rf_driver.c revision 1.39.2.10 1 /* $NetBSD: rf_driver.c,v 1.39.2.10 2002/10/18 02:43:48 nathanw Exp $ */
2 /*-
3 * Copyright (c) 1999 The NetBSD Foundation, Inc.
4 * All rights reserved.
5 *
6 * This code is derived from software contributed to The NetBSD Foundation
7 * by Greg Oster
8 *
9 * Redistribution and use in source and binary forms, with or without
10 * modification, are permitted provided that the following conditions
11 * are met:
12 * 1. Redistributions of source code must retain the above copyright
13 * notice, this list of conditions and the following disclaimer.
14 * 2. Redistributions in binary form must reproduce the above copyright
15 * notice, this list of conditions and the following disclaimer in the
16 * documentation and/or other materials provided with the distribution.
17 * 3. All advertising materials mentioning features or use of this software
18 * must display the following acknowledgement:
19 * This product includes software developed by the NetBSD
20 * Foundation, Inc. and its contributors.
21 * 4. Neither the name of The NetBSD Foundation nor the names of its
22 * contributors may be used to endorse or promote products derived
23 * from this software without specific prior written permission.
24 *
25 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
26 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
27 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
28 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
29 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
30 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
31 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
32 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
33 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
34 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
35 * POSSIBILITY OF SUCH DAMAGE.
36 */
37
38 /*
39 * Copyright (c) 1995 Carnegie-Mellon University.
40 * All rights reserved.
41 *
42 * Author: Mark Holland, Khalil Amiri, Claudson Bornstein, William V. Courtright II,
43 * Robby Findler, Daniel Stodolsky, Rachad Youssef, Jim Zelenka
44 *
45 * Permission to use, copy, modify and distribute this software and
46 * its documentation is hereby granted, provided that both the copyright
47 * notice and this permission notice appear in all copies of the
48 * software, derivative works or modified versions, and any portions
49 * thereof, and that both notices appear in supporting documentation.
50 *
51 * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS "AS IS"
52 * CONDITION. CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND
53 * FOR ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE.
54 *
55 * Carnegie Mellon requests users of this software to return to
56 *
57 * Software Distribution Coordinator or Software.Distribution (at) CS.CMU.EDU
58 * School of Computer Science
59 * Carnegie Mellon University
60 * Pittsburgh PA 15213-3890
61 *
62 * any improvements or extensions that they make and grant Carnegie the
63 * rights to redistribute these changes.
64 */
65
66 /******************************************************************************
67 *
68 * rf_driver.c -- main setup, teardown, and access routines for the RAID driver
69 *
70 * all routines are prefixed with rf_ (raidframe), to avoid conficts.
71 *
72 ******************************************************************************/
73
74
75 #include <sys/cdefs.h>
76 __KERNEL_RCSID(0, "$NetBSD: rf_driver.c,v 1.39.2.10 2002/10/18 02:43:48 nathanw Exp $");
77
78 #include <sys/param.h>
79 #include <sys/systm.h>
80 #include <sys/ioctl.h>
81 #include <sys/fcntl.h>
82 #include <sys/vnode.h>
83
84
85 #include "rf_archs.h"
86 #include "rf_threadstuff.h"
87
88 #include <sys/errno.h>
89
90 #include "rf_raid.h"
91 #include "rf_dag.h"
92 #include "rf_aselect.h"
93 #include "rf_diskqueue.h"
94 #include "rf_parityscan.h"
95 #include "rf_alloclist.h"
96 #include "rf_dagutils.h"
97 #include "rf_utils.h"
98 #include "rf_etimer.h"
99 #include "rf_acctrace.h"
100 #include "rf_general.h"
101 #include "rf_desc.h"
102 #include "rf_states.h"
103 #include "rf_freelist.h"
104 #include "rf_decluster.h"
105 #include "rf_map.h"
106 #include "rf_revent.h"
107 #include "rf_callback.h"
108 #include "rf_engine.h"
109 #include "rf_mcpair.h"
110 #include "rf_nwayxor.h"
111 #include "rf_copyback.h"
112 #include "rf_driver.h"
113 #include "rf_options.h"
114 #include "rf_shutdown.h"
115 #include "rf_kintf.h"
116
117 #include <sys/buf.h>
118
119 #ifndef RF_ACCESS_DEBUG
120 #define RF_ACCESS_DEBUG 0
121 #endif
122
123 /* rad == RF_RaidAccessDesc_t */
124 static RF_FreeList_t *rf_rad_freelist;
125 #define RF_MAX_FREE_RAD 128
126 #define RF_RAD_INC 16
127 #define RF_RAD_INITIAL 32
128
129 /* debug variables */
130 char rf_panicbuf[2048]; /* a buffer to hold an error msg when we panic */
131
132 /* main configuration routines */
133 static int raidframe_booted = 0;
134
135 static void rf_ConfigureDebug(RF_Config_t * cfgPtr);
136 static void set_debug_option(char *name, long val);
137 static void rf_UnconfigureArray(void);
138 static int init_rad(RF_RaidAccessDesc_t *);
139 static void clean_rad(RF_RaidAccessDesc_t *);
140 static void rf_ShutdownRDFreeList(void *);
141 static int rf_ConfigureRDFreeList(RF_ShutdownList_t **);
142
143 RF_DECLARE_MUTEX(rf_printf_mutex) /* debug only: avoids interleaved
144 * printfs by different stripes */
145
146 #define SIGNAL_QUIESCENT_COND(_raid_) wakeup(&((_raid_)->accesses_suspended))
147 #define WAIT_FOR_QUIESCENCE(_raid_) \
148 ltsleep(&((_raid_)->accesses_suspended), PRIBIO, \
149 "raidframe quiesce", 0, &((_raid_)->access_suspend_mutex))
150
151 #define IO_BUF_ERR(bp, err) { \
152 bp->b_flags |= B_ERROR; \
153 bp->b_resid = bp->b_bcount; \
154 bp->b_error = err; \
155 biodone(bp); \
156 }
157
158 static int configureCount = 0; /* number of active configurations */
159 static int isconfigged = 0; /* is basic raidframe (non per-array)
160 * stuff configged */
161 RF_DECLARE_LKMGR_STATIC_MUTEX(configureMutex) /* used to lock the configuration
162 * stuff */
163 static RF_ShutdownList_t *globalShutdown; /* non array-specific
164 * stuff */
165
166 static int rf_ConfigureRDFreeList(RF_ShutdownList_t ** listp);
167
168 /* called at system boot time */
169 int
170 rf_BootRaidframe()
171 {
172 int rc;
173
174 if (raidframe_booted)
175 return (EBUSY);
176 raidframe_booted = 1;
177
178 rc = rf_lkmgr_mutex_init(&configureMutex);
179 if (rc) {
180 rf_print_unable_to_init_mutex( __FILE__, __LINE__, rc);
181 RF_PANIC();
182 }
183 configureCount = 0;
184 isconfigged = 0;
185 globalShutdown = NULL;
186 return (0);
187 }
188
189 /*
190 * Called whenever an array is shutdown
191 */
192 static void
193 rf_UnconfigureArray()
194 {
195 int rc;
196
197 RF_LOCK_LKMGR_MUTEX(configureMutex);
198 if (--configureCount == 0) { /* if no active configurations, shut
199 * everything down */
200 isconfigged = 0;
201
202 rc = rf_ShutdownList(&globalShutdown);
203 if (rc) {
204 RF_ERRORMSG1("RAIDFRAME: unable to do global shutdown, rc=%d\n", rc);
205 }
206
207 /*
208 * We must wait until now, because the AllocList module
209 * uses the DebugMem module.
210 */
211 #if RF_DEBUG_MEM
212 if (rf_memDebug)
213 rf_print_unfreed();
214 #endif
215 }
216 RF_UNLOCK_LKMGR_MUTEX(configureMutex);
217 }
218
219 /*
220 * Called to shut down an array.
221 */
222 int
223 rf_Shutdown(raidPtr)
224 RF_Raid_t *raidPtr;
225 {
226
227 if (!raidPtr->valid) {
228 RF_ERRORMSG("Attempt to shut down unconfigured RAIDframe driver. Aborting shutdown\n");
229 return (EINVAL);
230 }
231 /*
232 * wait for outstanding IOs to land
233 * As described in rf_raid.h, we use the rad_freelist lock
234 * to protect the per-array info about outstanding descs
235 * since we need to do freelist locking anyway, and this
236 * cuts down on the amount of serialization we've got going
237 * on.
238 */
239 RF_FREELIST_DO_LOCK(rf_rad_freelist);
240 if (raidPtr->waitShutdown) {
241 RF_FREELIST_DO_UNLOCK(rf_rad_freelist);
242 return (EBUSY);
243 }
244 raidPtr->waitShutdown = 1;
245 while (raidPtr->nAccOutstanding) {
246 RF_WAIT_COND(raidPtr->outstandingCond, RF_FREELIST_MUTEX_OF(rf_rad_freelist));
247 }
248 RF_FREELIST_DO_UNLOCK(rf_rad_freelist);
249
250 /* Wait for any parity re-writes to stop... */
251 while (raidPtr->parity_rewrite_in_progress) {
252 printf("Waiting for parity re-write to exit...\n");
253 tsleep(&raidPtr->parity_rewrite_in_progress, PRIBIO,
254 "rfprwshutdown", 0);
255 }
256
257 raidPtr->valid = 0;
258
259 rf_update_component_labels(raidPtr, RF_FINAL_COMPONENT_UPDATE);
260
261 rf_UnconfigureVnodes(raidPtr);
262
263 rf_ShutdownList(&raidPtr->shutdownList);
264
265 rf_UnconfigureArray();
266
267 return (0);
268 }
269
270
271 #define DO_INIT_CONFIGURE(f) { \
272 rc = f (&globalShutdown); \
273 if (rc) { \
274 RF_ERRORMSG2("RAIDFRAME: failed %s with %d\n", RF_STRING(f), rc); \
275 rf_ShutdownList(&globalShutdown); \
276 configureCount--; \
277 RF_UNLOCK_LKMGR_MUTEX(configureMutex); \
278 return(rc); \
279 } \
280 }
281
282 #define DO_RAID_FAIL() { \
283 rf_UnconfigureVnodes(raidPtr); \
284 rf_ShutdownList(&raidPtr->shutdownList); \
285 rf_UnconfigureArray(); \
286 }
287
288 #define DO_RAID_INIT_CONFIGURE(f) { \
289 rc = f (&raidPtr->shutdownList, raidPtr, cfgPtr); \
290 if (rc) { \
291 RF_ERRORMSG2("RAIDFRAME: failed %s with %d\n", RF_STRING(f), rc); \
292 DO_RAID_FAIL(); \
293 return(rc); \
294 } \
295 }
296
297 #define DO_RAID_MUTEX(_m_) { \
298 rc = rf_create_managed_mutex(&raidPtr->shutdownList, (_m_)); \
299 if (rc) { \
300 rf_print_unable_to_init_mutex(__FILE__, __LINE__, rc); \
301 DO_RAID_FAIL(); \
302 return(rc); \
303 } \
304 }
305
306 #define DO_RAID_COND(_c_) { \
307 rc = rf_create_managed_cond(&raidPtr->shutdownList, (_c_)); \
308 if (rc) { \
309 rf_print_unable_to_init_cond(__FILE__, __LINE__, rc); \
310 DO_RAID_FAIL(); \
311 return(rc); \
312 } \
313 }
314
315 int
316 rf_Configure(raidPtr, cfgPtr, ac)
317 RF_Raid_t *raidPtr;
318 RF_Config_t *cfgPtr;
319 RF_AutoConfig_t *ac;
320 {
321 RF_RowCol_t row, col;
322 int i, rc;
323
324 RF_LOCK_LKMGR_MUTEX(configureMutex);
325 configureCount++;
326 if (isconfigged == 0) {
327 rc = rf_create_managed_mutex(&globalShutdown, &rf_printf_mutex);
328 if (rc) {
329 rf_print_unable_to_init_mutex(__FILE__, __LINE__, rc);
330 rf_ShutdownList(&globalShutdown);
331 return (rc);
332 }
333 /* initialize globals */
334
335 DO_INIT_CONFIGURE(rf_ConfigureAllocList);
336
337 /*
338 * Yes, this does make debugging general to the whole
339 * system instead of being array specific. Bummer, drag.
340 */
341 rf_ConfigureDebug(cfgPtr);
342 DO_INIT_CONFIGURE(rf_ConfigureDebugMem);
343 DO_INIT_CONFIGURE(rf_ConfigureAccessTrace);
344 DO_INIT_CONFIGURE(rf_ConfigureMapModule);
345 DO_INIT_CONFIGURE(rf_ConfigureReconEvent);
346 DO_INIT_CONFIGURE(rf_ConfigureCallback);
347 DO_INIT_CONFIGURE(rf_ConfigureRDFreeList);
348 DO_INIT_CONFIGURE(rf_ConfigureNWayXor);
349 DO_INIT_CONFIGURE(rf_ConfigureStripeLockFreeList);
350 DO_INIT_CONFIGURE(rf_ConfigureMCPair);
351 DO_INIT_CONFIGURE(rf_ConfigureDAGs);
352 DO_INIT_CONFIGURE(rf_ConfigureDAGFuncs);
353 DO_INIT_CONFIGURE(rf_ConfigureReconstruction);
354 DO_INIT_CONFIGURE(rf_ConfigureCopyback);
355 DO_INIT_CONFIGURE(rf_ConfigureDiskQueueSystem);
356 isconfigged = 1;
357 }
358 RF_UNLOCK_LKMGR_MUTEX(configureMutex);
359
360 DO_RAID_MUTEX(&raidPtr->mutex);
361 /* set up the cleanup list. Do this after ConfigureDebug so that
362 * value of memDebug will be set */
363
364 rf_MakeAllocList(raidPtr->cleanupList);
365 if (raidPtr->cleanupList == NULL) {
366 DO_RAID_FAIL();
367 return (ENOMEM);
368 }
369 rc = rf_ShutdownCreate(&raidPtr->shutdownList,
370 (void (*) (void *)) rf_FreeAllocList,
371 raidPtr->cleanupList);
372 if (rc) {
373 rf_print_unable_to_add_shutdown(__FILE__, __LINE__, rc);
374 DO_RAID_FAIL();
375 return (rc);
376 }
377 raidPtr->numRow = cfgPtr->numRow;
378 raidPtr->numCol = cfgPtr->numCol;
379 raidPtr->numSpare = cfgPtr->numSpare;
380
381 /* XXX we don't even pretend to support more than one row in the
382 * kernel... */
383 if (raidPtr->numRow != 1) {
384 RF_ERRORMSG("Only one row supported in kernel.\n");
385 DO_RAID_FAIL();
386 return (EINVAL);
387 }
388 RF_CallocAndAdd(raidPtr->status, raidPtr->numRow, sizeof(RF_RowStatus_t),
389 (RF_RowStatus_t *), raidPtr->cleanupList);
390 if (raidPtr->status == NULL) {
391 DO_RAID_FAIL();
392 return (ENOMEM);
393 }
394 RF_CallocAndAdd(raidPtr->reconControl, raidPtr->numRow,
395 sizeof(RF_ReconCtrl_t *), (RF_ReconCtrl_t **), raidPtr->cleanupList);
396 if (raidPtr->reconControl == NULL) {
397 DO_RAID_FAIL();
398 return (ENOMEM);
399 }
400 for (i = 0; i < raidPtr->numRow; i++) {
401 raidPtr->status[i] = rf_rs_optimal;
402 raidPtr->reconControl[i] = NULL;
403 }
404
405 TAILQ_INIT(&(raidPtr->iodone));
406 simple_lock_init(&(raidPtr->iodone_lock));
407
408 DO_RAID_INIT_CONFIGURE(rf_ConfigureEngine);
409 DO_RAID_INIT_CONFIGURE(rf_ConfigureStripeLocks);
410
411 DO_RAID_COND(&raidPtr->outstandingCond);
412
413 raidPtr->nAccOutstanding = 0;
414 raidPtr->waitShutdown = 0;
415
416 DO_RAID_MUTEX(&raidPtr->access_suspend_mutex);
417 DO_RAID_COND(&raidPtr->quiescent_cond);
418
419 DO_RAID_COND(&raidPtr->waitForReconCond);
420
421 DO_RAID_MUTEX(&raidPtr->recon_done_proc_mutex);
422
423 if (ac!=NULL) {
424 /* We have an AutoConfig structure.. Don't do the
425 normal disk configuration... call the auto config
426 stuff */
427 rf_AutoConfigureDisks(raidPtr, cfgPtr, ac);
428 } else {
429 DO_RAID_INIT_CONFIGURE(rf_ConfigureDisks);
430 DO_RAID_INIT_CONFIGURE(rf_ConfigureSpareDisks);
431 }
432 /* do this after ConfigureDisks & ConfigureSpareDisks to be sure dev
433 * no. is set */
434 DO_RAID_INIT_CONFIGURE(rf_ConfigureDiskQueues);
435
436 DO_RAID_INIT_CONFIGURE(rf_ConfigureLayout);
437
438 DO_RAID_INIT_CONFIGURE(rf_ConfigurePSStatus);
439
440 for (row = 0; row < raidPtr->numRow; row++) {
441 for (col = 0; col < raidPtr->numCol; col++) {
442 /*
443 * XXX better distribution
444 */
445 raidPtr->hist_diskreq[row][col] = 0;
446 }
447 }
448
449 raidPtr->numNewFailures = 0;
450 raidPtr->copyback_in_progress = 0;
451 raidPtr->parity_rewrite_in_progress = 0;
452 raidPtr->recon_in_progress = 0;
453 raidPtr->maxOutstanding = cfgPtr->maxOutstandingDiskReqs;
454
455 /* autoconfigure and root_partition will actually get filled in
456 after the config is done */
457 raidPtr->autoconfigure = 0;
458 raidPtr->root_partition = 0;
459 raidPtr->last_unit = raidPtr->raidid;
460 raidPtr->config_order = 0;
461
462 if (rf_keepAccTotals) {
463 raidPtr->keep_acc_totals = 1;
464 }
465 rf_StartUserStats(raidPtr);
466
467 raidPtr->valid = 1;
468
469 printf("raid%d: %s\n", raidPtr->raidid,
470 raidPtr->Layout.map->configName);
471 printf("raid%d: Components:", raidPtr->raidid);
472 for (row = 0; row < raidPtr->numRow; row++) {
473 for (col = 0; col < raidPtr->numCol; col++) {
474 printf(" %s", raidPtr->Disks[row][col].devname);
475 if (RF_DEAD_DISK(raidPtr->Disks[row][col].status)) {
476 printf("[**FAILED**]");
477 }
478 }
479 }
480 printf("\n");
481 printf("raid%d: Total Sectors: %lu (%lu MB)\n",
482 raidPtr->raidid,
483 (unsigned long) raidPtr->totalSectors,
484 (unsigned long) (raidPtr->totalSectors / 1024 *
485 (1 << raidPtr->logBytesPerSector) / 1024));
486
487 return (0);
488 }
489
490 static int
491 init_rad(desc)
492 RF_RaidAccessDesc_t *desc;
493 {
494 int rc;
495
496 rc = rf_mutex_init(&desc->mutex);
497 if (rc) {
498 rf_print_unable_to_init_mutex(__FILE__, __LINE__, rc);
499 return (rc);
500 }
501 rc = rf_cond_init(&desc->cond);
502 if (rc) {
503 rf_print_unable_to_init_cond(__FILE__, __LINE__, rc);
504 rf_mutex_destroy(&desc->mutex);
505 return (rc);
506 }
507 return (0);
508 }
509
510 static void
511 clean_rad(desc)
512 RF_RaidAccessDesc_t *desc;
513 {
514 rf_mutex_destroy(&desc->mutex);
515 rf_cond_destroy(&desc->cond);
516 }
517
518 static void
519 rf_ShutdownRDFreeList(ignored)
520 void *ignored;
521 {
522 RF_FREELIST_DESTROY_CLEAN(rf_rad_freelist, next, (RF_RaidAccessDesc_t *), clean_rad);
523 }
524
525 static int
526 rf_ConfigureRDFreeList(listp)
527 RF_ShutdownList_t **listp;
528 {
529 int rc;
530
531 RF_FREELIST_CREATE(rf_rad_freelist, RF_MAX_FREE_RAD,
532 RF_RAD_INC, sizeof(RF_RaidAccessDesc_t));
533 if (rf_rad_freelist == NULL) {
534 return (ENOMEM);
535 }
536 rc = rf_ShutdownCreate(listp, rf_ShutdownRDFreeList, NULL);
537 if (rc) {
538 rf_print_unable_to_add_shutdown(__FILE__, __LINE__, rc);
539 rf_ShutdownRDFreeList(NULL);
540 return (rc);
541 }
542 RF_FREELIST_PRIME_INIT(rf_rad_freelist, RF_RAD_INITIAL, next,
543 (RF_RaidAccessDesc_t *), init_rad);
544 return (0);
545 }
546
547 RF_RaidAccessDesc_t *
548 rf_AllocRaidAccDesc(
549 RF_Raid_t * raidPtr,
550 RF_IoType_t type,
551 RF_RaidAddr_t raidAddress,
552 RF_SectorCount_t numBlocks,
553 caddr_t bufPtr,
554 void *bp,
555 RF_RaidAccessFlags_t flags,
556 RF_AccessState_t * states)
557 {
558 RF_RaidAccessDesc_t *desc;
559
560 RF_FREELIST_GET_INIT_NOUNLOCK(rf_rad_freelist, desc, next, (RF_RaidAccessDesc_t *), init_rad);
561 if (raidPtr->waitShutdown) {
562 /*
563 * Actually, we're shutting the array down. Free the desc
564 * and return NULL.
565 */
566 RF_FREELIST_DO_UNLOCK(rf_rad_freelist);
567 RF_FREELIST_FREE_CLEAN(rf_rad_freelist, desc, next, clean_rad);
568 return (NULL);
569 }
570 raidPtr->nAccOutstanding++;
571 RF_FREELIST_DO_UNLOCK(rf_rad_freelist);
572
573 desc->raidPtr = (void *) raidPtr;
574 desc->type = type;
575 desc->raidAddress = raidAddress;
576 desc->numBlocks = numBlocks;
577 desc->bufPtr = bufPtr;
578 desc->bp = bp;
579 desc->paramDAG = NULL;
580 desc->paramASM = NULL;
581 desc->flags = flags;
582 desc->states = states;
583 desc->state = 0;
584
585 desc->status = 0;
586 memset((char *) &desc->tracerec, 0, sizeof(RF_AccTraceEntry_t));
587 desc->callbackFunc = NULL;
588 desc->callbackArg = NULL;
589 desc->next = NULL;
590 desc->head = desc;
591 desc->cleanupList = NULL;
592 rf_MakeAllocList(desc->cleanupList);
593 return (desc);
594 }
595
596 void
597 rf_FreeRaidAccDesc(RF_RaidAccessDesc_t * desc)
598 {
599 RF_Raid_t *raidPtr = desc->raidPtr;
600
601 RF_ASSERT(desc);
602
603 rf_FreeAllocList(desc->cleanupList);
604 RF_FREELIST_FREE_CLEAN_NOUNLOCK(rf_rad_freelist, desc, next, clean_rad);
605 raidPtr->nAccOutstanding--;
606 if (raidPtr->waitShutdown) {
607 RF_SIGNAL_COND(raidPtr->outstandingCond);
608 }
609 RF_FREELIST_DO_UNLOCK(rf_rad_freelist);
610 }
611 /*********************************************************************
612 * Main routine for performing an access.
613 * Accesses are retried until a DAG can not be selected. This occurs
614 * when either the DAG library is incomplete or there are too many
615 * failures in a parity group.
616 ********************************************************************/
617 int
618 rf_DoAccess(
619 RF_Raid_t * raidPtr,
620 RF_IoType_t type,
621 int async_flag,
622 RF_RaidAddr_t raidAddress,
623 RF_SectorCount_t numBlocks,
624 caddr_t bufPtr,
625 void *bp_in,
626 RF_RaidAccessFlags_t flags)
627 /*
628 type should be read or write
629 async_flag should be RF_TRUE or RF_FALSE
630 bp_in is a buf pointer. void * to facilitate ignoring it outside the kernel
631 */
632 {
633 RF_RaidAccessDesc_t *desc;
634 caddr_t lbufPtr = bufPtr;
635 struct buf *bp = (struct buf *) bp_in;
636
637 raidAddress += rf_raidSectorOffset;
638
639 #if RF_ACCESS_DEBUG
640 if (rf_accessDebug) {
641
642 printf("logBytes is: %d %d %d\n", raidPtr->raidid,
643 raidPtr->logBytesPerSector,
644 (int) rf_RaidAddressToByte(raidPtr, numBlocks));
645 printf("raid%d: %s raidAddr %d (stripeid %d-%d) numBlocks %d (%d bytes) buf 0x%lx\n", raidPtr->raidid,
646 (type == RF_IO_TYPE_READ) ? "READ" : "WRITE", (int) raidAddress,
647 (int) rf_RaidAddressToStripeID(&raidPtr->Layout, raidAddress),
648 (int) rf_RaidAddressToStripeID(&raidPtr->Layout, raidAddress + numBlocks - 1),
649 (int) numBlocks,
650 (int) rf_RaidAddressToByte(raidPtr, numBlocks),
651 (long) bufPtr);
652 }
653 #endif
654 if (raidAddress + numBlocks > raidPtr->totalSectors) {
655
656 printf("DoAccess: raid addr %lu too large to access %lu sectors. Max legal addr is %lu\n",
657 (u_long) raidAddress, (u_long) numBlocks, (u_long) raidPtr->totalSectors);
658
659 IO_BUF_ERR(bp, ENOSPC);
660 return (ENOSPC);
661 }
662 desc = rf_AllocRaidAccDesc(raidPtr, type, raidAddress,
663 numBlocks, lbufPtr, bp, flags, raidPtr->Layout.map->states);
664
665 if (desc == NULL) {
666 return (ENOMEM);
667 }
668 RF_ETIMER_START(desc->tracerec.tot_timer);
669
670 desc->async_flag = async_flag;
671
672 rf_ContinueRaidAccess(desc);
673
674 return (0);
675 }
676 #if 0
677 /* force the array into reconfigured mode without doing reconstruction */
678 int
679 rf_SetReconfiguredMode(raidPtr, row, col)
680 RF_Raid_t *raidPtr;
681 int row;
682 int col;
683 {
684 if (!(raidPtr->Layout.map->flags & RF_DISTRIBUTE_SPARE)) {
685 printf("Can't set reconfigured mode in dedicated-spare array\n");
686 RF_PANIC();
687 }
688 RF_LOCK_MUTEX(raidPtr->mutex);
689 raidPtr->numFailures++;
690 raidPtr->Disks[row][col].status = rf_ds_dist_spared;
691 raidPtr->status[row] = rf_rs_reconfigured;
692 rf_update_component_labels(raidPtr, RF_NORMAL_COMPONENT_UPDATE);
693 /* install spare table only if declustering + distributed sparing
694 * architecture. */
695 if (raidPtr->Layout.map->flags & RF_BD_DECLUSTERED)
696 rf_InstallSpareTable(raidPtr, row, col);
697 RF_UNLOCK_MUTEX(raidPtr->mutex);
698 return (0);
699 }
700 #endif
701
702 int
703 rf_FailDisk(
704 RF_Raid_t * raidPtr,
705 int frow,
706 int fcol,
707 int initRecon)
708 {
709 printf("raid%d: Failing disk r%d c%d\n", raidPtr->raidid, frow, fcol);
710 RF_LOCK_MUTEX(raidPtr->mutex);
711 raidPtr->numFailures++;
712 raidPtr->Disks[frow][fcol].status = rf_ds_failed;
713 raidPtr->status[frow] = rf_rs_degraded;
714 rf_update_component_labels(raidPtr, RF_NORMAL_COMPONENT_UPDATE);
715 RF_UNLOCK_MUTEX(raidPtr->mutex);
716
717 /* Close the component, so that it's not "locked" if someone
718 else want's to use it! */
719
720 rf_close_component(raidPtr, raidPtr->raid_cinfo[frow][fcol].ci_vp,
721 raidPtr->Disks[frow][fcol].auto_configured);
722 raidPtr->raid_cinfo[frow][fcol].ci_vp = NULL;
723
724 /* Need to mark the component as not being auto_configured
725 (in case it was previously). */
726
727 raidPtr->Disks[frow][fcol].auto_configured = 0;
728
729 if (initRecon)
730 rf_ReconstructFailedDisk(raidPtr, frow, fcol);
731 return (0);
732 }
733 /* releases a thread that is waiting for the array to become quiesced.
734 * access_suspend_mutex should be locked upon calling this
735 */
736 void
737 rf_SignalQuiescenceLock(raidPtr)
738 RF_Raid_t *raidPtr;
739 {
740 #if RF_DEBUG_QUIESCE
741 if (rf_quiesceDebug) {
742 printf("raid%d: Signalling quiescence lock\n",
743 raidPtr->raidid);
744 }
745 #endif
746 raidPtr->access_suspend_release = 1;
747
748 if (raidPtr->waiting_for_quiescence) {
749 SIGNAL_QUIESCENT_COND(raidPtr);
750 }
751 }
752 /* suspends all new requests to the array. No effect on accesses that are in flight. */
753 int
754 rf_SuspendNewRequestsAndWait(raidPtr)
755 RF_Raid_t *raidPtr;
756 {
757 #if RF_DEBUG_QUIESCE
758 if (rf_quiesceDebug)
759 printf("raid%d: Suspending new reqs\n", raidPtr->raidid);
760 #endif
761 RF_LOCK_MUTEX(raidPtr->access_suspend_mutex);
762 raidPtr->accesses_suspended++;
763 raidPtr->waiting_for_quiescence = (raidPtr->accs_in_flight == 0) ? 0 : 1;
764
765 if (raidPtr->waiting_for_quiescence) {
766 raidPtr->access_suspend_release = 0;
767 while (!raidPtr->access_suspend_release) {
768 printf("raid%d: Suspending: Waiting for Quiescence\n",
769 raidPtr->raidid);
770 WAIT_FOR_QUIESCENCE(raidPtr);
771 raidPtr->waiting_for_quiescence = 0;
772 }
773 }
774 printf("raid%d: Quiescence reached..\n", raidPtr->raidid);
775
776 RF_UNLOCK_MUTEX(raidPtr->access_suspend_mutex);
777 return (raidPtr->waiting_for_quiescence);
778 }
779 /* wake up everyone waiting for quiescence to be released */
780 void
781 rf_ResumeNewRequests(raidPtr)
782 RF_Raid_t *raidPtr;
783 {
784 RF_CallbackDesc_t *t, *cb;
785
786 #if RF_DEBUG_QUIESCE
787 if (rf_quiesceDebug)
788 printf("Resuming new reqs\n");
789 #endif
790
791 RF_LOCK_MUTEX(raidPtr->access_suspend_mutex);
792 raidPtr->accesses_suspended--;
793 if (raidPtr->accesses_suspended == 0)
794 cb = raidPtr->quiesce_wait_list;
795 else
796 cb = NULL;
797 raidPtr->quiesce_wait_list = NULL;
798 RF_UNLOCK_MUTEX(raidPtr->access_suspend_mutex);
799
800 while (cb) {
801 t = cb;
802 cb = cb->next;
803 (t->callbackFunc) (t->callbackArg);
804 rf_FreeCallbackDesc(t);
805 }
806 }
807 /*****************************************************************************************
808 *
809 * debug routines
810 *
811 ****************************************************************************************/
812
813 static void
814 set_debug_option(name, val)
815 char *name;
816 long val;
817 {
818 RF_DebugName_t *p;
819
820 for (p = rf_debugNames; p->name; p++) {
821 if (!strcmp(p->name, name)) {
822 *(p->ptr) = val;
823 printf("[Set debug variable %s to %ld]\n", name, val);
824 return;
825 }
826 }
827 RF_ERRORMSG1("Unknown debug string \"%s\"\n", name);
828 }
829
830
831 /* would like to use sscanf here, but apparently not available in kernel */
832 /*ARGSUSED*/
833 static void
834 rf_ConfigureDebug(cfgPtr)
835 RF_Config_t *cfgPtr;
836 {
837 char *val_p, *name_p, *white_p;
838 long val;
839 int i;
840
841 rf_ResetDebugOptions();
842 for (i = 0; cfgPtr->debugVars[i][0] && i < RF_MAXDBGV; i++) {
843 name_p = rf_find_non_white(&cfgPtr->debugVars[i][0]);
844 white_p = rf_find_white(name_p); /* skip to start of 2nd
845 * word */
846 val_p = rf_find_non_white(white_p);
847 if (*val_p == '0' && *(val_p + 1) == 'x')
848 val = rf_htoi(val_p + 2);
849 else
850 val = rf_atoi(val_p);
851 *white_p = '\0';
852 set_debug_option(name_p, val);
853 }
854 }
855 /* performance monitoring stuff */
856
857 #define TIMEVAL_TO_US(t) (((long) t.tv_sec) * 1000000L + (long) t.tv_usec)
858
859 #if !defined(_KERNEL) && !defined(SIMULATE)
860
861 /*
862 * Throughput stats currently only used in user-level RAIDframe
863 */
864
865 static int
866 rf_InitThroughputStats(
867 RF_ShutdownList_t ** listp,
868 RF_Raid_t * raidPtr,
869 RF_Config_t * cfgPtr)
870 {
871 int rc;
872
873 /* these used by user-level raidframe only */
874 rc = rf_create_managed_mutex(listp, &raidPtr->throughputstats.mutex);
875 if (rc) {
876 rf_print_unable_to_init_mutex(__FILE__, __LINE__, rc);
877 return (rc);
878 }
879 raidPtr->throughputstats.sum_io_us = 0;
880 raidPtr->throughputstats.num_ios = 0;
881 raidPtr->throughputstats.num_out_ios = 0;
882 return (0);
883 }
884
885 void
886 rf_StartThroughputStats(RF_Raid_t * raidPtr)
887 {
888 RF_LOCK_MUTEX(raidPtr->throughputstats.mutex);
889 raidPtr->throughputstats.num_ios++;
890 raidPtr->throughputstats.num_out_ios++;
891 if (raidPtr->throughputstats.num_out_ios == 1)
892 RF_GETTIME(raidPtr->throughputstats.start);
893 RF_UNLOCK_MUTEX(raidPtr->throughputstats.mutex);
894 }
895
896 static void
897 rf_StopThroughputStats(RF_Raid_t * raidPtr)
898 {
899 struct timeval diff;
900
901 RF_LOCK_MUTEX(raidPtr->throughputstats.mutex);
902 raidPtr->throughputstats.num_out_ios--;
903 if (raidPtr->throughputstats.num_out_ios == 0) {
904 RF_GETTIME(raidPtr->throughputstats.stop);
905 RF_TIMEVAL_DIFF(&raidPtr->throughputstats.start, &raidPtr->throughputstats.stop, &diff);
906 raidPtr->throughputstats.sum_io_us += TIMEVAL_TO_US(diff);
907 }
908 RF_UNLOCK_MUTEX(raidPtr->throughputstats.mutex);
909 }
910
911 static void
912 rf_PrintThroughputStats(RF_Raid_t * raidPtr)
913 {
914 RF_ASSERT(raidPtr->throughputstats.num_out_ios == 0);
915 if (raidPtr->throughputstats.sum_io_us != 0) {
916 printf("[Througphut: %8.2f IOs/second]\n", raidPtr->throughputstats.num_ios
917 / (raidPtr->throughputstats.sum_io_us / 1000000.0));
918 }
919 }
920 #endif /* !KERNEL && !SIMULATE */
921
922 void
923 rf_StartUserStats(RF_Raid_t * raidPtr)
924 {
925 RF_GETTIME(raidPtr->userstats.start);
926 raidPtr->userstats.sum_io_us = 0;
927 raidPtr->userstats.num_ios = 0;
928 raidPtr->userstats.num_sect_moved = 0;
929 }
930
931 void
932 rf_StopUserStats(RF_Raid_t * raidPtr)
933 {
934 RF_GETTIME(raidPtr->userstats.stop);
935 }
936
937 void
938 rf_UpdateUserStats(raidPtr, rt, numsect)
939 RF_Raid_t *raidPtr;
940 int rt; /* resp time in us */
941 int numsect; /* number of sectors for this access */
942 {
943 raidPtr->userstats.sum_io_us += rt;
944 raidPtr->userstats.num_ios++;
945 raidPtr->userstats.num_sect_moved += numsect;
946 }
947
948 void
949 rf_PrintUserStats(RF_Raid_t * raidPtr)
950 {
951 long elapsed_us, mbs, mbs_frac;
952 struct timeval diff;
953
954 RF_TIMEVAL_DIFF(&raidPtr->userstats.start, &raidPtr->userstats.stop, &diff);
955 elapsed_us = TIMEVAL_TO_US(diff);
956
957 /* 2000 sectors per megabyte, 10000000 microseconds per second */
958 if (elapsed_us)
959 mbs = (raidPtr->userstats.num_sect_moved / 2000) / (elapsed_us / 1000000);
960 else
961 mbs = 0;
962
963 /* this computes only the first digit of the fractional mb/s moved */
964 if (elapsed_us) {
965 mbs_frac = ((raidPtr->userstats.num_sect_moved / 200) / (elapsed_us / 1000000))
966 - (mbs * 10);
967 } else {
968 mbs_frac = 0;
969 }
970
971 printf("Number of I/Os: %ld\n", raidPtr->userstats.num_ios);
972 printf("Elapsed time (us): %ld\n", elapsed_us);
973 printf("User I/Os per second: %ld\n", RF_DB0_CHECK(raidPtr->userstats.num_ios, (elapsed_us / 1000000)));
974 printf("Average user response time: %ld us\n", RF_DB0_CHECK(raidPtr->userstats.sum_io_us, raidPtr->userstats.num_ios));
975 printf("Total sectors moved: %ld\n", raidPtr->userstats.num_sect_moved);
976 printf("Average access size (sect): %ld\n", RF_DB0_CHECK(raidPtr->userstats.num_sect_moved, raidPtr->userstats.num_ios));
977 printf("Achieved data rate: %ld.%ld MB/sec\n", mbs, mbs_frac);
978 }
979
980
981 void
982 rf_print_panic_message(line,file)
983 int line;
984 char *file;
985 {
986 sprintf(rf_panicbuf,"raidframe error at line %d file %s",
987 line, file);
988 }
989
990 #ifdef RAID_DIAGNOSTIC
991 void
992 rf_print_assert_panic_message(line,file,condition)
993 int line;
994 char *file;
995 char *condition;
996 {
997 sprintf(rf_panicbuf,
998 "raidframe error at line %d file %s (failed asserting %s)\n",
999 line, file, condition);
1000 }
1001 #endif
1002
1003 void
1004 rf_print_unable_to_init_mutex(file,line,rc)
1005 char *file;
1006 int line;
1007 int rc;
1008 {
1009 RF_ERRORMSG3("Unable to init mutex file %s line %d rc=%d\n",
1010 file, line, rc);
1011 }
1012
1013 void
1014 rf_print_unable_to_init_cond(file,line,rc)
1015 char *file;
1016 int line;
1017 int rc;
1018 {
1019 RF_ERRORMSG3("Unable to init cond file %s line %d rc=%d\n",
1020 file, line, rc);
1021 }
1022
1023 void
1024 rf_print_unable_to_add_shutdown(file,line,rc)
1025 char *file;
1026 int line;
1027 int rc;
1028 {
1029 RF_ERRORMSG3("Unable to add to shutdown list file %s line %d rc=%d\n",
1030 file, line, rc);
1031 }
1032