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https://github.com/TomHarte/CLK.git
synced 2025-02-16 18:30:32 +00:00
Switches to interleaved vertex data.
This more closely relates to what I actually want to do.
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parent
5c836604c0
commit
7551782a25
@ -1010,7 +1010,7 @@
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4B228CD624D773CA0077EF25 /* CSScanTarget.h */ = {isa = PBXFileReference; lastKnownFileType = sourcecode.c.h; path = CSScanTarget.h; sourceTree = "<group>"; };
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4B228CD724DA12C50077EF25 /* CSScanTargetView.h */ = {isa = PBXFileReference; fileEncoding = 4; lastKnownFileType = sourcecode.c.h; path = CSScanTargetView.h; sourceTree = "<group>"; };
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4B228CD824DA12C60077EF25 /* CSScanTargetView.m */ = {isa = PBXFileReference; fileEncoding = 4; lastKnownFileType = sourcecode.c.objc; path = CSScanTargetView.m; sourceTree = "<group>"; };
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4B228CDA24DA41880077EF25 /* ScanTarget.metal */ = {isa = PBXFileReference; lastKnownFileType = sourcecode.metal; name = ScanTarget.metal; path = "Clock Signal/ScanTarget/ScanTarget.metal"; sourceTree = "<group>"; };
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4B228CDA24DA41880077EF25 /* ScanTarget.metal */ = {isa = PBXFileReference; lastKnownFileType = sourcecode.metal; name = ScanTarget.metal; path = "Clock Signal/ScanTarget/ScanTarget.metal"; sourceTree = "<group>"; xcLanguageSpecificationIdentifier = xcode.lang.metal; };
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4B24095A1C45DF85004DA684 /* Stepper.hpp */ = {isa = PBXFileReference; fileEncoding = 4; lastKnownFileType = sourcecode.cpp.h; path = Stepper.hpp; sourceTree = "<group>"; };
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4B2530F3244E6773007980BF /* fm.json */ = {isa = PBXFileReference; fileEncoding = 4; lastKnownFileType = text.json; path = fm.json; sourceTree = "<group>"; };
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4B2A332C1DB86821002876E3 /* Base */ = {isa = PBXFileReference; lastKnownFileType = file.xib; name = Base; path = "Clock Signal/Base.lproj/OricOptions.xib"; sourceTree = SOURCE_ROOT; };
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@ -5167,8 +5167,8 @@
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GCC_WARN_UNUSED_FUNCTION = YES;
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GCC_WARN_UNUSED_PARAMETER = YES;
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GCC_WARN_UNUSED_VARIABLE = YES;
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MACOSX_DEPLOYMENT_TARGET = 10.10;
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MTL_ENABLE_DEBUG_INFO = YES;
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MACOSX_DEPLOYMENT_TARGET = 10.11;
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MTL_ENABLE_DEBUG_INFO = INCLUDE_SOURCE;
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ONLY_ACTIVE_ARCH = YES;
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SDKROOT = macosx;
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SWIFT_OPTIMIZATION_LEVEL = "-Onone";
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@ -5218,7 +5218,7 @@
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GCC_WARN_UNUSED_FUNCTION = YES;
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GCC_WARN_UNUSED_PARAMETER = YES;
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GCC_WARN_UNUSED_VARIABLE = YES;
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MACOSX_DEPLOYMENT_TARGET = 10.10;
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MACOSX_DEPLOYMENT_TARGET = 10.11;
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MTL_ENABLE_DEBUG_INFO = NO;
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SDKROOT = macosx;
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SWIFT_OPTIMIZATION_LEVEL = "-Owholemodule";
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@ -18,8 +18,7 @@
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// much of the inspiration, albeit that I'm proceeding via MKLView.
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id<MTLFunction> _vertexShader;
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id<MTLFunction> _fragmentShader;
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id<MTLBuffer> _positionBuffer;
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id<MTLBuffer> _colourBuffer;
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id<MTLBuffer> _verticesBuffer;
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id<MTLRenderPipelineState> _gouraudPipeline;
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}
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@ -29,18 +28,32 @@
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_commandQueue = [view.device newCommandQueue];
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// Generate some static buffers. AS A TEST.
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constexpr float positions[] = {
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0.0f, 0.5f, 0.0f, 1.0f,
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constexpr float vertices[] = {
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0.0f, 0.5f, 0.0f, 1.0f, // Position.
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1.0f, 0.0f, 0.0f, 1.0f, // Colour.
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-0.5f, -0.5f, 0.0f, 1.0f,
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0.0f, 1.0f, 0.0f, 1.0f,
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0.5f, -0.5f, 0.0f, 1.0f,
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0.0f, 0.0f, 1.0f, 1.0f,
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};
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constexpr float colours[] = {
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1.0f, 0.0f, 0.0f, 1.0f,
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0.0f, 1.0f, 0.0f, 1.0f,
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0.0f, 0.0f, 1.0f, 1.0f,
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};
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_positionBuffer = [view.device newBufferWithBytes:positions length:sizeof(positions) options:MTLResourceOptionCPUCacheModeDefault];
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_colourBuffer = [view.device newBufferWithBytes:colours length:sizeof(colours) options:MTLResourceOptionCPUCacheModeDefault];
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_verticesBuffer = [view.device newBufferWithBytes:vertices length:sizeof(vertices) options:MTLResourceOptionCPUCacheModeDefault];
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MTLVertexDescriptor *vertexDescriptor = [[MTLVertexDescriptor alloc] init];
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// Position.
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vertexDescriptor.attributes[0].bufferIndex = 0;
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vertexDescriptor.attributes[0].offset = 0;
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vertexDescriptor.attributes[0].format = MTLVertexFormatFloat4;
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// Colour.
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vertexDescriptor.attributes[1].bufferIndex = 0;
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vertexDescriptor.attributes[1].offset = sizeof(float)*4;
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vertexDescriptor.attributes[1].format = MTLVertexFormatFloat4;
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// Total vertex size.
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vertexDescriptor.layouts[0].stride = sizeof(float) * 8;
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// Generate TEST pipeline.
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id<MTLLibrary> library = [view.device newDefaultLibrary];
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@ -48,6 +61,7 @@
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pipelineDescriptor.vertexFunction = [library newFunctionWithName:@"vertex_main"];
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pipelineDescriptor.fragmentFunction = [library newFunctionWithName:@"fragment_main"];
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pipelineDescriptor.colorAttachments[0].pixelFormat = view.colorPixelFormat;
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pipelineDescriptor.vertexDescriptor = vertexDescriptor;
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_gouraudPipeline = [view.device newRenderPipelineStateWithDescriptor:pipelineDescriptor error:nil];
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}
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return self;
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@ -78,8 +92,7 @@
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// Drawing. Just the test triangle, as described above.
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[encoder setRenderPipelineState:_gouraudPipeline];
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[encoder setVertexBuffer:_positionBuffer offset:0 atIndex:0];
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[encoder setVertexBuffer:_colourBuffer offset:0 atIndex:1];
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[encoder setVertexBuffer:_verticesBuffer offset:0 atIndex:0];
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[encoder drawPrimitives:MTLPrimitiveTypeTriangle vertexStart:0 vertexCount:3 instanceCount:1];
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// Complete encoding.
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@ -9,20 +9,27 @@
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#include <metal_stdlib>
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using namespace metal;
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struct ColoredVertex {
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float4 position [[position]];
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float4 color;
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// These two structs are the same, but defined separately as an artefact
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// of my learning process, and the fact that they soon won't be.
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struct InputVertex {
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float4 position [[attribute(0)]];
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float4 colour [[attribute(1)]];
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};
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vertex ColoredVertex vertex_main( constant float4 *position [[buffer(0)]],
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constant float4 *color [[buffer(1)]],
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struct ColouredVertex {
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float4 position [[position]];
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float4 colour;
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};
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vertex ColouredVertex vertex_main( device const InputVertex *vertices [[buffer(0)]],
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uint vid [[vertex_id]]) {
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ColoredVertex vert;
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vert.position = position[vid];
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vert.color = color[vid];
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return vert;
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ColouredVertex output;
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output.position = vertices[vid].position;
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output.colour = vertices[vid].colour;
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return output;
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}
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fragment float4 fragment_main(ColoredVertex vert [[stage_in]]) {
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return vert.color;
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fragment float4 fragment_main(ColouredVertex vert [[stage_in]]) {
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return vert.colour;
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}
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