2023-01-25 05:34:01 +02:00
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#include constants.wgsl
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#include brdf.wgsl
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2023-01-24 03:59:06 +02:00
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2022-10-01 23:58:09 +03:00
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// Vertex shader
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2022-10-02 18:59:20 +03:00
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struct CameraUniform {
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view: mat4x4<f32>,
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proj: mat4x4<f32>,
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position: vec4<f32>,
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}
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@group(1) @binding(0)
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var<uniform> camera: CameraUniform;
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struct Light {
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position: vec3<f32>,
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color: vec4<f32>,
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}
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@group(2) @binding(0)
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var<uniform> light: Light;
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struct VertexInput {
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@location(0) position: vec3<f32>,
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@location(1) tex_coords: vec2<f32>,
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@location(2) normal: vec3<f32>,
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@location(3) tangent: vec3<f32>,
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@location(4) bitangent: vec3<f32>,
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}
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struct InstanceInput {
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@location(5) model_matrix_0: vec4<f32>,
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@location(6) model_matrix_1: vec4<f32>,
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@location(7) model_matrix_2: vec4<f32>,
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@location(8) model_matrix_3: vec4<f32>,
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@location(9) normal_matrix_0: vec3<f32>,
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@location(10) normal_matrix_1: vec3<f32>,
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@location(11) normal_matrix_2: vec3<f32>,
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}
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struct VertexOutput {
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@builtin(position) clip_position: vec4<f32>,
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@location(0) tex_coords: vec2<f32>,
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@location(1) tangent_position: vec3<f32>,
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@location(2) tangent_light_position: vec3<f32>,
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@location(3) tangent_view_position: vec3<f32>,
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@location(4) world_position: vec3<f32>,
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}
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@vertex
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fn vs_main(
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model: VertexInput,
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instance: InstanceInput,
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) -> VertexOutput {
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let model_matrix = mat4x4<f32>(
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instance.model_matrix_0,
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instance.model_matrix_1,
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instance.model_matrix_2,
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instance.model_matrix_3,
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);
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let normal_matrix = mat3x3<f32>(
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instance.normal_matrix_0,
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instance.normal_matrix_1,
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instance.normal_matrix_2,
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);
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let world_normal = normalize(normal_matrix * model.normal);
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let world_tangent = normalize(normal_matrix * model.tangent);
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let world_bitangent = normalize(normal_matrix * model.bitangent);
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let tangent_matrix = transpose(mat3x3<f32>(
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world_tangent,
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world_bitangent,
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world_normal,
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));
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let world_position = model_matrix * vec4<f32>(model.position, 1.0);
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var out: VertexOutput;
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out.clip_position = camera.proj * camera.view * world_position;
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out.tex_coords = model.tex_coords;
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out.tangent_position = tangent_matrix * world_position.xyz;
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out.tangent_light_position = tangent_matrix * light.position;
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out.tangent_view_position = tangent_matrix * camera.position.xyz;
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out.world_position = world_position.xyz;
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return out;
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}
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// Fragment shader
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@group(0) @binding(0)
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var t_diffuse: texture_2d<f32>;
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@group(0)@binding(1)
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var s_diffuse: sampler;
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@group(0)@binding(2)
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var t_normal: texture_2d<f32>;
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@group(0) @binding(3)
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var s_normal: sampler;
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@group(0)@binding(4)
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var t_roughness_metalness: texture_2d<f32>;
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@group(0) @binding(5)
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var s_roughness_metalness: sampler;
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@fragment
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fn fs_main(in: VertexOutput) -> @location(0) vec4<f32> {
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// textures
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let object_color: vec4<f32> = textureSample(t_diffuse, s_diffuse, in.tex_coords);
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let object_normal: vec4<f32> = textureSample(t_normal, s_normal, in.tex_coords);
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let object_roughness_metalness: vec4<f32> = textureSample(
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t_roughness_metalness, s_roughness_metalness, in.tex_coords);
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// TODO: AO
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let albedo = object_color.xyz;
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// TODO: pass factors to shader
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let roughness = object_roughness_metalness.y * 1.0;
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let metalness = object_roughness_metalness.z * 1.0;
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// lighting vecs
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let normal_dir = object_normal.xyz * 2.0 - 1.0;
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var light_dir = normalize(in.tangent_light_position - in.tangent_position);
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let view_dir = normalize(in.tangent_view_position - in.tangent_position);
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let half_dir = normalize(view_dir + light_dir);
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// attenuation
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let light_dist = length(light.position - in.world_position);
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let coef_a = 0.0;
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let coef_b = 1.0;
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let light_attenuation = 1.0 / (1.0 + coef_a * light_dist + coef_b * light_dist * light_dist);
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// radiance
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let radiance_strength = max(dot(normal_dir, light_dir), 0.0);
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let radiance = radiance_strength * light.color.xyz * light.color.w * light_attenuation;
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// brdf shading
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let total_radiance = radiance * brdf(
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normal_dir,
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light_dir,
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view_dir,
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half_dir,
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albedo,
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roughness,
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metalness
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);
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// ambient
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let ambient_light_color = vec3(1.0);
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let ambient_strength = 0.025;
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let ambient_color = ambient_light_color * ambient_strength;
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var result = ambient_color + total_radiance;
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// tonemap
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result = result / (result + vec3(1.0));
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//result = pow(result, vec3(1.0/2.2));
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return vec4<f32>(result, object_color.a);
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}
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