ABAP Select data from SAP table CKI_PAE_ML into internal table

Get Example source ABAP code based on a different SAP table
  

Below is a number of ABAP code snippets to demonstrate how to select data from SAP CKI_PAE_ML table and store it within an internal table, including using the newer @DATA inline declaration methods. It also shows you various ways to process this data using ABAP work area, inline declaration or field symbols including executing all the relevant CONVERSION_EXIT routines specific to CKI_PAE_ML. See here for more generic Select statement tips.

Sometimes data within SAP is stored within the database table in a different format to what it is displayed to the user. These input/output conversation FM routines are what translates the data between the two formats.

There is also a full declaration of the CKI_PAE_ML table where each field has a char/string type for you to simply copy and paste. This allows you to use processing that is only available to these field types such as the CONCATENATE statement.

DATA: IT_CKI_PAE_ML TYPE STANDARD TABLE OF CKI_PAE_ML,
      WA_CKI_PAE_ML TYPE CKI_PAE_ML,
      GD_STR TYPE STRING.

DATA: lo_typedescr type REF TO cl_abap_typedescr.
DATA: lv_fieldname type fieldname.

FIELD-SYMBOLS: <FIELD> TYPE any.
FIELD-SYMBOLS: <CKI_PAE_ML> TYPE CKI_PAE_ML.

*Process all fields in table header/work area as string values
  PERFORM process_as_string_field_values CHANGING wa_CKI_PAE_ML.

SELECT *
*restrict ABAP select to first 10 rows
 UP TO 10 ROWS      
  FROM CKI_PAE_ML
  INTO TABLE IT_CKI_PAE_ML.

*Select data and declare internal table using in-line method @DATA
*SELECT *
*  FROM CKI_PAE_ML
*  INTO TABLE @DATA(IT_CKI_PAE_ML2).
*--Further methods of using ABAP code to  select data from SAP database tables

*You can also declare the header/work area using the in-line DATA declaration method
READ TABLE IT_CKI_PAE_ML INDEX 1 INTO DATA(WA_CKI_PAE_ML2).


*Demonstrate how to loop at an internal table and update values using a FIELD-SYMBOL
LOOP AT IT_CKI_PAE_ML ASSIGNING <CKI_PAE_ML>.
*To update a field value using a field symbol simply change the value via the field symbol pointer
<CKI_PAE_ML>-KALN1 = 1.
<CKI_PAE_ML>-MATLED = 1.
<CKI_PAE_ML>-POPER = 1.
<CKI_PAE_ML>-BDATJ = 1.
<CKI_PAE_ML>-MLAST = 1.
ENDLOOP.

LOOP AT IT_CKI_PAE_ML INTO WA_CKI_PAE_ML.
*Write horizonal line to screen report.
  WRITE:/ sy-uline.

*Write selected data to screen/report before conversion.
  WRITE:/ sy-vline,   WA_CKI_PAE_ML-STPRS_1, sy-vline,
WA_CKI_PAE_ML-STPRS_2, sy-vline,
WA_CKI_PAE_ML-STPRS_3, sy-vline,
WA_CKI_PAE_ML-PVPRS_1, sy-vline,
WA_CKI_PAE_ML-PVPRS_2, sy-vline,
WA_CKI_PAE_ML-PVPRS_3, sy-vline.
ENDLOOP. *Add any further fields from structure WA_CKI_PAE_ML you want to display... WRITE:/ sy-uline. * Aternatively use generic code to Write field values (and NAME) to screen report DO. ASSIGN COMPONENT sy-index OF STRUCTURE wa_CKI_PAE_ML TO <field>. IF sy-subrc <> 0. EXIT. ENDIF. WRITE:/ 'Field Value', <field>, sy-vline. gd_str = <field> . lo_typedescr ?= CL_ABAP_DATADESCR=>DESCRIBE_BY_DATA( <field> ). lv_fieldname = lo_typedescr->GET_RELATIVE_NAME( ). WRITE:/ 'Field Name', lv_fieldname. ENDDO. *Redo loop but convert all fields from internal to out value LOOP AT IT_CKI_PAE_ML INTO WA_CKI_PAE_ML. *Write horizonal line to screen report. WRITE:/ sy-uline. *Convert all fields to display/output versions using conversion routines PERFORM convert_all_field_values CHANGING wa_EKKO. ENDLOOP. *&---------------------------------------------------------------------* *& Form convert_all_field_values *&---------------------------------------------------------------------* FORM convert_all_field_values CHANGING p_EKKO LIKE wa_EKKO. DATA: ld_input(1000) TYPE c, ld_output(1000) TYPE C.

*Conversion exit GJAHR, internal->external for field BDATJ CALL FUNCTION 'CONVERSION_EXIT_GJAHR_OUTPUT' EXPORTING input = WA_CKI_PAE_ML-BDATJ IMPORTING output = ld_input.
WRITE:/ 'Org Value:', WA_CKI_PAE_ML-BDATJ.
WRITE:/ 'New Value:', ld_input.
ENDFORM. *&---------------------------------------------------------------------* *& Form process_as_string_field_values *&---------------------------------------------------------------------* FORM process_as_string_field_values CHANGING p_EKKO LIKE wa_EKKO. TYPES: BEGIN OF T_CKI_PAE_ML_STR,
KALN1 TYPE STRING,
MATLED TYPE STRING,
POPER TYPE STRING,
BDATJ TYPE STRING,
MLAST TYPE STRING,
STPRS_1 TYPE STRING,
STPRS_2 TYPE STRING,
STPRS_3 TYPE STRING,
PVPRS_1 TYPE STRING,
PVPRS_2 TYPE STRING,
PVPRS_3 TYPE STRING,
SALK3_1 TYPE STRING,
SALK3_2 TYPE STRING,
SALK3_3 TYPE STRING,
ZUABW_1 TYPE STRING,
ZUABW_2 TYPE STRING,
ZUABW_3 TYPE STRING,
ZUUMB_1 TYPE STRING,
ZUUMB_2 TYPE STRING,
ZUUMB_3 TYPE STRING,
SALK3_1UM TYPE STRING,
SALK3_2UM TYPE STRING,
SALK3_3UM TYPE STRING,
SALK3_1S TYPE STRING,
SALK3_2S TYPE STRING,
SALK3_3S TYPE STRING,
ZUABW_1S TYPE STRING,
ZUABW_2S TYPE STRING,
ZUABW_3S TYPE STRING,
ZUUMB_1S TYPE STRING,
ZUUMB_2S TYPE STRING,
ZUUMB_3S TYPE STRING,
SALK3_1UMS TYPE STRING,
SALK3_2UMS TYPE STRING,
SALK3_3UMS TYPE STRING,
SALK3_1Z TYPE STRING,
SALK3_2Z TYPE STRING,
SALK3_3Z TYPE STRING,
PRSFIX TYPE STRING,
ERZKALK_1 TYPE STRING,
ERZKALK_2 TYPE STRING,
ERZKALK_3 TYPE STRING,
ZUKBEW_1 TYPE STRING,
ZUKBEW_2 TYPE STRING,
ZUKBEW_3 TYPE STRING,
MANPAE_V1 TYPE STRING,
MANPAE_V2 TYPE STRING,
MANPAE_V3 TYPE STRING,
MANPAE_S1 TYPE STRING,
MANPAE_S2 TYPE STRING,
MANPAE_S3 TYPE STRING,
SALK3_1VUM TYPE STRING,
SALK3_2VUM TYPE STRING,
SALK3_3VUM TYPE STRING,
SALK3_1VUS TYPE STRING,
SALK3_2VUS TYPE STRING,
SALK3_3VUS TYPE STRING,
PEINH_1 TYPE STRING,
PEINH_2 TYPE STRING,
PEINH_3 TYPE STRING,
LBKUM TYPE STRING,END OF T_EKKO_STR. DATA: WA_CKI_PAE_ML_STR type T_EKKO_STR. DATA: ld_text TYPE string. LOOP AT IT_EKKO INTO WA_EKKO. MOVE-CORRESPONDING wa_EKKO TO WA_EKKO_STR. CONCATENATE: sy-vline
WA_CKI_PAE_ML_STR-KALN1 sy-vline
WA_CKI_PAE_ML_STR-MATLED sy-vline
WA_CKI_PAE_ML_STR-POPER sy-vline
WA_CKI_PAE_ML_STR-BDATJ sy-vline
WA_CKI_PAE_ML_STR-MLAST sy-vline
WA_CKI_PAE_ML_STR-STPRS_1 sy-vline
WA_CKI_PAE_ML_STR-STPRS_2 sy-vline
WA_CKI_PAE_ML_STR-STPRS_3 sy-vline
WA_CKI_PAE_ML_STR-PVPRS_1 sy-vline
WA_CKI_PAE_ML_STR-PVPRS_2 sy-vline
WA_CKI_PAE_ML_STR-PVPRS_3 sy-vline
WA_CKI_PAE_ML_STR-SALK3_1 sy-vline
WA_CKI_PAE_ML_STR-SALK3_2 sy-vline
WA_CKI_PAE_ML_STR-SALK3_3 sy-vline
WA_CKI_PAE_ML_STR-ZUABW_1 sy-vline
WA_CKI_PAE_ML_STR-ZUABW_2 sy-vline
WA_CKI_PAE_ML_STR-ZUABW_3 sy-vline
WA_CKI_PAE_ML_STR-ZUUMB_1 sy-vline
WA_CKI_PAE_ML_STR-ZUUMB_2 sy-vline
WA_CKI_PAE_ML_STR-ZUUMB_3 sy-vline
WA_CKI_PAE_ML_STR-SALK3_1UM sy-vline
WA_CKI_PAE_ML_STR-SALK3_2UM sy-vline
WA_CKI_PAE_ML_STR-SALK3_3UM sy-vline
WA_CKI_PAE_ML_STR-SALK3_1S sy-vline
WA_CKI_PAE_ML_STR-SALK3_2S sy-vline
WA_CKI_PAE_ML_STR-SALK3_3S sy-vline
WA_CKI_PAE_ML_STR-ZUABW_1S sy-vline
WA_CKI_PAE_ML_STR-ZUABW_2S sy-vline
WA_CKI_PAE_ML_STR-ZUABW_3S sy-vline
WA_CKI_PAE_ML_STR-ZUUMB_1S sy-vline
WA_CKI_PAE_ML_STR-ZUUMB_2S sy-vline
WA_CKI_PAE_ML_STR-ZUUMB_3S sy-vline
WA_CKI_PAE_ML_STR-SALK3_1UMS sy-vline
WA_CKI_PAE_ML_STR-SALK3_2UMS sy-vline
WA_CKI_PAE_ML_STR-SALK3_3UMS sy-vline
WA_CKI_PAE_ML_STR-SALK3_1Z sy-vline
WA_CKI_PAE_ML_STR-SALK3_2Z sy-vline
WA_CKI_PAE_ML_STR-SALK3_3Z sy-vline
WA_CKI_PAE_ML_STR-PRSFIX sy-vline
WA_CKI_PAE_ML_STR-ERZKALK_1 sy-vline
WA_CKI_PAE_ML_STR-ERZKALK_2 sy-vline
WA_CKI_PAE_ML_STR-ERZKALK_3 sy-vline
WA_CKI_PAE_ML_STR-ZUKBEW_1 sy-vline
WA_CKI_PAE_ML_STR-ZUKBEW_2 sy-vline
WA_CKI_PAE_ML_STR-ZUKBEW_3 sy-vline
WA_CKI_PAE_ML_STR-MANPAE_V1 sy-vline
WA_CKI_PAE_ML_STR-MANPAE_V2 sy-vline
WA_CKI_PAE_ML_STR-MANPAE_V3 sy-vline
WA_CKI_PAE_ML_STR-MANPAE_S1 sy-vline
WA_CKI_PAE_ML_STR-MANPAE_S2 sy-vline
WA_CKI_PAE_ML_STR-MANPAE_S3 sy-vline
WA_CKI_PAE_ML_STR-SALK3_1VUM sy-vline
WA_CKI_PAE_ML_STR-SALK3_2VUM sy-vline
WA_CKI_PAE_ML_STR-SALK3_3VUM sy-vline
WA_CKI_PAE_ML_STR-SALK3_1VUS sy-vline
WA_CKI_PAE_ML_STR-SALK3_2VUS sy-vline
WA_CKI_PAE_ML_STR-SALK3_3VUS sy-vline
WA_CKI_PAE_ML_STR-PEINH_1 sy-vline
WA_CKI_PAE_ML_STR-PEINH_2 sy-vline
WA_CKI_PAE_ML_STR-PEINH_3 sy-vline
WA_CKI_PAE_ML_STR-LBKUM sy-vline INTO ld_text SEPARATED BY SPACE. *Add any further fields from structure WA_EKKO_STR you want to CONCATENATE... ENDLOOP. ENDFORM.