 6f2a5cb862
			
		
	
	
		6f2a5cb862
		
			
		
	
	
	
	
		
			
			# Objective Simplify bind group creation code. alternative to (and based on) #9476 ## Solution - Add a `BindGroupEntries` struct that can transparently be used where `&[BindGroupEntry<'b>]` is required in BindGroupDescriptors. Allows constructing the descriptor's entries as: ```rust render_device.create_bind_group( "my_bind_group", &my_layout, &BindGroupEntries::with_indexes(( (2, &my_sampler), (3, my_uniform), )), ); ``` instead of ```rust render_device.create_bind_group( "my_bind_group", &my_layout, &[ BindGroupEntry { binding: 2, resource: BindingResource::Sampler(&my_sampler), }, BindGroupEntry { binding: 3, resource: my_uniform, }, ], ); ``` or ```rust render_device.create_bind_group( "my_bind_group", &my_layout, &BindGroupEntries::sequential((&my_sampler, my_uniform)), ); ``` instead of ```rust render_device.create_bind_group( "my_bind_group", &my_layout, &[ BindGroupEntry { binding: 0, resource: BindingResource::Sampler(&my_sampler), }, BindGroupEntry { binding: 1, resource: my_uniform, }, ], ); ``` the structs has no user facing macros, is tuple-type-based so stack allocated, and has no noticeable impact on compile time. - Also adds a `DynamicBindGroupEntries` struct with a similar api that uses a `Vec` under the hood and allows extending the entries. - Modifies `RenderDevice::create_bind_group` to take separate arguments `label`, `layout` and `entries` instead of a `BindGroupDescriptor` struct. The struct can't be stored due to the internal references, and with only 3 members arguably does not add enough context to justify itself. - Modify the codebase to use the new api and the `BindGroupEntries` / `DynamicBindGroupEntries` structs where appropriate (whenever the entries slice contains more than 1 member). ## Migration Guide - Calls to `RenderDevice::create_bind_group({BindGroupDescriptor { label, layout, entries })` must be amended to `RenderDevice::create_bind_group(label, layout, entries)`. - If `label`s have been specified as `"bind_group_name".into()`, they need to change to just `"bind_group_name"`. `Some("bind_group_name")` and `None` will still work, but `Some("bind_group_name")` can optionally be simplified to just `"bind_group_name"`. --------- Co-authored-by: IceSentry <IceSentry@users.noreply.github.com>
		
			
				
	
	
		
			179 lines
		
	
	
		
			5.8 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
			
		
		
	
	
			179 lines
		
	
	
		
			5.8 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
| //! A shader that binds several textures onto one
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| //! `binding_array<texture<f32>>` shader binding slot and sample non-uniformly.
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| 
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| use bevy::{
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|     prelude::*,
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|     reflect::TypePath,
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|     render::{
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|         render_asset::RenderAssets, render_resource::*, renderer::RenderDevice,
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|         texture::FallbackImage, RenderApp,
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|     },
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| };
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| use std::{num::NonZeroU32, process::exit};
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| 
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| fn main() {
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|     let mut app = App::new();
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|     app.add_plugins((
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|         DefaultPlugins.set(ImagePlugin::default_nearest()),
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|         GpuFeatureSupportChecker,
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|         MaterialPlugin::<BindlessMaterial>::default(),
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|     ))
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|     .add_systems(Startup, setup)
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|     .run();
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| }
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| 
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| const MAX_TEXTURE_COUNT: usize = 16;
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| const TILE_ID: [usize; 16] = [
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|     19, 23, 4, 33, 12, 69, 30, 48, 10, 65, 40, 47, 57, 41, 44, 46,
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| ];
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| 
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| struct GpuFeatureSupportChecker;
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| 
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| impl Plugin for GpuFeatureSupportChecker {
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|     fn build(&self, _app: &mut App) {}
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| 
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|     fn finish(&self, app: &mut App) {
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|         let Ok(render_app) = app.get_sub_app_mut(RenderApp) else {
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|             return;
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|         };
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| 
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|         let render_device = render_app.world.resource::<RenderDevice>();
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| 
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|         // Check if the device support the required feature. If not, exit the example.
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|         // In a real application, you should setup a fallback for the missing feature
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|         if !render_device
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|             .features()
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|             .contains(WgpuFeatures::SAMPLED_TEXTURE_AND_STORAGE_BUFFER_ARRAY_NON_UNIFORM_INDEXING)
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|         {
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|             error!(
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|                 "Render device doesn't support feature \
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| SAMPLED_TEXTURE_AND_STORAGE_BUFFER_ARRAY_NON_UNIFORM_INDEXING, \
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| which is required for texture binding arrays"
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|             );
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|             exit(1);
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|         }
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|     }
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| }
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| 
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| fn setup(
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|     mut commands: Commands,
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|     mut meshes: ResMut<Assets<Mesh>>,
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|     mut materials: ResMut<Assets<BindlessMaterial>>,
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|     asset_server: Res<AssetServer>,
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| ) {
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|     commands.spawn(Camera3dBundle {
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|         transform: Transform::from_xyz(2.0, 2.0, 2.0).looking_at(Vec3::new(0.0, 0.0, 0.0), Vec3::Y),
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|         ..Default::default()
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|     });
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| 
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|     // load 16 textures
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|     let textures: Vec<_> = TILE_ID
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|         .iter()
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|         .map(|id| asset_server.load(format!("textures/rpg/tiles/generic-rpg-tile{id:0>2}.png")))
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|         .collect();
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| 
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|     // a cube with multiple textures
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|     commands.spawn(MaterialMeshBundle {
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|         mesh: meshes.add(Mesh::from(shape::Cube { size: 1.0 })),
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|         material: materials.add(BindlessMaterial { textures }),
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|         ..Default::default()
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|     });
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| }
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| 
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| #[derive(Asset, TypePath, Debug, Clone)]
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| struct BindlessMaterial {
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|     textures: Vec<Handle<Image>>,
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| }
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| 
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| impl AsBindGroup for BindlessMaterial {
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|     type Data = ();
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| 
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|     fn as_bind_group(
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|         &self,
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|         layout: &BindGroupLayout,
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|         render_device: &RenderDevice,
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|         image_assets: &RenderAssets<Image>,
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|         fallback_image: &FallbackImage,
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|     ) -> Result<PreparedBindGroup<Self::Data>, AsBindGroupError> {
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|         // retrieve the render resources from handles
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|         let mut images = vec![];
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|         for handle in self.textures.iter().take(MAX_TEXTURE_COUNT) {
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|             match image_assets.get(handle) {
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|                 Some(image) => images.push(image),
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|                 None => return Err(AsBindGroupError::RetryNextUpdate),
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|             }
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|         }
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| 
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|         let fallback_image = &fallback_image.d2;
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| 
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|         let textures = vec![&fallback_image.texture_view; MAX_TEXTURE_COUNT];
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| 
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|         // convert bevy's resource types to WGPU's references
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|         let mut textures: Vec<_> = textures.into_iter().map(|texture| &**texture).collect();
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| 
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|         // fill in up to the first `MAX_TEXTURE_COUNT` textures and samplers to the arrays
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|         for (id, image) in images.into_iter().enumerate() {
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|             textures[id] = &*image.texture_view;
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|         }
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| 
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|         let bind_group = render_device.create_bind_group(
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|             "bindless_material_bind_group",
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|             layout,
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|             &BindGroupEntries::sequential((&textures[..], &fallback_image.sampler)),
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|         );
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| 
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|         Ok(PreparedBindGroup {
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|             bindings: vec![],
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|             bind_group,
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|             data: (),
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|         })
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|     }
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| 
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|     fn unprepared_bind_group(
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|         &self,
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|         _: &BindGroupLayout,
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|         _: &RenderDevice,
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|         _: &RenderAssets<Image>,
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|         _: &FallbackImage,
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|     ) -> Result<UnpreparedBindGroup<Self::Data>, AsBindGroupError> {
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|         // we implement as_bind_group directly because
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|         panic!("bindless texture arrays can't be owned")
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|         // or rather, they can be owned, but then you can't make a `&'a [&'a TextureView]` from a vec of them in get_binding().
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|     }
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| 
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|     fn bind_group_layout_entries(_: &RenderDevice) -> Vec<BindGroupLayoutEntry>
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|     where
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|         Self: Sized,
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|     {
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|         vec![
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|             // @group(1) @binding(0) var textures: binding_array<texture_2d<f32>>;
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|             BindGroupLayoutEntry {
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|                 binding: 0,
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|                 visibility: ShaderStages::FRAGMENT,
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|                 ty: BindingType::Texture {
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|                     sample_type: TextureSampleType::Float { filterable: true },
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|                     view_dimension: TextureViewDimension::D2,
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|                     multisampled: false,
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|                 },
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|                 count: NonZeroU32::new(MAX_TEXTURE_COUNT as u32),
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|             },
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|             // @group(1) @binding(1) var nearest_sampler: sampler;
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|             BindGroupLayoutEntry {
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|                 binding: 1,
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|                 visibility: ShaderStages::FRAGMENT,
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|                 ty: BindingType::Sampler(SamplerBindingType::Filtering),
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|                 count: None,
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|                 // Note: as textures, multiple samplers can also be bound onto one binding slot.
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|                 // One may need to pay attention to the limit of sampler binding amount on some platforms.
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|                 // count: NonZeroU32::new(MAX_TEXTURE_COUNT as u32),
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|             },
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|         ]
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|     }
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| }
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| 
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| impl Material for BindlessMaterial {
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|     fn fragment_shader() -> ShaderRef {
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|         "shaders/texture_binding_array.wgsl".into()
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|     }
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| }
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