About sort statement

hello friends
please tell me if i apply sort condition in sorted table what will happen
whether it show some kind of error or it run or anything else.
thanks...

nothing happens but the code gets executed...
unnecessarily sort statement should not be used in programs if there is no read of data...

Similar Messages

  • Does not retain sort state

    App Store does not retain sort state when returning from viewing an individual app to the full list of apps. If the full list spans more than one page, the page you were on is also not retained.
    I have no idea if this is a bug, a feature (or lack thereof), or an oddity on my computer. Since I can't find any other way to request a feature or post feedback to Apple, I'm putting this here.
    If by some chance this is an issue with my computer only or I'm missing some preference somewhere (ha!) I'd appreciate any help provided by the community.
    -s

    Yes, it is indeed VERY frustrating that the App Stores don't return you to where you left off browsing if you stop to click on an app to read more about it. Once you're done reading about an app that interests you, you're dumped right back at the beginning. So, just to get back where you were, you may have to plow through ten pages of apps. I get so fed up with being whisked back to page 1 all the time that I just give up and leave the App Store in disgust. I hate wasting my time paging backnthrough all the apps I've alread covered. ALSO, when looking over GENIUS recommendations on the App Store, why is it that even when I click on NOT INTERESTED for a given app, the app just stays there? It's like my clicking NOT INTERESTED has no effect whatsover. What's the problem with the App Store?

  • Problem in SORT statement

    Hi Gurus,
    I have this problem, I am trying to sort a internal table with the syntax after endselect statement and before read table statement
    SORT ITAB_SBOOK BY NAME
    name is a field in the table of type CHAR length 25 in actual table and here is how i am declaring name
    in internal table
    name LIKE stravelag-name
    but the sort statement is not executing properly, names are being printed on the screen but they are not
    being formated.
    can some one tell me whare am i wrong ?
    thanks.
    Moderator Message: Please use more descriptive subject line in future post.
    Edited by: Suhas Saha on Dec 25, 2011 7:55 PM

    Hi
    as per my knowledge there is slight diff between type and like keywords
    type key refer the data type of a field where as like key refer the reference of existing  internal table in this just refer the data types not content(data)
    example:
    types:BEGIN OF ty_itab,
          matnr type mara-matnr,
          matkl type mara-matkl,
          mbrsh type mara-mbrsh,
          ersda type mara-ersda,
      END OF ty_itab.
      data:itab type STANDARD TABLE OF ty_itab.
      data:wa_itab type ty_itab.
    we want to create one more internal table with the existing structure  at this time  we will go through the like keyword.
    jtab like itab occurs 10.
    and also check the following code.
    REPORT  sort.
    types:BEGIN OF ty_itab,
          matnr type mara-matnr,
          matkl type mara-matkl,
          mbrsh type mara-mbrsh,
          ersda type mara-ersda,
      END OF ty_itab.
    data:itab type STANDARD TABLE OF ty_itab.
      data:wa_itab type ty_itab.
      select matnr matkl mbrsh ersda from mara into wa_itab.
        APPEND wa_itab to itab.
    ENDSELECT.
    SORT itab by mbrsh.
    write:/ 'matno',' mat group','industry sector','created on'.
    loop at itab into wa_itab.
      write:/ wa_itab-matnr,wa_itab-matkl,wa_itab-mbrsh,wa_itab-ersda.
      endloop.
    best regards
    sreenivas p

  • SORT statement is not working!

    Hi frdz,
    Below SORT statement is not working. Can any one explain me why this is happening.
    SORT i_bseg ASCENDING BY belnr bukrs
                        DESCENDING kunnr.
    I have table content as below.
    BELNR      BUKRS KUNNR   
    0016000000|CROP |         
    0016000000|CROP |0008910168
    Before and after the sort content order is same.
    I want to sort the content like below.
    0016000000|CROP |0008910168
    0016000000|CROP |       
    Is there any thing wrong with the sort statement???
    i_bseg is defined as TYPE STANDARD TABLE OF
    Sort criteria must not change i. e ascending by belnr and bukrs and descending by kunnr.
    Thanks,
    Vinod.

    hi vinod,
    this is because on your statement, you are sorting BUKRS in descending order and KUNNR in ASCENDING order.
    please take note that the sort order should come after the sorted field. if no order is given, the default which is ASCENDING will be used.
    do your sorting like this
    SORT i_bseg BY belnr bukrs kunnr DESCENDING.
    regards,
    Peter

  • Question about delete statement

    I have question about delete statement...
    i am performing some simple delete statement against one table..but its taking so long..How can we check whether particular delete statements actually deleting records or not..?

    Is the associated select-statement returning rows or not?
    If yes -> delete is deleting
    If no -> delete is just using CPU-cycles
    To tune the delete-statement, you have to tune the corresponding select-statement. To tune the select-statement, you want to read the thread When your query takes too long ...

  • Question about sorting files in media library

    Hey,
    I'm Sam Hoste from Belgium and I have a question about sorting music files in my media library in iTunes.
    My music collection mainly exists of complete albums instead of individual songs. The problem is that I can not play the songs of an album in the same order as on the tracklist of the album in the media library of iTunes.
    I also take very good care of the ID3 tags from my mp3-files, but that doesn't help.
    For example, if I had an album with the following tracklist,
    01. Artist - Song 1
    02. Artist - Song 2
    03. Artist - Song 3
    04. Artist ft Otherartist - Song 4
    05. Artist ft Otherartist - Song 5
    06. Artist - Song 6
    07. Artist - Song 7,
    every music file would have an ID3 tag for tracknumber (1, 2, 3, ...), an ID3 tag for artist ("Artist" or "Artist ft Otherartist"), an ID3 tag for title (Song 1, ...) and an ID3 tag for album ("Albumname").
    When I load this album in my media library in iTunes, I cannot get them sorted by album and by tracknumber on that album. When I sort by artist I get this list:
    01. Artist - Song 1
    02. Artist - Song 2
    03. Artist - Song 3
    06. Artist - Song 6
    07. Artist - Song 7
    04. Artist ft Otherartist - Song 4
    05. Artist ft Otherartist - Song 5.
    But that's normal, but even if I sort by album I get the same list:
    01. Artist - Song 1
    02. Artist - Song 2
    03. Artist - Song 3
    06. Artist - Song 6
    07. Artist - Song 7
    04. Artist ft Otherartist - Song 4
    05. Artist ft Otherartist - Song 5.
    So the songs aren't in the same order as they are supposed to be on the CD. And I would really like my albums to play in the same order than on the tracklist on the CD.
    I think the problem is caused by the fact that when you sort by "album" in iTunes media library, iTunes first sorts by albumname, and second by artistname, and third by tracknumber. In stead of sorting first by albumname, and then second by tracknumber in stead of the artist.
    My question: Is there a way to make sure iTunes sorts by albumname, and then by tracknumber in stead of artist, so I can play my albums in the same order as on the CD? Or is there an other solution for this issue?
    Thanks and kind regards,
    Sam Hoste

    See my previous post on Grouping Tracks Into Albums, in particular the topics Use an album friendly view and
    Tracks out of sequence.
    tt2

  • Sort Statement

    Hi,
    In my custom program, I have issued a SORT command on my internal table.
    SORT it_itab by hkont prctr gsber waers.
    After the SORT command, the relative sequence of entries in the internal table having the same set of values for the fields mentioned in the SORT command, is different in ECC 6.0 when compared with 4.6C results.
    Has anybody faced a similar situation?
    Is there a functionality difference in SORT in ECC 6.0?
    Any inputs on this will be highly appreciated.
    Thanks,
    Binu

    Hi,
    For sort statement, there is no difference between 4.6C and ECC6.0.
    You can debug your program, before and after sorting the internal table, you can check whether the internal table changes the sequence.
    Or you can put your code here to make us more clear what happened.
    Thanks and regards,
    Chris Gu

  • About C-States and VID

    I have some questions about C-States and about this so-called VID.
    First, what is that VID ? Core Temp shows me the VID, is the same thing with the vcore ?
    I have a 3770k 4.5Ghz 1.2V and if i stress the CPU, in Core Temp VID shows 1.246V
    And i had a picture from the past with my CPU and while he was stressed, and i'm using the same BIOS overclock settings, and in that picture under stress test with prime95 the VID was 1.22V, and now is 1.24V, why is that ?
    And about C-States, if i put C6 State from BIOS, it will affect my CPU performance and every day usage ?
    Because C States brings the CPU when is in idle into a sleeping state, and if the CPU needs to stress he wakes from the C States. This will not affect the CPU ?
    So basically, if i use C2 State while already have a Turbo OC, of 4.5Ghz, will affect the CPU, beying in idle in a C2 state, and then if i need the CPU power, releasing from C2 state, then back to C2 state.
    I mean is safe if i OC for the CPU to be in a C state ? I didn't have any kind of crashes or BSODS.

    Quote from: CalinTM on 23-May-13, 01:53:49
    Today i just saw that prime95 was crashing while he finishes 8K test. I am using the turbo OC, with 4.5Ghz, and all the save features on, except C1E. I use c-states, C2.
    So, prime95 crashed every time, and i could pass intel burn test on very high, 10 loops, but prime crashes.
    So, (i don't use vdroop, its set to auto), for example if i put 1.2V in BIOS and vdroop to 87% prime95 works a bit, but i have in event viewer full of WHEA errors, basically the OS tells that the CPU is unstable.
    So, i don't use vdroop because my CPU can't handle at 4.5Ghz low voltages. I use it on Auto, and putted in BIOS vcore of 1.22V
    So, then in idle it sets to 1.21V or 1.226V, and in stress test it lowers to 1.2V (due to native vdroop), and i find only at 1.2V in full load prime95 passes the 8K test, and going further on into the tests.
    The temps was on the coldest core 67 degrees, and on hottest core (basically the middle cores) 75-78 degrees, but mostly stays at 73-74.
    Also, another question, i have in the C-States section, an Auto and No Limit options, so basically if i select Auto C-States it's selecting C2 state, or every state in auto mode ?
    EDIT: Also i find, about the VID, if i do a multiplier OC, the VID always stays at 1.246V, idle and load. But if i use the turbo oc (multipliers to 45) the VID drops in idle to 0.8V-0.9V
    EDIT 2: BUT, attention in games i can use even lower voltage, and don't have a single problem, crashes or everything, only prime crashes if i dont put his wanted voltage.
    Setting Vdroop to 100% will result in higher CPUV than when it is set to "auto".
    If you change Intel C-states to "no Limits" you will notice that many options disappear. I think that you are disabling the feature when you do this. When it is set to auto the system will select when and how it is implemented. Otherwise you can make the settings yourself.

  • How to persist af:table column sort state within a session?

    Hi,
    I have an af:table in my page with the columns sortable="true".  So when click on the header of any column, we can sort the column.  Our users have a requirement that after they do the sort by clicking one of the column headers in the af:table, then they navigate to another page in our application and then come back to this page, they want to see the same sort order of data.  How can we persist the sorting state in af:table?
    Any comments are appreciated.
    Thanks
    -Mina

    Hi,
    I am not sure this is doable because the underling data collection may be changed on other views. You can use a sort listener and intercept the sort order selected by a user to persist it in the session or else where (keep in mind that using the panelCollection component you could also have a sort order that spans multiple columns). When you navigate back to the view you then have the information to order the data accordingly.
    Frank

  • Sorting techinque without using sort statement /Comparing table fields.

    Hi,
    How to achieve sorting techinque without using sort statement in tables.
    Also how to compare fields of 2 custom tables and check their compatability without using code ?

    Hi,
    Refer the below program, it will be helpful.
    types: begin of t_int,
             int type i,
            end of t_int.
    data: it_int type standard table of t_int,
           wa_int type t_int,
           wa_int1 type t_int.
    wa_int-int = 70.
    append wa_int to it_int.
    clear wa_int.
    wa_int-int = 50.
    append wa_int to it_int.
    clear wa_int.
    wa_int-int = 20.
    append wa_int to it_int.
    clear wa_int.
    wa_int-int = 30.
    append wa_int to it_int.
    clear wa_int.
    wa_int-int = 23.
    append wa_int to it_int.
    clear wa_int.
    wa_int-int = 23.
    append wa_int to it_int.
    clear wa_int.
    wa_int-int = 32.
    append wa_int to it_int.
    clear wa_int.
    wa_int-int = 77.
    append wa_int to it_int.
    clear wa_int.
    wa_int-int = 99.
    append wa_int to it_int.
    clear wa_int.
    wa_int-int = 1.
    append wa_int to it_int.
    clear wa_int.
    wa_int-int = 11.
    append wa_int to it_int.
    clear wa_int.
    wa_int-int = 90.
    append wa_int to it_int.
    clear wa_int.
    wa_int-int = 40.
    append wa_int to it_int.
    clear wa_int.
    data: wk_line type i.
    data: cnt type i.
    data: cnt1 type i.
    describe table it_int lines wk_line.
    clear: cnt,cnt1.
    data wk_flag type c.
       clear wk_flag.
    while wk_line gt cnt1.
       cnt = cnt + 1.
       read table it_int into wa_int index cnt.
       cnt1 = cnt + 1.
       read table it_int into wa_int1 index cnt1.
       if wa_int-int lt wa_int1-int.
         modify it_int from wa_int index cnt1.
         modify it_int from wa_int1 index cnt.
         wk_flag = 'X'.
       endif.
       if cnt1 eq wk_line.
         clear: cnt, cnt1.
         if wk_flag eq 'X'.
         clear wk_flag.
         continue.
         else.
           exit.
         endif.
       endif.
    endwhile.
    loop at it_int into wa_int.
       write: / wa_int-int.
    endloop.

  • Question about sorted, hashed tables, mindset when using OO concepts...

    Hello experts,
    I just want to make sure if my idea about sorted and hashed table is correct.Please give tips and suggestions.
    In one of my reports, I declared a structure and an itab.
    TYPES: BEGIN OF t_mkpf,
            mblnr           LIKE mkpf-mblnr,
            mjahr           LIKE mkpf-mjahr,
            budat           LIKE mkpf-budat,
            xblnr(10)       TYPE c,
            tcode2          LIKE mkpf-tcode2,
            cputm           LIKE mkpf-cputm,
            blart           LIKE mkpf-blart,
          END OF t_mkpf.
    it_mkpf       TYPE SORTED   TABLE OF t_mkpf WITH HEADER LINE
                                       WITH NON-UNIQUE KEY mblnr mjahr.
    Now, I declared it as a sorted table with a non-unique key MBLNR and MJAHR. Now suppose I have 1000 records in my itab. how will it search for a particular record?
    2. Is it faster than sorting a standard table then reading it using binary search?
    3. How do I use a hashed table effectively? lets say that I want to use hashed type instead of sorted table in my example above.
    4. I am currently practicing ABAP Objects and my problem is that I think my mindset when programming a report is still the 'procedural one'. How do one use ABAP concepts effectively?
    Again, thank you guys and have a nice day!

    Hi Viray,
    <b>The different ways to fill an Internal Table:</b>
    <b>append&sort</b>
    This is the simplest one. I do appends on a standard table and then a sort.
    data: lt_tab type standard table of ...
    do n times.
    ls_line = ...
    append ls_line to lt_tab.
    enddo.
    sort lt_tab.
    The thing here is the fast appends and the slow sort - so this is interesting how this will compare to the following one.
    <b>read binary search & insert index sy-tabix</b>
    In this type I also use a standard table, but I read to find the correct insert index to get a sorted table also.
    data: lt_tab type standard table of ...
    do n times.
    ls_line = ...
    read table lt_tab transporting no fields with key ... binary search.
    if sy-subrc <> 0.
      insert ls_line into lt_tab index sy-tabix.
    endif.
    enddo.
    <b>sorted table with non-unique key</b>
    Here I used a sorted table with a non-unique key and did inserts...
    data: lt_tab type sorted table of ... with non-unique key ...
    do n times.
    ls_line = ...
    insert ls_line into table lt_tab.
    enddo.
    <b>sorted table with unique key</b>
    The coding is the same instead the sorted table is with a unique key.
    data: lt_tab type sorted table of ... with unique key ...
    do n times.
    ls_line = ...
    insert ls_line into table lt_tab.
    enddo.
    <b>hashed table</b>
    The last one is the hashed table (always with unique key).
    data: lt_tab type hashed table of ... with unique key ...
    do n times.
    ls_line = ...
    insert ls_line into table lt_tab.
    enddo.
    <b>You Can use this Program to Test:</b>
    types:
      begin of local_long,
        key1 type char10,
        key2 type char10,
        data1 type char10,
        data2 type char10,
        data3 type i,
        data4 type sydatum,
        data5 type numc10,
        data6 type char32,
        data7 type i,
        data8 type sydatum,
        data9 type numc10,
        dataa type char32,
        datab type i,
        datac type sydatum,
        datad type numc10,
        datae type char32,
        dataf type i,
        datag type sydatum,
        datah type numc10,
        datai type char32,
        dataj type i,
        datak type sydatum,
        datal type numc10,
        datam type char32,
        datan type i,
        datao type sydatum,
        datap type numc10,
        dataq type char32,
        datar type i,
        datas type sydatum,
        datat type numc10,
        datau type char32,
        datav type i,
        dataw type sydatum,
        datax type numc10,
        datay type char32,
        dataz type i,
        data11 type numc10,
        data21 type char32,
        data31 type i,
        data41 type sydatum,
        data51 type numc10,
        data61 type char32,
        data71 type i,
        data81 type sydatum,
        data91 type numc10,
        dataa1 type char32,
        datab1 type i,
        datac1 type sydatum,
        datad1 type numc10,
        datae1 type char32,
        dataf1 type i,
        datag1 type sydatum,
        datah1 type numc10,
        datai1 type char32,
        dataj1 type i,
        datak1 type sydatum,
        datal1 type numc10,
        datam1 type char32,
        datan1 type i,
        datao1 type sydatum,
        datap1 type numc10,
        dataq1 type char32,
        datar1 type i,
        datas1 type sydatum,
        datat1 type numc10,
        datau1 type char32,
        datav1 type i,
        dataw1 type sydatum,
        datax1 type numc10,
        datay1 type char32,
        dataz1 type i,
      end of local_long.
    data:
      ls_long type local_long,
      lt_binary type standard table of local_long,
      lt_sort_u type sorted table of local_long with unique key key1 key2,
      lt_sort_n type sorted table of local_long with non-unique key key1 key2,
      lt_hash_u type hashed table of local_long with unique key key1 key2,
      lt_apsort type standard table of local_long.
    field-symbols:
      <ls_long> type local_long.
    parameters:
      min1 type i default 1,
      max1 type i default 1000,
      min2 type i default 1,
      max2 type i default 1000,
      i1 type i default 100,
      i2 type i default 200,
      i3 type i default 300,
      i4 type i default 400,
      i5 type i default 500,
      i6 type i default 600,
      i7 type i default 700,
      i8 type i default 800,
      i9 type i default 900,
      fax type i default 1000.
    types:
      begin of measure,
        what(10) type c,
        size(6) type c,
        time type i,
        lines type i,
        reads type i,
        readb type i,
        fax_s type i,
        fax_b type i,
        fax(6) type c,
        iter type i,
      end of measure.
    data:
      lt_time type standard table of measure,
      lt_meantimes type standard table of measure,
      ls_time type measure,
      lv_method(7) type c,
      lv_i1 type char10,
      lv_i2 type char10,
      lv_f type f,
      lv_start type i,
      lv_end type i,
      lv_normal type i,
      lv_size type i,
      lv_order type i,
      lo_rnd1 type ref to cl_abap_random_int,
      lo_rnd2 type ref to cl_abap_random_int.
    get run time field lv_start.
    lo_rnd1 = cl_abap_random_int=>create( seed = lv_start min = min1 max = max1 ).
    add 1 to lv_start.
    lo_rnd2 = cl_abap_random_int=>create( seed = lv_start min = min2 max = max2 ).
    ls_time-fax = fax.
    do 5 times.
      do 9 times.
        case sy-index.
          when 1. lv_size = i1.
          when 2. lv_size = i2.
          when 3. lv_size = i3.
          when 4. lv_size = i4.
          when 5. lv_size = i5.
          when 6. lv_size = i6.
          when 7. lv_size = i7.
          when 8. lv_size = i8.
          when 9. lv_size = i9.
        endcase.
        if lv_size > 0.
          ls_time-iter = 1.
          clear lt_apsort.
          ls_time-what = 'APSORT'.
          ls_time-size = lv_size.
          get run time field lv_start.
          do lv_size times.
            perform fill.
            append ls_long to lt_apsort.
          enddo.
          sort lt_apsort by key1 key2.
          get run time field lv_end.
          ls_time-time = lv_end - lv_start.
          ls_time-reads = 0.
          ls_time-readb = 0.
          ls_time-lines = lines( lt_apsort ).
          get run time field lv_start.
          do.
            add 1 to ls_time-readb.
            lv_i1 = lo_rnd1->get_next( ).
            lv_i2 = lo_rnd2->get_next( ).
            read table lt_apsort
              assigning <ls_long>
              with key key1 = lv_i1
                       key2 = lv_i2
              binary search.
            if sy-subrc = 0.
              <ls_long>-data11 = sy-index.
            endif.
            get run time field lv_end.
            subtract lv_start from lv_end.
            if lv_end >= ls_time-time.
              exit.
            endif.
          enddo.
          get run time field lv_start.
          do.
            add 1 to ls_time-reads.
            lv_i1 = lo_rnd1->get_next( ).
            lv_i2 = lo_rnd2->get_next( ).
            read table lt_apsort
              assigning <ls_long>
              with key key2 = lv_i1
                       key1 = lv_i2.
            if sy-subrc = 0.
              <ls_long>-data11 = sy-index.
            endif.
            get run time field lv_end.
            subtract lv_start from lv_end.
            if lv_end >= ls_time-time.
              exit.
            endif.
          enddo.
          get run time field lv_start.
          do fax times.
            lv_i1 = lo_rnd1->get_next( ).
            lv_i2 = lo_rnd2->get_next( ).
            read table lt_apsort
              assigning <ls_long>
              with key key1 = lv_i1
                       key2 = lv_i2
              binary search.
            if sy-subrc = 0.
              <ls_long>-data21 = sy-index.
            endif.
          enddo.
          get run time field lv_end.
          ls_time-fax_b = lv_end - lv_start.
          get run time field lv_start.
          do fax times.
            lv_i1 = lo_rnd1->get_next( ).
            lv_i2 = lo_rnd2->get_next( ).
            read table lt_apsort
              assigning <ls_long>
              with key key2 = lv_i1
                       key1 = lv_i2.
            if sy-subrc = 0.
              <ls_long>-data21 = sy-index.
            endif.
          enddo.
          get run time field lv_end.
          ls_time-fax_s = lv_end - lv_start.
          collect ls_time into lt_time.
          clear lt_binary.
          ls_time-what = 'BINARY'.
          ls_time-size = lv_size.
          get run time field lv_start.
          do lv_size times.
            perform fill.
            read table lt_binary
              transporting no fields
              with key key1 = ls_long-key1
                       key2 = ls_long-key2
              binary search.
            if sy-index <> 0.
              insert ls_long into lt_binary index sy-tabix.
            endif.
          enddo.
          get run time field lv_end.
          ls_time-time = lv_end - lv_start.
          ls_time-reads = 0.
          ls_time-readb = 0.
          ls_time-lines = lines( lt_binary ).
          get run time field lv_start.
          do.
            add 1 to ls_time-readb.
            lv_i1 = lo_rnd1->get_next( ).
            lv_i2 = lo_rnd2->get_next( ).
            read table lt_binary
              assigning <ls_long>
              with key key1 = lv_i1
                       key2 = lv_i2
              binary search.
            if sy-subrc = 0.
              <ls_long>-data11 = sy-index.
            endif.
            get run time field lv_end.
            subtract lv_start from lv_end.
            if lv_end >= ls_time-time.
              exit.
            endif.
          enddo.
          get run time field lv_start.
          do.
            add 1 to ls_time-reads.
            lv_i1 = lo_rnd1->get_next( ).
            lv_i2 = lo_rnd2->get_next( ).
            read table lt_binary
              assigning <ls_long>
              with key key2 = lv_i1
                       key1 = lv_i2.
            if sy-subrc = 0.
              <ls_long>-data11 = sy-index.
            endif.
            get run time field lv_end.
            subtract lv_start from lv_end.
            if lv_end >= ls_time-time.
              exit.
            endif.
          enddo.
          get run time field lv_start.
          do fax times.
            lv_i1 = lo_rnd1->get_next( ).
            lv_i2 = lo_rnd2->get_next( ).
            read table lt_binary
              assigning <ls_long>
              with key key1 = lv_i1
                       key2 = lv_i2
              binary search.
            if sy-subrc = 0.
              <ls_long>-data21 = sy-index.
            endif.
          enddo.
          get run time field lv_end.
          ls_time-fax_b = lv_end - lv_start.
          get run time field lv_start.
          do fax times.
            lv_i1 = lo_rnd1->get_next( ).
            lv_i2 = lo_rnd2->get_next( ).
            read table lt_binary
              assigning <ls_long>
              with key key2 = lv_i1
                       key1 = lv_i2.
            if sy-subrc = 0.
              <ls_long>-data21 = sy-index.
            endif.
          enddo.
          get run time field lv_end.
          ls_time-fax_s = lv_end - lv_start.
          collect ls_time into lt_time.
          clear lt_sort_n.
          ls_time-what = 'SORT_N'.
          ls_time-size = lv_size.
          get run time field lv_start.
          do lv_size times.
            perform fill.
            insert ls_long into table lt_sort_n.
          enddo.
          get run time field lv_end.
          ls_time-time = lv_end - lv_start.
          ls_time-reads = 0.
          ls_time-readb = 0.
          ls_time-lines = lines( lt_sort_n ).
          get run time field lv_start.
          do.
            add 1 to ls_time-readb.
            lv_i1 = lo_rnd1->get_next( ).
            lv_i2 = lo_rnd2->get_next( ).
            read table lt_sort_n
              assigning <ls_long>
              with table key key1 = lv_i1
                             key2 = lv_i2.
            if sy-subrc = 0.
              <ls_long>-data11 = sy-index.
            endif.
            get run time field lv_end.
            subtract lv_start from lv_end.
            if lv_end >= ls_time-time.
              exit.
            endif.
          enddo.
          get run time field lv_start.
          do.
            add 1 to ls_time-reads.
            lv_i1 = lo_rnd1->get_next( ).
            lv_i2 = lo_rnd2->get_next( ).
            read table lt_sort_n
              assigning <ls_long>
              with key key2 = lv_i1
                       key1 = lv_i2.
            if sy-subrc = 0.
              <ls_long>-data11 = sy-index.
            endif.
            get run time field lv_end.
            subtract lv_start from lv_end.
            if lv_end >= ls_time-time.
              exit.
            endif.
          enddo.
          get run time field lv_start.
          do fax times.
            lv_i1 = lo_rnd1->get_next( ).
            lv_i2 = lo_rnd2->get_next( ).
            read table lt_sort_n
              assigning <ls_long>
              with table key key1 = lv_i1
                             key2 = lv_i2.
            if sy-subrc = 0.
              <ls_long>-data21 = sy-index.
            endif.
          enddo.
          get run time field lv_end.
          ls_time-fax_b = lv_end - lv_start.
          get run time field lv_start.
          do fax times.
            lv_i1 = lo_rnd1->get_next( ).
            lv_i2 = lo_rnd2->get_next( ).
            read table lt_sort_n
              assigning <ls_long>
              with key key2 = lv_i1
                       key1 = lv_i2.
            if sy-subrc = 0.
              <ls_long>-data21 = sy-index.
            endif.
          enddo.
          get run time field lv_end.
          ls_time-fax_s = lv_end - lv_start.
          collect ls_time into lt_time.
          clear lt_sort_u.
          ls_time-what = 'SORT_U'.
          ls_time-size = lv_size.
          get run time field lv_start.
          do lv_size times.
            perform fill.
            insert ls_long into table lt_sort_u.
          enddo.
          get run time field lv_end.
          ls_time-time = lv_end - lv_start.
          ls_time-reads = 0.
          ls_time-readb = 0.
          ls_time-lines = lines( lt_sort_u ).
          get run time field lv_start.
          do.
            add 1 to ls_time-readb.
            lv_i1 = lo_rnd1->get_next( ).
            lv_i2 = lo_rnd2->get_next( ).
            read table lt_sort_u
              assigning <ls_long>
              with table key key1 = lv_i1
                             key2 = lv_i2.
            if sy-subrc = 0.
              <ls_long>-data11 = sy-index.
            endif.
            get run time field lv_end.
            subtract lv_start from lv_end.
            if lv_end >= ls_time-time.
              exit.
            endif.
          enddo.
          get run time field lv_start.
          do.
            add 1 to ls_time-reads.
            lv_i1 = lo_rnd1->get_next( ).
            lv_i2 = lo_rnd2->get_next( ).
            read table lt_sort_u
              assigning <ls_long>
              with key key2 = lv_i1
                       key1 = lv_i2.
            if sy-subrc = 0.
              <ls_long>-data11 = sy-index.
            endif.
            get run time field lv_end.
            subtract lv_start from lv_end.
            if lv_end >= ls_time-time.
              exit.
            endif.
          enddo.
          get run time field lv_start.
          do fax times.
            lv_i1 = lo_rnd1->get_next( ).
            lv_i2 = lo_rnd2->get_next( ).
            read table lt_sort_u
              assigning <ls_long>
              with table key key1 = lv_i1
                             key2 = lv_i2.
            if sy-subrc = 0.
              <ls_long>-data21 = sy-index.
            endif.
          enddo.
          get run time field lv_end.
          ls_time-fax_b = lv_end - lv_start.
          get run time field lv_start.
          do fax times.
            lv_i1 = lo_rnd1->get_next( ).
            lv_i2 = lo_rnd2->get_next( ).
            read table lt_sort_u
              assigning <ls_long>
              with key key2 = lv_i1
                       key1 = lv_i2.
            if sy-subrc = 0.
              <ls_long>-data21 = sy-index.
            endif.
          enddo.
          get run time field lv_end.
          ls_time-fax_s = lv_end - lv_start.
          collect ls_time into lt_time.
          clear lt_hash_u.
          ls_time-what = 'HASH_U'.
          ls_time-size = lv_size.
          get run time field lv_start.
          do lv_size times.
            perform fill.
            insert ls_long into table lt_hash_u.
          enddo.
          get run time field lv_end.
          ls_time-time = lv_end - lv_start.
          ls_time-reads = 0.
          ls_time-readb = 0.
          ls_time-lines = lines( lt_hash_u ).
          get run time field lv_start.
          do.
            add 1 to ls_time-readb.
            lv_i1 = lo_rnd1->get_next( ).
            lv_i2 = lo_rnd2->get_next( ).
            read table lt_hash_u
              assigning <ls_long>
              with table key key1 = lv_i1
                             key2 = lv_i2.
            if sy-subrc = 0.
              <ls_long>-data11 = sy-index.
            endif.
            get run time field lv_end.
            subtract lv_start from lv_end.
            if lv_end >= ls_time-time.
              exit.
            endif.
          enddo.
          get run time field lv_start.
          do.
            add 1 to ls_time-reads.
            lv_i1 = lo_rnd1->get_next( ).
            lv_i2 = lo_rnd2->get_next( ).
            read table lt_hash_u
              assigning <ls_long>
              with key key2 = lv_i1
                       key1 = lv_i2.
            if sy-subrc = 0.
              <ls_long>-data11 = sy-index.
            endif.
            get run time field lv_end.
            subtract lv_start from lv_end.
            if lv_end >= ls_time-time.
              exit.
            endif.
          enddo.
          get run time field lv_start.
          do fax times.
            lv_i1 = lo_rnd1->get_next( ).
            lv_i2 = lo_rnd2->get_next( ).
            read table lt_hash_u
              assigning <ls_long>
              with table key key1 = lv_i1
                             key2 = lv_i2.
            if sy-subrc = 0.
              <ls_long>-data21 = sy-index.
            endif.
          enddo.
          get run time field lv_end.
          ls_time-fax_b = lv_end - lv_start.
          get run time field lv_start.
          do fax times.
            lv_i1 = lo_rnd1->get_next( ).
            lv_i2 = lo_rnd2->get_next( ).
            read table lt_hash_u
              assigning <ls_long>
              with key key2 = lv_i1
                       key1 = lv_i2.
            if sy-subrc = 0.
              <ls_long>-data21 = sy-index.
            endif.
          enddo.
          get run time field lv_end.
          ls_time-fax_s = lv_end - lv_start.
          collect ls_time into lt_time.
        endif.
      enddo.
    enddo.
    sort lt_time by what size.
    write: / ' type      | size   | time        | tab-size    | directread  | std read    | time direct | time std read'.
    write: / sy-uline.
    loop at lt_time into ls_time.
      write: / ls_time-what, '|', ls_time-size, '|', ls_time-time, '|', ls_time-lines, '|', ls_time-readb, '|', ls_time-reads, '|', ls_time-fax_b, '|', ls_time-fax_s.
    endloop.
    form fill.
      lv_i1 = lo_rnd1->get_next( ).
      lv_i2 = lo_rnd2->get_next( ).
      ls_long-key1 = lv_i1.
      ls_long-key2 = lv_i2.
      ls_long-data1 = lv_i1.
      ls_long-data2 = lv_i2.
      ls_long-data3 = lv_i1.
      ls_long-data4 = sy-datum + lv_i1.
      ls_long-data5 = lv_i1.
      ls_long-data6 = lv_i1.
      ls_long-data7 = lv_i1.
      ls_long-data8 = sy-datum + lv_i1.
      ls_long-data9 = lv_i1.
      ls_long-dataa = lv_i1.
      ls_long-datab = lv_i1.
      ls_long-datac = sy-datum + lv_i1.
      ls_long-datad = lv_i1.
      ls_long-datae = lv_i1.
      ls_long-dataf = lv_i1.
      ls_long-datag = sy-datum + lv_i1.
      ls_long-datah = lv_i1.
      ls_long-datai = lv_i1.
      ls_long-dataj = lv_i1.
      ls_long-datak = sy-datum + lv_i1.
      ls_long-datal = lv_i1.
      ls_long-datam = lv_i1.
      ls_long-datan = sy-datum + lv_i1.
      ls_long-datao = lv_i1.
      ls_long-datap = lv_i1.
      ls_long-dataq = lv_i1.
      ls_long-datar = sy-datum + lv_i1.
      ls_long-datas = lv_i1.
      ls_long-datat = lv_i1.
      ls_long-datau = lv_i1.
      ls_long-datav = sy-datum + lv_i1.
      ls_long-dataw = lv_i1.
      ls_long-datax = lv_i1.
      ls_long-datay = lv_i1.
      ls_long-dataz = sy-datum + lv_i1.
      ls_long-data11 = lv_i1.
      ls_long-data21 = lv_i1.
      ls_long-data31 = lv_i1.
      ls_long-data41 = sy-datum + lv_i1.
      ls_long-data51 = lv_i1.
      ls_long-data61 = lv_i1.
      ls_long-data71 = lv_i1.
      ls_long-data81 = sy-datum + lv_i1.
      ls_long-data91 = lv_i1.
      ls_long-dataa1 = lv_i1.
      ls_long-datab1 = lv_i1.
      ls_long-datac1 = sy-datum + lv_i1.
      ls_long-datad1 = lv_i1.
      ls_long-datae1 = lv_i1.
      ls_long-dataf1 = lv_i1.
      ls_long-datag1 = sy-datum + lv_i1.
      ls_long-datah1 = lv_i1.
      ls_long-datai1 = lv_i1.
      ls_long-dataj1 = lv_i1.
      ls_long-datak1 = sy-datum + lv_i1.
      ls_long-datal1 = lv_i1.
      ls_long-datam1 = lv_i1.
      ls_long-datan1 = sy-datum + lv_i1.
      ls_long-datao1 = lv_i1.
      ls_long-datap1 = lv_i1.
      ls_long-dataq1 = lv_i1.
      ls_long-datar1 = sy-datum + lv_i1.
      ls_long-datas1 = lv_i1.
      ls_long-datat1 = lv_i1.
      ls_long-datau1 = lv_i1.
      ls_long-datav1 = sy-datum + lv_i1.
      ls_long-dataw1 = lv_i1.
      ls_long-datax1 = lv_i1.
      ls_long-datay1 = lv_i1.
      ls_long-dataz1 = sy-datum + lv_i1.
    endform.".
    Thanks & Regards,
    YJR.

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