add 85 and 86
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@@ -0,0 +1,8 @@
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[package]
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name = "euler85"
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version = "0.1.0"
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edition = "2021"
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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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@@ -0,0 +1,66 @@
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const TARGET: usize = 2_000_000;
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fn main() {
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let mut x = 1_000;
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let mut y = 2;
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let mut grid = Grid::new(x, y);
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let mut number;
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let mut best_grid = grid.clone();
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let mut best_diff = 5_000_000;
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loop {
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number = grid.number_rectangles();
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let diff = number.abs_diff(TARGET);
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if diff < best_diff {
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best_diff = diff;
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best_grid = grid.clone();
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}
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if number < TARGET {
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y += 1;
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} else {
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x -= 1;
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}
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if x == 1 {
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break;
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}
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grid = Grid::new(x, y);
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}
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let area = best_grid.area();
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println!("{area}");
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}
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#[derive(Debug, Clone)]
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struct Grid {
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x: usize,
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y: usize,
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}
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impl Grid {
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fn new(x: usize, y: usize) -> Self {
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Self { x, y }
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}
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fn number_rectangles(&self) -> usize {
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let mut result = 0;
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for x in 1..=self.x {
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for y in 1..=self.y {
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result += self.fits(x, y);
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}
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}
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result
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}
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fn fits(&self, x: usize, y: usize) -> usize {
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let fits_in_x = self.x - (x - 1);
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let fits_in_y = self.y - (y - 1);
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fits_in_x * fits_in_y
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}
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fn area(&self) -> usize {
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self.x * self.y
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}
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}
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@@ -0,0 +1,11 @@
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[package]
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name = "euler86"
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version = "0.1.0"
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edition = "2021"
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# See more keys and their definitions at https://doc.rust-lang.org/cargo/reference/manifest.html
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[profile.release]
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lto = "fat"
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debug = true
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@@ -0,0 +1,60 @@
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use std::f64::EPSILON;
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const TARGET: u32 = 1_000_000;
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fn main() {
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let mut m = 1;
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let mut distinct = 0;
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loop {
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println!("trying: {m}");
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for x in 1..m + 1 {
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for y in x..m + 1 {
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let z = m;
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let c = Cuboid::new(x, y, z);
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if c.shortest_path_is_integer() {
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distinct += 1;
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};
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}
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}
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if distinct > TARGET {
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break;
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}
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m += 1;
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}
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println!("\n{m}");
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}
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struct Cuboid {
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x: u32,
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y: u32,
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z: u32,
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}
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impl Cuboid {
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fn new(x: u32, y: u32, z: u32) -> Self {
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Self { x, y, z }
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}
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fn shortest_path_is_integer(&self) -> bool {
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// because of the way we iterator over x, y and z, these are guaranteed to be in order
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// and therefore produces the shortest path
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let shortest_path = pythagorean(self.x + self.y, self.z);
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is_integer(shortest_path)
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}
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}
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fn pythagorean(x: u32, y: u32) -> f64 {
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((x.pow(2) + y.pow(2)) as f64).sqrt()
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}
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fn is_integer(result: f64) -> bool {
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let rounded = result.round();
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(result - rounded).abs() <= EPSILON
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}
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