mirror of
https://github.com/vulkano-rs/vulkano.git
synced 2024-11-28 17:54:45 +00:00
226 lines
7.3 KiB
Rust
226 lines
7.3 KiB
Rust
use std::sync::Arc;
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use vulkano::{
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command_buffer::{
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allocator::StandardCommandBufferAllocator, AutoCommandBufferBuilder,
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CommandBufferInheritanceInfo, CommandBufferUsage, SecondaryAutoCommandBuffer,
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},
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descriptor_set::{
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allocator::StandardDescriptorSetAllocator, DescriptorSet, WriteDescriptorSet,
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},
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device::Queue,
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image::{
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sampler::{Filter, Sampler, SamplerAddressMode, SamplerCreateInfo, SamplerMipmapMode},
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view::ImageView,
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},
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pipeline::{
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graphics::{
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color_blend::{ColorBlendAttachmentState, ColorBlendState},
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input_assembly::InputAssemblyState,
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multisample::MultisampleState,
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rasterization::RasterizationState,
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vertex_input::VertexInputState,
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viewport::{Viewport, ViewportState},
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GraphicsPipelineCreateInfo,
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},
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layout::PipelineDescriptorSetLayoutCreateInfo,
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DynamicState, GraphicsPipeline, Pipeline, PipelineBindPoint, PipelineLayout,
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PipelineShaderStageCreateInfo,
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},
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render_pass::Subpass,
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};
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/// A subpass pipeline that fills a quad over frame.
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pub struct PixelsDrawPipeline {
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gfx_queue: Arc<Queue>,
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subpass: Subpass,
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pipeline: Arc<GraphicsPipeline>,
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command_buffer_allocator: Arc<StandardCommandBufferAllocator>,
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descriptor_set_allocator: Arc<StandardDescriptorSetAllocator>,
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}
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impl PixelsDrawPipeline {
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pub fn new(
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gfx_queue: Arc<Queue>,
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subpass: Subpass,
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command_buffer_allocator: Arc<StandardCommandBufferAllocator>,
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descriptor_set_allocator: Arc<StandardDescriptorSetAllocator>,
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) -> PixelsDrawPipeline {
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let pipeline = {
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let device = gfx_queue.device();
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let vs = vs::load(device.clone())
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.expect("failed to create shader module")
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.entry_point("main")
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.expect("shader entry point not found");
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let fs = fs::load(device.clone())
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.expect("failed to create shader module")
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.entry_point("main")
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.expect("shader entry point not found");
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let stages = [
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PipelineShaderStageCreateInfo::new(vs),
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PipelineShaderStageCreateInfo::new(fs),
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];
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let layout = PipelineLayout::new(
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device.clone(),
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PipelineDescriptorSetLayoutCreateInfo::from_stages(&stages)
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.into_pipeline_layout_create_info(device.clone())
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.unwrap(),
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)
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.unwrap();
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GraphicsPipeline::new(
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device.clone(),
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None,
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GraphicsPipelineCreateInfo {
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stages: stages.into_iter().collect(),
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vertex_input_state: Some(VertexInputState::default()),
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input_assembly_state: Some(InputAssemblyState::default()),
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viewport_state: Some(ViewportState::default()),
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rasterization_state: Some(RasterizationState::default()),
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multisample_state: Some(MultisampleState::default()),
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color_blend_state: Some(ColorBlendState::with_attachment_states(
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subpass.num_color_attachments(),
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ColorBlendAttachmentState::default(),
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)),
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dynamic_state: [DynamicState::Viewport].into_iter().collect(),
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subpass: Some(subpass.clone().into()),
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..GraphicsPipelineCreateInfo::layout(layout)
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},
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)
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.unwrap()
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};
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PixelsDrawPipeline {
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gfx_queue,
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subpass,
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pipeline,
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command_buffer_allocator,
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descriptor_set_allocator,
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}
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}
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fn create_descriptor_set(&self, image: Arc<ImageView>) -> Arc<DescriptorSet> {
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let layout = &self.pipeline.layout().set_layouts()[0];
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let sampler = Sampler::new(
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self.gfx_queue.device().clone(),
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SamplerCreateInfo {
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mag_filter: Filter::Linear,
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min_filter: Filter::Linear,
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address_mode: [SamplerAddressMode::Repeat; 3],
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mipmap_mode: SamplerMipmapMode::Linear,
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..Default::default()
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},
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)
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.unwrap();
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DescriptorSet::new(
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self.descriptor_set_allocator.clone(),
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layout.clone(),
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[
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WriteDescriptorSet::sampler(0, sampler),
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WriteDescriptorSet::image_view(1, image),
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],
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[],
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)
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.unwrap()
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}
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/// Draws input `image` over a quad of size -1.0 to 1.0.
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pub fn draw(
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&self,
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viewport_dimensions: [u32; 2],
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image: Arc<ImageView>,
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) -> Arc<SecondaryAutoCommandBuffer> {
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let mut builder = AutoCommandBufferBuilder::secondary(
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self.command_buffer_allocator.clone(),
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self.gfx_queue.queue_family_index(),
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CommandBufferUsage::MultipleSubmit,
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CommandBufferInheritanceInfo {
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render_pass: Some(self.subpass.clone().into()),
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..Default::default()
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},
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)
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.unwrap();
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builder
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.set_viewport(
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0,
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[Viewport {
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offset: [0.0, 0.0],
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extent: [viewport_dimensions[0] as f32, viewport_dimensions[1] as f32],
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depth_range: 0.0..=1.0,
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}]
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.into_iter()
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.collect(),
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)
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.unwrap()
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.bind_pipeline_graphics(self.pipeline.clone())
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.unwrap()
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.bind_descriptor_sets(
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PipelineBindPoint::Graphics,
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self.pipeline.layout().clone(),
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0,
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self.create_descriptor_set(image),
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)
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.unwrap();
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unsafe {
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builder.draw(6, 1, 0, 0).unwrap();
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}
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builder.build().unwrap()
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}
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}
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mod vs {
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vulkano_shaders::shader! {
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ty: "vertex",
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src: r"
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#version 450
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const vec2[6] POSITIONS = {
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vec2(-1.0, -1.0),
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vec2( 1.0, 1.0),
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vec2(-1.0, 1.0),
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vec2(-1.0, -1.0),
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vec2( 1.0, -1.0),
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vec2( 1.0, 1.0),
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};
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const vec2[6] TEX_COORDS = {
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vec2(0.0, 1.0),
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vec2(1.0, 0.0),
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vec2(0.0, 0.0),
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vec2(0.0, 1.0),
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vec2(1.0, 1.0),
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vec2(1.0, 0.0),
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};
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layout(location = 0) out vec2 f_tex_coords;
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void main() {
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gl_Position = vec4(POSITIONS[gl_VertexIndex], 0.0, 1.0);
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f_tex_coords = TEX_COORDS[gl_VertexIndex];
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}
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",
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}
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}
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mod fs {
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vulkano_shaders::shader! {
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ty: "fragment",
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src: r"
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#version 450
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layout(location = 0) in vec2 v_tex_coords;
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layout(location = 0) out vec4 f_color;
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layout(set = 0, binding = 0) uniform sampler s;
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layout(set = 0, binding = 1) uniform texture2D tex;
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void main() {
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f_color = texture(sampler2D(tex, s), v_tex_coords);
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}
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",
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}
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}
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