Day07 and Day08 both parts
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+57
-5
@@ -1,13 +1,65 @@
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defmodule Aoc2024.Day07 do
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def parse(input) do
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input |> String.split("\n", trim: true)
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input
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|> String.split("\n", trim: true)
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|> Enum.map(fn x -> x |> String.split(": ") |> Enum.into([]) end)
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|> Enum.map(fn [x, y] -> {String.to_integer(x), y |> String.split(" ") |> Enum.map(&String.to_integer/1)} end)
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|> Enum.into([])
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end
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def part1(_lines) do
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:todo1
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def part1(input) do
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input
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|> Enum.map(fn {target, numbers} -> Task.async(fn -> compute(target, numbers) end) end)
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|> Enum.map(&Task.await/1)
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|> Enum.filter(&Kernel.is_integer/1)
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|> Enum.sum()
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end
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def part2(_lines) do
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:todo2
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defp compute(target, numbers), do: compute(target, Enum.reverse(numbers), target)
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defp compute(_, _, current) when current < 0, do: nil
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defp compute(target, [], 0), do: target
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defp compute(_, _, 0), do: nil
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defp compute(_, [], _), do: nil
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defp compute(target, [x | numbers], current) do
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if rem(current, x) == 0 do
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if compute(target, numbers, div(current, x)) == target do
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target
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else
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compute(target, numbers, current - x)
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end
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else
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compute(target, numbers, current - x)
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end
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end
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def part2(input) do
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input
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|> Enum.map(fn {target, numbers} -> Task.async(fn -> compute2(target, numbers) end) end)
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|> Enum.map(&Task.await/1)
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|> Enum.filter(&Kernel.is_integer/1)
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|> Enum.sum()
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end
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defp compute2(target, numbers), do: compute2(target, Enum.reverse(numbers), target)
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defp compute2(_, _, current) when current < 0, do: nil
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defp compute2(target, [], 0), do: target
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defp compute2(_, _, 0), do: nil
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defp compute2(_, [], _), do: nil
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defp compute2(target, [x | numbers], current) do
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s_c = current |> Integer.to_string()
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s_x = x |> Integer.to_string()
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nc = s_c |> String.replace_suffix(s_x, "")
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cond do
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s_c |> String.ends_with?(s_x)
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and nc != ""
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and compute2(target, numbers, nc |> String.to_integer()) == target ->
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target
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rem(current, x) == 0 and compute2(target, numbers, div(current, x)) == target ->
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target
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true ->
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compute2(target, numbers, current - x)
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end
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end
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end
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+72
-5
@@ -1,13 +1,80 @@
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defmodule Aoc2024.Day08 do
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def parse(input) do
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input |> String.split("\n", trim: true)
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input = input |> String.trim() |> String.split("\n") |> Enum.map(&String.codepoints/1)
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w = Enum.count(Enum.at(input, 0))
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h = Enum.count(input)
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input =
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walk(input, w, h)
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|> Enum.reduce(%{}, fn {x, i, j}, m ->
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if Map.has_key?(m, x) do
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%{m | x => [{i, j} | m[x]]}
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else
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Map.put(m, x, [{i, j}])
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end
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end)
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{input, w, h}
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end
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def part1(_lines) do
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:todo1
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defp walk(t, w, h), do: walk(t, 0, 0, w, h, [])
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defp walk(_t, i, _j, _w, h, towers) when i == h, do: towers
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defp walk(t, i, j, w, h, towers) when j == w, do: walk(t, i + 1, 0, w, h, towers)
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defp walk(t, i, j, w, h, towers) do
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case t |> Enum.at(i) |> Enum.at(j) do
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"." -> walk(t, i, j + 1, w, h, towers)
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x -> walk(t, i, j + 1, w, h, [{x, i, j} | towers])
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end
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end
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def part2(_lines) do
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:todo2
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def part1({input, w, h}) do
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for {_x, all} <- input do
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Task.async(fn -> comb(&antinodes/4, all) end)
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end
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|> Enum.map(&Task.await/1)
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|> List.flatten()
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|> Enum.into(MapSet.new())
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|> Enum.filter(fn {i, j} -> i >= 0 and j >= 0 and i < h and j < w end)
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|> Enum.count()
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end
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defp comb(antinodes, [current | others]), do: comb(antinodes, others, current, others, [])
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defp comb(_antinodes, [_], _, [], res), do: res
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defp comb(antinodes, [current | others], _, [], res),
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do: comb(antinodes, others, current, others, res)
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defp comb(antinodes, others, {i1, j1} = current, [{i2, j2} | tail], res) do
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comb(antinodes, others, current, tail, [antinodes.(i1, j1, i2, j2) | res])
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end
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defp antinodes(i1, j1, i2, j2) do
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di = i2 - i1
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dj = j2 - j1
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[{i1 - di, j1 - dj}, {i2 + di, j2 + dj}]
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end
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def part2({input, w, h}) do
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for {_x, all} <- input do
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Task.async(fn -> comb(fn i1, j1, i2, j2 -> antinodes2(w, h, i1, j1, i2, j2) end, all) end)
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end
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|> Enum.map(&Task.await/1)
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|> List.flatten()
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|> Enum.into(MapSet.new())
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|> Enum.count()
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end
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defp antinodes2(w, h, i1, j1, i2, j2) do
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di = i2 - i1
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dj = j2 - j1
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Stream.iterate({i1, j1}, fn {i, j} -> {i + di, j + dj} end)
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|> Stream.take_while(fn {i, j} -> i >= 0 and j >= 0 and i < h and j < w end)
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|> Stream.concat(
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Stream.iterate({i2, j2}, fn {i, j} -> {i - di, j - dj} end)
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|> Stream.take_while(fn {i, j} -> i >= 0 and j >= 0 and i < h and j < w end)
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)
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|> Enum.into([])
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end
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end
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@@ -0,0 +1,6 @@
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defmodule TestDay08 do
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use ExUnit.Case
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test "name" do
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end
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end
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