提交 976cf60b 编写于 作者: H Hongze Cheng

more TDB

上级 f9c09351
...@@ -8,6 +8,7 @@ target_sources(tdb ...@@ -8,6 +8,7 @@ target_sources(tdb
"src/db/tdbBtree.c" "src/db/tdbBtree.c"
"src/db/tdbDb.c" "src/db/tdbDb.c"
"src/db/tdbEnv.c" "src/db/tdbEnv.c"
"src/db/tdbPage.c"
) )
target_include_directories( target_include_directories(
......
...@@ -405,6 +405,16 @@ static int tdbBtreeInitPage(SPage *pPage, void *arg) { ...@@ -405,6 +405,16 @@ static int tdbBtreeInitPage(SPage *pPage, void *arg) {
} }
#ifndef TDB_BTREE_BALANCE #ifndef TDB_BTREE_BALANCE
typedef struct {
SBTree *pBt;
SPage *pParent;
int idx;
i8 nOldPages;
SPage *pOldPages[3];
i8 nNewPages;
SPage *pNewPages[5];
} SBtreeBalanceHelper;
static int tdbBtreeCopyPageContent(SPage *pFrom, SPage *pTo) { static int tdbBtreeCopyPageContent(SPage *pFrom, SPage *pTo) {
/* TODO */ /* TODO */
...@@ -450,20 +460,8 @@ static int tdbBtreeBalanceDeeper(SBTree *pBt, SPage *pRoot, SPage **ppChild) { ...@@ -450,20 +460,8 @@ static int tdbBtreeBalanceDeeper(SBTree *pBt, SPage *pRoot, SPage **ppChild) {
return 0; return 0;
} }
static int tdbBtreeBalanceNonRoot(SBTree *pBt, SPage *pParent, int idx) { static int tdbBtreeBalanceStep1(SBtreeBalanceHelper *pBlh) {
int nOldPages; #if 0
SPage *pOldPages[3];
int nNewPages;
SPage *pNewPages[5];
void *pCell;
SPgno pgno;
int i;
int nDiv;
int ret;
SPage *pPage;
void *pCellDiv[2];
{
// TODO: Find three or less sibling pages on either side // TODO: Find three or less sibling pages on either side
i = pParent->pPageHdr->nCells + pParent->nOverflow; i = pParent->pPageHdr->nCells + pParent->nOverflow;
if (i < 1) { if (i < 1) {
...@@ -516,26 +514,84 @@ static int tdbBtreeBalanceNonRoot(SBTree *pBt, SPage *pParent, int idx) { ...@@ -516,26 +514,84 @@ static int tdbBtreeBalanceNonRoot(SBTree *pBt, SPage *pParent, int idx) {
} }
/* code */ /* code */
} }
#endif
return 0;
}
static int tdbBtreeBalanceStep2(SBtreeBalanceHelper *pBlh) {
// TODO
return 0;
}
static int tdbBtreeBalanceStep3(SBtreeBalanceHelper *pBlh) {
// TODO
return 0;
}
static int tdbBtreeBalanceStep4(SBtreeBalanceHelper *pBlh) {
// TODO
return 0;
}
static int tdbBtreeBalanceStep5(SBtreeBalanceHelper *pBlh) {
// TODO
return 0;
}
static int tdbBtreeBalanceStep6(SBtreeBalanceHelper *pBlh) {
// TODO
return 0;
}
static int tdbBtreeBalanceNonRoot(SBTree *pBt, SPage *pParent, int idx) {
int ret;
SBtreeBalanceHelper blh;
blh.pBt = pBt;
blh.pParent = pParent;
blh.idx = idx;
// Step 1: find two sibling pages and get engough info about the old pages
ret = tdbBtreeBalanceStep1(&blh);
if (ret < 0) {
ASSERT(0);
return -1;
} }
{ // Step 2: Load all cells on the old page and the divider cells
// TODO: Load all cells on the old page and the divider cells ret = tdbBtreeBalanceStep2(&blh);
if (ret < 0) {
ASSERT(0);
return -1;
} }
{ // Step 3: Get the number of pages needed to hold all cells
// TODO: Get the number of pages needed to hold all cells ret = tdbBtreeBalanceStep3(&blh);
if (ret < 0) {
ASSERT(0);
return -1;
} }
{ // Step 4: Allocate enough new pages. Reuse old pages as much as possible
// TODO: Allocate enough new pages. Reuse old pages as much as possible ret = tdbBtreeBalanceStep4(&blh);
if (ret < 0) {
ASSERT(0);
return -1;
} }
{ // Step 5: Insert new divider cells into pParent
// TODO: Insert new divider cells into pParent ret = tdbBtreeBalanceStep5(&blh);
if (ret < 0) {
ASSERT(0);
return -1;
} }
{ // Step 6: Update the sibling pages
// TODO: Update the sibling pages ret = tdbBtreeBalanceStep6(&blh);
if (ret < 0) {
ASSERT(0);
return -1;
} }
{ {
......
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