fix hebrew language voice
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1 changed files with 0 additions and 157 deletions
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:- op('==', xfy, 500).
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version(0).
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%Provided by VnMedia VnrMedia@gmail.com
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%Speaked by Shai Ben-yaakov
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% before each announcement (beep)
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preamble - [].
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%% TURNS
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turn('left', ['turn_left-e.ogg']).
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turn('left_sh', ['turn_sharp_left-e.ogg']).
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turn('left_sl', ['turn_slight_left-e.ogg']).
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turn('right', ['turn_right-e.ogg']).
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turn('right_sh', ['turn_sharp_right-e.ogg']).
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turn('right_sl', ['turn_slight_right-e.ogg']).
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turn('right_keep', ['keep_right-e.ogg']).
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turn('left_keep', ['keep_left-e.ogg']).
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prepare_turn(Turn, Dist) == ['Prepare_to-a.ogg', D, M] :-
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distance(Dist) == D, turn(Turn, M).
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turn(Turn, Dist) == ['after.ogg', D, M] :-
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distance(Dist) == D, turn(Turn, M).
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turn(Turn) == M :- turn(Turn, M).
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prepare_make_ut(Dist) == ['Prepare_to-a.ogg', D,'turn_back-e.ogg'] :-
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distance(Dist) == D.
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prepare_roundabout(Dist) == ['prepare_to-enter.ogg', 'after.ogg', D] :-
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distance(Dist) == D.
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make_ut(Dist) == ['after.ogg', D, 'turn_back-e.ogg'] :-
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distance(Dist) == D.
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make_ut == ['turn_back-e.ogg'].
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make_ut_wp == ['when_possible_please_make_a_u_turn.ogg'].
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roundabout(Dist, _Angle, Exit) == ['after.ogg', D, 'enter_the_roundabout-e.ogg', 'and_take.ogg', 'exit-e.ogg', E] :- distance(Dist) == D, nth(Exit, E).
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roundabout(_Angle, Exit) == ['taking.ogg', 'exit-e.ogg', E] :- nth(Exit, E).
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and_arrive_destination == ['arrive_at_your_destination-e.ogg']. % Miss and?
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reached_destination == ['you_have_reached_your_destination.ogg'].
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and_arrive_intermediate == ['arrive_at_viapoint-e.ogg'].
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reached_intermediate == ['you_have_reached_a_viapoint.ogg'].
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then == ['then.ogg'].
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bear_right == ['keep_right-e.ogg'].
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bear_left == ['keep_left-e.ogg'].
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route_recalc(Dist) == ['recalc.ogg', D]:- distance(Dist) == D. %nothing to said possibly beep?
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route_new_calc(Dist) == ['the_trip_is_about.ogg', D] :- distance(Dist) == D. % nothing to said possibly beep?
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location_lost == ['gps_signal_lost.ogg'].
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go_ahead(Dist) == ['Follow-the-road-for.ogg', D]:- distance(Dist) == D.
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go_ahead == ['continue_straight-e.ogg'].
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%%
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nth(1, '1st.ogg').
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nth(2, '2nd.ogg').
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nth(3, '3rd.ogg').
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nth(4, '4th.ogg').
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nth(5, '5th.ogg').
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nth(6, '6th.ogg').
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nth(7, '7th.ogg').
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nth(8, '8th.ogg').
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nth(9, '9th.ogg').
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nth(10, '10th.ogg').
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nth(11, '11th.ogg').
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nth(12, '12th.ogg').
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nth(13, '13th.ogg').
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nth(14, '14th.ogg').
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nth(15, '15th.ogg').
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nth(16, '16th.ogg').
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nth(17, '17th.ogg').
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%%% distance measure
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distance(Dist) == T :- Dist < 1000, dist(Dist, F), append(F, 'meters-e.ogg',T).
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dist(D, ['20.ogg']) :- D < 30, !.
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dist(D, ['30.ogg']) :- D < 40, !.
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dist(D, ['40.ogg']) :- D < 50, !.
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dist(D, ['50.ogg']) :- D < 60, !.
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dist(D, ['60.ogg']) :- D < 70, !.
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dist(D, ['70.ogg']) :- D < 80, !.
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dist(D, ['80.ogg']) :- D < 90, !.
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dist(D, ['90.ogg']) :- D < 100, !.
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dist(D, ['100.ogg']) :- D < 110, !.
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dist(D, ['100.ogg','and_10.ogg']) :- D < 120, !.
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dist(D, ['100.ogg', S]) :- D < 200, T is D - 100, dist(T, [S]), !.
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dist(D, ['200.ogg']) :- D < 210, !.
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dist(D, ['200.ogg','and_10.ogg']) :- D < 220, !.
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dist(D, ['200.ogg', S]) :- D < 300, T is D - 200, dist(T, [S]), !.
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dist(D, ['300.ogg']) :- D < 310, !.
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dist(D, ['300.ogg','and_10.ogg']) :- D < 320, !.
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dist(D, ['300.ogg', S]) :- D < 400, T is D - 300, dist(T, [S]), !.
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dist(D, ['400.ogg']) :- D < 410, !.
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dist(D, ['400.ogg','and_10.ogg']) :- D < 420, !.
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dist(D, ['400.ogg', S]) :- D < 500, T is D - 400, dist(T, [S]), !.
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dist(D, ['500.ogg']) :- D < 510, !.
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dist(D, ['500.ogg','and_10.ogg']) :- D < 520, !.
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dist(D, ['500.ogg', S]) :- D < 600, T is D - 500, dist(T, [S]), !.
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dist(D, ['600.ogg']) :- D < 610, !.
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dist(D, ['600.ogg','and_10.ogg']) :- D < 620, !.
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dist(D, ['600.ogg', S]) :- D < 700, T is D - 600, dist(T, [S]), !.
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dist(D, ['700.ogg']) :- D < 710, !.
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dist(D, ['700.ogg','and_10.ogg']) :- D < 720, !.
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dist(D, ['700.ogg', S]) :- D < 800, T is D - 700, dist(T, [S]), !.
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dist(D, ['800.ogg']) :- D < 810, !.
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dist(D, ['800.ogg','and_10.ogg']) :- D < 820, !.
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dist(D, ['800.ogg', S]) :- D < 900, T is D - 800, dist(T, [S]), !.
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dist(D, ['900.ogg']) :- D < 910, !.
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dist(D, ['900.ogg','and_10.ogg']) :- D < 920, !.
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dist(D, ['900.ogg', S]) :- D < 1000, T is D - 900, dist(T, [S]), !.
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distance(Dist) == ['more_than.ogg', '1.ogg', 'kilometer-e.ogg'] :- Dist < 1500.
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distance(Dist) == ['more_than.ogg', '2.ogg', 'kilometers-e.ogg'] :- Dist < 3000.
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distance(Dist) == ['more_than.ogg', '3.ogg', 'kilometers-e.ogg'] :- Dist < 4000.
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distance(Dist) == ['more_than.ogg', '4.ogg', 'kilometers-e.ogg'] :- Dist < 5000.
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distance(Dist) == ['more_than.ogg', '5.ogg', 'kilometers-e.ogg'] :- Dist < 6000.
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distance(Dist) == ['more_than.ogg', '6.ogg', 'kilometers-e.ogg'] :- Dist < 7000.
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distance(Dist) == ['more_than.ogg', '7.ogg', 'kilometers-e.ogg'] :- Dist < 8000.
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distance(Dist) == ['more_than.ogg', '8.ogg', 'kilometers-e.ogg'] :- Dist < 9000.
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distance(Dist) == ['more_than.ogg', '9.ogg', 'kilometers-e.ogg'] :- Dist < 10000.
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distance(Dist) == ['more_than.ogg', '10.ogg', 'kilometers-e.ogg'] :- Dist < 11000.
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distance(Dist) == ['more_than.ogg', '11.ogg', 'kilometers-e.ogg'] :- Dist < 12000.
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distance(Dist) == ['more_than.ogg', '12.ogg', 'kilometers-e.ogg'] :- Dist < 13000.
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distance(Dist) == ['more_than.ogg', '13.ogg', 'kilometers-e.ogg'] :- Dist < 14000.
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distance(Dist) == ['more_than.ogg', '14.ogg', 'kilometers-e.ogg'] :- Dist < 15000.
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distance(Dist) == ['more_than.ogg', '15.ogg', 'kilometers-e.ogg'] :- Dist < 16000.
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distance(Dist) == ['more_than.ogg', '16.ogg', 'kilometers-e.ogg'] :- Dist < 17000.
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distance(Dist) == ['more_than.ogg', '17.ogg', 'kilometers-e.ogg'] :- Dist < 18000.
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distance(Dist) == ['more_than.ogg', '18.ogg', 'kilometers-e.ogg'] :- Dist < 19000.
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distance(Dist) == ['more_than.ogg', '19.ogg', 'kilometers-e.ogg']
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:- Dist < 20000.
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distance(Dist) == ['more_than.ogg', X, 'kilometers-e.ogg'] :- D is Dist/1000, dist(D, X).
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%% resolve command main method
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%% if you are familar with Prolog you can input specific to the whole mechanism,
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%% by adding exception cases.
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flatten(X, Y) :- flatten(X, [], Y), !.
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flatten([], Acc, Acc).
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flatten([X|Y], Acc, Res):-
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flatten(Y, Acc, R), flatten(X, R, Res).
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flatten(X, Acc, [X|Acc]).
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resolve(X, Y) :- resolve_impl(X,Z), flatten(Z, Y).
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resolve_impl([],[]).
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resolve_impl([X|Rest], List) :- resolve_impl(Rest, Tail), ((X == L) -> append(L, Tail, List); List = Tail).
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