horrible, unreadable spaghetti code. will refactor later
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2 changed files with 185 additions and 5 deletions
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@ -1,13 +1,193 @@
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use std::collections::HashSet;
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use std::process::abort;
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use shared::{Solution, Answer};
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pub struct Day10;
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impl Solution for Day10 {
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fn part_1(&self, input: &str) -> Answer {
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Answer::Unimplemented
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let width: i64 = input.lines().next().unwrap().len() as i64;
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let grid: Vec<_> = input.lines().collect::<Vec<&str>>().join("").chars().map(Pipes::from).collect();
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let animal = grid.iter().position(|x| x == &Pipes::Animal).unwrap();
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let mut seen: HashSet<usize> = HashSet::new();
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let mut len = 2;
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let mut current ;
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if grid[animal + 1] == Pipes::Horizontal || grid[animal + 1] == Pipes::EtoS || grid[animal + 1] == Pipes::NtoE {
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current = animal + 1;
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} else if grid[animal - 1] == Pipes::Horizontal || grid[animal - 1] == Pipes::WtoN || grid[animal - 1] == Pipes::StoW {
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current = animal - 1;
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} else { current = animal + width as usize }
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seen.insert(animal);
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seen.insert(current);
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loop {
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let next = traverse(&grid, current as i64, width);
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if next.is_none() { panic!() }
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let (next1, next2) = next.unwrap();
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if seen.contains(&next1) && seen.contains(&next2) {
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break;
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} else if !seen.contains(&next1) {
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current = next1;
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seen.insert(next1);
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len += 1;
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} else if !seen.contains(&next2) {
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current = next2;
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seen.insert(next2);
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len += 1;
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} else { panic!() }
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}
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Answer::from(len)
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}
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fn part_2(&self, input: &str) -> Answer {
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Answer::Unimplemented
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let width: usize = input.lines().next().unwrap().len();
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let mut grid: Vec<_> = input.lines().collect::<Vec<&str>>().join("").chars().map(Pipes::from).collect();
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let animal = grid.iter().position(|x| x == &Pipes::Animal).unwrap();
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replace_animal(&mut grid, animal, width);
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println!("{:?}", grid[animal]);
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let mut seen: HashSet<usize> = HashSet::new();
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let mut len = 2;
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let mut current ;
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if grid[animal + 1] == Pipes::Horizontal || grid[animal + 1] == Pipes::EtoS || grid[animal + 1] == Pipes::NtoE {
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current = animal + 1;
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} else if grid[animal - 1] == Pipes::Horizontal || grid[animal - 1] == Pipes::WtoN || grid[animal - 1] == Pipes::StoW {
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current = animal - 1;
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} else { current = animal + width as usize }
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seen.insert(animal);
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seen.insert(current);
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loop {
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let next = traverse(&grid, current as i64, width as i64);
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if next.is_none() { panic!() }
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let (next1, next2) = next.unwrap();
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if seen.contains(&next1) && seen.contains(&next2) {
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break;
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} else if !seen.contains(&next1) {
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current = next1;
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seen.insert(next1);
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len += 1;
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} else if !seen.contains(&next2) {
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current = next2;
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seen.insert(next2);
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} else { panic!() }
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}
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let mut parity = grid.chunks(width).map(|_| [0].repeat(width)).collect::<Vec<_>>();
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for (i, line) in grid.chunks(width).enumerate() {
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for (j, letter) in line.iter().enumerate() {
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if seen.contains(&(width * i + j)) {
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for k in j..width {
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parity[i][k] += match letter {
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Pipes::Vertical => 2, // using 2 and 1 instead of 1 and .5 for half parity, because integers
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Pipes::StoW => 1,
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Pipes::NtoE => 1,
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Pipes::EtoS => -1,
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Pipes::WtoN => -1,
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_ => 0
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}
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}
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}
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}
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}
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for i in seen {
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parity[i / width][i % width] = 0;
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}
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let mut enclosed = 0;
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for line in parity {
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enclosed += line.iter().map(|x| (x % 4 / 2)).map(i32::abs).sum::<i32>();
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println!("{:?}", line);
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}
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Answer::from(enclosed)
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}
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}
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#[derive(Debug, PartialEq, Eq)]
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enum Pipes {
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Ground,
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Vertical,
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Horizontal,
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WtoN,
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NtoE,
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EtoS,
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StoW,
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Animal
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}
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impl From<char> for Pipes {
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fn from(value: char) -> Self {
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match value {
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'|' => Pipes::Vertical,
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'-' => Pipes::Horizontal,
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'J' => Pipes::WtoN,
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'L' => Pipes::NtoE,
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'F' => Pipes::EtoS,
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'7' => Pipes::StoW,
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'.' => Pipes::Ground,
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'S' => Pipes::Animal,
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_ => unreachable!()
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}
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}
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}
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fn traverse(grid: &Vec<Pipes>, current: i64, width: i64) -> Option<(usize, usize)> {
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let next1 = current + match grid[current as usize] {
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Pipes::Vertical => -width,
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Pipes::Horizontal => -1,
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Pipes::WtoN => -1,
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Pipes::NtoE => -width,
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Pipes::EtoS => 1,
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Pipes::StoW => width,
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Pipes::Animal => 0,
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Pipes::Ground => unreachable!()
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};
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let next2 = current + match grid[current as usize] {
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Pipes::Vertical => width,
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Pipes::Horizontal => 1,
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Pipes::WtoN => -width,
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Pipes::NtoE => 1,
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Pipes::EtoS => width,
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Pipes::StoW => -1,
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Pipes::Animal => 0,
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Pipes::Ground => unreachable!()
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};
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// println!("{next1}, {next2}: Current={current}, Width={width}");
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// if next1 - current == -1 || next1 - current == width || next1 == -1 || next1 == (grid.len() as i64) { return None };
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// if next2 - current == -1 || next2 - current == width || next2 == -1 || next2 == (grid.len() as i64) { return None };
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Some((next1 as usize, next2 as usize))
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}
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fn replace_animal(grid: &mut Vec<Pipes>, animal: usize, width: usize) {
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let east = grid[animal + 1] == Pipes::Horizontal || grid[animal + 1] == Pipes::WtoN || grid[animal + 1] == Pipes::StoW;
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let north = grid[animal - width] == Pipes::Vertical || grid[animal - width] == Pipes::WtoN || grid[animal - width] == Pipes::NtoE;
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let west = grid[animal - 1] == Pipes::Horizontal || grid[animal - 1] == Pipes::WtoN || grid[animal - 1] == Pipes::StoW;
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let south = grid[animal + width] == Pipes::Vertical || grid[animal + width] == Pipes::StoW || grid[animal + width] == Pipes::EtoS;
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match (east, north, south, west) {
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(false, false, true, true) => grid[animal] = Pipes::StoW,
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(false, true, true, false) => grid[animal] = Pipes::Vertical,
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(true, true, false, false) => grid[animal] = Pipes::NtoE,
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(false, true, false, true) => grid[animal] = Pipes::WtoN,
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(true, false, true, false) => grid[animal] = Pipes::EtoS,
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(true, false, false, true) => grid[animal] = Pipes::Horizontal,
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_ => unreachable!()
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}
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}
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