1 /* 2 ** 2008 June 18 3 ** 4 ** The author disclaims copyright to this source code. In place of 5 ** a legal notice, here is a blessing: 6 ** 7 ** May you do good and not evil. 8 ** May you find forgiveness for yourself and forgive others. 9 ** May you share freely, never taking more than you give. 10 ** 11 ************************************************************************* 12 ** 13 ** This module implements the sqlite3_status() interface and related 14 ** functionality. 15 */ 16 #include "sqliteInt.h" 17 #include "vdbeInt.h" 18 19 /* 20 ** Variables in which to record status information. 21 */ 22 #if SQLITE_PTRSIZE>4 23 typedef sqlite3_int64 sqlite3StatValueType; 24 #else 25 typedef u32 sqlite3StatValueType; 26 #endif 27 typedef struct sqlite3StatType sqlite3StatType; 28 static SQLITE_WSD struct sqlite3StatType { 29 sqlite3StatValueType nowValue[10]; /* Current value */ 30 sqlite3StatValueType mxValue[10]; /* Maximum value */ 31 } sqlite3Stat = { {0,}, {0,} }; 32 33 /* 34 ** Elements of sqlite3Stat[] are protected by either the memory allocator 35 ** mutex, or by the pcache1 mutex. The following array determines which. 36 */ 37 static const char statMutex[] = { 38 0, /* SQLITE_STATUS_MEMORY_USED */ 39 1, /* SQLITE_STATUS_PAGECACHE_USED */ 40 1, /* SQLITE_STATUS_PAGECACHE_OVERFLOW */ 41 0, /* SQLITE_STATUS_SCRATCH_USED */ 42 0, /* SQLITE_STATUS_SCRATCH_OVERFLOW */ 43 0, /* SQLITE_STATUS_MALLOC_SIZE */ 44 0, /* SQLITE_STATUS_PARSER_STACK */ 45 1, /* SQLITE_STATUS_PAGECACHE_SIZE */ 46 0, /* SQLITE_STATUS_SCRATCH_SIZE */ 47 0, /* SQLITE_STATUS_MALLOC_COUNT */ 48 }; 49 50 51 /* The "wsdStat" macro will resolve to the status information 52 ** state vector. If writable static data is unsupported on the target, 53 ** we have to locate the state vector at run-time. In the more common 54 ** case where writable static data is supported, wsdStat can refer directly 55 ** to the "sqlite3Stat" state vector declared above. 56 */ 57 #ifdef SQLITE_OMIT_WSD 58 # define wsdStatInit sqlite3StatType *x = &GLOBAL(sqlite3StatType,sqlite3Stat) 59 # define wsdStat x[0] 60 #else 61 # define wsdStatInit 62 # define wsdStat sqlite3Stat 63 #endif 64 65 /* 66 ** Return the current value of a status parameter. The caller must 67 ** be holding the appropriate mutex. 68 */ 69 sqlite3_int64 sqlite3StatusValue(int op){ 70 wsdStatInit; 71 assert( op>=0 && op<ArraySize(wsdStat.nowValue) ); 72 assert( op>=0 && op<ArraySize(statMutex) ); 73 assert( sqlite3_mutex_held(statMutex[op] ? sqlite3Pcache1Mutex() 74 : sqlite3MallocMutex()) ); 75 return wsdStat.nowValue[op]; 76 } 77 78 /* 79 ** Add N to the value of a status record. The caller must hold the 80 ** appropriate mutex. (Locking is checked by assert()). 81 ** 82 ** The StatusUp() routine can accept positive or negative values for N. 83 ** The value of N is added to the current status value and the high-water 84 ** mark is adjusted if necessary. 85 ** 86 ** The StatusDown() routine lowers the current value by N. The highwater 87 ** mark is unchanged. N must be non-negative for StatusDown(). 88 */ 89 void sqlite3StatusUp(int op, int N){ 90 wsdStatInit; 91 assert( op>=0 && op<ArraySize(wsdStat.nowValue) ); 92 assert( op>=0 && op<ArraySize(statMutex) ); 93 assert( sqlite3_mutex_held(statMutex[op] ? sqlite3Pcache1Mutex() 94 : sqlite3MallocMutex()) ); 95 wsdStat.nowValue[op] += N; 96 if( wsdStat.nowValue[op]>wsdStat.mxValue[op] ){ 97 wsdStat.mxValue[op] = wsdStat.nowValue[op]; 98 } 99 } 100 void sqlite3StatusDown(int op, int N){ 101 wsdStatInit; 102 assert( N>=0 ); 103 assert( op>=0 && op<ArraySize(wsdStat.nowValue) ); 104 #if !defined(SQLITE_DISABLE_INTRINSIC) \ 105 && defined(__GNUC__) && GCC_VERSION>=4004000 106 (void)__sync_fetch_and_sub(&wsdStat.nowValue[op], N); 107 #else 108 assert( op>=0 && op<ArraySize(statMutex) ); 109 assert( sqlite3_mutex_held(statMutex[op] ? sqlite3Pcache1Mutex() 110 : sqlite3MallocMutex()) ); 111 wsdStat.nowValue[op] -= N; 112 #endif 113 } 114 115 /* 116 ** Adjust the highwater mark if necessary. 117 ** The caller must hold the appropriate mutex. 118 */ 119 void sqlite3StatusHighwater(int op, int X){ 120 sqlite3StatValueType newValue; 121 wsdStatInit; 122 assert( X>=0 ); 123 newValue = (sqlite3StatValueType)X; 124 assert( op>=0 && op<ArraySize(wsdStat.nowValue) ); 125 assert( op>=0 && op<ArraySize(statMutex) ); 126 assert( sqlite3_mutex_held(statMutex[op] ? sqlite3Pcache1Mutex() 127 : sqlite3MallocMutex()) ); 128 assert( op==SQLITE_STATUS_MALLOC_SIZE 129 || op==SQLITE_STATUS_PAGECACHE_SIZE 130 || op==SQLITE_STATUS_SCRATCH_SIZE 131 || op==SQLITE_STATUS_PARSER_STACK ); 132 if( newValue>wsdStat.mxValue[op] ){ 133 wsdStat.mxValue[op] = newValue; 134 } 135 } 136 137 /* 138 ** Query status information. 139 */ 140 int sqlite3_status64( 141 int op, 142 sqlite3_int64 *pCurrent, 143 sqlite3_int64 *pHighwater, 144 int resetFlag 145 ){ 146 sqlite3_mutex *pMutex; 147 wsdStatInit; 148 if( op<0 || op>=ArraySize(wsdStat.nowValue) ){ 149 return SQLITE_MISUSE_BKPT; 150 } 151 #ifdef SQLITE_ENABLE_API_ARMOR 152 if( pCurrent==0 || pHighwater==0 ) return SQLITE_MISUSE_BKPT; 153 #endif 154 pMutex = statMutex[op] ? sqlite3Pcache1Mutex() : sqlite3MallocMutex(); 155 sqlite3_mutex_enter(pMutex); 156 *pCurrent = wsdStat.nowValue[op]; 157 *pHighwater = wsdStat.mxValue[op]; 158 if( resetFlag ){ 159 wsdStat.mxValue[op] = wsdStat.nowValue[op]; 160 } 161 sqlite3_mutex_leave(pMutex); 162 (void)pMutex; /* Prevent warning when SQLITE_THREADSAFE=0 */ 163 return SQLITE_OK; 164 } 165 int sqlite3_status(int op, int *pCurrent, int *pHighwater, int resetFlag){ 166 sqlite3_int64 iCur = 0, iHwtr = 0; 167 int rc; 168 #ifdef SQLITE_ENABLE_API_ARMOR 169 if( pCurrent==0 || pHighwater==0 ) return SQLITE_MISUSE_BKPT; 170 #endif 171 rc = sqlite3_status64(op, &iCur, &iHwtr, resetFlag); 172 if( rc==0 ){ 173 *pCurrent = (int)iCur; 174 *pHighwater = (int)iHwtr; 175 } 176 return rc; 177 } 178 179 /* 180 ** Query status information for a single database connection 181 */ 182 int sqlite3_db_status( 183 sqlite3 *db, /* The database connection whose status is desired */ 184 int op, /* Status verb */ 185 int *pCurrent, /* Write current value here */ 186 int *pHighwater, /* Write high-water mark here */ 187 int resetFlag /* Reset high-water mark if true */ 188 ){ 189 int rc = SQLITE_OK; /* Return code */ 190 #ifdef SQLITE_ENABLE_API_ARMOR 191 if( !sqlite3SafetyCheckOk(db) || pCurrent==0|| pHighwater==0 ){ 192 return SQLITE_MISUSE_BKPT; 193 } 194 #endif 195 sqlite3_mutex_enter(db->mutex); 196 switch( op ){ 197 case SQLITE_DBSTATUS_LOOKASIDE_USED: { 198 *pCurrent = db->lookaside.nOut; 199 *pHighwater = db->lookaside.mxOut; 200 if( resetFlag ){ 201 db->lookaside.mxOut = db->lookaside.nOut; 202 } 203 break; 204 } 205 206 case SQLITE_DBSTATUS_LOOKASIDE_HIT: 207 case SQLITE_DBSTATUS_LOOKASIDE_MISS_SIZE: 208 case SQLITE_DBSTATUS_LOOKASIDE_MISS_FULL: { 209 testcase( op==SQLITE_DBSTATUS_LOOKASIDE_HIT ); 210 testcase( op==SQLITE_DBSTATUS_LOOKASIDE_MISS_SIZE ); 211 testcase( op==SQLITE_DBSTATUS_LOOKASIDE_MISS_FULL ); 212 assert( (op-SQLITE_DBSTATUS_LOOKASIDE_HIT)>=0 ); 213 assert( (op-SQLITE_DBSTATUS_LOOKASIDE_HIT)<3 ); 214 *pCurrent = 0; 215 *pHighwater = db->lookaside.anStat[op - SQLITE_DBSTATUS_LOOKASIDE_HIT]; 216 if( resetFlag ){ 217 db->lookaside.anStat[op - SQLITE_DBSTATUS_LOOKASIDE_HIT] = 0; 218 } 219 break; 220 } 221 222 /* 223 ** Return an approximation for the amount of memory currently used 224 ** by all pagers associated with the given database connection. The 225 ** highwater mark is meaningless and is returned as zero. 226 */ 227 case SQLITE_DBSTATUS_CACHE_USED_SHARED: 228 case SQLITE_DBSTATUS_CACHE_USED: { 229 int totalUsed = 0; 230 int i; 231 sqlite3BtreeEnterAll(db); 232 for(i=0; i<db->nDb; i++){ 233 Btree *pBt = db->aDb[i].pBt; 234 if( pBt ){ 235 Pager *pPager = sqlite3BtreePager(pBt); 236 int nByte = sqlite3PagerMemUsed(pPager); 237 if( op==SQLITE_DBSTATUS_CACHE_USED_SHARED ){ 238 nByte = nByte / sqlite3BtreeConnectionCount(pBt); 239 } 240 totalUsed += nByte; 241 } 242 } 243 sqlite3BtreeLeaveAll(db); 244 *pCurrent = totalUsed; 245 *pHighwater = 0; 246 break; 247 } 248 249 /* 250 ** *pCurrent gets an accurate estimate of the amount of memory used 251 ** to store the schema for all databases (main, temp, and any ATTACHed 252 ** databases. *pHighwater is set to zero. 253 */ 254 case SQLITE_DBSTATUS_SCHEMA_USED: { 255 int i; /* Used to iterate through schemas */ 256 int nByte = 0; /* Used to accumulate return value */ 257 258 sqlite3BtreeEnterAll(db); 259 db->pnBytesFreed = &nByte; 260 for(i=0; i<db->nDb; i++){ 261 Schema *pSchema = db->aDb[i].pSchema; 262 if( ALWAYS(pSchema!=0) ){ 263 HashElem *p; 264 265 nByte += sqlite3GlobalConfig.m.xRoundup(sizeof(HashElem)) * ( 266 pSchema->tblHash.count 267 + pSchema->trigHash.count 268 + pSchema->idxHash.count 269 + pSchema->fkeyHash.count 270 ); 271 nByte += sqlite3_msize(pSchema->tblHash.ht); 272 nByte += sqlite3_msize(pSchema->trigHash.ht); 273 nByte += sqlite3_msize(pSchema->idxHash.ht); 274 nByte += sqlite3_msize(pSchema->fkeyHash.ht); 275 276 for(p=sqliteHashFirst(&pSchema->trigHash); p; p=sqliteHashNext(p)){ 277 sqlite3DeleteTrigger(db, (Trigger*)sqliteHashData(p)); 278 } 279 for(p=sqliteHashFirst(&pSchema->tblHash); p; p=sqliteHashNext(p)){ 280 sqlite3DeleteTable(db, (Table *)sqliteHashData(p)); 281 } 282 } 283 } 284 db->pnBytesFreed = 0; 285 sqlite3BtreeLeaveAll(db); 286 287 *pHighwater = 0; 288 *pCurrent = nByte; 289 break; 290 } 291 292 /* 293 ** *pCurrent gets an accurate estimate of the amount of memory used 294 ** to store all prepared statements. 295 ** *pHighwater is set to zero. 296 */ 297 case SQLITE_DBSTATUS_STMT_USED: { 298 struct Vdbe *pVdbe; /* Used to iterate through VMs */ 299 int nByte = 0; /* Used to accumulate return value */ 300 301 db->pnBytesFreed = &nByte; 302 for(pVdbe=db->pVdbe; pVdbe; pVdbe=pVdbe->pNext){ 303 sqlite3VdbeClearObject(db, pVdbe); 304 sqlite3DbFree(db, pVdbe); 305 } 306 db->pnBytesFreed = 0; 307 308 *pHighwater = 0; /* IMP: R-64479-57858 */ 309 *pCurrent = nByte; 310 311 break; 312 } 313 314 /* 315 ** Set *pCurrent to the total cache hits or misses encountered by all 316 ** pagers the database handle is connected to. *pHighwater is always set 317 ** to zero. 318 */ 319 case SQLITE_DBSTATUS_CACHE_HIT: 320 case SQLITE_DBSTATUS_CACHE_MISS: 321 case SQLITE_DBSTATUS_CACHE_WRITE:{ 322 int i; 323 int nRet = 0; 324 assert( SQLITE_DBSTATUS_CACHE_MISS==SQLITE_DBSTATUS_CACHE_HIT+1 ); 325 assert( SQLITE_DBSTATUS_CACHE_WRITE==SQLITE_DBSTATUS_CACHE_HIT+2 ); 326 327 for(i=0; i<db->nDb; i++){ 328 if( db->aDb[i].pBt ){ 329 Pager *pPager = sqlite3BtreePager(db->aDb[i].pBt); 330 sqlite3PagerCacheStat(pPager, op, resetFlag, &nRet); 331 } 332 } 333 *pHighwater = 0; /* IMP: R-42420-56072 */ 334 /* IMP: R-54100-20147 */ 335 /* IMP: R-29431-39229 */ 336 *pCurrent = nRet; 337 break; 338 } 339 340 /* Set *pCurrent to non-zero if there are unresolved deferred foreign 341 ** key constraints. Set *pCurrent to zero if all foreign key constraints 342 ** have been satisfied. The *pHighwater is always set to zero. 343 */ 344 case SQLITE_DBSTATUS_DEFERRED_FKS: { 345 *pHighwater = 0; /* IMP: R-11967-56545 */ 346 *pCurrent = db->nDeferredImmCons>0 || db->nDeferredCons>0; 347 break; 348 } 349 350 default: { 351 rc = SQLITE_ERROR; 352 } 353 } 354 sqlite3_mutex_leave(db->mutex); 355 return rc; 356 } 357