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#include "sqliteInt.h" |
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#ifdef SQLITE_ENABLE_MEMSYS5 |
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typedef struct Mem5Link Mem5Link; |
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struct Mem5Link { |
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int next; |
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int prev; |
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}; |
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#define LOGMAX 30 |
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#define CTRL_LOGSIZE 0x1f |
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#define CTRL_FREE 0x20 |
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static SQLITE_WSD struct Mem5Global { |
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int szAtom; |
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int nBlock; |
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u8 *zPool; |
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sqlite3_mutex *mutex; |
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#if defined(SQLITE_DEBUG) || defined(SQLITE_TEST) |
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u64 nAlloc; |
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u64 totalAlloc; |
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u64 totalExcess; |
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u32 currentOut; |
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u32 currentCount; |
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u32 maxOut; |
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u32 maxCount; |
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u32 maxRequest; |
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#endif |
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int aiFreelist[LOGMAX+1]; |
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u8 *aCtrl; |
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} mem5; |
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#define mem5 GLOBAL(struct Mem5Global, mem5) |
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#define MEM5LINK(idx) ((Mem5Link *)(&mem5.zPool[(idx)*mem5.szAtom])) |
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static void memsys5Unlink(int i, int iLogsize){ |
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int next, prev; |
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assert( i>=0 && i<mem5.nBlock ); |
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assert( iLogsize>=0 && iLogsize<=LOGMAX ); |
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assert( (mem5.aCtrl[i] & CTRL_LOGSIZE)==iLogsize ); |
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next = MEM5LINK(i)->next; |
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prev = MEM5LINK(i)->prev; |
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if( prev<0 ){ |
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mem5.aiFreelist[iLogsize] = next; |
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}else{ |
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MEM5LINK(prev)->next = next; |
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} |
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if( next>=0 ){ |
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MEM5LINK(next)->prev = prev; |
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} |
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} |
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static void memsys5Link(int i, int iLogsize){ |
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int x; |
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assert( sqlite3_mutex_held(mem5.mutex) ); |
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assert( i>=0 && i<mem5.nBlock ); |
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assert( iLogsize>=0 && iLogsize<=LOGMAX ); |
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assert( (mem5.aCtrl[i] & CTRL_LOGSIZE)==iLogsize ); |
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x = MEM5LINK(i)->next = mem5.aiFreelist[iLogsize]; |
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MEM5LINK(i)->prev = -1; |
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if( x>=0 ){ |
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assert( x<mem5.nBlock ); |
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MEM5LINK(x)->prev = i; |
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} |
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mem5.aiFreelist[iLogsize] = i; |
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} |
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static void memsys5Enter(void){ |
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sqlite3_mutex_enter(mem5.mutex); |
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} |
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static void memsys5Leave(void){ |
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sqlite3_mutex_leave(mem5.mutex); |
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} |
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static int memsys5Size(void *p){ |
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int iSize, i; |
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assert( p!=0 ); |
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i = (int)(((u8 *)p-mem5.zPool)/mem5.szAtom); |
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assert( i>=0 && i<mem5.nBlock ); |
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iSize = mem5.szAtom * (1 << (mem5.aCtrl[i]&CTRL_LOGSIZE)); |
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return iSize; |
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} |
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static void *memsys5MallocUnsafe(int nByte){ |
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int i; |
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int iBin; |
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int iFullSz; |
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int iLogsize; |
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assert( nByte>0 ); |
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if( nByte > 0x40000000 ) return 0; |
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#if defined(SQLITE_DEBUG) || defined(SQLITE_TEST) |
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if( (u32)nByte>mem5.maxRequest ){ |
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mem5.maxRequest = nByte; |
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} |
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#endif |
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for(iFullSz=mem5.szAtom,iLogsize=0; iFullSz<nByte; iFullSz*=2,iLogsize++){} |
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for(iBin=iLogsize; iBin<=LOGMAX && mem5.aiFreelist[iBin]<0; iBin++){} |
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if( iBin>LOGMAX ){ |
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testcase( sqlite3GlobalConfig.xLog!=0 ); |
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sqlite3_log(SQLITE_NOMEM, "failed to allocate %u bytes", nByte); |
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return 0; |
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} |
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i = mem5.aiFreelist[iBin]; |
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memsys5Unlink(i, iBin); |
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while( iBin>iLogsize ){ |
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int newSize; |
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iBin--; |
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newSize = 1 << iBin; |
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mem5.aCtrl[i+newSize] = CTRL_FREE | iBin; |
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memsys5Link(i+newSize, iBin); |
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} |
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mem5.aCtrl[i] = iLogsize; |
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#if defined(SQLITE_DEBUG) || defined(SQLITE_TEST) |
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mem5.nAlloc++; |
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mem5.totalAlloc += iFullSz; |
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mem5.totalExcess += iFullSz - nByte; |
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mem5.currentCount++; |
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mem5.currentOut += iFullSz; |
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if( mem5.maxCount<mem5.currentCount ) mem5.maxCount = mem5.currentCount; |
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if( mem5.maxOut<mem5.currentOut ) mem5.maxOut = mem5.currentOut; |
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#endif |
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#ifdef SQLITE_DEBUG |
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memset(&mem5.zPool[i*mem5.szAtom], 0xAA, iFullSz); |
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#endif |
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return (void*)&mem5.zPool[i*mem5.szAtom]; |
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} |
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static void memsys5FreeUnsafe(void *pOld){ |
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u32 size, iLogsize; |
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int iBlock; |
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iBlock = (int)(((u8 *)pOld-mem5.zPool)/mem5.szAtom); |
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assert( iBlock>=0 && iBlock<mem5.nBlock ); |
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assert( ((u8 *)pOld-mem5.zPool)%mem5.szAtom==0 ); |
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assert( (mem5.aCtrl[iBlock] & CTRL_FREE)==0 ); |
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iLogsize = mem5.aCtrl[iBlock] & CTRL_LOGSIZE; |
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size = 1<<iLogsize; |
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assert( iBlock+size-1<(u32)mem5.nBlock ); |
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mem5.aCtrl[iBlock] |= CTRL_FREE; |
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mem5.aCtrl[iBlock+size-1] |= CTRL_FREE; |
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#if defined(SQLITE_DEBUG) || defined(SQLITE_TEST) |
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assert( mem5.currentCount>0 ); |
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assert( mem5.currentOut>=(size*mem5.szAtom) ); |
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mem5.currentCount--; |
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mem5.currentOut -= size*mem5.szAtom; |
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assert( mem5.currentOut>0 || mem5.currentCount==0 ); |
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assert( mem5.currentCount>0 || mem5.currentOut==0 ); |
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#endif |
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mem5.aCtrl[iBlock] = CTRL_FREE | iLogsize; |
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while( ALWAYS(iLogsize<LOGMAX) ){ |
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int iBuddy; |
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if( (iBlock>>iLogsize) & 1 ){ |
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iBuddy = iBlock - size; |
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assert( iBuddy>=0 ); |
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}else{ |
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iBuddy = iBlock + size; |
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if( iBuddy>=mem5.nBlock ) break; |
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} |
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if( mem5.aCtrl[iBuddy]!=(CTRL_FREE | iLogsize) ) break; |
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memsys5Unlink(iBuddy, iLogsize); |
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iLogsize++; |
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if( iBuddy<iBlock ){ |
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mem5.aCtrl[iBuddy] = CTRL_FREE | iLogsize; |
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mem5.aCtrl[iBlock] = 0; |
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iBlock = iBuddy; |
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}else{ |
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mem5.aCtrl[iBlock] = CTRL_FREE | iLogsize; |
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mem5.aCtrl[iBuddy] = 0; |
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} |
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size *= 2; |
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} |
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#ifdef SQLITE_DEBUG |
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memset(&mem5.zPool[iBlock*mem5.szAtom], 0x55, size); |
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#endif |
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memsys5Link(iBlock, iLogsize); |
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} |
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static void *memsys5Malloc(int nBytes){ |
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sqlite3_int64 *p = 0; |
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if( nBytes>0 ){ |
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memsys5Enter(); |
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p = memsys5MallocUnsafe(nBytes); |
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memsys5Leave(); |
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} |
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return (void*)p; |
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} |
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static void memsys5Free(void *pPrior){ |
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assert( pPrior!=0 ); |
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memsys5Enter(); |
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memsys5FreeUnsafe(pPrior); |
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memsys5Leave(); |
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} |
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static void *memsys5Realloc(void *pPrior, int nBytes){ |
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int nOld; |
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void *p; |
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assert( pPrior!=0 ); |
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assert( (nBytes&(nBytes-1))==0 ); |
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assert( nBytes>=0 ); |
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if( nBytes==0 ){ |
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return 0; |
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} |
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nOld = memsys5Size(pPrior); |
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|
if( nBytes<=nOld ){ |
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return pPrior; |
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} |
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p = memsys5Malloc(nBytes); |
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if( p ){ |
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memcpy(p, pPrior, nOld); |
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memsys5Free(pPrior); |
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} |
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return p; |
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} |
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static int memsys5Roundup(int n){ |
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int iFullSz; |
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if( n<=mem5.szAtom*2 ){ |
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if( n<=mem5.szAtom ) return mem5.szAtom; |
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return mem5.szAtom*2; |
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} |
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if( n>0x10000000 ){ |
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if( n>0x40000000 ) return 0; |
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if( n>0x20000000 ) return 0x40000000; |
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return 0x20000000; |
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} |
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for(iFullSz=mem5.szAtom*8; iFullSz<n; iFullSz *= 4); |
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if( (iFullSz/2)>=(i64)n ) return iFullSz/2; |
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return iFullSz; |
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} |
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static int memsys5Log(int iValue){ |
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int iLog; |
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for(iLog=0; (iLog<(int)((sizeof(int)*8)-1)) && (1<<iLog)<iValue; iLog++); |
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return iLog; |
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} |
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static int memsys5Init(void *NotUsed){ |
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int ii; |
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int nByte; |
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u8 *zByte; |
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int nMinLog; |
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int iOffset; |
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UNUSED_PARAMETER(NotUsed); |
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mem5.mutex = 0; |
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assert( (sizeof(Mem5Link)&(sizeof(Mem5Link)-1))==0 ); |
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nByte = sqlite3GlobalConfig.nHeap; |
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zByte = (u8*)sqlite3GlobalConfig.pHeap; |
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assert( zByte!=0 ); |
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nMinLog = memsys5Log(sqlite3GlobalConfig.mnReq); |
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mem5.szAtom = (1<<nMinLog); |
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while( (int)sizeof(Mem5Link)>mem5.szAtom ){ |
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mem5.szAtom = mem5.szAtom << 1; |
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} |
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mem5.nBlock = (nByte / (mem5.szAtom+sizeof(u8))); |
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mem5.zPool = zByte; |
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mem5.aCtrl = (u8 *)&mem5.zPool[mem5.nBlock*mem5.szAtom]; |
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for(ii=0; ii<=LOGMAX; ii++){ |
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mem5.aiFreelist[ii] = -1; |
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} |
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iOffset = 0; |
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|
for(ii=LOGMAX; ii>=0; ii--){ |
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|
int nAlloc = (1<<ii); |
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if( (iOffset+nAlloc)<=mem5.nBlock ){ |
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mem5.aCtrl[iOffset] = ii | CTRL_FREE; |
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|
memsys5Link(iOffset, ii); |
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iOffset += nAlloc; |
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|
} |
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|
assert((iOffset+nAlloc)>mem5.nBlock); |
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|
} |
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|
if( sqlite3GlobalConfig.bMemstat==0 ){ |
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|
mem5.mutex = sqlite3MutexAlloc(SQLITE_MUTEX_STATIC_MEM); |
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|
} |
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|
|
return SQLITE_OK; |
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|
} |
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|
static void memsys5Shutdown(void *NotUsed){ |
|
|
UNUSED_PARAMETER(NotUsed); |
|
|
mem5.mutex = 0; |
|
|
return; |
|
|
} |
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|
#ifdef SQLITE_TEST |
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|
void sqlite3Memsys5Dump(const char *zFilename){ |
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|
FILE *out; |
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|
int i, j, n; |
|
|
int nMinLog; |
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|
|
if( zFilename==0 || zFilename[0]==0 ){ |
|
|
out = stdout; |
|
|
}else{ |
|
|
out = fopen(zFilename, "w"); |
|
|
if( out==0 ){ |
|
|
fprintf(stderr, "** Unable to output memory debug output log: %s **\n", |
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|
zFilename); |
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|
return; |
|
|
} |
|
|
} |
|
|
memsys5Enter(); |
|
|
nMinLog = memsys5Log(mem5.szAtom); |
|
|
for(i=0; i<=LOGMAX && i+nMinLog<32; i++){ |
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|
for(n=0, j=mem5.aiFreelist[i]; j>=0; j = MEM5LINK(j)->next, n++){} |
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|
fprintf(out, "freelist items of size %d: %d\n", mem5.szAtom << i, n); |
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|
} |
|
|
fprintf(out, "mem5.nAlloc = %llu\n", mem5.nAlloc); |
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|
fprintf(out, "mem5.totalAlloc = %llu\n", mem5.totalAlloc); |
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|
fprintf(out, "mem5.totalExcess = %llu\n", mem5.totalExcess); |
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|
fprintf(out, "mem5.currentOut = %u\n", mem5.currentOut); |
|
|
fprintf(out, "mem5.currentCount = %u\n", mem5.currentCount); |
|
|
fprintf(out, "mem5.maxOut = %u\n", mem5.maxOut); |
|
|
fprintf(out, "mem5.maxCount = %u\n", mem5.maxCount); |
|
|
fprintf(out, "mem5.maxRequest = %u\n", mem5.maxRequest); |
|
|
memsys5Leave(); |
|
|
if( out==stdout ){ |
|
|
fflush(stdout); |
|
|
}else{ |
|
|
fclose(out); |
|
|
} |
|
|
} |
|
|
#endif |
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const sqlite3_mem_methods *sqlite3MemGetMemsys5(void){ |
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static const sqlite3_mem_methods memsys5Methods = { |
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memsys5Malloc, |
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memsys5Free, |
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memsys5Realloc, |
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memsys5Size, |
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memsys5Roundup, |
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memsys5Init, |
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memsys5Shutdown, |
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0 |
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}; |
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return &memsys5Methods; |
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} |
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#endif |
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