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Project Euler problem 11
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| //! https://projecteuler.net/problem=11 | |
| // In the 20×20 grid below, four numbers along a diagonal line have been marked in red. | |
| // 08 02 22 97 38 15 00 40 00 75 04 05 07 78 52 12 50 77 91 08 | |
| // 49 49 99 40 17 81 18 57 60 87 17 40 98 43 69 48 04 56 62 00 | |
| // 81 49 31 73 55 79 14 29 93 71 40 67 53 88 30 03 49 13 36 65 | |
| // 52 70 95 23 04 60 11 42 69 24 68 56 01 32 56 71 37 02 36 91 | |
| // 22 31 16 71 51 67 63 89 41 92 36 54 22 40 40 28 66 33 13 80 | |
| // 24 47 32 60 99 03 45 02 44 75 33 53 78 36 84 20 35 17 12 50 | |
| // 32 98 81 28 64 23 67 10 26 38 40 67 59 54 70 66 18 38 64 70 | |
| // 67 26 20 68 02 62 12 20 95 63 94 39 63 08 40 91 66 49 94 21 | |
| // 24 55 58 05 66 73 99 26 97 17 78 78 96 83 14 88 34 89 63 72 | |
| // 21 36 23 09 75 00 76 44 20 45 35 14 00 61 33 97 34 31 33 95 | |
| // 78 17 53 28 22 75 31 67 15 94 03 80 04 62 16 14 09 53 56 92 | |
| // 16 39 05 42 96 35 31 47 55 58 88 24 00 17 54 24 36 29 85 57 | |
| // 86 56 00 48 35 71 89 07 05 44 44 37 44 60 21 58 51 54 17 58 | |
| // 19 80 81 68 05 94 47 69 28 73 92 13 86 52 17 77 04 89 55 40 | |
| // 04 52 08 83 97 35 99 16 07 97 57 32 16 26 26 79 33 27 98 66 | |
| // 88 36 68 87 57 62 20 72 03 46 33 67 46 55 12 32 63 93 53 69 | |
| // 04 42 16 73 38 25 39 11 24 94 72 18 08 46 29 32 40 62 76 36 | |
| // 20 69 36 41 72 30 23 88 34 62 99 69 82 67 59 85 74 04 36 16 | |
| // 20 73 35 29 78 31 90 01 74 31 49 71 48 86 81 16 23 57 05 54 | |
| // 01 70 54 71 83 51 54 69 16 92 33 48 61 43 52 01 89 19 67 48 | |
| // The product of these numbers is 26 × 63 × 78 × 14 = 1788696. | |
| // What is the greatest product of four adjacent numbers in the same direction | |
| // (up, down, left, right, or diagonally) in the 20×20 grid? | |
| use std::fs; | |
| use std::collections::BinaryHeap; | |
| #[derive(Debug, Clone, Copy)] | |
| enum Direction { | |
| Up, | |
| Down, | |
| Left, | |
| Right, | |
| DiagUp, | |
| DiagDown, | |
| } | |
| const DIRECTIONS: [Direction; 6] = [ | |
| Direction::Up, | |
| Direction::Down, | |
| Direction::Left, | |
| Direction::Right, | |
| Direction::DiagUp, | |
| Direction::DiagDown, | |
| ]; | |
| struct Grid(Vec<Vec<u8>>); | |
| impl Grid { | |
| fn new(rows: Vec<Vec<u8>>) -> Self { | |
| Grid(rows) | |
| } | |
| fn get(&self, x: usize, y: usize) -> Option<u8> { | |
| // bounds check | |
| if x < self.0[0].len() && y < self.0.len() { | |
| Some(self.0[y][x]) | |
| } else { | |
| None | |
| } | |
| } | |
| fn get_adj_group( | |
| &self, | |
| mut x: usize, | |
| mut y: usize, | |
| len: usize, | |
| direction: Direction, | |
| ) -> Option<Vec<u8>> { | |
| let mut group = Vec::with_capacity(len); | |
| for _ in 0..4 { | |
| if let Some(value) = self.get(x, y) { | |
| group.push(value); | |
| } else { | |
| // point does not exist because `step()` generated point outside the grid | |
| return None; | |
| } | |
| if let Some((new_x, new_y)) = step(x, y, direction) { | |
| x = new_x; | |
| y = new_y; | |
| } else { | |
| // can't step so return None as group cannot be completed | |
| return None; | |
| } | |
| } | |
| Some(group) | |
| } | |
| // products -> (direction, group, product) | |
| fn products(&self, x: usize, y: usize, group_len: usize) -> Vec<(Direction, Vec<u8>, u32)> { | |
| let mut result = Vec::with_capacity(DIRECTIONS.len()); | |
| for &direction in DIRECTIONS.iter() { | |
| if let Some(group) = self.get_adj_group(x, y, group_len, direction) { | |
| let product = group.iter().fold(1u32, |acc, &x| acc * x as u32); | |
| result.push((direction, group, product)); | |
| } | |
| } | |
| result | |
| } | |
| } | |
| fn step(x: usize, y: usize, direction: Direction) -> Option<(usize, usize)> { | |
| match direction { | |
| Direction::Up => { | |
| if y > 0 { | |
| Some((x, y - 1)) | |
| } else { | |
| None | |
| } | |
| } | |
| Direction::Down => Some((x, y + 1)), | |
| Direction::Left => { | |
| if x > 0 { | |
| Some((x - 1, y)) | |
| } else { | |
| None | |
| } | |
| } | |
| Direction::Right => Some((x + 1, y)), | |
| Direction::DiagUp => { | |
| if y > 0 { | |
| Some((x + 1, y - 1)) | |
| } else { | |
| None | |
| } | |
| } | |
| Direction::DiagDown => Some((x + 1, y + 1)), | |
| } | |
| } | |
| fn main() { | |
| let raw_grid = fs::read_to_string("p11_grid.txt").unwrap(); | |
| let rows = raw_grid | |
| .split('\n') | |
| .map(|row| { | |
| row.split(' ') | |
| .map(|n| n.trim().parse().unwrap()) | |
| .collect::<Vec<_>>() | |
| }) | |
| .collect::<Vec<_>>(); | |
| let grid = Grid::new(rows); | |
| let mut products = BinaryHeap::new(); | |
| for x in 0..=19 { | |
| for y in 0..=19 { | |
| println!("{:?}", (x, y)); | |
| for (dir, vals, prod) in grid.products(x, y, 4) { | |
| println!("{:?} {:?} ==> {}", dir, vals, prod); | |
| products.push(prod); | |
| } | |
| } | |
| } | |
| println!("max product = {:?}", products.peek()); | |
| } |
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| 08 02 22 97 38 15 00 40 00 75 04 05 07 78 52 12 50 77 91 08 | |
| 49 49 99 40 17 81 18 57 60 87 17 40 98 43 69 48 04 56 62 00 | |
| 81 49 31 73 55 79 14 29 93 71 40 67 53 88 30 03 49 13 36 65 | |
| 52 70 95 23 04 60 11 42 69 24 68 56 01 32 56 71 37 02 36 91 | |
| 22 31 16 71 51 67 63 89 41 92 36 54 22 40 40 28 66 33 13 80 | |
| 24 47 32 60 99 03 45 02 44 75 33 53 78 36 84 20 35 17 12 50 | |
| 32 98 81 28 64 23 67 10 26 38 40 67 59 54 70 66 18 38 64 70 | |
| 67 26 20 68 02 62 12 20 95 63 94 39 63 08 40 91 66 49 94 21 | |
| 24 55 58 05 66 73 99 26 97 17 78 78 96 83 14 88 34 89 63 72 | |
| 21 36 23 09 75 00 76 44 20 45 35 14 00 61 33 97 34 31 33 95 | |
| 78 17 53 28 22 75 31 67 15 94 03 80 04 62 16 14 09 53 56 92 | |
| 16 39 05 42 96 35 31 47 55 58 88 24 00 17 54 24 36 29 85 57 | |
| 86 56 00 48 35 71 89 07 05 44 44 37 44 60 21 58 51 54 17 58 | |
| 19 80 81 68 05 94 47 69 28 73 92 13 86 52 17 77 04 89 55 40 | |
| 04 52 08 83 97 35 99 16 07 97 57 32 16 26 26 79 33 27 98 66 | |
| 88 36 68 87 57 62 20 72 03 46 33 67 46 55 12 32 63 93 53 69 | |
| 04 42 16 73 38 25 39 11 24 94 72 18 08 46 29 32 40 62 76 36 | |
| 20 69 36 41 72 30 23 88 34 62 99 69 82 67 59 85 74 04 36 16 | |
| 20 73 35 29 78 31 90 01 74 31 49 71 48 86 81 16 23 57 05 54 | |
| 01 70 54 71 83 51 54 69 16 92 33 48 61 43 52 01 89 19 67 48 |
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