598 lines
17 KiB
C
598 lines
17 KiB
C
#include "os.h"
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#include "ulog.h"
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#include "tpagedbuf.h"
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#include "taoserror.h"
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#include "tcompression.h"
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#include "thash.h"
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#define GET_DATA_PAYLOAD(_p) ((char *)(_p)->pData + POINTER_BYTES)
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#define NO_IN_MEM_AVAILABLE_PAGES(_b) (listNEles((_b)->lruList) >= (_b)->inMemPages)
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typedef struct SFreeListItem {
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int32_t offset;
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int32_t len;
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} SFreeListItem;
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typedef struct SPageDiskInfo {
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int64_t offset;
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int32_t length;
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} SPageDiskInfo;
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typedef struct SPageInfo {
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SListNode* pn; // point to list node
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void* pData;
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int64_t offset;
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int32_t pageId;
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int32_t length:30;
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bool used:1; // set current page is in used
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bool dirty:1; // set current buffer page is dirty or not
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} SPageInfo;
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typedef struct SDiskbasedBuf {
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int32_t numOfPages;
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int64_t totalBufSize;
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uint64_t fileSize; // disk file size
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FILE* file;
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int32_t allocateId; // allocated page id
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char* path; // file path
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int32_t pageSize; // current used page size
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int32_t inMemPages; // numOfPages that are allocated in memory
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SHashObj* groupSet; // id hash table
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SHashObj* all;
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SList* lruList;
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void* emptyDummyIdList; // dummy id list
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void* assistBuf; // assistant buffer for compress/decompress data
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SArray* pFree; // free area in file
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bool comp; // compressed before flushed to disk
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uint64_t nextPos; // next page flush position
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uint64_t qId; // for debug purpose
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bool printStatis; // Print statistics info when closing this buffer.
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SDiskbasedBufStatis statis;
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} SDiskbasedBuf;
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static void printStatisData(const SDiskbasedBuf* pBuf);
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int32_t createDiskbasedBuffer(SDiskbasedBuf** pBuf, int32_t pagesize, int32_t inMemBufSize, uint64_t qId, const char* dir) {
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*pBuf = calloc(1, sizeof(SDiskbasedBuf));
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SDiskbasedBuf* pResBuf = *pBuf;
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if (pResBuf == NULL) {
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return TSDB_CODE_OUT_OF_MEMORY;
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}
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pResBuf->pageSize = pagesize;
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pResBuf->numOfPages = 0; // all pages are in buffer in the first place
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pResBuf->totalBufSize = 0;
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pResBuf->inMemPages = inMemBufSize/pagesize; // maximum allowed pages, it is a soft limit.
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pResBuf->allocateId = -1;
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pResBuf->comp = true;
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pResBuf->file = NULL;
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pResBuf->qId = qId;
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pResBuf->fileSize = 0;
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// at least more than 2 pages must be in memory
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assert(inMemBufSize >= pagesize * 2);
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pResBuf->lruList = tdListNew(POINTER_BYTES);
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// init id hash table
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pResBuf->groupSet = taosHashInit(10, taosGetDefaultHashFunction(TSDB_DATA_TYPE_INT), true, false);
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pResBuf->assistBuf = malloc(pResBuf->pageSize + 2); // EXTRA BYTES
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pResBuf->all = taosHashInit(10, taosGetDefaultHashFunction(TSDB_DATA_TYPE_INT), true, false);
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char path[PATH_MAX] = {0};
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taosGetTmpfilePath(dir, "qbuf", path);
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pResBuf->path = strdup(path);
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pResBuf->emptyDummyIdList = taosArrayInit(1, sizeof(int32_t));
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// qDebug("QInfo:0x%"PRIx64" create resBuf for output, page size:%d, inmem buf pages:%d, file:%s", qId, pResBuf->pageSize,
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// pResBuf->inMemPages, pResBuf->path);
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return TSDB_CODE_SUCCESS;
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}
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static int32_t createDiskFile(SDiskbasedBuf* pBuf) {
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pBuf->file = fopen(pBuf->path, "wb+");
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if (pBuf->file == NULL) {
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// qError("failed to create tmp file: %s on disk. %s", pBuf->path, strerror(errno));
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return TAOS_SYSTEM_ERROR(errno);
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}
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return TSDB_CODE_SUCCESS;
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}
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static char* doCompressData(void* data, int32_t srcSize, int32_t *dst, SDiskbasedBuf* pBuf) { // do nothing
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if (!pBuf->comp) {
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*dst = srcSize;
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return data;
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}
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*dst = tsCompressString(data, srcSize, 1, pBuf->assistBuf, srcSize, ONE_STAGE_COMP, NULL, 0);
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memcpy(data, pBuf->assistBuf, *dst);
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return data;
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}
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static char* doDecompressData(void* data, int32_t srcSize, int32_t *dst, SDiskbasedBuf* pBuf) { // do nothing
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if (!pBuf->comp) {
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*dst = srcSize;
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return data;
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}
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*dst = tsDecompressString(data, srcSize, 1, pBuf->assistBuf, pBuf->pageSize+sizeof(SFilePage), ONE_STAGE_COMP, NULL, 0);
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if (*dst > 0) {
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memcpy(data, pBuf->assistBuf, *dst);
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}
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return data;
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}
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static uint64_t allocatePositionInFile(SDiskbasedBuf* pBuf, size_t size) {
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if (pBuf->pFree == NULL) {
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return pBuf->nextPos;
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} else {
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int32_t offset = -1;
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size_t num = taosArrayGetSize(pBuf->pFree);
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for(int32_t i = 0; i < num; ++i) {
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SFreeListItem* pi = taosArrayGet(pBuf->pFree, i);
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if (pi->len >= size) {
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offset = pi->offset;
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pi->offset += (int32_t)size;
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pi->len -= (int32_t)size;
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return offset;
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}
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}
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// no available recycle space, allocate new area in file
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return pBuf->nextPos;
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}
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}
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static char* doFlushPageToDisk(SDiskbasedBuf* pBuf, SPageInfo* pg) {
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assert(!pg->used && pg->pData != NULL);
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int32_t size = -1;
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char* t = NULL;
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if (pg->offset == -1 || pg->dirty) {
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SFilePage* pPage = (SFilePage*) GET_DATA_PAYLOAD(pg);
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t = doCompressData(pPage->data, pBuf->pageSize, &size, pBuf);
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}
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// this page is flushed to disk for the first time
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if (pg->offset == -1) {
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assert(pg->dirty == true);
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pg->offset = allocatePositionInFile(pBuf, size);
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pBuf->nextPos += size;
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int32_t ret = fseek(pBuf->file, pg->offset, SEEK_SET);
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if (ret != 0) {
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terrno = TAOS_SYSTEM_ERROR(errno);
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return NULL;
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}
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ret = (int32_t) fwrite(t, 1, size, pBuf->file);
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if (ret != size) {
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terrno = TAOS_SYSTEM_ERROR(errno);
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return NULL;
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}
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if (pBuf->fileSize < pg->offset + size) {
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pBuf->fileSize = pg->offset + size;
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}
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pBuf->statis.flushBytes += size;
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pBuf->statis.flushPages += 1;
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} else if (pg->dirty) {
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// length becomes greater, current space is not enough, allocate new place, otherwise, do nothing
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if (pg->length < size) {
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// 1. add current space to free list
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SPageDiskInfo dinfo = {.length = pg->length, .offset = pg->offset};
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taosArrayPush(pBuf->pFree, &dinfo);
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// 2. allocate new position, and update the info
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pg->offset = allocatePositionInFile(pBuf, size);
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pBuf->nextPos += size;
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}
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// 3. write to disk.
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int32_t ret = fseek(pBuf->file, pg->offset, SEEK_SET);
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if (ret != 0) {
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terrno = TAOS_SYSTEM_ERROR(errno);
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return NULL;
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}
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ret = (int32_t)fwrite(t, 1, size, pBuf->file);
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if (ret != size) {
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terrno = TAOS_SYSTEM_ERROR(errno);
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return NULL;
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}
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if (pBuf->fileSize < pg->offset + size) {
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pBuf->fileSize = pg->offset + size;
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}
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pBuf->statis.flushBytes += size;
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pBuf->statis.flushPages += 1;
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}
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char* pDataBuf = pg->pData;
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memset(pDataBuf, 0, pBuf->pageSize + sizeof(SFilePage));
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pg->pData = NULL; // this means the data is not in buffer
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pg->length = size;
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pg->dirty = false;
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return pDataBuf;
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}
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static char* flushPageToDisk(SDiskbasedBuf* pBuf, SPageInfo* pg) {
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int32_t ret = TSDB_CODE_SUCCESS;
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assert(((int64_t) pBuf->numOfPages * pBuf->pageSize) == pBuf->totalBufSize && pBuf->numOfPages >= pBuf->inMemPages);
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if (pBuf->file == NULL) {
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if ((ret = createDiskFile(pBuf)) != TSDB_CODE_SUCCESS) {
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terrno = ret;
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return NULL;
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}
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}
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return doFlushPageToDisk(pBuf, pg);
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}
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// load file block data in disk
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static int32_t loadPageFromDisk(SDiskbasedBuf* pBuf, SPageInfo* pg) {
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int32_t ret = fseek(pBuf->file, pg->offset, SEEK_SET);
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if (ret != 0) {
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ret = TAOS_SYSTEM_ERROR(errno);
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return ret;
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}
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SFilePage* pPage = (SFilePage*) GET_DATA_PAYLOAD(pg);
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ret = (int32_t)fread(pPage->data, 1, pg->length, pBuf->file);
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if (ret != pg->length) {
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ret = TAOS_SYSTEM_ERROR(errno);
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return ret;
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}
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pBuf->statis.loadBytes += pg->length;
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pBuf->statis.loadPages += 1;
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int32_t fullSize = 0;
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doDecompressData(pPage->data, pg->length, &fullSize, pBuf);
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return 0;
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}
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static SIDList addNewGroup(SDiskbasedBuf* pBuf, int32_t groupId) {
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assert(taosHashGet(pBuf->groupSet, (const char*) &groupId, sizeof(int32_t)) == NULL);
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SArray* pa = taosArrayInit(1, POINTER_BYTES);
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int32_t ret = taosHashPut(pBuf->groupSet, (const char*)&groupId, sizeof(int32_t), &pa, POINTER_BYTES);
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assert(ret == 0);
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return pa;
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}
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static SPageInfo* registerPage(SDiskbasedBuf* pBuf, int32_t groupId, int32_t pageId) {
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SIDList list = NULL;
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char** p = taosHashGet(pBuf->groupSet, (const char*)&groupId, sizeof(int32_t));
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if (p == NULL) { // it is a new group id
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list = addNewGroup(pBuf, groupId);
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} else {
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list = (SIDList) (*p);
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}
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pBuf->numOfPages += 1;
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SPageInfo* ppi = malloc(sizeof(SPageInfo));//{ .info = PAGE_INFO_INITIALIZER, .pageId = pageId, .pn = NULL};
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ppi->pageId = pageId;
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ppi->pData = NULL;
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ppi->offset = -1;
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ppi->length = -1;
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ppi->used = true;
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ppi->pn = NULL;
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return *(SPageInfo**) taosArrayPush(list, &ppi);
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}
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static SListNode* getEldestUnrefedPage(SDiskbasedBuf* pBuf) {
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SListIter iter = {0};
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tdListInitIter(pBuf->lruList, &iter, TD_LIST_BACKWARD);
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SListNode* pn = NULL;
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while((pn = tdListNext(&iter)) != NULL) {
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assert(pn != NULL);
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SPageInfo* pageInfo = *(SPageInfo**) pn->data;
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assert(pageInfo->pageId >= 0 && pageInfo->pn == pn);
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if (!pageInfo->used) {
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break;
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}
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}
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return pn;
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}
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static char* evacOneDataPage(SDiskbasedBuf* pBuf) {
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char* bufPage = NULL;
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SListNode* pn = getEldestUnrefedPage(pBuf);
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// all pages are referenced by user, try to allocate new space
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if (pn == NULL) {
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assert(0);
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int32_t prev = pBuf->inMemPages;
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// increase by 50% of previous mem pages
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pBuf->inMemPages = (int32_t)(pBuf->inMemPages * 1.5f);
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// qWarn("%p in memory buf page not sufficient, expand from %d to %d, page size:%d", pBuf, prev,
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// pBuf->inMemPages, pBuf->pageSize);
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} else {
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tdListPopNode(pBuf->lruList, pn);
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SPageInfo* d = *(SPageInfo**) pn->data;
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assert(d->pn == pn);
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d->pn = NULL;
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tfree(pn);
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bufPage = flushPageToDisk(pBuf, d);
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}
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return bufPage;
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}
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static void lruListPushFront(SList *pList, SPageInfo* pi) {
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tdListPrepend(pList, &pi);
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SListNode* front = tdListGetHead(pList);
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pi->pn = front;
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}
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static void lruListMoveToFront(SList *pList, SPageInfo* pi) {
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tdListPopNode(pList, pi->pn);
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tdListPrependNode(pList, pi->pn);
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}
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static FORCE_INLINE size_t getAllocPageSize(int32_t pageSize) {
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return pageSize + POINTER_BYTES + 2 + sizeof(SFilePage);
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}
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SFilePage* getNewDataBuf(SDiskbasedBuf* pBuf, int32_t groupId, int32_t* pageId) {
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pBuf->statis.getPages += 1;
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char* availablePage = NULL;
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if (NO_IN_MEM_AVAILABLE_PAGES(pBuf)) {
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availablePage = evacOneDataPage(pBuf);
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// Failed to allocate a new buffer page, and there is an error occurs.
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if (availablePage == NULL) {
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return NULL;
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}
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}
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// register new id in this group
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*pageId = (++pBuf->allocateId);
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// register page id info
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SPageInfo* pi = registerPage(pBuf, groupId, *pageId);
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// add to LRU list
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assert(listNEles(pBuf->lruList) < pBuf->inMemPages && pBuf->inMemPages > 0);
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lruListPushFront(pBuf->lruList, pi);
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// add to hash map
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taosHashPut(pBuf->all, pageId, sizeof(int32_t), &pi, POINTER_BYTES);
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// allocate buf
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if (availablePage == NULL) {
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pi->pData = calloc(1, getAllocPageSize(pBuf->pageSize)); // add extract bytes in case of zipped buffer increased.
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} else {
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pi->pData = availablePage;
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}
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pBuf->totalBufSize += pBuf->pageSize;
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((void**)pi->pData)[0] = pi;
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pi->used = true;
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return (void *)(GET_DATA_PAYLOAD(pi));
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}
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SFilePage* getBufPage(SDiskbasedBuf* pBuf, int32_t id) {
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assert(pBuf != NULL && id >= 0);
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pBuf->statis.getPages += 1;
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SPageInfo** pi = taosHashGet(pBuf->all, &id, sizeof(int32_t));
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assert(pi != NULL && *pi != NULL);
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if ((*pi)->pData != NULL) { // it is in memory
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// no need to update the LRU list if only one page exists
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if (pBuf->numOfPages == 1) {
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(*pi)->used = true;
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return (void *)(GET_DATA_PAYLOAD(*pi));
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}
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SPageInfo** pInfo = (SPageInfo**) ((*pi)->pn->data);
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assert(*pInfo == *pi);
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lruListMoveToFront(pBuf->lruList, (*pi));
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(*pi)->used = true;
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return (void *)(GET_DATA_PAYLOAD(*pi));
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} else { // not in memory
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assert((*pi)->pData == NULL && (*pi)->pn == NULL && (*pi)->length >= 0 && (*pi)->offset >= 0);
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char* availablePage = NULL;
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if (NO_IN_MEM_AVAILABLE_PAGES(pBuf)) {
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availablePage = evacOneDataPage(pBuf);
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if (availablePage == NULL) {
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return NULL;
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}
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}
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if (availablePage == NULL) {
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(*pi)->pData = calloc(1, getAllocPageSize(pBuf->pageSize));
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} else {
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(*pi)->pData = availablePage;
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}
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((void**)((*pi)->pData))[0] = (*pi);
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lruListPushFront(pBuf->lruList, *pi);
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(*pi)->used = true;
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int32_t code = loadPageFromDisk(pBuf, *pi);
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if (code != 0) {
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return NULL;
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}
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return (void *)(GET_DATA_PAYLOAD(*pi));
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}
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}
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void releaseBufPage(SDiskbasedBuf* pBuf, void* page) {
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assert(pBuf != NULL && page != NULL);
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int32_t offset = offsetof(SPageInfo, pData);
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char* p = page - offset;
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SPageInfo* ppi = ((SPageInfo**) p)[0];
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releaseBufPageInfo(pBuf, ppi);
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}
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void releaseBufPageInfo(SDiskbasedBuf* pBuf, SPageInfo* pi) {
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assert(pi->pData != NULL && pi->used);
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pi->used = false;
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pBuf->statis.releasePages += 1;
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}
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size_t getNumOfResultBufGroupId(const SDiskbasedBuf* pBuf) { return taosHashGetSize(pBuf->groupSet); }
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size_t getTotalBufSize(const SDiskbasedBuf* pBuf) { return (size_t)pBuf->totalBufSize; }
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SIDList getDataBufPagesIdList(SDiskbasedBuf* pBuf, int32_t groupId) {
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assert(pBuf != NULL);
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char** p = taosHashGet(pBuf->groupSet, (const char*)&groupId, sizeof(int32_t));
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if (p == NULL) { // it is a new group id
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return pBuf->emptyDummyIdList;
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} else {
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return (SArray*) (*p);
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}
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}
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void destroyResultBuf(SDiskbasedBuf* pBuf) {
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if (pBuf == NULL) {
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return;
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}
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printStatisData(pBuf);
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if (pBuf->file != NULL) {
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uDebug("Paged buffer closed, total:%.2f Kb (%d Pages), inmem size:%.2f Kb (%d Pages), file size:%.2f Kb, page size:%.2f Kb, %"PRIx64"\n",
|
|
pBuf->totalBufSize/1024.0, pBuf->numOfPages, listNEles(pBuf->lruList) * pBuf->pageSize / 1024.0,
|
|
listNEles(pBuf->lruList), pBuf->fileSize/1024.0, pBuf->pageSize/1024.0f, pBuf->qId);
|
|
|
|
fclose(pBuf->file);
|
|
} else {
|
|
uDebug("Paged buffer closed, total:%.2f Kb, no file created, %"PRIx64, pBuf->totalBufSize/1024.0, pBuf->qId);
|
|
}
|
|
|
|
// print the statistics information
|
|
{
|
|
SDiskbasedBufStatis *ps = &pBuf->statis;
|
|
uDebug("Get/Release pages:%d/%d, flushToDisk:%.2f Kb (%d Pages), loadFromDisk:%.2f Kb (%d Pages), avgPageSize:%.2f Kb\n"
|
|
, ps->getPages, ps->releasePages, ps->flushBytes/1024.0f, ps->flushPages, ps->loadBytes/1024.0f, ps->loadPages
|
|
, ps->loadBytes/(1024.0 * ps->loadPages));
|
|
}
|
|
|
|
remove(pBuf->path);
|
|
tfree(pBuf->path);
|
|
|
|
SArray** p = taosHashIterate(pBuf->groupSet, NULL);
|
|
while(p) {
|
|
size_t n = taosArrayGetSize(*p);
|
|
for(int32_t i = 0; i < n; ++i) {
|
|
SPageInfo* pi = taosArrayGetP(*p, i);
|
|
tfree(pi->pData);
|
|
tfree(pi);
|
|
}
|
|
|
|
taosArrayDestroy(*p);
|
|
p = taosHashIterate(pBuf->groupSet, p);
|
|
}
|
|
|
|
tdListFree(pBuf->lruList);
|
|
taosArrayDestroy(pBuf->emptyDummyIdList);
|
|
taosHashCleanup(pBuf->groupSet);
|
|
taosHashCleanup(pBuf->all);
|
|
|
|
tfree(pBuf->assistBuf);
|
|
tfree(pBuf);
|
|
}
|
|
|
|
SPageInfo* getLastPageInfo(SIDList pList) {
|
|
size_t size = taosArrayGetSize(pList);
|
|
SPageInfo* pPgInfo = taosArrayGetP(pList, size - 1);
|
|
return pPgInfo;
|
|
}
|
|
|
|
int32_t getPageId(const SPageInfo* pPgInfo) {
|
|
ASSERT(pPgInfo != NULL);
|
|
return pPgInfo->pageId;
|
|
}
|
|
|
|
int32_t getBufPageSize(const SDiskbasedBuf* pBuf) {
|
|
return pBuf->pageSize;
|
|
}
|
|
|
|
int32_t getNumOfInMemBufPages(const SDiskbasedBuf* pBuf) {
|
|
return pBuf->inMemPages;
|
|
}
|
|
|
|
bool isAllDataInMemBuf(const SDiskbasedBuf* pBuf) {
|
|
return pBuf->fileSize == 0;
|
|
}
|
|
|
|
void setBufPageDirty(SFilePage* pPage, bool dirty) {
|
|
int32_t offset = offsetof(SPageInfo, pData); // todo extract method
|
|
char* p = (char*)pPage - offset;
|
|
|
|
SPageInfo* ppi = ((SPageInfo**) p)[0];
|
|
ppi->dirty = dirty;
|
|
}
|
|
|
|
void printStatisBeforeClose(SDiskbasedBuf* pBuf) {
|
|
pBuf->printStatis = true;
|
|
}
|
|
|
|
SDiskbasedBufStatis getDBufStatis(const SDiskbasedBuf* pBuf) {
|
|
return pBuf->statis;
|
|
}
|
|
|
|
void printStatisData(const SDiskbasedBuf* pBuf) {
|
|
if (!pBuf->printStatis) {
|
|
return;
|
|
}
|
|
|
|
const SDiskbasedBufStatis* ps = &pBuf->statis;
|
|
|
|
printf(
|
|
"Paged buffer closed, total:%.2f Kb (%d Pages), inmem size:%.2f Kb (%d Pages), file size:%.2f Kb, page size:%.2f "
|
|
"Kb, %" PRIx64 "\n",
|
|
pBuf->totalBufSize / 1024.0, pBuf->numOfPages, listNEles(pBuf->lruList) * pBuf->pageSize / 1024.0,
|
|
listNEles(pBuf->lruList), pBuf->fileSize / 1024.0, pBuf->pageSize / 1024.0f, pBuf->qId);
|
|
|
|
printf(
|
|
"Get/Release pages:%d/%d, flushToDisk:%.2f Kb (%d Pages), loadFromDisk:%.2f Kb (%d Pages), avgPageSize:%.2f Kb\n",
|
|
ps->getPages, ps->releasePages, ps->flushBytes / 1024.0f, ps->flushPages, ps->loadBytes / 1024.0f, ps->loadPages,
|
|
ps->loadBytes / (1024.0 * ps->loadPages));
|
|
}
|