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Chris Dalton46983b72017-06-06 12:27:16 -06001/*
2 * Copyright 2017 Google Inc.
3 *
4 * Use of this source code is governed by a BSD-style license that can be
5 * found in the LICENSE file.
6 */
7
8#include "SkTypes.h"
9#include "Test.h"
10
11#if SK_SUPPORT_GPU
12
13#include "GrContext.h"
14#include "GrColor.h"
15#include "GrGeometryProcessor.h"
Robert Phillips009e9af2017-06-15 14:01:04 -040016#include "GrGpuCommandBuffer.h"
Chris Dalton46983b72017-06-06 12:27:16 -060017#include "GrOpFlushState.h"
18#include "GrRenderTargetContext.h"
19#include "GrRenderTargetContextPriv.h"
20#include "GrResourceProvider.h"
21#include "SkMakeUnique.h"
22#include "glsl/GrGLSLVertexShaderBuilder.h"
23#include "glsl/GrGLSLFragmentShaderBuilder.h"
24#include "glsl/GrGLSLGeometryProcessor.h"
25#include "glsl/GrGLSLVarying.h"
26
27/**
28 * This is a GPU-backend specific test for dynamic pipeline state. It draws boxes using dynamic
29 * scissor rectangles then reads back the result to verify a successful test.
30 */
31
32using ScissorState = GrPipeline::ScissorState;
33
34static constexpr int kScreenSize = 6;
35static constexpr int kNumMeshes = 4;
36static constexpr int kScreenSplitX = kScreenSize/2;
37static constexpr int kScreenSplitY = kScreenSize/2;
38
39static const GrPipeline::DynamicState kDynamicStates[kNumMeshes] = {
40 {SkIRect::MakeLTRB(0, 0, kScreenSplitX, kScreenSplitY)},
41 {SkIRect::MakeLTRB(0, kScreenSplitY, kScreenSplitX, kScreenSize)},
42 {SkIRect::MakeLTRB(kScreenSplitX, 0, kScreenSize, kScreenSplitY)},
43 {SkIRect::MakeLTRB(kScreenSplitX, kScreenSplitY, kScreenSize, kScreenSize)},
44};
45
46static const GrColor kMeshColors[kNumMeshes] {
47 GrColorPackRGBA(255, 0, 0, 255),
48 GrColorPackRGBA(0, 255, 0, 255),
49 GrColorPackRGBA(0, 0, 255, 255),
50 GrColorPackRGBA(0, 0, 0, 255)
51};
52
53struct Vertex {
54 float fX;
55 float fY;
56 GrColor fColor;
57};
58
59class GrPipelineDynamicStateTestProcessor : public GrGeometryProcessor {
60public:
61 GrPipelineDynamicStateTestProcessor()
Ethan Nicholasfa7ee242017-09-25 09:52:04 -040062 : fVertex(this->addVertexAttrib("vertex", kHalf2_GrVertexAttribType))
63 , fColor(this->addVertexAttrib("color", kUByte4_norm_GrVertexAttribType)) {
Chris Dalton46983b72017-06-06 12:27:16 -060064 this->initClassID<GrPipelineDynamicStateTestProcessor>();
65 }
66
67 const char* name() const override { return "GrPipelineDynamicStateTest Processor"; }
68
69 void getGLSLProcessorKey(const GrShaderCaps&, GrProcessorKeyBuilder*) const final {}
70
71 GrGLSLPrimitiveProcessor* createGLSLInstance(const GrShaderCaps&) const final;
72
73protected:
74 const Attribute& fVertex;
75 const Attribute& fColor;
76
77 friend class GLSLPipelineDynamicStateTestProcessor;
78 typedef GrGeometryProcessor INHERITED;
79};
80
81class GLSLPipelineDynamicStateTestProcessor : public GrGLSLGeometryProcessor {
82 void setData(const GrGLSLProgramDataManager& pdman, const GrPrimitiveProcessor&,
83 FPCoordTransformIter&& transformIter) final {}
84
85 void onEmitCode(EmitArgs& args, GrGPArgs* gpArgs) final {
86 const GrPipelineDynamicStateTestProcessor& mp =
87 args.fGP.cast<GrPipelineDynamicStateTestProcessor>();
88
89 GrGLSLVaryingHandler* varyingHandler = args.fVaryingHandler;
90 varyingHandler->emitAttributes(mp);
91 varyingHandler->addPassThroughAttribute(&mp.fColor, args.fOutputColor);
92
93 GrGLSLVertexBuilder* v = args.fVertBuilder;
Ethan Nicholas8aa45692017-09-20 11:24:15 -040094 v->codeAppendf("float2 vertex = %s;", mp.fVertex.fName);
95 gpArgs->fPositionVar.set(kFloat2_GrSLType, "vertex");
Chris Dalton46983b72017-06-06 12:27:16 -060096
97 GrGLSLPPFragmentBuilder* f = args.fFragBuilder;
Ethan Nicholasf7b88202017-09-18 14:10:39 -040098 f->codeAppendf("%s = half4(1);", args.fOutputCoverage);
Chris Dalton46983b72017-06-06 12:27:16 -060099 }
100};
101
102GrGLSLPrimitiveProcessor*
103GrPipelineDynamicStateTestProcessor::createGLSLInstance(const GrShaderCaps&) const {
104 return new GLSLPipelineDynamicStateTestProcessor;
105}
106
107class GrPipelineDynamicStateTestOp : public GrDrawOp {
108public:
109 DEFINE_OP_CLASS_ID
110
111 GrPipelineDynamicStateTestOp(ScissorState scissorState, sk_sp<const GrBuffer> vbuff)
112 : INHERITED(ClassID())
113 , fScissorState(scissorState)
114 , fVertexBuffer(std::move(vbuff)) {
115 this->setBounds(SkRect::MakeIWH(kScreenSize, kScreenSize),
116 HasAABloat::kNo, IsZeroArea::kNo);
117 }
118
119private:
120 const char* name() const override { return "GrPipelineDynamicStateTestOp"; }
121 FixedFunctionFlags fixedFunctionFlags() const override { return FixedFunctionFlags::kNone; }
Brian Osman9a725dd2017-09-20 09:53:22 -0400122 RequiresDstTexture finalize(const GrCaps&, const GrAppliedClip*,
123 GrPixelConfigIsClamped) override {
Brian Salomonf86d37b2017-06-16 10:04:34 -0400124 return RequiresDstTexture::kNo;
125 }
Chris Dalton46983b72017-06-06 12:27:16 -0600126 bool onCombineIfPossible(GrOp* other, const GrCaps& caps) override { return false; }
127 void onPrepare(GrOpFlushState*) override {}
128 void onExecute(GrOpFlushState* state) override {
Robert Phillips2890fbf2017-07-26 15:48:41 -0400129 GrRenderTargetProxy* proxy = state->drawOpArgs().fProxy;
130 GrPipeline pipeline(proxy, fScissorState, SkBlendMode::kSrc);
Chris Dalton46983b72017-06-06 12:27:16 -0600131 SkSTArray<kNumMeshes, GrMesh> meshes;
132 for (int i = 0; i < kNumMeshes; ++i) {
Chris Dalton3809bab2017-06-13 10:55:06 -0600133 GrMesh& mesh = meshes.emplace_back(GrPrimitiveType::kTriangleStrip);
Chris Dalton46983b72017-06-06 12:27:16 -0600134 mesh.setNonIndexedNonInstanced(4);
135 mesh.setVertexData(fVertexBuffer.get(), 4 * i);
136 }
Greg Daniel500d58b2017-08-24 15:59:33 -0400137 state->rtCommandBuffer()->draw(pipeline, GrPipelineDynamicStateTestProcessor(),
138 meshes.begin(), kDynamicStates, 4,
139 SkRect::MakeIWH(kScreenSize, kScreenSize));
Chris Dalton46983b72017-06-06 12:27:16 -0600140 }
141
142 ScissorState fScissorState;
143 const sk_sp<const GrBuffer> fVertexBuffer;
144
145 typedef GrDrawOp INHERITED;
146};
147
148DEF_GPUTEST_FOR_RENDERING_CONTEXTS(GrPipelineDynamicStateTest, reporter, ctxInfo) {
149 GrContext* const context = ctxInfo.grContext();
150 GrResourceProvider* rp = context->resourceProvider();
151
152 sk_sp<GrRenderTargetContext> rtc(
153 context->makeDeferredRenderTargetContext(SkBackingFit::kExact, kScreenSize, kScreenSize,
154 kRGBA_8888_GrPixelConfig, nullptr));
155 if (!rtc) {
156 ERRORF(reporter, "could not create render target context.");
157 return;
158 }
159
160 constexpr float d = (float) kScreenSize;
161 Vertex vdata[kNumMeshes * 4] = {
162 {0, 0, kMeshColors[0]},
163 {0, d, kMeshColors[0]},
164 {d, 0, kMeshColors[0]},
165 {d, d, kMeshColors[0]},
166
167 {0, 0, kMeshColors[1]},
168 {0, d, kMeshColors[1]},
169 {d, 0, kMeshColors[1]},
170 {d, d, kMeshColors[1]},
171
172 {0, 0, kMeshColors[2]},
173 {0, d, kMeshColors[2]},
174 {d, 0, kMeshColors[2]},
175 {d, d, kMeshColors[2]},
176
177 {0, 0, kMeshColors[3]},
178 {0, d, kMeshColors[3]},
179 {d, 0, kMeshColors[3]},
180 {d, d, kMeshColors[3]}
181 };
182
183 sk_sp<const GrBuffer> vbuff(rp->createBuffer(sizeof(vdata), kVertex_GrBufferType,
184 kDynamic_GrAccessPattern,
185 GrResourceProvider::kNoPendingIO_Flag |
186 GrResourceProvider::kRequireGpuMemory_Flag,
187 vdata));
188 if (!vbuff) {
189 ERRORF(reporter, "vbuff is null.");
190 return;
191 }
192
193 uint32_t resultPx[kScreenSize * kScreenSize];
194
195 for (ScissorState scissorState : {ScissorState::kEnabled, ScissorState::kDisabled}) {
196 rtc->clear(nullptr, 0xbaaaaaad, true);
197 rtc->priv().testingOnly_addDrawOp(
198 skstd::make_unique<GrPipelineDynamicStateTestOp>(scissorState, vbuff));
199 rtc->readPixels(SkImageInfo::Make(kScreenSize, kScreenSize,
200 kRGBA_8888_SkColorType, kPremul_SkAlphaType),
201 resultPx, 4 * kScreenSize, 0, 0, 0);
202 for (int y = 0; y < kScreenSize; ++y) {
203 for (int x = 0; x < kScreenSize; ++x) {
204 int expectedColorIdx;
205 if (ScissorState::kEnabled == scissorState) {
206 expectedColorIdx = (x < kScreenSplitX ? 0 : 2) + (y < kScreenSplitY ? 0 : 1);
207 } else {
208 expectedColorIdx = kNumMeshes - 1;
209 }
210 uint32_t expected = kMeshColors[expectedColorIdx];
211 uint32_t actual = resultPx[y * kScreenSize + x];
212 if (expected != actual) {
213 ERRORF(reporter, "[scissor=%s] pixel (%i,%i): got 0x%x expected 0x%x",
214 ScissorState::kEnabled == scissorState ? "enabled" : "disabled", x, y,
215 actual, expected);
216 return;
217 }
218 }
219 }
220 }
221}
222
223#endif