2021-05-03 20:05:05 +00:00
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use image::{
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codecs::png::{CompressionType, FilterType, PngEncoder},
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2022-05-28 21:42:42 +00:00
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ImageBuffer, ImageEncoder,
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2021-05-03 20:05:05 +00:00
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};
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2021-06-27 19:35:43 +00:00
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use rayon::ThreadPoolBuilder;
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2021-05-03 20:05:05 +00:00
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use std::{fs::File, io::Write};
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use vek::*;
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use veloren_world::{
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sim::{FileOpts, WorldOpts, DEFAULT_WORLD_MAP},
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Land, World,
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};
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fn grey_from_scalar(lo: f32, hi: f32, x: f32) -> [u8; 3] {
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let y = (x - lo) / (hi - lo);
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let z = (y * 255.0) as u8;
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[z, z, z]
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}
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fn grey_from_scalar_thresh(k: f32) -> impl Fn(f32, f32, f32) -> [u8; 3] {
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move |lo: f32, hi: f32, x: f32| -> [u8; 3] {
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let y = (x - lo) / (hi - lo);
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let y = if y > k {
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let mut y = y;
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// y \in [K, 1.0]
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y -= k;
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// y \in [0.0, 1.0-k]
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y *= 0.5 / (1.0 - k);
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// y \in [0.0, 0.50]
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y + 0.5
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} else {
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0.0
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};
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let z = (y * 255.0) as u8;
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[z, z, z]
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}
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}
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fn rgb_from_scalar(lo: f32, hi: f32, x: f32) -> [u8; 3] {
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let (lo, hi, x) = if lo < 0.0 {
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(0.0, hi - lo, x - lo)
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} else {
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(lo, hi, x)
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};
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let mid = (hi - lo) / 2.0;
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let r = 0;
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let g = if x < mid {
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0
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} else {
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// x \in [mid, hi]
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let mut g = x - mid;
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// g \in [0, hi-mid]
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g /= hi - mid;
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// g \in [0, 1]
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g *= 255.0;
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// g \in [0, 255]
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g as u8
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};
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let b = if x >= mid {
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255 - ((x - mid) / mid * 255.0) as u8
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} else {
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// x \in [0, mid]
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let mut b = x / mid;
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// b \in [0, 1]
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b *= 255.0;
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// b \in [0, 255]
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b as u8
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};
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[r, g, b]
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}
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fn image_from_function<F: FnMut(u32, u32) -> [u8; 3]>(
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name: &str,
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width: u32,
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height: u32,
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mut f: F,
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) {
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let mut heightmap: ImageBuffer<image::Rgb<u8>, Vec<u8>> = ImageBuffer::new(width, height);
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for x in 0..width {
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for y in 0..height {
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heightmap.put_pixel(x, y, image::Rgb(f(x, y)));
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}
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}
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let mut heightmap_png = Vec::new();
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let png =
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PngEncoder::new_with_quality(&mut heightmap_png, CompressionType::Best, FilterType::Paeth);
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2022-05-28 21:42:42 +00:00
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png.write_image(
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2022-09-23 22:15:24 +00:00
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heightmap.as_raw(),
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2021-05-03 20:05:05 +00:00
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heightmap.width(),
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heightmap.height(),
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image::ColorType::Rgb8,
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)
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.unwrap();
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let mut f = File::create(name).unwrap();
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2022-09-23 22:15:24 +00:00
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f.write_all(&heightmap_png).unwrap();
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2021-05-03 20:05:05 +00:00
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}
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fn image_with_autorange<F: Fn(f32, f32, f32) -> [u8; 3], G: FnMut(u32, u32) -> f32>(
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name: &str,
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width: u32,
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height: u32,
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f: F,
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mut g: G,
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) {
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let (mut lo, mut hi) = (f32::INFINITY, -f32::INFINITY);
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for x in 0..width {
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for y in 0..height {
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let h = g(x, y);
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lo = lo.min(h);
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hi = hi.max(h);
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//println!("{} {}: {:?}", x, y, h);
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}
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}
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//println!("lo: {:?}", lo);
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//println!("hi: {:?}", hi);
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image_from_function(name, width, height, |x, y| f(lo, hi, g(x, y)));
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}
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fn main() {
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common_frontend::init_stdout(None);
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2021-06-27 19:35:43 +00:00
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let pool = ThreadPoolBuilder::new().build().unwrap();
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2021-05-03 20:05:05 +00:00
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println!("Loading world");
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2021-06-27 19:35:43 +00:00
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let (world, _index) = World::generate(
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59686,
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WorldOpts {
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seed_elements: true,
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world_file: FileOpts::LoadAsset(DEFAULT_WORLD_MAP.into()),
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2021-12-15 15:37:59 +00:00
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calendar: None,
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2021-06-27 19:35:43 +00:00
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},
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&pool,
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2023-10-02 14:51:03 +00:00
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&|_| {},
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2021-06-27 19:35:43 +00:00
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);
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2021-05-03 20:05:05 +00:00
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println!("Loaded world");
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let land = Land::from_sim(world.sim());
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image_with_autorange("heightmap.png", 1024, 1024, rgb_from_scalar, |x, y| {
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land.get_alt_approx(Vec2::new(x as i32 * 32, y as i32 * 32))
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});
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2021-05-03 21:23:43 +00:00
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image_with_autorange(
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"heightmap_big.png",
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1024 * 4,
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1024 * 4,
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rgb_from_scalar,
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|x, y| land.get_alt_approx(Vec2::new(x as i32 * 8, y as i32 * 8)),
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);
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2021-05-03 20:05:05 +00:00
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image_with_autorange("heightmap_dx.png", 1024, 1024, grey_from_scalar, |x, y| {
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let mut v = 0.0;
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for i in -1i32..=1 {
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for j in -1i32..=1 {
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let sobel = (2 - i.abs()) * (-j);
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v += sobel as f32
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* land.get_alt_approx(Vec2::new((x as i32 + i) * 32, (y as i32 + j) * 32));
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}
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}
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v
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});
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image_with_autorange("heightmap_dy.png", 1024, 1024, grey_from_scalar, |x, y| {
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let mut v = 0.0;
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for i in -1i32..=1 {
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for j in -1i32..=1 {
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let sobel = (2 - j.abs()) * (-i);
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v += sobel as f32
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* land.get_alt_approx(Vec2::new((x as i32 + i) * 32, (y as i32 + j) * 32));
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}
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}
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v
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});
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image_with_autorange(
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"heightmap_magnitude.png",
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1024,
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1024,
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grey_from_scalar,
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|x, y| {
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let mut dx = 0.0;
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for i in -1i32..=1 {
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for j in -1i32..=1 {
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let sobel = (2 - i.abs()) * (-j);
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dx += sobel as f32
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* land.get_alt_approx(Vec2::new((x as i32 + i) * 32, (y as i32 + j) * 32));
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}
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}
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let mut dy = 0.0;
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for i in -1i32..=1 {
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for j in -1i32..=1 {
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let sobel = (2 - j.abs()) * (-i);
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dy += sobel as f32
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* land.get_alt_approx(Vec2::new((x as i32 + i) * 32, (y as i32 + j) * 32));
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}
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}
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(dx * dx + dy * dy).sqrt()
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},
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);
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2021-05-03 21:23:43 +00:00
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if false {
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for i in 1..=100 {
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#[rustfmt::skip]
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// convert -delay 10 -loop 0 -dispose previous heightmap_delta_{001..100}.png heightmap_thresholds.gif
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// convert -delay 20 -loop 0 -dispose previous $(seq 1 3 100 | xargs printf "heightmap_delta_%03d.png ") heightmap_thresholds.gif
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image_with_autorange(
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&format!("heightmap_delta_{:03}.png", i),
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1024,
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1024,
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grey_from_scalar_thresh(i as f32 * 0.01),
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|x, y| {
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let mut v = 0.0;
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for i in -1i32..=1 {
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for j in -1i32..=1 {
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let tmp = if i == 0 && j == 0 {
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1.0
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} else if (i + j).abs() == 1 {
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-0.25
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} else {
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0.0
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};
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v += tmp as f32
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* land.get_alt_approx(Vec2::new(
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(x as i32 + i) * 32,
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(y as i32 + j) * 32,
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));
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}
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}
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v
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},
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);
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}
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}
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image_with_autorange(
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"heightmap_max5.png",
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1024,
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1024,
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grey_from_scalar_thresh(0.95),
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|x, y| {
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let mut v = -f32::INFINITY;
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for i in -2i32..=2 {
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for j in -2i32..=2 {
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if i != 0 || j != 0 {
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v =
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v.max(land.get_alt_approx(Vec2::new(
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2021-05-03 20:05:05 +00:00
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(x as i32 + i) * 32,
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(y as i32 + j) * 32,
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2021-05-03 21:23:43 +00:00
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)));
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2021-05-03 20:05:05 +00:00
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}
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}
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2021-05-03 21:23:43 +00:00
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}
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land.get_alt_approx(Vec2::new(x as i32 * 32, y as i32 * 32)) / v
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},
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);
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2021-05-03 20:05:05 +00:00
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}
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