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Minor simplifications to btree.c in support of full-coverage testing.
FossilOrigin-Name: 364df6c7735447cc2187923918a35bf62d82decc
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18
manifest
18
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@@ -1,8 +1,8 @@
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-----BEGIN PGP SIGNED MESSAGE-----
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Hash: SHA1
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C Tweaks\sto\scomments\sin\spager.c.\s\sFix\stwo\scompiler\swarnings.
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D 2010-08-14T12:42:45
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C Minor\ssimplifications\sto\sbtree.c\sin\ssupport\sof\sfull-coverage\stesting.
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D 2010-08-14T16:02:52
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F Makefile.arm-wince-mingw32ce-gcc d6df77f1f48d690bd73162294bbba7f59507c72f
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F Makefile.in ec08dc838fd8110fe24c92e5130bcd91cbb1ff2e
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F Makefile.linux-gcc 91d710bdc4998cb015f39edf3cb314ec4f4d7e23
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@@ -116,7 +116,7 @@ F src/auth.c 523da7fb4979469955d822ff9298352d6b31de34
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F src/backup.c 51d83300fe0baee39405c416ceb19a58ed30a8ed
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F src/bitvec.c af50f1c8c0ff54d6bdb7a80e2fceca5a93670bef
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F src/btmutex.c 96a12f50f7a17475155971a241d85ec5171573ff
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F src/btree.c 042a5c0a6a8b6121019b258737872b1ab703d39e
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F src/btree.c 4d861dd1620afb925cd4192bbf37ae9adb0f9fa1
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F src/btree.h b4ba2fdf6b64c7c376bdfffa826af6b786b151d9
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F src/btreeInt.h 5b034ff54800046cc5870605d683ac1f9134bd99
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F src/build.c 0018d49629fc4807100c988dd191dd95e185bb38
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@@ -846,14 +846,14 @@ F tool/speedtest2.tcl ee2149167303ba8e95af97873c575c3e0fab58ff
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F tool/speedtest8.c 2902c46588c40b55661e471d7a86e4dd71a18224
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F tool/speedtest8inst1.c 293327bc76823f473684d589a8160bde1f52c14e
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F tool/vdbe-compress.tcl d70ea6d8a19e3571d7ab8c9b75cba86d1173ff0f
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P d8bbab78fa56b076dfafb36daa7d6ef0b07f9a44
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R 00ed3364cfce8a4105ed9a3a25cad7ed
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P 68a49f7fe382e4d36e1259cdeec956c942906ddb
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R b1c481dfca4b477e31b2e4af146892a8
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U drh
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Z 25d17dd4620d7e65e11d0b88322d1479
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Z e57dcfeb0f939d5ce958fed0088bea4e
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@@ -1 +1 @@
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68a49f7fe382e4d36e1259cdeec956c942906ddb
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364df6c7735447cc2187923918a35bf62d82decc
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31
src/btree.c
31
src/btree.c
@@ -32,7 +32,16 @@ int sqlite3BtreeTrace=1; /* True to enable tracing */
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# define TRACE(X)
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#endif
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/*
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** Extract a 2-byte big-endian integer from an array of unsigned bytes.
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** But if the value is zero, make it 65536.
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**
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** This routine is used to extract the "offset to cell content area" value
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** from the header of a btree page. If the page size is 65536 and the page
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** is empty, the offset should be 65536, but the 2-byte value stores zero.
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** This routine makes the necessary adjustment to 65536.
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*/
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#define get2byteNotZero(X) (((((int)get2byte(X))-1)&0xffff)+1)
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#ifndef SQLITE_OMIT_SHARED_CACHE
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/*
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@@ -1154,8 +1163,7 @@ static int allocateSpace(MemPage *pPage, int nByte, int *pIdx){
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nFrag = data[hdr+7];
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assert( pPage->cellOffset == hdr + 12 - 4*pPage->leaf );
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gap = pPage->cellOffset + 2*pPage->nCell;
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top = get2byte(&data[hdr+5]);
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if( top==0 ) top = 65536;
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top = get2byteNotZero(&data[hdr+5]);
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if( gap>top ) return SQLITE_CORRUPT_BKPT;
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testcase( gap+2==top );
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testcase( gap+1==top );
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@@ -1165,8 +1173,7 @@ static int allocateSpace(MemPage *pPage, int nByte, int *pIdx){
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/* Always defragment highly fragmented pages */
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rc = defragmentPage(pPage);
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if( rc ) return rc;
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top = get2byte(&data[hdr+5]);
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if( top==0 ) top = 65536;
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top = get2byteNotZero(&data[hdr+5]);
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}else if( gap+2<=top ){
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/* Search the freelist looking for a free slot big enough to satisfy
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** the request. The allocation is made from the first free slot in
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@@ -1208,8 +1215,7 @@ static int allocateSpace(MemPage *pPage, int nByte, int *pIdx){
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if( gap+2+nByte>top ){
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rc = defragmentPage(pPage);
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if( rc ) return rc;
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top = get2byte(&data[hdr+5]);
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if( top==0 ) top = 65536;
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top = get2byteNotZero(&data[hdr+5]);
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assert( gap+nByte<=top );
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}
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@@ -1392,8 +1398,7 @@ static int btreeInitPage(MemPage *pPage){
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pPage->nOverflow = 0;
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usableSize = pBt->usableSize;
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pPage->cellOffset = cellOffset = hdr + 12 - 4*pPage->leaf;
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top = get2byte(&data[hdr+5]);
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if( top==0 ) top = 65536;
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top = get2byteNotZero(&data[hdr+5]);
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pPage->nCell = get2byte(&data[hdr+3]);
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if( pPage->nCell>MX_CELL(pBt) ){
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/* To many cells for a single page. The page must be corrupt */
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@@ -5490,7 +5495,7 @@ static void assemblePage(
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/* Check that the page has just been zeroed by zeroPage() */
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assert( pPage->nCell==0 );
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assert( get2byte(&data[hdr+5])==(nUsable&0xffff) );
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assert( get2byteNotZero(&data[hdr+5])==nUsable );
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pCellptr = &data[pPage->cellOffset + nCell*2];
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cellbody = nUsable;
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@@ -5556,7 +5561,8 @@ static int balance_quick(MemPage *pParent, MemPage *pPage, u8 *pSpace){
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assert( sqlite3PagerIswriteable(pParent->pDbPage) );
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assert( pPage->nOverflow==1 );
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if( pPage->nCell<=0 ) return SQLITE_CORRUPT_BKPT;
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/* This error condition is now caught prior to reaching this function */
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if( NEVER(pPage->nCell<=0) ) return SQLITE_CORRUPT_BKPT;
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/* Allocate a new page. This page will become the right-sibling of
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** pPage. Make the parent page writable, so that the new divider cell
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@@ -7665,8 +7671,7 @@ static int checkTreePage(
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if( hit==0 ){
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pCheck->mallocFailed = 1;
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}else{
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int contentOffset = get2byte(&data[hdr+5]);
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if( contentOffset==0 ) contentOffset = 65536;
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int contentOffset = get2byteNotZero(&data[hdr+5]);
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assert( contentOffset<=usableSize ); /* Enforced by btreeInitPage() */
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memset(hit+contentOffset, 0, usableSize-contentOffset);
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memset(hit, 1, contentOffset);
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