day4: complete solution
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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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					version = 3
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					[[package]]
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					name = "day4"
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					version = "0.1.0"
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								4/Cargo.toml
									
									
									
									
									
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					[package]
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					name = "day4"
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					version = "0.1.0"
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					edition = "2021"
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					[dependencies]
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								4/src/main.rs
									
									
									
									
									
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								4/src/main.rs
									
									
									
									
									
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					use std::fs::File;
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					use std::io::{BufRead, BufReader, Lines};
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					use std::time::{Duration, Instant};
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					// BOILERPLATE
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					type InputIter = Lines<BufReader<File>>;
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					pub fn get_input() -> InputIter {
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					    let f = File::open("input").unwrap();
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					    let br = BufReader::new(f);
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					    br.lines()
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					}
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					fn duration_format(duration: Duration) -> String {
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					    match duration.as_secs_f64() {
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					        x if x > 1.0 => format!("{:.3}s", x),
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					        x if x > 0.010 => format!("{:.3}ms", x * 1e3),
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					        x => format!("{:.3}us", x * 1e6),
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					    }
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					}
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					fn main() {
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					    let input = get_input();
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					    let start = Instant::now();
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					    let ans1 = problem1(input);
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					    let duration1 = start.elapsed();
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					    println!("Problem 1 solution: {} [{}]", ans1, duration_format(duration1));
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					    let input = get_input();
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					    let start = Instant::now();
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					    let ans2 = problem2(input);
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					    let duration2 = start.elapsed();
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					    println!("Problem 2 solution: {} [{}]", ans2, duration_format(duration2));
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					    println!("Total duration: {}", duration_format(duration1 + duration2));
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					}
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					struct WordSearch {
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					    rows: Vec<String>,
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					}
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					impl<T: BufRead> From<Lines<T>> for WordSearch {
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					    fn from(input: Lines<T>) -> Self {
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					        let mut rows = Vec::new();
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					        for line in input.map(|i| i.unwrap()) {
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					            rows.push(line);
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					        }
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					        Self { rows }
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					    }
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					}
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					impl WordSearch {
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					    fn count_occurences(haystack: &str, needle: &str) -> u64 {
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					        let mut count = 0;
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					        for start in 0..haystack.len() - needle.len() + 1 {
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					            if &haystack[start..start + needle.len()] == needle {
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					                count += 1;
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					            }
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					        }
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					        count
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					    }
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					    fn count_forward(&self, needle: &str) -> u64 {
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					        let mut count = 0;
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					        for row in &self.rows {
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					            count += Self::count_occurences(row, needle)
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					        }
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					        count
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					    }
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					    fn count_vertical(&self, needle: &str) -> u64 {
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					        let mut count = 0;
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					        for col in 0..self.rows[0].len() {
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					            let s: String = self.rows.iter().map(|row| row.chars().nth(col).unwrap()).collect();
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					            count += Self::count_occurences(&s, needle)
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					        }
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					        count
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					    }
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					    fn count_diagonal(&self, needle: &str) -> u64 {
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					        let width = self.rows[0].len();
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					        let height = self.rows.len();
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					        let mut count = 0;
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					        for x in 0..width {
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					            for y in 0..height {
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					                // check down-right
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					                if x <= width - needle.len() && y <= height - needle.len() {
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					                    let s: String = (0..needle.len())
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					                        .into_iter()
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					                        .map(|i| self.rows[y + i].chars().nth(x + i).unwrap())
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					                        .collect();
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					                    if s == needle {
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					                        count += 1
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					                    }
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					                }
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					                // check down-left
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					                if x >= needle.len() - 1 && y <= height - needle.len() {
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					                    let s: String = (0..needle.len())
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					                        .into_iter()
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					                        .map(|i| self.rows[y + i].chars().nth(x - i).unwrap())
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					                        .collect();
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					                    if s == needle {
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					                        count += 1
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					                    }
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					                }
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					            }
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					        }
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					        count
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					    }
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					    fn get(&self, x: usize, y: usize) -> char {
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					        self.rows[y].chars().nth(x).unwrap()
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					    }
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					    fn count_x_mas(&self) -> u64 {
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					        // M.M M.S S.M S.S
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					        // .A. .A. .A. .A.
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					        // S.S M.S S.M M.M
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					        let searches: [[char;5]; 4] = ["MMASS", "MSAMS", "SMASM", "SSAMM"].map(|s| s.chars().collect::<Vec<char>>().try_into().unwrap());
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					        let width = self.rows[0].len();
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					        let height = self.rows.len();
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					        let mut count = 0;
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					        for x in 0..width - 2 {
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					            for y in 0..height - 2 {
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					                let s = [
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					                    self.get(x, y),
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					                    self.get(x + 2, y),
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					                    self.get(x + 1, y + 1),
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					                    self.get(x, y + 2),
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					                    self.get(x + 2, y + 2),
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					                ];
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					                for needle in &searches {
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					                    if needle == &s {
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					                        count += 1
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					                    }
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					                }
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					            }
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					        }
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					        count
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					    }
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					}
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					// PROBLEM 1 solution
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					fn problem1<T: BufRead>(input: Lines<T>) -> u64 {
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					    let needle = "XMAS";
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					    let needle_rev: String = needle.chars().rev().collect();
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					    let ws = WordSearch::from(input);
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					    ws.count_forward(needle)
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					        + ws.count_forward(&needle_rev)
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					        + ws.count_vertical(needle)
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					        + ws.count_vertical(&needle_rev)
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					        + ws.count_diagonal(needle)
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					        + ws.count_diagonal(&needle_rev)
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					}
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					// PROBLEM 2 solution
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					fn problem2<T: BufRead>(input: Lines<T>) -> u64 {
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					    let ws = WordSearch::from(input);
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					    ws.count_x_mas()
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					}
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					#[cfg(test)]
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					mod tests {
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					    use crate::*;
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					    use std::io::Cursor;
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					    const EXAMPLE: &str = &"MMMSXXMASM
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					MSAMXMSMSA
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					AMXSXMAAMM
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					MSAMASMSMX
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					XMASAMXAMM
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					XXAMMXXAMA
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					SMSMSASXSS
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					SAXAMASAAA
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					MAMMMXMMMM
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					MXMXAXMASX";
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					    #[test]
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					    fn problem1_example() {
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					        let c = Cursor::new(EXAMPLE);
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					        assert_eq!(problem1(c.lines()), 18);
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					    }
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					    #[test]
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					    fn problem2_example() {
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					        let c = Cursor::new(EXAMPLE);
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					        assert_eq!(problem2(c.lines()), 9);
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					    }
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					}
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