reproject_terrain/
reproject_terrain.rs1use std::env;
14use std::path::PathBuf;
15
16use terrain_codec::heightmap::container::decode_image;
17use terrain_codec::heightmap::terrarium;
18use terrain_codec::mercator::MercatorDem;
19use terrain_codec::quantized_mesh::{DecodedMesh, TileBounds};
20use terrain_codec::terrain::{NormalMode, TerrainOptions, encode_terrain};
21use terrain_codec::tile_coords::geodetic_tms;
22
23fn main() {
24 let mut a = env::args().skip(1);
25 let tz: u8 = a.next().expect("tms_z").parse().unwrap();
26 let tx: u32 = a.next().expect("tms_x").parse().unwrap();
27 let ty: u32 = a.next().expect("tms_y").parse().unwrap();
28 let src_zoom: u8 = a.next().expect("src_zoom").parse().unwrap();
29 let tile_size: u32 = a.next().expect("tile_size").parse().unwrap();
30 let png_dir = PathBuf::from(a.next().expect("png_dir"));
31 let real = a.next();
32
33 let (w, s, e, n) = geodetic_tms::tile_to_bounds(tz, tx, ty);
35 let bounds = TileBounds::new(w, s, e, n);
36 let grid_size = tile_size + 1; println!("target geodetic TMS z{tz}/{tx}/{ty} bounds = [{w:.5}, {s:.5}, {e:.5}, {n:.5}]");
38
39 let cell_lon = (e - w) / (grid_size - 1) as f64;
41 let cell_lat = (n - s) / (grid_size - 1) as f64;
42 let (x0, y0, ntx, nty) = MercatorDem::tiles_covering(
43 src_zoom,
44 w - cell_lon,
45 s - cell_lat,
46 e + cell_lon,
47 n + cell_lat,
48 );
49 println!(
50 "covering web-mercator z{src_zoom} tiles: x {x0}..{} y {y0}..{} ({} tiles, {tile_size}px)",
51 x0 + ntx - 1,
52 y0 + nty - 1,
53 ntx * nty
54 );
55
56 let dem = MercatorDem::from_tiles(src_zoom, x0, y0, ntx, nty, tile_size, |z, x, y| {
58 let path = png_dir.join(format!("{z}_{x}_{y}.png"));
59 let bytes = std::fs::read(&path).unwrap_or_else(|_| panic!("missing tile {path:?}"));
60 let img = decode_image(&bytes).expect("decode png");
61 assert_eq!(img.width, tile_size);
62 assert_eq!(img.height, tile_size);
63 terrarium::decode(&img.rgb, img.width, img.height)
64 });
65
66 let grid = dem.geodetic_grid(&bounds, grid_size);
68 let buffered = dem.buffered_geodetic(&bounds, grid_size, 1);
69
70 let (gmin, gmax) = min_max(&grid);
71 println!("reprojected geodetic grid {grid_size}×{grid_size}: {gmin:.1} .. {gmax:.1} m");
72
73 let bytes = encode_terrain(
74 &grid,
75 grid_size,
76 &bounds,
77 &TerrainOptions {
78 max_error: 4.0,
79 compression_level: 6,
80 normals: NormalMode::BufferedGradient(buffered),
81 ..Default::default()
82 },
83 );
84 let mesh = DecodedMesh::decode(&bytes).expect("decode our output");
85 println!(
86 "ours: {} bytes (gzip), {} verts, {} tris, height {:.1}..{:.1} m, normals={}",
87 bytes.len(),
88 mesh.vertices.len(),
89 mesh.indices.len() / 3,
90 mesh.header.min_height,
91 mesh.header.max_height,
92 mesh.extensions.normals.is_some(),
93 );
94
95 if let Some(path) = real {
96 let raw = std::fs::read(&path).expect("read real .terrain");
97 let rm = DecodedMesh::decode(&raw).expect("decode real");
98 println!(
99 "real: {} bytes, {} verts, {} tris, height {:.1}..{:.1} m, normals={} ({})",
100 raw.len(),
101 rm.vertices.len(),
102 rm.indices.len() / 3,
103 rm.header.min_height,
104 rm.header.max_height,
105 rm.extensions.normals.is_some(),
106 path,
107 );
108 println!(
109 "note: height offset vs real is expected — real is EGM2008 geoid-blended, ours is raw Terrarium (ellipsoidal)."
110 );
111 }
112
113 println!("\nOK ✅ web-mercator → geodetic-TMS reprojection produced valid .terrain");
114}
115
116fn min_max(v: &[f32]) -> (f32, f32) {
117 let mut lo = f32::INFINITY;
118 let mut hi = f32::NEG_INFINITY;
119 for &x in v {
120 lo = lo.min(x);
121 hi = hi.max(x);
122 }
123 (lo, hi)
124}