rf_decluster.c revision 1.6 1 1.6 oster /* $NetBSD: rf_decluster.c,v 1.6 2001/01/26 04:40:03 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 /*----------------------------------------------------------------------
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 1.1 oster
50 1.6 oster #include "rf_archs.h"
51 1.1 oster #include "rf_types.h"
52 1.1 oster #include "rf_raid.h"
53 1.1 oster #include "rf_raidframe.h"
54 1.1 oster #include "rf_configure.h"
55 1.1 oster #include "rf_decluster.h"
56 1.1 oster #include "rf_debugMem.h"
57 1.1 oster #include "rf_utils.h"
58 1.1 oster #include "rf_alloclist.h"
59 1.1 oster #include "rf_general.h"
60 1.1 oster #include "rf_shutdown.h"
61 1.1 oster
62 1.6 oster
63 1.3 oster extern int rf_copyback_in_progress; /* debug only */
64 1.1 oster
65 1.1 oster /* found in rf_kintf.c */
66 1.3 oster int rf_GetSpareTableFromDaemon(RF_SparetWait_t * req);
67 1.1 oster
68 1.6 oster #if (RF_INCLUDE_PARITY_DECLUSTERING > 0) || (RF_INCLUDE_PARITY_DECLUSTERING_PQ > 0)
69 1.6 oster
70 1.1 oster /* configuration code */
71 1.1 oster
72 1.3 oster int
73 1.3 oster rf_ConfigureDeclustered(
74 1.3 oster RF_ShutdownList_t ** listp,
75 1.3 oster RF_Raid_t * raidPtr,
76 1.3 oster RF_Config_t * cfgPtr)
77 1.3 oster {
78 1.3 oster RF_RaidLayout_t *layoutPtr = &(raidPtr->Layout);
79 1.3 oster int b, v, k, r, lambda; /* block design params */
80 1.3 oster int i, j;
81 1.3 oster RF_RowCol_t *first_avail_slot;
82 1.3 oster RF_StripeCount_t complete_FT_count, numCompleteFullTablesPerDisk;
83 1.3 oster RF_DeclusteredConfigInfo_t *info;
84 1.3 oster RF_StripeCount_t PUsPerDisk, spareRegionDepthInPUs, numCompleteSpareRegionsPerDisk,
85 1.3 oster extraPUsPerDisk;
86 1.3 oster RF_StripeCount_t totSparePUsPerDisk;
87 1.3 oster RF_SectorNum_t diskOffsetOfLastFullTableInSUs;
88 1.3 oster RF_SectorCount_t SpareSpaceInSUs;
89 1.3 oster char *cfgBuf = (char *) (cfgPtr->layoutSpecific);
90 1.3 oster RF_StripeNum_t l, SUID;
91 1.3 oster
92 1.3 oster SUID = l = 0;
93 1.3 oster numCompleteSpareRegionsPerDisk = 0;
94 1.3 oster
95 1.3 oster /* 1. create layout specific structure */
96 1.3 oster RF_MallocAndAdd(info, sizeof(RF_DeclusteredConfigInfo_t), (RF_DeclusteredConfigInfo_t *), raidPtr->cleanupList);
97 1.3 oster if (info == NULL)
98 1.3 oster return (ENOMEM);
99 1.3 oster layoutPtr->layoutSpecificInfo = (void *) info;
100 1.3 oster info->SpareTable = NULL;
101 1.3 oster
102 1.3 oster /* 2. extract parameters from the config structure */
103 1.3 oster if (layoutPtr->map->flags & RF_DISTRIBUTE_SPARE) {
104 1.3 oster (void) bcopy(cfgBuf, info->sparemap_fname, RF_SPAREMAP_NAME_LEN);
105 1.3 oster }
106 1.3 oster cfgBuf += RF_SPAREMAP_NAME_LEN;
107 1.3 oster
108 1.3 oster b = *((int *) cfgBuf);
109 1.3 oster cfgBuf += sizeof(int);
110 1.3 oster v = *((int *) cfgBuf);
111 1.3 oster cfgBuf += sizeof(int);
112 1.3 oster k = *((int *) cfgBuf);
113 1.3 oster cfgBuf += sizeof(int);
114 1.3 oster r = *((int *) cfgBuf);
115 1.3 oster cfgBuf += sizeof(int);
116 1.3 oster lambda = *((int *) cfgBuf);
117 1.3 oster cfgBuf += sizeof(int);
118 1.3 oster raidPtr->noRotate = *((int *) cfgBuf);
119 1.3 oster cfgBuf += sizeof(int);
120 1.3 oster
121 1.3 oster /* the sparemaps are generated assuming that parity is rotated, so we
122 1.3 oster * issue a warning if both distributed sparing and no-rotate are on at
123 1.3 oster * the same time */
124 1.3 oster if ((layoutPtr->map->flags & RF_DISTRIBUTE_SPARE) && raidPtr->noRotate) {
125 1.3 oster RF_ERRORMSG("Warning: distributed sparing specified without parity rotation.\n");
126 1.3 oster }
127 1.3 oster if (raidPtr->numCol != v) {
128 1.3 oster RF_ERRORMSG2("RAID: config error: table element count (%d) not equal to no. of cols (%d)\n", v, raidPtr->numCol);
129 1.3 oster return (EINVAL);
130 1.3 oster }
131 1.3 oster /* 3. set up the values used in the mapping code */
132 1.3 oster info->BlocksPerTable = b;
133 1.3 oster info->Lambda = lambda;
134 1.3 oster info->NumParityReps = info->groupSize = k;
135 1.3 oster info->SUsPerTable = b * (k - 1) * layoutPtr->SUsPerPU; /* b blks, k-1 SUs each */
136 1.3 oster info->SUsPerFullTable = k * info->SUsPerTable; /* rot k times */
137 1.3 oster info->PUsPerBlock = k - 1;
138 1.3 oster info->SUsPerBlock = info->PUsPerBlock * layoutPtr->SUsPerPU;
139 1.3 oster info->TableDepthInPUs = (b * k) / v;
140 1.3 oster info->FullTableDepthInPUs = info->TableDepthInPUs * k; /* k repetitions */
141 1.3 oster
142 1.3 oster /* used only in distributed sparing case */
143 1.3 oster info->FullTablesPerSpareRegion = (v - 1) / rf_gcd(r, v - 1); /* (v-1)/gcd fulltables */
144 1.3 oster info->TablesPerSpareRegion = k * info->FullTablesPerSpareRegion;
145 1.3 oster info->SpareSpaceDepthPerRegionInSUs = (r * info->TablesPerSpareRegion / (v - 1)) * layoutPtr->SUsPerPU;
146 1.3 oster
147 1.3 oster /* check to make sure the block design is sufficiently small */
148 1.3 oster if ((raidPtr->Layout.map->flags & RF_DISTRIBUTE_SPARE)) {
149 1.3 oster if (info->FullTableDepthInPUs * layoutPtr->SUsPerPU + info->SpareSpaceDepthPerRegionInSUs > layoutPtr->stripeUnitsPerDisk) {
150 1.3 oster RF_ERRORMSG3("RAID: config error: Full Table depth (%d) + Spare Space (%d) larger than disk size (%d) (BD too big)\n",
151 1.3 oster (int) info->FullTableDepthInPUs,
152 1.3 oster (int) info->SpareSpaceDepthPerRegionInSUs,
153 1.3 oster (int) layoutPtr->stripeUnitsPerDisk);
154 1.3 oster return (EINVAL);
155 1.3 oster }
156 1.3 oster } else {
157 1.3 oster if (info->TableDepthInPUs * layoutPtr->SUsPerPU > layoutPtr->stripeUnitsPerDisk) {
158 1.3 oster RF_ERRORMSG2("RAID: config error: Table depth (%d) larger than disk size (%d) (BD too big)\n",
159 1.3 oster (int) (info->TableDepthInPUs * layoutPtr->SUsPerPU), \
160 1.3 oster (int) layoutPtr->stripeUnitsPerDisk);
161 1.3 oster return (EINVAL);
162 1.3 oster }
163 1.3 oster }
164 1.3 oster
165 1.3 oster
166 1.3 oster /* compute the size of each disk, and the number of tables in the last
167 1.3 oster * fulltable (which need not be complete) */
168 1.3 oster if (raidPtr->Layout.map->flags & RF_DISTRIBUTE_SPARE) {
169 1.3 oster
170 1.3 oster PUsPerDisk = layoutPtr->stripeUnitsPerDisk / layoutPtr->SUsPerPU;
171 1.3 oster spareRegionDepthInPUs = (info->TablesPerSpareRegion * info->TableDepthInPUs +
172 1.3 oster (info->TablesPerSpareRegion * info->TableDepthInPUs) / (v - 1));
173 1.3 oster info->SpareRegionDepthInSUs = spareRegionDepthInPUs * layoutPtr->SUsPerPU;
174 1.3 oster
175 1.3 oster numCompleteSpareRegionsPerDisk = PUsPerDisk / spareRegionDepthInPUs;
176 1.3 oster info->NumCompleteSRs = numCompleteSpareRegionsPerDisk;
177 1.3 oster extraPUsPerDisk = PUsPerDisk % spareRegionDepthInPUs;
178 1.3 oster
179 1.3 oster /* assume conservatively that we need the full amount of spare
180 1.3 oster * space in one region in order to provide spares for the
181 1.3 oster * partial spare region at the end of the array. We set "i"
182 1.3 oster * to the number of tables in the partial spare region. This
183 1.3 oster * may actually include some fulltables. */
184 1.3 oster extraPUsPerDisk -= (info->SpareSpaceDepthPerRegionInSUs / layoutPtr->SUsPerPU);
185 1.3 oster if (extraPUsPerDisk <= 0)
186 1.3 oster i = 0;
187 1.3 oster else
188 1.3 oster i = extraPUsPerDisk / info->TableDepthInPUs;
189 1.3 oster
190 1.3 oster complete_FT_count = raidPtr->numRow * (numCompleteSpareRegionsPerDisk * (info->TablesPerSpareRegion / k) + i / k);
191 1.3 oster info->FullTableLimitSUID = complete_FT_count * info->SUsPerFullTable;
192 1.3 oster info->ExtraTablesPerDisk = i % k;
193 1.3 oster
194 1.3 oster /* note that in the last spare region, the spare space is
195 1.3 oster * complete even though data/parity space is not */
196 1.3 oster totSparePUsPerDisk = (numCompleteSpareRegionsPerDisk + 1) * (info->SpareSpaceDepthPerRegionInSUs / layoutPtr->SUsPerPU);
197 1.3 oster info->TotSparePUsPerDisk = totSparePUsPerDisk;
198 1.3 oster
199 1.3 oster layoutPtr->stripeUnitsPerDisk =
200 1.3 oster ((complete_FT_count / raidPtr->numRow) * info->FullTableDepthInPUs + /* data & parity space */
201 1.3 oster info->ExtraTablesPerDisk * info->TableDepthInPUs +
202 1.3 oster totSparePUsPerDisk /* spare space */
203 1.3 oster ) * layoutPtr->SUsPerPU;
204 1.3 oster layoutPtr->dataStripeUnitsPerDisk =
205 1.3 oster (complete_FT_count * info->FullTableDepthInPUs + info->ExtraTablesPerDisk * info->TableDepthInPUs)
206 1.3 oster * layoutPtr->SUsPerPU * (k - 1) / k;
207 1.3 oster
208 1.3 oster } else {
209 1.3 oster /* non-dist spare case: force each disk to contain an
210 1.3 oster * integral number of tables */
211 1.3 oster layoutPtr->stripeUnitsPerDisk /= (info->TableDepthInPUs * layoutPtr->SUsPerPU);
212 1.3 oster layoutPtr->stripeUnitsPerDisk *= (info->TableDepthInPUs * layoutPtr->SUsPerPU);
213 1.3 oster
214 1.3 oster /* compute the number of tables in the last fulltable, which
215 1.3 oster * need not be complete */
216 1.3 oster complete_FT_count =
217 1.3 oster ((layoutPtr->stripeUnitsPerDisk / layoutPtr->SUsPerPU) / info->FullTableDepthInPUs) * raidPtr->numRow;
218 1.3 oster
219 1.3 oster info->FullTableLimitSUID = complete_FT_count * info->SUsPerFullTable;
220 1.3 oster info->ExtraTablesPerDisk =
221 1.3 oster ((layoutPtr->stripeUnitsPerDisk / layoutPtr->SUsPerPU) / info->TableDepthInPUs) % k;
222 1.3 oster }
223 1.3 oster
224 1.3 oster raidPtr->sectorsPerDisk = layoutPtr->stripeUnitsPerDisk * layoutPtr->sectorsPerStripeUnit;
225 1.3 oster
226 1.3 oster /* find the disk offset of the stripe unit where the last fulltable
227 1.3 oster * starts */
228 1.3 oster numCompleteFullTablesPerDisk = complete_FT_count / raidPtr->numRow;
229 1.3 oster diskOffsetOfLastFullTableInSUs = numCompleteFullTablesPerDisk * info->FullTableDepthInPUs * layoutPtr->SUsPerPU;
230 1.3 oster if (raidPtr->Layout.map->flags & RF_DISTRIBUTE_SPARE) {
231 1.3 oster SpareSpaceInSUs = numCompleteSpareRegionsPerDisk * info->SpareSpaceDepthPerRegionInSUs;
232 1.3 oster diskOffsetOfLastFullTableInSUs += SpareSpaceInSUs;
233 1.3 oster info->DiskOffsetOfLastSpareSpaceChunkInSUs =
234 1.3 oster diskOffsetOfLastFullTableInSUs + info->ExtraTablesPerDisk * info->TableDepthInPUs * layoutPtr->SUsPerPU;
235 1.3 oster }
236 1.3 oster info->DiskOffsetOfLastFullTableInSUs = diskOffsetOfLastFullTableInSUs;
237 1.3 oster info->numCompleteFullTablesPerDisk = numCompleteFullTablesPerDisk;
238 1.3 oster
239 1.3 oster /* 4. create and initialize the lookup tables */
240 1.3 oster info->LayoutTable = rf_make_2d_array(b, k, raidPtr->cleanupList);
241 1.3 oster if (info->LayoutTable == NULL)
242 1.3 oster return (ENOMEM);
243 1.3 oster info->OffsetTable = rf_make_2d_array(b, k, raidPtr->cleanupList);
244 1.3 oster if (info->OffsetTable == NULL)
245 1.3 oster return (ENOMEM);
246 1.3 oster info->BlockTable = rf_make_2d_array(info->TableDepthInPUs * layoutPtr->SUsPerPU, raidPtr->numCol, raidPtr->cleanupList);
247 1.3 oster if (info->BlockTable == NULL)
248 1.3 oster return (ENOMEM);
249 1.3 oster
250 1.3 oster first_avail_slot = rf_make_1d_array(v, NULL);
251 1.3 oster if (first_avail_slot == NULL)
252 1.3 oster return (ENOMEM);
253 1.3 oster
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->LayoutTable[i][j] = *cfgBuf++;
257 1.3 oster
258 1.3 oster /* initialize offset table */
259 1.3 oster for (i = 0; i < b; i++)
260 1.3 oster for (j = 0; j < k; j++) {
261 1.3 oster info->OffsetTable[i][j] = first_avail_slot[info->LayoutTable[i][j]];
262 1.3 oster first_avail_slot[info->LayoutTable[i][j]]++;
263 1.3 oster }
264 1.3 oster
265 1.3 oster /* initialize block table */
266 1.3 oster for (SUID = l = 0; l < layoutPtr->SUsPerPU; l++) {
267 1.3 oster for (i = 0; i < b; i++) {
268 1.3 oster for (j = 0; j < k; j++) {
269 1.3 oster info->BlockTable[(info->OffsetTable[i][j] * layoutPtr->SUsPerPU) + l]
270 1.3 oster [info->LayoutTable[i][j]] = SUID;
271 1.3 oster }
272 1.3 oster SUID++;
273 1.3 oster }
274 1.3 oster }
275 1.1 oster
276 1.3 oster rf_free_1d_array(first_avail_slot, v);
277 1.3 oster
278 1.3 oster /* 5. set up the remaining redundant-but-useful parameters */
279 1.3 oster
280 1.3 oster raidPtr->totalSectors = (k * complete_FT_count + raidPtr->numRow * info->ExtraTablesPerDisk) *
281 1.3 oster info->SUsPerTable * layoutPtr->sectorsPerStripeUnit;
282 1.3 oster layoutPtr->numStripe = (raidPtr->totalSectors / layoutPtr->sectorsPerStripeUnit) / (k - 1);
283 1.3 oster
284 1.3 oster /* strange evaluation order below to try and minimize overflow
285 1.3 oster * problems */
286 1.3 oster
287 1.3 oster layoutPtr->dataSectorsPerStripe = (k - 1) * layoutPtr->sectorsPerStripeUnit;
288 1.3 oster layoutPtr->bytesPerStripeUnit = layoutPtr->sectorsPerStripeUnit << raidPtr->logBytesPerSector;
289 1.3 oster layoutPtr->numDataCol = k - 1;
290 1.3 oster layoutPtr->numParityCol = 1;
291 1.3 oster
292 1.3 oster return (0);
293 1.1 oster }
294 1.1 oster /* declustering with distributed sparing */
295 1.1 oster static void rf_ShutdownDeclusteredDS(RF_ThreadArg_t);
296 1.3 oster static void
297 1.3 oster rf_ShutdownDeclusteredDS(arg)
298 1.3 oster RF_ThreadArg_t arg;
299 1.3 oster {
300 1.3 oster RF_DeclusteredConfigInfo_t *info;
301 1.3 oster RF_Raid_t *raidPtr;
302 1.3 oster
303 1.3 oster raidPtr = (RF_Raid_t *) arg;
304 1.3 oster info = (RF_DeclusteredConfigInfo_t *) raidPtr->Layout.layoutSpecificInfo;
305 1.3 oster if (info->SpareTable)
306 1.3 oster rf_FreeSpareTable(raidPtr);
307 1.3 oster }
308 1.3 oster
309 1.3 oster int
310 1.3 oster rf_ConfigureDeclusteredDS(
311 1.3 oster RF_ShutdownList_t ** listp,
312 1.3 oster RF_Raid_t * raidPtr,
313 1.3 oster RF_Config_t * cfgPtr)
314 1.3 oster {
315 1.3 oster int rc;
316 1.3 oster
317 1.3 oster rc = rf_ConfigureDeclustered(listp, raidPtr, cfgPtr);
318 1.3 oster if (rc)
319 1.3 oster return (rc);
320 1.3 oster rc = rf_ShutdownCreate(listp, rf_ShutdownDeclusteredDS, raidPtr);
321 1.3 oster if (rc) {
322 1.3 oster RF_ERRORMSG1("Got %d adding shutdown event for DeclusteredDS\n", rc);
323 1.3 oster rf_ShutdownDeclusteredDS(raidPtr);
324 1.3 oster return (rc);
325 1.3 oster }
326 1.3 oster return (0);
327 1.3 oster }
328 1.3 oster
329 1.3 oster void
330 1.3 oster rf_MapSectorDeclustered(raidPtr, raidSector, row, col, diskSector, remap)
331 1.3 oster RF_Raid_t *raidPtr;
332 1.3 oster RF_RaidAddr_t raidSector;
333 1.3 oster RF_RowCol_t *row;
334 1.3 oster RF_RowCol_t *col;
335 1.3 oster RF_SectorNum_t *diskSector;
336 1.3 oster int remap;
337 1.3 oster {
338 1.3 oster RF_RaidLayout_t *layoutPtr = &(raidPtr->Layout);
339 1.3 oster RF_DeclusteredConfigInfo_t *info = (RF_DeclusteredConfigInfo_t *) layoutPtr->layoutSpecificInfo;
340 1.3 oster RF_StripeNum_t SUID = raidSector / layoutPtr->sectorsPerStripeUnit;
341 1.3 oster RF_StripeNum_t FullTableID, FullTableOffset, TableID, TableOffset;
342 1.3 oster RF_StripeNum_t BlockID, BlockOffset, RepIndex;
343 1.3 oster RF_StripeCount_t sus_per_fulltable = info->SUsPerFullTable;
344 1.3 oster RF_StripeCount_t fulltable_depth = info->FullTableDepthInPUs * layoutPtr->SUsPerPU;
345 1.3 oster RF_StripeNum_t base_suid = 0, outSU, SpareRegion = 0, SpareSpace = 0;
346 1.3 oster
347 1.3 oster rf_decluster_adjust_params(layoutPtr, &SUID, &sus_per_fulltable, &fulltable_depth, &base_suid);
348 1.3 oster
349 1.3 oster FullTableID = SUID / sus_per_fulltable; /* fulltable ID within array
350 1.3 oster * (across rows) */
351 1.3 oster if (raidPtr->numRow == 1)
352 1.3 oster *row = 0; /* avoid a mod and a div in the common case */
353 1.3 oster else {
354 1.3 oster *row = FullTableID % raidPtr->numRow;
355 1.3 oster FullTableID /= raidPtr->numRow; /* convert to fulltable ID on
356 1.3 oster * this disk */
357 1.3 oster }
358 1.3 oster if (raidPtr->Layout.map->flags & RF_DISTRIBUTE_SPARE) {
359 1.3 oster SpareRegion = FullTableID / info->FullTablesPerSpareRegion;
360 1.3 oster SpareSpace = SpareRegion * info->SpareSpaceDepthPerRegionInSUs;
361 1.3 oster }
362 1.3 oster FullTableOffset = SUID % sus_per_fulltable;
363 1.3 oster TableID = FullTableOffset / info->SUsPerTable;
364 1.3 oster TableOffset = FullTableOffset - TableID * info->SUsPerTable;
365 1.3 oster BlockID = TableOffset / info->PUsPerBlock;
366 1.3 oster BlockOffset = TableOffset - BlockID * info->PUsPerBlock;
367 1.3 oster BlockID %= info->BlocksPerTable;
368 1.3 oster RepIndex = info->PUsPerBlock - TableID;
369 1.3 oster if (!raidPtr->noRotate)
370 1.3 oster BlockOffset += ((BlockOffset >= RepIndex) ? 1 : 0);
371 1.3 oster *col = info->LayoutTable[BlockID][BlockOffset];
372 1.3 oster
373 1.3 oster /* remap to distributed spare space if indicated */
374 1.3 oster if (remap) {
375 1.3 oster RF_ASSERT(raidPtr->Disks[*row][*col].status == rf_ds_reconstructing || raidPtr->Disks[*row][*col].status == rf_ds_dist_spared ||
376 1.3 oster (rf_copyback_in_progress && raidPtr->Disks[*row][*col].status == rf_ds_optimal));
377 1.3 oster rf_remap_to_spare_space(layoutPtr, info, *row, FullTableID, TableID, BlockID, (base_suid) ? 1 : 0, SpareRegion, col, &outSU);
378 1.3 oster } else {
379 1.3 oster
380 1.3 oster outSU = base_suid;
381 1.3 oster outSU += FullTableID * fulltable_depth; /* offs to strt of FT */
382 1.3 oster outSU += SpareSpace; /* skip rsvd spare space */
383 1.3 oster outSU += TableID * info->TableDepthInPUs * layoutPtr->SUsPerPU; /* offs to strt of tble */
384 1.3 oster outSU += info->OffsetTable[BlockID][BlockOffset] * layoutPtr->SUsPerPU; /* offs to the PU */
385 1.3 oster }
386 1.3 oster outSU += TableOffset / (info->BlocksPerTable * info->PUsPerBlock); /* offs to the SU within
387 1.3 oster * a PU */
388 1.1 oster
389 1.3 oster /* convert SUs to sectors, and, if not aligned to SU boundary, add in
390 1.3 oster * offset to sector. */
391 1.3 oster *diskSector = outSU * layoutPtr->sectorsPerStripeUnit + (raidSector % layoutPtr->sectorsPerStripeUnit);
392 1.1 oster
393 1.3 oster RF_ASSERT(*col != -1);
394 1.1 oster }
395 1.1 oster
396 1.1 oster
397 1.1 oster /* prototyping this inexplicably causes the compile of the layout table (rf_layout.c) to fail */
398 1.3 oster void
399 1.3 oster rf_MapParityDeclustered(
400 1.3 oster RF_Raid_t * raidPtr,
401 1.3 oster RF_RaidAddr_t raidSector,
402 1.3 oster RF_RowCol_t * row,
403 1.3 oster RF_RowCol_t * col,
404 1.3 oster RF_SectorNum_t * diskSector,
405 1.3 oster int remap)
406 1.3 oster {
407 1.3 oster RF_RaidLayout_t *layoutPtr = &(raidPtr->Layout);
408 1.3 oster RF_DeclusteredConfigInfo_t *info = (RF_DeclusteredConfigInfo_t *) layoutPtr->layoutSpecificInfo;
409 1.3 oster RF_StripeNum_t SUID = raidSector / layoutPtr->sectorsPerStripeUnit;
410 1.3 oster RF_StripeNum_t FullTableID, FullTableOffset, TableID, TableOffset;
411 1.3 oster RF_StripeNum_t BlockID, BlockOffset, RepIndex;
412 1.3 oster RF_StripeCount_t sus_per_fulltable = info->SUsPerFullTable;
413 1.3 oster RF_StripeCount_t fulltable_depth = info->FullTableDepthInPUs * layoutPtr->SUsPerPU;
414 1.3 oster RF_StripeNum_t base_suid = 0, outSU, SpareRegion = 0, SpareSpace = 0;
415 1.3 oster
416 1.3 oster rf_decluster_adjust_params(layoutPtr, &SUID, &sus_per_fulltable, &fulltable_depth, &base_suid);
417 1.3 oster
418 1.3 oster /* compute row & (possibly) spare space exactly as before */
419 1.3 oster FullTableID = SUID / sus_per_fulltable;
420 1.3 oster if (raidPtr->numRow == 1)
421 1.3 oster *row = 0; /* avoid a mod and a div in the common case */
422 1.3 oster else {
423 1.3 oster *row = FullTableID % raidPtr->numRow;
424 1.3 oster FullTableID /= raidPtr->numRow; /* convert to fulltable ID on
425 1.3 oster * this disk */
426 1.3 oster }
427 1.3 oster if ((raidPtr->Layout.map->flags & RF_DISTRIBUTE_SPARE)) {
428 1.3 oster SpareRegion = FullTableID / info->FullTablesPerSpareRegion;
429 1.3 oster SpareSpace = SpareRegion * info->SpareSpaceDepthPerRegionInSUs;
430 1.3 oster }
431 1.3 oster /* compute BlockID and RepIndex exactly as before */
432 1.3 oster FullTableOffset = SUID % sus_per_fulltable;
433 1.3 oster TableID = FullTableOffset / info->SUsPerTable;
434 1.3 oster TableOffset = FullTableOffset - TableID * info->SUsPerTable;
435 1.3 oster /* TableOffset = FullTableOffset % info->SUsPerTable; */
436 1.3 oster /* BlockID = (TableOffset / info->PUsPerBlock) %
437 1.3 oster * info->BlocksPerTable; */
438 1.3 oster BlockID = TableOffset / info->PUsPerBlock;
439 1.3 oster /* BlockOffset = TableOffset % info->PUsPerBlock; */
440 1.3 oster BlockOffset = TableOffset - BlockID * info->PUsPerBlock;
441 1.3 oster BlockID %= info->BlocksPerTable;
442 1.3 oster
443 1.3 oster /* the parity block is in the position indicated by RepIndex */
444 1.3 oster RepIndex = (raidPtr->noRotate) ? info->PUsPerBlock : info->PUsPerBlock - TableID;
445 1.3 oster *col = info->LayoutTable[BlockID][RepIndex];
446 1.3 oster
447 1.3 oster if (remap) {
448 1.3 oster RF_ASSERT(raidPtr->Disks[*row][*col].status == rf_ds_reconstructing || raidPtr->Disks[*row][*col].status == rf_ds_dist_spared ||
449 1.3 oster (rf_copyback_in_progress && raidPtr->Disks[*row][*col].status == rf_ds_optimal));
450 1.3 oster rf_remap_to_spare_space(layoutPtr, info, *row, FullTableID, TableID, BlockID, (base_suid) ? 1 : 0, SpareRegion, col, &outSU);
451 1.3 oster } else {
452 1.3 oster
453 1.3 oster /* compute sector as before, except use RepIndex instead of
454 1.3 oster * BlockOffset */
455 1.3 oster outSU = base_suid;
456 1.3 oster outSU += FullTableID * fulltable_depth;
457 1.3 oster outSU += SpareSpace; /* skip rsvd spare space */
458 1.3 oster outSU += TableID * info->TableDepthInPUs * layoutPtr->SUsPerPU;
459 1.3 oster outSU += info->OffsetTable[BlockID][RepIndex] * layoutPtr->SUsPerPU;
460 1.3 oster }
461 1.3 oster
462 1.3 oster outSU += TableOffset / (info->BlocksPerTable * info->PUsPerBlock);
463 1.3 oster *diskSector = outSU * layoutPtr->sectorsPerStripeUnit + (raidSector % layoutPtr->sectorsPerStripeUnit);
464 1.3 oster
465 1.3 oster RF_ASSERT(*col != -1);
466 1.1 oster }
467 1.1 oster /* returns an array of ints identifying the disks that comprise the stripe containing the indicated address.
468 1.1 oster * the caller must _never_ attempt to modify this array.
469 1.1 oster */
470 1.3 oster void
471 1.3 oster rf_IdentifyStripeDeclustered(
472 1.3 oster RF_Raid_t * raidPtr,
473 1.3 oster RF_RaidAddr_t addr,
474 1.3 oster RF_RowCol_t ** diskids,
475 1.3 oster RF_RowCol_t * outRow)
476 1.3 oster {
477 1.3 oster RF_RaidLayout_t *layoutPtr = &(raidPtr->Layout);
478 1.3 oster RF_DeclusteredConfigInfo_t *info = (RF_DeclusteredConfigInfo_t *) layoutPtr->layoutSpecificInfo;
479 1.3 oster RF_StripeCount_t sus_per_fulltable = info->SUsPerFullTable;
480 1.3 oster RF_StripeCount_t fulltable_depth = info->FullTableDepthInPUs * layoutPtr->SUsPerPU;
481 1.3 oster RF_StripeNum_t base_suid = 0;
482 1.3 oster RF_StripeNum_t SUID = rf_RaidAddressToStripeUnitID(layoutPtr, addr);
483 1.3 oster RF_StripeNum_t stripeID, FullTableID;
484 1.3 oster int tableOffset;
485 1.3 oster
486 1.3 oster rf_decluster_adjust_params(layoutPtr, &SUID, &sus_per_fulltable, &fulltable_depth, &base_suid);
487 1.3 oster FullTableID = SUID / sus_per_fulltable; /* fulltable ID within array
488 1.3 oster * (across rows) */
489 1.3 oster *outRow = FullTableID % raidPtr->numRow;
490 1.3 oster stripeID = rf_StripeUnitIDToStripeID(layoutPtr, SUID); /* find stripe offset
491 1.3 oster * into array */
492 1.3 oster tableOffset = (stripeID % info->BlocksPerTable); /* find offset into
493 1.3 oster * block design table */
494 1.3 oster *diskids = info->LayoutTable[tableOffset];
495 1.1 oster }
496 1.1 oster /* This returns the default head-separation limit, which is measured
497 1.1 oster * in "required units for reconstruction". Each time a disk fetches
498 1.1 oster * a unit, it bumps a counter. The head-sep code prohibits any disk
499 1.3 oster * from getting more than headSepLimit counter values ahead of any
500 1.1 oster * other.
501 1.1 oster *
502 1.1 oster * We assume here that the number of floating recon buffers is already
503 1.1 oster * set. There are r stripes to be reconstructed in each table, and so
504 1.1 oster * if we have a total of B buffers, we can have at most B/r tables
505 1.1 oster * under recon at any one time. In each table, lambda units are required
506 1.1 oster * from each disk, so given B buffers, the head sep limit has to be
507 1.1 oster * (lambda*B)/r units. We subtract one to avoid weird boundary cases.
508 1.3 oster *
509 1.1 oster * for example, suppose were given 50 buffers, r=19, and lambda=4 as in
510 1.1 oster * the 20.5 design. There are 19 stripes/table to be reconstructed, so
511 1.1 oster * we can have 50/19 tables concurrently under reconstruction, which means
512 1.1 oster * we can allow the fastest disk to get 50/19 tables ahead of the slower
513 1.1 oster * disk. There are lambda "required units" for each disk, so the fastest
514 1.1 oster * disk can get 4*50/19 = 10 counter values ahead of the slowest.
515 1.1 oster *
516 1.1 oster * If numBufsToAccumulate is not 1, we need to limit the head sep further
517 1.1 oster * because multiple bufs will be required for each stripe under recon.
518 1.1 oster */
519 1.3 oster RF_HeadSepLimit_t
520 1.3 oster rf_GetDefaultHeadSepLimitDeclustered(
521 1.3 oster RF_Raid_t * raidPtr)
522 1.1 oster {
523 1.3 oster RF_DeclusteredConfigInfo_t *info = (RF_DeclusteredConfigInfo_t *) raidPtr->Layout.layoutSpecificInfo;
524 1.1 oster
525 1.3 oster return (info->Lambda * raidPtr->numFloatingReconBufs / info->TableDepthInPUs / rf_numBufsToAccumulate);
526 1.1 oster }
527 1.1 oster /* returns the default number of recon buffers to use. The value
528 1.1 oster * is somewhat arbitrary...it's intended to be large enough to allow
529 1.1 oster * for a reasonably large head-sep limit, but small enough that you
530 1.1 oster * don't use up all your system memory with buffers.
531 1.1 oster */
532 1.3 oster int
533 1.3 oster rf_GetDefaultNumFloatingReconBuffersDeclustered(RF_Raid_t * raidPtr)
534 1.1 oster {
535 1.3 oster return (100 * rf_numBufsToAccumulate);
536 1.1 oster }
537 1.1 oster /* sectors in the last fulltable of the array need to be handled
538 1.1 oster * specially since this fulltable can be incomplete. this function
539 1.1 oster * changes the values of certain params to handle this.
540 1.1 oster *
541 1.1 oster * the idea here is that MapSector et. al. figure out which disk the
542 1.1 oster * addressed unit lives on by computing the modulos of the unit number
543 1.1 oster * with the number of units per fulltable, table, etc. In the last
544 1.1 oster * fulltable, there are fewer units per fulltable, so we need to adjust
545 1.1 oster * the number of user data units per fulltable to reflect this.
546 1.1 oster *
547 1.1 oster * so, we (1) convert the fulltable size and depth parameters to
548 1.1 oster * the size of the partial fulltable at the end, (2) compute the
549 1.1 oster * disk sector offset where this fulltable starts, and (3) convert
550 1.1 oster * the users stripe unit number from an offset into the array to
551 1.1 oster * an offset into the last fulltable.
552 1.1 oster */
553 1.3 oster void
554 1.3 oster rf_decluster_adjust_params(
555 1.3 oster RF_RaidLayout_t * layoutPtr,
556 1.3 oster RF_StripeNum_t * SUID,
557 1.3 oster RF_StripeCount_t * sus_per_fulltable,
558 1.3 oster RF_StripeCount_t * fulltable_depth,
559 1.3 oster RF_StripeNum_t * base_suid)
560 1.1 oster {
561 1.3 oster RF_DeclusteredConfigInfo_t *info = (RF_DeclusteredConfigInfo_t *) layoutPtr->layoutSpecificInfo;
562 1.1 oster
563 1.3 oster if (*SUID >= info->FullTableLimitSUID) {
564 1.3 oster /* new full table size is size of last full table on disk */
565 1.3 oster *sus_per_fulltable = info->ExtraTablesPerDisk * info->SUsPerTable;
566 1.3 oster
567 1.3 oster /* new full table depth is corresponding depth */
568 1.3 oster *fulltable_depth = info->ExtraTablesPerDisk * info->TableDepthInPUs * layoutPtr->SUsPerPU;
569 1.3 oster
570 1.3 oster /* set up the new base offset */
571 1.3 oster *base_suid = info->DiskOffsetOfLastFullTableInSUs;
572 1.3 oster
573 1.3 oster /* convert users array address to an offset into the last
574 1.3 oster * fulltable */
575 1.3 oster *SUID -= info->FullTableLimitSUID;
576 1.3 oster }
577 1.1 oster }
578 1.1 oster /*
579 1.1 oster * map a stripe ID to a parity stripe ID.
580 1.1 oster * See comment above RaidAddressToParityStripeID in layout.c.
581 1.1 oster */
582 1.3 oster void
583 1.3 oster rf_MapSIDToPSIDDeclustered(
584 1.3 oster RF_RaidLayout_t * layoutPtr,
585 1.3 oster RF_StripeNum_t stripeID,
586 1.3 oster RF_StripeNum_t * psID,
587 1.3 oster RF_ReconUnitNum_t * which_ru)
588 1.3 oster {
589 1.3 oster RF_DeclusteredConfigInfo_t *info;
590 1.3 oster
591 1.3 oster info = (RF_DeclusteredConfigInfo_t *) layoutPtr->layoutSpecificInfo;
592 1.3 oster
593 1.3 oster *psID = (stripeID / (layoutPtr->SUsPerPU * info->BlocksPerTable))
594 1.3 oster * info->BlocksPerTable + (stripeID % info->BlocksPerTable);
595 1.3 oster *which_ru = (stripeID % (info->BlocksPerTable * layoutPtr->SUsPerPU))
596 1.3 oster / info->BlocksPerTable;
597 1.3 oster RF_ASSERT((*which_ru) < layoutPtr->SUsPerPU / layoutPtr->SUsPerRU);
598 1.1 oster }
599 1.1 oster /*
600 1.1 oster * Called from MapSector and MapParity to retarget an access at the spare unit.
601 1.1 oster * Modifies the "col" and "outSU" parameters only.
602 1.1 oster */
603 1.3 oster void
604 1.3 oster rf_remap_to_spare_space(
605 1.3 oster RF_RaidLayout_t * layoutPtr,
606 1.3 oster RF_DeclusteredConfigInfo_t * info,
607 1.3 oster RF_RowCol_t row,
608 1.3 oster RF_StripeNum_t FullTableID,
609 1.3 oster RF_StripeNum_t TableID,
610 1.3 oster RF_SectorNum_t BlockID,
611 1.3 oster RF_StripeNum_t base_suid,
612 1.3 oster RF_StripeNum_t SpareRegion,
613 1.3 oster RF_RowCol_t * outCol,
614 1.3 oster RF_StripeNum_t * outSU)
615 1.3 oster {
616 1.3 oster RF_StripeNum_t ftID, spareTableStartSU, TableInSpareRegion, lastSROffset,
617 1.3 oster which_ft;
618 1.3 oster
619 1.3 oster /*
620 1.3 oster * note that FullTableID and hence SpareRegion may have gotten
621 1.3 oster * tweaked by rf_decluster_adjust_params. We detect this by
622 1.3 oster * noticing that base_suid is not 0.
623 1.3 oster */
624 1.3 oster if (base_suid == 0) {
625 1.3 oster ftID = FullTableID;
626 1.3 oster } else {
627 1.3 oster /*
628 1.3 oster * There may be > 1.0 full tables in the last (i.e. partial)
629 1.3 oster * spare region. find out which of these we're in.
630 1.3 oster */
631 1.3 oster lastSROffset = info->NumCompleteSRs * info->SpareRegionDepthInSUs;
632 1.3 oster which_ft = (info->DiskOffsetOfLastFullTableInSUs - lastSROffset) / (info->FullTableDepthInPUs * layoutPtr->SUsPerPU);
633 1.3 oster
634 1.3 oster /* compute the actual full table ID */
635 1.3 oster ftID = info->DiskOffsetOfLastFullTableInSUs / (info->FullTableDepthInPUs * layoutPtr->SUsPerPU) + which_ft;
636 1.3 oster SpareRegion = info->NumCompleteSRs;
637 1.3 oster }
638 1.3 oster TableInSpareRegion = (ftID * info->NumParityReps + TableID) % info->TablesPerSpareRegion;
639 1.3 oster
640 1.3 oster *outCol = info->SpareTable[TableInSpareRegion][BlockID].spareDisk;
641 1.3 oster RF_ASSERT(*outCol != -1);
642 1.3 oster
643 1.3 oster spareTableStartSU = (SpareRegion == info->NumCompleteSRs) ?
644 1.1 oster info->DiskOffsetOfLastFullTableInSUs + info->ExtraTablesPerDisk * info->TableDepthInPUs * layoutPtr->SUsPerPU :
645 1.3 oster (SpareRegion + 1) * info->SpareRegionDepthInSUs - info->SpareSpaceDepthPerRegionInSUs;
646 1.3 oster *outSU = spareTableStartSU + info->SpareTable[TableInSpareRegion][BlockID].spareBlockOffsetInSUs;
647 1.3 oster if (*outSU >= layoutPtr->stripeUnitsPerDisk) {
648 1.3 oster printf("rf_remap_to_spare_space: invalid remapped disk SU offset %ld\n", (long) *outSU);
649 1.3 oster }
650 1.1 oster }
651 1.1 oster
652 1.6 oster #endif /* (RF_INCLUDE_PARITY_DECLUSTERING > 0) || (RF_INCLUDE_PARITY_DECLUSTERING_PQ > 0) */
653 1.6 oster
654 1.6 oster
655 1.3 oster int
656 1.3 oster rf_InstallSpareTable(
657 1.3 oster RF_Raid_t * raidPtr,
658 1.3 oster RF_RowCol_t frow,
659 1.3 oster RF_RowCol_t fcol)
660 1.3 oster {
661 1.3 oster RF_DeclusteredConfigInfo_t *info = (RF_DeclusteredConfigInfo_t *) raidPtr->Layout.layoutSpecificInfo;
662 1.3 oster RF_SparetWait_t *req;
663 1.3 oster int retcode;
664 1.3 oster
665 1.3 oster RF_Malloc(req, sizeof(*req), (RF_SparetWait_t *));
666 1.3 oster req->C = raidPtr->numCol;
667 1.3 oster req->G = raidPtr->Layout.numDataCol + raidPtr->Layout.numParityCol;
668 1.3 oster req->fcol = fcol;
669 1.3 oster req->SUsPerPU = raidPtr->Layout.SUsPerPU;
670 1.3 oster req->TablesPerSpareRegion = info->TablesPerSpareRegion;
671 1.3 oster req->BlocksPerTable = info->BlocksPerTable;
672 1.3 oster req->TableDepthInPUs = info->TableDepthInPUs;
673 1.3 oster req->SpareSpaceDepthPerRegionInSUs = info->SpareSpaceDepthPerRegionInSUs;
674 1.3 oster
675 1.3 oster retcode = rf_GetSpareTableFromDaemon(req);
676 1.3 oster RF_ASSERT(!retcode); /* XXX -- fix this to recover gracefully --
677 1.3 oster * XXX */
678 1.3 oster return (retcode);
679 1.3 oster }
680 1.1 oster /*
681 1.1 oster * Invoked via ioctl to install a spare table in the kernel.
682 1.1 oster */
683 1.3 oster int
684 1.3 oster rf_SetSpareTable(raidPtr, data)
685 1.3 oster RF_Raid_t *raidPtr;
686 1.3 oster void *data;
687 1.3 oster {
688 1.3 oster RF_DeclusteredConfigInfo_t *info = (RF_DeclusteredConfigInfo_t *) raidPtr->Layout.layoutSpecificInfo;
689 1.3 oster RF_SpareTableEntry_t **ptrs;
690 1.3 oster int i, retcode;
691 1.3 oster
692 1.3 oster /* what we need to copyin is a 2-d array, so first copyin the user
693 1.3 oster * pointers to the rows in the table */
694 1.3 oster RF_Malloc(ptrs, info->TablesPerSpareRegion * sizeof(RF_SpareTableEntry_t *), (RF_SpareTableEntry_t **));
695 1.3 oster retcode = copyin((caddr_t) data, (caddr_t) ptrs, info->TablesPerSpareRegion * sizeof(RF_SpareTableEntry_t *));
696 1.3 oster
697 1.3 oster if (retcode)
698 1.3 oster return (retcode);
699 1.3 oster
700 1.3 oster /* now allocate kernel space for the row pointers */
701 1.3 oster RF_Malloc(info->SpareTable, info->TablesPerSpareRegion * sizeof(RF_SpareTableEntry_t *), (RF_SpareTableEntry_t **));
702 1.3 oster
703 1.3 oster /* now allocate kernel space for each row in the table, and copy it in
704 1.3 oster * from user space */
705 1.3 oster for (i = 0; i < info->TablesPerSpareRegion; i++) {
706 1.3 oster RF_Malloc(info->SpareTable[i], info->BlocksPerTable * sizeof(RF_SpareTableEntry_t), (RF_SpareTableEntry_t *));
707 1.3 oster retcode = copyin(ptrs[i], info->SpareTable[i], info->BlocksPerTable * sizeof(RF_SpareTableEntry_t));
708 1.3 oster if (retcode) {
709 1.3 oster info->SpareTable = NULL; /* blow off the memory
710 1.3 oster * we've allocated */
711 1.3 oster return (retcode);
712 1.3 oster }
713 1.3 oster }
714 1.1 oster
715 1.3 oster /* free up the temporary array we used */
716 1.3 oster RF_Free(ptrs, info->TablesPerSpareRegion * sizeof(RF_SpareTableEntry_t *));
717 1.1 oster
718 1.3 oster return (0);
719 1.1 oster }
720 1.1 oster
721 1.3 oster RF_ReconUnitCount_t
722 1.3 oster rf_GetNumSpareRUsDeclustered(raidPtr)
723 1.3 oster RF_Raid_t *raidPtr;
724 1.1 oster {
725 1.3 oster RF_RaidLayout_t *layoutPtr = &raidPtr->Layout;
726 1.1 oster
727 1.3 oster return (((RF_DeclusteredConfigInfo_t *) layoutPtr->layoutSpecificInfo)->TotSparePUsPerDisk);
728 1.1 oster }
729 1.1 oster
730 1.3 oster void
731 1.3 oster rf_FreeSpareTable(raidPtr)
732 1.3 oster RF_Raid_t *raidPtr;
733 1.1 oster {
734 1.3 oster long i;
735 1.3 oster RF_RaidLayout_t *layoutPtr = &raidPtr->Layout;
736 1.3 oster RF_DeclusteredConfigInfo_t *info = (RF_DeclusteredConfigInfo_t *) layoutPtr->layoutSpecificInfo;
737 1.3 oster RF_SpareTableEntry_t **table = info->SpareTable;
738 1.1 oster
739 1.3 oster for (i = 0; i < info->TablesPerSpareRegion; i++) {
740 1.3 oster RF_Free(table[i], info->BlocksPerTable * sizeof(RF_SpareTableEntry_t));
741 1.3 oster }
742 1.3 oster RF_Free(table, info->TablesPerSpareRegion * sizeof(RF_SpareTableEntry_t *));
743 1.3 oster info->SpareTable = (RF_SpareTableEntry_t **) NULL;
744 1.1 oster }
745