day10: complete solution
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								10/Cargo.lock
									
									
									
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								10/Cargo.lock
									
									
									
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# This file is automatically @generated by Cargo.
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# It is not intended for manual editing.
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version = 3
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[[package]]
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name = "day10"
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version = "0.1.0"
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dependencies = [
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 "grid",
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 "itertools",
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]
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[[package]]
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name = "either"
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version = "1.13.0"
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source = "registry+https://github.com/rust-lang/crates.io-index"
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checksum = "60b1af1c220855b6ceac025d3f6ecdd2b7c4894bfe9cd9bda4fbb4bc7c0d4cf0"
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[[package]]
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name = "grid"
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version = "0.1.0"
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[[package]]
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name = "itertools"
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version = "0.13.0"
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source = "registry+https://github.com/rust-lang/crates.io-index"
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checksum = "413ee7dfc52ee1a4949ceeb7dbc8a33f2d6c088194d9f922fb8318faf1f01186"
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dependencies = [
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 "either",
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]
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										8
									
								
								10/Cargo.toml
									
									
									
									
									
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										8
									
								
								10/Cargo.toml
									
									
									
									
									
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[package]
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name = "day10"
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version = "0.1.0"
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edition = "2021"
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[dependencies]
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grid = { version = "0.1.0", path = "../libs/grid" }
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itertools = "0.13.0"
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										153
									
								
								10/src/main.rs
									
									
									
									
									
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								10/src/main.rs
									
									
									
									
									
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use std::fs::File;
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use std::io::{BufRead, BufReader, Lines};
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use std::time::{Duration, Instant};
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use grid::Grid;
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use itertools::Itertools;
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// BOILERPLATE
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type InputIter = Lines<BufReader<File>>;
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pub fn get_input() -> InputIter {
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    let f = File::open("input").unwrap();
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    let br = BufReader::new(f);
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    br.lines()
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}
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fn duration_format(duration: Duration) -> String {
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    match duration.as_secs_f64() {
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        x if x > 1.0 => format!("{:.3}s", x),
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        x if x > 0.010 => format!("{:.3}ms", x * 1e3),
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        x => format!("{:.3}us", x * 1e6),
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    }
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}
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fn main() {
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    let input = get_input();
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    let start = Instant::now();
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    let ans1 = problem1(input);
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    let duration1 = start.elapsed();
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    println!("Problem 1 solution: {} [{}]", ans1, duration_format(duration1));
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    let input = get_input();
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    let start = Instant::now();
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    let ans2 = problem2(input);
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    let duration2 = start.elapsed();
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    println!("Problem 2 solution: {} [{}]", ans2, duration_format(duration2));
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    println!("Total duration: {}", duration_format(duration1 + duration2));
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}
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struct TrailMap {
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    map: Grid<u8>,
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}
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impl<T: BufRead> From<Lines<T>> for TrailMap {
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    fn from(input: Lines<T>) -> Self {
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        Self { map: input.into() }
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    }
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}
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impl TrailMap {
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    fn trailheads(&self) -> Vec<(i64, i64)> {
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        self.map
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            .data
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            .iter()
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            .enumerate()
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            .filter(|(_, v)| **v == b'0')
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            .map(|(i, _v)| self.map.coord(i as i64).unwrap())
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            .collect_vec()
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    }
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    fn count_reachable_from(&self, pos: (i64, i64), needle: u8, visited: &mut Grid<bool>) -> u64 {
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        visited.set(pos.0, pos.1, true);
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        let our_val = self.map.get(pos.0, pos.1).unwrap();
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        if our_val == needle {
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            return 1;
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        }
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        // adjacents that are +1
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        let valid_moves = [(-1, 0), (1, 0), (0, -1), (0, 1)] // left, right, up, down
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            .iter()
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            .map(|(x_ofs, y_ofs)| (pos.0 + x_ofs, pos.1 + y_ofs)) // get target position
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            .filter(|(x, y)| visited.get(*x, *y) == Some(false)) // skip already visited targets
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            .map(|(x, y)| ((x, y), self.map.get(x, y))) // get value at that position
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            .filter(|(_, val)| *val == Some(our_val + 1)) // only interested if it's our value + 1
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            .map(|(pos, _)| pos) // discard the value
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            .collect_vec(); // need to collect since the next map will also require access to `visited`
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        valid_moves
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            .iter()
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            .map(|pos| self.count_reachable_from(*pos, needle, visited))
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            .sum()
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    }
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    fn paths_to(&self, pos: (i64, i64), needle: u8, mut path: Vec<(i64, i64)>) -> Vec<Vec<(i64, i64)>> {
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        path.push(pos);
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        let our_val = self.map.get(pos.0, pos.1).unwrap();
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        if our_val == needle {
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            return vec![path];
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        }
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        let valid_moves = [(-1, 0), (1, 0), (0, -1), (0, 1)] // left, right, up, down
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            .iter()
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            .map(|(x_ofs, y_ofs)| (pos.0 + x_ofs, pos.1 + y_ofs)) // get target position
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            .filter(|pos| !path.contains(pos)) // skip already visited targets
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            .map(|(x, y)| ((x, y), self.map.get(x, y))) // get value at that position
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            .filter(|(_, val)| *val == Some(our_val + 1)) // only interested if it's our value + 1
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            .map(|(pos, _)| pos) // discard the value
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            .collect_vec(); // need to collect since the next map will also require access to `visited`
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        valid_moves
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            .iter()
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            .flat_map(|mov| self.paths_to(*mov, needle, path.clone()))
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            .collect_vec()
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    }
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}
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// PROBLEM 1 solution
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fn problem1<T: BufRead>(input: Lines<T>) -> u64 {
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    let map: TrailMap = input.into();
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    map.trailheads()
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        .iter()
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        .map(|pos| {
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            let mut visited = Grid::with_shape(map.map.width(), map.map.height(), false);
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            map.count_reachable_from(*pos, b'9', &mut visited)
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        })
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        .sum()
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}
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// PROBLEM 2 solution
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fn problem2<T: BufRead>(input: Lines<T>) -> u64 {
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    let map: TrailMap = input.into();
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    map.trailheads()
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        .iter()
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        .flat_map(|pos| map.paths_to(*pos, b'9', Vec::new()))
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        .count() as u64
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}
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#[cfg(test)]
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mod tests {
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    use crate::*;
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    use std::io::Cursor;
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    const EXAMPLE: &str = &"89010123
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78121874
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87430965
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96549874
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45678903
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32019012
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01329801
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10456732";
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    #[test]
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    fn problem1_example() {
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        let c = Cursor::new(EXAMPLE);
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        assert_eq!(problem1(c.lines()), 36);
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    }
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    #[test]
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    fn problem2_example() {
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        let c = Cursor::new(EXAMPLE);
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        assert_eq!(problem2(c.lines()), 81);
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    }
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}
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