2022 Day 11
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2022/src/bin/day11.rs
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199
2022/src/bin/day11.rs
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use std::collections::VecDeque;
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use regex::Regex;
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const INPUT: &str = include_str!("../../input/day11.txt");
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fn main() {
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let monkeys: Vec<Monkey> = aoc::blocks(INPUT).map(Monkey::parse).collect();
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println!("Part 1: {}", monkey_business(monkeys.clone(), 20, 3));
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println!("Part 2: {}", monkey_business(monkeys, 10_000, 1));
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}
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fn monkey_business(mut monkeys: Vec<Monkey>, rounds: usize, confidence: i64) -> usize {
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let yolo_factor: i64 = monkeys.iter().map(|m| m.test.divisor).product();
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for _ in 1..=rounds {
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for m in 0..monkeys.len() {
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let mut monkey = std::mem::take(&mut monkeys[m]);
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let mut items = std::mem::take(&mut monkey.items);
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for mut item in items.drain(0..) {
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monkey.inspections += 1;
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item.worry = monkey.operation.apply(item.worry);
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item.worry /= confidence;
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item.worry %= yolo_factor;
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let dest = monkey.test.apply(item.worry);
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monkeys[dest].items.push_back(item);
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}
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let id = monkey.id;
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monkeys[id] = monkey;
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}
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}
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let mut counts: Vec<usize> = monkeys.iter().map(|m| m.inspections).collect();
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counts.sort();
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counts.iter().rev().take(2).product()
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}
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#[derive(Debug, Clone, Default)]
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struct Monkey {
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id: usize,
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items: VecDeque<Item>,
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operation: Operation,
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test: Test,
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inspections: usize,
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}
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type Worry = i64;
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#[derive(Debug, Copy, Clone, Default)]
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struct Item {
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worry: Worry,
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}
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#[derive(Debug, Copy, Clone, Default)]
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struct Operation {
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operator: Operator,
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operand: Operand,
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}
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#[derive(Debug, Copy, Clone, Default)]
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enum Operator {
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#[default]
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Plus,
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Times,
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}
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#[derive(Debug, Copy, Clone, Default)]
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enum Operand {
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Const(i64),
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#[default]
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Old,
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}
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impl Operation {
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fn parse(line: &str) -> Self {
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assert!(line.starts_with(" Operation: "));
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let re = Regex::new(r"new = old (.) (.+)").unwrap();
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let caps = re.captures(line).unwrap();
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use {Operand::*, Operator::*};
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let operator = match &caps[1] {
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"+" => Plus,
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"*" => Times,
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other => panic!("{}", other),
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};
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let operand = match &caps[2] {
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"old" => Operand::Old,
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i => Const(i.parse().unwrap()),
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};
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Operation { operator, operand }
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}
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fn apply(&self, old: Worry) -> Worry {
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use {Operand::*, Operator::*};
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match (self.operand, self.operator) {
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(Const(n), Plus) => old + n,
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(Old, Plus) => old + old,
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(Const(n), Times) => old * n,
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(Old, Times) => old * old,
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}
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}
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}
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#[derive(Debug, Copy, Clone, Default)]
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struct Test {
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divisor: i64,
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target_true: usize,
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target_false: usize,
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}
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impl Test {
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fn parse(lines: &[&str]) -> Self {
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let divisor: i64 = {
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let line = lines[0];
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let re = Regex::new(r"^ Test: divisible by (\d+)$").unwrap();
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let caps = re.captures(line).unwrap();
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caps[1].parse().unwrap()
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};
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let target_true: usize = {
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let line = lines[1];
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let re = Regex::new(r"^ If true: throw to monkey (\d+)$").unwrap();
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let caps = re.captures(line).unwrap();
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caps[1].parse().unwrap()
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};
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let target_false: usize = {
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let line = lines[2];
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let re = Regex::new(r"^ If false: throw to monkey (\d+)$").unwrap();
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let caps = re.captures(line).unwrap();
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caps[1].parse().unwrap()
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};
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Self {
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divisor,
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target_true,
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target_false,
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}
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}
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fn apply(&self, worry: Worry) -> usize {
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if worry % self.divisor == 0 {
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self.target_true
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} else {
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self.target_false
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}
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}
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}
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impl Monkey {
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fn parse(s: &str) -> Self {
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let lines: Vec<&str> = aoc::lines(s).collect();
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let id: usize = {
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let line = lines[0];
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let re = Regex::new(r"^Monkey (\d+):").unwrap();
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let caps = re.captures(line).unwrap();
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caps[1].parse().unwrap()
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};
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let items: VecDeque<Item> = {
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let line = lines[1];
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assert!(line.starts_with(" Starting items: "));
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let re = Regex::new(r"(\d+)").unwrap();
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re.captures_iter(line)
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.map(|cap| {
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let worry = cap[1].parse().unwrap();
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Item { worry }
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})
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.collect()
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};
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let operation = Operation::parse(lines[2]);
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let test = Test::parse(&lines[3..]);
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Self {
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id,
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items,
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operation,
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test,
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inspections: 0,
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}
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}
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}
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