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abap-llm/tasks_gen/eval/G0178/hidden/stock_age_hidden.clas.abap

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ABAP

CLASS {{p}}stock_age_hidden DEFINITION PUBLIC FINAL CREATE PUBLIC
FOR TESTING DURATION SHORT RISK LEVEL HARMLESS.
PRIVATE SECTION.
CONSTANTS c_key_date TYPE dats VALUE '20240401'.
DATA mo_cut TYPE REF TO {{p}}if_stock_age.
METHODS setup.
METHODS gr_date_for_age
IMPORTING iv_age TYPE i
RETURNING VALUE(rv_date) TYPE dats.
METHODS empty_input FOR TESTING.
METHODS single_batch_bucket_01 FOR TESTING.
METHODS bucket_boundaries FOR TESTING.
METHODS groups_sum_quantity_and_count FOR TESTING.
METHODS result_is_sorted FOR TESTING.
METHODS invalid_rows_are_ignored FOR TESTING.
METHODS negative_and_zero_quantity FOR TESTING.
METHODS total_groups_by_material FOR TESTING.
METHODS total_is_sorted FOR TESTING.
METHODS total_ignores_invalid_rows FOR TESTING.
ENDCLASS.
CLASS {{p}}stock_age_hidden IMPLEMENTATION.
METHOD setup.
mo_cut = NEW {{p}}stock_age( ).
ENDMETHOD.
METHOD gr_date_for_age.
rv_date = c_key_date - iv_age.
ENDMETHOD.
METHOD empty_input.
DATA(lt_result) = mo_cut->analyze(
it_batch = VALUE {{p}}if_stock_age=>tt_batch( )
iv_key_date = c_key_date ).
cl_abap_unit_assert=>assert_initial( act = lt_result ).
ENDMETHOD.
METHOD single_batch_bucket_01.
DATA(lt_result) = mo_cut->analyze(
it_batch = VALUE {{p}}if_stock_age=>tt_batch(
( material = 'MAT-1' batch = 'B1' quantity = 10
gr_date = gr_date_for_age( 0 ) ) )
iv_key_date = c_key_date ).
cl_abap_unit_assert=>assert_equals( act = lines( lt_result ) exp = 1 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 1 ]-material
exp = 'MAT-1' ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 1 ]-bucket
exp = {{p}}if_stock_age=>c_bucket-d0_30 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 1 ]-quantity exp = 10 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 1 ]-batch_count exp = 1 ).
ENDMETHOD.
METHOD bucket_boundaries.
DATA(lt_result) = mo_cut->analyze(
it_batch = VALUE {{p}}if_stock_age=>tt_batch(
( material = 'MAT-B' batch = 'B1' quantity = 1 gr_date = gr_date_for_age( 30 ) )
( material = 'MAT-B' batch = 'B2' quantity = 1 gr_date = gr_date_for_age( 31 ) )
( material = 'MAT-B' batch = 'B3' quantity = 1 gr_date = gr_date_for_age( 60 ) )
( material = 'MAT-B' batch = 'B4' quantity = 1 gr_date = gr_date_for_age( 61 ) )
( material = 'MAT-B' batch = 'B5' quantity = 1 gr_date = gr_date_for_age( 90 ) )
( material = 'MAT-B' batch = 'B6' quantity = 1 gr_date = gr_date_for_age( 91 ) ) )
iv_key_date = c_key_date ).
cl_abap_unit_assert=>assert_equals( act = lines( lt_result ) exp = 4 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 1 ]-bucket
exp = {{p}}if_stock_age=>c_bucket-d0_30 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 1 ]-batch_count exp = 1 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 2 ]-bucket
exp = {{p}}if_stock_age=>c_bucket-d31_60 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 2 ]-batch_count exp = 2 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 3 ]-bucket
exp = {{p}}if_stock_age=>c_bucket-d61_90 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 3 ]-batch_count exp = 2 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 4 ]-bucket
exp = {{p}}if_stock_age=>c_bucket-d91_plus ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 4 ]-batch_count exp = 1 ).
ENDMETHOD.
METHOD groups_sum_quantity_and_count.
DATA(lt_result) = mo_cut->analyze(
it_batch = VALUE {{p}}if_stock_age=>tt_batch(
( material = 'MAT-A' batch = 'B1' quantity = 10 gr_date = gr_date_for_age( 1 ) )
( material = 'MAT-A' batch = 'B2' quantity = 5 gr_date = gr_date_for_age( 2 ) )
( material = 'MAT-A' batch = 'B3' quantity = 2 gr_date = gr_date_for_age( 200 ) ) )
iv_key_date = c_key_date ).
cl_abap_unit_assert=>assert_equals( act = lines( lt_result ) exp = 2 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 1 ]-bucket
exp = {{p}}if_stock_age=>c_bucket-d0_30 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 1 ]-quantity exp = 15 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 1 ]-batch_count exp = 2 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 2 ]-bucket
exp = {{p}}if_stock_age=>c_bucket-d91_plus ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 2 ]-quantity exp = 2 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 2 ]-batch_count exp = 1 ).
ENDMETHOD.
METHOD result_is_sorted.
DATA(lt_result) = mo_cut->analyze(
it_batch = VALUE {{p}}if_stock_age=>tt_batch(
( material = 'MAT-C' batch = 'B1' quantity = 1 gr_date = gr_date_for_age( 200 ) )
( material = 'MAT-A' batch = 'B2' quantity = 1 gr_date = gr_date_for_age( 40 ) )
( material = 'MAT-B' batch = 'B3' quantity = 1 gr_date = gr_date_for_age( 1 ) )
( material = 'MAT-A' batch = 'B4' quantity = 1 gr_date = gr_date_for_age( 1 ) )
( material = 'MAT-C' batch = 'B5' quantity = 1 gr_date = gr_date_for_age( 1 ) )
( material = 'MAT-B' batch = 'B6' quantity = 1 gr_date = gr_date_for_age( 70 ) ) )
iv_key_date = c_key_date ).
DATA(lt_expected) = VALUE {{p}}if_stock_age=>tt_age_row(
( material = 'MAT-A' bucket = {{p}}if_stock_age=>c_bucket-d0_30 )
( material = 'MAT-A' bucket = {{p}}if_stock_age=>c_bucket-d31_60 )
( material = 'MAT-B' bucket = {{p}}if_stock_age=>c_bucket-d0_30 )
( material = 'MAT-B' bucket = {{p}}if_stock_age=>c_bucket-d61_90 )
( material = 'MAT-C' bucket = {{p}}if_stock_age=>c_bucket-d0_30 )
( material = 'MAT-C' bucket = {{p}}if_stock_age=>c_bucket-d91_plus ) ).
cl_abap_unit_assert=>assert_equals( act = lines( lt_result ) exp = 6 ).
DATA lv_index TYPE i.
LOOP AT lt_expected INTO DATA(ls_expected).
lv_index = lv_index + 1.
cl_abap_unit_assert=>assert_equals( act = lt_result[ lv_index ]-material
exp = ls_expected-material ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ lv_index ]-bucket
exp = ls_expected-bucket ).
ENDLOOP.
ENDMETHOD.
METHOD invalid_rows_are_ignored.
DATA(lt_result) = mo_cut->analyze(
it_batch = VALUE {{p}}if_stock_age=>tt_batch(
( material = 'MAT-A' batch = 'B1' quantity = 10 gr_date = gr_date_for_age( 5 ) )
( material = 'MAT-A' batch = 'B2' quantity = 99 gr_date = '00000000' )
( material = 'MAT-A' batch = 'B3' quantity = 99 gr_date = gr_date_for_age( -5 ) ) )
iv_key_date = c_key_date ).
cl_abap_unit_assert=>assert_equals( act = lines( lt_result ) exp = 1 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 1 ]-quantity exp = 10 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 1 ]-batch_count exp = 1 ).
ENDMETHOD.
METHOD negative_and_zero_quantity.
DATA(lt_result) = mo_cut->analyze(
it_batch = VALUE {{p}}if_stock_age=>tt_batch(
( material = 'MAT-A' batch = 'B1' quantity = 10 gr_date = gr_date_for_age( 5 ) )
( material = 'MAT-A' batch = 'B2' quantity = -4 gr_date = gr_date_for_age( 6 ) )
( material = 'MAT-B' batch = 'B3' quantity = 5 gr_date = gr_date_for_age( 5 ) )
( material = 'MAT-B' batch = 'B4' quantity = -5 gr_date = gr_date_for_age( 6 ) ) )
iv_key_date = c_key_date ).
cl_abap_unit_assert=>assert_equals( act = lines( lt_result ) exp = 2 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 1 ]-material exp = 'MAT-A' ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 1 ]-quantity exp = 6 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 1 ]-batch_count exp = 2 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 2 ]-material exp = 'MAT-B' ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 2 ]-quantity exp = 0 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 2 ]-batch_count exp = 2 ).
ENDMETHOD.
METHOD total_groups_by_material.
DATA(lt_result) = mo_cut->total_by_material(
it_batch = VALUE {{p}}if_stock_age=>tt_batch(
( material = 'MAT-A' batch = 'B1' quantity = 10 gr_date = gr_date_for_age( 5 ) )
( material = 'MAT-A' batch = 'B2' quantity = 5 gr_date = gr_date_for_age( 100 ) )
( material = 'MAT-B' batch = 'B3' quantity = 7 gr_date = gr_date_for_age( 5 ) ) )
iv_key_date = c_key_date ).
cl_abap_unit_assert=>assert_equals( act = lines( lt_result ) exp = 2 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 1 ]-material exp = 'MAT-A' ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 1 ]-quantity exp = 15 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 1 ]-batch_count exp = 2 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 2 ]-material exp = 'MAT-B' ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 2 ]-quantity exp = 7 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 2 ]-batch_count exp = 1 ).
ENDMETHOD.
METHOD total_is_sorted.
DATA(lt_result) = mo_cut->total_by_material(
it_batch = VALUE {{p}}if_stock_age=>tt_batch(
( material = 'MAT-Z' batch = 'B1' quantity = 1 gr_date = gr_date_for_age( 5 ) )
( material = 'MAT-A' batch = 'B2' quantity = 1 gr_date = gr_date_for_age( 5 ) )
( material = 'MAT-M' batch = 'B3' quantity = 1 gr_date = gr_date_for_age( 5 ) ) )
iv_key_date = c_key_date ).
cl_abap_unit_assert=>assert_equals( act = lines( lt_result ) exp = 3 ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 1 ]-material exp = 'MAT-A' ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 2 ]-material exp = 'MAT-M' ).
cl_abap_unit_assert=>assert_equals( act = lt_result[ 3 ]-material exp = 'MAT-Z' ).
ENDMETHOD.
METHOD total_ignores_invalid_rows.
DATA(lt_result) = mo_cut->total_by_material(
it_batch = VALUE {{p}}if_stock_age=>tt_batch(
( material = 'MAT-A' batch = 'B1' quantity = 99 gr_date = '00000000' )
( material = 'MAT-A' batch = 'B2' quantity = 99 gr_date = gr_date_for_age( -1 ) ) )
iv_key_date = c_key_date ).
cl_abap_unit_assert=>assert_initial( act = lt_result ).
ENDMETHOD.
ENDCLASS.