day11
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5 changed files with 161 additions and 11 deletions
4
Makefile
4
Makefile
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@ -1,5 +1,7 @@
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MMCFLAGS := \
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--infer-all --warn-unused-imports
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# this seems to break day7 for some absolutely bizarre reason
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# this seems to break day7 for some absolutely bizarre reason
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MMCFLAGS := # -s asm_fast.par.gc.stseg
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# -s asm_fast.par.gc.stseg
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all: aoc
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all: aoc
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4
aoc.m
4
aoc.m
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@ -8,8 +8,6 @@
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:- import_module basics.
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:- import_module basics.
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:- import_module string.
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:- import_module string.
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:- import_module list.
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:- import_module list.
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:- import_module exception.
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:- import_module univ.
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main(!IO) :- wrap_main(main2, !IO).
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main(!IO) :- wrap_main(main2, !IO).
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@ -48,6 +46,7 @@ run_day(Day, Part, Lines, Out) :-
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:- import_module day8.
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:- import_module day8.
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:- import_module day9.
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:- import_module day9.
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:- import_module day10.
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:- import_module day10.
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:- import_module day11.
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:- pred solution(int::in, sol::out(sol)) is semidet.
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:- pred solution(int::in, sol::out(sol)) is semidet.
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solution(1, day1.run).
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solution(1, day1.run).
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@ -60,3 +59,4 @@ solution(7, day7.run).
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solution(8, day8.run).
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solution(8, day8.run).
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solution(9, day9.run).
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solution(9, day9.run).
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solution(10, day10.run).
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solution(10, day10.run).
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solution(11, day11.run).
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16
basics.m
16
basics.m
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@ -9,7 +9,9 @@
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:- func part(part, T, T) = T.
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:- func part(part, T, T) = T.
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:- type answer ---> int(int); string(string); lines(list(string)).
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:- type answer --->
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int(int); string(string); lines(list(string));
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some [T] other(T).
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:- pred output(answer::in, io::di, io::uo) is det.
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:- pred output(answer::in, io::di, io::uo) is det.
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@ -39,10 +41,10 @@
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:- type chars == list(char).
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:- type chars == list(char).
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:- import_module int.
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:- func sum(list(int)) = int.
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:- func sum(list(int)) = int.
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:- func prod(list(int)) = int.
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:- func replicate(int, T) = list(T).
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:- func replicate(int, T) = list(T).
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:- func rev_sort(list(T)) = list(T).
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:- func map_index(func(int, T) = U, list(T)) = list(U).
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:- func map_index(func(int, T) = U, list(T)) = list(U).
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@ -64,6 +66,7 @@ part(two, _, Y) = Y.
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output(int(I), !IO) :- write_int(I, !IO), nl(!IO).
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output(int(I), !IO) :- write_int(I, !IO), nl(!IO).
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output(string(S), !IO) :- write_string(S, !IO), nl(!IO).
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output(string(S), !IO) :- write_string(S, !IO), nl(!IO).
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output(lines(Ss), !IO) :- write_list(Ss, "\n", write_string, !IO), nl(!IO).
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output(lines(Ss), !IO) :- write_list(Ss, "\n", write_string, !IO), nl(!IO).
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output(other(X), !IO) :- write(X, !IO), nl(!IO).
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ite(P, T, E) = X :- if P then X = T else X = E.
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ite(P, T, E) = X :- if P then X = T else X = E.
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@ -92,11 +95,18 @@ read_lines_need(File, Lines, !IO) :-
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need(Res, Lines).
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need(Res, Lines).
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:- import_module int.
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sum(Xs) = foldl(plus, Xs, 0).
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sum(Xs) = foldl(plus, Xs, 0).
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prod(Xs) = foldl(times, Xs, 1).
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replicate(N, X) = Out :-
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replicate(N, X) = Out :-
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if N = 0 then Out = [] else Out = [X | replicate(N - 1, X)].
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if N = 0 then Out = [] else Out = [X | replicate(N - 1, X)].
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:- import_module std_util.
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rev_sort(Xs) = sort(converse(ordering), Xs).
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:- func map_index(int, func(int, T) = U, list(T)) = list(U).
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:- func map_index(int, func(int, T) = U, list(T)) = list(U).
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map_index(_, _, []) = [].
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map_index(_, _, []) = [].
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map_index(I, F, [X | Xs]) = [F(I, X) | map_index(I+1, F, Xs)].
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map_index(I, F, [X | Xs]) = [F(I, X) | map_index(I+1, F, Xs)].
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5
day1.m
5
day1.m
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@ -6,10 +6,7 @@
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:- implementation.
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:- implementation.
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:- import_module list.
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:- import_module list.
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:- import_module std_util.
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:- import_module maybe.
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:- import_module maybe.
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:- import_module string.
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:- import_module int.
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:- pragma no_determinism_warning(run/3).
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:- pragma no_determinism_warning(run/3).
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run(one, Lines, int(det_head(go(Lines)))).
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run(one, Lines, int(det_head(go(Lines)))).
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@ -17,7 +14,7 @@ run(two, Lines, int(sum(take_upto(3, go(Lines))))).
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:- func go(lines) = list(int).
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:- func go(lines) = list(int).
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go(Lines) =
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go(Lines) =
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sort(converse(ordering), map(sum, gather(map(to_int_may, Lines)))).
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rev_sort(map(sum, gather(map(to_int_may, Lines)))).
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:- func gather(list(maybe(T))) = list(list(T)).
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:- func gather(list(maybe(T))) = list(list(T)).
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gather(Xs) = Ys :- gather(Xs, Ys).
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gather(Xs) = Ys :- gather(Xs, Ys).
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141
day11.m
Normal file
141
day11.m
Normal file
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@ -0,0 +1,141 @@
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:- module day11.
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:- interface.
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:- import_module basics.
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:- pred run(part::in, lines::in, answer::out) is cc_multi.
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:- implementation.
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:- import_module int.
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:- import_module string.
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:- import_module list.
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:- type item == int.
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:- type op ---> add(int); mul(int); square.
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:- type test == int.
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:- type monkey --->
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m(items :: list(item),
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op :: op, test :: test,
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if_true :: int, if_false :: int,
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inspected :: int).
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:- func inspected(monkey) = int.
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:- func test(monkey) = int.
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:- type monkeys == list(monkey).
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:- type divmod ---> dm(d :: int, m :: int).
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:- func op(op, item) = item.
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op(add(M), N) = M + N.
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op(mul(M), N) = M * N.
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op(square, N) = N * N.
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:- func op(op, divmod, item) = item.
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op(O, dm(D, M), N) = op(O, N) `div` D `mod` M.
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:- pred test(test::in, item::in) is semidet.
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test(M, N) :- N mod M = 0.
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:- import_module parsing_utils.
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eof(Src) --> not next_char(Src, _).
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:- pred kw(src::in, string::in, ps::in, ps::out) is semidet.
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kw(Src, Kw) --> ikeyword("abcdefghijklmnopqrstuvwxyz", Kw, Src, _).
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:- pred kws(src::in, list(string)::in, ps::in, ps::out) is semidet.
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kws(_, []) --> [].
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kws(Src, [Kw | Kws]) --> kw(Src, Kw), kws(Src, Kws).
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colon(Src) --> punct(":", Src, _).
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comma(Src) --> punct(",", Src, _).
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equal(Src) --> punct("=", Src, _).
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plus(Src) --> punct("+", Src, _).
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star(Src) --> punct("*", Src, _).
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:- pred monkeys(src::in, monkeys::out, ps::in, ps::out) is semidet.
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monkeys(Src, Ms) --> one_or_more(monkey, Src, Ms), eof(Src).
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:- pred monkey(src::in, monkey::out, ps::in, ps::out) is semidet.
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monkey(Src, m(reverse(I), O, P, T, F, 0)) -->
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kw(Src, "monkey"), int_literal_as_string(Src, _), colon(Src),
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kws(Src, ["starting", "items"]), colon(Src), items(Src, I),
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kw(Src, "operation"), colon(Src),
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kw(Src, "new"), equal(Src), op(Src, O),
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kw(Src, "test"), colon(Src), test(Src, P),
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kws(Src, ["if", "true"]), colon(Src), act(Src, T),
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kws(Src, ["if", "false"]), colon(Src), act(Src, F).
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:- pred items(src::in, list(item)::out, ps::in, ps::out) is semidet.
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items(Src, Is) --> comma_separated_list(int_literal, Src, Is).
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:- pred op(src::in, op::out, ps::in, ps::out) is semidet.
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op(Src, Op) -->
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kw(Src, "old"),
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(if star(Src) then
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(if int_literal(Src, N) then {Op = mul(N)}
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else kw(Src, "old"), {Op = square})
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else plus(Src), int_literal(Src, N), {Op = add(N)}).
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:- pred test(src::in, test::out, ps::in, ps::out) is semidet.
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test(Src, N) --> kws(Src, ["divisible", "by"]), int_literal(Src, N).
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:- pred act(src::in, int::out, ps::in, ps::out) is semidet.
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act(Src, N) --> kws(Src, ["throw", "to", "monkey"]), int_literal(Src, N).
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:- pred give(item::in, int::in, monkeys::in, monkeys::out) is det.
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give(_, _, [], _) :- die("list too short").
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give(I, N, [!.M | !.Ms], [!:M | !:Ms]) :-
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if N = 0 then !M^items := [I | !.M^items]
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else give(I, N - 1, !Ms).
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:- pred get(int::in, monkey::out, monkeys::in, monkeys::out) is semidet.
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get(N, X, [!.M | !.Ms], [!:M | !:Ms]) :-
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if N = 0 then
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X = !.M,
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!M^inspected := !.M^inspected + length(!.M^items),
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!M^items := []
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else
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get(N - 1, X, !Ms).
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:- pred step(divmod::in, monkey::in, int::in, monkeys::in, monkeys::out) is det.
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step(DM, M, I, !Ms) :-
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I2 = op(M^op, DM, I),
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(if test(M^test, I2) then
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give(I2, M^if_true, !Ms)
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else
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give(I2, M^if_false, !Ms)).
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:- pred turn(divmod::in, int::in, monkeys::in, monkeys::out) is semidet.
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turn(DM, I, !Ms) :-
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get(I, M, !Ms),
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foldr(step(DM, M), M^items, !Ms).
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:- pred round(divmod::in, int::in, monkeys::in, monkeys::out) is det.
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round(DM, I, !Ms) :-
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if turn(DM, I, !Ms) then round(DM, I + 1, !Ms) else true.
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:- pred round(divmod::in, monkeys::in, monkeys::out) is det.
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round(DM, !Ms) :- round(DM, 0, !Ms).
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:- pred rounds(divmod::in, int::in, monkeys::in, monkeys::out) is det.
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rounds(DM, N, !Ms) :-
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if N = 0 then true else
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round(DM, !Ms),
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rounds(DM, N - 1, !Ms).
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:- pred rounds(part::in, monkeys::in, monkeys::out) is det.
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rounds(Part, !Ms) :-
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DM = dm(part(Part, 3, 1), prod(map(test, !.Ms))),
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rounds(DM, part(Part, 20, 10_000), !Ms).
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run(Part, Lines, Out) :-
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parse(join_list("\n", Lines), one_or_more(monkey), Res),
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(if Res = ok(Monkeys) then
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rounds(Part, Monkeys, Final),
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Out = int(prod(take_upto(2, rev_sort(map(inspected, Final)))))
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else
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Out = 'new other'(Res)).
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