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rileya@google.com589708b2012-07-26 20:04:23 +00001/*
2 * Copyright 2006 The Android Open Source Project
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
fmalitabc590c02016-02-22 09:12:33 -08008#include "Sk4fLinearGradient.h"
raftias94888332016-10-18 10:02:51 -07009#include "SkColorSpace_XYZ.h"
rileya@google.com589708b2012-07-26 20:04:23 +000010#include "SkGradientShaderPriv.h"
brianosmand4546092016-09-22 12:31:58 -070011#include "SkHalf.h"
rileya@google.com589708b2012-07-26 20:04:23 +000012#include "SkLinearGradient.h"
Mike Reed6b3155c2017-04-03 14:41:44 -040013#include "SkMallocPixelRef.h"
rileya@google.com589708b2012-07-26 20:04:23 +000014#include "SkRadialGradient.h"
Mike Klein02ab8cc2017-05-04 22:41:05 +000015#include "SkSweepGradient.h"
Mike Kleina3771842017-05-04 19:38:48 -040016#include "SkTwoPointConicalGradient.h"
rileya@google.com589708b2012-07-26 20:04:23 +000017
brianosmane25d71c2016-09-28 11:27:28 -070018enum GradientSerializationFlags {
19 // Bits 29:31 used for various boolean flags
20 kHasPosition_GSF = 0x80000000,
21 kHasLocalMatrix_GSF = 0x40000000,
22 kHasColorSpace_GSF = 0x20000000,
23
24 // Bits 12:28 unused
25
26 // Bits 8:11 for fTileMode
27 kTileModeShift_GSF = 8,
28 kTileModeMask_GSF = 0xF,
29
30 // Bits 0:7 for fGradFlags (note that kForce4fContext_PrivateFlag is 0x80)
31 kGradFlagsShift_GSF = 0,
32 kGradFlagsMask_GSF = 0xFF,
33};
34
reed9fa60da2014-08-21 07:59:51 -070035void SkGradientShaderBase::Descriptor::flatten(SkWriteBuffer& buffer) const {
brianosmane25d71c2016-09-28 11:27:28 -070036 uint32_t flags = 0;
reed9fa60da2014-08-21 07:59:51 -070037 if (fPos) {
brianosmane25d71c2016-09-28 11:27:28 -070038 flags |= kHasPosition_GSF;
reed9fa60da2014-08-21 07:59:51 -070039 }
reed9fa60da2014-08-21 07:59:51 -070040 if (fLocalMatrix) {
brianosmane25d71c2016-09-28 11:27:28 -070041 flags |= kHasLocalMatrix_GSF;
42 }
43 sk_sp<SkData> colorSpaceData = fColorSpace ? fColorSpace->serialize() : nullptr;
44 if (colorSpaceData) {
45 flags |= kHasColorSpace_GSF;
46 }
47 SkASSERT(static_cast<uint32_t>(fTileMode) <= kTileModeMask_GSF);
48 flags |= (fTileMode << kTileModeShift_GSF);
49 SkASSERT(fGradFlags <= kGradFlagsMask_GSF);
50 flags |= (fGradFlags << kGradFlagsShift_GSF);
51
52 buffer.writeUInt(flags);
53
54 buffer.writeColor4fArray(fColors, fCount);
55 if (colorSpaceData) {
56 buffer.writeDataAsByteArray(colorSpaceData.get());
57 }
58 if (fPos) {
59 buffer.writeScalarArray(fPos, fCount);
60 }
61 if (fLocalMatrix) {
reed9fa60da2014-08-21 07:59:51 -070062 buffer.writeMatrix(*fLocalMatrix);
reed9fa60da2014-08-21 07:59:51 -070063 }
64}
65
66bool SkGradientShaderBase::DescriptorScope::unflatten(SkReadBuffer& buffer) {
brianosmane25d71c2016-09-28 11:27:28 -070067 if (buffer.isVersionLT(SkReadBuffer::kGradientShaderFloatColor_Version)) {
68 fCount = buffer.getArrayCount();
69 if (fCount > kStorageCount) {
70 size_t allocSize = (sizeof(SkColor4f) + sizeof(SkScalar)) * fCount;
71 fDynamicStorage.reset(allocSize);
72 fColors = (SkColor4f*)fDynamicStorage.get();
73 fPos = (SkScalar*)(fColors + fCount);
74 } else {
75 fColors = fColorStorage;
76 fPos = fPosStorage;
77 }
reed9fa60da2014-08-21 07:59:51 -070078
brianosmane25d71c2016-09-28 11:27:28 -070079 // Old gradients serialized SkColor. Read that to a temporary location, then convert.
80 SkSTArray<2, SkColor, true> colors;
81 colors.resize_back(fCount);
82 if (!buffer.readColorArray(colors.begin(), fCount)) {
reed9fa60da2014-08-21 07:59:51 -070083 return false;
84 }
brianosmane25d71c2016-09-28 11:27:28 -070085 for (int i = 0; i < fCount; ++i) {
86 mutableColors()[i] = SkColor4f::FromColor(colors[i]);
87 }
reed9fa60da2014-08-21 07:59:51 -070088
brianosmane25d71c2016-09-28 11:27:28 -070089 if (buffer.readBool()) {
90 if (!buffer.readScalarArray(const_cast<SkScalar*>(fPos), fCount)) {
91 return false;
92 }
93 } else {
94 fPos = nullptr;
95 }
reed9fa60da2014-08-21 07:59:51 -070096
brianosmane25d71c2016-09-28 11:27:28 -070097 fColorSpace = nullptr;
98 fTileMode = (SkShader::TileMode)buffer.read32();
99 fGradFlags = buffer.read32();
100
101 if (buffer.readBool()) {
102 fLocalMatrix = &fLocalMatrixStorage;
103 buffer.readMatrix(&fLocalMatrixStorage);
104 } else {
105 fLocalMatrix = nullptr;
106 }
reed9fa60da2014-08-21 07:59:51 -0700107 } else {
brianosmane25d71c2016-09-28 11:27:28 -0700108 // New gradient format. Includes floating point color, color space, densely packed flags
109 uint32_t flags = buffer.readUInt();
110
111 fTileMode = (SkShader::TileMode)((flags >> kTileModeShift_GSF) & kTileModeMask_GSF);
112 fGradFlags = (flags >> kGradFlagsShift_GSF) & kGradFlagsMask_GSF;
113
114 fCount = buffer.getArrayCount();
115 if (fCount > kStorageCount) {
116 size_t allocSize = (sizeof(SkColor4f) + sizeof(SkScalar)) * fCount;
117 fDynamicStorage.reset(allocSize);
118 fColors = (SkColor4f*)fDynamicStorage.get();
119 fPos = (SkScalar*)(fColors + fCount);
120 } else {
121 fColors = fColorStorage;
122 fPos = fPosStorage;
123 }
124 if (!buffer.readColor4fArray(mutableColors(), fCount)) {
125 return false;
126 }
127 if (SkToBool(flags & kHasColorSpace_GSF)) {
128 sk_sp<SkData> data = buffer.readByteArrayAsData();
129 fColorSpace = SkColorSpace::Deserialize(data->data(), data->size());
130 } else {
131 fColorSpace = nullptr;
132 }
133 if (SkToBool(flags & kHasPosition_GSF)) {
134 if (!buffer.readScalarArray(mutablePos(), fCount)) {
135 return false;
136 }
137 } else {
138 fPos = nullptr;
139 }
140 if (SkToBool(flags & kHasLocalMatrix_GSF)) {
141 fLocalMatrix = &fLocalMatrixStorage;
142 buffer.readMatrix(&fLocalMatrixStorage);
143 } else {
144 fLocalMatrix = nullptr;
145 }
reed9fa60da2014-08-21 07:59:51 -0700146 }
147 return buffer.isValid();
148}
149
150////////////////////////////////////////////////////////////////////////////////////////////
151
mtkleincc695fe2014-12-10 10:29:19 -0800152SkGradientShaderBase::SkGradientShaderBase(const Descriptor& desc, const SkMatrix& ptsToUnit)
reedaddf2ed2014-08-11 08:28:24 -0700153 : INHERITED(desc.fLocalMatrix)
mtkleincc695fe2014-12-10 10:29:19 -0800154 , fPtsToUnit(ptsToUnit)
commit-bot@chromium.org9c9005a2014-04-28 14:55:39 +0000155{
mtkleincc695fe2014-12-10 10:29:19 -0800156 fPtsToUnit.getType(); // Precache so reads are threadsafe.
reed@google.com437d6eb2013-05-23 19:03:05 +0000157 SkASSERT(desc.fCount > 1);
rileya@google.com589708b2012-07-26 20:04:23 +0000158
fmalita6d7e4e82016-09-20 06:55:16 -0700159 fGradFlags = static_cast<uint8_t>(desc.fGradFlags);
rileya@google.com589708b2012-07-26 20:04:23 +0000160
reed@google.com437d6eb2013-05-23 19:03:05 +0000161 SkASSERT((unsigned)desc.fTileMode < SkShader::kTileModeCount);
rileya@google.com589708b2012-07-26 20:04:23 +0000162 SkASSERT(SkShader::kTileModeCount == SK_ARRAY_COUNT(gTileProcs));
reed@google.com437d6eb2013-05-23 19:03:05 +0000163 fTileMode = desc.fTileMode;
164 fTileProc = gTileProcs[desc.fTileMode];
rileya@google.com589708b2012-07-26 20:04:23 +0000165
rileya@google.com589708b2012-07-26 20:04:23 +0000166 /* Note: we let the caller skip the first and/or last position.
167 i.e. pos[0] = 0.3, pos[1] = 0.7
168 In these cases, we insert dummy entries to ensure that the final data
169 will be bracketed by [0, 1].
170 i.e. our_pos[0] = 0, our_pos[1] = 0.3, our_pos[2] = 0.7, our_pos[3] = 1
171
172 Thus colorCount (the caller's value, and fColorCount (our value) may
173 differ by up to 2. In the above example:
174 colorCount = 2
175 fColorCount = 4
176 */
reed@google.com437d6eb2013-05-23 19:03:05 +0000177 fColorCount = desc.fCount;
rileya@google.com589708b2012-07-26 20:04:23 +0000178 // check if we need to add in dummy start and/or end position/colors
179 bool dummyFirst = false;
180 bool dummyLast = false;
reed@google.com437d6eb2013-05-23 19:03:05 +0000181 if (desc.fPos) {
182 dummyFirst = desc.fPos[0] != 0;
183 dummyLast = desc.fPos[desc.fCount - 1] != SK_Scalar1;
rileya@google.com589708b2012-07-26 20:04:23 +0000184 fColorCount += dummyFirst + dummyLast;
185 }
186
187 if (fColorCount > kColorStorageCount) {
brianosmanb9c51372016-09-15 11:09:45 -0700188 size_t size = sizeof(SkColor) + sizeof(SkColor4f) + sizeof(Rec);
reed9fa60da2014-08-21 07:59:51 -0700189 if (desc.fPos) {
190 size += sizeof(SkScalar);
191 }
brianosmane25d71c2016-09-28 11:27:28 -0700192 fOrigColors = reinterpret_cast<SkColor*>(sk_malloc_throw(size * fColorCount));
rileya@google.com589708b2012-07-26 20:04:23 +0000193 }
194 else {
195 fOrigColors = fStorage;
196 }
197
brianosmanb9c51372016-09-15 11:09:45 -0700198 fOrigColors4f = (SkColor4f*)(fOrigColors + fColorCount);
199
brianosmane25d71c2016-09-28 11:27:28 -0700200 // Now copy over the colors, adding the dummies as needed
201 SkColor4f* origColors = fOrigColors4f;
202 if (dummyFirst) {
203 *origColors++ = desc.fColors[0];
204 }
205 memcpy(origColors, desc.fColors, desc.fCount * sizeof(SkColor4f));
206 if (dummyLast) {
207 origColors += desc.fCount;
208 *origColors = desc.fColors[desc.fCount - 1];
209 }
brianosmanb9c51372016-09-15 11:09:45 -0700210
brianosmane25d71c2016-09-28 11:27:28 -0700211 // Convert our SkColor4f colors to SkColor as well. Note that this is incorrect if the
212 // source colors are not in sRGB gamut. We would need to do a gamut transformation, but
213 // SkColorSpaceXform can't do that (yet). GrColorSpaceXform can, but we may not have GPU
214 // support compiled in here. For the common case (sRGB colors), this does the right thing.
215 for (int i = 0; i < fColorCount; ++i) {
216 fOrigColors[i] = fOrigColors4f[i].toSkColor();
217 }
brianosmanb9c51372016-09-15 11:09:45 -0700218
brianosmane25d71c2016-09-28 11:27:28 -0700219 if (!desc.fColorSpace) {
220 // This happens if we were constructed from SkColors, so our colors are really sRGB
Matt Sarett77a7a1b2017-02-07 13:56:11 -0500221 fColorSpace = SkColorSpace::MakeSRGBLinear();
brianosmanb9c51372016-09-15 11:09:45 -0700222 } else {
brianosmane25d71c2016-09-28 11:27:28 -0700223 // The color space refers to the float colors, so it must be linear gamma
224 SkASSERT(desc.fColorSpace->gammaIsLinear());
brianosmanb9c51372016-09-15 11:09:45 -0700225 fColorSpace = desc.fColorSpace;
rileya@google.com589708b2012-07-26 20:04:23 +0000226 }
227
reed9fa60da2014-08-21 07:59:51 -0700228 if (desc.fPos && fColorCount) {
brianosmanb9c51372016-09-15 11:09:45 -0700229 fOrigPos = (SkScalar*)(fOrigColors4f + fColorCount);
reed9fa60da2014-08-21 07:59:51 -0700230 fRecs = (Rec*)(fOrigPos + fColorCount);
231 } else {
halcanary96fcdcc2015-08-27 07:41:13 -0700232 fOrigPos = nullptr;
brianosmanb9c51372016-09-15 11:09:45 -0700233 fRecs = (Rec*)(fOrigColors4f + fColorCount);
reed9fa60da2014-08-21 07:59:51 -0700234 }
235
rileya@google.com589708b2012-07-26 20:04:23 +0000236 if (fColorCount > 2) {
237 Rec* recs = fRecs;
238 recs->fPos = 0;
239 // recs->fScale = 0; // unused;
240 recs += 1;
reed@google.com437d6eb2013-05-23 19:03:05 +0000241 if (desc.fPos) {
reed9fa60da2014-08-21 07:59:51 -0700242 SkScalar* origPosPtr = fOrigPos;
243 *origPosPtr++ = 0;
244
rileya@google.com589708b2012-07-26 20:04:23 +0000245 /* We need to convert the user's array of relative positions into
246 fixed-point positions and scale factors. We need these results
247 to be strictly monotonic (no two values equal or out of order).
248 Hence this complex loop that just jams a zero for the scale
249 value if it sees a segment out of order, and it assures that
250 we start at 0 and end at 1.0
251 */
reed9fa60da2014-08-21 07:59:51 -0700252 SkScalar prev = 0;
rileya@google.com589708b2012-07-26 20:04:23 +0000253 int startIndex = dummyFirst ? 0 : 1;
reed@google.com437d6eb2013-05-23 19:03:05 +0000254 int count = desc.fCount + dummyLast;
rileya@google.com589708b2012-07-26 20:04:23 +0000255 for (int i = startIndex; i < count; i++) {
256 // force the last value to be 1.0
reed9fa60da2014-08-21 07:59:51 -0700257 SkScalar curr;
reed@google.com437d6eb2013-05-23 19:03:05 +0000258 if (i == desc.fCount) { // we're really at the dummyLast
reed9fa60da2014-08-21 07:59:51 -0700259 curr = 1;
rileya@google.com589708b2012-07-26 20:04:23 +0000260 } else {
reed9fa60da2014-08-21 07:59:51 -0700261 curr = SkScalarPin(desc.fPos[i], 0, 1);
rileya@google.com589708b2012-07-26 20:04:23 +0000262 }
reed9fa60da2014-08-21 07:59:51 -0700263 *origPosPtr++ = curr;
mtklein55de40b2014-08-21 11:52:36 -0700264
reed9fa60da2014-08-21 07:59:51 -0700265 recs->fPos = SkScalarToFixed(curr);
mtklein55de40b2014-08-21 11:52:36 -0700266 SkFixed diff = SkScalarToFixed(curr - prev);
267 if (diff > 0) {
268 recs->fScale = (1 << 24) / diff;
rileya@google.com589708b2012-07-26 20:04:23 +0000269 } else {
270 recs->fScale = 0; // ignore this segment
271 }
272 // get ready for the next value
273 prev = curr;
274 recs += 1;
275 }
276 } else { // assume even distribution
halcanary96fcdcc2015-08-27 07:41:13 -0700277 fOrigPos = nullptr;
reed9fa60da2014-08-21 07:59:51 -0700278
reed@google.com437d6eb2013-05-23 19:03:05 +0000279 SkFixed dp = SK_Fixed1 / (desc.fCount - 1);
rileya@google.com589708b2012-07-26 20:04:23 +0000280 SkFixed p = dp;
reed@google.com437d6eb2013-05-23 19:03:05 +0000281 SkFixed scale = (desc.fCount - 1) << 8; // (1 << 24) / dp
commit-bot@chromium.org44d83c12014-04-21 13:10:25 +0000282 for (int i = 1; i < desc.fCount - 1; i++) {
rileya@google.com589708b2012-07-26 20:04:23 +0000283 recs->fPos = p;
284 recs->fScale = scale;
285 recs += 1;
286 p += dp;
287 }
commit-bot@chromium.org44d83c12014-04-21 13:10:25 +0000288 recs->fPos = SK_Fixed1;
commit-bot@chromium.org811f20d2014-04-21 21:09:49 +0000289 recs->fScale = scale;
rileya@google.com589708b2012-07-26 20:04:23 +0000290 }
reed9fa60da2014-08-21 07:59:51 -0700291 } else if (desc.fPos) {
292 SkASSERT(2 == fColorCount);
293 fOrigPos[0] = SkScalarPin(desc.fPos[0], 0, 1);
294 fOrigPos[1] = SkScalarPin(desc.fPos[1], fOrigPos[0], 1);
295 if (0 == fOrigPos[0] && 1 == fOrigPos[1]) {
halcanary96fcdcc2015-08-27 07:41:13 -0700296 fOrigPos = nullptr;
reed9fa60da2014-08-21 07:59:51 -0700297 }
rileya@google.com589708b2012-07-26 20:04:23 +0000298 }
299 this->initCommon();
300}
301
rileya@google.com589708b2012-07-26 20:04:23 +0000302SkGradientShaderBase::~SkGradientShaderBase() {
rileya@google.com589708b2012-07-26 20:04:23 +0000303 if (fOrigColors != fStorage) {
304 sk_free(fOrigColors);
305 }
rileya@google.com589708b2012-07-26 20:04:23 +0000306}
307
308void SkGradientShaderBase::initCommon() {
rileya@google.com589708b2012-07-26 20:04:23 +0000309 unsigned colorAlpha = 0xFF;
310 for (int i = 0; i < fColorCount; i++) {
311 colorAlpha &= SkColorGetA(fOrigColors[i]);
312 }
313 fColorsAreOpaque = colorAlpha == 0xFF;
314}
315
commit-bot@chromium.org8b0e8ac2014-01-30 18:58:24 +0000316void SkGradientShaderBase::flatten(SkWriteBuffer& buffer) const {
reed9fa60da2014-08-21 07:59:51 -0700317 Descriptor desc;
brianosmane25d71c2016-09-28 11:27:28 -0700318 desc.fColors = fOrigColors4f;
brianosmanb9c51372016-09-15 11:09:45 -0700319 desc.fColorSpace = fColorSpace;
reed9fa60da2014-08-21 07:59:51 -0700320 desc.fPos = fOrigPos;
321 desc.fCount = fColorCount;
322 desc.fTileMode = fTileMode;
323 desc.fGradFlags = fGradFlags;
324
325 const SkMatrix& m = this->getLocalMatrix();
halcanary96fcdcc2015-08-27 07:41:13 -0700326 desc.fLocalMatrix = m.isIdentity() ? nullptr : &m;
reed9fa60da2014-08-21 07:59:51 -0700327 desc.flatten(buffer);
rileya@google.com589708b2012-07-26 20:04:23 +0000328}
329
commit-bot@chromium.org44d83c12014-04-21 13:10:25 +0000330void SkGradientShaderBase::FlipGradientColors(SkColor* colorDst, Rec* recDst,
331 SkColor* colorSrc, Rec* recSrc,
332 int count) {
333 SkAutoSTArray<8, SkColor> colorsTemp(count);
334 for (int i = 0; i < count; ++i) {
335 int offset = count - i - 1;
336 colorsTemp[i] = colorSrc[offset];
337 }
338 if (count > 2) {
339 SkAutoSTArray<8, Rec> recsTemp(count);
340 for (int i = 0; i < count; ++i) {
341 int offset = count - i - 1;
342 recsTemp[i].fPos = SK_Fixed1 - recSrc[offset].fPos;
343 recsTemp[i].fScale = recSrc[offset].fScale;
344 }
345 memcpy(recDst, recsTemp.get(), count * sizeof(Rec));
346 }
347 memcpy(colorDst, colorsTemp.get(), count * sizeof(SkColor));
348}
349
Mike Kleina3771842017-05-04 19:38:48 -0400350bool SkGradientShaderBase::onAppendStages(
351 SkRasterPipeline* pipeline, SkColorSpace* dstCS, SkArenaAlloc* alloc,
352 const SkMatrix& ctm, const SkPaint& paint,
353 const SkMatrix* localM) const
354{
355 // Local matrix not supported currently. Remove once we have a generic RP wrapper.
356 if (localM || !getLocalMatrix().isIdentity()) {
357 return false;
358 }
359
360 SkMatrix matrix;
361 if (!ctm.invert(&matrix)) {
362 return false;
363 }
364
365 SkRasterPipeline p;
366 if (!this->adjustMatrixAndAppendStages(alloc, &matrix, &p)) {
367 return false;
368 }
369
370 auto* m = alloc->makeArrayDefault<float>(9);
371 if (matrix.asAffine(m)) {
372 // TODO: mapping y is not needed; split the matrix stages to save some math?
373 pipeline->append(SkRasterPipeline::matrix_2x3, m);
374 } else {
375 matrix.get9(m);
376 pipeline->append(SkRasterPipeline::matrix_perspective, m);
377 }
378
379 pipeline->extend(p);
380
381 const bool premulGrad = fGradFlags & SkGradientShader::kInterpolateColorsInPremul_Flag;
382 auto prepareColor = [premulGrad, dstCS, this](int i) {
383 SkColor4f c = dstCS ? to_colorspace(fOrigColors4f[i], fColorSpace.get(), dstCS)
384 : SkColor4f_from_SkColor(fOrigColors[i], nullptr);
385 return premulGrad ? c.premul()
386 : SkPM4f::From4f(Sk4f::Load(&c));
387 };
388
389 // The two-stop case with stops at 0 and 1.
390 if (fColorCount == 2 && fOrigPos == nullptr) {
391 const SkPM4f c_l = prepareColor(0),
392 c_r = prepareColor(1);
393
394 // See F and B below.
395 auto* f_and_b = alloc->makeArrayDefault<SkPM4f>(2);
396 f_and_b[0] = SkPM4f::From4f(c_r.to4f() - c_l.to4f());
397 f_and_b[1] = c_l;
398
399 pipeline->append(SkRasterPipeline::linear_gradient_2stops, f_and_b);
400 } else {
401
402 struct Stop { float t; SkPM4f f, b; };
403 struct Ctx { size_t n; Stop* stops; SkPM4f start; };
404
405 auto* ctx = alloc->make<Ctx>();
406 ctx->start = prepareColor(0);
407
408 // For each stop we calculate a bias B and a scale factor F, such that
409 // for any t between stops n and n+1, the color we want is B[n] + F[n]*t.
410 auto init_stop = [](float t_l, float t_r, SkPM4f c_l, SkPM4f c_r, Stop *stop) {
411 auto F = SkPM4f::From4f((c_r.to4f() - c_l.to4f()) / (t_r - t_l));
412 auto B = SkPM4f::From4f(c_l.to4f() - (F.to4f() * t_l));
413 *stop = {t_l, F, B};
414 };
415
416 if (fOrigPos == nullptr) {
417 // Handle evenly distributed stops.
418
419 float dt = 1.0f / (fColorCount - 1);
420 // In the evenly distributed case, fColorCount is the number of stops. There are no
421 // dummy entries.
422 auto* stopsArray = alloc->makeArrayDefault<Stop>(fColorCount);
423
424 float t_l = 0;
425 SkPM4f c_l = ctx->start;
426 for (int i = 0; i < fColorCount - 1; i++) {
427 // Use multiply instead of accumulating error using repeated addition.
428 float t_r = (i + 1) * dt;
429 SkPM4f c_r = prepareColor(i + 1);
430 init_stop(t_l, t_r, c_l, c_r, &stopsArray[i]);
431
432 t_l = t_r;
433 c_l = c_r;
434 }
435
436 // Force the last stop.
437 stopsArray[fColorCount - 1].t = 1;
438 stopsArray[fColorCount - 1].f = SkPM4f::From4f(Sk4f{0});
439 stopsArray[fColorCount - 1].b = prepareColor(fColorCount - 1);
440
441 ctx->n = fColorCount;
442 ctx->stops = stopsArray;
443 } else {
444 // Handle arbitrary stops.
445
446 // Remove the dummy stops inserted by SkGradientShaderBase::SkGradientShaderBase
447 // because they are naturally handled by the search method.
448 int firstStop;
449 int lastStop;
450 if (fColorCount > 2) {
451 firstStop = fOrigColors4f[0] != fOrigColors4f[1] ? 0 : 1;
452 lastStop = fOrigColors4f[fColorCount - 2] != fOrigColors4f[fColorCount - 1]
453 ? fColorCount - 1 : fColorCount - 2;
454 } else {
455 firstStop = 0;
456 lastStop = 1;
457 }
458 int realCount = lastStop - firstStop + 1;
459
460 // This is the maximum number of stops. There may be fewer stops because the duplicate
461 // points of hard stops are removed.
462 auto* stopsArray = alloc->makeArrayDefault<Stop>(realCount);
463
464 size_t stopCount = 0;
465 float t_l = fOrigPos[firstStop];
466 SkPM4f c_l = prepareColor(firstStop);
467 // N.B. lastStop is the index of the last stop, not one after.
468 for (int i = firstStop; i < lastStop; i++) {
469 float t_r = fOrigPos[i + 1];
470 SkPM4f c_r = prepareColor(i + 1);
471 if (t_l < t_r) {
472 init_stop(t_l, t_r, c_l, c_r, &stopsArray[stopCount]);
473 stopCount += 1;
474 }
475 t_l = t_r;
476 c_l = c_r;
477 }
478
479 stopsArray[stopCount].t = fOrigPos[lastStop];
480 stopsArray[stopCount].f = SkPM4f::From4f(Sk4f{0});
481 stopsArray[stopCount].b = prepareColor(lastStop);
482 stopCount += 1;
483
484 ctx->n = stopCount;
485 ctx->stops = stopsArray;
486 }
487
488 pipeline->append(SkRasterPipeline::linear_gradient, ctx);
489 }
490
491 if (!premulGrad && !this->colorsAreOpaque()) {
492 pipeline->append(SkRasterPipeline::premul);
493 }
494
495 return true;
496}
497
498
rileya@google.com589708b2012-07-26 20:04:23 +0000499bool SkGradientShaderBase::isOpaque() const {
500 return fColorsAreOpaque;
501}
502
reed8367b8c2014-08-22 08:30:20 -0700503static unsigned rounded_divide(unsigned numer, unsigned denom) {
504 return (numer + (denom >> 1)) / denom;
505}
506
507bool SkGradientShaderBase::onAsLuminanceColor(SkColor* lum) const {
508 // we just compute an average color.
509 // possibly we could weight this based on the proportional width for each color
510 // assuming they are not evenly distributed in the fPos array.
511 int r = 0;
512 int g = 0;
513 int b = 0;
514 const int n = fColorCount;
515 for (int i = 0; i < n; ++i) {
516 SkColor c = fOrigColors[i];
517 r += SkColorGetR(c);
518 g += SkColorGetG(c);
519 b += SkColorGetB(c);
520 }
521 *lum = SkColorSetRGB(rounded_divide(r, n), rounded_divide(g, n), rounded_divide(b, n));
522 return true;
523}
524
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000525SkGradientShaderBase::GradientShaderBaseContext::GradientShaderBaseContext(
commit-bot@chromium.orge901b6d2014-05-01 19:31:31 +0000526 const SkGradientShaderBase& shader, const ContextRec& rec)
527 : INHERITED(shader, rec)
fmalita37d86882015-10-09 10:22:46 -0700528#ifdef SK_SUPPORT_LEGACY_GRADIENT_DITHERING
529 , fDither(true)
530#else
531 , fDither(rec.fPaint->isDither())
532#endif
533 , fCache(shader.refCache(getPaintAlpha(), fDither))
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000534{
rileya@google.com589708b2012-07-26 20:04:23 +0000535 const SkMatrix& inverse = this->getTotalInverse();
536
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000537 fDstToIndex.setConcat(shader.fPtsToUnit, inverse);
538
rileya@google.com589708b2012-07-26 20:04:23 +0000539 fDstToIndexProc = fDstToIndex.getMapXYProc();
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000540 fDstToIndexClass = (uint8_t)SkShader::Context::ComputeMatrixClass(fDstToIndex);
rileya@google.com589708b2012-07-26 20:04:23 +0000541
542 // now convert our colors in to PMColors
543 unsigned paintAlpha = this->getPaintAlpha();
544
545 fFlags = this->INHERITED::getFlags();
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000546 if (shader.fColorsAreOpaque && paintAlpha == 0xFF) {
rileya@google.com589708b2012-07-26 20:04:23 +0000547 fFlags |= kOpaqueAlpha_Flag;
548 }
rileya@google.com589708b2012-07-26 20:04:23 +0000549}
550
fmalita088e21b2016-10-05 09:28:42 -0700551bool SkGradientShaderBase::GradientShaderBaseContext::isValid() const {
552 return fDstToIndex.isFinite();
553}
554
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000555SkGradientShaderBase::GradientShaderCache::GradientShaderCache(
fmalita37d86882015-10-09 10:22:46 -0700556 U8CPU alpha, bool dither, const SkGradientShaderBase& shader)
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000557 : fCacheAlpha(alpha)
fmalita37d86882015-10-09 10:22:46 -0700558 , fCacheDither(dither)
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000559 , fShader(shader)
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000560{
brianosman93110a82016-09-15 08:40:21 -0700561 // Only initialize the cache in getCache32.
halcanary96fcdcc2015-08-27 07:41:13 -0700562 fCache32 = nullptr;
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000563}
564
Mike Reed6b3155c2017-04-03 14:41:44 -0400565SkGradientShaderBase::GradientShaderCache::~GradientShaderCache() {}
rileya@google.com589708b2012-07-26 20:04:23 +0000566
reed@google.com3d3a8602013-05-24 14:58:44 +0000567/*
568 * r,g,b used to be SkFixed, but on gcc (4.2.1 mac and 4.6.3 goobuntu) in
569 * release builds, we saw a compiler error where the 0xFF parameter in
570 * SkPackARGB32() was being totally ignored whenever it was called with
571 * a non-zero add (e.g. 0x8000).
572 *
573 * We found two work-arounds:
574 * 1. change r,g,b to unsigned (or just one of them)
575 * 2. change SkPackARGB32 to + its (a << SK_A32_SHIFT) value instead
576 * of using |
577 *
578 * We chose #1 just because it was more localized.
579 * See http://code.google.com/p/skia/issues/detail?id=1113
580 *
581 * The type SkUFixed encapsulate this need for unsigned, but logically Fixed.
582 */
583typedef uint32_t SkUFixed;
584
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000585void SkGradientShaderBase::GradientShaderCache::Build32bitCache(
586 SkPMColor cache[], SkColor c0, SkColor c1,
fmalita37d86882015-10-09 10:22:46 -0700587 int count, U8CPU paintAlpha, uint32_t gradFlags, bool dither) {
rileya@google.com589708b2012-07-26 20:04:23 +0000588 SkASSERT(count > 1);
589
590 // need to apply paintAlpha to our two endpoints
reed@google.com3d3a8602013-05-24 14:58:44 +0000591 uint32_t a0 = SkMulDiv255Round(SkColorGetA(c0), paintAlpha);
592 uint32_t a1 = SkMulDiv255Round(SkColorGetA(c1), paintAlpha);
593
594
595 const bool interpInPremul = SkToBool(gradFlags &
596 SkGradientShader::kInterpolateColorsInPremul_Flag);
597
598 uint32_t r0 = SkColorGetR(c0);
599 uint32_t g0 = SkColorGetG(c0);
600 uint32_t b0 = SkColorGetB(c0);
601
602 uint32_t r1 = SkColorGetR(c1);
603 uint32_t g1 = SkColorGetG(c1);
604 uint32_t b1 = SkColorGetB(c1);
605
606 if (interpInPremul) {
607 r0 = SkMulDiv255Round(r0, a0);
608 g0 = SkMulDiv255Round(g0, a0);
609 b0 = SkMulDiv255Round(b0, a0);
610
611 r1 = SkMulDiv255Round(r1, a1);
612 g1 = SkMulDiv255Round(g1, a1);
613 b1 = SkMulDiv255Round(b1, a1);
rileya@google.com589708b2012-07-26 20:04:23 +0000614 }
615
reed@google.com3d3a8602013-05-24 14:58:44 +0000616 SkFixed da = SkIntToFixed(a1 - a0) / (count - 1);
617 SkFixed dr = SkIntToFixed(r1 - r0) / (count - 1);
618 SkFixed dg = SkIntToFixed(g1 - g0) / (count - 1);
619 SkFixed db = SkIntToFixed(b1 - b0) / (count - 1);
rileya@google.com589708b2012-07-26 20:04:23 +0000620
reed@google.comd8e0d6a2013-02-08 19:48:12 +0000621 /* We pre-add 1/8 to avoid having to add this to our [0] value each time
622 in the loop. Without this, the bias for each would be
623 0x2000 0xA000 0xE000 0x6000
624 With this trick, we can add 0 for the first (no-op) and just adjust the
625 others.
626 */
fmalita37d86882015-10-09 10:22:46 -0700627 const SkUFixed bias0 = dither ? 0x2000 : 0x8000;
628 const SkUFixed bias1 = dither ? 0x8000 : 0;
629 const SkUFixed bias2 = dither ? 0xC000 : 0;
630 const SkUFixed bias3 = dither ? 0x4000 : 0;
631
632 SkUFixed a = SkIntToFixed(a0) + bias0;
633 SkUFixed r = SkIntToFixed(r0) + bias0;
634 SkUFixed g = SkIntToFixed(g0) + bias0;
635 SkUFixed b = SkIntToFixed(b0) + bias0;
rileya@google.com589708b2012-07-26 20:04:23 +0000636
reed@google.comd8e0d6a2013-02-08 19:48:12 +0000637 /*
638 * Our dither-cell (spatially) is
639 * 0 2
640 * 3 1
641 * Where
642 * [0] -> [-1/8 ... 1/8 ) values near 0
643 * [1] -> [ 1/8 ... 3/8 ) values near 1/4
644 * [2] -> [ 3/8 ... 5/8 ) values near 1/2
645 * [3] -> [ 5/8 ... 7/8 ) values near 3/4
646 */
647
reed@google.com3d3a8602013-05-24 14:58:44 +0000648 if (0xFF == a0 && 0 == da) {
reed@google.comd8e0d6a2013-02-08 19:48:12 +0000649 do {
fmalita37d86882015-10-09 10:22:46 -0700650 cache[kCache32Count*0] = SkPackARGB32(0xFF, (r + 0 ) >> 16,
651 (g + 0 ) >> 16,
652 (b + 0 ) >> 16);
653 cache[kCache32Count*1] = SkPackARGB32(0xFF, (r + bias1) >> 16,
654 (g + bias1) >> 16,
655 (b + bias1) >> 16);
656 cache[kCache32Count*2] = SkPackARGB32(0xFF, (r + bias2) >> 16,
657 (g + bias2) >> 16,
658 (b + bias2) >> 16);
659 cache[kCache32Count*3] = SkPackARGB32(0xFF, (r + bias3) >> 16,
660 (g + bias3) >> 16,
661 (b + bias3) >> 16);
reed@google.comd8e0d6a2013-02-08 19:48:12 +0000662 cache += 1;
663 r += dr;
664 g += dg;
665 b += db;
666 } while (--count != 0);
reed@google.com3d3a8602013-05-24 14:58:44 +0000667 } else if (interpInPremul) {
668 do {
fmalita37d86882015-10-09 10:22:46 -0700669 cache[kCache32Count*0] = SkPackARGB32((a + 0 ) >> 16,
670 (r + 0 ) >> 16,
671 (g + 0 ) >> 16,
672 (b + 0 ) >> 16);
673 cache[kCache32Count*1] = SkPackARGB32((a + bias1) >> 16,
674 (r + bias1) >> 16,
675 (g + bias1) >> 16,
676 (b + bias1) >> 16);
677 cache[kCache32Count*2] = SkPackARGB32((a + bias2) >> 16,
678 (r + bias2) >> 16,
679 (g + bias2) >> 16,
680 (b + bias2) >> 16);
681 cache[kCache32Count*3] = SkPackARGB32((a + bias3) >> 16,
682 (r + bias3) >> 16,
683 (g + bias3) >> 16,
684 (b + bias3) >> 16);
reed@google.com3d3a8602013-05-24 14:58:44 +0000685 cache += 1;
686 a += da;
687 r += dr;
688 g += dg;
689 b += db;
690 } while (--count != 0);
691 } else { // interpolate in unpreml space
reed@google.comd8e0d6a2013-02-08 19:48:12 +0000692 do {
693 cache[kCache32Count*0] = SkPremultiplyARGBInline((a + 0 ) >> 16,
694 (r + 0 ) >> 16,
695 (g + 0 ) >> 16,
696 (b + 0 ) >> 16);
fmalita37d86882015-10-09 10:22:46 -0700697 cache[kCache32Count*1] = SkPremultiplyARGBInline((a + bias1) >> 16,
698 (r + bias1) >> 16,
699 (g + bias1) >> 16,
700 (b + bias1) >> 16);
701 cache[kCache32Count*2] = SkPremultiplyARGBInline((a + bias2) >> 16,
702 (r + bias2) >> 16,
703 (g + bias2) >> 16,
704 (b + bias2) >> 16);
705 cache[kCache32Count*3] = SkPremultiplyARGBInline((a + bias3) >> 16,
706 (r + bias3) >> 16,
707 (g + bias3) >> 16,
708 (b + bias3) >> 16);
reed@google.comd8e0d6a2013-02-08 19:48:12 +0000709 cache += 1;
710 a += da;
711 r += dr;
712 g += dg;
713 b += db;
714 } while (--count != 0);
715 }
rileya@google.com589708b2012-07-26 20:04:23 +0000716}
717
718static inline int SkFixedToFFFF(SkFixed x) {
719 SkASSERT((unsigned)x <= SK_Fixed1);
720 return x - (x >> 16);
721}
722
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000723const SkPMColor* SkGradientShaderBase::GradientShaderCache::getCache32() {
mtkleind9dd4282016-04-18 08:09:11 -0700724 fCache32InitOnce(SkGradientShaderBase::GradientShaderCache::initCache32, this);
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000725 SkASSERT(fCache32);
rileya@google.com589708b2012-07-26 20:04:23 +0000726 return fCache32;
727}
728
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000729void SkGradientShaderBase::GradientShaderCache::initCache32(GradientShaderCache* cache) {
reede5ea5002014-09-03 11:54:58 -0700730 const int kNumberOfDitherRows = 4;
731 const SkImageInfo info = SkImageInfo::MakeN32Premul(kCache32Count, kNumberOfDitherRows);
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000732
halcanary96fcdcc2015-08-27 07:41:13 -0700733 SkASSERT(nullptr == cache->fCache32PixelRef);
Mike Reed6b3155c2017-04-03 14:41:44 -0400734 cache->fCache32PixelRef = SkMallocPixelRef::MakeAllocate(info, 0, nullptr);
735 cache->fCache32 = (SkPMColor*)cache->fCache32PixelRef->pixels();
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000736 if (cache->fShader.fColorCount == 2) {
737 Build32bitCache(cache->fCache32, cache->fShader.fOrigColors[0],
738 cache->fShader.fOrigColors[1], kCache32Count, cache->fCacheAlpha,
fmalita37d86882015-10-09 10:22:46 -0700739 cache->fShader.fGradFlags, cache->fCacheDither);
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000740 } else {
741 Rec* rec = cache->fShader.fRecs;
742 int prevIndex = 0;
743 for (int i = 1; i < cache->fShader.fColorCount; i++) {
744 int nextIndex = SkFixedToFFFF(rec[i].fPos) >> kCache32Shift;
745 SkASSERT(nextIndex < kCache32Count);
746
747 if (nextIndex > prevIndex)
748 Build32bitCache(cache->fCache32 + prevIndex, cache->fShader.fOrigColors[i-1],
749 cache->fShader.fOrigColors[i], nextIndex - prevIndex + 1,
fmalita37d86882015-10-09 10:22:46 -0700750 cache->fCacheAlpha, cache->fShader.fGradFlags, cache->fCacheDither);
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000751 prevIndex = nextIndex;
752 }
753 }
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000754}
755
brianosmand4546092016-09-22 12:31:58 -0700756void SkGradientShaderBase::initLinearBitmap(SkBitmap* bitmap) const {
757 const bool interpInPremul = SkToBool(fGradFlags &
758 SkGradientShader::kInterpolateColorsInPremul_Flag);
brianosmand4546092016-09-22 12:31:58 -0700759 SkHalf* pixelsF16 = reinterpret_cast<SkHalf*>(bitmap->getPixels());
760 uint32_t* pixelsS32 = reinterpret_cast<uint32_t*>(bitmap->getPixels());
761
762 typedef std::function<void(const Sk4f&, int)> pixelWriteFn_t;
763
764 pixelWriteFn_t writeF16Pixel = [&](const Sk4f& x, int index) {
765 Sk4h c = SkFloatToHalf_finite_ftz(x);
766 pixelsF16[4*index+0] = c[0];
767 pixelsF16[4*index+1] = c[1];
768 pixelsF16[4*index+2] = c[2];
769 pixelsF16[4*index+3] = c[3];
770 };
771 pixelWriteFn_t writeS32Pixel = [&](const Sk4f& c, int index) {
772 pixelsS32[index] = Sk4f_toS32(c);
773 };
774
775 pixelWriteFn_t writeSizedPixel =
776 (kRGBA_F16_SkColorType == bitmap->colorType()) ? writeF16Pixel : writeS32Pixel;
777 pixelWriteFn_t writeUnpremulPixel = [&](const Sk4f& c, int index) {
778 writeSizedPixel(c * Sk4f(c[3], c[3], c[3], 1.0f), index);
779 };
780
781 pixelWriteFn_t writePixel = interpInPremul ? writeSizedPixel : writeUnpremulPixel;
782
783 int prevIndex = 0;
784 for (int i = 1; i < fColorCount; i++) {
785 int nextIndex = (fColorCount == 2) ? (kCache32Count - 1)
786 : SkFixedToFFFF(fRecs[i].fPos) >> kCache32Shift;
787 SkASSERT(nextIndex < kCache32Count);
788
789 if (nextIndex > prevIndex) {
790 Sk4f c0 = Sk4f::Load(fOrigColors4f[i - 1].vec());
791 Sk4f c1 = Sk4f::Load(fOrigColors4f[i].vec());
792 if (interpInPremul) {
793 c0 = c0 * Sk4f(c0[3], c0[3], c0[3], 1.0f);
794 c1 = c1 * Sk4f(c1[3], c1[3], c1[3], 1.0f);
795 }
796
797 Sk4f step = Sk4f(1.0f / static_cast<float>(nextIndex - prevIndex));
798 Sk4f delta = (c1 - c0) * step;
799
800 for (int curIndex = prevIndex; curIndex <= nextIndex; ++curIndex) {
801 writePixel(c0, curIndex);
802 c0 += delta;
803 }
804 }
805 prevIndex = nextIndex;
806 }
807 SkASSERT(prevIndex == kCache32Count - 1);
brianosmand4546092016-09-22 12:31:58 -0700808}
809
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000810/*
811 * The gradient holds a cache for the most recent value of alpha. Successive
812 * callers with the same alpha value will share the same cache.
813 */
Hal Canary67b39de2016-11-07 11:47:44 -0500814sk_sp<SkGradientShaderBase::GradientShaderCache> SkGradientShaderBase::refCache(U8CPU alpha,
fmalita37d86882015-10-09 10:22:46 -0700815 bool dither) const {
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000816 SkAutoMutexAcquire ama(fCacheMutex);
fmalita37d86882015-10-09 10:22:46 -0700817 if (!fCache || fCache->getAlpha() != alpha || fCache->getDither() != dither) {
818 fCache.reset(new GradientShaderCache(alpha, dither, *this));
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000819 }
820 // Increment the ref counter inside the mutex to ensure the returned pointer is still valid.
821 // Otherwise, the pointer may have been overwritten on a different thread before the object's
822 // ref count was incremented.
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000823 return fCache;
824}
825
reed086eea92016-05-04 17:12:46 -0700826SK_DECLARE_STATIC_MUTEX(gGradientCacheMutex);
rileya@google.com589708b2012-07-26 20:04:23 +0000827/*
828 * Because our caller might rebuild the same (logically the same) gradient
829 * over and over, we'd like to return exactly the same "bitmap" if possible,
830 * allowing the client to utilize a cache of our bitmap (e.g. with a GPU).
831 * To do that, we maintain a private cache of built-bitmaps, based on our
832 * colors and positions. Note: we don't try to flatten the fMapper, so if one
833 * is present, we skip the cache for now.
834 */
brianosmand4546092016-09-22 12:31:58 -0700835void SkGradientShaderBase::getGradientTableBitmap(SkBitmap* bitmap,
836 GradientBitmapType bitmapType) const {
837 // our caller assumes no external alpha, so we ensure that our cache is built with 0xFF
Hal Canary67b39de2016-11-07 11:47:44 -0500838 sk_sp<GradientShaderCache> cache(this->refCache(0xFF, true));
rileya@google.com589708b2012-07-26 20:04:23 +0000839
brianosmand4546092016-09-22 12:31:58 -0700840 // build our key: [numColors + colors[] + {positions[]} + flags + colorType ]
841 int count = 1 + fColorCount + 1 + 1;
rileya@google.com589708b2012-07-26 20:04:23 +0000842 if (fColorCount > 2) {
843 count += fColorCount - 1; // fRecs[].fPos
844 }
845
846 SkAutoSTMalloc<16, int32_t> storage(count);
847 int32_t* buffer = storage.get();
848
849 *buffer++ = fColorCount;
850 memcpy(buffer, fOrigColors, fColorCount * sizeof(SkColor));
851 buffer += fColorCount;
852 if (fColorCount > 2) {
853 for (int i = 1; i < fColorCount; i++) {
854 *buffer++ = fRecs[i].fPos;
855 }
856 }
reed@google.com3d3a8602013-05-24 14:58:44 +0000857 *buffer++ = fGradFlags;
brianosmand4546092016-09-22 12:31:58 -0700858 *buffer++ = static_cast<int32_t>(bitmapType);
rileya@google.com589708b2012-07-26 20:04:23 +0000859 SkASSERT(buffer - storage.get() == count);
860
861 ///////////////////////////////////
862
reeda6cac4c2014-08-21 10:50:25 -0700863 static SkGradientBitmapCache* gCache;
brianosmand4546092016-09-22 12:31:58 -0700864 // each cache cost 1K or 2K of RAM, since each bitmap will be 1x256 at either 32bpp or 64bpp
rileya@google.com589708b2012-07-26 20:04:23 +0000865 static const int MAX_NUM_CACHED_GRADIENT_BITMAPS = 32;
bungemand6aeb6d2014-07-25 11:52:47 -0700866 SkAutoMutexAcquire ama(gGradientCacheMutex);
rileya@google.com589708b2012-07-26 20:04:23 +0000867
halcanary96fcdcc2015-08-27 07:41:13 -0700868 if (nullptr == gCache) {
halcanary385fe4d2015-08-26 13:07:48 -0700869 gCache = new SkGradientBitmapCache(MAX_NUM_CACHED_GRADIENT_BITMAPS);
rileya@google.com589708b2012-07-26 20:04:23 +0000870 }
871 size_t size = count * sizeof(int32_t);
872
873 if (!gCache->find(storage.get(), size, bitmap)) {
brianosmand4546092016-09-22 12:31:58 -0700874 if (GradientBitmapType::kLegacy == bitmapType) {
875 // force our cache32pixelref to be built
876 (void)cache->getCache32();
877 bitmap->setInfo(SkImageInfo::MakeN32Premul(kCache32Count, 1));
Hal Canary1b3387b2016-12-12 13:48:12 -0500878 bitmap->setPixelRef(sk_ref_sp(cache->getCache32PixelRef()), 0, 0);
brianosmand4546092016-09-22 12:31:58 -0700879 } else {
880 // For these cases we use the bitmap cache, but not the GradientShaderCache. So just
881 // allocate and populate the bitmap's data directly.
rileya@google.com589708b2012-07-26 20:04:23 +0000882
brianosmand4546092016-09-22 12:31:58 -0700883 SkImageInfo info;
884 switch (bitmapType) {
885 case GradientBitmapType::kSRGB:
886 info = SkImageInfo::Make(kCache32Count, 1, kRGBA_8888_SkColorType,
887 kPremul_SkAlphaType,
Matt Sarett77a7a1b2017-02-07 13:56:11 -0500888 SkColorSpace::MakeSRGB());
brianosmand4546092016-09-22 12:31:58 -0700889 break;
890 case GradientBitmapType::kHalfFloat:
brianosmaneec83042016-09-27 15:11:47 -0700891 info = SkImageInfo::Make(
892 kCache32Count, 1, kRGBA_F16_SkColorType, kPremul_SkAlphaType,
Matt Sarett77a7a1b2017-02-07 13:56:11 -0500893 SkColorSpace::MakeSRGBLinear());
brianosmand4546092016-09-22 12:31:58 -0700894 break;
895 default:
896 SkFAIL("Unexpected bitmap type");
897 return;
898 }
899 bitmap->allocPixels(info);
900 this->initLinearBitmap(bitmap);
901 }
rileya@google.com589708b2012-07-26 20:04:23 +0000902 gCache->add(storage.get(), size, *bitmap);
903 }
904}
905
commit-bot@chromium.org44d83c12014-04-21 13:10:25 +0000906void SkGradientShaderBase::commonAsAGradient(GradientInfo* info, bool flipGrad) const {
rileya@google.com589708b2012-07-26 20:04:23 +0000907 if (info) {
908 if (info->fColorCount >= fColorCount) {
commit-bot@chromium.org44d83c12014-04-21 13:10:25 +0000909 SkColor* colorLoc;
910 Rec* recLoc;
Hal Canaryab8e02a2017-02-27 09:59:39 -0500911 SkAutoSTArray<8, SkColor> colorStorage;
912 SkAutoSTArray<8, Rec> recStorage;
commit-bot@chromium.org44d83c12014-04-21 13:10:25 +0000913 if (flipGrad && (info->fColors || info->fColorOffsets)) {
Hal Canaryab8e02a2017-02-27 09:59:39 -0500914 colorStorage.reset(fColorCount);
915 recStorage.reset(fColorCount);
commit-bot@chromium.org44d83c12014-04-21 13:10:25 +0000916 colorLoc = colorStorage.get();
917 recLoc = recStorage.get();
918 FlipGradientColors(colorLoc, recLoc, fOrigColors, fRecs, fColorCount);
919 } else {
920 colorLoc = fOrigColors;
921 recLoc = fRecs;
922 }
rileya@google.com589708b2012-07-26 20:04:23 +0000923 if (info->fColors) {
commit-bot@chromium.org44d83c12014-04-21 13:10:25 +0000924 memcpy(info->fColors, colorLoc, fColorCount * sizeof(SkColor));
rileya@google.com589708b2012-07-26 20:04:23 +0000925 }
926 if (info->fColorOffsets) {
927 if (fColorCount == 2) {
928 info->fColorOffsets[0] = 0;
929 info->fColorOffsets[1] = SK_Scalar1;
930 } else if (fColorCount > 2) {
robertphillips@google.com76f9e932013-01-15 20:17:47 +0000931 for (int i = 0; i < fColorCount; ++i) {
commit-bot@chromium.org44d83c12014-04-21 13:10:25 +0000932 info->fColorOffsets[i] = SkFixedToScalar(recLoc[i].fPos);
robertphillips@google.com76f9e932013-01-15 20:17:47 +0000933 }
rileya@google.com589708b2012-07-26 20:04:23 +0000934 }
935 }
936 }
937 info->fColorCount = fColorCount;
938 info->fTileMode = fTileMode;
reed@google.com3d3a8602013-05-24 14:58:44 +0000939 info->fGradientFlags = fGradFlags;
rileya@google.com589708b2012-07-26 20:04:23 +0000940 }
941}
942
commit-bot@chromium.org0f10f7b2014-03-13 18:02:17 +0000943#ifndef SK_IGNORE_TO_STRING
robertphillips@google.com76f9e932013-01-15 20:17:47 +0000944void SkGradientShaderBase::toString(SkString* str) const {
945
946 str->appendf("%d colors: ", fColorCount);
947
948 for (int i = 0; i < fColorCount; ++i) {
robertphillipsf3f5bad2014-12-19 13:49:15 -0800949 str->appendHex(fOrigColors[i], 8);
robertphillips@google.com76f9e932013-01-15 20:17:47 +0000950 if (i < fColorCount-1) {
951 str->append(", ");
952 }
953 }
954
955 if (fColorCount > 2) {
956 str->append(" points: (");
957 for (int i = 0; i < fColorCount; ++i) {
958 str->appendScalar(SkFixedToScalar(fRecs[i].fPos));
959 if (i < fColorCount-1) {
960 str->append(", ");
961 }
962 }
963 str->append(")");
964 }
965
966 static const char* gTileModeName[SkShader::kTileModeCount] = {
967 "clamp", "repeat", "mirror"
968 };
969
970 str->append(" ");
971 str->append(gTileModeName[fTileMode]);
972
robertphillips@google.com76f9e932013-01-15 20:17:47 +0000973 this->INHERITED::toString(str);
974}
975#endif
976
rileya@google.com589708b2012-07-26 20:04:23 +0000977///////////////////////////////////////////////////////////////////////////////
978///////////////////////////////////////////////////////////////////////////////
979
reed1b747302015-01-06 07:13:19 -0800980// Return true if these parameters are valid/legal/safe to construct a gradient
981//
brianosmane25d71c2016-09-28 11:27:28 -0700982static bool valid_grad(const SkColor4f colors[], const SkScalar pos[], int count,
983 unsigned tileMode) {
halcanary96fcdcc2015-08-27 07:41:13 -0700984 return nullptr != colors && count >= 1 && tileMode < (unsigned)SkShader::kTileModeCount;
reed1b747302015-01-06 07:13:19 -0800985}
986
reed@google.com437d6eb2013-05-23 19:03:05 +0000987static void desc_init(SkGradientShaderBase::Descriptor* desc,
brianosmane25d71c2016-09-28 11:27:28 -0700988 const SkColor4f colors[], sk_sp<SkColorSpace> colorSpace,
989 const SkScalar pos[], int colorCount,
reedaddf2ed2014-08-11 08:28:24 -0700990 SkShader::TileMode mode, uint32_t flags, const SkMatrix* localMatrix) {
fmalita748d6202016-05-11 11:39:58 -0700991 SkASSERT(colorCount > 1);
992
commit-bot@chromium.org6c5aea22014-04-22 16:25:15 +0000993 desc->fColors = colors;
brianosmane25d71c2016-09-28 11:27:28 -0700994 desc->fColorSpace = std::move(colorSpace);
commit-bot@chromium.org6c5aea22014-04-22 16:25:15 +0000995 desc->fPos = pos;
996 desc->fCount = colorCount;
997 desc->fTileMode = mode;
commit-bot@chromium.org6c5aea22014-04-22 16:25:15 +0000998 desc->fGradFlags = flags;
reedaddf2ed2014-08-11 08:28:24 -0700999 desc->fLocalMatrix = localMatrix;
reed@google.com437d6eb2013-05-23 19:03:05 +00001000}
1001
brianosmane25d71c2016-09-28 11:27:28 -07001002// assumes colors is SkColor4f* and pos is SkScalar*
fmenozzie9fd0f82016-08-19 07:50:57 -07001003#define EXPAND_1_COLOR(count) \
brianosmane25d71c2016-09-28 11:27:28 -07001004 SkColor4f tmp[2]; \
fmenozzie9fd0f82016-08-19 07:50:57 -07001005 do { \
1006 if (1 == count) { \
1007 tmp[0] = tmp[1] = colors[0]; \
1008 colors = tmp; \
1009 pos = nullptr; \
1010 count = 2; \
1011 } \
1012 } while (0)
1013
fmenozzi68d952c2016-08-19 08:56:56 -07001014struct ColorStopOptimizer {
brianosmane25d71c2016-09-28 11:27:28 -07001015 ColorStopOptimizer(const SkColor4f* colors, const SkScalar* pos,
fmenozzi68d952c2016-08-19 08:56:56 -07001016 int count, SkShader::TileMode mode)
1017 : fColors(colors)
1018 , fPos(pos)
1019 , fCount(count) {
1020
1021 if (!pos || count != 3) {
1022 return;
1023 }
1024
1025 if (SkScalarNearlyEqual(pos[0], 0.0f) &&
1026 SkScalarNearlyEqual(pos[1], 0.0f) &&
1027 SkScalarNearlyEqual(pos[2], 1.0f)) {
1028
1029 if (SkShader::kRepeat_TileMode == mode ||
1030 SkShader::kMirror_TileMode == mode ||
1031 colors[0] == colors[1]) {
1032
fmalita582a6562016-08-22 06:28:57 -07001033 // Ignore the leftmost color/pos.
1034 fColors += 1;
1035 fPos += 1;
1036 fCount = 2;
fmenozzi68d952c2016-08-19 08:56:56 -07001037 }
1038 } else if (SkScalarNearlyEqual(pos[0], 0.0f) &&
1039 SkScalarNearlyEqual(pos[1], 1.0f) &&
1040 SkScalarNearlyEqual(pos[2], 1.0f)) {
1041
1042 if (SkShader::kRepeat_TileMode == mode ||
1043 SkShader::kMirror_TileMode == mode ||
1044 colors[1] == colors[2]) {
1045
fmalita582a6562016-08-22 06:28:57 -07001046 // Ignore the rightmost color/pos.
fmenozzi68d952c2016-08-19 08:56:56 -07001047 fCount = 2;
1048 }
1049 }
1050 }
1051
brianosmane25d71c2016-09-28 11:27:28 -07001052 const SkColor4f* fColors;
1053 const SkScalar* fPos;
1054 int fCount;
1055};
1056
1057struct ColorConverter {
1058 ColorConverter(const SkColor* colors, int count) {
1059 for (int i = 0; i < count; ++i) {
1060 fColors4f.push_back(SkColor4f::FromColor(colors[i]));
1061 }
1062 }
1063
1064 SkSTArray<2, SkColor4f, true> fColors4f;
fmenozzi68d952c2016-08-19 08:56:56 -07001065};
1066
reed8a21c9f2016-03-08 18:50:00 -08001067sk_sp<SkShader> SkGradientShader::MakeLinear(const SkPoint pts[2],
fmenozzi68d952c2016-08-19 08:56:56 -07001068 const SkColor colors[],
1069 const SkScalar pos[], int colorCount,
1070 SkShader::TileMode mode,
1071 uint32_t flags,
1072 const SkMatrix* localMatrix) {
brianosmane25d71c2016-09-28 11:27:28 -07001073 ColorConverter converter(colors, colorCount);
1074 return MakeLinear(pts, converter.fColors4f.begin(), nullptr, pos, colorCount, mode, flags,
1075 localMatrix);
1076}
1077
1078sk_sp<SkShader> SkGradientShader::MakeLinear(const SkPoint pts[2],
1079 const SkColor4f colors[],
1080 sk_sp<SkColorSpace> colorSpace,
1081 const SkScalar pos[], int colorCount,
1082 SkShader::TileMode mode,
1083 uint32_t flags,
1084 const SkMatrix* localMatrix) {
fmalitac5231042016-08-10 05:45:50 -07001085 if (!pts || !SkScalarIsFinite((pts[1] - pts[0]).length())) {
halcanary96fcdcc2015-08-27 07:41:13 -07001086 return nullptr;
reed1b747302015-01-06 07:13:19 -08001087 }
1088 if (!valid_grad(colors, pos, colorCount, mode)) {
halcanary96fcdcc2015-08-27 07:41:13 -07001089 return nullptr;
rileya@google.com589708b2012-07-26 20:04:23 +00001090 }
fmenozzie9fd0f82016-08-19 07:50:57 -07001091 if (1 == colorCount) {
brianosmane25d71c2016-09-28 11:27:28 -07001092 return SkShader::MakeColorShader(colors[0], std::move(colorSpace));
fmenozzie9fd0f82016-08-19 07:50:57 -07001093 }
Florin Malita8d3ffad2017-02-03 18:21:17 +00001094 if (localMatrix && !localMatrix->invert(nullptr)) {
1095 return nullptr;
1096 }
rileya@google.com589708b2012-07-26 20:04:23 +00001097
fmenozzi68d952c2016-08-19 08:56:56 -07001098 ColorStopOptimizer opt(colors, pos, colorCount, mode);
1099
reed@google.com437d6eb2013-05-23 19:03:05 +00001100 SkGradientShaderBase::Descriptor desc;
brianosmane25d71c2016-09-28 11:27:28 -07001101 desc_init(&desc, opt.fColors, std::move(colorSpace), opt.fPos, opt.fCount, mode, flags,
1102 localMatrix);
reed8a21c9f2016-03-08 18:50:00 -08001103 return sk_make_sp<SkLinearGradient>(pts, desc);
rileya@google.com589708b2012-07-26 20:04:23 +00001104}
1105
reed8a21c9f2016-03-08 18:50:00 -08001106sk_sp<SkShader> SkGradientShader::MakeRadial(const SkPoint& center, SkScalar radius,
brianosmane25d71c2016-09-28 11:27:28 -07001107 const SkColor colors[],
1108 const SkScalar pos[], int colorCount,
1109 SkShader::TileMode mode,
1110 uint32_t flags,
1111 const SkMatrix* localMatrix) {
1112 ColorConverter converter(colors, colorCount);
1113 return MakeRadial(center, radius, converter.fColors4f.begin(), nullptr, pos, colorCount, mode,
1114 flags, localMatrix);
1115}
1116
1117sk_sp<SkShader> SkGradientShader::MakeRadial(const SkPoint& center, SkScalar radius,
1118 const SkColor4f colors[],
1119 sk_sp<SkColorSpace> colorSpace,
1120 const SkScalar pos[], int colorCount,
1121 SkShader::TileMode mode,
1122 uint32_t flags,
1123 const SkMatrix* localMatrix) {
reed1b747302015-01-06 07:13:19 -08001124 if (radius <= 0) {
halcanary96fcdcc2015-08-27 07:41:13 -07001125 return nullptr;
reed1b747302015-01-06 07:13:19 -08001126 }
1127 if (!valid_grad(colors, pos, colorCount, mode)) {
halcanary96fcdcc2015-08-27 07:41:13 -07001128 return nullptr;
rileya@google.com589708b2012-07-26 20:04:23 +00001129 }
fmenozzie9fd0f82016-08-19 07:50:57 -07001130 if (1 == colorCount) {
brianosmane25d71c2016-09-28 11:27:28 -07001131 return SkShader::MakeColorShader(colors[0], std::move(colorSpace));
fmenozzie9fd0f82016-08-19 07:50:57 -07001132 }
Florin Malita8d3ffad2017-02-03 18:21:17 +00001133 if (localMatrix && !localMatrix->invert(nullptr)) {
1134 return nullptr;
1135 }
rileya@google.com589708b2012-07-26 20:04:23 +00001136
fmenozzi68d952c2016-08-19 08:56:56 -07001137 ColorStopOptimizer opt(colors, pos, colorCount, mode);
1138
reed@google.com437d6eb2013-05-23 19:03:05 +00001139 SkGradientShaderBase::Descriptor desc;
brianosmane25d71c2016-09-28 11:27:28 -07001140 desc_init(&desc, opt.fColors, std::move(colorSpace), opt.fPos, opt.fCount, mode, flags,
1141 localMatrix);
reed8a21c9f2016-03-08 18:50:00 -08001142 return sk_make_sp<SkRadialGradient>(center, radius, desc);
rileya@google.com589708b2012-07-26 20:04:23 +00001143}
1144
reed8a21c9f2016-03-08 18:50:00 -08001145sk_sp<SkShader> SkGradientShader::MakeTwoPointConical(const SkPoint& start,
brianosmane25d71c2016-09-28 11:27:28 -07001146 SkScalar startRadius,
1147 const SkPoint& end,
1148 SkScalar endRadius,
1149 const SkColor colors[],
1150 const SkScalar pos[],
1151 int colorCount,
1152 SkShader::TileMode mode,
1153 uint32_t flags,
1154 const SkMatrix* localMatrix) {
1155 ColorConverter converter(colors, colorCount);
1156 return MakeTwoPointConical(start, startRadius, end, endRadius, converter.fColors4f.begin(),
1157 nullptr, pos, colorCount, mode, flags, localMatrix);
1158}
1159
1160sk_sp<SkShader> SkGradientShader::MakeTwoPointConical(const SkPoint& start,
1161 SkScalar startRadius,
1162 const SkPoint& end,
1163 SkScalar endRadius,
1164 const SkColor4f colors[],
1165 sk_sp<SkColorSpace> colorSpace,
1166 const SkScalar pos[],
1167 int colorCount,
1168 SkShader::TileMode mode,
1169 uint32_t flags,
1170 const SkMatrix* localMatrix) {
reed1b747302015-01-06 07:13:19 -08001171 if (startRadius < 0 || endRadius < 0) {
halcanary96fcdcc2015-08-27 07:41:13 -07001172 return nullptr;
reed1b747302015-01-06 07:13:19 -08001173 }
1174 if (!valid_grad(colors, pos, colorCount, mode)) {
halcanary96fcdcc2015-08-27 07:41:13 -07001175 return nullptr;
rileya@google.com589708b2012-07-26 20:04:23 +00001176 }
fmalita5edf82e2016-03-03 06:41:54 -08001177 if (startRadius == endRadius) {
1178 if (start == end || startRadius == 0) {
reed8a21c9f2016-03-08 18:50:00 -08001179 return SkShader::MakeEmptyShader();
fmalita5edf82e2016-03-03 06:41:54 -08001180 }
rileya@google.com589708b2012-07-26 20:04:23 +00001181 }
Florin Malita8d3ffad2017-02-03 18:21:17 +00001182 if (localMatrix && !localMatrix->invert(nullptr)) {
1183 return nullptr;
1184 }
reed6b7a6c72016-08-18 16:13:50 -07001185 EXPAND_1_COLOR(colorCount);
rileya@google.com589708b2012-07-26 20:04:23 +00001186
fmenozzi68d952c2016-08-19 08:56:56 -07001187 ColorStopOptimizer opt(colors, pos, colorCount, mode);
1188
commit-bot@chromium.org44d83c12014-04-21 13:10:25 +00001189 bool flipGradient = startRadius > endRadius;
1190
reed@google.com437d6eb2013-05-23 19:03:05 +00001191 SkGradientShaderBase::Descriptor desc;
commit-bot@chromium.org44d83c12014-04-21 13:10:25 +00001192
1193 if (!flipGradient) {
brianosmane25d71c2016-09-28 11:27:28 -07001194 desc_init(&desc, opt.fColors, std::move(colorSpace), opt.fPos, opt.fCount, mode, flags,
1195 localMatrix);
reed8a21c9f2016-03-08 18:50:00 -08001196 return sk_make_sp<SkTwoPointConicalGradient>(start, startRadius, end, endRadius,
1197 flipGradient, desc);
commit-bot@chromium.org44d83c12014-04-21 13:10:25 +00001198 } else {
brianosmane25d71c2016-09-28 11:27:28 -07001199 SkAutoSTArray<8, SkColor4f> colorsNew(opt.fCount);
tomhudson54d9b662016-09-16 14:22:49 -07001200 SkAutoSTArray<8, SkScalar> posNew(opt.fCount);
1201 for (int i = 0; i < opt.fCount; ++i) {
1202 colorsNew[i] = opt.fColors[opt.fCount - i - 1];
commit-bot@chromium.org44d83c12014-04-21 13:10:25 +00001203 }
1204
1205 if (pos) {
tomhudson54d9b662016-09-16 14:22:49 -07001206 for (int i = 0; i < opt.fCount; ++i) {
1207 posNew[i] = 1 - opt.fPos[opt.fCount - i - 1];
commit-bot@chromium.org44d83c12014-04-21 13:10:25 +00001208 }
brianosmane25d71c2016-09-28 11:27:28 -07001209 desc_init(&desc, colorsNew.get(), std::move(colorSpace), posNew.get(), opt.fCount, mode,
1210 flags, localMatrix);
commit-bot@chromium.org44d83c12014-04-21 13:10:25 +00001211 } else {
brianosmane25d71c2016-09-28 11:27:28 -07001212 desc_init(&desc, colorsNew.get(), std::move(colorSpace), nullptr, opt.fCount, mode,
1213 flags, localMatrix);
commit-bot@chromium.org44d83c12014-04-21 13:10:25 +00001214 }
1215
reed8a21c9f2016-03-08 18:50:00 -08001216 return sk_make_sp<SkTwoPointConicalGradient>(end, endRadius, start, startRadius,
1217 flipGradient, desc);
commit-bot@chromium.org44d83c12014-04-21 13:10:25 +00001218 }
rileya@google.com589708b2012-07-26 20:04:23 +00001219}
1220
reed8a21c9f2016-03-08 18:50:00 -08001221sk_sp<SkShader> SkGradientShader::MakeSweep(SkScalar cx, SkScalar cy,
brianosmane25d71c2016-09-28 11:27:28 -07001222 const SkColor colors[],
1223 const SkScalar pos[],
1224 int colorCount,
1225 uint32_t flags,
1226 const SkMatrix* localMatrix) {
1227 ColorConverter converter(colors, colorCount);
1228 return MakeSweep(cx, cy, converter.fColors4f.begin(), nullptr, pos, colorCount, flags,
1229 localMatrix);
1230}
1231
1232sk_sp<SkShader> SkGradientShader::MakeSweep(SkScalar cx, SkScalar cy,
1233 const SkColor4f colors[],
1234 sk_sp<SkColorSpace> colorSpace,
1235 const SkScalar pos[],
1236 int colorCount,
1237 uint32_t flags,
1238 const SkMatrix* localMatrix) {
reed1b747302015-01-06 07:13:19 -08001239 if (!valid_grad(colors, pos, colorCount, SkShader::kClamp_TileMode)) {
halcanary96fcdcc2015-08-27 07:41:13 -07001240 return nullptr;
rileya@google.com589708b2012-07-26 20:04:23 +00001241 }
fmenozzie9fd0f82016-08-19 07:50:57 -07001242 if (1 == colorCount) {
brianosmane25d71c2016-09-28 11:27:28 -07001243 return SkShader::MakeColorShader(colors[0], std::move(colorSpace));
fmenozzie9fd0f82016-08-19 07:50:57 -07001244 }
Florin Malita8d3ffad2017-02-03 18:21:17 +00001245 if (localMatrix && !localMatrix->invert(nullptr)) {
1246 return nullptr;
1247 }
rileya@google.com589708b2012-07-26 20:04:23 +00001248
fmenozzi68d952c2016-08-19 08:56:56 -07001249 auto mode = SkShader::kClamp_TileMode;
1250
1251 ColorStopOptimizer opt(colors, pos, colorCount, mode);
1252
reed@google.com437d6eb2013-05-23 19:03:05 +00001253 SkGradientShaderBase::Descriptor desc;
brianosmane25d71c2016-09-28 11:27:28 -07001254 desc_init(&desc, opt.fColors, std::move(colorSpace), opt.fPos, opt.fCount, mode, flags,
1255 localMatrix);
reed8a21c9f2016-03-08 18:50:00 -08001256 return sk_make_sp<SkSweepGradient>(cx, cy, desc);
rileya@google.com589708b2012-07-26 20:04:23 +00001257}
1258
1259SK_DEFINE_FLATTENABLE_REGISTRAR_GROUP_START(SkGradientShader)
1260 SK_DEFINE_FLATTENABLE_REGISTRAR_ENTRY(SkLinearGradient)
1261 SK_DEFINE_FLATTENABLE_REGISTRAR_ENTRY(SkRadialGradient)
1262 SK_DEFINE_FLATTENABLE_REGISTRAR_ENTRY(SkSweepGradient)
rileya@google.com589708b2012-07-26 20:04:23 +00001263 SK_DEFINE_FLATTENABLE_REGISTRAR_ENTRY(SkTwoPointConicalGradient)
1264SK_DEFINE_FLATTENABLE_REGISTRAR_GROUP_END
rileya@google.comd7cc6512012-07-27 14:00:39 +00001265
1266///////////////////////////////////////////////////////////////////////////////
1267
bsalomon@google.comcf8fb1f2012-08-02 14:03:32 +00001268#if SK_SUPPORT_GPU
1269
brianosmana6359362016-03-21 06:55:37 -07001270#include "GrContext.h"
Brian Salomon94efbf52016-11-29 13:43:05 -05001271#include "GrShaderCaps.h"
ajuma95243eb2016-08-24 08:19:02 -07001272#include "GrTextureStripAtlas.h"
egdanielf5294392015-10-21 07:14:17 -07001273#include "gl/GrGLContext.h"
brianosmand4546092016-09-22 12:31:58 -07001274#include "glsl/GrGLSLColorSpaceXformHelper.h"
egdaniel2d721d32015-11-11 13:06:05 -08001275#include "glsl/GrGLSLFragmentShaderBuilder.h"
egdaniel018fb622015-10-28 07:26:40 -07001276#include "glsl/GrGLSLProgramDataManager.h"
egdaniel7ea439b2015-12-03 09:20:44 -08001277#include "glsl/GrGLSLUniformHandler.h"
bsalomon@google.comcf8fb1f2012-08-02 14:03:32 +00001278#include "SkGr.h"
1279
fmenozzicd9a1d02016-08-15 07:03:47 -07001280static inline bool close_to_one_half(const SkFixed& val) {
1281 return SkScalarNearlyEqual(SkFixedToScalar(val), SK_ScalarHalf);
1282}
1283
1284static inline int color_type_to_color_count(GrGradientEffect::ColorType colorType) {
1285 switch (colorType) {
1286#if GR_GL_USE_ACCURATE_HARD_STOP_GRADIENTS
Brian Salomon466ad992016-10-13 16:08:36 -04001287 case GrGradientEffect::kSingleHardStop_ColorType:
fmenozzicd9a1d02016-08-15 07:03:47 -07001288 return 4;
1289 case GrGradientEffect::kHardStopLeftEdged_ColorType:
1290 case GrGradientEffect::kHardStopRightEdged_ColorType:
1291 return 3;
1292#endif
1293 case GrGradientEffect::kTwo_ColorType:
1294 return 2;
1295 case GrGradientEffect::kThree_ColorType:
1296 return 3;
1297 case GrGradientEffect::kTexture_ColorType:
1298 return 0;
1299 }
1300
1301 SkDEBUGFAIL("Unhandled ColorType in color_type_to_color_count()");
1302 return -1;
1303}
1304
1305GrGradientEffect::ColorType GrGradientEffect::determineColorType(
1306 const SkGradientShaderBase& shader) {
1307#if GR_GL_USE_ACCURATE_HARD_STOP_GRADIENTS
1308 if (shader.fOrigPos) {
1309 if (4 == shader.fColorCount) {
1310 if (SkScalarNearlyEqual(shader.fOrigPos[0], 0.0f) &&
Brian Salomon466ad992016-10-13 16:08:36 -04001311 SkScalarNearlyEqual(shader.fOrigPos[1], shader.fOrigPos[2]) &&
fmenozzicd9a1d02016-08-15 07:03:47 -07001312 SkScalarNearlyEqual(shader.fOrigPos[3], 1.0f)) {
1313
Brian Salomon466ad992016-10-13 16:08:36 -04001314 return kSingleHardStop_ColorType;
fmenozzicd9a1d02016-08-15 07:03:47 -07001315 }
1316 } else if (3 == shader.fColorCount) {
1317 if (SkScalarNearlyEqual(shader.fOrigPos[0], 0.0f) &&
1318 SkScalarNearlyEqual(shader.fOrigPos[1], 0.0f) &&
1319 SkScalarNearlyEqual(shader.fOrigPos[2], 1.0f)) {
1320
1321 return kHardStopLeftEdged_ColorType;
1322 } else if (SkScalarNearlyEqual(shader.fOrigPos[0], 0.0f) &&
1323 SkScalarNearlyEqual(shader.fOrigPos[1], 1.0f) &&
1324 SkScalarNearlyEqual(shader.fOrigPos[2], 1.0f)) {
Mike Kleina3771842017-05-04 19:38:48 -04001325
fmenozzicd9a1d02016-08-15 07:03:47 -07001326 return kHardStopRightEdged_ColorType;
1327 }
1328 }
1329 }
1330#endif
1331
1332 if (SkShader::kClamp_TileMode == shader.getTileMode()) {
1333 if (2 == shader.fColorCount) {
1334 return kTwo_ColorType;
1335 } else if (3 == shader.fColorCount &&
1336 close_to_one_half(shader.getRecs()[1].fPos)) {
1337 return kThree_ColorType;
1338 }
1339 }
1340
1341 return kTexture_ColorType;
bsalomon@google.comd8b5fac2012-11-01 17:02:46 +00001342}
rileya@google.comd7cc6512012-07-27 14:00:39 +00001343
fmenozzi55d318d2016-08-09 08:05:57 -07001344void GrGradientEffect::GLSLProcessor::emitUniforms(GrGLSLUniformHandler* uniformHandler,
1345 const GrGradientEffect& ge) {
fmenozzicd9a1d02016-08-15 07:03:47 -07001346 if (int colorCount = color_type_to_color_count(ge.getColorType())) {
1347 fColorsUni = uniformHandler->addUniformArray(kFragment_GrShaderFlag,
1348 kVec4f_GrSLType,
1349 kDefault_GrSLPrecision,
1350 "Colors",
1351 colorCount);
Brian Salomon466ad992016-10-13 16:08:36 -04001352 if (ge.fColorType == kSingleHardStop_ColorType) {
1353 fHardStopT = uniformHandler->addUniform(kFragment_GrShaderFlag, kFloat_GrSLType,
1354 kDefault_GrSLPrecision, "HardStopT");
1355 }
fmenozzicd9a1d02016-08-15 07:03:47 -07001356 } else {
cdalton5e58cee2016-02-11 12:49:47 -08001357 fFSYUni = uniformHandler->addUniform(kFragment_GrShaderFlag,
egdaniel7ea439b2015-12-03 09:20:44 -08001358 kFloat_GrSLType, kDefault_GrSLPrecision,
1359 "GradientYCoordFS");
bsalomon@google.com82d12232013-09-09 15:36:26 +00001360 }
1361}
1362
brianosmanb9c51372016-09-15 11:09:45 -07001363static inline void set_after_interp_color_uni_array(
1364 const GrGLSLProgramDataManager& pdman,
1365 const GrGLSLProgramDataManager::UniformHandle uni,
1366 const SkTDArray<SkColor4f>& colors,
1367 const GrColorSpaceXform* colorSpaceXform) {
1368 int count = colors.count();
1369 if (colorSpaceXform) {
1370 constexpr int kSmallCount = 10;
1371 SkAutoSTArray<4 * kSmallCount, float> vals(4 * count);
1372
1373 for (int i = 0; i < count; i++) {
1374 colorSpaceXform->srcToDst().mapScalars(colors[i].vec(), &vals[4 * i]);
1375 }
1376
1377 pdman.set4fv(uni, count, vals.get());
1378 } else {
1379 pdman.set4fv(uni, count, (float*)&colors[0]);
1380 }
1381}
1382
1383static inline void set_before_interp_color_uni_array(
1384 const GrGLSLProgramDataManager& pdman,
1385 const GrGLSLProgramDataManager::UniformHandle uni,
1386 const SkTDArray<SkColor4f>& colors,
1387 const GrColorSpaceXform* colorSpaceXform) {
1388 int count = colors.count();
1389 constexpr int kSmallCount = 10;
1390 SkAutoSTArray<4 * kSmallCount, float> vals(4 * count);
1391
1392 for (int i = 0; i < count; i++) {
1393 float a = colors[i].fA;
1394 vals[4 * i + 0] = colors[i].fR * a;
1395 vals[4 * i + 1] = colors[i].fG * a;
1396 vals[4 * i + 2] = colors[i].fB * a;
1397 vals[4 * i + 3] = a;
1398 }
1399
1400 if (colorSpaceXform) {
1401 for (int i = 0; i < count; i++) {
1402 colorSpaceXform->srcToDst().mapScalars(&vals[4 * i]);
1403 }
1404 }
1405
1406 pdman.set4fv(uni, count, vals.get());
1407}
1408
fmenozzicd9a1d02016-08-15 07:03:47 -07001409static inline void set_after_interp_color_uni_array(const GrGLSLProgramDataManager& pdman,
1410 const GrGLSLProgramDataManager::UniformHandle uni,
1411 const SkTDArray<SkColor>& colors) {
1412 int count = colors.count();
1413 constexpr int kSmallCount = 10;
1414
1415 SkAutoSTArray<4*kSmallCount, float> vals(4*count);
1416
1417 for (int i = 0; i < colors.count(); i++) {
1418 // RGBA
1419 vals[4*i + 0] = SkColorGetR(colors[i]) / 255.f;
1420 vals[4*i + 1] = SkColorGetG(colors[i]) / 255.f;
1421 vals[4*i + 2] = SkColorGetB(colors[i]) / 255.f;
1422 vals[4*i + 3] = SkColorGetA(colors[i]) / 255.f;
1423 }
1424
1425 pdman.set4fv(uni, colors.count(), vals.get());
bsalomon@google.com82d12232013-09-09 15:36:26 +00001426}
1427
fmenozzicd9a1d02016-08-15 07:03:47 -07001428static inline void set_before_interp_color_uni_array(const GrGLSLProgramDataManager& pdman,
1429 const GrGLSLProgramDataManager::UniformHandle uni,
1430 const SkTDArray<SkColor>& colors) {
1431 int count = colors.count();
1432 constexpr int kSmallCount = 10;
1433
1434 SkAutoSTArray<4*kSmallCount, float> vals(4*count);
1435
1436 for (int i = 0; i < count; i++) {
1437 float a = SkColorGetA(colors[i]) / 255.f;
1438 float aDiv255 = a / 255.f;
1439
1440 // RGBA
1441 vals[4*i + 0] = SkColorGetR(colors[i]) * aDiv255;
1442 vals[4*i + 1] = SkColorGetG(colors[i]) * aDiv255;
1443 vals[4*i + 2] = SkColorGetB(colors[i]) * aDiv255;
1444 vals[4*i + 3] = a;
1445 }
1446
1447 pdman.set4fv(uni, count, vals.get());
rileya@google.comb3e50f22012-08-20 17:43:08 +00001448}
1449
fmenozzi55d318d2016-08-09 08:05:57 -07001450void GrGradientEffect::GLSLProcessor::onSetData(const GrGLSLProgramDataManager& pdman,
Brian Salomonab015ef2017-04-04 10:15:51 -04001451 const GrFragmentProcessor& processor) {
joshualittb0a8a372014-09-23 09:50:21 -07001452 const GrGradientEffect& e = processor.cast<GrGradientEffect>();
bsalomon@google.com82d12232013-09-09 15:36:26 +00001453
fmenozzicd9a1d02016-08-15 07:03:47 -07001454 switch (e.getColorType()) {
1455#if GR_GL_USE_ACCURATE_HARD_STOP_GRADIENTS
Brian Salomon466ad992016-10-13 16:08:36 -04001456 case GrGradientEffect::kSingleHardStop_ColorType:
1457 pdman.set1f(fHardStopT, e.fPositions[1]);
1458 // fall through
fmenozzicd9a1d02016-08-15 07:03:47 -07001459 case GrGradientEffect::kHardStopLeftEdged_ColorType:
1460 case GrGradientEffect::kHardStopRightEdged_ColorType:
1461#endif
1462 case GrGradientEffect::kTwo_ColorType:
1463 case GrGradientEffect::kThree_ColorType: {
brianosmanb9c51372016-09-15 11:09:45 -07001464 if (e.fColors4f.count() > 0) {
1465 // Gamma-correct / color-space aware
1466 if (GrGradientEffect::kBeforeInterp_PremulType == e.getPremulType()) {
1467 set_before_interp_color_uni_array(pdman, fColorsUni, e.fColors4f,
1468 e.fColorSpaceXform.get());
1469 } else {
1470 set_after_interp_color_uni_array(pdman, fColorsUni, e.fColors4f,
1471 e.fColorSpaceXform.get());
1472 }
fmenozzicd9a1d02016-08-15 07:03:47 -07001473 } else {
brianosmanb9c51372016-09-15 11:09:45 -07001474 // Legacy mode. Would be nice if we had converted the 8-bit colors to float earlier
1475 if (GrGradientEffect::kBeforeInterp_PremulType == e.getPremulType()) {
1476 set_before_interp_color_uni_array(pdman, fColorsUni, e.fColors);
1477 } else {
1478 set_after_interp_color_uni_array(pdman, fColorsUni, e.fColors);
1479 }
fmenozzicd9a1d02016-08-15 07:03:47 -07001480 }
bsalomon@google.com82d12232013-09-09 15:36:26 +00001481
fmenozzicd9a1d02016-08-15 07:03:47 -07001482 break;
bsalomon@google.com82d12232013-09-09 15:36:26 +00001483 }
1484
fmenozzicd9a1d02016-08-15 07:03:47 -07001485 case GrGradientEffect::kTexture_ColorType: {
1486 SkScalar yCoord = e.getYCoord();
1487 if (yCoord != fCachedYCoord) {
1488 pdman.set1f(fFSYUni, yCoord);
1489 fCachedYCoord = yCoord;
1490 }
brianosmand4546092016-09-22 12:31:58 -07001491 if (SkToBool(e.fColorSpaceXform)) {
Brian Osmanc624d9d2017-03-08 11:42:02 -05001492 fColorSpaceHelper.setData(pdman, e.fColorSpaceXform.get());
brianosmand4546092016-09-22 12:31:58 -07001493 }
fmenozzicd9a1d02016-08-15 07:03:47 -07001494 break;
bsalomon@google.com82d12232013-09-09 15:36:26 +00001495 }
rileya@google.comb3e50f22012-08-20 17:43:08 +00001496 }
1497}
1498
fmenozzi55d318d2016-08-09 08:05:57 -07001499uint32_t GrGradientEffect::GLSLProcessor::GenBaseGradientKey(const GrProcessor& processor) {
joshualittb0a8a372014-09-23 09:50:21 -07001500 const GrGradientEffect& e = processor.cast<GrGradientEffect>();
skia.committer@gmail.com9a070f22013-09-10 07:01:44 +00001501
bsalomon63e99f72014-07-21 08:03:14 -07001502 uint32_t key = 0;
bsalomon@google.com82d12232013-09-09 15:36:26 +00001503
bsalomon@google.com82d12232013-09-09 15:36:26 +00001504 if (GrGradientEffect::kBeforeInterp_PremulType == e.getPremulType()) {
1505 key |= kPremulBeforeInterpKey;
1506 }
1507
fmenozzicd9a1d02016-08-15 07:03:47 -07001508 if (GrGradientEffect::kTwo_ColorType == e.getColorType()) {
1509 key |= kTwoColorKey;
1510 } else if (GrGradientEffect::kThree_ColorType == e.getColorType()) {
1511 key |= kThreeColorKey;
1512 }
1513#if GR_GL_USE_ACCURATE_HARD_STOP_GRADIENTS
Brian Salomon466ad992016-10-13 16:08:36 -04001514 else if (GrGradientEffect::kSingleHardStop_ColorType == e.getColorType()) {
fmenozzicd9a1d02016-08-15 07:03:47 -07001515 key |= kHardStopCenteredKey;
1516 } else if (GrGradientEffect::kHardStopLeftEdged_ColorType == e.getColorType()) {
1517 key |= kHardStopZeroZeroOneKey;
1518 } else if (GrGradientEffect::kHardStopRightEdged_ColorType == e.getColorType()) {
1519 key |= kHardStopZeroOneOneKey;
1520 }
Mike Kleina3771842017-05-04 19:38:48 -04001521
fmenozzicd9a1d02016-08-15 07:03:47 -07001522 if (SkShader::TileMode::kClamp_TileMode == e.fTileMode) {
1523 key |= kClampTileMode;
1524 } else if (SkShader::TileMode::kRepeat_TileMode == e.fTileMode) {
1525 key |= kRepeatTileMode;
1526 } else {
1527 key |= kMirrorTileMode;
1528 }
1529#endif
1530
brianosmand4546092016-09-22 12:31:58 -07001531 key |= GrColorSpaceXform::XformKey(e.fColorSpaceXform.get()) << kReservedBits;
1532
bsalomon@google.com82d12232013-09-09 15:36:26 +00001533 return key;
bsalomon@google.comd8b5fac2012-11-01 17:02:46 +00001534}
1535
fmenozzi55d318d2016-08-09 08:05:57 -07001536void GrGradientEffect::GLSLProcessor::emitColor(GrGLSLFPFragmentBuilder* fragBuilder,
1537 GrGLSLUniformHandler* uniformHandler,
Brian Salomon1edc5b92016-11-29 13:43:46 -05001538 const GrShaderCaps* shaderCaps,
fmenozzi55d318d2016-08-09 08:05:57 -07001539 const GrGradientEffect& ge,
1540 const char* gradientTValue,
1541 const char* outputColor,
1542 const char* inputColor,
bsalomonb58a2b42016-09-26 06:55:02 -07001543 const TextureSamplers& texSamplers) {
fmenozzicd9a1d02016-08-15 07:03:47 -07001544 switch (ge.getColorType()) {
1545#if GR_GL_USE_ACCURATE_HARD_STOP_GRADIENTS
Brian Salomon466ad992016-10-13 16:08:36 -04001546 case kSingleHardStop_ColorType: {
fmenozzicd9a1d02016-08-15 07:03:47 -07001547 const char* t = gradientTValue;
1548 const char* colors = uniformHandler->getUniformCStr(fColorsUni);
Brian Salomon466ad992016-10-13 16:08:36 -04001549 const char* stopT = uniformHandler->getUniformCStr(fHardStopT);
fmenozzicd9a1d02016-08-15 07:03:47 -07001550
1551 fragBuilder->codeAppendf("float clamp_t = clamp(%s, 0.0, 1.0);", t);
1552
1553 // Account for tile mode
1554 if (SkShader::kRepeat_TileMode == ge.fTileMode) {
1555 fragBuilder->codeAppendf("clamp_t = fract(%s);", t);
1556 } else if (SkShader::kMirror_TileMode == ge.fTileMode) {
1557 fragBuilder->codeAppendf("if (%s < 0.0 || %s > 1.0) {", t, t);
1558 fragBuilder->codeAppendf(" if (mod(floor(%s), 2.0) == 0.0) {", t);
1559 fragBuilder->codeAppendf(" clamp_t = fract(%s);", t);
1560 fragBuilder->codeAppendf(" } else {");
1561 fragBuilder->codeAppendf(" clamp_t = 1.0 - fract(%s);", t);
1562 fragBuilder->codeAppendf(" }");
1563 fragBuilder->codeAppendf("}");
1564 }
1565
1566 // Calculate color
Brian Salomon466ad992016-10-13 16:08:36 -04001567 fragBuilder->codeAppend ("vec4 start, end;");
1568 fragBuilder->codeAppend ("float relative_t;");
1569 fragBuilder->codeAppendf("if (clamp_t < %s) {", stopT);
1570 fragBuilder->codeAppendf(" start = %s[0];", colors);
1571 fragBuilder->codeAppendf(" end = %s[1];", colors);
1572 fragBuilder->codeAppendf(" relative_t = clamp_t / %s;", stopT);
1573 fragBuilder->codeAppend ("} else {");
fmenozziaf23ee52016-08-16 09:24:52 -07001574 fragBuilder->codeAppendf(" start = %s[2];", colors);
1575 fragBuilder->codeAppendf(" end = %s[3];", colors);
Brian Salomon466ad992016-10-13 16:08:36 -04001576 fragBuilder->codeAppendf(" relative_t = (clamp_t - %s) / (1 - %s);", stopT, stopT);
1577 fragBuilder->codeAppend ("}");
1578 fragBuilder->codeAppend ("vec4 colorTemp = mix(start, end, relative_t);");
fmenozzicd9a1d02016-08-15 07:03:47 -07001579
1580 if (GrGradientEffect::kAfterInterp_PremulType == ge.getPremulType()) {
1581 fragBuilder->codeAppend("colorTemp.rgb *= colorTemp.a;");
1582 }
Brian Salomonc5ca7f92017-02-21 14:35:11 -05001583 if (ge.fColorSpaceXform) {
1584 fragBuilder->codeAppend("colorTemp.rgb = clamp(colorTemp.rgb, 0, colorTemp.a);");
1585 }
Ethan Nicholas421fe442017-05-04 13:10:59 +00001586 fragBuilder->codeAppendf("%s = %s;", outputColor,
1587 (GrGLSLExpr4(inputColor) * GrGLSLExpr4("colorTemp")).c_str());
fmenozzicd9a1d02016-08-15 07:03:47 -07001588
1589 break;
bsalomon@google.com82d12232013-09-09 15:36:26 +00001590 }
bsalomon@google.com34bcb9f2012-08-28 18:20:18 +00001591
fmenozzicd9a1d02016-08-15 07:03:47 -07001592 case kHardStopLeftEdged_ColorType: {
1593 const char* t = gradientTValue;
1594 const char* colors = uniformHandler->getUniformCStr(fColorsUni);
1595
1596 fragBuilder->codeAppendf("float clamp_t = clamp(%s, 0.0, 1.0);", t);
1597
1598 // Account for tile mode
1599 if (SkShader::kRepeat_TileMode == ge.fTileMode) {
1600 fragBuilder->codeAppendf("clamp_t = fract(%s);", t);
1601 } else if (SkShader::kMirror_TileMode == ge.fTileMode) {
1602 fragBuilder->codeAppendf("if (%s < 0.0 || %s > 1.0) {", t, t);
1603 fragBuilder->codeAppendf(" if (mod(floor(%s), 2.0) == 0.0) {", t);
1604 fragBuilder->codeAppendf(" clamp_t = fract(%s);", t);
1605 fragBuilder->codeAppendf(" } else {");
1606 fragBuilder->codeAppendf(" clamp_t = 1.0 - fract(%s);", t);
1607 fragBuilder->codeAppendf(" }");
1608 fragBuilder->codeAppendf("}");
1609 }
1610
1611 fragBuilder->codeAppendf("vec4 colorTemp = mix(%s[1], %s[2], clamp_t);", colors,
1612 colors);
1613 if (SkShader::kClamp_TileMode == ge.fTileMode) {
1614 fragBuilder->codeAppendf("if (%s < 0.0) {", t);
1615 fragBuilder->codeAppendf(" colorTemp = %s[0];", colors);
1616 fragBuilder->codeAppendf("}");
1617 }
1618
1619 if (GrGradientEffect::kAfterInterp_PremulType == ge.getPremulType()) {
1620 fragBuilder->codeAppend("colorTemp.rgb *= colorTemp.a;");
1621 }
Brian Salomonc5ca7f92017-02-21 14:35:11 -05001622 if (ge.fColorSpaceXform) {
1623 fragBuilder->codeAppend("colorTemp.rgb = clamp(colorTemp.rgb, 0, colorTemp.a);");
1624 }
Ethan Nicholas421fe442017-05-04 13:10:59 +00001625 fragBuilder->codeAppendf("%s = %s;", outputColor,
1626 (GrGLSLExpr4(inputColor) * GrGLSLExpr4("colorTemp")).c_str());
fmenozzicd9a1d02016-08-15 07:03:47 -07001627
1628 break;
bsalomon@google.com82d12232013-09-09 15:36:26 +00001629 }
1630
fmenozzicd9a1d02016-08-15 07:03:47 -07001631 case kHardStopRightEdged_ColorType: {
1632 const char* t = gradientTValue;
1633 const char* colors = uniformHandler->getUniformCStr(fColorsUni);
1634
1635 fragBuilder->codeAppendf("float clamp_t = clamp(%s, 0.0, 1.0);", t);
1636
1637 // Account for tile mode
1638 if (SkShader::kRepeat_TileMode == ge.fTileMode) {
1639 fragBuilder->codeAppendf("clamp_t = fract(%s);", t);
1640 } else if (SkShader::kMirror_TileMode == ge.fTileMode) {
1641 fragBuilder->codeAppendf("if (%s < 0.0 || %s > 1.0) {", t, t);
1642 fragBuilder->codeAppendf(" if (mod(floor(%s), 2.0) == 0.0) {", t);
1643 fragBuilder->codeAppendf(" clamp_t = fract(%s);", t);
1644 fragBuilder->codeAppendf(" } else {");
1645 fragBuilder->codeAppendf(" clamp_t = 1.0 - fract(%s);", t);
1646 fragBuilder->codeAppendf(" }");
1647 fragBuilder->codeAppendf("}");
1648 }
1649
1650 fragBuilder->codeAppendf("vec4 colorTemp = mix(%s[0], %s[1], clamp_t);", colors,
1651 colors);
1652 if (SkShader::kClamp_TileMode == ge.fTileMode) {
1653 fragBuilder->codeAppendf("if (%s > 1.0) {", t);
1654 fragBuilder->codeAppendf(" colorTemp = %s[2];", colors);
1655 fragBuilder->codeAppendf("}");
1656 }
1657
1658 if (GrGradientEffect::kAfterInterp_PremulType == ge.getPremulType()) {
1659 fragBuilder->codeAppend("colorTemp.rgb *= colorTemp.a;");
1660 }
Brian Salomonc5ca7f92017-02-21 14:35:11 -05001661 if (ge.fColorSpaceXform) {
1662 fragBuilder->codeAppend("colorTemp.rgb = clamp(colorTemp.rgb, 0, colorTemp.a);");
1663 }
Ethan Nicholas421fe442017-05-04 13:10:59 +00001664 fragBuilder->codeAppendf("%s = %s;", outputColor,
1665 (GrGLSLExpr4(inputColor) * GrGLSLExpr4("colorTemp")).c_str());
fmenozzicd9a1d02016-08-15 07:03:47 -07001666
1667 break;
1668 }
1669#endif
1670
1671 case kTwo_ColorType: {
1672 const char* t = gradientTValue;
1673 const char* colors = uniformHandler->getUniformCStr(fColorsUni);
1674
1675 fragBuilder->codeAppendf("vec4 colorTemp = mix(%s[0], %s[1], clamp(%s, 0.0, 1.0));",
1676 colors, colors, t);
1677
1678 // We could skip this step if both colors are known to be opaque. Two
1679 // considerations:
1680 // The gradient SkShader reporting opaque is more restrictive than necessary in the two
1681 // pt case. Make sure the key reflects this optimization (and note that it can use the
1682 // same shader as thekBeforeIterp case). This same optimization applies to the 3 color
1683 // case below.
1684 if (GrGradientEffect::kAfterInterp_PremulType == ge.getPremulType()) {
1685 fragBuilder->codeAppend("colorTemp.rgb *= colorTemp.a;");
1686 }
Brian Salomonc5ca7f92017-02-21 14:35:11 -05001687 if (ge.fColorSpaceXform) {
1688 fragBuilder->codeAppend("colorTemp.rgb = clamp(colorTemp.rgb, 0, colorTemp.a);");
1689 }
fmenozzicd9a1d02016-08-15 07:03:47 -07001690
Ethan Nicholas421fe442017-05-04 13:10:59 +00001691 fragBuilder->codeAppendf("%s = %s;", outputColor,
1692 (GrGLSLExpr4(inputColor) * GrGLSLExpr4("colorTemp")).c_str());
fmenozzicd9a1d02016-08-15 07:03:47 -07001693
1694 break;
1695 }
1696
1697 case kThree_ColorType: {
1698 const char* t = gradientTValue;
1699 const char* colors = uniformHandler->getUniformCStr(fColorsUni);
1700
1701 fragBuilder->codeAppendf("float oneMinus2t = 1.0 - (2.0 * %s);", t);
1702 fragBuilder->codeAppendf("vec4 colorTemp = clamp(oneMinus2t, 0.0, 1.0) * %s[0];",
1703 colors);
Brian Salomon1edc5b92016-11-29 13:43:46 -05001704 if (!shaderCaps->canUseMinAndAbsTogether()) {
fmenozzicd9a1d02016-08-15 07:03:47 -07001705 // The Tegra3 compiler will sometimes never return if we have
1706 // min(abs(oneMinus2t), 1.0), or do the abs first in a separate expression.
1707 fragBuilder->codeAppendf("float minAbs = abs(oneMinus2t);");
1708 fragBuilder->codeAppendf("minAbs = minAbs > 1.0 ? 1.0 : minAbs;");
1709 fragBuilder->codeAppendf("colorTemp += (1.0 - minAbs) * %s[1];", colors);
1710 } else {
1711 fragBuilder->codeAppendf("colorTemp += (1.0 - min(abs(oneMinus2t), 1.0)) * %s[1];",
1712 colors);
1713 }
1714 fragBuilder->codeAppendf("colorTemp += clamp(-oneMinus2t, 0.0, 1.0) * %s[2];", colors);
1715
1716 if (GrGradientEffect::kAfterInterp_PremulType == ge.getPremulType()) {
1717 fragBuilder->codeAppend("colorTemp.rgb *= colorTemp.a;");
1718 }
Brian Salomonc5ca7f92017-02-21 14:35:11 -05001719 if (ge.fColorSpaceXform) {
1720 fragBuilder->codeAppend("colorTemp.rgb = clamp(colorTemp.rgb, 0, colorTemp.a);");
1721 }
fmenozzicd9a1d02016-08-15 07:03:47 -07001722
Ethan Nicholas421fe442017-05-04 13:10:59 +00001723 fragBuilder->codeAppendf("%s = %s;", outputColor,
1724 (GrGLSLExpr4(inputColor) * GrGLSLExpr4("colorTemp")).c_str());
fmenozzicd9a1d02016-08-15 07:03:47 -07001725
1726 break;
1727 }
1728
1729 case kTexture_ColorType: {
Brian Osmanc624d9d2017-03-08 11:42:02 -05001730 fColorSpaceHelper.emitCode(uniformHandler, ge.fColorSpaceXform.get());
brianosmand4546092016-09-22 12:31:58 -07001731
fmenozzicd9a1d02016-08-15 07:03:47 -07001732 const char* fsyuni = uniformHandler->getUniformCStr(fFSYUni);
1733
1734 fragBuilder->codeAppendf("vec2 coord = vec2(%s, %s);", gradientTValue, fsyuni);
1735 fragBuilder->codeAppendf("%s = ", outputColor);
brianosmand4546092016-09-22 12:31:58 -07001736 fragBuilder->appendTextureLookupAndModulate(inputColor, texSamplers[0], "coord",
Brian Osmanc624d9d2017-03-08 11:42:02 -05001737 kVec2f_GrSLType, &fColorSpaceHelper);
fmenozzicd9a1d02016-08-15 07:03:47 -07001738 fragBuilder->codeAppend(";");
1739
1740 break;
1741 }
bsalomon@google.com82d12232013-09-09 15:36:26 +00001742 }
rileya@google.comd7cc6512012-07-27 14:00:39 +00001743}
1744
1745/////////////////////////////////////////////////////////////////////
1746
Brian Salomon587e08f2017-01-27 10:59:27 -05001747inline GrFragmentProcessor::OptimizationFlags GrGradientEffect::OptFlags(bool isOpaque) {
Brian Salomonf3b995b2017-02-15 10:22:23 -05001748 return isOpaque
1749 ? kPreservesOpaqueInput_OptimizationFlag |
1750 kCompatibleWithCoverageAsAlpha_OptimizationFlag
1751 : kCompatibleWithCoverageAsAlpha_OptimizationFlag;
Brian Salomon587e08f2017-01-27 10:59:27 -05001752}
1753
1754GrGradientEffect::GrGradientEffect(const CreateArgs& args, bool isOpaque)
1755 : INHERITED(OptFlags(isOpaque)) {
brianosman9557c272016-09-15 06:59:15 -07001756 const SkGradientShaderBase& shader(*args.fShader);
bsalomon@google.com82d12232013-09-09 15:36:26 +00001757
bsalomon@google.com371e1052013-01-11 21:08:55 +00001758 fIsOpaque = shader.isOpaque();
1759
fmenozzicd9a1d02016-08-15 07:03:47 -07001760 fColorType = this->determineColorType(shader);
brianosmand4546092016-09-22 12:31:58 -07001761 fColorSpaceXform = std::move(args.fColorSpaceXform);
bsalomon@google.com1ce49fc2012-09-18 14:14:49 +00001762
fmenozzicd9a1d02016-08-15 07:03:47 -07001763 if (kTexture_ColorType != fColorType) {
brianosmanb9c51372016-09-15 11:09:45 -07001764 SkASSERT(shader.fOrigColors && shader.fOrigColors4f);
1765 if (args.fGammaCorrect) {
1766 fColors4f = SkTDArray<SkColor4f>(shader.fOrigColors4f, shader.fColorCount);
brianosmanb9c51372016-09-15 11:09:45 -07001767 } else {
fmenozzicd9a1d02016-08-15 07:03:47 -07001768 fColors = SkTDArray<SkColor>(shader.fOrigColors, shader.fColorCount);
halcanary8a822ba2016-08-12 12:35:51 -07001769 }
fmenozzi2a495912016-08-12 06:33:52 -07001770
fmenozzicd9a1d02016-08-15 07:03:47 -07001771#if GR_GL_USE_ACCURATE_HARD_STOP_GRADIENTS
1772 if (shader.fOrigPos) {
1773 fPositions = SkTDArray<SkScalar>(shader.fOrigPos, shader.fColorCount);
halcanary8a822ba2016-08-12 12:35:51 -07001774 }
fmenozzicd9a1d02016-08-15 07:03:47 -07001775#endif
fmenozzi2a495912016-08-12 06:33:52 -07001776 }
fmenozzicd9a1d02016-08-15 07:03:47 -07001777
1778#if GR_GL_USE_ACCURATE_HARD_STOP_GRADIENTS
brianosman9557c272016-09-15 06:59:15 -07001779 fTileMode = args.fTileMode;
fmenozzicd9a1d02016-08-15 07:03:47 -07001780#endif
1781
1782 switch (fColorType) {
1783 // The two and three color specializations do not currently support tiling.
1784 case kTwo_ColorType:
1785 case kThree_ColorType:
1786#if GR_GL_USE_ACCURATE_HARD_STOP_GRADIENTS
1787 case kHardStopLeftEdged_ColorType:
1788 case kHardStopRightEdged_ColorType:
Brian Salomon466ad992016-10-13 16:08:36 -04001789 case kSingleHardStop_ColorType:
fmenozzicd9a1d02016-08-15 07:03:47 -07001790#endif
1791 fRow = -1;
1792
1793 if (SkGradientShader::kInterpolateColorsInPremul_Flag & shader.getGradFlags()) {
1794 fPremulType = kBeforeInterp_PremulType;
1795 } else {
1796 fPremulType = kAfterInterp_PremulType;
1797 }
1798
Brian Salomon2ebd0c82016-10-03 17:15:28 -04001799 fCoordTransform.reset(*args.fMatrix);
fmenozzicd9a1d02016-08-15 07:03:47 -07001800
1801 break;
1802 case kTexture_ColorType:
1803 // doesn't matter how this is set, just be consistent because it is part of the
1804 // effect key.
1805 fPremulType = kBeforeInterp_PremulType;
1806
brianosmand4546092016-09-22 12:31:58 -07001807 SkGradientShaderBase::GradientBitmapType bitmapType =
1808 SkGradientShaderBase::GradientBitmapType::kLegacy;
1809 if (args.fGammaCorrect) {
1810 // Try to use F16 if we can
1811 if (args.fContext->caps()->isConfigTexturable(kRGBA_half_GrPixelConfig)) {
1812 bitmapType = SkGradientShaderBase::GradientBitmapType::kHalfFloat;
1813 } else if (args.fContext->caps()->isConfigTexturable(kSRGBA_8888_GrPixelConfig)) {
1814 bitmapType = SkGradientShaderBase::GradientBitmapType::kSRGB;
1815 } else {
brianosmanc68e89242016-09-22 14:27:34 -07001816 // This can happen, but only if someone explicitly creates an unsupported
1817 // (eg sRGB) surface. Just fall back to legacy behavior.
brianosmand4546092016-09-22 12:31:58 -07001818 }
1819 }
1820
fmenozzicd9a1d02016-08-15 07:03:47 -07001821 SkBitmap bitmap;
brianosmand4546092016-09-22 12:31:58 -07001822 shader.getGradientTableBitmap(&bitmap, bitmapType);
Robert Phillips30f9bc62017-02-22 15:28:38 -05001823 SkASSERT(1 == bitmap.height() && SkIsPow2(bitmap.width()));
1824
fmenozzicd9a1d02016-08-15 07:03:47 -07001825
1826 GrTextureStripAtlas::Desc desc;
1827 desc.fWidth = bitmap.width();
1828 desc.fHeight = 32;
1829 desc.fRowHeight = bitmap.height();
brianosman9557c272016-09-15 06:59:15 -07001830 desc.fContext = args.fContext;
1831 desc.fConfig = SkImageInfo2GrPixelConfig(bitmap.info(), *args.fContext->caps());
fmenozzicd9a1d02016-08-15 07:03:47 -07001832 fAtlas = GrTextureStripAtlas::GetAtlas(desc);
1833 SkASSERT(fAtlas);
1834
1835 // We always filter the gradient table. Each table is one row of a texture, always
1836 // y-clamp.
Brian Salomon514baff2016-11-17 15:17:07 -05001837 GrSamplerParams params;
1838 params.setFilterMode(GrSamplerParams::kBilerp_FilterMode);
brianosman9557c272016-09-15 06:59:15 -07001839 params.setTileModeX(args.fTileMode);
fmenozzicd9a1d02016-08-15 07:03:47 -07001840
1841 fRow = fAtlas->lockRow(bitmap);
1842 if (-1 != fRow) {
1843 fYCoord = fAtlas->getYOffset(fRow)+SK_ScalarHalf*fAtlas->getNormalizedTexelHeight();
Robert Phillips67c18d62017-01-20 12:44:06 -05001844 // This is 1/2 places where auto-normalization is disabled
Robert Phillips296b1cc2017-03-15 10:42:12 -04001845 fCoordTransform.reset(args.fContext->resourceProvider(), *args.fMatrix,
Brian Osman5869ea92017-04-03 16:36:58 -04001846 fAtlas->asTextureProxyRef().get(), false);
Brian Osman32342f02017-03-04 08:12:46 -05001847 fTextureSampler.reset(args.fContext->resourceProvider(),
Robert Phillips30f9bc62017-02-22 15:28:38 -05001848 fAtlas->asTextureProxyRef(), params);
fmenozzicd9a1d02016-08-15 07:03:47 -07001849 } else {
Robert Phillips30f9bc62017-02-22 15:28:38 -05001850 // In this instance we know the params are:
1851 // clampY, bilerp
1852 // and the proxy is:
1853 // exact fit, power of two in both dimensions
1854 // Only the x-tileMode is unknown. However, given all the other knowns we know
1855 // that GrMakeCachedBitmapProxy is sufficient (i.e., it won't need to be
1856 // extracted to a subset or mipmapped).
Robert Phillips26c90e02017-03-14 14:39:29 -04001857 sk_sp<GrTextureProxy> proxy = GrMakeCachedBitmapProxy(
1858 args.fContext->resourceProvider(),
1859 bitmap);
Robert Phillips30f9bc62017-02-22 15:28:38 -05001860 if (!proxy) {
fmenozzicd9a1d02016-08-15 07:03:47 -07001861 return;
1862 }
Robert Phillips67c18d62017-01-20 12:44:06 -05001863 // This is 2/2 places where auto-normalization is disabled
Robert Phillips296b1cc2017-03-15 10:42:12 -04001864 fCoordTransform.reset(args.fContext->resourceProvider(), *args.fMatrix,
Brian Osman5869ea92017-04-03 16:36:58 -04001865 proxy.get(), false);
Brian Osman32342f02017-03-04 08:12:46 -05001866 fTextureSampler.reset(args.fContext->resourceProvider(),
Robert Phillips30f9bc62017-02-22 15:28:38 -05001867 std::move(proxy), params);
fmenozzicd9a1d02016-08-15 07:03:47 -07001868 fYCoord = SK_ScalarHalf;
1869 }
1870
Brian Salomon0bbecb22016-11-17 11:38:22 -05001871 this->addTextureSampler(&fTextureSampler);
fmenozzicd9a1d02016-08-15 07:03:47 -07001872
1873 break;
1874 }
1875
bsalomon@google.com77af6802013-10-02 13:04:56 +00001876 this->addCoordTransform(&fCoordTransform);
rileya@google.comd7cc6512012-07-27 14:00:39 +00001877}
1878
1879GrGradientEffect::~GrGradientEffect() {
rileya@google.comb3e50f22012-08-20 17:43:08 +00001880 if (this->useAtlas()) {
1881 fAtlas->unlockRow(fRow);
rileya@google.comb3e50f22012-08-20 17:43:08 +00001882 }
rileya@google.comd7cc6512012-07-27 14:00:39 +00001883}
1884
bsalomon0e08fc12014-10-15 08:19:04 -07001885bool GrGradientEffect::onIsEqual(const GrFragmentProcessor& processor) const {
fmenozzicd9a1d02016-08-15 07:03:47 -07001886 const GrGradientEffect& ge = processor.cast<GrGradientEffect>();
bsalomon@google.com82d12232013-09-09 15:36:26 +00001887
Brian Salomon466ad992016-10-13 16:08:36 -04001888 if (this->fColorType != ge.getColorType()) {
1889 return false;
1890 }
1891 SkASSERT(this->useAtlas() == ge.useAtlas());
1892 if (kTexture_ColorType == fColorType) {
1893 if (fYCoord != ge.getYCoord()) {
1894 return false;
1895 }
1896 } else {
1897 if (kSingleHardStop_ColorType == fColorType) {
1898 if (!SkScalarNearlyEqual(ge.fPositions[1], fPositions[1])) {
bsalomon@google.com82d12232013-09-09 15:36:26 +00001899 return false;
1900 }
1901 }
Brian Salomon466ad992016-10-13 16:08:36 -04001902 if (this->getPremulType() != ge.getPremulType() ||
1903 this->fColors.count() != ge.fColors.count() ||
1904 this->fColors4f.count() != ge.fColors4f.count()) {
1905 return false;
1906 }
skia.committer@gmail.com9a070f22013-09-10 07:01:44 +00001907
Brian Salomon466ad992016-10-13 16:08:36 -04001908 for (int i = 0; i < this->fColors.count(); i++) {
1909 if (*this->getColors(i) != *ge.getColors(i)) {
1910 return false;
1911 }
1912 }
1913 for (int i = 0; i < this->fColors4f.count(); i++) {
1914 if (*this->getColors4f(i) != *ge.getColors4f(i)) {
1915 return false;
1916 }
1917 }
bsalomon@google.com82d12232013-09-09 15:36:26 +00001918 }
Brian Salomon466ad992016-10-13 16:08:36 -04001919 return GrColorSpaceXform::Equals(this->fColorSpaceXform.get(), ge.fColorSpaceXform.get());
bsalomon@google.com68b58c92013-01-17 16:50:08 +00001920}
1921
Hal Canary6f6961e2017-01-31 13:50:44 -05001922#if GR_TEST_UTILS
Brian Osman3f748602016-10-03 18:29:03 -04001923GrGradientEffect::RandomGradientParams::RandomGradientParams(SkRandom* random) {
Brian Salomon5d4cd9e2017-02-09 11:16:46 -05001924 // Set color count to min of 2 so that we don't trigger the const color optimization and make
1925 // a non-gradient processor.
1926 fColorCount = random->nextRangeU(2, kMaxRandomGradientColors);
Brian Osmana2196532016-10-17 12:48:13 -04001927 fUseColors4f = random->nextBool();
bsalomon@google.comd4726202012-08-03 14:34:46 +00001928
1929 // if one color, omit stops, otherwise randomly decide whether or not to
Brian Osman3f748602016-10-03 18:29:03 -04001930 if (fColorCount == 1 || (fColorCount >= 2 && random->nextBool())) {
1931 fStops = nullptr;
1932 } else {
1933 fStops = fStopStorage;
bsalomon@google.comd4726202012-08-03 14:34:46 +00001934 }
1935
Brian Osmana2196532016-10-17 12:48:13 -04001936 // if using SkColor4f, attach a random (possibly null) color space (with linear gamma)
1937 if (fUseColors4f) {
1938 fColorSpace = GrTest::TestColorSpace(random);
1939 if (fColorSpace) {
raftias94888332016-10-18 10:02:51 -07001940 SkASSERT(SkColorSpace_Base::Type::kXYZ == as_CSB(fColorSpace)->type());
1941 fColorSpace = static_cast<SkColorSpace_XYZ*>(fColorSpace.get())->makeLinearGamma();
Brian Osmana2196532016-10-17 12:48:13 -04001942 }
1943 }
1944
bsalomon@google.com81712882012-11-01 17:12:34 +00001945 SkScalar stop = 0.f;
Brian Osman3f748602016-10-03 18:29:03 -04001946 for (int i = 0; i < fColorCount; ++i) {
Brian Osmana2196532016-10-17 12:48:13 -04001947 if (fUseColors4f) {
1948 fColors4f[i].fR = random->nextUScalar1();
1949 fColors4f[i].fG = random->nextUScalar1();
1950 fColors4f[i].fB = random->nextUScalar1();
1951 fColors4f[i].fA = random->nextUScalar1();
1952 } else {
1953 fColors[i] = random->nextU();
1954 }
Brian Osman3f748602016-10-03 18:29:03 -04001955 if (fStops) {
1956 fStops[i] = stop;
1957 stop = i < fColorCount - 1 ? stop + random->nextUScalar1() * (1.f - stop) : 1.f;
bsalomon@google.comd4726202012-08-03 14:34:46 +00001958 }
1959 }
Brian Osman3f748602016-10-03 18:29:03 -04001960 fTileMode = static_cast<SkShader::TileMode>(random->nextULessThan(SkShader::kTileModeCount));
bsalomon@google.comd4726202012-08-03 14:34:46 +00001961}
Hal Canary6f6961e2017-01-31 13:50:44 -05001962#endif
bsalomon@google.comd4726202012-08-03 14:34:46 +00001963
bsalomon@google.comcf8fb1f2012-08-02 14:03:32 +00001964#endif