unit];
523 1.109.2.3 fvdl
524 1.109.2.3 fvdl vdev_setprivdata(devvp, rs);
525 1.1 oster
526 1.1 oster if ((error = raidlock(rs)) != 0)
527 1.9 oster return (error);
528 1.1 oster lp = rs->sc_dkdev.dk_label;
529 1.1 oster
530 1.109.2.3 fvdl part = DISKPART(vdev_rdev(devvp));
531 1.1 oster pmask = (1 << part);
532 1.1 oster
533 1.1 oster db1_printf(("Opening raid device number: %d partition: %d\n",
534 1.14 oster unit, part));
535 1.1 oster
536 1.1 oster
537 1.1 oster if ((rs->sc_flags & RAIDF_INITED) &&
538 1.1 oster (rs->sc_dkdev.dk_openmask == 0))
539 1.109.2.1 thorpej raidgetdisklabel(devvp);
540 1.1 oster
541 1.1 oster /* make sure that this partition exists */
542 1.1 oster
543 1.1 oster if (part != RAW_PART) {
544 1.1 oster db1_printf(("Not a raw partition..\n"));
545 1.1 oster if (((rs->sc_flags & RAIDF_INITED) == 0) ||
546 1.1 oster ((part >= lp->d_npartitions) ||
547 1.9 oster (lp->d_partitions[part].p_fstype == FS_UNUSED))) {
548 1.1 oster error = ENXIO;
549 1.1 oster raidunlock(rs);
550 1.1 oster db1_printf(("Bailing out...\n"));
551 1.9 oster return (error);
552 1.1 oster }
553 1.1 oster }
554 1.1 oster /* Prevent this unit from being unconfigured while open. */
555 1.1 oster switch (fmt) {
556 1.1 oster case S_IFCHR:
557 1.1 oster rs->sc_dkdev.dk_copenmask |= pmask;
558 1.1 oster break;
559 1.1 oster
560 1.1 oster case S_IFBLK:
561 1.1 oster rs->sc_dkdev.dk_bopenmask |= pmask;
562 1.1 oster break;
563 1.1 oster }
564 1.13 oster
565 1.13 oster if ((rs->sc_dkdev.dk_openmask == 0) &&
566 1.13 oster ((rs->sc_flags & RAIDF_INITED) != 0)) {
567 1.13 oster /* First one... mark things as dirty... Note that we *MUST*
568 1.13 oster have done a configure before this. I DO NOT WANT TO BE
569 1.13 oster SCRIBBLING TO RANDOM COMPONENTS UNTIL IT'S BEEN DETERMINED
570 1.13 oster THAT THEY BELONG TOGETHER!!!!! */
571 1.13 oster /* XXX should check to see if we're only open for reading
572 1.13 oster here... If so, we needn't do this, but then need some
573 1.13 oster other way of keeping track of what's happened.. */
574 1.13 oster
575 1.13 oster rf_markalldirty( raidPtrs[unit] );
576 1.13 oster }
577 1.13 oster
578 1.13 oster
579 1.1 oster rs->sc_dkdev.dk_openmask =
580 1.1 oster rs->sc_dkdev.dk_copenmask | rs->sc_dkdev.dk_bopenmask;
581 1.1 oster
582 1.1 oster raidunlock(rs);
583 1.1 oster
584 1.9 oster return (error);
585 1.1 oster
586 1.1 oster
587 1.1 oster }
588 1.109.2.1 thorpej
589 1.1 oster /* ARGSUSED */
590 1.1 oster int
591 1.109.2.1 thorpej raidclose(devvp, flags, fmt, p)
592 1.109.2.1 thorpej struct vnode *devvp;
593 1.9 oster int flags, fmt;
594 1.1 oster struct proc *p;
595 1.1 oster {
596 1.109.2.3 fvdl struct raid_softc *rs;
597 1.9 oster int error = 0;
598 1.9 oster int part;
599 1.109.2.3 fvdl dev_t rdev;
600 1.109.2.3 fvdl
601 1.109.2.3 fvdl rs = vdev_privdata(devvp);
602 1.109.2.3 fvdl rdev = vdev_rdev(devvp);
603 1.1 oster
604 1.1 oster if ((error = raidlock(rs)) != 0)
605 1.1 oster return (error);
606 1.1 oster
607 1.109.2.3 fvdl part = DISKPART(rdev);
608 1.1 oster
609 1.1 oster /* ...that much closer to allowing unconfiguration... */
610 1.1 oster switch (fmt) {
611 1.1 oster case S_IFCHR:
612 1.1 oster rs->sc_dkdev.dk_copenmask &= ~(1 << part);
613 1.1 oster break;
614 1.1 oster
615 1.1 oster case S_IFBLK:
616 1.1 oster rs->sc_dkdev.dk_bopenmask &= ~(1 << part);
617 1.1 oster break;
618 1.1 oster }
619 1.1 oster rs->sc_dkdev.dk_openmask =
620 1.1 oster rs->sc_dkdev.dk_copenmask | rs->sc_dkdev.dk_bopenmask;
621 1.13 oster
622 1.13 oster if ((rs->sc_dkdev.dk_openmask == 0) &&
623 1.13 oster ((rs->sc_flags & RAIDF_INITED) != 0)) {
624 1.13 oster /* Last one... device is not unconfigured yet.
625 1.13 oster Device shutdown has taken care of setting the
626 1.13 oster clean bits if RAIDF_INITED is not set
627 1.13 oster mark things as clean... */
628 1.64 oster #if 0
629 1.109.2.1 thorpej printf("Last one on raid%d. Updating status.\n",
630 1.109.2.3 fvdl DISKUNIT(vdev_rdev(devvp)));
631 1.54 oster #endif
632 1.109.2.3 fvdl rf_update_component_labels(raidPtrs[DISKUNIT(rdev)],
633 1.91 oster RF_FINAL_COMPONENT_UPDATE);
634 1.107 oster if (doing_shutdown) {
635 1.107 oster /* last one, and we're going down, so
636 1.107 oster lights out for this RAID set too. */
637 1.109.2.3 fvdl error = rf_Shutdown(raidPtrs[DISKUNIT(rdev)]);
638 1.107 oster pool_destroy(&rs->sc_cbufpool);
639 1.107 oster
640 1.107 oster /* It's no longer initialized... */
641 1.107 oster rs->sc_flags &= ~RAIDF_INITED;
642 1.107 oster
643 1.107 oster /* Detach the disk. */
644 1.107 oster disk_detach(&rs->sc_dkdev);
645 1.107 oster }
646 1.13 oster }
647 1.1 oster
648 1.1 oster raidunlock(rs);
649 1.1 oster return (0);
650 1.1 oster }
651 1.1 oster
652 1.1 oster void
653 1.1 oster raidstrategy(bp)
654 1.74 augustss struct buf *bp;
655 1.1 oster {
656 1.74 augustss int s;
657 1.1 oster
658 1.109.2.3 fvdl unsigned int raidID;
659 1.109.2.3 fvdl struct raid_softc *rs;
660 1.1 oster RF_Raid_t *raidPtr;
661 1.1 oster struct disklabel *lp;
662 1.109.2.3 fvdl int wlabel;
663 1.109.2.3 fvdl dev_t rdev;
664 1.109.2.3 fvdl
665 1.109.2.3 fvdl rdev = vdev_rdev(bp->b_devvp);
666 1.109.2.3 fvdl rs = vdev_privdata(bp->b_devvp);
667 1.109.2.3 fvdl
668 1.109.2.3 fvdl raidID = DISKUNIT(rdev);
669 1.1 oster
670 1.30 oster if ((rs->sc_flags & RAIDF_INITED) ==0) {
671 1.30 oster bp->b_error = ENXIO;
672 1.100 chs bp->b_flags |= B_ERROR;
673 1.30 oster bp->b_resid = bp->b_bcount;
674 1.30 oster biodone(bp);
675 1.1 oster return;
676 1.30 oster }
677 1.1 oster raidPtr = raidPtrs[raidID];
678 1.109.2.1 thorpej if (raidPtr == NULL || raidPtr->valid == 0) {
679 1.1 oster bp->b_error = ENODEV;
680 1.1 oster bp->b_flags |= B_ERROR;
681 1.1 oster bp->b_resid = bp->b_bcount;
682 1.1 oster biodone(bp);
683 1.1 oster return;
684 1.1 oster }
685 1.1 oster if (bp->b_bcount == 0) {
686 1.1 oster db1_printf(("b_bcount is zero..\n"));
687 1.1 oster biodone(bp);
688 1.1 oster return;
689 1.1 oster }
690 1.1 oster lp = rs->sc_dkdev.dk_label;
691 1.1 oster
692 1.1 oster /*
693 1.1 oster * Do bounds checking and adjust transfer. If there's an
694 1.1 oster * error, the bounds check will flag that for us.
695 1.1 oster */
696 1.1 oster
697 1.9 oster wlabel = rs->sc_flags & (RAIDF_WLABEL | RAIDF_LABELLING);
698 1.109.2.3 fvdl if (DISKPART(rdev) != RAW_PART &&
699 1.109.2.1 thorpej (bp->b_flags & B_DKLABEL) == 0) {
700 1.1 oster if (bounds_check_with_label(bp, lp, wlabel) <= 0) {
701 1.1 oster db1_printf(("Bounds check failed!!:%d %d\n",
702 1.9 oster (int) bp->b_blkno, (int) wlabel));
703 1.1 oster biodone(bp);
704 1.1 oster return;
705 1.1 oster }
706 1.109.2.1 thorpej }
707 1.34 oster s = splbio();
708 1.1 oster
709 1.1 oster bp->b_resid = 0;
710 1.34 oster
711 1.34 oster /* stuff it onto our queue */
712 1.47 thorpej BUFQ_INSERT_TAIL(&rs->buf_queue, bp);
713 1.34 oster
714 1.34 oster raidstart(raidPtrs[raidID]);
715 1.34 oster
716 1.1 oster splx(s);
717 1.1 oster }
718 1.109.2.1 thorpej
719 1.1 oster /* ARGSUSED */
720 1.1 oster int
721 1.109.2.1 thorpej raidread(devvp, uio, flags)
722 1.109.2.1 thorpej struct vnode *devvp;
723 1.1 oster struct uio *uio;
724 1.9 oster int flags;
725 1.1 oster {
726 1.109.2.3 fvdl struct raid_softc *rs;
727 1.109.2.3 fvdl
728 1.109.2.3 fvdl rs = vdev_privdata(devvp);
729 1.1 oster
730 1.1 oster if ((rs->sc_flags & RAIDF_INITED) == 0)
731 1.1 oster return (ENXIO);
732 1.1 oster
733 1.109.2.1 thorpej db1_printf(("raidread: unit: %d partition: %d\n",
734 1.109.2.3 fvdl DISKUNIT(vdev_rdev(devvp)), DISKPART(vdev_rdev(devvp))));
735 1.1 oster
736 1.109.2.1 thorpej return (physio(raidstrategy, NULL, devvp, B_READ, minphys, uio));
737 1.1 oster }
738 1.109.2.1 thorpej
739 1.1 oster /* ARGSUSED */
740 1.1 oster int
741 1.109.2.1 thorpej raidwrite(devvp, uio, flags)
742 1.109.2.1 thorpej struct vnode *devvp;
743 1.1 oster struct uio *uio;
744 1.9 oster int flags;
745 1.1 oster {
746 1.109.2.3 fvdl struct raid_softc *rs;
747 1.109.2.3 fvdl
748 1.109.2.3 fvdl rs = vdev_privdata(devvp);
749 1.1 oster
750 1.1 oster if ((rs->sc_flags & RAIDF_INITED) == 0)
751 1.1 oster return (ENXIO);
752 1.109.2.1 thorpej
753 1.1 oster db1_printf(("raidwrite\n"));
754 1.1 oster
755 1.109.2.1 thorpej return (physio(raidstrategy, NULL, devvp, B_WRITE, minphys, uio));
756 1.1 oster }
757 1.1 oster
758 1.1 oster int
759 1.109.2.1 thorpej raidioctl(devvp, cmd, data, flag, p)
760 1.109.2.1 thorpej struct vnode *devvp;
761 1.9 oster u_long cmd;
762 1.1 oster caddr_t data;
763 1.9 oster int flag;
764 1.1 oster struct proc *p;
765 1.1 oster {
766 1.109.2.3 fvdl struct raid_softc *rs;
767 1.9 oster int error = 0;
768 1.9 oster int part, pmask;
769 1.1 oster RF_Config_t *k_cfg, *u_cfg;
770 1.42 oster RF_Raid_t *raidPtr;
771 1.48 oster RF_RaidDisk_t *diskPtr;
772 1.41 oster RF_AccTotals_t *totals;
773 1.41 oster RF_DeviceConfig_t *d_cfg, **ucfgp;
774 1.1 oster u_char *specific_buf;
775 1.11 oster int retcode = 0;
776 1.11 oster int row;
777 1.11 oster int column;
778 1.1 oster struct rf_recon_req *rrcopy, *rr;
779 1.48 oster RF_ComponentLabel_t *clabel;
780 1.11 oster RF_ComponentLabel_t ci_label;
781 1.48 oster RF_ComponentLabel_t **clabel_ptr;
782 1.12 oster RF_SingleComponent_t *sparePtr,*componentPtr;
783 1.12 oster RF_SingleComponent_t hot_spare;
784 1.12 oster RF_SingleComponent_t component;
785 1.83 oster RF_ProgressInfo_t progressInfo, **progressInfoPtr;
786 1.41 oster int i, j, d;
787 1.109.2.3 fvdl dev_t rdev;
788 1.102 fvdl #ifdef __HAVE_OLD_DISKLABEL
789 1.102 fvdl struct disklabel newlabel;
790 1.102 fvdl #endif
791 1.1 oster
792 1.109.2.3 fvdl rdev = vdev_rdev(devvp);
793 1.109.2.3 fvdl rs = vdev_privdata(devvp);
794 1.1 oster
795 1.109.2.3 fvdl raidPtr = raidPtrs[DISKUNIT(rdev)];
796 1.109.2.3 fvdl
797 1.109.2.3 fvdl db1_printf(("raidioctl: 0x%x %d %d %ld\n", rdev,
798 1.109.2.3 fvdl DISKPART(rdev), DISKUNIT(rdev), cmd));
799 1.1 oster
800 1.1 oster /* Must be open for writes for these commands... */
801 1.1 oster switch (cmd) {
802 1.1 oster case DIOCSDINFO:
803 1.1 oster case DIOCWDINFO:
804 1.102 fvdl #ifdef __HAVE_OLD_DISKLABEL
805 1.102 fvdl case ODIOCWDINFO:
806 1.102 fvdl case ODIOCSDINFO:
807 1.102 fvdl #endif
808 1.1 oster case DIOCWLABEL:
809 1.1 oster if ((flag & FWRITE) == 0)
810 1.1 oster return (EBADF);
811 1.1 oster }
812 1.1 oster
813 1.1 oster /* Must be initialized for these... */
814 1.1 oster switch (cmd) {
815 1.1 oster case DIOCGDINFO:
816 1.1 oster case DIOCSDINFO:
817 1.1 oster case DIOCWDINFO:
818 1.102 fvdl #ifdef __HAVE_OLD_DISKLABEL
819 1.102 fvdl case ODIOCGDINFO:
820 1.102 fvdl case ODIOCWDINFO:
821 1.102 fvdl case ODIOCSDINFO:
822 1.102 fvdl case ODIOCGDEFLABEL:
823 1.102 fvdl #endif
824 1.1 oster case DIOCGPART:
825 1.1 oster case DIOCWLABEL:
826 1.1 oster case DIOCGDEFLABEL:
827 1.1 oster case RAIDFRAME_SHUTDOWN:
828 1.1 oster case RAIDFRAME_REWRITEPARITY:
829 1.1 oster case RAIDFRAME_GET_INFO:
830 1.1 oster case RAIDFRAME_RESET_ACCTOTALS:
831 1.1 oster case RAIDFRAME_GET_ACCTOTALS:
832 1.1 oster case RAIDFRAME_KEEP_ACCTOTALS:
833 1.1 oster case RAIDFRAME_GET_SIZE:
834 1.1 oster case RAIDFRAME_FAIL_DISK:
835 1.1 oster case RAIDFRAME_COPYBACK:
836 1.37 oster case RAIDFRAME_CHECK_RECON_STATUS:
837 1.83 oster case RAIDFRAME_CHECK_RECON_STATUS_EXT:
838 1.11 oster case RAIDFRAME_GET_COMPONENT_LABEL:
839 1.11 oster case RAIDFRAME_SET_COMPONENT_LABEL:
840 1.11 oster case RAIDFRAME_ADD_HOT_SPARE:
841 1.11 oster case RAIDFRAME_REMOVE_HOT_SPARE:
842 1.11 oster case RAIDFRAME_INIT_LABELS:
843 1.12 oster case RAIDFRAME_REBUILD_IN_PLACE:
844 1.23 oster case RAIDFRAME_CHECK_PARITY:
845 1.37 oster case RAIDFRAME_CHECK_PARITYREWRITE_STATUS:
846 1.83 oster case RAIDFRAME_CHECK_PARITYREWRITE_STATUS_EXT:
847 1.37 oster case RAIDFRAME_CHECK_COPYBACK_STATUS:
848 1.83 oster case RAIDFRAME_CHECK_COPYBACK_STATUS_EXT:
849 1.48 oster case RAIDFRAME_SET_AUTOCONFIG:
850 1.48 oster case RAIDFRAME_SET_ROOT:
851 1.73 oster case RAIDFRAME_DELETE_COMPONENT:
852 1.73 oster case RAIDFRAME_INCORPORATE_HOT_SPARE:
853 1.1 oster if ((rs->sc_flags & RAIDF_INITED) == 0)
854 1.1 oster return (ENXIO);
855 1.1 oster }
856 1.9 oster
857 1.1 oster switch (cmd) {
858 1.1 oster
859 1.1 oster /* configure the system */
860 1.1 oster case RAIDFRAME_CONFIGURE:
861 1.48 oster
862 1.48 oster if (raidPtr->valid) {
863 1.48 oster /* There is a valid RAID set running on this unit! */
864 1.109.2.1 thorpej printf("raid%d: Device already configured!\n",
865 1.109.2.3 fvdl DISKUNIT(rdev));
866 1.66 oster return(EINVAL);
867 1.48 oster }
868 1.48 oster
869 1.1 oster /* copy-in the configuration information */
870 1.1 oster /* data points to a pointer to the configuration structure */
871 1.43 oster
872 1.9 oster u_cfg = *((RF_Config_t **) data);
873 1.9 oster RF_Malloc(k_cfg, sizeof(RF_Config_t), (RF_Config_t *));
874 1.1 oster if (k_cfg == NULL) {
875 1.9 oster return (ENOMEM);
876 1.1 oster }
877 1.9 oster retcode = copyin((caddr_t) u_cfg, (caddr_t) k_cfg,
878 1.9 oster sizeof(RF_Config_t));
879 1.1 oster if (retcode) {
880 1.33 oster RF_Free(k_cfg, sizeof(RF_Config_t));
881 1.46 oster db1_printf(("rf_ioctl: retcode=%d copyin.1\n",
882 1.9 oster retcode));
883 1.9 oster return (retcode);
884 1.1 oster }
885 1.9 oster /* allocate a buffer for the layout-specific data, and copy it
886 1.9 oster * in */
887 1.1 oster if (k_cfg->layoutSpecificSize) {
888 1.9 oster if (k_cfg->layoutSpecificSize > 10000) {
889 1.1 oster /* sanity check */
890 1.33 oster RF_Free(k_cfg, sizeof(RF_Config_t));
891 1.9 oster return (EINVAL);
892 1.1 oster }
893 1.9 oster RF_Malloc(specific_buf, k_cfg->layoutSpecificSize,
894 1.9 oster (u_char *));
895 1.1 oster if (specific_buf == NULL) {
896 1.9 oster RF_Free(k_cfg, sizeof(RF_Config_t));
897 1.9 oster return (ENOMEM);
898 1.1 oster }
899 1.9 oster retcode = copyin(k_cfg->layoutSpecific,
900 1.9 oster (caddr_t) specific_buf,
901 1.9 oster k_cfg->layoutSpecificSize);
902 1.1 oster if (retcode) {
903 1.33 oster RF_Free(k_cfg, sizeof(RF_Config_t));
904 1.42 oster RF_Free(specific_buf,
905 1.42 oster k_cfg->layoutSpecificSize);
906 1.46 oster db1_printf(("rf_ioctl: retcode=%d copyin.2\n",
907 1.9 oster retcode));
908 1.9 oster return (retcode);
909 1.1 oster }
910 1.9 oster } else
911 1.9 oster specific_buf = NULL;
912 1.1 oster k_cfg->layoutSpecific = specific_buf;
913 1.9 oster
914 1.9 oster /* should do some kind of sanity check on the configuration.
915 1.9 oster * Store the sum of all the bytes in the last byte? */
916 1.1 oster
917 1.1 oster /* configure the system */
918 1.1 oster
919 1.48 oster /*
920 1.48 oster * Clear the entire RAID descriptor, just to make sure
921 1.48 oster * there is no stale data left in the case of a
922 1.48 oster * reconfiguration
923 1.48 oster */
924 1.108 thorpej memset((char *) raidPtr, 0, sizeof(RF_Raid_t));
925 1.109.2.3 fvdl raidPtr->raidid = DISKUNIT(rdev);
926 1.20 oster
927 1.48 oster retcode = rf_Configure(raidPtr, k_cfg, NULL);
928 1.1 oster
929 1.40 oster if (retcode == 0) {
930 1.37 oster
931 1.40 oster /* allow this many simultaneous IO's to
932 1.40 oster this RAID device */
933 1.42 oster raidPtr->openings = RAIDOUTSTANDING;
934 1.48 oster
935 1.59 oster raidinit(raidPtr);
936 1.59 oster rf_markalldirty(raidPtr);
937 1.9 oster }
938 1.1 oster /* free the buffers. No return code here. */
939 1.1 oster if (k_cfg->layoutSpecificSize) {
940 1.9 oster RF_Free(specific_buf, k_cfg->layoutSpecificSize);
941 1.1 oster }
942 1.9 oster RF_Free(k_cfg, sizeof(RF_Config_t));
943 1.9 oster
944 1.9 oster return (retcode);
945 1.9 oster
946 1.9 oster /* shutdown the system */
947 1.1 oster case RAIDFRAME_SHUTDOWN:
948 1.9 oster
949 1.9 oster if ((error = raidlock(rs)) != 0)
950 1.9 oster return (error);
951 1.1 oster
952 1.1 oster /*
953 1.1 oster * If somebody has a partition mounted, we shouldn't
954 1.1 oster * shutdown.
955 1.1 oster */
956 1.1 oster
957 1.109.2.3 fvdl part = DISKPART(rdev);
958 1.1 oster pmask = (1 << part);
959 1.9 oster if ((rs->sc_dkdev.dk_openmask & ~pmask) ||
960 1.9 oster ((rs->sc_dkdev.dk_bopenmask & pmask) &&
961 1.9 oster (rs->sc_dkdev.dk_copenmask & pmask))) {
962 1.9 oster raidunlock(rs);
963 1.9 oster return (EBUSY);
964 1.9 oster }
965 1.11 oster
966 1.42 oster retcode = rf_Shutdown(raidPtr);
967 1.1 oster
968 1.1 oster pool_destroy(&rs->sc_cbufpool);
969 1.1 oster
970 1.1 oster /* It's no longer initialized... */
971 1.1 oster rs->sc_flags &= ~RAIDF_INITED;
972 1.16 oster
973 1.9 oster /* Detach the disk. */
974 1.9 oster disk_detach(&rs->sc_dkdev);
975 1.1 oster
976 1.1 oster raidunlock(rs);
977 1.1 oster
978 1.9 oster return (retcode);
979 1.11 oster case RAIDFRAME_GET_COMPONENT_LABEL:
980 1.48 oster clabel_ptr = (RF_ComponentLabel_t **) data;
981 1.11 oster /* need to read the component label for the disk indicated
982 1.48 oster by row,column in clabel */
983 1.11 oster
984 1.11 oster /* For practice, let's get it directly fromdisk, rather
985 1.11 oster than from the in-core copy */
986 1.48 oster RF_Malloc( clabel, sizeof( RF_ComponentLabel_t ),
987 1.11 oster (RF_ComponentLabel_t *));
988 1.48 oster if (clabel == NULL)
989 1.11 oster return (ENOMEM);
990 1.11 oster
991 1.108 thorpej memset((char *) clabel, 0, sizeof(RF_ComponentLabel_t));
992 1.11 oster
993 1.48 oster retcode = copyin( *clabel_ptr, clabel,
994 1.11 oster sizeof(RF_ComponentLabel_t));
995 1.11 oster
996 1.11 oster if (retcode) {
997 1.48 oster RF_Free( clabel, sizeof(RF_ComponentLabel_t));
998 1.11 oster return(retcode);
999 1.11 oster }
1000 1.11 oster
1001 1.48 oster row = clabel->row;
1002 1.48 oster column = clabel->column;
1003 1.26 oster
1004 1.42 oster if ((row < 0) || (row >= raidPtr->numRow) ||
1005 1.90 oster (column < 0) || (column >= raidPtr->numCol +
1006 1.90 oster raidPtr->numSpare)) {
1007 1.48 oster RF_Free( clabel, sizeof(RF_ComponentLabel_t));
1008 1.26 oster return(EINVAL);
1009 1.11 oster }
1010 1.11 oster
1011 1.109.2.1 thorpej raidread_component_label(raidPtr->raid_cinfo[row][column].ci_vp,
1012 1.109.2.1 thorpej clabel);
1013 1.11 oster
1014 1.48 oster retcode = copyout((caddr_t) clabel,
1015 1.48 oster (caddr_t) *clabel_ptr,
1016 1.11 oster sizeof(RF_ComponentLabel_t));
1017 1.48 oster RF_Free( clabel, sizeof(RF_ComponentLabel_t));
1018 1.11 oster return (retcode);
1019 1.11 oster
1020 1.11 oster case RAIDFRAME_SET_COMPONENT_LABEL:
1021 1.48 oster clabel = (RF_ComponentLabel_t *) data;
1022 1.11 oster
1023 1.11 oster /* XXX check the label for valid stuff... */
1024 1.11 oster /* Note that some things *should not* get modified --
1025 1.11 oster the user should be re-initing the labels instead of
1026 1.11 oster trying to patch things.
1027 1.11 oster */
1028 1.11 oster
1029 1.11 oster printf("Got component label:\n");
1030 1.48 oster printf("Version: %d\n",clabel->version);
1031 1.48 oster printf("Serial Number: %d\n",clabel->serial_number);
1032 1.48 oster printf("Mod counter: %d\n",clabel->mod_counter);
1033 1.48 oster printf("Row: %d\n", clabel->row);
1034 1.48 oster printf("Column: %d\n", clabel->column);
1035 1.48 oster printf("Num Rows: %d\n", clabel->num_rows);
1036 1.48 oster printf("Num Columns: %d\n", clabel->num_columns);
1037 1.48 oster printf("Clean: %d\n", clabel->clean);
1038 1.48 oster printf("Status: %d\n", clabel->status);
1039 1.11 oster
1040 1.48 oster row = clabel->row;
1041 1.48 oster column = clabel->column;
1042 1.12 oster
1043 1.42 oster if ((row < 0) || (row >= raidPtr->numRow) ||
1044 1.42 oster (column < 0) || (column >= raidPtr->numCol)) {
1045 1.12 oster return(EINVAL);
1046 1.11 oster }
1047 1.12 oster
1048 1.12 oster /* XXX this isn't allowed to do anything for now :-) */
1049 1.48 oster
1050 1.48 oster /* XXX and before it is, we need to fill in the rest
1051 1.48 oster of the fields!?!?!?! */
1052 1.12 oster #if 0
1053 1.109.2.1 thorpej raidwrite_component_label(
1054 1.109.2.1 thorpej raidPtr->raid_cinfo[row][column].ci_vp, clabel);
1055 1.12 oster #endif
1056 1.12 oster return (0);
1057 1.11 oster
1058 1.11 oster case RAIDFRAME_INIT_LABELS:
1059 1.48 oster clabel = (RF_ComponentLabel_t *) data;
1060 1.11 oster /*
1061 1.11 oster we only want the serial number from
1062 1.11 oster the above. We get all the rest of the information
1063 1.11 oster from the config that was used to create this RAID
1064 1.11 oster set.
1065 1.11 oster */
1066 1.12 oster
1067 1.48 oster raidPtr->serial_number = clabel->serial_number;
1068 1.51 oster
1069 1.51 oster raid_init_component_label(raidPtr, &ci_label);
1070 1.51 oster ci_label.serial_number = clabel->serial_number;
1071 1.11 oster
1072 1.42 oster for(row=0;row<raidPtr->numRow;row++) {
1073 1.11 oster ci_label.row = row;
1074 1.42 oster for(column=0;column<raidPtr->numCol;column++) {
1075 1.48 oster diskPtr = &raidPtr->Disks[row][column];
1076 1.98 oster if (!RF_DEAD_DISK(diskPtr->status)) {
1077 1.94 oster ci_label.partitionSize = diskPtr->partitionSize;
1078 1.94 oster ci_label.column = column;
1079 1.94 oster raidwrite_component_label(
1080 1.94 oster raidPtr->raid_cinfo[row][column].ci_vp,
1081 1.94 oster &ci_label );
1082 1.94 oster }
1083 1.11 oster }
1084 1.11 oster }
1085 1.11 oster
1086 1.11 oster return (retcode);
1087 1.48 oster case RAIDFRAME_SET_AUTOCONFIG:
1088 1.78 minoura d = rf_set_autoconfig(raidPtr, *(int *) data);
1089 1.48 oster printf("New autoconfig value is: %d\n", d);
1090 1.78 minoura *(int *) data = d;
1091 1.48 oster return (retcode);
1092 1.48 oster
1093 1.48 oster case RAIDFRAME_SET_ROOT:
1094 1.78 minoura d = rf_set_rootpartition(raidPtr, *(int *) data);
1095 1.48 oster printf("New rootpartition value is: %d\n", d);
1096 1.78 minoura *(int *) data = d;
1097 1.48 oster return (retcode);
1098 1.9 oster
1099 1.1 oster /* initialize all parity */
1100 1.1 oster case RAIDFRAME_REWRITEPARITY:
1101 1.1 oster
1102 1.42 oster if (raidPtr->Layout.map->faultsTolerated == 0) {
1103 1.17 oster /* Parity for RAID 0 is trivially correct */
1104 1.42 oster raidPtr->parity_good = RF_RAID_CLEAN;
1105 1.17 oster return(0);
1106 1.17 oster }
1107 1.37 oster
1108 1.42 oster if (raidPtr->parity_rewrite_in_progress == 1) {
1109 1.37 oster /* Re-write is already in progress! */
1110 1.37 oster return(EINVAL);
1111 1.37 oster }
1112 1.27 oster
1113 1.42 oster retcode = RF_CREATE_THREAD(raidPtr->parity_rewrite_thread,
1114 1.37 oster rf_RewriteParityThread,
1115 1.42 oster raidPtr,"raid_parity");
1116 1.9 oster return (retcode);
1117 1.9 oster
1118 1.11 oster
1119 1.11 oster case RAIDFRAME_ADD_HOT_SPARE:
1120 1.12 oster sparePtr = (RF_SingleComponent_t *) data;
1121 1.12 oster memcpy( &hot_spare, sparePtr, sizeof(RF_SingleComponent_t));
1122 1.42 oster retcode = rf_add_hot_spare(raidPtr, &hot_spare);
1123 1.11 oster return(retcode);
1124 1.11 oster
1125 1.11 oster case RAIDFRAME_REMOVE_HOT_SPARE:
1126 1.73 oster return(retcode);
1127 1.73 oster
1128 1.73 oster case RAIDFRAME_DELETE_COMPONENT:
1129 1.73 oster componentPtr = (RF_SingleComponent_t *)data;
1130 1.73 oster memcpy( &component, componentPtr,
1131 1.73 oster sizeof(RF_SingleComponent_t));
1132 1.73 oster retcode = rf_delete_component(raidPtr, &component);
1133 1.73 oster return(retcode);
1134 1.73 oster
1135 1.73 oster case RAIDFRAME_INCORPORATE_HOT_SPARE:
1136 1.73 oster componentPtr = (RF_SingleComponent_t *)data;
1137 1.73 oster memcpy( &component, componentPtr,
1138 1.73 oster sizeof(RF_SingleComponent_t));
1139 1.73 oster retcode = rf_incorporate_hot_spare(raidPtr, &component);
1140 1.11 oster return(retcode);
1141 1.11 oster
1142 1.12 oster case RAIDFRAME_REBUILD_IN_PLACE:
1143 1.24 oster
1144 1.42 oster if (raidPtr->Layout.map->faultsTolerated == 0) {
1145 1.24 oster /* Can't do this on a RAID 0!! */
1146 1.24 oster return(EINVAL);
1147 1.24 oster }
1148 1.24 oster
1149 1.42 oster if (raidPtr->recon_in_progress == 1) {
1150 1.37 oster /* a reconstruct is already in progress! */
1151 1.37 oster return(EINVAL);
1152 1.37 oster }
1153 1.37 oster
1154 1.12 oster componentPtr = (RF_SingleComponent_t *) data;
1155 1.12 oster memcpy( &component, componentPtr,
1156 1.12 oster sizeof(RF_SingleComponent_t));
1157 1.12 oster row = component.row;
1158 1.12 oster column = component.column;
1159 1.12 oster printf("Rebuild: %d %d\n",row, column);
1160 1.42 oster if ((row < 0) || (row >= raidPtr->numRow) ||
1161 1.42 oster (column < 0) || (column >= raidPtr->numCol)) {
1162 1.12 oster return(EINVAL);
1163 1.12 oster }
1164 1.37 oster
1165 1.37 oster RF_Malloc(rrcopy, sizeof(*rrcopy), (struct rf_recon_req *));
1166 1.38 oster if (rrcopy == NULL)
1167 1.38 oster return(ENOMEM);
1168 1.37 oster
1169 1.42 oster rrcopy->raidPtr = (void *) raidPtr;
1170 1.37 oster rrcopy->row = row;
1171 1.37 oster rrcopy->col = column;
1172 1.37 oster
1173 1.42 oster retcode = RF_CREATE_THREAD(raidPtr->recon_thread,
1174 1.37 oster rf_ReconstructInPlaceThread,
1175 1.37 oster rrcopy,"raid_reconip");
1176 1.12 oster return(retcode);
1177 1.12 oster
1178 1.1 oster case RAIDFRAME_GET_INFO:
1179 1.42 oster if (!raidPtr->valid)
1180 1.41 oster return (ENODEV);
1181 1.41 oster ucfgp = (RF_DeviceConfig_t **) data;
1182 1.41 oster RF_Malloc(d_cfg, sizeof(RF_DeviceConfig_t),
1183 1.41 oster (RF_DeviceConfig_t *));
1184 1.41 oster if (d_cfg == NULL)
1185 1.41 oster return (ENOMEM);
1186 1.108 thorpej memset((char *) d_cfg, 0, sizeof(RF_DeviceConfig_t));
1187 1.42 oster d_cfg->rows = raidPtr->numRow;
1188 1.42 oster d_cfg->cols = raidPtr->numCol;
1189 1.42 oster d_cfg->ndevs = raidPtr->numRow * raidPtr->numCol;
1190 1.41 oster if (d_cfg->ndevs >= RF_MAX_DISKS) {
1191 1.41 oster RF_Free(d_cfg, sizeof(RF_DeviceConfig_t));
1192 1.41 oster return (ENOMEM);
1193 1.41 oster }
1194 1.42 oster d_cfg->nspares = raidPtr->numSpare;
1195 1.41 oster if (d_cfg->nspares >= RF_MAX_DISKS) {
1196 1.41 oster RF_Free(d_cfg, sizeof(RF_DeviceConfig_t));
1197 1.41 oster return (ENOMEM);
1198 1.41 oster }
1199 1.42 oster d_cfg->maxqdepth = raidPtr->maxQueueDepth;
1200 1.41 oster d = 0;
1201 1.41 oster for (i = 0; i < d_cfg->rows; i++) {
1202 1.41 oster for (j = 0; j < d_cfg->cols; j++) {
1203 1.42 oster d_cfg->devs[d] = raidPtr->Disks[i][j];
1204 1.41 oster d++;
1205 1.1 oster }
1206 1.41 oster }
1207 1.41 oster for (j = d_cfg->cols, i = 0; i < d_cfg->nspares; i++, j++) {
1208 1.42 oster d_cfg->spares[i] = raidPtr->Disks[0][j];
1209 1.41 oster }
1210 1.41 oster retcode = copyout((caddr_t) d_cfg, (caddr_t) * ucfgp,
1211 1.41 oster sizeof(RF_DeviceConfig_t));
1212 1.41 oster RF_Free(d_cfg, sizeof(RF_DeviceConfig_t));
1213 1.41 oster
1214 1.41 oster return (retcode);
1215 1.9 oster
1216 1.22 oster case RAIDFRAME_CHECK_PARITY:
1217 1.42 oster *(int *) data = raidPtr->parity_good;
1218 1.22 oster return (0);
1219 1.41 oster
1220 1.1 oster case RAIDFRAME_RESET_ACCTOTALS:
1221 1.108 thorpej memset(&raidPtr->acc_totals, 0, sizeof(raidPtr->acc_totals));
1222 1.41 oster return (0);
1223 1.9 oster
1224 1.1 oster case RAIDFRAME_GET_ACCTOTALS:
1225 1.41 oster totals = (RF_AccTotals_t *) data;
1226 1.42 oster *totals = raidPtr->acc_totals;
1227 1.41 oster return (0);
1228 1.9 oster
1229 1.1 oster case RAIDFRAME_KEEP_ACCTOTALS:
1230 1.42 oster raidPtr->keep_acc_totals = *(int *)data;
1231 1.41 oster return (0);
1232 1.9 oster
1233 1.1 oster case RAIDFRAME_GET_SIZE:
1234 1.42 oster *(int *) data = raidPtr->totalSectors;
1235 1.9 oster return (0);
1236 1.1 oster
1237 1.1 oster /* fail a disk & optionally start reconstruction */
1238 1.1 oster case RAIDFRAME_FAIL_DISK:
1239 1.24 oster
1240 1.42 oster if (raidPtr->Layout.map->faultsTolerated == 0) {
1241 1.24 oster /* Can't do this on a RAID 0!! */
1242 1.24 oster return(EINVAL);
1243 1.24 oster }
1244 1.24 oster
1245 1.1 oster rr = (struct rf_recon_req *) data;
1246 1.9 oster
1247 1.42 oster if (rr->row < 0 || rr->row >= raidPtr->numRow
1248 1.42 oster || rr->col < 0 || rr->col >= raidPtr->numCol)
1249 1.9 oster return (EINVAL);
1250 1.1 oster
1251 1.12 oster printf("raid%d: Failing the disk: row: %d col: %d\n",
1252 1.109.2.3 fvdl DISKUNIT(rdev), rr->row, rr->col);
1253 1.9 oster
1254 1.9 oster /* make a copy of the recon request so that we don't rely on
1255 1.9 oster * the user's buffer */
1256 1.1 oster RF_Malloc(rrcopy, sizeof(*rrcopy), (struct rf_recon_req *));
1257 1.38 oster if (rrcopy == NULL)
1258 1.38 oster return(ENOMEM);
1259 1.1 oster bcopy(rr, rrcopy, sizeof(*rr));
1260 1.42 oster rrcopy->raidPtr = (void *) raidPtr;
1261 1.1 oster
1262 1.42 oster retcode = RF_CREATE_THREAD(raidPtr->recon_thread,
1263 1.37 oster rf_ReconThread,
1264 1.37 oster rrcopy,"raid_recon");
1265 1.9 oster return (0);
1266 1.9 oster
1267 1.9 oster /* invoke a copyback operation after recon on whatever disk
1268 1.9 oster * needs it, if any */
1269 1.9 oster case RAIDFRAME_COPYBACK:
1270 1.24 oster
1271 1.42 oster if (raidPtr->Layout.map->faultsTolerated == 0) {
1272 1.24 oster /* This makes no sense on a RAID 0!! */
1273 1.24 oster return(EINVAL);
1274 1.24 oster }
1275 1.24 oster
1276 1.42 oster if (raidPtr->copyback_in_progress == 1) {
1277 1.37 oster /* Copyback is already in progress! */
1278 1.37 oster return(EINVAL);
1279 1.37 oster }
1280 1.27 oster
1281 1.42 oster retcode = RF_CREATE_THREAD(raidPtr->copyback_thread,
1282 1.37 oster rf_CopybackThread,
1283 1.42 oster raidPtr,"raid_copyback");
1284 1.37 oster return (retcode);
1285 1.9 oster
1286 1.1 oster /* return the percentage completion of reconstruction */
1287 1.37 oster case RAIDFRAME_CHECK_RECON_STATUS:
1288 1.42 oster if (raidPtr->Layout.map->faultsTolerated == 0) {
1289 1.71 oster /* This makes no sense on a RAID 0, so tell the
1290 1.71 oster user it's done. */
1291 1.71 oster *(int *) data = 100;
1292 1.71 oster return(0);
1293 1.24 oster }
1294 1.37 oster row = 0; /* XXX we only consider a single row... */
1295 1.42 oster if (raidPtr->status[row] != rf_rs_reconstructing)
1296 1.1 oster *(int *) data = 100;
1297 1.9 oster else
1298 1.42 oster *(int *) data = raidPtr->reconControl[row]->percentComplete;
1299 1.9 oster return (0);
1300 1.83 oster case RAIDFRAME_CHECK_RECON_STATUS_EXT:
1301 1.83 oster progressInfoPtr = (RF_ProgressInfo_t **) data;
1302 1.83 oster row = 0; /* XXX we only consider a single row... */
1303 1.83 oster if (raidPtr->status[row] != rf_rs_reconstructing) {
1304 1.83 oster progressInfo.remaining = 0;
1305 1.83 oster progressInfo.completed = 100;
1306 1.83 oster progressInfo.total = 100;
1307 1.83 oster } else {
1308 1.83 oster progressInfo.total =
1309 1.83 oster raidPtr->reconControl[row]->numRUsTotal;
1310 1.83 oster progressInfo.completed =
1311 1.83 oster raidPtr->reconControl[row]->numRUsComplete;
1312 1.83 oster progressInfo.remaining = progressInfo.total -
1313 1.83 oster progressInfo.completed;
1314 1.83 oster }
1315 1.83 oster retcode = copyout((caddr_t) &progressInfo,
1316 1.83 oster (caddr_t) *progressInfoPtr,
1317 1.83 oster sizeof(RF_ProgressInfo_t));
1318 1.83 oster return (retcode);
1319 1.9 oster
1320 1.37 oster case RAIDFRAME_CHECK_PARITYREWRITE_STATUS:
1321 1.42 oster if (raidPtr->Layout.map->faultsTolerated == 0) {
1322 1.80 oster /* This makes no sense on a RAID 0, so tell the
1323 1.80 oster user it's done. */
1324 1.80 oster *(int *) data = 100;
1325 1.80 oster return(0);
1326 1.37 oster }
1327 1.42 oster if (raidPtr->parity_rewrite_in_progress == 1) {
1328 1.83 oster *(int *) data = 100 *
1329 1.83 oster raidPtr->parity_rewrite_stripes_done /
1330 1.83 oster raidPtr->Layout.numStripe;
1331 1.37 oster } else {
1332 1.37 oster *(int *) data = 100;
1333 1.37 oster }
1334 1.37 oster return (0);
1335 1.37 oster
1336 1.83 oster case RAIDFRAME_CHECK_PARITYREWRITE_STATUS_EXT:
1337 1.83 oster progressInfoPtr = (RF_ProgressInfo_t **) data;
1338 1.83 oster if (raidPtr->parity_rewrite_in_progress == 1) {
1339 1.83 oster progressInfo.total = raidPtr->Layout.numStripe;
1340 1.83 oster progressInfo.completed =
1341 1.83 oster raidPtr->parity_rewrite_stripes_done;
1342 1.83 oster progressInfo.remaining = progressInfo.total -
1343 1.83 oster progressInfo.completed;
1344 1.83 oster } else {
1345 1.83 oster progressInfo.remaining = 0;
1346 1.83 oster progressInfo.completed = 100;
1347 1.83 oster progressInfo.total = 100;
1348 1.83 oster }
1349 1.83 oster retcode = copyout((caddr_t) &progressInfo,
1350 1.83 oster (caddr_t) *progressInfoPtr,
1351 1.83 oster sizeof(RF_ProgressInfo_t));
1352 1.83 oster return (retcode);
1353 1.83 oster
1354 1.37 oster case RAIDFRAME_CHECK_COPYBACK_STATUS:
1355 1.42 oster if (raidPtr->Layout.map->faultsTolerated == 0) {
1356 1.37 oster /* This makes no sense on a RAID 0 */
1357 1.83 oster *(int *) data = 100;
1358 1.83 oster return(0);
1359 1.37 oster }
1360 1.42 oster if (raidPtr->copyback_in_progress == 1) {
1361 1.42 oster *(int *) data = 100 * raidPtr->copyback_stripes_done /
1362 1.42 oster raidPtr->Layout.numStripe;
1363 1.37 oster } else {
1364 1.37 oster *(int *) data = 100;
1365 1.37 oster }
1366 1.37 oster return (0);
1367 1.37 oster
1368 1.83 oster case RAIDFRAME_CHECK_COPYBACK_STATUS_EXT:
1369 1.93 oster progressInfoPtr = (RF_ProgressInfo_t **) data;
1370 1.83 oster if (raidPtr->copyback_in_progress == 1) {
1371 1.83 oster progressInfo.total = raidPtr->Layout.numStripe;
1372 1.83 oster progressInfo.completed =
1373 1.93 oster raidPtr->copyback_stripes_done;
1374 1.83 oster progressInfo.remaining = progressInfo.total -
1375 1.83 oster progressInfo.completed;
1376 1.83 oster } else {
1377 1.83 oster progressInfo.remaining = 0;
1378 1.83 oster progressInfo.completed = 100;
1379 1.83 oster progressInfo.total = 100;
1380 1.83 oster }
1381 1.83 oster retcode = copyout((caddr_t) &progressInfo,
1382 1.83 oster (caddr_t) *progressInfoPtr,
1383 1.83 oster sizeof(RF_ProgressInfo_t));
1384 1.83 oster return (retcode);
1385 1.37 oster
1386 1.9 oster /* the sparetable daemon calls this to wait for the kernel to
1387 1.9 oster * need a spare table. this ioctl does not return until a
1388 1.9 oster * spare table is needed. XXX -- calling mpsleep here in the
1389 1.9 oster * ioctl code is almost certainly wrong and evil. -- XXX XXX
1390 1.9 oster * -- I should either compute the spare table in the kernel,
1391 1.9 oster * or have a different -- XXX XXX -- interface (a different
1392 1.42 oster * character device) for delivering the table -- XXX */
1393 1.1 oster #if 0
1394 1.1 oster case RAIDFRAME_SPARET_WAIT:
1395 1.1 oster RF_LOCK_MUTEX(rf_sparet_wait_mutex);
1396 1.9 oster while (!rf_sparet_wait_queue)
1397 1.9 oster mpsleep(&rf_sparet_wait_queue, (PZERO + 1) | PCATCH, "sparet wait", 0, (void *) simple_lock_addr(rf_sparet_wait_mutex), MS_LOCK_SIMPLE);
1398 1.1 oster waitreq = rf_sparet_wait_queue;
1399 1.1 oster rf_sparet_wait_queue = rf_sparet_wait_queue->next;
1400 1.1 oster RF_UNLOCK_MUTEX(rf_sparet_wait_mutex);
1401 1.9 oster
1402 1.42 oster /* structure assignment */
1403 1.42 oster *((RF_SparetWait_t *) data) = *waitreq;
1404 1.9 oster
1405 1.1 oster RF_Free(waitreq, sizeof(*waitreq));
1406 1.9 oster return (0);
1407 1.9 oster
1408 1.9 oster /* wakes up a process waiting on SPARET_WAIT and puts an error
1409 1.9 oster * code in it that will cause the dameon to exit */
1410 1.1 oster case RAIDFRAME_ABORT_SPARET_WAIT:
1411 1.1 oster RF_Malloc(waitreq, sizeof(*waitreq), (RF_SparetWait_t *));
1412 1.1 oster waitreq->fcol = -1;
1413 1.1 oster RF_LOCK_MUTEX(rf_sparet_wait_mutex);
1414 1.1 oster waitreq->next = rf_sparet_wait_queue;
1415 1.1 oster rf_sparet_wait_queue = waitreq;
1416 1.1 oster RF_UNLOCK_MUTEX(rf_sparet_wait_mutex);
1417 1.1 oster wakeup(&rf_sparet_wait_queue);
1418 1.9 oster return (0);
1419 1.1 oster
1420 1.9 oster /* used by the spare table daemon to deliver a spare table
1421 1.9 oster * into the kernel */
1422 1.1 oster case RAIDFRAME_SEND_SPARET:
1423 1.9 oster
1424 1.1 oster /* install the spare table */
1425 1.42 oster retcode = rf_SetSpareTable(raidPtr, *(void **) data);
1426 1.9 oster
1427 1.9 oster /* respond to the requestor. the return status of the spare
1428 1.9 oster * table installation is passed in the "fcol" field */
1429 1.1 oster RF_Malloc(waitreq, sizeof(*waitreq), (RF_SparetWait_t *));
1430 1.1 oster waitreq->fcol = retcode;
1431 1.1 oster RF_LOCK_MUTEX(rf_sparet_wait_mutex);
1432 1.1 oster waitreq->next = rf_sparet_resp_queue;
1433 1.1 oster rf_sparet_resp_queue = waitreq;
1434 1.1 oster wakeup(&rf_sparet_resp_queue);
1435 1.1 oster RF_UNLOCK_MUTEX(rf_sparet_wait_mutex);
1436 1.9 oster
1437 1.9 oster return (retcode);
1438 1.1 oster #endif
1439 1.1 oster
1440 1.9 oster default:
1441 1.36 oster break; /* fall through to the os-specific code below */
1442 1.1 oster
1443 1.1 oster }
1444 1.9 oster
1445 1.42 oster if (!raidPtr->valid)
1446 1.9 oster return (EINVAL);
1447 1.9 oster
1448 1.1 oster /*
1449 1.1 oster * Add support for "regular" device ioctls here.
1450 1.1 oster */
1451 1.9 oster
1452 1.1 oster switch (cmd) {
1453 1.1 oster case DIOCGDINFO:
1454 1.9 oster *(struct disklabel *) data = *(rs->sc_dkdev.dk_label);
1455 1.1 oster break;
1456 1.102 fvdl #ifdef __HAVE_OLD_DISKLABEL
1457 1.102 fvdl case ODIOCGDINFO:
1458 1.102 fvdl newlabel = *(rs->sc_dkdev.dk_label);
1459 1.102 fvdl if (newlabel.d_npartitions > OLDMAXPARTITIONS)
1460 1.103 fvdl return ENOTTY;
1461 1.102 fvdl memcpy(data, &newlabel, sizeof (struct olddisklabel));
1462 1.102 fvdl break;
1463 1.102 fvdl #endif
1464 1.1 oster
1465 1.1 oster case DIOCGPART:
1466 1.9 oster ((struct partinfo *) data)->disklab = rs->sc_dkdev.dk_label;
1467 1.9 oster ((struct partinfo *) data)->part =
1468 1.109.2.3 fvdl &rs->sc_dkdev.dk_label->d_partitions[DISKPART(rdev)];
1469 1.1 oster break;
1470 1.1 oster
1471 1.1 oster case DIOCWDINFO:
1472 1.1 oster case DIOCSDINFO:
1473 1.102 fvdl #ifdef __HAVE_OLD_DISKLABEL
1474 1.102 fvdl case ODIOCWDINFO:
1475 1.102 fvdl case ODIOCSDINFO:
1476 1.102 fvdl #endif
1477 1.102 fvdl {
1478 1.102 fvdl struct disklabel *lp;
1479 1.102 fvdl #ifdef __HAVE_OLD_DISKLABEL
1480 1.102 fvdl if (cmd == ODIOCSDINFO || cmd == ODIOCWDINFO) {
1481 1.102 fvdl memset(&newlabel, 0, sizeof newlabel);
1482 1.102 fvdl memcpy(&newlabel, data, sizeof (struct olddisklabel));
1483 1.102 fvdl lp = &newlabel;
1484 1.102 fvdl } else
1485 1.102 fvdl #endif
1486 1.102 fvdl lp = (struct disklabel *)data;
1487 1.102 fvdl
1488 1.1 oster if ((error = raidlock(rs)) != 0)
1489 1.1 oster return (error);
1490 1.1 oster
1491 1.1 oster rs->sc_flags |= RAIDF_LABELLING;
1492 1.1 oster
1493 1.1 oster error = setdisklabel(rs->sc_dkdev.dk_label,
1494 1.102 fvdl lp, 0, rs->sc_dkdev.dk_cpulabel);
1495 1.1 oster if (error == 0) {
1496 1.102 fvdl if (cmd == DIOCWDINFO
1497 1.102 fvdl #ifdef __HAVE_OLD_DISKLABEL
1498 1.102 fvdl || cmd == ODIOCWDINFO
1499 1.102 fvdl #endif
1500 1.102 fvdl )
1501 1.109.2.1 thorpej error = writedisklabel(devvp, raidstrategy,
1502 1.109.2.1 thorpej rs->sc_dkdev.dk_label,
1503 1.1 oster rs->sc_dkdev.dk_cpulabel);
1504 1.1 oster }
1505 1.1 oster rs->sc_flags &= ~RAIDF_LABELLING;
1506 1.1 oster
1507 1.1 oster raidunlock(rs);
1508 1.1 oster
1509 1.1 oster if (error)
1510 1.1 oster return (error);
1511 1.1 oster break;
1512 1.102 fvdl }
1513 1.1 oster
1514 1.1 oster case DIOCWLABEL:
1515 1.9 oster if (*(int *) data != 0)
1516 1.1 oster rs->sc_flags |= RAIDF_WLABEL;
1517 1.1 oster else
1518 1.1 oster rs->sc_flags &= ~RAIDF_WLABEL;
1519 1.1 oster break;
1520 1.1 oster
1521 1.1 oster case DIOCGDEFLABEL:
1522 1.102 fvdl raidgetdefaultlabel(raidPtr, rs, (struct disklabel *) data);
1523 1.1 oster break;
1524 1.102 fvdl
1525 1.102 fvdl #ifdef __HAVE_OLD_DISKLABEL
1526 1.102 fvdl case ODIOCGDEFLABEL:
1527 1.102 fvdl raidgetdefaultlabel(raidPtr, rs, &newlabel);
1528 1.102 fvdl if (newlabel.d_npartitions > OLDMAXPARTITIONS)
1529 1.103 fvdl return ENOTTY;
1530 1.102 fvdl memcpy(data, &newlabel, sizeof (struct olddisklabel));
1531 1.102 fvdl break;
1532 1.102 fvdl #endif
1533 1.1 oster
1534 1.1 oster default:
1535 1.39 oster retcode = ENOTTY;
1536 1.1 oster }
1537 1.9 oster return (retcode);
1538 1.1 oster }
1539 1.1 oster
1540 1.1 oster
1541 1.9 oster /* raidinit -- complete the rest of the initialization for the
1542 1.1 oster RAIDframe device. */
1543 1.1 oster
1544 1.1 oster
1545 1.59 oster static void
1546 1.59 oster raidinit(raidPtr)
1547 1.1 oster RF_Raid_t *raidPtr;
1548 1.1 oster {
1549 1.1 oster struct raid_softc *rs;
1550 1.59 oster int unit;
1551 1.1 oster
1552 1.59 oster unit = raidPtr->raidid;
1553 1.1 oster
1554 1.1 oster rs = &raid_softc[unit];
1555 1.1 oster pool_init(&rs->sc_cbufpool, sizeof(struct raidbuf), 0,
1556 1.11 oster 0, 0, "raidpl", 0, NULL, NULL, M_RAIDFRAME);
1557 1.9 oster
1558 1.1 oster
1559 1.1 oster /* XXX should check return code first... */
1560 1.1 oster rs->sc_flags |= RAIDF_INITED;
1561 1.1 oster
1562 1.9 oster sprintf(rs->sc_xname, "raid%d", unit); /* XXX doesn't check bounds. */
1563 1.1 oster
1564 1.9 oster rs->sc_dkdev.dk_name = rs->sc_xname;
1565 1.11 oster
1566 1.1 oster /* disk_attach actually creates space for the CPU disklabel, among
1567 1.9 oster * other things, so it's critical to call this *BEFORE* we try putzing
1568 1.9 oster * with disklabels. */
1569 1.11 oster
1570 1.1 oster disk_attach(&rs->sc_dkdev);
1571 1.1 oster
1572 1.1 oster /* XXX There may be a weird interaction here between this, and
1573 1.9 oster * protectedSectors, as used in RAIDframe. */
1574 1.11 oster
1575 1.9 oster rs->sc_size = raidPtr->totalSectors;
1576 1.11 oster
1577 1.1 oster }
1578 1.1 oster
1579 1.1 oster /* wake up the daemon & tell it to get us a spare table
1580 1.1 oster * XXX
1581 1.9 oster * the entries in the queues should be tagged with the raidPtr
1582 1.11 oster * so that in the extremely rare case that two recons happen at once,
1583 1.11 oster * we know for which device were requesting a spare table
1584 1.1 oster * XXX
1585 1.39 oster *
1586 1.39 oster * XXX This code is not currently used. GO
1587 1.1 oster */
1588 1.9 oster int
1589 1.9 oster rf_GetSpareTableFromDaemon(req)
1590 1.9 oster RF_SparetWait_t *req;
1591 1.9 oster {
1592 1.9 oster int retcode;
1593 1.9 oster
1594 1.9 oster RF_LOCK_MUTEX(rf_sparet_wait_mutex);
1595 1.9 oster req->next = rf_sparet_wait_queue;
1596 1.9 oster rf_sparet_wait_queue = req;
1597 1.9 oster wakeup(&rf_sparet_wait_queue);
1598 1.9 oster
1599 1.9 oster /* mpsleep unlocks the mutex */
1600 1.9 oster while (!rf_sparet_resp_queue) {
1601 1.15 oster tsleep(&rf_sparet_resp_queue, PRIBIO,
1602 1.9 oster "raidframe getsparetable", 0);
1603 1.9 oster }
1604 1.9 oster req = rf_sparet_resp_queue;
1605 1.9 oster rf_sparet_resp_queue = req->next;
1606 1.9 oster RF_UNLOCK_MUTEX(rf_sparet_wait_mutex);
1607 1.9 oster
1608 1.9 oster retcode = req->fcol;
1609 1.9 oster RF_Free(req, sizeof(*req)); /* this is not the same req as we
1610 1.9 oster * alloc'd */
1611 1.9 oster return (retcode);
1612 1.1 oster }
1613 1.39 oster
1614 1.11 oster /* a wrapper around rf_DoAccess that extracts appropriate info from the
1615 1.11 oster * bp & passes it down.
1616 1.1 oster * any calls originating in the kernel must use non-blocking I/O
1617 1.1 oster * do some extra sanity checking to return "appropriate" error values for
1618 1.1 oster * certain conditions (to make some standard utilities work)
1619 1.34 oster *
1620 1.34 oster * Formerly known as: rf_DoAccessKernel
1621 1.1 oster */
1622 1.34 oster void
1623 1.34 oster raidstart(raidPtr)
1624 1.9 oster RF_Raid_t *raidPtr;
1625 1.1 oster {
1626 1.1 oster RF_SectorCount_t num_blocks, pb, sum;
1627 1.1 oster RF_RaidAddr_t raid_addr;
1628 1.9 oster int retcode;
1629 1.1 oster struct partition *pp;
1630 1.9 oster daddr_t blocknum;
1631 1.9 oster int unit;
1632 1.1 oster struct raid_softc *rs;
1633 1.9 oster int do_async;
1634 1.34 oster struct buf *bp;
1635 1.109.2.3 fvdl dev_t rdev;
1636 1.1 oster
1637 1.1 oster unit = raidPtr->raidid;
1638 1.1 oster rs = &raid_softc[unit];
1639 1.109.2.3 fvdl
1640 1.56 oster /* quick check to see if anything has died recently */
1641 1.56 oster RF_LOCK_MUTEX(raidPtr->mutex);
1642 1.56 oster if (raidPtr->numNewFailures > 0) {
1643 1.91 oster rf_update_component_labels(raidPtr,
1644 1.91 oster RF_NORMAL_COMPONENT_UPDATE);
1645 1.56 oster raidPtr->numNewFailures--;
1646 1.56 oster }
1647 1.56 oster RF_UNLOCK_MUTEX(raidPtr->mutex);
1648 1.56 oster
1649 1.34 oster /* Check to see if we're at the limit... */
1650 1.34 oster RF_LOCK_MUTEX(raidPtr->mutex);
1651 1.34 oster while (raidPtr->openings > 0) {
1652 1.34 oster RF_UNLOCK_MUTEX(raidPtr->mutex);
1653 1.34 oster
1654 1.34 oster /* get the next item, if any, from the queue */
1655 1.47 thorpej if ((bp = BUFQ_FIRST(&rs->buf_queue)) == NULL) {
1656 1.34 oster /* nothing more to do */
1657 1.34 oster return;
1658 1.34 oster }
1659 1.109.2.3 fvdl rdev = vdev_rdev(bp->b_devvp);
1660 1.47 thorpej BUFQ_REMOVE(&rs->buf_queue, bp);
1661 1.34 oster
1662 1.34 oster /* Ok, for the bp we have here, bp->b_blkno is relative to the
1663 1.34 oster * partition.. Need to make it absolute to the underlying
1664 1.34 oster * device.. */
1665 1.1 oster
1666 1.34 oster blocknum = bp->b_blkno;
1667 1.109.2.3 fvdl if (DISKPART(rdev) != RAW_PART &&
1668 1.109.2.1 thorpej (bp->b_flags & B_DKLABEL) == 0) {
1669 1.109.2.3 fvdl pp = &rs->sc_dkdev.dk_label->d_partitions[DISKPART(rdev)];
1670 1.34 oster blocknum += pp->p_offset;
1671 1.34 oster }
1672 1.1 oster
1673 1.34 oster db1_printf(("Blocks: %d, %d\n", (int) bp->b_blkno,
1674 1.34 oster (int) blocknum));
1675 1.34 oster
1676 1.34 oster db1_printf(("bp->b_bcount = %d\n", (int) bp->b_bcount));
1677 1.34 oster db1_printf(("bp->b_resid = %d\n", (int) bp->b_resid));
1678 1.34 oster
1679 1.34 oster /* *THIS* is where we adjust what block we're going to...
1680 1.34 oster * but DO NOT TOUCH bp->b_blkno!!! */
1681 1.34 oster raid_addr = blocknum;
1682 1.34 oster
1683 1.34 oster num_blocks = bp->b_bcount >> raidPtr->logBytesPerSector;
1684 1.34 oster pb = (bp->b_bcount & raidPtr->sectorMask) ? 1 : 0;
1685 1.34 oster sum = raid_addr + num_blocks + pb;
1686 1.34 oster if (1 || rf_debugKernelAccess) {
1687 1.34 oster db1_printf(("raid_addr=%d sum=%d num_blocks=%d(+%d) (%d)\n",
1688 1.34 oster (int) raid_addr, (int) sum, (int) num_blocks,
1689 1.34 oster (int) pb, (int) bp->b_resid));
1690 1.34 oster }
1691 1.34 oster if ((sum > raidPtr->totalSectors) || (sum < raid_addr)
1692 1.34 oster || (sum < num_blocks) || (sum < pb)) {
1693 1.34 oster bp->b_error = ENOSPC;
1694 1.34 oster bp->b_flags |= B_ERROR;
1695 1.34 oster bp->b_resid = bp->b_bcount;
1696 1.34 oster biodone(bp);
1697 1.34 oster RF_LOCK_MUTEX(raidPtr->mutex);
1698 1.34 oster continue;
1699 1.34 oster }
1700 1.34 oster /*
1701 1.34 oster * XXX rf_DoAccess() should do this, not just DoAccessKernel()
1702 1.34 oster */
1703 1.34 oster
1704 1.34 oster if (bp->b_bcount & raidPtr->sectorMask) {
1705 1.34 oster bp->b_error = EINVAL;
1706 1.34 oster bp->b_flags |= B_ERROR;
1707 1.34 oster bp->b_resid = bp->b_bcount;
1708 1.34 oster biodone(bp);
1709 1.34 oster RF_LOCK_MUTEX(raidPtr->mutex);
1710 1.34 oster continue;
1711 1.34 oster
1712 1.34 oster }
1713 1.34 oster db1_printf(("Calling DoAccess..\n"));
1714 1.34 oster
1715 1.1 oster
1716 1.34 oster RF_LOCK_MUTEX(raidPtr->mutex);
1717 1.34 oster raidPtr->openings--;
1718 1.34 oster RF_UNLOCK_MUTEX(raidPtr->mutex);
1719 1.1 oster
1720 1.34 oster /*
1721 1.34 oster * Everything is async.
1722 1.34 oster */
1723 1.34 oster do_async = 1;
1724 1.34 oster
1725 1.99 oster disk_busy(&rs->sc_dkdev);
1726 1.99 oster
1727 1.34 oster /* XXX we're still at splbio() here... do we *really*
1728 1.34 oster need to be? */
1729 1.20 oster
1730 1.99 oster /* don't ever condition on bp->b_flags & B_WRITE.
1731 1.99 oster * always condition on B_READ instead */
1732 1.37 oster
1733 1.34 oster retcode = rf_DoAccess(raidPtr, (bp->b_flags & B_READ) ?
1734 1.34 oster RF_IO_TYPE_READ : RF_IO_TYPE_WRITE,
1735 1.34 oster do_async, raid_addr, num_blocks,
1736 1.109 oster bp->b_data, bp, RF_DAG_NONBLOCKING_IO);
1737 1.20 oster
1738 1.20 oster RF_LOCK_MUTEX(raidPtr->mutex);
1739 1.20 oster }
1740 1.34 oster RF_UNLOCK_MUTEX(raidPtr->mutex);
1741 1.34 oster }
1742 1.20 oster
1743 1.109.2.1 thorpej /*
1744 1.109.2.1 thorpej * invoke an I/O from kernel mode. Disk queue should be
1745 1.109.2.1 thorpej * locked upon entry
1746 1.109.2.1 thorpej */
1747 1.9 oster int
1748 1.9 oster rf_DispatchKernelIO(queue, req)
1749 1.9 oster RF_DiskQueue_t *queue;
1750 1.9 oster RF_DiskQueueData_t *req;
1751 1.1 oster {
1752 1.9 oster int op = (req->type == RF_IO_TYPE_READ) ? B_READ : B_WRITE;
1753 1.1 oster struct buf *bp;
1754 1.9 oster struct raidbuf *raidbp = NULL;
1755 1.1 oster struct raid_softc *rs;
1756 1.9 oster int unit;
1757 1.37 oster int s;
1758 1.9 oster
1759 1.37 oster s=0;
1760 1.37 oster /* s = splbio();*/ /* want to test this */
1761 1.1 oster /* XXX along with the vnode, we also need the softc associated with
1762 1.9 oster * this device.. */
1763 1.9 oster
1764 1.1 oster req->queue = queue;
1765 1.9 oster
1766 1.1 oster unit = queue->raidPtr->raidid;
1767 1.1 oster
1768 1.9 oster db1_printf(("DispatchKernelIO unit: %d\n", unit));
1769 1.1 oster
1770 1.9 oster if (unit >= numraid) {
1771 1.9 oster printf("Invalid unit number: %d %d\n", unit, numraid);
1772 1.1 oster panic("Invalid Unit number in rf_DispatchKernelIO\n");
1773 1.1 oster }
1774 1.1 oster rs = &raid_softc[unit];
1775 1.1 oster
1776 1.1 oster bp = req->bp;
1777 1.16 oster #if 1
1778 1.9 oster /* XXX when there is a physical disk failure, someone is passing us a
1779 1.9 oster * buffer that contains old stuff!! Attempt to deal with this problem
1780 1.9 oster * without taking a performance hit... (not sure where the real bug
1781 1.9 oster * is. It's buried in RAIDframe somewhere) :-( GO ) */
1782 1.4 oster
1783 1.4 oster if (bp->b_flags & B_ERROR) {
1784 1.4 oster bp->b_flags &= ~B_ERROR;
1785 1.4 oster }
1786 1.9 oster if (bp->b_error != 0) {
1787 1.4 oster bp->b_error = 0;
1788 1.4 oster }
1789 1.16 oster #endif
1790 1.1 oster raidbp = RAIDGETBUF(rs);
1791 1.1 oster
1792 1.9 oster raidbp->rf_flags = 0; /* XXX not really used anywhere... */
1793 1.1 oster
1794 1.1 oster /*
1795 1.1 oster * context for raidiodone
1796 1.1 oster */
1797 1.1 oster raidbp->rf_obp = bp;
1798 1.1 oster raidbp->req = req;
1799 1.1 oster
1800 1.32 oster LIST_INIT(&raidbp->rf_buf.b_dep);
1801 1.32 oster
1802 1.1 oster switch (req->type) {
1803 1.9 oster case RF_IO_TYPE_NOP: /* used primarily to unlock a locked queue */
1804 1.1 oster /* XXX need to do something extra here.. */
1805 1.9 oster /* I'm leaving this in, as I've never actually seen it used,
1806 1.9 oster * and I'd like folks to report it... GO */
1807 1.1 oster printf(("WAKEUP CALLED\n"));
1808 1.1 oster queue->numOutstanding++;
1809 1.1 oster
1810 1.1 oster /* XXX need to glue the original buffer into this?? */
1811 1.1 oster
1812 1.1 oster KernelWakeupFunc(&raidbp->rf_buf);
1813 1.1 oster break;
1814 1.9 oster
1815 1.1 oster case RF_IO_TYPE_READ:
1816 1.1 oster case RF_IO_TYPE_WRITE:
1817 1.9 oster
1818 1.1 oster if (req->tracerec) {
1819 1.1 oster RF_ETIMER_START(req->tracerec->timer);
1820 1.1 oster }
1821 1.9 oster InitBP(&raidbp->rf_buf, queue->rf_cinfo->ci_vp,
1822 1.109.2.1 thorpej op | bp->b_flags, req->sectorOffset, req->numSector,
1823 1.9 oster req->buf, KernelWakeupFunc, (void *) req,
1824 1.9 oster queue->raidPtr->logBytesPerSector, req->b_proc);
1825 1.1 oster
1826 1.1 oster if (rf_debugKernelAccess) {
1827 1.9 oster db1_printf(("dispatch: bp->b_blkno = %ld\n",
1828 1.9 oster (long) bp->b_blkno));
1829 1.1 oster }
1830 1.1 oster queue->numOutstanding++;
1831 1.1 oster queue->last_deq_sector = req->sectorOffset;
1832 1.9 oster /* acc wouldn't have been let in if there were any pending
1833 1.9 oster * reqs at any other priority */
1834 1.1 oster queue->curPriority = req->priority;
1835 1.1 oster
1836 1.1 oster db1_printf(("Going for %c to unit %d row %d col %d\n",
1837 1.9 oster req->type, unit, queue->row, queue->col));
1838 1.1 oster db1_printf(("sector %d count %d (%d bytes) %d\n",
1839 1.9 oster (int) req->sectorOffset, (int) req->numSector,
1840 1.9 oster (int) (req->numSector <<
1841 1.9 oster queue->raidPtr->logBytesPerSector),
1842 1.9 oster (int) queue->raidPtr->logBytesPerSector));
1843 1.1 oster if ((raidbp->rf_buf.b_flags & B_READ) == 0) {
1844 1.1 oster raidbp->rf_buf.b_vp->v_numoutput++;
1845 1.1 oster }
1846 1.9 oster VOP_STRATEGY(&raidbp->rf_buf);
1847 1.1 oster
1848 1.1 oster break;
1849 1.9 oster
1850 1.1 oster default:
1851 1.1 oster panic("bad req->type in rf_DispatchKernelIO");
1852 1.1 oster }
1853 1.1 oster db1_printf(("Exiting from DispatchKernelIO\n"));
1854 1.37 oster /* splx(s); */ /* want to test this */
1855 1.9 oster return (0);
1856 1.1 oster }
1857 1.9 oster /* this is the callback function associated with a I/O invoked from
1858 1.1 oster kernel code.
1859 1.1 oster */
1860 1.9 oster static void
1861 1.9 oster KernelWakeupFunc(vbp)
1862 1.9 oster struct buf *vbp;
1863 1.9 oster {
1864 1.9 oster RF_DiskQueueData_t *req = NULL;
1865 1.9 oster RF_DiskQueue_t *queue;
1866 1.9 oster struct raidbuf *raidbp = (struct raidbuf *) vbp;
1867 1.9 oster struct buf *bp;
1868 1.9 oster struct raid_softc *rs;
1869 1.9 oster int unit;
1870 1.74 augustss int s;
1871 1.9 oster
1872 1.36 oster s = splbio();
1873 1.9 oster db1_printf(("recovering the request queue:\n"));
1874 1.9 oster req = raidbp->req;
1875 1.1 oster
1876 1.9 oster bp = raidbp->rf_obp;
1877 1.1 oster
1878 1.9 oster queue = (RF_DiskQueue_t *) req->queue;
1879 1.1 oster
1880 1.9 oster if (raidbp->rf_buf.b_flags & B_ERROR) {
1881 1.9 oster bp->b_flags |= B_ERROR;
1882 1.9 oster bp->b_error = raidbp->rf_buf.b_error ?
1883 1.9 oster raidbp->rf_buf.b_error : EIO;
1884 1.9 oster }
1885 1.1 oster
1886 1.9 oster /* XXX methinks this could be wrong... */
1887 1.1 oster #if 1
1888 1.9 oster bp->b_resid = raidbp->rf_buf.b_resid;
1889 1.1 oster #endif
1890 1.1 oster
1891 1.9 oster if (req->tracerec) {
1892 1.9 oster RF_ETIMER_STOP(req->tracerec->timer);
1893 1.9 oster RF_ETIMER_EVAL(req->tracerec->timer);
1894 1.9 oster RF_LOCK_MUTEX(rf_tracing_mutex);
1895 1.9 oster req->tracerec->diskwait_us += RF_ETIMER_VAL_US(req->tracerec->timer);
1896 1.9 oster req->tracerec->phys_io_us += RF_ETIMER_VAL_US(req->tracerec->timer);
1897 1.9 oster req->tracerec->num_phys_ios++;
1898 1.9 oster RF_UNLOCK_MUTEX(rf_tracing_mutex);
1899 1.9 oster }
1900 1.9 oster bp->b_bcount = raidbp->rf_buf.b_bcount; /* XXXX ?? */
1901 1.1 oster
1902 1.9 oster unit = queue->raidPtr->raidid; /* *Much* simpler :-> */
1903 1.1 oster
1904 1.1 oster
1905 1.9 oster /* XXX Ok, let's get aggressive... If B_ERROR is set, let's go
1906 1.9 oster * ballistic, and mark the component as hosed... */
1907 1.36 oster
1908 1.9 oster if (bp->b_flags & B_ERROR) {
1909 1.9 oster /* Mark the disk as dead */
1910 1.9 oster /* but only mark it once... */
1911 1.9 oster if (queue->raidPtr->Disks[queue->row][queue->col].status ==
1912 1.9 oster rf_ds_optimal) {
1913 1.9 oster printf("raid%d: IO Error. Marking %s as failed.\n",
1914 1.9 oster unit, queue->raidPtr->Disks[queue->row][queue->col].devname);
1915 1.9 oster queue->raidPtr->Disks[queue->row][queue->col].status =
1916 1.9 oster rf_ds_failed;
1917 1.9 oster queue->raidPtr->status[queue->row] = rf_rs_degraded;
1918 1.9 oster queue->raidPtr->numFailures++;
1919 1.56 oster queue->raidPtr->numNewFailures++;
1920 1.9 oster } else { /* Disk is already dead... */
1921 1.9 oster /* printf("Disk already marked as dead!\n"); */
1922 1.9 oster }
1923 1.4 oster
1924 1.9 oster }
1925 1.4 oster
1926 1.9 oster rs = &raid_softc[unit];
1927 1.9 oster RAIDPUTBUF(rs, raidbp);
1928 1.9 oster
1929 1.9 oster rf_DiskIOComplete(queue, req, (bp->b_flags & B_ERROR) ? 1 : 0);
1930 1.9 oster (req->CompleteFunc) (req->argument, (bp->b_flags & B_ERROR) ? 1 : 0);
1931 1.1 oster
1932 1.36 oster splx(s);
1933 1.1 oster }
1934 1.1 oster
1935 1.1 oster /*
1936 1.1 oster * initialize a buf structure for doing an I/O in the kernel.
1937 1.1 oster */
1938 1.9 oster static void
1939 1.109.2.1 thorpej InitBP(bp, b_vp, rw_flag, startSect, numSect, buf, cbFunc, cbArg,
1940 1.70 oster logBytesPerSector, b_proc)
1941 1.70 oster struct buf *bp;
1942 1.70 oster struct vnode *b_vp;
1943 1.70 oster unsigned rw_flag;
1944 1.70 oster RF_SectorNum_t startSect;
1945 1.70 oster RF_SectorCount_t numSect;
1946 1.70 oster caddr_t buf;
1947 1.70 oster void (*cbFunc) (struct buf *);
1948 1.70 oster void *cbArg;
1949 1.70 oster int logBytesPerSector;
1950 1.70 oster struct proc *b_proc;
1951 1.9 oster {
1952 1.9 oster /* bp->b_flags = B_PHYS | rw_flag; */
1953 1.9 oster bp->b_flags = B_CALL | rw_flag; /* XXX need B_PHYS here too??? */
1954 1.9 oster bp->b_bcount = numSect << logBytesPerSector;
1955 1.9 oster bp->b_bufsize = bp->b_bcount;
1956 1.9 oster bp->b_error = 0;
1957 1.109.2.1 thorpej bp->b_devvp = b_vp;
1958 1.79 thorpej bp->b_data = buf;
1959 1.9 oster bp->b_blkno = startSect;
1960 1.9 oster bp->b_resid = bp->b_bcount; /* XXX is this right!??!?!! */
1961 1.1 oster if (bp->b_bcount == 0) {
1962 1.1 oster panic("bp->b_bcount is zero in InitBP!!\n");
1963 1.1 oster }
1964 1.9 oster bp->b_proc = b_proc;
1965 1.9 oster bp->b_iodone = cbFunc;
1966 1.9 oster bp->b_vp = b_vp;
1967 1.9 oster
1968 1.1 oster }
1969 1.1 oster
1970 1.1 oster static void
1971 1.1 oster raidgetdefaultlabel(raidPtr, rs, lp)
1972 1.1 oster RF_Raid_t *raidPtr;
1973 1.1 oster struct raid_softc *rs;
1974 1.1 oster struct disklabel *lp;
1975 1.1 oster {
1976 1.1 oster db1_printf(("Building a default label...\n"));
1977 1.108 thorpej memset(lp, 0, sizeof(*lp));
1978 1.1 oster
1979 1.1 oster /* fabricate a label... */
1980 1.1 oster lp->d_secperunit = raidPtr->totalSectors;
1981 1.1 oster lp->d_secsize = raidPtr->bytesPerSector;
1982 1.45 oster lp->d_nsectors = raidPtr->Layout.dataSectorsPerStripe;
1983 1.105 oster lp->d_ntracks = 4 * raidPtr->numCol;
1984 1.45 oster lp->d_ncylinders = raidPtr->totalSectors /
1985 1.45 oster (lp->d_nsectors * lp->d_ntracks);
1986 1.1 oster lp->d_secpercyl = lp->d_ntracks * lp->d_nsectors;
1987 1.1 oster
1988 1.1 oster strncpy(lp->d_typename, "raid", sizeof(lp->d_typename));
1989 1.9 oster lp->d_type = DTYPE_RAID;
1990 1.1 oster strncpy(lp->d_packname, "fictitious", sizeof(lp->d_packname));
1991 1.1 oster lp->d_rpm = 3600;
1992 1.1 oster lp->d_interleave = 1;
1993 1.1 oster lp->d_flags = 0;
1994 1.1 oster
1995 1.1 oster lp->d_partitions[RAW_PART].p_offset = 0;
1996 1.1 oster lp->d_partitions[RAW_PART].p_size = raidPtr->totalSectors;
1997 1.1 oster lp->d_partitions[RAW_PART].p_fstype = FS_UNUSED;
1998 1.1 oster lp->d_npartitions = RAW_PART + 1;
1999 1.1 oster
2000 1.1 oster lp->d_magic = DISKMAGIC;
2001 1.1 oster lp->d_magic2 = DISKMAGIC;
2002 1.1 oster lp->d_checksum = dkcksum(rs->sc_dkdev.dk_label);
2003 1.1 oster
2004 1.1 oster }
2005 1.1 oster /*
2006 1.1 oster * Read the disklabel from the raid device. If one is not present, fake one
2007 1.1 oster * up.
2008 1.1 oster */
2009 1.1 oster static void
2010 1.109.2.1 thorpej raidgetdisklabel(devvp)
2011 1.109.2.1 thorpej struct vnode *devvp;
2012 1.1 oster {
2013 1.109.2.3 fvdl struct raid_softc *rs;
2014 1.9 oster char *errstring;
2015 1.109.2.3 fvdl struct disklabel *lp;
2016 1.109.2.3 fvdl struct cpu_disklabel *clp;
2017 1.1 oster RF_Raid_t *raidPtr;
2018 1.1 oster
2019 1.109.2.3 fvdl rs = vdev_privdata(devvp);
2020 1.109.2.3 fvdl lp = rs->sc_dkdev.dk_label;
2021 1.109.2.3 fvdl clp = rs->sc_dkdev.dk_cpulabel;
2022 1.109.2.3 fvdl
2023 1.1 oster db1_printf(("Getting the disklabel...\n"));
2024 1.1 oster
2025 1.108 thorpej memset(clp, 0, sizeof(*clp));
2026 1.1 oster
2027 1.109.2.3 fvdl raidPtr = raidPtrs[DISKUNIT(vdev_rdev(devvp))];
2028 1.1 oster
2029 1.1 oster raidgetdefaultlabel(raidPtr, rs, lp);
2030 1.1 oster
2031 1.1 oster /*
2032 1.1 oster * Call the generic disklabel extraction routine.
2033 1.1 oster */
2034 1.109.2.1 thorpej errstring = readdisklabel(devvp, raidstrategy,
2035 1.1 oster rs->sc_dkdev.dk_label, rs->sc_dkdev.dk_cpulabel);
2036 1.9 oster if (errstring)
2037 1.1 oster raidmakedisklabel(rs);
2038 1.1 oster else {
2039 1.9 oster int i;
2040 1.1 oster struct partition *pp;
2041 1.1 oster
2042 1.1 oster /*
2043 1.1 oster * Sanity check whether the found disklabel is valid.
2044 1.1 oster *
2045 1.1 oster * This is necessary since total size of the raid device
2046 1.1 oster * may vary when an interleave is changed even though exactly
2047 1.1 oster * same componets are used, and old disklabel may used
2048 1.1 oster * if that is found.
2049 1.1 oster */
2050 1.1 oster if (lp->d_secperunit != rs->sc_size)
2051 1.1 oster printf("WARNING: %s: "
2052 1.1 oster "total sector size in disklabel (%d) != "
2053 1.18 oster "the size of raid (%ld)\n", rs->sc_xname,
2054 1.18 oster lp->d_secperunit, (long) rs->sc_size);
2055 1.1 oster for (i = 0; i < lp->d_npartitions; i++) {
2056 1.1 oster pp = &lp->d_partitions[i];
2057 1.1 oster if (pp->p_offset + pp->p_size > rs->sc_size)
2058 1.1 oster printf("WARNING: %s: end of partition `%c' "
2059 1.18 oster "exceeds the size of raid (%ld)\n",
2060 1.18 oster rs->sc_xname, 'a' + i, (long) rs->sc_size);
2061 1.1 oster }
2062 1.1 oster }
2063 1.1 oster }
2064 1.1 oster /*
2065 1.1 oster * Take care of things one might want to take care of in the event
2066 1.1 oster * that a disklabel isn't present.
2067 1.1 oster */
2068 1.1 oster static void
2069 1.1 oster raidmakedisklabel(rs)
2070 1.1 oster struct raid_softc *rs;
2071 1.1 oster {
2072 1.1 oster struct disklabel *lp = rs->sc_dkdev.dk_label;
2073 1.1 oster db1_printf(("Making a label..\n"));
2074 1.1 oster
2075 1.1 oster /*
2076 1.1 oster * For historical reasons, if there's no disklabel present
2077 1.1 oster * the raw partition must be marked FS_BSDFFS.
2078 1.1 oster */
2079 1.1 oster
2080 1.1 oster lp->d_partitions[RAW_PART].p_fstype = FS_BSDFFS;
2081 1.1 oster
2082 1.1 oster strncpy(lp->d_packname, "default label", sizeof(lp->d_packname));
2083 1.1 oster
2084 1.1 oster lp->d_checksum = dkcksum(lp);
2085 1.1 oster }
2086 1.1 oster /*
2087 1.1 oster * Lookup the provided name in the filesystem. If the file exists,
2088 1.1 oster * is a valid block device, and isn't being used by anyone else,
2089 1.1 oster * set *vpp to the file's vnode.
2090 1.9 oster * You'll find the original of this in ccd.c
2091 1.1 oster */
2092 1.1 oster int
2093 1.1 oster raidlookup(path, p, vpp)
2094 1.9 oster char *path;
2095 1.1 oster struct proc *p;
2096 1.1 oster struct vnode **vpp; /* result */
2097 1.1 oster {
2098 1.1 oster struct nameidata nd;
2099 1.1 oster struct vnode *vp;
2100 1.1 oster struct vattr va;
2101 1.9 oster int error;
2102 1.1 oster
2103 1.1 oster NDINIT(&nd, LOOKUP, FOLLOW, UIO_SYSSPACE, path, p);
2104 1.9 oster if ((error = vn_open(&nd, FREAD | FWRITE, 0)) != 0) {
2105 1.1 oster #ifdef DEBUG
2106 1.9 oster printf("RAIDframe: vn_open returned %d\n", error);
2107 1.1 oster #endif
2108 1.1 oster return (error);
2109 1.1 oster }
2110 1.1 oster vp = nd.ni_vp;
2111 1.1 oster if (vp->v_usecount > 1) {
2112 1.1 oster VOP_UNLOCK(vp, 0);
2113 1.9 oster (void) vn_close(vp, FREAD | FWRITE, p->p_ucred, p);
2114 1.1 oster return (EBUSY);
2115 1.1 oster }
2116 1.1 oster if ((error = VOP_GETATTR(vp, &va, p->p_ucred, p)) != 0) {
2117 1.1 oster VOP_UNLOCK(vp, 0);
2118 1.9 oster (void) vn_close(vp, FREAD | FWRITE, p->p_ucred, p);
2119 1.1 oster return (error);
2120 1.1 oster }
2121 1.1 oster /* XXX: eventually we should handle VREG, too. */
2122 1.1 oster if (va.va_type != VBLK) {
2123 1.1 oster VOP_UNLOCK(vp, 0);
2124 1.9 oster (void) vn_close(vp, FREAD | FWRITE, p->p_ucred, p);
2125 1.1 oster return (ENOTBLK);
2126 1.1 oster }
2127 1.1 oster VOP_UNLOCK(vp, 0);
2128 1.1 oster *vpp = vp;
2129 1.1 oster return (0);
2130 1.1 oster }
2131 1.1 oster /*
2132 1.1 oster * Wait interruptibly for an exclusive lock.
2133 1.1 oster *
2134 1.1 oster * XXX
2135 1.1 oster * Several drivers do this; it should be abstracted and made MP-safe.
2136 1.1 oster * (Hmm... where have we seen this warning before :-> GO )
2137 1.1 oster */
2138 1.1 oster static int
2139 1.1 oster raidlock(rs)
2140 1.1 oster struct raid_softc *rs;
2141 1.1 oster {
2142 1.9 oster int error;
2143 1.1 oster
2144 1.1 oster while ((rs->sc_flags & RAIDF_LOCKED) != 0) {
2145 1.1 oster rs->sc_flags |= RAIDF_WANTED;
2146 1.9 oster if ((error =
2147 1.9 oster tsleep(rs, PRIBIO | PCATCH, "raidlck", 0)) != 0)
2148 1.1 oster return (error);
2149 1.1 oster }
2150 1.1 oster rs->sc_flags |= RAIDF_LOCKED;
2151 1.1 oster return (0);
2152 1.1 oster }
2153 1.1 oster /*
2154 1.1 oster * Unlock and wake up any waiters.
2155 1.1 oster */
2156 1.1 oster static void
2157 1.1 oster raidunlock(rs)
2158 1.1 oster struct raid_softc *rs;
2159 1.1 oster {
2160 1.1 oster
2161 1.1 oster rs->sc_flags &= ~RAIDF_LOCKED;
2162 1.1 oster if ((rs->sc_flags & RAIDF_WANTED) != 0) {
2163 1.1 oster rs->sc_flags &= ~RAIDF_WANTED;
2164 1.1 oster wakeup(rs);
2165 1.1 oster }
2166 1.11 oster }
2167 1.11 oster
2168 1.11 oster
2169 1.11 oster #define RF_COMPONENT_INFO_OFFSET 16384 /* bytes */
2170 1.11 oster #define RF_COMPONENT_INFO_SIZE 1024 /* bytes */
2171 1.11 oster
2172 1.11 oster int
2173 1.109.2.1 thorpej raidmarkclean(struct vnode *b_vp, int mod_counter)
2174 1.12 oster {
2175 1.48 oster RF_ComponentLabel_t clabel;
2176 1.109.2.1 thorpej raidread_component_label(b_vp, &clabel);
2177 1.48 oster clabel.mod_counter = mod_counter;
2178 1.48 oster clabel.clean = RF_RAID_CLEAN;
2179 1.109.2.1 thorpej raidwrite_component_label(b_vp, &clabel);
2180 1.12 oster return(0);
2181 1.12 oster }
2182 1.12 oster
2183 1.12 oster
2184 1.12 oster int
2185 1.109.2.1 thorpej raidmarkdirty(struct vnode *b_vp, int mod_counter)
2186 1.11 oster {
2187 1.48 oster RF_ComponentLabel_t clabel;
2188 1.109.2.1 thorpej raidread_component_label(b_vp, &clabel);
2189 1.48 oster clabel.mod_counter = mod_counter;
2190 1.48 oster clabel.clean = RF_RAID_DIRTY;
2191 1.109.2.1 thorpej raidwrite_component_label(b_vp, &clabel);
2192 1.11 oster return(0);
2193 1.11 oster }
2194 1.11 oster
2195 1.11 oster /* ARGSUSED */
2196 1.11 oster int
2197 1.109.2.1 thorpej raidread_component_label(b_vp, clabel)
2198 1.11 oster struct vnode *b_vp;
2199 1.48 oster RF_ComponentLabel_t *clabel;
2200 1.11 oster {
2201 1.11 oster struct buf *bp;
2202 1.11 oster int error;
2203 1.11 oster
2204 1.11 oster /* XXX should probably ensure that we don't try to do this if
2205 1.11 oster someone has changed rf_protected_sectors. */
2206 1.11 oster
2207 1.98 oster if (b_vp == NULL) {
2208 1.98 oster /* For whatever reason, this component is not valid.
2209 1.98 oster Don't try to read a component label from it. */
2210 1.98 oster return(EINVAL);
2211 1.98 oster }
2212 1.98 oster
2213 1.11 oster /* get a block of the appropriate size... */
2214 1.11 oster bp = geteblk((int)RF_COMPONENT_INFO_SIZE);
2215 1.109.2.1 thorpej bp->b_devvp = b_vp;
2216 1.11 oster
2217 1.11 oster /* get our ducks in a row for the read */
2218 1.11 oster bp->b_blkno = RF_COMPONENT_INFO_OFFSET / DEV_BSIZE;
2219 1.11 oster bp->b_bcount = RF_COMPONENT_INFO_SIZE;
2220 1.100 chs bp->b_flags |= B_READ;
2221 1.11 oster bp->b_resid = RF_COMPONENT_INFO_SIZE / DEV_BSIZE;
2222 1.11 oster
2223 1.109.2.3 fvdl (*bdevsw[major(vdev_rdev(b_vp))].d_strategy)(bp);
2224 1.11 oster
2225 1.11 oster error = biowait(bp);
2226 1.11 oster
2227 1.11 oster if (!error) {
2228 1.79 thorpej memcpy(clabel, bp->b_data,
2229 1.11 oster sizeof(RF_ComponentLabel_t));
2230 1.12 oster #if 0
2231 1.67 oster rf_print_component_label( clabel );
2232 1.11 oster #endif
2233 1.11 oster } else {
2234 1.48 oster #if 0
2235 1.11 oster printf("Failed to read RAID component label!\n");
2236 1.48 oster #endif
2237 1.11 oster }
2238 1.11 oster
2239 1.11 oster brelse(bp);
2240 1.11 oster return(error);
2241 1.11 oster }
2242 1.109.2.1 thorpej
2243 1.11 oster /* ARGSUSED */
2244 1.11 oster int
2245 1.109.2.1 thorpej raidwrite_component_label(b_vp, clabel)
2246 1.11 oster struct vnode *b_vp;
2247 1.48 oster RF_ComponentLabel_t *clabel;
2248 1.11 oster {
2249 1.11 oster struct buf *bp;
2250 1.11 oster int error;
2251 1.11 oster
2252 1.11 oster /* get a block of the appropriate size... */
2253 1.11 oster bp = geteblk((int)RF_COMPONENT_INFO_SIZE);
2254 1.109.2.1 thorpej bgetdevvp(b_vp, bp);
2255 1.11 oster
2256 1.11 oster /* get our ducks in a row for the write */
2257 1.11 oster bp->b_blkno = RF_COMPONENT_INFO_OFFSET / DEV_BSIZE;
2258 1.11 oster bp->b_bcount = RF_COMPONENT_INFO_SIZE;
2259 1.100 chs bp->b_flags |= B_WRITE;
2260 1.11 oster bp->b_resid = RF_COMPONENT_INFO_SIZE / DEV_BSIZE;
2261 1.11 oster
2262 1.79 thorpej memset(bp->b_data, 0, RF_COMPONENT_INFO_SIZE );
2263 1.11 oster
2264 1.79 thorpej memcpy(bp->b_data, clabel, sizeof(RF_ComponentLabel_t));
2265 1.11 oster
2266 1.109.2.4 fvdl (*bdevsw[major(vdev_rdev(b_vp))].d_strategy)(bp);
2267 1.11 oster error = biowait(bp);
2268 1.109.2.1 thorpej bp->b_flags |= B_INVAL;
2269 1.11 oster brelse(bp);
2270 1.11 oster if (error) {
2271 1.48 oster #if 1
2272 1.11 oster printf("Failed to write RAID component info!\n");
2273 1.48 oster #endif
2274 1.11 oster }
2275 1.11 oster
2276 1.11 oster return(error);
2277 1.1 oster }
2278 1.12 oster
2279 1.12 oster void
2280 1.70 oster rf_markalldirty(raidPtr)
2281 1.12 oster RF_Raid_t *raidPtr;
2282 1.12 oster {
2283 1.48 oster RF_ComponentLabel_t clabel;
2284 1.12 oster int r,c;
2285 1.12 oster
2286 1.12 oster raidPtr->mod_counter++;
2287 1.12 oster for (r = 0; r < raidPtr->numRow; r++) {
2288 1.12 oster for (c = 0; c < raidPtr->numCol; c++) {
2289 1.98 oster /* we don't want to touch (at all) a disk that has
2290 1.98 oster failed */
2291 1.98 oster if (!RF_DEAD_DISK(raidPtr->Disks[r][c].status)) {
2292 1.12 oster raidread_component_label(
2293 1.12 oster raidPtr->raid_cinfo[r][c].ci_vp,
2294 1.48 oster &clabel);
2295 1.48 oster if (clabel.status == rf_ds_spared) {
2296 1.12 oster /* XXX do something special...
2297 1.12 oster but whatever you do, don't
2298 1.12 oster try to access it!! */
2299 1.12 oster } else {
2300 1.12 oster #if 0
2301 1.48 oster clabel.status =
2302 1.12 oster raidPtr->Disks[r][c].status;
2303 1.12 oster raidwrite_component_label(
2304 1.12 oster raidPtr->raid_cinfo[r][c].ci_vp,
2305 1.48 oster &clabel);
2306 1.12 oster #endif
2307 1.12 oster raidmarkdirty(
2308 1.12 oster raidPtr->raid_cinfo[r][c].ci_vp,
2309 1.12 oster raidPtr->mod_counter);
2310 1.12 oster }
2311 1.12 oster }
2312 1.12 oster }
2313 1.12 oster }
2314 1.13 oster /* printf("Component labels marked dirty.\n"); */
2315 1.12 oster #if 0
2316 1.12 oster for( c = 0; c < raidPtr->numSpare ; c++) {
2317 1.12 oster sparecol = raidPtr->numCol + c;
2318 1.12 oster if (raidPtr->Disks[r][sparecol].status == rf_ds_used_spare) {
2319 1.12 oster /*
2320 1.12 oster
2321 1.12 oster XXX this is where we get fancy and map this spare
2322 1.12 oster into it's correct spot in the array.
2323 1.12 oster
2324 1.12 oster */
2325 1.12 oster /*
2326 1.12 oster
2327 1.12 oster we claim this disk is "optimal" if it's
2328 1.12 oster rf_ds_used_spare, as that means it should be
2329 1.12 oster directly substitutable for the disk it replaced.
2330 1.12 oster We note that too...
2331 1.12 oster
2332 1.12 oster */
2333 1.12 oster
2334 1.12 oster for(i=0;i<raidPtr->numRow;i++) {
2335 1.12 oster for(j=0;j<raidPtr->numCol;j++) {
2336 1.12 oster if ((raidPtr->Disks[i][j].spareRow ==
2337 1.12 oster r) &&
2338 1.12 oster (raidPtr->Disks[i][j].spareCol ==
2339 1.12 oster sparecol)) {
2340 1.12 oster srow = r;
2341 1.12 oster scol = sparecol;
2342 1.12 oster break;
2343 1.12 oster }
2344 1.12 oster }
2345 1.12 oster }
2346 1.12 oster
2347 1.12 oster raidread_component_label(
2348 1.12 oster raidPtr->raid_cinfo[r][sparecol].ci_vp,
2349 1.48 oster &clabel);
2350 1.12 oster /* make sure status is noted */
2351 1.48 oster clabel.version = RF_COMPONENT_LABEL_VERSION;
2352 1.48 oster clabel.mod_counter = raidPtr->mod_counter;
2353 1.48 oster clabel.serial_number = raidPtr->serial_number;
2354 1.48 oster clabel.row = srow;
2355 1.48 oster clabel.column = scol;
2356 1.48 oster clabel.num_rows = raidPtr->numRow;
2357 1.48 oster clabel.num_columns = raidPtr->numCol;
2358 1.48 oster clabel.clean = RF_RAID_DIRTY; /* changed in a bit*/
2359 1.48 oster clabel.status = rf_ds_optimal;
2360 1.12 oster raidwrite_component_label(
2361 1.12 oster raidPtr->raid_cinfo[r][sparecol].ci_vp,
2362 1.48 oster &clabel);
2363 1.109.2.1 thorpej raidmarkclean(raidPtr->raid_cinfo[r][sparecol].ci_vp);
2364 1.12 oster }
2365 1.12 oster }
2366 1.12 oster #endif
2367 1.12 oster }
2368 1.12 oster
2369 1.13 oster
2370 1.13 oster void
2371 1.91 oster rf_update_component_labels(raidPtr, final)
2372 1.13 oster RF_Raid_t *raidPtr;
2373 1.91 oster int final;
2374 1.13 oster {
2375 1.48 oster RF_ComponentLabel_t clabel;
2376 1.13 oster int sparecol;
2377 1.13 oster int r,c;
2378 1.13 oster int i,j;
2379 1.13 oster int srow, scol;
2380 1.13 oster
2381 1.13 oster srow = -1;
2382 1.13 oster scol = -1;
2383 1.13 oster
2384 1.13 oster /* XXX should do extra checks to make sure things really are clean,
2385 1.13 oster rather than blindly setting the clean bit... */
2386 1.13 oster
2387 1.13 oster raidPtr->mod_counter++;
2388 1.13 oster
2389 1.13 oster for (r = 0; r < raidPtr->numRow; r++) {
2390 1.13 oster for (c = 0; c < raidPtr->numCol; c++) {
2391 1.13 oster if (raidPtr->Disks[r][c].status == rf_ds_optimal) {
2392 1.13 oster raidread_component_label(
2393 1.13 oster raidPtr->raid_cinfo[r][c].ci_vp,
2394 1.48 oster &clabel);
2395 1.13 oster /* make sure status is noted */
2396 1.48 oster clabel.status = rf_ds_optimal;
2397 1.57 oster /* bump the counter */
2398 1.60 oster clabel.mod_counter = raidPtr->mod_counter;
2399 1.57 oster
2400 1.13 oster raidwrite_component_label(
2401 1.13 oster raidPtr->raid_cinfo[r][c].ci_vp,
2402 1.48 oster &clabel);
2403 1.91 oster if (final == RF_FINAL_COMPONENT_UPDATE) {
2404 1.91 oster if (raidPtr->parity_good == RF_RAID_CLEAN) {
2405 1.91 oster raidmarkclean(
2406 1.91 oster raidPtr->raid_cinfo[r][c].ci_vp,
2407 1.91 oster raidPtr->mod_counter);
2408 1.91 oster }
2409 1.91 oster }
2410 1.13 oster }
2411 1.13 oster /* else we don't touch it.. */
2412 1.63 oster }
2413 1.63 oster }
2414 1.63 oster
2415 1.63 oster for( c = 0; c < raidPtr->numSpare ; c++) {
2416 1.63 oster sparecol = raidPtr->numCol + c;
2417 1.109.2.5 fvdl /* Need to ensure that the reconstruct actually completed! */
2418 1.63 oster if (raidPtr->Disks[0][sparecol].status == rf_ds_used_spare) {
2419 1.63 oster /*
2420 1.63 oster
2421 1.63 oster we claim this disk is "optimal" if it's
2422 1.63 oster rf_ds_used_spare, as that means it should be
2423 1.63 oster directly substitutable for the disk it replaced.
2424 1.63 oster We note that too...
2425 1.63 oster
2426 1.63 oster */
2427 1.63 oster
2428 1.63 oster for(i=0;i<raidPtr->numRow;i++) {
2429 1.63 oster for(j=0;j<raidPtr->numCol;j++) {
2430 1.63 oster if ((raidPtr->Disks[i][j].spareRow ==
2431 1.63 oster 0) &&
2432 1.63 oster (raidPtr->Disks[i][j].spareCol ==
2433 1.63 oster sparecol)) {
2434 1.63 oster srow = i;
2435 1.63 oster scol = j;
2436 1.63 oster break;
2437 1.63 oster }
2438 1.63 oster }
2439 1.63 oster }
2440 1.63 oster
2441 1.63 oster /* XXX shouldn't *really* need this... */
2442 1.63 oster raidread_component_label(
2443 1.63 oster raidPtr->raid_cinfo[0][sparecol].ci_vp,
2444 1.63 oster &clabel);
2445 1.63 oster /* make sure status is noted */
2446 1.63 oster
2447 1.63 oster raid_init_component_label(raidPtr, &clabel);
2448 1.63 oster
2449 1.63 oster clabel.mod_counter = raidPtr->mod_counter;
2450 1.63 oster clabel.row = srow;
2451 1.63 oster clabel.column = scol;
2452 1.63 oster clabel.status = rf_ds_optimal;
2453 1.63 oster
2454 1.63 oster raidwrite_component_label(
2455 1.63 oster raidPtr->raid_cinfo[0][sparecol].ci_vp,
2456 1.63 oster &clabel);
2457 1.91 oster if (final == RF_FINAL_COMPONENT_UPDATE) {
2458 1.13 oster if (raidPtr->parity_good == RF_RAID_CLEAN) {
2459 1.109.2.1 thorpej raidmarkclean(
2460 1.109.2.1 thorpej raidPtr->raid_cinfo[0][sparecol].ci_vp,
2461 1.109.2.1 thorpej raidPtr->mod_counter);
2462 1.13 oster }
2463 1.13 oster }
2464 1.13 oster }
2465 1.13 oster }
2466 1.13 oster /* printf("Component labels updated\n"); */
2467 1.68 oster }
2468 1.68 oster
2469 1.68 oster void
2470 1.70 oster rf_close_component(raidPtr, vp, auto_configured)
2471 1.69 oster RF_Raid_t *raidPtr;
2472 1.69 oster struct vnode *vp;
2473 1.69 oster int auto_configured;
2474 1.69 oster {
2475 1.69 oster struct proc *p;
2476 1.69 oster
2477 1.69 oster p = raidPtr->engine_thread;
2478 1.69 oster
2479 1.69 oster if (vp != NULL) {
2480 1.69 oster if (auto_configured == 1) {
2481 1.96 oster vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
2482 1.97 oster VOP_CLOSE(vp, FREAD | FWRITE, NOCRED, 0);
2483 1.69 oster vput(vp);
2484 1.69 oster
2485 1.69 oster } else {
2486 1.69 oster (void) vn_close(vp, FREAD | FWRITE, p->p_ucred, p);
2487 1.69 oster }
2488 1.69 oster } else {
2489 1.69 oster printf("vnode was NULL\n");
2490 1.69 oster }
2491 1.69 oster }
2492 1.69 oster
2493 1.69 oster
2494 1.69 oster void
2495 1.70 oster rf_UnconfigureVnodes(raidPtr)
2496 1.68 oster RF_Raid_t *raidPtr;
2497 1.68 oster {
2498 1.68 oster int r,c;
2499 1.68 oster struct proc *p;
2500 1.69 oster struct vnode *vp;
2501 1.69 oster int acd;
2502 1.68 oster
2503 1.68 oster
2504 1.68 oster /* We take this opportunity to close the vnodes like we should.. */
2505 1.68 oster
2506 1.68 oster p = raidPtr->engine_thread;
2507 1.68 oster
2508 1.68 oster for (r = 0; r < raidPtr->numRow; r++) {
2509 1.68 oster for (c = 0; c < raidPtr->numCol; c++) {
2510 1.68 oster printf("Closing vnode for row: %d col: %d\n", r, c);
2511 1.69 oster vp = raidPtr->raid_cinfo[r][c].ci_vp;
2512 1.69 oster acd = raidPtr->Disks[r][c].auto_configured;
2513 1.69 oster rf_close_component(raidPtr, vp, acd);
2514 1.69 oster raidPtr->raid_cinfo[r][c].ci_vp = NULL;
2515 1.69 oster raidPtr->Disks[r][c].auto_configured = 0;
2516 1.68 oster }
2517 1.68 oster }
2518 1.68 oster for (r = 0; r < raidPtr->numSpare; r++) {
2519 1.68 oster printf("Closing vnode for spare: %d\n", r);
2520 1.69 oster vp = raidPtr->raid_cinfo[0][raidPtr->numCol + r].ci_vp;
2521 1.69 oster acd = raidPtr->Disks[0][raidPtr->numCol + r].auto_configured;
2522 1.69 oster rf_close_component(raidPtr, vp, acd);
2523 1.69 oster raidPtr->raid_cinfo[0][raidPtr->numCol + r].ci_vp = NULL;
2524 1.69 oster raidPtr->Disks[0][raidPtr->numCol + r].auto_configured = 0;
2525 1.68 oster }
2526 1.37 oster }
2527 1.63 oster
2528 1.37 oster
2529 1.37 oster void
2530 1.37 oster rf_ReconThread(req)
2531 1.37 oster struct rf_recon_req *req;
2532 1.37 oster {
2533 1.37 oster int s;
2534 1.37 oster RF_Raid_t *raidPtr;
2535 1.37 oster
2536 1.37 oster s = splbio();
2537 1.37 oster raidPtr = (RF_Raid_t *) req->raidPtr;
2538 1.37 oster raidPtr->recon_in_progress = 1;
2539 1.37 oster
2540 1.37 oster rf_FailDisk((RF_Raid_t *) req->raidPtr, req->row, req->col,
2541 1.37 oster ((req->flags & RF_FDFLAGS_RECON) ? 1 : 0));
2542 1.37 oster
2543 1.37 oster /* XXX get rid of this! we don't need it at all.. */
2544 1.37 oster RF_Free(req, sizeof(*req));
2545 1.37 oster
2546 1.37 oster raidPtr->recon_in_progress = 0;
2547 1.37 oster splx(s);
2548 1.37 oster
2549 1.37 oster /* That's all... */
2550 1.37 oster kthread_exit(0); /* does not return */
2551 1.37 oster }
2552 1.37 oster
2553 1.37 oster void
2554 1.37 oster rf_RewriteParityThread(raidPtr)
2555 1.37 oster RF_Raid_t *raidPtr;
2556 1.37 oster {
2557 1.37 oster int retcode;
2558 1.37 oster int s;
2559 1.37 oster
2560 1.37 oster raidPtr->parity_rewrite_in_progress = 1;
2561 1.37 oster s = splbio();
2562 1.37 oster retcode = rf_RewriteParity(raidPtr);
2563 1.37 oster splx(s);
2564 1.37 oster if (retcode) {
2565 1.37 oster printf("raid%d: Error re-writing parity!\n",raidPtr->raidid);
2566 1.37 oster } else {
2567 1.37 oster /* set the clean bit! If we shutdown correctly,
2568 1.37 oster the clean bit on each component label will get
2569 1.37 oster set */
2570 1.37 oster raidPtr->parity_good = RF_RAID_CLEAN;
2571 1.37 oster }
2572 1.37 oster raidPtr->parity_rewrite_in_progress = 0;
2573 1.85 oster
2574 1.85 oster /* Anyone waiting for us to stop? If so, inform them... */
2575 1.85 oster if (raidPtr->waitShutdown) {
2576 1.85 oster wakeup(&raidPtr->parity_rewrite_in_progress);
2577 1.85 oster }
2578 1.37 oster
2579 1.37 oster /* That's all... */
2580 1.37 oster kthread_exit(0); /* does not return */
2581 1.37 oster }
2582 1.37 oster
2583 1.37 oster
2584 1.37 oster void
2585 1.37 oster rf_CopybackThread(raidPtr)
2586 1.37 oster RF_Raid_t *raidPtr;
2587 1.37 oster {
2588 1.37 oster int s;
2589 1.37 oster
2590 1.37 oster raidPtr->copyback_in_progress = 1;
2591 1.37 oster s = splbio();
2592 1.37 oster rf_CopybackReconstructedData(raidPtr);
2593 1.37 oster splx(s);
2594 1.37 oster raidPtr->copyback_in_progress = 0;
2595 1.37 oster
2596 1.37 oster /* That's all... */
2597 1.37 oster kthread_exit(0); /* does not return */
2598 1.37 oster }
2599 1.37 oster
2600 1.37 oster
2601 1.37 oster void
2602 1.37 oster rf_ReconstructInPlaceThread(req)
2603 1.37 oster struct rf_recon_req *req;
2604 1.37 oster {
2605 1.37 oster int retcode;
2606 1.37 oster int s;
2607 1.37 oster RF_Raid_t *raidPtr;
2608 1.37 oster
2609 1.37 oster s = splbio();
2610 1.37 oster raidPtr = req->raidPtr;
2611 1.37 oster raidPtr->recon_in_progress = 1;
2612 1.37 oster retcode = rf_ReconstructInPlace(raidPtr, req->row, req->col);
2613 1.37 oster RF_Free(req, sizeof(*req));
2614 1.37 oster raidPtr->recon_in_progress = 0;
2615 1.37 oster splx(s);
2616 1.37 oster
2617 1.37 oster /* That's all... */
2618 1.37 oster kthread_exit(0); /* does not return */
2619 1.48 oster }
2620 1.48 oster
2621 1.48 oster void
2622 1.48 oster rf_mountroot_hook(dev)
2623 1.48 oster struct device *dev;
2624 1.48 oster {
2625 1.59 oster
2626 1.48 oster }
2627 1.48 oster
2628 1.48 oster
2629 1.48 oster RF_AutoConfig_t *
2630 1.48 oster rf_find_raid_components()
2631 1.48 oster {
2632 1.48 oster struct devnametobdevmaj *dtobdm;
2633 1.48 oster struct vnode *vp;
2634 1.48 oster struct disklabel label;
2635 1.48 oster struct device *dv;
2636 1.48 oster char *cd_name;
2637 1.48 oster dev_t dev;
2638 1.48 oster int error;
2639 1.48 oster int i;
2640 1.48 oster int good_one;
2641 1.48 oster RF_ComponentLabel_t *clabel;
2642 1.48 oster RF_AutoConfig_t *ac_list;
2643 1.48 oster RF_AutoConfig_t *ac;
2644 1.48 oster
2645 1.48 oster
2646 1.48 oster /* initialize the AutoConfig list */
2647 1.48 oster ac_list = NULL;
2648 1.48 oster
2649 1.48 oster /* we begin by trolling through *all* the devices on the system */
2650 1.48 oster
2651 1.48 oster for (dv = alldevs.tqh_first; dv != NULL;
2652 1.48 oster dv = dv->dv_list.tqe_next) {
2653 1.48 oster
2654 1.48 oster /* we are only interested in disks... */
2655 1.48 oster if (dv->dv_class != DV_DISK)
2656 1.48 oster continue;
2657 1.48 oster
2658 1.48 oster /* we don't care about floppies... */
2659 1.48 oster if (!strcmp(dv->dv_cfdata->cf_driver->cd_name,"fd")) {
2660 1.48 oster continue;
2661 1.48 oster }
2662 1.48 oster
2663 1.48 oster /* need to find the device_name_to_block_device_major stuff */
2664 1.48 oster cd_name = dv->dv_cfdata->cf_driver->cd_name;
2665 1.48 oster dtobdm = dev_name2blk;
2666 1.48 oster while (dtobdm->d_name && strcmp(dtobdm->d_name, cd_name)) {
2667 1.48 oster dtobdm++;
2668 1.48 oster }
2669 1.48 oster
2670 1.48 oster /* get a vnode for the raw partition of this disk */
2671 1.48 oster
2672 1.48 oster dev = MAKEDISKDEV(dtobdm->d_maj, dv->dv_unit, RAW_PART);
2673 1.48 oster if (bdevvp(dev, &vp))
2674 1.48 oster panic("RAID can't alloc vnode");
2675 1.48 oster
2676 1.109.2.3 fvdl vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
2677 1.109.2.3 fvdl
2678 1.109.2.2 fvdl error = VOP_OPEN(vp, FREAD, NOCRED, 0, NULL);
2679 1.48 oster
2680 1.48 oster if (error) {
2681 1.48 oster /* "Who cares." Continue looking
2682 1.48 oster for something that exists*/
2683 1.48 oster vput(vp);
2684 1.48 oster continue;
2685 1.48 oster }
2686 1.48 oster
2687 1.48 oster /* Ok, the disk exists. Go get the disklabel. */
2688 1.109.2.3 fvdl VOP_UNLOCK(vp, 0);
2689 1.48 oster error = VOP_IOCTL(vp, DIOCGDINFO, (caddr_t)&label,
2690 1.48 oster FREAD, NOCRED, 0);
2691 1.109.2.3 fvdl vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
2692 1.48 oster if (error) {
2693 1.48 oster /*
2694 1.48 oster * XXX can't happen - open() would
2695 1.48 oster * have errored out (or faked up one)
2696 1.48 oster */
2697 1.48 oster printf("can't get label for dev %s%c (%d)!?!?\n",
2698 1.48 oster dv->dv_xname, 'a' + RAW_PART, error);
2699 1.48 oster }
2700 1.48 oster
2701 1.48 oster /* don't need this any more. We'll allocate it again
2702 1.48 oster a little later if we really do... */
2703 1.97 oster VOP_CLOSE(vp, FREAD | FWRITE, NOCRED, 0);
2704 1.48 oster vput(vp);
2705 1.48 oster
2706 1.48 oster for (i=0; i < label.d_npartitions; i++) {
2707 1.48 oster /* We only support partitions marked as RAID */
2708 1.48 oster if (label.d_partitions[i].p_fstype != FS_RAID)
2709 1.48 oster continue;
2710 1.48 oster
2711 1.48 oster dev = MAKEDISKDEV(dtobdm->d_maj, dv->dv_unit, i);
2712 1.48 oster if (bdevvp(dev, &vp))
2713 1.48 oster panic("RAID can't alloc vnode");
2714 1.48 oster
2715 1.109.2.3 fvdl vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
2716 1.109.2.3 fvdl
2717 1.109.2.2 fvdl error = VOP_OPEN(vp, FREAD, NOCRED, 0, NULL);
2718 1.48 oster if (error) {
2719 1.48 oster /* Whatever... */
2720 1.48 oster vput(vp);
2721 1.48 oster continue;
2722 1.48 oster }
2723 1.48 oster
2724 1.48 oster good_one = 0;
2725 1.48 oster
2726 1.48 oster clabel = (RF_ComponentLabel_t *)
2727 1.48 oster malloc(sizeof(RF_ComponentLabel_t),
2728 1.48 oster M_RAIDFRAME, M_NOWAIT);
2729 1.48 oster if (clabel == NULL) {
2730 1.48 oster /* XXX CLEANUP HERE */
2731 1.109.2.4 fvdl vput(vp);
2732 1.48 oster printf("RAID auto config: out of memory!\n");
2733 1.48 oster return(NULL); /* XXX probably should panic? */
2734 1.48 oster }
2735 1.48 oster
2736 1.109.2.1 thorpej if (!raidread_component_label(vp, clabel)) {
2737 1.48 oster /* Got the label. Does it look reasonable? */
2738 1.49 oster if (rf_reasonable_label(clabel) &&
2739 1.54 oster (clabel->partitionSize <=
2740 1.48 oster label.d_partitions[i].p_size)) {
2741 1.48 oster #if DEBUG
2742 1.48 oster printf("Component on: %s%c: %d\n",
2743 1.48 oster dv->dv_xname, 'a'+i,
2744 1.48 oster label.d_partitions[i].p_size);
2745 1.67 oster rf_print_component_label(clabel);
2746 1.48 oster #endif
2747 1.48 oster /* if it's reasonable, add it,
2748 1.48 oster else ignore it. */
2749 1.48 oster ac = (RF_AutoConfig_t *)
2750 1.48 oster malloc(sizeof(RF_AutoConfig_t),
2751 1.48 oster M_RAIDFRAME,
2752 1.48 oster M_NOWAIT);
2753 1.48 oster if (ac == NULL) {
2754 1.48 oster /* XXX should panic?? */
2755 1.109.2.3 fvdl vput(vp);
2756 1.48 oster return(NULL);
2757 1.48 oster }
2758 1.48 oster
2759 1.48 oster sprintf(ac->devname, "%s%c",
2760 1.48 oster dv->dv_xname, 'a'+i);
2761 1.48 oster ac->vp = vp;
2762 1.48 oster ac->clabel = clabel;
2763 1.48 oster ac->next = ac_list;
2764 1.48 oster ac_list = ac;
2765 1.48 oster good_one = 1;
2766 1.48 oster }
2767 1.48 oster }
2768 1.48 oster if (!good_one) {
2769 1.48 oster /* cleanup */
2770 1.48 oster free(clabel, M_RAIDFRAME);
2771 1.97 oster VOP_CLOSE(vp, FREAD | FWRITE, NOCRED, 0);
2772 1.48 oster vput(vp);
2773 1.109.2.3 fvdl } else
2774 1.109.2.3 fvdl VOP_UNLOCK(vp, 0);
2775 1.48 oster }
2776 1.48 oster }
2777 1.106 oster return(ac_list);
2778 1.48 oster }
2779 1.48 oster
2780 1.48 oster static int
2781 1.49 oster rf_reasonable_label(clabel)
2782 1.48 oster RF_ComponentLabel_t *clabel;
2783 1.48 oster {
2784 1.48 oster
2785 1.48 oster if (((clabel->version==RF_COMPONENT_LABEL_VERSION_1) ||
2786 1.48 oster (clabel->version==RF_COMPONENT_LABEL_VERSION)) &&
2787 1.48 oster ((clabel->clean == RF_RAID_CLEAN) ||
2788 1.48 oster (clabel->clean == RF_RAID_DIRTY)) &&
2789 1.48 oster clabel->row >=0 &&
2790 1.48 oster clabel->column >= 0 &&
2791 1.48 oster clabel->num_rows > 0 &&
2792 1.48 oster clabel->num_columns > 0 &&
2793 1.48 oster clabel->row < clabel->num_rows &&
2794 1.48 oster clabel->column < clabel->num_columns &&
2795 1.48 oster clabel->blockSize > 0 &&
2796 1.48 oster clabel->numBlocks > 0) {
2797 1.48 oster /* label looks reasonable enough... */
2798 1.48 oster return(1);
2799 1.48 oster }
2800 1.48 oster return(0);
2801 1.48 oster }
2802 1.48 oster
2803 1.48 oster
2804 1.48 oster void
2805 1.67 oster rf_print_component_label(clabel)
2806 1.48 oster RF_ComponentLabel_t *clabel;
2807 1.48 oster {
2808 1.48 oster printf(" Row: %d Column: %d Num Rows: %d Num Columns: %d\n",
2809 1.48 oster clabel->row, clabel->column,
2810 1.48 oster clabel->num_rows, clabel->num_columns);
2811 1.48 oster printf(" Version: %d Serial Number: %d Mod Counter: %d\n",
2812 1.48 oster clabel->version, clabel->serial_number,
2813 1.48 oster clabel->mod_counter);
2814 1.48 oster printf(" Clean: %s Status: %d\n",
2815 1.48 oster clabel->clean ? "Yes" : "No", clabel->status );
2816 1.48 oster printf(" sectPerSU: %d SUsPerPU: %d SUsPerRU: %d\n",
2817 1.48 oster clabel->sectPerSU, clabel->SUsPerPU, clabel->SUsPerRU);
2818 1.48 oster printf(" RAID Level: %c blocksize: %d numBlocks: %d\n",
2819 1.48 oster (char) clabel->parityConfig, clabel->blockSize,
2820 1.48 oster clabel->numBlocks);
2821 1.48 oster printf(" Autoconfig: %s\n", clabel->autoconfigure ? "Yes" : "No" );
2822 1.75 oster printf(" Contains root partition: %s\n",
2823 1.75 oster clabel->root_partition ? "Yes" : "No" );
2824 1.48 oster printf(" Last configured as: raid%d\n", clabel->last_unit );
2825 1.51 oster #if 0
2826 1.51 oster printf(" Config order: %d\n", clabel->config_order);
2827 1.51 oster #endif
2828 1.48 oster
2829 1.48 oster }
2830 1.48 oster
2831 1.48 oster RF_ConfigSet_t *
2832 1.48 oster rf_create_auto_sets(ac_list)
2833 1.48 oster RF_AutoConfig_t *ac_list;
2834 1.48 oster {
2835 1.48 oster RF_AutoConfig_t *ac;
2836 1.48 oster RF_ConfigSet_t *config_sets;
2837 1.48 oster RF_ConfigSet_t *cset;
2838 1.48 oster RF_AutoConfig_t *ac_next;
2839 1.48 oster
2840 1.48 oster
2841 1.48 oster config_sets = NULL;
2842 1.48 oster
2843 1.48 oster /* Go through the AutoConfig list, and figure out which components
2844 1.48 oster belong to what sets. */
2845 1.48 oster ac = ac_list;
2846 1.48 oster while(ac!=NULL) {
2847 1.48 oster /* we're going to putz with ac->next, so save it here
2848 1.48 oster for use at the end of the loop */
2849 1.48 oster ac_next = ac->next;
2850 1.48 oster
2851 1.48 oster if (config_sets == NULL) {
2852 1.48 oster /* will need at least this one... */
2853 1.48 oster config_sets = (RF_ConfigSet_t *)
2854 1.48 oster malloc(sizeof(RF_ConfigSet_t),
2855 1.48 oster M_RAIDFRAME, M_NOWAIT);
2856 1.48 oster if (config_sets == NULL) {
2857 1.48 oster panic("rf_create_auto_sets: No memory!\n");
2858 1.48 oster }
2859 1.48 oster /* this one is easy :) */
2860 1.48 oster config_sets->ac = ac;
2861 1.48 oster config_sets->next = NULL;
2862 1.51 oster config_sets->rootable = 0;
2863 1.48 oster ac->next = NULL;
2864 1.48 oster } else {
2865 1.48 oster /* which set does this component fit into? */
2866 1.48 oster cset = config_sets;
2867 1.48 oster while(cset!=NULL) {
2868 1.49 oster if (rf_does_it_fit(cset, ac)) {
2869 1.86 oster /* looks like it matches... */
2870 1.86 oster ac->next = cset->ac;
2871 1.86 oster cset->ac = ac;
2872 1.48 oster break;
2873 1.48 oster }
2874 1.48 oster cset = cset->next;
2875 1.48 oster }
2876 1.48 oster if (cset==NULL) {
2877 1.48 oster /* didn't find a match above... new set..*/
2878 1.48 oster cset = (RF_ConfigSet_t *)
2879 1.48 oster malloc(sizeof(RF_ConfigSet_t),
2880 1.48 oster M_RAIDFRAME, M_NOWAIT);
2881 1.48 oster if (cset == NULL) {
2882 1.48 oster panic("rf_create_auto_sets: No memory!\n");
2883 1.48 oster }
2884 1.48 oster cset->ac = ac;
2885 1.48 oster ac->next = NULL;
2886 1.48 oster cset->next = config_sets;
2887 1.51 oster cset->rootable = 0;
2888 1.48 oster config_sets = cset;
2889 1.48 oster }
2890 1.48 oster }
2891 1.48 oster ac = ac_next;
2892 1.48 oster }
2893 1.48 oster
2894 1.48 oster
2895 1.48 oster return(config_sets);
2896 1.48 oster }
2897 1.48 oster
2898 1.48 oster static int
2899 1.49 oster rf_does_it_fit(cset, ac)
2900 1.48 oster RF_ConfigSet_t *cset;
2901 1.48 oster RF_AutoConfig_t *ac;
2902 1.48 oster {
2903 1.48 oster RF_ComponentLabel_t *clabel1, *clabel2;
2904 1.48 oster
2905 1.48 oster /* If this one matches the *first* one in the set, that's good
2906 1.48 oster enough, since the other members of the set would have been
2907 1.48 oster through here too... */
2908 1.60 oster /* note that we are not checking partitionSize here..
2909 1.60 oster
2910 1.60 oster Note that we are also not checking the mod_counters here.
2911 1.60 oster If everything else matches execpt the mod_counter, that's
2912 1.60 oster good enough for this test. We will deal with the mod_counters
2913 1.60 oster a little later in the autoconfiguration process.
2914 1.60 oster
2915 1.60 oster (clabel1->mod_counter == clabel2->mod_counter) &&
2916 1.81 oster
2917 1.81 oster The reason we don't check for this is that failed disks
2918 1.81 oster will have lower modification counts. If those disks are
2919 1.81 oster not added to the set they used to belong to, then they will
2920 1.81 oster form their own set, which may result in 2 different sets,
2921 1.81 oster for example, competing to be configured at raid0, and
2922 1.81 oster perhaps competing to be the root filesystem set. If the
2923 1.81 oster wrong ones get configured, or both attempt to become /,
2924 1.81 oster weird behaviour and or serious lossage will occur. Thus we
2925 1.81 oster need to bring them into the fold here, and kick them out at
2926 1.81 oster a later point.
2927 1.60 oster
2928 1.60 oster */
2929 1.48 oster
2930 1.48 oster clabel1 = cset->ac->clabel;
2931 1.48 oster clabel2 = ac->clabel;
2932 1.48 oster if ((clabel1->version == clabel2->version) &&
2933 1.48 oster (clabel1->serial_number == clabel2->serial_number) &&
2934 1.48 oster (clabel1->num_rows == clabel2->num_rows) &&
2935 1.48 oster (clabel1->num_columns == clabel2->num_columns) &&
2936 1.48 oster (clabel1->sectPerSU == clabel2->sectPerSU) &&
2937 1.48 oster (clabel1->SUsPerPU == clabel2->SUsPerPU) &&
2938 1.48 oster (clabel1->SUsPerRU == clabel2->SUsPerRU) &&
2939 1.48 oster (clabel1->parityConfig == clabel2->parityConfig) &&
2940 1.48 oster (clabel1->maxOutstanding == clabel2->maxOutstanding) &&
2941 1.48 oster (clabel1->blockSize == clabel2->blockSize) &&
2942 1.48 oster (clabel1->numBlocks == clabel2->numBlocks) &&
2943 1.48 oster (clabel1->autoconfigure == clabel2->autoconfigure) &&
2944 1.48 oster (clabel1->root_partition == clabel2->root_partition) &&
2945 1.48 oster (clabel1->last_unit == clabel2->last_unit) &&
2946 1.48 oster (clabel1->config_order == clabel2->config_order)) {
2947 1.48 oster /* if it get's here, it almost *has* to be a match */
2948 1.48 oster } else {
2949 1.48 oster /* it's not consistent with somebody in the set..
2950 1.48 oster punt */
2951 1.48 oster return(0);
2952 1.48 oster }
2953 1.48 oster /* all was fine.. it must fit... */
2954 1.48 oster return(1);
2955 1.48 oster }
2956 1.48 oster
2957 1.48 oster int
2958 1.51 oster rf_have_enough_components(cset)
2959 1.51 oster RF_ConfigSet_t *cset;
2960 1.48 oster {
2961 1.51 oster RF_AutoConfig_t *ac;
2962 1.51 oster RF_AutoConfig_t *auto_config;
2963 1.51 oster RF_ComponentLabel_t *clabel;
2964 1.51 oster int r,c;
2965 1.51 oster int num_rows;
2966 1.51 oster int num_cols;
2967 1.51 oster int num_missing;
2968 1.86 oster int mod_counter;
2969 1.87 oster int mod_counter_found;
2970 1.88 oster int even_pair_failed;
2971 1.88 oster char parity_type;
2972 1.88 oster
2973 1.51 oster
2974 1.48 oster /* check to see that we have enough 'live' components
2975 1.48 oster of this set. If so, we can configure it if necessary */
2976 1.48 oster
2977 1.51 oster num_rows = cset->ac->clabel->num_rows;
2978 1.51 oster num_cols = cset->ac->clabel->num_columns;
2979 1.88 oster parity_type = cset->ac->clabel->parityConfig;
2980 1.51 oster
2981 1.51 oster /* XXX Check for duplicate components!?!?!? */
2982 1.51 oster
2983 1.86 oster /* Determine what the mod_counter is supposed to be for this set. */
2984 1.86 oster
2985 1.87 oster mod_counter_found = 0;
2986 1.101 oster mod_counter = 0;
2987 1.86 oster ac = cset->ac;
2988 1.86 oster while(ac!=NULL) {
2989 1.87 oster if (mod_counter_found==0) {
2990 1.86 oster mod_counter = ac->clabel->mod_counter;
2991 1.87 oster mod_counter_found = 1;
2992 1.87 oster } else {
2993 1.87 oster if (ac->clabel->mod_counter > mod_counter) {
2994 1.87 oster mod_counter = ac->clabel->mod_counter;
2995 1.87 oster }
2996 1.86 oster }
2997 1.86 oster ac = ac->next;
2998 1.86 oster }
2999 1.86 oster
3000 1.51 oster num_missing = 0;
3001 1.51 oster auto_config = cset->ac;
3002 1.51 oster
3003 1.51 oster for(r=0; r<num_rows; r++) {
3004 1.88 oster even_pair_failed = 0;
3005 1.51 oster for(c=0; c<num_cols; c++) {
3006 1.51 oster ac = auto_config;
3007 1.51 oster while(ac!=NULL) {
3008 1.51 oster if ((ac->clabel->row == r) &&
3009 1.86 oster (ac->clabel->column == c) &&
3010 1.86 oster (ac->clabel->mod_counter == mod_counter)) {
3011 1.51 oster /* it's this one... */
3012 1.51 oster #if DEBUG
3013 1.51 oster printf("Found: %s at %d,%d\n",
3014 1.51 oster ac->devname,r,c);
3015 1.51 oster #endif
3016 1.51 oster break;
3017 1.51 oster }
3018 1.51 oster ac=ac->next;
3019 1.51 oster }
3020 1.51 oster if (ac==NULL) {
3021 1.51 oster /* Didn't find one here! */
3022 1.88 oster /* special case for RAID 1, especially
3023 1.88 oster where there are more than 2
3024 1.88 oster components (where RAIDframe treats
3025 1.88 oster things a little differently :( ) */
3026 1.88 oster if (parity_type == '1') {
3027 1.88 oster if (c%2 == 0) { /* even component */
3028 1.88 oster even_pair_failed = 1;
3029 1.88 oster } else { /* odd component. If
3030 1.88 oster we're failed, and
3031 1.88 oster so is the even
3032 1.88 oster component, it's
3033 1.88 oster "Good Night, Charlie" */
3034 1.88 oster if (even_pair_failed == 1) {
3035 1.88 oster return(0);
3036 1.88 oster }
3037 1.88 oster }
3038 1.88 oster } else {
3039 1.88 oster /* normal accounting */
3040 1.88 oster num_missing++;
3041 1.88 oster }
3042 1.88 oster }
3043 1.88 oster if ((parity_type == '1') && (c%2 == 1)) {
3044 1.88 oster /* Just did an even component, and we didn't
3045 1.88 oster bail.. reset the even_pair_failed flag,
3046 1.88 oster and go on to the next component.... */
3047 1.88 oster even_pair_failed = 0;
3048 1.51 oster }
3049 1.51 oster }
3050 1.51 oster }
3051 1.51 oster
3052 1.51 oster clabel = cset->ac->clabel;
3053 1.51 oster
3054 1.51 oster if (((clabel->parityConfig == '0') && (num_missing > 0)) ||
3055 1.51 oster ((clabel->parityConfig == '4') && (num_missing > 1)) ||
3056 1.51 oster ((clabel->parityConfig == '5') && (num_missing > 1))) {
3057 1.51 oster /* XXX this needs to be made *much* more general */
3058 1.51 oster /* Too many failures */
3059 1.51 oster return(0);
3060 1.51 oster }
3061 1.51 oster /* otherwise, all is well, and we've got enough to take a kick
3062 1.51 oster at autoconfiguring this set */
3063 1.51 oster return(1);
3064 1.48 oster }
3065 1.48 oster
3066 1.48 oster void
3067 1.49 oster rf_create_configuration(ac,config,raidPtr)
3068 1.48 oster RF_AutoConfig_t *ac;
3069 1.48 oster RF_Config_t *config;
3070 1.48 oster RF_Raid_t *raidPtr;
3071 1.48 oster {
3072 1.48 oster RF_ComponentLabel_t *clabel;
3073 1.77 oster int i;
3074 1.48 oster
3075 1.48 oster clabel = ac->clabel;
3076 1.48 oster
3077 1.48 oster /* 1. Fill in the common stuff */
3078 1.48 oster config->numRow = clabel->num_rows;
3079 1.48 oster config->numCol = clabel->num_columns;
3080 1.48 oster config->numSpare = 0; /* XXX should this be set here? */
3081 1.48 oster config->sectPerSU = clabel->sectPerSU;
3082 1.48 oster config->SUsPerPU = clabel->SUsPerPU;
3083 1.48 oster config->SUsPerRU = clabel->SUsPerRU;
3084 1.48 oster config->parityConfig = clabel->parityConfig;
3085 1.48 oster /* XXX... */
3086 1.48 oster strcpy(config->diskQueueType,"fifo");
3087 1.48 oster config->maxOutstandingDiskReqs = clabel->maxOutstanding;
3088 1.48 oster config->layoutSpecificSize = 0; /* XXX ?? */
3089 1.48 oster
3090 1.48 oster while(ac!=NULL) {
3091 1.48 oster /* row/col values will be in range due to the checks
3092 1.48 oster in reasonable_label() */
3093 1.48 oster strcpy(config->devnames[ac->clabel->row][ac->clabel->column],
3094 1.48 oster ac->devname);
3095 1.48 oster ac = ac->next;
3096 1.48 oster }
3097 1.48 oster
3098 1.77 oster for(i=0;i<RF_MAXDBGV;i++) {
3099 1.77 oster config->debugVars[i][0] = NULL;
3100 1.77 oster }
3101 1.48 oster }
3102 1.48 oster
3103 1.48 oster int
3104 1.48 oster rf_set_autoconfig(raidPtr, new_value)
3105 1.48 oster RF_Raid_t *raidPtr;
3106 1.48 oster int new_value;
3107 1.48 oster {
3108 1.48 oster RF_ComponentLabel_t clabel;
3109 1.48 oster struct vnode *vp;
3110 1.48 oster int row, column;
3111 1.48 oster
3112 1.54 oster raidPtr->autoconfigure = new_value;
3113 1.48 oster for(row=0; row<raidPtr->numRow; row++) {
3114 1.48 oster for(column=0; column<raidPtr->numCol; column++) {
3115 1.84 oster if (raidPtr->Disks[row][column].status ==
3116 1.84 oster rf_ds_optimal) {
3117 1.84 oster vp = raidPtr->raid_cinfo[row][column].ci_vp;
3118 1.109.2.1 thorpej raidread_component_label(vp, &clabel);
3119 1.84 oster clabel.autoconfigure = new_value;
3120 1.109.2.1 thorpej raidwrite_component_label(vp, &clabel);
3121 1.84 oster }
3122 1.48 oster }
3123 1.48 oster }
3124 1.48 oster return(new_value);
3125 1.48 oster }
3126 1.48 oster
3127 1.48 oster int
3128 1.48 oster rf_set_rootpartition(raidPtr, new_value)
3129 1.48 oster RF_Raid_t *raidPtr;
3130 1.48 oster int new_value;
3131 1.48 oster {
3132 1.48 oster RF_ComponentLabel_t clabel;
3133 1.48 oster struct vnode *vp;
3134 1.48 oster int row, column;
3135 1.48 oster
3136 1.54 oster raidPtr->root_partition = new_value;
3137 1.48 oster for(row=0; row<raidPtr->numRow; row++) {
3138 1.48 oster for(column=0; column<raidPtr->numCol; column++) {
3139 1.84 oster if (raidPtr->Disks[row][column].status ==
3140 1.84 oster rf_ds_optimal) {
3141 1.84 oster vp = raidPtr->raid_cinfo[row][column].ci_vp;
3142 1.109.2.1 thorpej raidread_component_label(vp, &clabel);
3143 1.84 oster clabel.root_partition = new_value;
3144 1.109.2.1 thorpej raidwrite_component_label(vp, &clabel);
3145 1.84 oster }
3146 1.48 oster }
3147 1.48 oster }
3148 1.48 oster return(new_value);
3149 1.48 oster }
3150 1.48 oster
3151 1.48 oster void
3152 1.49 oster rf_release_all_vps(cset)
3153 1.48 oster RF_ConfigSet_t *cset;
3154 1.48 oster {
3155 1.48 oster RF_AutoConfig_t *ac;
3156 1.48 oster
3157 1.48 oster ac = cset->ac;
3158 1.48 oster while(ac!=NULL) {
3159 1.48 oster /* Close the vp, and give it back */
3160 1.48 oster if (ac->vp) {
3161 1.96 oster vn_lock(ac->vp, LK_EXCLUSIVE | LK_RETRY);
3162 1.48 oster VOP_CLOSE(ac->vp, FREAD, NOCRED, 0);
3163 1.48 oster vput(ac->vp);
3164 1.86 oster ac->vp = NULL;
3165 1.48 oster }
3166 1.48 oster ac = ac->next;
3167 1.48 oster }
3168 1.48 oster }
3169 1.48 oster
3170 1.48 oster
3171 1.48 oster void
3172 1.49 oster rf_cleanup_config_set(cset)
3173 1.48 oster RF_ConfigSet_t *cset;
3174 1.48 oster {
3175 1.48 oster RF_AutoConfig_t *ac;
3176 1.48 oster RF_AutoConfig_t *next_ac;
3177 1.48 oster
3178 1.48 oster ac = cset->ac;
3179 1.48 oster while(ac!=NULL) {
3180 1.48 oster next_ac = ac->next;
3181 1.48 oster /* nuke the label */
3182 1.48 oster free(ac->clabel, M_RAIDFRAME);
3183 1.48 oster /* cleanup the config structure */
3184 1.48 oster free(ac, M_RAIDFRAME);
3185 1.48 oster /* "next.." */
3186 1.48 oster ac = next_ac;
3187 1.48 oster }
3188 1.48 oster /* and, finally, nuke the config set */
3189 1.48 oster free(cset, M_RAIDFRAME);
3190 1.48 oster }
3191 1.48 oster
3192 1.48 oster
3193 1.48 oster void
3194 1.48 oster raid_init_component_label(raidPtr, clabel)
3195 1.48 oster RF_Raid_t *raidPtr;
3196 1.48 oster RF_ComponentLabel_t *clabel;
3197 1.48 oster {
3198 1.48 oster /* current version number */
3199 1.48 oster clabel->version = RF_COMPONENT_LABEL_VERSION;
3200 1.57 oster clabel->serial_number = raidPtr->serial_number;
3201 1.48 oster clabel->mod_counter = raidPtr->mod_counter;
3202 1.48 oster clabel->num_rows = raidPtr->numRow;
3203 1.48 oster clabel->num_columns = raidPtr->numCol;
3204 1.48 oster clabel->clean = RF_RAID_DIRTY; /* not clean */
3205 1.48 oster clabel->status = rf_ds_optimal; /* "It's good!" */
3206 1.48 oster
3207 1.48 oster clabel->sectPerSU = raidPtr->Layout.sectorsPerStripeUnit;
3208 1.48 oster clabel->SUsPerPU = raidPtr->Layout.SUsPerPU;
3209 1.48 oster clabel->SUsPerRU = raidPtr->Layout.SUsPerRU;
3210 1.54 oster
3211 1.54 oster clabel->blockSize = raidPtr->bytesPerSector;
3212 1.54 oster clabel->numBlocks = raidPtr->sectorsPerDisk;
3213 1.54 oster
3214 1.48 oster /* XXX not portable */
3215 1.48 oster clabel->parityConfig = raidPtr->Layout.map->parityConfig;
3216 1.54 oster clabel->maxOutstanding = raidPtr->maxOutstanding;
3217 1.54 oster clabel->autoconfigure = raidPtr->autoconfigure;
3218 1.54 oster clabel->root_partition = raidPtr->root_partition;
3219 1.48 oster clabel->last_unit = raidPtr->raidid;
3220 1.54 oster clabel->config_order = raidPtr->config_order;
3221 1.51 oster }
3222 1.51 oster
3223 1.51 oster int
3224 1.51 oster rf_auto_config_set(cset,unit)
3225 1.51 oster RF_ConfigSet_t *cset;
3226 1.51 oster int *unit;
3227 1.51 oster {
3228 1.51 oster RF_Raid_t *raidPtr;
3229 1.51 oster RF_Config_t *config;
3230 1.51 oster int raidID;
3231 1.51 oster int retcode;
3232 1.51 oster
3233 1.72 oster printf("RAID autoconfigure\n");
3234 1.51 oster
3235 1.51 oster retcode = 0;
3236 1.51 oster *unit = -1;
3237 1.51 oster
3238 1.51 oster /* 1. Create a config structure */
3239 1.51 oster
3240 1.51 oster config = (RF_Config_t *)malloc(sizeof(RF_Config_t),
3241 1.51 oster M_RAIDFRAME,
3242 1.51 oster M_NOWAIT);
3243 1.51 oster if (config==NULL) {
3244 1.51 oster printf("Out of mem!?!?\n");
3245 1.51 oster /* XXX do something more intelligent here. */
3246 1.51 oster return(1);
3247 1.51 oster }
3248 1.77 oster
3249 1.77 oster memset(config, 0, sizeof(RF_Config_t));
3250 1.77 oster
3251 1.51 oster /* XXX raidID needs to be set correctly.. */
3252 1.51 oster
3253 1.51 oster /*
3254 1.51 oster 2. Figure out what RAID ID this one is supposed to live at
3255 1.51 oster See if we can get the same RAID dev that it was configured
3256 1.51 oster on last time..
3257 1.51 oster */
3258 1.51 oster
3259 1.51 oster raidID = cset->ac->clabel->last_unit;
3260 1.52 oster if ((raidID < 0) || (raidID >= numraid)) {
3261 1.51 oster /* let's not wander off into lala land. */
3262 1.51 oster raidID = numraid - 1;
3263 1.51 oster }
3264 1.51 oster if (raidPtrs[raidID]->valid != 0) {
3265 1.51 oster
3266 1.51 oster /*
3267 1.51 oster Nope... Go looking for an alternative...
3268 1.51 oster Start high so we don't immediately use raid0 if that's
3269 1.51 oster not taken.
3270 1.51 oster */
3271 1.51 oster
3272 1.51 oster for(raidID = numraid; raidID >= 0; raidID--) {
3273 1.51 oster if (raidPtrs[raidID]->valid == 0) {
3274 1.51 oster /* can use this one! */
3275 1.51 oster break;
3276 1.51 oster }
3277 1.51 oster }
3278 1.51 oster }
3279 1.51 oster
3280 1.51 oster if (raidID < 0) {
3281 1.51 oster /* punt... */
3282 1.51 oster printf("Unable to auto configure this set!\n");
3283 1.51 oster printf("(Out of RAID devs!)\n");
3284 1.51 oster return(1);
3285 1.51 oster }
3286 1.72 oster printf("Configuring raid%d:\n",raidID);
3287 1.51 oster raidPtr = raidPtrs[raidID];
3288 1.51 oster
3289 1.51 oster /* XXX all this stuff should be done SOMEWHERE ELSE! */
3290 1.51 oster raidPtr->raidid = raidID;
3291 1.51 oster raidPtr->openings = RAIDOUTSTANDING;
3292 1.51 oster
3293 1.51 oster /* 3. Build the configuration structure */
3294 1.51 oster rf_create_configuration(cset->ac, config, raidPtr);
3295 1.51 oster
3296 1.51 oster /* 4. Do the configuration */
3297 1.51 oster retcode = rf_Configure(raidPtr, config, cset->ac);
3298 1.51 oster
3299 1.51 oster if (retcode == 0) {
3300 1.61 oster
3301 1.59 oster raidinit(raidPtrs[raidID]);
3302 1.59 oster
3303 1.59 oster rf_markalldirty(raidPtrs[raidID]);
3304 1.54 oster raidPtrs[raidID]->autoconfigure = 1; /* XXX do this here? */
3305 1.51 oster if (cset->ac->clabel->root_partition==1) {
3306 1.51 oster /* everything configured just fine. Make a note
3307 1.51 oster that this set is eligible to be root. */
3308 1.51 oster cset->rootable = 1;
3309 1.54 oster /* XXX do this here? */
3310 1.54 oster raidPtrs[raidID]->root_partition = 1;
3311 1.51 oster }
3312 1.51 oster }
3313 1.51 oster
3314 1.51 oster /* 5. Cleanup */
3315 1.51 oster free(config, M_RAIDFRAME);
3316 1.51 oster
3317 1.51 oster *unit = raidID;
3318 1.51 oster return(retcode);
3319 1.99 oster }
3320 1.99 oster
3321 1.99 oster void
3322 1.99 oster rf_disk_unbusy(desc)
3323 1.99 oster RF_RaidAccessDesc_t *desc;
3324 1.99 oster {
3325 1.99 oster struct buf *bp;
3326 1.99 oster
3327 1.99 oster bp = (struct buf *)desc->bp;
3328 1.99 oster disk_unbusy(&raid_softc[desc->raidPtr->raidid].sc_dkdev,
3329 1.99 oster (bp->b_bcount - bp->b_resid));
3330 1.13 oster }
3331