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de7fb42156
| Author | SHA1 | Date | |
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| de7fb42156 | |||
| d91346f605 |
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@ -143,9 +143,10 @@ fn main() {
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for _ in 0..RAYS_PER_PIXEL {
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for _ in 0..RAYS_PER_PIXEL {
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frame += 1;
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frame += 1;
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let time = frame as f32 / (60. * RAYS_PER_PIXEL as f32);
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let time = frame as f32 / (60. * RAYS_PER_PIXEL as f32);
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let target = sphere_params[0].to_sphere(time - 0.2).center;
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let eye = camera_params.to_sphere(time).center;
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let eye = camera_params.to_sphere(time).center;
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let right = camera_params.deriv(time);
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let right = camera_params.deriv(time);
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let forward = target_params.to_sphere(time).center - eye;
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let forward = target - eye;
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let viewport = make_viewport(size.width, size.height);
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let viewport = make_viewport(size.width, size.height);
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let location = convert_location(CamLoc { eye, forward, right });
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let location = convert_location(CamLoc { eye, forward, right });
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let spheres: Vec<_> = sphere_params.iter().map(|p| p.to_sphere(time)).collect();
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let spheres: Vec<_> = sphere_params.iter().map(|p| p.to_sphere(time)).collect();
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@ -163,7 +164,9 @@ fn main() {
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viewport,
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viewport,
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trace::Aperture {
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trace::Aperture {
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radius: 0.001,
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radius: 0.001,
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focal_distance: std::f32::INFINITY,
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focal_distance: forward.length(),
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glare_strength: 0.1,
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glare_radius: 0.1,
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},
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},
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location,
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location,
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);
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);
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@ -18,9 +18,12 @@ pub struct Viewport {
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pub corner: Vec3,
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pub corner: Vec3,
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}
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}
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#[derive(Debug, Clone, Copy)]
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pub struct Aperture {
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pub struct Aperture {
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pub radius: f32,
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pub radius: f32,
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pub focal_distance: f32, // from 0 (exclusive) to +∞ (inclusive)
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pub focal_distance: f32, // from 0 (exclusive) to +∞ (inclusive)
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pub glare_strength: f32,
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pub glare_radius: f32, // at distance 1
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}
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}
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#[derive(Debug, Clone, Copy)]
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#[derive(Debug, Clone, Copy)]
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@ -47,6 +50,8 @@ struct CameraData {
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aperture: f32,
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aperture: f32,
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eye: Vec3,
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eye: Vec3,
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antifocal: f32,
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antifocal: f32,
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glare_strength: f32,
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glare_radius: f32,
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}
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}
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impl From<(Viewport, CameraLocation, Aperture)> for CameraData {
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impl From<(Viewport, CameraLocation, Aperture)> for CameraData {
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@ -60,6 +65,8 @@ impl From<(Viewport, CameraLocation, Aperture)> for CameraData {
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height: value.0.corner.y / value.0.corner.z,
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height: value.0.corner.y / value.0.corner.z,
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aperture: value.2.radius,
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aperture: value.2.radius,
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antifocal: 1. / value.2.focal_distance,
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antifocal: 1. / value.2.focal_distance,
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glare_strength: value.2.glare_strength,
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glare_radius: value.2.glare_radius,
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}
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}
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}
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}
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}
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}
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@ -12,6 +12,9 @@ struct Params {
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aperture: f32,
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aperture: f32,
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eye: vec3f,
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eye: vec3f,
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antifocal: f32,
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antifocal: f32,
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glare_strength: f32,
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glare_radius: f32,
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}
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}
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struct Sphere {
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struct Sphere {
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@ -81,7 +84,13 @@ fn trace_fragment(in: Varying) -> vec3f {
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pos = params.eye + aperture_offset_abs;
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pos = params.eye + aperture_offset_abs;
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let off_px = vec2(rand_float(), rand_float()) - .5;
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let off_px = vec2(rand_float(), rand_float()) - .5;
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let off_w = mat2x3(dpdx(in.dir), dpdy(in.dir));
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let off_w = mat2x3(dpdx(in.dir), dpdy(in.dir));
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let dir = in.dir + off_w * off_px;
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var dir = in.dir + off_w * off_px;
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if (rand_float() < params.glare_strength) {
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let p = rand_float();
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let d = params.glare_radius * pow(p, 3.);
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let glare_off = d * rand_disc();
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dir += view_mtx * vec3(glare_off, 0.);
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}
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ray = normalize(dir - params.antifocal * aperture_offset_abs);
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ray = normalize(dir - params.antifocal * aperture_offset_abs);
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for (var k = 0; k < params.max_reflections; k++) {
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for (var k = 0; k < params.max_reflections; k++) {
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