rf_evenodd.c revision 1.3 1 1.3 oster /* $NetBSD: rf_evenodd.c,v 1.3 1999/08/13 03:41:56 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: Chang-Ming Wu
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_evenodd.c -- implements EVENODD array architecture
32 1.1 oster *
33 1.1 oster ****************************************************************************************/
34 1.1 oster
35 1.1 oster #include "rf_archs.h"
36 1.1 oster
37 1.1 oster #if RF_INCLUDE_EVENODD > 0
38 1.1 oster
39 1.1 oster #include "rf_types.h"
40 1.1 oster #include "rf_raid.h"
41 1.1 oster #include "rf_dag.h"
42 1.1 oster #include "rf_dagffrd.h"
43 1.1 oster #include "rf_dagffwr.h"
44 1.1 oster #include "rf_dagdegrd.h"
45 1.1 oster #include "rf_dagdegwr.h"
46 1.1 oster #include "rf_dagutils.h"
47 1.1 oster #include "rf_dagfuncs.h"
48 1.1 oster #include "rf_threadid.h"
49 1.1 oster #include "rf_etimer.h"
50 1.1 oster #include "rf_general.h"
51 1.1 oster #include "rf_evenodd.h"
52 1.1 oster #include "rf_configure.h"
53 1.1 oster #include "rf_parityscan.h"
54 1.1 oster #include "rf_utils.h"
55 1.1 oster #include "rf_map.h"
56 1.1 oster #include "rf_pq.h"
57 1.1 oster #include "rf_mcpair.h"
58 1.1 oster #include "rf_evenodd.h"
59 1.1 oster #include "rf_evenodd_dagfuncs.h"
60 1.1 oster #include "rf_evenodd_dags.h"
61 1.1 oster #include "rf_engine.h"
62 1.1 oster
63 1.1 oster typedef struct RF_EvenOddConfigInfo_s {
64 1.2 oster RF_RowCol_t **stripeIdentifier; /* filled in at config time & used by
65 1.2 oster * IdentifyStripe */
66 1.2 oster } RF_EvenOddConfigInfo_t;
67 1.2 oster
68 1.2 oster int
69 1.2 oster rf_ConfigureEvenOdd(listp, raidPtr, cfgPtr)
70 1.2 oster RF_ShutdownList_t **listp;
71 1.2 oster RF_Raid_t *raidPtr;
72 1.2 oster RF_Config_t *cfgPtr;
73 1.2 oster {
74 1.2 oster RF_RaidLayout_t *layoutPtr = &raidPtr->Layout;
75 1.2 oster RF_EvenOddConfigInfo_t *info;
76 1.2 oster RF_RowCol_t i, j, startdisk;
77 1.2 oster
78 1.2 oster RF_MallocAndAdd(info, sizeof(RF_EvenOddConfigInfo_t), (RF_EvenOddConfigInfo_t *), raidPtr->cleanupList);
79 1.2 oster layoutPtr->layoutSpecificInfo = (void *) info;
80 1.2 oster
81 1.2 oster RF_ASSERT(raidPtr->numRow == 1);
82 1.2 oster
83 1.2 oster info->stripeIdentifier = rf_make_2d_array(raidPtr->numCol, raidPtr->numCol, raidPtr->cleanupList);
84 1.2 oster startdisk = 0;
85 1.2 oster for (i = 0; i < raidPtr->numCol; i++) {
86 1.2 oster for (j = 0; j < raidPtr->numCol; j++) {
87 1.2 oster info->stripeIdentifier[i][j] = (startdisk + j) % raidPtr->numCol;
88 1.2 oster }
89 1.2 oster if ((startdisk -= 2) < 0)
90 1.2 oster startdisk += raidPtr->numCol;
91 1.2 oster }
92 1.1 oster
93 1.2 oster /* fill in the remaining layout parameters */
94 1.2 oster layoutPtr->numStripe = layoutPtr->stripeUnitsPerDisk;
95 1.2 oster layoutPtr->bytesPerStripeUnit = layoutPtr->sectorsPerStripeUnit << raidPtr->logBytesPerSector;
96 1.2 oster layoutPtr->numDataCol = raidPtr->numCol - 2; /* ORIG:
97 1.2 oster * layoutPtr->numDataCol
98 1.2 oster * = raidPtr->numCol-1; */
99 1.1 oster #if RF_EO_MATRIX_DIM > 17
100 1.2 oster if (raidPtr->numCol <= 17) {
101 1.2 oster printf("Number of stripe units in a parity stripe is smaller than 17. Please\n");
102 1.2 oster printf("define the macro RF_EO_MATRIX_DIM in file rf_evenodd_dagfuncs.h to \n");
103 1.2 oster printf("be 17 to increase performance. \n");
104 1.2 oster return (EINVAL);
105 1.2 oster }
106 1.1 oster #elif RF_EO_MATRIX_DIM == 17
107 1.2 oster if (raidPtr->numCol > 17) {
108 1.2 oster printf("Number of stripe units in a parity stripe is bigger than 17. Please\n");
109 1.2 oster printf("define the macro RF_EO_MATRIX_DIM in file rf_evenodd_dagfuncs.h to \n");
110 1.2 oster printf("be 257 for encoding and decoding functions to work. \n");
111 1.2 oster return (EINVAL);
112 1.2 oster }
113 1.1 oster #endif
114 1.2 oster layoutPtr->dataSectorsPerStripe = layoutPtr->numDataCol * layoutPtr->sectorsPerStripeUnit;
115 1.2 oster layoutPtr->numParityCol = 2;
116 1.2 oster layoutPtr->dataStripeUnitsPerDisk = layoutPtr->stripeUnitsPerDisk;
117 1.2 oster raidPtr->sectorsPerDisk = layoutPtr->stripeUnitsPerDisk * layoutPtr->sectorsPerStripeUnit;
118 1.1 oster
119 1.2 oster raidPtr->totalSectors = layoutPtr->stripeUnitsPerDisk * layoutPtr->numDataCol * layoutPtr->sectorsPerStripeUnit;
120 1.1 oster
121 1.2 oster return (0);
122 1.1 oster }
123 1.1 oster
124 1.2 oster int
125 1.2 oster rf_GetDefaultNumFloatingReconBuffersEvenOdd(RF_Raid_t * raidPtr)
126 1.1 oster {
127 1.2 oster return (20);
128 1.1 oster }
129 1.1 oster
130 1.2 oster RF_HeadSepLimit_t
131 1.2 oster rf_GetDefaultHeadSepLimitEvenOdd(RF_Raid_t * raidPtr)
132 1.1 oster {
133 1.2 oster return (10);
134 1.1 oster }
135 1.1 oster
136 1.2 oster void
137 1.2 oster rf_IdentifyStripeEvenOdd(
138 1.2 oster RF_Raid_t * raidPtr,
139 1.2 oster RF_RaidAddr_t addr,
140 1.2 oster RF_RowCol_t ** diskids,
141 1.2 oster RF_RowCol_t * outRow)
142 1.1 oster {
143 1.2 oster RF_StripeNum_t stripeID = rf_RaidAddressToStripeID(&raidPtr->Layout, addr);
144 1.2 oster RF_EvenOddConfigInfo_t *info = (RF_EvenOddConfigInfo_t *) raidPtr->Layout.layoutSpecificInfo;
145 1.1 oster
146 1.2 oster *outRow = 0;
147 1.2 oster *diskids = info->stripeIdentifier[stripeID % raidPtr->numCol];
148 1.1 oster }
149 1.2 oster /* The layout of stripe unit on the disks are: c0 c1 c2 c3 c4
150 1.1 oster
151 1.1 oster 0 1 2 E P
152 1.1 oster 5 E P 3 4
153 1.1 oster P 6 7 8 E
154 1.1 oster 10 11 E P 9
155 1.1 oster E P 12 13 14
156 1.1 oster ....
157 1.1 oster
158 1.2 oster We use the MapSectorRAID5 to map data information because the routine can be shown to map exactly
159 1.1 oster the layout of data stripe unit as shown above although we have 2 redundant information now.
160 1.1 oster But for E and P, we use rf_MapEEvenOdd and rf_MapParityEvenOdd which are different method from raid-5.
161 1.1 oster */
162 1.1 oster
163 1.1 oster
164 1.2 oster void
165 1.2 oster rf_MapParityEvenOdd(
166 1.2 oster RF_Raid_t * raidPtr,
167 1.2 oster RF_RaidAddr_t raidSector,
168 1.2 oster RF_RowCol_t * row,
169 1.2 oster RF_RowCol_t * col,
170 1.2 oster RF_SectorNum_t * diskSector,
171 1.2 oster int remap)
172 1.1 oster {
173 1.2 oster RF_StripeNum_t SUID = raidSector / raidPtr->Layout.sectorsPerStripeUnit;
174 1.2 oster RF_StripeNum_t endSUIDofthisStrip = (SUID / raidPtr->Layout.numDataCol + 1) * raidPtr->Layout.numDataCol - 1;
175 1.1 oster
176 1.2 oster *row = 0;
177 1.2 oster *col = (endSUIDofthisStrip + 2) % raidPtr->numCol;
178 1.2 oster *diskSector = (SUID / (raidPtr->Layout.numDataCol)) * raidPtr->Layout.sectorsPerStripeUnit +
179 1.2 oster (raidSector % raidPtr->Layout.sectorsPerStripeUnit);
180 1.1 oster }
181 1.1 oster
182 1.2 oster void
183 1.2 oster rf_MapEEvenOdd(
184 1.2 oster RF_Raid_t * raidPtr,
185 1.2 oster RF_RaidAddr_t raidSector,
186 1.2 oster RF_RowCol_t * row,
187 1.2 oster RF_RowCol_t * col,
188 1.2 oster RF_SectorNum_t * diskSector,
189 1.2 oster int remap)
190 1.1 oster {
191 1.2 oster RF_StripeNum_t SUID = raidSector / raidPtr->Layout.sectorsPerStripeUnit;
192 1.2 oster RF_StripeNum_t endSUIDofthisStrip = (SUID / raidPtr->Layout.numDataCol + 1) * raidPtr->Layout.numDataCol - 1;
193 1.1 oster
194 1.2 oster *row = 0;
195 1.2 oster *col = (endSUIDofthisStrip + 1) % raidPtr->numCol;
196 1.2 oster *diskSector = (SUID / (raidPtr->Layout.numDataCol)) * raidPtr->Layout.sectorsPerStripeUnit +
197 1.2 oster (raidSector % raidPtr->Layout.sectorsPerStripeUnit);
198 1.1 oster }
199 1.1 oster
200 1.2 oster void
201 1.2 oster rf_EODagSelect(
202 1.2 oster RF_Raid_t * raidPtr,
203 1.2 oster RF_IoType_t type,
204 1.2 oster RF_AccessStripeMap_t * asmap,
205 1.2 oster RF_VoidFuncPtr * createFunc)
206 1.1 oster {
207 1.2 oster RF_RaidLayout_t *layoutPtr = &(raidPtr->Layout);
208 1.2 oster unsigned ndfail = asmap->numDataFailed;
209 1.2 oster unsigned npfail = asmap->numParityFailed + asmap->numQFailed;
210 1.2 oster unsigned ntfail = npfail + ndfail;
211 1.2 oster
212 1.2 oster RF_ASSERT(RF_IO_IS_R_OR_W(type));
213 1.2 oster if (ntfail > 2) {
214 1.2 oster RF_ERRORMSG("more than two disks failed in a single group! Aborting I/O operation.\n");
215 1.2 oster /* *infoFunc = */ *createFunc = NULL;
216 1.2 oster return;
217 1.2 oster }
218 1.2 oster /* ok, we can do this I/O */
219 1.2 oster if (type == RF_IO_TYPE_READ) {
220 1.2 oster switch (ndfail) {
221 1.2 oster case 0:
222 1.2 oster /* fault free read */
223 1.2 oster *createFunc = (RF_VoidFuncPtr) rf_CreateFaultFreeReadDAG; /* same as raid 5 */
224 1.2 oster break;
225 1.2 oster case 1:
226 1.2 oster /* lost a single data unit */
227 1.2 oster /* two cases: (1) parity is not lost. do a normal raid
228 1.2 oster * 5 reconstruct read. (2) parity is lost. do a
229 1.2 oster * reconstruct read using "e". */
230 1.2 oster if (ntfail == 2) { /* also lost redundancy */
231 1.2 oster if (asmap->failedPDAs[1]->type == RF_PDA_TYPE_PARITY)
232 1.2 oster *createFunc = (RF_VoidFuncPtr) rf_EO_110_CreateReadDAG;
233 1.2 oster else
234 1.2 oster *createFunc = (RF_VoidFuncPtr) rf_EO_101_CreateReadDAG;
235 1.2 oster } else {
236 1.2 oster /* P and E are ok. But is there a failure in
237 1.2 oster * some unaccessed data unit? */
238 1.2 oster if (rf_NumFailedDataUnitsInStripe(raidPtr, asmap) == 2)
239 1.2 oster *createFunc = (RF_VoidFuncPtr) rf_EO_200_CreateReadDAG;
240 1.2 oster else
241 1.2 oster *createFunc = (RF_VoidFuncPtr) rf_EO_100_CreateReadDAG;
242 1.2 oster }
243 1.2 oster break;
244 1.2 oster case 2:
245 1.2 oster /* *createFunc = rf_EO_200_CreateReadDAG; */
246 1.2 oster *createFunc = NULL;
247 1.2 oster break;
248 1.2 oster }
249 1.2 oster return;
250 1.2 oster }
251 1.2 oster /* a write */
252 1.2 oster switch (ntfail) {
253 1.2 oster case 0: /* fault free */
254 1.2 oster if (rf_suppressLocksAndLargeWrites ||
255 1.2 oster (((asmap->numStripeUnitsAccessed <= (layoutPtr->numDataCol / 2)) && (layoutPtr->numDataCol != 1)) ||
256 1.2 oster (asmap->parityInfo->next != NULL) || (asmap->qInfo->next != NULL) || rf_CheckStripeForFailures(raidPtr, asmap))) {
257 1.2 oster
258 1.2 oster *createFunc = (RF_VoidFuncPtr) rf_EOCreateSmallWriteDAG;
259 1.2 oster } else {
260 1.2 oster *createFunc = (RF_VoidFuncPtr) rf_EOCreateLargeWriteDAG;
261 1.2 oster }
262 1.2 oster break;
263 1.2 oster
264 1.2 oster case 1: /* single disk fault */
265 1.2 oster if (npfail == 1) {
266 1.2 oster RF_ASSERT((asmap->failedPDAs[0]->type == RF_PDA_TYPE_PARITY) || (asmap->failedPDAs[0]->type == RF_PDA_TYPE_Q));
267 1.2 oster if (asmap->failedPDAs[0]->type == RF_PDA_TYPE_Q) { /* q died, treat like
268 1.2 oster * normal mode raid5
269 1.2 oster * write. */
270 1.2 oster if (((asmap->numStripeUnitsAccessed <= (layoutPtr->numDataCol / 2)) || (asmap->numStripeUnitsAccessed == 1))
271 1.2 oster || (asmap->parityInfo->next != NULL) || rf_NumFailedDataUnitsInStripe(raidPtr, asmap))
272 1.2 oster *createFunc = (RF_VoidFuncPtr) rf_EO_001_CreateSmallWriteDAG;
273 1.2 oster else
274 1.2 oster *createFunc = (RF_VoidFuncPtr) rf_EO_001_CreateLargeWriteDAG;
275 1.2 oster } else {/* parity died, small write only updating Q */
276 1.2 oster if (((asmap->numStripeUnitsAccessed <= (layoutPtr->numDataCol / 2)) || (asmap->numStripeUnitsAccessed == 1))
277 1.2 oster || (asmap->qInfo->next != NULL) || rf_NumFailedDataUnitsInStripe(raidPtr, asmap))
278 1.2 oster *createFunc = (RF_VoidFuncPtr) rf_EO_010_CreateSmallWriteDAG;
279 1.2 oster else
280 1.2 oster *createFunc = (RF_VoidFuncPtr) rf_EO_010_CreateLargeWriteDAG;
281 1.2 oster }
282 1.2 oster } else { /* data missing. Do a P reconstruct write if
283 1.2 oster * only a single data unit is lost in the
284 1.2 oster * stripe, otherwise a reconstruct write which
285 1.2 oster * employnig both P and E units. */
286 1.2 oster if (rf_NumFailedDataUnitsInStripe(raidPtr, asmap) == 2) {
287 1.2 oster if (asmap->numStripeUnitsAccessed == 1)
288 1.2 oster *createFunc = (RF_VoidFuncPtr) rf_EO_200_CreateWriteDAG;
289 1.2 oster else
290 1.2 oster *createFunc = NULL; /* No direct support for
291 1.2 oster * this case now, like
292 1.2 oster * that in Raid-5 */
293 1.2 oster } else {
294 1.2 oster if (asmap->numStripeUnitsAccessed != 1 && asmap->failedPDAs[0]->numSector != layoutPtr->sectorsPerStripeUnit)
295 1.2 oster *createFunc = NULL; /* No direct support for
296 1.2 oster * this case now, like
297 1.2 oster * that in Raid-5 */
298 1.2 oster else
299 1.2 oster *createFunc = (RF_VoidFuncPtr) rf_EO_100_CreateWriteDAG;
300 1.2 oster }
301 1.2 oster }
302 1.2 oster break;
303 1.2 oster
304 1.2 oster case 2: /* two disk faults */
305 1.2 oster switch (npfail) {
306 1.2 oster case 2: /* both p and q dead */
307 1.2 oster *createFunc = (RF_VoidFuncPtr) rf_EO_011_CreateWriteDAG;
308 1.2 oster break;
309 1.2 oster case 1: /* either p or q and dead data */
310 1.2 oster RF_ASSERT(asmap->failedPDAs[0]->type == RF_PDA_TYPE_DATA);
311 1.2 oster RF_ASSERT((asmap->failedPDAs[1]->type == RF_PDA_TYPE_PARITY) || (asmap->failedPDAs[1]->type == RF_PDA_TYPE_Q));
312 1.2 oster if (asmap->failedPDAs[1]->type == RF_PDA_TYPE_Q) {
313 1.2 oster if (asmap->numStripeUnitsAccessed != 1 && asmap->failedPDAs[0]->numSector != layoutPtr->sectorsPerStripeUnit)
314 1.2 oster *createFunc = NULL; /* In both PQ and
315 1.2 oster * EvenOdd, no direct
316 1.2 oster * support for this case
317 1.2 oster * now, like that in
318 1.2 oster * Raid-5 */
319 1.2 oster else
320 1.2 oster *createFunc = (RF_VoidFuncPtr) rf_EO_101_CreateWriteDAG;
321 1.2 oster } else {
322 1.2 oster if (asmap->numStripeUnitsAccessed != 1 && asmap->failedPDAs[0]->numSector != layoutPtr->sectorsPerStripeUnit)
323 1.2 oster *createFunc = NULL; /* No direct support for
324 1.2 oster * this case, like that
325 1.2 oster * in Raid-5 */
326 1.2 oster else
327 1.2 oster *createFunc = (RF_VoidFuncPtr) rf_EO_110_CreateWriteDAG;
328 1.2 oster }
329 1.2 oster break;
330 1.2 oster case 0: /* double data loss */
331 1.2 oster /* if(asmap->failedPDAs[0]->numSector +
332 1.2 oster * asmap->failedPDAs[1]->numSector == 2 *
333 1.2 oster * layoutPtr->sectorsPerStripeUnit ) createFunc =
334 1.2 oster * rf_EOCreateLargeWriteDAG; else */
335 1.2 oster *createFunc = NULL; /* currently, in Evenodd, No
336 1.2 oster * support for simultaneous
337 1.2 oster * access of both failed SUs */
338 1.2 oster break;
339 1.2 oster }
340 1.2 oster break;
341 1.2 oster
342 1.2 oster default: /* more than 2 disk faults */
343 1.2 oster *createFunc = NULL;
344 1.2 oster RF_PANIC();
345 1.2 oster }
346 1.2 oster return;
347 1.1 oster }
348 1.1 oster
349 1.1 oster
350 1.2 oster int
351 1.2 oster rf_VerifyParityEvenOdd(raidPtr, raidAddr, parityPDA, correct_it, flags)
352 1.2 oster RF_Raid_t *raidPtr;
353 1.2 oster RF_RaidAddr_t raidAddr;
354 1.2 oster RF_PhysDiskAddr_t *parityPDA;
355 1.2 oster int correct_it;
356 1.2 oster RF_RaidAccessFlags_t flags;
357 1.1 oster {
358 1.2 oster RF_RaidLayout_t *layoutPtr = &(raidPtr->Layout);
359 1.2 oster RF_RaidAddr_t startAddr = rf_RaidAddressOfPrevStripeBoundary(layoutPtr, raidAddr);
360 1.2 oster RF_SectorCount_t numsector = parityPDA->numSector;
361 1.2 oster int numbytes = rf_RaidAddressToByte(raidPtr, numsector);
362 1.2 oster int bytesPerStripe = numbytes * layoutPtr->numDataCol;
363 1.2 oster RF_DagHeader_t *rd_dag_h, *wr_dag_h; /* read, write dag */
364 1.2 oster RF_DagNode_t *blockNode, *unblockNode, *wrBlock, *wrUnblock;
365 1.2 oster RF_AccessStripeMapHeader_t *asm_h;
366 1.2 oster RF_AccessStripeMap_t *asmap;
367 1.2 oster RF_AllocListElem_t *alloclist;
368 1.2 oster RF_PhysDiskAddr_t *pda;
369 1.2 oster char *pbuf, *buf, *end_p, *p;
370 1.2 oster char *redundantbuf2;
371 1.2 oster int redundantTwoErr = 0, redundantOneErr = 0;
372 1.2 oster int parity_cant_correct = RF_FALSE, red2_cant_correct = RF_FALSE,
373 1.2 oster parity_corrected = RF_FALSE, red2_corrected = RF_FALSE;
374 1.2 oster int i, retcode;
375 1.2 oster RF_ReconUnitNum_t which_ru;
376 1.2 oster RF_StripeNum_t psID = rf_RaidAddressToParityStripeID(layoutPtr, raidAddr, &which_ru);
377 1.2 oster int stripeWidth = layoutPtr->numDataCol + layoutPtr->numParityCol;
378 1.2 oster RF_AccTraceEntry_t tracerec;
379 1.2 oster RF_MCPair_t *mcpair;
380 1.2 oster
381 1.2 oster retcode = RF_PARITY_OKAY;
382 1.2 oster
383 1.2 oster mcpair = rf_AllocMCPair();
384 1.2 oster rf_MakeAllocList(alloclist);
385 1.2 oster RF_MallocAndAdd(buf, numbytes * (layoutPtr->numDataCol + layoutPtr->numParityCol), (char *), alloclist);
386 1.2 oster RF_CallocAndAdd(pbuf, 1, numbytes, (char *), alloclist); /* use calloc to make
387 1.2 oster * sure buffer is zeroed */
388 1.2 oster end_p = buf + bytesPerStripe;
389 1.2 oster RF_CallocAndAdd(redundantbuf2, 1, numbytes, (char *), alloclist); /* use calloc to make
390 1.2 oster * sure buffer is zeroed */
391 1.2 oster
392 1.2 oster rd_dag_h = rf_MakeSimpleDAG(raidPtr, stripeWidth, numbytes, buf, rf_DiskReadFunc, rf_DiskReadUndoFunc,
393 1.2 oster "Rod", alloclist, flags, RF_IO_NORMAL_PRIORITY);
394 1.2 oster blockNode = rd_dag_h->succedents[0];
395 1.2 oster unblockNode = blockNode->succedents[0]->succedents[0];
396 1.2 oster
397 1.2 oster /* map the stripe and fill in the PDAs in the dag */
398 1.2 oster asm_h = rf_MapAccess(raidPtr, startAddr, layoutPtr->dataSectorsPerStripe, buf, RF_DONT_REMAP);
399 1.2 oster asmap = asm_h->stripeMap;
400 1.2 oster
401 1.2 oster for (pda = asmap->physInfo, i = 0; i < layoutPtr->numDataCol; i++, pda = pda->next) {
402 1.2 oster RF_ASSERT(pda);
403 1.2 oster rf_RangeRestrictPDA(raidPtr, parityPDA, pda, 0, 1);
404 1.2 oster RF_ASSERT(pda->numSector != 0);
405 1.2 oster if (rf_TryToRedirectPDA(raidPtr, pda, 0))
406 1.2 oster goto out; /* no way to verify parity if disk is
407 1.2 oster * dead. return w/ good status */
408 1.2 oster blockNode->succedents[i]->params[0].p = pda;
409 1.2 oster blockNode->succedents[i]->params[2].v = psID;
410 1.2 oster blockNode->succedents[i]->params[3].v = RF_CREATE_PARAM3(RF_IO_NORMAL_PRIORITY, 0, 0, which_ru);
411 1.2 oster }
412 1.2 oster
413 1.2 oster RF_ASSERT(!asmap->parityInfo->next);
414 1.2 oster rf_RangeRestrictPDA(raidPtr, parityPDA, asmap->parityInfo, 0, 1);
415 1.2 oster RF_ASSERT(asmap->parityInfo->numSector != 0);
416 1.2 oster if (rf_TryToRedirectPDA(raidPtr, asmap->parityInfo, 1))
417 1.2 oster goto out;
418 1.2 oster blockNode->succedents[layoutPtr->numDataCol]->params[0].p = asmap->parityInfo;
419 1.2 oster
420 1.2 oster RF_ASSERT(!asmap->qInfo->next);
421 1.2 oster rf_RangeRestrictPDA(raidPtr, parityPDA, asmap->qInfo, 0, 1);
422 1.2 oster RF_ASSERT(asmap->qInfo->numSector != 0);
423 1.2 oster if (rf_TryToRedirectPDA(raidPtr, asmap->qInfo, 1))
424 1.2 oster goto out;
425 1.2 oster /* if disk is dead, b/c no reconstruction is implemented right now,
426 1.2 oster * the function "rf_TryToRedirectPDA" always return one, which cause
427 1.2 oster * go to out and return w/ good status */
428 1.2 oster blockNode->succedents[layoutPtr->numDataCol + 1]->params[0].p = asmap->qInfo;
429 1.2 oster
430 1.2 oster /* fire off the DAG */
431 1.2 oster bzero((char *) &tracerec, sizeof(tracerec));
432 1.2 oster rd_dag_h->tracerec = &tracerec;
433 1.2 oster
434 1.2 oster if (rf_verifyParityDebug) {
435 1.2 oster printf("Parity verify read dag:\n");
436 1.2 oster rf_PrintDAGList(rd_dag_h);
437 1.2 oster }
438 1.2 oster RF_LOCK_MUTEX(mcpair->mutex);
439 1.2 oster mcpair->flag = 0;
440 1.2 oster rf_DispatchDAG(rd_dag_h, (void (*) (void *)) rf_MCPairWakeupFunc,
441 1.2 oster (void *) mcpair);
442 1.2 oster while (!mcpair->flag)
443 1.2 oster RF_WAIT_COND(mcpair->cond, mcpair->mutex);
444 1.2 oster RF_UNLOCK_MUTEX(mcpair->mutex);
445 1.2 oster if (rd_dag_h->status != rf_enable) {
446 1.2 oster RF_ERRORMSG("Unable to verify parity: can't read the stripe\n");
447 1.2 oster retcode = RF_PARITY_COULD_NOT_VERIFY;
448 1.2 oster goto out;
449 1.2 oster }
450 1.2 oster for (p = buf, i = 0; p < end_p; p += numbytes, i++) {
451 1.2 oster rf_e_encToBuf(raidPtr, i, p, RF_EO_MATRIX_DIM - 2, redundantbuf2, numsector);
452 1.2 oster /* the corresponding columes in EvenOdd encoding Matrix for
453 1.2 oster * these p pointers which point to the databuffer in a full
454 1.2 oster * stripe are sequentially from 0 to layoutPtr->numDataCol-1 */
455 1.2 oster rf_bxor(p, pbuf, numbytes, NULL);
456 1.2 oster }
457 1.2 oster RF_ASSERT(i == layoutPtr->numDataCol);
458 1.2 oster
459 1.2 oster for (i = 0; i < numbytes; i++) {
460 1.2 oster if (pbuf[i] != buf[bytesPerStripe + i]) {
461 1.2 oster if (!correct_it) {
462 1.2 oster RF_ERRORMSG3("Parity verify error: byte %d of parity is 0x%x should be 0x%x\n",
463 1.2 oster i, (u_char) buf[bytesPerStripe + i], (u_char) pbuf[i]);
464 1.2 oster }
465 1.2 oster }
466 1.2 oster redundantOneErr = 1;
467 1.2 oster break;
468 1.2 oster }
469 1.2 oster
470 1.2 oster for (i = 0; i < numbytes; i++) {
471 1.2 oster if (redundantbuf2[i] != buf[bytesPerStripe + numbytes + i]) {
472 1.2 oster if (!correct_it) {
473 1.2 oster RF_ERRORMSG3("Parity verify error: byte %d of second redundant information is 0x%x should be 0x%x\n",
474 1.2 oster i, (u_char) buf[bytesPerStripe + numbytes + i], (u_char) redundantbuf2[i]);
475 1.2 oster }
476 1.2 oster redundantTwoErr = 1;
477 1.2 oster break;
478 1.2 oster }
479 1.2 oster }
480 1.2 oster if (redundantOneErr || redundantTwoErr)
481 1.2 oster retcode = RF_PARITY_BAD;
482 1.2 oster
483 1.2 oster /* correct the first redundant disk, ie parity if it is error */
484 1.2 oster if (redundantOneErr && correct_it) {
485 1.2 oster wr_dag_h = rf_MakeSimpleDAG(raidPtr, 1, numbytes, pbuf, rf_DiskWriteFunc, rf_DiskWriteUndoFunc,
486 1.2 oster "Wnp", alloclist, flags, RF_IO_NORMAL_PRIORITY);
487 1.2 oster wrBlock = wr_dag_h->succedents[0];
488 1.2 oster wrUnblock = wrBlock->succedents[0]->succedents[0];
489 1.2 oster wrBlock->succedents[0]->params[0].p = asmap->parityInfo;
490 1.2 oster wrBlock->succedents[0]->params[2].v = psID;
491 1.2 oster wrBlock->succedents[0]->params[3].v = RF_CREATE_PARAM3(RF_IO_NORMAL_PRIORITY, 0, 0, which_ru);
492 1.2 oster bzero((char *) &tracerec, sizeof(tracerec));
493 1.2 oster wr_dag_h->tracerec = &tracerec;
494 1.2 oster if (rf_verifyParityDebug) {
495 1.2 oster printf("Parity verify write dag:\n");
496 1.2 oster rf_PrintDAGList(wr_dag_h);
497 1.2 oster }
498 1.2 oster RF_LOCK_MUTEX(mcpair->mutex);
499 1.2 oster mcpair->flag = 0;
500 1.2 oster rf_DispatchDAG(wr_dag_h, (void (*) (void *)) rf_MCPairWakeupFunc,
501 1.2 oster (void *) mcpair);
502 1.2 oster while (!mcpair->flag)
503 1.2 oster RF_WAIT_COND(mcpair->cond, mcpair->mutex);
504 1.2 oster RF_UNLOCK_MUTEX(mcpair->mutex);
505 1.2 oster if (wr_dag_h->status != rf_enable) {
506 1.2 oster RF_ERRORMSG("Unable to correct parity in VerifyParity: can't write the stripe\n");
507 1.2 oster parity_cant_correct = RF_TRUE;
508 1.2 oster } else {
509 1.2 oster parity_corrected = RF_TRUE;
510 1.2 oster }
511 1.2 oster rf_FreeDAG(wr_dag_h);
512 1.2 oster }
513 1.2 oster if (redundantTwoErr && correct_it) {
514 1.2 oster wr_dag_h = rf_MakeSimpleDAG(raidPtr, 1, numbytes, redundantbuf2, rf_DiskWriteFunc, rf_DiskWriteUndoFunc,
515 1.2 oster "Wnred2", alloclist, flags, RF_IO_NORMAL_PRIORITY);
516 1.2 oster wrBlock = wr_dag_h->succedents[0];
517 1.2 oster wrUnblock = wrBlock->succedents[0]->succedents[0];
518 1.2 oster wrBlock->succedents[0]->params[0].p = asmap->qInfo;
519 1.2 oster wrBlock->succedents[0]->params[2].v = psID;
520 1.2 oster wrBlock->succedents[0]->params[3].v = RF_CREATE_PARAM3(RF_IO_NORMAL_PRIORITY, 0, 0, which_ru);
521 1.2 oster bzero((char *) &tracerec, sizeof(tracerec));
522 1.2 oster wr_dag_h->tracerec = &tracerec;
523 1.2 oster if (rf_verifyParityDebug) {
524 1.2 oster printf("Dag of write new second redundant information in parity verify :\n");
525 1.2 oster rf_PrintDAGList(wr_dag_h);
526 1.2 oster }
527 1.2 oster RF_LOCK_MUTEX(mcpair->mutex);
528 1.2 oster mcpair->flag = 0;
529 1.2 oster rf_DispatchDAG(wr_dag_h, (void (*) (void *)) rf_MCPairWakeupFunc,
530 1.2 oster (void *) mcpair);
531 1.2 oster while (!mcpair->flag)
532 1.2 oster RF_WAIT_COND(mcpair->cond, mcpair->mutex);
533 1.2 oster RF_UNLOCK_MUTEX(mcpair->mutex);
534 1.2 oster if (wr_dag_h->status != rf_enable) {
535 1.2 oster RF_ERRORMSG("Unable to correct second redundant information in VerifyParity: can't write the stripe\n");
536 1.2 oster red2_cant_correct = RF_TRUE;
537 1.2 oster } else {
538 1.2 oster red2_corrected = RF_TRUE;
539 1.2 oster }
540 1.2 oster rf_FreeDAG(wr_dag_h);
541 1.2 oster }
542 1.2 oster if ((redundantOneErr && parity_cant_correct) ||
543 1.2 oster (redundantTwoErr && red2_cant_correct))
544 1.2 oster retcode = RF_PARITY_COULD_NOT_CORRECT;
545 1.2 oster if ((retcode = RF_PARITY_BAD) && parity_corrected && red2_corrected)
546 1.2 oster retcode = RF_PARITY_CORRECTED;
547 1.1 oster
548 1.1 oster
549 1.1 oster out:
550 1.2 oster rf_FreeAccessStripeMap(asm_h);
551 1.2 oster rf_FreeAllocList(alloclist);
552 1.2 oster rf_FreeDAG(rd_dag_h);
553 1.2 oster rf_FreeMCPair(mcpair);
554 1.2 oster return (retcode);
555 1.1 oster }
556 1.2 oster #endif /* RF_INCLUDE_EVENODD > 0 */
557