Clean up day16
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673c0eadb1
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099af5ecb9
@ -49,7 +49,7 @@ impl Direction {
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}
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}
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}
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}
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fn reverse(&self) -> Self {
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fn turn_around(&self) -> Self {
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match self {
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match self {
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North => South,
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North => South,
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South => North,
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South => North,
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@ -111,46 +111,46 @@ fn parse(input: &str) -> (Vec<Vec<Tile>>, IVec2, IVec2) {
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}
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}
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fn get_scores(grid: &[Vec<Tile>], start_pos: &IVec2) -> AHashMap<(IVec2, Direction), u32> {
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fn get_scores(grid: &[Vec<Tile>], start_pos: &IVec2) -> AHashMap<(IVec2, Direction), u32> {
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// dijkstra
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let mut to_visit = BinaryHeap::new();
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let mut to_visit = BinaryHeap::new();
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let mut visited = AHashMap::new();
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let mut visited = AHashMap::new();
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let start_node = Node {
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to_visit.push(Reverse(Node {
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score: 0,
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score: 0,
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direction: East,
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direction: East,
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position: *start_pos,
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position: *start_pos,
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};
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}));
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to_visit.push(Reverse(start_node));
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while let Some(curr) = to_visit.pop() {
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let curr = curr.0;
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while let Some(curr_node) = to_visit.pop() {
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if visited
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if visited
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.get(&(curr_node.0.position, curr_node.0.direction))
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.get(&(curr.position, curr.direction))
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.map_or(false, |s| s < &curr_node.0.score)
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.map_or(false, |s| s < &curr.score)
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{
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{
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continue;
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continue;
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}
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}
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visited.insert(
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visited.insert((curr.position, curr.direction), curr.score);
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(curr_node.0.position, curr_node.0.direction),
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curr_node.0.score,
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);
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let pos_in_front = curr_node.0.position + curr_node.0.direction.as_vec();
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let pos_in_front = curr.position + curr.direction.as_vec();
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if grid[pos_in_front.x as usize][pos_in_front.y as usize] != Wall {
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if grid[pos_in_front.x as usize][pos_in_front.y as usize] != Wall {
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to_visit.push(Reverse(Node {
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to_visit.push(Reverse(Node {
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score: curr_node.0.score + 1,
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score: curr.score + 1,
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direction: curr_node.0.direction,
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direction: curr.direction,
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position: curr_node.0.position + curr_node.0.direction.as_vec(),
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position: curr.position + curr.direction.as_vec(),
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}));
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}));
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}
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}
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to_visit.push(Reverse(Node {
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to_visit.push(Reverse(Node {
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score: curr_node.0.score + 1000,
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score: curr.score + 1000,
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direction: curr_node.0.direction.turn_left(),
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direction: curr.direction.turn_left(),
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position: curr_node.0.position,
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position: curr.position,
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}));
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}));
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to_visit.push(Reverse(Node {
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to_visit.push(Reverse(Node {
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score: curr_node.0.score + 1000,
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score: curr.score + 1000,
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direction: curr_node.0.direction.turn_right(),
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direction: curr.direction.turn_right(),
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position: curr_node.0.position,
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position: curr.position,
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}));
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}));
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}
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}
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visited
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visited
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@ -165,38 +165,63 @@ fn part1(scores: &AHashMap<(IVec2, Direction), u32>, end_pos: &IVec2) -> u32 {
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.unwrap()
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.unwrap()
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}
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}
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#[derive(Debug, Clone, Eq, PartialEq, Hash)]
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struct Visit {
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position: IVec2,
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direction: Direction,
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score: u32,
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}
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fn part2(scores: &AHashMap<(IVec2, Direction), u32>, end_pos: &IVec2) -> usize {
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fn part2(scores: &AHashMap<(IVec2, Direction), u32>, end_pos: &IVec2) -> usize {
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// bfs from end to start along shortest paths
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let shortest_path_len = part1(scores, end_pos);
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let shortest_path_len = part1(scores, end_pos);
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let mut seen: AHashSet<IVec2> = AHashSet::new();
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let mut seen: AHashSet<IVec2> = AHashSet::new();
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let mut to_visit: Vec<_> = scores
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let mut to_visit: Vec<Visit> = scores
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.iter()
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.iter()
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.filter(|((p, _), val)| val == &&shortest_path_len && p == end_pos)
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.filter(|((p, _), val)| val == &&shortest_path_len && p == end_pos)
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.map(|(x, y)| (*x, *y))
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.map(|((p, d), s)| Visit {
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position: *p,
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direction: *d,
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score: *s,
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})
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.collect();
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.collect();
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while let Some(curr) = to_visit.pop() {
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while let Some(curr) = to_visit.pop() {
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// this is very ugly
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seen.insert(curr.position);
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seen.insert(curr.0 .0);
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let pos_behind = curr.position + curr.direction.turn_around().as_vec();
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let pos_behind = curr.0 .0 + curr.0 .1.reverse().as_vec();
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if scores
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if scores
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.get(&(pos_behind, curr.0 .1))
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.get(&(pos_behind, curr.direction))
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.map_or(false, |v| v == &(curr.1 - 1))
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.map_or(false, |v| v == &(curr.score - 1))
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{
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{
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to_visit.push(((pos_behind, curr.0 .1), (curr.1 - 1)));
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to_visit.push(Visit {
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position: pos_behind,
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direction: curr.direction,
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score: curr.score - 1,
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});
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}
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let new_score = curr.score - 1000;
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if scores
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.get(&(curr.position, curr.direction.turn_left()))
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.map_or(false, |v| v == &new_score)
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{
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to_visit.push(Visit {
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position: curr.position,
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direction: curr.direction.turn_left(),
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score: new_score,
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});
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}
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}
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if scores
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if scores
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.get(&(curr.0 .0, curr.0 .1.turn_left()))
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.get(&(curr.position, curr.direction.turn_right()))
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.map_or(false, |v| v == &(curr.1 - 1000))
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.map_or(false, |v| v == &new_score)
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{
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{
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to_visit.push(((curr.0 .0, curr.0 .1.turn_left()), (curr.1 - 1000)));
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to_visit.push(Visit {
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}
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position: curr.position,
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if scores
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direction: curr.direction.turn_right(),
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.get(&(curr.0 .0, curr.0 .1.turn_right()))
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score: new_score,
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.map_or(false, |v| v == &(curr.1 - 1000))
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});
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{
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to_visit.push(((curr.0 .0, curr.0 .1.turn_right()), (curr.1 - 1000)));
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}
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}
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}
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}
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seen.len()
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seen.len()
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