Rman to handle table restore for batch rerun
Hi all,
11.2.0.1
Our batch process sometimes need to be rerun or reprocess due to erroneous process/output.
For the rerun process, we need to import back 1 table affected, from the last night backup.
Is RMAN capable of restoring a single table on the PROD database without affecting other tables?
Or this can be done only thru expdp, and that is why we need also to backup this table daily using this tool?
Thanks a lot,
zxy
yxes2013 wrote:
So I am justified that I have to use expdp as a means of backing-up single table? Contrary to what they say that expdp can not be used as backup tool?
Thanks,
As Fran and many, many, many others have pointed out on many, many, many other threads, export cannot be considered a backup of the database because it cannot be used to restore a database. You must have a live, healthy, functioning database up and running in order to have something in which to import.
That does not mean that export has not place in a normal backup regimen. Most DBA's will include a periodic export along with their regular rman backups. For exactly the type of scenario you describe. So if you know going in that a batch job may need to be rolled back, it is perfectly justifiable to begin that batch job with an expdp step to export the tables that are involved. On the other hand, if there is no other processing occurring between the time this batch job starts and the time you discover you need to 'reset' and run it again, a database PIT recovery from rman backup, or a database flashback might be a preferable solution.
As in all things, the answer is 'it depends' and only your organization can decide ...
Similar Messages
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Tables names for Batch determination
tables used for Batch Determination screen in MIGO?
Regards,
pandu.Dear Pandurangarao,
For your future requirements,
You may also check the same (i.e. Table Name/ Field Name/ Program Name/ Screen Field) by yourself.
There are few requirements:
1. You have to decide from where (i.e. Document..???, say Sales Order in VA02) you want to fecth the data for your requirement.
2. Go in to that document (say, you wanna all data to be fetch from Sales Order; then VA02).
3. Click one within the field and Press F1. This will open an Overview window. In to the same window, down there, you will find on e Tab: Technical Information. Click the Tab.
4. Now, you may get all technical informations for your inputs.
Best Regards,
Amit -
Table name for Batch Class type
Hello Sap Gurus,
Could Any one tell me the name of table for Batch creation header data and item data.
Table names for Stock Transfer order ,header data and Item data
Points will be rewarded
Thanks
Edie
Edited by: Edie Edie on Jan 1, 2008 7:33 PMMCHP (batch record)
EKKO (order header)
EKPO (order item)
AUUMI (worklist for stock transfer order) -
Error in MCH1 table update for batch create with class assignment
Hi Experts,
I am looking for a BAPI which could help me to assign a class and in respectively assigns characteristics to th batch.
and hence i cant update MCH1 table for the same.
so please suggest me how could i achieve the same.
Thank you in advance.
Regards,
AshishHello,
You can use the BAPI BAPI_OBJCL_CHANGE.
Regards,
Alok Tiwari -
Table associated for Batch and PO line item
Hi All,
I am looking for a table,where I can see the batches associated with the Purchase Orders.
Thanks,
SeshadriHi
If you are referring to the Batch field in PO line item then you will get the details in tale EKET.
Regards
Prasad -
Hi can any one tell me which tables are used in MIGO and if possible field names aslo .
Tables used in MIGO
CHVW Table CHVW for Batch Where-Used List
CHVW_IDX Batch Where-Used Index Table for Selection
IKPF Header: Physical Inventory Document
ISEG Physical Inventory Document Items
MARI Short document: material movement
MIGO_BADI_EXAMP2 BADI in MIGO: Example Table (Header)
MIGO_BADI_EXAMPL BADI in MIGO: Example Table
MIGO_BADI_HOLD MIGO BADI: Table for Held External Data
MIGO_CUST_ACTION MIGO: Control of Listbox Transaction
MIGO_CUST_FIELDS MIGO: Field Selection per Movement Type
MIGO_CUST_REFDOC MIGO: Control of Listbox Reference Documen
MIGO_CUST_TCODE MIGO: Transactions
MIGO_INIT Control Table for Operation in Transaction
MIGO_T156 Movement Types - Reference MIGO
MKPF Header: Material Document
MKPF_ARIDX Index table for single doc. access to arch
MMIM_PRED MM-IM Temporary Data
MMIM_PREDOC_ORG Parked Material Documents, Organizational
MMIM_REP_PRINT Print Settings, Reporting MM-IM
MMINKON Worklist for Inconsistent Materials
MMINKON_UP Corrections due to Technical Problems with
MSEG Document Segment: Material
MWCURM Customizing: MM Configuration
MWMKPF Header Table for the Interface
MWSTOR Reversal Transactions
MWXMSEG ZMSEG: Interface for Posting of Value
MWXVM07M Fields: Update Control of Module Pool SAPM
MWYMBUZ Line Assignment
MWZDM07M1 ZDM07M1
MWZDM07M2 ZDM07M2
MWZMBUZ ZMBUZ
MWZMSEG ZMSEG:Interface for Posting of Value
MWZVM07M Fields: Update Control of Module Pool SAPM
RESB Reservation/dependent requirements
RKPF Document Header: Reservation
RPGRI Texts for grouping of movement types
SBSE Stock Mngmt Levels for Inventory Sampling
SKPF Header Data: Inventory Sampling
SLGH Elements of Stock Population
SSCH Strata of Inventory Sampling
T003M Transaction/Event Types for SAPMM07M/SAPMM
T043I Tolerance Groups for Persons Processing In
T063 Screen Control: Inventory Management
T063C Call-Screen Control: Inventory Management
T063D Screen Control: View in Inventory Manageme
T063F Function Codes: Inventory Management
T063O OK Codes in Inventory Management
T063T Transactions Called Up From Inventory Mana
T064A Physical Inventory Stock Types
T064B Stock Types and Texts for Physical Invento
T064F Function Codes: Physical Inventory
T064S Stock Mngmt Levels for Inventory Sampling
T064T Physical Inventory: Texts
T134H Organiz. Unit: Business Area Determ. - MM
T134M Control of Qty/Value Update
T150 Physical Inventory Stock Types and Allocat
T150F Stock Types and Allocated Fields in Physic
T156 Movement Type
T156B Movement Types: Screen Selection
T156C Stock Types and Their Values
T156F Fields in Quantity String
T156H Help Texts for Movement Type (up to Rel. 2
T156HT Main Text for Movement Type
T156K Account Assignment Fields in Field Selecti
T156M Posting String: Quantity
T156N Next Movement Type
T156S Movement Type: Quantities/Value Posting (U
T156SC Mvt Type: Qty/Value Posting: Customer Tabl
T156SY Mvt Type: Qty/Value Update: System Table;
T156T Movement Type Text
T156V Availability Table
T156W Posting string values
T156X Trans./Event Key Modification
T157B Descr. of Qty Fields (Plant Stock Avail.,
T157D Reason for Movement
T157E Text Table: Reason for Movement
T157F Display Fields: Plant Availability
T157H Help Texts for Movement Types
T157N Fields in Stock Balance Display (Inventory
T157O Routine Selection for Plant Availability
T157P Display Rules
T157Q Inventory Mgmt.: Display Rules for Plant S
T157R Display Rule for Availability Block
T157T Description of Fields in Availability Bloc
T158 Transaction Control: Inventory Management
T158B Check Table: Movement Type for Transaction
T158G MMIM: Possible Codes for BAPI Goods Moveme
T158I Transaction Control: Physical Inventory
T158N Next Transaction Code in Inventory Managem
T158T Inv. Management: Text Table for Trans./Eve
T158V Inv. Mngmt - General: Transaction/Event Ty
T158W Long Text for Transaction/Event Type
T159A Test Data for Batch Input in Inventory Man
T159B Parameters for Batch Inputs in Inventory M
T159C Value table for counting cycles in cycle c
T159E IM Print Func.:Determ.No.of Copies f. Labe
T159F MMIM: Error Messages Resulting From Blocke
T159G Default Values for Inventory Sampling Prof
T159H Long Text for Inv. Sampling Profile
T159I Test Data for Batch Input in Inventory Man
T159L Default values for inventory management an
T159M Inv. Managmt Print Function: Active Form V
T159N Invent. Mgmt Print Function: Active Form V
T159O Inv. Mngmt Print Function: Maintain Text N
T159P Parameters for Printing GR/GI Slips
T159Q Inventory Management Print Function: Value
T159R IM Document Reorganization - Life of Docum
T159S Inventory Mgmt Print Function: Printer Com
T159T Invntry Mgmt. Printing: Text Table for Tab
T159X Inventory Management: XAB numer range dete
T159Z Inventory Management: XAB number range
TNAD9 Output Determination: Printer per SLoc. an
TXSTA MM Inventory Mngmt: Work Table for Phys. I
Pl reward if useful
Narendra -
What is the field and Table for "Batch Class" and "Class Type" in QM.
Hi All,
What is the field and Table for "Batch Class" and "Class Type" in QM.
Thanks,Hi,
For batch class the class type value is '023' . This you can find from KLAH table and the fileld for class type is KLART..
And also all the data related to batch class are found in tables INOB, KLAH,KKSK and for the characeteristics of batch materials you can refer AUSP table.
In INOB table, for batch class, you need to give 023 in KLART field and value MCH1 in OBTAB filed.
Please check this and let me know if this you need any more details? -
Table for batch determination date
hi,
im printing the Dispensing slip...they want the output based on the batch determination date..
can any one tel me in which table i willl get batch determination date?
Regards
SmithaAre you using a separate batch selection class versus the batch class?
There are characteristics that must be in the selection class, but cannot be in the batch class.
See OSS note 33396.
1. If you want to search for batches on the basis of a remaining shelf
life in batch determination, the system has to calculate a requested
shelf life expiration date dynamically from the information you
give.
2. Add characteristic LOBM_VFDAT to the batch classes.
For the revaluation of reference characteristics, refer to Note
78235.
Characteristics LOBM_RLZ and LOBM_LFDAT must not be included in the
batch classes!
3. Add characteristics LOBM_VFDAT, LOBM_LFDAT, and LOBM_RLZ to the
selection classes.
Maintain a remaining shelf life in the strategy records for batch
determination. Relational operators (> , < , <= , >=) are considered
in the dynamic calculation of the shelf life expiration date in
batch determination.
From your note you have placed LOBM_RLZ and LOBM_LFDAT in your batch class. You cannot do that.
FF -
Error Handling in table control for line item.
Hi,
Please how to do error handling in table control for line item in bdc,i have used format_message for header but i don't no fill decamps internal tabled and how to do background processing in call transaction.
ThanksBackground processing is not possible using call transaction method.
You can create an executable program which can have CALL TRANSACTION BDC code. And this can be run in background.
What do you exactly mean by Error handling for Items in table control. Can you give some more details. -
How to handle table control in BDC while uploading item details for anorder
How to handle table control in BDC while uploading item details for an order?
What is the use of CTU_PARAMS structure in BDC?
In Finance I have done some changes to the layout set by coping to a zscript(duning letter) and how can assign the print program?
What is the process to test the finance script?
How can I see the print preview whether it is coming correctly or not?
Thanks in advance.
Regards.
Abhilash.hi,
for the bdc control refer the following link:
http://www.sap-img.com/abap/bdc-example-using-table-control-in-bdc.htm
ctu_params:
refer to the link
https://www.sdn.sap.com/irj/sdn/wiki?path=/display/abap/dataTransfers-LSMW%2CALE%2C+BDC
reward if useful,
thanks and regards -
Table and fields for " Batch Code Date " and "Shelf Life days".
Hi All,
What is the field for " Batch Code Date " and "Shelf Life days".
And in which table are they present.
Thanks & Regards,
Ahmed.Check the table
MCHA Batches
Field VFDAT Shelf Life Expiration or Best-Before Date -
Hi All, Pls send me the recording for va01 by handling table control
Hi All, Pls send me the recording for va01 by handling table control with 3 or more materials. Pls send me a flat file and code ASAP.
Thanks®ards.
BharatHere is a example of similar kind ..plz go through this doc..it will be help hul 4 u
How to deal with table control / step loop in BDC?
Steploop and table contol is inevitable in certain transactions. When we run BDC for such transactions, we will face the situation: how many visible lines of steploop/tablecontrol are on the screen? Although we can always find certain method to deal with it, such as function code 'NP', 'POPO', considering some extreme situation: there is only one line visible one the screen,
our BDC program should display an error message. (See transaction 'ME21', we you resize your screen to let only one row visible, you can not enter mutiple lines on this screen even you use 'NP')
Now, I find a method with which we can determine the number of visible lines on Transaction Screen from our Calling BDC program. Maybe it is useless to you, but I think it will give your some idea.
Demo ABAP code has two purposes:
1. how to determine number of visible lines and how to calculte page number; (the 'calpage' routine has been modify to meet general purpose usage)
2. using field symbol in BDC program, please pay special attention to the difference in Static
ASSIGN and Dynamic ASSIGN.
Now I begin to describe the step to implement my method:
(I use transaction 'ME21', screen 121 for sample, the method using is Call Transation Using..)
Step1: go to screen painter to display the screen 121, then we can count the fixed line on this screen, there is 7 lines above the steploop and 2 lines below the steploop, so there are total 9 fixed lines on this screen. This means except these 9 lines, all the other line is for step loop.
Then have a look at steploop itselp, one entry of it will occupy two lines.
(Be careful, for table control, the head and the bottom scroll bar will possess another two fixed lines, and there is a maximum number for table line)
Now we have : FixedLine = 9
LoopLine = 2(for table control, LoopLine is always equal to 1)
Step2: go to transaction itself(ME21) to see how it roll page, in ME21, the first line of new page is always occupied by the last line of last page, so it begin with index '02', but in some other case, fisrt line is empty and ready for input.
Now we have: FirstLine = 0
or FirstLine = 1 ( in our case, FirstLine is 1 because the first line of new page is fulfilled)
Step3: write a subroutine calcalculating number of pages
(here, the name of actual parameter is the same as formal parameter)
global data: FixedLine type i, " number of fixed line on a certain screen
LoopLine type i, " the number of lines occupied by one steploop item
FirstLine type i, " possbile value 0 or 1, 0 stand for the first line of new
" scrolling screen is empty, otherwise is 1
Dataline type i, " number of items you will use in BDC, using DESCRIBE to get
pageno type i, " you need to scroll screen how many times.
line type i, " number of lines appears on the screen.
index(2) type N, " the screen index for certain item
begin type i, " from parameter of loop
end type i. " to parameter of loop
*in code sample, the DataTable-linindex stands for the table index number of this line
form calpage using FixedLine type i (see step 1)
LoopLine type i (see step 1)
FirstLine type i (see step 2)
DataLine type i ( this is the item number you will enter in transaction)
changing pageno type i (return the number of page, depends on run-time visible line in table control/ Step Loop)
changing line type i.(visible lines one the screen)
data: midd type i,
vline type i, "visible lines
if DataLine eq 0.
Message eXXX.
endif.
vline = ( sy-srows - FixedLine ) div LoopLine.
*for table control, you should compare vline with maximum line of
*table control, then take the small one that is min(vline, maximum)
*here only illustrate step loop
if FirstLine eq 0.
pageno = DataLine div vline.
if pageno eq 0.
pageno = pageno + 1.
endif.
elseif FirstLine eq 1.
pageno = ( DataLine - 1 ) div ( vline - 1 ) + 1.
midd = ( DataLine - 1 ) mod ( vline - 1).
if midd = 0 and DataLine gt 1.
pageno = pageno - 1.
endif.
endif.
line = vline.
endform.
Step4 write a subroutine to calculate the line index for each item.
form calindex using Line type i (visible lines on the screen)
FirstLine type i(see step 2)
LineIndex type i(item index)
changing Index type n. (index on the screen)
if FirstLine = 0.
index = LineIndex mod Line.
if index = '00'.
index = Line.
endif.
elseif FirstLine = 1.
index = LineIndex mod ( Line - 1 ).
if ( index between 1 and 0 ) and LineIndex gt 1.
index = index + Line - 1.
endif.
if Line = 2.
index = index + Line - 1.
endif.
endif.
endform.
Step5 write a subroutine to calculate the loop range.
form calrange using Line type i ( visible lines on the screen)
DataLine type i
FirstLine type i
loopindex like sy-index
changing begin type i
end type i.
If FirstLine = 0.
if loopindex = 1.
begin = 1.
if DataLine <= Line.
end = DataLine.
else.
end = Line.
endif.
elseif loopindex gt 1.
begin = Line * ( loopindex - 1 ) + 1.
end = Line * loopindex.
if end gt DataLine.
end = DataLine.
endif.
endif.
elseif FirstLine = 1.
if loopindex = 1.
begin = 1.
if DataLine <= Line.
end = DataLine.
else.
end = Line.
endif.
elseif loop index gt 1.
begin = ( Line - 1 ) * ( loopindex - 1 ) + 2.
end = ( Line - 1 ) * ( loopindex - 1 ) + Line.
if end gt DataLine.
end = DataLine.
endif.
endif.
endif.
endform.
Step6 using field sysbol in your BDC, for example: in ME21, but you should calculate each item will correponding to which index
form creat_bdc.
field-symbols: <material>, <quan>, <indicator>.
data: name1(14) value 'EKPO-EMATN(XX)',
name2(14) value 'EKPO-MENGE(XX)',
name3(15) value 'RM06E-SELKZ(XX)'.
assign: name1 to <material>,
name2 to <quan>,
name3 to <indicator>.
do pageno times.
if sy-index gt 1
*insert scroll page ok_code"
endif.
perform calrange using Line DataLine FirstLine sy-index
changing begin end.
loop at DataTable from begin to end.
perform calindex using Line FirstLine DataTable-LineIndex changing Index.
name1+11(2) = Index.
name2+11(2) = Index.
name3+12(2) = Index.
perform bdcfield using <material> DataTable-matnr.
perform bdcfield using <quan> DataTable-menge.
perform bdcfield using <indicator> DataTable-indicator.
endloop.
enddo.
Sample code
Following is a sample code of handling table control in BDC.
REPORT Y730_BDC5 .
*HANDLING TABLE CONTROL IN BDC
DATA : BEGIN OF IT_DUMMY OCCURS 0,
DUMMY(100) TYPE C,
END OF IT_DUMMY.
DATA : BEGIN OF IT_XK01 OCCURS 0,
LIFNR(10) TYPE C,
BUKRS(4) TYPE C,
EKORG(4) TYPE C,
KTOKK(4) TYPE C,
NAME1(30) TYPE C,
SORTL(10) TYPE C,
LAND1(3) TYPE C,
SPRAS(2) TYPE C,
AKONT(6) TYPE C,
FDGRV(2) TYPE C,
WAERS(3) TYPE C,
END OF IT_XK01,
BEGIN OF IT_BANK OCCURS 0,
BANKS(3) TYPE C,
BANKL(10) TYPE C,
BANKN(10) TYPE C,
KOINH(30) TYPE C,
LIFNR(10) TYPE C,
END OF IT_BANK.
DATA : IT_BDCDATA LIKE BDCDATA OCCURS 0 WITH HEADER LINE,
IT_BDCMSGCOLL LIKE BDCMSGCOLL OCCURS 0 WITH HEADER LINE.
CALL FUNCTION 'WS_UPLOAD'
EXPORTING
FILENAME = 'C:\VENDOR.TXT'
FILETYPE = 'ASC'
TABLES
DATA_TAB = IT_DUMMY.
LOOP AT IT_DUMMY.
IF IT_DUMMY-DUMMY+0(2) = '11'.
IT_XK01-LIFNR = IT_DUMMY-DUMMY+2(10).
IT_XK01-BUKRS = IT_DUMMY-DUMMY+12(4).
IT_XK01-EKORG = IT_DUMMY-DUMMY+16(4).
IT_XK01-KTOKK = IT_DUMMY-DUMMY+20(4).
IT_XK01-NAME1 = IT_DUMMY-DUMMY+24(30).
IT_XK01-SORTL = IT_DUMMY-DUMMY+54(10).
IT_XK01-LAND1 = IT_DUMMY-DUMMY+64(3).
IT_XK01-SPRAS = IT_DUMMY-DUMMY+67(2).
IT_XK01-AKONT = IT_DUMMY-DUMMY+69(6).
IT_XK01-FDGRV = IT_DUMMY-DUMMY+75(2).
IT_XK01-WAERS = IT_DUMMY-DUMMY+77(3).
APPEND IT_XK01.
ELSE.
IT_BANK-BANKS = IT_DUMMY-DUMMY+2(3).
IT_BANK-BANKL = IT_DUMMY-DUMMY+5(10).
IT_BANK-BANKN = IT_DUMMY-DUMMY+15(10).
IT_BANK-KOINH = IT_DUMMY-DUMMY+25(30).
IT_BANK-LIFNR = IT_DUMMY-DUMMY+55(10).
APPEND IT_BANK.
ENDIF.
ENDLOOP.
LOOP AT IT_XK01.
REFRESH IT_BDCDATA.
perform bdc_dynpro using 'SAPMF02K' '0100'.
perform bdc_field using 'BDC_CURSOR'
'RF02K-REF_LIFNR'.
perform bdc_field using 'BDC_OKCODE'
'/00'.
perform bdc_field using 'RF02K-LIFNR'
IT_XK01-LIFNR.
perform bdc_field using 'RF02K-BUKRS'
IT_XK01-BUKRS.
perform bdc_field using 'RF02K-EKORG'
IT_XK01-EKORG.
perform bdc_field using 'RF02K-KTOKK'
IT_XK01-KTOKK.
perform bdc_dynpro using 'SAPMF02K' '0110'.
perform bdc_field using 'BDC_CURSOR'
'LFA1-TELX1'.
perform bdc_field using 'BDC_OKCODE'
'/00'.
perform bdc_field using 'LFA1-NAME1'
IT_XK01-NAME1.
perform bdc_field using 'LFA1-SORTL'
IT_XK01-SORTL.
perform bdc_field using 'LFA1-LAND1'
IT_XK01-LAND1.
perform bdc_field using 'LFA1-SPRAS'
IT_XK01-SPRAS.
perform bdc_dynpro using 'SAPMF02K' '0120'.
perform bdc_field using 'BDC_CURSOR'
'LFA1-KUNNR'.
perform bdc_field using 'BDC_OKCODE'
'/00'.
perform bdc_dynpro using 'SAPMF02K' '0130'.
perform bdc_field using 'BDC_CURSOR'
'LFBK-KOINH(02)'.
perform bdc_field using 'BDC_OKCODE'
'=ENTR'.
DATA : FNAM(20) TYPE C,
IDX TYPE C.
MOVE 1 TO IDX.
LOOP AT IT_BANK WHERE LIFNR = IT_XK01-LIFNR.
CONCATENATE 'LFBK-BANKS(' IDX ')' INTO FNAM.
perform bdc_field using FNAM
IT_BANK-BANKS.
CONCATENATE 'LFBK-BANKL(' IDX ')' INTO FNAM.
perform bdc_field using FNAM
IT_BANK-BANKL.
CONCATENATE 'LFBK-BANKN(' IDX ')' INTO FNAM.
perform bdc_field using FNAM
IT_BANK-BANKN.
CONCATENATE 'LFBK-KOINH(' IDX ')' INTO FNAM.
perform bdc_field using FNAM
IT_BANK-KOINH.
IDX = IDX + 1.
ENDLOOP.
perform bdc_dynpro using 'SAPMF02K' '0130'.
perform bdc_field using 'BDC_CURSOR'
'LFBK-BANKS(01)'.
perform bdc_field using 'BDC_OKCODE'
'=ENTR'.
perform bdc_dynpro using 'SAPMF02K' '0210'.
perform bdc_field using 'BDC_CURSOR'
'LFB1-FDGRV'.
perform bdc_field using 'BDC_OKCODE'
'/00'.
perform bdc_field using 'LFB1-AKONT'
IT_XK01-AKONT.
perform bdc_field using 'LFB1-FDGRV'
IT_XK01-FDGRV.
perform bdc_dynpro using 'SAPMF02K' '0215'.
perform bdc_field using 'BDC_CURSOR'
'LFB1-ZTERM'.
perform bdc_field using 'BDC_OKCODE'
'/00'.
perform bdc_dynpro using 'SAPMF02K' '0220'.
perform bdc_field using 'BDC_CURSOR'
'LFB5-MAHNA'.
perform bdc_field using 'BDC_OKCODE'
'/00'.
perform bdc_dynpro using 'SAPMF02K' '0310'.
perform bdc_field using 'BDC_CURSOR'
'LFM1-WAERS'.
perform bdc_field using 'BDC_OKCODE'
'/00'.
perform bdc_field using 'LFM1-WAERS'
IT_XK01-WAERS.
perform bdc_dynpro using 'SAPMF02K' '0320'.
perform bdc_field using 'BDC_CURSOR'
'WYT3-PARVW(01)'.
perform bdc_field using 'BDC_OKCODE'
'=ENTR'.
perform bdc_dynpro using 'SAPLSPO1' '0300'.
perform bdc_field using 'BDC_OKCODE'
'=YES'.
CALL TRANSACTION 'XK01' USING IT_BDCDATA
MODE 'A'
UPDATE 'S'
MESSAGES INTO IT_BDCMSGCOLL.
ENDLOOP.
FORM BDC_DYNPRO USING PROG SCR.
CLEAR IT_BDCDATA.
IT_BDCDATA-PROGRAM = PROG.
IT_BDCDATA-DYNPRO = SCR.
IT_BDCDATA-DYNBEGIN = 'X'.
APPEND IT_BDCDATA.
ENDFORM.
FORM BDC_FIELD USING FNAM FVAL.
CLEAR IT_BDCDATA.
IT_BDCDATA-FNAM = FNAM.
IT_BDCDATA-FVAL = FVAL.
APPEND IT_BDCDATA.
ENDFORM.
Reward if helpful -
SAN based restoration or RMAN restoration for Active Dataguard
Hi ,
We have oracle 11gr2 on aix OS ,I am planning to configure active dataguard for DB size 250 GB.
FOr DB restoration on standby side if i go for SAN based OS block level Relication between primary and standby how to link DB LUn on standby which are mounted with diffrent LUN name on standby DB.
OR RMAN restoartion is only method to go for standby DB restoartion ..
My conncerns is if i go for RMAN than it will take more than 8 hours and it will affect my DB performance ..
Please help me suggest which approch is better ? If it SAN based than how to link LUn to DB file .
Thanks in Advance.Duplicate THREAD: Please continue with your original thread
SAN based restoration or RMAN restoration for Dataguard configuration -
Hello
plz suggest Table for batch detail for sale & purchase in SAP 8.81 pl 07hi Jayakumar
In Sap b1 8.8 the batch tables have been changed
Category Old Tables New Tables
Batch Number OIBT, IBT1, OSRD OBTN, OBTQ, OBTW, OITL, ITL1
i think this will solve
Regards
Jenny -
Tables for batch and movement type
Hi all!
We have to show the batch data after GR is done with respect to different movement types. I got a table CHVW which gives the data for batch , movement type ,material and quantity.But data for 302 and 541 movement types is not updating in this table.Is there any other table for these two movements?Please suggest.Hi,
pls use below table's
MSEG - Detail Material Document
MKPF - Header: Material Document
Regards,
Sankaran
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