First shader and rendering pipeline
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@ -75,6 +75,8 @@ struct State<'a> {
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size: PhysicalSize<u32>,
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size: PhysicalSize<u32>,
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window: Arc<Window>,
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window: Arc<Window>,
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render_pipeline: wgpu::RenderPipeline,
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}
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}
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impl<'a> State<'a> {
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impl<'a> State<'a> {
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@ -89,6 +91,8 @@ impl<'a> State<'a> {
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let config = Self::create_surface_config(size, surface_caps);
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let config = Self::create_surface_config(size, surface_caps);
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surface.configure(&device, &config);
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surface.configure(&device, &config);
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let render_pipeline = Self::create_render_pipeline(&device, &config);
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Self {
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Self {
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surface,
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surface,
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device,
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device,
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@ -96,6 +100,8 @@ impl<'a> State<'a> {
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config,
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config,
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size,
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size,
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window: window_arc,
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window: window_arc,
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render_pipeline,
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}
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}
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}
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}
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@ -107,6 +113,61 @@ impl<'a> State<'a> {
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// TODO: Update logic here
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// TODO: Update logic here
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}
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}
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fn create_render_pipeline(device: &Device, config: &wgpu::SurfaceConfiguration) -> wgpu::RenderPipeline {
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let shader = device.create_shader_module(wgpu::ShaderModuleDescriptor {
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label: Some("Shader"),
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source: wgpu::ShaderSource::Wgsl(include_str!("shader.wgsl").into()),
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});
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let render_pipeline_layout =
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device.create_pipeline_layout(&wgpu::PipelineLayoutDescriptor {
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label: Some("Render Pipeline Layout"),
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bind_group_layouts: &[],
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push_constant_ranges: &[],
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});
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device.create_render_pipeline(&wgpu::RenderPipelineDescriptor {
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label: Some("Render Pipeline"),
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layout: Some(&render_pipeline_layout),
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vertex: wgpu::VertexState {
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module: &shader,
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entry_point: Some("vs_main"),
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buffers: &[],
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compilation_options: wgpu::PipelineCompilationOptions::default(),
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},
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fragment: Some(wgpu::FragmentState {
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module: &shader,
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entry_point: Some("fs_main"),
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targets: &[Some(wgpu::ColorTargetState {
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format: config.format,
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blend: Some(wgpu::BlendState::REPLACE),
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write_mask: wgpu::ColorWrites::ALL,
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})],
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compilation_options: wgpu::PipelineCompilationOptions::default(),
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}),
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primitive: wgpu::PrimitiveState {
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topology: wgpu::PrimitiveTopology::TriangleList, // 1.
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strip_index_format: None,
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front_face: wgpu::FrontFace::Ccw,
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cull_mode: Some(wgpu::Face::Back),
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// Setting this to anything other than Fill requires Features::NON_FILL_POLYGON_MODE
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polygon_mode: wgpu::PolygonMode::Fill,
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// Requires Features::DEPTH_CLIP_CONTROL
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unclipped_depth: false,
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// Requires Features::CONSERVATIVE_RASTERIZATION
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conservative: false,
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},
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depth_stencil: None,
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multisample: wgpu::MultisampleState {
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count: 1,
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mask: !0,
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alpha_to_coverage_enabled: false,
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},
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multiview: None,
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cache: None,
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})
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}
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fn create_surface_config(size: PhysicalSize<u32>, capabilities: SurfaceCapabilities) -> wgpu::SurfaceConfiguration {
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fn create_surface_config(size: PhysicalSize<u32>, capabilities: SurfaceCapabilities) -> wgpu::SurfaceConfiguration {
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let surface_format = capabilities.formats.iter()
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let surface_format = capabilities.formats.iter()
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.find(|f| f.is_srgb())
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.find(|f| f.is_srgb())
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@ -173,7 +234,7 @@ impl<'a> State<'a> {
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});
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});
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{
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{
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let _render_pass = encoder.begin_render_pass(&wgpu::RenderPassDescriptor {
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let mut _render_pass = encoder.begin_render_pass(&wgpu::RenderPassDescriptor {
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label: Some("Render Pass"),
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label: Some("Render Pass"),
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color_attachments: &[Some(wgpu::RenderPassColorAttachment {
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color_attachments: &[Some(wgpu::RenderPassColorAttachment {
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view: &view,
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view: &view,
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@ -192,6 +253,9 @@ impl<'a> State<'a> {
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occlusion_query_set: None,
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occlusion_query_set: None,
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timestamp_writes: None,
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timestamp_writes: None,
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});
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});
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_render_pass.set_pipeline(&self.render_pipeline);
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_render_pass.draw(0..3, 0..1);
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}
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}
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self.queue.submit(std::iter::once(encoder.finish()));
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self.queue.submit(std::iter::once(encoder.finish()));
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@ -1,22 +1,19 @@
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struct VertexInput {
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@location(0) position: vec2<f32>,
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@location(1) color: vec3<f32>,
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};
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struct VertexOutput {
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struct VertexOutput {
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@builtin(position) position: vec4<f32>,
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@builtin(position) clip_position: vec4<f32>,
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@location(0) color: vec3<f32>,
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};
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};
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@vertex
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@vertex
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fn vs_main(input: VertexInput) -> VertexOutput {
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fn vs_main(
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var output: VertexOutput;
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@builtin(vertex_index) in_vertex_index: u32,
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output.position = vec4<f32>(input.position, 0.0, 1.0);
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) -> VertexOutput {
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output.color = input.color;
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var out: VertexOutput;
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return output;
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let x = f32(1 - i32(in_vertex_index)) * 0.5;
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let y = f32(i32(in_vertex_index & 1u) * 2 - 1) * 0.5;
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out.clip_position = vec4<f32>(x, y, 0.0, 1.0);
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return out;
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}
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}
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@fragment
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@fragment
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fn fs_main(input: VertexOutput) -> @location(0) vec4<f32> {
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fn fs_main(in: VertexOutput) -> @location(0) vec4<f32> {
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return vec4<f32>(input.color, 1.0);
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return vec4<f32>(0.3, 0.2, 0.1, 1.0);
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}
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}
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