[Performance Issue] Select from MSEG

Hi experts,
Need your help on how to improve the performance in the select from MSEG, it takes about 30 minutes to just finish the select. Thanks!
    SELECT mblnr
           mjahr
           zeile
           bwart
           matnr
           werks
           lgort
           charg
           shkzg
           menge
           ummat
           lgpla
      FROM mseg
      INTO CORRESPONDING FIELDS OF TABLE i_mseg2
       FOR ALL ENTRIES IN i_likp
      WHERE bwart IN ('601','602','653','654')
       AND matnr IN s_matnr
       AND werks IN s_werks
       AND lgort IN s_sloc
       AND lgpla EQ i_likp-vbeln.

store all the vbeln to ranges.
ranges:r_vbeln for i_likp-vbeln.
r_vbeln-option = 'EQ'.
r_vbeln-sign = 'I'.
loop at i_likp.
r_vbeln-low = i_likp-vbeln.
append r_vbeln.
endloop.
sort r_vbeln ascending
delete adjacent duplicates from r_vbeln.
then modify the fetch as below.
donot use a loop to fetch data from mseg.
SELECT mblnr mjahr zeile bwart matnr werks lgort charg shkzg menge ummat lgpla
FROM mseg client specified INTO CORRESPONDING FIELDS OF TABLE i_mseg2
FOR ALL ENTRIES IN i_likp
where mandt = sy-mandt
and (bwart = '601' or bwart = '602' or bwart = '653' or bwart = '654' )
AND matnr IN s_matnr
AND werks IN s_werks
AND lgort IN s_sloc
AND lgpla in r_vbeln.
there is another table where u can get this data...i,ll let u know shortly...
try with this if useful
reward points....

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    AUX_DAY5 LIKE SY-DATUM,
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    AUX_F_KAPBD_DAY1 TYPE P DECIMALS 3,
    AUX_F_KAPBD_DAY2 TYPE P DECIMALS 3,
    AUX_F_KAPBD_DAY3 TYPE P DECIMALS 3,
    AUX_F_KAPBD_DAY4 TYPE P DECIMALS 3,
    AUX_F_KAPBD_DAY5 TYPE P DECIMALS 3,
    AUX_F_KAPBD_OUTM TYPE P DECIMALS 3,
    AUX_F_KAPBD_OUTN TYPE P DECIMALS 3,
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    AUX_HOURS LIKE IT_ZZC10-TIME_EMPTY,
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    AUX_PKHD_DAYS LIKE PKHD-KWBZD,
    AUX_PKHD_HOURS LIKE PKHD-KWBZM,
    AUX_TMP_DAYS LIKE PKHD-KWBZM VALUE 24,
    AUX_TMP_HRS LIKE PKHD-KWBZM,
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    AUX_FILL_HOURS LIKE AUX_HOURS,
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    AUX_RATID LIKE PLAF-RATID,
    AUX_MATNR LIKE PLAF-MATNR,
    AUX_HEADER LIKE MARA-MATNR,
    AUX_ZZPTG LIKE MARC-ZZPTG,
    AUX_PEDTR LIKE PLAF-PEDTR,
    AUX_KRUEREST LIKE KBED-KRUEREST,
    AUX_KBEAREST LIKE KBED-KBEAREST,
    AUX_KRUEREST_T LIKE KBED-KRUEREST,
    AUX_KBEAREST_T LIKE KBED-KBEAREST,
    AUX_KEINH LIKE KBED-KEINH,
    AUX_KAPBD LIKE KBED-KBEAREST,
    AUX_ARBPL LIKE MKAL-MDV01,
    AUX_ARBID LIKE CRHD-OBJID,
    AUX_QUALF LIKE CRHD-QUALF,
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    SO_WERKS FOR MARC-WERKS OBLIGATORY,
    SO_BUDAT FOR MKPF-BUDAT OBLIGATORY.
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    ENDIF.
    CHECK IF ENTERED MATERIAL NUMBER IS VALID
    IF NOT SO_MATNR-LOW IS INITIAL AND SO_MATNR-HIGH IS INITIAL.
    SELECT SINGLE * FROM MARA WHERE MATNR EQ SO_MATNR-LOW.
    IF SY-SUBRC NE 0.
    SET CURSOR FIELD 'SO_MATNR-LOW'.
    MESSAGE E010 WITH 'Please enter a valid Material Number'.
    ELSE.
    IF NOT SO_WERKS-LOW IS INITIAL AND SO_WERKS-HIGH IS INITIAL.
    SELECT SINGLE * FROM MARC WHERE MATNR EQ SO_MATNR-LOW
    AND WERKS EQ SO_WERKS-LOW.
    IF SY-SUBRC NE 0.
    SET CURSOR FIELD 'SO_MATNR-LOW'.
    MESSAGE E010 WITH 'Material' SO_MATNR-LOW
    'doesnot belong to plant' SO_WERKS-LOW.
    ENDIF.
    ENDIF.
    ENDIF.
    ENDIF.
    CHECK IF TECHNOLOGY GROUP AND PLANT IS VALID
    IF NOT SO_ZZPTG-LOW IS INITIAL AND SO_ZZPTG-HIGH IS INITIAL.
    IF NOT SO_WERKS-LOW IS INITIAL AND SO_WERKS-HIGH IS INITIAL.
    SELECT SINGLE * FROM MARC WHERE WERKS EQ SO_WERKS-LOW
    AND ZZPTG EQ SO_ZZPTG-LOW.
    IF SY-SUBRC NE 0.
    SET CURSOR FIELD 'SO_ZZPTG-LOW'.
    MESSAGE E010 WITH 'Tech.Group' SO_ZZPTG-LOW 'doesnot belong to plant'
    SO_WERKS-LOW.
    ENDIF.
    ENDIF.
    ENDIF.
    ENDFORM. " CHECK_ON_SELECTION
    *& Form CHECK_BOM_EXISTENCE
    text
    --> p1 text
    <-- p2 text
    FORM CHECK_BOM_EXISTENCE .
    JOIN MARC AND ZTGRP TABLES TO GET THE COMPONENTS BASED ON THE INPUT
    CRITERIA
    REFRESH IT_MARC_ZTGRP.
    SELECT MARCMATNR MARCWERKS ZTGRPZZPTG ZTGRPZZPTD
    INTO TABLE IT_MARC_ZTGRP
    FROM MARC INNER JOIN ZTGRP
    ON MARCWERKS EQ ZTGRPWERKS AND
    MARCZZPTG EQ ZTGRPZZPTG
    WHERE MARC~WERKS IN SO_WERKS
    AND MARC~ZZPTG IN SO_ZZPTG
    AND MARC~MATNR IN SO_MATNR
    AND MARC~LVORM NE 'X'
    AND ( MARC~BESKZ EQ 'E' OR
    MARC~BESKZ EQ 'X' ).
    IF NOT IT_MARC_ZTGRP[] IS INITIAL.
    CHECK THE EXISTENCE OF BOM FOR THE SELECTED COMPONENTS.
    IF NOT PRESENT, DELETE THE ENTRY FROM INTERNAL TABLE
    LOOP AT IT_MARC_ZTGRP.
    REFRESH IT_RETURN.
    CALL FUNCTION 'BAPI_MAT_BOM_EXISTENCE_CHECK'
    EXPORTING
    MATERIAL = IT_MARC_ZTGRP-MATNR
    PLANT = IT_MARC_ZTGRP-WERKS
    BOMUSAGE = '1'
    TABLES
    RETURN = IT_RETURN.
    IF NOT IT_RETURN[] IS INITIAL.
    DELETE IT_MARC_ZTGRP WHERE MATNR EQ IT_MARC_ZTGRP-MATNR
    AND WERKS EQ IT_MARC_ZTGRP-WERKS
    AND ZZPTG EQ IT_MARC_ZTGRP-ZZPTG.
    ENDIF.
    CLEAR IT_MARC_ZTGRP.
    ENDLOOP.
    ELSE.
    MESSAGE S010 WITH 'No data present for given selection'.
    ENDIF.
    ENDFORM. " CHECK_BOM_EXISTENCE
    *& Form GET_HEADER_MATERIAL
    text
    -->P_IT_MARC_ZTGRP_MATNR text
    FORM GET_HEADER_MATERIAL USING P_MATNR.
    REFRESH IT_STPO.
    GET BOM ITEM DATA FOR THE COMPONENT
    SELECT * FROM STPO INTO TABLE IT_STPO WHERE IDNRK EQ P_MATNR
    AND DATUV LE SO_BUDAT-LOW
    AND LKENZ NE 'X'.
    IF NOT IT_STPO[] IS INITIAL.
    IF BOM ITEM DATA IS PRESENT FOR THE COMPONENT
    REFRESH IT_MAST.
    GET MATERIAL TO BOM LINK
    SELECT * FROM MAST INTO TABLE IT_MAST FOR ALL ENTRIES IN IT_STPO
    WHERE STLNR EQ IT_STPO-STLNR.
    IF NOT IT_MAST[] IS INITIAL.
    SORT IT_MAST BY MATNR.
    DELETE ADJACENT DUPLICATES FROM IT_MAST COMPARING MATNR.
    LOOP AT IT_MAST.
    CLEAR AUX_SET.
    REFRESH IT_PLANT.
    GET ALL THE PLANTS FOR THE COMPONENT
    SELECT MATNR WERKS FROM MARC INTO TABLE IT_PLANT
    WHERE MATNR EQ IT_MAST-MATNR.
    LOOP AT IT_PLANT.
    REFRESH IT_RETURN.
    CHECK FOR BOM EXISTENCE FOR MATERIAL IN ALL PLANTS
    CALL FUNCTION 'BAPI_MAT_BOM_EXISTENCE_CHECK'
    EXPORTING
    MATERIAL = IT_MAST-MATNR
    PLANT = IT_PLANT-WERKS
    BOMUSAGE = '1'
    TABLES
    RETURN = IT_RETURN.
    IF IT_RETURN[] IS INITIAL.
    MOVE 'X' TO AUX_SET.
    ENDIF.
    CLEAR IT_PLANT.
    ENDLOOP.
    IF BOM EXISTS FOR THE COMPONENT IN ANY PLANT, MOVE THE COMPONENT
    TO INTERNAL TABLE IT_MAT
    IF AUX_SET EQ 'X'.
    MOVE IT_MAST-MATNR TO IT_MAT-MATNR.
    APPEND IT_MAT.
    CLEAR IT_MAT.
    ELSE.
    IF BOM DOESNOT EXISTS FOR THE COMPONENT IN ALL PLANTS,
    SELECT THE COMPONENT AS THE FINISHED PRODUCT
    CLEAR MARA.
    SELECT SINGLE * FROM MARA WHERE MATNR EQ IT_MAST-MATNR.
    IF SY-SUBRC EQ 0 AND MARA-LVORM NE 'X'.
    MOVE: IT_MARC_ZTGRP-MATNR TO IT_MATERIAL-IDNRK,
    IT_MAST-MATNR TO IT_MATERIAL-MATNR.
    APPEND IT_MATERIAL.
    CLEAR IT_MATERIAL.
    ENDIF.
    ENDIF.
    CLEAR IT_MAST.
    ENDLOOP.
    ENDIF.
    ELSE.
    IF BOM ITEM DATA DOESNOT PRESENT FOR THE COMPONENT,
    CONSIDER THE COMPONENT AS FINISHED PRODUCT
    CLEAR MARA.
    SELECT SINGLE * FROM MARA WHERE MATNR EQ P_MATNR.
    IF SY-SUBRC EQ 0 AND MARA-LVORM NE 'X'.
    MOVE: IT_MARC_ZTGRP-MATNR TO IT_MATERIAL-IDNRK,
    P_MATNR TO IT_MATERIAL-MATNR.
    APPEND IT_MATERIAL.
    CLEAR IT_MATERIAL.
    ENDIF.
    ENDIF.
    ENDFORM. " GET_HEADER_MATERIAL
    *& Form GET_FINISHED_GOOD
    text
    -->P_IT_MAT text
    FORM GET_FINISHED_GOOD TABLES P_IT_MAT LIKE IT_MAT[].
    LOOP AT P_IT_MAT.
    PERFORM GET_HEADER_MATERIAL USING P_IT_MAT-MATNR.
    DELETE P_IT_MAT INDEX 1.
    CLEAR P_IT_MAT.
    ENDLOOP.
    ENDFORM. " GET_FINISHED_GOOD
    *& Form CHECK_SALESDATA_EXISTENCE
    text
    --> p1 text
    <-- p2 text
    FORM CHECK_SALESDATA_EXISTENCE .
    IF NOT IT_MATERIAL[] IS INITIAL.
    LOOP AT IT_MATERIAL.
    CLEAR VBAP.
    SELECT SINGLE * FROM VBAP WHERE MATNR EQ IT_MATERIAL-MATNR.
    IF SY-SUBRC NE 0.
    DELETE IT_MATERIAL WHERE IDNRK EQ IT_MATERIAL-IDNRK
    AND MATNR EQ IT_MATERIAL-MATNR.
    ENDIF.
    CLEAR IT_MATERIAL.
    ENDLOOP.
    ENDIF.
    ENDFORM. " CHECK_SALESDATA_EXISTENCE
    *& Form GET_KANBAN_DATA
    text
    --> p1 text
    <-- p2 text
    FORM GET_KANBAN_DATA.
    SORT IT_MATERIAL BY IDNRK MATNR.
    DELETE ADJACENT DUPLICATES FROM IT_MATERIAL COMPARING ALL FIELDS.
    IF NOT IT_MATERIAL[] IS INITIAL.
    GET CONTROL CYCLE HEADER DATA
    SELECT * FROM PKHD INTO TABLE IT_PKHD
    FOR ALL ENTRIES IN IT_MATERIAL
    WHERE WERKS IN SO_WERKS
    AND MATNR EQ IT_MATERIAL-IDNRK
    AND PRVBE IN SO_PRVBE.
    IF NOT IT_PKHD[] IS INITIAL.
    GET CONTROL CYCLE ITEM DATA
    SELECT * FROM PKPS INTO TABLE IT_PKPS
    FOR ALL ENTRIES IN IT_PKHD
    WHERE PKNUM EQ IT_PKHD-PKNUM.
    IF NOT IT_PKPS[] IS INITIAL.
    GET KANBAN STATUS DATA
    SELECT * FROM ZZC10 INTO TABLE IT_ZZC10_TEMP
    FOR ALL ENTRIES IN IT_PKPS
    WHERE PKKEY EQ IT_PKPS-PKKEY
    AND PKNUM EQ IT_PKPS-PKNUM
    AND ZDATE BETWEEN SO_BUDAT-LOW AND SY-DATUM
    AND STATUS EQ '5'.
    ENDIF.
    ENDIF.
    ENDIF.
    ENDFORM. " GET_KANBAN_DATA
    *& Form GET_VALUATION_AREA
    text
    --> p1 text
    <-- p2 text
    FORM GET_VALUATION_AREA.
    IF NOT IT_MARC_ZTGRP[] IS INITIAL.
    SELECT WERKS BWKEY FABKL FROM T001W INTO TABLE IT_T001W
    FOR ALL ENTRIES IN IT_MARC_ZTGRP
    WHERE WERKS EQ IT_MARC_ZTGRP-WERKS.
    ENDIF.
    ENDFORM. " GET_VALUATION_AREA
    *& Form GET_MATERIAL_DOC_DATA
    text
    --> p1 text
    <-- p2 text
    FORM GET_MATERIAL_DOC_DATA.
    GET MATERIAL DOCUMENT HEADER DATA
    SELECT * FROM MKPF INTO TABLE IT_MKPF
    WHERE BUDAT IN SO_BUDAT.
    IF NOT IT_MKPF[] IS INITIAL.
    GET MATERIAL DOCUMENT ITEM DATA
    SELECT * FROM MSEG INTO TABLE IT_MSEG
    FOR ALL ENTRIES IN IT_MKPF
    WHERE MBLNR EQ IT_MKPF-MBLNR
    AND WERKS IN SO_WERKS
    AND MJAHR EQ SY-DATUM+0(4)
    AND ( BWART EQ '131' OR BWART EQ '132' ).
    IF NOT IT_MATERIAL[] IS INITIAL.
    LOOP AT IT_MSEG.
    READ TABLE IT_MATERIAL WITH KEY IDNRK = IT_MSEG-MATNR.
    IF SY-SUBRC NE 0.
    DELETE IT_MSEG WHERE MATNR EQ IT_MSEG-MATNR.
    ENDIF.
    CLEAR: IT_MATERIAL, IT_MSEG.
    ENDLOOP.
    ENDIF.
    ENDIF.
    ENDFORM. " GET_MATERIAL_DOC_DATA
    *& Form GET_KANBAN_DETAILS
    text
    --> p1 text
    <-- p2 text
    FORM GET_KANBAN_DETAILS .
    SORT IT_PKHD BY PKNUM.
    IF NOT IT_ZZC10_TEMP[] IS INITIAL.
    LOOP AT IT_ZZC10_TEMP.
    CLEAR: AUX_FILL, AUX_PKBMG.
    MOVE IT_ZZC10_TEMP] TO IT_ZZC10[.
    DELETE IT_ZZC10 WHERE MATNR NE IT_ZZC10_TEMP-MATNR
    AND WERKS NE IT_ZZC10_TEMP-WERKS.
    LOOP AT IT_ZZC10.
    CLEAR: AUX_TIMESTAMP1, AUX_TIMESTAMP2, AUX_ZZC10_HR, AUX_DIFF.
    EMPTY DATE GREATER THAN FULL DATE
    IF IT_ZZC10-DATE_EMPTY GT IT_ZZC10-DATE_FULL.
    CONCATENATE IT_ZZC10-DATE_EMPTY IT_ZZC10-TIME_EMPTY
    INTO AUX_TIMESTAMP1.
    CONCATENATE IT_ZZC10-DATE_FULL IT_ZZC10-TIME_FULL
    INTO AUX_TIMESTAMP2.
    CALL FUNCTION 'CCU_TIMESTAMP_DIFFERENCE'
    EXPORTING
    TIMESTAMP1 = AUX_TIMESTAMP1
    TIMESTAMP2 = AUX_TIMESTAMP2
    IMPORTING
    DIFFERENCE = AUX_DIFF.
    AUX_ZZC10_HR = AUX_DIFF / 3600.
    FULL DATE GREATER THAN EMPTY DATE
    ELSEIF IT_ZZC10-DATE_FULL GT IT_ZZC10-DATE_EMPTY.
    CONCATENATE IT_ZZC10-DATE_EMPTY IT_ZZC10-TIME_EMPTY
    INTO AUX_TIMESTAMP2.
    CONCATENATE IT_ZZC10-DATE_FULL IT_ZZC10-TIME_FULL
    INTO AUX_TIMESTAMP1.
    CALL FUNCTION 'CCU_TIMESTAMP_DIFFERENCE'
    EXPORTING
    TIMESTAMP1 = AUX_TIMESTAMP1
    TIMESTAMP2 = AUX_TIMESTAMP2
    IMPORTING
    DIFFERENCE = AUX_DIFF.
    AUX_ZZC10_HR = AUX_DIFF / 3600.
    FULL DATE EQUAL TO EMPTY DATE
    ELSEIF IT_ZZC10-DATE_FULL EQ IT_ZZC10-DATE_EMPTY.
    EMPTY TIME GREATER THAN FULL TIME
    IF IT_ZZC10-TIME_EMPTY GT IT_ZZC10-TIME_FULL.
    CONCATENATE IT_ZZC10-DATE_EMPTY IT_ZZC10-TIME_EMPTY
    INTO AUX_TIMESTAMP1.
    CONCATENATE IT_ZZC10-DATE_FULL IT_ZZC10-TIME_FULL
    INTO AUX_TIMESTAMP2.
    CALL FUNCTION 'CCU_TIMESTAMP_DIFFERENCE'
    EXPORTING
    TIMESTAMP1 = AUX_TIMESTAMP1
    TIMESTAMP2 = AUX_TIMESTAMP2
    IMPORTING
    DIFFERENCE = AUX_DIFF.
    AUX_ZZC10_HR = AUX_DIFF / 3600.
    FULL TIME GREATER THAN EMPTY TIME
    ELSEIF IT_ZZC10-TIME_FULL GT IT_ZZC10-TIME_EMPTY.
    CONCATENATE IT_ZZC10-DATE_EMPTY IT_ZZC10-TIME_EMPTY
    INTO AUX_TIMESTAMP2.
    CONCATENATE IT_ZZC10-DATE_FULL IT_ZZC10-TIME_FULL
    INTO AUX_TIMESTAMP1.
    CALL FUNCTION 'CCU_TIMESTAMP_DIFFERENCE'
    EXPORTING
    TIMESTAMP1 = AUX_TIMESTAMP1
    TIMESTAMP2 = AUX_TIMESTAMP2
    IMPORTING
    DIFFERENCE = AUX_DIFF.
    AUX_ZZC10_HR = AUX_DIFF / 3600.
    FULL TIME EQUAL TO EMPTY TIME
    ELSEIF IT_ZZC10-TIME_FULL EQ IT_ZZC10-TIME_EMPTY.
    AUX_ZZC10_HR = 0.
    ENDIF.
    ENDIF.
    READ TABLE IT_PKHD WITH KEY PKNUM = IT_ZZC10-PKNUM
    BINARY SEARCH.
    IF SY-SUBRC EQ 0.
    CLEAR: AUX_TIMESTAMP1, AUX_TIMESTAMP2,
    AUX_PKHD_DAYS, AUX_PKHD_HOURS, AUX_TMP_DAYS,
    AUX_PKHD_TIME.
    AUX_PKHD_DAYS = IT_PKHD-KWBZD.
    AUX_PKHD_HOURS = IT_PKHD-KWBZM.
    IF AUX_PKHD_DAYS NE 0.
    AUX_TMP_DAYS = AUX_PKHD_DAYS * 24.
    AUX_PKHD_TIME = AUX_TMP_DAYS + AUX_PKHD_HOURS.
    ELSE.
    AUX_PKHD_TIME = AUX_PKHD_HOURS.
    ENDIF.
    COMPARE STATUS CHANGE TIME WITH REPLENISHMENT LEAD TIME
    IF AUX_ZZC10_HR GT AUX_PKHD_TIME.
    CLEAR: AUX_LATEHOURS.
    LATE HOURS
    AUX_LATEHOURS = AUX_ZZC10_HR - AUX_PKHD_TIME.
    LATE QUANTITY FOR +1 DAY
    IF AUX_LATEHOURS LE 24.
    IT_TEMP-QTY_1 = IT_TEMP-QTY_1 + IT_ZZC10-PKBMG.
    LATE QUANTITY FOR +2 DAYS
    ELSEIF AUX_LATEHOURS GT 24
    AND AUX_LATEHOURS LE 48.
    IT_TEMP-QTY_2 = IT_TEMP-QTY_2 + IT_ZZC10-PKBMG.
    LATE QUANTITY FOR +3 DAYS
    ELSEIF AUX_LATEHOURS GT 48
    AND AUX_LATEHOURS LE 72.
    IT_TEMP-QTY_3 = IT_TEMP-QTY_3 + IT_ZZC10-PKBMG.
    LATE QUANTITY FOR +4 DAYS
    ELSEIF AUX_LATEHOURS GT 72
    AND AUX_LATEHOURS LE 96.
    IT_TEMP-QTY_4 = IT_TEMP-QTY_4 + IT_ZZC10-PKBMG.
    LATE QUANTITY FOR +5 DAYS
    ELSEIF AUX_LATEHOURS GT 96
    AND AUX_LATEHOURS LE 120.
    IT_TEMP-QTY_5 = IT_TEMP-QTY_5 + IT_ZZC10-PKBMG.
    LATE QUANTITY FOR MORE THAN 5 DAYS
    ELSEIF AUX_LATEHOURS GT 120.
    IT_TEMP-QTY_6 = IT_TEMP-QTY_6 + IT_ZZC10-PKBMG.
    ENDIF.
    TOTAL KANBAN LATE QUANTITIES
    AUX_PKBMG = AUX_PKBMG + IT_ZZC10-PKBMG.
    ELSE.
    AUX_FILL = AUX_FILL + IT_ZZC10-PKBMG.
    CONTINUE.
    ENDIF.
    ENDIF.
    ENDLOOP.
    SUBASSEMBLY PART NUMBER
    IT_TEMP-MATNR = IT_ZZC10-MATNR.
    FINISHED GOOD
    READ TABLE IT_MATERIAL WITH KEY IDNRK = IT_ZZC10-MATNR.
    IT_TEMP-FINISHED = IT_MATERIAL-MATNR.
    TECHNOLOGY GROUP
    READ TABLE IT_MARC_ZTGRP WITH KEY WERKS = IT_ZZC10-WERKS
    MATNR = IT_ZZC10-MATNR.
    IF SY-SUBRC EQ 0.
    MOVE IT_MARC_ZTGRP-ZZPTD TO IT_TEMP-TECH.
    ENDIF.
    NUMBER OF KANBAN CONTAINERS
    IT_TEMP-BEHAZ = IT_PKHD-BEHAZ.
    KANBAN QUANTITY
    IT_TEMP-BEHMG = IT_PKHD-BEHMG.
    LATE HOURS
    AUX_LATEHOURS = AUX_ZZC10_HR - AUX_PKHD_TIME.
    IT_TEMP-LATEHOURS = AUX_LATEHOURS.
    REPLENISHMENT LEAD TIME
    IT_TEMP-REPL_LEAD_TIME = AUX_PKHD_TIME.
    KANBAN LATE QUANTITIES
    IT_TEMP-GSMNG = AUX_PKBMG.
    FILL RATE
    AUX_TOTAL = AUX_PKBMG + AUX_FILL.
    IT_TEMP-FILLRATE = ( AUX_FILL / AUX_TOTAL ) * 100.
    GET STOCK IN PO01
    REFRESH IT_MARD.
    SELECT LABST FROM MARD INTO TABLE IT_MARD
    WHERE MATNR EQ IT_ZZC10-MATNR
    AND WERKS EQ IT_ZZC10-WERKS.
    IF SY-SUBRC EQ 0.
    LOOP AT IT_MARD.
    SUM.
    ENDLOOP.
    MOVE IT_MARD-LABST TO IT_TEMP-STOCK_PO01.
    CLEAR IT_MARD.
    ENDIF.
    GET YESTERDAY'S OUTPUT QUANTITY
    PERFORM GET_YESTERDAY_QTY.
    CUMULATIVE OUTPUT FOR ACTUAL MONTH
    PERFORM GET_CUMULATIVE_OUTPUT.
    GET BACKORDER SUBASSEMBLY DATA
    PERFORM GET_BACKORDER_QTY.
    GET BACKORDER FINISHED GOODS, TODAY, +1, +2, +3, +4, +5
    AND AVERAGE OUPTUT NEEDED DATA
    PERFORM GET_FINISHEDGOODS_DATA.
    GET DATA FOR ACTUAL MONTH DELIVERED
    PERFORM GET_ACTUAL_MONTH_DATA.
    APPEND IT_TEMP.
    CLEAR IT_TEMP.
    DELETE IT_ZZC10_TEMP WHERE MATNR EQ IT_ZZC10_TEMP-MATNR
    AND WERKS EQ IT_ZZC10_TEMP-WERKS.
    CLEAR: IT_ZZC10, IT_ZZC10_TEMP, IT_PKHD.
    ENDLOOP.
    ENDIF.
    ENDFORM. " GET_KANBAN_DETAILS
    *& Form GET_YESTERDAY_QTY
    text
    --> p1 text
    <-- p2 text
    FORM GET_YESTERDAY_QTY .
    CLEAR: AUX_BUKRS, AUX_WAERS.
    READ TABLE IT_T001W WITH KEY WERKS = IT_PKHD-WERKS.
    IF SY-SUBRC EQ 0.
    CLEAR AUX_FABKL.
    MOVE IT_T001W-FABKL TO AUX_FABKL.
    SELECT SINGLE BUKRS INTO AUX_BUKRS FROM T001K
    WHERE BWKEY = IT_T001W-BWKEY.
    IF SY-SUBRC EQ 0.
    SELECT SINGLE WAERS INTO AUX_WAERS FROM T001
    WHERE BUKRS = AUX_BUKRS.
    ENDIF.
    IF 'WD;WF;WN;WP;WU' CS AUX_FABKL.
    AUX_FABKL(1) = 'P'.
    ENDIF.
    MOVE SY-DATUM TO AUX_DATUMABSOLUT.
    PERFORM WEEKDAY USING AUX_DATUMABSOLUT.
    MOVE 'W' TO AUX_FLAG.
    PERFORM CHECK_WORKING_DAY CHANGING AUX_FLAG.
    IF AUX_DATUMABSOLUT = 0.
    AUX_YDAY = SY-DATUM.
    ELSEIF AUX_DATUMABSOLUT = 1.
    AUX_YDAY = SY-DATUM - 1.
    ELSEIF AUX_FLAG = 'F'.
    AUX_YDAY = SY-DATUM.
    ENDIF.
    IF AUX_DATUMABSOLUT = 0 OR
    AUX_DATUMABSOLUT = 1 OR
    AUX_FLAG = 'F'.
    PERFORM DATE_WITH_OFFSET USING 0 CHANGING AUX_TDAY.
    PERFORM DATE_WITH_OFFSET USING 1 CHANGING AUX_DAY1.
    PERFORM DATE_WITH_OFFSET USING 2 CHANGING AUX_DAY2.
    PERFORM DATE_WITH_OFFSET USING 3 CHANGING AUX_DAY3.
    PERFORM DATE_WITH_OFFSET USING 4 CHANGING AUX_DAY4.
    PERFORM DATE_WITH_OFFSET USING 5 CHANGING AUX_DAY5.
    ELSE.
    PERFORM DATE_WITH_OFFSET USING 0 CHANGING AUX_YDAY.
    PERFORM DATE_WITH_OFFSET USING 1 CHANGING AUX_TDAY.
    PERFORM DATE_WITH_OFFSET USING 2 CHANGING AUX_DAY1.
    PERFORM DATE_WITH_OFFSET USING 3 CHANGING AUX_DAY2.
    PERFORM DATE_WITH_OFFSET USING 4 CHANGING AUX_DAY3.
    PERFORM DATE_WITH_OFFSET USING 5 CHANGING AUX_DAY4.
    PERFORM DATE_WITH_OFFSET USING 6 CHANGING AUX_DAY5.
    ENDIF.
    AUX_BORD = '19000101'.
    GET PLANNED ORDER DATA FOR YESTERDAY
    REFRESH IT_PLAF.
    CLEAR: AUX_KAPBD, AUX_KBEAREST, AUX_KRUEREST, AUX_GSMNG.
    SELECT * FROM PLAF INTO TABLE IT_PLAF
    WHERE MATNR EQ IT_PKHD-MATNR
    AND PLWRK EQ IT_PKHD-WERKS
    AND ( PAART EQ 'KD' OR PAART EQ 'PE' )
    AND RATID GT 0
    AND PEDTR EQ AUX_YDAY.
    IF NOT IT_PLAF[] IS INITIAL.
    LOOP AT IT_PLAF.
    REFRESH IT_KBED_KAKO.
    SELECT KBED~KBEAREST KBED~KRUEREST KBED~KEINH
    FROM KBED INNER JOIN KAKO
    ON KBED~KAPID EQ KAKO~KAPID
    INTO TABLE IT_KBED_KAKO
    WHERE KBED~BEDID = IT_PLAF-RATID
    AND KAKO~KAPAR = '001'.
    IF NOT IT_KBED_KAKO[] IS INITIAL.
    LOOP AT IT_KBED_KAKO.
    IF IT_KBED_KAKO-KEINH NE 'STD'.
    CALL FUNCTION 'UNIT_CONVERSION_SIMPLE'
    EXPORTING
    INPUT = IT_KBED_KAKO-KBEAREST
    UNIT_IN = IT_KBED_KAKO-KEINH
    UNIT_OUT = 'STD'
    IMPORTING
    OUTPUT = IT_KBED_KAKO-KBEAREST.
    CALL FUNCTION 'UNIT_CONVERSION_SIMPLE'
    EXPORTING
    INPUT = IT_KBED_KAKO-KRUEREST
    UNIT_IN = IT_KBED_KAKO-KEINH
    UNIT_OUT = 'STD'
    IMPORTING
    OUTPUT = IT_KBED_KAKO-KRUEREST.
    ENDIF.
    ADD IT_KBED_KAKO-KBEAREST TO AUX_KBEAREST.
    ADD IT_KBED_KAKO-KRUEREST TO AUX_KRUEREST.
    CLEAR IT_KBED_KAKO.
    ENDLOOP.
    AUX_KAPBD = AUX_KBEAREST + AUX_KRUEREST.
    ENDIF.
    CLEAR IT_PLAF.
    ENDLOOP.
    ENDIF.
    READ TABLE IT_KBED_KAKO INDEX 1.
    MOVE: AUX_KAPBD TO IT_TEMP-KAPBD_OUTY,
    IT_KBED_KAKO-KEINH TO IT_TEMP-KEINH_OUTY.
    GET OUTPUT QUANTITY FOR YESTERDAY
    REFRESH: IT_MKPF, IT_MSEG.
    CLEAR: AUX_MENGE.
    SELECT * FROM MKPF INTO TABLE IT_MKPF
    WHERE BUDAT EQ AUX_PREVIOUS.
    IF NOT IT_MKPF[] IS INITIAL.
    GET MATERIAL DOCUMENT ITEM DATA
    SELECT * FROM MSEG INTO TABLE IT_MSEG
    FOR ALL ENTRIES IN IT_MKPF
    WHERE MBLNR EQ IT_MKPF-MBLNR
    AND MATNR IN SO_MATNR
    AND WERKS IN SO_WERKS
    AND MJAHR EQ SY-DATUM+0(4)
    AND ( BWART EQ '131' OR BWART EQ '132' ).
    IF NOT IT_MSEG[] IS INITIAL.
    LOOP AT IT_MSEG.
    AUX_MENGE = AUX_MENGE + IT_MSEG-MENGE.
    CLEAR IT_MSEG.
    ENDLOOP.
    ENDIF.
    ENDIF.
    READ TABLE IT_MSEG INDEX 1.
    MOVE: AUX_MENGE TO IT_TEMP-GSMNG_OUTY,
    IT_MSEG-MEINS TO IT_TEMP-MEINS_OUTY.
    CLEAR IT_T001W.
    ENDIF.
    ENDFORM. " GET_YESTERDAY_QTY
    *& Form GET_BACKORDER_QTY
    text
    --> p1 text
    <-- p2 text
    FORM GET_BACKORDER_QTY .
    GET PLANNED ORDER DATA FOR BACKORDER
    REFRESH IT_PLAF.
    CLEAR: AUX_KAPBD, AUX_KBEAREST, AUX_KRUEREST, AUX_GSMNG, AUX_QUANT.
    SELECT * FROM PLAF INTO TABLE IT_PLAF
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    AND PLWRK EQ IT_ZZC10-WERKS
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    IF NOT IT_PLAF[] IS INITIAL.
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    CLEAR: AUX_TIMESTAMP1, AUX_TIMESTAMP2, AUX_PLAF_HR, AUX_DIFF.
    EMPTY DATE GREATER THAN FULL DATE
    CONCATENATE SY-DATUM SY-UZEIT
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    TIMESTAMP1 = AUX_TIMESTAMP1
    TIMESTAMP2 = AUX_TIMESTAMP2
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    AUX_PLAF_HR = AUX_DIFF / 3600.
    IF AUX_PLAF_HR > AUX_PKHD_TIME.
    AUX_GSMNG = AUX_GSMNG + IT_PLAF-GSMNG.
    REFRESH IT_KBED_KAKO.
    SELECT KBEDKBEAREST KBEDKRUEREST KBED~KEINH
    FROM KBED INNER JOIN KAKO
    ON KBEDKAPID EQ KAKOKAPID
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    WHERE KBED~BEDID = IT_PLAF-RATID
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    INPUT = IT_KBED_KAKO-KBEAREST
    UNIT_IN = IT_KBED_KAKO-KEINH
    UNIT_OUT = 'STD'
    IMPORTING
    OUTPUT = IT_KBED_KAKO-KBEAREST.
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    INPUT = IT_KBED_KAKO-KRUEREST
    UNIT_IN = IT_KBED_KAKO-KEINH
    UNIT_OUT = 'STD'
    IMPORTING
    OUTPUT = IT_KBED_KAKO-KRUEREST.
    ENDIF.
    AUX_KBEAREST = AUX_KBEAREST + IT_KBED_KAKO-KBEAREST.
    AUX_KRUEREST = AUX_KRUEREST + IT_KBED_KAKO-KRUEREST.
    CLEAR IT_KBED_KAKO.
    ENDLOOP.
    AUX_KAPBD = AUX_KBEAREST + AUX_KRUEREST.
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    ENDLOOP.
    READ TABLE IT_PLAF INDEX 1.
    MOVE: AUX_GSMNG TO IT_TEMP-GSMNG_BORD,
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    MOVE: AUX_KAPBD TO IT_TEMP-KAPBD_BORD,
    IT_KBED_KAKO-KEINH TO IT_TEMP-KEINH_BORD.
    ENDIF.
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    text
    -->P_AUX_DATUMABSOLUT text
    FORM WEEKDAY USING P_DATUMABSOLUT.
    P_DATUMABSOLUT = P_DATUMABSOLUT MOD 7.
    ENDFORM. " WEEKDAY
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    text
    <--P_AUX_FLAG text
    FORM CHECK_WORKING_DAY CHANGING P_FLAG.
    CALL FUNCTION 'DATE_CONVERT_TO_FACTORYDATE'
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    DATE = SY-DATUM
    FACTORY_CALENDAR_ID = AUX_FABKL
    IMPORTING
    DATE = AUX_FDAY
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    CALENDAR_BUFFER_NOT_LOADABLE = 1
    CORRECT_OPTION_INVALID = 2
    DATE_AFTER_RANGE = 3
    DATE_BEFORE_RANGE = 4
    DATE_INVALID = 5
    FACTORY_CALENDAR_NOT_FOUND = 6
    OTHERS = 7.
    IF AUX_FDAY NE SY-DATUM.
    AUX_FLAG = 'F'.
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    ENDFORM. " CHECK_WORKING_DAY
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    text
    -->P_0 text
    <--P_AUX_TDAY text
    FORM DATE_WITH_OFFSET USING AUX_OFFSET
    CHANGING P_TDAY.
    DATA:
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    AUX_FACTORYDATE LIKE SCAL-FACDATE.
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    DATE = SY-DATUM
    FACTORY_CALENDAR_ID = AUX_FABKL
    IMPORTING
    FACTORYDATE = AUX_FACTORYDATE
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    CALENDAR_BUFFER_NOT_LOADABLE = 1
    CORRECT_OPTION_INVALID = 2
    DATE_AFTER_RANGE = 3
    DATE_BEFORE_RANGE = 4
    DATE_INVALID = 5
    FACTORY_CALENDAR_NOT_FOUND = 6
    OTHERS = 7.
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    EXPORTING
    FACTORYDATE = AUX_FACTORYDATE
    FACTORY_CALENDAR_ID = AUX_FABKL
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    CALENDAR_BUFFER_NOT_LOADABLE = 1
    FACTORYDATE_AFTER_RANGE = 2
    FACTORYDATE_BEFORE_RANGE = 3
    FACTORYDATE_INVALID = 4
    FACTORY_CALENDAR_ID_MISSING = 5
    FACTORY_CALENDAR_NOT_FOUND = 6
    OTHERS = 7.
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    text
    --> p1 text
    <-- p2 text
    FORM GET_CUMULATIVE_OUTPUT .
    CLEAR: AUX_LOW, AUX_HIGH.
    MOVE: SY-DATUM TO AUX_LOW,
    SY-DATUM TO AUX_HIGH.
    MOVE: '01' TO AUX_LOW+6(2),
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    CLEAR AUX_MNG.
    SELECT MKPFMBLNR MKPFMJAHR MKPF~BUDAT
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    INTO TABLE IT_MKPF_MSEG
    FROM MKPF JOIN MSEG
    ON MKPFMBLNR EQ MSEGMBLNR
    WHERE MKPF~BUDAT BETWEEN AUX_LOW AND AUX_HIGH
    AND MKPF~MJAHR EQ AUX_CURRENT+0(4)
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    IF NOT IT_MKPF_MSEG[] IS INITIAL.
    LOOP AT IT_MKPF_MSEG.
    AUX_MNG = AUX_MNG + IT_MKPF_MSEG-MENGE.
    CLEAR IT_MKPF_MSEG.
    ENDLOOP.
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    MOVE AUX_MNG TO IT_TEMP-GSMNG_OUTM.
    READ TABLE IT_MKPF_MSEG INDEX 1.
    MOVE IT_MKPF_MSEG-MEINS TO IT_TEMP-MEINS_OUTM.
    REFRESH IT_COBK.
    SELECT DISTINCT BLPP~RUECK FROM BLPK INNER JOIN BLPP
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    INTO TABLE IT_COBK
    WHERE BLPK~WERKS EQ SO_WERKS
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    IF NOT IT_COBK[] IS INITIAL.
    REFRESH IT_COEPL.
    SELECT KOKRS BELNR FROM COBK
    INTO CORRESPONDING FIELDS OF TABLE IT_COEPL
    FOR ALL ENTRIES IN IT_COBK
    WHERE REFBT EQ 'R'
    AND REFBN EQ IT_COBK-RUECK
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    CLEAR IT_CAPACITIES.
    REFRESH IT_CAPACITIES.
    LOOP AT IT_COEPL.
    SELECT LSBBTR MEINB FROM COEPL
    APPENDING CORRESPONDING FIELDS OF TABLE IT_CAPACITIES
    WHERE KOKRS EQ IT_COEPL-KOKRS
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    IMPORTING
    QUANTITY_SUM = IT_TEMP-KAPBD_OUTM
    UNIT_SUM = AUX_SUM_UNIT
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    QUANTITIES_UNITS = IT_CAPACITIES.
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    INPUT = IT_TEMP-KAPBD_OUTM
    UNIT_IN = AUX_SUM_UNIT
    UNIT_OUT = 'STD'
    IMPORTING
    OUTPUT = IT_TEMP-KAPBD_OUTM.
    ENDLOOP.
    READ TABLE IT_CAPACITIES INDEX 1.
    MOVE IT_CAPACITIES-MEINB TO IT_TEMP-KEINH_OUTM.
    ENDIF.
    ENDFORM. " GET_CUMULATIVE_OUTPUT
    *& Form GET_FINISHEDGOODS_DATA
    text
    --> p1 text
    <-- p2 text
    FORM GET_FINISHEDGOODS_DATA .
    GET PLANNED ORDER DATA
    REFRESH IT_PLAF.
    CLEAR: AUX_KAPBD, AUX_KBEAREST, AUX_KRUEREST, AUX_GSMNG.
    SELECT * FROM PLAF INTO TABLE IT_PLAF
    WHERE MATNR EQ IT_TEMP-FINISHED
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    AND RATID GT 0
    AND PEDTR GE AUX_BORD
    AND PEDTR LE AUX_DAY5.
    IF NOT IT_PLAF[] IS INITIAL.
    LOOP AT IT_PLAF.
    CLEAR: AUX_KAPBD, AUX_GSMNG.
    REFRESH IT_KBED_KAKO.
    SELECT KBEDKBEAREST KBEDKRUEREST KBED~KEINH
    FROM KBED INNER JOIN KAKO
    ON KBEDKAPID EQ KAKOKAPID
    INTO TABLE IT_KBED_KAKO
    WHERE KBED~BEDID = IT_PLAF-RATID
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    IF NOT IT_KBED_KAKO[] IS INITIAL.
    CLEAR AUX_KAPBD.
    LOOP AT IT_KBED_KAKO.
    IF IT_KBED_KAKO-KEINH NE 'STD'.
    CALL FUNCTION 'UNIT_CONVERSION_SIMPLE'
    EXPORTING
    INPUT = IT_KBED_KAKO-KBEAREST
    UNIT_IN = IT_KBED_KAKO-KEINH
    UNIT_OUT = 'STD'
    IMPORTING
    OUTPUT = IT_KBED_KAKO-KBEAREST.
    CALL FUNCTION 'UNIT_CONVERSION_SIMPLE'
    EXPORTING
    INPUT = IT_KBED_KAKO-KRUEREST
    UNIT_IN = IT_KBED_KAKO-KEINH
    UNIT_OUT = 'STD'
    IMPORTING
    OUTPUT = IT_KBED_KAKO-KRUEREST.
    ENDIF.
    ADD IT_KBED_KAKO-KBEAREST TO AUX_KBEAREST.
    ADD IT_KBED_KAKO-KRUEREST TO AUX_KRUEREST.
    CLEAR IT_KBED_KAKO.
    ENDLOOP.
    AUX_KAPBD = AUX_KBEAREST + AUX_KRUEREST.
    ENDIF.
    READ TABLE IT_KBED_KAKO INDEX 1.
    CASE IT_PLAF-PEDTR.
    WHEN AUX_DAY5.
    AUX_GSMNG = IT_PLAF-GSMNG.
    IT_TEMP-F_GSMNG_DAY5 = IT_TEMP-F_GSMNG_DAY5 + AUX_GSMNG.
    IT_TEMP-F_MEINS_DAY5 = IT_PLAF-MEINS.
    IT_TEMP-F_KAPBD_DAY5 = IT_TEMP-F_KAPBD_DAY5 + AUX_KAPBD.
    IT_TEMP-F_KEINH_DAY5 = IT_KBED_KAKO-KEINH.
    WHEN AUX_DAY4.
    AUX_GSMNG = IT_PLAF-GSMNG.
    IT_TEMP-F_GSMNG_DAY4 = IT_TEMP-F_GSMNG_DAY4 + AUX_GSMNG.
    IT_TEMP-F_MEINS_DAY4 = IT_PLAF-MEINS.
    IT_TEMP-F_KAPBD_DAY4 = IT_TEMP-F_KAPBD_DAY4 + AUX_KAPBD.
    IT_TEMP-F_KEINH_DAY4 = IT_KBED_KAKO-KEINH.
    WHEN AUX_DAY3.
    AUX_GSMNG = IT_PLAF-GSMNG.
    IT_TEMP-F_GSMNG_DAY3 = IT_TEMP-F_GSMNG_DAY3 + AUX_GSMNG.
    IT_TEMP-F_MEINS_DAY3 = IT_PLAF-MEINS.
    IT_TEMP-F_KAPBD_DAY3 = IT_TEMP-F_KAPBD_DAY3 + AUX_KAPBD.
    IT_TEMP-F_KEINH_DAY3 = IT_KBED_KAKO-KEINH.
    WHEN AUX_DAY2.
    AUX_GSMNG = IT_PLAF-GSMNG.
    IT_TEMP-F_GSMNG_DAY2 = IT_TEMP-F_GSMNG_DAY2 + AUX_GSMNG.
    IT_TEMP-F_MEINS_DAY2 = IT_PLAF-MEINS.
    IT_TEMP-F_KAPBD_DAY2 = IT_TEMP-F_KAPBD_DAY2 + AUX_KAPBD.
    IT_TEMP-F_KEINH_DAY2 = IT_KBED_KAKO-KEINH.
    WHEN AUX_DAY1.
    AUX_GSMNG = IT_PLAF-GSMNG.
    IT_TEMP-F_GSMNG_DAY1 = IT_TEMP-F_GSMNG_DAY1 + AUX_GSMNG.
    IT_TEMP-F_MEINS_DAY1 = IT_PLAF-MEINS.
    IT_TEMP-F_KAPBD_DAY1 = IT_TEMP-F_KAPBD_DAY1 + AUX_KAPBD.
    IT_TEMP-F_KEINH_DAY1 = IT_KBED_KAKO-KEINH.
    WHEN AUX_TDAY.
    AUX_GSMNG = IT_PLAF-GSMNG.
    IT_TEMP-F_GSMNG_TDAY = IT_TEMP-F_GSMNG_TDAY + AUX_GSMNG.
    IT_TEMP-F_MEINS_TDAY = IT_PLAF-MEINS.
    IT_TEMP-F_KAPBD_TDAY = IT_TEMP-F_KAPBD_TDAY + AUX_KAPBD.
    IT_TEMP-F_KEINH_TDAY = IT_KBED_KAKO-KEINH.
    WHEN OTHERS.
    AUX_GSMNG = IT_PLAF-GSMNG.
    IT_TEMP-F_GSMNG_BORD = IT_TEMP-F_GSMNG_BORD + AUX_GSMNG.
    IT_TEMP-F_MEINS_BORD = IT_PLAF-MEINS.
    IT_TEMP-F_KAPBD_BORD = IT_TEMP-F_KAPBD_BORD + AUX_KAPBD.
    IT_TEMP-F_KEINH_BORD = IT_KBED_KAKO-KEINH.
    ENDCASE.
    IT_TEMP-F_GSMNG_OUTN = IT_TEMP-F_GSMNG_OUTN + AUX_GSMNG.
    IT_TEMP-F_KAPBD_OUTN = IT_TEMP-F_KAPBD_OUTN + AUX_KAPBD.
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    MOVE IT_PLAF-MEINS TO IT_TEMP-F_MEINS_OUTN.
    READ TABLE IT_KBED_KAKO INDEX 1.
    MOVE IT_KBED_KAKO-KEINH TO IT_TEMP-F_KEINH_OUTN.
    ENDIF.
    ENDFORM. " GET_FINISHEDGOODS_DATA
    *& Form GET_ACTUAL_MONTH_DATA
    text
    --> p1 text
    <-- p2 text
    FORM GET_ACTUAL_MONTH_DATA .
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    REFRESH IT_MKPF_MSEG.
    CLEAR AUX_MNG.
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