grid: row and column iterators
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test / AoC 2024 (push) Successful in 1m33s
All checks were successful
test / AoC 2024 (push) Successful in 1m33s
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@ -1,7 +1,7 @@
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use std::{
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fmt::{Debug, Display, Formatter, Write},
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io::{BufRead, Cursor},
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iter::repeat,
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iter::repeat_n,
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mem::swap,
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ops::{Add, AddAssign, Sub},
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str::FromStr,
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@ -82,29 +82,76 @@ where
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}
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}
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#[derive(Clone, Eq, PartialEq)]
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#[derive(Debug)]
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pub struct GridRowIter<'a, T> {
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iter: std::slice::Iter<'a, T>,
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}
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impl<'a, T: Clone + Eq + PartialEq + Debug> GridRowIter<'a, T> {
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fn new(grid: &'a Grid<T>, y: i64) -> Self {
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let iter = grid.data[y as usize * grid.width()..(y as usize + 1) * grid.width()].iter();
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Self { iter }
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}
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}
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impl<'a, T> Iterator for GridRowIter<'a, T> {
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type Item = &'a T;
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fn next(&mut self) -> Option<Self::Item> {
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self.iter.next()
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}
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fn size_hint(&self) -> (usize, Option<usize>) {
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self.iter.size_hint()
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}
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}
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#[derive(Debug)]
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pub struct GridColIter<'a, T> {
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grid: &'a Grid<T>,
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stride: usize,
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cur: usize,
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}
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impl<'a, T: Clone + Eq + PartialEq + Debug> GridColIter<'a, T> {
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fn new(grid: &'a Grid<T>, x: i64) -> Self {
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Self {
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grid,
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stride: grid.width(),
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cur: x as usize,
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}
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}
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}
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impl<'a, T: Clone + Eq + PartialEq + Debug> Iterator for GridColIter<'a, T> {
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type Item = &'a T;
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fn next(&mut self) -> Option<Self::Item> {
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let cur = self.cur;
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self.cur += self.stride;
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if cur < self.grid.data.len() {
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Some(&self.grid.data[cur])
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} else {
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None
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}
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}
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fn size_hint(&self) -> (usize, Option<usize>) {
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(self.grid.height() - 1, Some(self.grid.height() - 1))
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}
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}
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#[derive(Clone, Eq, PartialEq, Debug)]
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pub struct Grid<T> {
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pub data: Vec<T>,
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width: i64,
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}
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impl<T: Clone + Eq + PartialEq + Debug> Grid<T> {
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pub fn new(width: i64) -> Self {
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Self {
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data: Vec::new(),
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width,
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}
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}
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/// Returns a new [Grid] with the same shape (width x height) as `self`, filled with `fill`
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pub fn same_shape<NT: Clone + Eq + PartialEq + Debug>(&self, fill: NT) -> Grid<NT> {
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Grid {
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data: Vec::from_iter(repeat(fill).take(self.width() * self.height())),
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width: self.width,
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}
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Grid::with_shape(self.width(), self.height(), fill)
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}
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/// Returns a new [Grid] with the given shape (width x height), filled with `fill`
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pub fn with_shape(width: usize, height: usize, fill: T) -> Self {
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Self {
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data: Vec::from_iter(repeat(fill).take(width * height)),
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data: Vec::from_iter(repeat_n(fill, width * height)),
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width: width as i64,
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}
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}
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@ -178,9 +225,25 @@ impl<T: Clone + Eq + PartialEq + Debug> Grid<T> {
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}
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}
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pub fn row_iter(&self, y: i64) -> Option<GridRowIter<T>> {
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if (y as usize) < self.height() {
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Some(GridRowIter::new(self, y))
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} else {
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None
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}
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}
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pub fn col(&self, x: i64) -> Option<Vec<&T>> {
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if x < self.width() as i64 && x >= 0 {
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Some((0..self.height()).map(|y| self.get(&(x, y as i64)).unwrap()).collect())
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if let Some(iter) = self.col_iter(x) {
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Some(iter.collect())
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} else {
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None
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}
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}
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pub fn col_iter(&self, x: i64) -> Option<GridColIter<T>> {
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if (x as usize) < self.width() {
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Some(GridColIter::new(self, x))
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} else {
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None
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}
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@ -350,6 +413,28 @@ FBCG";
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assert_eq!(grid.forward_slice(&(0, 2), 4), Some(b"IJKL".as_slice()));
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}
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#[test]
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fn row_iter() {
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let grid = unchecked_load();
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assert_eq!(
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grid.row_iter(2).unwrap().collect::<Vec<_>>(),
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[&b'I', &b'J', &b'K', &b'L']
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);
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assert!(grid.row_iter(-1).is_none());
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assert!(grid.row_iter(4).is_none());
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}
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#[test]
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fn col_iter() {
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let grid = unchecked_load();
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assert_eq!(
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grid.col_iter(2).unwrap().collect::<Vec<_>>(),
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[&b'C', &b'G', &b'K', &b'C']
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);
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assert!(grid.col_iter(-1).is_none());
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assert!(grid.col_iter(4).is_none());
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}
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// #[test]
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// fn window_compare() {
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// let grid = unchecked_load();
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