day 8 done had to cheat for part 2 because brute force was not good even though algorithm was
This commit is contained in:
13
2023/day-8/Cargo.toml
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13
2023/day-8/Cargo.toml
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[package]
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name = "day-8"
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version.workspace = true
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edition.workspace = true
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authors.workspace = true
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repository.workspace = true
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# See more keys and their definitions at https://doc.rust-lang.org/cargo/reference/manifest.html
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[dependencies]
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nom.workspace = true
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itertools.workspace = true
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rstest = {workspace = true}
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4
2023/day-8/src/lib.rs
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4
2023/day-8/src/lib.rs
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pub mod part1;
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pub use crate::part1::*;
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pub mod part2;
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pub use crate::part2::*;
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12
2023/day-8/src/main.rs
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12
2023/day-8/src/main.rs
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#![warn(clippy::all, clippy::pedantic)]
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use day_8::part1;
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use day_8::part2;
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fn main() {
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let input = include_str!("./input.txt");
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let part1_result = part1(input);
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println!("part 1: {part1_result}");
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let part2_result = part2(input);
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println!("part 2: {part2_result}");
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}
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134
2023/day-8/src/part1.rs
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134
2023/day-8/src/part1.rs
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#![warn(clippy::all, clippy::pedantic)]
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use nom::{
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branch::alt,
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bytes::complete::tag,
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character::complete,
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multi::{many1, separated_list1},
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sequence::{delimited, pair, separated_pair, tuple},
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IResult, Parser,
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};
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use std::collections::BTreeMap;
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#[derive(Debug, Copy, Clone)]
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enum Direction {
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Left,
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Right,
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}
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#[derive(Debug, Clone)]
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struct Branches {
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pub left: String,
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pub right: String,
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}
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impl Branches {
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fn choose(&self, direction: Direction) -> &str {
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match direction {
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Direction::Left => &self.left,
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Direction::Right => &self.right,
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}
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}
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}
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/// day 4 part 1 of aoc 2023
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///
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/// # Arguments
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/// - input the input for today's puzzle
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///
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/// # Panics
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/// panics whne it cannot parse the input OR when ever the number of game numbers is greater than
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/// usize
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#[must_use]
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pub fn part1(input: &str) -> String {
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let (_, (steps, branches)) = parse_input(input).expect("aoc expects valid input");
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let mut current = "AAA";
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let mut count = 0_usize;
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for x in steps.iter().cycle() {
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if current == "ZZZ" {
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break;
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}
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current = branches.get(current).expect("aoc").choose(*x);
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count += 1;
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}
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count.to_string()
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}
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fn parse_directions(input: &str) -> IResult<&str, Vec<Direction>> {
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let (input, directions) = many1(alt((
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tag("L").map(|_| Direction::Left),
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tag("R").map(|_| Direction::Right),
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)))(input)?;
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let (input, _) = complete::line_ending(input)?;
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Ok((input, directions))
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}
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fn parse_branches(input: &str) -> IResult<&str, Branches> {
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let (input, (left, right)) = delimited(
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pair(tag("("), complete::space0),
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separated_pair(
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complete::alpha1,
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pair(tag(","), complete::space1),
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complete::alpha1,
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),
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pair(complete::space0, tag(")")),
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)(input)?;
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let left = left.to_string();
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let right = right.to_string();
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Ok((input, Branches { left, right }))
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}
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fn parse_nodes(input: &str) -> IResult<&str, (String, Branches)> {
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let (input, (node, branches)) = separated_pair(
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complete::alpha1,
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tuple((complete::space1, tag("="), complete::space1)),
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parse_branches,
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)(input)?;
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Ok((input, (node.to_string(), branches)))
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}
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fn parse_node_tree(input: &str) -> IResult<&str, BTreeMap<String, Branches>> {
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let (input, map) = separated_list1(complete::line_ending, parse_nodes)(input)?;
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let map = map.into_iter().collect();
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Ok((input, map))
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}
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fn parse_input(input: &str) -> IResult<&str, (Vec<Direction>, BTreeMap<String, Branches>)> {
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let (input, x) =
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separated_pair(parse_directions, complete::line_ending, parse_node_tree)(input)?;
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Ok((input, x))
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}
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#[cfg(test)]
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mod test {
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use super::*;
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use rstest::rstest;
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#[rstest]
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#[case(
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"RL
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AAA = (BBB, CCC)
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BBB = (DDD, EEE)
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CCC = (ZZZ, GGG)
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DDD = (DDD, DDD)
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EEE = (EEE, EEE)
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GGG = (GGG, GGG)
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ZZZ = (ZZZ, ZZZ)",
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"2"
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)]
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#[case(
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"LLR
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AAA = (BBB, BBB)
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BBB = (AAA, ZZZ)
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ZZZ = (ZZZ, ZZZ)",
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"6"
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)]
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fn part1_works(#[case] input: &str, #[case] expected: &str) {
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let result = part1(input);
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assert_eq!(result, expected);
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}
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}
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160
2023/day-8/src/part2.rs
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160
2023/day-8/src/part2.rs
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#![warn(clippy::all, clippy::pedantic)]
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use nom::{
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branch::alt,
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bytes::complete::tag,
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character::complete,
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multi::{many1, separated_list1},
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sequence::{delimited, pair, separated_pair, tuple},
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IResult, Parser,
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};
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use std::collections::BTreeMap;
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#[derive(Debug, Copy, Clone)]
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enum Direction {
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Left,
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Right,
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}
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struct Branches {
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pub left: String,
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pub right: String,
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}
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impl Branches {
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fn choose(&self, direction: Direction) -> &str {
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match direction {
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Direction::Left => &self.left,
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Direction::Right => &self.right,
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}
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}
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}
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/// day 4 part 1 of aoc 2023
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///
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/// # Arguments
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/// - input the input for today's puzzle
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///
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/// # Panics
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/// panics whne it cannot parse the input OR when ever the number of game numbers is greater than
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/// usize
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#[must_use]
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pub fn part2(input: &str) -> String {
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let (_, (steps, branches)) = parse_input(input).expect("aoc expects valid input");
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let starting_node: Vec<&str> = branches
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.keys()
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.map(String::as_str)
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.filter(|x| x.ends_with('A'))
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.collect();
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let cycles = starting_node
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.iter()
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.map(|node| {
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let mut visited_nodes = vec![*node];
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let mut current = *node;
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steps
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.iter()
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.cycle()
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.enumerate()
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.find_map(|(i, direction)| {
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let new = branches.get(current).expect("aoc1").choose(*direction);
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if new.ends_with('Z') {
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return Some(i + 1);
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}
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visited_nodes.push(new);
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dbg!(current = new);
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None
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})
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.expect("aoc4")
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})
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.collect::<Vec<_>>();
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lcm(&cycles).to_string()
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}
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fn lcm(nums: &[usize]) -> usize {
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if nums.len() == 1 {
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return nums[0];
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}
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let a = nums[0];
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let b = lcm(&nums[1..]);
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a * b / gcd(a, b)
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}
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fn gcd(a: usize, b: usize) -> usize {
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if b == 0 {
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return a;
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}
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gcd(b, a % b)
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}
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fn parse_directions(input: &str) -> IResult<&str, Vec<Direction>> {
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let (input, directions) = many1(alt((
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tag("L").map(|_| Direction::Left),
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tag("R").map(|_| Direction::Right),
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)))(input)?;
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let (input, _) = complete::line_ending(input)?;
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Ok((input, directions))
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}
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fn parse_branches(input: &str) -> IResult<&str, Branches> {
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let (input, (left, right)) = delimited(
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pair(tag("("), complete::space0),
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separated_pair(
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complete::alphanumeric1,
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pair(tag(","), complete::space1),
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complete::alphanumeric1,
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),
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pair(complete::space0, tag(")")),
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)(input)?;
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let left = left.to_string();
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let right = right.to_string();
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Ok((input, Branches { left, right }))
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}
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fn parse_nodes(input: &str) -> IResult<&str, (String, Branches)> {
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let (input, (node, branches)) = separated_pair(
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complete::alphanumeric1,
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tuple((complete::space1, tag("="), complete::space1)),
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parse_branches,
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)(input)?;
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Ok((input, (node.to_string(), branches)))
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}
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fn parse_node_tree(input: &str) -> IResult<&str, BTreeMap<String, Branches>> {
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let (input, map) = separated_list1(complete::line_ending, parse_nodes)(input)?;
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let map = map.into_iter().collect();
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Ok((input, map))
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}
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fn parse_input(input: &str) -> IResult<&str, (Vec<Direction>, BTreeMap<String, Branches>)> {
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let (input, x) =
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separated_pair(parse_directions, complete::line_ending, parse_node_tree)(input)?;
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Ok((input, x))
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}
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#[cfg(test)]
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mod test {
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use super::*;
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use rstest::rstest;
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#[rstest]
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#[case(
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"LR
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11A = (11B, XXX)
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11B = (XXX, 11Z)
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11Z = (11B, XXX)
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22A = (22B, XXX)
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22B = (22C, 22C)
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22C = (22Z, 22Z)
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22Z = (22B, 22B)
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XXX = (XXX, XXX)",
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"6"
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)]
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fn part2_works(#[case] input: &str, #[case] expected: &str) {
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let result = part2(input);
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assert_eq!(result, expected);
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}
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}
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