day2: optimized
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@ -1,62 +1,49 @@
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#![feature(test)]
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extern crate test;
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const INPUTS: [&str; 2] = [include_str!("./sample.txt"), include_str!("./input.txt")];
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const INPUTS: [&[u8]; 2] = [
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include_bytes!("./sample.txt"),
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include_bytes!("./input.txt"),
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];
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#[derive(Debug, Copy, Clone)]
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pub enum Move {
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Red(u32),
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Green(u32),
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Blue(u32),
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Unknown,
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}
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fn process(data: &str) -> u64 {
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fn process(data: &[u8]) -> u64 {
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let mut total = 0;
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for line in data.lines() {
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for line in data.split(|&x| x == b'\n') {
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if line.is_empty() {
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continue;
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}
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let (gid, remain) = line.split_once(':').unwrap();
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let gid = gid
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.split_once(' ')
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.map(|(_, x)| x.parse::<u64>().unwrap())
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.unwrap();
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let moves = remain.split(';').map(|x| {
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let mut output = 0u64;
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let cubes = x.split(',');
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for cube in cubes {
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let cube = cube.trim();
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let (count, color) = cube.split_once(' ').unwrap();
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let count = count.parse::<u64>().unwrap();
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match color {
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"red" => output |= count << 32,
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"green" => output |= count << 16,
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"blue" => output |= count,
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_ => unreachable!(),
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}
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}
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output
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});
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let line = &line[5..];
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let (gid, mut line) = read_int(line);
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let mut possible = true;
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for mmove in moves {
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let red = (mmove & (0xffff << 32)) >> 32;
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let green = (mmove & (0xffff << 16)) >> 16;
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let blue = mmove & (0xffff);
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if red > 12 || green > 13 || blue > 14 {
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while !line.is_empty() {
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let (num, l) = read_int(&line[1..]);
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match l {
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[b'r', ..] => {
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line = &l[3..];
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if num > 12 {
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possible = false;
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break;
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}
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}
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[b'g', ..] => {
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line = &l[5..];
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if num > 13 {
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possible = false;
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}
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}
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[b'b', ..] => {
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line = &l[4..];
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if num > 14 {
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possible = false;
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}
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}
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[b' ', ..] => line = l,
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_ => (),
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}
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}
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if possible {
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total += gid;
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}
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@ -65,6 +52,28 @@ fn process(data: &str) -> u64 {
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total
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}
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fn read_int(line: &[u8]) -> (u64, &[u8]) {
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let mut num = 0u64;
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let mut multiplier = 10_000u64;
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let mut ops_done = 0;
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for i in 0..line.len() {
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let c = line[i];
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if c.is_ascii_digit() {
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let c = line[i] - b'0';
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ops_done += 1;
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num += multiplier * c as u64;
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multiplier /= 10;
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} else if num != 0 {
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return (num / (10u64.pow(5 - ops_done)), &line[i + 1..]);
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} else {
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break;
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}
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}
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(num / (10u64.pow(5 - ops_done)), line)
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}
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fn main() {
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for input in INPUTS.iter() {
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println!("total = {}", process(input));
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@ -1,50 +1,45 @@
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#![feature(slice_split_once)]
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#![feature(test)]
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extern crate test;
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const INPUTS: [&str; 2] = [include_str!("./sample.txt"), include_str!("./input.txt")];
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const INPUTS: [&[u8]; 2] = [
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include_bytes!("./sample.txt"),
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include_bytes!("./input.txt"),
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];
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fn process(data: &str) -> u64 {
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fn process(data: &[u8]) -> u64 {
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let mut total = 0;
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for line in data.lines() {
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for line in data.split(|&x| x == b'\n') {
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if line.is_empty() {
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continue;
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}
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let (_, remain) = line.split_once(':').unwrap();
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let moves = remain.split(';').map(|x| {
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let mut output = 0u64;
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let cubes = x.split(',');
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for cube in cubes {
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let cube = cube.trim();
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let (count, color) = cube.split_once(' ').unwrap();
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let count = count.parse::<u64>().unwrap();
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match color {
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"red" => output |= count << 32,
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"green" => output |= count << 16,
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"blue" => output |= count,
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_ => unreachable!(),
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}
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}
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output
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});
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let mut min_red = 0;
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let mut min_green = 0;
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let mut min_blue = 0;
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for mmove in moves {
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let red = (mmove & (0xffff << 32)) >> 32;
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let green = (mmove & (0xffff << 16)) >> 16;
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let blue = mmove & 0xffff;
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let line = &line[5..];
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let (_, mut line) = read_int(line);
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min_red = min_red.max(red);
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min_green = min_green.max(green);
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min_blue = min_blue.max(blue);
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while !line.is_empty() {
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let (num, l) = read_int(&line[1..]);
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match l {
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[b'r', ..] => {
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min_red = min_red.max(num);
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line = &l[3..];
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}
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[b'g', ..] => {
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min_green = min_green.max(num);
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line = &l[5..];
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}
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[b'b', ..] => {
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min_blue = min_blue.max(num);
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line = &l[4..];
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}
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[b' ', ..] => line = l,
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_ => (),
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}
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}
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total += min_red * min_green * min_blue;
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@ -53,6 +48,28 @@ fn process(data: &str) -> u64 {
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total
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}
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fn read_int(line: &[u8]) -> (u64, &[u8]) {
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let mut num = 0u64;
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let mut multiplier = 10_000u64;
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let mut ops_done = 0;
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for i in 0..line.len() {
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let c = line[i];
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if c.is_ascii_digit() {
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let c = line[i] - b'0';
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ops_done += 1;
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num += multiplier * c as u64;
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multiplier /= 10;
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} else if num != 0 {
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return (num / (10u64.pow(5 - ops_done)), &line[i + 1..]);
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} else {
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break;
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}
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}
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(num / (10u64.pow(5 - ops_done)), line)
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}
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fn main() {
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for input in INPUTS.iter() {
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println!("total = {}", process(input));
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