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c726b9090f
| Author | SHA1 | Date | |
|---|---|---|---|
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c726b9090f | ||
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7b51854bb2 |
81
input/day18.txt
Normal file
81
input/day18.txt
Normal file
@@ -0,0 +1,81 @@
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#################################################################################
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#.#...#.....#...............#.....#v....#.........#p....#...#...................#
|
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#.#.#.#.#.#.#M#############.#.###.#####.#####.###.#.###.#.#.#################.#.#
|
||||
#..n#...#.#...#.#...........#...#.......#.....#.....#.#...#...#.......#...#...#.#
|
||||
#########.#####.#.###########.#.#######.#.###########.#######.#C#####.#.#.#.###.#
|
||||
#.........#.#.....#.........#.#.#.......#...........#...........#...#.#.#...#...#
|
||||
#.#########.#.#########.#####.#W###.###############.###.#########.###.#.#####.###
|
||||
#.Y...#...#...#.......#z......#...#.#...#...#.....#..d#.#.#..x..#...#.#.#...#.#.#
|
||||
#####.#.#.#.###.#.###.#####.#####.#.#.#.#.#.#.###.###.#.#.#.###.#.#.#.#.#.#.#.#.#
|
||||
#.....#.#...#...#.#.#.....#...#...#.#.#.#.#...#.......#...#.#...#.#.....#.#...#.#
|
||||
#.#######.#######.#.#####.#####.#####.#.#.#############.###.#.###.#########.###.#
|
||||
#...#...#.#...#...#.#...#.....#...B...#.#.....#...#.....#...#.#.....#....t#.....#
|
||||
#.#.#.#.#.#.#.#.###.#.#.#####.#.#######.#.###.#.#.###.###.###.#.#####.###.#####N#
|
||||
#.#...#.#...#.#.#.....#...#...#.#...#...#...#.#.#...#.#...#...#...#...#.#...#.#.#
|
||||
#.#####.#####.#.#########.#.###.#.#.#.#.###.#.#.###.###.###.#######.###.###.#.#.#
|
||||
#.#...#.#.......#...#.....#...#...#.#.#.#.#.#...#.#.....#...#.....#.#...#...#.#.#
|
||||
#.#.###.#########.#.#.###.###.#####.#.#.#.#.#####.#######.###.###.#.#.###.###.#.#
|
||||
#.#...#.#...#.....#.#...#...#.#...#.#.#.#.#.#.....#.....#...#.#.#...#...#.#...#.#
|
||||
#.###.#.#.#.#.#####.#.#.#####.#.###.#.###.#.#.###.###.#.###.#.#.#####.#.#J#E###.#
|
||||
#.....#.#.#...#...#.#.#.....#.#.....#...#.#.#.#.......#.#...#.#...#...#...#.....#
|
||||
#######.#.#####.###.#######.#.#########.#.#.#.#########.#.###.#.#.#.#########.###
|
||||
#.......#.#.....#.I.#.....#.............#...#...#.....#.#...#.#.#.#.........#...#
|
||||
#.#######.###.###.#.#####.#.###########.#.###.#.###.###.###.#####.#########.###.#
|
||||
#.......#...#.#...#.....#.#.#.......#...#.#...#.#...#.....#.........#.....#.#...#
|
||||
#.#####.###.#.#.#######.#.###.#####.#.###.#####.#.###.#######.#####.#.###.#.###.#
|
||||
#.#...#...#.#.#.......#.#.....#.#...#...#.#...#.#...#u#.....#...#...#.#.#.#...#.#
|
||||
#.###.#.###.#.#######.#.#######.#.#####.#.#.#.#.#.#.#.#.#.#.###.#####.#.#.###.#.#
|
||||
#...#.#...#.....#.....#.#.....#...#...#.#...#.#.#.#...#.#.#...#.#.....#.#.#...#.#
|
||||
###.#.###.#####.#.#####.#.#.#.#.###.#.#.#####.#.#.#####.#.#.###.#.#####.#.#.###.#
|
||||
#...#...#.......#.#.....#.#.#.#.....#.#.#.....#.#.#.....#.#.#...#.....#.#.#.#..k#
|
||||
#.###.###########.#.#######.#.#######.#.#.#####.###.#####.###.#.#####.#.#.#.#.###
|
||||
#...#...........#.#.....#...#.......#.#.#...#.........#...#...#.#.....#.#...#.#.#
|
||||
###.#.###.###.###.#####.#.#.#######.#.#.###.#.#########.#.#.###.#.#####.#####.#.#
|
||||
#.#.#...#...#.#...#...#.#.#.#.....#.#.#.#.#.#...#.......#.#.#...#...#.....#...#.#
|
||||
#.#.###.###.#.#.###.#.#.#.###.###.###.###.#.#####.#######.#.#.#####.#.#.#.#.###.#
|
||||
#.#.#.....#.#.#.....#g#...#...#.#...#...#.#.......#...#...#.#...#.#.#.#.#.#.....#
|
||||
#.#.#######.#.#######.###.#.###.###.###.#.#########.###.###.###.#.#.#.#.#######.#
|
||||
#...#.....#.#.#.....#.#...#.......#.#...#.....#.......#.#.#...#...#.#.#.......#.#
|
||||
#.###.###.#.#.#.###.#.###########.#.#.###.###.#.#####.#.#.###.#####.#.#######.#.#
|
||||
#.....#.....#...#...#.A...........#.........#.......#.R.....#.......#.......#...#
|
||||
#######################################.@.#######################################
|
||||
#.....#.........#...........#......r#...........#.#...#.............#.......#...#
|
||||
###.###.#.#######.#.#######.#.#####.###.#.#.###.#.#.#.#.#######.###.#.#####.###.#
|
||||
#...#...#.........#...#...#.#.....#.....#.#...#...#.#...#...#...#.#.#.....#.....#
|
||||
#.###.###############.#.###.#.###.#####.#.###.#####.#######.#.###.#.#####.#######
|
||||
#.....#.......#.#.....#...#.#.#...#.....#.#.#.#.....#.......#.#...#.....#.......#
|
||||
#.#######.###.#.#.#######.#.###.#.#######.#.#.#.#########.###.#.#######G#.#####.#
|
||||
#.....#...#.#...#.#.......#...#.#.#.....#...#.#.#.....#..a#...#.#.....#.#i....#.#
|
||||
#####.#.###.###.#.###.#.#####.#.###.###.#####.#.###.#.#.#.#.###.#.###.#.#######.#
|
||||
#...#.#.#.....#.#...#.#.#.....#.....#...#...#.......#...#.#.#.....#.#.........#.#
|
||||
#.#.#.#.#.#####.###.#.###.###########.###.#.#.#############.#.#####.#########.#.#
|
||||
#.#.#.#.#.......#...#.....#.....#...#...#.#.#.#.............#.......#...#.....O.#
|
||||
#.#.#.#.#########.#######.#.###.#.#.###.#.#.###.###########.#########.#.#######.#
|
||||
#.#.#e#.........#.#.....#...#...#.#.....#.#.#...#...........#.......#.#.....#...#
|
||||
###.#.#########.#.#.###.#####P###.#######.#.#.#########.#####.#####.#.#####.#.###
|
||||
#...#.......#...#...#.#.#...#...#...#...#.#...#.......#.#w....#f..#...#...#.#...#
|
||||
#.#.#######.#.#######.#.#.#####.#.#.#.#.#.#.###.#####.###.###.#.#.#####.#.#.#####
|
||||
#.#.#...#...#.........#.#...#...#.#...#.#.#.#.......#.#...#...#.#...#...#.#.#...#
|
||||
#.#.#.###.#######.###.#.#.#.#.###.#####.#.###.#######.#.#######.###.#.###.#.#.#.#
|
||||
#.#...#...#.....#...#.#.#.#...#..o..#...#...#...#...#.#...#...F.#...#...#.#...#.#
|
||||
#.#####.###.###.###.###.#####.#####.#.#.#.#.#.###.#.#.###.#.#####L###.#.#.#####.#
|
||||
#.......#...#.#.#...#.#.....#.....#.#.#.#.#...#...#.#.#...#...#...#...#.#.....#.#
|
||||
#K#######.#.#.#.#.###.#####.#####X###.#.#######.###.#.#.#######.#####.#.#######.#
|
||||
#....j..#.#.#.....#...#.....#...#...#.#.#.......#...#.#.....#...#.S.#.#.........#
|
||||
#######.###.#####.#.###.#####.#.###.#.###.#######.###.#####.#.###.#.#.###########
|
||||
#.....#...#.....#.#...#.......#...#.#...#.....#.#.#.......#.#l....#.#.#...#.....#
|
||||
#T#.#####.#####.#####.#.#########.#.###.#.###.#.#.#####.#.#.#######.#.#.###.###.#
|
||||
#.#.....#.#.....#.....#.#.......#.#.#...#c#.#.#.....#...#.#...Z.#...#.#.....#...#
|
||||
#.###.###.#.#.###.#####.#.#####.#.#.#.#.#.#.#.#####.#.#######.###.###.#.#####.#.#
|
||||
#...#...#...#.#...#...#...#...#.#.#.#.#.#...#.....#...#.....#.#s..#...#.#.#...#.#
|
||||
###.###.#.#####.###.###.###.#.###.#.#.###.#######.###.#.#.###.#.###.###Q#.#.#####
|
||||
#.#.#.#.#.#...#...#...#.#...#.....#.#...#.#.....#.#...#.#.#...#.V.#.#...#.#.....#
|
||||
#.#.#.#.#.#.#.###.#.#.#.#.#########.###.#.#.###.#.#####.#.#.#####.#.#.###.#####.#
|
||||
#...#.#...#.#...#.#.#.#.#...#...#...#...#.#...#y..#...#.#.#.......#.#.#.......#.#
|
||||
#.###.#####.###.#.###.#.###.#.###.###.#.#####.#####.#.#.#.#########.#.#.#.#####.#
|
||||
#.#.....#...#.#...#...#.#...#.#.D.#.U.#.#.....#...#.#.#.#.......#...#..b#.#.....#
|
||||
#.#####.#.###.#####.###.#.###.#.###.###.#.#####.#.#.#.#.#######.#.#######.#.###.#
|
||||
#.H...#.#...#...........#.#...#.#.....#.#m......#...#...#.......#.#...#...#.#...#
|
||||
#####.#.###.#############.#.#.#.#####.#.#.###############.#######.#.#.#####.#.###
|
||||
#..q......#...............#.#.........#.#...............#...........#.......#..h#
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#################################################################################
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@@ -1,5 +1,5 @@
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mod tasks;
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fn main() {
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tasks::day15::run();
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tasks::day18::run();
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}
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301
src/tasks/day18.rs
Normal file
301
src/tasks/day18.rs
Normal file
@@ -0,0 +1,301 @@
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use itertools::Itertools;
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use std::cmp::{Ord, Ordering, PartialOrd};
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use std::collections::BinaryHeap;
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use std::collections::HashSet;
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use std::collections::VecDeque;
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use std::rc::Rc;
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#[allow(dead_code)]
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pub fn run() {
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let input: Map = Map(std::fs::read_to_string("input/day18.txt")
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.unwrap()
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.lines()
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.map(|line| line.chars().collect_vec())
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.collect_vec());
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let t1 = task(input.clone());
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println!("Task 1: best bound to get all keys is {}", t1);
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let t2 = task(input.clone().split_robot());
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println!("Task 2: best bound to get all keys is {}", t2);
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}
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fn task(map: Map) -> usize {
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let mut all_keys = map
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.0
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.iter()
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.flatten()
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.filter(|c| c.is_alphabetic() && c.is_lowercase())
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.collect_vec();
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all_keys.sort();
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let all_keys: String = all_keys.into_iter().collect();
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let map = Rc::from(map);
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let mut visited: HashSet<StateSummary> = HashSet::new();
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let mut open: BinaryHeap<State> = BinaryHeap::new();
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let mut best_found_for_all = std::usize::MAX;
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open.push(State::new(map.clone()));
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while let Some(state) = open.pop() {
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let summary = StateSummary::from(&state);
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if visited.contains(&summary) || best_found_for_all <= state.steps_taken {
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// there could come no better solution
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continue;
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}
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|
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if summary.1 == all_keys {
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if state.steps_taken < best_found_for_all {
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best_found_for_all = state.steps_taken;
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}
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}
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|
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state
|
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.get_available_options()
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.into_iter()
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.for_each(|s| open.push(s));
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visited.insert(summary);
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}
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best_found_for_all
|
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}
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|
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#[derive(Eq, PartialEq, Hash, Debug)]
|
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struct StateSummary(Vec<Pos>, String);
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impl StateSummary {
|
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fn from(state: &State) -> Self {
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let mut s = state.opened.iter().collect_vec();
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s.sort();
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Self(
|
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state.currents.clone(),
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s.into_iter()
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.map(|c| {
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let mut x = *c;
|
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x.make_ascii_lowercase();
|
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x
|
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})
|
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.collect(),
|
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)
|
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}
|
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}
|
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#[derive(Eq, PartialEq)]
|
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struct StateSummaryDist(Pos, HashSet<char>, usize);
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|
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#[derive(PartialEq, Eq, Clone)]
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struct Map(Vec<Vec<char>>);
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|
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impl Map {
|
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fn coordinate_of(&self, symbol: char) -> Vec<Pos> {
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self.0
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.iter()
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.enumerate()
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.fold(Vec::new(), |vec, (y, line)| {
|
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line.iter()
|
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.enumerate()
|
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.filter(|(_x, c)| **c == symbol)
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.fold(vec, |mut vec, (x, _c)| {
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vec.push(Pos(x, y));
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vec
|
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})
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})
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}
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|
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/**
|
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* return: (char: found key, usize1: index of moved robot,
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* usize2: distance that robot moved, Pos: new position of robot[index]),
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* usize3: number of empty points on path to last_door_opened
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*/
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fn reachable_keys(
|
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&self,
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start_points: Vec<Pos>,
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open_doors: &HashSet<char>,
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last_door_opened: Option<char>,
|
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) -> Vec<(char, usize, usize, Pos, usize)> {
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let all_keys = 'a'..='z';
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let bfs = |start: Pos, open_doors: &HashSet<char>| {
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// key, distance, new_pos, number of steps of distance until last_open door is met
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let mut result: Vec<(char, usize, Pos, usize)> = vec![];
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let mut open: VecDeque<(Pos, usize, usize)> = VecDeque::new(); //position, distance form start, distance until last door opened is met
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open.push_back((start, 0, 0));
|
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let mut visited: HashSet<Pos> = HashSet::new();
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while let Some((current, walked, ldod)) = open.pop_front() {
|
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if visited.contains(¤t) {
|
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continue;
|
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}
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let field = self.0[current.1][current.0];
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let field_is_key = all_keys.contains(&field);
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// if can move over current type: push neighbors to open
|
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if field == '.' || field == '@' || open_doors.contains(&field) || field_is_key {
|
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let mut ldod = 0;
|
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if let Some(ldo) = last_door_opened {
|
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if ldo == field {
|
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ldod = walked;
|
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}
|
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};
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current
|
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.neighbors()
|
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.iter()
|
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.for_each(|n| open.push_back((*n, walked + 1, ldod)));
|
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}
|
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|
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// if it is a key: push it to result
|
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if field_is_key {
|
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result.push((field, walked, current, ldod));
|
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}
|
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|
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// anyways: push to visited
|
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visited.insert(current);
|
||||
}
|
||||
|
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result
|
||||
};
|
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|
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start_points
|
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.iter()
|
||||
.enumerate()
|
||||
.flat_map(|(robot_i, robot_pos)| {
|
||||
bfs(*robot_pos, open_doors)
|
||||
.into_iter()
|
||||
.map(|(key, dist, final_pos, ldod)| (key, robot_i, dist, final_pos, ldod))
|
||||
.collect_vec()
|
||||
})
|
||||
.collect_vec()
|
||||
}
|
||||
|
||||
fn split_robot(mut self) -> Self {
|
||||
let Pos(x, y) = self.coordinate_of('@')[0];
|
||||
self.0[x][y] = '#';
|
||||
self.0[x - 1][y - 1] = '@';
|
||||
self.0[x - 1][y] = '#';
|
||||
self.0[x - 1][y + 1] = '@';
|
||||
self.0[x + 1][y] = '#';
|
||||
self.0[x + 1][y + 1] = '@';
|
||||
self.0[x][y - 1] = '#';
|
||||
self.0[x + 1][y - 1] = '@';
|
||||
self.0[x][y + 1] = '#';
|
||||
self
|
||||
}
|
||||
}
|
||||
|
||||
#[derive(Debug, Copy, Clone, Hash, PartialEq, Eq)]
|
||||
struct Pos(usize, usize);
|
||||
|
||||
impl Pos {
|
||||
fn neighbors(&self) -> [Pos; 4] {
|
||||
[
|
||||
Pos(self.0 - 1, self.1),
|
||||
Pos(self.0 + 1, self.1),
|
||||
Pos(self.0, self.1 - 1),
|
||||
Pos(self.0, self.1 + 1),
|
||||
]
|
||||
}
|
||||
}
|
||||
|
||||
#[derive(Eq, PartialEq)]
|
||||
struct State {
|
||||
currents: Vec<Pos>,
|
||||
underrun: Vec<usize>, // the number of steps a robot is behind the leading robots steps
|
||||
opened: HashSet<char>, // capital letter
|
||||
map: Rc<Map>,
|
||||
steps_taken: usize,
|
||||
last_door_opened: Option<char>,
|
||||
}
|
||||
|
||||
impl State {
|
||||
fn new(map: Rc<Map>) -> Self {
|
||||
let currents = map.coordinate_of('@');
|
||||
let no_robots = currents.len();
|
||||
Self {
|
||||
currents: currents,
|
||||
underrun: std::iter::repeat(0).take(no_robots).collect_vec(),
|
||||
opened: HashSet::new(),
|
||||
map: map,
|
||||
steps_taken: 0,
|
||||
last_door_opened: None,
|
||||
}
|
||||
}
|
||||
|
||||
fn get_available_options(&self) -> Vec<State> {
|
||||
// find all keys that are not yet collected + their distance + position
|
||||
let next_keys = self
|
||||
.map
|
||||
.reachable_keys(self.currents.clone(), &self.opened, self.last_door_opened)
|
||||
.into_iter()
|
||||
.filter(|(key, _, _, _, _)| {
|
||||
let mut c = *key;
|
||||
c.make_ascii_uppercase();
|
||||
!self.opened.contains(&c)
|
||||
})
|
||||
.collect_vec();
|
||||
|
||||
// create new state with one open door added + steps increased + current position updated
|
||||
next_keys
|
||||
.into_iter()
|
||||
.map(|(key, robot_i, distance, current, ldod)| {
|
||||
self.advance(key, robot_i, distance, current, ldod)
|
||||
})
|
||||
.collect_vec()
|
||||
}
|
||||
|
||||
fn advance(
|
||||
&self,
|
||||
key_added: char,
|
||||
robot_index: usize,
|
||||
additional_steps: usize,
|
||||
new_pos: Pos,
|
||||
ldod: usize,
|
||||
) -> Self {
|
||||
let mut open_doors = self.opened.clone();
|
||||
let mut door = key_added;
|
||||
door.make_ascii_uppercase();
|
||||
open_doors.insert(door);
|
||||
let mut positions = self.currents.clone();
|
||||
positions[robot_index] = new_pos;
|
||||
let underrun = self
|
||||
.underrun
|
||||
.iter()
|
||||
.enumerate()
|
||||
.map(|(i, u)| {
|
||||
if i != robot_index {
|
||||
*u + additional_steps
|
||||
} else {
|
||||
0
|
||||
}
|
||||
})
|
||||
.collect();
|
||||
|
||||
let usable_underrun = if self.underrun[robot_index] >= ldod {
|
||||
ldod
|
||||
} else {
|
||||
self.underrun[robot_index]
|
||||
};
|
||||
let steps_diff = additional_steps - usable_underrun;
|
||||
Self {
|
||||
currents: positions,
|
||||
underrun: underrun,
|
||||
opened: open_doors,
|
||||
map: self.map.clone(),
|
||||
steps_taken: self.steps_taken + steps_diff as usize,
|
||||
last_door_opened: Some(key_added),
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// The priority queue depends on `Ord`.
|
||||
// Explicitly implement the trait so the queue becomes a min-heap
|
||||
// instead of a max-heap.
|
||||
impl Ord for State {
|
||||
fn cmp(&self, other: &State) -> Ordering {
|
||||
// Notice that the we flip the ordering on costs.
|
||||
// In case of a tie we compare positions - this step is necessary
|
||||
// to make implementations of `PartialEq` and `Ord` consistent.
|
||||
other.steps_taken.cmp(&self.steps_taken)
|
||||
}
|
||||
}
|
||||
|
||||
// `PartialOrd` needs to be implemented as well.
|
||||
impl PartialOrd for State {
|
||||
fn partial_cmp(&self, other: &State) -> Option<Ordering> {
|
||||
Some(self.cmp(other))
|
||||
}
|
||||
}
|
||||
@@ -13,4 +13,5 @@ pub mod day13;
|
||||
pub mod day14;
|
||||
pub mod day15;
|
||||
pub mod day16;
|
||||
pub mod day18;
|
||||
pub mod day21;
|
||||
|
||||
Reference in New Issue
Block a user