Compare commits
2 Commits
684cc19302
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078ad2c401
| Author | SHA1 | Date | |
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078ad2c401
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3a49460fe6
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39
build.rs
Normal file
39
build.rs
Normal file
@@ -0,0 +1,39 @@
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use std::path::Path;
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fn copy_dir(src: impl AsRef<Path>, dst: impl AsRef<Path>) -> std::io::Result<()> {
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std::fs::create_dir_all(&dst)?;
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for entry in std::fs::read_dir(src)? {
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let entry = entry?;
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if entry.file_type()?.is_dir() {
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copy_dir(entry.path(), dst.as_ref().join(entry.file_name()))?;
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} else {
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std::fs::copy(entry.path(), dst.as_ref().join(entry.file_name()))?;
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}
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}
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Ok(())
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}
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fn main() {
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let use_local_scenes = std::env::var("LISPERS_USE_LOCAL_SCENES").unwrap_or_default() == "1";
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let no_copy = std::env::var("LISPERS_DONT_COPY_SCENES").unwrap_or_default() == "1";
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let out_dir = match std::env::var("LISPERS_OUT_DIR") {
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Ok(val) => val,
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Err(_) => std::env::var("OUT_DIR").unwrap(),
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};
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let mut scenes_dir = Path::new(&std::env::var("CARGO_MANIFEST_DIR").unwrap())
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.canonicalize()
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.unwrap()
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.join("scenes");
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if !use_local_scenes {
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let tgt_scenes_dir = Path::new(&out_dir).join("scenes");
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if !no_copy {
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copy_dir(&scenes_dir, &tgt_scenes_dir).expect("Failed to copy scenes directory");
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}
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scenes_dir = tgt_scenes_dir;
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}
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println!("cargo:rustc-env=SCENES_DIR={}", scenes_dir.display());
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}
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16
flake.nix
16
flake.nix
@@ -79,7 +79,15 @@
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overlays = [rust-overlay.overlays.default];
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overlays = [rust-overlay.overlays.default];
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};
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};
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packages.lispers = cargoNix.workspaceMembers.lispers.build;
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packages.lispers = cargoNix.workspaceMembers.lispers.build.overrideAttrs (attrs: {
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preConfigure = ''
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export LISPERS_OUT_DIR="$out"
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export LISPERS_DONT_COPY_SCENES=1
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'';
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postInstall = ''
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cp -r $src/scenes $out/scenes
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'';
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});
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packages.default = self'.packages.lispers;
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packages.default = self'.packages.lispers;
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apps = {
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apps = {
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lisp_demo = {
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lisp_demo = {
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@@ -94,7 +102,7 @@
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type = "app";
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type = "app";
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program = "${self'.packages.lispers}/bin/rt_demo";
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program = "${self'.packages.lispers}/bin/rt_demo";
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};
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};
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rt_demo_lisp = {
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rt_lisp_demo = {
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type = "app";
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type = "app";
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program = "${self'.packages.lispers}/bin/rt_lisp_demo";
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program = "${self'.packages.lispers}/bin/rt_lisp_demo";
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};
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};
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@@ -106,7 +114,9 @@
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};
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};
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devShells.default = pkgs.mkShell {
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devShells.default = pkgs.mkShell {
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inputsFrom = [self'.packages.lispers];
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shellHook = ''
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export LISPERS_USE_LOCAL_SCENES=1
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'';
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LIBCLANG_PATH = "${pkgs.llvmPackages.libclang.lib}/lib";
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LIBCLANG_PATH = "${pkgs.llvmPackages.libclang.lib}/lib";
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nativeBuildInputs = [rust-toolchain pkgs.pkg-config pkgs.ffmpeg_4];
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nativeBuildInputs = [rust-toolchain pkgs.pkg-config pkgs.ffmpeg_4];
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BINDGEN_EXTRA_CLANG_ARGS = [
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BINDGEN_EXTRA_CLANG_ARGS = [
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@@ -17,32 +17,7 @@
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(color 0 0.6 0)
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(color 0 0.6 0)
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50 0.25))
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50 0.25))
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(set 's1
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(set 'mandelbrot-red
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(sphere
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(point 0 1 0) 1 blue))
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(set 's2
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(sphere
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(point 2 0.5 2) 0.5 green))
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(defun spiral-sphere (i n)
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(sphere
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(progn
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(print "Spiral Sphere at: ")
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(println (point
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(* 2 (cos (/ (* i 6.2) n)))
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0.5
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(* 2 (sin (/ (* i 6.2) n)))))
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)
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0.5 red))
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(defun spiral (scn i n)
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(if (< i n)
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(scene-add
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(spiral scn (+ i 1) n)
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(spiral-sphere i n))
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scn))
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(set 'mandelbrot
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(mandelbrot-texture
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(mandelbrot-texture
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1800.0
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1800.0
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(point2 -0.7489967346191402 -0.06952285766601607)
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(point2 -0.7489967346191402 -0.06952285766601607)
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@@ -52,9 +27,27 @@
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(color 0.3 0 0)
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(color 0.3 0 0)
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))
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))
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(set 'mandelbrot-blue
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(mandelbrot-texture
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1800.0
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(point2 -0.7489967346191402 -0.06952285766601607)
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1000
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(color 0 0 0.3)
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(color 0 0 0.3)
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(color 0 0 0.3)
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))
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(set 's1
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(sphere
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(point 0 1 0) 1 blue))
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(set 's2
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(sphere
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(point 2 0.5 2) 0.5 green))
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(set 'p1
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(set 'p1
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(texture-plane
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(texture-plane
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mandelbrot
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mandelbrot-red
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(point 0 0 0)
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(point 0 0 0)
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(vector 0 1 0)
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(vector 0 1 0)
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1.0
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1.0
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@@ -1,37 +1,51 @@
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use std::collections::HashMap;
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use std::path::Path;
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use lispers::raytracer::lisp::mk_raytrace;
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use lispers::raytracer::lisp::mk_raytrace;
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use lispers_core::lisp::environment::EnvironmentLayer;
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use lispers_core::lisp::environment::EnvironmentLayer;
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use lispers_core::lisp::prelude::mk_prelude;
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use lispers_core::lisp::prelude::mk_prelude;
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use lispers_core::lisp::{eval, Environment};
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use lispers_core::lisp::{eval, Environment};
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use lispers_core::parser::ExpressionStream;
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use lispers_core::parser::ExpressionStream;
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const SCENES_DIR: &str = env!("SCENES_DIR");
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fn main() {
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fn main() {
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let programs = [
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println!("Loading scenes from directory: {}", SCENES_DIR);
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"(set 'red (material (color 1 0 0) (color 1 0 0) (color 0.5 0 0) 50 0.25))",
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"(set 'blue (material (color 0 0 1) (color 0 0 1) (color 0 0 0.6) 50 0.25))",
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let mut scenes = HashMap::new();
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"(set 'green (material (color 0 1 0) (color 0 1 0) (color 0 0.6 0) 50 0.25))",
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for e in std::fs::read_dir(Path::new(SCENES_DIR)).expect("Failed to read scenes directory") {
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"(set 'white (material (color 1 1 1) (color 1 1 1) (color 0.6 0.6 0.6) 100 0.5))",
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let e = e.expect("Failed to read scene file");
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"(set 'black (material (color 0 0 0) (color 0 0 0) (color 0.6 0.6 0.6) 100 0.5))",
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let t = e.file_type().expect("Failed to read scene file type");
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"(set 's1 (sphere (point 0 1 0) 1 blue))",
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let n = e
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"(set 's2 (sphere (point 2 0.5 2) 0.5 green))",
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.file_name()
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"(defun spiral-sphere (i n) (sphere (print (point (* 2 (cos (/ (* i 6.2) n))) 0.5 (* 2 (sin (/ (* i 6.2) n))))) 0.5 red))",
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.into_string()
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"(defun spiral (scn i n) (if (< i n) (scene-add (spiral scn (+ i 1) n) (spiral-sphere i n)) scn))",
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.expect("Failed to read scene file name");
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"(set 'p1 (checkerboard (point 0 0 0) (vector 0 1 0) black white 0.5 (vector 0.5 0 1)))",
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if t.is_file() && n.starts_with("demo-") && n.ends_with(".lisp") {
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"(set 'l1 (light (point 3 10 5) (color 1 1 1)))",
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scenes.insert(n, e);
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"(set 'l2 (light (point 2 10 5) (color 1 1 1)))",
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}
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"(set 'scn (scene (color 0.1 0.1 0.1) '(s1 s2 p1) '(l1 l2)))",
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}
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"(set 'scn (spiral scn 0.0 10.0))",
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"(print scn)",
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"(set 'cam (camera (point 0 3 6) (point 0 0 0) (vector 0 1 0) 40 1920 1080))",
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"(render cam scn 5 4 \"rt-lisp-demo.png\")",
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];
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let mut layer = EnvironmentLayer::new();
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let mut layer = EnvironmentLayer::new();
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mk_prelude(&mut layer);
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mk_prelude(&mut layer);
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mk_raytrace(&mut layer);
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mk_raytrace(&mut layer);
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let environment = Environment::from_layer(layer);
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let environment = Environment::from_layer(layer);
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for r in ExpressionStream::from_char_stream(programs.iter().map(|p| p.chars()).flatten()) {
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let args: Vec<_> = std::env::args().collect();
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if args.len() != 2 {
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println!("Usage: {} <scene-file.lisp>", args[0]);
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println!("Available scene files:");
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for name in scenes.keys() {
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println!(" {}", name);
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}
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return;
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}
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|
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for r in ExpressionStream::from_char_stream(
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std::fs::read_to_string(scenes.get(&args[1]).expect("Scene file not found").path())
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.expect("Failed to read scene file")
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|
.chars(),
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) {
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match r {
|
match r {
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Err(err) => {
|
Err(err) => {
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println!("ParserError: {:?}", err);
|
println!("ParserError: {:?}", err);
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@@ -2,6 +2,7 @@ use std::path::PathBuf;
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|
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use crate::raytracer::{
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use crate::raytracer::{
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scene::Scene,
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scene::Scene,
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|
sphere::TextureSphere,
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texture::TextureWrapper,
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texture::TextureWrapper,
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types::{Light, Point2},
|
types::{Light, Point2},
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||||||
};
|
};
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@@ -74,6 +75,22 @@ pub fn sphere(
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Ok(ForeignDataWrapper::new(RTObjectWrapper::from(Sphere::new(*pos, rad, *mat))).into())
|
Ok(ForeignDataWrapper::new(RTObjectWrapper::from(Sphere::new(*pos, rad, *mat))).into())
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}
|
}
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|
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#[native_lisp_function(eval)]
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pub fn texture_sphere(
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|
pos: ForeignDataWrapper<Point3>,
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|
rad: f64,
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|
tex: ForeignDataWrapper<TextureWrapper>,
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|
) -> Result<ForeignDataWrapper<RTObjectWrapper>, EvalError> {
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|
Ok(
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|
ForeignDataWrapper::new(RTObjectWrapper::from(TextureSphere::new(
|
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|
*pos,
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|
rad,
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||||||
|
tex.clone(),
|
||||||
|
)))
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|
.into(),
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||||||
|
)
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|
}
|
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|
|
||||||
#[native_lisp_function(eval)]
|
#[native_lisp_function(eval)]
|
||||||
pub fn plane(
|
pub fn plane(
|
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pos: ForeignDataWrapper<Point3>,
|
pos: ForeignDataWrapper<Point3>,
|
||||||
@@ -539,6 +556,10 @@ pub fn mk_raytrace(layer: &mut EnvironmentLayer) {
|
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Expression::Function(mandelbrot_texture),
|
Expression::Function(mandelbrot_texture),
|
||||||
);
|
);
|
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layer.set("sphere".to_string(), Expression::Function(sphere));
|
layer.set("sphere".to_string(), Expression::Function(sphere));
|
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|
layer.set(
|
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|
"texture-sphere".to_string(),
|
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|
Expression::Function(texture_sphere),
|
||||||
|
);
|
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layer.set("scene".to_string(), Expression::Function(scene));
|
layer.set("scene".to_string(), Expression::Function(scene));
|
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layer.set("scene-add".to_string(), Expression::Function(scene_add));
|
layer.set("scene-add".to_string(), Expression::Function(scene_add));
|
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layer.set("camera".to_string(), Expression::Function(camera));
|
layer.set("camera".to_string(), Expression::Function(camera));
|
||||||
|
|||||||
@@ -1,4 +1,7 @@
|
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use super::types::{Intersect, Material, Point3, Ray, Scalar, Vector3};
|
use super::{
|
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|
texture::TextureWrapper,
|
||||||
|
types::{Intersect, Material, Point2, Point3, Ray, Scalar, Vector3},
|
||||||
|
};
|
||||||
|
|
||||||
extern crate nalgebra as na;
|
extern crate nalgebra as na;
|
||||||
|
|
||||||
@@ -13,6 +16,17 @@ pub struct Sphere {
|
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material: Material,
|
material: Material,
|
||||||
}
|
}
|
||||||
|
|
||||||
|
/// A sphere in 3D space
|
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|
#[derive(PartialEq, Clone, Debug)]
|
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|
pub struct TextureSphere {
|
||||||
|
/// Center of the sphere
|
||||||
|
center: Point3,
|
||||||
|
/// Radius of the sphere
|
||||||
|
radius: Scalar,
|
||||||
|
/// texture of the sphere
|
||||||
|
texture: TextureWrapper,
|
||||||
|
}
|
||||||
|
|
||||||
impl Sphere {
|
impl Sphere {
|
||||||
/// Create a new sphere at `center` with `radius` and `material`.
|
/// Create a new sphere at `center` with `radius` and `material`.
|
||||||
pub fn new(center: Point3, radius: Scalar, material: Material) -> Sphere {
|
pub fn new(center: Point3, radius: Scalar, material: Material) -> Sphere {
|
||||||
@@ -27,13 +41,12 @@ impl Sphere {
|
|||||||
/// Numerical error tolerance
|
/// Numerical error tolerance
|
||||||
const EPSILON: Scalar = 1e-5;
|
const EPSILON: Scalar = 1e-5;
|
||||||
|
|
||||||
impl Intersect for Sphere {
|
fn intersect(ray: &Ray, center: &Point3, radius: Scalar) -> Option<(Point3, Vector3, Scalar)> {
|
||||||
fn intersect(&self, ray: &Ray) -> Option<(Point3, Vector3, Scalar, Material)> {
|
let co = ray.origin - center;
|
||||||
let co = ray.origin - self.center;
|
|
||||||
|
|
||||||
let a = ray.direction.dot(&ray.direction);
|
let a = ray.direction.dot(&ray.direction);
|
||||||
let b = 2.0 * ray.direction.dot(&co);
|
let b = 2.0 * ray.direction.dot(&co);
|
||||||
let c = co.dot(&co) - (self.radius * self.radius);
|
let c = co.dot(&co) - (radius * radius);
|
||||||
let d = b * b - 4.0 * a * c;
|
let d = b * b - 4.0 * a * c;
|
||||||
|
|
||||||
if d >= 0.0 {
|
if d >= 0.0 {
|
||||||
@@ -53,24 +66,22 @@ impl Intersect for Sphere {
|
|||||||
let isect_pt: Point3 = ray.origin + ray.direction * t;
|
let isect_pt: Point3 = ray.origin + ray.direction * t;
|
||||||
|
|
||||||
if c >= 0.0 {
|
if c >= 0.0 {
|
||||||
return Some((
|
return Some((isect_pt, (isect_pt - center) / radius, t));
|
||||||
isect_pt,
|
|
||||||
(isect_pt - self.center) / self.radius,
|
|
||||||
t,
|
|
||||||
self.material.clone(),
|
|
||||||
));
|
|
||||||
} else {
|
} else {
|
||||||
return Some((
|
return Some((isect_pt, -(isect_pt - center) / radius, t));
|
||||||
isect_pt,
|
|
||||||
-(isect_pt - self.center) / self.radius,
|
|
||||||
t,
|
|
||||||
self.material.clone(),
|
|
||||||
));
|
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
None
|
None
|
||||||
|
}
|
||||||
|
|
||||||
|
impl Intersect for Sphere {
|
||||||
|
fn intersect(&self, ray: &Ray) -> Option<(Point3, Vector3, Scalar, Material)> {
|
||||||
|
match intersect(ray, &self.center, self.radius) {
|
||||||
|
Some((isect_pt, normal, t)) => Some((isect_pt, normal, t, self.material.clone())),
|
||||||
|
None => None,
|
||||||
|
}
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -89,3 +100,46 @@ impl PartialOrd for Sphere {
|
|||||||
None
|
None
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
|
impl TextureSphere {
|
||||||
|
/// Create a new sphere at `center` with `radius` and `texture`.
|
||||||
|
pub fn new(center: Point3, radius: Scalar, texture: TextureWrapper) -> TextureSphere {
|
||||||
|
TextureSphere {
|
||||||
|
center,
|
||||||
|
radius,
|
||||||
|
texture,
|
||||||
|
}
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
impl Intersect for TextureSphere {
|
||||||
|
fn intersect(&self, ray: &Ray) -> Option<(Point3, Vector3, Scalar, Material)> {
|
||||||
|
match intersect(ray, &self.center, self.radius) {
|
||||||
|
Some((isect_pt, normal, t)) => {
|
||||||
|
let n_isect_pt = (isect_pt - self.center) / self.radius;
|
||||||
|
let uv: Point2 = Point2::new(
|
||||||
|
0.5 + (n_isect_pt.z.atan2(n_isect_pt.x) / (2.0 * std::f64::consts::PI)),
|
||||||
|
0.5 - (n_isect_pt.y).asin() / std::f64::consts::PI,
|
||||||
|
);
|
||||||
|
Some((isect_pt, normal, t, self.texture.material_at(uv)))
|
||||||
|
}
|
||||||
|
None => None,
|
||||||
|
}
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
impl std::fmt::Display for TextureSphere {
|
||||||
|
fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
|
||||||
|
write!(
|
||||||
|
f,
|
||||||
|
"(sphere center: {}, radius: {}, texture: {})",
|
||||||
|
self.center, self.radius, self.texture
|
||||||
|
)
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
impl PartialOrd for TextureSphere {
|
||||||
|
fn partial_cmp(&self, _other: &Self) -> Option<std::cmp::Ordering> {
|
||||||
|
None
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|||||||
Reference in New Issue
Block a user