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1 /*
2  * Copyright 2018 Google Inc.
3  *
4  * Use of this source code is governed by a BSD-style license that can be
5  * found in the LICENSE file.
6  */
7 
8 #include "gm/gm.h"
9 #include "include/core/SkBitmap.h"
10 #include "include/core/SkBlendMode.h"
11 #include "include/core/SkCanvas.h"
12 #include "include/core/SkColor.h"
13 #include "include/core/SkColorFilter.h"
14 #include "include/core/SkColorPriv.h"
15 #include "include/core/SkColorSpace.h"
16 #include "include/core/SkFont.h"
17 #include "include/core/SkFontStyle.h"
18 #include "include/core/SkFontTypes.h"
19 #include "include/core/SkImage.h"
20 #include "include/core/SkImageGenerator.h"
21 #include "include/core/SkImageInfo.h"
22 #include "include/core/SkMatrix.h"
23 #include "include/core/SkPaint.h"
24 #include "include/core/SkPath.h"
25 #include "include/core/SkPixmap.h"
26 #include "include/core/SkPoint.h"
27 #include "include/core/SkRect.h"
28 #include "include/core/SkRefCnt.h"
29 #include "include/core/SkScalar.h"
30 #include "include/core/SkSize.h"
31 #include "include/core/SkString.h"
32 #include "include/core/SkTypeface.h"
33 #include "include/core/SkTypes.h"
34 #include "include/gpu/GrBackendSurface.h"
35 #include "include/gpu/GrConfig.h"
36 #include "include/gpu/GrDirectContext.h"
37 #include "include/gpu/GrRecordingContext.h"
38 #include "include/gpu/GrTypes.h"
39 #include "include/private/GrTypesPriv.h"
40 #include "include/private/SkTArray.h"
41 #include "include/private/SkTDArray.h"
42 #include "include/private/SkTPin.h"
43 #include "include/private/SkTemplates.h"
44 #include "include/utils/SkTextUtils.h"
45 #include "src/core/SkConvertPixels.h"
46 #include "src/core/SkYUVMath.h"
47 #include "src/gpu/GrCaps.h"
48 #include "src/gpu/GrRecordingContextPriv.h"
49 #include "tools/ToolUtils.h"
50 #include "tools/gpu/YUVUtils.h"
51 
52 #include <math.h>
53 #include <string.h>
54 #include <initializer_list>
55 #include <memory>
56 #include <utility>
57 
58 static const int kTileWidthHeight = 128;
59 static const int kLabelWidth = 64;
60 static const int kLabelHeight = 32;
61 static const int kSubsetPadding = 8;
62 static const int kPad = 1;
63 
64 enum YUVFormat {
65     // 4:2:0 formats, 24 bpp
66     kP016_YUVFormat, // 16-bit Y plane + 2x2 down sampled interleaved U/V plane (2 textures)
67     // 4:2:0 formats, "15 bpp" (but really 24 bpp)
68     kP010_YUVFormat, // same as kP016 except "10 bpp". Note that it is the same memory layout
69                      // except that the bottom 6 bits are zeroed out (2 textures)
70     // TODO: we're cheating a bit w/ P010 and just treating it as unorm 16. This means its
71     // fully saturated values are 65504 rather than 65535 (that is just .9995 out of 1.0 though).
72 
73     // This is laid out the same as kP016 and kP010 but uses F16 unstead of U16. In this case
74     // the 10 bits/channel vs 16 bits/channel distinction isn't relevant.
75     kP016F_YUVFormat,
76 
77     // 4:4:4 formats, 64 bpp
78     kY416_YUVFormat,  // 16-bit AVYU values all interleaved (1 texture)
79 
80     // 4:4:4 formats, 32 bpp
81     kAYUV_YUVFormat,  // 8-bit YUVA values all interleaved (1 texture)
82     kY410_YUVFormat,  // AVYU w/ 10bpp for YUV and 2 for A all interleaved (1 texture)
83 
84     // 4:2:0 formats, 12 bpp
85     kNV12_YUVFormat, // 8-bit Y plane + 2x2 down sampled interleaved U/V planes (2 textures)
86     kNV21_YUVFormat, // same as kNV12 but w/ U/V reversed in the interleaved texture (2 textures)
87 
88     kI420_YUVFormat, // 8-bit Y plane + separate 2x2 down sampled U and V planes (3 textures)
89     kYV12_YUVFormat, // 8-bit Y plane + separate 2x2 down sampled V and U planes (3 textures)
90 
91     kLast_YUVFormat = kYV12_YUVFormat
92 };
93 
94 // Does the YUVFormat contain a slot for alpha? If not an external alpha plane is required for
95 // transparency.
has_alpha_channel(YUVFormat format)96 static bool has_alpha_channel(YUVFormat format) {
97     switch (format) {
98         case kP016_YUVFormat:  return false;
99         case kP010_YUVFormat:  return false;
100         case kP016F_YUVFormat: return false;
101         case kY416_YUVFormat:  return true;
102         case kAYUV_YUVFormat:  return true;
103         case kY410_YUVFormat:  return true;
104         case kNV12_YUVFormat:  return false;
105         case kNV21_YUVFormat:  return false;
106         case kI420_YUVFormat:  return false;
107         case kYV12_YUVFormat:  return false;
108     }
109     SkUNREACHABLE;
110 }
111 
112 class YUVAPlanarConfig {
113 public:
YUVAPlanarConfig(YUVFormat format,bool opaque,SkEncodedOrigin origin)114     YUVAPlanarConfig(YUVFormat format, bool opaque, SkEncodedOrigin origin) : fOrigin(origin) {
115         switch (format) {
116             case kP016_YUVFormat:
117             case kP010_YUVFormat:
118             case kP016F_YUVFormat:
119             case kNV12_YUVFormat:
120                 if (opaque) {
121                     fPlaneConfig = SkYUVAInfo::PlaneConfig::kY_UV;
122                     fSubsampling = SkYUVAInfo::Subsampling::k420;
123                 } else {
124                     fPlaneConfig = SkYUVAInfo::PlaneConfig::kY_UV_A;
125                     fSubsampling = SkYUVAInfo::Subsampling::k420;
126                 }
127                 break;
128             case kY416_YUVFormat:
129             case kY410_YUVFormat:
130                 if (opaque) {
131                     fPlaneConfig = SkYUVAInfo::PlaneConfig::kUYV;
132                     fSubsampling = SkYUVAInfo::Subsampling::k444;
133                 } else {
134                     fPlaneConfig = SkYUVAInfo::PlaneConfig::kUYVA;
135                     fSubsampling = SkYUVAInfo::Subsampling::k444;
136                 }
137                 break;
138             case kAYUV_YUVFormat:
139                 if (opaque) {
140                     fPlaneConfig = SkYUVAInfo::PlaneConfig::kYUV;
141                     fSubsampling = SkYUVAInfo::Subsampling::k444;
142                 } else {
143                     fPlaneConfig = SkYUVAInfo::PlaneConfig::kYUVA;
144                     fSubsampling = SkYUVAInfo::Subsampling::k444;
145                 }
146                 break;
147             case kNV21_YUVFormat:
148                 if (opaque) {
149                     fPlaneConfig = SkYUVAInfo::PlaneConfig::kY_VU;
150                     fSubsampling = SkYUVAInfo::Subsampling::k420;
151                 } else {
152                     fPlaneConfig = SkYUVAInfo::PlaneConfig::kY_VU_A;
153                     fSubsampling = SkYUVAInfo::Subsampling::k420;
154                 }
155                 break;
156             case kI420_YUVFormat:
157                 if (opaque) {
158                     fPlaneConfig = SkYUVAInfo::PlaneConfig::kY_U_V;
159                     fSubsampling = SkYUVAInfo::Subsampling::k420;
160                 } else {
161                     fPlaneConfig = SkYUVAInfo::PlaneConfig::kY_U_V_A;
162                     fSubsampling = SkYUVAInfo::Subsampling::k420;
163                 }
164                 break;
165             case kYV12_YUVFormat:
166                 if (opaque) {
167                     fPlaneConfig = SkYUVAInfo::PlaneConfig::kY_V_U;
168                     fSubsampling = SkYUVAInfo::Subsampling::k420;
169                 } else {
170                     fPlaneConfig = SkYUVAInfo::PlaneConfig::kY_V_U_A;
171                     fSubsampling = SkYUVAInfo::Subsampling::k420;
172                 }
173                 break;
174         }
175     }
176 
numPlanes() const177     int numPlanes() const { return SkYUVAInfo::NumPlanes(fPlaneConfig); }
178 
179     SkYUVAPixmaps makeYUVAPixmaps(SkISize dimensions,
180                                   SkYUVColorSpace yuvColorSpace,
181                                   const SkBitmap bitmaps[],
182                                   int numBitmaps) const;
183 
184 private:
185     SkYUVAInfo::PlaneConfig fPlaneConfig;
186     SkYUVAInfo::Subsampling fSubsampling;
187     SkEncodedOrigin         fOrigin;
188 };
189 
makeYUVAPixmaps(SkISize dimensions,SkYUVColorSpace yuvColorSpace,const SkBitmap bitmaps[],int numBitmaps) const190 SkYUVAPixmaps YUVAPlanarConfig::makeYUVAPixmaps(SkISize dimensions,
191                                                 SkYUVColorSpace yuvColorSpace,
192                                                 const SkBitmap bitmaps[],
193                                                 int numBitmaps) const {
194     SkYUVAInfo info(dimensions, fPlaneConfig, fSubsampling, yuvColorSpace, fOrigin);
195     SkPixmap pmaps[SkYUVAInfo::kMaxPlanes];
196     int n = info.numPlanes();
197     if (numBitmaps < n) {
198         return {};
199     }
200     for (int i = 0; i < n; ++i) {
201         pmaps[i] = bitmaps[i].pixmap();
202     }
203     return SkYUVAPixmaps::FromExternalPixmaps(info, pmaps);
204 }
205 
206 // All the planes we need to construct the various YUV formats
207 struct PlaneData {
208    SkBitmap fYFull;
209    SkBitmap fUFull;
210    SkBitmap fVFull;
211    SkBitmap fAFull;
212    SkBitmap fUQuarter; // 2x2 downsampled U channel
213    SkBitmap fVQuarter; // 2x2 downsampled V channel
214 
215    SkBitmap fFull;
216    SkBitmap fQuarter; // 2x2 downsampled YUVA
217 };
218 
219 // Add a portion of a circle to 'path'. The points 'o1' and 'o2' are on the border of the circle
220 // and have tangents 'v1' and 'v2'.
add_arc(SkPath * path,const SkPoint & o1,const SkVector & v1,const SkPoint & o2,const SkVector & v2,SkTDArray<SkRect> * circles,bool takeLongWayRound)221 static void add_arc(SkPath* path,
222                     const SkPoint& o1, const SkVector& v1,
223                     const SkPoint& o2, const SkVector& v2,
224                     SkTDArray<SkRect>* circles, bool takeLongWayRound) {
225 
226     SkVector v3 = { -v1.fY, v1.fX };
227     SkVector v4 = { v2.fY, -v2.fX };
228 
229     SkScalar t = ((o2.fX - o1.fX) * v4.fY - (o2.fY - o1.fY) * v4.fX) / v3.cross(v4);
230     SkPoint center = { o1.fX + t * v3.fX, o1.fY + t * v3.fY };
231 
232     SkRect r = { center.fX - t, center.fY - t, center.fX + t, center.fY + t };
233 
234     if (circles) {
235         circles->push_back(r);
236     }
237 
238     SkVector startV = o1 - center, endV = o2 - center;
239     startV.normalize();
240     endV.normalize();
241 
242     SkScalar startDeg = SkRadiansToDegrees(SkScalarATan2(startV.fY, startV.fX));
243     SkScalar endDeg = SkRadiansToDegrees(SkScalarATan2(endV.fY, endV.fX));
244 
245     startDeg += 360.0f;
246     startDeg = fmodf(startDeg, 360.0f);
247 
248     endDeg += 360.0f;
249     endDeg = fmodf(endDeg, 360.0f);
250 
251     if (endDeg < startDeg) {
252         endDeg += 360.0f;
253     }
254 
255     SkScalar sweepDeg = SkTAbs(endDeg - startDeg);
256     if (!takeLongWayRound) {
257         sweepDeg = sweepDeg - 360;
258     }
259 
260     path->arcTo(r, startDeg, sweepDeg, false);
261 }
262 
create_splat(const SkPoint & o,SkScalar innerRadius,SkScalar outerRadius,SkScalar ratio,int numLobes,SkTDArray<SkRect> * circles)263 static SkPath create_splat(const SkPoint& o, SkScalar innerRadius, SkScalar outerRadius,
264                            SkScalar ratio, int numLobes, SkTDArray<SkRect>* circles) {
265     if (numLobes <= 1) {
266         return SkPath();
267     }
268 
269     SkPath p;
270 
271     int numDivisions = 2 * numLobes;
272     SkScalar fullLobeDegrees = 360.0f / numLobes;
273     SkScalar outDegrees = ratio * fullLobeDegrees / (ratio + 1.0f);
274     SkScalar innerDegrees = fullLobeDegrees / (ratio + 1.0f);
275     SkMatrix outerStep, innerStep;
276     outerStep.setRotate(outDegrees);
277     innerStep.setRotate(innerDegrees);
278     SkVector curV = SkVector::Make(0.0f, 1.0f);
279 
280     if (circles) {
281         circles->push_back(SkRect::MakeLTRB(o.fX - innerRadius, o.fY - innerRadius,
282                                             o.fX + innerRadius, o.fY + innerRadius));
283     }
284 
285     p.moveTo(o.fX + innerRadius * curV.fX, o.fY + innerRadius * curV.fY);
286 
287     for (int i = 0; i < numDivisions; ++i) {
288 
289         SkVector nextV;
290         if (0 == (i % 2)) {
291             nextV = outerStep.mapVector(curV.fX, curV.fY);
292 
293             SkPoint top = SkPoint::Make(o.fX + outerRadius * curV.fX,
294                                         o.fY + outerRadius * curV.fY);
295             SkPoint nextTop = SkPoint::Make(o.fX + outerRadius * nextV.fX,
296                                             o.fY + outerRadius * nextV.fY);
297 
298             p.lineTo(top);
299             add_arc(&p, top, curV, nextTop, nextV, circles, true);
300         } else {
301             nextV = innerStep.mapVector(curV.fX, curV.fY);
302 
303             SkPoint bot = SkPoint::Make(o.fX + innerRadius * curV.fX,
304                                         o.fY + innerRadius * curV.fY);
305             SkPoint nextBot = SkPoint::Make(o.fX + innerRadius * nextV.fX,
306                                             o.fY + innerRadius * nextV.fY);
307 
308             p.lineTo(bot);
309             add_arc(&p, bot, curV, nextBot, nextV, nullptr, false);
310         }
311 
312         curV = nextV;
313     }
314 
315     p.close();
316 
317     return p;
318 }
319 
make_bitmap(SkColorType colorType,const SkPath & path,const SkTDArray<SkRect> & circles,bool opaque,bool padWithRed)320 static SkBitmap make_bitmap(SkColorType colorType, const SkPath& path,
321                             const SkTDArray<SkRect>& circles, bool opaque, bool padWithRed) {
322     const SkColor kGreen   = ToolUtils::color_to_565(SkColorSetARGB(0xFF, 178, 240, 104));
323     const SkColor kBlue    = ToolUtils::color_to_565(SkColorSetARGB(0xFF, 173, 167, 252));
324     const SkColor kYellow  = ToolUtils::color_to_565(SkColorSetARGB(0xFF, 255, 221, 117));
325     const SkColor kMagenta = ToolUtils::color_to_565(SkColorSetARGB(0xFF, 255,  60, 217));
326     const SkColor kCyan    = ToolUtils::color_to_565(SkColorSetARGB(0xFF,  45, 237, 205));
327 
328     int widthHeight = kTileWidthHeight + (padWithRed ? 2 * kSubsetPadding : 0);
329 
330     SkImageInfo ii = SkImageInfo::Make(widthHeight, widthHeight,
331                                        colorType, kPremul_SkAlphaType);
332 
333     SkBitmap bm;
334     bm.allocPixels(ii);
335 
336     std::unique_ptr<SkCanvas> canvas = SkCanvas::MakeRasterDirect(ii,
337                                                                   bm.getPixels(),
338                                                                   bm.rowBytes());
339     if (padWithRed) {
340         canvas->clear(SK_ColorRED);
341         canvas->translate(kSubsetPadding, kSubsetPadding);
342         canvas->clipRect(SkRect::MakeWH(kTileWidthHeight, kTileWidthHeight));
343     }
344     canvas->clear(opaque ? kGreen : SK_ColorTRANSPARENT);
345 
346     SkPaint paint;
347     paint.setAntiAlias(false); // serialize-8888 doesn't seem to work well w/ partial transparency
348     paint.setColor(kBlue);
349 
350     canvas->drawPath(path, paint);
351 
352     paint.setBlendMode(SkBlendMode::kSrc);
353     for (int i = 0; i < circles.count(); ++i) {
354         SkColor color;
355         switch (i % 3) {
356             case 0:  color = kYellow;  break;
357             case 1:  color = kMagenta; break;
358             default: color = kCyan;    break;
359         }
360         paint.setColor(color);
361         paint.setAlpha(opaque ? 0xFF : 0x40);
362         SkRect r = circles[i];
363         r.inset(r.width()/4, r.height()/4);
364         canvas->drawOval(r, paint);
365     }
366 
367     return bm;
368 }
369 
convert_rgba_to_yuva(const float mtx[20],SkColor col,uint8_t yuv[4])370 static void convert_rgba_to_yuva(const float mtx[20], SkColor col, uint8_t yuv[4]) {
371     const uint8_t r = SkColorGetR(col);
372     const uint8_t g = SkColorGetG(col);
373     const uint8_t b = SkColorGetB(col);
374 
375     yuv[0] = SkTPin(SkScalarRoundToInt(mtx[ 0]*r + mtx[ 1]*g + mtx[ 2]*b + mtx[ 4]*255), 0, 255);
376     yuv[1] = SkTPin(SkScalarRoundToInt(mtx[ 5]*r + mtx[ 6]*g + mtx[ 7]*b + mtx[ 9]*255), 0, 255);
377     yuv[2] = SkTPin(SkScalarRoundToInt(mtx[10]*r + mtx[11]*g + mtx[12]*b + mtx[14]*255), 0, 255);
378     yuv[3] = SkColorGetA(col);
379 }
380 
extract_planes(const SkBitmap & origBM,SkYUVColorSpace yuvColorSpace,SkEncodedOrigin origin,PlaneData * planes)381 static void extract_planes(const SkBitmap& origBM,
382                            SkYUVColorSpace yuvColorSpace,
383                            SkEncodedOrigin origin,
384                            PlaneData* planes) {
385     SkImageInfo ii = origBM.info();
386     if (SkEncodedOriginSwapsWidthHeight(origin)) {
387         ii = ii.makeWH(ii.height(), ii.width());
388     }
389     SkBitmap orientedBM;
390     orientedBM.allocPixels(ii);
391     SkCanvas canvas(orientedBM);
392     SkMatrix matrix = SkEncodedOriginToMatrix(origin, origBM.width(), origBM.height());
393     SkAssertResult(matrix.invert(&matrix));
394     canvas.concat(matrix);
395     canvas.drawImage(origBM.asImage(), 0, 0);
396 
397     if (yuvColorSpace == kIdentity_SkYUVColorSpace) {
398         // To test the identity color space we use JPEG YUV planes
399         yuvColorSpace = kJPEG_SkYUVColorSpace;
400     }
401 
402     SkASSERT(!(ii.width() % 2));
403     SkASSERT(!(ii.height() % 2));
404     planes->fYFull.allocPixels(
405             SkImageInfo::Make(ii.dimensions(), kGray_8_SkColorType, kUnpremul_SkAlphaType));
406     planes->fUFull.allocPixels(
407             SkImageInfo::Make(ii.dimensions(), kGray_8_SkColorType, kUnpremul_SkAlphaType));
408     planes->fVFull.allocPixels(
409             SkImageInfo::Make(ii.dimensions(), kGray_8_SkColorType, kUnpremul_SkAlphaType));
410     planes->fAFull.allocPixels(SkImageInfo::MakeA8(ii.dimensions()));
411     planes->fUQuarter.allocPixels(SkImageInfo::Make(ii.width()/2, ii.height()/2,
412                                   kGray_8_SkColorType, kUnpremul_SkAlphaType));
413     planes->fVQuarter.allocPixels(SkImageInfo::Make(ii.width()/2, ii.height()/2,
414                                   kGray_8_SkColorType, kUnpremul_SkAlphaType));
415 
416     planes->fFull.allocPixels(
417             SkImageInfo::Make(ii.dimensions(), kRGBA_F32_SkColorType, kUnpremul_SkAlphaType));
418     planes->fQuarter.allocPixels(SkImageInfo::Make(ii.width()/2, ii.height()/2,
419                                  kRGBA_F32_SkColorType, kUnpremul_SkAlphaType));
420 
421     float mtx[20];
422     SkColorMatrix_RGB2YUV(yuvColorSpace, mtx);
423 
424     SkColor4f* dst = (SkColor4f *) planes->fFull.getAddr(0, 0);
425     for (int y = 0; y < orientedBM.height(); ++y) {
426         for (int x = 0; x < orientedBM.width(); ++x) {
427             SkColor col = orientedBM.getColor(x, y);
428 
429             uint8_t yuva[4];
430 
431             convert_rgba_to_yuva(mtx, col, yuva);
432 
433             *planes->fYFull.getAddr8(x, y) = yuva[0];
434             *planes->fUFull.getAddr8(x, y) = yuva[1];
435             *planes->fVFull.getAddr8(x, y) = yuva[2];
436             *planes->fAFull.getAddr8(x, y) = yuva[3];
437 
438             // TODO: render in F32 rather than converting here
439             dst->fR = yuva[0] / 255.0f;
440             dst->fG = yuva[1] / 255.0f;
441             dst->fB = yuva[2] / 255.0f;
442             dst->fA = yuva[3] / 255.0f;
443             ++dst;
444         }
445     }
446 
447     dst = (SkColor4f *) planes->fQuarter.getAddr(0, 0);
448     for (int y = 0; y < orientedBM.height()/2; ++y) {
449         for (int x = 0; x < orientedBM.width()/2; ++x) {
450             uint32_t yAccum = 0, uAccum = 0, vAccum = 0, aAccum = 0;
451 
452             yAccum += *planes->fYFull.getAddr8(2*x, 2*y);
453             yAccum += *planes->fYFull.getAddr8(2*x+1, 2*y);
454             yAccum += *planes->fYFull.getAddr8(2*x, 2*y+1);
455             yAccum += *planes->fYFull.getAddr8(2*x+1, 2*y+1);
456 
457             uAccum += *planes->fUFull.getAddr8(2*x, 2*y);
458             uAccum += *planes->fUFull.getAddr8(2*x+1, 2*y);
459             uAccum += *planes->fUFull.getAddr8(2*x, 2*y+1);
460             uAccum += *planes->fUFull.getAddr8(2*x+1, 2*y+1);
461 
462             *planes->fUQuarter.getAddr8(x, y) = uAccum / 4.0f;
463 
464             vAccum += *planes->fVFull.getAddr8(2*x, 2*y);
465             vAccum += *planes->fVFull.getAddr8(2*x+1, 2*y);
466             vAccum += *planes->fVFull.getAddr8(2*x, 2*y+1);
467             vAccum += *planes->fVFull.getAddr8(2*x+1, 2*y+1);
468 
469             *planes->fVQuarter.getAddr8(x, y) = vAccum / 4.0f;
470 
471             aAccum += *planes->fAFull.getAddr8(2*x, 2*y);
472             aAccum += *planes->fAFull.getAddr8(2*x+1, 2*y);
473             aAccum += *planes->fAFull.getAddr8(2*x, 2*y+1);
474             aAccum += *planes->fAFull.getAddr8(2*x+1, 2*y+1);
475 
476             // TODO: render in F32 rather than converting here
477             dst->fR = yAccum / (4.0f * 255.0f);
478             dst->fG = uAccum / (4.0f * 255.0f);
479             dst->fB = vAccum / (4.0f * 255.0f);
480             dst->fA = aAccum / (4.0f * 255.0f);
481             ++dst;
482         }
483     }
484 }
485 
486 // Create a 2x2 downsampled SkBitmap. It is stored in an RG texture. It can optionally be
487 // uv (i.e., NV12) or vu (i.e., NV21).
make_quarter_2_channel(const SkBitmap & fullY,const SkBitmap & quarterU,const SkBitmap & quarterV,bool uv)488 static SkBitmap make_quarter_2_channel(const SkBitmap& fullY,
489                                        const SkBitmap& quarterU,
490                                        const SkBitmap& quarterV,
491                                        bool uv) {
492     SkBitmap result;
493 
494     result.allocPixels(SkImageInfo::Make(fullY.width()/2,
495                                          fullY.height()/2,
496                                          kR8G8_unorm_SkColorType,
497                                          kUnpremul_SkAlphaType));
498 
499     for (int y = 0; y < fullY.height()/2; ++y) {
500         for (int x = 0; x < fullY.width()/2; ++x) {
501             uint8_t u8 = *quarterU.getAddr8(x, y);
502             uint8_t v8 = *quarterV.getAddr8(x, y);
503 
504             if (uv) {
505                 *result.getAddr16(x, y) = (v8 << 8) | u8;
506             } else {
507                 *result.getAddr16(x, y) = (u8 << 8) | v8;
508             }
509         }
510     }
511 
512     return result;
513 }
514 
515 // Create some flavor of a 16bits/channel bitmap from a RGBA_F32 source
make_16(const SkBitmap & src,SkColorType dstCT,std::function<void (uint16_t * dstPixel,const float * srcPixel)> convert)516 static SkBitmap make_16(const SkBitmap& src, SkColorType dstCT,
517                         std::function<void(uint16_t* dstPixel, const float* srcPixel)> convert) {
518     SkASSERT(src.colorType() == kRGBA_F32_SkColorType);
519 
520     SkBitmap result;
521 
522     result.allocPixels(SkImageInfo::Make(src.dimensions(), dstCT, kUnpremul_SkAlphaType));
523 
524     for (int y = 0; y < src.height(); ++y) {
525         for (int x = 0; x < src.width(); ++x) {
526             const float* srcPixel = (const float*) src.getAddr(x, y);
527             uint16_t* dstPixel = (uint16_t*) result.getAddr(x, y);
528 
529             convert(dstPixel, srcPixel);
530         }
531     }
532 
533     return result;
534 }
535 
flt_2_uint16(float flt)536 static uint16_t flt_2_uint16(float flt) { return SkScalarRoundToInt(flt * 65535.0f); }
537 
538 // Recombine the separate planes into some YUV format. Returns the number of planes.
create_YUV(const PlaneData & planes,YUVFormat yuvFormat,SkBitmap resultBMs[],bool opaque)539 static int create_YUV(const PlaneData& planes,
540                       YUVFormat yuvFormat,
541                       SkBitmap resultBMs[],
542                       bool opaque) {
543     int nextLayer = 0;
544 
545     switch (yuvFormat) {
546         case kY416_YUVFormat: {
547             resultBMs[nextLayer++] = make_16(planes.fFull, kR16G16B16A16_unorm_SkColorType,
548                                              [] (uint16_t* dstPixel, const float* srcPixel) {
549                                                  dstPixel[0] = flt_2_uint16(srcPixel[1]); // U
550                                                  dstPixel[1] = flt_2_uint16(srcPixel[0]); // Y
551                                                  dstPixel[2] = flt_2_uint16(srcPixel[2]); // V
552                                                  dstPixel[3] = flt_2_uint16(srcPixel[3]); // A
553                                              });
554             break;
555         }
556         case kAYUV_YUVFormat: {
557             SkBitmap yuvaFull;
558 
559             yuvaFull.allocPixels(SkImageInfo::Make(planes.fYFull.width(), planes.fYFull.height(),
560                                                    kRGBA_8888_SkColorType, kUnpremul_SkAlphaType));
561 
562             for (int y = 0; y < planes.fYFull.height(); ++y) {
563                 for (int x = 0; x < planes.fYFull.width(); ++x) {
564 
565                     uint8_t Y = *planes.fYFull.getAddr8(x, y);
566                     uint8_t U = *planes.fUFull.getAddr8(x, y);
567                     uint8_t V = *planes.fVFull.getAddr8(x, y);
568                     uint8_t A = *planes.fAFull.getAddr8(x, y);
569 
570                     // NOT premul!
571                     // V and Y swapped to match RGBA layout
572                     SkColor c = SkColorSetARGB(A, V, U, Y);
573                     *yuvaFull.getAddr32(x, y) = c;
574                 }
575             }
576 
577             resultBMs[nextLayer++] = yuvaFull;
578             break;
579         }
580         case kY410_YUVFormat: {
581             SkBitmap yuvaFull;
582             uint32_t Y, U, V;
583             uint8_t A;
584 
585             yuvaFull.allocPixels(SkImageInfo::Make(planes.fYFull.width(), planes.fYFull.height(),
586                                                    kRGBA_1010102_SkColorType,
587                                                    kUnpremul_SkAlphaType));
588 
589             for (int y = 0; y < planes.fYFull.height(); ++y) {
590                 for (int x = 0; x < planes.fYFull.width(); ++x) {
591 
592                     Y = SkScalarRoundToInt((*planes.fYFull.getAddr8(x, y) / 255.0f) * 1023.0f);
593                     U = SkScalarRoundToInt((*planes.fUFull.getAddr8(x, y) / 255.0f) * 1023.0f);
594                     V = SkScalarRoundToInt((*planes.fVFull.getAddr8(x, y) / 255.0f) * 1023.0f);
595                     A = SkScalarRoundToInt((*planes.fAFull.getAddr8(x, y) / 255.0f) * 3.0f);
596 
597                     // NOT premul!
598                     *yuvaFull.getAddr32(x, y) = (A << 30) | (V << 20) | (Y << 10) | (U << 0);
599                 }
600             }
601 
602             resultBMs[nextLayer++] = yuvaFull;
603             break;
604         }
605         case kP016_YUVFormat:     // fall through
606         case kP010_YUVFormat: {
607             resultBMs[nextLayer++] = make_16(planes.fFull, kA16_unorm_SkColorType,
608                                              [tenBitsPP = (yuvFormat == kP010_YUVFormat)]
609                                              (uint16_t* dstPixel, const float* srcPixel) {
610                                                  uint16_t val16 = flt_2_uint16(srcPixel[0]);
611                                                  dstPixel[0] = tenBitsPP ? (val16 & 0xFFC0)
612                                                                          : val16;
613                                               });
614             resultBMs[nextLayer++] = make_16(planes.fQuarter, kR16G16_unorm_SkColorType,
615                                              [tenBitsPP = (yuvFormat == kP010_YUVFormat)]
616                                              (uint16_t* dstPixel, const float* srcPixel) {
617                                                  uint16_t u16 = flt_2_uint16(srcPixel[1]);
618                                                  uint16_t v16 = flt_2_uint16(srcPixel[2]);
619                                                  dstPixel[0] = tenBitsPP ? (u16 & 0xFFC0) : u16;
620                                                  dstPixel[1] = tenBitsPP ? (v16 & 0xFFC0) : v16;
621                                              });
622             if (!opaque) {
623                 resultBMs[nextLayer++] = make_16(planes.fFull, kA16_unorm_SkColorType,
624                                                  [tenBitsPP = (yuvFormat == kP010_YUVFormat)]
625                                                  (uint16_t* dstPixel, const float* srcPixel) {
626                                                      uint16_t val16 = flt_2_uint16(srcPixel[3]);
627                                                      dstPixel[0] = tenBitsPP ? (val16 & 0xFFC0)
628                                                                              : val16;
629                                                  });
630             }
631             return nextLayer;
632         }
633         case kP016F_YUVFormat: {
634             resultBMs[nextLayer++] = make_16(planes.fFull, kA16_float_SkColorType,
635                                              [] (uint16_t* dstPixel, const float* srcPixel) {
636                                                  dstPixel[0] = SkFloatToHalf(srcPixel[0]);
637                                              });
638             resultBMs[nextLayer++] = make_16(planes.fQuarter, kR16G16_float_SkColorType,
639                                              [] (uint16_t* dstPixel, const float* srcPixel) {
640                                                  dstPixel[0] = SkFloatToHalf(srcPixel[1]);
641                                                  dstPixel[1] = SkFloatToHalf(srcPixel[2]);
642                                              });
643             if (!opaque) {
644                 resultBMs[nextLayer++] = make_16(planes.fFull, kA16_float_SkColorType,
645                                                  [] (uint16_t* dstPixel, const float* srcPixel) {
646                                                      dstPixel[0] = SkFloatToHalf(srcPixel[3]);
647                                                  });
648             }
649             return nextLayer;
650         }
651         case kNV12_YUVFormat: {
652             SkBitmap uvQuarter = make_quarter_2_channel(planes.fYFull,
653                                                         planes.fUQuarter,
654                                                         planes.fVQuarter, true);
655             resultBMs[nextLayer++] = planes.fYFull;
656             resultBMs[nextLayer++] = uvQuarter;
657             break;
658         }
659         case kNV21_YUVFormat: {
660             SkBitmap vuQuarter = make_quarter_2_channel(planes.fYFull,
661                                                         planes.fUQuarter,
662                                                         planes.fVQuarter, false);
663             resultBMs[nextLayer++] = planes.fYFull;
664             resultBMs[nextLayer++] = vuQuarter;
665             break;
666         }
667         case kI420_YUVFormat:
668             resultBMs[nextLayer++] = planes.fYFull;
669             resultBMs[nextLayer++] = planes.fUQuarter;
670             resultBMs[nextLayer++] = planes.fVQuarter;
671             break;
672         case kYV12_YUVFormat:
673             resultBMs[nextLayer++] = planes.fYFull;
674             resultBMs[nextLayer++] = planes.fVQuarter;
675             resultBMs[nextLayer++] = planes.fUQuarter;
676             break;
677     }
678 
679     if (!opaque && !has_alpha_channel(yuvFormat)) {
680         resultBMs[nextLayer++] = planes.fAFull;
681     }
682     return nextLayer;
683 }
684 
draw_col_label(SkCanvas * canvas,int x,int yuvColorSpace,bool opaque)685 static void draw_col_label(SkCanvas* canvas, int x, int yuvColorSpace, bool opaque) {
686     static const char* kYUVColorSpaceNames[] = {"JPEG",     "601",      "709F",     "709L",
687                                                 "2020_8F",  "2020_8L",  "2020_10F", "2020_10L",
688                                                 "2020_12F", "2020_12L", "Identity"};
689     static_assert(SK_ARRAY_COUNT(kYUVColorSpaceNames) == kLastEnum_SkYUVColorSpace + 1);
690 
691     SkPaint paint;
692     SkFont  font(ToolUtils::create_portable_typeface(nullptr, SkFontStyle::Bold()), 16);
693     font.setEdging(SkFont::Edging::kAlias);
694 
695     SkRect textRect;
696     SkString colLabel;
697 
698     colLabel.printf("%s", kYUVColorSpaceNames[yuvColorSpace]);
699     font.measureText(colLabel.c_str(), colLabel.size(), SkTextEncoding::kUTF8, &textRect);
700     int y = textRect.height();
701 
702     SkTextUtils::DrawString(canvas, colLabel.c_str(), x, y, font, paint, SkTextUtils::kCenter_Align);
703 
704     colLabel.printf("%s", opaque ? "Opaque" : "Transparent");
705 
706     font.measureText(colLabel.c_str(), colLabel.size(), SkTextEncoding::kUTF8, &textRect);
707     y += textRect.height();
708 
709     SkTextUtils::DrawString(canvas, colLabel.c_str(), x, y, font, paint, SkTextUtils::kCenter_Align);
710 }
711 
draw_row_label(SkCanvas * canvas,int y,int yuvFormat)712 static void draw_row_label(SkCanvas* canvas, int y, int yuvFormat) {
713     static const char* kYUVFormatNames[] = {
714         "P016", "P010", "P016F", "Y416", "AYUV", "Y410", "NV12", "NV21", "I420", "YV12"
715     };
716     static_assert(SK_ARRAY_COUNT(kYUVFormatNames) == kLast_YUVFormat + 1);
717 
718     SkPaint paint;
719     SkFont  font(ToolUtils::create_portable_typeface(nullptr, SkFontStyle::Bold()), 16);
720     font.setEdging(SkFont::Edging::kAlias);
721 
722     SkRect textRect;
723     SkString rowLabel;
724 
725     rowLabel.printf("%s", kYUVFormatNames[yuvFormat]);
726     font.measureText(rowLabel.c_str(), rowLabel.size(), SkTextEncoding::kUTF8, &textRect);
727     y += kTileWidthHeight/2 + textRect.height()/2;
728 
729     canvas->drawString(rowLabel, 0, y, font, paint);
730 }
731 
yuv_to_rgb_colorfilter()732 static sk_sp<SkColorFilter> yuv_to_rgb_colorfilter() {
733     static const float kJPEGConversionMatrix[20] = {
734         1.0f,  0.0f,       1.402f,    0.0f, -180.0f/255,
735         1.0f, -0.344136f, -0.714136f, 0.0f,  136.0f/255,
736         1.0f,  1.772f,     0.0f,      0.0f, -227.6f/255,
737         0.0f,  0.0f,       0.0f,      1.0f,    0.0f
738     };
739 
740     return SkColorFilters::Matrix(kJPEGConversionMatrix);
741 }
742 
743 namespace skiagm {
744 
745 // This GM creates an opaque and transparent bitmap, extracts the planes and then recombines
746 // them into various YUV formats. It then renders the results in the grid:
747 //
748 //                 JPEG                  601                   709                Identity
749 //        Transparent  Opaque   Transparent  Opaque   Transparent  Opaque   Transparent Opaque
750 // originals
751 // P016
752 // P010
753 // P016F
754 // Y416
755 // AYUV
756 // Y410
757 // NV12
758 // NV21
759 // I420
760 // YV12
761 class WackyYUVFormatsGM : public GM {
762 public:
763     using Type = sk_gpu_test::LazyYUVImage::Type;
764 
WackyYUVFormatsGM(bool useTargetColorSpace,bool useSubset,Type type)765     WackyYUVFormatsGM(bool useTargetColorSpace, bool useSubset, Type type)
766             : fUseTargetColorSpace(useTargetColorSpace), fUseSubset(useSubset), fImageType(type) {
767         this->setBGColor(0xFFCCCCCC);
768     }
769 
770 protected:
onShortName()771     SkString onShortName() override {
772         SkString name("wacky_yuv_formats");
773         if (fUseTargetColorSpace) {
774             name += "_cs";
775         }
776         if (fUseSubset) {
777             name += "_domain";
778         }
779         switch (fImageType) {
780             case Type::kFromPixmaps:
781                 name += "_frompixmaps";
782                 break;
783             case Type::kFromTextures:
784                 break;
785             case Type::kFromGenerator:
786                 name += "_imggen";
787                 break;
788         }
789 
790         return name;
791     }
792 
onISize()793     SkISize onISize() override {
794         int numCols = 2 * (kLastEnum_SkYUVColorSpace + 1); // opacity x #-color-spaces
795         int numRows = 1 + (kLast_YUVFormat + 1);  // original + #-yuv-formats
796         int wh = SkScalarCeilToInt(kTileWidthHeight * (fUseSubset ? 1.5f : 1.f));
797         return SkISize::Make(kLabelWidth  + numCols * (wh + kPad),
798                              kLabelHeight + numRows * (wh + kPad));
799     }
800 
createBitmaps()801     void createBitmaps() {
802         SkPoint origin = { kTileWidthHeight/2.0f, kTileWidthHeight/2.0f };
803         float outerRadius = kTileWidthHeight/2.0f - 20.0f;
804         float innerRadius = 20.0f;
805 
806         {
807             // transparent
808             SkTDArray<SkRect> circles;
809             SkPath path = create_splat(origin, innerRadius, outerRadius, 1.0f, 5, &circles);
810             fOriginalBMs[0] = make_bitmap(kRGBA_8888_SkColorType, path, circles, false, fUseSubset);
811         }
812 
813         {
814             // opaque
815             SkTDArray<SkRect> circles;
816             SkPath path = create_splat(origin, innerRadius, outerRadius, 1.0f, 7, &circles);
817             fOriginalBMs[1] = make_bitmap(kRGBA_8888_SkColorType, path, circles, true, fUseSubset);
818         }
819 
820         if (fUseTargetColorSpace) {
821             fTargetColorSpace = SkColorSpace::MakeSRGB()->makeColorSpin();
822         }
823     }
824 
createImages(GrDirectContext * dContext)825     bool createImages(GrDirectContext* dContext) {
826         int origin = 0;
827         for (bool opaque : { false, true }) {
828             for (int cs = kJPEG_SkYUVColorSpace; cs <= kLastEnum_SkYUVColorSpace; ++cs) {
829                 PlaneData planes;
830                 extract_planes(fOriginalBMs[opaque],
831                                static_cast<SkYUVColorSpace>(cs),
832                                static_cast<SkEncodedOrigin>(origin + 1),  // valid origins are 1...8
833                                &planes);
834 
835                 for (int f = kP016_YUVFormat; f <= kLast_YUVFormat; ++f) {
836                     auto format = static_cast<YUVFormat>(f);
837                     SkBitmap resultBMs[4];
838 
839                     int numPlanes = create_YUV(planes, format, resultBMs, opaque);
840                     const YUVAPlanarConfig planarConfig(format,
841                                                         opaque,
842                                                         static_cast<SkEncodedOrigin>(origin + 1));
843                     SkYUVAPixmaps pixmaps =
844                             planarConfig.makeYUVAPixmaps(fOriginalBMs[opaque].dimensions(),
845                                                          static_cast<SkYUVColorSpace>(cs),
846                                                          resultBMs,
847                                                          numPlanes);
848                     auto lazyYUV = sk_gpu_test::LazyYUVImage::Make(std::move(pixmaps));
849 
850                     fImages[opaque][cs][format] = lazyYUV->refImage(dContext, fImageType);
851                 }
852                 origin = (origin + 1) % 8;
853             }
854         }
855 
856         if (dContext) {
857             // Some backends (e.g., Vulkan) require all work be completed for backend textures
858             // before they are deleted. Since we don't know when we'll next have access to a
859             // direct context, flush all the work now.
860             dContext->flush();
861             dContext->submit(true);
862         }
863 
864         return true;
865     }
866 
onGpuSetup(GrDirectContext * dContext,SkString * errorMsg)867     DrawResult onGpuSetup(GrDirectContext* dContext, SkString* errorMsg) override {
868         this->createBitmaps();
869 
870         if (dContext && dContext->abandoned()) {
871             // This isn't a GpuGM so a null 'context' is okay but an abandoned context
872             // if forbidden.
873             return DrawResult::kSkip;
874         }
875 
876         // Only the generator is expected to work with the CPU backend.
877         if (fImageType != Type::kFromGenerator && !dContext) {
878             return DrawResult::kSkip;
879         }
880 
881         if (!this->createImages(dContext)) {
882             *errorMsg = "Failed to create YUV images";
883             return DrawResult::kFail;
884         }
885 
886         return DrawResult::kOk;
887     }
888 
onGpuTeardown()889     void onGpuTeardown() override {
890         for (int i = 0; i < 2; ++i) {
891             for (int j = 0; j <= kLastEnum_SkYUVColorSpace; ++j) {
892                 for (int k = 0; k <= kLast_YUVFormat; ++k) {
893                     fImages[i][j][k] = nullptr;
894                 }
895             }
896         }
897     }
898 
onDraw(SkCanvas * canvas)899     void onDraw(SkCanvas* canvas) override {
900         auto direct = GrAsDirectContext(canvas->recordingContext());
901 
902         float cellWidth = kTileWidthHeight, cellHeight = kTileWidthHeight;
903         if (fUseSubset) {
904             cellWidth *= 1.5f;
905             cellHeight *= 1.5f;
906         }
907 
908         SkRect srcRect = SkRect::Make(fOriginalBMs[0].dimensions());
909         SkRect dstRect = SkRect::MakeXYWH(kLabelWidth, 0.f, srcRect.width(), srcRect.height());
910 
911         SkCanvas::SrcRectConstraint constraint = SkCanvas::kFast_SrcRectConstraint;
912         if (fUseSubset) {
913             srcRect.inset(kSubsetPadding, kSubsetPadding);
914             // Draw a larger rectangle to ensure bilerp filtering would normally read outside the
915             // srcRect and hit the red pixels, if strict constraint weren't used.
916             dstRect.fRight = kLabelWidth + 1.5f * srcRect.width();
917             dstRect.fBottom = 1.5f * srcRect.height();
918             constraint = SkCanvas::kStrict_SrcRectConstraint;
919         }
920 
921         SkSamplingOptions sampling(SkFilterMode::kLinear);
922         for (int cs = kJPEG_SkYUVColorSpace; cs <= kLastEnum_SkYUVColorSpace; ++cs) {
923             SkPaint paint;
924             if (kIdentity_SkYUVColorSpace == cs) {
925                 // The identity color space needs post processing to appear correctly
926                 paint.setColorFilter(yuv_to_rgb_colorfilter());
927             }
928 
929             for (int opaque : { 0, 1 }) {
930                 dstRect.offsetTo(dstRect.fLeft, kLabelHeight);
931 
932                 draw_col_label(canvas, dstRect.fLeft + cellWidth / 2, cs, opaque);
933 
934                 canvas->drawImageRect(fOriginalBMs[opaque].asImage(), srcRect, dstRect,
935                                       SkSamplingOptions(), nullptr, constraint);
936                 dstRect.offset(0.f, cellHeight + kPad);
937 
938                 for (int format = kP016_YUVFormat; format <= kLast_YUVFormat; ++format) {
939                     draw_row_label(canvas, dstRect.fTop, format);
940                     if (fUseTargetColorSpace && fImages[opaque][cs][format]) {
941                         // Making a CS-specific version of a kIdentity_SkYUVColorSpace YUV image
942                         // doesn't make a whole lot of sense. The colorSpace conversion will
943                         // operate on the YUV components rather than the RGB components.
944                         sk_sp<SkImage> csImage =
945                             fImages[opaque][cs][format]->makeColorSpace(fTargetColorSpace, direct);
946                         canvas->drawImageRect(csImage, srcRect, dstRect, sampling,
947                                               &paint, constraint);
948                     } else {
949                         canvas->drawImageRect(fImages[opaque][cs][format], srcRect, dstRect,
950                                               sampling, &paint, constraint);
951                     }
952                     dstRect.offset(0.f, cellHeight + kPad);
953                 }
954 
955                 dstRect.offset(cellWidth + kPad, 0.f);
956             }
957         }
958     }
959 
960 private:
961     SkBitmap                   fOriginalBMs[2];
962     sk_sp<SkImage>             fImages[2][kLastEnum_SkYUVColorSpace + 1][kLast_YUVFormat + 1];
963     bool                       fUseTargetColorSpace;
964     bool                       fUseSubset;
965     Type                       fImageType;
966     sk_sp<SkColorSpace>        fTargetColorSpace;
967 
968     using INHERITED = GM;
969 };
970 
971 //////////////////////////////////////////////////////////////////////////////
972 
973 DEF_GM(return new WackyYUVFormatsGM(/* target cs */ false,
974                                     /* subset */ false,
975                                     WackyYUVFormatsGM::Type::kFromTextures);)
976 DEF_GM(return new WackyYUVFormatsGM(/* target cs */ false,
977                                     /* subset */ true,
978                                     WackyYUVFormatsGM::Type::kFromTextures);)
979 DEF_GM(return new WackyYUVFormatsGM(/* target cs */ true,
980                                     /* subset */ false,
981                                     WackyYUVFormatsGM::Type::kFromTextures);)
982 DEF_GM(return new WackyYUVFormatsGM(/* target cs */ false,
983                                     /* subset */ false,
984                                     WackyYUVFormatsGM::Type::kFromGenerator);)
985 DEF_GM(return new WackyYUVFormatsGM(/* target cs */ false,
986                                     /* subset */ false,
987                                     WackyYUVFormatsGM::Type::kFromPixmaps);)
988 
989 class YUVMakeColorSpaceGM : public GM {
990 public:
YUVMakeColorSpaceGM()991     YUVMakeColorSpaceGM() {
992         this->setBGColor(0xFFCCCCCC);
993     }
994 
995 protected:
onShortName()996     SkString onShortName() override {
997         return SkString("yuv_make_color_space");
998     }
999 
onISize()1000     SkISize onISize() override {
1001         int numCols = 4; // (transparent, opaque) x (untagged, tagged)
1002         int numRows = 5; // original, YUV, subset, makeNonTextureImage, readPixels
1003         return SkISize::Make(numCols * (kTileWidthHeight + kPad) + kPad,
1004                              numRows * (kTileWidthHeight + kPad) + kPad);
1005     }
1006 
createBitmaps()1007     void createBitmaps() {
1008         SkPoint origin = { kTileWidthHeight/2.0f, kTileWidthHeight/2.0f };
1009         float outerRadius = kTileWidthHeight/2.0f - 20.0f;
1010         float innerRadius = 20.0f;
1011 
1012         {
1013             // transparent
1014             SkTDArray<SkRect> circles;
1015             SkPath path = create_splat(origin, innerRadius, outerRadius, 1.0f, 5, &circles);
1016             fOriginalBMs[0] = make_bitmap(kN32_SkColorType, path, circles, false, false);
1017         }
1018 
1019         {
1020             // opaque
1021             SkTDArray<SkRect> circles;
1022             SkPath path = create_splat(origin, innerRadius, outerRadius, 1.0f, 7, &circles);
1023             fOriginalBMs[1] = make_bitmap(kN32_SkColorType, path, circles, true, false);
1024         }
1025 
1026         fTargetColorSpace = SkColorSpace::MakeSRGB()->makeColorSpin();
1027     }
1028 
createImages(GrDirectContext * context)1029     bool createImages(GrDirectContext* context) {
1030         for (bool opaque : { false, true }) {
1031             PlaneData planes;
1032             extract_planes(fOriginalBMs[opaque],
1033                            kJPEG_SkYUVColorSpace,
1034                            kTopLeft_SkEncodedOrigin,
1035                            &planes);
1036 
1037             SkBitmap resultBMs[4];
1038 
1039             create_YUV(planes, kAYUV_YUVFormat, resultBMs, opaque);
1040 
1041             YUVAPlanarConfig planarConfig(kAYUV_YUVFormat, opaque, kTopLeft_SkEncodedOrigin);
1042 
1043             auto yuvaPixmaps = planarConfig.makeYUVAPixmaps(fOriginalBMs[opaque].dimensions(),
1044                                                             kJPEG_Full_SkYUVColorSpace,
1045                                                             resultBMs,
1046                                                             SK_ARRAY_COUNT(resultBMs));
1047 
1048             int i = 0;
1049             for (sk_sp<SkColorSpace> cs : {sk_sp<SkColorSpace>(nullptr),
1050                                            SkColorSpace::MakeSRGB()}) {
1051                 auto lazyYUV = sk_gpu_test::LazyYUVImage::Make(yuvaPixmaps,
1052                                                                GrMipmapped::kNo,
1053                                                                std::move(cs));
1054                 fImages[opaque][i++] =
1055                         lazyYUV->refImage(context, sk_gpu_test::LazyYUVImage::Type::kFromTextures);
1056             }
1057         }
1058 
1059         // Some backends (e.g., Vulkan) require all work be completed for backend textures before
1060         // they are deleted. Since we don't know when we'll next have access to a direct context,
1061         // flush all the work now.
1062         context->flush();
1063         context->submit(true);
1064 
1065         return true;
1066     }
1067 
onGpuSetup(GrDirectContext * dContext,SkString * errorMsg)1068     DrawResult onGpuSetup(GrDirectContext* dContext, SkString* errorMsg) override {
1069         if (!dContext || dContext->abandoned()) {
1070             *errorMsg = "DirectContext required to create YUV images";
1071             return DrawResult::kSkip;
1072         }
1073 
1074         this->createBitmaps();
1075         if (!this->createImages(dContext)) {
1076             *errorMsg = "Failed to create YUV images";
1077             return DrawResult::kFail;
1078         }
1079 
1080         return DrawResult::kOk;
1081     }
1082 
onGpuTeardown()1083     void onGpuTeardown() override {
1084         fImages[0][0] = fImages[0][1] = fImages[1][0] = fImages[1][1] = nullptr;
1085     }
1086 
onDraw(SkCanvas * canvas,SkString * msg)1087     DrawResult onDraw(SkCanvas* canvas, SkString* msg) override {
1088         SkASSERT(fImages[0][0] && fImages[0][1] && fImages[1][0] && fImages[1][1]);
1089 
1090         auto dContext = GrAsDirectContext(canvas->recordingContext());
1091         if (!dContext) {
1092             *msg = "YUV ColorSpace image creation requires a direct context.";
1093             return DrawResult::kSkip;
1094         }
1095 
1096         int x = kPad;
1097         for (int tagged : { 0, 1 }) {
1098             for (int opaque : { 0, 1 }) {
1099                 int y = kPad;
1100 
1101                 auto raster = fOriginalBMs[opaque].asImage()->makeColorSpace(fTargetColorSpace,
1102                                                                              nullptr);
1103                 canvas->drawImage(raster, x, y);
1104                 y += kTileWidthHeight + kPad;
1105 
1106                 if (fImages[opaque][tagged]) {
1107                     auto yuv = fImages[opaque][tagged]->makeColorSpace(fTargetColorSpace, dContext);
1108                     SkASSERT(yuv);
1109                     SkASSERT(SkColorSpace::Equals(yuv->colorSpace(), fTargetColorSpace.get()));
1110                     canvas->drawImage(yuv, x, y);
1111                     y += kTileWidthHeight + kPad;
1112 
1113                     SkIRect bounds = SkIRect::MakeWH(kTileWidthHeight / 2, kTileWidthHeight / 2);
1114                     auto subset = yuv->makeSubset(bounds, dContext);
1115                     SkASSERT(subset);
1116                     canvas->drawImage(subset, x, y);
1117                     y += kTileWidthHeight + kPad;
1118 
1119                     auto nonTexture = yuv->makeNonTextureImage();
1120                     SkASSERT(nonTexture);
1121                     canvas->drawImage(nonTexture, x, y);
1122                     y += kTileWidthHeight + kPad;
1123 
1124                     SkBitmap readBack;
1125                     readBack.allocPixels(yuv->imageInfo());
1126                     SkAssertResult(yuv->readPixels(dContext, readBack.pixmap(), 0, 0));
1127                     canvas->drawImage(readBack.asImage(), x, y);
1128                 }
1129                 x += kTileWidthHeight + kPad;
1130             }
1131         }
1132         return DrawResult::kOk;
1133     }
1134 
1135 private:
1136     SkBitmap fOriginalBMs[2];
1137     sk_sp<SkImage> fImages[2][2];
1138     sk_sp<SkColorSpace> fTargetColorSpace;
1139 
1140     using INHERITED = GM;
1141 };
1142 
1143 DEF_GM(return new YUVMakeColorSpaceGM();)
1144 
1145 }  // namespace skiagm
1146 
1147 ///////////////
1148 
1149 #include "include/effects/SkColorMatrix.h"
1150 #include "src/core/SkAutoPixmapStorage.h"
1151 #include "tools/Resources.h"
1152 
draw_diff(SkCanvas * canvas,SkScalar x,SkScalar y,const SkImage * a,const SkImage * b)1153 static void draw_diff(SkCanvas* canvas, SkScalar x, SkScalar y,
1154                       const SkImage* a, const SkImage* b) {
1155     auto sh = SkShaders::Blend(SkBlendMode::kDifference,
1156                                a->makeShader(SkSamplingOptions()),
1157                                b->makeShader(SkSamplingOptions()));
1158     SkPaint paint;
1159     paint.setShader(sh);
1160     canvas->save();
1161     canvas->translate(x, y);
1162     canvas->drawRect(SkRect::MakeWH(a->width(), a->height()), paint);
1163 
1164     SkColorMatrix cm;
1165     cm.setScale(64, 64, 64);
1166     paint.setShader(sh->makeWithColorFilter(SkColorFilters::Matrix(cm)));
1167     canvas->translate(0, a->height());
1168     canvas->drawRect(SkRect::MakeWH(a->width(), a->height()), paint);
1169 
1170     canvas->restore();
1171 }
1172 
1173 // Exercises SkColorMatrix_RGB2YUV for yuv colorspaces, showing the planes, and the
1174 // resulting (recombined) images (gpu only for now).
1175 //
1176 class YUVSplitterGM : public skiagm::GM {
1177     sk_sp<SkImage> fOrig;
1178 
1179 public:
YUVSplitterGM()1180     YUVSplitterGM() {}
1181 
1182 protected:
1183 
onShortName()1184     SkString onShortName() override {
1185         return SkString("yuv_splitter");
1186     }
1187 
onISize()1188     SkISize onISize() override {
1189         return SkISize::Make(1280, 768);
1190     }
1191 
onOnceBeforeDraw()1192     void onOnceBeforeDraw() override {
1193         fOrig = GetResourceAsImage("images/mandrill_256.png");
1194     }
1195 
onDraw(SkCanvas * canvas)1196     void onDraw(SkCanvas* canvas) override {
1197         canvas->translate(fOrig->width(), 0);
1198         canvas->save();
1199         SkYUVAInfo info;
1200         std::array<sk_sp<SkImage>, SkYUVAInfo::kMaxPlanes> planes;
1201         for (auto cs : {kRec709_SkYUVColorSpace,
1202                         kRec601_SkYUVColorSpace,
1203                         kJPEG_SkYUVColorSpace,
1204                         kBT2020_SkYUVColorSpace}) {
1205             std::tie(planes, info) = sk_gpu_test::MakeYUVAPlanesAsA8(fOrig.get(),
1206                                                                      cs,
1207                                                                      SkYUVAInfo::Subsampling::k444,
1208                                                                      /*recording context*/ nullptr);
1209             SkPixmap pixmaps[4];
1210             for (int i = 0; i < info.numPlanes(); ++i) {
1211                 planes[i]->peekPixels(&pixmaps[i]);
1212             }
1213             auto yuvaPixmaps = SkYUVAPixmaps::FromExternalPixmaps(info, pixmaps);
1214             auto img = SkImage::MakeFromYUVAPixmaps(canvas->recordingContext(),
1215                                                     yuvaPixmaps,
1216                                                     GrMipMapped::kNo,
1217                                                     /* limit to max tex size */ false,
1218                                                     /* color space */ nullptr);
1219             if (img) {
1220                 canvas->drawImage(img, 0, 0);
1221                 draw_diff(canvas, 0, fOrig->height(), fOrig.get(), img.get());
1222             }
1223             canvas->translate(fOrig->width(), 0);
1224         }
1225         canvas->restore();
1226         canvas->translate(-fOrig->width(), 0);
1227         int y = 0;
1228         for (int i = 0; i < info.numPlanes(); ++i) {
1229             canvas->drawImage(planes[i], 0, y);
1230             y += planes[i]->height();
1231         }
1232     }
1233 
1234 private:
1235     using INHERITED = GM;
1236 };
1237 DEF_GM( return new YUVSplitterGM; )
1238