ABAP Select data from SAP table SCI_DYNP 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 SCI_DYNP 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 SCI_DYNP. 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 SCI_DYNP 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_SCI_DYNP TYPE STANDARD TABLE OF SCI_DYNP,
      WA_SCI_DYNP TYPE SCI_DYNP,
      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: <SCI_DYNP> TYPE SCI_DYNP.

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

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

*Select data and declare internal table using in-line method @DATA
*SELECT *
*  FROM SCI_DYNP
*  INTO TABLE @DATA(IT_SCI_DYNP2).
*--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_SCI_DYNP INDEX 1 INTO DATA(WA_SCI_DYNP2).


*Demonstrate how to loop at an internal table and update values using a FIELD-SYMBOL
LOOP AT IT_SCI_DYNP ASSIGNING <SCI_DYNP>.
*To update a field value using a field symbol simply change the value via the field symbol pointer
<SCI_DYNP>-INSP_GL = 1.
<SCI_DYNP>-INSP = 1.
<SCI_DYNP>-INSP_V = 1.
<SCI_DYNP>-OBJS_GL = 1.
<SCI_DYNP>-OBJS = 1.
ENDLOOP.

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

*Write selected data to screen/report before conversion.
  WRITE:/ sy-vline,   WA_SCI_DYNP-OBJS_V, sy-vline,
WA_SCI_DYNP-CHKV_GL, sy-vline,
WA_SCI_DYNP-CHKV, sy-vline,
WA_SCI_DYNP-RRFC_VALUE, sy-vline,
WA_SCI_DYNP-X_REMOTE, sy-vline,
WA_SCI_DYNP-X_REMOTE_RFC, sy-vline.
ENDLOOP. *Add any further fields from structure WA_SCI_DYNP 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_SCI_DYNP 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_SCI_DYNP INTO WA_SCI_DYNP. *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.
ENDFORM. *&---------------------------------------------------------------------* *& Form process_as_string_field_values *&---------------------------------------------------------------------* FORM process_as_string_field_values CHANGING p_EKKO LIKE wa_EKKO. TYPES: BEGIN OF T_SCI_DYNP_STR,
INSP_GL TYPE STRING,
INSP TYPE STRING,
INSP_V TYPE STRING,
OBJS_GL TYPE STRING,
OBJS TYPE STRING,
OBJS_V TYPE STRING,
CHKV_GL TYPE STRING,
CHKV TYPE STRING,
RRFC_VALUE TYPE STRING,
X_REMOTE TYPE STRING,
X_REMOTE_RFC TYPE STRING,
HIDDEN_VALUE TYPE STRING,
X_HIDDEN TYPE STRING,
X_HIDDEN_INVERS TYPE STRING,
USR TYPE STRING,
TEXT TYPE STRING,
O_ORDER TYPE STRING,
INSP_E TYPE STRING,
X_I_OBJS_0 TYPE STRING,
X_I_OBJS_1 TYPE STRING,
X_I_OBJS_O TYPE STRING,
I_OBJ_T TYPE STRING,
I_OBJ TYPE STRING,
I_OBJS_GL TYPE STRING,
I_OBJS TYPE STRING,
I_OBJS_V TYPE STRING,
X_I_CHKV_0 TYPE STRING,
X_I_CHKV_1 TYPE STRING,
I_CHKV_GL TYPE STRING,
I_CHKV TYPE STRING,
I_DATE_D TYPE STRING,
I_DATE_U TYPE STRING,
I_DATE_E TYPE STRING,
I_UNAM TYPE STRING,
X_BATCH_0 TYPE STRING,
X_BATCH_1 TYPE STRING,
X_SERVER_G TYPE STRING,
X_SERVER_L TYPE STRING,
X_PROC_1 TYPE STRING,
X_PROC_I TYPE STRING,
SGROUP TYPE STRING,
X_NOSUP TYPE STRING,
X_NOAUNIT TYPE STRING,
X_OC_IGNORE TYPE STRING,
X_O_SO_SAV TYPE STRING,
O_DATE_D TYPE STRING,
O_DATE_D_NEW TYPE STRING,
O_DATE_U TYPE STRING,
O_UNAM TYPE STRING,
O_CNT TYPE STRING,
O_TA_1_T TYPE STRING,
O_TA_2_T TYPE STRING,
O_O1_U TYPE STRING,
O_O1_GL TYPE STRING,
O_O1 TYPE STRING,
O_O1_V TYPE STRING,
O_O2_U TYPE STRING,
O_O2_GL TYPE STRING,
O_O2 TYPE STRING,
O_O2_V TYPE STRING,
O_X_OR TYPE STRING,
O_X_AND TYPE STRING,
F_CHK TYPE STRING,
X_OFROMPAR TYPE STRING,
O_I1_GL TYPE STRING,
O_I1 TYPE STRING,
O_I1_V TYPE STRING,
F_COLTXT TYPE STRING,
IC_COLINF TYPE STRING,
IC_COLPAR TYPE STRING,
X_C_TRAN TYPE STRING,
C_DATE_U TYPE STRING,
C_UNAM TYPE STRING,
E_OTY TYPE STRING,
E_ONA TYPE STRING,
E_STY TYPE STRING,
E_SNA TYPE STRING,
E_CODE TYPE STRING,
E_ART TYPE STRING,
E_APPL TYPE STRING,
E_APPR TYPE STRING,
E_NOTE TYPE STRING,
E_SCOPE_OO TYPE STRING,
E_SCOPE_OS TYPE STRING,
E_SCOPE_MM TYPE STRING,
E_SCOPE_MC TYPE STRING,
E_SCOPE_MP TYPE STRING,
E_SCOPE_MK TYPE STRING,
E_SCOPE_MA TYPE STRING,
COPY_GL TYPE STRING,
X_NEW_V_0 TYPE STRING,
X_NEW_V_1 TYPE STRING,
INSP_2 TYPE STRING,
OBJS_2 TYPE STRING,
CHKV_2 TYPE STRING,
X_DELE_1 TYPE STRING,
X_DELE_N TYPE STRING,
X_DELE_A TYPE STRING,
O_TADIR_A TYPE STRING,
O_TADIR_C TYPE STRING,
O_TADIR_T TYPE STRING,
O_TADIR_P TYPE STRING,
O_TADIR_S TYPE STRING,
O_TADIR_R TYPE STRING,
O_TA_1 TYPE STRING,
O_TA_2 TYPE STRING,
O_PRG_N TYPE STRING,
O_PRG_T TYPE STRING,
O_PRG_S TYPE STRING,
O_PRG_A TYPE STRING,
O_CLAS TYPE STRING,
O_FUGR TYPE STRING,
O_REPO TYPE STRING,
O_WDYN TYPE STRING,
O_DDIC TYPE STRING,
O_DDTY TYPE STRING,
F_OBJT TYPE STRING,
F_OBJ TYPE STRING,
F_DEVC TYPE STRING,
F_RESP TYPE STRING,
F_ERRTY TYPE STRING,
F_ERRC TYPE STRING,END OF T_EKKO_STR. DATA: WA_SCI_DYNP_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_SCI_DYNP_STR-INSP_GL sy-vline
WA_SCI_DYNP_STR-INSP sy-vline
WA_SCI_DYNP_STR-INSP_V sy-vline
WA_SCI_DYNP_STR-OBJS_GL sy-vline
WA_SCI_DYNP_STR-OBJS sy-vline
WA_SCI_DYNP_STR-OBJS_V sy-vline
WA_SCI_DYNP_STR-CHKV_GL sy-vline
WA_SCI_DYNP_STR-CHKV sy-vline
WA_SCI_DYNP_STR-RRFC_VALUE sy-vline
WA_SCI_DYNP_STR-X_REMOTE sy-vline
WA_SCI_DYNP_STR-X_REMOTE_RFC sy-vline
WA_SCI_DYNP_STR-HIDDEN_VALUE sy-vline
WA_SCI_DYNP_STR-X_HIDDEN sy-vline
WA_SCI_DYNP_STR-X_HIDDEN_INVERS sy-vline
WA_SCI_DYNP_STR-USR sy-vline
WA_SCI_DYNP_STR-TEXT sy-vline
WA_SCI_DYNP_STR-O_ORDER sy-vline
WA_SCI_DYNP_STR-INSP_E sy-vline
WA_SCI_DYNP_STR-X_I_OBJS_0 sy-vline
WA_SCI_DYNP_STR-X_I_OBJS_1 sy-vline
WA_SCI_DYNP_STR-X_I_OBJS_O sy-vline
WA_SCI_DYNP_STR-I_OBJ_T sy-vline
WA_SCI_DYNP_STR-I_OBJ sy-vline
WA_SCI_DYNP_STR-I_OBJS_GL sy-vline
WA_SCI_DYNP_STR-I_OBJS sy-vline
WA_SCI_DYNP_STR-I_OBJS_V sy-vline
WA_SCI_DYNP_STR-X_I_CHKV_0 sy-vline
WA_SCI_DYNP_STR-X_I_CHKV_1 sy-vline
WA_SCI_DYNP_STR-I_CHKV_GL sy-vline
WA_SCI_DYNP_STR-I_CHKV sy-vline
WA_SCI_DYNP_STR-I_DATE_D sy-vline
WA_SCI_DYNP_STR-I_DATE_U sy-vline
WA_SCI_DYNP_STR-I_DATE_E sy-vline
WA_SCI_DYNP_STR-I_UNAM sy-vline
WA_SCI_DYNP_STR-X_BATCH_0 sy-vline
WA_SCI_DYNP_STR-X_BATCH_1 sy-vline
WA_SCI_DYNP_STR-X_SERVER_G sy-vline
WA_SCI_DYNP_STR-X_SERVER_L sy-vline
WA_SCI_DYNP_STR-X_PROC_1 sy-vline
WA_SCI_DYNP_STR-X_PROC_I sy-vline
WA_SCI_DYNP_STR-SGROUP sy-vline
WA_SCI_DYNP_STR-X_NOSUP sy-vline
WA_SCI_DYNP_STR-X_NOAUNIT sy-vline
WA_SCI_DYNP_STR-X_OC_IGNORE sy-vline
WA_SCI_DYNP_STR-X_O_SO_SAV sy-vline
WA_SCI_DYNP_STR-O_DATE_D sy-vline
WA_SCI_DYNP_STR-O_DATE_D_NEW sy-vline
WA_SCI_DYNP_STR-O_DATE_U sy-vline
WA_SCI_DYNP_STR-O_UNAM sy-vline
WA_SCI_DYNP_STR-O_CNT sy-vline
WA_SCI_DYNP_STR-O_TA_1_T sy-vline
WA_SCI_DYNP_STR-O_TA_2_T sy-vline
WA_SCI_DYNP_STR-O_O1_U sy-vline
WA_SCI_DYNP_STR-O_O1_GL sy-vline
WA_SCI_DYNP_STR-O_O1 sy-vline
WA_SCI_DYNP_STR-O_O1_V sy-vline
WA_SCI_DYNP_STR-O_O2_U sy-vline
WA_SCI_DYNP_STR-O_O2_GL sy-vline
WA_SCI_DYNP_STR-O_O2 sy-vline
WA_SCI_DYNP_STR-O_O2_V sy-vline
WA_SCI_DYNP_STR-O_X_OR sy-vline
WA_SCI_DYNP_STR-O_X_AND sy-vline
WA_SCI_DYNP_STR-F_CHK sy-vline
WA_SCI_DYNP_STR-X_OFROMPAR sy-vline
WA_SCI_DYNP_STR-O_I1_GL sy-vline
WA_SCI_DYNP_STR-O_I1 sy-vline
WA_SCI_DYNP_STR-O_I1_V sy-vline
WA_SCI_DYNP_STR-F_COLTXT sy-vline
WA_SCI_DYNP_STR-IC_COLINF sy-vline
WA_SCI_DYNP_STR-IC_COLPAR sy-vline
WA_SCI_DYNP_STR-X_C_TRAN sy-vline
WA_SCI_DYNP_STR-C_DATE_U sy-vline
WA_SCI_DYNP_STR-C_UNAM sy-vline
WA_SCI_DYNP_STR-E_OTY sy-vline
WA_SCI_DYNP_STR-E_ONA sy-vline
WA_SCI_DYNP_STR-E_STY sy-vline
WA_SCI_DYNP_STR-E_SNA sy-vline
WA_SCI_DYNP_STR-E_CODE sy-vline
WA_SCI_DYNP_STR-E_ART sy-vline
WA_SCI_DYNP_STR-E_APPL sy-vline
WA_SCI_DYNP_STR-E_APPR sy-vline
WA_SCI_DYNP_STR-E_NOTE sy-vline
WA_SCI_DYNP_STR-E_SCOPE_OO sy-vline
WA_SCI_DYNP_STR-E_SCOPE_OS sy-vline
WA_SCI_DYNP_STR-E_SCOPE_MM sy-vline
WA_SCI_DYNP_STR-E_SCOPE_MC sy-vline
WA_SCI_DYNP_STR-E_SCOPE_MP sy-vline
WA_SCI_DYNP_STR-E_SCOPE_MK sy-vline
WA_SCI_DYNP_STR-E_SCOPE_MA sy-vline
WA_SCI_DYNP_STR-COPY_GL sy-vline
WA_SCI_DYNP_STR-X_NEW_V_0 sy-vline
WA_SCI_DYNP_STR-X_NEW_V_1 sy-vline
WA_SCI_DYNP_STR-INSP_2 sy-vline
WA_SCI_DYNP_STR-OBJS_2 sy-vline
WA_SCI_DYNP_STR-CHKV_2 sy-vline
WA_SCI_DYNP_STR-X_DELE_1 sy-vline
WA_SCI_DYNP_STR-X_DELE_N sy-vline
WA_SCI_DYNP_STR-X_DELE_A sy-vline
WA_SCI_DYNP_STR-O_TADIR_A sy-vline
WA_SCI_DYNP_STR-O_TADIR_C sy-vline
WA_SCI_DYNP_STR-O_TADIR_T sy-vline
WA_SCI_DYNP_STR-O_TADIR_P sy-vline
WA_SCI_DYNP_STR-O_TADIR_S sy-vline
WA_SCI_DYNP_STR-O_TADIR_R sy-vline
WA_SCI_DYNP_STR-O_TA_1 sy-vline
WA_SCI_DYNP_STR-O_TA_2 sy-vline
WA_SCI_DYNP_STR-O_PRG_N sy-vline
WA_SCI_DYNP_STR-O_PRG_T sy-vline
WA_SCI_DYNP_STR-O_PRG_S sy-vline
WA_SCI_DYNP_STR-O_PRG_A sy-vline
WA_SCI_DYNP_STR-O_CLAS sy-vline
WA_SCI_DYNP_STR-O_FUGR sy-vline
WA_SCI_DYNP_STR-O_REPO sy-vline
WA_SCI_DYNP_STR-O_WDYN sy-vline
WA_SCI_DYNP_STR-O_DDIC sy-vline
WA_SCI_DYNP_STR-O_DDTY sy-vline
WA_SCI_DYNP_STR-F_OBJT sy-vline
WA_SCI_DYNP_STR-F_OBJ sy-vline
WA_SCI_DYNP_STR-F_DEVC sy-vline
WA_SCI_DYNP_STR-F_RESP sy-vline
WA_SCI_DYNP_STR-F_ERRTY sy-vline
WA_SCI_DYNP_STR-F_ERRC sy-vline INTO ld_text SEPARATED BY SPACE. *Add any further fields from structure WA_EKKO_STR you want to CONCATENATE... ENDLOOP. ENDFORM.