rf_layout.h revision 1.10 1 1.10 jdolecek /* $NetBSD: rf_layout.h,v 1.10 2003/02/09 10:04:33 jdolecek 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 RF_StripeCount_t numDataCol; /* number of SUs of data per stripe
73 1.3 oster * (name here is a la RAID4) */
74 1.3 oster RF_StripeCount_t numParityCol; /* number of SUs of parity per stripe.
75 1.3 oster * Always 1 for now */
76 1.3 oster RF_StripeCount_t numParityLogCol; /* number of SUs of parity log
77 1.3 oster * per stripe. Always 1 for
78 1.3 oster * now */
79 1.3 oster RF_StripeCount_t stripeUnitsPerDisk;
80 1.3 oster
81 1.10 jdolecek const RF_LayoutSW_t *map; /* ptr to struct holding mapping fns and
82 1.10 jdolecek * information */
83 1.3 oster void *layoutSpecificInfo; /* ptr to a structure holding
84 1.3 oster * layout-specific params */
85 1.1 oster };
86 1.1 oster /*****************************************************************************************
87 1.1 oster *
88 1.1 oster * The mapping code returns a pointer to a list of AccessStripeMap structures, which
89 1.1 oster * describes all the mapping information about an access. The list contains one
90 1.1 oster * AccessStripeMap structure per stripe touched by the access. Each element in the list
91 1.1 oster * contains a stripe identifier and a pointer to a list of PhysDiskAddr structuress. Each
92 1.1 oster * element in this latter list describes the physical location of a stripe unit accessed
93 1.1 oster * within the corresponding stripe.
94 1.3 oster *
95 1.1 oster ****************************************************************************************/
96 1.1 oster
97 1.1 oster #define RF_PDA_TYPE_DATA 0
98 1.1 oster #define RF_PDA_TYPE_PARITY 1
99 1.1 oster #define RF_PDA_TYPE_Q 2
100 1.1 oster
101 1.1 oster struct RF_PhysDiskAddr_s {
102 1.3 oster RF_RowCol_t row, col; /* disk identifier */
103 1.3 oster RF_SectorNum_t startSector; /* sector offset into the disk */
104 1.3 oster RF_SectorCount_t numSector; /* number of sectors accessed */
105 1.3 oster int type; /* used by higher levels: currently, data,
106 1.3 oster * parity, or q */
107 1.3 oster caddr_t bufPtr; /* pointer to buffer supplying/receiving data */
108 1.3 oster RF_RaidAddr_t raidAddress; /* raid address corresponding to this
109 1.3 oster * physical disk address */
110 1.3 oster RF_PhysDiskAddr_t *next;
111 1.1 oster };
112 1.1 oster #define RF_MAX_FAILED_PDA RF_MAXCOL
113 1.1 oster
114 1.1 oster struct RF_AccessStripeMap_s {
115 1.3 oster RF_StripeNum_t stripeID;/* the stripe index */
116 1.3 oster RF_RaidAddr_t raidAddress; /* the starting raid address within
117 1.3 oster * this stripe */
118 1.3 oster RF_RaidAddr_t endRaidAddress; /* raid address one sector past the
119 1.3 oster * end of the access */
120 1.3 oster RF_SectorCount_t totalSectorsAccessed; /* total num sectors
121 1.3 oster * identified in physInfo list */
122 1.3 oster RF_StripeCount_t numStripeUnitsAccessed; /* total num elements in
123 1.3 oster * physInfo list */
124 1.3 oster int numDataFailed; /* number of failed data disks accessed */
125 1.3 oster int numParityFailed;/* number of failed parity disks accessed (0
126 1.3 oster * or 1) */
127 1.3 oster int numQFailed; /* number of failed Q units accessed (0 or 1) */
128 1.3 oster RF_AccessStripeMapFlags_t flags; /* various flags */
129 1.3 oster int numFailedPDAs; /* number of failed phys addrs */
130 1.3 oster RF_PhysDiskAddr_t *failedPDAs[RF_MAX_FAILED_PDA]; /* array of failed phys
131 1.3 oster * addrs */
132 1.3 oster RF_PhysDiskAddr_t *physInfo; /* a list of PhysDiskAddr structs */
133 1.3 oster RF_PhysDiskAddr_t *parityInfo; /* list of physical addrs for the
134 1.3 oster * parity (P of P + Q ) */
135 1.3 oster RF_PhysDiskAddr_t *qInfo; /* list of physical addrs for the Q of
136 1.3 oster * P + Q */
137 1.3 oster RF_LockReqDesc_t lockReqDesc; /* used for stripe locking */
138 1.3 oster RF_RowCol_t origRow; /* the original row: we may redirect the acc
139 1.3 oster * to a different row */
140 1.3 oster RF_AccessStripeMap_t *next;
141 1.1 oster };
142 1.1 oster /* flag values */
143 1.3 oster #define RF_ASM_REDIR_LARGE_WRITE 0x00000001 /* allows large-write creation
144 1.3 oster * code to redirect failed
145 1.3 oster * accs */
146 1.3 oster #define RF_ASM_BAILOUT_DAG_USED 0x00000002 /* allows us to detect
147 1.3 oster * recursive calls to the
148 1.3 oster * bailout write dag */
149 1.3 oster #define RF_ASM_FLAGS_LOCK_TRIED 0x00000004 /* we've acquired the lock on
150 1.3 oster * the first parity range in
151 1.3 oster * this parity stripe */
152 1.3 oster #define RF_ASM_FLAGS_LOCK_TRIED2 0x00000008 /* we've acquired the lock on
153 1.3 oster * the 2nd parity range in
154 1.3 oster * this parity stripe */
155 1.3 oster #define RF_ASM_FLAGS_FORCE_TRIED 0x00000010 /* we've done the force-recon
156 1.3 oster * call on this parity stripe */
157 1.3 oster #define RF_ASM_FLAGS_RECON_BLOCKED 0x00000020 /* we blocked recon => we must
158 1.3 oster * unblock it later */
159 1.1 oster
160 1.1 oster struct RF_AccessStripeMapHeader_s {
161 1.3 oster RF_StripeCount_t numStripes; /* total number of stripes touched by
162 1.3 oster * this acc */
163 1.3 oster RF_AccessStripeMap_t *stripeMap; /* pointer to the actual map.
164 1.3 oster * Also used for making lists */
165 1.3 oster RF_AccessStripeMapHeader_t *next;
166 1.1 oster };
167 1.1 oster /*****************************************************************************************
168 1.1 oster *
169 1.1 oster * various routines mapping addresses in the RAID address space. These work across
170 1.1 oster * all layouts. DON'T PUT ANY LAYOUT-SPECIFIC CODE HERE.
171 1.1 oster *
172 1.1 oster ****************************************************************************************/
173 1.1 oster
174 1.1 oster /* return the identifier of the stripe containing the given address */
175 1.1 oster #define rf_RaidAddressToStripeID(_layoutPtr_, _addr_) \
176 1.1 oster ( ((_addr_) / (_layoutPtr_)->sectorsPerStripeUnit) / (_layoutPtr_)->numDataCol )
177 1.1 oster
178 1.1 oster /* return the raid address of the start of the indicates stripe ID */
179 1.1 oster #define rf_StripeIDToRaidAddress(_layoutPtr_, _sid_) \
180 1.1 oster ( ((_sid_) * (_layoutPtr_)->sectorsPerStripeUnit) * (_layoutPtr_)->numDataCol )
181 1.1 oster
182 1.1 oster /* return the identifier of the stripe containing the given stripe unit id */
183 1.1 oster #define rf_StripeUnitIDToStripeID(_layoutPtr_, _addr_) \
184 1.1 oster ( (_addr_) / (_layoutPtr_)->numDataCol )
185 1.1 oster
186 1.1 oster /* return the identifier of the stripe unit containing the given address */
187 1.1 oster #define rf_RaidAddressToStripeUnitID(_layoutPtr_, _addr_) \
188 1.1 oster ( ((_addr_) / (_layoutPtr_)->sectorsPerStripeUnit) )
189 1.1 oster
190 1.1 oster /* return the RAID address of next stripe boundary beyond the given address */
191 1.1 oster #define rf_RaidAddressOfNextStripeBoundary(_layoutPtr_, _addr_) \
192 1.1 oster ( (((_addr_)/(_layoutPtr_)->dataSectorsPerStripe)+1) * (_layoutPtr_)->dataSectorsPerStripe )
193 1.1 oster
194 1.1 oster /* return the RAID address of the start of the stripe containing the given address */
195 1.1 oster #define rf_RaidAddressOfPrevStripeBoundary(_layoutPtr_, _addr_) \
196 1.1 oster ( (((_addr_)/(_layoutPtr_)->dataSectorsPerStripe)+0) * (_layoutPtr_)->dataSectorsPerStripe )
197 1.1 oster
198 1.1 oster /* return the RAID address of next stripe unit boundary beyond the given address */
199 1.1 oster #define rf_RaidAddressOfNextStripeUnitBoundary(_layoutPtr_, _addr_) \
200 1.1 oster ( (((_addr_)/(_layoutPtr_)->sectorsPerStripeUnit)+1L)*(_layoutPtr_)->sectorsPerStripeUnit )
201 1.1 oster
202 1.1 oster /* return the RAID address of the start of the stripe unit containing RAID address _addr_ */
203 1.1 oster #define rf_RaidAddressOfPrevStripeUnitBoundary(_layoutPtr_, _addr_) \
204 1.1 oster ( (((_addr_)/(_layoutPtr_)->sectorsPerStripeUnit)+0)*(_layoutPtr_)->sectorsPerStripeUnit )
205 1.1 oster
206 1.1 oster /* returns the offset into the stripe. used by RaidAddressStripeAligned */
207 1.1 oster #define rf_RaidAddressStripeOffset(_layoutPtr_, _addr_) \
208 1.1 oster ( (_addr_) % ((_layoutPtr_)->dataSectorsPerStripe) )
209 1.1 oster
210 1.1 oster /* returns the offset into the stripe unit. */
211 1.1 oster #define rf_StripeUnitOffset(_layoutPtr_, _addr_) \
212 1.1 oster ( (_addr_) % ((_layoutPtr_)->sectorsPerStripeUnit) )
213 1.1 oster
214 1.1 oster /* returns nonzero if the given RAID address is stripe-aligned */
215 1.1 oster #define rf_RaidAddressStripeAligned( __layoutPtr__, __addr__ ) \
216 1.1 oster ( rf_RaidAddressStripeOffset(__layoutPtr__, __addr__) == 0 )
217 1.1 oster
218 1.1 oster /* returns nonzero if the given address is stripe-unit aligned */
219 1.1 oster #define rf_StripeUnitAligned( __layoutPtr__, __addr__ ) \
220 1.1 oster ( rf_StripeUnitOffset(__layoutPtr__, __addr__) == 0 )
221 1.1 oster
222 1.1 oster /* convert an address expressed in RAID blocks to/from an addr expressed in bytes */
223 1.1 oster #define rf_RaidAddressToByte(_raidPtr_, _addr_) \
224 1.1 oster ( (_addr_) << ( (_raidPtr_)->logBytesPerSector ) )
225 1.1 oster
226 1.1 oster #define rf_ByteToRaidAddress(_raidPtr_, _addr_) \
227 1.1 oster ( (_addr_) >> ( (_raidPtr_)->logBytesPerSector ) )
228 1.1 oster
229 1.1 oster /* convert a raid address to/from a parity stripe ID. Conversion to raid address is easy,
230 1.1 oster * since we're asking for the address of the first sector in the parity stripe. Conversion to a
231 1.1 oster * parity stripe ID is more complex, since stripes are not contiguously allocated in
232 1.1 oster * parity stripes.
233 1.1 oster */
234 1.1 oster #define rf_RaidAddressToParityStripeID(_layoutPtr_, _addr_, _ru_num_) \
235 1.1 oster rf_MapStripeIDToParityStripeID( (_layoutPtr_), rf_RaidAddressToStripeID( (_layoutPtr_), (_addr_) ), (_ru_num_) )
236 1.1 oster
237 1.1 oster #define rf_ParityStripeIDToRaidAddress(_layoutPtr_, _psid_) \
238 1.1 oster ( (_psid_) * (_layoutPtr_)->SUsPerPU * (_layoutPtr_)->numDataCol * (_layoutPtr_)->sectorsPerStripeUnit )
239 1.1 oster
240 1.10 jdolecek const RF_LayoutSW_t *rf_GetLayout(RF_ParityConfig_t parityConfig);
241 1.3 oster int
242 1.3 oster rf_ConfigureLayout(RF_ShutdownList_t ** listp, RF_Raid_t * raidPtr,
243 1.3 oster RF_Config_t * cfgPtr);
244 1.3 oster RF_StripeNum_t
245 1.3 oster rf_MapStripeIDToParityStripeID(RF_RaidLayout_t * layoutPtr,
246 1.3 oster RF_StripeNum_t stripeID, RF_ReconUnitNum_t * which_ru);
247 1.1 oster
248 1.3 oster #endif /* !_RF__RF_LAYOUT_H_ */
249