Commit 8f738760 authored by pekka@mysql.com's avatar pekka@mysql.com

ndb: wl-2066: remove dead code

parent 080fbb62
......@@ -101,7 +101,6 @@ ndbout << "Ptr: " << ptr.p->word32 << " \tIndex: " << tmp_string << " \tValue: "
#define ZPOS_PREV_PAGE 11
#define ZNORMAL_PAGE_TYPE 0
#define ZOVERFLOW_PAGE_TYPE 1
#define ZLONG_PAGE_TYPE 2
#define ZDEFAULT_LIST 3
#define ZWORDS_IN_PAGE 2048
/* --------------------------------------------------------------------------------- */
......@@ -135,16 +134,6 @@ ndbout << "Ptr: " << ptr.p->word32 << " \tIndex: " << tmp_string << " \tValue: "
#define ZPAGEZERO_NODETYPE 33
#define ZPAGEZERO_SLACK_CHECK 34
/* --------------------------------------------------------------------------------- */
/* CONSTANTS FOR THE LONG KEY PAGES */
/* --------------------------------------------------------------------------------- */
/* --------------------------------------------------------------------------------- */
// Maximum number of elements in long key page = (ZWORDS_IN_PAGE - ZHEAD_SIZE) /
// (MinKeySize + IndexSize) = (2048 - 32) / (8 + 1) = 224. MinKeySize is actually 9
// because 8 is the largest normal key size.
#define ZMAX_NO_OF_LONGKEYS_IN_PAGE 225
#define ZMAX_LONG_KEY_ARRAY_INDEX 3
#define ZACTIVE_LONG_KEY_LEN 1
/* --------------------------------------------------------------------------------- */
/* CONSTANTS IN ALPHABETICAL ORDER */
/* --------------------------------------------------------------------------------- */
#define ZADDFRAG 0
......@@ -395,49 +384,6 @@ enum State {
// Records
//----------------------------------------------------------------------------------
// LONGKEY PAGE RECORD
//
// A long key page consist of a header part, a key data part and an index part. The
// page starts with a header of size HEAD_SIZE. As you can see below, not every word
// in the header is used. After the header comes the data part, where the actual
// keys are stored. A key is always inserted after the existing keys in the data
// part. If we have a fragmented data part and a new key doesn't fit after the
// existing keys we reorganize the keys. The index part starts at the end of the
// page and grows towards the end of the data part. This means that the limit
// between the data part and the index part is floating. Each inserted key have a
// word in the index part that describes size and position of the key in the data
// part. The free indexes in the index part are single linked.
//----------------------------------------------------------------------------------
union LongKeyPage {
struct {
Uint32 pageId; // ZPOS_PAGE_ID 0
Uint32 b;
// The number of keys in page.
Uint32 noOfElements; // ZPOS_NO_ELEM_IN_PAGE 2
Uint32 d;
Uint32 e;
// The free area in the data part of page.
Uint32 freeArea; // ZPOS_FREE_AREA_IN_PAGE 5
// The index position, which defines the limit between the data and the index part.
Uint32 highestIndex; // ZPOS_LAST_INDEX 6
// The position where to insert the actual key in the data part.
Uint32 insertPos; // ZPOS_INSERT_INDEX 7
// Position in a page array where the pages are stored in a double linked list.
// Based on the free area in the page. Values 0 to 3.
Uint32 pageArrayPos; // ZPOS_ARRAY_POS 8
// Next free position in the index part.
Uint32 nextFreeIndex; // ZPOS_NEXT_FREE_INDEX 9
// Next page in the double linked list.
Uint32 nextPage; // ZPOS_NEXT_PAGE 10
// Previous page in the double linked list.
Uint32 prevPage; // ZPOS_PREV_PAGE 11
} header;
// This is kept to keep the logic and to make changes to a minimum.
Uint32 word32[2048];
};
/* --------------------------------------------------------------------------------- */
/* UNDO HEADER RECORD */
/* --------------------------------------------------------------------------------- */
......@@ -447,9 +393,7 @@ enum State {
ZPAGE_INFO = 0,
ZOVER_PAGE_INFO = 1,
ZOP_INFO = 2,
ZUNDO_INSERT_LONG_KEY = 3,
ZUNDO_DELETE_LONG_KEY = 4,
ZNO_UNDORECORD_TYPES = 5
ZNO_UNDORECORD_TYPES = 3
};
UintR tableId;
UintR rootFragId;
......@@ -1061,7 +1005,6 @@ private:
void releaseScanRec(Signal* signal);
bool searchScanContainer(Signal* signal);
void sendNextScanConf(Signal* signal);
void sendScaninfo(Signal* signal);
void setlock(Signal* signal);
void takeOutActiveScanOp(Signal* signal);
void takeOutScanLockQueue(Uint32 scanRecIndex);
......@@ -1073,16 +1016,8 @@ private:
void increaselistcont(Signal* signal);
void seizeLeftlist(Signal* signal);
void seizeRightlist(Signal* signal);
void allocLongOverflowPage(Signal* signal);
void allocSpecificLongOverflowPage(Signal* signal);
void getLongKeyPage(Signal* signal);
void initLongOverpage(Signal* signal);
void storeLongKeys(Signal* signal);
void storeLongKeysAtPos(Signal* signal);
void reorgLongPage(Signal* signal);
void readTablePk(Uint32 localkey1);
void getElement(Signal* signal);
void searchLongKey(Signal* signal);
void getdirindex(Signal* signal);
void commitdelete(Signal* signal, bool systemRestart);
void deleteElement(Signal* signal);
......@@ -1090,15 +1025,6 @@ private:
void releaseLeftlist(Signal* signal);
void releaseRightlist(Signal* signal);
void checkoverfreelist(Signal* signal);
void deleteLongKey(Signal* signal);
void removeFromPageArrayList(Signal* signal);
void insertPageArrayList(Signal* signal);
void checkPageArrayList(Signal* signal, const char *);
void checkPageB4Insert(Uint32, const char *);
void checkPageB4Remove(Uint32, const char *);
void checkIndexInLongKeyPage(Uint32, const char *);
void printoutInfoAndShutdown(LongKeyPage *);
void releaseLongPage(Signal* signal);
void abortOperation(Signal* signal);
void accAbortReqLab(Signal* signal, bool sendConf);
void commitOperation(Signal* signal);
......@@ -1287,8 +1213,6 @@ private:
/* --------------------------------------------------------------------------------- */
Page8 *page8;
/* 8 KB PAGE */
Page8Ptr aslpPageptr;
Page8Ptr alpPageptr;
Page8Ptr ancPageptr;
Page8Ptr colPageptr;
Page8Ptr ccoPageptr;
......@@ -1299,10 +1223,8 @@ private:
Page8Ptr gdiPageptr;
Page8Ptr gePageptr;
Page8Ptr gflPageptr;
Page8Ptr glkPageptr;
Page8Ptr idrPageptr;
Page8Ptr ilcPageptr;
Page8Ptr iloPageptr;
Page8Ptr inpPageptr;
Page8Ptr iopPageptr;
Page8Ptr lastPageptr;
......@@ -1310,17 +1232,8 @@ private:
Page8Ptr lcnPageptr;
Page8Ptr lcnCopyPageptr;
Page8Ptr lupPageptr;
Page8Ptr dlkPageptr;
Page8Ptr ipaPagePtr;
Page8Ptr priPageptr;
Page8Ptr pwiPageptr;
Page8Ptr rfpPageptr;
Page8Ptr relpPageptr;
Page8Ptr rlopPageptr;
Page8Ptr slkPageptr;
Page8Ptr slkCopyPageptr;
Page8Ptr slkapPageptr;
Page8Ptr slkapCopyPageptr;
Page8Ptr ciPageidptr;
Page8Ptr gsePageidptr;
Page8Ptr isoPageptr;
......@@ -1383,7 +1296,6 @@ private:
Uint32 tpriElementptr;
Uint32 tgseElementptr;
Uint32 tgseContainerptr;
Uint32 tiloIndex;
Uint32 trlHead;
Uint32 trlRelCon;
Uint32 trlNextused;
......@@ -1392,20 +1304,12 @@ private:
Uint32 tlupElemIndex;
Uint32 tlupIndex;
Uint32 tlupForward;
Uint32 tslkPageIndex;
Uint32 tslkKeyLen;
Uint32 tslkapKeyLen;
Uint32 tslkapPageIndex;
Uint32 tipaArrayPos;
Uint32 trfpArrayPos;
Uint32 tdlkLogicalPageIndex;
Uint32 tancNext;
Uint32 tancBufType;
Uint32 tancContainerptr;
Uint32 tancPageindex;
Uint32 tancPageid;
Uint32 tidrResult;
Uint32 tidrKeyLen;
Uint32 tidrElemhead;
Uint32 tidrForward;
Uint32 tidrPageindex;
......@@ -1428,9 +1332,6 @@ private:
Uint32 tgeContainerptr;
Uint32 tgeElementptr;
Uint32 tgeForward;
Uint32 tslcResult;
Uint32 tslcPagedir;
Uint32 tslcPageIndex;
Uint32 tundoElemIndex;
Uint32 texpReceivedBucket;
Uint32 texpDirInd;
......@@ -1467,7 +1368,6 @@ private:
Uint32 tmp;
Uint32 tmpP;
Uint32 tmpP2;
Uint32 taslpDirIndex;
Uint32 tmp1;
Uint32 tmp2;
Uint32 tgflPageindex;
......@@ -1549,7 +1449,7 @@ private:
};
Uint32 c_errorInsert3000_TableId;
Uint32 cSrUndoRecords[5];
Uint32 cSrUndoRecords[UndoHeader::ZNO_UNDORECORD_TYPES];
};
#endif
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