Day 20 (refactor)
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@ -0,0 +1,2 @@
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/target
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.env
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82
src/day20.rs
82
src/day20.rs
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@ -1,74 +1,34 @@
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use crate::util::maps::*;
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use itertools::Itertools;
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const CHEAT_DURATION: u64 = 20;
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const CHEAT_DURATION: usize = 20;
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pub fn day20() {
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let input = World::from_string(&crate::input(20));
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let maze = input.map(|&c| c == '#');
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let (ex, ey, _) = input.enumerate().find(|(_, _, &c)| c == 'E').unwrap();
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let input: World<char> = World::from_string(&crate::input(20));
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let maze: World<bool> = input.map(|&c| c == '#');
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let costs = path_costs(&maze, ex, ey);
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let (end_x, end_y, _) = input.enumerate().find(|(_, _, &c)| c == 'E').unwrap();
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let distance_map: World<Option<u64>> = maze.tile_distances(end_x, end_y);
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let free_spaces: Vec<(usize, usize)> = maze
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let walkable_tiles: Vec<(usize, usize)> = distance_map
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.enumerate()
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.filter_map(|(x, y, &b)| if !b { Some((x, y)) } else { None })
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.filter_map(|(x, y, &d)| if d.is_some() { Some((x, y)) } else { None })
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.collect();
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let all_cheats: Vec<u64> = free_spaces
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let tile_pairs = walkable_tiles
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.iter()
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.flat_map(|&(ax, ay)| {
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free_spaces
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.iter()
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.filter_map(|&(bx, by)| {
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if ax == bx && ay == by {
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return None;
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}
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let taxi_cost = taxicab_distance(ax, ay, bx, by) as u64;
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if taxi_cost > CHEAT_DURATION {
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return None;
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}
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let a_cost = costs.get(ax, ay).unwrap();
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let b_cost = costs.get(bx, by).unwrap();
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// a cheat's timesave is the cost of a - the cost of b, minus the time it takes to do the cheat
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// and we return None for cheats that have negative timesave (why would you cheat to do worse?)
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a_cost.checked_sub(b_cost)?.checked_sub(taxi_cost)
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})
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.collect::<Vec<u64>>()
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})
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.collect();
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let good_cheats = all_cheats
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.iter()
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.filter(|&&advantage| advantage >= 100)
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.count();
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.cartesian_product(walkable_tiles.iter())
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.filter(|(&(ax, ay), &(bx, by))| !(ax == bx && ay == by));
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let all_cheats = tile_pairs
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.filter(|(&(ax, ay), &(bx, by))| taxicab_distance(ax, ay, bx, by) <= CHEAT_DURATION)
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.map(|(&(ax, ay), &(bx, by))| {
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let taxi_distance = taxicab_distance(ax, ay, bx, by) as i64;
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let a_distance_to_end = distance_map.get(ax, ay).unwrap().unwrap() as i64;
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let b_distance_to_end = distance_map.get(bx, by).unwrap().unwrap() as i64;
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a_distance_to_end - b_distance_to_end - taxi_distance
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});
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let good_cheats = all_cheats.filter(|&advantage| advantage >= 100).count();
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println!("{good_cheats}");
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}
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fn path_costs(world: &World<bool>, x: usize, y: usize) -> World<u64> {
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fn calculate_path_costs(
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world: &World<bool>,
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x: usize,
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y: usize,
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cost_so_far: u64,
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costs: &mut World<u64>,
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) {
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let adjacents = world
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.adjacent_locations(x, y)
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.into_iter()
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.filter(|&(nx, ny)| !world.get(nx, ny).unwrap());
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for (nx, ny) in adjacents {
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let cost = cost_so_far + 1;
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let old_cost = costs.get(nx, ny).unwrap();
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if cost < old_cost {
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costs.set(nx, ny, cost);
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calculate_path_costs(world, nx, ny, cost, costs)
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}
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}
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}
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let mut costs = World::from_dimensions(world.width(), world.height(), u64::MAX);
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costs.set(x, y, 0);
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calculate_path_costs(world, x, y, 0, &mut costs);
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costs
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println!("{good_cheats} cheats save 100 or more picoseconds.");
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}
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fn taxicab_distance(ax: usize, ay: usize, bx: usize, by: usize) -> usize {
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@ -1,4 +1,4 @@
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use std::fmt::Display;
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use std::{fmt::Display, intrinsics::atomic_cxchgweak_acquire_acquire};
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use itertools::Itertools;
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@ -187,3 +187,27 @@ where
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f.write_str(&final_string)
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}
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}
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impl World<bool> {
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pub fn tile_distances(&self, x: usize, y: usize) -> World<Option<u64>> {
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let mut costs = World::from_dimensions(self.width(), self.height(), None);
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let mut tile_stack: Vec<(usize, usize, u64)> = vec![];
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tile_stack.push((x, y, 0));
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while let Some((x, y, cost_so_far)) = tile_stack.pop() {
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let adjacents = self
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.adjacent_locations(x, y)
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.into_iter()
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.filter(|&(nx, ny)| !self.get(nx, ny).unwrap());
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for (nx, ny) in adjacents {
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let cost = cost_so_far + 1;
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let old_cost = costs.get(nx, ny).unwrap().unwrap_or(u64::MAX);
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if cost < old_cost {
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costs.set(nx, ny, Some(cost));
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tile_stack.push((nx, ny, cost));
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}
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}
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}
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costs
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}
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}
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