6ce447a4ec
From now on, sample counts always refer to the number of actual color samples, and render targets don't have separate color and stencil sample counts. If mixed samples support is available when making a "GrAAType::kCoverage" draw, then an op may attach and use a mixed sampled stencil buffer internally. But this will all be invisible to the client. After this CL, we temporarily won't have a mode to use nvpr with mixed samples. That will soon be fixed by a follow-on CL that enables nvpr with mixed samples in the normal "gl" and "gles" configs. Bug: skia: Change-Id: I1cb8277f0d2d0d371f24bb9f39cd473ed5c5c83b Reviewed-on: https://skia-review.googlesource.com/c/skia/+/221878 Commit-Queue: Chris Dalton <csmartdalton@google.com> Reviewed-by: Brian Salomon <bsalomon@google.com>
202 lines
7.5 KiB
C++
202 lines
7.5 KiB
C++
/*
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* Copyright 2018 Google Inc.
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*
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* Use of this source code is governed by a BSD-style license that can be
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* found in the LICENSE file.
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*/
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#include "gm/gm.h"
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#include "include/core/SkBlendMode.h"
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#include "include/core/SkCanvas.h"
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#include "include/core/SkColor.h"
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#include "include/core/SkMatrix.h"
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#include "include/core/SkPoint.h"
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#include "include/core/SkRect.h"
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#include "include/core/SkRefCnt.h"
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#include "include/core/SkString.h"
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#include "include/gpu/GrContext.h"
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#include "include/private/GrRecordingContext.h"
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#include "include/private/GrTypesPriv.h"
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#include "src/gpu/GrBuffer.h"
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#include "src/gpu/GrCaps.h"
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#include "src/gpu/GrContextPriv.h"
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#include "src/gpu/GrGeometryProcessor.h"
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#include "src/gpu/GrGpuBuffer.h"
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#include "src/gpu/GrGpuCommandBuffer.h"
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#include "src/gpu/GrMemoryPool.h"
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#include "src/gpu/GrMesh.h"
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#include "src/gpu/GrOpFlushState.h"
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#include "src/gpu/GrPipeline.h"
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#include "src/gpu/GrPrimitiveProcessor.h"
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#include "src/gpu/GrProcessor.h"
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#include "src/gpu/GrProcessorSet.h"
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#include "src/gpu/GrRecordingContextPriv.h"
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#include "src/gpu/GrRenderTargetContext.h"
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#include "src/gpu/GrRenderTargetContextPriv.h"
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#include "src/gpu/GrResourceProvider.h"
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#include "src/gpu/GrShaderCaps.h"
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#include "src/gpu/GrShaderVar.h"
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#include "src/gpu/glsl/GrGLSLFragmentShaderBuilder.h"
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#include "src/gpu/glsl/GrGLSLGeometryProcessor.h"
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#include "src/gpu/glsl/GrGLSLPrimitiveProcessor.h"
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#include "src/gpu/glsl/GrGLSLProgramDataManager.h"
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#include "src/gpu/glsl/GrGLSLUniformHandler.h"
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#include "src/gpu/glsl/GrGLSLVarying.h"
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#include "src/gpu/glsl/GrGLSLVertexGeoBuilder.h"
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#include "src/gpu/ops/GrDrawOp.h"
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#include "src/gpu/ops/GrOp.h"
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#include <memory>
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#include <utility>
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class GrAppliedClip;
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/**
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* This test ensures that fwidth() works properly on GPU configs by drawing a squircle.
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*/
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namespace skiagm {
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static constexpr GrGeometryProcessor::Attribute gVertex =
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{"bboxcoord", kFloat2_GrVertexAttribType, kFloat2_GrSLType};
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////////////////////////////////////////////////////////////////////////////////////////////////////
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// SkSL code.
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class FwidthSquircleTestProcessor : public GrGeometryProcessor {
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public:
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FwidthSquircleTestProcessor(const SkMatrix& viewMatrix)
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: GrGeometryProcessor(kFwidthSquircleTestProcessor_ClassID)
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, fViewMatrix(viewMatrix) {
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this->setVertexAttributes(&gVertex, 1);
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}
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const char* name() const override { return "FwidthSquircleTestProcessor"; }
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void getGLSLProcessorKey(const GrShaderCaps&, GrProcessorKeyBuilder* b) const final {}
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GrGLSLPrimitiveProcessor* createGLSLInstance(const GrShaderCaps&) const final;
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private:
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const SkMatrix fViewMatrix;
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class Impl;
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};
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class FwidthSquircleTestProcessor::Impl : public GrGLSLGeometryProcessor {
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void onEmitCode(EmitArgs& args, GrGPArgs* gpArgs) override {
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const auto& proc = args.fGP.cast<FwidthSquircleTestProcessor>();
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auto* uniforms = args.fUniformHandler;
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fViewMatrixHandle =
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uniforms->addUniform(kVertex_GrShaderFlag, kFloat3x3_GrSLType, "viewmatrix");
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auto* varyings = args.fVaryingHandler;
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varyings->emitAttributes(proc);
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GrGLSLVarying squircleCoord(kFloat2_GrSLType);
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varyings->addVarying("bboxcoord", &squircleCoord);
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auto* v = args.fVertBuilder;
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v->codeAppendf("float2x2 R = float2x2(cos(.05), sin(.05), -sin(.05), cos(.05));");
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v->codeAppendf("%s = bboxcoord * 1.25;", squircleCoord.vsOut());
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v->codeAppendf("float3 vertexpos = float3(bboxcoord * 100 * R + 100, 1);");
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v->codeAppendf("vertexpos = %s * vertexpos;", uniforms->getUniformCStr(fViewMatrixHandle));
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gpArgs->fPositionVar.set(kFloat3_GrSLType, "vertexpos");
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auto* f = args.fFragBuilder;
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f->codeAppendf("float golden_ratio = 1.61803398875;");
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f->codeAppendf("float pi = 3.141592653589793;");
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f->codeAppendf("float x = abs(%s.x), y = abs(%s.y);",
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squircleCoord.fsIn(), squircleCoord.fsIn());
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// Squircle function!
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f->codeAppendf("float fn = half(pow(x, golden_ratio*pi) + pow(y, golden_ratio*pi) - 1);");
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f->codeAppendf("float fnwidth = fwidth(fn);");
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f->codeAppendf("fnwidth += 1e-10;"); // Guard against divide-by-zero.
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f->codeAppendf("half coverage = clamp(half(.5 - fn/fnwidth), 0, 1);");
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f->codeAppendf("%s = half4(.51, .42, .71, 1) * .89;", args.fOutputColor);
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f->codeAppendf("%s = half4(coverage);", args.fOutputCoverage);
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}
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void setData(const GrGLSLProgramDataManager& pdman, const GrPrimitiveProcessor& primProc,
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FPCoordTransformIter&& transformIter) override {
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const auto& proc = primProc.cast<FwidthSquircleTestProcessor>();
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pdman.setSkMatrix(fViewMatrixHandle, proc.fViewMatrix);
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}
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UniformHandle fViewMatrixHandle;
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};
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GrGLSLPrimitiveProcessor* FwidthSquircleTestProcessor::createGLSLInstance(
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const GrShaderCaps&) const {
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return new Impl();
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}
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////////////////////////////////////////////////////////////////////////////////////////////////////
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// Draw Op.
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class FwidthSquircleTestOp : public GrDrawOp {
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public:
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DEFINE_OP_CLASS_ID
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static std::unique_ptr<GrDrawOp> Make(GrRecordingContext* ctx, const SkMatrix& viewMatrix) {
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GrOpMemoryPool* pool = ctx->priv().opMemoryPool();
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return pool->allocate<FwidthSquircleTestOp>(viewMatrix);
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}
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private:
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FwidthSquircleTestOp(const SkMatrix& viewMatrix)
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: GrDrawOp(ClassID())
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, fViewMatrix(viewMatrix) {
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this->setBounds(SkRect::MakeIWH(200, 200), HasAABloat::kNo, IsZeroArea::kNo);
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}
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const char* name() const override { return "ClockwiseTestOp"; }
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FixedFunctionFlags fixedFunctionFlags() const override { return FixedFunctionFlags::kNone; }
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GrProcessorSet::Analysis finalize(
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const GrCaps&, const GrAppliedClip*, bool hasMixedSampledCoverage, GrClampType) override {
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return GrProcessorSet::EmptySetAnalysis();
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}
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void onPrepare(GrOpFlushState*) override {}
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void onExecute(GrOpFlushState* flushState, const SkRect& chainBounds) override {
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SkPoint vertices[4] = {
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{-1, -1},
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{+1, -1},
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{-1, +1},
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{+1, +1},
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};
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sk_sp<const GrBuffer> vertexBuffer(flushState->resourceProvider()->createBuffer(
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sizeof(vertices), GrGpuBufferType::kVertex, kStatic_GrAccessPattern, vertices));
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if (!vertexBuffer) {
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return;
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}
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GrPipeline pipeline(GrScissorTest::kDisabled, SkBlendMode::kSrcOver,
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flushState->drawOpArgs().fOutputSwizzle);
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GrMesh mesh(GrPrimitiveType::kTriangleStrip);
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mesh.setNonIndexedNonInstanced(4);
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mesh.setVertexData(std::move(vertexBuffer));
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flushState->rtCommandBuffer()->draw(FwidthSquircleTestProcessor(fViewMatrix), pipeline,
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nullptr, nullptr, &mesh, 1, SkRect::MakeIWH(100, 100));
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}
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const SkMatrix fViewMatrix;
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friend class ::GrOpMemoryPool; // for ctor
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};
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////////////////////////////////////////////////////////////////////////////////////////////////////
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// Test.
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DEF_SIMPLE_GPU_GM_CAN_FAIL(fwidth_squircle, ctx, rtc, canvas, errorMsg, 200, 200) {
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if (!ctx->priv().caps()->shaderCaps()->shaderDerivativeSupport()) {
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*errorMsg = "Shader derivatives not supported.";
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return DrawResult::kSkip;
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}
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// Draw the test directly to the frame buffer.
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canvas->clear(SK_ColorWHITE);
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rtc->priv().testingOnly_addDrawOp(FwidthSquircleTestOp::Make(ctx, canvas->getTotalMatrix()));
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return skiagm::DrawResult::kOk;
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}
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}
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