1 /*
2  * Copyright 2015 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 "SkPixmap.h"
9 
10 #include "SkBitmap.h"
11 #include "SkColorData.h"
12 #include "SkConvertPixels.h"
13 #include "SkData.h"
14 #include "SkDraw.h"
15 #include "SkHalf.h"
16 #include "SkImageInfoPriv.h"
17 #include "SkImageShader.h"
18 #include "SkMask.h"
19 #include "SkNx.h"
20 #include "SkPixmapPriv.h"
21 #include "SkRasterClip.h"
22 #include "SkReadPixelsRec.h"
23 #include "SkSurface.h"
24 #include "SkTemplates.h"
25 #include "SkTo.h"
26 #include "SkUnPreMultiply.h"
27 #include "SkUtils.h"
28 
29 #include <utility>
30 
31 /////////////////////////////////////////////////////////////////////////////////////////////////
32 
reset()33 void SkPixmap::reset() {
34     fPixels = nullptr;
35     fRowBytes = 0;
36     fInfo = SkImageInfo::MakeUnknown();
37 }
38 
reset(const SkImageInfo & info,const void * addr,size_t rowBytes)39 void SkPixmap::reset(const SkImageInfo& info, const void* addr, size_t rowBytes) {
40     if (addr) {
41         SkASSERT(info.validRowBytes(rowBytes));
42     }
43     fPixels = addr;
44     fRowBytes = rowBytes;
45     fInfo = info;
46 }
47 
reset(const SkMask & src)48 bool SkPixmap::reset(const SkMask& src) {
49     if (SkMask::kA8_Format == src.fFormat) {
50         this->reset(SkImageInfo::MakeA8(src.fBounds.width(), src.fBounds.height()),
51                     src.fImage, src.fRowBytes);
52         return true;
53     }
54     this->reset();
55     return false;
56 }
57 
setColorSpace(sk_sp<SkColorSpace> cs)58 void SkPixmap::setColorSpace(sk_sp<SkColorSpace> cs) {
59     fInfo = fInfo.makeColorSpace(std::move(cs));
60 }
61 
extractSubset(SkPixmap * result,const SkIRect & subset) const62 bool SkPixmap::extractSubset(SkPixmap* result, const SkIRect& subset) const {
63     SkIRect srcRect, r;
64     srcRect.set(0, 0, this->width(), this->height());
65     if (!r.intersect(srcRect, subset)) {
66         return false;   // r is empty (i.e. no intersection)
67     }
68 
69     // If the upper left of the rectangle was outside the bounds of this SkBitmap, we should have
70     // exited above.
71     SkASSERT(static_cast<unsigned>(r.fLeft) < static_cast<unsigned>(this->width()));
72     SkASSERT(static_cast<unsigned>(r.fTop) < static_cast<unsigned>(this->height()));
73 
74     const void* pixels = nullptr;
75     if (fPixels) {
76         const size_t bpp = fInfo.bytesPerPixel();
77         pixels = (const uint8_t*)fPixels + r.fTop * fRowBytes + r.fLeft * bpp;
78     }
79     result->reset(fInfo.makeWH(r.width(), r.height()), pixels, fRowBytes);
80     return true;
81 }
82 
83 // This is the same as SkPixmap::addr(x,y), but this version gets inlined, while the public
84 // method does not. Perhaps we could bloat it so it can be inlined, but that would grow code-size
85 // everywhere, instead of just here (on behalf of getAlphaf()).
fast_getaddr(const SkPixmap & pm,int x,int y)86 static const void* fast_getaddr(const SkPixmap& pm, int x, int y) {
87     x <<= SkColorTypeShiftPerPixel(pm.colorType());
88     return static_cast<const char*>(pm.addr()) + y * pm.rowBytes() + x;
89 }
90 
getAlphaf(int x,int y) const91 float SkPixmap::getAlphaf(int x, int y) const {
92     SkASSERT(this->addr());
93     SkASSERT((unsigned)x < (unsigned)this->width());
94     SkASSERT((unsigned)y < (unsigned)this->height());
95 
96     float value = 0;
97     const void* srcPtr = fast_getaddr(*this, x, y);
98 
99     switch (this->colorType()) {
100         case kUnknown_SkColorType:
101             return 0;
102         case kGray_8_SkColorType:
103         case kRGB_565_SkColorType:
104         case kRGB_888x_SkColorType:
105         case kRGB_101010x_SkColorType:
106             return 1;
107         case kAlpha_8_SkColorType:
108             value = static_cast<const uint8_t*>(srcPtr)[0] * (1.0f/255);
109             break;
110         case kARGB_4444_SkColorType: {
111             uint16_t u16 = static_cast<const uint16_t*>(srcPtr)[0];
112             value = SkGetPackedA4444(u16) * (1.0f/15);
113         } break;
114         case kRGBA_8888_SkColorType:
115         case kBGRA_8888_SkColorType:
116             value = static_cast<const uint8_t*>(srcPtr)[3] * (1.0f/255);
117             break;
118         case kRGBA_1010102_SkColorType: {
119             uint32_t u32 = static_cast<const uint32_t*>(srcPtr)[0];
120             value = (u32 >> 30) * (1.0f/3);
121         } break;
122         case kRGBA_F16_SkColorType: {
123             uint64_t px;
124             memcpy(&px, srcPtr, sizeof(px));
125             value = SkHalfToFloat_finite_ftz(px)[3];
126         } break;
127         case kRGBA_F32_SkColorType:
128             value = static_cast<const float*>(srcPtr)[3];
129             break;
130     }
131     return value;
132 }
133 
readPixels(const SkImageInfo & dstInfo,void * dstPixels,size_t dstRB,int x,int y) const134 bool SkPixmap::readPixels(const SkImageInfo& dstInfo, void* dstPixels, size_t dstRB,
135                           int x, int y) const {
136     if (!SkImageInfoValidConversion(dstInfo, fInfo)) {
137         return false;
138     }
139 
140     SkReadPixelsRec rec(dstInfo, dstPixels, dstRB, x, y);
141     if (!rec.trim(fInfo.width(), fInfo.height())) {
142         return false;
143     }
144 
145     const void* srcPixels = this->addr(rec.fX, rec.fY);
146     const SkImageInfo srcInfo = fInfo.makeWH(rec.fInfo.width(), rec.fInfo.height());
147     SkConvertPixels(rec.fInfo, rec.fPixels, rec.fRowBytes, srcInfo, srcPixels, this->rowBytes());
148     return true;
149 }
150 
erase(SkColor color,const SkIRect & subset) const151 bool SkPixmap::erase(SkColor color, const SkIRect& subset) const {
152     return this->erase(SkColor4f::FromColor(color), &subset);
153 }
154 
erase(const SkColor4f & color,const SkIRect * subset) const155 bool SkPixmap::erase(const SkColor4f& color, const SkIRect* subset) const {
156     SkPaint paint;
157     paint.setBlendMode(SkBlendMode::kSrc);
158     paint.setColor4f(color, this->colorSpace());
159 
160     SkIRect clip = this->bounds();
161     if (subset && !clip.intersect(*subset)) {
162         return false;
163     }
164     SkRasterClip rc{clip};
165 
166     SkDraw draw;
167     draw.fDst    = *this;
168     draw.fMatrix = &SkMatrix::I();
169     draw.fRC     = &rc;
170 
171     draw.drawPaint(paint);
172     return true;
173 }
174 
scalePixels(const SkPixmap & actualDst,SkFilterQuality quality) const175 bool SkPixmap::scalePixels(const SkPixmap& actualDst, SkFilterQuality quality) const {
176     // We may need to tweak how we interpret these just a little below, so we make copies.
177     SkPixmap src = *this,
178              dst = actualDst;
179 
180     // Can't do anthing with empty src or dst
181     if (src.width() <= 0 || src.height() <= 0 ||
182         dst.width() <= 0 || dst.height() <= 0) {
183         return false;
184     }
185 
186     // no scaling involved?
187     if (src.width() == dst.width() && src.height() == dst.height()) {
188         return src.readPixels(dst);
189     }
190 
191     // If src and dst are both unpremul, we'll fake the source out to appear as if premul,
192     // and mark the destination as opaque.  This odd combination allows us to scale unpremul
193     // pixels without ever premultiplying them (perhaps losing information in the color channels).
194     // This is an idiosyncratic feature of scalePixels(), and is tested by scalepixels_unpremul GM.
195     bool clampAsIfUnpremul = false;
196     if (src.alphaType() == kUnpremul_SkAlphaType &&
197         dst.alphaType() == kUnpremul_SkAlphaType) {
198         src.reset(src.info().makeAlphaType(kPremul_SkAlphaType), src.addr(), src.rowBytes());
199         dst.reset(dst.info().makeAlphaType(kOpaque_SkAlphaType), dst.addr(), dst.rowBytes());
200 
201         // We'll need to tell the image shader to clamp to [0,1] instead of the
202         // usual [0,a] when using a bicubic scaling (kHigh_SkFilterQuality).
203         clampAsIfUnpremul = true;
204     }
205 
206     SkBitmap bitmap;
207     if (!bitmap.installPixels(src)) {
208         return false;
209     }
210     bitmap.setImmutable();        // Don't copy when we create an image.
211     bitmap.setIsVolatile(true);   // Disable any caching.
212 
213     SkMatrix scale = SkMatrix::MakeRectToRect(SkRect::Make(src.bounds()),
214                                               SkRect::Make(dst.bounds()),
215                                               SkMatrix::kFill_ScaleToFit);
216 
217     // We'll create a shader to do this draw so we have control over the bicubic clamp.
218     sk_sp<SkShader> shader = SkImageShader::Make(SkImage::MakeFromBitmap(bitmap),
219                                                  SkShader::kClamp_TileMode,
220                                                  SkShader::kClamp_TileMode,
221                                                  &scale,
222                                                  clampAsIfUnpremul);
223 
224     sk_sp<SkSurface> surface = SkSurface::MakeRasterDirect(dst.info(),
225                                                            dst.writable_addr(),
226                                                            dst.rowBytes());
227     if (!shader || !surface) {
228         return false;
229     }
230 
231     SkPaint paint;
232     paint.setBlendMode(SkBlendMode::kSrc);
233     paint.setFilterQuality(quality);
234     paint.setShader(std::move(shader));
235     surface->getCanvas()->drawPaint(paint);
236     return true;
237 }
238 
239 //////////////////////////////////////////////////////////////////////////////////////////////////
240 
getColor(int x,int y) const241 SkColor SkPixmap::getColor(int x, int y) const {
242     SkASSERT(this->addr());
243     SkASSERT((unsigned)x < (unsigned)this->width());
244     SkASSERT((unsigned)y < (unsigned)this->height());
245 
246     const bool needsUnpremul = (kPremul_SkAlphaType == fInfo.alphaType());
247     auto toColor = [needsUnpremul](uint32_t maybePremulColor) {
248         return needsUnpremul ? SkUnPreMultiply::PMColorToColor(maybePremulColor)
249                              : SkSwizzle_BGRA_to_PMColor(maybePremulColor);
250     };
251 
252     switch (this->colorType()) {
253         case kGray_8_SkColorType: {
254             uint8_t value = *this->addr8(x, y);
255             return SkColorSetRGB(value, value, value);
256         }
257         case kAlpha_8_SkColorType: {
258             return SkColorSetA(0, *this->addr8(x, y));
259         }
260         case kRGB_565_SkColorType: {
261             return SkPixel16ToColor(*this->addr16(x, y));
262         }
263         case kARGB_4444_SkColorType: {
264             uint16_t value = *this->addr16(x, y);
265             SkPMColor c = SkPixel4444ToPixel32(value);
266             return toColor(c);
267         }
268         case kRGB_888x_SkColorType: {
269             uint32_t value = *this->addr32(x, y);
270             return SkSwizzle_RB(value | 0xff000000);
271         }
272         case kBGRA_8888_SkColorType: {
273             uint32_t value = *this->addr32(x, y);
274             SkPMColor c = SkSwizzle_BGRA_to_PMColor(value);
275             return toColor(c);
276         }
277         case kRGBA_8888_SkColorType: {
278             uint32_t value = *this->addr32(x, y);
279             SkPMColor c = SkSwizzle_RGBA_to_PMColor(value);
280             return toColor(c);
281         }
282         case kRGB_101010x_SkColorType: {
283             uint32_t value = *this->addr32(x, y);
284             // Convert 10-bit rgb to 8-bit bgr, and mask in 0xff alpha at the top.
285             return (uint32_t)( ((value >>  0) & 0x3ff) * (255/1023.0f) ) << 16
286                  | (uint32_t)( ((value >> 10) & 0x3ff) * (255/1023.0f) ) <<  8
287                  | (uint32_t)( ((value >> 20) & 0x3ff) * (255/1023.0f) ) <<  0
288                  | 0xff000000;
289         }
290         case kRGBA_1010102_SkColorType: {
291             uint32_t value = *this->addr32(x, y);
292 
293             float r = ((value >>  0) & 0x3ff) * (1/1023.0f),
294                   g = ((value >> 10) & 0x3ff) * (1/1023.0f),
295                   b = ((value >> 20) & 0x3ff) * (1/1023.0f),
296                   a = ((value >> 30) & 0x3  ) * (1/   3.0f);
297             if (a != 0 && needsUnpremul) {
298                 r *= (1.0f/a);
299                 g *= (1.0f/a);
300                 b *= (1.0f/a);
301             }
302             return (uint32_t)( r * 255.0f ) << 16
303                  | (uint32_t)( g * 255.0f ) <<  8
304                  | (uint32_t)( b * 255.0f ) <<  0
305                  | (uint32_t)( a * 255.0f ) << 24;
306         }
307         case kRGBA_F16_SkColorType: {
308             const uint64_t* addr =
309                 (const uint64_t*)fPixels + y * (fRowBytes >> 3) + x;
310             Sk4f p4 = SkHalfToFloat_finite_ftz(*addr);
311             if (p4[3] && needsUnpremul) {
312                 float inva = 1 / p4[3];
313                 p4 = p4 * Sk4f(inva, inva, inva, 1);
314             }
315             SkColor c;
316             SkNx_cast<uint8_t>(p4 * Sk4f(255) + Sk4f(0.5f)).store(&c);
317             // p4 is RGBA, but we want BGRA, so we need to swap next
318             return SkSwizzle_RB(c);
319         }
320         case kRGBA_F32_SkColorType: {
321             const float* rgba =
322                 (const float*)fPixels + 4*y*(fRowBytes >> 4) + 4*x;
323             Sk4f p4 = Sk4f::Load(rgba);
324             // From here on, just like F16:
325             if (p4[3] && needsUnpremul) {
326                 float inva = 1 / p4[3];
327                 p4 = p4 * Sk4f(inva, inva, inva, 1);
328             }
329             SkColor c;
330             SkNx_cast<uint8_t>(p4 * Sk4f(255) + Sk4f(0.5f)).store(&c);
331             // p4 is RGBA, but we want BGRA, so we need to swap next
332             return SkSwizzle_RB(c);
333         }
334         default:
335             SkDEBUGFAIL("");
336             return SkColorSetARGB(0, 0, 0, 0);
337     }
338 }
339 
computeIsOpaque() const340 bool SkPixmap::computeIsOpaque() const {
341     const int height = this->height();
342     const int width = this->width();
343 
344     switch (this->colorType()) {
345         case kAlpha_8_SkColorType: {
346             unsigned a = 0xFF;
347             for (int y = 0; y < height; ++y) {
348                 const uint8_t* row = this->addr8(0, y);
349                 for (int x = 0; x < width; ++x) {
350                     a &= row[x];
351                 }
352                 if (0xFF != a) {
353                     return false;
354                 }
355             }
356             return true;
357         } break;
358         case kRGB_565_SkColorType:
359         case kGray_8_SkColorType:
360         case kRGB_888x_SkColorType:
361         case kRGB_101010x_SkColorType:
362             return true;
363             break;
364         case kARGB_4444_SkColorType: {
365             unsigned c = 0xFFFF;
366             for (int y = 0; y < height; ++y) {
367                 const SkPMColor16* row = this->addr16(0, y);
368                 for (int x = 0; x < width; ++x) {
369                     c &= row[x];
370                 }
371                 if (0xF != SkGetPackedA4444(c)) {
372                     return false;
373                 }
374             }
375             return true;
376         } break;
377         case kBGRA_8888_SkColorType:
378         case kRGBA_8888_SkColorType: {
379             SkPMColor c = (SkPMColor)~0;
380             for (int y = 0; y < height; ++y) {
381                 const SkPMColor* row = this->addr32(0, y);
382                 for (int x = 0; x < width; ++x) {
383                     c &= row[x];
384                 }
385                 if (0xFF != SkGetPackedA32(c)) {
386                     return false;
387                 }
388             }
389             return true;
390         }
391         case kRGBA_F16_SkColorType: {
392             const SkHalf* row = (const SkHalf*)this->addr();
393             for (int y = 0; y < height; ++y) {
394                 for (int x = 0; x < width; ++x) {
395                     if (row[4 * x + 3] < SK_Half1) {
396                         return false;
397                     }
398                 }
399                 row += this->rowBytes() >> 1;
400             }
401             return true;
402         }
403         case kRGBA_F32_SkColorType: {
404             const float* row = (const float*)this->addr();
405             for (int y = 0; y < height; ++y) {
406                 for (int x = 0; x < width; ++x) {
407                     if (row[4 * x + 3] < 1.0f) {
408                         return false;
409                     }
410                 }
411                 row += this->rowBytes() >> 2;
412             }
413             return true;
414         }
415         case kRGBA_1010102_SkColorType: {
416             uint32_t c = ~0;
417             for (int y = 0; y < height; ++y) {
418                 const uint32_t* row = this->addr32(0, y);
419                 for (int x = 0; x < width; ++x) {
420                     c &= row[x];
421                 }
422                 if (0b11 != c >> 30) {
423                     return false;
424                 }
425             }
426             return true;
427         }
428         case kUnknown_SkColorType:
429             SkDEBUGFAIL("");
430             break;
431     }
432     return false;
433 }
434 
435 //////////////////////////////////////////////////////////////////////////////////////////////////
436 
draw_orientation(const SkPixmap & dst,const SkPixmap & src,SkEncodedOrigin origin)437 static bool draw_orientation(const SkPixmap& dst, const SkPixmap& src, SkEncodedOrigin origin) {
438     auto surf = SkSurface::MakeRasterDirect(dst.info(), dst.writable_addr(), dst.rowBytes());
439     if (!surf) {
440         return false;
441     }
442 
443     SkBitmap bm;
444     bm.installPixels(src);
445 
446     SkMatrix m = SkEncodedOriginToMatrix(origin, src.width(), src.height());
447 
448     SkPaint p;
449     p.setBlendMode(SkBlendMode::kSrc);
450     surf->getCanvas()->concat(m);
451     surf->getCanvas()->drawBitmap(bm, 0, 0, &p);
452     return true;
453 }
454 
Orient(const SkPixmap & dst,const SkPixmap & src,SkEncodedOrigin origin)455 bool SkPixmapPriv::Orient(const SkPixmap& dst, const SkPixmap& src, SkEncodedOrigin origin) {
456     if (src.colorType() != dst.colorType()) {
457         return false;
458     }
459     // note: we just ignore alphaType and colorSpace for this transformation
460 
461     int w = src.width();
462     int h = src.height();
463     if (ShouldSwapWidthHeight(origin)) {
464         using std::swap;
465         swap(w, h);
466     }
467     if (dst.width() != w || dst.height() != h) {
468         return false;
469     }
470     if (w == 0 || h == 0) {
471         return true;
472     }
473 
474     // check for aliasing to self
475     if (src.addr() == dst.addr()) {
476         return kTopLeft_SkEncodedOrigin == origin;
477     }
478     return draw_orientation(dst, src, origin);
479 }
480 
ShouldSwapWidthHeight(SkEncodedOrigin origin)481 bool SkPixmapPriv::ShouldSwapWidthHeight(SkEncodedOrigin origin) {
482     // The last four SkEncodedOrigin values involve 90 degree rotations
483     return origin >= kLeftTop_SkEncodedOrigin;
484 }
485 
SwapWidthHeight(const SkImageInfo & info)486 SkImageInfo SkPixmapPriv::SwapWidthHeight(const SkImageInfo& info) {
487     return info.makeWH(info.height(), info.width());
488 }
489 
490