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97day14.erl
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-module(day14). |
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-export([solve/1]). |
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solve(Input) -> |
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{part1(Input), none}. |
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part1(Input) -> simulate(parse_map(Input), 0). |
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parse_map(Input) -> |
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LineSegments = parse_instructions(Input), |
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ChoppedSegments = chop_segments(LineSegments, []), |
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SegmentMap = maps:groups_from_list(fun({X, _, _}) -> X end, fun({_X, YStart, YEnd}) -> {YStart, YEnd} end, ChoppedSegments), |
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maps:map(fun (_Key, Segments) -> lists:foldl(fun rset_append/2, rset_new(), Segments) end, SegmentMap). |
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parse_instructions(Input) -> |
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lists:foldl(fun parse_instruction/2, [], binary:split(Input, <<$\n>>, [global, trim_all])). |
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parse_instruction(Line, Acc) -> |
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{X1, <<$,, Rest0/binary>>} = parse_int(Line), |
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{Y1, Rest1} = parse_int(Rest0), |
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parse_instruction0(Rest1, {X1, Y1}, Acc). |
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parse_instruction0(<<>>, _Point, Acc) -> Acc; |
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parse_instruction0(<<" -> ", RestIn/binary>>, Point, Acc) -> |
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{X, <<$,, Temp/binary>>} = parse_int(RestIn), |
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{Y, RestOut} = parse_int(Temp), |
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NewPoint = {X, Y}, |
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parse_instruction0(RestOut, NewPoint, [{Point, NewPoint}|Acc]). |
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parse_int(<<$-, Rest/binary>>) -> |
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{AbsoluteValue, Binary} = parse_int0(Rest, 0), |
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{-1 * AbsoluteValue, Binary}; |
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parse_int(Binary) -> |
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parse_int0(Binary, 0). |
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parse_int0(<<Digit, Rest/binary>>, Acc) when Digit >= $0 andalso Digit =< $9 -> |
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parse_int0(Rest, Acc*10 + Digit - $0); |
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parse_int0(Binary, Acc) when is_binary(Binary) -> {Acc, Binary}. |
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chop_segments([], Acc) -> Acc; |
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chop_segments([{{X, Y1}, {X, Y2}} | Rest], Acc) -> chop_segments(Rest, [{X, min(Y1, Y2), max(Y1, Y2)} | Acc]); |
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chop_segments([{{X1, Y}, {X2, Y}} | Rest], Acc) -> chop_segments(Rest, [{X, Y, Y} || X <- lists:seq(min(X1, X2), max(X1, X2))] ++ Acc). |
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simulate(State, SandCount) -> |
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case attempt_place(State, {500, 0}) of |
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{X, Y} -> simulate(State#{X := rset_append({Y, Y}, maps:get(X, State))}, SandCount+1); |
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falling -> SandCount |
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end. |
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% returns true if there is a block in that spot |
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test_spot(State, X, Y) -> |
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case State of |
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#{X := Column} -> rset_contains(Y, Column); |
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_ -> false |
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end. |
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attempt_place(State, {X, Y}) -> |
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Column = maps:get(X, State, []), |
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case fast_forward(Y, Column) of |
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[{Floor, _End} | _Rest] -> |
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case test_spot(State, X-1, Floor) of |
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false -> attempt_place(State, {X-1, Floor}); % can optimize by shrinking active state here |
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true -> |
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case test_spot(State, X+1, Floor) of |
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false -> attempt_place(State, {X+1, Floor}); % can optimize by shrinking active state here |
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true -> {X, Floor-1} |
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end |
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end; |
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[] -> falling |
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end. |
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fast_forward(_Any, []) -> []; |
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fast_forward(Item, [{_,End}|Rest]) when Item > End -> fast_forward(Item, Rest); |
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fast_forward(_Item, List) -> List. |
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rset_new() -> []. |
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% rangeset is a sorted set of discrete ranges. Adjacent ranges are merged. |
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rset_append(Entry, []) -> [Entry]; |
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rset_append({_, End} = Entry, [{HeadStart, _} | _] = Set) when End < HeadStart - 1 -> [Entry | Set]; |
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rset_append({Start, _} = Entry, [{_, HeadEnd} = Head | Rest]) when Start > HeadEnd + 1 -> [ Head | rset_append(Entry, Rest)]; |
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rset_append({Start, End}, [{HeadStart, HeadEnd} | Rest]) -> rset_append({min(Start, HeadStart), max(End, HeadEnd)}, Rest). |
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rset_contains(Item, []) -> false; |
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rset_contains(Item, [{Start, _}|Rest]) when Item < Start -> false; |
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rset_contains(Item, [{_, End}|Rest]) when Item > End -> rset_contains(Item, Rest); |
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rset_contains(_Item, _Rest) -> true. |
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rset_remove1(_Point, []) -> []; |
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rset_remove1(Point, [{Start, _End} | _Rest] = Set) when Point < Start -> Set; |
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rset_remove1(Point, [{_Start, End} = Head | Rest]) when Point > End -> [Head | rset_remove1(Point, Rest)]; |
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rset_remove1(Point, [{Point, Point} | Rest]) -> Rest; |
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rset_remove1(Point, [{Point, End} | Rest]) -> [{Point+1, End} | Rest]; |
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rset_remove1(Point, [{Start, Point} | Rest]) -> [{Start, Point-1} | Rest]; |
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rset_remove1(Point, [{Start, End} | Rest]) -> [{Start, Point-1}, {Point+1, End} | Rest]. |
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