rf_interdecluster.c revision 1.6 1 1.6 oster /* $NetBSD: rf_interdecluster.c,v 1.6 2001/10/04 15:58:54 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: Khalil Amiri
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 1.3 oster * rf_interdecluster.c -- implements interleaved declustering
32 1.1 oster *
33 1.1 oster ************************************************************/
34 1.1 oster
35 1.5 oster #include "rf_archs.h"
36 1.5 oster
37 1.5 oster #if RF_INCLUDE_INTERDECLUSTER > 0
38 1.1 oster
39 1.6 oster #include <dev/raidframe/raidframevar.h>
40 1.6 oster
41 1.1 oster #include "rf_raid.h"
42 1.1 oster #include "rf_interdecluster.h"
43 1.1 oster #include "rf_dag.h"
44 1.1 oster #include "rf_dagutils.h"
45 1.1 oster #include "rf_dagfuncs.h"
46 1.1 oster #include "rf_general.h"
47 1.1 oster #include "rf_utils.h"
48 1.1 oster #include "rf_dagffrd.h"
49 1.1 oster #include "rf_dagdegrd.h"
50 1.1 oster #include "rf_dagffwr.h"
51 1.1 oster #include "rf_dagdegwr.h"
52 1.1 oster
53 1.1 oster typedef struct RF_InterdeclusterConfigInfo_s {
54 1.3 oster RF_RowCol_t **stripeIdentifier; /* filled in at config time and used
55 1.3 oster * by IdentifyStripe */
56 1.3 oster RF_StripeCount_t numSparingRegions;
57 1.3 oster RF_StripeCount_t stripeUnitsPerSparingRegion;
58 1.3 oster RF_SectorNum_t mirrorStripeOffset;
59 1.3 oster } RF_InterdeclusterConfigInfo_t;
60 1.3 oster
61 1.3 oster int
62 1.3 oster rf_ConfigureInterDecluster(
63 1.3 oster RF_ShutdownList_t ** listp,
64 1.3 oster RF_Raid_t * raidPtr,
65 1.3 oster RF_Config_t * cfgPtr)
66 1.1 oster {
67 1.3 oster RF_RaidLayout_t *layoutPtr = &raidPtr->Layout;
68 1.3 oster RF_StripeCount_t num_used_stripeUnitsPerDisk;
69 1.3 oster RF_InterdeclusterConfigInfo_t *info;
70 1.3 oster RF_RowCol_t i, tmp, SUs_per_region;
71 1.3 oster
72 1.3 oster /* create an Interleaved Declustering configuration structure */
73 1.3 oster RF_MallocAndAdd(info, sizeof(RF_InterdeclusterConfigInfo_t), (RF_InterdeclusterConfigInfo_t *),
74 1.3 oster raidPtr->cleanupList);
75 1.3 oster if (info == NULL)
76 1.3 oster return (ENOMEM);
77 1.3 oster layoutPtr->layoutSpecificInfo = (void *) info;
78 1.3 oster
79 1.3 oster /* fill in the config structure. */
80 1.3 oster SUs_per_region = raidPtr->numCol * (raidPtr->numCol - 1);
81 1.3 oster info->stripeIdentifier = rf_make_2d_array(SUs_per_region, 2, raidPtr->cleanupList);
82 1.3 oster if (info->stripeIdentifier == NULL)
83 1.3 oster return (ENOMEM);
84 1.3 oster for (i = 0; i < SUs_per_region; i++) {
85 1.3 oster info->stripeIdentifier[i][0] = i / (raidPtr->numCol - 1);
86 1.3 oster tmp = i / raidPtr->numCol;
87 1.3 oster info->stripeIdentifier[i][1] = (i + 1 + tmp) % raidPtr->numCol;
88 1.3 oster }
89 1.3 oster
90 1.3 oster /* no spare tables */
91 1.3 oster RF_ASSERT(raidPtr->numRow == 1);
92 1.3 oster
93 1.3 oster /* fill in the remaining layout parameters */
94 1.3 oster
95 1.3 oster /* total number of stripes should a multiple of 2*numCol: Each sparing
96 1.3 oster * region consists of 2*numCol stripes: n-1 primary copy, n-1
97 1.3 oster * secondary copy and 2 for spare .. */
98 1.3 oster num_used_stripeUnitsPerDisk = layoutPtr->stripeUnitsPerDisk - (layoutPtr->stripeUnitsPerDisk %
99 1.3 oster (2 * raidPtr->numCol));
100 1.3 oster info->numSparingRegions = num_used_stripeUnitsPerDisk / (2 * raidPtr->numCol);
101 1.3 oster /* this is in fact the number of stripe units (that are primary data
102 1.3 oster * copies) in the sparing region */
103 1.3 oster info->stripeUnitsPerSparingRegion = raidPtr->numCol * (raidPtr->numCol - 1);
104 1.3 oster info->mirrorStripeOffset = info->numSparingRegions * (raidPtr->numCol + 1);
105 1.3 oster layoutPtr->numStripe = info->numSparingRegions * info->stripeUnitsPerSparingRegion;
106 1.3 oster layoutPtr->bytesPerStripeUnit = layoutPtr->sectorsPerStripeUnit << raidPtr->logBytesPerSector;
107 1.3 oster layoutPtr->numDataCol = 1;
108 1.3 oster layoutPtr->dataSectorsPerStripe = layoutPtr->numDataCol * layoutPtr->sectorsPerStripeUnit;
109 1.3 oster layoutPtr->numParityCol = 1;
110 1.3 oster
111 1.3 oster layoutPtr->dataStripeUnitsPerDisk = num_used_stripeUnitsPerDisk;
112 1.3 oster
113 1.3 oster raidPtr->sectorsPerDisk =
114 1.3 oster num_used_stripeUnitsPerDisk * layoutPtr->sectorsPerStripeUnit;
115 1.1 oster
116 1.3 oster raidPtr->totalSectors =
117 1.3 oster (layoutPtr->numStripe) * layoutPtr->sectorsPerStripeUnit;
118 1.1 oster
119 1.3 oster layoutPtr->stripeUnitsPerDisk = raidPtr->sectorsPerDisk / layoutPtr->sectorsPerStripeUnit;
120 1.1 oster
121 1.3 oster return (0);
122 1.1 oster }
123 1.1 oster
124 1.3 oster int
125 1.3 oster rf_GetDefaultNumFloatingReconBuffersInterDecluster(RF_Raid_t * raidPtr)
126 1.1 oster {
127 1.3 oster return (30);
128 1.1 oster }
129 1.1 oster
130 1.3 oster RF_HeadSepLimit_t
131 1.3 oster rf_GetDefaultHeadSepLimitInterDecluster(RF_Raid_t * raidPtr)
132 1.1 oster {
133 1.3 oster return (raidPtr->sectorsPerDisk);
134 1.1 oster }
135 1.1 oster
136 1.3 oster RF_ReconUnitCount_t
137 1.3 oster rf_GetNumSpareRUsInterDecluster(
138 1.3 oster RF_Raid_t * raidPtr)
139 1.1 oster {
140 1.3 oster RF_InterdeclusterConfigInfo_t *info = (RF_InterdeclusterConfigInfo_t *) raidPtr->Layout.layoutSpecificInfo;
141 1.1 oster
142 1.3 oster return (2 * ((RF_ReconUnitCount_t) info->numSparingRegions));
143 1.3 oster /* the layout uses two stripe units per disk as spare within each
144 1.3 oster * sparing region */
145 1.1 oster }
146 1.1 oster /* Maps to the primary copy of the data, i.e. the first mirror pair */
147 1.3 oster void
148 1.3 oster rf_MapSectorInterDecluster(
149 1.3 oster RF_Raid_t * raidPtr,
150 1.3 oster RF_RaidAddr_t raidSector,
151 1.3 oster RF_RowCol_t * row,
152 1.3 oster RF_RowCol_t * col,
153 1.3 oster RF_SectorNum_t * diskSector,
154 1.3 oster int remap)
155 1.1 oster {
156 1.3 oster RF_InterdeclusterConfigInfo_t *info = (RF_InterdeclusterConfigInfo_t *) raidPtr->Layout.layoutSpecificInfo;
157 1.3 oster RF_StripeNum_t SUID = raidSector / raidPtr->Layout.sectorsPerStripeUnit;
158 1.3 oster RF_StripeNum_t su_offset_into_disk, mirror_su_offset_into_disk;
159 1.3 oster RF_StripeNum_t sparing_region_id, index_within_region;
160 1.3 oster int col_before_remap;
161 1.3 oster
162 1.3 oster *row = 0;
163 1.3 oster sparing_region_id = SUID / info->stripeUnitsPerSparingRegion;
164 1.3 oster index_within_region = SUID % info->stripeUnitsPerSparingRegion;
165 1.3 oster su_offset_into_disk = index_within_region % (raidPtr->numCol - 1);
166 1.3 oster mirror_su_offset_into_disk = index_within_region / raidPtr->numCol;
167 1.3 oster col_before_remap = index_within_region / (raidPtr->numCol - 1);
168 1.3 oster
169 1.3 oster if (!remap) {
170 1.3 oster *col = col_before_remap;;
171 1.3 oster *diskSector = (su_offset_into_disk + ((raidPtr->numCol - 1) * sparing_region_id)) *
172 1.3 oster raidPtr->Layout.sectorsPerStripeUnit;
173 1.3 oster *diskSector += (raidSector % raidPtr->Layout.sectorsPerStripeUnit);
174 1.3 oster } else {
175 1.3 oster /* remap sector to spare space... */
176 1.3 oster *diskSector = sparing_region_id * (raidPtr->numCol + 1) * raidPtr->Layout.sectorsPerStripeUnit;
177 1.3 oster *diskSector += (raidPtr->numCol - 1) * raidPtr->Layout.sectorsPerStripeUnit;
178 1.3 oster *diskSector += (raidSector % raidPtr->Layout.sectorsPerStripeUnit);
179 1.3 oster *col = (index_within_region + 1 + mirror_su_offset_into_disk) % raidPtr->numCol;
180 1.3 oster *col = (*col + 1) % raidPtr->numCol;
181 1.3 oster if (*col == col_before_remap)
182 1.3 oster *col = (*col + 1) % raidPtr->numCol;
183 1.3 oster }
184 1.1 oster }
185 1.1 oster /* Maps to the second copy of the mirror pair. */
186 1.3 oster void
187 1.3 oster rf_MapParityInterDecluster(
188 1.3 oster RF_Raid_t * raidPtr,
189 1.3 oster RF_RaidAddr_t raidSector,
190 1.3 oster RF_RowCol_t * row,
191 1.3 oster RF_RowCol_t * col,
192 1.3 oster RF_SectorNum_t * diskSector,
193 1.3 oster int remap)
194 1.1 oster {
195 1.3 oster RF_InterdeclusterConfigInfo_t *info = (RF_InterdeclusterConfigInfo_t *) raidPtr->Layout.layoutSpecificInfo;
196 1.3 oster RF_StripeNum_t sparing_region_id, index_within_region, mirror_su_offset_into_disk;
197 1.3 oster RF_StripeNum_t SUID = raidSector / raidPtr->Layout.sectorsPerStripeUnit;
198 1.3 oster int col_before_remap;
199 1.3 oster
200 1.3 oster sparing_region_id = SUID / info->stripeUnitsPerSparingRegion;
201 1.3 oster index_within_region = SUID % info->stripeUnitsPerSparingRegion;
202 1.3 oster mirror_su_offset_into_disk = index_within_region / raidPtr->numCol;
203 1.3 oster col_before_remap = (index_within_region + 1 + mirror_su_offset_into_disk) % raidPtr->numCol;
204 1.3 oster
205 1.3 oster *row = 0;
206 1.3 oster if (!remap) {
207 1.3 oster *col = col_before_remap;
208 1.3 oster *diskSector = info->mirrorStripeOffset * raidPtr->Layout.sectorsPerStripeUnit;
209 1.3 oster *diskSector += sparing_region_id * (raidPtr->numCol - 1) * raidPtr->Layout.sectorsPerStripeUnit;
210 1.3 oster *diskSector += mirror_su_offset_into_disk * raidPtr->Layout.sectorsPerStripeUnit;
211 1.3 oster *diskSector += (raidSector % raidPtr->Layout.sectorsPerStripeUnit);
212 1.3 oster } else {
213 1.3 oster /* remap parity to spare space ... */
214 1.3 oster *diskSector = sparing_region_id * (raidPtr->numCol + 1) * raidPtr->Layout.sectorsPerStripeUnit;
215 1.3 oster *diskSector += (raidPtr->numCol) * raidPtr->Layout.sectorsPerStripeUnit;
216 1.3 oster *diskSector += (raidSector % raidPtr->Layout.sectorsPerStripeUnit);
217 1.3 oster *col = index_within_region / (raidPtr->numCol - 1);
218 1.3 oster *col = (*col + 1) % raidPtr->numCol;
219 1.3 oster if (*col == col_before_remap)
220 1.3 oster *col = (*col + 1) % raidPtr->numCol;
221 1.3 oster }
222 1.1 oster }
223 1.1 oster
224 1.3 oster void
225 1.3 oster rf_IdentifyStripeInterDecluster(
226 1.3 oster RF_Raid_t * raidPtr,
227 1.3 oster RF_RaidAddr_t addr,
228 1.3 oster RF_RowCol_t ** diskids,
229 1.3 oster RF_RowCol_t * outRow)
230 1.1 oster {
231 1.3 oster RF_InterdeclusterConfigInfo_t *info = (RF_InterdeclusterConfigInfo_t *) raidPtr->Layout.layoutSpecificInfo;
232 1.3 oster RF_StripeNum_t SUID;
233 1.1 oster
234 1.3 oster SUID = addr / raidPtr->Layout.sectorsPerStripeUnit;
235 1.3 oster SUID = SUID % info->stripeUnitsPerSparingRegion;
236 1.1 oster
237 1.3 oster *outRow = 0;
238 1.3 oster *diskids = info->stripeIdentifier[SUID];
239 1.1 oster }
240 1.1 oster
241 1.3 oster void
242 1.3 oster rf_MapSIDToPSIDInterDecluster(
243 1.3 oster RF_RaidLayout_t * layoutPtr,
244 1.3 oster RF_StripeNum_t stripeID,
245 1.3 oster RF_StripeNum_t * psID,
246 1.3 oster RF_ReconUnitNum_t * which_ru)
247 1.1 oster {
248 1.3 oster *which_ru = 0;
249 1.3 oster *psID = stripeID;
250 1.1 oster }
251 1.1 oster /******************************************************************************
252 1.1 oster * select a graph to perform a single-stripe access
253 1.1 oster *
254 1.1 oster * Parameters: raidPtr - description of the physical array
255 1.1 oster * type - type of operation (read or write) requested
256 1.1 oster * asmap - logical & physical addresses for this access
257 1.1 oster * createFunc - name of function to use to create the graph
258 1.1 oster *****************************************************************************/
259 1.1 oster
260 1.3 oster void
261 1.3 oster rf_RAIDIDagSelect(
262 1.3 oster RF_Raid_t * raidPtr,
263 1.3 oster RF_IoType_t type,
264 1.3 oster RF_AccessStripeMap_t * asmap,
265 1.3 oster RF_VoidFuncPtr * createFunc)
266 1.1 oster {
267 1.3 oster RF_ASSERT(RF_IO_IS_R_OR_W(type));
268 1.1 oster
269 1.3 oster if (asmap->numDataFailed + asmap->numParityFailed > 1) {
270 1.3 oster RF_ERRORMSG("Multiple disks failed in a single group! Aborting I/O operation.\n");
271 1.3 oster *createFunc = NULL;
272 1.3 oster return;
273 1.3 oster }
274 1.3 oster *createFunc = (type == RF_IO_TYPE_READ) ? (RF_VoidFuncPtr) rf_CreateFaultFreeReadDAG : (RF_VoidFuncPtr) rf_CreateRaidOneWriteDAG;
275 1.3 oster if (type == RF_IO_TYPE_READ) {
276 1.3 oster if (asmap->numDataFailed == 0)
277 1.3 oster *createFunc = (RF_VoidFuncPtr) rf_CreateMirrorPartitionReadDAG;
278 1.3 oster else
279 1.3 oster *createFunc = (RF_VoidFuncPtr) rf_CreateRaidOneDegradedReadDAG;
280 1.3 oster } else
281 1.3 oster *createFunc = (RF_VoidFuncPtr) rf_CreateRaidOneWriteDAG;
282 1.1 oster }
283 1.5 oster #endif /* RF_INCLUDE_INTERDECLUSTER > 0 */
284