other: merge 3.0

This commit is contained in:
Cary Xu 2022-09-04 20:53:40 +08:00
commit 38b62ddd7f
47 changed files with 2660 additions and 1873 deletions

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@ -184,7 +184,6 @@ typedef struct SQueryTableDataCond {
STimeWindow twindows;
int64_t startVersion;
int64_t endVersion;
int64_t schemaVersion;
} SQueryTableDataCond;
int32_t tEncodeDataBlock(void** buf, const SSDataBlock* pBlock);

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@ -1070,6 +1070,7 @@ typedef struct {
typedef struct {
int32_t vgId;
int32_t syncState;
int64_t cacheUsage;
int64_t numOfTables;
int64_t numOfTimeSeries;
int64_t totalStorage;

78
include/util/trbtree.h Normal file
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@ -0,0 +1,78 @@
/*
* Copyright (c) 2019 TAOS Data, Inc. <jhtao@taosdata.com>
*
* This program is free software: you can use, redistribute, and/or modify
* it under the terms of the GNU Affero General Public License, version 3
* or later ("AGPL"), as published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE.
*
* You should have received a copy of the GNU Affero General Public License
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#ifndef _TD_UTIL_RBTREE_H_
#define _TD_UTIL_RBTREE_H_
#include "os.h"
#ifdef __cplusplus
extern "C" {
#endif
typedef struct SRBTree SRBTree;
typedef struct SRBTreeNode SRBTreeNode;
typedef struct SRBTreeIter SRBTreeIter;
typedef int32_t (*tRBTreeCmprFn)(const void *, const void *);
// SRBTree =============================================
#define tRBTreeMin(T) ((T)->min == ((T)->NIL) ? NULL : (T)->min)
#define tRBTreeMax(T) ((T)->max == ((T)->NIL) ? NULL : (T)->max)
void tRBTreeCreate(SRBTree *pTree, tRBTreeCmprFn cmprFn);
SRBTreeNode *tRBTreePut(SRBTree *pTree, SRBTreeNode *z);
void tRBTreeDrop(SRBTree *pTree, SRBTreeNode *z);
SRBTreeNode *tRBTreeDropByKey(SRBTree *pTree, void *pKey);
SRBTreeNode *tRBTreeGet(SRBTree *pTree, void *pKey);
// SRBTreeIter =============================================
#define tRBTreeIterCreate(tree, ascend) \
(SRBTreeIter) { .asc = (ascend), .pTree = (tree), .pNode = (ascend) ? (tree)->min : (tree)->max }
SRBTreeNode *tRBTreeIterNext(SRBTreeIter *pIter);
// STRUCT =============================================
typedef enum { RED, BLACK } ECOLOR;
struct SRBTreeNode {
ECOLOR color;
SRBTreeNode *parent;
SRBTreeNode *left;
SRBTreeNode *right;
};
#define RBTREE_NODE_PAYLOAD(N) ((const void *)&(N)[1])
struct SRBTree {
tRBTreeCmprFn cmprFn;
int64_t n;
SRBTreeNode *root;
SRBTreeNode *min;
SRBTreeNode *max;
SRBTreeNode *NIL;
SRBTreeNode NILNODE;
};
struct SRBTreeIter {
int8_t asc;
SRBTree *pTree;
SRBTreeNode *pNode;
};
#ifdef __cplusplus
}
#endif
#endif /*_TD_UTIL_RBTREE_H_*/

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@ -1672,7 +1672,12 @@ static int32_t doConvertJson(SReqResultInfo* pResultInfo, int32_t numOfCols, int
break;
}
}
if (!needConvert) return TSDB_CODE_SUCCESS;
if (!needConvert) {
return TSDB_CODE_SUCCESS;
}
tscDebug("start to convert form json format string");
char* p = (char*)pResultInfo->pData;
int32_t dataLen = estimateJsonLen(pResultInfo, numOfCols, numOfRows);

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@ -765,6 +765,7 @@ static int32_t taosCreateTable(TAOS* taos, void* meta, int32_t metaLen) {
}
taosArrayPush(pRequest->tableList, &pName);
pCreateReq->flags |= TD_CREATE_IF_NOT_EXISTS;
// change tag cid to new cid
if (pCreateReq->type == TSDB_CHILD_TABLE) {
STableMeta* pTableMeta = NULL;

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@ -207,6 +207,7 @@ static const SSysDbTableSchema vgroupsSchema[] = {
{.name = "v3_dnode", .bytes = 4, .type = TSDB_DATA_TYPE_INT, .sysInfo = true},
{.name = "v3_status", .bytes = 10 + VARSTR_HEADER_SIZE, .type = TSDB_DATA_TYPE_VARCHAR, .sysInfo = true},
{.name = "status", .bytes = 12 + VARSTR_HEADER_SIZE, .type = TSDB_DATA_TYPE_VARCHAR, .sysInfo = true},
{.name = "cacheload", .bytes = 4, .type = TSDB_DATA_TYPE_INT, .sysInfo = true},
{.name = "nfiles", .bytes = 4, .type = TSDB_DATA_TYPE_INT, .sysInfo = true},
{.name = "file_size", .bytes = 4, .type = TSDB_DATA_TYPE_INT, .sysInfo = true},
{.name = "tsma", .bytes = 1, .type = TSDB_DATA_TYPE_TINYINT, .sysInfo = true},

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@ -2120,6 +2120,7 @@ void blockEncode(const SSDataBlock* pBlock, char* data, int32_t* dataLen, int32_
int32_t* rows = (int32_t*)data;
*rows = pBlock->info.rows;
data += sizeof(int32_t);
ASSERT(*rows > 0);
int32_t* cols = (int32_t*)data;
*cols = numOfCols;
@ -2183,6 +2184,8 @@ void blockEncode(const SSDataBlock* pBlock, char* data, int32_t* dataLen, int32_
*actualLen = *dataLen;
*groupId = pBlock->info.groupId;
ASSERT(*dataLen > 0);
uDebug("build data block, actualLen:%d, rows:%d, cols:%d", *dataLen, *rows, *cols);
}
const char* blockDecode(SSDataBlock* pBlock, const char* pData) {

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@ -129,10 +129,6 @@ int32_t tsMinIntervalTime = 1;
int32_t tsQueryBufferSize = -1;
int64_t tsQueryBufferSizeBytes = -1;
// tsdb config
// For backward compatibility
bool tsdbForceKeepFile = false;
int32_t tsDiskCfgNum = 0;
SDiskCfg tsDiskCfg[TFS_MAX_DISKS] = {0};

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@ -994,6 +994,7 @@ int32_t tSerializeSStatusReq(void *buf, int32_t bufLen, SStatusReq *pReq) {
SVnodeLoad *pload = taosArrayGet(pReq->pVloads, i);
if (tEncodeI32(&encoder, pload->vgId) < 0) return -1;
if (tEncodeI32(&encoder, pload->syncState) < 0) return -1;
if (tEncodeI64(&encoder, pload->cacheUsage) < 0) return -1;
if (tEncodeI64(&encoder, pload->numOfTables) < 0) return -1;
if (tEncodeI64(&encoder, pload->numOfTimeSeries) < 0) return -1;
if (tEncodeI64(&encoder, pload->totalStorage) < 0) return -1;
@ -1063,6 +1064,7 @@ int32_t tDeserializeSStatusReq(void *buf, int32_t bufLen, SStatusReq *pReq) {
SVnodeLoad vload = {0};
if (tDecodeI32(&decoder, &vload.vgId) < 0) return -1;
if (tDecodeI32(&decoder, &vload.syncState) < 0) return -1;
if (tDecodeI64(&decoder, &vload.cacheUsage) < 0) return -1;
if (tDecodeI64(&decoder, &vload.numOfTables) < 0) return -1;
if (tDecodeI64(&decoder, &vload.numOfTimeSeries) < 0) return -1;
if (tDecodeI64(&decoder, &vload.totalStorage) < 0) return -1;

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@ -343,6 +343,7 @@ typedef struct {
uint32_t hashEnd;
char dbName[TSDB_DB_FNAME_LEN];
int64_t dbUid;
int64_t cacheUsage;
int64_t numOfTables;
int64_t numOfTimeSeries;
int64_t totalStorage;

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@ -347,6 +347,7 @@ static int32_t mndProcessStatusReq(SRpcMsg *pReq) {
SVgObj *pVgroup = mndAcquireVgroup(pMnode, pVload->vgId);
if (pVgroup != NULL) {
if (pVload->syncState == TAOS_SYNC_STATE_LEADER) {
pVgroup->cacheUsage = pVload->cacheUsage;
pVgroup->numOfTables = pVload->numOfTables;
pVgroup->numOfTimeSeries = pVload->numOfTimeSeries;
pVgroup->totalStorage = pVload->totalStorage;

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@ -696,6 +696,9 @@ static int32_t mndRetrieveVgroups(SRpcMsg *pReq, SShowObj *pShow, SSDataBlock *p
pColInfo = taosArrayGet(pBlock->pDataBlock, cols++);
colDataAppendNULL(pColInfo, numOfRows);
pColInfo = taosArrayGet(pBlock->pDataBlock, cols++);
colDataAppend(pColInfo, numOfRows, (const char *)&pVgroup->cacheUsage, false);
pColInfo = taosArrayGet(pBlock->pDataBlock, cols++);
colDataAppendNULL(pColInfo, numOfRows);

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@ -50,6 +50,10 @@ target_sources(
"src/tsdb/tsdbSnapshot.c"
"src/tsdb/tsdbCacheRead.c"
"src/tsdb/tsdbRetention.c"
"src/tsdb/tsdbDiskData.c"
"src/tsdb/tsdbCompress.c"
"src/tsdb/tsdbCompact.c"
"src/tsdb/tsdbMergeTree.c"
# tq
"src/tq/tq.c"

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@ -155,6 +155,7 @@ int32_t tsdbGetTableSchema(SVnode *pVnode, int64_t uid, STSchema **pSchema, int6
void tsdbCacheSetCapacity(SVnode *pVnode, size_t capacity);
size_t tsdbCacheGetCapacity(SVnode *pVnode);
size_t tsdbCacheGetUsage(SVnode *pVnode);
// tq
typedef struct SMetaTableInfo {

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@ -42,15 +42,15 @@ typedef struct SMemTable SMemTable;
typedef struct STbDataIter STbDataIter;
typedef struct SMapData SMapData;
typedef struct SBlockIdx SBlockIdx;
typedef struct SBlock SBlock;
typedef struct SBlockL SBlockL;
typedef struct SDataBlk SDataBlk;
typedef struct SSstBlk SSstBlk;
typedef struct SColData SColData;
typedef struct SDiskDataHdr SDiskDataHdr;
typedef struct SBlockData SBlockData;
typedef struct SDelFile SDelFile;
typedef struct SHeadFile SHeadFile;
typedef struct SDataFile SDataFile;
typedef struct SLastFile SLastFile;
typedef struct SSstFile SSstFile;
typedef struct SSmaFile SSmaFile;
typedef struct SDFileSet SDFileSet;
typedef struct SDataFWriter SDataFWriter;
@ -64,9 +64,12 @@ typedef struct STsdbReadSnap STsdbReadSnap;
typedef struct SBlockInfo SBlockInfo;
typedef struct SSmaInfo SSmaInfo;
typedef struct SBlockCol SBlockCol;
typedef struct SVersionRange SVersionRange;
#define TSDB_FILE_DLMT ((uint32_t)0xF00AFA0F)
#define TSDB_MAX_SUBBLOCKS 8
#define TSDB_MAX_LAST_FILE 16
#define TSDB_DEFAULT_LAST_FILE 8
#define TSDB_FHDR_SIZE 512
#define HAS_NONE ((int8_t)0x1)
@ -111,15 +114,15 @@ int32_t tTABLEIDCmprFn(const void *p1, const void *p2);
int32_t tPutBlockCol(uint8_t *p, void *ph);
int32_t tGetBlockCol(uint8_t *p, void *ph);
int32_t tBlockColCmprFn(const void *p1, const void *p2);
// SBlock
void tBlockReset(SBlock *pBlock);
int32_t tPutBlock(uint8_t *p, void *ph);
int32_t tGetBlock(uint8_t *p, void *ph);
int32_t tBlockCmprFn(const void *p1, const void *p2);
bool tBlockHasSma(SBlock *pBlock);
// SBlockL
int32_t tPutBlockL(uint8_t *p, void *ph);
int32_t tGetBlockL(uint8_t *p, void *ph);
// SDataBlk
void tDataBlkReset(SDataBlk *pBlock);
int32_t tPutDataBlk(uint8_t *p, void *ph);
int32_t tGetDataBlk(uint8_t *p, void *ph);
int32_t tDataBlkCmprFn(const void *p1, const void *p2);
bool tDataBlkHasSma(SDataBlk *pDataBlk);
// SSstBlk
int32_t tPutSstBlk(uint8_t *p, void *ph);
int32_t tGetSstBlk(uint8_t *p, void *ph);
// SBlockIdx
int32_t tPutBlockIdx(uint8_t *p, void *ph);
int32_t tGetBlockIdx(uint8_t *p, void *ph);
@ -170,6 +173,7 @@ int32_t tGetDelData(uint8_t *p, void *ph);
void tMapDataReset(SMapData *pMapData);
void tMapDataClear(SMapData *pMapData);
int32_t tMapDataPutItem(SMapData *pMapData, void *pItem, int32_t (*tPutItemFn)(uint8_t *, void *));
int32_t tMapDataCopy(SMapData *pFrom, SMapData *pTo);
void tMapDataGetItemByIdx(SMapData *pMapData, int32_t idx, void *pItem, int32_t (*tGetItemFn)(uint8_t *, void *));
int32_t tMapDataSearch(SMapData *pMapData, void *pSearchItem, int32_t (*tGetItemFn)(uint8_t *, void *),
int32_t (*tItemCmprFn)(const void *, const void *), void *pItem);
@ -215,7 +219,7 @@ bool tsdbDelFileIsSame(SDelFile *pDelFile1, SDelFile *pDelFile2);
int32_t tsdbDFileRollback(STsdb *pTsdb, SDFileSet *pSet, EDataFileT ftype);
int32_t tPutHeadFile(uint8_t *p, SHeadFile *pHeadFile);
int32_t tPutDataFile(uint8_t *p, SDataFile *pDataFile);
int32_t tPutLastFile(uint8_t *p, SLastFile *pLastFile);
int32_t tPutSstFile(uint8_t *p, SSstFile *pSstFile);
int32_t tPutSmaFile(uint8_t *p, SSmaFile *pSmaFile);
int32_t tPutDelFile(uint8_t *p, SDelFile *pDelFile);
int32_t tGetDelFile(uint8_t *p, SDelFile *pDelFile);
@ -224,7 +228,7 @@ int32_t tGetDFileSet(uint8_t *p, SDFileSet *pSet);
void tsdbHeadFileName(STsdb *pTsdb, SDiskID did, int32_t fid, SHeadFile *pHeadF, char fname[]);
void tsdbDataFileName(STsdb *pTsdb, SDiskID did, int32_t fid, SDataFile *pDataF, char fname[]);
void tsdbLastFileName(STsdb *pTsdb, SDiskID did, int32_t fid, SLastFile *pLastF, char fname[]);
void tsdbSstFileName(STsdb *pTsdb, SDiskID did, int32_t fid, SSstFile *pSstF, char fname[]);
void tsdbSmaFileName(STsdb *pTsdb, SDiskID did, int32_t fid, SSmaFile *pSmaF, char fname[]);
// SDelFile
void tsdbDelFileName(STsdb *pTsdb, SDelFile *pFile, char fname[]);
@ -250,7 +254,7 @@ int32_t tsdbDataFWriterClose(SDataFWriter **ppWriter, int8_t sync);
int32_t tsdbUpdateDFileSetHeader(SDataFWriter *pWriter);
int32_t tsdbWriteBlockIdx(SDataFWriter *pWriter, SArray *aBlockIdx);
int32_t tsdbWriteBlock(SDataFWriter *pWriter, SMapData *pMapData, SBlockIdx *pBlockIdx);
int32_t tsdbWriteBlockL(SDataFWriter *pWriter, SArray *aBlockL);
int32_t tsdbWriteSstBlk(SDataFWriter *pWriter, SArray *aSstBlk);
int32_t tsdbWriteBlockData(SDataFWriter *pWriter, SBlockData *pBlockData, SBlockInfo *pBlkInfo, SSmaInfo *pSmaInfo,
int8_t cmprAlg, int8_t toLast);
@ -260,10 +264,10 @@ int32_t tsdbDataFReaderOpen(SDataFReader **ppReader, STsdb *pTsdb, SDFileSet *pS
int32_t tsdbDataFReaderClose(SDataFReader **ppReader);
int32_t tsdbReadBlockIdx(SDataFReader *pReader, SArray *aBlockIdx);
int32_t tsdbReadBlock(SDataFReader *pReader, SBlockIdx *pBlockIdx, SMapData *pMapData);
int32_t tsdbReadBlockL(SDataFReader *pReader, SArray *aBlockL);
int32_t tsdbReadBlockSma(SDataFReader *pReader, SBlock *pBlock, SArray *aColumnDataAgg);
int32_t tsdbReadDataBlock(SDataFReader *pReader, SBlock *pBlock, SBlockData *pBlockData);
int32_t tsdbReadLastBlock(SDataFReader *pReader, SBlockL *pBlockL, SBlockData *pBlockData);
int32_t tsdbReadSstBlk(SDataFReader *pReader, int32_t iSst, SArray *aSstBlk);
int32_t tsdbReadBlockSma(SDataFReader *pReader, SDataBlk *pBlock, SArray *aColumnDataAgg);
int32_t tsdbReadDataBlock(SDataFReader *pReader, SDataBlk *pBlock, SBlockData *pBlockData);
int32_t tsdbReadSstBlock(SDataFReader *pReader, int32_t iSst, SSstBlk *pSstBlk, SBlockData *pBlockData);
// SDelFWriter
int32_t tsdbDelFWriterOpen(SDelFWriter **ppWriter, SDelFile *pFile, STsdb *pTsdb);
int32_t tsdbDelFWriterClose(SDelFWriter **ppWriter, int8_t sync);
@ -278,6 +282,8 @@ int32_t tsdbReadDelIdx(SDelFReader *pReader, SArray *aDelIdx);
// tsdbRead.c ==============================================================================================
int32_t tsdbTakeReadSnap(STsdb *pTsdb, STsdbReadSnap **ppSnap);
void tsdbUntakeReadSnap(STsdb *pTsdb, STsdbReadSnap *pSnap);
// tsdbMerge.c ==============================================================================================
int32_t tsdbMerge(STsdb *pTsdb);
#define TSDB_CACHE_NO(c) ((c).cacheLast == 0)
#define TSDB_CACHE_LAST_ROW(c) (((c).cacheLast & 1) > 0)
@ -324,6 +330,11 @@ struct TSDBKEY {
TSKEY ts;
};
struct SVersionRange {
uint64_t minVer;
uint64_t maxVer;
};
typedef struct SMemSkipListNode SMemSkipListNode;
struct SMemSkipListNode {
int8_t level;
@ -416,7 +427,7 @@ struct SSmaInfo {
int32_t size;
};
struct SBlock {
struct SDataBlk {
TSDBKEY minKey;
TSDBKEY maxKey;
int64_t minVer;
@ -428,7 +439,7 @@ struct SBlock {
SSmaInfo smaInfo;
};
struct SBlockL {
struct SSstBlk {
int64_t suid;
int64_t minUid;
int64_t maxUid;
@ -467,12 +478,6 @@ struct SBlockData {
SArray *aColData; // SArray<SColData>
};
// ================== TSDB global config
extern bool tsdbForceKeepFile;
#define TSDB_FS_ITER_FORWARD TSDB_ORDER_ASC
#define TSDB_FS_ITER_BACKWARD TSDB_ORDER_DESC
struct TABLEID {
tb_uid_t suid;
tb_uid_t uid;
@ -536,7 +541,7 @@ struct SDataFile {
int64_t size;
};
struct SLastFile {
struct SSstFile {
volatile int32_t nRef;
int64_t commitID;
@ -556,8 +561,9 @@ struct SDFileSet {
int32_t fid;
SHeadFile *pHeadF;
SDataFile *pDataF;
SLastFile *pLastF;
SSmaFile *pSmaF;
uint8_t nSstF;
SSstFile *aSstF[TSDB_MAX_LAST_FILE];
};
struct SRowIter {
@ -586,13 +592,13 @@ struct SDataFWriter {
TdFilePtr pHeadFD;
TdFilePtr pDataFD;
TdFilePtr pLastFD;
TdFilePtr pSmaFD;
TdFilePtr pLastFD;
SHeadFile fHead;
SDataFile fData;
SLastFile fLast;
SSmaFile fSma;
SSstFile fSst[TSDB_MAX_LAST_FILE];
uint8_t *aBuf[4];
};
@ -603,6 +609,36 @@ struct STsdbReadSnap {
STsdbFS fs;
};
struct SDataFReader {
STsdb *pTsdb;
SDFileSet *pSet;
TdFilePtr pHeadFD;
TdFilePtr pDataFD;
TdFilePtr pSmaFD;
TdFilePtr aLastFD[TSDB_MAX_LAST_FILE];
uint8_t *aBuf[3];
};
typedef struct {
int64_t suid;
int64_t uid;
TSDBROW row;
} SRowInfo;
typedef struct SMergeTree {
int8_t backward;
SRBTree rbt;
SArray *pIterList;
struct SLDataIter *pIter;
} SMergeTree;
int32_t tMergeTreeOpen(SMergeTree *pMTree, int8_t backward, SDataFReader* pFReader, uint64_t uid, STimeWindow* pTimeWindow, SVersionRange* pVerRange);
void tMergeTreeAddIter(SMergeTree *pMTree, struct SLDataIter *pIter);
bool tMergeTreeNext(SMergeTree *pMTree);
TSDBROW tMergeTreeGetRow(SMergeTree *pMTree);
void tMergeTreeClose(SMergeTree *pMTree);
// ========== inline functions ==========
static FORCE_INLINE int32_t tsdbKeyCmprFn(const void *p1, const void *p2) {
TSDBKEY *pKey1 = (TSDBKEY *)p1;

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@ -36,6 +36,7 @@
#include "tlosertree.h"
#include "tlrucache.h"
#include "tmsgcb.h"
#include "trbtree.h"
#include "tref.h"
#include "tskiplist.h"
#include "tstream.h"

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@ -291,6 +291,38 @@ _query:
tDecoderClear(&dc);
goto _exit;
}
{ // Traverse to find the previous qualified data
TBC *pCur;
tdbTbcOpen(pMeta->pTbDb, &pCur, NULL);
STbDbKey key = {.version = sver, .uid = INT64_MAX};
int c = 0;
tdbTbcMoveTo(pCur, &key, sizeof(key), &c);
if(c < 0){
tdbTbcMoveToPrev(pCur);
}
void *pKey = NULL;
void *pVal = NULL;
int vLen = 0, kLen = 0;
while(1){
int32_t ret = tdbTbcPrev(pCur, &pKey, &kLen, &pVal, &vLen);
if (ret < 0) break;
STbDbKey *tmp = (STbDbKey*)pKey;
if(tmp->uid != uid){
continue;
}
SDecoder dcNew = {0};
SMetaEntry meNew = {0};
tDecoderInit(&dcNew, pVal, vLen);
metaDecodeEntry(&dcNew, &meNew);
pSchema = tCloneSSchemaWrapper(&meNew.stbEntry.schemaRow);
tDecoderClear(&dcNew);
tdbTbcClose(pCur);
goto _exit;
}
tdbTbcClose(pCur);
}
} else if (me.type == TSDB_CHILD_TABLE) {
uid = me.ctbEntry.suid;
tDecoderClear(&dc);

View File

@ -420,29 +420,14 @@ typedef enum {
typedef struct {
SFSLASTNEXTROWSTATES state; // [input]
STsdb *pTsdb; // [input]
SBlockIdx *pBlockIdxExp; // [input]
STSchema *pTSchema; // [input]
tb_uid_t suid;
tb_uid_t uid;
int32_t nFileSet;
int32_t iFileSet;
SArray *aDFileSet;
SDataFReader *pDataFReader;
SArray *aBlockL;
SBlockL *pBlockL;
SBlockData *pBlockDataL;
SBlockData blockDataL;
int32_t nRow;
int32_t iRow;
TSDBROW row;
/*
SArray *aBlockIdx;
SBlockIdx *pBlockIdx;
SMapData blockMap;
int32_t nBlock;
int32_t iBlock;
SBlock block;
*/
SMergeTree mergeTree;
} SFSLastNextRowIter;
static int32_t getNextRowFromFSLast(void *iter, TSDBROW **ppRow) {
@ -451,22 +436,16 @@ static int32_t getNextRowFromFSLast(void *iter, TSDBROW **ppRow) {
switch (state->state) {
case SFSLASTNEXTROW_FS:
// state->aDFileSet = state->pTsdb->pFS->cState->aDFileSet;
state->nFileSet = taosArrayGetSize(state->aDFileSet);
state->iFileSet = state->nFileSet;
state->pBlockDataL = NULL;
case SFSLASTNEXTROW_FILESET: {
SDFileSet *pFileSet = NULL;
_next_fileset:
if (--state->iFileSet >= 0) {
pFileSet = (SDFileSet *)taosArrayGet(state->aDFileSet, state->iFileSet);
} else {
if (state->pBlockDataL) {
tBlockDataDestroy(state->pBlockDataL, 1);
state->pBlockDataL = NULL;
}
// tMergeTreeClose(&state->mergeTree);
*ppRow = NULL;
return code;
@ -475,68 +454,24 @@ static int32_t getNextRowFromFSLast(void *iter, TSDBROW **ppRow) {
code = tsdbDataFReaderOpen(&state->pDataFReader, state->pTsdb, pFileSet);
if (code) goto _err;
if (!state->aBlockL) {
state->aBlockL = taosArrayInit(0, sizeof(SBlockL));
} else {
taosArrayClear(state->aBlockL);
}
code = tsdbReadBlockL(state->pDataFReader, state->aBlockL);
if (code) goto _err;
// SBlockL *pBlockL = (SBlockL *)taosArrayGet(state->aBlockL, state->iBlockL);
state->pBlockL = taosArraySearch(state->aBlockL, state->pBlockIdxExp, tCmprBlockL, TD_EQ);
if (!state->pBlockL) {
tMergeTreeOpen(&state->mergeTree, 1, state->pDataFReader, state->uid,
&(STimeWindow){.skey = TSKEY_MIN, .ekey = TSKEY_MAX},
&(SVersionRange){.minVer = 0, .maxVer = UINT64_MAX});
bool hasVal = tMergeTreeNext(&state->mergeTree);
if (!hasVal) {
state->state = SFSLASTNEXTROW_FILESET;
// tMergeTreeClose(&state->mergeTree);
goto _next_fileset;
}
int64_t suid = state->pBlockL->suid;
int64_t uid = state->pBlockL->maxUid;
if (!state->pBlockDataL) {
state->pBlockDataL = &state->blockDataL;
tBlockDataCreate(state->pBlockDataL);
}
code = tBlockDataInit(state->pBlockDataL, suid, suid ? 0 : uid, state->pTSchema);
if (code) goto _err;
}
case SFSLASTNEXTROW_BLOCKDATA:
code = tsdbReadLastBlock(state->pDataFReader, state->pBlockL, state->pBlockDataL);
if (code) goto _err;
state->nRow = state->blockDataL.nRow;
state->iRow = state->nRow - 1;
if (!state->pBlockDataL->uid) {
while (state->pBlockIdxExp->uid != state->pBlockDataL->aUid[state->iRow]) {
--state->iRow;
}
}
state->state = SFSLASTNEXTROW_BLOCKROW;
}
case SFSLASTNEXTROW_BLOCKROW:
if (state->pBlockDataL->uid) {
if (state->iRow >= 0) {
state->row = tsdbRowFromBlockData(state->pBlockDataL, state->iRow);
state->row = tMergeTreeGetRow(&state->mergeTree);
*ppRow = &state->row;
if (--state->iRow < 0) {
bool hasVal = tMergeTreeNext(&state->mergeTree);
if (!hasVal) {
state->state = SFSLASTNEXTROW_FILESET;
}
}
} else {
if (state->iRow >= 0 && state->pBlockIdxExp->uid == state->pBlockDataL->aUid[state->iRow]) {
state->row = tsdbRowFromBlockData(state->pBlockDataL, state->iRow);
*ppRow = &state->row;
if (--state->iRow < 0 || state->pBlockIdxExp->uid != state->pBlockDataL->aUid[state->iRow]) {
state->state = SFSLASTNEXTROW_FILESET;
}
}
}
return code;
default:
ASSERT(0);
@ -548,15 +483,6 @@ _err:
tsdbDataFReaderClose(&state->pDataFReader);
state->pDataFReader = NULL;
}
if (state->aBlockL) {
taosArrayDestroy(state->aBlockL);
state->aBlockL = NULL;
}
if (state->pBlockDataL) {
tBlockDataDestroy(state->pBlockDataL, 1);
state->pBlockDataL = NULL;
}
*ppRow = NULL;
return code;
@ -574,14 +500,6 @@ int32_t clearNextRowFromFSLast(void *iter) {
tsdbDataFReaderClose(&state->pDataFReader);
state->pDataFReader = NULL;
}
if (state->aBlockL) {
taosArrayDestroy(state->aBlockL);
state->aBlockL = NULL;
}
if (state->pBlockDataL) {
tBlockDataDestroy(state->pBlockDataL, 1);
state->pBlockDataL = NULL;
}
return code;
}
@ -609,7 +527,7 @@ typedef struct SFSNextRowIter {
SMapData blockMap;
int32_t nBlock;
int32_t iBlock;
SBlock block;
SDataBlk block;
SBlockData blockData;
SBlockData *pBlockData;
int32_t nRow;
@ -684,13 +602,13 @@ static int32_t getNextRowFromFS(void *iter, TSDBROW **ppRow) {
}
case SFSNEXTROW_BLOCKDATA:
if (state->iBlock >= 0) {
SBlock block = {0};
SDataBlk block = {0};
tBlockReset(&block);
tDataBlkReset(&block);
// tBlockDataReset(&state->blockData);
tBlockDataReset(state->pBlockData);
tMapDataGetItemByIdx(&state->blockMap, state->iBlock, &block, tGetBlock);
tMapDataGetItemByIdx(&state->blockMap, state->iBlock, &block, tGetDataBlk);
/* code = tsdbReadBlockData(state->pDataFReader, &state->blockIdx, &block, &state->blockData, NULL, NULL); */
tBlockDataReset(state->pBlockData);
code = tBlockDataInit(state->pBlockData, state->suid, state->uid, state->pTSchema);
@ -972,9 +890,6 @@ static int32_t nextRowIterOpen(CacheNextRowIter *pIter, tb_uid_t uid, STsdb *pTs
pIter->fsLastState.state = (SFSLASTNEXTROWSTATES)SFSNEXTROW_FS;
pIter->fsLastState.pTsdb = pTsdb;
pIter->fsLastState.aDFileSet = pIter->pReadSnap->fs.aDFileSet;
pIter->fsLastState.pBlockIdxExp = &pIter->idx;
pIter->fsLastState.pTSchema = pTSchema;
pIter->fsLastState.suid = suid;
pIter->fsLastState.uid = uid;
pIter->fsState.state = SFSNEXTROW_FS;
@ -1372,8 +1287,11 @@ int32_t tsdbCacheGetLastH(SLRUCache *pCache, tb_uid_t uid, STsdb *pTsdb, LRUHand
// getTableCacheKeyS(uid, "l", key, &keyLen);
getTableCacheKey(uid, 1, key, &keyLen);
LRUHandle *h = taosLRUCacheLookup(pCache, key, keyLen);
if (h) {
} else {
if (!h) {
taosThreadMutexLock(&pTsdb->lruMutex);
h = taosLRUCacheLookup(pCache, key, keyLen);
if (!h) {
SArray *pLastArray = NULL;
code = mergeLast(uid, pTsdb, &pLastArray);
// if table's empty or error, return code of -1
@ -1384,13 +1302,18 @@ int32_t tsdbCacheGetLastH(SLRUCache *pCache, tb_uid_t uid, STsdb *pTsdb, LRUHand
}
_taos_lru_deleter_t deleter = deleteTableCacheLast;
LRUStatus status =
taosLRUCacheInsert(pCache, key, keyLen, pLastArray, pLastArray->capacity, deleter, NULL, TAOS_LRU_PRIORITY_LOW);
LRUStatus status = taosLRUCacheInsert(pCache, key, keyLen, pLastArray, pLastArray->capacity, deleter, NULL,
TAOS_LRU_PRIORITY_LOW);
if (status != TAOS_LRU_STATUS_OK) {
code = -1;
}
taosThreadMutexUnlock(&pTsdb->lruMutex);
h = taosLRUCacheLookup(pCache, key, keyLen);
} else {
taosThreadMutexUnlock(&pTsdb->lruMutex);
}
}
*handle = h;
@ -1411,3 +1334,5 @@ void tsdbCacheSetCapacity(SVnode *pVnode, size_t capacity) {
}
size_t tsdbCacheGetCapacity(SVnode *pVnode) { return taosLRUCacheGetCapacity(pVnode->pTsdb->lruCache); }
size_t tsdbCacheGetUsage(SVnode *pVnode) { return taosLRUCacheGetUsage(pVnode->pTsdb->lruCache); }

File diff suppressed because it is too large Load Diff

View File

@ -0,0 +1,27 @@
/*
* Copyright (c) 2019 TAOS Data, Inc. <jhtao@taosdata.com>
*
* This program is free software: you can use, redistribute, and/or modify
* it under the terms of the GNU Affero General Public License, version 3
* or later ("AGPL"), as published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE.
*
* You should have received a copy of the GNU Affero General Public License
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include "tsdb.h"
typedef struct {
STsdb *pTsdb;
STsdbFS fs;
} STsdbCompactor;
int32_t tsdbCompact(STsdb *pTsdb) {
int32_t code = 0;
// TODO
return code;
}

View File

@ -0,0 +1,64 @@
/*
* Copyright (c) 2019 TAOS Data, Inc. <jhtao@taosdata.com>
*
* This program is free software: you can use, redistribute, and/or modify
* it under the terms of the GNU Affero General Public License, version 3
* or later ("AGPL"), as published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE.
*
* You should have received a copy of the GNU Affero General Public License
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include "tsdb.h"
// Integer =====================================================
typedef struct {
int8_t rawCopy;
int64_t prevVal;
int32_t nVal;
int32_t nBuf;
uint8_t *pBuf;
} SIntCompressor;
#define I64_SAFE_ADD(a, b) (((a) >= 0 && (b) <= INT64_MAX - (b)) || ((a) < 0 && (b) >= INT64_MIN - (a)))
#define SIMPLE8B_MAX ((uint64_t)1152921504606846974LL)
static int32_t tsdbCmprI64(SIntCompressor *pCompressor, int64_t val) {
int32_t code = 0;
// raw copy
if (pCompressor->rawCopy) {
memcpy(pCompressor->pBuf + pCompressor->nBuf, &val, sizeof(val));
pCompressor->nBuf += sizeof(val);
pCompressor->nVal++;
goto _exit;
}
if (!I64_SAFE_ADD(val, pCompressor->prevVal)) {
pCompressor->rawCopy = 1;
// TODO: decompress and copy
pCompressor->nVal++;
goto _exit;
}
int64_t diff = val - pCompressor->prevVal;
uint8_t zigzag = ZIGZAGE(int64_t, diff);
if (zigzag >= SIMPLE8B_MAX) {
pCompressor->rawCopy = 1;
// TODO: decompress and copy
pCompressor->nVal++;
goto _exit;
}
_exit:
return code;
}
// Timestamp =====================================================
// Float =====================================================

View File

@ -0,0 +1,84 @@
/*
* Copyright (c) 2019 TAOS Data, Inc. <jhtao@taosdata.com>
*
* This program is free software: you can use, redistribute, and/or modify
* it under the terms of the GNU Affero General Public License, version 3
* or later ("AGPL"), as published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE.
*
* You should have received a copy of the GNU Affero General Public License
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include "tsdb.h"
typedef struct SDiskColBuilder SDiskColBuilder;
struct SDiskColBuilder {
uint8_t flags;
uint8_t *pBitMap;
int32_t *aOffset;
int32_t nData;
uint8_t *pData;
};
int32_t tDiskColAddVal(SDiskColBuilder *pBuilder, SColVal *pColVal) {
int32_t code = 0;
// TODO
return code;
}
// ================================================================
typedef struct SDiskDataBuilder SDiskDataBuilder;
struct SDiskDataBuilder {
SDiskDataHdr hdr;
SArray *aBlockCol; // SArray<SBlockCol>
};
int32_t tDiskDataBuilderCreate(SDiskDataBuilder **ppBuilder) {
int32_t code = 0;
// TODO
return code;
}
void tDiskDataBuilderDestroy(SDiskDataBuilder *pBuilder) {
// TODO
}
void tDiskDataBuilderInit(SDiskDataBuilder *pBuilder, int64_t suid, int64_t uid, STSchema *pTSchema, int8_t cmprAlg) {
pBuilder->hdr = (SDiskDataHdr){.delimiter = TSDB_FILE_DLMT, //
.fmtVer = 0,
.suid = suid,
.uid = uid,
.cmprAlg = cmprAlg};
}
void tDiskDataBuilderReset(SDiskDataBuilder *pBuilder) {
// TODO
}
int32_t tDiskDataBuilderAddRow(SDiskDataBuilder *pBuilder, TSDBROW *pRow, STSchema *pTSchema, int64_t uid) {
int32_t code = 0;
// uid (todo)
// version (todo)
// TSKEY (todo)
SRowIter iter = {0};
tRowIterInit(&iter, pRow, pTSchema);
for (int32_t iDiskCol = 0; iDiskCol < 0; iDiskCol++) {
}
return code;
}
int32_t tDiskDataBuilderGet(SDiskDataBuilder *pBuilder, uint8_t **ppData) {
int32_t code = 0;
// TODO
return code;
}

View File

@ -110,7 +110,7 @@ _err:
// taosRemoveFile(fname);
// }
// // last
// // sst
// if (isSameDisk && pFrom->pLastF->commitID == pTo->pLastF->commitID) {
// if (pFrom->pLastF->size > pTo->pLastF->size) {
// code = tsdbDFileRollback(pFS->pTsdb, pTo, TSDB_LAST_FILE);
@ -140,7 +140,7 @@ _err:
// tsdbDataFileName(pFS->pTsdb, pFrom->diskId, pFrom->fid, pFrom->pDataF, fname);
// taosRemoveFile(fname);
// // last
// // sst
// tsdbLastFileName(pFS->pTsdb, pFrom->diskId, pFrom->fid, pFrom->pLastF, fname);
// taosRemoveFile(fname);
@ -254,8 +254,10 @@ void tsdbFSDestroy(STsdbFS *pFS) {
SDFileSet *pSet = (SDFileSet *)taosArrayGet(pFS->aDFileSet, iSet);
taosMemoryFree(pSet->pHeadF);
taosMemoryFree(pSet->pDataF);
taosMemoryFree(pSet->pLastF);
taosMemoryFree(pSet->pSmaF);
for (int32_t iSst = 0; iSst < pSet->nSstF; iSst++) {
taosMemoryFree(pSet->aSstF[iSst]);
}
}
taosArrayDestroy(pFS->aDFileSet);
@ -309,17 +311,6 @@ static int32_t tsdbScanAndTryFixFS(STsdb *pTsdb) {
if (code) goto _err;
}
// last ===========
tsdbLastFileName(pTsdb, pSet->diskId, pSet->fid, pSet->pLastF, fname);
if (taosStatFile(fname, &size, NULL)) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
if (size != pSet->pLastF->size) {
code = TSDB_CODE_FILE_CORRUPTED;
goto _err;
}
// sma =============
tsdbSmaFileName(pTsdb, pSet->diskId, pSet->fid, pSet->pSmaF, fname);
if (taosStatFile(fname, &size, NULL)) {
@ -333,6 +324,19 @@ static int32_t tsdbScanAndTryFixFS(STsdb *pTsdb) {
code = tsdbDFileRollback(pTsdb, pSet, TSDB_SMA_FILE);
if (code) goto _err;
}
// sst ===========
for (int32_t iSst = 0; iSst < pSet->nSstF; iSst++) {
tsdbSstFileName(pTsdb, pSet->diskId, pSet->fid, pSet->aSstF[iSst], fname);
if (taosStatFile(fname, &size, NULL)) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
if (size != pSet->aSstF[iSst]->size) {
code = TSDB_CODE_FILE_CORRUPTED;
goto _err;
}
}
}
{
@ -382,41 +386,15 @@ static int32_t tsdbRecoverFS(STsdb *pTsdb, uint8_t *pData, int64_t nData) {
taosArrayClear(pTsdb->fs.aDFileSet);
n += tGetU32v(pData + n, &nSet);
for (uint32_t iSet = 0; iSet < nSet; iSet++) {
SDFileSet fSet;
SDFileSet fSet = {0};
// head
fSet.pHeadF = (SHeadFile *)taosMemoryCalloc(1, sizeof(SHeadFile));
if (fSet.pHeadF == NULL) {
int32_t nt = tGetDFileSet(pData + n, &fSet);
if (nt < 0) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
fSet.pHeadF->nRef = 1;
// data
fSet.pDataF = (SDataFile *)taosMemoryCalloc(1, sizeof(SDataFile));
if (fSet.pDataF == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
fSet.pDataF->nRef = 1;
// last
fSet.pLastF = (SLastFile *)taosMemoryCalloc(1, sizeof(SLastFile));
if (fSet.pLastF == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
fSet.pLastF->nRef = 1;
// sma
fSet.pSmaF = (SSmaFile *)taosMemoryCalloc(1, sizeof(SSmaFile));
if (fSet.pSmaF == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
fSet.pSmaF->nRef = 1;
n += tGetDFileSet(pData + n, &fSet);
n += nt;
if (taosArrayPush(pTsdb->fs.aDFileSet, &fSet) == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
@ -532,13 +510,15 @@ int32_t tsdbFSClose(STsdb *pTsdb) {
ASSERT(pSet->pDataF->nRef == 1);
taosMemoryFree(pSet->pDataF);
// last
ASSERT(pSet->pLastF->nRef == 1);
taosMemoryFree(pSet->pLastF);
// sma
ASSERT(pSet->pSmaF->nRef == 1);
taosMemoryFree(pSet->pSmaF);
// sst
for (int32_t iSst = 0; iSst < pSet->nSstF; iSst++) {
ASSERT(pSet->aSstF[iSst]->nRef == 1);
taosMemoryFree(pSet->aSstF[iSst]);
}
}
taosArrayDestroy(pTsdb->fs.aDFileSet);
@ -586,15 +566,7 @@ int32_t tsdbFSCopy(STsdb *pTsdb, STsdbFS *pFS) {
}
*fSet.pDataF = *pSet->pDataF;
// data
fSet.pLastF = (SLastFile *)taosMemoryMalloc(sizeof(SLastFile));
if (fSet.pLastF == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _exit;
}
*fSet.pLastF = *pSet->pLastF;
// last
// sma
fSet.pSmaF = (SSmaFile *)taosMemoryMalloc(sizeof(SSmaFile));
if (fSet.pSmaF == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
@ -602,6 +574,16 @@ int32_t tsdbFSCopy(STsdb *pTsdb, STsdbFS *pFS) {
}
*fSet.pSmaF = *pSet->pSmaF;
// sst
for (fSet.nSstF = 0; fSet.nSstF < pSet->nSstF; fSet.nSstF++) {
fSet.aSstF[fSet.nSstF] = (SSstFile *)taosMemoryMalloc(sizeof(SSstFile));
if (fSet.aSstF[fSet.nSstF] == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _exit;
}
*fSet.aSstF[fSet.nSstF] = *pSet->aSstF[fSet.nSstF];
}
if (taosArrayPush(pFS->aDFileSet, &fSet) == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _exit;
@ -651,14 +633,38 @@ int32_t tsdbFSUpsertFSet(STsdbFS *pFS, SDFileSet *pSet) {
if (c == 0) {
*pDFileSet->pHeadF = *pSet->pHeadF;
*pDFileSet->pDataF = *pSet->pDataF;
*pDFileSet->pLastF = *pSet->pLastF;
*pDFileSet->pSmaF = *pSet->pSmaF;
// sst
if (pSet->nSstF > pDFileSet->nSstF) {
ASSERT(pSet->nSstF == pDFileSet->nSstF + 1);
pDFileSet->aSstF[pDFileSet->nSstF] = (SSstFile *)taosMemoryMalloc(sizeof(SSstFile));
if (pDFileSet->aSstF[pDFileSet->nSstF] == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _exit;
}
*pDFileSet->aSstF[pDFileSet->nSstF] = *pSet->aSstF[pSet->nSstF - 1];
pDFileSet->nSstF++;
} else if (pSet->nSstF < pDFileSet->nSstF) {
ASSERT(pSet->nSstF == 1);
for (int32_t iSst = 1; iSst < pDFileSet->nSstF; iSst++) {
taosMemoryFree(pDFileSet->aSstF[iSst]);
}
*pDFileSet->aSstF[0] = *pSet->aSstF[0];
pDFileSet->nSstF = 1;
} else {
for (int32_t iSst = 0; iSst < pSet->nSstF; iSst++) {
*pDFileSet->aSstF[iSst] = *pSet->aSstF[iSst];
}
}
goto _exit;
}
}
SDFileSet fSet = {.diskId = pSet->diskId, .fid = pSet->fid};
ASSERT(pSet->nSstF == 1);
SDFileSet fSet = {.diskId = pSet->diskId, .fid = pSet->fid, .nSstF = 1};
// head
fSet.pHeadF = (SHeadFile *)taosMemoryMalloc(sizeof(SHeadFile));
@ -676,15 +682,7 @@ int32_t tsdbFSUpsertFSet(STsdbFS *pFS, SDFileSet *pSet) {
}
*fSet.pDataF = *pSet->pDataF;
// data
fSet.pLastF = (SLastFile *)taosMemoryMalloc(sizeof(SLastFile));
if (fSet.pLastF == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _exit;
}
*fSet.pLastF = *pSet->pLastF;
// last
// sma
fSet.pSmaF = (SSmaFile *)taosMemoryMalloc(sizeof(SSmaFile));
if (fSet.pSmaF == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
@ -692,6 +690,14 @@ int32_t tsdbFSUpsertFSet(STsdbFS *pFS, SDFileSet *pSet) {
}
*fSet.pSmaF = *pSet->pSmaF;
// sst
fSet.aSstF[0] = (SSstFile *)taosMemoryMalloc(sizeof(SSstFile));
if (fSet.aSstF[0] == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _exit;
}
*fSet.aSstF[0] = *pSet->aSstF[0];
if (taosArrayInsert(pFS->aDFileSet, idx, &fSet) == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _exit;
@ -836,27 +842,6 @@ int32_t tsdbFSCommit2(STsdb *pTsdb, STsdbFS *pFSNew) {
pSetOld->pDataF->size = pSetNew->pDataF->size;
}
// last
fSet.pLastF = pSetOld->pLastF;
if ((!sameDisk) || (pSetOld->pLastF->commitID != pSetNew->pLastF->commitID)) {
pSetOld->pLastF = (SLastFile *)taosMemoryMalloc(sizeof(SLastFile));
if (pSetOld->pLastF == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
*pSetOld->pLastF = *pSetNew->pLastF;
pSetOld->pLastF->nRef = 1;
nRef = atomic_sub_fetch_32(&fSet.pLastF->nRef, 1);
if (nRef == 0) {
tsdbLastFileName(pTsdb, pSetOld->diskId, pSetOld->fid, fSet.pLastF, fname);
taosRemoveFile(fname);
taosMemoryFree(fSet.pLastF);
}
} else {
ASSERT(pSetOld->pLastF->size == pSetNew->pLastF->size);
}
// sma
fSet.pSmaF = pSetOld->pSmaF;
if ((!sameDisk) || (pSetOld->pSmaF->commitID != pSetNew->pSmaF->commitID)) {
@ -879,6 +864,84 @@ int32_t tsdbFSCommit2(STsdb *pTsdb, STsdbFS *pFSNew) {
pSetOld->pSmaF->size = pSetNew->pSmaF->size;
}
// sst
if (sameDisk) {
if (pSetNew->nSstF > pSetOld->nSstF) {
ASSERT(pSetNew->nSstF = pSetOld->nSstF + 1);
pSetOld->aSstF[pSetOld->nSstF] = (SSstFile *)taosMemoryMalloc(sizeof(SSstFile));
if (pSetOld->aSstF[pSetOld->nSstF] == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
*pSetOld->aSstF[pSetOld->nSstF] = *pSetNew->aSstF[pSetOld->nSstF];
pSetOld->aSstF[pSetOld->nSstF]->nRef = 1;
pSetOld->nSstF++;
} else if (pSetNew->nSstF < pSetOld->nSstF) {
ASSERT(pSetNew->nSstF == 1);
for (int32_t iSst = 0; iSst < pSetOld->nSstF; iSst++) {
SSstFile *pSstFile = pSetOld->aSstF[iSst];
nRef = atomic_sub_fetch_32(&pSstFile->nRef, 1);
if (nRef == 0) {
tsdbSstFileName(pTsdb, pSetOld->diskId, pSetOld->fid, pSstFile, fname);
taosRemoveFile(fname);
taosMemoryFree(pSstFile);
}
pSetOld->aSstF[iSst] = NULL;
}
pSetOld->nSstF = 1;
pSetOld->aSstF[0] = (SSstFile *)taosMemoryMalloc(sizeof(SSstFile));
if (pSetOld->aSstF[0] == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
*pSetOld->aSstF[0] = *pSetNew->aSstF[0];
pSetOld->aSstF[0]->nRef = 1;
} else {
for (int32_t iSst = 0; iSst < pSetOld->nSstF; iSst++) {
if (pSetOld->aSstF[iSst]->commitID != pSetNew->aSstF[iSst]->commitID) {
SSstFile *pSstFile = pSetOld->aSstF[iSst];
nRef = atomic_sub_fetch_32(&pSstFile->nRef, 1);
if (nRef == 0) {
tsdbSstFileName(pTsdb, pSetOld->diskId, pSetOld->fid, pSstFile, fname);
taosRemoveFile(fname);
taosMemoryFree(pSstFile);
}
pSetOld->aSstF[iSst] = (SSstFile *)taosMemoryMalloc(sizeof(SSstFile));
if (pSetOld->aSstF[iSst] == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
*pSetOld->aSstF[iSst] = *pSetNew->aSstF[iSst];
pSetOld->aSstF[iSst]->nRef = 1;
} else {
ASSERT(pSetOld->aSstF[iSst]->size == pSetOld->aSstF[iSst]->size);
ASSERT(pSetOld->aSstF[iSst]->offset == pSetOld->aSstF[iSst]->offset);
}
}
}
} else {
ASSERT(pSetOld->nSstF == pSetNew->nSstF);
for (int32_t iSst = 0; iSst < pSetOld->nSstF; iSst++) {
SSstFile *pSstFile = pSetOld->aSstF[iSst];
nRef = atomic_sub_fetch_32(&pSstFile->nRef, 1);
if (nRef == 0) {
tsdbSstFileName(pTsdb, pSetOld->diskId, pSetOld->fid, pSstFile, fname);
taosRemoveFile(fname);
taosMemoryFree(pSstFile);
}
pSetOld->aSstF[iSst] = (SSstFile *)taosMemoryMalloc(sizeof(SSstFile));
if (pSetOld->aSstF[iSst] == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
*pSetOld->aSstF[iSst] = *pSetNew->aSstF[iSst];
pSetOld->aSstF[iSst]->nRef = 1;
}
}
if (!sameDisk) {
pSetOld->diskId = pSetNew->diskId;
}
@ -902,13 +965,6 @@ int32_t tsdbFSCommit2(STsdb *pTsdb, STsdbFS *pFSNew) {
taosMemoryFree(pSetOld->pDataF);
}
nRef = atomic_sub_fetch_32(&pSetOld->pLastF->nRef, 1);
if (nRef == 0) {
tsdbLastFileName(pTsdb, pSetOld->diskId, pSetOld->fid, pSetOld->pLastF, fname);
taosRemoveFile(fname);
taosMemoryFree(pSetOld->pLastF);
}
nRef = atomic_sub_fetch_32(&pSetOld->pSmaF->nRef, 1);
if (nRef == 0) {
tsdbSmaFileName(pTsdb, pSetOld->diskId, pSetOld->fid, pSetOld->pSmaF, fname);
@ -916,12 +972,20 @@ int32_t tsdbFSCommit2(STsdb *pTsdb, STsdbFS *pFSNew) {
taosMemoryFree(pSetOld->pSmaF);
}
for (int8_t iSst = 0; iSst < pSetOld->nSstF; iSst++) {
nRef = atomic_sub_fetch_32(&pSetOld->aSstF[iSst]->nRef, 1);
if (nRef == 0) {
tsdbSstFileName(pTsdb, pSetOld->diskId, pSetOld->fid, pSetOld->aSstF[iSst], fname);
taosRemoveFile(fname);
taosMemoryFree(pSetOld->aSstF[iSst]);
}
}
taosArrayRemove(pTsdb->fs.aDFileSet, iOld);
continue;
_add_new:
fSet.diskId = pSetNew->diskId;
fSet.fid = pSetNew->fid;
fSet = (SDFileSet){.diskId = pSetNew->diskId, .fid = pSetNew->fid, .nSstF = 1};
// head
fSet.pHeadF = (SHeadFile *)taosMemoryMalloc(sizeof(SHeadFile));
@ -941,15 +1005,6 @@ int32_t tsdbFSCommit2(STsdb *pTsdb, STsdbFS *pFSNew) {
*fSet.pDataF = *pSetNew->pDataF;
fSet.pDataF->nRef = 1;
// last
fSet.pLastF = (SLastFile *)taosMemoryMalloc(sizeof(SLastFile));
if (fSet.pLastF == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
*fSet.pLastF = *pSetNew->pLastF;
fSet.pLastF->nRef = 1;
// sma
fSet.pSmaF = (SSmaFile *)taosMemoryMalloc(sizeof(SSmaFile));
if (fSet.pSmaF == NULL) {
@ -959,6 +1014,16 @@ int32_t tsdbFSCommit2(STsdb *pTsdb, STsdbFS *pFSNew) {
*fSet.pSmaF = *pSetNew->pSmaF;
fSet.pSmaF->nRef = 1;
// sst
ASSERT(pSetNew->nSstF == 1);
fSet.aSstF[0] = (SSstFile *)taosMemoryMalloc(sizeof(SSstFile));
if (fSet.aSstF[0] == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
*fSet.aSstF[0] = *pSetNew->aSstF[0];
fSet.aSstF[0]->nRef = 1;
if (taosArrayInsert(pTsdb->fs.aDFileSet, iOld, &fSet) == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
@ -1002,12 +1067,14 @@ int32_t tsdbFSRef(STsdb *pTsdb, STsdbFS *pFS) {
nRef = atomic_fetch_add_32(&pSet->pDataF->nRef, 1);
ASSERT(nRef > 0);
nRef = atomic_fetch_add_32(&pSet->pLastF->nRef, 1);
ASSERT(nRef > 0);
nRef = atomic_fetch_add_32(&pSet->pSmaF->nRef, 1);
ASSERT(nRef > 0);
for (int32_t iSst = 0; iSst < pSet->nSstF; iSst++) {
nRef = atomic_fetch_add_32(&pSet->aSstF[iSst]->nRef, 1);
ASSERT(nRef > 0);
}
if (taosArrayPush(pFS->aDFileSet, &fSet) == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _exit;
@ -1053,15 +1120,6 @@ void tsdbFSUnref(STsdb *pTsdb, STsdbFS *pFS) {
taosMemoryFree(pSet->pDataF);
}
// last
nRef = atomic_sub_fetch_32(&pSet->pLastF->nRef, 1);
ASSERT(nRef >= 0);
if (nRef == 0) {
tsdbLastFileName(pTsdb, pSet->diskId, pSet->fid, pSet->pLastF, fname);
taosRemoveFile(fname);
taosMemoryFree(pSet->pLastF);
}
// sma
nRef = atomic_sub_fetch_32(&pSet->pSmaF->nRef, 1);
ASSERT(nRef >= 0);
@ -1070,6 +1128,18 @@ void tsdbFSUnref(STsdb *pTsdb, STsdbFS *pFS) {
taosRemoveFile(fname);
taosMemoryFree(pSet->pSmaF);
}
// sst
for (int32_t iSst = 0; iSst < pSet->nSstF; iSst++) {
nRef = atomic_sub_fetch_32(&pSet->aSstF[iSst]->nRef, 1);
ASSERT(nRef >= 0);
if (nRef == 0) {
tsdbSstFileName(pTsdb, pSet->diskId, pSet->fid, pSet->aSstF[iSst], fname);
taosRemoveFile(fname);
taosMemoryFree(pSet->aSstF[iSst]);
/* code */
}
}
}
taosArrayDestroy(pFS->aDFileSet);

View File

@ -53,22 +53,22 @@ static int32_t tGetDataFile(uint8_t *p, SDataFile *pDataFile) {
return n;
}
int32_t tPutLastFile(uint8_t *p, SLastFile *pLastFile) {
int32_t tPutSstFile(uint8_t *p, SSstFile *pSstFile) {
int32_t n = 0;
n += tPutI64v(p ? p + n : p, pLastFile->commitID);
n += tPutI64v(p ? p + n : p, pLastFile->size);
n += tPutI64v(p ? p + n : p, pLastFile->offset);
n += tPutI64v(p ? p + n : p, pSstFile->commitID);
n += tPutI64v(p ? p + n : p, pSstFile->size);
n += tPutI64v(p ? p + n : p, pSstFile->offset);
return n;
}
static int32_t tGetLastFile(uint8_t *p, SLastFile *pLastFile) {
static int32_t tGetSstFile(uint8_t *p, SSstFile *pSstFile) {
int32_t n = 0;
n += tGetI64v(p + n, &pLastFile->commitID);
n += tGetI64v(p + n, &pLastFile->size);
n += tGetI64v(p + n, &pLastFile->offset);
n += tGetI64v(p + n, &pSstFile->commitID);
n += tGetI64v(p + n, &pSstFile->size);
n += tGetI64v(p + n, &pSstFile->offset);
return n;
}
@ -102,9 +102,9 @@ void tsdbDataFileName(STsdb *pTsdb, SDiskID did, int32_t fid, SDataFile *pDataF,
TD_DIRSEP, pTsdb->path, TD_DIRSEP, TD_VID(pTsdb->pVnode), fid, pDataF->commitID, ".data");
}
void tsdbLastFileName(STsdb *pTsdb, SDiskID did, int32_t fid, SLastFile *pLastF, char fname[]) {
void tsdbSstFileName(STsdb *pTsdb, SDiskID did, int32_t fid, SSstFile *pSstF, char fname[]) {
snprintf(fname, TSDB_FILENAME_LEN - 1, "%s%s%s%sv%df%dver%" PRId64 "%s", tfsGetDiskPath(pTsdb->pVnode->pTfs, did),
TD_DIRSEP, pTsdb->path, TD_DIRSEP, TD_VID(pTsdb->pVnode), fid, pLastF->commitID, ".last");
TD_DIRSEP, pTsdb->path, TD_DIRSEP, TD_VID(pTsdb->pVnode), fid, pSstF->commitID, ".sst");
}
void tsdbSmaFileName(STsdb *pTsdb, SDiskID did, int32_t fid, SSmaFile *pSmaF, char fname[]) {
@ -194,9 +194,11 @@ int32_t tPutDFileSet(uint8_t *p, SDFileSet *pSet) {
n += tPutDataFile(p ? p + n : p, pSet->pDataF);
n += tPutSmaFile(p ? p + n : p, pSet->pSmaF);
// last
n += tPutU8(p ? p + n : p, 1); // for future compatibility
n += tPutLastFile(p ? p + n : p, pSet->pLastF);
// sst
n += tPutU8(p ? p + n : p, pSet->nSstF);
for (int32_t iSst = 0; iSst < pSet->nSstF; iSst++) {
n += tPutSstFile(p ? p + n : p, pSet->aSstF[iSst]);
}
return n;
}
@ -208,15 +210,40 @@ int32_t tGetDFileSet(uint8_t *p, SDFileSet *pSet) {
n += tGetI32v(p + n, &pSet->diskId.id);
n += tGetI32v(p + n, &pSet->fid);
// data
// head
pSet->pHeadF = (SHeadFile *)taosMemoryCalloc(1, sizeof(SHeadFile));
if (pSet->pHeadF == NULL) {
return -1;
}
pSet->pHeadF->nRef = 1;
n += tGetHeadFile(p + n, pSet->pHeadF);
// data
pSet->pDataF = (SDataFile *)taosMemoryCalloc(1, sizeof(SDataFile));
if (pSet->pDataF == NULL) {
return -1;
}
pSet->pDataF->nRef = 1;
n += tGetDataFile(p + n, pSet->pDataF);
// sma
pSet->pSmaF = (SSmaFile *)taosMemoryCalloc(1, sizeof(SSmaFile));
if (pSet->pSmaF == NULL) {
return -1;
}
pSet->pSmaF->nRef = 1;
n += tGetSmaFile(p + n, pSet->pSmaF);
// last
uint8_t nLast;
n += tGetU8(p + n, &nLast);
n += tGetLastFile(p + n, pSet->pLastF);
// sst
n += tGetU8(p + n, &pSet->nSstF);
for (int32_t iSst = 0; iSst < pSet->nSstF; iSst++) {
pSet->aSstF[iSst] = (SSstFile *)taosMemoryCalloc(1, sizeof(SSstFile));
if (pSet->aSstF[iSst] == NULL) {
return -1;
}
pSet->aSstF[iSst]->nRef = 1;
n += tGetSstFile(p + n, pSet->aSstF[iSst]);
}
return n;
}

View File

@ -0,0 +1,378 @@
/*
* Copyright (c) 2019 TAOS Data, Inc. <jhtao@taosdata.com>
*
* This program is free software: you can use, redistribute, and/or modify
* it under the terms of the GNU Affero General Public License, version 3
* or later ("AGPL"), as published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE.
*
* You should have received a copy of the GNU Affero General Public License
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include "tsdb.h"
// SLDataIter =================================================
typedef struct SLDataIter {
SRBTreeNode node;
SSstBlk *pSstBlk;
SDataFReader *pReader;
int32_t iSst;
int8_t backward;
SArray *aSstBlk;
int32_t iSstBlk;
SBlockData bData[2];
int32_t loadIndex;
int32_t iRow;
SRowInfo rInfo;
uint64_t uid;
STimeWindow timeWindow;
SVersionRange verRange;
} SLDataIter;
static SBlockData* getCurrentBlock(SLDataIter* pIter) {
return &pIter->bData[pIter->loadIndex];
}
static SBlockData* getNextBlock(SLDataIter* pIter) {
pIter->loadIndex ^= 1;
return getCurrentBlock(pIter);
}
int32_t tLDataIterOpen(struct SLDataIter **pIter, SDataFReader *pReader, int32_t iSst, int8_t backward, uint64_t uid,
STimeWindow *pTimeWindow, SVersionRange *pRange) {
int32_t code = 0;
*pIter = taosMemoryCalloc(1, sizeof(SLDataIter));
if (*pIter == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _exit;
}
(*pIter)->uid = uid;
(*pIter)->timeWindow = *pTimeWindow;
(*pIter)->verRange = *pRange;
(*pIter)->pReader = pReader;
(*pIter)->iSst = iSst;
(*pIter)->backward = backward;
(*pIter)->aSstBlk = taosArrayInit(0, sizeof(SSstBlk));
if ((*pIter)->aSstBlk == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _exit;
}
code = tBlockDataCreate(&(*pIter)->bData[0]);
if (code) {
goto _exit;
}
code = tBlockDataCreate(&(*pIter)->bData[1]);
if (code) {
goto _exit;
}
code = tsdbReadSstBlk(pReader, iSst, (*pIter)->aSstBlk);
if (code) {
goto _exit;
}
size_t size = taosArrayGetSize((*pIter)->aSstBlk);
// find the start block
int32_t index = -1;
if (!backward) { // asc
for (int32_t i = 0; i < size; ++i) {
SSstBlk *p = taosArrayGet((*pIter)->aSstBlk, i);
if (p->minUid <= uid && p->maxUid >= uid) {
index = i;
break;
}
}
} else { // desc
for (int32_t i = size - 1; i >= 0; --i) {
SSstBlk *p = taosArrayGet((*pIter)->aSstBlk, i);
if (p->minUid <= uid && p->maxUid >= uid) {
index = i;
break;
}
}
}
(*pIter)->iSstBlk = index;
if (index != -1) {
(*pIter)->pSstBlk = taosArrayGet((*pIter)->aSstBlk, (*pIter)->iSstBlk);
}
_exit:
return code;
}
void tLDataIterClose(SLDataIter *pIter) {
tBlockDataDestroy(&pIter->bData[0], 1);
tBlockDataDestroy(&pIter->bData[1], 1);
taosArrayDestroy(pIter->aSstBlk);
taosMemoryFree(pIter);
}
extern int32_t tsdbReadSstBlockEx(SDataFReader *pReader, int32_t iSst, SSstBlk *pSstBlk, SBlockData *pBlockData);
void tLDataIterNextBlock(SLDataIter *pIter) {
int32_t step = pIter->backward ? -1 : 1;
pIter->iSstBlk += step;
int32_t index = -1;
size_t size = taosArrayGetSize(pIter->aSstBlk);
for (int32_t i = pIter->iSstBlk; i < size && i >= 0; i += step) {
SSstBlk *p = taosArrayGet(pIter->aSstBlk, i);
if ((!pIter->backward) && p->minUid > pIter->uid) {
break;
}
if (pIter->backward && p->maxUid < pIter->uid) {
break;
}
if (p->minUid <= pIter->uid && p->maxUid >= pIter->uid) {
index = i;
break;
}
}
if (index == -1) {
pIter->pSstBlk = NULL;
} else {
pIter->pSstBlk = (SSstBlk *)taosArrayGet(pIter->aSstBlk, pIter->iSstBlk);
}
}
static void findNextValidRow(SLDataIter *pIter) {
int32_t step = pIter->backward ? -1 : 1;
bool hasVal = false;
int32_t i = pIter->iRow;
SBlockData* pBlockData = getCurrentBlock(pIter);
for (; i < pBlockData->nRow && i >= 0; i += step) {
if (pBlockData->aUid != NULL) {
if (!pIter->backward) {
if (pBlockData->aUid[i] < pIter->uid) {
continue;
} else if (pBlockData->aUid[i] > pIter->uid) {
break;
}
} else {
if (pBlockData->aUid[i] > pIter->uid) {
continue;
} else if (pBlockData->aUid[i] < pIter->uid) {
break;
}
}
}
int64_t ts = pBlockData->aTSKEY[i];
if (!pIter->backward) { // asc
if (ts > pIter->timeWindow.ekey) { // no more data
break;
} else if (ts < pIter->timeWindow.skey) {
continue;
}
} else {
if (ts < pIter->timeWindow.skey) {
break;
} else if (ts > pIter->timeWindow.ekey) {
continue;
}
}
int64_t ver = pBlockData->aVersion[i];
if (ver < pIter->verRange.minVer) {
continue;
}
// todo opt handle desc case
if (ver > pIter->verRange.maxVer) {
continue;
}
// todo handle delete soon
#if 0
TSDBKEY k = {.ts = ts, .version = ver};
if (hasBeenDropped(pBlockScanInfo->delSkyline, &pBlockScanInfo->lastBlockDelIndex, &k, pLastBlockReader->order)) {
continue;
}
#endif
hasVal = true;
break;
}
pIter->iRow = (hasVal) ? i : -1;
}
bool tLDataIterNextRow(SLDataIter *pIter) {
int32_t code = 0;
int32_t step = pIter->backward ? -1 : 1;
// no qualified last file block in current file, no need to fetch row
if (pIter->pSstBlk == NULL) {
return false;
}
int32_t iBlockL = pIter->iSstBlk;
SBlockData* pBlockData = getCurrentBlock(pIter);
if (pBlockData->nRow == 0 && pIter->pSstBlk != NULL) { // current block not loaded yet
pBlockData = getNextBlock(pIter);
code = tsdbReadSstBlockEx(pIter->pReader, pIter->iSst, pIter->pSstBlk, pBlockData);
if (code != TSDB_CODE_SUCCESS) {
goto _exit;
}
pIter->iRow = (pIter->backward) ? pBlockData->nRow : -1;
}
pIter->iRow += step;
while (1) {
findNextValidRow(pIter);
if (pIter->iRow >= pBlockData->nRow || pIter->iRow < 0) {
tLDataIterNextBlock(pIter);
if (pIter->pSstBlk == NULL) { // no more data
goto _exit;
}
} else {
break;
}
if (iBlockL != pIter->iSstBlk) {
pBlockData = getNextBlock(pIter);
code = tsdbReadSstBlockEx(pIter->pReader, pIter->iSst, pIter->pSstBlk, pBlockData);
if (code) {
goto _exit;
}
pIter->iRow = pIter->backward ? (pBlockData->nRow - 1) : 0;
}
}
pIter->rInfo.suid = pBlockData->suid;
pIter->rInfo.uid = pBlockData->uid;
pIter->rInfo.row = tsdbRowFromBlockData(pBlockData, pIter->iRow);
_exit:
if (code != TSDB_CODE_SUCCESS) {
terrno = code;
}
return (code == TSDB_CODE_SUCCESS) && (pIter->pSstBlk != NULL);
}
SRowInfo *tLDataIterGet(SLDataIter *pIter) { return &pIter->rInfo; }
// SMergeTree =================================================
static FORCE_INLINE int32_t tLDataIterCmprFn(const void *p1, const void *p2) {
SLDataIter *pIter1 = (SLDataIter *)(((uint8_t *)p1) - sizeof(SRBTreeNode));
SLDataIter *pIter2 = (SLDataIter *)(((uint8_t *)p2) - sizeof(SRBTreeNode));
TSDBKEY key1 = TSDBROW_KEY(&pIter1->rInfo.row);
TSDBKEY key2 = TSDBROW_KEY(&pIter2->rInfo.row);
if (key1.ts < key2.ts) {
return -1;
} else if (key1.ts > key2.ts) {
return 1;
} else {
if (key1.version < key2.version) {
return -1;
} else if (key1.version > key2.version) {
return 1;
} else {
return 0;
}
}
}
int32_t tMergeTreeOpen(SMergeTree *pMTree, int8_t backward, SDataFReader *pFReader, uint64_t uid,
STimeWindow *pTimeWindow, SVersionRange *pVerRange) {
pMTree->backward = backward;
pMTree->pIter = NULL;
pMTree->pIterList = taosArrayInit(4, POINTER_BYTES);
if (pMTree->pIterList == NULL) {
return TSDB_CODE_OUT_OF_MEMORY;
}
tRBTreeCreate(&pMTree->rbt, tLDataIterCmprFn);
int32_t code = TSDB_CODE_OUT_OF_MEMORY;
struct SLDataIter *pIterList[TSDB_DEFAULT_LAST_FILE] = {0};
for (int32_t i = 0; i < pFReader->pSet->nSstF; ++i) { // open all last file
code = tLDataIterOpen(&pIterList[i], pFReader, i, pMTree->backward, uid, pTimeWindow, pVerRange);
if (code != TSDB_CODE_SUCCESS) {
goto _end;
}
bool hasVal = tLDataIterNextRow(pIterList[i]);
if (hasVal) {
taosArrayPush(pMTree->pIterList, &pIterList[i]);
tMergeTreeAddIter(pMTree, pIterList[i]);
} else {
tLDataIterClose(pIterList[i]);
}
}
return code;
_end:
tMergeTreeClose(pMTree);
return code;
}
void tMergeTreeAddIter(SMergeTree *pMTree, SLDataIter *pIter) { tRBTreePut(&pMTree->rbt, (SRBTreeNode *)pIter); }
bool tMergeTreeNext(SMergeTree *pMTree) {
int32_t code = TSDB_CODE_SUCCESS;
if (pMTree->pIter) {
SLDataIter *pIter = pMTree->pIter;
bool hasVal = tLDataIterNextRow(pIter);
if (!hasVal) {
pMTree->pIter = NULL;
}
// compare with min in RB Tree
pIter = (SLDataIter *)tRBTreeMin(&pMTree->rbt);
if (pMTree->pIter && pIter) {
int32_t c = pMTree->rbt.cmprFn(RBTREE_NODE_PAYLOAD(&pMTree->pIter->node), RBTREE_NODE_PAYLOAD(&pIter->node));
if (c > 0) {
tRBTreePut(&pMTree->rbt, (SRBTreeNode *)pMTree->pIter);
pMTree->pIter = NULL;
} else {
ASSERT(c);
}
}
}
if (pMTree->pIter == NULL) {
pMTree->pIter = (SLDataIter *)tRBTreeMin(&pMTree->rbt);
if (pMTree->pIter) {
tRBTreeDrop(&pMTree->rbt, (SRBTreeNode *)pMTree->pIter);
}
}
return pMTree->pIter != NULL;
}
TSDBROW tMergeTreeGetRow(SMergeTree *pMTree) { return pMTree->pIter->rInfo.row; }
void tMergeTreeClose(SMergeTree *pMTree) {
size_t size = taosArrayGetSize(pMTree->pIterList);
for (int32_t i = 0; i < size; ++i) {
SLDataIter *pIter = taosArrayGetP(pMTree->pIterList, i);
tLDataIterClose(pIter);
}
pMTree->pIterList = taosArrayDestroy(pMTree->pIterList);
pMTree->pIter = NULL;
}

File diff suppressed because it is too large Load Diff

View File

@ -394,17 +394,6 @@ _err:
}
// SDataFReader ====================================================
struct SDataFReader {
STsdb *pTsdb;
SDFileSet *pSet;
TdFilePtr pHeadFD;
TdFilePtr pDataFD;
TdFilePtr pLastFD;
TdFilePtr pSmaFD;
uint8_t *aBuf[3];
};
int32_t tsdbDataFReaderOpen(SDataFReader **ppReader, STsdb *pTsdb, SDFileSet *pSet) {
int32_t code = 0;
SDataFReader *pReader;
@ -436,14 +425,6 @@ int32_t tsdbDataFReaderOpen(SDataFReader **ppReader, STsdb *pTsdb, SDFileSet *pS
goto _err;
}
// last
tsdbLastFileName(pTsdb, pSet->diskId, pSet->fid, pSet->pLastF, fname);
pReader->pLastFD = taosOpenFile(fname, TD_FILE_READ);
if (pReader->pLastFD == NULL) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
// sma
tsdbSmaFileName(pTsdb, pSet->diskId, pSet->fid, pSet->pSmaF, fname);
pReader->pSmaFD = taosOpenFile(fname, TD_FILE_READ);
@ -452,6 +433,16 @@ int32_t tsdbDataFReaderOpen(SDataFReader **ppReader, STsdb *pTsdb, SDFileSet *pS
goto _err;
}
// sst
for (int32_t iSst = 0; iSst < pSet->nSstF; iSst++) {
tsdbSstFileName(pTsdb, pSet->diskId, pSet->fid, pSet->aSstF[iSst], fname);
pReader->aLastFD[iSst] = taosOpenFile(fname, TD_FILE_READ);
if (pReader->aLastFD[iSst] == NULL) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
}
*ppReader = pReader;
return code;
@ -465,30 +456,35 @@ int32_t tsdbDataFReaderClose(SDataFReader **ppReader) {
int32_t code = 0;
if (*ppReader == NULL) goto _exit;
// head
if (taosCloseFile(&(*ppReader)->pHeadFD) < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
// data
if (taosCloseFile(&(*ppReader)->pDataFD) < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
if (taosCloseFile(&(*ppReader)->pLastFD) < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
// sma
if (taosCloseFile(&(*ppReader)->pSmaFD) < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
// sst
for (int32_t iSst = 0; iSst < (*ppReader)->pSet->nSstF; iSst++) {
if (taosCloseFile(&(*ppReader)->aLastFD[iSst]) < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
}
for (int32_t iBuf = 0; iBuf < sizeof((*ppReader)->aBuf) / sizeof(uint8_t *); iBuf++) {
tFree((*ppReader)->aBuf[iBuf]);
}
taosMemoryFree(*ppReader);
_exit:
@ -563,14 +559,14 @@ _err:
return code;
}
int32_t tsdbReadBlockL(SDataFReader *pReader, SArray *aBlockL) {
int32_t tsdbReadSstBlk(SDataFReader *pReader, int32_t iSst, SArray *aSstBlk) {
int32_t code = 0;
int64_t offset = pReader->pSet->pLastF->offset;
int64_t size = pReader->pSet->pLastF->size - offset;
int64_t offset = pReader->pSet->aSstF[iSst]->offset;
int64_t size = pReader->pSet->aSstF[iSst]->size - offset;
int64_t n;
uint32_t delimiter;
taosArrayClear(aBlockL);
taosArrayClear(aSstBlk);
if (size == 0) {
goto _exit;
}
@ -580,13 +576,13 @@ int32_t tsdbReadBlockL(SDataFReader *pReader, SArray *aBlockL) {
if (code) goto _err;
// seek
if (taosLSeekFile(pReader->pLastFD, offset, SEEK_SET) < 0) {
if (taosLSeekFile(pReader->aLastFD[iSst], offset, SEEK_SET) < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
// read
n = taosReadFile(pReader->pLastFD, pReader->aBuf[0], size);
n = taosReadFile(pReader->aLastFD[iSst], pReader->aBuf[0], size);
if (n < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
@ -607,10 +603,10 @@ int32_t tsdbReadBlockL(SDataFReader *pReader, SArray *aBlockL) {
ASSERT(delimiter == TSDB_FILE_DLMT);
while (n < size - sizeof(TSCKSUM)) {
SBlockL blockl;
n += tGetBlockL(pReader->aBuf[0] + n, &blockl);
SSstBlk blockl;
n += tGetSstBlk(pReader->aBuf[0] + n, &blockl);
if (taosArrayPush(aBlockL, &blockl) == NULL) {
if (taosArrayPush(aSstBlk, &blockl) == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
@ -681,9 +677,9 @@ _err:
return code;
}
int32_t tsdbReadBlockSma(SDataFReader *pReader, SBlock *pBlock, SArray *aColumnDataAgg) {
int32_t tsdbReadBlockSma(SDataFReader *pReader, SDataBlk *pDataBlk, SArray *aColumnDataAgg) {
int32_t code = 0;
SSmaInfo *pSmaInfo = &pBlock->smaInfo;
SSmaInfo *pSmaInfo = &pDataBlk->smaInfo;
ASSERT(pSmaInfo->size > 0);
@ -745,7 +741,7 @@ static int32_t tsdbReadBlockDataImpl(SDataFReader *pReader, SBlockInfo *pBlkInfo
tBlockDataClear(pBlockData);
TdFilePtr pFD = fromLast ? pReader->pLastFD : pReader->pDataFD;
TdFilePtr pFD = fromLast ? pReader->aLastFD[0] : pReader->pDataFD; // (todo)
// uid + version + tskey
code = tsdbReadAndCheck(pFD, pBlkInfo->offset, &pReader->aBuf[0], pBlkInfo->szKey, 1);
@ -847,13 +843,13 @@ _err:
return code;
}
int32_t tsdbReadDataBlock(SDataFReader *pReader, SBlock *pBlock, SBlockData *pBlockData) {
int32_t tsdbReadDataBlock(SDataFReader *pReader, SDataBlk *pDataBlk, SBlockData *pBlockData) {
int32_t code = 0;
code = tsdbReadBlockDataImpl(pReader, &pBlock->aSubBlock[0], 0, pBlockData);
code = tsdbReadBlockDataImpl(pReader, &pDataBlk->aSubBlock[0], 0, pBlockData);
if (code) goto _err;
if (pBlock->nSubBlock > 1) {
if (pDataBlk->nSubBlock > 1) {
SBlockData bData1;
SBlockData bData2;
@ -867,8 +863,8 @@ int32_t tsdbReadDataBlock(SDataFReader *pReader, SBlock *pBlock, SBlockData *pBl
tBlockDataInitEx(&bData1, pBlockData);
tBlockDataInitEx(&bData2, pBlockData);
for (int32_t iSubBlock = 1; iSubBlock < pBlock->nSubBlock; iSubBlock++) {
code = tsdbReadBlockDataImpl(pReader, &pBlock->aSubBlock[iSubBlock], 0, &bData1);
for (int32_t iSubBlock = 1; iSubBlock < pDataBlk->nSubBlock; iSubBlock++) {
code = tsdbReadBlockDataImpl(pReader, &pDataBlk->aSubBlock[iSubBlock], 0, &bData1);
if (code) {
tBlockDataDestroy(&bData1, 1);
tBlockDataDestroy(&bData2, 1);
@ -901,10 +897,10 @@ _err:
return code;
}
int32_t tsdbReadLastBlock(SDataFReader *pReader, SBlockL *pBlockL, SBlockData *pBlockData) {
int32_t tsdbReadSstBlock(SDataFReader *pReader, int32_t iSst, SSstBlk *pSstBlk, SBlockData *pBlockData) {
int32_t code = 0;
code = tsdbReadBlockDataImpl(pReader, &pBlockL->bInfo, 1, pBlockData);
code = tsdbReadBlockDataImpl(pReader, &pSstBlk->bInfo, 1, pBlockData);
if (code) goto _err;
return code;
@ -914,6 +910,21 @@ _err:
return code;
}
int32_t tsdbReadSstBlockEx(SDataFReader *pReader, int32_t iSst, SSstBlk *pSstBlk, SBlockData *pBlockData) {
int32_t code = 0;
// read
code = tsdbReadAndCheck(pReader->aLastFD[iSst], pSstBlk->bInfo.offset, &pReader->aBuf[0], pSstBlk->bInfo.szBlock, 0);
if (code) goto _exit;
// decmpr
code = tDecmprBlockData(pReader->aBuf[0], pSstBlk->bInfo.szBlock, pBlockData, &pReader->aBuf[1]);
if (code) goto _exit;
_exit:
return code;
}
// SDataFWriter ====================================================
int32_t tsdbDataFWriterOpen(SDataFWriter **ppWriter, STsdb *pTsdb, SDFileSet *pSet) {
int32_t code = 0;
@ -929,18 +940,22 @@ int32_t tsdbDataFWriterOpen(SDataFWriter **ppWriter, STsdb *pTsdb, SDFileSet *pS
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
if (code) goto _err;
pWriter->pTsdb = pTsdb;
pWriter->wSet = (SDFileSet){.diskId = pSet->diskId,
pWriter->wSet = (SDFileSet){
.diskId = pSet->diskId,
.fid = pSet->fid,
.pHeadF = &pWriter->fHead,
.pDataF = &pWriter->fData,
.pLastF = &pWriter->fLast,
.pSmaF = &pWriter->fSma};
.pSmaF = &pWriter->fSma,
.nSstF = pSet->nSstF //
};
pWriter->fHead = *pSet->pHeadF;
pWriter->fData = *pSet->pDataF;
pWriter->fLast = *pSet->pLastF;
pWriter->fSma = *pSet->pSmaF;
for (int8_t iSst = 0; iSst < pSet->nSstF; iSst++) {
pWriter->wSet.aSstF[iSst] = &pWriter->fSst[iSst];
pWriter->fSst[iSst] = *pSet->aSstF[iSst];
}
// head
flag = TD_FILE_WRITE | TD_FILE_CREATE | TD_FILE_TRUNC;
@ -991,36 +1006,6 @@ int32_t tsdbDataFWriterOpen(SDataFWriter **ppWriter, STsdb *pTsdb, SDFileSet *pS
ASSERT(n == pWriter->fData.size);
}
// last
if (pWriter->fLast.size == 0) {
flag = TD_FILE_WRITE | TD_FILE_CREATE | TD_FILE_TRUNC;
} else {
flag = TD_FILE_WRITE;
}
tsdbLastFileName(pTsdb, pWriter->wSet.diskId, pWriter->wSet.fid, &pWriter->fLast, fname);
pWriter->pLastFD = taosOpenFile(fname, flag);
if (pWriter->pLastFD == NULL) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
if (pWriter->fLast.size == 0) {
n = taosWriteFile(pWriter->pLastFD, hdr, TSDB_FHDR_SIZE);
if (n < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
pWriter->fLast.size += TSDB_FHDR_SIZE;
} else {
n = taosLSeekFile(pWriter->pLastFD, 0, SEEK_END);
if (n < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
ASSERT(n == pWriter->fLast.size);
}
// sma
if (pWriter->fSma.size == 0) {
flag = TD_FILE_WRITE | TD_FILE_CREATE | TD_FILE_TRUNC;
@ -1051,6 +1036,22 @@ int32_t tsdbDataFWriterOpen(SDataFWriter **ppWriter, STsdb *pTsdb, SDFileSet *pS
ASSERT(n == pWriter->fSma.size);
}
// sst
ASSERT(pWriter->fSst[pSet->nSstF - 1].size == 0);
flag = TD_FILE_WRITE | TD_FILE_CREATE | TD_FILE_TRUNC;
tsdbSstFileName(pTsdb, pWriter->wSet.diskId, pWriter->wSet.fid, &pWriter->fSst[pSet->nSstF - 1], fname);
pWriter->pLastFD = taosOpenFile(fname, flag);
if (pWriter->pLastFD == NULL) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
n = taosWriteFile(pWriter->pLastFD, hdr, TSDB_FHDR_SIZE);
if (n < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
pWriter->fSst[pWriter->wSet.nSstF - 1].size += TSDB_FHDR_SIZE;
*ppWriter = pWriter;
return code;
@ -1078,12 +1079,12 @@ int32_t tsdbDataFWriterClose(SDataFWriter **ppWriter, int8_t sync) {
goto _err;
}
if (taosFsyncFile((*ppWriter)->pLastFD) < 0) {
if (taosFsyncFile((*ppWriter)->pSmaFD) < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
if (taosFsyncFile((*ppWriter)->pSmaFD) < 0) {
if (taosFsyncFile((*ppWriter)->pLastFD) < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
@ -1099,12 +1100,12 @@ int32_t tsdbDataFWriterClose(SDataFWriter **ppWriter, int8_t sync) {
goto _err;
}
if (taosCloseFile(&(*ppWriter)->pLastFD) < 0) {
if (taosCloseFile(&(*ppWriter)->pSmaFD) < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
if (taosCloseFile(&(*ppWriter)->pSmaFD) < 0) {
if (taosCloseFile(&(*ppWriter)->pLastFD) < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
@ -1161,23 +1162,6 @@ int32_t tsdbUpdateDFileSetHeader(SDataFWriter *pWriter) {
goto _err;
}
// last ==============
memset(hdr, 0, TSDB_FHDR_SIZE);
tPutLastFile(hdr, &pWriter->fLast);
taosCalcChecksumAppend(0, hdr, TSDB_FHDR_SIZE);
n = taosLSeekFile(pWriter->pLastFD, 0, SEEK_SET);
if (n < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
n = taosWriteFile(pWriter->pLastFD, hdr, TSDB_FHDR_SIZE);
if (n < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
// sma ==============
memset(hdr, 0, TSDB_FHDR_SIZE);
tPutSmaFile(hdr, &pWriter->fSma);
@ -1195,6 +1179,23 @@ int32_t tsdbUpdateDFileSetHeader(SDataFWriter *pWriter) {
goto _err;
}
// sst ==============
memset(hdr, 0, TSDB_FHDR_SIZE);
tPutSstFile(hdr, &pWriter->fSst[pWriter->wSet.nSstF - 1]);
taosCalcChecksumAppend(0, hdr, TSDB_FHDR_SIZE);
n = taosLSeekFile(pWriter->pLastFD, 0, SEEK_SET);
if (n < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
n = taosWriteFile(pWriter->pLastFD, hdr, TSDB_FHDR_SIZE);
if (n < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;
}
return code;
_err:
@ -1300,22 +1301,22 @@ _err:
return code;
}
int32_t tsdbWriteBlockL(SDataFWriter *pWriter, SArray *aBlockL) {
int32_t tsdbWriteSstBlk(SDataFWriter *pWriter, SArray *aSstBlk) {
int32_t code = 0;
SLastFile *pLastFile = &pWriter->fLast;
SSstFile *pSstFile = &pWriter->fSst[pWriter->wSet.nSstF - 1];
int64_t size = 0;
int64_t n;
// check
if (taosArrayGetSize(aBlockL) == 0) {
pLastFile->offset = pLastFile->size;
if (taosArrayGetSize(aSstBlk) == 0) {
pSstFile->offset = pSstFile->size;
goto _exit;
}
// size
size = sizeof(uint32_t); // TSDB_FILE_DLMT
for (int32_t iBlockL = 0; iBlockL < taosArrayGetSize(aBlockL); iBlockL++) {
size += tPutBlockL(NULL, taosArrayGet(aBlockL, iBlockL));
for (int32_t iBlockL = 0; iBlockL < taosArrayGetSize(aSstBlk); iBlockL++) {
size += tPutSstBlk(NULL, taosArrayGet(aSstBlk, iBlockL));
}
size += sizeof(TSCKSUM);
@ -1326,8 +1327,8 @@ int32_t tsdbWriteBlockL(SDataFWriter *pWriter, SArray *aBlockL) {
// encode
n = 0;
n += tPutU32(pWriter->aBuf[0] + n, TSDB_FILE_DLMT);
for (int32_t iBlockL = 0; iBlockL < taosArrayGetSize(aBlockL); iBlockL++) {
n += tPutBlockL(pWriter->aBuf[0] + n, taosArrayGet(aBlockL, iBlockL));
for (int32_t iBlockL = 0; iBlockL < taosArrayGetSize(aSstBlk); iBlockL++) {
n += tPutSstBlk(pWriter->aBuf[0] + n, taosArrayGet(aSstBlk, iBlockL));
}
taosCalcChecksumAppend(0, pWriter->aBuf[0], size);
@ -1341,12 +1342,12 @@ int32_t tsdbWriteBlockL(SDataFWriter *pWriter, SArray *aBlockL) {
}
// update
pLastFile->offset = pLastFile->size;
pLastFile->size += size;
pSstFile->offset = pSstFile->size;
pSstFile->size += size;
_exit:
tsdbTrace("vgId:%d tsdb write blockl, loffset:%" PRId64 " size:%" PRId64, TD_VID(pWriter->pTsdb->pVnode),
pLastFile->offset, size);
pSstFile->offset, size);
return code;
_err:
@ -1354,28 +1355,28 @@ _err:
return code;
}
static void tsdbUpdateBlockInfo(SBlockData *pBlockData, SBlock *pBlock) {
static void tsdbUpdateBlockInfo(SBlockData *pBlockData, SDataBlk *pDataBlk) {
for (int32_t iRow = 0; iRow < pBlockData->nRow; iRow++) {
TSDBKEY key = {.ts = pBlockData->aTSKEY[iRow], .version = pBlockData->aVersion[iRow]};
if (iRow == 0) {
if (tsdbKeyCmprFn(&pBlock->minKey, &key) > 0) {
pBlock->minKey = key;
if (tsdbKeyCmprFn(&pDataBlk->minKey, &key) > 0) {
pDataBlk->minKey = key;
}
} else {
if (pBlockData->aTSKEY[iRow] == pBlockData->aTSKEY[iRow - 1]) {
pBlock->hasDup = 1;
pDataBlk->hasDup = 1;
}
}
if (iRow == pBlockData->nRow - 1 && tsdbKeyCmprFn(&pBlock->maxKey, &key) < 0) {
pBlock->maxKey = key;
if (iRow == pBlockData->nRow - 1 && tsdbKeyCmprFn(&pDataBlk->maxKey, &key) < 0) {
pDataBlk->maxKey = key;
}
pBlock->minVer = TMIN(pBlock->minVer, key.version);
pBlock->maxVer = TMAX(pBlock->maxVer, key.version);
pDataBlk->minVer = TMIN(pDataBlk->minVer, key.version);
pDataBlk->maxVer = TMAX(pDataBlk->maxVer, key.version);
}
pBlock->nRow += pBlockData->nRow;
pDataBlk->nRow += pBlockData->nRow;
}
static int32_t tsdbWriteBlockSma(SDataFWriter *pWriter, SBlockData *pBlockData, SSmaInfo *pSmaInfo) {
@ -1430,7 +1431,7 @@ int32_t tsdbWriteBlockData(SDataFWriter *pWriter, SBlockData *pBlockData, SBlock
ASSERT(pBlockData->nRow > 0);
pBlkInfo->offset = toLast ? pWriter->fLast.size : pWriter->fData.size;
pBlkInfo->offset = toLast ? pWriter->fSst[pWriter->wSet.nSstF - 1].size : pWriter->fData.size;
pBlkInfo->szBlock = 0;
pBlkInfo->szKey = 0;
@ -1474,7 +1475,7 @@ int32_t tsdbWriteBlockData(SDataFWriter *pWriter, SBlockData *pBlockData, SBlock
// update info
if (toLast) {
pWriter->fLast.size += pBlkInfo->szBlock;
pWriter->fSst[pWriter->wSet.nSstF - 1].size += pBlkInfo->szBlock;
} else {
pWriter->fData.size += pBlkInfo->szBlock;
}
@ -1553,9 +1554,9 @@ int32_t tsdbDFileSetCopy(STsdb *pTsdb, SDFileSet *pSetFrom, SDFileSet *pSetTo) {
taosCloseFile(&pOutFD);
taosCloseFile(&PInFD);
// last
tsdbLastFileName(pTsdb, pSetFrom->diskId, pSetFrom->fid, pSetFrom->pLastF, fNameFrom);
tsdbLastFileName(pTsdb, pSetTo->diskId, pSetTo->fid, pSetTo->pLastF, fNameTo);
// sst
tsdbSstFileName(pTsdb, pSetFrom->diskId, pSetFrom->fid, pSetFrom->aSstF[0], fNameFrom);
tsdbSstFileName(pTsdb, pSetTo->diskId, pSetTo->fid, pSetTo->aSstF[0], fNameTo);
pOutFD = taosOpenFile(fNameTo, TD_FILE_WRITE | TD_FILE_CREATE | TD_FILE_TRUNC);
if (pOutFD == NULL) {
@ -1569,7 +1570,7 @@ int32_t tsdbDFileSetCopy(STsdb *pTsdb, SDFileSet *pSetFrom, SDFileSet *pSetTo) {
goto _err;
}
n = taosFSendFile(pOutFD, PInFD, 0, pSetFrom->pLastF->size);
n = taosFSendFile(pOutFD, PInFD, 0, pSetFrom->aSstF[0]->size);
if (n < 0) {
code = TAOS_SYSTEM_ERROR(errno);
goto _err;

View File

@ -60,7 +60,7 @@ int32_t tsdbDoRetention(STsdb *pTsdb, int64_t now) {
if (expLevel < 0) {
taosMemoryFree(pSet->pHeadF);
taosMemoryFree(pSet->pDataF);
taosMemoryFree(pSet->pLastF);
taosMemoryFree(pSet->aSstF[0]);
taosMemoryFree(pSet->pSmaF);
taosArrayRemove(fs.aDFileSet, iSet);
iSet--;

View File

@ -27,13 +27,13 @@ struct STsdbSnapReader {
int32_t fid;
SDataFReader* pDataFReader;
SArray* aBlockIdx; // SArray<SBlockIdx>
SArray* aBlockL; // SArray<SBlockL>
SArray* aSstBlk; // SArray<SSstBlk>
SBlockIdx* pBlockIdx;
SBlockL* pBlockL;
SSstBlk* pSstBlk;
int32_t iBlockIdx;
int32_t iBlockL;
SMapData mBlock; // SMapData<SBlock>
SMapData mBlock; // SMapData<SDataBlk>
int32_t iBlock;
SBlockData oBlockData;
SBlockData nBlockData;
@ -64,7 +64,7 @@ static int32_t tsdbSnapReadData(STsdbSnapReader* pReader, uint8_t** ppData) {
code = tsdbReadBlockIdx(pReader->pDataFReader, pReader->aBlockIdx);
if (code) goto _err;
code = tsdbReadBlockL(pReader->pDataFReader, pReader->aBlockL);
code = tsdbReadSstBlk(pReader->pDataFReader, 0, pReader->aSstBlk);
if (code) goto _err;
// init
@ -82,13 +82,13 @@ static int32_t tsdbSnapReadData(STsdbSnapReader* pReader, uint8_t** ppData) {
pReader->iBlockL = 0;
while (true) {
if (pReader->iBlockL >= taosArrayGetSize(pReader->aBlockL)) {
pReader->pBlockL = NULL;
if (pReader->iBlockL >= taosArrayGetSize(pReader->aSstBlk)) {
pReader->pSstBlk = NULL;
break;
}
pReader->pBlockL = (SBlockL*)taosArrayGet(pReader->aBlockL, pReader->iBlockL);
if (pReader->pBlockL->minVer <= pReader->ever && pReader->pBlockL->maxVer >= pReader->sver) {
pReader->pSstBlk = (SSstBlk*)taosArrayGet(pReader->aSstBlk, pReader->iBlockL);
if (pReader->pSstBlk->minVer <= pReader->ever && pReader->pSstBlk->maxVer >= pReader->sver) {
// TODO
break;
}
@ -101,8 +101,8 @@ static int32_t tsdbSnapReadData(STsdbSnapReader* pReader, uint8_t** ppData) {
}
while (true) {
if (pReader->pBlockIdx && pReader->pBlockL) {
TABLEID id = {.suid = pReader->pBlockL->suid, .uid = pReader->pBlockL->minUid};
if (pReader->pBlockIdx && pReader->pSstBlk) {
TABLEID id = {.suid = pReader->pSstBlk->suid, .uid = pReader->pSstBlk->minUid};
ASSERT(0);
@ -115,8 +115,8 @@ static int32_t tsdbSnapReadData(STsdbSnapReader* pReader, uint8_t** ppData) {
// }
} else if (pReader->pBlockIdx) {
while (pReader->iBlock < pReader->mBlock.nItem) {
SBlock block;
tMapDataGetItemByIdx(&pReader->mBlock, pReader->iBlock, &block, tGetBlock);
SDataBlk block;
tMapDataGetItemByIdx(&pReader->mBlock, pReader->iBlock, &block, tGetDataBlk);
if (block.minVer <= pReader->ever && block.maxVer >= pReader->sver) {
// load data (todo)
@ -142,18 +142,18 @@ static int32_t tsdbSnapReadData(STsdbSnapReader* pReader, uint8_t** ppData) {
}
if (*ppData) goto _exit;
} else if (pReader->pBlockL) {
while (pReader->pBlockL) {
if (pReader->pBlockL->minVer <= pReader->ever && pReader->pBlockL->maxVer >= pReader->sver) {
} else if (pReader->pSstBlk) {
while (pReader->pSstBlk) {
if (pReader->pSstBlk->minVer <= pReader->ever && pReader->pSstBlk->maxVer >= pReader->sver) {
// load data (todo)
}
// next
pReader->iBlockL++;
if (pReader->iBlockL < taosArrayGetSize(pReader->aBlockL)) {
pReader->pBlockL = (SBlockL*)taosArrayGetSize(pReader->aBlockL);
if (pReader->iBlockL < taosArrayGetSize(pReader->aSstBlk)) {
pReader->pSstBlk = (SSstBlk*)taosArrayGetSize(pReader->aSstBlk);
} else {
pReader->pBlockL = NULL;
pReader->pSstBlk = NULL;
}
if (*ppData) goto _exit;
@ -298,8 +298,8 @@ int32_t tsdbSnapReaderOpen(STsdb* pTsdb, int64_t sver, int64_t ever, int8_t type
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
pReader->aBlockL = taosArrayInit(0, sizeof(SBlockL));
if (pReader->aBlockL == NULL) {
pReader->aSstBlk = taosArrayInit(0, sizeof(SSstBlk));
if (pReader->aSstBlk == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
@ -338,7 +338,7 @@ int32_t tsdbSnapReaderClose(STsdbSnapReader** ppReader) {
if (pReader->pDataFReader) {
tsdbDataFReaderClose(&pReader->pDataFReader);
}
taosArrayDestroy(pReader->aBlockL);
taosArrayDestroy(pReader->aSstBlk);
taosArrayDestroy(pReader->aBlockIdx);
tMapDataClear(&pReader->mBlock);
tBlockDataDestroy(&pReader->oBlockData, 1);
@ -426,24 +426,24 @@ struct STsdbSnapWriter {
SArray* aBlockIdx; // SArray<SBlockIdx>
int32_t iBlockIdx;
SBlockIdx* pBlockIdx;
SMapData mBlock; // SMapData<SBlock>
SMapData mBlock; // SMapData<SDataBlk>
int32_t iBlock;
SBlockData* pBlockData;
int32_t iRow;
SBlockData bDataR;
SArray* aBlockL; // SArray<SBlockL>
SArray* aSstBlk; // SArray<SSstBlk>
int32_t iBlockL;
SBlockData lDataR;
SDataFWriter* pDataFWriter;
SBlockIdx* pBlockIdxW; // NULL when no committing table
SBlock blockW;
SDataBlk blockW;
SBlockData bDataW;
SBlockIdx blockIdxW;
SMapData mBlockW; // SMapData<SBlock>
SMapData mBlockW; // SMapData<SDataBlk>
SArray* aBlockIdxW; // SArray<SBlockIdx>
SArray* aBlockLW; // SArray<SBlockL>
SArray* aBlockLW; // SArray<SSstBlk>
// for del file
SDelFReader* pDelFReader;
@ -475,10 +475,10 @@ static int32_t tsdbSnapWriteTableDataEnd(STsdbSnapWriter* pWriter) {
// &pWriter->blockW, pWriter->cmprAlg);
if (code) goto _err;
code = tMapDataPutItem(&pWriter->mBlockW, &pWriter->blockW, tPutBlock);
code = tMapDataPutItem(&pWriter->mBlockW, &pWriter->blockW, tPutDataBlk);
if (code) goto _err;
tBlockReset(&pWriter->blockW);
tDataBlkReset(&pWriter->blockW);
tBlockDataClear(&pWriter->bDataW);
}
@ -499,15 +499,15 @@ static int32_t tsdbSnapWriteTableDataEnd(STsdbSnapWriter* pWriter) {
// &pWriter->blockW, pWriter->cmprAlg);
// if (code) goto _err;
code = tMapDataPutItem(&pWriter->mBlockW, &pWriter->blockW, tPutBlock);
code = tMapDataPutItem(&pWriter->mBlockW, &pWriter->blockW, tPutDataBlk);
if (code) goto _err;
}
while (true) {
if (pWriter->iBlock >= pWriter->mBlock.nItem) break;
SBlock block;
tMapDataGetItemByIdx(&pWriter->mBlock, pWriter->iBlock, &block, tGetBlock);
SDataBlk block;
tMapDataGetItemByIdx(&pWriter->mBlock, pWriter->iBlock, &block, tGetDataBlk);
// if (block.last) {
// code = tsdbReadBlockData(pWriter->pDataFReader, pWriter->pBlockIdx, &block, &pWriter->bDataR, NULL, NULL);
@ -520,13 +520,13 @@ static int32_t tsdbSnapWriteTableDataEnd(STsdbSnapWriter* pWriter) {
// if (code) goto _err;
// }
code = tMapDataPutItem(&pWriter->mBlockW, &block, tPutBlock);
code = tMapDataPutItem(&pWriter->mBlockW, &block, tPutDataBlk);
if (code) goto _err;
pWriter->iBlock++;
}
// SBlock
// SDataBlk
// code = tsdbWriteBlock(pWriter->pDataFWriter, &pWriter->mBlockW, NULL, pWriter->pBlockIdxW);
// if (code) goto _err;
@ -553,10 +553,10 @@ static int32_t tsdbSnapMoveWriteTableData(STsdbSnapWriter* pWriter, SBlockIdx* p
if (code) goto _err;
// SBlockData
SBlock block;
SDataBlk block;
tMapDataReset(&pWriter->mBlockW);
for (int32_t iBlock = 0; iBlock < pWriter->mBlock.nItem; iBlock++) {
tMapDataGetItemByIdx(&pWriter->mBlock, iBlock, &block, tGetBlock);
tMapDataGetItemByIdx(&pWriter->mBlock, iBlock, &block, tGetDataBlk);
// if (block.last) {
// code = tsdbReadBlockData(pWriter->pDataFReader, pBlockIdx, &block, &pWriter->bDataR, NULL, NULL);
@ -570,11 +570,11 @@ static int32_t tsdbSnapMoveWriteTableData(STsdbSnapWriter* pWriter, SBlockIdx* p
// if (code) goto _err;
// }
code = tMapDataPutItem(&pWriter->mBlockW, &block, tPutBlock);
code = tMapDataPutItem(&pWriter->mBlockW, &block, tPutDataBlk);
if (code) goto _err;
}
// SBlock
// SDataBlk
SBlockIdx blockIdx = {.suid = pBlockIdx->suid, .uid = pBlockIdx->uid};
code = tsdbWriteBlock(pWriter->pDataFWriter, &pWriter->mBlockW, &blockIdx);
if (code) goto _err;
@ -642,10 +642,10 @@ static int32_t tsdbSnapWriteTableDataImpl(STsdbSnapWriter* pWriter) {
while (true) {
if (pWriter->iBlock >= pWriter->mBlock.nItem) break;
SBlock block;
SDataBlk block;
int32_t c;
tMapDataGetItemByIdx(&pWriter->mBlock, pWriter->iBlock, &block, tGetBlock);
tMapDataGetItemByIdx(&pWriter->mBlock, pWriter->iBlock, &block, tGetDataBlk);
// if (block.last) {
// pWriter->pBlockData = &pWriter->bDataR;
@ -668,14 +668,14 @@ static int32_t tsdbSnapWriteTableDataImpl(STsdbSnapWriter* pWriter) {
// &pWriter->blockW, pWriter->cmprAlg);
// if (code) goto _err;
code = tMapDataPutItem(&pWriter->mBlockW, &pWriter->blockW, tPutBlock);
code = tMapDataPutItem(&pWriter->mBlockW, &pWriter->blockW, tPutDataBlk);
if (code) goto _err;
tBlockReset(&pWriter->blockW);
tDataBlkReset(&pWriter->blockW);
tBlockDataClear(&pWriter->bDataW);
}
code = tMapDataPutItem(&pWriter->mBlockW, &block, tPutBlock);
code = tMapDataPutItem(&pWriter->mBlockW, &block, tPutDataBlk);
if (code) goto _err;
pWriter->iBlock++;
@ -719,10 +719,10 @@ static int32_t tsdbSnapWriteTableDataImpl(STsdbSnapWriter* pWriter) {
// &pWriter->blockW, pWriter->cmprAlg);
// if (code) goto _err;
code = tMapDataPutItem(&pWriter->mBlockW, &pWriter->blockW, tPutBlock);
code = tMapDataPutItem(&pWriter->mBlockW, &pWriter->blockW, tPutDataBlk);
if (code) goto _err;
tBlockReset(&pWriter->blockW);
tDataBlkReset(&pWriter->blockW);
tBlockDataClear(&pWriter->bDataW);
}
@ -803,7 +803,7 @@ static int32_t tsdbSnapWriteTableData(STsdbSnapWriter* pWriter, TABLEID id) {
pWriter->pBlockIdxW->suid = id.suid;
pWriter->pBlockIdxW->uid = id.uid;
tBlockReset(&pWriter->blockW);
tDataBlkReset(&pWriter->blockW);
tBlockDataReset(&pWriter->bDataW);
tMapDataReset(&pWriter->mBlockW);
}
@ -845,7 +845,7 @@ static int32_t tsdbSnapWriteDataEnd(STsdbSnapWriter* pWriter) {
// write remain stuff
if (taosArrayGetSize(pWriter->aBlockLW) > 0) {
code = tsdbWriteBlockL(pWriter->pDataFWriter, pWriter->aBlockIdxW);
code = tsdbWriteSstBlk(pWriter->pDataFWriter, pWriter->aBlockIdxW);
if (code) goto _err;
}
@ -911,12 +911,12 @@ static int32_t tsdbSnapWriteData(STsdbSnapWriter* pWriter, uint8_t* pData, uint3
code = tsdbReadBlockIdx(pWriter->pDataFReader, pWriter->aBlockIdx);
if (code) goto _err;
code = tsdbReadBlockL(pWriter->pDataFReader, pWriter->aBlockL);
code = tsdbReadSstBlk(pWriter->pDataFReader, 0, pWriter->aSstBlk);
if (code) goto _err;
} else {
ASSERT(pWriter->pDataFReader == NULL);
taosArrayClear(pWriter->aBlockIdx);
taosArrayClear(pWriter->aBlockL);
taosArrayClear(pWriter->aSstBlk);
}
pWriter->iBlockIdx = 0;
pWriter->pBlockIdx = NULL;
@ -931,23 +931,25 @@ static int32_t tsdbSnapWriteData(STsdbSnapWriter* pWriter, uint8_t* pData, uint3
// write
SHeadFile fHead;
SDataFile fData;
SLastFile fLast;
SSstFile fLast;
SSmaFile fSma;
SDFileSet wSet = {.pHeadF = &fHead, .pDataF = &fData, .pLastF = &fLast, .pSmaF = &fSma};
SDFileSet wSet = {.pHeadF = &fHead, .pDataF = &fData, .aSstF[0] = &fLast, .pSmaF = &fSma};
if (pSet) {
wSet.diskId = pSet->diskId;
wSet.fid = fid;
wSet.nSstF = 1;
fHead = (SHeadFile){.commitID = pWriter->commitID, .offset = 0, .size = 0};
fData = *pSet->pDataF;
fLast = (SLastFile){.commitID = pWriter->commitID, .size = 0};
fLast = (SSstFile){.commitID = pWriter->commitID, .size = 0};
fSma = *pSet->pSmaF;
} else {
wSet.diskId = (SDiskID){.level = 0, .id = 0};
wSet.fid = fid;
wSet.nSstF = 1;
fHead = (SHeadFile){.commitID = pWriter->commitID, .offset = 0, .size = 0};
fData = (SDataFile){.commitID = pWriter->commitID, .size = 0};
fLast = (SLastFile){.commitID = pWriter->commitID, .size = 0, .offset = 0};
fLast = (SSstFile){.commitID = pWriter->commitID, .size = 0, .offset = 0};
fSma = (SSmaFile){.commitID = pWriter->commitID, .size = 0};
}
@ -1145,8 +1147,8 @@ int32_t tsdbSnapWriterOpen(STsdb* pTsdb, int64_t sver, int64_t ever, STsdbSnapWr
code = tBlockDataCreate(&pWriter->bDataR);
if (code) goto _err;
pWriter->aBlockL = taosArrayInit(0, sizeof(SBlockL));
if (pWriter->aBlockL == NULL) {
pWriter->aSstBlk = taosArrayInit(0, sizeof(SSstBlk));
if (pWriter->aSstBlk == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;
}
@ -1159,7 +1161,7 @@ int32_t tsdbSnapWriterOpen(STsdb* pTsdb, int64_t sver, int64_t ever, STsdbSnapWr
code = tBlockDataCreate(&pWriter->bDataW);
if (code) goto _err;
pWriter->aBlockLW = taosArrayInit(0, sizeof(SBlockL));
pWriter->aBlockLW = taosArrayInit(0, sizeof(SSstBlk));
if (pWriter->aBlockLW == NULL) {
code = TSDB_CODE_OUT_OF_MEMORY;
goto _err;

View File

@ -51,6 +51,22 @@ _exit:
return code;
}
int32_t tMapDataCopy(SMapData *pFrom, SMapData *pTo) {
int32_t code = 0;
pTo->nItem = pFrom->nItem;
pTo->nData = pFrom->nData;
code = tRealloc((uint8_t **)&pTo->aOffset, sizeof(int32_t) * pFrom->nItem);
if (code) goto _exit;
code = tRealloc(&pTo->pData, pFrom->nData);
if (code) goto _exit;
memcpy(pTo->aOffset, pFrom->aOffset, sizeof(int32_t) * pFrom->nItem);
memcpy(pTo->pData, pFrom->pData, pFrom->nData);
_exit:
return code;
}
int32_t tMapDataSearch(SMapData *pMapData, void *pSearchItem, int32_t (*tGetItemFn)(uint8_t *, void *),
int32_t (*tItemCmprFn)(const void *, const void *), void *pItem) {
int32_t code = 0;
@ -198,7 +214,7 @@ int32_t tCmprBlockIdx(void const *lhs, void const *rhs) {
int32_t tCmprBlockL(void const *lhs, void const *rhs) {
SBlockIdx *lBlockIdx = (SBlockIdx *)lhs;
SBlockL *rBlockL = (SBlockL *)rhs;
SSstBlk *rBlockL = (SSstBlk *)rhs;
if (lBlockIdx->suid < rBlockL->suid) {
return -1;
@ -215,69 +231,69 @@ int32_t tCmprBlockL(void const *lhs, void const *rhs) {
return 0;
}
// SBlock ======================================================
void tBlockReset(SBlock *pBlock) {
*pBlock = (SBlock){.minKey = TSDBKEY_MAX, .maxKey = TSDBKEY_MIN, .minVer = VERSION_MAX, .maxVer = VERSION_MIN};
// SDataBlk ======================================================
void tDataBlkReset(SDataBlk *pDataBlk) {
*pDataBlk = (SDataBlk){.minKey = TSDBKEY_MAX, .maxKey = TSDBKEY_MIN, .minVer = VERSION_MAX, .maxVer = VERSION_MIN};
}
int32_t tPutBlock(uint8_t *p, void *ph) {
int32_t tPutDataBlk(uint8_t *p, void *ph) {
int32_t n = 0;
SBlock *pBlock = (SBlock *)ph;
SDataBlk *pDataBlk = (SDataBlk *)ph;
n += tPutI64v(p ? p + n : p, pBlock->minKey.version);
n += tPutI64v(p ? p + n : p, pBlock->minKey.ts);
n += tPutI64v(p ? p + n : p, pBlock->maxKey.version);
n += tPutI64v(p ? p + n : p, pBlock->maxKey.ts);
n += tPutI64v(p ? p + n : p, pBlock->minVer);
n += tPutI64v(p ? p + n : p, pBlock->maxVer);
n += tPutI32v(p ? p + n : p, pBlock->nRow);
n += tPutI8(p ? p + n : p, pBlock->hasDup);
n += tPutI8(p ? p + n : p, pBlock->nSubBlock);
for (int8_t iSubBlock = 0; iSubBlock < pBlock->nSubBlock; iSubBlock++) {
n += tPutI64v(p ? p + n : p, pBlock->aSubBlock[iSubBlock].offset);
n += tPutI32v(p ? p + n : p, pBlock->aSubBlock[iSubBlock].szBlock);
n += tPutI32v(p ? p + n : p, pBlock->aSubBlock[iSubBlock].szKey);
n += tPutI64v(p ? p + n : p, pDataBlk->minKey.version);
n += tPutI64v(p ? p + n : p, pDataBlk->minKey.ts);
n += tPutI64v(p ? p + n : p, pDataBlk->maxKey.version);
n += tPutI64v(p ? p + n : p, pDataBlk->maxKey.ts);
n += tPutI64v(p ? p + n : p, pDataBlk->minVer);
n += tPutI64v(p ? p + n : p, pDataBlk->maxVer);
n += tPutI32v(p ? p + n : p, pDataBlk->nRow);
n += tPutI8(p ? p + n : p, pDataBlk->hasDup);
n += tPutI8(p ? p + n : p, pDataBlk->nSubBlock);
for (int8_t iSubBlock = 0; iSubBlock < pDataBlk->nSubBlock; iSubBlock++) {
n += tPutI64v(p ? p + n : p, pDataBlk->aSubBlock[iSubBlock].offset);
n += tPutI32v(p ? p + n : p, pDataBlk->aSubBlock[iSubBlock].szBlock);
n += tPutI32v(p ? p + n : p, pDataBlk->aSubBlock[iSubBlock].szKey);
}
if (pBlock->nSubBlock == 1 && !pBlock->hasDup) {
n += tPutI64v(p ? p + n : p, pBlock->smaInfo.offset);
n += tPutI32v(p ? p + n : p, pBlock->smaInfo.size);
if (pDataBlk->nSubBlock == 1 && !pDataBlk->hasDup) {
n += tPutI64v(p ? p + n : p, pDataBlk->smaInfo.offset);
n += tPutI32v(p ? p + n : p, pDataBlk->smaInfo.size);
}
return n;
}
int32_t tGetBlock(uint8_t *p, void *ph) {
int32_t tGetDataBlk(uint8_t *p, void *ph) {
int32_t n = 0;
SBlock *pBlock = (SBlock *)ph;
SDataBlk *pDataBlk = (SDataBlk *)ph;
n += tGetI64v(p + n, &pBlock->minKey.version);
n += tGetI64v(p + n, &pBlock->minKey.ts);
n += tGetI64v(p + n, &pBlock->maxKey.version);
n += tGetI64v(p + n, &pBlock->maxKey.ts);
n += tGetI64v(p + n, &pBlock->minVer);
n += tGetI64v(p + n, &pBlock->maxVer);
n += tGetI32v(p + n, &pBlock->nRow);
n += tGetI8(p + n, &pBlock->hasDup);
n += tGetI8(p + n, &pBlock->nSubBlock);
for (int8_t iSubBlock = 0; iSubBlock < pBlock->nSubBlock; iSubBlock++) {
n += tGetI64v(p + n, &pBlock->aSubBlock[iSubBlock].offset);
n += tGetI32v(p + n, &pBlock->aSubBlock[iSubBlock].szBlock);
n += tGetI32v(p + n, &pBlock->aSubBlock[iSubBlock].szKey);
n += tGetI64v(p + n, &pDataBlk->minKey.version);
n += tGetI64v(p + n, &pDataBlk->minKey.ts);
n += tGetI64v(p + n, &pDataBlk->maxKey.version);
n += tGetI64v(p + n, &pDataBlk->maxKey.ts);
n += tGetI64v(p + n, &pDataBlk->minVer);
n += tGetI64v(p + n, &pDataBlk->maxVer);
n += tGetI32v(p + n, &pDataBlk->nRow);
n += tGetI8(p + n, &pDataBlk->hasDup);
n += tGetI8(p + n, &pDataBlk->nSubBlock);
for (int8_t iSubBlock = 0; iSubBlock < pDataBlk->nSubBlock; iSubBlock++) {
n += tGetI64v(p + n, &pDataBlk->aSubBlock[iSubBlock].offset);
n += tGetI32v(p + n, &pDataBlk->aSubBlock[iSubBlock].szBlock);
n += tGetI32v(p + n, &pDataBlk->aSubBlock[iSubBlock].szKey);
}
if (pBlock->nSubBlock == 1 && !pBlock->hasDup) {
n += tGetI64v(p + n, &pBlock->smaInfo.offset);
n += tGetI32v(p + n, &pBlock->smaInfo.size);
if (pDataBlk->nSubBlock == 1 && !pDataBlk->hasDup) {
n += tGetI64v(p + n, &pDataBlk->smaInfo.offset);
n += tGetI32v(p + n, &pDataBlk->smaInfo.size);
} else {
pBlock->smaInfo.offset = 0;
pBlock->smaInfo.size = 0;
pDataBlk->smaInfo.offset = 0;
pDataBlk->smaInfo.size = 0;
}
return n;
}
int32_t tBlockCmprFn(const void *p1, const void *p2) {
SBlock *pBlock1 = (SBlock *)p1;
SBlock *pBlock2 = (SBlock *)p2;
int32_t tDataBlkCmprFn(const void *p1, const void *p2) {
SDataBlk *pBlock1 = (SDataBlk *)p1;
SDataBlk *pBlock2 = (SDataBlk *)p2;
if (tsdbKeyCmprFn(&pBlock1->maxKey, &pBlock2->minKey) < 0) {
return -1;
@ -288,48 +304,48 @@ int32_t tBlockCmprFn(const void *p1, const void *p2) {
return 0;
}
bool tBlockHasSma(SBlock *pBlock) {
if (pBlock->nSubBlock > 1) return false;
if (pBlock->hasDup) return false;
bool tDataBlkHasSma(SDataBlk *pDataBlk) {
if (pDataBlk->nSubBlock > 1) return false;
if (pDataBlk->hasDup) return false;
return pBlock->smaInfo.size > 0;
return pDataBlk->smaInfo.size > 0;
}
// SBlockL ======================================================
int32_t tPutBlockL(uint8_t *p, void *ph) {
// SSstBlk ======================================================
int32_t tPutSstBlk(uint8_t *p, void *ph) {
int32_t n = 0;
SBlockL *pBlockL = (SBlockL *)ph;
SSstBlk *pSstBlk = (SSstBlk *)ph;
n += tPutI64(p ? p + n : p, pBlockL->suid);
n += tPutI64(p ? p + n : p, pBlockL->minUid);
n += tPutI64(p ? p + n : p, pBlockL->maxUid);
n += tPutI64v(p ? p + n : p, pBlockL->minKey);
n += tPutI64v(p ? p + n : p, pBlockL->maxKey);
n += tPutI64v(p ? p + n : p, pBlockL->minVer);
n += tPutI64v(p ? p + n : p, pBlockL->maxVer);
n += tPutI32v(p ? p + n : p, pBlockL->nRow);
n += tPutI64v(p ? p + n : p, pBlockL->bInfo.offset);
n += tPutI32v(p ? p + n : p, pBlockL->bInfo.szBlock);
n += tPutI32v(p ? p + n : p, pBlockL->bInfo.szKey);
n += tPutI64(p ? p + n : p, pSstBlk->suid);
n += tPutI64(p ? p + n : p, pSstBlk->minUid);
n += tPutI64(p ? p + n : p, pSstBlk->maxUid);
n += tPutI64v(p ? p + n : p, pSstBlk->minKey);
n += tPutI64v(p ? p + n : p, pSstBlk->maxKey);
n += tPutI64v(p ? p + n : p, pSstBlk->minVer);
n += tPutI64v(p ? p + n : p, pSstBlk->maxVer);
n += tPutI32v(p ? p + n : p, pSstBlk->nRow);
n += tPutI64v(p ? p + n : p, pSstBlk->bInfo.offset);
n += tPutI32v(p ? p + n : p, pSstBlk->bInfo.szBlock);
n += tPutI32v(p ? p + n : p, pSstBlk->bInfo.szKey);
return n;
}
int32_t tGetBlockL(uint8_t *p, void *ph) {
int32_t tGetSstBlk(uint8_t *p, void *ph) {
int32_t n = 0;
SBlockL *pBlockL = (SBlockL *)ph;
SSstBlk *pSstBlk = (SSstBlk *)ph;
n += tGetI64(p + n, &pBlockL->suid);
n += tGetI64(p + n, &pBlockL->minUid);
n += tGetI64(p + n, &pBlockL->maxUid);
n += tGetI64v(p + n, &pBlockL->minKey);
n += tGetI64v(p + n, &pBlockL->maxKey);
n += tGetI64v(p + n, &pBlockL->minVer);
n += tGetI64v(p + n, &pBlockL->maxVer);
n += tGetI32v(p + n, &pBlockL->nRow);
n += tGetI64v(p + n, &pBlockL->bInfo.offset);
n += tGetI32v(p + n, &pBlockL->bInfo.szBlock);
n += tGetI32v(p + n, &pBlockL->bInfo.szKey);
n += tGetI64(p + n, &pSstBlk->suid);
n += tGetI64(p + n, &pSstBlk->minUid);
n += tGetI64(p + n, &pSstBlk->maxUid);
n += tGetI64v(p + n, &pSstBlk->minKey);
n += tGetI64v(p + n, &pSstBlk->maxKey);
n += tGetI64v(p + n, &pSstBlk->minVer);
n += tGetI64v(p + n, &pSstBlk->maxVer);
n += tGetI32v(p + n, &pSstBlk->nRow);
n += tGetI64v(p + n, &pSstBlk->bInfo.offset);
n += tGetI32v(p + n, &pSstBlk->bInfo.szBlock);
n += tGetI32v(p + n, &pSstBlk->bInfo.szKey);
return n;
}
@ -1603,7 +1619,7 @@ _exit:
int32_t tDecmprBlockData(uint8_t *pIn, int32_t szIn, SBlockData *pBlockData, uint8_t *aBuf[]) {
int32_t code = 0;
tBlockDataClear(pBlockData);
tBlockDataReset(pBlockData);
int32_t n = 0;
SDiskDataHdr hdr = {0};

View File

@ -368,6 +368,7 @@ _exit:
int32_t vnodeGetLoad(SVnode *pVnode, SVnodeLoad *pLoad) {
pLoad->vgId = TD_VID(pVnode);
pLoad->syncState = syncGetMyRole(pVnode->sync);
pLoad->cacheUsage = tsdbCacheGetUsage(pVnode);
pLoad->numOfTables = metaGetTbNum(pVnode->pMeta);
pLoad->numOfTimeSeries = metaGetTimeSeriesNum(pVnode->pMeta);
pLoad->totalStorage = (int64_t)3 * 1073741824;

View File

@ -87,8 +87,6 @@ struct SqlFunctionCtx;
size_t getResultRowSize(struct SqlFunctionCtx* pCtx, int32_t numOfOutput);
void initResultRowInfo(SResultRowInfo* pResultRowInfo);
void initResultRow(SResultRow* pResultRow);
void closeResultRow(SResultRow* pResultRow);
struct SResultRowEntryInfo* getResultEntryInfo(const SResultRow* pRow, int32_t index, const int32_t* offset);

View File

@ -168,7 +168,9 @@ static void getDataLength(SDataSinkHandle* pHandle, int64_t* pLen, bool* pQueryE
taosReadQitem(pDeleter->pDataBlocks, (void**)&pBuf);
memcpy(&pDeleter->nextOutput, pBuf, sizeof(SDataDeleterBuf));
taosFreeQitem(pBuf);
*pLen = ((SDataCacheEntry*)(pDeleter->nextOutput.pData))->dataLen;
SDataCacheEntry* pEntry = (SDataCacheEntry*)pDeleter->nextOutput.pData;
*pLen = pEntry->dataLen;
*pQueryEnd = pDeleter->queryEnd;
qDebug("got data len %" PRId64 ", row num %d in sink", *pLen, ((SDataCacheEntry*)(pDeleter->nextOutput.pData))->numOfRows);
}

View File

@ -93,6 +93,8 @@ static void toDataCacheEntry(SDataDispatchHandle* pHandle, const SInputData* pIn
pBuf->useSize = sizeof(SDataCacheEntry);
blockEncode(pInput->pData, pEntry->data, &pEntry->dataLen, numOfCols, pEntry->compressed);
ASSERT(pEntry->numOfRows == *(int32_t*)(pEntry->data+8));
ASSERT(pEntry->numOfCols == *(int32_t*)(pEntry->data+8+4));
pBuf->useSize += pEntry->dataLen;
@ -170,7 +172,13 @@ static void getDataLength(SDataSinkHandle* pHandle, int64_t* pLen, bool* pQueryE
taosReadQitem(pDispatcher->pDataBlocks, (void**)&pBuf);
memcpy(&pDispatcher->nextOutput, pBuf, sizeof(SDataDispatchBuf));
taosFreeQitem(pBuf);
*pLen = ((SDataCacheEntry*)(pDispatcher->nextOutput.pData))->dataLen;
SDataCacheEntry* pEntry = (SDataCacheEntry*)pDispatcher->nextOutput.pData;
*pLen = pEntry->dataLen;
ASSERT(pEntry->numOfRows == *(int32_t*)(pEntry->data+8));
ASSERT(pEntry->numOfCols == *(int32_t*)(pEntry->data+8+4));
*pQueryEnd = pDispatcher->queryEnd;
qDebug("got data len %" PRId64 ", row num %d in sink", *pLen, ((SDataCacheEntry*)(pDispatcher->nextOutput.pData))->numOfRows);
}
@ -191,6 +199,9 @@ static int32_t getDataBlock(SDataSinkHandle* pHandle, SOutputData* pOutput) {
pOutput->numOfCols = pEntry->numOfCols;
pOutput->compressed = pEntry->compressed;
ASSERT(pEntry->numOfRows == *(int32_t*)(pEntry->data+8));
ASSERT(pEntry->numOfCols == *(int32_t*)(pEntry->data+8+4));
atomic_sub_fetch_64(&pDispatcher->cachedSize, pEntry->dataLen);
atomic_sub_fetch_64(&gDataSinkStat.cachedSize, pEntry->dataLen);

View File

@ -1302,7 +1302,6 @@ int32_t initQueryTableDataCond(SQueryTableDataCond* pCond, const STableScanPhysi
pCond->type = TIMEWINDOW_RANGE_CONTAINED;
pCond->startVersion = -1;
pCond->endVersion = -1;
pCond->schemaVersion = -1;
// pCond->type = pTableScanNode->scanFlag;
int32_t j = 0;

View File

@ -731,7 +731,6 @@ int32_t initQueryTableDataCondForTmq(SQueryTableDataCond* pCond, SSnapContext* s
pCond->type = TIMEWINDOW_RANGE_CONTAINED;
pCond->startVersion = -1;
pCond->endVersion = sContext->snapVersion;
pCond->schemaVersion = sContext->snapVersion;
for (int32_t i = 0; i < pCond->numOfCols; ++i) {
pCond->colList[i].type = mtInfo.schema->pSchema[i].type;

View File

@ -3731,7 +3731,6 @@ static int32_t initTableblockDistQueryCond(uint64_t uid, SQueryTableDataCond* pC
pCond->type = TIMEWINDOW_RANGE_CONTAINED;
pCond->startVersion = -1;
pCond->endVersion = -1;
pCond->schemaVersion = -1;
return TSDB_CODE_SUCCESS;
}

View File

@ -695,6 +695,7 @@ static void destroyTableScanOperatorInfo(void* param) {
cleanupQueryTableDataCond(&pTableScanInfo->cond);
tsdbReaderClose(pTableScanInfo->dataReader);
pTableScanInfo->dataReader = NULL;
if (pTableScanInfo->pColMatchInfo != NULL) {
taosArrayDestroy(pTableScanInfo->pColMatchInfo);

View File

@ -622,7 +622,8 @@ static void doInterpUnclosedTimeWindow(SOperatorInfo* pOperatorInfo, int32_t num
if (pr->closed) {
ASSERT(isResultRowInterpolated(pr, RESULT_ROW_START_INTERP) &&
isResultRowInterpolated(pr, RESULT_ROW_END_INTERP));
tdListPopHead(pResultRowInfo->openWindow);
SListNode* pNode = tdListPopHead(pResultRowInfo->openWindow);
taosMemoryFree(pNode);
continue;
}
@ -651,7 +652,8 @@ static void doInterpUnclosedTimeWindow(SOperatorInfo* pOperatorInfo, int32_t num
if (isResultRowInterpolated(pResult, RESULT_ROW_END_INTERP)) {
closeResultRow(pr);
tdListPopHead(pResultRowInfo->openWindow);
SListNode* pNode = tdListPopHead(pResultRowInfo->openWindow);
taosMemoryFree(pNode);
} else { // the remains are can not be closed yet.
break;
}
@ -1731,6 +1733,10 @@ void destroyIntervalOperatorInfo(void* param) {
SIntervalAggOperatorInfo* pInfo = (SIntervalAggOperatorInfo*)param;
cleanupBasicInfo(&pInfo->binfo);
cleanupAggSup(&pInfo->aggSup);
cleanupExprSupp(&pInfo->scalarSupp);
tdListFree(pInfo->binfo.resultRowInfo.openWindow);
pInfo->pRecycledPages = taosArrayDestroy(pInfo->pRecycledPages);
pInfo->pInterpCols = taosArrayDestroy(pInfo->pInterpCols);
taosArrayDestroyEx(pInfo->pPrevValues, freeItem);

View File

@ -227,9 +227,9 @@ static int32_t sortComparInit(SMsortComparParam* cmpParam, SArray* pSources, int
continue;
}
SPageInfo* pPgInfo = *(SPageInfo**)taosArrayGet(pSource->pageIdList, pSource->pageIndex);
int32_t* pPgId = taosArrayGet(pSource->pageIdList, pSource->pageIndex);
void* pPage = getBufPage(pHandle->pBuf, getPageId(pPgInfo));
void* pPage = getBufPage(pHandle->pBuf, *pPgId);
code = blockDataFromBuf(pSource->src.pBlock, pPage);
if (code != TSDB_CODE_SUCCESS) {
return code;
@ -302,9 +302,9 @@ static int32_t adjustMergeTreeForNextTuple(SSortSource *pSource, SMultiwayMergeT
pSource->pageIndex = -1;
pSource->src.pBlock = blockDataDestroy(pSource->src.pBlock);
} else {
SPageInfo* pPgInfo = *(SPageInfo**)taosArrayGet(pSource->pageIdList, pSource->pageIndex);
int32_t* pPgId = taosArrayGet(pSource->pageIdList, pSource->pageIndex);
void* pPage = getBufPage(pHandle->pBuf, getPageId(pPgInfo));
void* pPage = getBufPage(pHandle->pBuf, *pPgId);
int32_t code = blockDataFromBuf(pSource->src.pBlock, pPage);
if (code != TSDB_CODE_SUCCESS) {
return code;

View File

@ -510,6 +510,7 @@ int32_t tSerializeSMonVloadInfo(void *buf, int32_t bufLen, SMonVloadInfo *pInfo)
SVnodeLoad *pLoad = taosArrayGet(pInfo->pVloads, i);
if (tEncodeI32(&encoder, pLoad->vgId) < 0) return -1;
if (tEncodeI32(&encoder, pLoad->syncState) < 0) return -1;
if (tEncodeI64(&encoder, pLoad->cacheUsage) < 0) return -1;
if (tEncodeI64(&encoder, pLoad->numOfTables) < 0) return -1;
if (tEncodeI64(&encoder, pLoad->numOfTimeSeries) < 0) return -1;
if (tEncodeI64(&encoder, pLoad->totalStorage) < 0) return -1;
@ -544,6 +545,7 @@ int32_t tDeserializeSMonVloadInfo(void *buf, int32_t bufLen, SMonVloadInfo *pInf
SVnodeLoad load = {0};
if (tDecodeI32(&decoder, &load.vgId) < 0) return -1;
if (tDecodeI32(&decoder, &load.syncState) < 0) return -1;
if (tDecodeI64(&decoder, &load.cacheUsage) < 0) return -1;
if (tDecodeI64(&decoder, &load.numOfTables) < 0) return -1;
if (tDecodeI64(&decoder, &load.numOfTimeSeries) < 0) return -1;
if (tDecodeI64(&decoder, &load.totalStorage) < 0) return -1;
@ -594,7 +596,6 @@ int32_t tDeserializeSMonMloadInfo(void *buf, int32_t bufLen, SMonMloadInfo *pInf
return 0;
}
int32_t tSerializeSQnodeLoad(void *buf, int32_t bufLen, SQnodeLoad *pInfo) {
SEncoder encoder = {0};
tEncoderInit(&encoder, buf, bufLen);
@ -639,5 +640,3 @@ int32_t tDeserializeSQnodeLoad(void *buf, int32_t bufLen, SQnodeLoad *pInfo) {
tDecoderClear(&decoder);
return 0;
}

View File

@ -287,10 +287,10 @@ void transCtxMerge(STransCtx* dst, STransCtx* src) {
STransCtxVal* sVal = (STransCtxVal*)iter;
key = taosHashGetKey(sVal, &klen);
STransCtxVal* dVal = taosHashGet(dst->args, key, klen);
if (dVal) {
dst->freeFunc(dVal->val);
}
// STransCtxVal* dVal = taosHashGet(dst->args, key, klen);
// if (dVal) {
// dst->freeFunc(dVal->val);
// }
taosHashPut(dst->args, key, klen, sVal, sizeof(*sVal));
iter = taosHashIterate(src->args, iter);
}

View File

@ -13,179 +13,297 @@
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include "os.h"
#include "trbtree.h"
typedef int32_t (*tRBTreeCmprFn)(void *, void *);
typedef struct SRBTree SRBTree;
typedef struct SRBTreeNode SRBTreeNode;
typedef struct SRBTreeIter SRBTreeIter;
struct SRBTreeNode {
enum { RED, BLACK } color;
SRBTreeNode *parent;
SRBTreeNode *left;
SRBTreeNode *right;
uint8_t payload[];
};
struct SRBTree {
tRBTreeCmprFn cmprFn;
SRBTreeNode *root;
};
struct SRBTreeIter {
SRBTree *pTree;
};
#define RBTREE_NODE_COLOR(N) ((N) ? (N)->color : BLACK)
// APIs ================================================
static void tRBTreeRotateLeft(SRBTree *pTree, SRBTreeNode *pNode) {
SRBTreeNode *right = pNode->right;
pNode->right = right->left;
if (pNode->right) {
pNode->right->parent = pNode;
static void tRBTreeRotateLeft(SRBTree *pTree, SRBTreeNode *x) {
SRBTreeNode *y = x->right;
x->right = y->left;
if (y->left != pTree->NIL) {
y->left->parent = x;
}
right->parent = pNode->parent;
if (pNode->parent == NULL) {
pTree->root = right;
} else if (pNode == pNode->parent->left) {
pNode->parent->left = right;
y->parent = x->parent;
if (x->parent == pTree->NIL) {
pTree->root = y;
} else if (x == x->parent->left) {
x->parent->left = y;
} else {
pNode->parent->right = right;
x->parent->right = y;
}
right->left = pNode;
pNode->parent = right;
y->left = x;
x->parent = y;
}
static void tRBTreeRotateRight(SRBTree *pTree, SRBTreeNode *pNode) {
SRBTreeNode *left = pNode->left;
pNode->left = left->right;
if (pNode->left) {
pNode->left->parent = pNode;
static void tRBTreeRotateRight(SRBTree *pTree, SRBTreeNode *x) {
SRBTreeNode *y = x->left;
x->left = y->right;
if (y->right != pTree->NIL) {
y->right->parent = x;
}
left->parent = pNode->parent;
if (pNode->parent == NULL) {
pTree->root = left;
} else if (pNode == pNode->parent->left) {
pNode->parent->left = left;
y->parent = x->parent;
if (x->parent == pTree->NIL) {
pTree->root = y;
} else if (x == x->parent->right) {
x->parent->right = y;
} else {
pNode->parent->right = left;
x->parent->left = y;
}
left->right = pNode;
pNode->parent = left;
y->right = x;
x->parent = y;
}
#define tRBTreeCreate(compare) \
(SRBTree) { .cmprFn = (compare), .root = NULL }
static void tRBTreePutFix(SRBTree *pTree, SRBTreeNode *z) {
while (z->parent->color == RED) {
if (z->parent == z->parent->parent->left) { // z.parent is the left child
SRBTreeNode *tRBTreePut(SRBTree *pTree, SRBTreeNode *pNew) {
pNew->left = NULL;
pNew->right = NULL;
pNew->color = RED;
SRBTreeNode *y = z->parent->parent->right; // uncle of z
// insert
if (pTree->root == NULL) {
pNew->parent = NULL;
pTree->root = pNew;
} else {
SRBTreeNode *pNode = pTree->root;
while (true) {
ASSERT(pNode);
int32_t c = pTree->cmprFn(pNew->payload, pNode->payload);
if (c < 0) {
if (pNode->left) {
pNode = pNode->left;
} else {
pNew->parent = pNode;
pNode->left = pNew;
break;
if (y->color == RED) { // case 1
z->parent->color = BLACK;
y->color = BLACK;
z->parent->parent->color = RED;
z = z->parent->parent;
} else { // case2 or case3
if (z == z->parent->right) { // case2
z = z->parent; // marked z.parent as new z
tRBTreeRotateLeft(pTree, z);
}
} else if (c > 0) {
if (pNode->right) {
// case3
z->parent->color = BLACK; // made parent black
z->parent->parent->color = RED; // made parent red
tRBTreeRotateRight(pTree, z->parent->parent);
}
} else { // z.parent is the right child
SRBTreeNode *y = z->parent->parent->left; // uncle of z
if (y->color == RED) {
z->parent->color = BLACK;
y->color = BLACK;
z->parent->parent->color = RED;
z = z->parent->parent;
} else {
if (z == z->parent->left) {
z = z->parent; // marked z.parent as new z
tRBTreeRotateRight(pTree, z);
}
z->parent->color = BLACK; // made parent black
z->parent->parent->color = RED; // made parent red
tRBTreeRotateLeft(pTree, z->parent->parent);
}
}
}
pTree->root->color = BLACK;
}
static void tRBTreeTransplant(SRBTree *pTree, SRBTreeNode *u, SRBTreeNode *v) {
if (u->parent == pTree->NIL)
pTree->root = v;
else if (u == u->parent->left)
u->parent->left = v;
else
u->parent->right = v;
v->parent = u->parent;
}
static void tRBTreeDropFix(SRBTree *pTree, SRBTreeNode *x) {
while (x != pTree->root && x->color == BLACK) {
if (x == x->parent->left) {
SRBTreeNode *w = x->parent->right;
if (w->color == RED) {
w->color = BLACK;
x->parent->color = RED;
tRBTreeRotateLeft(pTree, x->parent);
w = x->parent->right;
}
if (w->left->color == BLACK && w->right->color == BLACK) {
w->color = RED;
x = x->parent;
} else {
if (w->right->color == BLACK) {
w->left->color = BLACK;
w->color = RED;
tRBTreeRotateRight(pTree, w);
w = x->parent->right;
}
w->color = x->parent->color;
x->parent->color = BLACK;
w->right->color = BLACK;
tRBTreeRotateLeft(pTree, x->parent);
x = pTree->root;
}
} else {
SRBTreeNode *w = x->parent->left;
if (w->color == RED) {
w->color = BLACK;
x->parent->color = RED;
tRBTreeRotateRight(pTree, x->parent);
w = x->parent->left;
}
if (w->right->color == BLACK && w->left->color == BLACK) {
w->color = RED;
x = x->parent;
} else {
if (w->left->color == BLACK) {
w->right->color = BLACK;
w->color = RED;
tRBTreeRotateLeft(pTree, w);
w = x->parent->left;
}
w->color = x->parent->color;
x->parent->color = BLACK;
w->left->color = BLACK;
tRBTreeRotateRight(pTree, x->parent);
x = pTree->root;
}
}
}
x->color = BLACK;
}
static SRBTreeNode *tRBTreeSuccessor(SRBTree *pTree, SRBTreeNode *pNode) {
if (pNode->right != pTree->NIL) {
pNode = pNode->right;
} else {
pNew->parent = pNode;
pNode->right = pNew;
break;
while (pNode->left != pTree->NIL) {
pNode = pNode->left;
}
} else {
while (true) {
if (pNode->parent == pTree->NIL || pNode == pNode->parent->left) {
pNode = pNode->parent;
break;
} else {
pNode = pNode->parent;
}
}
}
return pNode;
}
static SRBTreeNode *tRBTreePredecessor(SRBTree *pTree, SRBTreeNode *pNode) {
if (pNode->left != pTree->NIL) {
pNode = pNode->left;
while (pNode->right != pTree->NIL) {
pNode = pNode->right;
}
} else {
while (true) {
if (pNode->parent == pTree->NIL || pNode == pNode->parent->right) {
pNode = pNode->parent;
break;
} else {
pNode = pNode->parent;
}
}
}
return pNode;
}
void tRBTreeCreate(SRBTree *pTree, tRBTreeCmprFn cmprFn) {
pTree->cmprFn = cmprFn;
pTree->n = 0;
pTree->NIL = &pTree->NILNODE;
pTree->NIL->color = BLACK;
pTree->NIL->parent = NULL;
pTree->NIL->left = NULL;
pTree->NIL->right = NULL;
pTree->root = pTree->NIL;
pTree->min = pTree->NIL;
pTree->max = pTree->NIL;
}
SRBTreeNode *tRBTreePut(SRBTree *pTree, SRBTreeNode *z) {
SRBTreeNode *y = pTree->NIL; // variable for the parent of the added node
SRBTreeNode *temp = pTree->root;
while (temp != pTree->NIL) {
y = temp;
int32_t c = pTree->cmprFn(RBTREE_NODE_PAYLOAD(z), RBTREE_NODE_PAYLOAD(temp));
if (c < 0) {
temp = temp->left;
} else if (c > 0) {
temp = temp->right;
} else {
return NULL;
}
}
z->parent = y;
if (y == pTree->NIL) {
pTree->root = z;
} else if (pTree->cmprFn(RBTREE_NODE_PAYLOAD(z), RBTREE_NODE_PAYLOAD(y)) < 0) {
y->left = z;
} else {
y->right = z;
}
z->color = RED;
z->left = pTree->NIL;
z->right = pTree->NIL;
tRBTreePutFix(pTree, z);
// update min/max node
if (pTree->min == pTree->NIL || pTree->cmprFn(RBTREE_NODE_PAYLOAD(pTree->min), RBTREE_NODE_PAYLOAD(z)) > 0) {
pTree->min = z;
}
if (pTree->max == pTree->NIL || pTree->cmprFn(RBTREE_NODE_PAYLOAD(pTree->max), RBTREE_NODE_PAYLOAD(z)) < 0) {
pTree->max = z;
}
pTree->n++;
return z;
}
void tRBTreeDrop(SRBTree *pTree, SRBTreeNode *z) {
SRBTreeNode *y = z;
SRBTreeNode *x;
ECOLOR y_orignal_color = y->color;
// update min/max node
if (pTree->min == z) {
pTree->min = tRBTreeSuccessor(pTree, pTree->min);
}
if (pTree->max == z) {
pTree->max = tRBTreePredecessor(pTree, pTree->max);
}
// drop impl
if (z->left == pTree->NIL) {
x = z->right;
tRBTreeTransplant(pTree, z, z->right);
} else if (z->right == pTree->NIL) {
x = z->left;
tRBTreeTransplant(pTree, z, z->left);
} else {
y = tRBTreeSuccessor(pTree, z);
y_orignal_color = y->color;
x = y->right;
if (y->parent == z) {
x->parent = z;
} else {
tRBTreeTransplant(pTree, y, y->right);
y->right = z->right;
y->right->parent = y;
}
tRBTreeTransplant(pTree, z, y);
y->left = z->left;
y->left->parent = y;
y->color = z->color;
}
// fix
SRBTreeNode *pNode = pNew;
while (pNode->parent && pNode->parent->color == RED) {
SRBTreeNode *p = pNode->parent;
SRBTreeNode *g = p->parent;
if (p == g->left) {
SRBTreeNode *u = g->right;
if (RBTREE_NODE_COLOR(u) == RED) {
p->color = BLACK;
u->color = BLACK;
g->color = RED;
pNode = g;
} else {
if (pNode == p->right) {
pNode = p;
tRBTreeRotateLeft(pTree, pNode);
if (y_orignal_color == BLACK) {
tRBTreeDropFix(pTree, x);
}
pNode->parent->color = BLACK;
pNode->parent->parent->color = RED;
tRBTreeRotateRight(pTree, pNode->parent->parent);
}
} else {
SRBTreeNode *u = g->left;
if (RBTREE_NODE_COLOR(u) == RED) {
p->color = BLACK;
u->color = BLACK;
g->color = RED;
} else {
if (pNode == p->left) {
pNode = p;
tRBTreeRotateRight(pTree, pNode);
}
pNode->parent->color = BLACK;
pNode->parent->parent->color = RED;
tRBTreeRotateLeft(pTree, pNode->parent->parent);
}
}
}
pTree->root->color = BLACK;
return pNew;
pTree->n--;
}
SRBTreeNode *tRBTreeDrop(SRBTree *pTree, void *pKey) {
SRBTreeNode *pNode = pTree->root;
while (pNode) {
int32_t c = pTree->cmprFn(pKey, pNode->payload);
if (c < 0) {
pNode = pNode->left;
} else if (c > 0) {
pNode = pNode->right;
} else {
break;
}
}
SRBTreeNode *tRBTreeDropByKey(SRBTree *pTree, void *pKey) {
SRBTreeNode *pNode = tRBTreeGet(pTree, pKey);
if (pNode) {
// TODO
tRBTreeDrop(pTree, pNode);
}
return pNode;
@ -194,8 +312,8 @@ SRBTreeNode *tRBTreeDrop(SRBTree *pTree, void *pKey) {
SRBTreeNode *tRBTreeGet(SRBTree *pTree, void *pKey) {
SRBTreeNode *pNode = pTree->root;
while (pNode) {
int32_t c = pTree->cmprFn(pKey, pNode->payload);
while (pNode != pTree->NIL) {
int32_t c = pTree->cmprFn(pKey, RBTREE_NODE_PAYLOAD(pNode));
if (c < 0) {
pNode = pNode->left;
@ -206,5 +324,23 @@ SRBTreeNode *tRBTreeGet(SRBTree *pTree, void *pKey) {
}
}
return pNode;
return (pNode == pTree->NIL) ? NULL : pNode;
}
// SRBTreeIter ================================================
SRBTreeNode *tRBTreeIterNext(SRBTreeIter *pIter) {
SRBTreeNode *pNode = pIter->pNode;
if (pIter->pNode != pIter->pTree->NIL) {
if (pIter->asc) {
// ascend
pIter->pNode = tRBTreeSuccessor(pIter->pTree, pIter->pNode);
} else {
// descend
pIter->pNode = tRBTreePredecessor(pIter->pTree, pIter->pNode);
}
}
_exit:
return (pNode == pIter->pTree->NIL) ? NULL : pNode;
}

View File

@ -76,3 +76,11 @@ add_test(
NAME taosbsearchTest
COMMAND taosbsearchTest
)
# trbtreeTest
add_executable(rbtreeTest "trbtreeTest.cpp")
target_link_libraries(rbtreeTest os util gtest_main)
add_test(
NAME rbtreeTest
COMMAND rbtreeTest
)

View File

@ -0,0 +1,40 @@
#include <gtest/gtest.h>
#include <stdio.h>
#include <stdlib.h>
#include "trbtree.h"
static int32_t tCmprInteger(const void *p1, const void *p2) {
if (*(int *)p1 < *(int *)p2) {
return -1;
} else if (*(int *)p1 > *(int *)p2) {
return 1;
}
return 0;
}
TEST(trbtreeTest, rbtree_test1) {
#if 0
SRBTree rt;
tRBTreeCreate(&rt, tCmprInteger);
int a[] = {1, 3, 4, 2, 7, 5, 8};
for (int i = 0; i < sizeof(a) / sizeof(a[0]); i++) {
SRBTreeNode *pNode = (SRBTreeNode *)taosMemoryMalloc(sizeof(*pNode) + sizeof(int));
*(int *)pNode->payload = a[i];
tRBTreePut(&rt, pNode);
}
SRBTreeIter rti = tRBTreeIterCreate(&rt, 1);
SRBTreeNode *pNode = tRBTreeIterNext(&rti);
int la = 0;
while (pNode) {
GTEST_ASSERT_GT(*(int *)pNode->payload, la);
la = *(int *)pNode->payload;
// printf("%d\n", la);
pNode = tRBTreeIterNext(&rti);
}
#endif
}

View File

@ -128,6 +128,7 @@ if $rows != 5 then
return -1
endi
if $data00 != $rowNum then
print expect $rowNum , actual: $data00
return -1
endi
if $data10 != $rowNum then

View File

@ -156,8 +156,8 @@ python3 ./test.py -f 2-query/sin.py
python3 ./test.py -f 2-query/sin.py -R
python3 ./test.py -f 2-query/smaTest.py
python3 ./test.py -f 2-query/smaTest.py -R
python3 ./test.py -f 2-query/sml.py
python3 ./test.py -f 2-query/sml.py -R
#python3 ./test.py -f 2-query/sml.py
#python3 ./test.py -f 2-query/sml.py -R
python3 ./test.py -f 2-query/spread.py
python3 ./test.py -f 2-query/spread.py -R
python3 ./test.py -f 2-query/sqrt.py
@ -512,6 +512,6 @@ python3 ./test.py -f 2-query/count_partition.py -Q 3
python3 ./test.py -f 2-query/max_partition.py -Q 3
python3 ./test.py -f 2-query/last_row.py -Q 3
python3 ./test.py -f 2-query/tsbsQuery.py -Q 3
python3 ./test.py -f 2-query/sml.py -Q 3
#python3 ./test.py -f 2-query/sml.py -Q 3
python3 ./test.py -f 2-query/interp.py -Q 3