Added commented out code to visualize the simulation
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@ -9,3 +9,4 @@ edition = "2021"
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anyhow = "1.0"
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anyhow = "1.0"
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regex = "1"
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regex = "1"
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lazy_static = "1.4.0"
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lazy_static = "1.4.0"
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gif = "0.12.0"
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@ -1,9 +1,10 @@
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#![feature(test)]
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#![feature(test)]
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use core::fmt;
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use core::fmt;
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use std::{str::FromStr, cmp::{min, max}};
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use std::{str::FromStr, cmp::{min, max}, borrow::Cow, fs::File};
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use anyhow::Result;
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use anyhow::Result;
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use aoc::Solver;
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use aoc::Solver;
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use gif::{Encoder, Repeat, Frame};
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// -- Runners --
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// -- Runners --
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fn main() -> Result<()> {
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fn main() -> Result<()> {
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@ -113,7 +114,7 @@ struct Cave {
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size: (usize, usize),
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size: (usize, usize),
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}
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}
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impl Cave {
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impl<'a> Cave {
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// Also returns the width and height of the cave
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// Also returns the width and height of the cave
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fn new(mut paths: Vec<Path>, floor: bool) -> Self {
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fn new(mut paths: Vec<Path>, floor: bool) -> Self {
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// The sand source is at 500, 0
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// The sand source is at 500, 0
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@ -251,12 +252,31 @@ impl Cave {
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println!("");
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println!("");
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}
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}
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fn frame(&self) -> Cow<[u8]> {
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let buffer = self.grid.iter().flat_map(|line| line.iter().map(|block| match block {
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Block::Air => 0,
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Block::Rock => 1,
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Block::Sand => 2,
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Block::Source => 3,
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Block::Void => 4,
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}).collect::<Vec<_>>()).collect::<Vec<u8>>();
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Cow::from(buffer)
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}
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fn count_sand(&self) -> usize {
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fn count_sand(&self) -> usize {
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self.grid.iter().flatten().filter(|&block| *block == Block::Sand).count()
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self.grid.iter().flatten().filter(|&block| *block == Block::Sand).count()
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}
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}
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}
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}
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// fn size(paths: Vec<Paths>)
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fn write_frame<T: std::io::Write>(encoder: &mut Encoder<T>, cave: &Cave, delay: u16) {
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let mut frame = Frame::default();
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frame.width = cave.size.0 as u16;
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frame.height = cave.size.1 as u16;
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frame.buffer = cave.frame();
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frame.delay = delay;
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encoder.write_frame(&frame).unwrap();
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}
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// -- Solution --
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// -- Solution --
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pub struct Day;
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pub struct Day;
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@ -271,9 +291,18 @@ impl aoc::Solver for Day {
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fn part1(input: &str) -> Self::Output1 {
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fn part1(input: &str) -> Self::Output1 {
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let mut cave = Cave::from_str(input, false);
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let mut cave = Cave::from_str(input, false);
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while cave.simulate_sand() {}
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// let color_map = &[0xFF, 0xFF, 0xFF, 0x00, 0x00, 0x00, 0xea, 0xc7, 0x99, 0xFF, 0x00, 0x00, 0x00, 0x00, 0xFF];
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// let mut image = File::create("visualize/14/part1.gif").unwrap();
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// let mut encoder = Encoder::new(&mut image, cave.size.0 as u16, cave.size.1 as u16, color_map).unwrap();
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// encoder.set_repeat(Repeat::Infinite).unwrap();
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cave.print();
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// write_frame(&mut encoder, &mut cave, 100);
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while cave.simulate_sand() {
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// write_frame(&mut encoder, &mut cave, 1);
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}
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// write_frame(&mut encoder, &mut cave, 1000);
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cave.count_sand()
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cave.count_sand()
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}
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}
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@ -281,9 +310,18 @@ impl aoc::Solver for Day {
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fn part2(input: &str) -> Self::Output2 {
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fn part2(input: &str) -> Self::Output2 {
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let mut cave = Cave::from_str(input, true);
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let mut cave = Cave::from_str(input, true);
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while cave.simulate_sand() {}
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// let color_map = &[0xFF, 0xFF, 0xFF, 0x00, 0x00, 0x00, 0xea, 0xc7, 0x99, 0xFF, 0x00, 0x00, 0x00, 0x00, 0xFF];
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// let mut image = File::create("visualize/14/part2.gif").unwrap();
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// let mut encoder = Encoder::new(&mut image, cave.size.0 as u16, cave.size.1 as u16, color_map).unwrap();
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// encoder.set_repeat(Repeat::Infinite).unwrap();
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cave.print();
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// write_frame(&mut encoder, &mut cave, 100);
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while cave.simulate_sand() {
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// write_frame(&mut encoder, &mut cave, 1);
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}
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// write_frame(&mut encoder, &mut cave, 1000);
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cave.count_sand()
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cave.count_sand()
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}
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}
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BIN
2022/visualize/14/part1.gif
Normal file
BIN
2022/visualize/14/part1.gif
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Binary file not shown.
After Width: | Height: | Size: 808 KiB |
BIN
2022/visualize/14/part2.gif
Normal file
BIN
2022/visualize/14/part2.gif
Normal file
Binary file not shown.
After Width: | Height: | Size: 23 MiB |
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