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joshualittac977922014-07-22 09:52:11 -07001/*
2 * Copyright 2014 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 */
Mike Kleinc0bd9f92019-04-23 12:05:21 -05007#include "src/gpu/effects/GrMatrixConvolutionEffect.h"
Robert Phillips296b1cc2017-03-15 10:42:12 -04008
Adlai Holler00ddb002020-05-11 19:25:52 -04009#include "include/private/SkHalf.h"
10#include "src/gpu/GrBitmapTextureMaker.h"
11#include "src/gpu/GrContextPriv.h"
12#include "src/gpu/GrProxyProvider.h"
13#include "src/gpu/GrRecordingContextPriv.h"
Greg Daniel456f9b52020-03-05 19:14:18 +000014#include "src/gpu/GrTexture.h"
Greg Danielf91aeb22019-06-18 09:58:02 -040015#include "src/gpu/GrTextureProxy.h"
Brian Salomon694ec492020-04-14 13:39:31 -040016#include "src/gpu/effects/GrTextureEffect.h"
Mike Kleinc0bd9f92019-04-23 12:05:21 -050017#include "src/gpu/glsl/GrGLSLFragmentProcessor.h"
18#include "src/gpu/glsl/GrGLSLFragmentShaderBuilder.h"
19#include "src/gpu/glsl/GrGLSLProgramDataManager.h"
20#include "src/gpu/glsl/GrGLSLUniformHandler.h"
joshualittac977922014-07-22 09:52:11 -070021
egdaniel64c47282015-11-13 06:54:19 -080022class GrGLMatrixConvolutionEffect : public GrGLSLFragmentProcessor {
joshualittac977922014-07-22 09:52:11 -070023public:
robertphillips9cdb9922016-02-03 12:25:40 -080024 void emitCode(EmitArgs&) override;
joshualittac977922014-07-22 09:52:11 -070025
Brian Salomon94efbf52016-11-29 13:43:05 -050026 static inline void GenKey(const GrProcessor&, const GrShaderCaps&, GrProcessorKeyBuilder*);
joshualittac977922014-07-22 09:52:11 -070027
wangyixb1daa862015-08-18 11:29:31 -070028protected:
Brian Salomonab015ef2017-04-04 10:15:51 -040029 void onSetData(const GrGLSLProgramDataManager&, const GrFragmentProcessor&) override;
joshualittac977922014-07-22 09:52:11 -070030
31private:
egdaniel018fb622015-10-28 07:26:40 -070032 typedef GrGLSLProgramDataManager::UniformHandle UniformHandle;
joshualittac977922014-07-22 09:52:11 -070033
Adlai Holler00ddb002020-05-11 19:25:52 -040034 void emitKernelBlock(EmitArgs&, SkIPoint);
35
joshualitt5ae5fc52014-07-29 12:59:27 -070036 UniformHandle fKernelUni;
joshualitt5ae5fc52014-07-29 12:59:27 -070037 UniformHandle fKernelOffsetUni;
38 UniformHandle fGainUni;
39 UniformHandle fBiasUni;
Adlai Holler00ddb002020-05-11 19:25:52 -040040 UniformHandle fKernelBiasUni;
joshualittac977922014-07-22 09:52:11 -070041
egdaniel64c47282015-11-13 06:54:19 -080042 typedef GrGLSLFragmentProcessor INHERITED;
joshualittac977922014-07-22 09:52:11 -070043};
44
Brian Salomon1b0b0042020-06-12 15:15:50 -040045GrMatrixConvolutionEffect::KernelWrapper::MakeResult
46GrMatrixConvolutionEffect::KernelWrapper::Make(GrRecordingContext* context,
47 SkISize size,
48 const GrCaps& caps,
49 const SkScalar* values) {
50 if (!context || !values || size.isEmpty()) {
Adlai Holler00ddb002020-05-11 19:25:52 -040051 return {};
52 }
53 const int length = size.area();
54 // Small kernel -> just fill the array.
55 KernelWrapper result(size);
56 if (length <= kMaxUniformSize) {
57 for (int i = 0; i < length; i++) {
58 result.fArray[i] = SkScalarToFloat(values[i]);
59 }
Brian Salomon1b0b0042020-06-12 15:15:50 -040060 return {result, nullptr};
Adlai Holler00ddb002020-05-11 19:25:52 -040061 }
62
Brian Salomon1b0b0042020-06-12 15:15:50 -040063 BiasAndGain& scalableSampler = result.fBiasAndGain;
Adlai Holler00ddb002020-05-11 19:25:52 -040064 bool useA16 =
65 context->defaultBackendFormat(kA16_float_SkColorType, GrRenderable::kNo).isValid();
66 SkScalar min = values[0];
67 if (!useA16) {
68 // Determine min and max values to figure out inner gain & bias.
69 SkScalar max = values[0];
70 for (int i = 1; i < length; i++) {
71 if (values[i] < min) {
72 min = values[i];
73 }
74 if (values[i] > max) {
75 max = values[i];
76 }
77 }
78 // Treat near-0 gain (i.e. box blur) as 1, and let the kernelBias
79 // move everything up to the final value.
80 const SkScalar computedGain = max - min;
81 scalableSampler.fGain =
82 SkScalarNearlyZero(computedGain) ? 1.0f : SkScalarToFloat(computedGain);
83 // Inner bias is pre-inner-gain so we divide that out.
84 scalableSampler.fBias = SkScalarToFloat(min) / scalableSampler.fGain;
85 }
86
Adlai Hollerdcfb2332020-05-13 15:02:28 -040087 // TODO: Pick cache or dont-cache based on observed perf.
88 static constexpr bool kCacheKernelTexture = true;
Adlai Holler00ddb002020-05-11 19:25:52 -040089
90 GrUniqueKey key;
91 if (kCacheKernelTexture) {
92 static const GrUniqueKey::Domain kDomain = GrUniqueKey::GenerateDomain();
93 GrUniqueKey::Builder builder(&key, kDomain, length, "Matrix Convolution Kernel");
94 // Texture cache key is the exact content of the kernel.
95 static_assert(sizeof(float) == 4);
96 for (int i = 0; i < length; i++) {
97 builder[i] = *(const uint32_t*)&values[i];
98 }
99 builder.finish();
100 }
101
102 // Find or create a texture.
103 GrProxyProvider* proxyProvider = context->priv().proxyProvider();
104 GrSurfaceProxyView view;
105 SkColorType colorType = useA16 ? kA16_float_SkColorType : kAlpha_8_SkColorType;
106 sk_sp<GrTextureProxy> cachedKernel;
107 if (kCacheKernelTexture && (cachedKernel = proxyProvider->findOrCreateProxyByUniqueKey(key))) {
108 GrSwizzle swizzle =
109 context->priv().caps()->getReadSwizzle(cachedKernel->backendFormat(),
110 SkColorTypeToGrColorType(colorType));
111 view = {std::move(cachedKernel), kTopLeft_GrSurfaceOrigin, swizzle};
112 } else {
113 SkBitmap bm;
Brian Salomon1b0b0042020-06-12 15:15:50 -0400114 auto info = SkImageInfo::Make({length, 1}, colorType, kPremul_SkAlphaType, nullptr);
Adlai Holler00ddb002020-05-11 19:25:52 -0400115 if (!bm.tryAllocPixels(info)) {
116 return {};
117 }
118 for (int i = 0; i < length; i++) {
119 if (useA16) {
120 *bm.getAddr16(i, 0) = SkFloatToHalf(values[i]);
121 } else {
122 *bm.getAddr8(i, 0) =
123 SkScalarRoundToInt((values[i] - min) / scalableSampler.fGain * 255);
124 }
125 }
126 bm.setImmutable();
127 GrBitmapTextureMaker maker(context, bm, GrImageTexGenPolicy::kNew_Uncached_Budgeted);
128 view = maker.view(GrMipMapped::kNo);
129 if (!view) {
130 return {};
131 }
132 if (kCacheKernelTexture) {
133 proxyProvider->assignUniqueKeyToProxy(key, view.asTextureProxy());
134 }
135 }
Brian Salomon1b0b0042020-06-12 15:15:50 -0400136 auto kernelFP = GrTextureEffect::Make(std::move(view), kUnknown_SkAlphaType);
137 return {result, std::move(kernelFP)};
Adlai Holler00ddb002020-05-11 19:25:52 -0400138}
139
140bool GrMatrixConvolutionEffect::KernelWrapper::operator==(const KernelWrapper& k) const {
141 if (fSize != k.fSize) {
142 return false;
143 } else if (this->isSampled()) {
Brian Salomon1b0b0042020-06-12 15:15:50 -0400144 return fBiasAndGain == k.fBiasAndGain;
Adlai Holler00ddb002020-05-11 19:25:52 -0400145 } else {
146 return std::equal(fArray.begin(), fArray.begin() + fSize.area(), k.fArray.begin());
147 }
148}
149
Brian Salomon1b0b0042020-06-12 15:15:50 -0400150bool GrMatrixConvolutionEffect::KernelWrapper::BiasAndGain::operator==(
151 const BiasAndGain& k) const {
152 return fGain == k.fGain && fBias == k.fBias;
Adlai Holler00ddb002020-05-11 19:25:52 -0400153}
154
155// For sampled kernels, emit a for loop that does all the kernel accumulation.
156// For uniform kernels, emit a single iteration. Function is called repeatedly in a for loop.
157// loc is ignored for sampled kernels.
158void GrGLMatrixConvolutionEffect::emitKernelBlock(EmitArgs& args, SkIPoint loc) {
159 const GrMatrixConvolutionEffect& mce = args.fFp.cast<GrMatrixConvolutionEffect>();
160 GrGLSLFPFragmentBuilder* fragBuilder = args.fFragBuilder;
161 GrGLSLUniformHandler* uniformHandler = args.fUniformHandler;
162 int kernelWidth = mce.kernelSize().width();
163 int kernelHeight = mce.kernelSize().height();
164 int kernelArea = kernelWidth * kernelHeight;
165
166 if (mce.kernelIsSampled()) {
Adlai Holler00ddb002020-05-11 19:25:52 -0400167 fragBuilder->codeAppendf("for (int i = 0; i < %d; ++i)", (int)kernelArea);
168 }
169
170 GrGLSLShaderBuilder::ShaderBlock block(fragBuilder);
171
172 fragBuilder->codeAppend("half k;");
173 fragBuilder->codeAppend("half2 sourceOffset;");
174 if (mce.kernelIsSampled()) {
175 const char* kernelBias = uniformHandler->getUniformCStr(fKernelBiasUni);
Brian Salomon1b0b0042020-06-12 15:15:50 -0400176 SkString kernelCoord = SkStringPrintf("float2(float(i) + 0.5, 0.5)");
177 SkString kernelSample = this->invokeChild(1, args, kernelCoord.c_str());
178 fragBuilder->codeAppendf("k = %s.w + %s;", kernelSample.c_str(), kernelBias);
Adlai Holler00ddb002020-05-11 19:25:52 -0400179 fragBuilder->codeAppendf("sourceOffset.y = floor(i / %d);", kernelWidth);
180 fragBuilder->codeAppendf("sourceOffset.x = i - sourceOffset.y * %d;", kernelWidth);
Adlai Holler00ddb002020-05-11 19:25:52 -0400181 } else {
182 fragBuilder->codeAppendf("sourceOffset = half2(%d, %d);", loc.x(), loc.y());
183 int offset = loc.y() * kernelWidth + loc.x();
184 static constexpr const char kVecSuffix[][4] = { ".x", ".y", ".z", ".w" };
185 const char* kernel = uniformHandler->getUniformCStr(fKernelUni);
186 fragBuilder->codeAppendf("k = %s[%d]%s;", kernel, offset / 4,
187 kVecSuffix[offset & 0x3]);
188 }
189
190 auto sample = this->invokeChild(0, args, "coord + sourceOffset");
191 fragBuilder->codeAppendf("half4 c = %s;", sample.c_str());
192 if (!mce.convolveAlpha()) {
Brian Osman08f986d2020-05-13 17:06:46 -0400193 fragBuilder->codeAppend("c = unpremul(c);");
Adlai Holler00ddb002020-05-11 19:25:52 -0400194 fragBuilder->codeAppend("c.rgb = saturate(c.rgb);");
195 }
196 fragBuilder->codeAppend("sum += c * k;");
197}
198
wangyix7c157a92015-07-22 15:08:53 -0700199void GrGLMatrixConvolutionEffect::emitCode(EmitArgs& args) {
robertphillipsbf536af2016-02-04 06:11:53 -0800200 const GrMatrixConvolutionEffect& mce = args.fFp.cast<GrMatrixConvolutionEffect>();
robertphillipsbf536af2016-02-04 06:11:53 -0800201
Adlai Holler00ddb002020-05-11 19:25:52 -0400202 int kernelWidth = mce.kernelSize().width();
203 int kernelHeight = mce.kernelSize().height();
robertphillipsbf536af2016-02-04 06:11:53 -0800204
Adlai Holler00ddb002020-05-11 19:25:52 -0400205 int arrayCount = (kernelWidth * kernelHeight + 3) / 4;
206 SkASSERT(4 * arrayCount >= kernelWidth * kernelHeight);
jvanverth78d6eb02016-03-02 13:21:16 -0800207
egdaniel7ea439b2015-12-03 09:20:44 -0800208 GrGLSLUniformHandler* uniformHandler = args.fUniformHandler;
Adlai Holler00ddb002020-05-11 19:25:52 -0400209 if (mce.kernelIsSampled()) {
210 fKernelBiasUni = uniformHandler->addUniform(&mce, kFragment_GrShaderFlag,
211 kHalf_GrSLType, "KernelBias");
212 } else {
213 fKernelUni = uniformHandler->addUniformArray(&mce, kFragment_GrShaderFlag,
214 kHalf4_GrSLType, "Kernel", arrayCount);
215 }
Ethan Nicholas16464c32020-04-06 13:53:05 -0400216 fKernelOffsetUni = uniformHandler->addUniform(&mce, kFragment_GrShaderFlag, kHalf2_GrSLType,
egdaniel7ea439b2015-12-03 09:20:44 -0800217 "KernelOffset");
Brian Salomon41e377d2020-05-05 01:27:57 +0000218 fGainUni = uniformHandler->addUniform(&mce, kFragment_GrShaderFlag, kHalf_GrSLType, "Gain");
219 fBiasUni = uniformHandler->addUniform(&mce, kFragment_GrShaderFlag, kHalf_GrSLType, "Bias");
joshualittac977922014-07-22 09:52:11 -0700220
egdaniel7ea439b2015-12-03 09:20:44 -0800221 const char* kernelOffset = uniformHandler->getUniformCStr(fKernelOffsetUni);
egdaniel7ea439b2015-12-03 09:20:44 -0800222 const char* gain = uniformHandler->getUniformCStr(fGainUni);
223 const char* bias = uniformHandler->getUniformCStr(fBiasUni);
joshualittac977922014-07-22 09:52:11 -0700224
cdalton85285412016-02-18 12:37:07 -0800225 GrGLSLFPFragmentBuilder* fragBuilder = args.fFragBuilder;
Brian Salomon41e377d2020-05-05 01:27:57 +0000226 fragBuilder->codeAppend("half4 sum = half4(0, 0, 0, 0);");
Michael Ludwige88320b2020-06-24 09:04:56 -0400227 fragBuilder->codeAppendf("float2 coord = %s - %s;", args.fSampleCoord, kernelOffset);
joshualitt5ae5fc52014-07-29 12:59:27 -0700228
Adlai Holler00ddb002020-05-11 19:25:52 -0400229 if (mce.kernelIsSampled()) {
230 this->emitKernelBlock(args, {});
231 } else {
232 for (int x = 0; x < kernelWidth; ++x) {
233 for (int y = 0; y < kernelHeight; ++y) {
234 this->emitKernelBlock(args, SkIPoint::Make(x, y));
joshualitt5ae5fc52014-07-29 12:59:27 -0700235 }
joshualitt5ae5fc52014-07-29 12:59:27 -0700236 }
joshualittac977922014-07-22 09:52:11 -0700237 }
Adlai Holler00ddb002020-05-11 19:25:52 -0400238
robertphillipsbf536af2016-02-04 06:11:53 -0800239 if (mce.convolveAlpha()) {
Brian Salomon41e377d2020-05-05 01:27:57 +0000240 fragBuilder->codeAppendf("%s = sum * %s + %s;", args.fOutputColor, gain, bias);
Ethan Nicholas12fb9cf2018-08-03 16:16:57 -0400241 fragBuilder->codeAppendf("%s.a = saturate(%s.a);", args.fOutputColor, args.fOutputColor);
egdaniel4ca2e602015-11-18 08:01:26 -0800242 fragBuilder->codeAppendf("%s.rgb = clamp(%s.rgb, 0.0, %s.a);",
243 args.fOutputColor, args.fOutputColor, args.fOutputColor);
joshualittac977922014-07-22 09:52:11 -0700244 } else {
Michael Ludwige88320b2020-06-24 09:04:56 -0400245 auto sample = this->invokeChild(0, args);
Adlai Holler00ddb002020-05-11 19:25:52 -0400246 fragBuilder->codeAppendf("half4 c = %s;", sample.c_str());
Brian Salomon41e377d2020-05-05 01:27:57 +0000247 fragBuilder->codeAppendf("%s.a = c.a;", args.fOutputColor);
248 fragBuilder->codeAppendf("%s.rgb = saturate(sum.rgb * %s + %s);", args.fOutputColor, gain, bias);
egdaniel4ca2e602015-11-18 08:01:26 -0800249 fragBuilder->codeAppendf("%s.rgb *= %s.a;", args.fOutputColor, args.fOutputColor);
joshualittac977922014-07-22 09:52:11 -0700250 }
Ethan Nicholas2983f402017-05-08 09:36:08 -0400251 fragBuilder->codeAppendf("%s *= %s;\n", args.fOutputColor, args.fInputColor);
joshualittac977922014-07-22 09:52:11 -0700252}
253
joshualittb0a8a372014-09-23 09:50:21 -0700254void GrGLMatrixConvolutionEffect::GenKey(const GrProcessor& processor,
Brian Salomon94efbf52016-11-29 13:43:05 -0500255 const GrShaderCaps&, GrProcessorKeyBuilder* b) {
joshualittb0a8a372014-09-23 09:50:21 -0700256 const GrMatrixConvolutionEffect& m = processor.cast<GrMatrixConvolutionEffect>();
joshualitt5ae5fc52014-07-29 12:59:27 -0700257 SkASSERT(m.kernelSize().width() <= 0x7FFF && m.kernelSize().height() <= 0xFFFF);
258 uint32_t key = m.kernelSize().width() << 16 | m.kernelSize().height();
caryclark952538e2016-02-26 05:01:42 -0800259 key |= m.convolveAlpha() ? 1U << 31 : 0;
joshualittac977922014-07-22 09:52:11 -0700260 b->add32(key);
261}
262
egdaniel018fb622015-10-28 07:26:40 -0700263void GrGLMatrixConvolutionEffect::onSetData(const GrGLSLProgramDataManager& pdman,
Brian Salomonab015ef2017-04-04 10:15:51 -0400264 const GrFragmentProcessor& processor) {
joshualittb0a8a372014-09-23 09:50:21 -0700265 const GrMatrixConvolutionEffect& conv = processor.cast<GrMatrixConvolutionEffect>();
Michael Ludwigfbe28592020-06-26 16:02:15 -0400266 pdman.set2f(fKernelOffsetUni, conv.kernelOffset().fX, conv.kernelOffset().fY);
Adlai Holler00ddb002020-05-11 19:25:52 -0400267 float totalGain = conv.gain();
268 if (conv.kernelIsSampled()) {
269 totalGain *= conv.kernelSampleGain();
270 pdman.set1f(fKernelBiasUni, conv.kernelSampleBias());
271 } else {
272 int kernelCount = conv.kernelSize().area();
273 int arrayCount = (kernelCount + 3) / 4;
274 SkASSERT(4 * arrayCount >= kernelCount);
275 pdman.set4fv(fKernelUni, arrayCount, conv.kernel());
276 }
kkinnunen7510b222014-07-30 00:04:16 -0700277 pdman.set1f(fBiasUni, conv.bias());
Adlai Holler00ddb002020-05-11 19:25:52 -0400278 pdman.set1f(fGainUni, totalGain);
joshualittac977922014-07-22 09:52:11 -0700279}
280
Brian Salomon694ec492020-04-14 13:39:31 -0400281GrMatrixConvolutionEffect::GrMatrixConvolutionEffect(std::unique_ptr<GrFragmentProcessor> child,
Brian Salomon1b0b0042020-06-12 15:15:50 -0400282 const KernelWrapper& kernel,
283 std::unique_ptr<GrFragmentProcessor> kernelFP,
Robert Phillips40fd7c92017-01-30 08:06:27 -0500284 SkScalar gain,
285 SkScalar bias,
286 const SkIPoint& kernelOffset,
Robert Phillips40fd7c92017-01-30 08:06:27 -0500287 bool convolveAlpha)
Brian Salomon6cd51b52017-07-26 19:07:15 -0400288 // To advertise either the modulation or opaqueness optimizations we'd have to examine the
289 // parameters.
Ethan Nicholasabff9562017-10-09 10:54:08 -0400290 : INHERITED(kGrMatrixConvolutionEffect_ClassID, kNone_OptimizationFlags)
Brian Salomon1b0b0042020-06-12 15:15:50 -0400291 , fKernel(kernel)
Brian Salomon6cd51b52017-07-26 19:07:15 -0400292 , fGain(SkScalarToFloat(gain))
293 , fBias(SkScalarToFloat(bias) / 255.0f)
294 , fConvolveAlpha(convolveAlpha) {
Michael Ludwig9aba6252020-06-22 14:46:36 -0400295 this->registerExplicitlySampledChild(std::move(child));
Brian Salomon1b0b0042020-06-12 15:15:50 -0400296 if (kernelFP) {
Michael Ludwig9aba6252020-06-22 14:46:36 -0400297 this->registerExplicitlySampledChild(std::move(kernelFP));
Robert Phillips40fd7c92017-01-30 08:06:27 -0500298 }
Brian Salomon694ec492020-04-14 13:39:31 -0400299 fKernelOffset = {static_cast<float>(kernelOffset.x()),
300 static_cast<float>(kernelOffset.y())};
Michael Ludwigfbe28592020-06-26 16:02:15 -0400301 this->setUsesSampleCoordsDirectly();
Robert Phillips40fd7c92017-01-30 08:06:27 -0500302}
303
Brian Salomon3f6f9652017-07-28 07:34:05 -0400304GrMatrixConvolutionEffect::GrMatrixConvolutionEffect(const GrMatrixConvolutionEffect& that)
Ethan Nicholasabff9562017-10-09 10:54:08 -0400305 : INHERITED(kGrMatrixConvolutionEffect_ClassID, kNone_OptimizationFlags)
Adlai Holler00ddb002020-05-11 19:25:52 -0400306 , fKernel(that.fKernel)
Brian Salomon3f6f9652017-07-28 07:34:05 -0400307 , fGain(that.fGain)
308 , fBias(that.fBias)
Brian Salomon694ec492020-04-14 13:39:31 -0400309 , fKernelOffset(that.fKernelOffset)
Brian Salomon3f6f9652017-07-28 07:34:05 -0400310 , fConvolveAlpha(that.fConvolveAlpha) {
Michael Ludwig9aba6252020-06-22 14:46:36 -0400311 this->cloneAndRegisterAllChildProcessors(that);
Michael Ludwigfbe28592020-06-26 16:02:15 -0400312 this->setUsesSampleCoordsDirectly();
Brian Salomon3f6f9652017-07-28 07:34:05 -0400313}
314
Brian Salomonaff329b2017-08-11 09:40:37 -0400315std::unique_ptr<GrFragmentProcessor> GrMatrixConvolutionEffect::clone() const {
316 return std::unique_ptr<GrFragmentProcessor>(new GrMatrixConvolutionEffect(*this));
Brian Salomon3f6f9652017-07-28 07:34:05 -0400317}
318
Brian Salomon94efbf52016-11-29 13:43:05 -0500319void GrMatrixConvolutionEffect::onGetGLSLProcessorKey(const GrShaderCaps& caps,
egdaniel57d3b032015-11-13 11:57:27 -0800320 GrProcessorKeyBuilder* b) const {
joshualitteb2a6762014-12-04 11:35:33 -0800321 GrGLMatrixConvolutionEffect::GenKey(*this, caps, b);
322}
323
egdaniel57d3b032015-11-13 11:57:27 -0800324GrGLSLFragmentProcessor* GrMatrixConvolutionEffect::onCreateGLSLInstance() const {
robertphillipsbf536af2016-02-04 06:11:53 -0800325 return new GrGLMatrixConvolutionEffect;
joshualittac977922014-07-22 09:52:11 -0700326}
327
bsalomon0e08fc12014-10-15 08:19:04 -0700328bool GrMatrixConvolutionEffect::onIsEqual(const GrFragmentProcessor& sBase) const {
joshualitt49586be2014-09-16 08:21:41 -0700329 const GrMatrixConvolutionEffect& s = sBase.cast<GrMatrixConvolutionEffect>();
Adlai Holler00ddb002020-05-11 19:25:52 -0400330 return fKernel == s.fKernel &&
joshualittac977922014-07-22 09:52:11 -0700331 fGain == s.gain() &&
332 fBias == s.bias() &&
Brian Salomon694ec492020-04-14 13:39:31 -0400333 fKernelOffset == s.kernelOffset() &&
334 fConvolveAlpha == s.convolveAlpha();
joshualittac977922014-07-22 09:52:11 -0700335}
336
Robert Phillips4e962c62018-06-20 07:46:19 -0400337static void fill_in_1D_gaussian_kernel_with_stride(float* kernel, int size, int stride,
338 float twoSigmaSqrd) {
339 SkASSERT(!SkScalarNearlyZero(twoSigmaSqrd, SK_ScalarNearlyZero));
340
341 const float sigmaDenom = 1.0f / twoSigmaSqrd;
342 const int radius = size / 2;
343
344 float sum = 0.0f;
345 for (int i = 0; i < size; ++i) {
346 float term = static_cast<float>(i - radius);
347 // Note that the constant term (1/(sqrt(2*pi*sigma^2)) of the Gaussian
348 // is dropped here, since we renormalize the kernel below.
349 kernel[i * stride] = sk_float_exp(-term * term * sigmaDenom);
350 sum += kernel[i * stride];
351 }
352 // Normalize the kernel
353 float scale = 1.0f / sum;
354 for (int i = 0; i < size; ++i) {
355 kernel[i * stride] *= scale;
356 }
357}
358
Robert Phillips40fd7c92017-01-30 08:06:27 -0500359static void fill_in_2D_gaussian_kernel(float* kernel, int width, int height,
360 SkScalar sigmaX, SkScalar sigmaY) {
Greg Daniel4eda8d92018-04-03 14:03:15 -0400361 const float twoSigmaSqrdX = 2.0f * SkScalarToFloat(SkScalarSquare(sigmaX));
362 const float twoSigmaSqrdY = 2.0f * SkScalarToFloat(SkScalarSquare(sigmaY));
363
Robert Phillips4e962c62018-06-20 07:46:19 -0400364 // TODO: in all of these degenerate cases we're uploading (and using) a whole lot of zeros.
Greg Daniel4eda8d92018-04-03 14:03:15 -0400365 if (SkScalarNearlyZero(twoSigmaSqrdX, SK_ScalarNearlyZero) ||
366 SkScalarNearlyZero(twoSigmaSqrdY, SK_ScalarNearlyZero)) {
Robert Phillips4e962c62018-06-20 07:46:19 -0400367 // In this case the 2D Gaussian degenerates to a 1D Gaussian (in X or Y) or a point
368 SkASSERT(3 == width || 3 == height);
Brian Salomon694ec492020-04-14 13:39:31 -0400369 std::fill_n(kernel, width*height, 0);
Robert Phillips4e962c62018-06-20 07:46:19 -0400370
371 if (SkScalarNearlyZero(twoSigmaSqrdX, SK_ScalarNearlyZero) &&
372 SkScalarNearlyZero(twoSigmaSqrdY, SK_ScalarNearlyZero)) {
373 // A point
374 SkASSERT(3 == width && 3 == height);
375 kernel[4] = 1.0f;
376 } else if (SkScalarNearlyZero(twoSigmaSqrdX, SK_ScalarNearlyZero)) {
377 // A 1D Gaussian in Y
378 SkASSERT(3 == width);
379 // Down the middle column of the kernel with a stride of width
380 fill_in_1D_gaussian_kernel_with_stride(&kernel[1], height, width, twoSigmaSqrdY);
381 } else {
382 // A 1D Gaussian in X
383 SkASSERT(SkScalarNearlyZero(twoSigmaSqrdY, SK_ScalarNearlyZero));
384 SkASSERT(3 == height);
385 // Down the middle row of the kernel with a stride of 1
386 fill_in_1D_gaussian_kernel_with_stride(&kernel[width], width, 1, twoSigmaSqrdX);
Greg Daniel4eda8d92018-04-03 14:03:15 -0400387 }
388 return;
389 }
390
391 const float sigmaXDenom = 1.0f / twoSigmaSqrdX;
392 const float sigmaYDenom = 1.0f / twoSigmaSqrdY;
Robert Phillips40fd7c92017-01-30 08:06:27 -0500393 const int xRadius = width / 2;
394 const int yRadius = height / 2;
395
joshualitt5acfea72014-08-11 13:55:34 -0700396 float sum = 0.0f;
joshualitt5acfea72014-08-11 13:55:34 -0700397 for (int x = 0; x < width; x++) {
Robert Phillips40fd7c92017-01-30 08:06:27 -0500398 float xTerm = static_cast<float>(x - xRadius);
399 xTerm = xTerm * xTerm * sigmaXDenom;
400 for (int y = 0; y < height; y++) {
401 float yTerm = static_cast<float>(y - yRadius);
402 float xyTerm = sk_float_exp(-(xTerm + yTerm * yTerm * sigmaYDenom));
403 // Note that the constant term (1/(sqrt(2*pi*sigma^2)) of the Gaussian
404 // is dropped here, since we renormalize the kernel below.
405 kernel[y * width + x] = xyTerm;
406 sum += xyTerm;
407 }
joshualitt5acfea72014-08-11 13:55:34 -0700408 }
409 // Normalize the kernel
410 float scale = 1.0f / sum;
411 for (int i = 0; i < width * height; ++i) {
412 kernel[i] *= scale;
413 }
Robert Phillips40fd7c92017-01-30 08:06:27 -0500414}
415
Adlai Holler00ddb002020-05-11 19:25:52 -0400416std::unique_ptr<GrFragmentProcessor> GrMatrixConvolutionEffect::Make(GrRecordingContext* context,
417 GrSurfaceProxyView srcView,
Brian Salomon694ec492020-04-14 13:39:31 -0400418 const SkIRect& srcBounds,
419 const SkISize& kernelSize,
420 const SkScalar* kernel,
421 SkScalar gain,
422 SkScalar bias,
423 const SkIPoint& kernelOffset,
424 GrSamplerState::WrapMode wm,
425 bool convolveAlpha,
426 const GrCaps& caps) {
Brian Salomon1b0b0042020-06-12 15:15:50 -0400427 auto [kernelWrapper, kernelFP] = KernelWrapper::Make(context, kernelSize, caps, kernel);
428 if (!kernelWrapper.isValid()) {
Adlai Holler00ddb002020-05-11 19:25:52 -0400429 return nullptr;
430 }
Brian Salomon694ec492020-04-14 13:39:31 -0400431 GrSamplerState sampler(wm, GrSamplerState::Filter::kNearest);
432 auto child = GrTextureEffect::MakeSubset(std::move(srcView), kPremul_SkAlphaType, SkMatrix::I(),
433 sampler, SkRect::Make(srcBounds), caps);
Brian Salomon1b0b0042020-06-12 15:15:50 -0400434 return std::unique_ptr<GrFragmentProcessor>(
435 new GrMatrixConvolutionEffect(std::move(child), kernelWrapper, std::move(kernelFP),
436 gain, bias, kernelOffset, convolveAlpha));
Brian Salomon694ec492020-04-14 13:39:31 -0400437}
438
Brian Salomonaff329b2017-08-11 09:40:37 -0400439std::unique_ptr<GrFragmentProcessor> GrMatrixConvolutionEffect::MakeGaussian(
Adlai Holler00ddb002020-05-11 19:25:52 -0400440 GrRecordingContext* context,
Greg Daniel5c082492020-01-29 15:06:49 -0500441 GrSurfaceProxyView srcView,
Robert Phillips5140f9a2018-05-11 16:11:45 -0400442 const SkIRect& srcBounds,
Brian Salomonaff329b2017-08-11 09:40:37 -0400443 const SkISize& kernelSize,
444 SkScalar gain,
445 SkScalar bias,
446 const SkIPoint& kernelOffset,
Brian Salomon694ec492020-04-14 13:39:31 -0400447 GrSamplerState::WrapMode wm,
Brian Salomonaff329b2017-08-11 09:40:37 -0400448 bool convolveAlpha,
449 SkScalar sigmaX,
Brian Salomon694ec492020-04-14 13:39:31 -0400450 SkScalar sigmaY,
451 const GrCaps& caps) {
Adlai Holler00ddb002020-05-11 19:25:52 -0400452 SkAutoSTMalloc<32, float> kernel(kernelSize.area());
453 fill_in_2D_gaussian_kernel(kernel.get(), kernelSize.width(), kernelSize.height(),
454 sigmaX, sigmaY);
455 return Make(context, std::move(srcView), srcBounds, kernelSize, kernel.get(),
456 gain, bias, kernelOffset, wm, convolveAlpha, caps);
Robert Phillips40fd7c92017-01-30 08:06:27 -0500457}
458
joshualittb0a8a372014-09-23 09:50:21 -0700459GR_DEFINE_FRAGMENT_PROCESSOR_TEST(GrMatrixConvolutionEffect);
joshualittac977922014-07-22 09:52:11 -0700460
Hal Canary6f6961e2017-01-31 13:50:44 -0500461#if GR_TEST_UTILS
Brian Salomonaff329b2017-08-11 09:40:37 -0400462std::unique_ptr<GrFragmentProcessor> GrMatrixConvolutionEffect::TestCreate(GrProcessorTestData* d) {
Greg Daniel026a60c2020-02-12 10:53:51 -0500463 auto [view, ct, at] = d->randomView();
Robert Phillipsdbc8eeb2017-02-21 10:04:31 -0500464
Adlai Holler00ddb002020-05-11 19:25:52 -0400465 static constexpr size_t kMaxTestKernelSize = 2 * kMaxUniformSize;
466 int width = d->fRandom->nextRangeU(1, kMaxTestKernelSize);
467 int height = d->fRandom->nextRangeU(1, kMaxTestKernelSize / width);
joshualittac977922014-07-22 09:52:11 -0700468 SkISize kernelSize = SkISize::Make(width, height);
Ben Wagner7ecc5962016-11-02 17:07:33 -0400469 std::unique_ptr<SkScalar[]> kernel(new SkScalar[width * height]);
joshualittac977922014-07-22 09:52:11 -0700470 for (int i = 0; i < width * height; i++) {
joshualitt0067ff52015-07-08 14:26:19 -0700471 kernel.get()[i] = d->fRandom->nextSScalar1();
joshualittac977922014-07-22 09:52:11 -0700472 }
joshualitt0067ff52015-07-08 14:26:19 -0700473 SkScalar gain = d->fRandom->nextSScalar1();
474 SkScalar bias = d->fRandom->nextSScalar1();
Greg Daniel026a60c2020-02-12 10:53:51 -0500475
476 uint32_t kernalOffsetX = d->fRandom->nextRangeU(0, kernelSize.width());
477 uint32_t kernalOffsetY = d->fRandom->nextRangeU(0, kernelSize.height());
478 SkIPoint kernelOffset = SkIPoint::Make(kernalOffsetX, kernalOffsetY);
479
480 uint32_t boundsX = d->fRandom->nextRangeU(0, view.width());
481 uint32_t boundsY = d->fRandom->nextRangeU(0, view.height());
482 uint32_t boundsW = d->fRandom->nextRangeU(0, view.width());
483 uint32_t boundsH = d->fRandom->nextRangeU(0, view.height());
484 SkIRect bounds = SkIRect::MakeXYWH(boundsX, boundsY, boundsW, boundsH);
485
Brian Salomon694ec492020-04-14 13:39:31 -0400486 auto wm = static_cast<GrSamplerState::WrapMode>(
487 d->fRandom->nextULessThan(GrSamplerState::kWrapModeCount));
joshualitt0067ff52015-07-08 14:26:19 -0700488 bool convolveAlpha = d->fRandom->nextBool();
Adlai Holler00ddb002020-05-11 19:25:52 -0400489 return GrMatrixConvolutionEffect::Make(d->context()->priv().asRecordingContext(),
490 std::move(view),
bungeman06ca8ec2016-06-09 08:01:03 -0700491 bounds,
492 kernelSize,
493 kernel.get(),
494 gain,
495 bias,
496 kernelOffset,
Brian Salomon694ec492020-04-14 13:39:31 -0400497 wm,
498 convolveAlpha,
499 *d->caps());
joshualittac977922014-07-22 09:52:11 -0700500}
Hal Canary6f6961e2017-01-31 13:50:44 -0500501#endif