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rf_decluster.c revision 1.17
      1  1.17  perry /*	$NetBSD: rf_decluster.c,v 1.17 2005/02/27 00:27:44 perry 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
      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  * rf_decluster.c -- code related to the declustered layout
     32   1.1  oster  *
     33   1.1  oster  * Created 10-21-92 (MCH)
     34   1.1  oster  *
     35   1.1  oster  * Nov 93:  adding support for distributed sparing.  This code is a little
     36   1.1  oster  *          complex:  the basic layout used is as follows:
     37   1.1  oster  *          let F = (v-1)/GCD(r,v-1).  The spare space for each set of
     38   1.1  oster  *          F consecutive fulltables is grouped together and placed after
     39   1.1  oster  *          that set of tables.
     40   1.1  oster  *                   +------------------------------+
     41   1.1  oster  *                   |        F fulltables          |
     42   1.1  oster  *                   |        Spare Space           |
     43   1.1  oster  *                   |        F fulltables          |
     44   1.1  oster  *                   |        Spare Space           |
     45   1.1  oster  *                   |            ...               |
     46   1.1  oster  *                   +------------------------------+
     47   1.1  oster  *
     48   1.1  oster  *--------------------------------------------------------------------*/
     49   1.8  lukem 
     50   1.8  lukem #include <sys/cdefs.h>
     51  1.17  perry __KERNEL_RCSID(0, "$NetBSD: rf_decluster.c,v 1.17 2005/02/27 00:27:44 perry Exp $");
     52   1.1  oster 
     53   1.7  oster #include <dev/raidframe/raidframevar.h>
     54   1.7  oster 
     55   1.6  oster #include "rf_archs.h"
     56   1.1  oster #include "rf_raid.h"
     57   1.1  oster #include "rf_decluster.h"
     58   1.1  oster #include "rf_debugMem.h"
     59   1.1  oster #include "rf_utils.h"
     60   1.1  oster #include "rf_alloclist.h"
     61   1.1  oster #include "rf_general.h"
     62  1.13  oster #include "rf_kintf.h"
     63   1.1  oster #include "rf_shutdown.h"
     64   1.1  oster 
     65   1.6  oster #if (RF_INCLUDE_PARITY_DECLUSTERING > 0) || (RF_INCLUDE_PARITY_DECLUSTERING_PQ > 0)
     66   1.6  oster 
     67   1.1  oster /* configuration code */
     68   1.1  oster 
     69  1.17  perry int
     70  1.15  oster rf_ConfigureDeclustered(RF_ShutdownList_t **listp, RF_Raid_t *raidPtr,
     71  1.15  oster 			RF_Config_t *cfgPtr)
     72   1.3  oster {
     73   1.3  oster 	RF_RaidLayout_t *layoutPtr = &(raidPtr->Layout);
     74   1.3  oster 	int     b, v, k, r, lambda;	/* block design params */
     75   1.3  oster 	int     i, j;
     76   1.3  oster 	RF_RowCol_t *first_avail_slot;
     77   1.3  oster 	RF_StripeCount_t complete_FT_count, numCompleteFullTablesPerDisk;
     78   1.3  oster 	RF_DeclusteredConfigInfo_t *info;
     79   1.3  oster 	RF_StripeCount_t PUsPerDisk, spareRegionDepthInPUs, numCompleteSpareRegionsPerDisk,
     80   1.3  oster 	        extraPUsPerDisk;
     81   1.3  oster 	RF_StripeCount_t totSparePUsPerDisk;
     82   1.3  oster 	RF_SectorNum_t diskOffsetOfLastFullTableInSUs;
     83   1.3  oster 	RF_SectorCount_t SpareSpaceInSUs;
     84   1.3  oster 	char   *cfgBuf = (char *) (cfgPtr->layoutSpecific);
     85   1.3  oster 	RF_StripeNum_t l, SUID;
     86   1.3  oster 
     87   1.3  oster 	SUID = l = 0;
     88   1.3  oster 	numCompleteSpareRegionsPerDisk = 0;
     89   1.3  oster 
     90   1.3  oster 	/* 1. create layout specific structure */
     91   1.3  oster 	RF_MallocAndAdd(info, sizeof(RF_DeclusteredConfigInfo_t), (RF_DeclusteredConfigInfo_t *), raidPtr->cleanupList);
     92   1.3  oster 	if (info == NULL)
     93   1.3  oster 		return (ENOMEM);
     94   1.3  oster 	layoutPtr->layoutSpecificInfo = (void *) info;
     95   1.3  oster 	info->SpareTable = NULL;
     96   1.3  oster 
     97   1.3  oster 	/* 2. extract parameters from the config structure */
     98   1.3  oster 	if (layoutPtr->map->flags & RF_DISTRIBUTE_SPARE) {
     99   1.9    wiz 		(void)memcpy(info->sparemap_fname, cfgBuf, RF_SPAREMAP_NAME_LEN);
    100   1.3  oster 	}
    101   1.3  oster 	cfgBuf += RF_SPAREMAP_NAME_LEN;
    102   1.3  oster 
    103   1.3  oster 	b = *((int *) cfgBuf);
    104   1.3  oster 	cfgBuf += sizeof(int);
    105   1.3  oster 	v = *((int *) cfgBuf);
    106   1.3  oster 	cfgBuf += sizeof(int);
    107   1.3  oster 	k = *((int *) cfgBuf);
    108   1.3  oster 	cfgBuf += sizeof(int);
    109   1.3  oster 	r = *((int *) cfgBuf);
    110   1.3  oster 	cfgBuf += sizeof(int);
    111   1.3  oster 	lambda = *((int *) cfgBuf);
    112   1.3  oster 	cfgBuf += sizeof(int);
    113   1.3  oster 	raidPtr->noRotate = *((int *) cfgBuf);
    114   1.3  oster 	cfgBuf += sizeof(int);
    115   1.3  oster 
    116   1.3  oster 	/* the sparemaps are generated assuming that parity is rotated, so we
    117   1.3  oster 	 * issue a warning if both distributed sparing and no-rotate are on at
    118   1.3  oster 	 * the same time */
    119   1.3  oster 	if ((layoutPtr->map->flags & RF_DISTRIBUTE_SPARE) && raidPtr->noRotate) {
    120   1.3  oster 		RF_ERRORMSG("Warning:  distributed sparing specified without parity rotation.\n");
    121   1.3  oster 	}
    122   1.3  oster 	if (raidPtr->numCol != v) {
    123   1.3  oster 		RF_ERRORMSG2("RAID: config error: table element count (%d) not equal to no. of cols (%d)\n", v, raidPtr->numCol);
    124   1.3  oster 		return (EINVAL);
    125   1.3  oster 	}
    126   1.3  oster 	/* 3.  set up the values used in the mapping code */
    127   1.3  oster 	info->BlocksPerTable = b;
    128   1.3  oster 	info->Lambda = lambda;
    129   1.3  oster 	info->NumParityReps = info->groupSize = k;
    130   1.3  oster 	info->SUsPerTable = b * (k - 1) * layoutPtr->SUsPerPU;	/* b blks, k-1 SUs each */
    131   1.3  oster 	info->SUsPerFullTable = k * info->SUsPerTable;	/* rot k times */
    132   1.3  oster 	info->PUsPerBlock = k - 1;
    133   1.3  oster 	info->SUsPerBlock = info->PUsPerBlock * layoutPtr->SUsPerPU;
    134   1.3  oster 	info->TableDepthInPUs = (b * k) / v;
    135   1.3  oster 	info->FullTableDepthInPUs = info->TableDepthInPUs * k;	/* k repetitions */
    136   1.3  oster 
    137   1.3  oster 	/* used only in distributed sparing case */
    138   1.3  oster 	info->FullTablesPerSpareRegion = (v - 1) / rf_gcd(r, v - 1);	/* (v-1)/gcd fulltables */
    139   1.3  oster 	info->TablesPerSpareRegion = k * info->FullTablesPerSpareRegion;
    140   1.3  oster 	info->SpareSpaceDepthPerRegionInSUs = (r * info->TablesPerSpareRegion / (v - 1)) * layoutPtr->SUsPerPU;
    141   1.3  oster 
    142   1.3  oster 	/* check to make sure the block design is sufficiently small */
    143   1.3  oster 	if ((raidPtr->Layout.map->flags & RF_DISTRIBUTE_SPARE)) {
    144   1.3  oster 		if (info->FullTableDepthInPUs * layoutPtr->SUsPerPU + info->SpareSpaceDepthPerRegionInSUs > layoutPtr->stripeUnitsPerDisk) {
    145   1.3  oster 			RF_ERRORMSG3("RAID: config error: Full Table depth (%d) + Spare Space (%d) larger than disk size (%d) (BD too big)\n",
    146   1.3  oster 			    (int) info->FullTableDepthInPUs,
    147   1.3  oster 			    (int) info->SpareSpaceDepthPerRegionInSUs,
    148   1.3  oster 			    (int) layoutPtr->stripeUnitsPerDisk);
    149   1.3  oster 			return (EINVAL);
    150   1.3  oster 		}
    151   1.3  oster 	} else {
    152   1.3  oster 		if (info->TableDepthInPUs * layoutPtr->SUsPerPU > layoutPtr->stripeUnitsPerDisk) {
    153   1.3  oster 			RF_ERRORMSG2("RAID: config error: Table depth (%d) larger than disk size (%d) (BD too big)\n",
    154   1.3  oster 			    (int) (info->TableDepthInPUs * layoutPtr->SUsPerPU), \
    155   1.3  oster 			    (int) layoutPtr->stripeUnitsPerDisk);
    156   1.3  oster 			return (EINVAL);
    157   1.3  oster 		}
    158   1.3  oster 	}
    159   1.3  oster 
    160   1.3  oster 
    161   1.3  oster 	/* compute the size of each disk, and the number of tables in the last
    162   1.3  oster 	 * fulltable (which need not be complete) */
    163   1.3  oster 	if (raidPtr->Layout.map->flags & RF_DISTRIBUTE_SPARE) {
    164   1.3  oster 
    165   1.3  oster 		PUsPerDisk = layoutPtr->stripeUnitsPerDisk / layoutPtr->SUsPerPU;
    166   1.3  oster 		spareRegionDepthInPUs = (info->TablesPerSpareRegion * info->TableDepthInPUs +
    167   1.3  oster 		    (info->TablesPerSpareRegion * info->TableDepthInPUs) / (v - 1));
    168   1.3  oster 		info->SpareRegionDepthInSUs = spareRegionDepthInPUs * layoutPtr->SUsPerPU;
    169   1.3  oster 
    170   1.3  oster 		numCompleteSpareRegionsPerDisk = PUsPerDisk / spareRegionDepthInPUs;
    171   1.3  oster 		info->NumCompleteSRs = numCompleteSpareRegionsPerDisk;
    172   1.3  oster 		extraPUsPerDisk = PUsPerDisk % spareRegionDepthInPUs;
    173   1.3  oster 
    174   1.3  oster 		/* assume conservatively that we need the full amount of spare
    175   1.3  oster 		 * space in one region in order to provide spares for the
    176   1.3  oster 		 * partial spare region at the end of the array.  We set "i"
    177   1.3  oster 		 * to the number of tables in the partial spare region.  This
    178   1.3  oster 		 * may actually include some fulltables. */
    179   1.3  oster 		extraPUsPerDisk -= (info->SpareSpaceDepthPerRegionInSUs / layoutPtr->SUsPerPU);
    180   1.3  oster 		if (extraPUsPerDisk <= 0)
    181   1.3  oster 			i = 0;
    182   1.3  oster 		else
    183   1.3  oster 			i = extraPUsPerDisk / info->TableDepthInPUs;
    184   1.3  oster 
    185   1.3  oster 		complete_FT_count = raidPtr->numRow * (numCompleteSpareRegionsPerDisk * (info->TablesPerSpareRegion / k) + i / k);
    186   1.3  oster 		info->FullTableLimitSUID = complete_FT_count * info->SUsPerFullTable;
    187   1.3  oster 		info->ExtraTablesPerDisk = i % k;
    188   1.3  oster 
    189   1.3  oster 		/* note that in the last spare region, the spare space is
    190   1.3  oster 		 * complete even though data/parity space is not */
    191   1.3  oster 		totSparePUsPerDisk = (numCompleteSpareRegionsPerDisk + 1) * (info->SpareSpaceDepthPerRegionInSUs / layoutPtr->SUsPerPU);
    192   1.3  oster 		info->TotSparePUsPerDisk = totSparePUsPerDisk;
    193   1.3  oster 
    194   1.3  oster 		layoutPtr->stripeUnitsPerDisk =
    195   1.3  oster 		    ((complete_FT_count / raidPtr->numRow) * info->FullTableDepthInPUs +	/* data & parity space */
    196   1.3  oster 		    info->ExtraTablesPerDisk * info->TableDepthInPUs +
    197   1.3  oster 		    totSparePUsPerDisk	/* spare space */
    198   1.3  oster 		    ) * layoutPtr->SUsPerPU;
    199   1.3  oster 		layoutPtr->dataStripeUnitsPerDisk =
    200   1.3  oster 		    (complete_FT_count * info->FullTableDepthInPUs + info->ExtraTablesPerDisk * info->TableDepthInPUs)
    201   1.3  oster 		    * layoutPtr->SUsPerPU * (k - 1) / k;
    202   1.3  oster 
    203   1.3  oster 	} else {
    204   1.3  oster 		/* non-dist spare case:  force each disk to contain an
    205   1.3  oster 		 * integral number of tables */
    206   1.3  oster 		layoutPtr->stripeUnitsPerDisk /= (info->TableDepthInPUs * layoutPtr->SUsPerPU);
    207   1.3  oster 		layoutPtr->stripeUnitsPerDisk *= (info->TableDepthInPUs * layoutPtr->SUsPerPU);
    208   1.3  oster 
    209   1.3  oster 		/* compute the number of tables in the last fulltable, which
    210   1.3  oster 		 * need not be complete */
    211   1.3  oster 		complete_FT_count =
    212   1.3  oster 		    ((layoutPtr->stripeUnitsPerDisk / layoutPtr->SUsPerPU) / info->FullTableDepthInPUs) * raidPtr->numRow;
    213   1.3  oster 
    214   1.3  oster 		info->FullTableLimitSUID = complete_FT_count * info->SUsPerFullTable;
    215   1.3  oster 		info->ExtraTablesPerDisk =
    216   1.3  oster 		    ((layoutPtr->stripeUnitsPerDisk / layoutPtr->SUsPerPU) / info->TableDepthInPUs) % k;
    217   1.3  oster 	}
    218   1.3  oster 
    219   1.3  oster 	raidPtr->sectorsPerDisk = layoutPtr->stripeUnitsPerDisk * layoutPtr->sectorsPerStripeUnit;
    220   1.3  oster 
    221   1.3  oster 	/* find the disk offset of the stripe unit where the last fulltable
    222   1.3  oster 	 * starts */
    223   1.3  oster 	numCompleteFullTablesPerDisk = complete_FT_count / raidPtr->numRow;
    224   1.3  oster 	diskOffsetOfLastFullTableInSUs = numCompleteFullTablesPerDisk * info->FullTableDepthInPUs * layoutPtr->SUsPerPU;
    225   1.3  oster 	if (raidPtr->Layout.map->flags & RF_DISTRIBUTE_SPARE) {
    226   1.3  oster 		SpareSpaceInSUs = numCompleteSpareRegionsPerDisk * info->SpareSpaceDepthPerRegionInSUs;
    227   1.3  oster 		diskOffsetOfLastFullTableInSUs += SpareSpaceInSUs;
    228   1.3  oster 		info->DiskOffsetOfLastSpareSpaceChunkInSUs =
    229   1.3  oster 		    diskOffsetOfLastFullTableInSUs + info->ExtraTablesPerDisk * info->TableDepthInPUs * layoutPtr->SUsPerPU;
    230   1.3  oster 	}
    231   1.3  oster 	info->DiskOffsetOfLastFullTableInSUs = diskOffsetOfLastFullTableInSUs;
    232   1.3  oster 	info->numCompleteFullTablesPerDisk = numCompleteFullTablesPerDisk;
    233   1.3  oster 
    234   1.3  oster 	/* 4.  create and initialize the lookup tables */
    235   1.3  oster 	info->LayoutTable = rf_make_2d_array(b, k, raidPtr->cleanupList);
    236   1.3  oster 	if (info->LayoutTable == NULL)
    237   1.3  oster 		return (ENOMEM);
    238   1.3  oster 	info->OffsetTable = rf_make_2d_array(b, k, raidPtr->cleanupList);
    239   1.3  oster 	if (info->OffsetTable == NULL)
    240   1.3  oster 		return (ENOMEM);
    241   1.3  oster 	info->BlockTable = rf_make_2d_array(info->TableDepthInPUs * layoutPtr->SUsPerPU, raidPtr->numCol, raidPtr->cleanupList);
    242   1.3  oster 	if (info->BlockTable == NULL)
    243   1.3  oster 		return (ENOMEM);
    244   1.3  oster 
    245   1.3  oster 	first_avail_slot = rf_make_1d_array(v, NULL);
    246   1.3  oster 	if (first_avail_slot == NULL)
    247   1.3  oster 		return (ENOMEM);
    248   1.3  oster 
    249   1.3  oster 	for (i = 0; i < b; i++)
    250   1.3  oster 		for (j = 0; j < k; j++)
    251   1.3  oster 			info->LayoutTable[i][j] = *cfgBuf++;
    252   1.3  oster 
    253   1.3  oster 	/* initialize offset table */
    254   1.3  oster 	for (i = 0; i < b; i++)
    255   1.3  oster 		for (j = 0; j < k; j++) {
    256   1.3  oster 			info->OffsetTable[i][j] = first_avail_slot[info->LayoutTable[i][j]];
    257   1.3  oster 			first_avail_slot[info->LayoutTable[i][j]]++;
    258   1.3  oster 		}
    259   1.3  oster 
    260   1.3  oster 	/* initialize block table */
    261   1.3  oster 	for (SUID = l = 0; l < layoutPtr->SUsPerPU; l++) {
    262   1.3  oster 		for (i = 0; i < b; i++) {
    263   1.3  oster 			for (j = 0; j < k; j++) {
    264   1.3  oster 				info->BlockTable[(info->OffsetTable[i][j] * layoutPtr->SUsPerPU) + l]
    265   1.3  oster 				    [info->LayoutTable[i][j]] = SUID;
    266   1.3  oster 			}
    267   1.3  oster 			SUID++;
    268   1.3  oster 		}
    269   1.3  oster 	}
    270   1.1  oster 
    271   1.3  oster 	rf_free_1d_array(first_avail_slot, v);
    272   1.3  oster 
    273   1.3  oster 	/* 5.  set up the remaining redundant-but-useful parameters */
    274   1.3  oster 
    275   1.3  oster 	raidPtr->totalSectors = (k * complete_FT_count + raidPtr->numRow * info->ExtraTablesPerDisk) *
    276   1.3  oster 	    info->SUsPerTable * layoutPtr->sectorsPerStripeUnit;
    277   1.3  oster 	layoutPtr->numStripe = (raidPtr->totalSectors / layoutPtr->sectorsPerStripeUnit) / (k - 1);
    278   1.3  oster 
    279   1.3  oster 	/* strange evaluation order below to try and minimize overflow
    280   1.3  oster 	 * problems */
    281   1.3  oster 
    282   1.3  oster 	layoutPtr->dataSectorsPerStripe = (k - 1) * layoutPtr->sectorsPerStripeUnit;
    283   1.3  oster 	layoutPtr->numDataCol = k - 1;
    284   1.3  oster 	layoutPtr->numParityCol = 1;
    285   1.3  oster 
    286   1.3  oster 	return (0);
    287   1.1  oster }
    288   1.1  oster /* declustering with distributed sparing */
    289   1.1  oster static void rf_ShutdownDeclusteredDS(RF_ThreadArg_t);
    290  1.17  perry static void
    291  1.15  oster rf_ShutdownDeclusteredDS(RF_ThreadArg_t arg)
    292   1.3  oster {
    293   1.3  oster 	RF_DeclusteredConfigInfo_t *info;
    294   1.3  oster 	RF_Raid_t *raidPtr;
    295   1.3  oster 
    296   1.3  oster 	raidPtr = (RF_Raid_t *) arg;
    297   1.3  oster 	info = (RF_DeclusteredConfigInfo_t *) raidPtr->Layout.layoutSpecificInfo;
    298   1.3  oster 	if (info->SpareTable)
    299   1.3  oster 		rf_FreeSpareTable(raidPtr);
    300   1.3  oster }
    301   1.3  oster 
    302  1.17  perry int
    303  1.15  oster rf_ConfigureDeclusteredDS(RF_ShutdownList_t **listp, RF_Raid_t *raidPtr,
    304  1.15  oster 			  RF_Config_t *cfgPtr)
    305   1.3  oster {
    306   1.3  oster 	int     rc;
    307   1.3  oster 
    308   1.3  oster 	rc = rf_ConfigureDeclustered(listp, raidPtr, cfgPtr);
    309   1.3  oster 	if (rc)
    310   1.3  oster 		return (rc);
    311  1.16  oster 	rf_ShutdownCreate(listp, rf_ShutdownDeclusteredDS, raidPtr);
    312  1.16  oster 
    313   1.3  oster 	return (0);
    314   1.3  oster }
    315   1.3  oster 
    316  1.17  perry void
    317  1.15  oster rf_MapSectorDeclustered(RF_Raid_t *raidPtr, RF_RaidAddr_t raidSector,
    318  1.17  perry 			RF_RowCol_t *row, RF_RowCol_t *col,
    319  1.15  oster 			RF_SectorNum_t *diskSector, int remap)
    320   1.3  oster {
    321   1.3  oster 	RF_RaidLayout_t *layoutPtr = &(raidPtr->Layout);
    322   1.3  oster 	RF_DeclusteredConfigInfo_t *info = (RF_DeclusteredConfigInfo_t *) layoutPtr->layoutSpecificInfo;
    323   1.3  oster 	RF_StripeNum_t SUID = raidSector / layoutPtr->sectorsPerStripeUnit;
    324   1.3  oster 	RF_StripeNum_t FullTableID, FullTableOffset, TableID, TableOffset;
    325   1.3  oster 	RF_StripeNum_t BlockID, BlockOffset, RepIndex;
    326   1.3  oster 	RF_StripeCount_t sus_per_fulltable = info->SUsPerFullTable;
    327   1.3  oster 	RF_StripeCount_t fulltable_depth = info->FullTableDepthInPUs * layoutPtr->SUsPerPU;
    328   1.3  oster 	RF_StripeNum_t base_suid = 0, outSU, SpareRegion = 0, SpareSpace = 0;
    329   1.3  oster 
    330   1.3  oster 	rf_decluster_adjust_params(layoutPtr, &SUID, &sus_per_fulltable, &fulltable_depth, &base_suid);
    331   1.3  oster 
    332   1.3  oster 	FullTableID = SUID / sus_per_fulltable;	/* fulltable ID within array
    333   1.3  oster 						 * (across rows) */
    334   1.3  oster 	if (raidPtr->numRow == 1)
    335   1.3  oster 		*row = 0;	/* avoid a mod and a div in the common case */
    336   1.3  oster 	else {
    337   1.3  oster 		*row = FullTableID % raidPtr->numRow;
    338   1.3  oster 		FullTableID /= raidPtr->numRow;	/* convert to fulltable ID on
    339   1.3  oster 						 * this disk */
    340   1.3  oster 	}
    341   1.3  oster 	if (raidPtr->Layout.map->flags & RF_DISTRIBUTE_SPARE) {
    342   1.3  oster 		SpareRegion = FullTableID / info->FullTablesPerSpareRegion;
    343   1.3  oster 		SpareSpace = SpareRegion * info->SpareSpaceDepthPerRegionInSUs;
    344   1.3  oster 	}
    345   1.3  oster 	FullTableOffset = SUID % sus_per_fulltable;
    346   1.3  oster 	TableID = FullTableOffset / info->SUsPerTable;
    347   1.3  oster 	TableOffset = FullTableOffset - TableID * info->SUsPerTable;
    348   1.3  oster 	BlockID = TableOffset / info->PUsPerBlock;
    349   1.3  oster 	BlockOffset = TableOffset - BlockID * info->PUsPerBlock;
    350   1.3  oster 	BlockID %= info->BlocksPerTable;
    351   1.3  oster 	RepIndex = info->PUsPerBlock - TableID;
    352   1.3  oster 	if (!raidPtr->noRotate)
    353   1.3  oster 		BlockOffset += ((BlockOffset >= RepIndex) ? 1 : 0);
    354   1.3  oster 	*col = info->LayoutTable[BlockID][BlockOffset];
    355   1.3  oster 
    356   1.3  oster 	/* remap to distributed spare space if indicated */
    357   1.3  oster 	if (remap) {
    358   1.3  oster 		RF_ASSERT(raidPtr->Disks[*row][*col].status == rf_ds_reconstructing || raidPtr->Disks[*row][*col].status == rf_ds_dist_spared ||
    359   1.3  oster 		    (rf_copyback_in_progress && raidPtr->Disks[*row][*col].status == rf_ds_optimal));
    360   1.3  oster 		rf_remap_to_spare_space(layoutPtr, info, *row, FullTableID, TableID, BlockID, (base_suid) ? 1 : 0, SpareRegion, col, &outSU);
    361   1.3  oster 	} else {
    362   1.3  oster 
    363   1.3  oster 		outSU = base_suid;
    364   1.3  oster 		outSU += FullTableID * fulltable_depth;	/* offs to strt of FT */
    365   1.3  oster 		outSU += SpareSpace;	/* skip rsvd spare space */
    366   1.3  oster 		outSU += TableID * info->TableDepthInPUs * layoutPtr->SUsPerPU;	/* offs to strt of tble */
    367   1.3  oster 		outSU += info->OffsetTable[BlockID][BlockOffset] * layoutPtr->SUsPerPU;	/* offs to the PU */
    368   1.3  oster 	}
    369   1.3  oster 	outSU += TableOffset / (info->BlocksPerTable * info->PUsPerBlock);	/* offs to the SU within
    370   1.3  oster 										 * a PU */
    371   1.1  oster 
    372   1.3  oster 	/* convert SUs to sectors, and, if not aligned to SU boundary, add in
    373   1.3  oster 	 * offset to sector.  */
    374   1.3  oster 	*diskSector = outSU * layoutPtr->sectorsPerStripeUnit + (raidSector % layoutPtr->sectorsPerStripeUnit);
    375   1.1  oster 
    376   1.3  oster 	RF_ASSERT(*col != -1);
    377   1.1  oster }
    378   1.1  oster 
    379   1.1  oster 
    380   1.1  oster /* prototyping this inexplicably causes the compile of the layout table (rf_layout.c) to fail */
    381  1.17  perry void
    382  1.15  oster rf_MapParityDeclustered(RF_Raid_t *raidPtr, RF_RaidAddr_t raidSector,
    383  1.15  oster 			RF_RowCol_t *row, RF_RowCol_t *col,
    384  1.15  oster 			RF_SectorNum_t *diskSector, int remap)
    385   1.3  oster {
    386   1.3  oster 	RF_RaidLayout_t *layoutPtr = &(raidPtr->Layout);
    387   1.3  oster 	RF_DeclusteredConfigInfo_t *info = (RF_DeclusteredConfigInfo_t *) layoutPtr->layoutSpecificInfo;
    388   1.3  oster 	RF_StripeNum_t SUID = raidSector / layoutPtr->sectorsPerStripeUnit;
    389   1.3  oster 	RF_StripeNum_t FullTableID, FullTableOffset, TableID, TableOffset;
    390   1.3  oster 	RF_StripeNum_t BlockID, BlockOffset, RepIndex;
    391   1.3  oster 	RF_StripeCount_t sus_per_fulltable = info->SUsPerFullTable;
    392   1.3  oster 	RF_StripeCount_t fulltable_depth = info->FullTableDepthInPUs * layoutPtr->SUsPerPU;
    393   1.3  oster 	RF_StripeNum_t base_suid = 0, outSU, SpareRegion = 0, SpareSpace = 0;
    394   1.3  oster 
    395   1.3  oster 	rf_decluster_adjust_params(layoutPtr, &SUID, &sus_per_fulltable, &fulltable_depth, &base_suid);
    396   1.3  oster 
    397   1.3  oster 	/* compute row & (possibly) spare space exactly as before */
    398   1.3  oster 	FullTableID = SUID / sus_per_fulltable;
    399   1.3  oster 	if (raidPtr->numRow == 1)
    400   1.3  oster 		*row = 0;	/* avoid a mod and a div in the common case */
    401   1.3  oster 	else {
    402   1.3  oster 		*row = FullTableID % raidPtr->numRow;
    403   1.3  oster 		FullTableID /= raidPtr->numRow;	/* convert to fulltable ID on
    404   1.3  oster 						 * this disk */
    405   1.3  oster 	}
    406   1.3  oster 	if ((raidPtr->Layout.map->flags & RF_DISTRIBUTE_SPARE)) {
    407   1.3  oster 		SpareRegion = FullTableID / info->FullTablesPerSpareRegion;
    408   1.3  oster 		SpareSpace = SpareRegion * info->SpareSpaceDepthPerRegionInSUs;
    409   1.3  oster 	}
    410   1.3  oster 	/* compute BlockID and RepIndex exactly as before */
    411   1.3  oster 	FullTableOffset = SUID % sus_per_fulltable;
    412   1.3  oster 	TableID = FullTableOffset / info->SUsPerTable;
    413   1.3  oster 	TableOffset = FullTableOffset - TableID * info->SUsPerTable;
    414   1.3  oster 	/* TableOffset     = FullTableOffset % info->SUsPerTable; */
    415   1.3  oster 	/* BlockID         = (TableOffset / info->PUsPerBlock) %
    416   1.3  oster 	 * info->BlocksPerTable; */
    417   1.3  oster 	BlockID = TableOffset / info->PUsPerBlock;
    418   1.3  oster 	/* BlockOffset     = TableOffset % info->PUsPerBlock; */
    419   1.3  oster 	BlockOffset = TableOffset - BlockID * info->PUsPerBlock;
    420   1.3  oster 	BlockID %= info->BlocksPerTable;
    421   1.3  oster 
    422   1.3  oster 	/* the parity block is in the position indicated by RepIndex */
    423   1.3  oster 	RepIndex = (raidPtr->noRotate) ? info->PUsPerBlock : info->PUsPerBlock - TableID;
    424   1.3  oster 	*col = info->LayoutTable[BlockID][RepIndex];
    425   1.3  oster 
    426   1.3  oster 	if (remap) {
    427   1.3  oster 		RF_ASSERT(raidPtr->Disks[*row][*col].status == rf_ds_reconstructing || raidPtr->Disks[*row][*col].status == rf_ds_dist_spared ||
    428   1.3  oster 		    (rf_copyback_in_progress && raidPtr->Disks[*row][*col].status == rf_ds_optimal));
    429   1.3  oster 		rf_remap_to_spare_space(layoutPtr, info, *row, FullTableID, TableID, BlockID, (base_suid) ? 1 : 0, SpareRegion, col, &outSU);
    430   1.3  oster 	} else {
    431   1.3  oster 
    432   1.3  oster 		/* compute sector as before, except use RepIndex instead of
    433   1.3  oster 		 * BlockOffset */
    434   1.3  oster 		outSU = base_suid;
    435   1.3  oster 		outSU += FullTableID * fulltable_depth;
    436   1.3  oster 		outSU += SpareSpace;	/* skip rsvd spare space */
    437   1.3  oster 		outSU += TableID * info->TableDepthInPUs * layoutPtr->SUsPerPU;
    438   1.3  oster 		outSU += info->OffsetTable[BlockID][RepIndex] * layoutPtr->SUsPerPU;
    439   1.3  oster 	}
    440   1.3  oster 
    441   1.3  oster 	outSU += TableOffset / (info->BlocksPerTable * info->PUsPerBlock);
    442   1.3  oster 	*diskSector = outSU * layoutPtr->sectorsPerStripeUnit + (raidSector % layoutPtr->sectorsPerStripeUnit);
    443   1.3  oster 
    444   1.3  oster 	RF_ASSERT(*col != -1);
    445   1.1  oster }
    446   1.1  oster /* returns an array of ints identifying the disks that comprise the stripe containing the indicated address.
    447   1.1  oster  * the caller must _never_ attempt to modify this array.
    448   1.1  oster  */
    449  1.17  perry void
    450  1.15  oster rf_IdentifyStripeDeclustered(RF_Raid_t *raidPtr, RF_RaidAddr_t addr,
    451  1.15  oster 			     RF_RowCol_t **diskids, RF_RowCol_t *outRow)
    452   1.3  oster {
    453   1.3  oster 	RF_RaidLayout_t *layoutPtr = &(raidPtr->Layout);
    454   1.3  oster 	RF_DeclusteredConfigInfo_t *info = (RF_DeclusteredConfigInfo_t *) layoutPtr->layoutSpecificInfo;
    455   1.3  oster 	RF_StripeCount_t sus_per_fulltable = info->SUsPerFullTable;
    456   1.3  oster 	RF_StripeCount_t fulltable_depth = info->FullTableDepthInPUs * layoutPtr->SUsPerPU;
    457   1.3  oster 	RF_StripeNum_t base_suid = 0;
    458   1.3  oster 	RF_StripeNum_t SUID = rf_RaidAddressToStripeUnitID(layoutPtr, addr);
    459   1.3  oster 	RF_StripeNum_t stripeID, FullTableID;
    460   1.3  oster 	int     tableOffset;
    461   1.3  oster 
    462   1.3  oster 	rf_decluster_adjust_params(layoutPtr, &SUID, &sus_per_fulltable, &fulltable_depth, &base_suid);
    463   1.3  oster 	FullTableID = SUID / sus_per_fulltable;	/* fulltable ID within array
    464   1.3  oster 						 * (across rows) */
    465   1.3  oster 	*outRow = FullTableID % raidPtr->numRow;
    466   1.3  oster 	stripeID = rf_StripeUnitIDToStripeID(layoutPtr, SUID);	/* find stripe offset
    467   1.3  oster 								 * into array */
    468   1.3  oster 	tableOffset = (stripeID % info->BlocksPerTable);	/* find offset into
    469   1.3  oster 								 * block design table */
    470   1.3  oster 	*diskids = info->LayoutTable[tableOffset];
    471   1.1  oster }
    472   1.1  oster /* This returns the default head-separation limit, which is measured
    473   1.1  oster  * in "required units for reconstruction".  Each time a disk fetches
    474   1.1  oster  * a unit, it bumps a counter.  The head-sep code prohibits any disk
    475   1.3  oster  * from getting more than headSepLimit counter values ahead of any
    476   1.1  oster  * other.
    477   1.1  oster  *
    478   1.1  oster  * We assume here that the number of floating recon buffers is already
    479   1.1  oster  * set.  There are r stripes to be reconstructed in each table, and so
    480   1.1  oster  * if we have a total of B buffers, we can have at most B/r tables
    481   1.1  oster  * under recon at any one time.  In each table, lambda units are required
    482   1.1  oster  * from each disk, so given B buffers, the head sep limit has to be
    483   1.1  oster  * (lambda*B)/r units.  We subtract one to avoid weird boundary cases.
    484   1.3  oster  *
    485   1.1  oster  * for example, suppose were given 50 buffers, r=19, and lambda=4 as in
    486   1.1  oster  * the 20.5 design.  There are 19 stripes/table to be reconstructed, so
    487   1.1  oster  * we can have 50/19 tables concurrently under reconstruction, which means
    488   1.1  oster  * we can allow the fastest disk to get 50/19 tables ahead of the slower
    489   1.1  oster  * disk.  There are lambda "required units" for each disk, so the fastest
    490   1.1  oster  * disk can get 4*50/19 = 10 counter values ahead of the slowest.
    491   1.1  oster  *
    492   1.1  oster  * If numBufsToAccumulate is not 1, we need to limit the head sep further
    493   1.1  oster  * because multiple bufs will be required for each stripe under recon.
    494   1.1  oster  */
    495  1.17  perry RF_HeadSepLimit_t
    496  1.15  oster rf_GetDefaultHeadSepLimitDeclustered(RF_Raid_t *raidPtr)
    497   1.1  oster {
    498   1.3  oster 	RF_DeclusteredConfigInfo_t *info = (RF_DeclusteredConfigInfo_t *) raidPtr->Layout.layoutSpecificInfo;
    499   1.1  oster 
    500   1.3  oster 	return (info->Lambda * raidPtr->numFloatingReconBufs / info->TableDepthInPUs / rf_numBufsToAccumulate);
    501   1.1  oster }
    502   1.1  oster /* returns the default number of recon buffers to use.  The value
    503   1.1  oster  * is somewhat arbitrary...it's intended to be large enough to allow
    504   1.1  oster  * for a reasonably large head-sep limit, but small enough that you
    505   1.1  oster  * don't use up all your system memory with buffers.
    506   1.1  oster  */
    507  1.17  perry int
    508   1.3  oster rf_GetDefaultNumFloatingReconBuffersDeclustered(RF_Raid_t * raidPtr)
    509   1.1  oster {
    510   1.3  oster 	return (100 * rf_numBufsToAccumulate);
    511   1.1  oster }
    512   1.1  oster /* sectors in the last fulltable of the array need to be handled
    513   1.1  oster  * specially since this fulltable can be incomplete.  this function
    514   1.1  oster  * changes the values of certain params to handle this.
    515   1.1  oster  *
    516   1.1  oster  * the idea here is that MapSector et. al. figure out which disk the
    517   1.1  oster  * addressed unit lives on by computing the modulos of the unit number
    518   1.1  oster  * with the number of units per fulltable, table, etc.  In the last
    519   1.1  oster  * fulltable, there are fewer units per fulltable, so we need to adjust
    520   1.1  oster  * the number of user data units per fulltable to reflect this.
    521   1.1  oster  *
    522   1.1  oster  * so, we (1) convert the fulltable size and depth parameters to
    523   1.1  oster  * the size of the partial fulltable at the end, (2) compute the
    524   1.1  oster  * disk sector offset where this fulltable starts, and (3) convert
    525   1.1  oster  * the users stripe unit number from an offset into the array to
    526   1.1  oster  * an offset into the last fulltable.
    527   1.1  oster  */
    528  1.17  perry void
    529  1.15  oster rf_decluster_adjust_params(RF_RaidLayout_t *layoutPtr,
    530  1.15  oster 			   RF_StripeNum_t *SUID,
    531  1.15  oster 			   RF_StripeCount_t *sus_per_fulltable,
    532  1.15  oster 			   RF_StripeCount_t *fulltable_depth,
    533  1.15  oster 			   RF_StripeNum_t *base_suid)
    534   1.1  oster {
    535   1.3  oster 	RF_DeclusteredConfigInfo_t *info = (RF_DeclusteredConfigInfo_t *) layoutPtr->layoutSpecificInfo;
    536   1.1  oster 
    537   1.3  oster 	if (*SUID >= info->FullTableLimitSUID) {
    538   1.3  oster 		/* new full table size is size of last full table on disk */
    539   1.3  oster 		*sus_per_fulltable = info->ExtraTablesPerDisk * info->SUsPerTable;
    540   1.3  oster 
    541   1.3  oster 		/* new full table depth is corresponding depth */
    542   1.3  oster 		*fulltable_depth = info->ExtraTablesPerDisk * info->TableDepthInPUs * layoutPtr->SUsPerPU;
    543   1.3  oster 
    544   1.3  oster 		/* set up the new base offset */
    545   1.3  oster 		*base_suid = info->DiskOffsetOfLastFullTableInSUs;
    546   1.3  oster 
    547   1.3  oster 		/* convert users array address to an offset into the last
    548   1.3  oster 		 * fulltable */
    549   1.3  oster 		*SUID -= info->FullTableLimitSUID;
    550   1.3  oster 	}
    551   1.1  oster }
    552   1.1  oster /*
    553   1.1  oster  * map a stripe ID to a parity stripe ID.
    554   1.1  oster  * See comment above RaidAddressToParityStripeID in layout.c.
    555   1.1  oster  */
    556  1.17  perry void
    557  1.15  oster rf_MapSIDToPSIDDeclustered(RF_RaidLayout_t *layoutPtr,
    558  1.15  oster 			   RF_StripeNum_t stripeID,
    559  1.15  oster 			   RF_StripeNum_t *psID,
    560  1.15  oster 			   RF_ReconUnitNum_t *which_ru)
    561   1.3  oster {
    562   1.3  oster 	RF_DeclusteredConfigInfo_t *info;
    563   1.3  oster 
    564   1.3  oster 	info = (RF_DeclusteredConfigInfo_t *) layoutPtr->layoutSpecificInfo;
    565   1.3  oster 
    566   1.3  oster 	*psID = (stripeID / (layoutPtr->SUsPerPU * info->BlocksPerTable))
    567   1.3  oster 	    * info->BlocksPerTable + (stripeID % info->BlocksPerTable);
    568   1.3  oster 	*which_ru = (stripeID % (info->BlocksPerTable * layoutPtr->SUsPerPU))
    569   1.3  oster 	    / info->BlocksPerTable;
    570   1.3  oster 	RF_ASSERT((*which_ru) < layoutPtr->SUsPerPU / layoutPtr->SUsPerRU);
    571   1.1  oster }
    572   1.1  oster /*
    573   1.1  oster  * Called from MapSector and MapParity to retarget an access at the spare unit.
    574   1.1  oster  * Modifies the "col" and "outSU" parameters only.
    575   1.1  oster  */
    576  1.17  perry void
    577  1.15  oster rf_remap_to_spare_space(RF_RaidLayout_t *layoutPtr,
    578  1.15  oster 			RF_DeclusteredConfigInfo_t *info,
    579  1.15  oster 			RF_RowCol_t row,
    580  1.15  oster 			RF_StripeNum_t FullTableID,
    581  1.15  oster 			RF_StripeNum_t TableID,
    582  1.15  oster 			RF_SectorNum_t BlockID,
    583  1.15  oster 			RF_StripeNum_t base_suid,
    584  1.15  oster 			RF_StripeNum_t SpareRegion,
    585  1.15  oster 			RF_RowCol_t *outCol,
    586  1.15  oster 			RF_StripeNum_t *outSU)
    587   1.3  oster {
    588   1.3  oster 	RF_StripeNum_t ftID, spareTableStartSU, TableInSpareRegion, lastSROffset,
    589   1.3  oster 	        which_ft;
    590   1.3  oster 
    591   1.3  oster 	/*
    592   1.3  oster          * note that FullTableID and hence SpareRegion may have gotten
    593   1.3  oster          * tweaked by rf_decluster_adjust_params. We detect this by
    594   1.3  oster          * noticing that base_suid is not 0.
    595   1.3  oster          */
    596   1.3  oster 	if (base_suid == 0) {
    597   1.3  oster 		ftID = FullTableID;
    598   1.3  oster 	} else {
    599   1.3  oster 		/*
    600   1.3  oster 	         * There may be > 1.0 full tables in the last (i.e. partial)
    601   1.3  oster 	         * spare region.  find out which of these we're in.
    602   1.3  oster 	         */
    603   1.3  oster 		lastSROffset = info->NumCompleteSRs * info->SpareRegionDepthInSUs;
    604   1.3  oster 		which_ft = (info->DiskOffsetOfLastFullTableInSUs - lastSROffset) / (info->FullTableDepthInPUs * layoutPtr->SUsPerPU);
    605   1.3  oster 
    606   1.3  oster 		/* compute the actual full table ID */
    607   1.3  oster 		ftID = info->DiskOffsetOfLastFullTableInSUs / (info->FullTableDepthInPUs * layoutPtr->SUsPerPU) + which_ft;
    608   1.3  oster 		SpareRegion = info->NumCompleteSRs;
    609   1.3  oster 	}
    610   1.3  oster 	TableInSpareRegion = (ftID * info->NumParityReps + TableID) % info->TablesPerSpareRegion;
    611   1.3  oster 
    612   1.3  oster 	*outCol = info->SpareTable[TableInSpareRegion][BlockID].spareDisk;
    613   1.3  oster 	RF_ASSERT(*outCol != -1);
    614   1.3  oster 
    615   1.3  oster 	spareTableStartSU = (SpareRegion == info->NumCompleteSRs) ?
    616   1.1  oster 	    info->DiskOffsetOfLastFullTableInSUs + info->ExtraTablesPerDisk * info->TableDepthInPUs * layoutPtr->SUsPerPU :
    617   1.3  oster 	    (SpareRegion + 1) * info->SpareRegionDepthInSUs - info->SpareSpaceDepthPerRegionInSUs;
    618   1.3  oster 	*outSU = spareTableStartSU + info->SpareTable[TableInSpareRegion][BlockID].spareBlockOffsetInSUs;
    619   1.3  oster 	if (*outSU >= layoutPtr->stripeUnitsPerDisk) {
    620   1.3  oster 		printf("rf_remap_to_spare_space: invalid remapped disk SU offset %ld\n", (long) *outSU);
    621   1.3  oster 	}
    622   1.1  oster }
    623   1.1  oster 
    624   1.6  oster #endif /* (RF_INCLUDE_PARITY_DECLUSTERING > 0)  || (RF_INCLUDE_PARITY_DECLUSTERING_PQ > 0) */
    625   1.6  oster 
    626  1.14  oster #if (RF_INCLUDE_PARITY_DECLUSTERING_DS > 0)
    627  1.17  perry int
    628  1.15  oster rf_InstallSpareTable(RF_Raid_t *raidPtr, RF_RowCol_t frow, RF_RowCol_t fcol)
    629   1.3  oster {
    630   1.3  oster 	RF_DeclusteredConfigInfo_t *info = (RF_DeclusteredConfigInfo_t *) raidPtr->Layout.layoutSpecificInfo;
    631   1.3  oster 	RF_SparetWait_t *req;
    632   1.3  oster 	int     retcode;
    633   1.3  oster 
    634   1.3  oster 	RF_Malloc(req, sizeof(*req), (RF_SparetWait_t *));
    635   1.3  oster 	req->C = raidPtr->numCol;
    636   1.3  oster 	req->G = raidPtr->Layout.numDataCol + raidPtr->Layout.numParityCol;
    637   1.3  oster 	req->fcol = fcol;
    638   1.3  oster 	req->SUsPerPU = raidPtr->Layout.SUsPerPU;
    639   1.3  oster 	req->TablesPerSpareRegion = info->TablesPerSpareRegion;
    640   1.3  oster 	req->BlocksPerTable = info->BlocksPerTable;
    641   1.3  oster 	req->TableDepthInPUs = info->TableDepthInPUs;
    642   1.3  oster 	req->SpareSpaceDepthPerRegionInSUs = info->SpareSpaceDepthPerRegionInSUs;
    643   1.3  oster 
    644   1.3  oster 	retcode = rf_GetSpareTableFromDaemon(req);
    645   1.3  oster 	RF_ASSERT(!retcode);	/* XXX -- fix this to recover gracefully --
    646   1.3  oster 				 * XXX */
    647   1.3  oster 	return (retcode);
    648   1.3  oster }
    649  1.14  oster #endif
    650  1.10  oster #if (RF_INCLUDE_PARITY_DECLUSTERING > 0) || (RF_INCLUDE_PARITY_DECLUSTERING_PQ > 0)
    651   1.1  oster /*
    652   1.1  oster  * Invoked via ioctl to install a spare table in the kernel.
    653   1.1  oster  */
    654  1.17  perry int
    655  1.15  oster rf_SetSpareTable(RF_Raid_t *raidPtr, void *data)
    656   1.3  oster {
    657   1.3  oster 	RF_DeclusteredConfigInfo_t *info = (RF_DeclusteredConfigInfo_t *) raidPtr->Layout.layoutSpecificInfo;
    658   1.3  oster 	RF_SpareTableEntry_t **ptrs;
    659   1.3  oster 	int     i, retcode;
    660   1.3  oster 
    661   1.3  oster 	/* what we need to copyin is a 2-d array, so first copyin the user
    662   1.3  oster 	 * pointers to the rows in the table */
    663   1.3  oster 	RF_Malloc(ptrs, info->TablesPerSpareRegion * sizeof(RF_SpareTableEntry_t *), (RF_SpareTableEntry_t **));
    664   1.3  oster 	retcode = copyin((caddr_t) data, (caddr_t) ptrs, info->TablesPerSpareRegion * sizeof(RF_SpareTableEntry_t *));
    665   1.3  oster 
    666   1.3  oster 	if (retcode)
    667   1.3  oster 		return (retcode);
    668   1.3  oster 
    669   1.3  oster 	/* now allocate kernel space for the row pointers */
    670   1.3  oster 	RF_Malloc(info->SpareTable, info->TablesPerSpareRegion * sizeof(RF_SpareTableEntry_t *), (RF_SpareTableEntry_t **));
    671   1.3  oster 
    672   1.3  oster 	/* now allocate kernel space for each row in the table, and copy it in
    673   1.3  oster 	 * from user space */
    674   1.3  oster 	for (i = 0; i < info->TablesPerSpareRegion; i++) {
    675   1.3  oster 		RF_Malloc(info->SpareTable[i], info->BlocksPerTable * sizeof(RF_SpareTableEntry_t), (RF_SpareTableEntry_t *));
    676   1.3  oster 		retcode = copyin(ptrs[i], info->SpareTable[i], info->BlocksPerTable * sizeof(RF_SpareTableEntry_t));
    677   1.3  oster 		if (retcode) {
    678   1.3  oster 			info->SpareTable = NULL;	/* blow off the memory
    679   1.3  oster 							 * we've allocated */
    680   1.3  oster 			return (retcode);
    681   1.3  oster 		}
    682   1.3  oster 	}
    683   1.1  oster 
    684   1.3  oster 	/* free up the temporary array we used */
    685   1.3  oster 	RF_Free(ptrs, info->TablesPerSpareRegion * sizeof(RF_SpareTableEntry_t *));
    686   1.1  oster 
    687   1.3  oster 	return (0);
    688   1.1  oster }
    689   1.1  oster 
    690  1.17  perry RF_ReconUnitCount_t
    691  1.15  oster rf_GetNumSpareRUsDeclustered(RF_Raid_t *raidPtr)
    692   1.1  oster {
    693   1.3  oster 	RF_RaidLayout_t *layoutPtr = &raidPtr->Layout;
    694   1.1  oster 
    695   1.3  oster 	return (((RF_DeclusteredConfigInfo_t *) layoutPtr->layoutSpecificInfo)->TotSparePUsPerDisk);
    696   1.1  oster }
    697  1.10  oster #endif /* (RF_INCLUDE_PARITY_DECLUSTERING > 0)  || (RF_INCLUDE_PARITY_DECLUSTERING_PQ > 0) */
    698   1.1  oster 
    699  1.17  perry void
    700  1.15  oster rf_FreeSpareTable(RF_Raid_t *raidPtr)
    701   1.1  oster {
    702   1.3  oster 	long    i;
    703   1.3  oster 	RF_RaidLayout_t *layoutPtr = &raidPtr->Layout;
    704   1.3  oster 	RF_DeclusteredConfigInfo_t *info = (RF_DeclusteredConfigInfo_t *) layoutPtr->layoutSpecificInfo;
    705   1.3  oster 	RF_SpareTableEntry_t **table = info->SpareTable;
    706   1.1  oster 
    707   1.3  oster 	for (i = 0; i < info->TablesPerSpareRegion; i++) {
    708   1.3  oster 		RF_Free(table[i], info->BlocksPerTable * sizeof(RF_SpareTableEntry_t));
    709   1.3  oster 	}
    710   1.3  oster 	RF_Free(table, info->TablesPerSpareRegion * sizeof(RF_SpareTableEntry_t *));
    711   1.3  oster 	info->SpareTable = (RF_SpareTableEntry_t **) NULL;
    712   1.1  oster }
    713