Completed day 2
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day02/Cargo.lock
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day02/Cargo.lock
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# This file is automatically @generated by Cargo.
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# It is not intended for manual editing.
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[[package]]
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name = "anyhow"
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version = "1.0.34"
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source = "registry+https://github.com/rust-lang/crates.io-index"
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checksum = "bf8dcb5b4bbaa28653b647d8c77bd4ed40183b48882e130c1f1ffb73de069fd7"
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[[package]]
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name = "day02"
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version = "0.1.0"
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dependencies = [
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"anyhow",
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]
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day02/Cargo.toml
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day02/Cargo.toml
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[package]
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name = "day02"
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version = "0.1.0"
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authors = ["Tyler Hallada <tyler@hallada.net>"]
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edition = "2018"
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# See more keys and their definitions at https://doc.rust-lang.org/cargo/reference/manifest.html
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[dependencies]
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anyhow= "1.0"
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1000
day02/input/input.txt
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day02/input/input.txt
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3
day02/input/test.txt
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day02/input/test.txt
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1-3 a: abcde
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1-3 b: cdefg
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2-9 c: ccccccccc
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171
day02/src/main.rs
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day02/src/main.rs
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use anyhow::{anyhow, Error, Result};
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use std::fs::File;
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use std::io::prelude::*;
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use std::io::BufReader;
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use std::ops::Range;
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use std::str::FromStr;
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const INPUT: &str = "input/input.txt";
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#[derive(Debug, PartialEq)]
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struct PasswordRule {
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letter: char,
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range: Range<usize>,
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}
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impl FromStr for PasswordRule {
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type Err = Error;
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fn from_str(s: &str) -> Result<Self> {
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let mut parts = s.split(" ");
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let mut range = parts
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.next()
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.ok_or_else(|| anyhow!("Failed to parse PasswordRule range"))?
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.split("-");
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let start = range
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.next()
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.ok_or_else(|| anyhow!("Failed to parse PasswordRule range start"))?
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.parse()?;
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let end: usize = range
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.next()
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.ok_or_else(|| anyhow!("Failed to parse PasswordRule range end"))?
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.parse()?;
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let letter = parts
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.next()
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.ok_or_else(|| anyhow!("Failed to parse PasswordRule letter"))?
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.parse()?;
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Ok(Self {
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letter,
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range: Range {
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start,
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end: end + 1,
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},
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})
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}
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}
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#[derive(Debug, PartialEq)]
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struct PasswordEntry {
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rule: PasswordRule,
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password: String,
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}
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impl FromStr for PasswordEntry {
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type Err = Error;
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fn from_str(s: &str) -> Result<Self> {
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let mut parts = s.split(": ");
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let rule = parts
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.next()
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.ok_or_else(|| anyhow!("Failed to parse PasswordRule range"))?
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.parse()?;
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let password = parts
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.next()
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.ok_or_else(|| anyhow!("Failed to parse PasswordRule range start"))?
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.to_owned();
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Ok(Self { rule, password })
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}
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}
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impl PasswordEntry {
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fn validate_occurences(&self) -> bool {
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self.rule
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.range
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.contains(&self.password.chars().fold(0, |acc, c| match c {
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_ if c == self.rule.letter => acc + 1,
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_ => acc,
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}))
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}
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fn validate_positions(&self) -> bool {
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let mut chars = self.password.chars();
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let left = chars.nth(self.rule.range.start - 1) == Some(self.rule.letter);
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let right =
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chars.nth(self.rule.range.end - self.rule.range.start - 2) == Some(self.rule.letter);
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left ^ right
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}
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}
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fn solve_part1(input_path: &str) -> Result<usize> {
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let file = File::open(input_path)?;
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let reader = BufReader::new(file);
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Ok(reader
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.lines()
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.map(|line| PasswordEntry::from_str(&line.unwrap()).unwrap())
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.filter(|entry| entry.validate_occurences())
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.count())
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}
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fn solve_part2(input_path: &str) -> Result<usize> {
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let file = File::open(input_path)?;
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let reader = BufReader::new(file);
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Ok(reader
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.lines()
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.map(|line| PasswordEntry::from_str(&line.unwrap()).unwrap())
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.filter(|entry| entry.validate_positions())
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.count())
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}
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fn main() {
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println!("Part 1: {}", solve_part1(INPUT).unwrap());
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println!("Part 2: {}", solve_part2(INPUT).unwrap());
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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const TEST_INPUT: &str = "input/test.txt";
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#[test]
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fn parses_input() {
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let file = File::open(TEST_INPUT).unwrap();
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let reader = BufReader::new(file);
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let input: Vec<PasswordEntry> = reader
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.lines()
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.map(|line| PasswordEntry::from_str(&line.unwrap()).unwrap())
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.collect();
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assert_eq!(
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input[0],
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PasswordEntry {
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rule: PasswordRule {
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letter: 'a',
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range: Range { start: 1, end: 4 }
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},
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password: "abcde".to_string(),
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}
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);
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assert_eq!(
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input[1],
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PasswordEntry {
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rule: PasswordRule {
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letter: 'b',
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range: Range { start: 1, end: 4 }
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},
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password: "cdefg".to_string(),
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}
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);
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assert_eq!(
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input[2],
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PasswordEntry {
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rule: PasswordRule {
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letter: 'c',
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range: Range { start: 2, end: 10 }
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},
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password: "ccccccccc".to_string(),
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}
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);
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}
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#[test]
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fn solves_part1() {
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assert_eq!(solve_part1(TEST_INPUT).unwrap(), 2);
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}
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#[test]
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fn solves_part2() {
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assert_eq!(solve_part2(TEST_INPUT).unwrap(), 1);
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}
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}
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