Cleanup lint and make sure all tests run as appropriate with debug_assertions enable
This commit is contained in:
parent
992fcb01be
commit
2f36a0b5e8
@ -332,7 +332,7 @@ impl Index<(usize, usize)> for Tile {
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}
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}
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#[cfg(debug_assertions)]
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#[cfg(any(debug_assertions, test))]
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fn border_to_str(border: &[u8]) -> String {
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std::str::from_utf8(border).unwrap().to_string()
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}
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@ -535,7 +535,7 @@ fn stitch(tiles: &[Tile]) -> Tile {
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})
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});
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#[cfg(debug_assertions)]
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#[cfg(any(debug_assertions, test))]
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border_counts.iter().for_each(|(b, c)| {
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let _ = b;
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let _ = c;
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@ -964,14 +964,6 @@ mod tests {
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fn test_stitch() {
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let want: Tile = OUTPUT_IMAGE.parse().expect("can't parse stitched input");
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let output = stitch(&generator(INPUT));
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/*
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let output = reorient(&output, |im| {
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dbg!(&want, &im);
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im == &want
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})
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.unwrap();
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*/
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let output = reorient(&output, contains_seamonster);
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match output {
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@ -85,7 +85,6 @@
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//! Determine which two cups will end up immediately clockwise of cup 1. What do you get if you multiply their labels together?
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use std::fmt;
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use std::ops::{Index, IndexMut, Range, RangeFrom};
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use aoc_runner_derive::aoc;
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@ -122,38 +121,54 @@ trait Hand {
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fn test_cur_to_end(&self) -> Vec<usize>;
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}
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#[derive(Debug)]
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struct TargetCup {
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val: usize,
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idx: usize,
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}
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/// TODO(wathiede): redo based on this sentence from glenng:
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/// `So a circular linked list containing 2,1,3 would be [3,1,2]`
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#[derive(Debug)]
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struct FastHand {
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idx_to_val: Vec<usize>,
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val_to_idx: Vec<usize>,
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cur: usize,
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// A cup labeled `1` will be represented by the index 0, in that cell will be the index of cup
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// clockwise to `1`.
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// Stores the next cup as indexed value (i.e. label-1).
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cups: Vec<usize>,
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cur: Cup,
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min: usize,
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max: usize,
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}
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/// Stores the label of a cup. Use `as_idx` to compute the index into FastHand.cups. Use
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/// `from_idx` to build a `Cup` from a given index into FastHand.cups.
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#[derive(Copy, Clone, Debug, PartialEq)]
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struct Cup(usize);
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impl Cup {
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fn new(val: usize) -> Cup {
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Cup(val)
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}
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fn from_idx(idx: usize) -> Cup {
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Cup(idx + 1)
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}
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fn as_idx(&self) -> usize {
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self.0 - 1
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}
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}
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impl FastHand {
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fn new(s: &str) -> FastHand {
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let data: Vec<_> = s.bytes().map(|s| (s - b'0') as usize).collect();
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let min = *data.iter().min().unwrap();
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let max = *data.iter().max().unwrap();
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let mut idx_to_val = vec![0; data.len()];
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let mut val_to_idx = vec![0; data.len()];
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data.into_iter().enumerate().for_each(|(idx, val)| {
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val_to_idx[val - 1] = idx;
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idx_to_val[idx] = val;
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let mut cups = vec![0; max];
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let mut last = 0;
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data.windows(2).for_each(|nums| {
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let cur_cup = Cup::new(nums[0]);
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let next_cup = Cup::new(nums[1]);
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last = next_cup.as_idx();
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cups[cur_cup.as_idx()] = next_cup.as_idx();
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});
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let cur = Cup(data[0]);
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cups[last] = cur.as_idx();
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FastHand {
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idx_to_val,
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val_to_idx,
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cur: 0,
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cups,
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cur,
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min,
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max,
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}
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@ -164,148 +179,112 @@ impl FastHand {
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let mut max = *data.iter().max().unwrap();
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data.extend(max + 1..=1000000);
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max = 1000000;
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let mut idx_to_val = vec![0; data.len()];
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let mut val_to_idx = vec![0; data.len()];
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data.into_iter().enumerate().for_each(|(idx, val)| {
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val_to_idx[val - 1] = idx;
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idx_to_val[idx] = val;
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let mut cups = vec![0; max];
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let mut last = 0;
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data.windows(2).for_each(|nums| {
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let cur_cup = Cup::new(nums[0]);
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let next_cup = Cup::new(nums[1]);
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last = next_cup.as_idx();
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cups[cur_cup.as_idx()] = next_cup.as_idx();
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});
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let cur = Cup(data[0]);
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cups[last] = cur.as_idx();
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FastHand {
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idx_to_val,
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val_to_idx,
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cur: 0,
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cups,
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cur,
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min,
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max,
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}
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}
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fn destination_cup_idx(&self, skip_vals: &[usize]) -> usize {
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let mut search_val = self.idx_to_val[self.cur] - 1;
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fn destination(&self, skip_vals: &[Cup]) -> Cup {
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let mut search_val = Cup::new(self.cur.0 - 1);
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while skip_vals.contains(&search_val) {
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search_val -= 1;
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search_val = Cup::new(search_val.0 - 1);
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}
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if search_val < self.min {
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search_val = self.max;
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if search_val.0 < self.min {
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search_val = Cup::new(self.max);
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}
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while skip_vals.contains(&search_val) {
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search_val -= 1;
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search_val = Cup::new(search_val.0 - 1);
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}
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search_val
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}
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self.val_to_idx[search_val - 1]
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fn next(&self, c: Cup) -> Cup {
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//dbg!(c.as_idx(), self.cups[c.as_idx()]);
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Cup::from_idx(self.cups[c.as_idx()])
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}
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}
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impl fmt::Display for FastHand {
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fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
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for (idx, val) in self.idx_to_val.iter().enumerate() {
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if idx == self.cur {
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write!(f, "({}) ", val)?;
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} else {
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write!(f, "{} ", val)?;
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};
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let mut cur = self.cur;
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write!(f, "({}) ", cur.0)?;
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for _ in 1..self.cups.len() {
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cur = Cup::from_idx(self.cups[cur.as_idx()]);
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write!(f, "{} ", cur.0)?;
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}
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Ok(())
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}
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}
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#[derive(Debug)]
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struct CircleVec<T> {
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data: Vec<T>,
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}
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impl<T> CircleVec<T> {
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fn len(&self) -> usize {
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self.data.len()
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}
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fn iter(&self) -> impl Iterator<Item = &T> {
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self.data.iter()
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}
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}
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// TODO(wathiede): Index<Range> and Index<RangeFrom>?
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impl<T> Index<usize> for CircleVec<T> {
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type Output = T;
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fn index(&self, index: usize) -> &Self::Output {
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&self.data[index % self.data.len()]
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}
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}
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impl<T> IndexMut<usize> for CircleVec<T> {
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fn index_mut(&mut self, index: usize) -> &mut Self::Output {
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let len = self.data.len();
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&mut self.data[index % len]
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}
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}
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impl Hand for FastHand {
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fn step(&mut self) {
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let n_cups = self.idx_to_val.len();
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let right_idx = self.cur + 1;
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let mut three = vec![0; 3];
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(0..3).for_each(|dst| three[dst] = self.idx_to_val[(right_idx + dst) % n_cups]);
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let dst_idx = self.destination_cup_idx(&three);
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// TODO
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let mut cur = self.cur;
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let three: Vec<_> = (0..3)
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.map(|_| {
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cur = self.next(cur);
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cur
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})
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.collect();
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let dst = self.destination(&three);
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debug_println!(
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"before {} three {:?} target {}",
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"cur {} cups {} three {:?} destination {:?}",
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self.cur.0,
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self,
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three,
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self.idx_to_val[dst_idx]
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dst
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);
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debug_println!("cups (raw) {:?}", self.cups);
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//dbg!(right, &dst);
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let end_idx = if dst_idx < right_idx {
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n_cups + dst_idx - 3 + 1
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} else {
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dst_idx + 1 - 3
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};
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debug_println!("moving window {}.. to {}..{}", dst_idx, right_idx, end_idx);
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(right_idx..end_idx)
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// Allow wrap around.
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.zip((right_idx + 3..).chain(0..))
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.for_each(|(dst_idx, src_idx)| {
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let src_idx = src_idx % n_cups;
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let dst_idx = dst_idx % n_cups;
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let v = self.idx_to_val[src_idx];
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debug_println!(
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"moving {}({}) -> {}({})",
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v,
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src_idx,
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self.idx_to_val[dst_idx],
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dst_idx
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);
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self.idx_to_val[dst_idx] = v;
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self.val_to_idx[v - 1] = dst_idx;
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});
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(0..3).for_each(|i| {
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let dst_idx = (end_idx + i) % n_cups;
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self.idx_to_val[dst_idx] = three[i];
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self.val_to_idx[three[i] - 1] = dst_idx;
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});
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self.cur = (self.cur + 1) % n_cups;
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debug_println!(" after {}", self);
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// Cur points to whatever end of three used to.
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self.cups[self.cur.as_idx()] = self.cups[three[2].as_idx()];
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// End of three points to whatever dst used to point to.
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self.cups[three[2].as_idx()] = self.cups[dst.as_idx()];
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// Dst points to the beginning of three.
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self.cups[dst.as_idx()] = three[0].as_idx();
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// Cur points to whatever is next in the circle.
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self.cur = self.next(self.cur);
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}
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fn test_cur_to_end(&self) -> Vec<usize> {
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self.idx_to_val[self.cur..]
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.iter()
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.chain(self.idx_to_val[..self.cur].iter())
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.cloned()
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.collect()
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let mut res = Vec::with_capacity(self.cups.len());
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let mut cur = self.cur;
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(0..self.cups.len()).for_each(|_| {
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res.push(cur.0);
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cur = Cup::from_idx(self.cups[cur.as_idx()]);
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});
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res
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}
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fn part1_answer(&self) -> String {
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let one_idx = self.val_to_idx[1 - 1];
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let s = self.idx_to_val[one_idx + 1..]
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.iter()
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.fold("".to_string(), |acc, c| format!("{}{}", acc, c));
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self.idx_to_val[..one_idx]
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.iter()
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.fold(s, |acc, c| format!("{}{}", acc, c))
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let mut cur = Cup::new(1);
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let mut s = "".to_string();
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for _ in 1..self.cups.len() {
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cur = self.next(cur);
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s = format!("{}{}", s, cur.0);
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}
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s
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}
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fn part2_answer(&self) -> usize {
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let one_idx = self.val_to_idx[1 - 1];
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self.idx_to_val[one_idx + 1] * self.idx_to_val[one_idx + 2]
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let one = Cup::new(1);
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let v1 = self.next(one);
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let v2 = self.next(v1);
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v1.0 * v2.0
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}
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}
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@ -330,6 +309,7 @@ impl fmt::Display for SlowHand {
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}
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impl SlowHand {
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#[allow(dead_code)]
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fn new(s: &str) -> SlowHand {
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let cups: Vec<_> = s.bytes().map(|s| (s - b'0') as usize).collect();
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let min = *cups.iter().min().unwrap();
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@ -341,20 +321,6 @@ impl SlowHand {
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max,
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}
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}
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fn new_part2(s: &str) -> SlowHand {
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let mut cups: Vec<_> = s.bytes().map(|s| (s - b'0') as usize).collect();
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let min = *cups.iter().min().unwrap();
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let mut max = *cups.iter().max().unwrap();
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cups.extend(max + 1..1000000);
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max = 1000000;
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SlowHand {
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cups,
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cur: 0,
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min,
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max,
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}
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}
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}
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impl Hand for SlowHand {
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@ -421,7 +387,7 @@ impl Hand for SlowHand {
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#[aoc(day23, part1)]
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fn solution1(input: &str) -> String {
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let mut hand = SlowHand::new(input);
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let mut hand = FastHand::new(input);
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hand.play(100);
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hand.part1_answer()
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}
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@ -429,7 +395,6 @@ fn solution1(input: &str) -> String {
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#[aoc(day23, part2)]
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fn solution2(input: &str) -> usize {
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let mut hand = FastHand::new_part2(input);
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//hand.play(1_000);
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hand.play(10_000_000);
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hand.part2_answer()
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}
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@ -460,13 +425,13 @@ mod tests {
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}
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#[test]
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fn slow_step() {
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let mut hand = SlowHand::new(INPUT);
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let hand = SlowHand::new(INPUT);
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test_hand(hand);
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}
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#[test]
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fn fast_step() {
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let mut hand = FastHand::new(INPUT);
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let hand = FastHand::new(INPUT);
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test_hand(hand);
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}
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@ -487,6 +452,8 @@ mod tests {
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fn part1() {
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assert_eq!(solution1(INPUT), "67384529");
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}
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// This is too slow in debug mode due to debug_println, build in release to run.
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#[cfg(not(debug_assertions))]
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#[test]
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fn part2() {
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assert_eq!(solution2("389125467"), 149245887792);
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@ -13,7 +13,7 @@ pub mod day2;
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pub mod day20;
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pub mod day21;
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pub mod day22;
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//pub mod day23;
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pub mod day23;
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pub mod day24;
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pub mod day25;
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pub mod day3;
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