parent
1ee558fb63
commit
26648a909f
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@ -34,9 +34,12 @@ typedef struct SFillColInfo {
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} SFillColInfo;
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typedef struct SFillLinearInfo {
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SPoint start;
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SPoint end;
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bool fillLastPoint;
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SPoint start;
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SPoint end;
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bool hasNull;
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bool fillLastPoint;
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int16_t type;
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int32_t bytes;
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} SFillLinearInfo;
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typedef struct {
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@ -2091,18 +2091,28 @@ static void doKeepLinearInfo(STimeSliceOperatorInfo* pSliceInfo, const SSDataBlo
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int32_t numOfCols = taosArrayGetSize(pBlock->pDataBlock);
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for (int32_t i = 0; i < numOfCols; ++i) {
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SColumnInfoData* pColInfoData = taosArrayGet(pBlock->pDataBlock, i);
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SColumnInfoData* pTsCol = taosArrayGet(pBlock->pDataBlock, pSliceInfo->tsCol.slotId);
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SFillLinearInfo* pLinearInfo = taosArrayGet(pSliceInfo->pLinearInfo, i);
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// null data should not be kept since it can not be used to perform interpolation
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if (!colDataIsNull_s(pColInfoData, i)) {
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SGroupKeys* pkey = taosArrayGet(pSliceInfo->pNextRow, i);
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int64_t startKey = *(int64_t*)colDataGetData(pTsCol, rowIndex);
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int64_t endKey = *(int64_t*)colDataGetData(pTsCol, rowIndex + 1);
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pLinearInfo->start.key = startKey;
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pLinearInfo->end.key = endKey;
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pkey->isNull = false;
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char* val = colDataGetData(pColInfoData, rowIndex);
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memcpy(pkey->pData, val, pkey->bytes);
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char* val;
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val = colDataGetData(pColInfoData, rowIndex);
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memcpy(pLinearInfo->start.val, val, pLinearInfo->bytes);
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val = colDataGetData(pColInfoData, rowIndex + 1);
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memcpy(pLinearInfo->end.val, val, pLinearInfo->bytes);
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pLinearInfo->hasNull = false;
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} else {
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pLinearInfo->hasNull = true;
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}
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}
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pSliceInfo->isNextRowSet = true;
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}
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static void genInterpolationResult(STimeSliceOperatorInfo* pSliceInfo, SExprSupp* pExprSup, SSDataBlock* pBlock,
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@ -2133,52 +2143,36 @@ static void genInterpolationResult(STimeSliceOperatorInfo* pSliceInfo, SExprSupp
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if (pDst->info.type == TSDB_DATA_TYPE_FLOAT) {
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float v = 0;
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GET_TYPED_DATA(v, float, pVar->nType, &pVar->i);
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colDataAppend(pDst, rows, (char*)&v, false);
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colDataAppend(pDst, rows, (char *)&v, false);
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} else if (pDst->info.type == TSDB_DATA_TYPE_DOUBLE) {
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double v = 0;
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GET_TYPED_DATA(v, double, pVar->nType, &pVar->i);
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colDataAppend(pDst, rows, (char*)&v, false);
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colDataAppend(pDst, rows, (char *)&v, false);
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} else if (IS_SIGNED_NUMERIC_TYPE(pDst->info.type)) {
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int64_t v = 0;
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GET_TYPED_DATA(v, int64_t, pVar->nType, &pVar->i);
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colDataAppend(pDst, rows, (char*)&v, false);
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colDataAppend(pDst, rows, (char *)&v, false);
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}
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pResBlock->info.rows += 1;
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break;
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}
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case TSDB_FILL_LINEAR: {
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#if 0
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if (pCtx->start.key == INT64_MIN || pCtx->start.key > pCtx->startTs
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|| pCtx->end.key == INT64_MIN || pCtx->end.key < pCtx->startTs) {
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// goto interp_exit;
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}
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SFillLinearInfo* pLinearInfo = taosArrayGet(pSliceInfo->pLinearInfo, srcSlot);
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double v1 = -1, v2 = -1;
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GET_TYPED_DATA(v1, double, pCtx->inputType, &pCtx->start.val);
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GET_TYPED_DATA(v2, double, pCtx->inputType, &pCtx->end.val);
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SPoint start = pLinearInfo->start;
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SPoint end = pLinearInfo->end;
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SPoint current = {.key = pSliceInfo->current};
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current.val = taosMemoryCalloc(pLinearInfo->bytes, 1);
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SPoint point1 = {.key = ts, .val = &v1};
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SPoint point2 = {.key = nextTs, .val = &v2};
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SPoint point = {.key = pCtx->startTs, .val = pCtx->pOutput};
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if (pLinearInfo->hasNull) {
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colDataAppendNULL(pDst, rows);
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} else {
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taosGetLinearInterpolationVal(¤t, pLinearInfo->type, &start, &end, pLinearInfo->type);
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colDataAppend(pDst, rows, (char *)current.val, false);
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}
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int32_t srcType = pCtx->inputType;
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if (isNull((char *)&pCtx->start.val, srcType) || isNull((char *)&pCtx->end.val, srcType)) {
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setNull(pCtx->pOutput, srcType, pCtx->inputBytes);
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} else {
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bool exceedMax = false, exceedMin = false;
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taosGetLinearInterpolationVal(&point, pCtx->outputType, &point1, &point2, TSDB_DATA_TYPE_DOUBLE, &exceedMax, &exceedMin);
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if (exceedMax || exceedMin) {
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__compar_fn_t func = getComparFunc((int32_t)pCtx->inputType, 0);
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if (func(&pCtx->start.val, &pCtx->end.val) <= 0) {
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COPY_TYPED_DATA(pCtx->pOutput, pCtx->inputType, exceedMax ? &pCtx->start.val : &pCtx->end.val);
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} else {
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COPY_TYPED_DATA(pCtx->pOutput, pCtx->inputType, exceedMax ? &pCtx->end.val : &pCtx->start.val);
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}
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}
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}
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#endif
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// TODO: pResBlock->info.rows += 1;
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pResBlock->info.rows += 1;
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break;
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}
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case TSDB_FILL_PREV: {
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@ -2278,13 +2272,16 @@ static int32_t initFillLinearInfo(STimeSliceOperatorInfo* pInfo, SSDataBlock* pB
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for (int32_t i = 0; i < numOfCols; ++i) {
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SColumnInfoData* pColInfo = taosArrayGet(pBlock->pDataBlock, i);
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SFillLinearInfo pLinearInfo = {0};
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pLinearInfo.start.key = INT64_MIN;
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pLinearInfo.end.key = INT64_MAX;
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pLinearInfo.start.val = taosMemoryCalloc(1, pColInfo->info.bytes);
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pLinearInfo.end.val = taosMemoryCalloc(1, pColInfo->info.bytes);
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pLinearInfo.fillLastPoint = false;
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taosArrayPush(pInfo->pLinearInfo, &pLinearInfo);
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SFillLinearInfo linearInfo = {0};
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linearInfo.start.key = INT64_MIN;
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linearInfo.end.key = INT64_MAX;
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linearInfo.start.val = taosMemoryCalloc(1, pColInfo->info.bytes);
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linearInfo.end.val = taosMemoryCalloc(1, pColInfo->info.bytes);
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linearInfo.hasNull = false;
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linearInfo.fillLastPoint = false;
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linearInfo.type = pColInfo->info.type;
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linearInfo.bytes = pColInfo->info.bytes;
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taosArrayPush(pInfo->pLinearInfo, &linearInfo);
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}
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return TSDB_CODE_SUCCESS;
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@ -2374,6 +2371,9 @@ static SSDataBlock* doTimeslice(SOperatorInfo* pOperator) {
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// if its the first point in data block, also fill values between previous(if there's any) and this point;
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// if its the last point in data block, no need to fill, but reserve this point as the start value for next data block.
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if (pSliceInfo->fillType == TSDB_FILL_LINEAR) {
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doKeepLinearInfo(pSliceInfo, pBlock, i);
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pSliceInfo->current =
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taosTimeAdd(pSliceInfo->current, pInterval->interval, pInterval->intervalUnit, pInterval->precision);
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if (i < pBlock->info.rows - 1) {
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int64_t nextTs = *(int64_t*)colDataGetData(pTsCol, i + 1);
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if (nextTs > pSliceInfo->current) {
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@ -2395,24 +2395,24 @@ static SSDataBlock* doTimeslice(SOperatorInfo* pOperator) {
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}
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} else { // it is the last row of current block
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}
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}
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} else { // non-linear interpolation
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pSliceInfo->current =
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taosTimeAdd(pSliceInfo->current, pInterval->interval, pInterval->intervalUnit, pInterval->precision);
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if (pSliceInfo->current > pSliceInfo->win.ekey) {
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doSetOperatorCompleted(pOperator);
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break;
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}
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pSliceInfo->current =
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taosTimeAdd(pSliceInfo->current, pInterval->interval, pInterval->intervalUnit, pInterval->precision);
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if (pSliceInfo->current > pSliceInfo->win.ekey) {
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doSetOperatorCompleted(pOperator);
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break;
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}
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if (pResBlock->info.rows >= pResBlock->info.capacity) {
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break;
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if (pResBlock->info.rows >= pResBlock->info.capacity) {
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break;
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}
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}
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} else if (ts < pSliceInfo->current) {
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// in case interpolation window starts and ends between two datapoints, fill(prev) need to interpolate
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// in case of interpolation window starts and ends between two datapoints, fill(prev) need to interpolate
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doKeepPrevRows(pSliceInfo, pBlock, i);
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if (i < pBlock->info.rows - 1) {
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// in case interpolation window starts and ends between two datapoints, fill(next) need to interpolate
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// in case of interpolation window starts and ends between two datapoints, fill(next) need to interpolate
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doKeepNextRows(pSliceInfo, pBlock, i + 1);
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int64_t nextTs = *(int64_t*)colDataGetData(pTsCol, i + 1);
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if (nextTs > pSliceInfo->current) {
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@ -2436,7 +2436,7 @@ static SSDataBlock* doTimeslice(SOperatorInfo* pOperator) {
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doKeepPrevRows(pSliceInfo, pBlock, i);
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}
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} else { // ts > pSliceInfo->current
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// in case interpolation window starts and ends between two datapoints, fill(next) need to interpolate
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// in case of interpolation window starts and ends between two datapoints, fill(next) need to interpolate
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doKeepNextRows(pSliceInfo, pBlock, i);
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while (pSliceInfo->current < ts && pSliceInfo->current <= pSliceInfo->win.ekey) {
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