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rf_aselect.c revision 1.5.8.1
      1  1.5.8.1  gehenna /*	$NetBSD: rf_aselect.c,v 1.5.8.1 2002/08/29 05:22:48 gehenna Exp $	*/
      2      1.1    oster /*
      3      1.1    oster  * Copyright (c) 1995 Carnegie-Mellon University.
      4      1.1    oster  * All rights reserved.
      5      1.1    oster  *
      6      1.1    oster  * Author: Mark Holland, William V. Courtright II
      7      1.1    oster  *
      8      1.1    oster  * Permission to use, copy, modify and distribute this software and
      9      1.1    oster  * its documentation is hereby granted, provided that both the copyright
     10      1.1    oster  * notice and this permission notice appear in all copies of the
     11      1.1    oster  * software, derivative works or modified versions, and any portions
     12      1.1    oster  * thereof, and that both notices appear in supporting documentation.
     13      1.1    oster  *
     14      1.1    oster  * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS "AS IS"
     15      1.1    oster  * CONDITION.  CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND
     16      1.1    oster  * FOR ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE.
     17      1.1    oster  *
     18      1.1    oster  * Carnegie Mellon requests users of this software to return to
     19      1.1    oster  *
     20      1.1    oster  *  Software Distribution Coordinator  or  Software.Distribution (at) CS.CMU.EDU
     21      1.1    oster  *  School of Computer Science
     22      1.1    oster  *  Carnegie Mellon University
     23      1.1    oster  *  Pittsburgh PA 15213-3890
     24      1.1    oster  *
     25      1.1    oster  * any improvements or extensions that they make and grant Carnegie the
     26      1.1    oster  * rights to redistribute these changes.
     27      1.1    oster  */
     28      1.1    oster 
     29      1.1    oster /*****************************************************************************
     30      1.1    oster  *
     31      1.1    oster  * aselect.c -- algorithm selection code
     32      1.3    oster  *
     33      1.1    oster  *****************************************************************************/
     34      1.5    lukem 
     35      1.5    lukem #include <sys/cdefs.h>
     36  1.5.8.1  gehenna __KERNEL_RCSID(0, "$NetBSD: rf_aselect.c,v 1.5.8.1 2002/08/29 05:22:48 gehenna Exp $");
     37      1.2    oster 
     38      1.4    oster #include <dev/raidframe/raidframevar.h>
     39      1.1    oster 
     40      1.1    oster #include "rf_archs.h"
     41      1.1    oster #include "rf_raid.h"
     42      1.1    oster #include "rf_dag.h"
     43      1.1    oster #include "rf_dagutils.h"
     44      1.1    oster #include "rf_dagfuncs.h"
     45      1.1    oster #include "rf_general.h"
     46      1.1    oster #include "rf_desc.h"
     47      1.1    oster #include "rf_map.h"
     48      1.1    oster 
     49      1.1    oster #if defined(__NetBSD__) && defined(_KERNEL)
     50      1.1    oster /* the function below is not used... so don't define it! */
     51      1.1    oster #else
     52      1.1    oster static void TransferDagMemory(RF_DagHeader_t *, RF_DagHeader_t *);
     53      1.1    oster #endif
     54      1.1    oster 
     55  1.5.8.1  gehenna static int InitHdrNode(RF_DagHeader_t **, RF_Raid_t *);
     56      1.1    oster static void UpdateNodeHdrPtr(RF_DagHeader_t *, RF_DagNode_t *);
     57      1.3    oster int     rf_SelectAlgorithm(RF_RaidAccessDesc_t *, RF_RaidAccessFlags_t);
     58      1.1    oster 
     59      1.1    oster 
     60      1.1    oster /******************************************************************************
     61      1.1    oster  *
     62      1.1    oster  * Create and Initialiaze a dag header and termination node
     63      1.1    oster  *
     64      1.1    oster  *****************************************************************************/
     65      1.3    oster static int
     66  1.5.8.1  gehenna InitHdrNode(hdr, raidPtr)
     67      1.3    oster 	RF_DagHeader_t **hdr;
     68      1.3    oster 	RF_Raid_t *raidPtr;
     69      1.1    oster {
     70      1.3    oster 	/* create and initialize dag hdr */
     71      1.3    oster 	*hdr = rf_AllocDAGHeader();
     72      1.3    oster 	rf_MakeAllocList((*hdr)->allocList);
     73      1.3    oster 	if ((*hdr)->allocList == NULL) {
     74      1.3    oster 		rf_FreeDAGHeader(*hdr);
     75      1.3    oster 		return (ENOMEM);
     76      1.3    oster 	}
     77      1.3    oster 	(*hdr)->status = rf_enable;
     78      1.3    oster 	(*hdr)->numSuccedents = 0;
     79      1.3    oster 	(*hdr)->raidPtr = raidPtr;
     80      1.3    oster 	(*hdr)->next = NULL;
     81      1.3    oster 	return (0);
     82      1.1    oster }
     83      1.1    oster 
     84      1.1    oster /*****************************************************************************************
     85      1.1    oster  *
     86      1.1    oster  * Ensure that all node->dagHdr fields in a dag are consistent
     87      1.1    oster  *
     88      1.1    oster  * IMPORTANT: This routine recursively searches all succedents of the node.  If a
     89      1.1    oster  * succedent is encountered whose dagHdr ptr does not require adjusting, that node's
     90      1.1    oster  * succedents WILL NOT BE EXAMINED.
     91      1.1    oster  *
     92      1.1    oster  ****************************************************************************************/
     93      1.3    oster static void
     94      1.3    oster UpdateNodeHdrPtr(hdr, node)
     95      1.3    oster 	RF_DagHeader_t *hdr;
     96      1.3    oster 	RF_DagNode_t *node;
     97      1.1    oster {
     98      1.3    oster 	int     i;
     99      1.3    oster 	RF_ASSERT(hdr != NULL && node != NULL);
    100      1.3    oster 	for (i = 0; i < node->numSuccedents; i++)
    101      1.3    oster 		if (node->succedents[i]->dagHdr != hdr)
    102      1.3    oster 			UpdateNodeHdrPtr(hdr, node->succedents[i]);
    103      1.3    oster 	node->dagHdr = hdr;
    104      1.1    oster }
    105      1.1    oster /******************************************************************************
    106      1.1    oster  *
    107      1.1    oster  * Create a DAG to do a read or write operation.
    108      1.1    oster  *
    109      1.1    oster  * create an array of dagLists, one list per parity stripe.
    110      1.1    oster  * return the lists in the array desc->dagArray.
    111      1.1    oster  *
    112      1.1    oster  * Normally, each list contains one dag for the entire stripe.  In some
    113      1.1    oster  * tricky cases, we break this into multiple dags, either one per stripe
    114      1.1    oster  * unit or one per block (sector).  When this occurs, these dags are returned
    115      1.1    oster  * as a linked list (dagList) which is executed sequentially (to preserve
    116      1.1    oster  * atomic parity updates in the stripe).
    117      1.3    oster  *
    118      1.1    oster  * dags which operate on independent parity goups (stripes) are returned in
    119      1.1    oster  * independent dagLists (distinct elements in desc->dagArray) and may be
    120      1.1    oster  * executed concurrently.
    121      1.1    oster  *
    122      1.1    oster  * Finally, if the SelectionFunc fails to create a dag for a block, we punt
    123      1.1    oster  * and return 1.
    124      1.1    oster  *
    125      1.1    oster  * The above process is performed in two phases:
    126      1.1    oster  *   1) create an array(s) of creation functions (eg stripeFuncs)
    127      1.1    oster  *   2) create dags and concatenate/merge to form the final dag.
    128      1.1    oster  *
    129      1.1    oster  * Because dag's are basic blocks (single entry, single exit, unconditional
    130      1.1    oster  * control flow, we can add the following optimizations (future work):
    131      1.1    oster  *   first-pass optimizer to allow max concurrency (need all data dependencies)
    132      1.1    oster  *   second-pass optimizer to eliminate common subexpressions (need true
    133      1.1    oster  *                         data dependencies)
    134      1.1    oster  *   third-pass optimizer to eliminate dead code (need true data dependencies)
    135      1.1    oster  *****************************************************************************/
    136      1.1    oster 
    137      1.1    oster #define MAXNSTRIPES 50
    138      1.1    oster 
    139      1.3    oster int
    140      1.3    oster rf_SelectAlgorithm(desc, flags)
    141      1.3    oster 	RF_RaidAccessDesc_t *desc;
    142      1.3    oster 	RF_RaidAccessFlags_t flags;
    143      1.1    oster {
    144      1.3    oster 	RF_AccessStripeMapHeader_t *asm_h = desc->asmap;
    145      1.3    oster 	RF_IoType_t type = desc->type;
    146      1.3    oster 	RF_Raid_t *raidPtr = desc->raidPtr;
    147      1.3    oster 	void   *bp = desc->bp;
    148      1.3    oster 
    149      1.3    oster 	RF_AccessStripeMap_t *asmap = asm_h->stripeMap;
    150      1.3    oster 	RF_AccessStripeMap_t *asm_p;
    151      1.3    oster 	RF_DagHeader_t *dag_h = NULL, *tempdag_h, *lastdag_h;
    152      1.3    oster 	int     i, j, k;
    153      1.3    oster 	RF_VoidFuncPtr *stripeFuncs, normalStripeFuncs[MAXNSTRIPES];
    154      1.3    oster 	RF_AccessStripeMap_t *asm_up, *asm_bp;
    155      1.3    oster 	RF_AccessStripeMapHeader_t ***asmh_u, *endASMList;
    156      1.3    oster 	RF_AccessStripeMapHeader_t ***asmh_b;
    157      1.3    oster 	RF_VoidFuncPtr **stripeUnitFuncs, uFunc;
    158      1.3    oster 	RF_VoidFuncPtr **blockFuncs, bFunc;
    159      1.3    oster 	int     numStripesBailed = 0, cantCreateDAGs = RF_FALSE;
    160      1.3    oster 	int     numStripeUnitsBailed = 0;
    161      1.3    oster 	int     stripeNum, numUnitDags = 0, stripeUnitNum, numBlockDags = 0;
    162      1.3    oster 	RF_StripeNum_t numStripeUnits;
    163      1.3    oster 	RF_SectorNum_t numBlocks;
    164      1.3    oster 	RF_RaidAddr_t address;
    165      1.3    oster 	int     length;
    166      1.3    oster 	RF_PhysDiskAddr_t *physPtr;
    167      1.3    oster 	caddr_t buffer;
    168      1.3    oster 
    169      1.3    oster 	lastdag_h = NULL;
    170      1.3    oster 	asmh_u = asmh_b = NULL;
    171      1.3    oster 	stripeUnitFuncs = NULL;
    172      1.3    oster 	blockFuncs = NULL;
    173      1.3    oster 
    174      1.3    oster 	/* get an array of dag-function creation pointers, try to avoid
    175      1.3    oster 	 * calling malloc */
    176      1.3    oster 	if (asm_h->numStripes <= MAXNSTRIPES)
    177      1.3    oster 		stripeFuncs = normalStripeFuncs;
    178      1.3    oster 	else
    179      1.3    oster 		RF_Calloc(stripeFuncs, asm_h->numStripes, sizeof(RF_VoidFuncPtr), (RF_VoidFuncPtr *));
    180      1.3    oster 
    181      1.3    oster 	/* walk through the asm list once collecting information */
    182      1.3    oster 	/* attempt to find a single creation function for each stripe */
    183      1.3    oster 	desc->numStripes = 0;
    184      1.3    oster 	for (i = 0, asm_p = asmap; asm_p; asm_p = asm_p->next, i++) {
    185      1.3    oster 		desc->numStripes++;
    186      1.3    oster 		(raidPtr->Layout.map->SelectionFunc) (raidPtr, type, asm_p, &stripeFuncs[i]);
    187      1.3    oster 		/* check to see if we found a creation func for this stripe */
    188      1.3    oster 		if (stripeFuncs[i] == (RF_VoidFuncPtr) NULL) {
    189      1.3    oster 			/* could not find creation function for entire stripe
    190      1.3    oster 			 * so, let's see if we can find one for each stripe
    191      1.3    oster 			 * unit in the stripe */
    192      1.3    oster 
    193      1.3    oster 			if (numStripesBailed == 0) {
    194      1.3    oster 				/* one stripe map header for each stripe we
    195      1.3    oster 				 * bail on */
    196      1.3    oster 				RF_Malloc(asmh_u, sizeof(RF_AccessStripeMapHeader_t **) * asm_h->numStripes, (RF_AccessStripeMapHeader_t ***));
    197      1.3    oster 				/* create an array of ptrs to arrays of
    198      1.3    oster 				 * stripeFuncs */
    199      1.3    oster 				RF_Calloc(stripeUnitFuncs, asm_h->numStripes, sizeof(RF_VoidFuncPtr), (RF_VoidFuncPtr **));
    200      1.3    oster 			}
    201      1.3    oster 			/* create an array of creation funcs (called
    202      1.3    oster 			 * stripeFuncs) for this stripe */
    203      1.3    oster 			numStripeUnits = asm_p->numStripeUnitsAccessed;
    204      1.3    oster 			RF_Calloc(stripeUnitFuncs[numStripesBailed], numStripeUnits, sizeof(RF_VoidFuncPtr), (RF_VoidFuncPtr *));
    205      1.3    oster 			RF_Malloc(asmh_u[numStripesBailed], numStripeUnits * sizeof(RF_AccessStripeMapHeader_t *), (RF_AccessStripeMapHeader_t **));
    206      1.3    oster 
    207      1.3    oster 			/* lookup array of stripeUnitFuncs for this stripe */
    208      1.3    oster 			for (j = 0, physPtr = asm_p->physInfo; physPtr; physPtr = physPtr->next, j++) {
    209      1.3    oster 				/* remap for series of single stripe-unit
    210      1.3    oster 				 * accesses */
    211      1.3    oster 				address = physPtr->raidAddress;
    212      1.3    oster 				length = physPtr->numSector;
    213      1.3    oster 				buffer = physPtr->bufPtr;
    214      1.3    oster 
    215      1.3    oster 				asmh_u[numStripesBailed][j] = rf_MapAccess(raidPtr, address, length, buffer, RF_DONT_REMAP);
    216      1.3    oster 				asm_up = asmh_u[numStripesBailed][j]->stripeMap;
    217      1.3    oster 
    218      1.3    oster 				/* get the creation func for this stripe unit */
    219      1.3    oster 				(raidPtr->Layout.map->SelectionFunc) (raidPtr, type, asm_up, &(stripeUnitFuncs[numStripesBailed][j]));
    220      1.3    oster 
    221      1.3    oster 				/* check to see if we found a creation func
    222      1.3    oster 				 * for this stripe unit */
    223      1.3    oster 				if (stripeUnitFuncs[numStripesBailed][j] == (RF_VoidFuncPtr) NULL) {
    224      1.3    oster 					/* could not find creation function
    225      1.3    oster 					 * for stripe unit so, let's see if we
    226      1.3    oster 					 * can find one for each block in the
    227      1.3    oster 					 * stripe unit */
    228      1.3    oster 					if (numStripeUnitsBailed == 0) {
    229      1.3    oster 						/* one stripe map header for
    230      1.3    oster 						 * each stripe unit we bail on */
    231      1.3    oster 						RF_Malloc(asmh_b, sizeof(RF_AccessStripeMapHeader_t **) * asm_h->numStripes * raidPtr->Layout.numDataCol, (RF_AccessStripeMapHeader_t ***));
    232      1.3    oster 						/* create an array of ptrs to
    233      1.3    oster 						 * arrays of blockFuncs */
    234      1.3    oster 						RF_Calloc(blockFuncs, asm_h->numStripes * raidPtr->Layout.numDataCol, sizeof(RF_VoidFuncPtr), (RF_VoidFuncPtr **));
    235      1.3    oster 					}
    236      1.3    oster 					/* create an array of creation funcs
    237      1.3    oster 					 * (called blockFuncs) for this stripe
    238      1.3    oster 					 * unit */
    239      1.3    oster 					numBlocks = physPtr->numSector;
    240      1.3    oster 					numBlockDags += numBlocks;
    241      1.3    oster 					RF_Calloc(blockFuncs[numStripeUnitsBailed], numBlocks, sizeof(RF_VoidFuncPtr), (RF_VoidFuncPtr *));
    242      1.3    oster 					RF_Malloc(asmh_b[numStripeUnitsBailed], numBlocks * sizeof(RF_AccessStripeMapHeader_t *), (RF_AccessStripeMapHeader_t **));
    243      1.3    oster 
    244      1.3    oster 					/* lookup array of blockFuncs for this
    245      1.3    oster 					 * stripe unit */
    246      1.3    oster 					for (k = 0; k < numBlocks; k++) {
    247      1.3    oster 						/* remap for series of single
    248      1.3    oster 						 * stripe-unit accesses */
    249      1.3    oster 						address = physPtr->raidAddress + k;
    250      1.3    oster 						length = 1;
    251      1.3    oster 						buffer = physPtr->bufPtr + (k * (1 << raidPtr->logBytesPerSector));
    252      1.3    oster 
    253      1.3    oster 						asmh_b[numStripeUnitsBailed][k] = rf_MapAccess(raidPtr, address, length, buffer, RF_DONT_REMAP);
    254      1.3    oster 						asm_bp = asmh_b[numStripeUnitsBailed][k]->stripeMap;
    255      1.3    oster 
    256      1.3    oster 						/* get the creation func for
    257      1.3    oster 						 * this stripe unit */
    258      1.3    oster 						(raidPtr->Layout.map->SelectionFunc) (raidPtr, type, asm_bp, &(blockFuncs[numStripeUnitsBailed][k]));
    259      1.3    oster 
    260      1.3    oster 						/* check to see if we found a
    261      1.3    oster 						 * creation func for this
    262      1.3    oster 						 * stripe unit */
    263      1.3    oster 						if (blockFuncs[numStripeUnitsBailed][k] == NULL)
    264      1.3    oster 							cantCreateDAGs = RF_TRUE;
    265      1.3    oster 					}
    266      1.3    oster 					numStripeUnitsBailed++;
    267      1.3    oster 				} else {
    268      1.3    oster 					numUnitDags++;
    269      1.3    oster 				}
    270      1.3    oster 			}
    271      1.3    oster 			RF_ASSERT(j == numStripeUnits);
    272      1.3    oster 			numStripesBailed++;
    273      1.3    oster 		}
    274      1.1    oster 	}
    275      1.3    oster 
    276      1.3    oster 	if (cantCreateDAGs) {
    277      1.3    oster 		/* free memory and punt */
    278      1.3    oster 		if (asm_h->numStripes > MAXNSTRIPES)
    279      1.3    oster 			RF_Free(stripeFuncs, asm_h->numStripes * sizeof(RF_VoidFuncPtr));
    280      1.3    oster 		if (numStripesBailed > 0) {
    281      1.3    oster 			stripeNum = 0;
    282      1.3    oster 			for (i = 0, asm_p = asmap; asm_p; asm_p = asm_p->next, i++)
    283      1.3    oster 				if (stripeFuncs[i] == NULL) {
    284      1.3    oster 					numStripeUnits = asm_p->numStripeUnitsAccessed;
    285      1.3    oster 					for (j = 0; j < numStripeUnits; j++)
    286      1.3    oster 						rf_FreeAccessStripeMap(asmh_u[stripeNum][j]);
    287      1.3    oster 					RF_Free(asmh_u[stripeNum], numStripeUnits * sizeof(RF_AccessStripeMapHeader_t *));
    288      1.3    oster 					RF_Free(stripeUnitFuncs[stripeNum], numStripeUnits * sizeof(RF_VoidFuncPtr));
    289      1.3    oster 					stripeNum++;
    290      1.3    oster 				}
    291      1.3    oster 			RF_ASSERT(stripeNum == numStripesBailed);
    292      1.3    oster 			RF_Free(stripeUnitFuncs, asm_h->numStripes * sizeof(RF_VoidFuncPtr));
    293      1.3    oster 			RF_Free(asmh_u, asm_h->numStripes * sizeof(RF_AccessStripeMapHeader_t **));
    294      1.3    oster 		}
    295      1.3    oster 		return (1);
    296      1.3    oster 	} else {
    297      1.3    oster 		/* begin dag creation */
    298      1.3    oster 		stripeNum = 0;
    299      1.3    oster 		stripeUnitNum = 0;
    300      1.3    oster 
    301      1.3    oster 		/* create an array of dagLists and fill them in */
    302      1.3    oster 		RF_CallocAndAdd(desc->dagArray, desc->numStripes, sizeof(RF_DagList_t), (RF_DagList_t *), desc->cleanupList);
    303      1.3    oster 
    304      1.3    oster 		for (i = 0, asm_p = asmap; asm_p; asm_p = asm_p->next, i++) {
    305      1.3    oster 			/* grab dag header for this stripe */
    306      1.3    oster 			dag_h = NULL;
    307      1.3    oster 			desc->dagArray[i].desc = desc;
    308      1.3    oster 
    309      1.3    oster 			if (stripeFuncs[i] == (RF_VoidFuncPtr) NULL) {
    310      1.3    oster 				/* use bailout functions for this stripe */
    311      1.3    oster 				for (j = 0, physPtr = asm_p->physInfo; physPtr; physPtr = physPtr->next, j++) {
    312      1.3    oster 					uFunc = stripeUnitFuncs[stripeNum][j];
    313      1.3    oster 					if (uFunc == (RF_VoidFuncPtr) NULL) {
    314      1.3    oster 						/* use bailout functions for
    315      1.3    oster 						 * this stripe unit */
    316      1.3    oster 						for (k = 0; k < physPtr->numSector; k++) {
    317      1.3    oster 							/* create a dag for
    318      1.3    oster 							 * this block */
    319  1.5.8.1  gehenna 							InitHdrNode(&tempdag_h, raidPtr);
    320      1.3    oster 							desc->dagArray[i].numDags++;
    321      1.3    oster 							if (dag_h == NULL) {
    322      1.3    oster 								dag_h = tempdag_h;
    323      1.3    oster 							} else {
    324      1.3    oster 								lastdag_h->next = tempdag_h;
    325      1.3    oster 							}
    326      1.3    oster 							lastdag_h = tempdag_h;
    327      1.3    oster 
    328      1.3    oster 							bFunc = blockFuncs[stripeUnitNum][k];
    329      1.3    oster 							RF_ASSERT(bFunc);
    330      1.3    oster 							asm_bp = asmh_b[stripeUnitNum][k]->stripeMap;
    331      1.3    oster 							(*bFunc) (raidPtr, asm_bp, tempdag_h, bp, flags, tempdag_h->allocList);
    332      1.3    oster 						}
    333      1.3    oster 						stripeUnitNum++;
    334      1.3    oster 					} else {
    335      1.3    oster 						/* create a dag for this unit */
    336  1.5.8.1  gehenna 						InitHdrNode(&tempdag_h, raidPtr);
    337      1.3    oster 						desc->dagArray[i].numDags++;
    338      1.3    oster 						if (dag_h == NULL) {
    339      1.3    oster 							dag_h = tempdag_h;
    340      1.3    oster 						} else {
    341      1.3    oster 							lastdag_h->next = tempdag_h;
    342      1.3    oster 						}
    343      1.3    oster 						lastdag_h = tempdag_h;
    344      1.3    oster 
    345      1.3    oster 						asm_up = asmh_u[stripeNum][j]->stripeMap;
    346      1.3    oster 						(*uFunc) (raidPtr, asm_up, tempdag_h, bp, flags, tempdag_h->allocList);
    347      1.3    oster 					}
    348      1.3    oster 				}
    349      1.3    oster 				RF_ASSERT(j == asm_p->numStripeUnitsAccessed);
    350      1.3    oster 				/* merge linked bailout dag to existing dag
    351      1.3    oster 				 * collection */
    352      1.3    oster 				stripeNum++;
    353      1.3    oster 			} else {
    354      1.3    oster 				/* Create a dag for this parity stripe */
    355  1.5.8.1  gehenna 				InitHdrNode(&tempdag_h, raidPtr);
    356      1.3    oster 				desc->dagArray[i].numDags++;
    357      1.3    oster 				if (dag_h == NULL) {
    358      1.3    oster 					dag_h = tempdag_h;
    359      1.3    oster 				} else {
    360      1.3    oster 					lastdag_h->next = tempdag_h;
    361      1.3    oster 				}
    362      1.3    oster 				lastdag_h = tempdag_h;
    363      1.3    oster 
    364      1.3    oster 				(stripeFuncs[i]) (raidPtr, asm_p, tempdag_h, bp, flags, tempdag_h->allocList);
    365      1.1    oster 			}
    366      1.3    oster 			desc->dagArray[i].dags = dag_h;
    367      1.3    oster 		}
    368      1.3    oster 		RF_ASSERT(i == desc->numStripes);
    369      1.3    oster 
    370      1.3    oster 		/* free memory */
    371      1.3    oster 		if (asm_h->numStripes > MAXNSTRIPES)
    372      1.3    oster 			RF_Free(stripeFuncs, asm_h->numStripes * sizeof(RF_VoidFuncPtr));
    373      1.3    oster 		if ((numStripesBailed > 0) || (numStripeUnitsBailed > 0)) {
    374      1.3    oster 			stripeNum = 0;
    375      1.3    oster 			stripeUnitNum = 0;
    376      1.3    oster 			if (dag_h->asmList) {
    377      1.3    oster 				endASMList = dag_h->asmList;
    378      1.3    oster 				while (endASMList->next)
    379      1.3    oster 					endASMList = endASMList->next;
    380      1.3    oster 			} else
    381      1.3    oster 				endASMList = NULL;
    382      1.3    oster 			/* walk through io, stripe by stripe */
    383      1.3    oster 			for (i = 0, asm_p = asmap; asm_p; asm_p = asm_p->next, i++)
    384      1.3    oster 				if (stripeFuncs[i] == NULL) {
    385      1.3    oster 					numStripeUnits = asm_p->numStripeUnitsAccessed;
    386      1.3    oster 					/* walk through stripe, stripe unit by
    387      1.3    oster 					 * stripe unit */
    388      1.3    oster 					for (j = 0, physPtr = asm_p->physInfo; physPtr; physPtr = physPtr->next, j++) {
    389      1.3    oster 						if (stripeUnitFuncs[stripeNum][j] == NULL) {
    390      1.3    oster 							numBlocks = physPtr->numSector;
    391      1.3    oster 							/* walk through stripe
    392      1.3    oster 							 * unit, block by
    393      1.3    oster 							 * block */
    394      1.3    oster 							for (k = 0; k < numBlocks; k++)
    395      1.3    oster 								if (dag_h->asmList == NULL) {
    396      1.3    oster 									dag_h->asmList = asmh_b[stripeUnitNum][k];
    397      1.3    oster 									endASMList = dag_h->asmList;
    398      1.3    oster 								} else {
    399      1.3    oster 									endASMList->next = asmh_b[stripeUnitNum][k];
    400      1.3    oster 									endASMList = endASMList->next;
    401      1.3    oster 								}
    402      1.3    oster 							RF_Free(asmh_b[stripeUnitNum], numBlocks * sizeof(RF_AccessStripeMapHeader_t *));
    403      1.3    oster 							RF_Free(blockFuncs[stripeUnitNum], numBlocks * sizeof(RF_VoidFuncPtr));
    404      1.3    oster 							stripeUnitNum++;
    405      1.3    oster 						}
    406      1.3    oster 						if (dag_h->asmList == NULL) {
    407      1.3    oster 							dag_h->asmList = asmh_u[stripeNum][j];
    408      1.3    oster 							endASMList = dag_h->asmList;
    409      1.3    oster 						} else {
    410      1.3    oster 							endASMList->next = asmh_u[stripeNum][j];
    411      1.3    oster 							endASMList = endASMList->next;
    412      1.3    oster 						}
    413      1.3    oster 					}
    414      1.3    oster 					RF_Free(asmh_u[stripeNum], numStripeUnits * sizeof(RF_AccessStripeMapHeader_t *));
    415      1.3    oster 					RF_Free(stripeUnitFuncs[stripeNum], numStripeUnits * sizeof(RF_VoidFuncPtr));
    416      1.3    oster 					stripeNum++;
    417      1.3    oster 				}
    418      1.3    oster 			RF_ASSERT(stripeNum == numStripesBailed);
    419      1.3    oster 			RF_Free(stripeUnitFuncs, asm_h->numStripes * sizeof(RF_VoidFuncPtr));
    420      1.3    oster 			RF_Free(asmh_u, asm_h->numStripes * sizeof(RF_AccessStripeMapHeader_t **));
    421      1.3    oster 			if (numStripeUnitsBailed > 0) {
    422      1.3    oster 				RF_ASSERT(stripeUnitNum == numStripeUnitsBailed);
    423      1.3    oster 				RF_Free(blockFuncs, raidPtr->Layout.numDataCol * asm_h->numStripes * sizeof(RF_VoidFuncPtr));
    424      1.3    oster 				RF_Free(asmh_b, raidPtr->Layout.numDataCol * asm_h->numStripes * sizeof(RF_AccessStripeMapHeader_t **));
    425      1.1    oster 			}
    426      1.3    oster 		}
    427      1.3    oster 		return (0);
    428      1.1    oster 	}
    429      1.1    oster }
    430