1 /* $NetBSD: rf_raid.h,v 1.25 2004/01/10 00:56:28 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@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_raid.h -- main header file for RAID driver 31 **********************************************/ 32 33 34 #ifndef _RF__RF_RAID_H_ 35 #define _RF__RF_RAID_H_ 36 37 #include <dev/raidframe/raidframevar.h> 38 #include "rf_archs.h" 39 #include "rf_threadstuff.h" 40 41 #include "rf_netbsd.h" 42 43 #include <sys/disklabel.h> 44 #include <sys/types.h> 45 #include <sys/queue.h> 46 47 #include "rf_alloclist.h" 48 #include "rf_stripelocks.h" 49 #include "rf_layout.h" 50 #include "rf_disks.h" 51 #include "rf_debugMem.h" 52 #include "rf_diskqueue.h" 53 #include "rf_reconstruct.h" 54 #include "rf_acctrace.h" 55 #include "rf_fifo.h" 56 57 #if RF_INCLUDE_PARITYLOGGING > 0 58 #include "rf_paritylog.h" 59 #endif /* RF_INCLUDE_PARITYLOGGING > 0 */ 60 61 #define RF_COMPONENT_LABEL_VERSION_1 1 62 #define RF_COMPONENT_LABEL_VERSION 2 63 #define RF_RAID_DIRTY 0 64 #define RF_RAID_CLEAN 1 65 66 67 /* 68 * Each row in the array is a distinct parity group, so 69 * each has it's own status, which is one of the following. 70 */ 71 typedef enum RF_RowStatus_e { 72 rf_rs_optimal, 73 rf_rs_degraded, 74 rf_rs_reconstructing, 75 rf_rs_reconfigured 76 } RF_RowStatus_t; 77 78 struct RF_CumulativeStats_s { 79 struct timeval start; /* the time when the stats were last started */ 80 struct timeval stop; /* the time when the stats were last stopped */ 81 long sum_io_us; /* sum of all user response times (us) */ 82 long num_ios; /* total number of I/Os serviced */ 83 long num_sect_moved; /* total number of sectors read or written */ 84 }; 85 86 struct RF_ThroughputStats_s { 87 RF_DECLARE_MUTEX(mutex) /* a mutex used to lock the configuration 88 * stuff */ 89 struct timeval start; /* timer started when numOutstandingRequests 90 * moves from 0 to 1 */ 91 struct timeval stop; /* timer stopped when numOutstandingRequests 92 * moves from 1 to 0 */ 93 RF_uint64 sum_io_us; /* total time timer is enabled */ 94 RF_uint64 num_ios; /* total number of ios processed by RAIDframe */ 95 long num_out_ios; /* number of outstanding ios */ 96 }; 97 98 struct RF_Raid_s { 99 /* This portion never changes, and can be accessed without locking */ 100 /* an exception is Disks[][].status, which requires locking when it is 101 * changed. XXX this is no longer true. numSpare and friends can 102 * change now. 103 */ 104 u_int numCol; /* number of columns of disks, typically == # 105 * of disks/rank */ 106 u_int numSpare; /* number of spare disks */ 107 int maxQueueDepth; /* max disk queue depth */ 108 RF_SectorCount_t totalSectors; /* total number of sectors in the 109 * array */ 110 RF_SectorCount_t sectorsPerDisk; /* number of sectors on each 111 * disk */ 112 u_int logBytesPerSector; /* base-2 log of the number of bytes 113 * in a sector */ 114 u_int bytesPerSector; /* bytes in a sector */ 115 RF_int32 sectorMask; /* mask of bytes-per-sector */ 116 117 RF_RaidLayout_t Layout; /* all information related to layout */ 118 RF_RaidDisk_t *Disks; /* all information related to physical disks */ 119 RF_DiskQueue_t *Queues;/* all information related to disk queues */ 120 const RF_DiskQueueSW_t *qType;/* pointer to the DiskQueueSW used for the 121 component queues. */ 122 /* NOTE: This is an anchor point via which the queues can be 123 * accessed, but the enqueue/dequeue routines in diskqueue.c use a 124 * local copy of this pointer for the actual accesses. */ 125 /* The remainder of the structure can change, and therefore requires 126 * locking on reads and updates */ 127 RF_DECLARE_MUTEX(mutex) /* mutex used to serialize access to 128 * the fields below */ 129 RF_RowStatus_t status; /* the status of each row in the array */ 130 int valid; /* indicates successful configuration */ 131 RF_LockTableEntry_t *lockTable; /* stripe-lock table */ 132 RF_LockTableEntry_t *quiesceLock; /* quiesnce table */ 133 int numFailures; /* total number of failures in the array */ 134 int numNewFailures; /* number of *new* failures (that havn't 135 caused a mod_counter update */ 136 137 int parity_good; /* !0 if parity is known to be correct */ 138 int serial_number; /* a "serial number" for this set */ 139 int mod_counter; /* modification counter for component labels */ 140 int clean; /* the clean bit for this array. */ 141 142 int openings; /* Number of IO's which can be scheduled 143 simultaneously (high-level - not a 144 per-component limit)*/ 145 146 int maxOutstanding; /* maxOutstanding requests (per-component) */ 147 int autoconfigure; /* automatically configure this RAID set. 148 0 == no, 1 == yes */ 149 int root_partition; /* Use this set as / 150 0 == no, 1 == yes*/ 151 int last_unit; /* last unit number (e.g. 0 for /dev/raid0) 152 of this component. Used for autoconfigure 153 only. */ 154 int config_order; /* 0 .. n. The order in which the component 155 should be auto-configured. E.g. 0 is will 156 done first, (and would become raid0). 157 This may be in conflict with last_unit!!?! */ 158 /* Not currently used. */ 159 160 /* queue to gather up requests from KernelWakeupFunc() and let 161 a kernel thread deal with calling rf_DiskIOComplete and any 162 callback functions. */ 163 TAILQ_HEAD(iodone_q,RF_DiskQueueData_s) iodone; 164 /* and a lock to protect it */ 165 struct simplelock iodone_lock; 166 167 /* DAG Node Pool - a pool that contains "arrays" of RF_DagNode_t's */ 168 struct pool dag_node_pool; 169 170 /* 171 * Cleanup stuff 172 */ 173 RF_ShutdownList_t *shutdownList; /* shutdown activities */ 174 RF_AllocListElem_t *cleanupList; /* memory to be freed at 175 * shutdown time */ 176 177 /* 178 * Recon stuff 179 */ 180 RF_HeadSepLimit_t headSepLimit; 181 int numFloatingReconBufs; 182 int reconInProgress; 183 RF_DECLARE_COND(waitForReconCond) 184 RF_RaidReconDesc_t *reconDesc; /* reconstruction descriptor */ 185 RF_ReconCtrl_t *reconControl; /* reconstruction control structure 186 * pointers for each row in the array */ 187 188 /* 189 * Array-quiescence stuff 190 */ 191 RF_DECLARE_MUTEX(access_suspend_mutex) 192 RF_IoCount_t accesses_suspended; 193 RF_IoCount_t accs_in_flight; 194 int access_suspend_release; 195 int waiting_for_quiescence; 196 RF_CallbackDesc_t *quiesce_wait_list; 197 198 /* 199 * Statistics 200 */ 201 #if !defined(_KERNEL) && !defined(SIMULATE) 202 RF_ThroughputStats_t throughputstats; 203 #endif /* !KERNEL && !SIMULATE */ 204 RF_CumulativeStats_t userstats; 205 int parity_rewrite_stripes_done; 206 int recon_stripes_done; 207 int copyback_stripes_done; 208 209 int recon_in_progress; 210 int parity_rewrite_in_progress; 211 int copyback_in_progress; 212 int adding_hot_spare; 213 214 /* 215 * Engine thread control 216 */ 217 RF_DECLARE_MUTEX(node_queue_mutex) 218 RF_DagNode_t *node_queue; 219 RF_Thread_t parity_rewrite_thread; 220 RF_Thread_t copyback_thread; 221 RF_Thread_t engine_thread; 222 RF_Thread_t engine_helper_thread; 223 RF_Thread_t recon_thread; 224 int shutdown_engine; 225 int shutdown_raidio; 226 int dags_in_flight; /* debug */ 227 228 /* 229 * PSS (Parity Stripe Status) stuff 230 */ 231 long pssTableSize; 232 struct pool pss_pool; 233 struct pool pss_issued_pool; 234 235 /* 236 * Reconstruction stuff 237 */ 238 int procsInBufWait; 239 int numFullReconBuffers; 240 RF_AccTraceEntry_t *recon_tracerecs; 241 unsigned long accumXorTimeUs; 242 243 /* 244 * nAccOutstanding, waitShutdown protected by desc freelist lock 245 * (This may seem strange, since that's a central serialization point 246 * for a per-array piece of data, but otherwise, it'd be an extra 247 * per-array lock, and that'd only be less efficient...) 248 */ 249 RF_DECLARE_COND(outstandingCond) 250 int waitShutdown; 251 int nAccOutstanding; 252 253 RF_DiskId_t **diskids; 254 255 int raidid; 256 RF_AccTotals_t acc_totals; 257 int keep_acc_totals; 258 259 struct raidcinfo *raid_cinfo; /* array of component info */ 260 261 int terminate_disk_queues; 262 263 /* 264 * XXX 265 * 266 * config-specific information should be moved 267 * somewhere else, or at least hung off this 268 * in some generic way 269 */ 270 #if RF_INCLUDE_CHAINDECLUSTER > 0 271 272 /* used by rf_compute_workload_shift */ 273 RF_RowCol_t hist_diskreq[RF_MAXCOL]; 274 #endif 275 /* used by declustering */ 276 int noRotate; 277 278 #if RF_INCLUDE_PARITYLOGGING > 0 279 /* used by parity logging */ 280 RF_SectorCount_t regionLogCapacity; 281 RF_ParityLogQueue_t parityLogPool; /* pool of unused parity logs */ 282 RF_RegionInfo_t *regionInfo; /* array of region state */ 283 int numParityLogs; 284 int numSectorsPerLog; 285 int regionParityRange; 286 int logsInUse; /* debugging */ 287 RF_ParityLogDiskQueue_t parityLogDiskQueue; /* state of parity 288 * logging disk work */ 289 RF_RegionBufferQueue_t regionBufferPool; /* buffers for holding 290 * region log */ 291 RF_RegionBufferQueue_t parityBufferPool; /* buffers for holding 292 * parity */ 293 caddr_t parityLogBufferHeap; /* pool of unused parity logs */ 294 RF_Thread_t pLogDiskThreadHandle; 295 296 #endif /* RF_INCLUDE_PARITYLOGGING > 0 */ 297 }; 298 #endif /* !_RF__RF_RAID_H_ */ 299