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Side by Side Diff: src/core/SkBitmapProcShader.cpp

Issue 241283003: Revert of Extract most of the mutable state of SkShader into a separate Context object. (Closed) Base URL: https://skia.googlesource.com/skia.git@master
Patch Set: Created 6 years, 8 months ago
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1 1
2 /* 2 /*
3 * Copyright 2011 Google Inc. 3 * Copyright 2011 Google Inc.
4 * 4 *
5 * Use of this source code is governed by a BSD-style license that can be 5 * Use of this source code is governed by a BSD-style license that can be
6 * found in the LICENSE file. 6 * found in the LICENSE file.
7 */ 7 */
8 #include "SkColorPriv.h" 8 #include "SkColorPriv.h"
9 #include "SkReadBuffer.h" 9 #include "SkReadBuffer.h"
10 #include "SkWriteBuffer.h" 10 #include "SkWriteBuffer.h"
(...skipping 16 matching lines...) Expand all
27 return true; 27 return true;
28 default: 28 default:
29 break; 29 break;
30 } 30 }
31 return false; 31 return false;
32 } 32 }
33 33
34 SkBitmapProcShader::SkBitmapProcShader(const SkBitmap& src, 34 SkBitmapProcShader::SkBitmapProcShader(const SkBitmap& src,
35 TileMode tmx, TileMode tmy) { 35 TileMode tmx, TileMode tmy) {
36 fRawBitmap = src; 36 fRawBitmap = src;
37 fTileModeX = (uint8_t)tmx; 37 fState.fTileModeX = (uint8_t)tmx;
38 fTileModeY = (uint8_t)tmy; 38 fState.fTileModeY = (uint8_t)tmy;
39 fFlags = 0; // computed in setContext
39 } 40 }
40 41
41 SkBitmapProcShader::SkBitmapProcShader(SkReadBuffer& buffer) 42 SkBitmapProcShader::SkBitmapProcShader(SkReadBuffer& buffer)
42 : INHERITED(buffer) { 43 : INHERITED(buffer) {
43 buffer.readBitmap(&fRawBitmap); 44 buffer.readBitmap(&fRawBitmap);
44 fRawBitmap.setImmutable(); 45 fRawBitmap.setImmutable();
45 fTileModeX = buffer.readUInt(); 46 fState.fTileModeX = buffer.readUInt();
46 fTileModeY = buffer.readUInt(); 47 fState.fTileModeY = buffer.readUInt();
48 fFlags = 0; // computed in setContext
47 } 49 }
48 50
49 SkShader::BitmapType SkBitmapProcShader::asABitmap(SkBitmap* texture, 51 SkShader::BitmapType SkBitmapProcShader::asABitmap(SkBitmap* texture,
50 SkMatrix* texM, 52 SkMatrix* texM,
51 TileMode xy[]) const { 53 TileMode xy[]) const {
52 if (texture) { 54 if (texture) {
53 *texture = fRawBitmap; 55 *texture = fRawBitmap;
54 } 56 }
55 if (texM) { 57 if (texM) {
56 texM->reset(); 58 texM->reset();
57 } 59 }
58 if (xy) { 60 if (xy) {
59 xy[0] = (TileMode)fTileModeX; 61 xy[0] = (TileMode)fState.fTileModeX;
60 xy[1] = (TileMode)fTileModeY; 62 xy[1] = (TileMode)fState.fTileModeY;
61 } 63 }
62 return kDefault_BitmapType; 64 return kDefault_BitmapType;
63 } 65 }
64 66
65 void SkBitmapProcShader::flatten(SkWriteBuffer& buffer) const { 67 void SkBitmapProcShader::flatten(SkWriteBuffer& buffer) const {
66 this->INHERITED::flatten(buffer); 68 this->INHERITED::flatten(buffer);
67 69
68 buffer.writeBitmap(fRawBitmap); 70 buffer.writeBitmap(fRawBitmap);
69 buffer.writeUInt(fTileModeX); 71 buffer.writeUInt(fState.fTileModeX);
70 buffer.writeUInt(fTileModeY); 72 buffer.writeUInt(fState.fTileModeY);
71 } 73 }
72 74
73 static bool only_scale_and_translate(const SkMatrix& matrix) { 75 static bool only_scale_and_translate(const SkMatrix& matrix) {
74 unsigned mask = SkMatrix::kTranslate_Mask | SkMatrix::kScale_Mask; 76 unsigned mask = SkMatrix::kTranslate_Mask | SkMatrix::kScale_Mask;
75 return (matrix.getType() & ~mask) == 0; 77 return (matrix.getType() & ~mask) == 0;
76 } 78 }
77 79
78 bool SkBitmapProcShader::isOpaque() const { 80 bool SkBitmapProcShader::isOpaque() const {
79 return fRawBitmap.isOpaque(); 81 return fRawBitmap.isOpaque();
80 } 82 }
81 83
82 static bool valid_for_drawing(const SkBitmap& bm) { 84 static bool valid_for_drawing(const SkBitmap& bm) {
83 if (0 == bm.width() || 0 == bm.height()) { 85 if (0 == bm.width() || 0 == bm.height()) {
84 return false; // nothing to draw 86 return false; // nothing to draw
85 } 87 }
86 if (NULL == bm.pixelRef()) { 88 if (NULL == bm.pixelRef()) {
87 return false; // no pixels to read 89 return false; // no pixels to read
88 } 90 }
89 if (kIndex_8_SkColorType == bm.colorType()) { 91 if (kIndex_8_SkColorType == bm.colorType()) {
90 // ugh, I have to lock-pixels to inspect the colortable 92 // ugh, I have to lock-pixels to inspect the colortable
91 SkAutoLockPixels alp(bm); 93 SkAutoLockPixels alp(bm);
92 if (!bm.getColorTable()) { 94 if (!bm.getColorTable()) {
93 return false; 95 return false;
94 } 96 }
95 } 97 }
96 return true; 98 return true;
97 } 99 }
98 100
99 bool SkBitmapProcShader::validInternal(const SkBitmap& device, 101 bool SkBitmapProcShader::setContext(const SkBitmap& device,
100 const SkPaint& paint, 102 const SkPaint& paint,
101 const SkMatrix& matrix, 103 const SkMatrix& matrix) {
102 SkMatrix* totalInverse,
103 SkBitmapProcState* state) const {
104 if (!fRawBitmap.getTexture() && !valid_for_drawing(fRawBitmap)) { 104 if (!fRawBitmap.getTexture() && !valid_for_drawing(fRawBitmap)) {
105 return false; 105 return false;
106 } 106 }
107 107
108 // Make sure we can use totalInverse as a cache. 108 // do this first, so we have a correct inverse matrix
109 SkMatrix totalInverseLocal; 109 if (!this->INHERITED::setContext(device, paint, matrix)) {
110 if (NULL == totalInverse) {
111 totalInverse = &totalInverseLocal;
112 }
113
114 // Do this first, so we know the matrix can be inverted.
115 if (!this->INHERITED::validContext(device, paint, matrix, totalInverse)) {
116 return false; 110 return false;
117 } 111 }
118 112
119 SkASSERT(state); 113 fState.fOrigBitmap = fRawBitmap;
120 state->fTileModeX = fTileModeX; 114 if (!fState.chooseProcs(this->getTotalInverse(), paint)) {
121 state->fTileModeY = fTileModeY; 115 this->INHERITED::endContext();
122 state->fOrigBitmap = fRawBitmap; 116 return false;
123 return state->chooseProcs(*totalInverse, paint);
124 }
125
126 bool SkBitmapProcShader::validContext(const SkBitmap& device,
127 const SkPaint& paint,
128 const SkMatrix& matrix,
129 SkMatrix* totalInverse) const {
130 SkBitmapProcState state;
131 return this->validInternal(device, paint, matrix, totalInverse, &state);
132 }
133
134 SkShader::Context* SkBitmapProcShader::createContext(const SkBitmap& device, con st SkPaint& paint,
135 const SkMatrix& matrix, voi d* storage) const {
136 void* stateStorage = (char*)storage + sizeof(BitmapProcShaderContext);
137 SkBitmapProcState* state = SkNEW_PLACEMENT(stateStorage, SkBitmapProcState);
138 if (!this->validInternal(device, paint, matrix, NULL, state)) {
139 state->~SkBitmapProcState();
140 return NULL;
141 } 117 }
142 118
143 return SkNEW_PLACEMENT_ARGS(storage, BitmapProcShaderContext, 119 const SkBitmap& bitmap = *fState.fBitmap;
144 (*this, device, paint, matrix, state));
145 }
146
147 size_t SkBitmapProcShader::contextSize() const {
148 // The SkBitmapProcState is stored outside of the context object, with the c ontext holding
149 // a pointer to it.
150 return sizeof(BitmapProcShaderContext) + sizeof(SkBitmapProcState);
151 }
152
153 SkBitmapProcShader::BitmapProcShaderContext::BitmapProcShaderContext(
154 const SkBitmapProcShader& shader, const SkBitmap& device,
155 const SkPaint& paint, const SkMatrix& matrix, SkBitmapProcState* state)
156 : INHERITED(shader, device, paint, matrix)
157 , fState(state)
158 {
159 const SkBitmap& bitmap = *fState->fBitmap;
160 bool bitmapIsOpaque = bitmap.isOpaque(); 120 bool bitmapIsOpaque = bitmap.isOpaque();
161 121
162 // update fFlags 122 // update fFlags
163 uint32_t flags = 0; 123 uint32_t flags = 0;
164 if (bitmapIsOpaque && (255 == this->getPaintAlpha())) { 124 if (bitmapIsOpaque && (255 == this->getPaintAlpha())) {
165 flags |= kOpaqueAlpha_Flag; 125 flags |= kOpaqueAlpha_Flag;
166 } 126 }
167 127
168 switch (bitmap.colorType()) { 128 switch (bitmap.colorType()) {
169 case kRGB_565_SkColorType: 129 case kRGB_565_SkColorType:
(...skipping 20 matching lines...) Expand all
190 // if we're only 1-pixel high, and we don't rotate, then we can claim this 150 // if we're only 1-pixel high, and we don't rotate, then we can claim this
191 if (1 == bitmap.height() && 151 if (1 == bitmap.height() &&
192 only_scale_and_translate(this->getTotalInverse())) { 152 only_scale_and_translate(this->getTotalInverse())) {
193 flags |= kConstInY32_Flag; 153 flags |= kConstInY32_Flag;
194 if (flags & kHasSpan16_Flag) { 154 if (flags & kHasSpan16_Flag) {
195 flags |= kConstInY16_Flag; 155 flags |= kConstInY16_Flag;
196 } 156 }
197 } 157 }
198 158
199 fFlags = flags; 159 fFlags = flags;
160 return true;
200 } 161 }
201 162
202 SkBitmapProcShader::BitmapProcShaderContext::~BitmapProcShaderContext() { 163 void SkBitmapProcShader::endContext() {
203 // The bitmap proc state has been created outside of the context on memory t hat will be freed 164 fState.endContext();
204 // elsewhere. Only call the destructor but leave the freeing of the memory t o the caller. 165 this->INHERITED::endContext();
205 fState->~SkBitmapProcState();
206 } 166 }
207 167
208 #define BUF_MAX 128 168 #define BUF_MAX 128
209 169
210 #define TEST_BUFFER_OVERRITEx 170 #define TEST_BUFFER_OVERRITEx
211 171
212 #ifdef TEST_BUFFER_OVERRITE 172 #ifdef TEST_BUFFER_OVERRITE
213 #define TEST_BUFFER_EXTRA 32 173 #define TEST_BUFFER_EXTRA 32
214 #define TEST_PATTERN 0x88888888 174 #define TEST_PATTERN 0x88888888
215 #else 175 #else
216 #define TEST_BUFFER_EXTRA 0 176 #define TEST_BUFFER_EXTRA 0
217 #endif 177 #endif
218 178
219 void SkBitmapProcShader::BitmapProcShaderContext::shadeSpan(int x, int y, SkPMCo lor dstC[], 179 void SkBitmapProcShader::shadeSpan(int x, int y, SkPMColor dstC[], int count) {
220 int count) { 180 const SkBitmapProcState& state = fState;
221 const SkBitmapProcState& state = *fState;
222 if (state.getShaderProc32()) { 181 if (state.getShaderProc32()) {
223 state.getShaderProc32()(state, x, y, dstC, count); 182 state.getShaderProc32()(state, x, y, dstC, count);
224 return; 183 return;
225 } 184 }
226 185
227 uint32_t buffer[BUF_MAX + TEST_BUFFER_EXTRA]; 186 uint32_t buffer[BUF_MAX + TEST_BUFFER_EXTRA];
228 SkBitmapProcState::MatrixProc mproc = state.getMatrixProc(); 187 SkBitmapProcState::MatrixProc mproc = state.getMatrixProc();
229 SkBitmapProcState::SampleProc32 sproc = state.getSampleProc32(); 188 SkBitmapProcState::SampleProc32 sproc = state.getSampleProc32();
230 int max = state.maxCountForBufferSize(sizeof(buffer[0]) * BUF_MAX); 189 int max = fState.maxCountForBufferSize(sizeof(buffer[0]) * BUF_MAX);
231 190
232 SkASSERT(state.fBitmap->getPixels()); 191 SkASSERT(state.fBitmap->getPixels());
233 SkASSERT(state.fBitmap->pixelRef() == NULL || 192 SkASSERT(state.fBitmap->pixelRef() == NULL ||
234 state.fBitmap->pixelRef()->isLocked()); 193 state.fBitmap->pixelRef()->isLocked());
235 194
236 for (;;) { 195 for (;;) {
237 int n = count; 196 int n = count;
238 if (n > max) { 197 if (n > max) {
239 n = max; 198 n = max;
240 } 199 }
(...skipping 13 matching lines...) Expand all
254 213
255 if ((count -= n) == 0) { 214 if ((count -= n) == 0) {
256 break; 215 break;
257 } 216 }
258 SkASSERT(count > 0); 217 SkASSERT(count > 0);
259 x += n; 218 x += n;
260 dstC += n; 219 dstC += n;
261 } 220 }
262 } 221 }
263 222
264 SkShader::Context::ShadeProc SkBitmapProcShader::BitmapProcShaderContext::asASha deProc(void** ctx) { 223 SkShader::ShadeProc SkBitmapProcShader::asAShadeProc(void** ctx) {
265 if (fState->getShaderProc32()) { 224 if (fState.getShaderProc32()) {
266 *ctx = fState; 225 *ctx = &fState;
267 return (ShadeProc)fState->getShaderProc32(); 226 return (ShadeProc)fState.getShaderProc32();
268 } 227 }
269 return NULL; 228 return NULL;
270 } 229 }
271 230
272 void SkBitmapProcShader::BitmapProcShaderContext::shadeSpan16(int x, int y, uint 16_t dstC[], 231 void SkBitmapProcShader::shadeSpan16(int x, int y, uint16_t dstC[], int count) {
273 int count) { 232 const SkBitmapProcState& state = fState;
274 const SkBitmapProcState& state = *fState;
275 if (state.getShaderProc16()) { 233 if (state.getShaderProc16()) {
276 state.getShaderProc16()(state, x, y, dstC, count); 234 state.getShaderProc16()(state, x, y, dstC, count);
277 return; 235 return;
278 } 236 }
279 237
280 uint32_t buffer[BUF_MAX]; 238 uint32_t buffer[BUF_MAX];
281 SkBitmapProcState::MatrixProc mproc = state.getMatrixProc(); 239 SkBitmapProcState::MatrixProc mproc = state.getMatrixProc();
282 SkBitmapProcState::SampleProc16 sproc = state.getSampleProc16(); 240 SkBitmapProcState::SampleProc16 sproc = state.getSampleProc16();
283 int max = state.maxCountForBufferSize(sizeof(buffer)); 241 int max = fState.maxCountForBufferSize(sizeof(buffer));
284 242
285 SkASSERT(state.fBitmap->getPixels()); 243 SkASSERT(state.fBitmap->getPixels());
286 SkASSERT(state.fBitmap->pixelRef() == NULL || 244 SkASSERT(state.fBitmap->pixelRef() == NULL ||
287 state.fBitmap->pixelRef()->isLocked()); 245 state.fBitmap->pixelRef()->isLocked());
288 246
289 for (;;) { 247 for (;;) {
290 int n = count; 248 int n = count;
291 if (n > max) { 249 if (n > max) {
292 n = max; 250 n = max;
293 } 251 }
(...skipping 83 matching lines...) Expand 10 before | Expand all | Expand 10 after
377 335
378 #ifndef SK_IGNORE_TO_STRING 336 #ifndef SK_IGNORE_TO_STRING
379 void SkBitmapProcShader::toString(SkString* str) const { 337 void SkBitmapProcShader::toString(SkString* str) const {
380 static const char* gTileModeName[SkShader::kTileModeCount] = { 338 static const char* gTileModeName[SkShader::kTileModeCount] = {
381 "clamp", "repeat", "mirror" 339 "clamp", "repeat", "mirror"
382 }; 340 };
383 341
384 str->append("BitmapShader: ("); 342 str->append("BitmapShader: (");
385 343
386 str->appendf("(%s, %s)", 344 str->appendf("(%s, %s)",
387 gTileModeName[fTileModeX], 345 gTileModeName[fState.fTileModeX],
388 gTileModeName[fTileModeY]); 346 gTileModeName[fState.fTileModeY]);
389 347
390 str->append(" "); 348 str->append(" ");
391 fRawBitmap.toString(str); 349 fRawBitmap.toString(str);
392 350
393 this->INHERITED::toString(str); 351 this->INHERITED::toString(str);
394 352
395 str->append(")"); 353 str->append(")");
396 } 354 }
397 #endif 355 #endif
398 356
(...skipping 20 matching lines...) Expand all
419 SkMatrix matrix; 377 SkMatrix matrix;
420 matrix.setIDiv(fRawBitmap.width(), fRawBitmap.height()); 378 matrix.setIDiv(fRawBitmap.width(), fRawBitmap.height());
421 379
422 SkMatrix lmInverse; 380 SkMatrix lmInverse;
423 if (!this->getLocalMatrix().invert(&lmInverse)) { 381 if (!this->getLocalMatrix().invert(&lmInverse)) {
424 return NULL; 382 return NULL;
425 } 383 }
426 matrix.preConcat(lmInverse); 384 matrix.preConcat(lmInverse);
427 385
428 SkShader::TileMode tm[] = { 386 SkShader::TileMode tm[] = {
429 (TileMode)fTileModeX, 387 (TileMode)fState.fTileModeX,
430 (TileMode)fTileModeY, 388 (TileMode)fState.fTileModeY,
431 }; 389 };
432 390
433 // Must set wrap and filter on the sampler before requesting a texture. In t wo places below 391 // Must set wrap and filter on the sampler before requesting a texture. In t wo places below
434 // we check the matrix scale factors to determine how to interpret the filte r quality setting. 392 // we check the matrix scale factors to determine how to interpret the filte r quality setting.
435 // This completely ignores the complexity of the drawVertices case where exp licit local coords 393 // This completely ignores the complexity of the drawVertices case where exp licit local coords
436 // are provided by the caller. 394 // are provided by the caller.
437 SkPaint::FilterLevel paintFilterLevel = paint.getFilterLevel(); 395 SkPaint::FilterLevel paintFilterLevel = paint.getFilterLevel();
438 GrTextureParams::FilterMode textureFilterMode; 396 GrTextureParams::FilterMode textureFilterMode;
439 switch(paintFilterLevel) { 397 switch(paintFilterLevel) {
440 case SkPaint::kNone_FilterLevel: 398 case SkPaint::kNone_FilterLevel:
(...skipping 45 matching lines...) Expand 10 before | Expand all | Expand 10 after
486 GrEffectRef* effect = NULL; 444 GrEffectRef* effect = NULL;
487 if (paintFilterLevel == SkPaint::kHigh_FilterLevel) { 445 if (paintFilterLevel == SkPaint::kHigh_FilterLevel) {
488 effect = GrBicubicEffect::Create(texture, matrix, tm); 446 effect = GrBicubicEffect::Create(texture, matrix, tm);
489 } else { 447 } else {
490 effect = GrSimpleTextureEffect::Create(texture, matrix, params); 448 effect = GrSimpleTextureEffect::Create(texture, matrix, params);
491 } 449 }
492 GrUnlockAndUnrefCachedBitmapTexture(texture); 450 GrUnlockAndUnrefCachedBitmapTexture(texture);
493 return effect; 451 return effect;
494 } 452 }
495 #endif 453 #endif
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