1 1.39 andvar /* $NetBSD: rf_psstatus.c,v 1.39 2024/02/10 09:21:53 andvar 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 * psstatus.c 32 1.1 oster * 33 1.1 oster * The reconstruction code maintains a bunch of status related to the parity 34 1.1 oster * stripes that are currently under reconstruction. This header file defines 35 1.1 oster * the status structures. 36 1.1 oster * 37 1.1 oster *****************************************************************************/ 38 1.8 lukem 39 1.8 lukem #include <sys/cdefs.h> 40 1.39 andvar __KERNEL_RCSID(0, "$NetBSD: rf_psstatus.c,v 1.39 2024/02/10 09:21:53 andvar Exp $"); 41 1.1 oster 42 1.7 oster #include <dev/raidframe/raidframevar.h> 43 1.7 oster 44 1.1 oster #include "rf_raid.h" 45 1.1 oster #include "rf_general.h" 46 1.1 oster #include "rf_debugprint.h" 47 1.1 oster #include "rf_psstatus.h" 48 1.1 oster #include "rf_shutdown.h" 49 1.1 oster 50 1.10 oster #if RF_DEBUG_PSS 51 1.1 oster #define Dprintf1(s,a) if (rf_pssDebug) rf_debug_printf(s,(void *)((unsigned long)a),NULL,NULL,NULL,NULL,NULL,NULL,NULL) 52 1.1 oster #define Dprintf2(s,a,b) if (rf_pssDebug) rf_debug_printf(s,(void *)((unsigned long)a),(void *)((unsigned long)b),NULL,NULL,NULL,NULL,NULL,NULL) 53 1.1 oster #define Dprintf3(s,a,b,c) if (rf_pssDebug) rf_debug_printf(s,(void *)((unsigned long)a),(void *)((unsigned long)b),(void *)((unsigned long)c),NULL,NULL,NULL,NULL,NULL) 54 1.10 oster #else 55 1.10 oster #define Dprintf1(s,a) 56 1.10 oster #define Dprintf2(s,a,b) 57 1.10 oster #define Dprintf3(s,a,b,c) 58 1.10 oster #endif 59 1.1 oster 60 1.29 perry static void 61 1.3 oster RealPrintPSStatusTable(RF_Raid_t * raidPtr, 62 1.3 oster RF_PSStatusHeader_t * pssTable); 63 1.1 oster 64 1.1 oster #define RF_MAX_FREE_PSS 32 65 1.25 oster #define RF_MIN_FREE_PSS 8 66 1.1 oster 67 1.1 oster static void rf_ShutdownPSStatus(void *); 68 1.1 oster 69 1.29 perry static void 70 1.33 christos rf_ShutdownPSStatus(void *arg) 71 1.3 oster { 72 1.38 oster RF_Raid_t *raidPtr; 73 1.3 oster 74 1.38 oster raidPtr = (RF_Raid_t *) arg; 75 1.38 oster 76 1.38 oster pool_destroy(&raidPtr->pools.pss); 77 1.3 oster } 78 1.3 oster 79 1.29 perry int 80 1.38 oster rf_ConfigurePSStatus(RF_ShutdownList_t **listp, RF_Raid_t *raidPtr, 81 1.38 oster RF_Config_t *cfgPtr) 82 1.3 oster { 83 1.3 oster 84 1.38 oster rf_pool_init(raidPtr, raidPtr->poolNames.pss, &raidPtr->pools.pss, sizeof(RF_ReconParityStripeStatus_t), 85 1.38 oster "pss", RF_MIN_FREE_PSS, RF_MAX_FREE_PSS); 86 1.38 oster rf_ShutdownCreate(listp, rf_ShutdownPSStatus, raidPtr); 87 1.21 oster 88 1.3 oster return (0); 89 1.1 oster } 90 1.31 oster 91 1.31 oster void 92 1.31 oster rf_InitPSStatus(RF_Raid_t *raidPtr) 93 1.31 oster { 94 1.31 oster raidPtr->pssTableSize = RF_PSS_DEFAULT_TABLESIZE; 95 1.31 oster } 96 1.31 oster 97 1.31 oster 98 1.1 oster /***************************************************************************************** 99 1.1 oster * sets up the pss table 100 1.1 oster * We pre-allocate a bunch of entries to avoid as much as possible having to 101 1.1 oster * malloc up hash chain entries. 102 1.1 oster ****************************************************************************************/ 103 1.3 oster RF_PSStatusHeader_t * 104 1.19 oster rf_MakeParityStripeStatusTable(RF_Raid_t *raidPtr) 105 1.3 oster { 106 1.3 oster RF_PSStatusHeader_t *pssTable; 107 1.17 oster int i; 108 1.29 perry 109 1.35 christos pssTable = RF_Malloc(raidPtr->pssTableSize * sizeof(*pssTable)); 110 1.3 oster for (i = 0; i < raidPtr->pssTableSize; i++) { 111 1.34 mrg rf_init_mutex2(pssTable[i].mutex, IPL_VM); 112 1.34 mrg rf_init_cond2(pssTable[i].cond, "rfpsslk"); 113 1.3 oster } 114 1.3 oster return (pssTable); 115 1.3 oster } 116 1.3 oster 117 1.29 perry void 118 1.33 christos rf_FreeParityStripeStatusTable(RF_Raid_t *raidPtr, 119 1.19 oster RF_PSStatusHeader_t *pssTable) 120 1.3 oster { 121 1.3 oster int i; 122 1.3 oster 123 1.34 mrg #if RF_DEBUG_PSS 124 1.3 oster if (rf_pssDebug) 125 1.3 oster RealPrintPSStatusTable(raidPtr, pssTable); 126 1.20 oster 127 1.3 oster for (i = 0; i < raidPtr->pssTableSize; i++) { 128 1.3 oster if (pssTable[i].chain) { 129 1.3 oster printf("ERROR: pss hash chain not null at recon shutdown\n"); 130 1.3 oster } 131 1.3 oster } 132 1.20 oster #endif 133 1.34 mrg for (i = 0; i < raidPtr->pssTableSize; i++) { 134 1.34 mrg rf_destroy_mutex2(pssTable[i].mutex); 135 1.34 mrg rf_destroy_cond2(pssTable[i].cond); 136 1.34 mrg } 137 1.3 oster RF_Free(pssTable, raidPtr->pssTableSize * sizeof(RF_PSStatusHeader_t)); 138 1.1 oster } 139 1.1 oster 140 1.1 oster 141 1.1 oster /* looks up the status structure for a parity stripe. 142 1.23 oster * if the create_flag is on, uses (and returns) newpssPtr if 143 1.23 oster * a parity status structure doesn't exist 144 1.1 oster * otherwise returns NULL if the status structure does not exist 145 1.1 oster * 146 1.1 oster * ASSUMES THE PSS DESCRIPTOR IS LOCKED UPON ENTRY 147 1.29 perry * 148 1.23 oster * flags - whether or not to use newpssPtr if the needed PSS 149 1.23 oster * doesn't exist and what flags to set it to initially 150 1.1 oster */ 151 1.3 oster RF_ReconParityStripeStatus_t * 152 1.19 oster rf_LookupRUStatus(RF_Raid_t *raidPtr, RF_PSStatusHeader_t *pssTable, 153 1.19 oster RF_StripeNum_t psID, RF_ReconUnitNum_t which_ru, 154 1.22 oster RF_PSSFlags_t flags, RF_ReconParityStripeStatus_t *newpssPtr) 155 1.3 oster { 156 1.3 oster RF_PSStatusHeader_t *hdr = &pssTable[RF_HASH_PSID(raidPtr, psID)]; 157 1.3 oster RF_ReconParityStripeStatus_t *p, *pssPtr = hdr->chain; 158 1.3 oster 159 1.3 oster for (p = pssPtr; p; p = p->next) { 160 1.3 oster if (p->parityStripeID == psID && p->which_ru == which_ru) 161 1.3 oster break; 162 1.3 oster } 163 1.3 oster 164 1.3 oster if (!p && (flags & RF_PSS_CREATE)) { 165 1.22 oster p = newpssPtr; 166 1.3 oster p->next = hdr->chain; 167 1.3 oster hdr->chain = p; 168 1.3 oster 169 1.3 oster p->parityStripeID = psID; 170 1.3 oster p->which_ru = which_ru; 171 1.3 oster p->flags = flags; 172 1.3 oster p->rbuf = NULL; 173 1.3 oster p->writeRbuf = NULL; 174 1.12 oster p->xorBufCount = 0; 175 1.3 oster p->blockCount = 0; 176 1.3 oster p->procWaitList = NULL; 177 1.3 oster p->blockWaitList = NULL; 178 1.3 oster p->bufWaitList = NULL; 179 1.3 oster } else 180 1.3 oster if (p) { /* we didn't create, but we want to specify 181 1.3 oster * some new status */ 182 1.3 oster p->flags |= flags; /* add in whatever flags we're 183 1.3 oster * specifying */ 184 1.3 oster } 185 1.3 oster if (p && (flags & RF_PSS_RECON_BLOCKED)) { 186 1.3 oster p->blockCount++;/* if we're asking to block recon, bump the 187 1.3 oster * count */ 188 1.5 oster Dprintf3("raid%d: Blocked recon on psid %ld. count now %d\n", 189 1.5 oster raidPtr->raidid, psID, p->blockCount); 190 1.3 oster } 191 1.3 oster return (p); 192 1.1 oster } 193 1.1 oster /* deletes an entry from the parity stripe status table. typically used 194 1.1 oster * when an entry has been allocated solely to block reconstruction, and 195 1.1 oster * no recon was requested while recon was blocked. Assumes the hash 196 1.1 oster * chain is ALREADY LOCKED. 197 1.1 oster */ 198 1.29 perry void 199 1.29 perry rf_PSStatusDelete(RF_Raid_t *raidPtr, RF_PSStatusHeader_t *pssTable, 200 1.19 oster RF_ReconParityStripeStatus_t *pssPtr) 201 1.3 oster { 202 1.3 oster RF_PSStatusHeader_t *hdr = &(pssTable[RF_HASH_PSID(raidPtr, pssPtr->parityStripeID)]); 203 1.3 oster RF_ReconParityStripeStatus_t *p = hdr->chain, *pt = NULL; 204 1.3 oster 205 1.3 oster while (p) { 206 1.3 oster if (p == pssPtr) { 207 1.3 oster if (pt) 208 1.3 oster pt->next = p->next; 209 1.3 oster else 210 1.3 oster hdr->chain = p->next; 211 1.3 oster p->next = NULL; 212 1.3 oster rf_FreePSStatus(raidPtr, p); 213 1.3 oster return; 214 1.3 oster } 215 1.3 oster pt = p; 216 1.3 oster p = p->next; 217 1.3 oster } 218 1.3 oster RF_ASSERT(0); /* we must find it here */ 219 1.1 oster } 220 1.1 oster /* deletes an entry from the ps status table after reconstruction has completed */ 221 1.29 perry void 222 1.29 perry rf_RemoveFromActiveReconTable(RF_Raid_t *raidPtr, RF_StripeNum_t psid, 223 1.19 oster RF_ReconUnitNum_t which_ru) 224 1.3 oster { 225 1.15 oster RF_PSStatusHeader_t *hdr = &(raidPtr->reconControl->pssTable[RF_HASH_PSID(raidPtr, psid)]); 226 1.3 oster RF_ReconParityStripeStatus_t *p, *pt; 227 1.37 christos RF_CallbackFuncDesc_t *cb, *cb1; 228 1.3 oster 229 1.34 mrg rf_lock_mutex2(hdr->mutex); 230 1.28 oster while(hdr->lock) { 231 1.34 mrg rf_wait_cond2(hdr->cond, hdr->mutex); 232 1.28 oster } 233 1.28 oster hdr->lock = 1; 234 1.34 mrg rf_unlock_mutex2(hdr->mutex); 235 1.3 oster for (pt = NULL, p = hdr->chain; p; pt = p, p = p->next) { 236 1.3 oster if ((p->parityStripeID == psid) && (p->which_ru == which_ru)) 237 1.3 oster break; 238 1.3 oster } 239 1.3 oster if (p == NULL) { 240 1.15 oster rf_PrintPSStatusTable(raidPtr); 241 1.3 oster } 242 1.3 oster RF_ASSERT(p); /* it must be there */ 243 1.3 oster 244 1.3 oster Dprintf2("PSS: deleting pss for psid %ld ru %d\n", psid, which_ru); 245 1.3 oster 246 1.3 oster /* delete this entry from the hash chain */ 247 1.3 oster if (pt) 248 1.3 oster pt->next = p->next; 249 1.3 oster else 250 1.3 oster hdr->chain = p->next; 251 1.3 oster p->next = NULL; 252 1.29 perry 253 1.34 mrg rf_lock_mutex2(hdr->mutex); 254 1.28 oster hdr->lock = 0; 255 1.34 mrg rf_unlock_mutex2(hdr->mutex); 256 1.3 oster 257 1.39 andvar /* wakeup anyone waiting on the parity stripe ID */ 258 1.3 oster cb = p->procWaitList; 259 1.3 oster p->procWaitList = NULL; 260 1.3 oster while (cb) { 261 1.3 oster Dprintf1("Waking up access waiting on parity stripe ID %ld\n", p->parityStripeID); 262 1.3 oster cb1 = cb->next; 263 1.3 oster (cb->callbackFunc) (cb->callbackArg); 264 1.38 oster rf_FreeCallbackFuncDesc(raidPtr, cb); 265 1.3 oster cb = cb1; 266 1.3 oster } 267 1.3 oster 268 1.3 oster rf_FreePSStatus(raidPtr, p); 269 1.3 oster } 270 1.3 oster 271 1.3 oster RF_ReconParityStripeStatus_t * 272 1.33 christos rf_AllocPSStatus(RF_Raid_t *raidPtr) 273 1.3 oster { 274 1.38 oster return pool_get(&raidPtr->pools.pss, PR_WAITOK | PR_ZERO); 275 1.3 oster } 276 1.3 oster 277 1.29 perry void 278 1.33 christos rf_FreePSStatus(RF_Raid_t *raidPtr, RF_ReconParityStripeStatus_t *p) 279 1.3 oster { 280 1.3 oster RF_ASSERT(p->procWaitList == NULL); 281 1.3 oster RF_ASSERT(p->blockWaitList == NULL); 282 1.3 oster RF_ASSERT(p->bufWaitList == NULL); 283 1.3 oster 284 1.38 oster pool_put(&raidPtr->pools.pss, p); 285 1.3 oster } 286 1.3 oster 287 1.29 perry static void 288 1.19 oster RealPrintPSStatusTable(RF_Raid_t *raidPtr, RF_PSStatusHeader_t *pssTable) 289 1.3 oster { 290 1.3 oster int i, j, procsWaiting, blocksWaiting, bufsWaiting; 291 1.3 oster RF_ReconParityStripeStatus_t *p; 292 1.37 christos RF_CallbackValueDesc_t *vb; 293 1.37 christos RF_CallbackFuncDesc_t *fb; 294 1.3 oster 295 1.3 oster printf("\nParity Stripe Status Table\n"); 296 1.3 oster for (i = 0; i < raidPtr->pssTableSize; i++) { 297 1.3 oster for (p = pssTable[i].chain; p; p = p->next) { 298 1.3 oster procsWaiting = blocksWaiting = bufsWaiting = 0; 299 1.37 christos for (fb = p->procWaitList; fb; fb = fb->next) 300 1.3 oster procsWaiting++; 301 1.37 christos for (vb = p->blockWaitList; vb; vb = vb->next) 302 1.3 oster blocksWaiting++; 303 1.37 christos for (vb = p->bufWaitList; vb; vb = vb->next) 304 1.3 oster bufsWaiting++; 305 1.3 oster printf("PSID %ld RU %d : blockCount %d %d/%d/%d proc/block/buf waiting, issued ", 306 1.3 oster (long) p->parityStripeID, p->which_ru, p->blockCount, procsWaiting, blocksWaiting, bufsWaiting); 307 1.3 oster for (j = 0; j < raidPtr->numCol; j++) 308 1.3 oster printf("%c", (p->issued[j]) ? '1' : '0'); 309 1.3 oster if (!p->flags) 310 1.3 oster printf(" flags: (none)"); 311 1.3 oster else { 312 1.3 oster if (p->flags & RF_PSS_UNDER_RECON) 313 1.3 oster printf(" under-recon"); 314 1.3 oster if (p->flags & RF_PSS_FORCED_ON_WRITE) 315 1.3 oster printf(" forced-w"); 316 1.3 oster if (p->flags & RF_PSS_FORCED_ON_READ) 317 1.3 oster printf(" forced-r"); 318 1.3 oster if (p->flags & RF_PSS_RECON_BLOCKED) 319 1.3 oster printf(" blocked"); 320 1.3 oster if (p->flags & RF_PSS_BUFFERWAIT) 321 1.3 oster printf(" bufwait"); 322 1.3 oster } 323 1.3 oster printf("\n"); 324 1.3 oster } 325 1.3 oster } 326 1.3 oster } 327 1.3 oster 328 1.29 perry void 329 1.19 oster rf_PrintPSStatusTable(RF_Raid_t *raidPtr) 330 1.1 oster { 331 1.15 oster RF_PSStatusHeader_t *pssTable = raidPtr->reconControl->pssTable; 332 1.3 oster RealPrintPSStatusTable(raidPtr, pssTable); 333 1.1 oster } 334