Files
abap-llm/tasks_gen/train/G1055/reference/garden_rent.testclasses.abap

72 lines
3.3 KiB
ABAP

CLASS ltc_garden_rent DEFINITION FINAL FOR TESTING DURATION SHORT RISK LEVEL HARMLESS.
PRIVATE SECTION.
TYPES ty_amount TYPE p LENGTH 8 DECIMALS 2.
DATA mo_cut TYPE REF TO {{p}}garden_rent.
METHODS setup.
METHODS standard_plot_rent FOR TESTING.
METHODS member_discount FOR TESTING.
METHODS water_connection_fee FOR TESTING.
METHODS minimum_rent FOR TESTING.
METHODS rounds_half_up FOR TESTING.
METHODS unknown_plot_type FOR TESTING.
METHODS area_out_of_range FOR TESTING.
ENDCLASS.
CLASS ltc_garden_rent IMPLEMENTATION.
METHOD setup.
mo_cut = NEW {{p}}garden_rent( ).
ENDMETHOD.
METHOD standard_plot_rent.
DATA(ls_result) = mo_cut->calculate( iv_plot_type = 'STD' iv_area = 100
iv_water = abap_false iv_member = abap_false ).
cl_abap_unit_assert=>assert_equals( exp = CONV ty_amount( '35.00' ) act = ls_result-rent ).
cl_abap_unit_assert=>assert_equals( exp = {{p}}garden_rent=>c_reason-ok
act = ls_result-reason ).
ENDMETHOD.
METHOD member_discount.
DATA(ls_result) = mo_cut->calculate( iv_plot_type = 'STD' iv_area = 100
iv_water = abap_false iv_member = abap_true ).
cl_abap_unit_assert=>assert_equals( exp = CONV ty_amount( '29.75' ) act = ls_result-rent ).
ENDMETHOD.
METHOD water_connection_fee.
DATA(ls_result) = mo_cut->calculate( iv_plot_type = 'PREM' iv_area = 100
iv_water = abap_true iv_member = abap_false ).
cl_abap_unit_assert=>assert_equals( exp = CONV ty_amount( '72.00' ) act = ls_result-rent ).
ENDMETHOD.
METHOD minimum_rent.
DATA(ls_result) = mo_cut->calculate( iv_plot_type = 'STD' iv_area = 10
iv_water = abap_false iv_member = abap_true ).
cl_abap_unit_assert=>assert_equals( exp = CONV ty_amount( '10.00' ) act = ls_result-rent ).
ENDMETHOD.
METHOD rounds_half_up.
DATA(ls_result) = mo_cut->calculate( iv_plot_type = 'STD' iv_area = 42
iv_water = abap_true iv_member = abap_true ).
cl_abap_unit_assert=>assert_equals( exp = CONV ty_amount( '22.70' ) act = ls_result-rent ).
ENDMETHOD.
METHOD unknown_plot_type.
DATA(ls_result) = mo_cut->calculate( iv_plot_type = 'X' iv_area = 100
iv_water = abap_false iv_member = abap_false ).
cl_abap_unit_assert=>assert_equals( exp = {{p}}garden_rent=>c_reason-plot
act = ls_result-reason ).
cl_abap_unit_assert=>assert_equals( exp = CONV ty_amount( '0.00' ) act = ls_result-rent ).
ENDMETHOD.
METHOD area_out_of_range.
DATA(ls_result) = mo_cut->calculate( iv_plot_type = 'STD' iv_area = 9
iv_water = abap_false iv_member = abap_false ).
cl_abap_unit_assert=>assert_equals( exp = {{p}}garden_rent=>c_reason-area
act = ls_result-reason ).
ls_result = mo_cut->calculate( iv_plot_type = 'STD' iv_area = 501
iv_water = abap_false iv_member = abap_false ).
cl_abap_unit_assert=>assert_equals( exp = {{p}}garden_rent=>c_reason-area
act = ls_result-reason ).
ENDMETHOD.
ENDCLASS.