mirror of
https://github.com/KhronosGroup/glslang
synced 2024-11-12 21:20:06 +00:00
9cee73e028
This PR emulates per control point inputs to patch constant functions. Without either an extension to look across SIMD lanes or a dedicated stage, the emulation must use separate invocations of the wrapped entry point to obtain the per control point values. This is provided since shaders are wanting this functionality now, but such an extension is not yet available. Entry point arguments qualified as an invocation ID are replaced by the current control point number when calling the wrapped entry point. There is no particular optimization for the case of the entry point not having such an input but the PCF still accepting ctrl pt frequency data. It'll work, but anyway makes no so much sense. The wrapped entry point must return the per control point data by value. At this time it is not supported as an output parameter.
283 lines
13 KiB
C++
283 lines
13 KiB
C++
//
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// Copyright (C) 2016 Google, Inc.
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// Copyright (C) 2016 LunarG, Inc.
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//
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// All rights reserved.
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//
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// Redistribution and use in source and binary forms, with or without
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// modification, are permitted provided that the following conditions
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// are met:
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//
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// Redistributions of source code must retain the above copyright
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// notice, this list of conditions and the following disclaimer.
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//
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// Redistributions in binary form must reproduce the above
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// copyright notice, this list of conditions and the following
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// disclaimer in the documentation and/or other materials provided
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// with the distribution.
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//
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// Neither the name of Google Inc. nor the names of its
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// contributors may be used to endorse or promote products derived
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// from this software without specific prior written permission.
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//
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// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
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// FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
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// COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
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// INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
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// BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
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// CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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// LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
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// ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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// POSSIBILITY OF SUCH DAMAGE.
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#include <gtest/gtest.h>
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#include "TestFixture.h"
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namespace glslangtest {
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namespace {
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struct FileNameEntryPointPair {
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const char* fileName;
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const char* entryPoint;
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};
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// We are using FileNameEntryPointPair objects as parameters for instantiating
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// the template, so the global FileNameAsCustomTestSuffix() won't work since
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// it assumes std::string as parameters. Thus, an overriding one here.
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std::string FileNameAsCustomTestSuffix(
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const ::testing::TestParamInfo<FileNameEntryPointPair>& info) {
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std::string name = info.param.fileName;
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// A valid test case suffix cannot have '.' and '-' inside.
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std::replace(name.begin(), name.end(), '.', '_');
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std::replace(name.begin(), name.end(), '-', '_');
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return name;
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}
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using HlslCompileTest = GlslangTest<::testing::TestWithParam<FileNameEntryPointPair>>;
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using HlslCompileAndFlattenTest = GlslangTest<::testing::TestWithParam<FileNameEntryPointPair>>;
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// Compiling HLSL to SPIR-V under Vulkan semantics. Expected to successfully
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// generate both AST and SPIR-V.
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TEST_P(HlslCompileTest, FromFile)
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{
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loadFileCompileAndCheck(GlobalTestSettings.testRoot, GetParam().fileName,
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Source::HLSL, Semantics::Vulkan,
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Target::BothASTAndSpv, GetParam().entryPoint);
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}
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TEST_P(HlslCompileAndFlattenTest, FromFile)
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{
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loadFileCompileFlattenUniformsAndCheck(GlobalTestSettings.testRoot, GetParam().fileName,
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Source::HLSL, Semantics::Vulkan,
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Target::BothASTAndSpv, GetParam().entryPoint);
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}
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// clang-format off
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INSTANTIATE_TEST_CASE_P(
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ToSpirv, HlslCompileTest,
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::testing::ValuesIn(std::vector<FileNameEntryPointPair>{
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{"hlsl.amend.frag", "f1"},
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{"hlsl.array.frag", "PixelShaderFunction"},
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{"hlsl.array.implicit-size.frag", "PixelShaderFunction"},
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{"hlsl.array.multidim.frag", "main"},
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{"hlsl.assoc.frag", "PixelShaderFunction"},
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{"hlsl.attribute.frag", "PixelShaderFunction"},
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{"hlsl.attribute.expression.comp", "main"},
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{"hlsl.basic.comp", "main"},
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{"hlsl.basic.geom", "main"},
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{"hlsl.buffer.frag", "PixelShaderFunction"},
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{"hlsl.calculatelod.dx10.frag", "main"},
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{"hlsl.calculatelodunclamped.dx10.frag", "main"},
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{"hlsl.cast.frag", "PixelShaderFunction"},
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{"hlsl.comparison.vec.frag", "main"},
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{"hlsl.conditional.frag", "PixelShaderFunction"},
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{"hlsl.constructexpr.frag", "main"},
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{"hlsl.depthGreater.frag", "PixelShaderFunction"},
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{"hlsl.depthLess.frag", "PixelShaderFunction"},
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{"hlsl.discard.frag", "PixelShaderFunction"},
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{"hlsl.doLoop.frag", "PixelShaderFunction"},
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{"hlsl.emptystructreturn.frag", "main"},
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{"hlsl.emptystructreturn.vert", "main"},
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{"hlsl.entry-in.frag", "PixelShaderFunction"},
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{"hlsl.entry-out.frag", "PixelShaderFunction"},
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{"hlsl.float1.frag", "PixelShaderFunction"},
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{"hlsl.float4.frag", "PixelShaderFunction"},
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{"hlsl.flatten.return.frag", "main"},
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{"hlsl.forLoop.frag", "PixelShaderFunction"},
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{"hlsl.gather.array.dx10.frag", "main"},
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{"hlsl.gather.basic.dx10.frag", "main"},
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{"hlsl.gather.basic.dx10.vert", "main"},
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{"hlsl.gather.offset.dx10.frag", "main"},
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{"hlsl.gather.offsetarray.dx10.frag", "main"},
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{"hlsl.gathercmpRGBA.offset.dx10.frag", "main"},
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{"hlsl.gatherRGBA.array.dx10.frag", "main"},
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{"hlsl.gatherRGBA.basic.dx10.frag", "main"},
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{"hlsl.gatherRGBA.offset.dx10.frag", "main"},
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{"hlsl.gatherRGBA.offsetarray.dx10.frag", "main"},
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{"hlsl.getdimensions.dx10.frag", "main"},
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{"hlsl.getdimensions.rw.dx10.frag", "main"},
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{"hlsl.getdimensions.dx10.vert", "main"},
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{"hlsl.getsampleposition.dx10.frag", "main"},
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{"hlsl.hull.1.tesc", "main"},
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{"hlsl.hull.2.tesc", "main"},
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{"hlsl.hull.void.tesc", "main"},
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{"hlsl.hull.ctrlpt-1.tesc", "main"},
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{"hlsl.identifier.sample.frag", "main"},
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{"hlsl.if.frag", "PixelShaderFunction"},
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{"hlsl.inoutquals.frag", "main"},
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{"hlsl.init.frag", "ShaderFunction"},
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{"hlsl.init2.frag", "main"},
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{"hlsl.intrinsics.barriers.comp", "ComputeShaderFunction"},
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{"hlsl.intrinsics.comp", "ComputeShaderFunction"},
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{"hlsl.intrinsics.evalfns.frag", "main"},
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{"hlsl.intrinsics.d3dcolortoubyte4.frag", "main"},
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{"hlsl.intrinsics.double.frag", "PixelShaderFunction"},
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{"hlsl.intrinsics.f1632.frag", "main"},
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{"hlsl.intrinsics.f3216.frag", "main"},
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{"hlsl.intrinsics.frag", "main"},
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{"hlsl.intrinsic.frexp.frag", "main"},
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{"hlsl.intrinsics.lit.frag", "PixelShaderFunction"},
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{"hlsl.intrinsics.negative.comp", "ComputeShaderFunction"},
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{"hlsl.intrinsics.negative.frag", "PixelShaderFunction"},
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{"hlsl.intrinsics.negative.vert", "VertexShaderFunction"},
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{"hlsl.intrinsics.promote.frag", "main"},
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{"hlsl.intrinsics.promote.down.frag", "main"},
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{"hlsl.intrinsics.promote.outputs.frag", "main"},
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{"hlsl.layout.frag", "main"},
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{"hlsl.load.2dms.dx10.frag", "main"},
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{"hlsl.load.array.dx10.frag", "main"},
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{"hlsl.load.basic.dx10.frag", "main"},
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{"hlsl.load.basic.dx10.vert", "main"},
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{"hlsl.load.buffer.dx10.frag", "main"},
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{"hlsl.load.buffer.float.dx10.frag", "main"},
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{"hlsl.load.rwbuffer.dx10.frag", "main"},
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{"hlsl.load.rwtexture.dx10.frag", "main"},
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{"hlsl.load.rwtexture.array.dx10.frag", "main"},
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{"hlsl.load.offset.dx10.frag", "main"},
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{"hlsl.load.offsetarray.dx10.frag", "main"},
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{"hlsl.logical.unary.frag", "main"},
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{"hlsl.logical.binary.frag", "main"},
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{"hlsl.logical.binary.vec.frag", "main"},
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{"hlsl.matNx1.frag", "main"},
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{"hlsl.matrixSwizzle.vert", "ShaderFunction"},
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{"hlsl.mintypes.frag", "main"},
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{"hlsl.multiEntry.vert", "RealEntrypoint"},
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{"hlsl.multiReturn.frag", "main"},
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{"hlsl.matrixindex.frag", "main"},
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{"hlsl.nonstaticMemberFunction.frag", "main"},
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{"hlsl.numericsuffixes.frag", "main"},
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{"hlsl.numthreads.comp", "main_aux1"},
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{"hlsl.overload.frag", "PixelShaderFunction"},
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{"hlsl.params.default.frag", "main"},
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{"hlsl.params.default.negative.frag", "main"},
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{"hlsl.partialInit.frag", "PixelShaderFunction"},
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{"hlsl.pp.line.frag", "main"},
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{"hlsl.precise.frag", "main"},
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{"hlsl.promote.atomic.frag", "main"},
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{"hlsl.promote.binary.frag", "main"},
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{"hlsl.promote.vec1.frag", "main"},
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{"hlsl.promotions.frag", "main"},
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{"hlsl.rw.atomics.frag", "main"},
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{"hlsl.rw.bracket.frag", "main"},
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{"hlsl.rw.register.frag", "main"},
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{"hlsl.rw.scalar.bracket.frag", "main"},
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{"hlsl.rw.swizzle.frag", "main"},
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{"hlsl.rw.vec2.bracket.frag", "main"},
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{"hlsl.sample.array.dx10.frag", "main"},
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{"hlsl.sample.basic.dx10.frag", "main"},
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{"hlsl.sample.offset.dx10.frag", "main"},
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{"hlsl.sample.offsetarray.dx10.frag", "main"},
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{"hlsl.samplebias.array.dx10.frag", "main"},
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{"hlsl.samplebias.basic.dx10.frag", "main"},
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{"hlsl.samplebias.offset.dx10.frag", "main"},
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{"hlsl.samplebias.offsetarray.dx10.frag", "main"},
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{"hlsl.samplecmp.array.dx10.frag", "main"},
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{"hlsl.samplecmp.basic.dx10.frag", "main"},
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{"hlsl.samplecmp.offset.dx10.frag", "main"},
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{"hlsl.samplecmp.offsetarray.dx10.frag", "main"},
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{"hlsl.samplecmplevelzero.array.dx10.frag", "main"},
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{"hlsl.samplecmplevelzero.basic.dx10.frag", "main"},
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{"hlsl.samplecmplevelzero.offset.dx10.frag", "main"},
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{"hlsl.samplecmplevelzero.offsetarray.dx10.frag", "main"},
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{"hlsl.samplegrad.array.dx10.frag", "main"},
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{"hlsl.samplegrad.basic.dx10.frag", "main"},
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{"hlsl.samplegrad.basic.dx10.vert", "main"},
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{"hlsl.samplegrad.offset.dx10.frag", "main"},
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{"hlsl.samplegrad.offsetarray.dx10.frag", "main"},
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{"hlsl.samplelevel.array.dx10.frag", "main"},
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{"hlsl.samplelevel.basic.dx10.frag", "main"},
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{"hlsl.samplelevel.basic.dx10.vert", "main"},
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{"hlsl.samplelevel.offset.dx10.frag", "main"},
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{"hlsl.samplelevel.offsetarray.dx10.frag", "main"},
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{"hlsl.sample.sub-vec4.dx10.frag", "main"},
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{"hlsl.semicolons.frag", "main"},
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{"hlsl.shapeConv.frag", "main"},
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{"hlsl.shapeConvRet.frag", "main"},
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{"hlsl.staticMemberFunction.frag", "main"},
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{"hlsl.stringtoken.frag", "main"},
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{"hlsl.string.frag", "main"},
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{"hlsl.struct.split-1.vert", "main"},
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{"hlsl.struct.split.array.geom", "main"},
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{"hlsl.struct.split.assign.frag", "main"},
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{"hlsl.struct.split.call.vert", "main"},
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{"hlsl.struct.split.nested.geom", "main"},
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{"hlsl.struct.split.trivial.geom", "main"},
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{"hlsl.struct.split.trivial.vert", "main"},
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{"hlsl.structarray.flatten.frag", "main"},
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{"hlsl.structarray.flatten.geom", "main"},
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{"hlsl.structbuffer.frag", "main"},
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{"hlsl.structbuffer.atomics.frag", "main"},
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{"hlsl.structbuffer.byte.frag", "main"},
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{"hlsl.structbuffer.coherent.frag", "main"},
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{"hlsl.structbuffer.fn.frag", "main"},
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{"hlsl.structbuffer.rw.frag", "main"},
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{"hlsl.structbuffer.rwbyte.frag", "main"},
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{"hlsl.structin.vert", "main"},
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{"hlsl.structIoFourWay.frag", "main"},
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{"hlsl.structStructName.frag", "main"},
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{"hlsl.this.frag", "main"},
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{"hlsl.intrinsics.vert", "VertexShaderFunction"},
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{"hlsl.intrinsic.frexp.vert", "VertexShaderFunction"},
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{"hlsl.matType.frag", "PixelShaderFunction"},
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{"hlsl.matType.bool.frag", "main"},
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{"hlsl.matType.int.frag", "main"},
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{"hlsl.max.frag", "PixelShaderFunction"},
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{"hlsl.precedence.frag", "PixelShaderFunction"},
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{"hlsl.precedence2.frag", "PixelShaderFunction"},
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{"hlsl.semantic.geom", "main"},
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{"hlsl.semantic.vert", "main"},
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{"hlsl.scope.frag", "PixelShaderFunction"},
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{"hlsl.sin.frag", "PixelShaderFunction"},
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{"hlsl.struct.frag", "PixelShaderFunction"},
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{"hlsl.switch.frag", "PixelShaderFunction"},
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{"hlsl.swizzle.frag", "PixelShaderFunction"},
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{"hlsl.templatetypes.frag", "PixelShaderFunction"},
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{"hlsl.tx.bracket.frag", "main"},
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{"hlsl.type.half.frag", "main"},
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{"hlsl.type.identifier.frag", "main"},
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{"hlsl.typeGraphCopy.vert", "main"},
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{"hlsl.typedef.frag", "PixelShaderFunction"},
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{"hlsl.whileLoop.frag", "PixelShaderFunction"},
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{"hlsl.void.frag", "PixelShaderFunction"},
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}),
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FileNameAsCustomTestSuffix
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);
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// clang-format on
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// clang-format off
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INSTANTIATE_TEST_CASE_P(
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ToSpirv, HlslCompileAndFlattenTest,
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::testing::ValuesIn(std::vector<FileNameEntryPointPair>{
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{"hlsl.array.flatten.frag", "main"},
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}),
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FileNameAsCustomTestSuffix
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);
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// clang-format on
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} // anonymous namespace
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} // namespace glslangtest
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