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rf_driver.c revision 1.136.12.2
      1 /*	$NetBSD: rf_driver.c,v 1.136.12.2 2021/08/01 22:42:31 thorpej 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  *
     18  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     19  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     20  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     21  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     22  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     23  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     24  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     25  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     26  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     27  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     28  * POSSIBILITY OF SUCH DAMAGE.
     29  */
     30 
     31 /*
     32  * Copyright (c) 1995 Carnegie-Mellon University.
     33  * All rights reserved.
     34  *
     35  * Author: Mark Holland, Khalil Amiri, Claudson Bornstein, William V. Courtright II,
     36  *         Robby Findler, Daniel Stodolsky, Rachad Youssef, Jim Zelenka
     37  *
     38  * Permission to use, copy, modify and distribute this software and
     39  * its documentation is hereby granted, provided that both the copyright
     40  * notice and this permission notice appear in all copies of the
     41  * software, derivative works or modified versions, and any portions
     42  * thereof, and that both notices appear in supporting documentation.
     43  *
     44  * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS "AS IS"
     45  * CONDITION.  CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND
     46  * FOR ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE.
     47  *
     48  * Carnegie Mellon requests users of this software to return to
     49  *
     50  *  Software Distribution Coordinator  or  Software.Distribution (at) CS.CMU.EDU
     51  *  School of Computer Science
     52  *  Carnegie Mellon University
     53  *  Pittsburgh PA 15213-3890
     54  *
     55  * any improvements or extensions that they make and grant Carnegie the
     56  * rights to redistribute these changes.
     57  */
     58 
     59 /******************************************************************************
     60  *
     61  * rf_driver.c -- main setup, teardown, and access routines for the RAID driver
     62  *
     63  * all routines are prefixed with rf_ (raidframe), to avoid conficts.
     64  *
     65  ******************************************************************************/
     66 
     67 
     68 #include <sys/cdefs.h>
     69 __KERNEL_RCSID(0, "$NetBSD: rf_driver.c,v 1.136.12.2 2021/08/01 22:42:31 thorpej Exp $");
     70 
     71 #ifdef _KERNEL_OPT
     72 #include "opt_raid_diagnostic.h"
     73 #endif
     74 
     75 #include <sys/param.h>
     76 #include <sys/systm.h>
     77 #include <sys/ioctl.h>
     78 #include <sys/fcntl.h>
     79 #include <sys/vnode.h>
     80 
     81 
     82 #include "rf_archs.h"
     83 #include "rf_threadstuff.h"
     84 
     85 #include <sys/errno.h>
     86 
     87 #include "rf_raid.h"
     88 #include "rf_dag.h"
     89 #include "rf_aselect.h"
     90 #include "rf_diskqueue.h"
     91 #include "rf_parityscan.h"
     92 #include "rf_alloclist.h"
     93 #include "rf_dagutils.h"
     94 #include "rf_utils.h"
     95 #include "rf_etimer.h"
     96 #include "rf_acctrace.h"
     97 #include "rf_general.h"
     98 #include "rf_desc.h"
     99 #include "rf_states.h"
    100 #include "rf_decluster.h"
    101 #include "rf_map.h"
    102 #include "rf_revent.h"
    103 #include "rf_callback.h"
    104 #include "rf_engine.h"
    105 #include "rf_mcpair.h"
    106 #include "rf_nwayxor.h"
    107 #include "rf_copyback.h"
    108 #include "rf_driver.h"
    109 #include "rf_options.h"
    110 #include "rf_shutdown.h"
    111 #include "rf_kintf.h"
    112 #include "rf_paritymap.h"
    113 
    114 #include <sys/buf.h>
    115 
    116 #ifndef RF_ACCESS_DEBUG
    117 #define RF_ACCESS_DEBUG 0
    118 #endif
    119 
    120 /* rad == RF_RaidAccessDesc_t */
    121 #define RF_MAX_FREE_RAD 128
    122 #define RF_MIN_FREE_RAD  32
    123 
    124 /* main configuration routines */
    125 static int raidframe_booted = 0;
    126 
    127 static void rf_ConfigureDebug(RF_Config_t * cfgPtr);
    128 static void set_debug_option(char *name, long val);
    129 static void rf_UnconfigureArray(void);
    130 static void rf_ShutdownRDFreeList(void *);
    131 static int rf_ConfigureRDFreeList(RF_ShutdownList_t **, RF_Raid_t *, RF_Config_t *);
    132 
    133 rf_declare_mutex2(rf_printf_mutex);	/* debug only:  avoids interleaved
    134 					 * printfs by different stripes */
    135 
    136 #define SIGNAL_QUIESCENT_COND(_raid_) \
    137 	rf_broadcast_cond2((_raid_)->access_suspend_cv)
    138 #define WAIT_FOR_QUIESCENCE(_raid_) \
    139 	rf_wait_cond2((_raid_)->access_suspend_cv, \
    140 		      (_raid_)->access_suspend_mutex)
    141 
    142 static int configureCount = 0;	/* number of active configurations */
    143 static int isconfigged = 0;	/* is basic raidframe (non per-array)
    144 				 * stuff configured */
    145 static rf_declare_mutex2(configureMutex); /* used to lock the configuration
    146 					   * stuff */
    147 static RF_ShutdownList_t *globalShutdown;	/* non array-specific
    148 						 * stuff */
    149 
    150 static int rf_ConfigureRDFreeList(RF_ShutdownList_t ** listp, RF_Raid_t *raidPtr, RF_Config_t *cfgPtr);
    151 static int rf_AllocEmergBuffers(RF_Raid_t *);
    152 static void rf_FreeEmergBuffers(RF_Raid_t *);
    153 static void rf_destroy_mutex_cond(RF_Raid_t *);
    154 static void rf_alloc_mutex_cond(RF_Raid_t *);
    155 
    156 /* called at system boot time */
    157 int
    158 rf_BootRaidframe(bool boot)
    159 {
    160 
    161 	if (boot) {
    162 		if (raidframe_booted)
    163 			return (EBUSY);
    164 		raidframe_booted = 1;
    165 		rf_init_mutex2(configureMutex, IPL_NONE);
    166  		configureCount = 0;
    167 		isconfigged = 0;
    168 		globalShutdown = NULL;
    169 	} else {
    170 		rf_destroy_mutex2(configureMutex);
    171 		raidframe_booted = 0;
    172 	}
    173 	return (0);
    174 }
    175 
    176 /*
    177  * Called whenever an array is shutdown
    178  */
    179 static void
    180 rf_UnconfigureArray(void)
    181 {
    182 
    183 	rf_lock_mutex2(configureMutex);
    184 	if (--configureCount == 0) {	/* if no active configurations, shut
    185 					 * everything down */
    186 		rf_destroy_mutex2(rf_printf_mutex);
    187 		isconfigged = 0;
    188 		rf_ShutdownList(&globalShutdown);
    189 
    190 		/*
    191 	         * We must wait until now, because the AllocList module
    192 	         * uses the DebugMem module.
    193 	         */
    194 #if RF_DEBUG_MEM
    195 		if (rf_memDebug)
    196 			rf_print_unfreed();
    197 #endif
    198 	}
    199 	rf_unlock_mutex2(configureMutex);
    200 }
    201 
    202 /*
    203  * Called to shut down an array.
    204  */
    205 int
    206 rf_Shutdown(RF_Raid_t *raidPtr)
    207 {
    208 
    209 	if (!raidPtr->valid) {
    210 		RF_ERRORMSG("Attempt to shut down unconfigured RAIDframe driver.  Aborting shutdown\n");
    211 		return (EINVAL);
    212 	}
    213 	/*
    214          * wait for outstanding IOs to land
    215          * As described in rf_raid.h, we use the rad_freelist lock
    216          * to protect the per-array info about outstanding descs
    217          * since we need to do freelist locking anyway, and this
    218          * cuts down on the amount of serialization we've got going
    219          * on.
    220          */
    221 	rf_lock_mutex2(raidPtr->rad_lock);
    222 	if (raidPtr->waitShutdown) {
    223 		rf_unlock_mutex2(raidPtr->rad_lock);
    224 		return (EBUSY);
    225 	}
    226 	raidPtr->waitShutdown = 1;
    227 	while (raidPtr->nAccOutstanding) {
    228 		rf_wait_cond2(raidPtr->outstandingCond, raidPtr->rad_lock);
    229 	}
    230 
    231 	/* Wait for any parity re-writes to stop... */
    232 	while (raidPtr->parity_rewrite_in_progress) {
    233 		printf("raid%d: Waiting for parity re-write to exit...\n",
    234 		       raidPtr->raidid);
    235 		rf_wait_cond2(raidPtr->parity_rewrite_cv, raidPtr->rad_lock);
    236 	}
    237 	rf_unlock_mutex2(raidPtr->rad_lock);
    238 
    239 	/* Wait for any reconstruction to stop... */
    240 	rf_lock_mutex2(raidPtr->mutex);
    241 	while (raidPtr->reconInProgress) {
    242 		printf("raid%d: Waiting for reconstruction to stop...\n",
    243 		       raidPtr->raidid);
    244 		rf_wait_cond2(raidPtr->waitForReconCond, raidPtr->mutex);
    245 	}
    246 	rf_unlock_mutex2(raidPtr->mutex);
    247 
    248 	raidPtr->valid = 0;
    249 
    250 	if (raidPtr->parity_map != NULL)
    251 		rf_paritymap_detach(raidPtr);
    252 
    253 	rf_update_component_labels(raidPtr, RF_FINAL_COMPONENT_UPDATE);
    254 
    255 	rf_UnconfigureVnodes(raidPtr);
    256 
    257 	rf_FreeEmergBuffers(raidPtr);
    258 
    259 	rf_ShutdownList(&raidPtr->shutdownList);
    260 
    261 	rf_destroy_mutex_cond(raidPtr);
    262 
    263 	rf_UnconfigureArray();
    264 
    265 	return (0);
    266 }
    267 
    268 
    269 #define DO_INIT_CONFIGURE(f) { \
    270 	rc = f (&globalShutdown); \
    271 	if (rc) { \
    272 		RF_ERRORMSG2("RAIDFRAME: failed %s with %d\n", RF_STRING(f), rc); \
    273 		rf_ShutdownList(&globalShutdown); \
    274 		configureCount--; \
    275 		rf_unlock_mutex2(configureMutex); \
    276 		rf_destroy_mutex2(rf_printf_mutex); \
    277 		return(rc); \
    278 	} \
    279 }
    280 
    281 #define DO_RAID_FAIL() { \
    282 	rf_UnconfigureVnodes(raidPtr); \
    283 	rf_FreeEmergBuffers(raidPtr); \
    284 	rf_ShutdownList(&raidPtr->shutdownList); \
    285 	rf_UnconfigureArray(); \
    286 	rf_destroy_mutex_cond(raidPtr); \
    287 }
    288 
    289 #define DO_RAID_INIT_CONFIGURE(f) { \
    290 	rc = f (&raidPtr->shutdownList, raidPtr, cfgPtr); \
    291 	if (rc) { \
    292 		RF_ERRORMSG2("RAIDFRAME: failed %s with %d\n", RF_STRING(f), rc); \
    293 		DO_RAID_FAIL(); \
    294 		return(rc); \
    295 	} \
    296 }
    297 
    298 int
    299 rf_Configure(RF_Raid_t *raidPtr, RF_Config_t *cfgPtr, RF_AutoConfig_t *ac)
    300 {
    301 	RF_RowCol_t col;
    302 	int rc;
    303 	bool swapped = false;
    304 	bool first = true;
    305 
    306 	rf_lock_mutex2(configureMutex);
    307 	configureCount++;
    308 	if (isconfigged == 0) {
    309 		rf_init_mutex2(rf_printf_mutex, IPL_VM);
    310 
    311 		/* initialize globals */
    312 		DO_INIT_CONFIGURE(rf_ConfigureAllocList);
    313 
    314 		/*
    315 	         * Yes, this does make debugging general to the whole
    316 	         * system instead of being array specific. Bummer, drag.
    317 		 */
    318 		rf_ConfigureDebug(cfgPtr);
    319 		DO_INIT_CONFIGURE(rf_ConfigureDebugMem);
    320 #if RF_ACC_TRACE > 0
    321 		DO_INIT_CONFIGURE(rf_ConfigureAccessTrace);
    322 #endif
    323 		DO_INIT_CONFIGURE(rf_ConfigureNWayXor);
    324 		DO_INIT_CONFIGURE(rf_ConfigureDAGFuncs);
    325 		DO_INIT_CONFIGURE(rf_ConfigureCopyback);
    326 		isconfigged = 1;
    327 	}
    328 	rf_unlock_mutex2(configureMutex);
    329 
    330 	rf_alloc_mutex_cond(raidPtr);
    331 
    332 	/* set up the cleanup list.  Do this after ConfigureDebug so that
    333 	 * value of memDebug will be set */
    334 
    335 	rf_MakeAllocList(raidPtr->cleanupList);
    336 	if (raidPtr->cleanupList == NULL) {
    337 		DO_RAID_FAIL();
    338 		return (ENOMEM);
    339 	}
    340 	rf_ShutdownCreate(&raidPtr->shutdownList,
    341 			  (void (*) (void *)) rf_FreeAllocList,
    342 			  raidPtr->cleanupList);
    343 
    344 	raidPtr->numCol = cfgPtr->numCol;
    345 	raidPtr->numSpare = cfgPtr->numSpare;
    346 
    347 	raidPtr->status = rf_rs_optimal;
    348 	raidPtr->reconControl = NULL;
    349 
    350 	DO_RAID_INIT_CONFIGURE(rf_ConfigureMapModule);
    351 	DO_RAID_INIT_CONFIGURE(rf_ConfigureReconEvent);
    352 	DO_RAID_INIT_CONFIGURE(rf_ConfigureCallback);
    353 	DO_RAID_INIT_CONFIGURE(rf_ConfigureRDFreeList);
    354 	DO_RAID_INIT_CONFIGURE(rf_ConfigureStripeLockFreeList);
    355 	DO_RAID_INIT_CONFIGURE(rf_ConfigureMCPair);
    356 	DO_RAID_INIT_CONFIGURE(rf_ConfigureDAGs);
    357 	DO_RAID_INIT_CONFIGURE(rf_ConfigureReconstruction);
    358 	DO_RAID_INIT_CONFIGURE(rf_ConfigureDiskQueueSystem);
    359 	DO_RAID_INIT_CONFIGURE(rf_ConfigurePSStatus);
    360 
    361 	DO_RAID_INIT_CONFIGURE(rf_ConfigureEngine);
    362 	DO_RAID_INIT_CONFIGURE(rf_ConfigureStripeLocks);
    363 
    364 	raidPtr->nAccOutstanding = 0;
    365 	raidPtr->waitShutdown = 0;
    366 
    367 	if (ac!=NULL) {
    368 		/* We have an AutoConfig structure..  Don't do the
    369 		   normal disk configuration... call the auto config
    370 		   stuff */
    371 		rf_AutoConfigureDisks(raidPtr, cfgPtr, ac);
    372 	} else {
    373 		DO_RAID_INIT_CONFIGURE(rf_ConfigureDisks);
    374 		DO_RAID_INIT_CONFIGURE(rf_ConfigureSpareDisks);
    375 	}
    376 	/* do this after ConfigureDisks & ConfigureSpareDisks to be sure dev
    377 	 * no. is set */
    378 	DO_RAID_INIT_CONFIGURE(rf_ConfigureDiskQueues);
    379 
    380 	DO_RAID_INIT_CONFIGURE(rf_ConfigureLayout);
    381 
    382 
    383 
    384 
    385 	/* Initialize per-RAID PSS bits */
    386 	rf_InitPSStatus(raidPtr);
    387 
    388 #if RF_INCLUDE_CHAINDECLUSTER > 0
    389 	for (col = 0; col < raidPtr->numCol; col++) {
    390 		/*
    391 		 * XXX better distribution
    392 		 */
    393 		raidPtr->hist_diskreq[col] = 0;
    394 	}
    395 #endif
    396 	raidPtr->numNewFailures = 0;
    397 	raidPtr->copyback_in_progress = 0;
    398 	raidPtr->parity_rewrite_in_progress = 0;
    399 	raidPtr->adding_hot_spare = 0;
    400 	raidPtr->recon_in_progress = 0;
    401 
    402 	raidPtr->maxOutstanding = cfgPtr->maxOutstandingDiskReqs;
    403 
    404 	/* autoconfigure and root_partition will actually get filled in
    405 	   after the config is done */
    406 	raidPtr->autoconfigure = 0;
    407 	raidPtr->root_partition = 0;
    408 	raidPtr->last_unit = raidPtr->raidid;
    409 	raidPtr->config_order = 0;
    410 
    411 	if (rf_keepAccTotals) {
    412 		raidPtr->keep_acc_totals = 1;
    413 	}
    414 
    415 	/* Allocate a bunch of buffers to be used in low-memory conditions */
    416 	raidPtr->iobuf = NULL;
    417 
    418 	rc = rf_AllocEmergBuffers(raidPtr);
    419 	if (rc) {
    420 		printf("raid%d: Unable to allocate emergency buffers.\n",
    421 		       raidPtr->raidid);
    422 		DO_RAID_FAIL();
    423 		return(rc);
    424 	}
    425 
    426 	/* Set up parity map stuff, if applicable. */
    427 #ifndef RF_NO_PARITY_MAP
    428 	rf_paritymap_attach(raidPtr, cfgPtr->force);
    429 #endif
    430 
    431 	raidPtr->valid = 1;
    432 
    433 	printf("raid%d: %s\n", raidPtr->raidid,
    434 	       raidPtr->Layout.map->configName);
    435 	printf("raid%d: Components:", raidPtr->raidid);
    436 
    437 	for (col = 0; col < raidPtr->numCol; col++) {
    438 		RF_ComponentLabel_t *clabel;
    439 		bool compswapped;
    440 
    441 		printf(" %s", raidPtr->Disks[col].devname);
    442 		if (RF_DEAD_DISK(raidPtr->Disks[col].status)) {
    443 			printf("[**FAILED**]");
    444 		}
    445 		clabel = raidget_component_label(raidPtr, col);
    446 		compswapped = clabel->version ==
    447 			      bswap32(RF_COMPONENT_LABEL_VERSION);
    448 		if (first)
    449 			swapped = compswapped;
    450 		else if (swapped != compswapped)
    451 			printf("raid%d: Component %d has different endian "
    452 			       "than first component.", raidPtr->raidid, col);
    453 	}
    454 	printf("\n");
    455 	printf("raid%d: Total Sectors: %" PRIu64 " (%" PRIu64 " MB)\n",
    456 	       raidPtr->raidid,
    457 	       raidPtr->totalSectors,
    458 	       (raidPtr->totalSectors / 1024 *
    459 				(1 << raidPtr->logBytesPerSector) / 1024));
    460 	if (swapped)
    461 		printf("raid%d: Using swapped-endian component labels.\n",
    462 		    raidPtr->raidid);
    463 
    464 	return (0);
    465 }
    466 
    467 
    468 /*
    469 
    470   Routines to allocate and free the "emergency buffers" for a given
    471   RAID set.  These emergency buffers will be used when the kernel runs
    472   out of kernel memory.
    473 
    474  */
    475 
    476 static int
    477 rf_AllocEmergBuffers(RF_Raid_t *raidPtr)
    478 {
    479 	void *tmpbuf;
    480 	RF_VoidPointerListElem_t *vple;
    481 	int i;
    482 
    483 	/* XXX next line needs tuning... */
    484 	raidPtr->numEmergencyBuffers = 10 * raidPtr->numCol;
    485 #if DEBUG
    486 	printf("raid%d: allocating %d buffers of %d bytes.\n",
    487 	       raidPtr->raidid,
    488 	       raidPtr->numEmergencyBuffers,
    489 	       (int)(raidPtr->Layout.sectorsPerStripeUnit <<
    490 	       raidPtr->logBytesPerSector));
    491 #endif
    492 	for (i = 0; i < raidPtr->numEmergencyBuffers; i++) {
    493 		tmpbuf = malloc( raidPtr->Layout.sectorsPerStripeUnit <<
    494 				 raidPtr->logBytesPerSector,
    495 				 M_RAIDFRAME, M_WAITOK);
    496 		if (tmpbuf) {
    497 			vple = rf_AllocVPListElem(raidPtr);
    498 			vple->p= tmpbuf;
    499 			vple->next = raidPtr->iobuf;
    500 			raidPtr->iobuf = vple;
    501 			raidPtr->iobuf_count++;
    502 		} else {
    503 			printf("raid%d: failed to allocate emergency buffer!\n",
    504 			       raidPtr->raidid);
    505 			return 1;
    506 		}
    507 	}
    508 
    509 	/* XXX next line needs tuning too... */
    510 	raidPtr->numEmergencyStripeBuffers = 10;
    511         for (i = 0; i < raidPtr->numEmergencyStripeBuffers; i++) {
    512                 tmpbuf = malloc( raidPtr->numCol * (raidPtr->Layout.sectorsPerStripeUnit <<
    513                                  raidPtr->logBytesPerSector),
    514                                  M_RAIDFRAME, M_WAITOK);
    515                 if (tmpbuf) {
    516                         vple = rf_AllocVPListElem(raidPtr);
    517                         vple->p= tmpbuf;
    518                         vple->next = raidPtr->stripebuf;
    519                         raidPtr->stripebuf = vple;
    520                         raidPtr->stripebuf_count++;
    521                 } else {
    522                         printf("raid%d: failed to allocate emergency stripe buffer!\n",
    523                                raidPtr->raidid);
    524 			return 1;
    525                 }
    526         }
    527 
    528 	return (0);
    529 }
    530 
    531 static void
    532 rf_FreeEmergBuffers(RF_Raid_t *raidPtr)
    533 {
    534 	RF_VoidPointerListElem_t *tmp;
    535 
    536 	/* Free the emergency IO buffers */
    537 	while (raidPtr->iobuf != NULL) {
    538 		tmp = raidPtr->iobuf;
    539 		raidPtr->iobuf = raidPtr->iobuf->next;
    540 		free(tmp->p, M_RAIDFRAME);
    541 		rf_FreeVPListElem(raidPtr,tmp);
    542 	}
    543 
    544 	/* Free the emergency stripe buffers */
    545 	while (raidPtr->stripebuf != NULL) {
    546 		tmp = raidPtr->stripebuf;
    547 		raidPtr->stripebuf = raidPtr->stripebuf->next;
    548 		free(tmp->p, M_RAIDFRAME);
    549 		rf_FreeVPListElem(raidPtr, tmp);
    550 	}
    551 }
    552 
    553 
    554 static void
    555 rf_ShutdownRDFreeList(void *arg)
    556 {
    557 	RF_Raid_t *raidPtr;
    558 
    559 	raidPtr = (RF_Raid_t *) arg;
    560 
    561 	pool_destroy(&raidPtr->pools.rad);
    562 }
    563 
    564 static int
    565 rf_ConfigureRDFreeList(RF_ShutdownList_t **listp, RF_Raid_t *raidPtr,
    566 		       RF_Config_t *cfgPtr)
    567 {
    568 
    569 	rf_pool_init(raidPtr, raidPtr->poolNames.rad, &raidPtr->pools.rad, sizeof(RF_RaidAccessDesc_t),
    570 		     "rad", RF_MIN_FREE_RAD, RF_MAX_FREE_RAD);
    571 	rf_ShutdownCreate(listp, rf_ShutdownRDFreeList, raidPtr);
    572 	return (0);
    573 }
    574 
    575 RF_RaidAccessDesc_t *
    576 rf_AllocRaidAccDesc(RF_Raid_t *raidPtr, RF_IoType_t type,
    577 		    RF_RaidAddr_t raidAddress, RF_SectorCount_t numBlocks,
    578 		    void *bufPtr, void *bp, RF_RaidAccessFlags_t flags,
    579 		    const RF_AccessState_t *states)
    580 {
    581 	RF_RaidAccessDesc_t *desc;
    582 
    583 	desc = pool_get(&raidPtr->pools.rad, PR_WAITOK);
    584 
    585 	rf_lock_mutex2(raidPtr->rad_lock);
    586 	if (raidPtr->waitShutdown) {
    587 		/*
    588 	         * Actually, we're shutting the array down. Free the desc
    589 	         * and return NULL.
    590 	         */
    591 
    592 		rf_unlock_mutex2(raidPtr->rad_lock);
    593 		pool_put(&raidPtr->pools.rad, desc);
    594 		return (NULL);
    595 	}
    596 	raidPtr->nAccOutstanding++;
    597 
    598 	rf_unlock_mutex2(raidPtr->rad_lock);
    599 
    600 	desc->raidPtr = (void *) raidPtr;
    601 	desc->type = type;
    602 	desc->raidAddress = raidAddress;
    603 	desc->numBlocks = numBlocks;
    604 	desc->bufPtr = bufPtr;
    605 	desc->bp = bp;
    606 	desc->flags = flags;
    607 	desc->states = states;
    608 	desc->state = 0;
    609 	desc->dagList = NULL;
    610 
    611 	desc->status = 0;
    612 	desc->numRetries = 0;
    613 #if RF_ACC_TRACE > 0
    614 	memset(&desc->tracerec, 0, sizeof(desc->tracerec));
    615 #endif
    616 	desc->callbackFunc = NULL;
    617 	desc->callbackArg = NULL;
    618 	desc->next = NULL;
    619 	desc->iobufs = NULL;
    620 	desc->stripebufs = NULL;
    621 
    622 	return (desc);
    623 }
    624 
    625 void
    626 rf_FreeRaidAccDesc(RF_RaidAccessDesc_t *desc)
    627 {
    628 	RF_Raid_t *raidPtr = desc->raidPtr;
    629 	RF_DagList_t *dagList, *temp;
    630 	RF_VoidPointerListElem_t *tmp;
    631 
    632 	RF_ASSERT(desc);
    633 
    634 	/* Cleanup the dagList(s) */
    635 	dagList = desc->dagList;
    636 	while(dagList != NULL) {
    637 		temp = dagList;
    638 		dagList = dagList->next;
    639 		rf_FreeDAGList(raidPtr, temp);
    640 	}
    641 
    642 	while (desc->iobufs) {
    643 		tmp = desc->iobufs;
    644 		desc->iobufs = desc->iobufs->next;
    645 		rf_FreeIOBuffer(raidPtr, tmp);
    646 	}
    647 
    648 	while (desc->stripebufs) {
    649 		tmp = desc->stripebufs;
    650 		desc->stripebufs = desc->stripebufs->next;
    651 		rf_FreeStripeBuffer(raidPtr, tmp);
    652 	}
    653 
    654 	pool_put(&raidPtr->pools.rad, desc);
    655 	rf_lock_mutex2(raidPtr->rad_lock);
    656 	raidPtr->nAccOutstanding--;
    657 	if (raidPtr->waitShutdown) {
    658 		rf_signal_cond2(raidPtr->outstandingCond);
    659 	}
    660 	rf_unlock_mutex2(raidPtr->rad_lock);
    661 }
    662 /*********************************************************************
    663  * Main routine for performing an access.
    664  * Accesses are retried until a DAG can not be selected.  This occurs
    665  * when either the DAG library is incomplete or there are too many
    666  * failures in a parity group.
    667  *
    668  * type should be read or write.  bp_in is a buf pointer.  void *to
    669  * facilitate ignoring it outside the kernel
    670  ********************************************************************/
    671 int
    672 rf_DoAccess(RF_Raid_t * raidPtr, RF_IoType_t type, RF_RaidAddr_t raidAddress, RF_SectorCount_t numBlocks,
    673 	    void *bufPtr, struct buf *bp, RF_RaidAccessFlags_t flags)
    674 {
    675 	RF_RaidAccessDesc_t *desc;
    676 	void *lbufPtr = bufPtr;
    677 
    678 	raidAddress += rf_raidSectorOffset;
    679 
    680 #if RF_ACCESS_DEBUG
    681 	if (rf_accessDebug) {
    682 
    683 		printf("logBytes is: %d %d %d\n", raidPtr->raidid,
    684 		    raidPtr->logBytesPerSector,
    685 		    (int) rf_RaidAddressToByte(raidPtr, numBlocks));
    686 		printf("raid%d: %s raidAddr %d (stripeid %d-%d) numBlocks %d (%d bytes) buf 0x%lx\n", raidPtr->raidid,
    687 		    (type == RF_IO_TYPE_READ) ? "READ" : "WRITE", (int) raidAddress,
    688 		    (int) rf_RaidAddressToStripeID(&raidPtr->Layout, raidAddress),
    689 		    (int) rf_RaidAddressToStripeID(&raidPtr->Layout, raidAddress + numBlocks - 1),
    690 		    (int) numBlocks,
    691 		    (int) rf_RaidAddressToByte(raidPtr, numBlocks),
    692 		    (long) bufPtr);
    693 	}
    694 #endif
    695 
    696 	desc = rf_AllocRaidAccDesc(raidPtr, type, raidAddress,
    697 	    numBlocks, lbufPtr, bp, flags, raidPtr->Layout.map->states);
    698 
    699 	if (desc == NULL) {
    700 		return (ENOMEM);
    701 	}
    702 #if RF_ACC_TRACE > 0
    703 	RF_ETIMER_START(desc->tracerec.tot_timer);
    704 #endif
    705 
    706 	if (raidPtr->parity_map != NULL &&
    707 	    type == RF_IO_TYPE_WRITE)
    708 		rf_paritymap_begin(raidPtr->parity_map, raidAddress,
    709 		    numBlocks);
    710 
    711 	rf_ContinueRaidAccess(desc);
    712 
    713 	return (0);
    714 }
    715 #if 0
    716 /* force the array into reconfigured mode without doing reconstruction */
    717 int
    718 rf_SetReconfiguredMode(RF_Raid_t *raidPtr, int col)
    719 {
    720 	if (!(raidPtr->Layout.map->flags & RF_DISTRIBUTE_SPARE)) {
    721 		printf("Can't set reconfigured mode in dedicated-spare array\n");
    722 		RF_PANIC();
    723 	}
    724 	rf_lock_mutex2(raidPtr->mutex);
    725 	raidPtr->numFailures++;
    726 	raidPtr->Disks[col].status = rf_ds_dist_spared;
    727 	raidPtr->status = rf_rs_reconfigured;
    728 	rf_update_component_labels(raidPtr, RF_NORMAL_COMPONENT_UPDATE);
    729 	/* install spare table only if declustering + distributed sparing
    730 	 * architecture. */
    731 	if (raidPtr->Layout.map->flags & RF_BD_DECLUSTERED)
    732 		rf_InstallSpareTable(raidPtr, col);
    733 	rf_unlock_mutex2(raidPtr->mutex);
    734 	return (0);
    735 }
    736 #endif
    737 
    738 int
    739 rf_FailDisk(RF_Raid_t *raidPtr, int fcol, int initRecon)
    740 {
    741 
    742 	/* need to suspend IO's here -- if there are DAGs in flight
    743 	   and we pull the rug out from under ci_vp, Bad Things
    744 	   can happen.  */
    745 
    746 	rf_SuspendNewRequestsAndWait(raidPtr);
    747 
    748 	rf_lock_mutex2(raidPtr->mutex);
    749 	if (raidPtr->Disks[fcol].status != rf_ds_failed) {
    750 		/* must be failing something that is valid, or else it's
    751 		   already marked as failed (in which case we don't
    752 		   want to mark it failed again!) */
    753 		raidPtr->numFailures++;
    754 		raidPtr->Disks[fcol].status = rf_ds_failed;
    755 		raidPtr->status = rf_rs_degraded;
    756 	}
    757 	rf_unlock_mutex2(raidPtr->mutex);
    758 
    759 	rf_update_component_labels(raidPtr, RF_NORMAL_COMPONENT_UPDATE);
    760 
    761 	/* Close the component, so that it's not "locked" if someone
    762 	   else want's to use it! */
    763 
    764 	rf_close_component(raidPtr, raidPtr->raid_cinfo[fcol].ci_vp,
    765 			   raidPtr->Disks[fcol].auto_configured);
    766 
    767 	rf_lock_mutex2(raidPtr->mutex);
    768 	raidPtr->raid_cinfo[fcol].ci_vp = NULL;
    769 
    770 	/* Need to mark the component as not being auto_configured
    771 	   (in case it was previously). */
    772 
    773 	raidPtr->Disks[fcol].auto_configured = 0;
    774 	rf_unlock_mutex2(raidPtr->mutex);
    775 	/* now we can allow IO to continue -- we'll be suspending it
    776 	   again in rf_ReconstructFailedDisk() if we have to.. */
    777 
    778 	rf_ResumeNewRequests(raidPtr);
    779 
    780 	if (initRecon)
    781 		rf_ReconstructFailedDisk(raidPtr, fcol);
    782 	return (0);
    783 }
    784 /* releases a thread that is waiting for the array to become quiesced.
    785  * access_suspend_mutex should be locked upon calling this
    786  */
    787 void
    788 rf_SignalQuiescenceLock(RF_Raid_t *raidPtr)
    789 {
    790 #if RF_DEBUG_QUIESCE
    791 	if (rf_quiesceDebug) {
    792 		printf("raid%d: Signalling quiescence lock\n",
    793 		       raidPtr->raidid);
    794 	}
    795 #endif
    796 	raidPtr->access_suspend_release = 1;
    797 
    798 	if (raidPtr->waiting_for_quiescence) {
    799 		SIGNAL_QUIESCENT_COND(raidPtr);
    800 	}
    801 }
    802 /* suspends all new requests to the array.  No effect on accesses that are in flight.  */
    803 int
    804 rf_SuspendNewRequestsAndWait(RF_Raid_t *raidPtr)
    805 {
    806 #if RF_DEBUG_QUIESCE
    807 	if (rf_quiesceDebug)
    808 		printf("raid%d: Suspending new reqs\n", raidPtr->raidid);
    809 #endif
    810 	rf_lock_mutex2(raidPtr->access_suspend_mutex);
    811 	raidPtr->accesses_suspended++;
    812 	raidPtr->waiting_for_quiescence = (raidPtr->accs_in_flight == 0) ? 0 : 1;
    813 
    814 	if (raidPtr->waiting_for_quiescence) {
    815 		raidPtr->access_suspend_release = 0;
    816 		while (!raidPtr->access_suspend_release) {
    817 #if RF_DEBUG_QUIESCE
    818 			printf("raid%d: Suspending: Waiting for Quiescence\n",
    819 			       raidPtr->raidid);
    820 #endif
    821 			WAIT_FOR_QUIESCENCE(raidPtr);
    822 			raidPtr->waiting_for_quiescence = 0;
    823 		}
    824 	}
    825 #if RF_DEBUG_QUIESCE
    826 	printf("raid%d: Quiescence reached..\n", raidPtr->raidid);
    827 #endif
    828 
    829 	rf_unlock_mutex2(raidPtr->access_suspend_mutex);
    830 	return (raidPtr->waiting_for_quiescence);
    831 }
    832 /* wake up everyone waiting for quiescence to be released */
    833 void
    834 rf_ResumeNewRequests(RF_Raid_t *raidPtr)
    835 {
    836 	RF_CallbackFuncDesc_t *t, *cb;
    837 
    838 #if RF_DEBUG_QUIESCE
    839 	if (rf_quiesceDebug)
    840 		printf("raid%d: Resuming new requests\n", raidPtr->raidid);
    841 #endif
    842 
    843 	rf_lock_mutex2(raidPtr->access_suspend_mutex);
    844 	raidPtr->accesses_suspended--;
    845 	if (raidPtr->accesses_suspended == 0)
    846 		cb = raidPtr->quiesce_wait_list;
    847 	else
    848 		cb = NULL;
    849 	raidPtr->quiesce_wait_list = NULL;
    850 	rf_unlock_mutex2(raidPtr->access_suspend_mutex);
    851 
    852 	while (cb) {
    853 		t = cb;
    854 		cb = cb->next;
    855 		(t->callbackFunc) (t->callbackArg);
    856 		rf_FreeCallbackFuncDesc(raidPtr, t);
    857 	}
    858 }
    859 /*****************************************************************************************
    860  *
    861  * debug routines
    862  *
    863  ****************************************************************************************/
    864 
    865 static void
    866 set_debug_option(char *name, long val)
    867 {
    868 	RF_DebugName_t *p;
    869 
    870 	for (p = rf_debugNames; p->name; p++) {
    871 		if (!strcmp(p->name, name)) {
    872 			*(p->ptr) = val;
    873 			printf("[Set debug variable %s to %ld]\n", name, val);
    874 			return;
    875 		}
    876 	}
    877 	RF_ERRORMSG1("Unknown debug string \"%s\"\n", name);
    878 }
    879 
    880 
    881 /* would like to use sscanf here, but apparently not available in kernel */
    882 /*ARGSUSED*/
    883 static void
    884 rf_ConfigureDebug(RF_Config_t *cfgPtr)
    885 {
    886 	char   *val_p, *name_p, *white_p;
    887 	long    val;
    888 	int     i;
    889 
    890 	rf_ResetDebugOptions();
    891 	for (i = 0; i < RF_MAXDBGV && cfgPtr->debugVars[i][0]; i++) {
    892 		name_p = rf_find_non_white(&cfgPtr->debugVars[i][0]);
    893 		white_p = rf_find_white(name_p);	/* skip to start of 2nd
    894 							 * word */
    895 		val_p = rf_find_non_white(white_p);
    896 		if (*val_p == '0' && *(val_p + 1) == 'x')
    897 			val = rf_htoi(val_p + 2);
    898 		else
    899 			val = rf_atoi(val_p);
    900 		*white_p = '\0';
    901 		set_debug_option(name_p, val);
    902 	}
    903 }
    904 
    905 void
    906 rf_print_panic_message(int line, const char *file)
    907 {
    908 	kern_assert("raidframe error at line %d file %s", line, file);
    909 }
    910 
    911 #ifdef RAID_DIAGNOSTIC
    912 void
    913 rf_print_assert_panic_message(int line,	const char *file, const char *condition)
    914 {
    915 	kern_assert("raidframe error at line %d file %s (failed asserting %s)\n",
    916 	    line, file, condition);
    917 }
    918 #endif
    919 
    920 void
    921 rf_print_unable_to_init_mutex(const char *file, int line, int rc)
    922 {
    923 	RF_ERRORMSG3("Unable to init mutex file %s line %d rc=%d\n",
    924 		     file, line, rc);
    925 }
    926 
    927 void
    928 rf_print_unable_to_add_shutdown(const char *file, int line, int rc)
    929 {
    930 	RF_ERRORMSG3("Unable to add to shutdown list file %s line %d rc=%d\n",
    931 		     file, line, rc);
    932 }
    933 
    934 static void
    935 rf_alloc_mutex_cond(RF_Raid_t *raidPtr)
    936 {
    937 
    938 	rf_init_mutex2(raidPtr->mutex, IPL_VM);
    939 
    940 	rf_init_cond2(raidPtr->outstandingCond, "rfocond");
    941 	rf_init_cond2(raidPtr->parity_rewrite_cv, "rfprwshutdown");
    942 	rf_init_mutex2(raidPtr->rad_lock, IPL_VM);
    943 
    944 	rf_init_mutex2(raidPtr->access_suspend_mutex, IPL_VM);
    945 	rf_init_cond2(raidPtr->access_suspend_cv, "rfquiesce");
    946 
    947 	rf_init_cond2(raidPtr->waitForReconCond, "rfrcnw");
    948 
    949 	rf_init_cond2(raidPtr->adding_hot_spare_cv, "raidhs");
    950 }
    951 
    952 static void
    953 rf_destroy_mutex_cond(RF_Raid_t *raidPtr)
    954 {
    955 
    956 	rf_destroy_cond2(raidPtr->waitForReconCond);
    957 	rf_destroy_cond2(raidPtr->adding_hot_spare_cv);
    958 
    959 	rf_destroy_mutex2(raidPtr->access_suspend_mutex);
    960 	rf_destroy_cond2(raidPtr->access_suspend_cv);
    961 
    962 	rf_destroy_cond2(raidPtr->parity_rewrite_cv);
    963 	rf_destroy_cond2(raidPtr->outstandingCond);
    964 	rf_destroy_mutex2(raidPtr->rad_lock);
    965 
    966 	rf_destroy_mutex2(raidPtr->mutex);
    967 }
    968