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Brian Salomonbc6b99d2017-01-11 10:32:34 -05001/*
2 * Copyright 2016 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
Brian Salomonc65aec92017-03-09 09:03:58 -050011#include "GrClip.h"
Brian Salomonbc6b99d2017-01-11 10:32:34 -050012#include "GrContext.h"
Robert Phillips1afd4cd2018-01-08 13:40:32 -050013#include "GrContextPriv.h"
Brian Salomonbc6b99d2017-01-11 10:32:34 -050014#include "GrGpuResource.h"
Robert Phillips7c525e62018-06-12 10:11:12 -040015#include "GrMemoryPool.h"
Robert Phillips0bd24dc2018-01-16 08:06:32 -050016#include "GrProxyProvider.h"
Brian Salomonbc6b99d2017-01-11 10:32:34 -050017#include "GrRenderTargetContext.h"
18#include "GrRenderTargetContextPriv.h"
19#include "GrResourceProvider.h"
20#include "glsl/GrGLSLFragmentProcessor.h"
21#include "glsl/GrGLSLFragmentShaderBuilder.h"
Michael Ludwig72ab3462018-12-10 12:43:36 -050022#include "ops/GrFillRectOp.h"
Brian Salomon82ddc942017-07-14 12:00:13 -040023#include "ops/GrMeshDrawOp.h"
Michael Ludwige8e10752018-10-01 12:42:53 -040024#include "TestUtils.h"
Brian Salomonbc6b99d2017-01-11 10:32:34 -050025
Mike Klein0ec1c572018-12-04 11:52:51 -050026#include <atomic>
Hal Canary8a001442018-09-19 11:31:27 -040027#include <random>
28
Brian Salomonbc6b99d2017-01-11 10:32:34 -050029namespace {
Brian Salomon82ddc942017-07-14 12:00:13 -040030class TestOp : public GrMeshDrawOp {
Brian Salomonbc6b99d2017-01-11 10:32:34 -050031public:
32 DEFINE_OP_CLASS_ID
Robert Phillips7c525e62018-06-12 10:11:12 -040033 static std::unique_ptr<GrDrawOp> Make(GrContext* context,
34 std::unique_ptr<GrFragmentProcessor> fp) {
Robert Phillipsc994a932018-06-19 13:09:54 -040035 GrOpMemoryPool* pool = context->contextPriv().opMemoryPool();
36
37 return pool->allocate<TestOp>(std::move(fp));
Brian Salomon82ddc942017-07-14 12:00:13 -040038 }
39
Robert Phillips5f567c72017-09-14 08:27:37 -040040 const char* name() const override { return "TestOp"; }
41
Brian Salomon7d94bb52018-10-12 14:37:19 -040042 void visitProxies(const VisitProxyFunc& func, VisitorType) const override {
Robert Phillips5f567c72017-09-14 08:27:37 -040043 fProcessors.visitProxies(func);
44 }
45
Brian Salomon82ddc942017-07-14 12:00:13 -040046 FixedFunctionFlags fixedFunctionFlags() const override { return FixedFunctionFlags::kNone; }
47
Chris Dalton4b62aed2019-01-15 11:53:00 -070048 GrProcessorSet::Analysis finalize(const GrCaps& caps, const GrAppliedClip* clip) override {
Brian Salomon82ddc942017-07-14 12:00:13 -040049 static constexpr GrProcessorAnalysisColor kUnknownColor;
Brian Osmancf860852018-10-31 14:04:39 -040050 SkPMColor4f overrideColor;
Chris Dalton4b62aed2019-01-15 11:53:00 -070051 return fProcessors.finalize(kUnknownColor, GrProcessorAnalysisCoverage::kNone, clip, false,
52 caps, &overrideColor);
Brian Salomon649a3412017-03-09 13:50:43 -050053 }
Brian Salomonbc6b99d2017-01-11 10:32:34 -050054
55private:
Robert Phillips7c525e62018-06-12 10:11:12 -040056 friend class ::GrOpMemoryPool; // for ctor
57
Brian Salomonaff329b2017-08-11 09:40:37 -040058 TestOp(std::unique_ptr<GrFragmentProcessor> fp)
59 : INHERITED(ClassID()), fProcessors(std::move(fp)) {
Brian Salomon82ddc942017-07-14 12:00:13 -040060 this->setBounds(SkRect::MakeWH(100, 100), HasAABloat::kNo, IsZeroArea::kNo);
61 }
Brian Salomonbc6b99d2017-01-11 10:32:34 -050062
Brian Salomon91326c32017-08-09 16:02:19 -040063 void onPrepareDraws(Target* target) override { return; }
Brian Salomonbc6b99d2017-01-11 10:32:34 -050064
Brian Salomon82ddc942017-07-14 12:00:13 -040065 GrProcessorSet fProcessors;
66
67 typedef GrMeshDrawOp INHERITED;
Brian Salomonbc6b99d2017-01-11 10:32:34 -050068};
69
70/**
71 * FP used to test ref/IO counts on owned GrGpuResources. Can also be a parent FP to test counts
72 * of resources owned by child FPs.
73 */
74class TestFP : public GrFragmentProcessor {
75public:
Brian Salomonaff329b2017-08-11 09:40:37 -040076 static std::unique_ptr<GrFragmentProcessor> Make(std::unique_ptr<GrFragmentProcessor> child) {
77 return std::unique_ptr<GrFragmentProcessor>(new TestFP(std::move(child)));
Brian Salomonbc6b99d2017-01-11 10:32:34 -050078 }
Brian Salomonaff329b2017-08-11 09:40:37 -040079 static std::unique_ptr<GrFragmentProcessor> Make(const SkTArray<sk_sp<GrTextureProxy>>& proxies,
Brian Salomon559f5562017-11-15 14:28:33 -050080 const SkTArray<sk_sp<GrBuffer>>& buffers) {
81 return std::unique_ptr<GrFragmentProcessor>(new TestFP(proxies, buffers));
Brian Salomonbc6b99d2017-01-11 10:32:34 -050082 }
83
84 const char* name() const override { return "test"; }
85
86 void onGetGLSLProcessorKey(const GrShaderCaps&, GrProcessorKeyBuilder* b) const override {
Mike Klein0ec1c572018-12-04 11:52:51 -050087 static std::atomic<int32_t> nextKey{0};
88 b->add32(nextKey++);
Brian Salomonbc6b99d2017-01-11 10:32:34 -050089 }
90
Brian Salomonaff329b2017-08-11 09:40:37 -040091 std::unique_ptr<GrFragmentProcessor> clone() const override {
92 return std::unique_ptr<GrFragmentProcessor>(new TestFP(*this));
Brian Salomonb17e6392017-07-28 13:41:51 -040093 }
94
Brian Salomonbc6b99d2017-01-11 10:32:34 -050095private:
Brian Salomon559f5562017-11-15 14:28:33 -050096 TestFP(const SkTArray<sk_sp<GrTextureProxy>>& proxies, const SkTArray<sk_sp<GrBuffer>>& buffers)
Brian Salomon662ea4b2018-07-12 14:53:49 -040097 : INHERITED(kTestFP_ClassID, kNone_OptimizationFlags), fSamplers(4) {
Robert Phillips30f9bc62017-02-22 15:28:38 -050098 for (const auto& proxy : proxies) {
Brian Salomonf7dcd762018-07-30 14:48:15 -040099 fSamplers.emplace_back(proxy);
Brian Salomonbc6b99d2017-01-11 10:32:34 -0500100 }
Brian Salomonf7dcd762018-07-30 14:48:15 -0400101 this->setTextureSamplerCnt(fSamplers.count());
Brian Salomonbc6b99d2017-01-11 10:32:34 -0500102 }
103
Brian Salomonaff329b2017-08-11 09:40:37 -0400104 TestFP(std::unique_ptr<GrFragmentProcessor> child)
Brian Salomon662ea4b2018-07-12 14:53:49 -0400105 : INHERITED(kTestFP_ClassID, kNone_OptimizationFlags), fSamplers(4) {
Brian Salomonbc6b99d2017-01-11 10:32:34 -0500106 this->registerChildProcessor(std::move(child));
107 }
108
Brian Salomon96271cd2017-07-31 16:27:23 -0400109 explicit TestFP(const TestFP& that)
Brian Salomon662ea4b2018-07-12 14:53:49 -0400110 : INHERITED(kTestFP_ClassID, that.optimizationFlags()), fSamplers(4) {
Brian Salomonb17e6392017-07-28 13:41:51 -0400111 for (int i = 0; i < that.fSamplers.count(); ++i) {
112 fSamplers.emplace_back(that.fSamplers[i]);
Brian Salomonb17e6392017-07-28 13:41:51 -0400113 }
Brian Salomon96271cd2017-07-31 16:27:23 -0400114 for (int i = 0; i < that.numChildProcessors(); ++i) {
115 this->registerChildProcessor(that.childProcessor(i).clone());
Brian Salomonb17e6392017-07-28 13:41:51 -0400116 }
Brian Salomonf7dcd762018-07-30 14:48:15 -0400117 this->setTextureSamplerCnt(fSamplers.count());
Brian Salomonb17e6392017-07-28 13:41:51 -0400118 }
119
Brian Salomonbc6b99d2017-01-11 10:32:34 -0500120 virtual GrGLSLFragmentProcessor* onCreateGLSLInstance() const override {
121 class TestGLSLFP : public GrGLSLFragmentProcessor {
122 public:
123 TestGLSLFP() {}
124 void emitCode(EmitArgs& args) override {
125 GrGLSLFPFragmentBuilder* fragBuilder = args.fFragBuilder;
126 fragBuilder->codeAppendf("%s = %s;", args.fOutputColor, args.fInputColor);
127 }
128
129 private:
130 };
131 return new TestGLSLFP();
132 }
133
134 bool onIsEqual(const GrFragmentProcessor&) const override { return false; }
Brian Salomonf7dcd762018-07-30 14:48:15 -0400135 const TextureSampler& onTextureSampler(int i) const override { return fSamplers[i]; }
Brian Salomonbc6b99d2017-01-11 10:32:34 -0500136
137 GrTAllocator<TextureSampler> fSamplers;
Brian Salomon587e08f2017-01-27 10:59:27 -0500138 typedef GrFragmentProcessor INHERITED;
Brian Salomonbc6b99d2017-01-11 10:32:34 -0500139};
140}
141
Brian Salomonf046e152017-01-11 15:24:47 -0500142template <typename T>
143inline void testingOnly_getIORefCnts(const T* resource, int* refCnt, int* readCnt, int* writeCnt) {
144 *refCnt = resource->fRefCnt;
145 *readCnt = resource->fPendingReads;
146 *writeCnt = resource->fPendingWrites;
Brian Salomonbc6b99d2017-01-11 10:32:34 -0500147}
148
Robert Phillips2f493142017-03-02 18:18:38 -0500149void testingOnly_getIORefCnts(GrTextureProxy* proxy, int* refCnt, int* readCnt, int* writeCnt) {
Robert Phillips30f9bc62017-02-22 15:28:38 -0500150 *refCnt = proxy->getBackingRefCnt_TestOnly();
151 *readCnt = proxy->getPendingReadCnt_TestOnly();
152 *writeCnt = proxy->getPendingWriteCnt_TestOnly();
153}
154
Brian Salomonbc6b99d2017-01-11 10:32:34 -0500155DEF_GPUTEST_FOR_ALL_CONTEXTS(ProcessorRefTest, reporter, ctxInfo) {
156 GrContext* context = ctxInfo.grContext();
Robert Phillips1afd4cd2018-01-08 13:40:32 -0500157 GrProxyProvider* proxyProvider = context->contextPriv().proxyProvider();
Brian Salomonbc6b99d2017-01-11 10:32:34 -0500158
Robert Phillips16d8ec62017-07-27 16:16:25 -0400159 GrSurfaceDesc desc;
Brian Salomonbc6b99d2017-01-11 10:32:34 -0500160 desc.fWidth = 10;
161 desc.fHeight = 10;
Robert Phillips16d8ec62017-07-27 16:16:25 -0400162 desc.fConfig = kRGBA_8888_GrPixelConfig;
Brian Salomonbc6b99d2017-01-11 10:32:34 -0500163
Greg Daniel4065d452018-11-16 15:43:41 -0500164 const GrBackendFormat format =
165 context->contextPriv().caps()->getBackendFormatFromColorType(kRGBA_8888_SkColorType);
166
Brian Salomonb17e6392017-07-28 13:41:51 -0400167 for (bool makeClone : {false, true}) {
168 for (int parentCnt = 0; parentCnt < 2; parentCnt++) {
169 sk_sp<GrRenderTargetContext> renderTargetContext(
Robert Phillips0c4b7b12018-03-06 08:20:37 -0500170 context->contextPriv().makeDeferredRenderTargetContext(
Greg Daniel4065d452018-11-16 15:43:41 -0500171 format, SkBackingFit::kApprox, 1, 1,
Brian Salomon2a4f9832018-03-03 22:43:43 -0500172 kRGBA_8888_GrPixelConfig, nullptr));
Brian Salomonbc6b99d2017-01-11 10:32:34 -0500173 {
Brian Salomon2a4f9832018-03-03 22:43:43 -0500174 sk_sp<GrTextureProxy> proxy1 = proxyProvider->createProxy(
Greg Daniel4065d452018-11-16 15:43:41 -0500175 format, desc, kTopLeft_GrSurfaceOrigin, SkBackingFit::kExact,
176 SkBudgeted::kYes);
Brian Salomon2a4f9832018-03-03 22:43:43 -0500177 sk_sp<GrTextureProxy> proxy2 = proxyProvider->createProxy(
Greg Daniel4065d452018-11-16 15:43:41 -0500178 format, desc, kTopLeft_GrSurfaceOrigin, SkBackingFit::kExact,
179 SkBudgeted::kYes);
Brian Salomon2a4f9832018-03-03 22:43:43 -0500180 sk_sp<GrTextureProxy> proxy3 = proxyProvider->createProxy(
Greg Daniel4065d452018-11-16 15:43:41 -0500181 format, desc, kTopLeft_GrSurfaceOrigin, SkBackingFit::kExact,
182 SkBudgeted::kYes);
Brian Salomon2a4f9832018-03-03 22:43:43 -0500183 sk_sp<GrTextureProxy> proxy4 = proxyProvider->createProxy(
Greg Daniel4065d452018-11-16 15:43:41 -0500184 format, desc, kTopLeft_GrSurfaceOrigin, SkBackingFit::kExact,
185 SkBudgeted::kYes);
Brian Salomonb17e6392017-07-28 13:41:51 -0400186 {
187 SkTArray<sk_sp<GrTextureProxy>> proxies;
188 SkTArray<sk_sp<GrBuffer>> buffers;
Brian Salomonb17e6392017-07-28 13:41:51 -0400189 proxies.push_back(proxy1);
Brian Salomon559f5562017-11-15 14:28:33 -0500190 auto fp = TestFP::Make(std::move(proxies), std::move(buffers));
Brian Salomonb17e6392017-07-28 13:41:51 -0400191 for (int i = 0; i < parentCnt; ++i) {
192 fp = TestFP::Make(std::move(fp));
193 }
Brian Salomonaff329b2017-08-11 09:40:37 -0400194 std::unique_ptr<GrFragmentProcessor> clone;
Brian Salomonb17e6392017-07-28 13:41:51 -0400195 if (makeClone) {
196 clone = fp->clone();
197 }
Robert Phillips7c525e62018-06-12 10:11:12 -0400198 std::unique_ptr<GrDrawOp> op(TestOp::Make(context, std::move(fp)));
Brian Salomonb17e6392017-07-28 13:41:51 -0400199 renderTargetContext->priv().testingOnly_addDrawOp(std::move(op));
200 if (clone) {
Robert Phillips7c525e62018-06-12 10:11:12 -0400201 op = TestOp::Make(context, std::move(clone));
Brian Salomonb17e6392017-07-28 13:41:51 -0400202 renderTargetContext->priv().testingOnly_addDrawOp(std::move(op));
203 }
204 }
205 int refCnt, readCnt, writeCnt;
206
207 testingOnly_getIORefCnts(proxy1.get(), &refCnt, &readCnt, &writeCnt);
208 // IO counts should be double if there is a clone of the FP.
209 int ioRefMul = makeClone ? 2 : 1;
Robert Phillips715d08c2018-07-18 13:56:48 -0400210 REPORTER_ASSERT(reporter, -1 == refCnt);
Brian Salomonb17e6392017-07-28 13:41:51 -0400211 REPORTER_ASSERT(reporter, ioRefMul * 1 == readCnt);
212 REPORTER_ASSERT(reporter, ioRefMul * 0 == writeCnt);
213
Brian Salomonb17e6392017-07-28 13:41:51 -0400214 context->flush();
215
216 testingOnly_getIORefCnts(proxy1.get(), &refCnt, &readCnt, &writeCnt);
217 REPORTER_ASSERT(reporter, 1 == refCnt);
218 REPORTER_ASSERT(reporter, ioRefMul * 0 == readCnt);
219 REPORTER_ASSERT(reporter, ioRefMul * 0 == writeCnt);
220
Brian Salomonbc6b99d2017-01-11 10:32:34 -0500221 }
222 }
223 }
224}
Brian Salomon587e08f2017-01-27 10:59:27 -0500225
226// This test uses the random GrFragmentProcessor test factory, which relies on static initializers.
227#if SK_ALLOW_STATIC_GLOBAL_INITIALIZERS
228
Brian Salomon0e05a822017-07-25 09:43:22 -0400229#include "SkCommandLineFlags.h"
230DEFINE_bool(randomProcessorTest, false, "Use non-deterministic seed for random processor tests?");
Michael Ludwig3ad86d02018-09-28 16:00:38 -0400231DEFINE_uint32(processorSeed, 0, "Use specific seed for processor tests. Overridden by " \
232 "--randomProcessorTest.");
Brian Salomon0e05a822017-07-25 09:43:22 -0400233
234#if GR_TEST_UTILS
235
Michael Ludwig7034f152018-10-08 16:43:58 -0400236static GrColor input_texel_color(int i, int j, SkScalar delta) {
237 // Delta must be less than 0.5 to prevent over/underflow issues with the input color
238 SkASSERT(delta <= 0.5);
Brian Salomon587e08f2017-01-27 10:59:27 -0500239
Brian Osmancb3d0872018-10-16 15:19:28 -0400240 SkColor color = SkColorSetARGB((uint8_t)i, (uint8_t)j, (uint8_t)(i + j), (uint8_t)(2 * j - i));
241 SkColor4f color4f = SkColor4f::FromColor(color);
Michael Ludwig7034f152018-10-08 16:43:58 -0400242 for (int i = 0; i < 4; i++) {
Brian Osmancb3d0872018-10-16 15:19:28 -0400243 if (color4f[i] > 0.5) {
244 color4f[i] -= delta;
Michael Ludwig7034f152018-10-08 16:43:58 -0400245 } else {
Brian Osmancb3d0872018-10-16 15:19:28 -0400246 color4f[i] += delta;
Michael Ludwig7034f152018-10-08 16:43:58 -0400247 }
248 }
Brian Osmancb3d0872018-10-16 15:19:28 -0400249 return color4f.premul().toBytes_RGBA();
Brian Salomon0e05a822017-07-25 09:43:22 -0400250}
Brian Salomon587e08f2017-01-27 10:59:27 -0500251
Robert Phillips7c525e62018-06-12 10:11:12 -0400252void test_draw_op(GrContext* context,
253 GrRenderTargetContext* rtc,
254 std::unique_ptr<GrFragmentProcessor> fp,
Robert Phillips30f9bc62017-02-22 15:28:38 -0500255 sk_sp<GrTextureProxy> inputDataProxy) {
Brian Salomon5d4cd9e2017-02-09 11:16:46 -0500256 GrPaint paint;
Brian Osman2240be92017-10-18 13:15:13 -0400257 paint.addColorTextureProcessor(std::move(inputDataProxy), SkMatrix::I());
Brian Salomon5d4cd9e2017-02-09 11:16:46 -0500258 paint.addColorFragmentProcessor(std::move(fp));
259 paint.setPorterDuffXPFactory(SkBlendMode::kSrc);
Brian Salomonac70f842017-05-08 10:43:33 -0400260
Michael Ludwig72ab3462018-12-10 12:43:36 -0500261 auto op = GrFillRectOp::Make(context, std::move(paint), GrAAType::kNone, SkMatrix::I(),
262 SkRect::MakeWH(rtc->width(), rtc->height()));
Brian Salomonac70f842017-05-08 10:43:33 -0400263 rtc->addDrawOp(GrNoClip(), std::move(op));
Brian Salomon5d4cd9e2017-02-09 11:16:46 -0500264}
265
Michael Ludwig7034f152018-10-08 16:43:58 -0400266// This assumes that the output buffer will be the same size as inputDataProxy
267void render_fp(GrContext* context, GrRenderTargetContext* rtc, GrFragmentProcessor* fp,
268 sk_sp<GrTextureProxy> inputDataProxy, GrColor* buffer) {
269 int width = inputDataProxy->width();
270 int height = inputDataProxy->height();
271
272 // test_draw_op needs to take ownership of an FP, so give it a clone that it can own
273 test_draw_op(context, rtc, fp->clone(), inputDataProxy);
274 memset(buffer, 0x0, sizeof(GrColor) * width * height);
275 rtc->readPixels(SkImageInfo::Make(width, height, kRGBA_8888_SkColorType,
276 kPremul_SkAlphaType),
277 buffer, 0, 0, 0);
278}
279
Brian Salomon0e05a822017-07-25 09:43:22 -0400280/** Initializes the two test texture proxies that are available to the FP test factories. */
Robert Phillips0bd24dc2018-01-16 08:06:32 -0500281bool init_test_textures(GrProxyProvider* proxyProvider, SkRandom* random,
282 sk_sp<GrTextureProxy> proxies[2]) {
Brian Salomon0e05a822017-07-25 09:43:22 -0400283 static const int kTestTextureSize = 256;
Brian Osmanc35a2d42017-03-17 10:58:53 -0400284
Robert Phillips0bd24dc2018-01-16 08:06:32 -0500285 {
286 // Put premul data into the RGBA texture that the test FPs can optionally use.
287 std::unique_ptr<GrColor[]> rgbaData(new GrColor[kTestTextureSize * kTestTextureSize]);
288 for (int y = 0; y < kTestTextureSize; ++y) {
289 for (int x = 0; x < kTestTextureSize; ++x) {
Michael Ludwig7034f152018-10-08 16:43:58 -0400290 rgbaData[kTestTextureSize * y + x] = input_texel_color(
291 random->nextULessThan(256), random->nextULessThan(256), 0.0f);
Robert Phillips0bd24dc2018-01-16 08:06:32 -0500292 }
Brian Salomon0e05a822017-07-25 09:43:22 -0400293 }
Brian Salomon0e05a822017-07-25 09:43:22 -0400294
Brian Osman2700abc2018-09-12 10:19:41 -0400295 SkImageInfo ii = SkImageInfo::Make(kTestTextureSize, kTestTextureSize,
296 kRGBA_8888_SkColorType, kPremul_SkAlphaType);
297 SkPixmap pixmap(ii, rgbaData.get(), ii.minRowBytes());
298 sk_sp<SkImage> img = SkImage::MakeRasterCopy(pixmap);
299 proxies[0] = proxyProvider->createTextureProxy(img, kNone_GrSurfaceFlags, 1,
300 SkBudgeted::kYes, SkBackingFit::kExact);
Brian Salomon0e05a822017-07-25 09:43:22 -0400301 }
Robert Phillips0bd24dc2018-01-16 08:06:32 -0500302
303 {
304 // Put random values into the alpha texture that the test FPs can optionally use.
Robert Phillips0bd24dc2018-01-16 08:06:32 -0500305 std::unique_ptr<uint8_t[]> alphaData(new uint8_t[kTestTextureSize * kTestTextureSize]);
306 for (int y = 0; y < kTestTextureSize; ++y) {
307 for (int x = 0; x < kTestTextureSize; ++x) {
308 alphaData[kTestTextureSize * y + x] = random->nextULessThan(256);
309 }
310 }
311
Brian Osman2700abc2018-09-12 10:19:41 -0400312 SkImageInfo ii = SkImageInfo::Make(kTestTextureSize, kTestTextureSize,
313 kAlpha_8_SkColorType, kPremul_SkAlphaType);
314 SkPixmap pixmap(ii, alphaData.get(), ii.minRowBytes());
315 sk_sp<SkImage> img = SkImage::MakeRasterCopy(pixmap);
316 proxies[1] = proxyProvider->createTextureProxy(img, kNone_GrSurfaceFlags, 1,
317 SkBudgeted::kYes, SkBackingFit::kExact);
Robert Phillips0bd24dc2018-01-16 08:06:32 -0500318 }
Brian Salomon0e05a822017-07-25 09:43:22 -0400319
320 return proxies[0] && proxies[1];
321}
322
323// Creates a texture of premul colors used as the output of the fragment processor that precedes
324// the fragment processor under test. Color values are those provided by input_texel_color().
Michael Ludwig7034f152018-10-08 16:43:58 -0400325sk_sp<GrTextureProxy> make_input_texture(GrProxyProvider* proxyProvider, int width, int height,
326 SkScalar delta) {
Brian Salomon0e05a822017-07-25 09:43:22 -0400327 std::unique_ptr<GrColor[]> data(new GrColor[width * height]);
328 for (int y = 0; y < width; ++y) {
329 for (int x = 0; x < height; ++x) {
Michael Ludwig7034f152018-10-08 16:43:58 -0400330 data.get()[width * y + x] = input_texel_color(x, y, delta);
Brian Salomon0e05a822017-07-25 09:43:22 -0400331 }
332 }
Robert Phillips0bd24dc2018-01-16 08:06:32 -0500333
Brian Osman2700abc2018-09-12 10:19:41 -0400334 SkImageInfo ii = SkImageInfo::Make(width, height, kRGBA_8888_SkColorType, kPremul_SkAlphaType);
335 SkPixmap pixmap(ii, data.get(), ii.minRowBytes());
336 sk_sp<SkImage> img = SkImage::MakeRasterCopy(pixmap);
337 return proxyProvider->createTextureProxy(img, kNone_GrSurfaceFlags, 1,
338 SkBudgeted::kYes, SkBackingFit::kExact);
Brian Salomon0e05a822017-07-25 09:43:22 -0400339}
Robert Phillips0bd24dc2018-01-16 08:06:32 -0500340
Michael Ludwige8e10752018-10-01 12:42:53 -0400341bool log_surface_context(sk_sp<GrSurfaceContext> src, SkString* dst) {
342 SkImageInfo ii = SkImageInfo::Make(src->width(), src->height(), kRGBA_8888_SkColorType,
343 kPremul_SkAlphaType);
344 SkBitmap bm;
345 SkAssertResult(bm.tryAllocPixels(ii));
346 SkAssertResult(src->readPixels(ii, bm.getPixels(), bm.rowBytes(), 0, 0));
347
348 return bitmap_to_base64_data_uri(bm, dst);
349}
350
351bool log_surface_proxy(GrContext* context, sk_sp<GrSurfaceProxy> src, SkString* dst) {
352 sk_sp<GrSurfaceContext> sContext(context->contextPriv().makeWrappedSurfaceContext(src));
353 return log_surface_context(sContext, dst);
354}
355
Michael Ludwig7034f152018-10-08 16:43:58 -0400356bool fuzzy_color_equals(const SkPMColor4f& c1, const SkPMColor4f& c2) {
357 // With the loss of precision of rendering into 32-bit color, then estimating the FP's output
358 // from that, it is not uncommon for a valid output to differ from estimate by up to 0.01
359 // (really 1/128 ~ .0078, but frequently floating point issues make that tolerance a little
360 // too unforgiving).
361 static constexpr SkScalar kTolerance = 0.01f;
362 for (int i = 0; i < 4; i++) {
363 if (!SkScalarNearlyEqual(c1[i], c2[i], kTolerance)) {
364 return false;
365 }
366 }
367 return true;
368}
369
370int modulation_index(int channelIndex, bool alphaModulation) {
371 return alphaModulation ? 3 : channelIndex;
372}
373
374// Given three input colors (color preceding the FP being tested), and the output of the FP, this
375// ensures that the out1 = fp * in1.a, out2 = fp * in2.a, and out3 = fp * in3.a, where fp is the
376// pre-modulated color that should not be changing across frames (FP's state doesn't change).
377//
378// When alphaModulation is false, this tests the very similar conditions that out1 = fp * in1,
379// etc. using per-channel modulation instead of modulation by just the input alpha channel.
380// - This estimates the pre-modulated fp color from one of the input/output pairs and confirms the
381// conditions hold for the other two pairs.
382bool legal_modulation(const GrColor& in1, const GrColor& in2, const GrColor& in3,
383 const GrColor& out1, const GrColor& out2, const GrColor& out3,
384 bool alphaModulation) {
385 // Convert to floating point, which is the number space the FP operates in (more or less)
Brian Osmancb3d0872018-10-16 15:19:28 -0400386 SkPMColor4f in1f = SkPMColor4f::FromBytes_RGBA(in1);
387 SkPMColor4f in2f = SkPMColor4f::FromBytes_RGBA(in2);
388 SkPMColor4f in3f = SkPMColor4f::FromBytes_RGBA(in3);
389 SkPMColor4f out1f = SkPMColor4f::FromBytes_RGBA(out1);
390 SkPMColor4f out2f = SkPMColor4f::FromBytes_RGBA(out2);
391 SkPMColor4f out3f = SkPMColor4f::FromBytes_RGBA(out3);
Michael Ludwig7034f152018-10-08 16:43:58 -0400392
393 // Reconstruct the output of the FP before the shader modulated its color with the input value.
394 // When the original input is very small, it may cause the final output color to round
395 // to 0, in which case we estimate the pre-modulated color using one of the stepped frames that
396 // will then have a guaranteed larger channel value (since the offset will be added to it).
397 SkPMColor4f fpPreModulation;
398 for (int i = 0; i < 4; i++) {
399 int modulationIndex = modulation_index(i, alphaModulation);
400 if (in1f[modulationIndex] < 0.2f) {
401 // Use the stepped frame
402 fpPreModulation[i] = out2f[i] / in2f[modulationIndex];
403 } else {
404 fpPreModulation[i] = out1f[i] / in1f[modulationIndex];
405 }
406 }
407
408 // With reconstructed pre-modulated FP output, derive the expected value of fp * input for each
409 // of the transformed input colors.
Brian Osmancb3d0872018-10-16 15:19:28 -0400410 SkPMColor4f expected1 = alphaModulation ? (fpPreModulation * in1f.fA)
411 : (fpPreModulation * in1f);
412 SkPMColor4f expected2 = alphaModulation ? (fpPreModulation * in2f.fA)
413 : (fpPreModulation * in2f);
414 SkPMColor4f expected3 = alphaModulation ? (fpPreModulation * in3f.fA)
415 : (fpPreModulation * in3f);
Michael Ludwig7034f152018-10-08 16:43:58 -0400416
Brian Osmancb3d0872018-10-16 15:19:28 -0400417 return fuzzy_color_equals(out1f, expected1) &&
418 fuzzy_color_equals(out2f, expected2) &&
419 fuzzy_color_equals(out3f, expected3);
Michael Ludwig7034f152018-10-08 16:43:58 -0400420}
421
Brian Salomon5d4cd9e2017-02-09 11:16:46 -0500422DEF_GPUTEST_FOR_GL_RENDERING_CONTEXTS(ProcessorOptimizationValidationTest, reporter, ctxInfo) {
Brian Salomon587e08f2017-01-27 10:59:27 -0500423 GrContext* context = ctxInfo.grContext();
Robert Phillips0bd24dc2018-01-16 08:06:32 -0500424 GrProxyProvider* proxyProvider = context->contextPriv().proxyProvider();
Robert Phillips6be756b2018-01-16 15:07:54 -0500425 auto resourceProvider = context->contextPriv().resourceProvider();
Brian Salomon1c053642017-07-24 10:16:19 -0400426 using FPFactory = GrFragmentProcessorTestFactory;
Brian Osmanc35a2d42017-03-17 10:58:53 -0400427
Michael Ludwig3ad86d02018-09-28 16:00:38 -0400428 uint32_t seed = FLAGS_processorSeed;
Brian Osmanc35a2d42017-03-17 10:58:53 -0400429 if (FLAGS_randomProcessorTest) {
430 std::random_device rd;
431 seed = rd();
432 }
433 // If a non-deterministic bot fails this test, check the output to see what seed it used, then
Michael Ludwig3ad86d02018-09-28 16:00:38 -0400434 // use --processorSeed <seed> (without --randomProcessorTest) to reproduce.
Brian Osmanc35a2d42017-03-17 10:58:53 -0400435 SkRandom random(seed);
436
Greg Daniel4065d452018-11-16 15:43:41 -0500437 const GrBackendFormat format =
438 context->contextPriv().caps()->getBackendFormatFromColorType(kRGBA_8888_SkColorType);
439
Brian Salomon0e05a822017-07-25 09:43:22 -0400440 // Make the destination context for the test.
441 static constexpr int kRenderSize = 256;
Robert Phillips0c4b7b12018-03-06 08:20:37 -0500442 sk_sp<GrRenderTargetContext> rtc = context->contextPriv().makeDeferredRenderTargetContext(
Greg Daniel4065d452018-11-16 15:43:41 -0500443 format, SkBackingFit::kExact, kRenderSize, kRenderSize, kRGBA_8888_GrPixelConfig,
444 nullptr);
Brian Salomond1a8bdf2017-02-10 12:39:26 -0500445
Robert Phillipse78b7252017-04-06 07:59:41 -0400446 sk_sp<GrTextureProxy> proxies[2];
Robert Phillips0bd24dc2018-01-16 08:06:32 -0500447 if (!init_test_textures(proxyProvider, &random, proxies)) {
Brian Salomon0e05a822017-07-25 09:43:22 -0400448 ERRORF(reporter, "Could not create test textures");
Robert Phillipsbb581ce2017-05-29 15:05:15 -0400449 return;
450 }
Robert Phillipse78b7252017-04-06 07:59:41 -0400451 GrProcessorTestData testData(&random, context, rtc.get(), proxies);
Brian Salomon587e08f2017-01-27 10:59:27 -0500452
Michael Ludwig7034f152018-10-08 16:43:58 -0400453 // Coverage optimization uses three frames with a linearly transformed input texture. The first
454 // frame has no offset, second frames add .2 and .4, which should then be present as a fixed
455 // difference between the frame outputs if the FP is properly following the modulation
456 // requirements of the coverage optimization.
457 static constexpr SkScalar kInputDelta = 0.2f;
458 auto inputTexture1 = make_input_texture(proxyProvider, kRenderSize, kRenderSize, 0.0f);
459 auto inputTexture2 = make_input_texture(proxyProvider, kRenderSize, kRenderSize, kInputDelta);
460 auto inputTexture3 = make_input_texture(proxyProvider, kRenderSize, kRenderSize, 2*kInputDelta);
Robert Phillips30f9bc62017-02-22 15:28:38 -0500461
Michael Ludwige8e10752018-10-01 12:42:53 -0400462 // Encoded images are very verbose and this tests many potential images, so only export the
463 // first failure (subsequent failures have a reasonable chance of being related).
464 bool loggedFirstFailure = false;
Michael Ludwig314d3772018-10-03 16:04:38 -0400465 bool loggedFirstWarning = false;
Michael Ludwig7034f152018-10-08 16:43:58 -0400466
467 // Storage for the three frames required for coverage compatibility optimization. Each frame
468 // uses the correspondingly numbered inputTextureX.
469 std::unique_ptr<GrColor[]> readData1(new GrColor[kRenderSize * kRenderSize]);
470 std::unique_ptr<GrColor[]> readData2(new GrColor[kRenderSize * kRenderSize]);
471 std::unique_ptr<GrColor[]> readData3(new GrColor[kRenderSize * kRenderSize]);
472
Brian Salomon0e05a822017-07-25 09:43:22 -0400473 // Because processor factories configure themselves in random ways, this is not exhaustive.
Brian Salomon587e08f2017-01-27 10:59:27 -0500474 for (int i = 0; i < FPFactory::Count(); ++i) {
475 int timesToInvokeFactory = 5;
476 // Increase the number of attempts if the FP has child FPs since optimizations likely depend
477 // on child optimizations being present.
Brian Salomonaff329b2017-08-11 09:40:37 -0400478 std::unique_ptr<GrFragmentProcessor> fp = FPFactory::MakeIdx(i, &testData);
Brian Salomon587e08f2017-01-27 10:59:27 -0500479 for (int j = 0; j < fp->numChildProcessors(); ++j) {
480 // This value made a reasonable trade off between time and coverage when this test was
481 // written.
482 timesToInvokeFactory *= FPFactory::Count() / 2;
483 }
484 for (int j = 0; j < timesToInvokeFactory; ++j) {
485 fp = FPFactory::MakeIdx(i, &testData);
Robert Phillips6be756b2018-01-16 15:07:54 -0500486 if (!fp->instantiate(resourceProvider)) {
Robert Phillipsa91e0b72017-05-01 13:12:20 -0400487 continue;
488 }
489
Brian Salomon587e08f2017-01-27 10:59:27 -0500490 if (!fp->hasConstantOutputForConstantInput() && !fp->preservesOpaqueInput() &&
Brian Salomonf3b995b2017-02-15 10:22:23 -0500491 !fp->compatibleWithCoverageAsAlpha()) {
Brian Salomon587e08f2017-01-27 10:59:27 -0500492 continue;
493 }
Brian Salomonaff329b2017-08-11 09:40:37 -0400494
Michael Ludwig7034f152018-10-08 16:43:58 -0400495 if (fp->compatibleWithCoverageAsAlpha()) {
496 // 2nd and 3rd frames are only used when checking coverage optimization
497 render_fp(context, rtc.get(), fp.get(), inputTexture2, readData2.get());
498 render_fp(context, rtc.get(), fp.get(), inputTexture3, readData3.get());
499 }
500 // Draw base frame last so that rtc holds the original FP behavior if we need to
501 // dump the image to the log.
502 render_fp(context, rtc.get(), fp.get(), inputTexture1, readData1.get());
Brian Salomonaff329b2017-08-11 09:40:37 -0400503
Brian Salomon587e08f2017-01-27 10:59:27 -0500504 if (0) { // Useful to see what FPs are being tested.
505 SkString children;
Michael Ludwig7034f152018-10-08 16:43:58 -0400506 for (int c = 0; c < fp->numChildProcessors(); ++c) {
Brian Salomon587e08f2017-01-27 10:59:27 -0500507 if (!c) {
508 children.append("(");
509 }
Michael Ludwig7034f152018-10-08 16:43:58 -0400510 children.append(fp->childProcessor(c).name());
511 children.append(c == fp->numChildProcessors() - 1 ? ")" : ", ");
Brian Salomon587e08f2017-01-27 10:59:27 -0500512 }
Michael Ludwig7034f152018-10-08 16:43:58 -0400513 SkDebugf("%s %s\n", fp->name(), children.c_str());
Brian Salomon587e08f2017-01-27 10:59:27 -0500514 }
Michael Ludwig314d3772018-10-03 16:04:38 -0400515
516 // This test has a history of being flaky on a number of devices. If an FP is logically
517 // violating the optimizations, it's reasonable to expect it to violate requirements on
518 // a large number of pixels in the image. Sporadic pixel violations are more indicative
519 // of device errors and represents a separate problem.
Michael Ludwig72ab3462018-12-10 12:43:36 -0500520#if defined(SK_BUILD_FOR_SKQP)
Michael Ludwig314d3772018-10-03 16:04:38 -0400521 static constexpr int kMaxAcceptableFailedPixels = 0; // Strict when running as SKQP
522#else
523 static constexpr int kMaxAcceptableFailedPixels = 2 * kRenderSize; // ~0.7% of the image
524#endif
525
526 int failedPixelCount = 0;
527 // Collect first optimization failure message, to be output later as a warning or an
528 // error depending on whether the rendering "passed" or failed.
529 SkString coverageMessage;
530 SkString opaqueMessage;
531 SkString constMessage;
532 for (int y = 0; y < kRenderSize; ++y) {
533 for (int x = 0; x < kRenderSize; ++x) {
534 bool passing = true;
Michael Ludwig7034f152018-10-08 16:43:58 -0400535 GrColor input = input_texel_color(x, y, 0.0f);
536 GrColor output = readData1.get()[y * kRenderSize + x];
537
538 if (fp->compatibleWithCoverageAsAlpha()) {
539 GrColor i2 = input_texel_color(x, y, kInputDelta);
540 GrColor i3 = input_texel_color(x, y, 2 * kInputDelta);
541
542 GrColor o2 = readData2.get()[y * kRenderSize + x];
543 GrColor o3 = readData3.get()[y * kRenderSize + x];
544
545 // A compatible processor is allowed to modulate either the input color or
Brian Salomon587e08f2017-01-27 10:59:27 -0500546 // just the input alpha.
Michael Ludwig7034f152018-10-08 16:43:58 -0400547 bool legalAlphaModulation = legal_modulation(input, i2, i3, output, o2, o3,
548 /* alpha */ true);
549 bool legalColorModulation = legal_modulation(input, i2, i3, output, o2, o3,
550 /* alpha */ false);
551
Brian Salomon587e08f2017-01-27 10:59:27 -0500552 if (!legalColorModulation && !legalAlphaModulation) {
Brian Salomon587e08f2017-01-27 10:59:27 -0500553 passing = false;
Michael Ludwig314d3772018-10-03 16:04:38 -0400554
555 if (coverageMessage.isEmpty()) {
Michael Ludwig7034f152018-10-08 16:43:58 -0400556 coverageMessage.printf("\"Modulating\" processor %s did not match "
557 "alpha-modulation nor color-modulation rules. "
558 "Input: 0x%08x, Output: 0x%08x, pixel (%d, %d).",
559 fp->name(), input, output, x, y);
Michael Ludwig314d3772018-10-03 16:04:38 -0400560 }
Brian Salomon587e08f2017-01-27 10:59:27 -0500561 }
562 }
Michael Ludwig7034f152018-10-08 16:43:58 -0400563
Brian Osmancb3d0872018-10-16 15:19:28 -0400564 SkPMColor4f input4f = SkPMColor4f::FromBytes_RGBA(input);
565 SkPMColor4f output4f = SkPMColor4f::FromBytes_RGBA(output);
Brian Osman1d5b5982018-10-01 13:41:39 -0400566 SkPMColor4f expected4f;
Michael Ludwig7034f152018-10-08 16:43:58 -0400567 if (fp->hasConstantOutputForConstantInput(input4f, &expected4f)) {
Brian Osmancb3d0872018-10-16 15:19:28 -0400568 float rDiff = fabsf(output4f.fR - expected4f.fR);
569 float gDiff = fabsf(output4f.fG - expected4f.fG);
570 float bDiff = fabsf(output4f.fB - expected4f.fB);
571 float aDiff = fabsf(output4f.fA - expected4f.fA);
Brian Salomon5d4cd9e2017-02-09 11:16:46 -0500572 static constexpr float kTol = 4 / 255.f;
Brian Salomon587e08f2017-01-27 10:59:27 -0500573 if (rDiff > kTol || gDiff > kTol || bDiff > kTol || aDiff > kTol) {
Michael Ludwig314d3772018-10-03 16:04:38 -0400574 if (constMessage.isEmpty()) {
575 passing = false;
576
577 constMessage.printf("Processor %s claimed output for const input "
578 "doesn't match actual output. Error: %f, Tolerance: %f, "
579 "input: (%f, %f, %f, %f), actual: (%f, %f, %f, %f), "
Michael Ludwig7034f152018-10-08 16:43:58 -0400580 "expected(%f, %f, %f, %f)", fp->name(),
Michael Ludwig314d3772018-10-03 16:04:38 -0400581 SkTMax(rDiff, SkTMax(gDiff, SkTMax(bDiff, aDiff))), kTol,
582 input4f.fR, input4f.fG, input4f.fB, input4f.fA,
Brian Osmancb3d0872018-10-16 15:19:28 -0400583 output4f.fR, output4f.fG, output4f.fB, output4f.fA,
584 expected4f.fR, expected4f.fG, expected4f.fB, expected4f.fA);
Michael Ludwig314d3772018-10-03 16:04:38 -0400585 }
Brian Salomon587e08f2017-01-27 10:59:27 -0500586 }
587 }
Brian Osman00b29392018-11-05 15:42:43 -0500588 if (input4f.isOpaque() && fp->preservesOpaqueInput() && !output4f.isOpaque()) {
Brian Salomon587e08f2017-01-27 10:59:27 -0500589 passing = false;
Michael Ludwig314d3772018-10-03 16:04:38 -0400590
591 if (opaqueMessage.isEmpty()) {
592 opaqueMessage.printf("Processor %s claimed opaqueness is preserved but "
593 "it is not. Input: 0x%08x, Output: 0x%08x.",
Michael Ludwig7034f152018-10-08 16:43:58 -0400594 fp->name(), input, output);
Michael Ludwige8e10752018-10-01 12:42:53 -0400595 }
Brian Osmanbd1f76f2017-03-15 11:33:12 -0400596 }
Michael Ludwig314d3772018-10-03 16:04:38 -0400597
598 if (!passing) {
599 // Regardless of how many optimizations the pixel violates, count it as a
600 // single bad pixel.
601 failedPixelCount++;
602 }
603 }
604 }
605
606 // Finished analyzing the entire image, see if the number of pixel failures meets the
607 // threshold for an FP violating the optimization requirements.
608 if (failedPixelCount > kMaxAcceptableFailedPixels) {
Michael Ludwig4504a6522018-10-03 16:47:55 -0400609 ERRORF(reporter, "Processor violated %d of %d pixels, seed: 0x%08x, processor: %s"
Michael Ludwig314d3772018-10-03 16:04:38 -0400610 ", first failing pixel details are below:",
611 failedPixelCount, kRenderSize * kRenderSize, seed,
Michael Ludwig7034f152018-10-08 16:43:58 -0400612 fp->dumpInfo().c_str());
Michael Ludwig314d3772018-10-03 16:04:38 -0400613
614 // Print first failing pixel's details.
615 if (!coverageMessage.isEmpty()) {
616 ERRORF(reporter, coverageMessage.c_str());
617 }
618 if (!constMessage.isEmpty()) {
619 ERRORF(reporter, constMessage.c_str());
620 }
621 if (!opaqueMessage.isEmpty()) {
622 ERRORF(reporter, opaqueMessage.c_str());
623 }
624
625 if (!loggedFirstFailure) {
626 // Print with ERRORF to make sure the encoded image is output
627 SkString input;
Michael Ludwig7034f152018-10-08 16:43:58 -0400628 log_surface_proxy(context, inputTexture1, &input);
Michael Ludwig314d3772018-10-03 16:04:38 -0400629 SkString output;
630 log_surface_context(rtc, &output);
631 ERRORF(reporter, "Input image: %s\n\n"
632 "===========================================================\n\n"
633 "Output image: %s\n", input.c_str(), output.c_str());
634 loggedFirstFailure = true;
635 }
Michael Ludwig7034f152018-10-08 16:43:58 -0400636 } else if(failedPixelCount > 0) {
Michael Ludwig314d3772018-10-03 16:04:38 -0400637 // Don't trigger an error, but don't just hide the failures either.
638 INFOF(reporter, "Processor violated %d of %d pixels (below error threshold), seed: "
639 "0x%08x, processor: %s", failedPixelCount, kRenderSize * kRenderSize,
Michael Ludwig7034f152018-10-08 16:43:58 -0400640 seed, fp->dumpInfo().c_str());
Michael Ludwig314d3772018-10-03 16:04:38 -0400641 if (!coverageMessage.isEmpty()) {
642 INFOF(reporter, coverageMessage.c_str());
643 }
644 if (!constMessage.isEmpty()) {
645 INFOF(reporter, constMessage.c_str());
646 }
647 if (!opaqueMessage.isEmpty()) {
648 INFOF(reporter, opaqueMessage.c_str());
649 }
650 if (!loggedFirstWarning) {
651 SkString input;
Michael Ludwig7034f152018-10-08 16:43:58 -0400652 log_surface_proxy(context, inputTexture1, &input);
Michael Ludwig314d3772018-10-03 16:04:38 -0400653 SkString output;
654 log_surface_context(rtc, &output);
655 INFOF(reporter, "Input image: %s\n\n"
656 "===========================================================\n\n"
657 "Output image: %s\n", input.c_str(), output.c_str());
658 loggedFirstWarning = true;
Brian Salomon587e08f2017-01-27 10:59:27 -0500659 }
660 }
661 }
662 }
663}
Robert Phillips18166ee2017-06-01 12:55:44 -0400664
Brian Salomon0e05a822017-07-25 09:43:22 -0400665// Tests that fragment processors returned by GrFragmentProcessor::clone() are equivalent to their
666// progenitors.
667DEF_GPUTEST_FOR_GL_RENDERING_CONTEXTS(ProcessorCloneTest, reporter, ctxInfo) {
668 GrContext* context = ctxInfo.grContext();
Robert Phillips0bd24dc2018-01-16 08:06:32 -0500669 GrProxyProvider* proxyProvider = context->contextPriv().proxyProvider();
Robert Phillips6be756b2018-01-16 15:07:54 -0500670 auto resourceProvider = context->contextPriv().resourceProvider();
Brian Salomon0e05a822017-07-25 09:43:22 -0400671
672 SkRandom random;
673
Greg Daniel4065d452018-11-16 15:43:41 -0500674 const GrBackendFormat format =
675 context->contextPriv().caps()->getBackendFormatFromColorType(kRGBA_8888_SkColorType);
676
Brian Salomon0e05a822017-07-25 09:43:22 -0400677 // Make the destination context for the test.
678 static constexpr int kRenderSize = 1024;
Robert Phillips0c4b7b12018-03-06 08:20:37 -0500679 sk_sp<GrRenderTargetContext> rtc = context->contextPriv().makeDeferredRenderTargetContext(
Greg Daniel4065d452018-11-16 15:43:41 -0500680 format, SkBackingFit::kExact, kRenderSize, kRenderSize, kRGBA_8888_GrPixelConfig,
681 nullptr);
Brian Salomon0e05a822017-07-25 09:43:22 -0400682
683 sk_sp<GrTextureProxy> proxies[2];
Robert Phillips0bd24dc2018-01-16 08:06:32 -0500684 if (!init_test_textures(proxyProvider, &random, proxies)) {
Brian Salomon0e05a822017-07-25 09:43:22 -0400685 ERRORF(reporter, "Could not create test textures");
686 return;
687 }
688 GrProcessorTestData testData(&random, context, rtc.get(), proxies);
689
Michael Ludwig7034f152018-10-08 16:43:58 -0400690 auto inputTexture = make_input_texture(proxyProvider, kRenderSize, kRenderSize, 0.0f);
Brian Salomon0e05a822017-07-25 09:43:22 -0400691 std::unique_ptr<GrColor[]> readData1(new GrColor[kRenderSize * kRenderSize]);
692 std::unique_ptr<GrColor[]> readData2(new GrColor[kRenderSize * kRenderSize]);
693 auto readInfo = SkImageInfo::Make(kRenderSize, kRenderSize, kRGBA_8888_SkColorType,
694 kPremul_SkAlphaType);
695
696 // Because processor factories configure themselves in random ways, this is not exhaustive.
697 for (int i = 0; i < GrFragmentProcessorTestFactory::Count(); ++i) {
698 static constexpr int kTimesToInvokeFactory = 10;
699 for (int j = 0; j < kTimesToInvokeFactory; ++j) {
700 auto fp = GrFragmentProcessorTestFactory::MakeIdx(i, &testData);
701 auto clone = fp->clone();
Brian Salomon0e05a822017-07-25 09:43:22 -0400702 if (!clone) {
Brian Salomon96271cd2017-07-31 16:27:23 -0400703 ERRORF(reporter, "Clone of processor %s failed.", fp->name());
Brian Salomon0e05a822017-07-25 09:43:22 -0400704 continue;
705 }
Brian Salomonaff329b2017-08-11 09:40:37 -0400706 const char* name = fp->name();
Robert Phillips6be756b2018-01-16 15:07:54 -0500707 if (!fp->instantiate(resourceProvider) || !clone->instantiate(resourceProvider)) {
Brian Salomon0e05a822017-07-25 09:43:22 -0400708 continue;
709 }
Brian Salomonce06e262017-08-01 16:23:40 -0400710 REPORTER_ASSERT(reporter, !strcmp(fp->name(), clone->name()));
711 REPORTER_ASSERT(reporter, fp->compatibleWithCoverageAsAlpha() ==
712 clone->compatibleWithCoverageAsAlpha());
713 REPORTER_ASSERT(reporter, fp->isEqual(*clone));
714 REPORTER_ASSERT(reporter, fp->preservesOpaqueInput() == clone->preservesOpaqueInput());
715 REPORTER_ASSERT(reporter, fp->hasConstantOutputForConstantInput() ==
716 clone->hasConstantOutputForConstantInput());
717 REPORTER_ASSERT(reporter, fp->numChildProcessors() == clone->numChildProcessors());
718 REPORTER_ASSERT(reporter, fp->usesLocalCoords() == clone->usesLocalCoords());
Brian Salomon0e05a822017-07-25 09:43:22 -0400719 // Draw with original and read back the results.
Michael Ludwig7034f152018-10-08 16:43:58 -0400720 render_fp(context, rtc.get(), fp.get(), inputTexture, readData1.get());
Brian Salomon0e05a822017-07-25 09:43:22 -0400721
722 // Draw with clone and read back the results.
Michael Ludwig7034f152018-10-08 16:43:58 -0400723 render_fp(context, rtc.get(), clone.get(), inputTexture, readData2.get());
Brian Salomon0e05a822017-07-25 09:43:22 -0400724
725 // Check that the results are the same.
726 bool passing = true;
727 for (int y = 0; y < kRenderSize && passing; ++y) {
728 for (int x = 0; x < kRenderSize && passing; ++x) {
729 int idx = y * kRenderSize + x;
730 if (readData1[idx] != readData2[idx]) {
731 ERRORF(reporter,
732 "Processor %s made clone produced different output. "
733 "Input color: 0x%08x, Original Output Color: 0x%08x, "
734 "Clone Output Color: 0x%08x..",
Michael Ludwig7034f152018-10-08 16:43:58 -0400735 name, input_texel_color(x, y, 0.0f), readData1[idx], readData2[idx]);
Brian Salomon0e05a822017-07-25 09:43:22 -0400736 passing = false;
737 }
738 }
739 }
740 }
741 }
742}
743
Hal Canary6f6961e2017-01-31 13:50:44 -0500744#endif // GR_TEST_UTILS
745#endif // SK_ALLOW_STATIC_GLOBAL_INITIALIZERS