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#include "fts3Int.h" |
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#if !defined(SQLITE_CORE) || defined(SQLITE_ENABLE_FTS3) |
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#include <assert.h> |
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#include <stdlib.h> |
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#include <string.h> |
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#include "fts3_hash.h" |
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static void *fts3HashMalloc(sqlite3_int64 n){ |
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void *p = sqlite3_malloc64(n); |
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if( p ){ |
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memset(p, 0, n); |
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} |
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return p; |
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} |
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static void fts3HashFree(void *p){ |
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sqlite3_free(p); |
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} |
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void sqlite3Fts3HashInit(Fts3Hash *pNew, char keyClass, char copyKey){ |
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assert( pNew!=0 ); |
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assert( keyClass>=FTS3_HASH_STRING && keyClass<=FTS3_HASH_BINARY ); |
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pNew->keyClass = keyClass; |
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pNew->copyKey = copyKey; |
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pNew->first = 0; |
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pNew->count = 0; |
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pNew->htsize = 0; |
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pNew->ht = 0; |
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} |
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void sqlite3Fts3HashClear(Fts3Hash *pH){ |
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Fts3HashElem *elem; |
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assert( pH!=0 ); |
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elem = pH->first; |
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pH->first = 0; |
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fts3HashFree(pH->ht); |
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pH->ht = 0; |
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pH->htsize = 0; |
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while( elem ){ |
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Fts3HashElem *next_elem = elem->next; |
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if( pH->copyKey && elem->pKey ){ |
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fts3HashFree(elem->pKey); |
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} |
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fts3HashFree(elem); |
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elem = next_elem; |
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} |
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pH->count = 0; |
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} |
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static int fts3StrHash(const void *pKey, int nKey){ |
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const char *z = (const char *)pKey; |
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unsigned h = 0; |
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if( nKey<=0 ) nKey = (int) strlen(z); |
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while( nKey > 0 ){ |
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h = (h<<3) ^ h ^ *z++; |
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nKey--; |
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} |
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return (int)(h & 0x7fffffff); |
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} |
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static int fts3StrCompare(const void *pKey1, int n1, const void *pKey2, int n2){ |
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if( n1!=n2 ) return 1; |
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return strncmp((const char*)pKey1,(const char*)pKey2,n1); |
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} |
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static int fts3BinHash(const void *pKey, int nKey){ |
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int h = 0; |
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const char *z = (const char *)pKey; |
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while( nKey-- > 0 ){ |
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h = (h<<3) ^ h ^ *(z++); |
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} |
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return h & 0x7fffffff; |
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} |
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static int fts3BinCompare(const void *pKey1, int n1, const void *pKey2, int n2){ |
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if( n1!=n2 ) return 1; |
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return memcmp(pKey1,pKey2,n1); |
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} |
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static int (*ftsHashFunction(int keyClass))(const void*,int){ |
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if( keyClass==FTS3_HASH_STRING ){ |
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return &fts3StrHash; |
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}else{ |
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assert( keyClass==FTS3_HASH_BINARY ); |
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return &fts3BinHash; |
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} |
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} |
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static int (*ftsCompareFunction(int keyClass))(const void*,int,const void*,int){ |
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if( keyClass==FTS3_HASH_STRING ){ |
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return &fts3StrCompare; |
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}else{ |
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assert( keyClass==FTS3_HASH_BINARY ); |
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return &fts3BinCompare; |
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} |
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} |
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static void fts3HashInsertElement( |
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Fts3Hash *pH, |
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struct _fts3ht *pEntry, |
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Fts3HashElem *pNew |
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){ |
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Fts3HashElem *pHead; |
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pHead = pEntry->chain; |
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if( pHead ){ |
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pNew->next = pHead; |
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pNew->prev = pHead->prev; |
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if( pHead->prev ){ pHead->prev->next = pNew; } |
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else { pH->first = pNew; } |
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pHead->prev = pNew; |
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}else{ |
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pNew->next = pH->first; |
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if( pH->first ){ pH->first->prev = pNew; } |
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pNew->prev = 0; |
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pH->first = pNew; |
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} |
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pEntry->count++; |
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pEntry->chain = pNew; |
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} |
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static int fts3Rehash(Fts3Hash *pH, int new_size){ |
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struct _fts3ht *new_ht; |
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Fts3HashElem *elem, *next_elem; |
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int (*xHash)(const void*,int); |
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assert( (new_size & (new_size-1))==0 ); |
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new_ht = (struct _fts3ht *)fts3HashMalloc( new_size*sizeof(struct _fts3ht) ); |
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if( new_ht==0 ) return 1; |
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fts3HashFree(pH->ht); |
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pH->ht = new_ht; |
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pH->htsize = new_size; |
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xHash = ftsHashFunction(pH->keyClass); |
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for(elem=pH->first, pH->first=0; elem; elem = next_elem){ |
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int h = (*xHash)(elem->pKey, elem->nKey) & (new_size-1); |
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next_elem = elem->next; |
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fts3HashInsertElement(pH, &new_ht[h], elem); |
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} |
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return 0; |
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} |
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static Fts3HashElem *fts3FindElementByHash( |
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const Fts3Hash *pH, |
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const void *pKey, |
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int nKey, |
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int h |
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){ |
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Fts3HashElem *elem; |
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int count; |
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int (*xCompare)(const void*,int,const void*,int); |
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if( pH->ht ){ |
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struct _fts3ht *pEntry = &pH->ht[h]; |
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elem = pEntry->chain; |
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count = pEntry->count; |
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xCompare = ftsCompareFunction(pH->keyClass); |
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while( count-- && elem ){ |
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if( (*xCompare)(elem->pKey,elem->nKey,pKey,nKey)==0 ){ |
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return elem; |
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} |
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elem = elem->next; |
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} |
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} |
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return 0; |
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} |
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static void fts3RemoveElementByHash( |
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Fts3Hash *pH, |
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Fts3HashElem* elem, |
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int h |
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){ |
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struct _fts3ht *pEntry; |
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if( elem->prev ){ |
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elem->prev->next = elem->next; |
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}else{ |
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pH->first = elem->next; |
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} |
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if( elem->next ){ |
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elem->next->prev = elem->prev; |
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} |
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pEntry = &pH->ht[h]; |
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if( pEntry->chain==elem ){ |
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pEntry->chain = elem->next; |
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} |
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pEntry->count--; |
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if( pEntry->count<=0 ){ |
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pEntry->chain = 0; |
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} |
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if( pH->copyKey && elem->pKey ){ |
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fts3HashFree(elem->pKey); |
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} |
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fts3HashFree( elem ); |
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pH->count--; |
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if( pH->count<=0 ){ |
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assert( pH->first==0 ); |
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assert( pH->count==0 ); |
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fts3HashClear(pH); |
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} |
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} |
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Fts3HashElem *sqlite3Fts3HashFindElem( |
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const Fts3Hash *pH, |
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const void *pKey, |
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int nKey |
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){ |
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int h; |
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int (*xHash)(const void*,int); |
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if( pH==0 || pH->ht==0 ) return 0; |
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xHash = ftsHashFunction(pH->keyClass); |
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assert( xHash!=0 ); |
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h = (*xHash)(pKey,nKey); |
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assert( (pH->htsize & (pH->htsize-1))==0 ); |
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return fts3FindElementByHash(pH,pKey,nKey, h & (pH->htsize-1)); |
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} |
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void *sqlite3Fts3HashFind(const Fts3Hash *pH, const void *pKey, int nKey){ |
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Fts3HashElem *pElem; |
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pElem = sqlite3Fts3HashFindElem(pH, pKey, nKey); |
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return pElem ? pElem->data : 0; |
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} |
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void *sqlite3Fts3HashInsert( |
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Fts3Hash *pH, |
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const void *pKey, |
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int nKey, |
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void *data |
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){ |
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int hraw; |
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int h; |
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Fts3HashElem *elem; |
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Fts3HashElem *new_elem; |
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int (*xHash)(const void*,int); |
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assert( pH!=0 ); |
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xHash = ftsHashFunction(pH->keyClass); |
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assert( xHash!=0 ); |
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hraw = (*xHash)(pKey, nKey); |
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assert( (pH->htsize & (pH->htsize-1))==0 ); |
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h = hraw & (pH->htsize-1); |
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elem = fts3FindElementByHash(pH,pKey,nKey,h); |
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if( elem ){ |
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void *old_data = elem->data; |
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if( data==0 ){ |
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fts3RemoveElementByHash(pH,elem,h); |
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}else{ |
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elem->data = data; |
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} |
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return old_data; |
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} |
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if( data==0 ) return 0; |
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if( (pH->htsize==0 && fts3Rehash(pH,8)) |
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|| (pH->count>=pH->htsize && fts3Rehash(pH, pH->htsize*2)) |
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){ |
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pH->count = 0; |
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return data; |
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} |
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assert( pH->htsize>0 ); |
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new_elem = (Fts3HashElem*)fts3HashMalloc( sizeof(Fts3HashElem) ); |
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if( new_elem==0 ) return data; |
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if( pH->copyKey && pKey!=0 ){ |
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new_elem->pKey = fts3HashMalloc( nKey ); |
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if( new_elem->pKey==0 ){ |
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fts3HashFree(new_elem); |
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return data; |
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} |
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memcpy((void*)new_elem->pKey, pKey, nKey); |
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}else{ |
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new_elem->pKey = (void*)pKey; |
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} |
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new_elem->nKey = nKey; |
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pH->count++; |
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assert( pH->htsize>0 ); |
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assert( (pH->htsize & (pH->htsize-1))==0 ); |
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h = hraw & (pH->htsize-1); |
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fts3HashInsertElement(pH, &pH->ht[h], new_elem); |
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new_elem->data = data; |
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return 0; |
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} |
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#endif |
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