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rf_reconmap.c revision 1.4
      1 /*	$NetBSD: rf_reconmap.c,v 1.4 1999/02/05 00:06:16 oster Exp $	*/
      2 /*
      3  * Copyright (c) 1995 Carnegie-Mellon University.
      4  * All rights reserved.
      5  *
      6  * Author: Mark Holland
      7  *
      8  * Permission to use, copy, modify and distribute this software and
      9  * its documentation is hereby granted, provided that both the copyright
     10  * notice and this permission notice appear in all copies of the
     11  * software, derivative works or modified versions, and any portions
     12  * thereof, and that both notices appear in supporting documentation.
     13  *
     14  * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS "AS IS"
     15  * CONDITION.  CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND
     16  * FOR ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE.
     17  *
     18  * Carnegie Mellon requests users of this software to return to
     19  *
     20  *  Software Distribution Coordinator  or  Software.Distribution (at) CS.CMU.EDU
     21  *  School of Computer Science
     22  *  Carnegie Mellon University
     23  *  Pittsburgh PA 15213-3890
     24  *
     25  * any improvements or extensions that they make and grant Carnegie the
     26  * rights to redistribute these changes.
     27  */
     28 
     29 /*************************************************************************
     30  * rf_reconmap.c
     31  *
     32  * code to maintain a map of what sectors have/have not been reconstructed
     33  *
     34  *************************************************************************/
     35 
     36 #include "rf_raid.h"
     37 #include <sys/time.h>
     38 #include "rf_general.h"
     39 #include "rf_utils.h"
     40 #include "rf_sys.h"
     41 
     42 /* special pointer values indicating that a reconstruction unit
     43  * has been either totally reconstructed or not at all.  Both
     44  * are illegal pointer values, so you have to be careful not to
     45  * dereference through them.  RU_NOTHING must be zero, since
     46  * MakeReconMap uses bzero to initialize the structure.  These are used
     47  * only at the head of the list.
     48  */
     49 #define RU_ALL      ((RF_ReconMapListElem_t *) -1)
     50 #define RU_NOTHING  ((RF_ReconMapListElem_t *) 0)
     51 
     52 /* used to mark the end of the list */
     53 #define RU_NIL      ((RF_ReconMapListElem_t *) 0)
     54 
     55 
     56 static void
     57 compact_stat_entry(RF_Raid_t * raidPtr, RF_ReconMap_t * mapPtr,
     58     int i);
     59 static void crunch_list(RF_ReconMap_t * mapPtr, RF_ReconMapListElem_t * listPtr);
     60 static RF_ReconMapListElem_t *
     61 MakeReconMapListElem(RF_SectorNum_t startSector,
     62     RF_SectorNum_t stopSector, RF_ReconMapListElem_t * next);
     63 static void
     64 FreeReconMapListElem(RF_ReconMap_t * mapPtr,
     65     RF_ReconMapListElem_t * p);
     66 static void update_size(RF_ReconMap_t * mapPtr, int size);
     67 static void PrintList(RF_ReconMapListElem_t * listPtr);
     68 
     69 /*-----------------------------------------------------------------------------
     70  *
     71  * Creates and initializes new Reconstruction map
     72  *
     73  *-----------------------------------------------------------------------------*/
     74 
     75 RF_ReconMap_t *
     76 rf_MakeReconMap(raidPtr, ru_sectors, disk_sectors, spareUnitsPerDisk)
     77 	RF_Raid_t *raidPtr;
     78 	RF_SectorCount_t ru_sectors;	/* size of reconstruction unit in
     79 					 * sectors */
     80 	RF_SectorCount_t disk_sectors;	/* size of disk in sectors */
     81 	RF_ReconUnitCount_t spareUnitsPerDisk;	/* zero unless distributed
     82 						 * sparing */
     83 {
     84 	RF_RaidLayout_t *layoutPtr = &raidPtr->Layout;
     85 	RF_ReconUnitCount_t num_rus = layoutPtr->stripeUnitsPerDisk / layoutPtr->SUsPerRU;
     86 	RF_ReconMap_t *p;
     87 	int     rc;
     88 
     89 	RF_Malloc(p, sizeof(RF_ReconMap_t), (RF_ReconMap_t *));
     90 	p->sectorsPerReconUnit = ru_sectors;
     91 	p->sectorsInDisk = disk_sectors;
     92 
     93 	p->totalRUs = num_rus;
     94 	p->spareRUs = spareUnitsPerDisk;
     95 	p->unitsLeft = num_rus - spareUnitsPerDisk;
     96 
     97 	RF_Malloc(p->status, num_rus * sizeof(RF_ReconMapListElem_t *), (RF_ReconMapListElem_t **));
     98 	RF_ASSERT(p->status != (RF_ReconMapListElem_t **) NULL);
     99 
    100 	(void) bzero((char *) p->status, num_rus * sizeof(RF_ReconMapListElem_t *));
    101 
    102 	p->size = sizeof(RF_ReconMap_t) + num_rus * sizeof(RF_ReconMapListElem_t *);
    103 	p->maxSize = p->size;
    104 
    105 	rc = rf_mutex_init(&p->mutex);
    106 	if (rc) {
    107 		RF_ERRORMSG3("Unable to init mutex file %s line %d rc=%d\n", __FILE__,
    108 		    __LINE__, rc);
    109 		RF_Free(p->status, num_rus * sizeof(RF_ReconMapListElem_t *));
    110 		RF_Free(p, sizeof(RF_ReconMap_t));
    111 		return (NULL);
    112 	}
    113 	return (p);
    114 }
    115 
    116 
    117 /*-----------------------------------------------------------------------------
    118  *
    119  * marks a new set of sectors as reconstructed.  All the possible mergings get
    120  * complicated.  To simplify matters, the approach I take is to just dump
    121  * something into the list, and then clean it up (i.e. merge elements and
    122  * eliminate redundant ones) in a second pass over the list (compact_stat_entry()).
    123  * Not 100% efficient, since a structure can be allocated and then immediately
    124  * freed, but it keeps this code from becoming (more of) a nightmare of
    125  * special cases.  The only thing that compact_stat_entry() assumes is that the
    126  * list is sorted by startSector, and so this is the only condition I maintain
    127  * here.  (MCH)
    128  *
    129  *-----------------------------------------------------------------------------*/
    130 
    131 void
    132 rf_ReconMapUpdate(raidPtr, mapPtr, startSector, stopSector)
    133 	RF_Raid_t *raidPtr;
    134 	RF_ReconMap_t *mapPtr;
    135 	RF_SectorNum_t startSector;
    136 	RF_SectorNum_t stopSector;
    137 {
    138 	RF_SectorCount_t sectorsPerReconUnit = mapPtr->sectorsPerReconUnit;
    139 	RF_SectorNum_t i, first_in_RU, last_in_RU;
    140 	RF_ReconMapListElem_t *p, *pt;
    141 
    142 	RF_LOCK_MUTEX(mapPtr->mutex);
    143 	RF_ASSERT(startSector >= 0 && stopSector < mapPtr->sectorsInDisk && stopSector > startSector);
    144 
    145 	while (startSector <= stopSector) {
    146 		i = startSector / mapPtr->sectorsPerReconUnit;
    147 		first_in_RU = i * sectorsPerReconUnit;
    148 		last_in_RU = first_in_RU + sectorsPerReconUnit - 1;
    149 		p = mapPtr->status[i];
    150 		if (p != RU_ALL) {
    151 			if (p == RU_NOTHING || p->startSector > startSector) {	/* insert at front of
    152 										 * list */
    153 
    154 				mapPtr->status[i] = MakeReconMapListElem(startSector, RF_MIN(stopSector, last_in_RU), (p == RU_NOTHING) ? NULL : p);
    155 				update_size(mapPtr, sizeof(RF_ReconMapListElem_t));
    156 
    157 			} else {/* general case */
    158 				do {	/* search for place to insert */
    159 					pt = p;
    160 					p = p->next;
    161 				} while (p && (p->startSector < startSector));
    162 				pt->next = MakeReconMapListElem(startSector, RF_MIN(stopSector, last_in_RU), p);
    163 				update_size(mapPtr, sizeof(RF_ReconMapListElem_t));
    164 			}
    165 			compact_stat_entry(raidPtr, mapPtr, i);
    166 		}
    167 		startSector = RF_MIN(stopSector, last_in_RU) + 1;
    168 	}
    169 	RF_UNLOCK_MUTEX(mapPtr->mutex);
    170 }
    171 
    172 
    173 
    174 /*-----------------------------------------------------------------------------
    175  *
    176  * performs whatever list compactions can be done, and frees any space
    177  * that is no longer necessary.  Assumes only that the list is sorted
    178  * by startSector.  crunch_list() compacts a single list as much as possible,
    179  * and the second block of code deletes the entire list if possible.
    180  * crunch_list() is also called from MakeReconMapAccessList().
    181  *
    182  * When a recon unit is detected to be fully reconstructed, we set the
    183  * corresponding bit in the parity stripe map so that the head follow
    184  * code will not select this parity stripe again.  This is redundant (but
    185  * harmless) when compact_stat_entry is called from the reconstruction code,
    186  * but necessary when called from the user-write code.
    187  *
    188  *-----------------------------------------------------------------------------*/
    189 
    190 static void
    191 compact_stat_entry(raidPtr, mapPtr, i)
    192 	RF_Raid_t *raidPtr;
    193 	RF_ReconMap_t *mapPtr;
    194 	int     i;
    195 {
    196 	RF_SectorCount_t sectorsPerReconUnit = mapPtr->sectorsPerReconUnit;
    197 	RF_ReconMapListElem_t *p = mapPtr->status[i];
    198 
    199 	crunch_list(mapPtr, p);
    200 
    201 	if ((p->startSector == i * sectorsPerReconUnit) &&
    202 	    (p->stopSector == i * sectorsPerReconUnit + sectorsPerReconUnit - 1)) {
    203 		mapPtr->status[i] = RU_ALL;
    204 		mapPtr->unitsLeft--;
    205 		FreeReconMapListElem(mapPtr, p);
    206 	}
    207 }
    208 
    209 static void
    210 crunch_list(mapPtr, listPtr)
    211 	RF_ReconMap_t *mapPtr;
    212 	RF_ReconMapListElem_t *listPtr;
    213 {
    214 	RF_ReconMapListElem_t *pt, *p = listPtr;
    215 
    216 	if (!p)
    217 		return;
    218 	pt = p;
    219 	p = p->next;
    220 	while (p) {
    221 		if (pt->stopSector >= p->startSector - 1) {
    222 			pt->stopSector = RF_MAX(pt->stopSector, p->stopSector);
    223 			pt->next = p->next;
    224 			FreeReconMapListElem(mapPtr, p);
    225 			p = pt->next;
    226 		} else {
    227 			pt = p;
    228 			p = p->next;
    229 		}
    230 	}
    231 }
    232 /*-----------------------------------------------------------------------------
    233  *
    234  * Allocate and fill a new list element
    235  *
    236  *-----------------------------------------------------------------------------*/
    237 
    238 static RF_ReconMapListElem_t *
    239 MakeReconMapListElem(
    240     RF_SectorNum_t startSector,
    241     RF_SectorNum_t stopSector,
    242     RF_ReconMapListElem_t * next)
    243 {
    244 	RF_ReconMapListElem_t *p;
    245 
    246 	RF_Malloc(p, sizeof(RF_ReconMapListElem_t), (RF_ReconMapListElem_t *));
    247 	if (p == NULL)
    248 		return (NULL);
    249 	p->startSector = startSector;
    250 	p->stopSector = stopSector;
    251 	p->next = next;
    252 	return (p);
    253 }
    254 /*-----------------------------------------------------------------------------
    255  *
    256  * Free a list element
    257  *
    258  *-----------------------------------------------------------------------------*/
    259 
    260 static void
    261 FreeReconMapListElem(mapPtr, p)
    262 	RF_ReconMap_t *mapPtr;
    263 	RF_ReconMapListElem_t *p;
    264 {
    265 	int     delta;
    266 
    267 	if (mapPtr) {
    268 		delta = 0 - (int) sizeof(RF_ReconMapListElem_t);
    269 		update_size(mapPtr, delta);
    270 	}
    271 	RF_Free(p, sizeof(*p));
    272 }
    273 /*-----------------------------------------------------------------------------
    274  *
    275  * Free an entire status structure.  Inefficient, but can be called at any time.
    276  *
    277  *-----------------------------------------------------------------------------*/
    278 void
    279 rf_FreeReconMap(mapPtr)
    280 	RF_ReconMap_t *mapPtr;
    281 {
    282 	RF_ReconMapListElem_t *p, *q;
    283 	RF_ReconUnitCount_t numRUs;
    284 	RF_ReconUnitNum_t i;
    285 
    286 	numRUs = mapPtr->sectorsInDisk / mapPtr->sectorsPerReconUnit;
    287 	if (mapPtr->sectorsInDisk % mapPtr->sectorsPerReconUnit)
    288 		numRUs++;
    289 
    290 	for (i = 0; i < numRUs; i++) {
    291 		p = mapPtr->status[i];
    292 		while (p != RU_NOTHING && p != RU_ALL) {
    293 			q = p;
    294 			p = p->next;
    295 			RF_Free(q, sizeof(*q));
    296 		}
    297 	}
    298 	rf_mutex_destroy(&mapPtr->mutex);
    299 	RF_Free(mapPtr->status, mapPtr->totalRUs * sizeof(RF_ReconMapListElem_t *));
    300 	RF_Free(mapPtr, sizeof(RF_ReconMap_t));
    301 }
    302 /*-----------------------------------------------------------------------------
    303  *
    304  * returns nonzero if the indicated RU has been reconstructed already
    305  *
    306  *---------------------------------------------------------------------------*/
    307 
    308 int
    309 rf_CheckRUReconstructed(mapPtr, startSector)
    310 	RF_ReconMap_t *mapPtr;
    311 	RF_SectorNum_t startSector;
    312 {
    313 	RF_ReconMapListElem_t *l;	/* used for searching */
    314 	RF_ReconUnitNum_t i;
    315 
    316 	i = startSector / mapPtr->sectorsPerReconUnit;
    317 	l = mapPtr->status[i];
    318 	return ((l == RU_ALL) ? 1 : 0);
    319 }
    320 
    321 RF_ReconUnitCount_t
    322 rf_UnitsLeftToReconstruct(mapPtr)
    323 	RF_ReconMap_t *mapPtr;
    324 {
    325 	RF_ASSERT(mapPtr != NULL);
    326 	return (mapPtr->unitsLeft);
    327 }
    328 /* updates the size fields of a status descriptor */
    329 static void
    330 update_size(mapPtr, size)
    331 	RF_ReconMap_t *mapPtr;
    332 	int     size;
    333 {
    334 	mapPtr->size += size;
    335 	mapPtr->maxSize = RF_MAX(mapPtr->size, mapPtr->maxSize);
    336 }
    337 
    338 static void
    339 PrintList(listPtr)
    340 	RF_ReconMapListElem_t *listPtr;
    341 {
    342 	while (listPtr) {
    343 		printf("%d,%d -> ", (int) listPtr->startSector, (int) listPtr->stopSector);
    344 		listPtr = listPtr->next;
    345 	}
    346 	printf("\n");
    347 }
    348 
    349 void
    350 rf_PrintReconMap(raidPtr, mapPtr, frow, fcol)
    351 	RF_Raid_t *raidPtr;
    352 	RF_ReconMap_t *mapPtr;
    353 	RF_RowCol_t frow;
    354 	RF_RowCol_t fcol;
    355 {
    356 	RF_ReconUnitCount_t numRUs;
    357 	RF_ReconMapListElem_t *p;
    358 	RF_ReconUnitNum_t i;
    359 
    360 	numRUs = mapPtr->totalRUs;
    361 	if (mapPtr->sectorsInDisk % mapPtr->sectorsPerReconUnit)
    362 		numRUs++;
    363 
    364 	for (i = 0; i < numRUs; i++) {
    365 		p = mapPtr->status[i];
    366 		if (p == RU_ALL)/* printf("[%d] ALL\n",i) */
    367 			;
    368 		else
    369 			if (p == RU_NOTHING) {
    370 				printf("%d: Unreconstructed\n", i);
    371 			} else {
    372 				printf("%d: ", i);
    373 				PrintList(p);
    374 			}
    375 	}
    376 }
    377 
    378 void
    379 rf_PrintReconSchedule(mapPtr, starttime)
    380 	RF_ReconMap_t *mapPtr;
    381 	struct timeval *starttime;
    382 {
    383 	static int old_pctg = -1;
    384 	struct timeval tv, diff;
    385 	int     new_pctg;
    386 
    387 	new_pctg = 100 - (rf_UnitsLeftToReconstruct(mapPtr) * 100 / mapPtr->totalRUs);
    388 	if (new_pctg != old_pctg) {
    389 		RF_GETTIME(tv);
    390 		RF_TIMEVAL_DIFF(starttime, &tv, &diff);
    391 		printf("%d %d.%06d\n", (int) new_pctg, (int) diff.tv_sec, (int) diff.tv_usec);
    392 		old_pctg = new_pctg;
    393 	}
    394 }
    395