Watch
1
0
Fork
You've already forked advent-of-code
0
advent-of-code/2020/day16/day16.ex
2021-12-04 21:20:57 -08:00

146 lines
3.5 KiB
Elixir

defmodule Day16 do
defp read_input do
Path.expand('input', Path.dirname(__ENV__.file))
|> File.read!()
end
defp test_input do
"""
class: 0-1 or 4-19
row: 0-5 or 8-19
seat: 0-13 or 16-19
your ticket:
11,12,13
nearby tickets:
3,9,18
15,1,5
5,14,9
"""
end
defp parse_input(text) do
[fields, mine, nearby] = String.split(text, "\n\n", trim: true)
[_, my_ticket] = String.split(mine, "\n", trim: true)
[_ | nearby_tickets] = String.split(nearby, "\n", trim: true)
{
parse_fields(fields),
parse_ticket(my_ticket),
Enum.map(nearby_tickets, &parse_ticket/1)
}
end
@field_pattern ~r/^(?<name>.*): (?<range1_lo>\d+)-(?<range1_hi>\d+) or (?<range2_lo>\d+)-(?<range2_hi>\d+)$/
defp parse_fields(text) do
String.split(text, "\n")
|> Enum.map(fn line ->
%{
"name" => name,
"range1_lo" => range1_lo,
"range1_hi" => range1_hi,
"range2_lo" => range2_lo,
"range2_hi" => range2_hi
} = Regex.named_captures(@field_pattern, line)
r1_lo = String.to_integer(range1_lo)
r1_hi = String.to_integer(range1_hi)
r2_lo = String.to_integer(range2_lo)
r2_hi = String.to_integer(range2_hi)
{name, r1_lo..r1_hi, r2_lo..r2_hi}
end)
end
defp parse_ticket(line) do
String.split(line, ",", trim: true)
|> Enum.map(&String.to_integer/1)
end
defp validate(fields, ticket) do
Enum.reject(ticket, fn value ->
Enum.any?(fields, &can_match?(&1, value))
end)
|> Enum.sum()
end
defp can_match?({_name, r1, r2}, value) do
in_range?(r1, value) or in_range?(r2, value)
end
defp in_range?(lo..hi, val) do
lo <= val and val <= hi
end
def part1 do
{fields, _mine, nearby} = read_input() |> parse_input()
Enum.map(nearby, &validate(fields, &1))
|> Enum.sum()
end
def part2 do
{fields, mine, nearby} = read_input() |> parse_input()
Enum.filter(nearby, &(validate(fields, &1) == 0))
|> columns(Enum.count(fields))
|> deduce(fields)
|> departure(mine)
end
defp departure(mapping, ticket) do
Enum.reduce(mapping, 1, fn {name, idx}, product ->
if String.starts_with?(name, "departure") do
product * Enum.at(ticket, idx)
else
product
end
end)
end
defp columns(tickets, field_count) do
Enum.reduce(tickets, List.duplicate([], field_count), fn ticket, columns ->
Enum.zip(ticket, columns)
|> Enum.map(fn {value, list} -> [value | list] end)
end)
end
defp deduce(columns, fields) do
possible =
Enum.map(columns, fn values ->
Enum.filter(fields, fn field ->
Enum.all?(values, &can_match?(field, &1))
end)
end)
constrain(%{}, Enum.with_index(possible))
end
defp constrain(known, []), do: known
defp constrain(known, possible) do
{solved, unsolved} =
Enum.split_with(possible, fn {fields, _idx} ->
Enum.count(fields) == 1
end)
solved_names = Enum.map(solved, fn {[{name, _r1, _r2}], _idx} -> name end) |> MapSet.new()
new_possible =
Enum.map(unsolved, fn {fields, idx} ->
new_fields =
Enum.reject(fields, fn {name, _, _} ->
MapSet.member?(solved_names, name)
end)
{new_fields, idx}
end)
new_known = Enum.into(solved, known, fn {[{name, _r1, _r2}], idx} -> {name, idx} end)
constrain(new_known, new_possible)
end
end
Day16.part1() |> IO.inspect()
Day16.part2() |> IO.inspect()