220 lines
8.6 KiB
Zig
220 lines
8.6 KiB
Zig
const std = @import("std");
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const sample_utils = @import("sample_utils.zig");
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const c = @import("c.zig").c;
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const glfw = @import("glfw");
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const gpu = @import("gpu");
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pub fn main() !void {
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var gpa = std.heap.GeneralPurposeAllocator(.{}){};
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var allocator = gpa.allocator();
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const setup = try sample_utils.setup(allocator);
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const framebuffer_size = try setup.window.getFramebufferSize();
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const window_data = try allocator.create(WindowData);
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window_data.* = .{
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.surface = null,
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.swap_chain = null,
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.swap_chain_format = undefined,
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.current_desc = undefined,
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.target_desc = undefined,
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};
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setup.window.setUserPointer(window_data);
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// If targeting OpenGL, we can't use the newer WGPUSurface API. Instead, we need to use the
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// older Dawn-specific API. https://bugs.chromium.org/p/dawn/issues/detail?id=269&q=surface&can=2
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const use_legacy_api = setup.backend_type == .opengl or setup.backend_type == .opengles;
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var descriptor: gpu.SwapChain.Descriptor = undefined;
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if (!use_legacy_api) {
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window_data.swap_chain_format = .bgra8_unorm;
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descriptor = .{
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.label = "basic swap chain",
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.usage = .render_attachment,
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.format = window_data.swap_chain_format,
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.width = framebuffer_size.width,
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.height = framebuffer_size.height,
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.present_mode = .fifo,
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.implementation = 0,
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};
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window_data.surface = sample_utils.createSurfaceForWindow(
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&setup.native_instance,
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setup.window,
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comptime sample_utils.detectGLFWOptions(),
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);
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} else {
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const binding = c.machUtilsCreateBinding(@enumToInt(setup.backend_type), @ptrCast(*c.GLFWwindow, setup.window.handle), @ptrCast(c.WGPUDevice, setup.device.ptr));
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if (binding == null) {
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@panic("failed to create Dawn backend binding");
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}
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descriptor = std.mem.zeroes(gpu.SwapChain.Descriptor);
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descriptor.implementation = c.machUtilsBackendBinding_getSwapChainImplementation(binding);
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window_data.swap_chain = setup.device.nativeCreateSwapChain(null, &descriptor);
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window_data.swap_chain_format = @intToEnum(gpu.Texture.Format, @intCast(u32, c.machUtilsBackendBinding_getPreferredSwapChainTextureFormat(binding)));
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window_data.swap_chain.?.configure(
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window_data.swap_chain_format,
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.render_attachment,
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framebuffer_size.width,
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framebuffer_size.height,
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);
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}
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window_data.current_desc = descriptor;
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window_data.target_desc = descriptor;
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const vs =
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\\ @stage(vertex) fn main(
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\\ @builtin(vertex_index) VertexIndex : u32
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\\ ) -> @builtin(position) vec4<f32> {
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\\ var pos = array<vec2<f32>, 3>(
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\\ vec2<f32>( 0.0, 0.5),
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\\ vec2<f32>(-0.5, -0.5),
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\\ vec2<f32>( 0.5, -0.5)
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\\ );
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\\ return vec4<f32>(pos[VertexIndex], 0.0, 1.0);
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\\ }
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;
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const vs_module = setup.device.createShaderModule(&.{
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.label = "my vertex shader",
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.code = .{ .wgsl = vs },
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});
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const fs =
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\\ @stage(fragment) fn main() -> @location(0) vec4<f32> {
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\\ return vec4<f32>(1.0, 0.0, 0.0, 1.0);
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\\ }
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;
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const fs_module = setup.device.createShaderModule(&.{
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.label = "my fragment shader",
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.code = .{ .wgsl = fs },
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});
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// Fragment state
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var blend = std.mem.zeroes(c.WGPUBlendState);
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blend.color.operation = c.WGPUBlendOperation_Add;
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blend.color.srcFactor = c.WGPUBlendFactor_One;
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blend.color.dstFactor = c.WGPUBlendFactor_One;
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blend.alpha.operation = c.WGPUBlendOperation_Add;
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blend.alpha.srcFactor = c.WGPUBlendFactor_One;
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blend.alpha.dstFactor = c.WGPUBlendFactor_One;
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var color_target = std.mem.zeroes(c.WGPUColorTargetState);
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color_target.format = @enumToInt(window_data.swap_chain_format);
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color_target.blend = &blend;
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color_target.writeMask = c.WGPUColorWriteMask_All;
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var fragment = std.mem.zeroes(c.WGPUFragmentState);
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fragment.module = @ptrCast(c.WGPUShaderModule, fs_module.ptr);
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fragment.entryPoint = "main";
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fragment.targetCount = 1;
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fragment.targets = &color_target;
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var pipeline_descriptor = std.mem.zeroes(c.WGPURenderPipelineDescriptor);
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pipeline_descriptor.fragment = &fragment;
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// Other state
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pipeline_descriptor.layout = null;
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pipeline_descriptor.depthStencil = null;
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pipeline_descriptor.vertex.module = @ptrCast(c.WGPUShaderModule, vs_module.ptr);
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pipeline_descriptor.vertex.entryPoint = "main";
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pipeline_descriptor.vertex.bufferCount = 0;
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pipeline_descriptor.vertex.buffers = null;
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pipeline_descriptor.multisample.count = 1;
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pipeline_descriptor.multisample.mask = 0xFFFFFFFF;
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pipeline_descriptor.multisample.alphaToCoverageEnabled = false;
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pipeline_descriptor.primitive.frontFace = c.WGPUFrontFace_CCW;
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pipeline_descriptor.primitive.cullMode = c.WGPUCullMode_None;
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pipeline_descriptor.primitive.topology = c.WGPUPrimitiveTopology_TriangleList;
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pipeline_descriptor.primitive.stripIndexFormat = c.WGPUIndexFormat_Undefined;
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const pipeline = c.wgpuDeviceCreateRenderPipeline(@ptrCast(c.WGPUDevice, setup.device.ptr), &pipeline_descriptor);
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vs_module.release();
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fs_module.release();
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// Reconfigure the swap chain with the new framebuffer width/height, otherwise e.g. the Vulkan
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// device would be lost after a resize.
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setup.window.setFramebufferSizeCallback((struct {
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fn callback(window: glfw.Window, width: u32, height: u32) void {
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const pl = window.getUserPointer(WindowData);
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pl.?.target_desc.width = width;
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pl.?.target_desc.height = height;
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}
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}).callback);
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const queue = setup.device.getQueue();
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while (!setup.window.shouldClose()) {
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try frame(.{
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.window = setup.window,
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.device = setup.device,
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.pipeline = pipeline,
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.queue = queue,
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});
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std.time.sleep(16 * std.time.ns_per_ms);
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}
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}
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const WindowData = struct {
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surface: ?gpu.Surface,
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swap_chain: ?gpu.SwapChain,
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swap_chain_format: gpu.Texture.Format,
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current_desc: gpu.SwapChain.Descriptor,
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target_desc: gpu.SwapChain.Descriptor,
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};
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const FrameParams = struct {
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window: glfw.Window,
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device: gpu.Device,
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pipeline: c.WGPURenderPipeline,
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queue: gpu.Queue,
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};
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fn frame(params: FrameParams) !void {
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try glfw.pollEvents();
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const pl = params.window.getUserPointer(WindowData).?;
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if (pl.swap_chain == null or !pl.current_desc.equal(&pl.target_desc)) {
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const use_legacy_api = pl.surface == null;
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if (!use_legacy_api) {
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pl.swap_chain = params.device.nativeCreateSwapChain(pl.surface, &pl.target_desc);
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} else {
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c.wgpuSwapChainConfigure(
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@ptrCast(c.WGPUSwapChain, pl.swap_chain.?.ptr),
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@enumToInt(pl.swap_chain_format),
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c.WGPUTextureUsage_RenderAttachment,
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@intCast(u32, pl.target_desc.width),
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@intCast(u32, pl.target_desc.height),
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);
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}
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pl.current_desc = pl.target_desc;
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}
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const back_buffer_view = c.wgpuSwapChainGetCurrentTextureView(@ptrCast(c.WGPUSwapChain, pl.swap_chain.?.ptr));
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var render_pass_info = std.mem.zeroes(c.WGPURenderPassDescriptor);
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var color_attachment = std.mem.zeroes(c.WGPURenderPassColorAttachment);
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color_attachment.view = back_buffer_view;
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color_attachment.resolveTarget = null;
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color_attachment.clearValue = c.WGPUColor{ .r = 0.0, .g = 0.0, .b = 0.0, .a = 0.0 };
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color_attachment.loadOp = c.WGPULoadOp_Clear;
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color_attachment.storeOp = c.WGPUStoreOp_Store;
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render_pass_info.colorAttachmentCount = 1;
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render_pass_info.colorAttachments = &color_attachment;
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render_pass_info.depthStencilAttachment = null;
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const encoder = c.wgpuDeviceCreateCommandEncoder(@ptrCast(c.WGPUDevice, params.device.ptr), null);
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const pass = c.wgpuCommandEncoderBeginRenderPass(encoder, &render_pass_info);
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c.wgpuRenderPassEncoderSetPipeline(pass, params.pipeline);
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c.wgpuRenderPassEncoderDraw(pass, 3, 1, 0, 0);
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c.wgpuRenderPassEncoderEnd(pass);
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c.wgpuRenderPassEncoderRelease(pass);
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var commands = c.wgpuCommandEncoderFinish(encoder, null);
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c.wgpuCommandEncoderRelease(encoder);
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const buf = gpu.CommandBuffer{ .ptr = &commands, .vtable = undefined };
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params.queue.submit(1, &buf);
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c.wgpuCommandBufferRelease(commands);
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c.wgpuSwapChainPresent(@ptrCast(c.WGPUSwapChain, pl.swap_chain.?.ptr));
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c.wgpuTextureViewRelease(back_buffer_view);
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}
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