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rf_layout.h revision 1.7
      1  1.7  oster /*	$NetBSD: rf_layout.h,v 1.7 2001/10/05 15:41:23 oster 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 /* rf_layout.h -- header file defining layout data structures
     30  1.1  oster  */
     31  1.1  oster 
     32  1.1  oster #ifndef _RF__RF_LAYOUT_H_
     33  1.1  oster #define _RF__RF_LAYOUT_H_
     34  1.1  oster 
     35  1.6  oster #include <dev/raidframe/raidframevar.h>
     36  1.1  oster #include "rf_archs.h"
     37  1.1  oster #include "rf_alloclist.h"
     38  1.1  oster 
     39  1.1  oster /* enables remapping to spare location under dist sparing */
     40  1.1  oster #define RF_REMAP       1
     41  1.1  oster #define RF_DONT_REMAP  0
     42  1.1  oster 
     43  1.1  oster /*
     44  1.1  oster  * Flags values for RF_AccessStripeMapFlags_t
     45  1.1  oster  */
     46  1.3  oster #define RF_NO_STRIPE_LOCKS   0x0001	/* suppress stripe locks */
     47  1.3  oster #define RF_DISTRIBUTE_SPARE  0x0002	/* distribute spare space in archs
     48  1.3  oster 					 * that support it */
     49  1.3  oster #define RF_BD_DECLUSTERED    0x0004	/* declustering uses block designs */
     50  1.1  oster 
     51  1.1  oster /*************************************************************************
     52  1.1  oster  *
     53  1.1  oster  * this structure forms the layout component of the main Raid
     54  1.1  oster  * structure.  It describes everything needed to define and perform
     55  1.1  oster  * the mapping of logical RAID addresses <-> physical disk addresses.
     56  1.3  oster  *
     57  1.1  oster  *************************************************************************/
     58  1.1  oster struct RF_RaidLayout_s {
     59  1.3  oster 	/* configuration parameters */
     60  1.3  oster 	RF_SectorCount_t sectorsPerStripeUnit;	/* number of sectors in one
     61  1.3  oster 						 * stripe unit */
     62  1.3  oster 	RF_StripeCount_t SUsPerPU;	/* stripe units per parity unit */
     63  1.3  oster 	RF_StripeCount_t SUsPerRU;	/* stripe units per reconstruction
     64  1.3  oster 					 * unit */
     65  1.3  oster 
     66  1.3  oster 	/* redundant-but-useful info computed from the above, used in all
     67  1.3  oster 	 * layouts */
     68  1.3  oster 	RF_StripeCount_t numStripe;	/* total number of stripes in the
     69  1.3  oster 					 * array */
     70  1.3  oster 	RF_SectorCount_t dataSectorsPerStripe;
     71  1.3  oster 	RF_StripeCount_t dataStripeUnitsPerDisk;
     72  1.3  oster 	u_int   bytesPerStripeUnit;
     73  1.3  oster 	u_int   dataBytesPerStripe;
     74  1.3  oster 	RF_StripeCount_t numDataCol;	/* number of SUs of data per stripe
     75  1.3  oster 					 * (name here is a la RAID4) */
     76  1.3  oster 	RF_StripeCount_t numParityCol;	/* number of SUs of parity per stripe.
     77  1.3  oster 					 * Always 1 for now */
     78  1.3  oster 	RF_StripeCount_t numParityLogCol;	/* number of SUs of parity log
     79  1.3  oster 						 * per stripe.  Always 1 for
     80  1.3  oster 						 * now */
     81  1.3  oster 	RF_StripeCount_t stripeUnitsPerDisk;
     82  1.3  oster 
     83  1.3  oster 	RF_LayoutSW_t *map;	/* ptr to struct holding mapping fns and
     84  1.3  oster 				 * information */
     85  1.3  oster 	void   *layoutSpecificInfo;	/* ptr to a structure holding
     86  1.3  oster 					 * layout-specific params */
     87  1.1  oster };
     88  1.1  oster /*****************************************************************************************
     89  1.1  oster  *
     90  1.1  oster  * The mapping code returns a pointer to a list of AccessStripeMap structures, which
     91  1.1  oster  * describes all the mapping information about an access.  The list contains one
     92  1.1  oster  * AccessStripeMap structure per stripe touched by the access.  Each element in the list
     93  1.1  oster  * contains a stripe identifier and a pointer to a list of PhysDiskAddr structuress.  Each
     94  1.1  oster  * element in this latter list describes the physical location of a stripe unit accessed
     95  1.1  oster  * within the corresponding stripe.
     96  1.3  oster  *
     97  1.1  oster  ****************************************************************************************/
     98  1.1  oster 
     99  1.1  oster #define RF_PDA_TYPE_DATA   0
    100  1.1  oster #define RF_PDA_TYPE_PARITY 1
    101  1.1  oster #define RF_PDA_TYPE_Q      2
    102  1.1  oster 
    103  1.1  oster struct RF_PhysDiskAddr_s {
    104  1.3  oster 	RF_RowCol_t row, col;	/* disk identifier */
    105  1.3  oster 	RF_SectorNum_t startSector;	/* sector offset into the disk */
    106  1.3  oster 	RF_SectorCount_t numSector;	/* number of sectors accessed */
    107  1.3  oster 	int     type;		/* used by higher levels: currently, data,
    108  1.3  oster 				 * parity, or q */
    109  1.3  oster 	caddr_t bufPtr;		/* pointer to buffer supplying/receiving data */
    110  1.3  oster 	RF_RaidAddr_t raidAddress;	/* raid address corresponding to this
    111  1.3  oster 					 * physical disk address */
    112  1.3  oster 	RF_PhysDiskAddr_t *next;
    113  1.1  oster };
    114  1.1  oster #define RF_MAX_FAILED_PDA RF_MAXCOL
    115  1.1  oster 
    116  1.1  oster struct RF_AccessStripeMap_s {
    117  1.3  oster 	RF_StripeNum_t stripeID;/* the stripe index */
    118  1.3  oster 	RF_RaidAddr_t raidAddress;	/* the starting raid address within
    119  1.3  oster 					 * this stripe */
    120  1.3  oster 	RF_RaidAddr_t endRaidAddress;	/* raid address one sector past the
    121  1.3  oster 					 * end of the access */
    122  1.3  oster 	RF_SectorCount_t totalSectorsAccessed;	/* total num sectors
    123  1.3  oster 						 * identified in physInfo list */
    124  1.3  oster 	RF_StripeCount_t numStripeUnitsAccessed;	/* total num elements in
    125  1.3  oster 							 * physInfo list */
    126  1.3  oster 	int     numDataFailed;	/* number of failed data disks accessed */
    127  1.3  oster 	int     numParityFailed;/* number of failed parity disks accessed (0
    128  1.3  oster 				 * or 1) */
    129  1.3  oster 	int     numQFailed;	/* number of failed Q units accessed (0 or 1) */
    130  1.3  oster 	RF_AccessStripeMapFlags_t flags;	/* various flags */
    131  1.3  oster 	int     numFailedPDAs;	/* number of failed phys addrs */
    132  1.3  oster 	RF_PhysDiskAddr_t *failedPDAs[RF_MAX_FAILED_PDA];	/* array of failed phys
    133  1.3  oster 								 * addrs */
    134  1.3  oster 	RF_PhysDiskAddr_t *physInfo;	/* a list of PhysDiskAddr structs */
    135  1.3  oster 	RF_PhysDiskAddr_t *parityInfo;	/* list of physical addrs for the
    136  1.3  oster 					 * parity (P of P + Q ) */
    137  1.3  oster 	RF_PhysDiskAddr_t *qInfo;	/* list of physical addrs for the Q of
    138  1.3  oster 					 * P + Q */
    139  1.3  oster 	RF_LockReqDesc_t lockReqDesc;	/* used for stripe locking */
    140  1.3  oster 	RF_RowCol_t origRow;	/* the original row:  we may redirect the acc
    141  1.3  oster 				 * to a different row */
    142  1.3  oster 	RF_AccessStripeMap_t *next;
    143  1.1  oster };
    144  1.1  oster /* flag values */
    145  1.3  oster #define RF_ASM_REDIR_LARGE_WRITE   0x00000001	/* allows large-write creation
    146  1.3  oster 						 * code to redirect failed
    147  1.3  oster 						 * accs */
    148  1.3  oster #define RF_ASM_BAILOUT_DAG_USED    0x00000002	/* allows us to detect
    149  1.3  oster 						 * recursive calls to the
    150  1.3  oster 						 * bailout write dag */
    151  1.3  oster #define RF_ASM_FLAGS_LOCK_TRIED    0x00000004	/* we've acquired the lock on
    152  1.3  oster 						 * the first parity range in
    153  1.3  oster 						 * this parity stripe */
    154  1.3  oster #define RF_ASM_FLAGS_LOCK_TRIED2   0x00000008	/* we've acquired the lock on
    155  1.3  oster 						 * the 2nd   parity range in
    156  1.3  oster 						 * this parity stripe */
    157  1.3  oster #define RF_ASM_FLAGS_FORCE_TRIED   0x00000010	/* we've done the force-recon
    158  1.3  oster 						 * call on this parity stripe */
    159  1.3  oster #define RF_ASM_FLAGS_RECON_BLOCKED 0x00000020	/* we blocked recon => we must
    160  1.3  oster 						 * unblock it later */
    161  1.1  oster 
    162  1.1  oster struct RF_AccessStripeMapHeader_s {
    163  1.3  oster 	RF_StripeCount_t numStripes;	/* total number of stripes touched by
    164  1.3  oster 					 * this acc */
    165  1.3  oster 	RF_AccessStripeMap_t *stripeMap;	/* pointer to the actual map.
    166  1.3  oster 						 * Also used for making lists */
    167  1.3  oster 	RF_AccessStripeMapHeader_t *next;
    168  1.1  oster };
    169  1.1  oster /*****************************************************************************************
    170  1.1  oster  *
    171  1.1  oster  * various routines mapping addresses in the RAID address space.  These work across
    172  1.1  oster  * all layouts.  DON'T PUT ANY LAYOUT-SPECIFIC CODE HERE.
    173  1.1  oster  *
    174  1.1  oster  ****************************************************************************************/
    175  1.1  oster 
    176  1.1  oster /* return the identifier of the stripe containing the given address */
    177  1.1  oster #define rf_RaidAddressToStripeID(_layoutPtr_, _addr_) \
    178  1.1  oster   ( ((_addr_) / (_layoutPtr_)->sectorsPerStripeUnit) / (_layoutPtr_)->numDataCol )
    179  1.1  oster 
    180  1.1  oster /* return the raid address of the start of the indicates stripe ID */
    181  1.1  oster #define rf_StripeIDToRaidAddress(_layoutPtr_, _sid_) \
    182  1.1  oster   ( ((_sid_) * (_layoutPtr_)->sectorsPerStripeUnit) * (_layoutPtr_)->numDataCol )
    183  1.1  oster 
    184  1.1  oster /* return the identifier of the stripe containing the given stripe unit id */
    185  1.1  oster #define rf_StripeUnitIDToStripeID(_layoutPtr_, _addr_) \
    186  1.1  oster   ( (_addr_) / (_layoutPtr_)->numDataCol )
    187  1.1  oster 
    188  1.1  oster /* return the identifier of the stripe unit containing the given address */
    189  1.1  oster #define rf_RaidAddressToStripeUnitID(_layoutPtr_, _addr_) \
    190  1.1  oster   ( ((_addr_) / (_layoutPtr_)->sectorsPerStripeUnit) )
    191  1.1  oster 
    192  1.1  oster /* return the RAID address of next stripe boundary beyond the given address */
    193  1.1  oster #define rf_RaidAddressOfNextStripeBoundary(_layoutPtr_, _addr_) \
    194  1.1  oster   ( (((_addr_)/(_layoutPtr_)->dataSectorsPerStripe)+1) * (_layoutPtr_)->dataSectorsPerStripe )
    195  1.1  oster 
    196  1.1  oster /* return the RAID address of the start of the stripe containing the given address */
    197  1.1  oster #define rf_RaidAddressOfPrevStripeBoundary(_layoutPtr_, _addr_) \
    198  1.1  oster   ( (((_addr_)/(_layoutPtr_)->dataSectorsPerStripe)+0) * (_layoutPtr_)->dataSectorsPerStripe )
    199  1.1  oster 
    200  1.1  oster /* return the RAID address of next stripe unit boundary beyond the given address */
    201  1.1  oster #define rf_RaidAddressOfNextStripeUnitBoundary(_layoutPtr_, _addr_) \
    202  1.1  oster   ( (((_addr_)/(_layoutPtr_)->sectorsPerStripeUnit)+1L)*(_layoutPtr_)->sectorsPerStripeUnit )
    203  1.1  oster 
    204  1.1  oster /* return the RAID address of the start of the stripe unit containing RAID address _addr_ */
    205  1.1  oster #define rf_RaidAddressOfPrevStripeUnitBoundary(_layoutPtr_, _addr_) \
    206  1.1  oster   ( (((_addr_)/(_layoutPtr_)->sectorsPerStripeUnit)+0)*(_layoutPtr_)->sectorsPerStripeUnit )
    207  1.1  oster 
    208  1.1  oster /* returns the offset into the stripe.  used by RaidAddressStripeAligned */
    209  1.1  oster #define rf_RaidAddressStripeOffset(_layoutPtr_, _addr_) \
    210  1.1  oster   ( (_addr_) % ((_layoutPtr_)->dataSectorsPerStripe) )
    211  1.1  oster 
    212  1.1  oster /* returns the offset into the stripe unit.  */
    213  1.1  oster #define rf_StripeUnitOffset(_layoutPtr_, _addr_) \
    214  1.1  oster   ( (_addr_) % ((_layoutPtr_)->sectorsPerStripeUnit) )
    215  1.1  oster 
    216  1.1  oster /* returns nonzero if the given RAID address is stripe-aligned */
    217  1.1  oster #define rf_RaidAddressStripeAligned( __layoutPtr__, __addr__ ) \
    218  1.1  oster   ( rf_RaidAddressStripeOffset(__layoutPtr__, __addr__) == 0 )
    219  1.1  oster 
    220  1.1  oster /* returns nonzero if the given address is stripe-unit aligned */
    221  1.1  oster #define rf_StripeUnitAligned( __layoutPtr__, __addr__ ) \
    222  1.1  oster   ( rf_StripeUnitOffset(__layoutPtr__, __addr__) == 0 )
    223  1.1  oster 
    224  1.1  oster /* convert an address expressed in RAID blocks to/from an addr expressed in bytes */
    225  1.1  oster #define rf_RaidAddressToByte(_raidPtr_, _addr_) \
    226  1.1  oster   ( (_addr_) << ( (_raidPtr_)->logBytesPerSector ) )
    227  1.1  oster 
    228  1.1  oster #define rf_ByteToRaidAddress(_raidPtr_, _addr_) \
    229  1.1  oster   ( (_addr_) >> ( (_raidPtr_)->logBytesPerSector ) )
    230  1.1  oster 
    231  1.1  oster /* convert a raid address to/from a parity stripe ID.  Conversion to raid address is easy,
    232  1.1  oster  * since we're asking for the address of the first sector in the parity stripe.  Conversion to a
    233  1.1  oster  * parity stripe ID is more complex, since stripes are not contiguously allocated in
    234  1.1  oster  * parity stripes.
    235  1.1  oster  */
    236  1.1  oster #define rf_RaidAddressToParityStripeID(_layoutPtr_, _addr_, _ru_num_) \
    237  1.1  oster   rf_MapStripeIDToParityStripeID( (_layoutPtr_), rf_RaidAddressToStripeID( (_layoutPtr_), (_addr_) ), (_ru_num_) )
    238  1.1  oster 
    239  1.1  oster #define rf_ParityStripeIDToRaidAddress(_layoutPtr_, _psid_) \
    240  1.1  oster   ( (_psid_) * (_layoutPtr_)->SUsPerPU * (_layoutPtr_)->numDataCol * (_layoutPtr_)->sectorsPerStripeUnit )
    241  1.1  oster 
    242  1.1  oster RF_LayoutSW_t *rf_GetLayout(RF_ParityConfig_t parityConfig);
    243  1.3  oster int
    244  1.3  oster rf_ConfigureLayout(RF_ShutdownList_t ** listp, RF_Raid_t * raidPtr,
    245  1.3  oster     RF_Config_t * cfgPtr);
    246  1.3  oster RF_StripeNum_t
    247  1.3  oster rf_MapStripeIDToParityStripeID(RF_RaidLayout_t * layoutPtr,
    248  1.3  oster     RF_StripeNum_t stripeID, RF_ReconUnitNum_t * which_ru);
    249  1.1  oster 
    250  1.3  oster #endif				/* !_RF__RF_LAYOUT_H_ */
    251