blob: a0dffb7791fc4724ecc5a16403fc4b4b2efa6b58 [file] [log] [blame]
epoger@google.comec3ed6a2011-07-28 14:26:00 +00001
vandebo@chromium.orgda912d62011-03-08 18:31:02 +00002/*
epoger@google.comec3ed6a2011-07-28 14:26:00 +00003 * Copyright 2011 Google Inc.
vandebo@chromium.orgda912d62011-03-08 18:31:02 +00004 *
epoger@google.comec3ed6a2011-07-28 14:26:00 +00005 * Use of this source code is governed by a BSD-style license that can be
6 * found in the LICENSE file.
vandebo@chromium.orgda912d62011-03-08 18:31:02 +00007 */
8
epoger@google.comec3ed6a2011-07-28 14:26:00 +00009
vandebo@chromium.orgda912d62011-03-08 18:31:02 +000010#include "SkPDFShader.h"
11
12#include "SkCanvas.h"
vandebo@chromium.org421d6442011-07-20 17:39:01 +000013#include "SkData.h"
vandebo@chromium.orgda912d62011-03-08 18:31:02 +000014#include "SkPDFCatalog.h"
15#include "SkPDFDevice.h"
16#include "SkPDFTypes.h"
17#include "SkPDFUtils.h"
18#include "SkScalar.h"
19#include "SkStream.h"
twiz@google.com316338a2011-03-09 23:14:04 +000020#include "SkTemplates.h"
vandebo@chromium.orgda912d62011-03-08 18:31:02 +000021#include "SkThread.h"
22#include "SkTypes.h"
23
vandebo@chromium.org386dfc02012-04-17 22:31:52 +000024static bool transformBBox(const SkMatrix& matrix, SkRect* bbox) {
vandebo@chromium.orgda912d62011-03-08 18:31:02 +000025 SkMatrix inverse;
vandebo@chromium.orgb0549902012-04-13 20:45:46 +000026 if (!matrix.invert(&inverse)) {
vandebo@chromium.org386dfc02012-04-17 22:31:52 +000027 return false;
vandebo@chromium.orgb0549902012-04-13 20:45:46 +000028 }
vandebo@chromium.orgda912d62011-03-08 18:31:02 +000029 inverse.mapRect(bbox);
vandebo@chromium.org386dfc02012-04-17 22:31:52 +000030 return true;
vandebo@chromium.orgda912d62011-03-08 18:31:02 +000031}
32
33static void unitToPointsMatrix(const SkPoint pts[2], SkMatrix* matrix) {
34 SkVector vec = pts[1] - pts[0];
35 SkScalar mag = vec.length();
36 SkScalar inv = mag ? SkScalarInvert(mag) : 0;
37
38 vec.scale(inv);
39 matrix->setSinCos(vec.fY, vec.fX);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +000040 matrix->preScale(mag, mag);
commit-bot@chromium.orgace22692013-06-12 21:33:02 +000041 matrix->postTranslate(pts[0].fX, pts[0].fY);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +000042}
43
44/* Assumes t + startOffset is on the stack and does a linear interpolation on t
45 between startOffset and endOffset from prevColor to curColor (for each color
djsollen@google.com53648ab2013-04-03 12:34:16 +000046 component), leaving the result in component order on the stack. It assumes
47 there are always 3 components per color.
vandebo@chromium.orgda912d62011-03-08 18:31:02 +000048 @param range endOffset - startOffset
49 @param curColor[components] The current color components.
50 @param prevColor[components] The previous color components.
51 @param result The result ps function.
52 */
53static void interpolateColorCode(SkScalar range, SkScalar* curColor,
djsollen@google.com53648ab2013-04-03 12:34:16 +000054 SkScalar* prevColor, SkString* result) {
55 static const int kColorComponents = 3;
56
vandebo@chromium.orgda912d62011-03-08 18:31:02 +000057 // Figure out how to scale each color component.
djsollen@google.com53648ab2013-04-03 12:34:16 +000058 SkScalar multiplier[kColorComponents];
59 for (int i = 0; i < kColorComponents; i++) {
vandebo@chromium.orgda912d62011-03-08 18:31:02 +000060 multiplier[i] = SkScalarDiv(curColor[i] - prevColor[i], range);
61 }
62
63 // Calculate when we no longer need to keep a copy of the input parameter t.
64 // If the last component to use t is i, then dupInput[0..i - 1] = true
65 // and dupInput[i .. components] = false.
djsollen@google.com53648ab2013-04-03 12:34:16 +000066 bool dupInput[kColorComponents];
67 dupInput[kColorComponents - 1] = false;
68 for (int i = kColorComponents - 2; i >= 0; i--) {
vandebo@chromium.orgda912d62011-03-08 18:31:02 +000069 dupInput[i] = dupInput[i + 1] || multiplier[i + 1] != 0;
70 }
71
72 if (!dupInput[0] && multiplier[0] == 0) {
73 result->append("pop ");
74 }
75
djsollen@google.com53648ab2013-04-03 12:34:16 +000076 for (int i = 0; i < kColorComponents; i++) {
vandebo@chromium.orgb8622042012-10-22 20:12:40 +000077 // If the next components needs t and this component will consume a
78 // copy, make another copy.
79 if (dupInput[i] && multiplier[i] != 0) {
vandebo@chromium.orgda912d62011-03-08 18:31:02 +000080 result->append("dup ");
81 }
82
83 if (multiplier[i] == 0) {
84 result->appendScalar(prevColor[i]);
85 result->append(" ");
86 } else {
87 if (multiplier[i] != 1) {
88 result->appendScalar(multiplier[i]);
89 result->append(" mul ");
90 }
91 if (prevColor[i] != 0) {
92 result->appendScalar(prevColor[i]);
93 result->append(" add ");
94 }
95 }
96
97 if (dupInput[i]) {
98 result->append("exch\n");
99 }
100 }
101}
102
103/* Generate Type 4 function code to map t=[0,1) to the passed gradient,
104 clamping at the edges of the range. The generated code will be of the form:
105 if (t < 0) {
106 return colorData[0][r,g,b];
107 } else {
108 if (t < info.fColorOffsets[1]) {
109 return linearinterpolation(colorData[0][r,g,b],
110 colorData[1][r,g,b]);
111 } else {
112 if (t < info.fColorOffsets[2]) {
113 return linearinterpolation(colorData[1][r,g,b],
114 colorData[2][r,g,b]);
115 } else {
116
117 ... } else {
118 return colorData[info.fColorCount - 1][r,g,b];
119 }
120 ...
121 }
122 }
123 */
124static void gradientFunctionCode(const SkShader::GradientInfo& info,
125 SkString* result) {
126 /* We want to linearly interpolate from the previous color to the next.
127 Scale the colors from 0..255 to 0..1 and determine the multipliers
128 for interpolation.
129 C{r,g,b}(t, section) = t - offset_(section-1) + t * Multiplier{r,g,b}.
130 */
131 static const int kColorComponents = 3;
twiz@google.com316338a2011-03-09 23:14:04 +0000132 typedef SkScalar ColorTuple[kColorComponents];
133 SkAutoSTMalloc<4, ColorTuple> colorDataAlloc(info.fColorCount);
134 ColorTuple *colorData = colorDataAlloc.get();
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000135 const SkScalar scale = SkScalarInvert(SkIntToScalar(255));
136 for (int i = 0; i < info.fColorCount; i++) {
137 colorData[i][0] = SkScalarMul(SkColorGetR(info.fColors[i]), scale);
138 colorData[i][1] = SkScalarMul(SkColorGetG(info.fColors[i]), scale);
139 colorData[i][2] = SkScalarMul(SkColorGetB(info.fColors[i]), scale);
140 }
141
142 // Clamp the initial color.
143 result->append("dup 0 le {pop ");
144 result->appendScalar(colorData[0][0]);
145 result->append(" ");
146 result->appendScalar(colorData[0][1]);
147 result->append(" ");
148 result->appendScalar(colorData[0][2]);
149 result->append(" }\n");
150
151 // The gradient colors.
152 for (int i = 1 ; i < info.fColorCount; i++) {
153 result->append("{dup ");
154 result->appendScalar(info.fColorOffsets[i]);
155 result->append(" le {");
156 if (info.fColorOffsets[i - 1] != 0) {
157 result->appendScalar(info.fColorOffsets[i - 1]);
158 result->append(" sub\n");
159 }
160
161 interpolateColorCode(info.fColorOffsets[i] - info.fColorOffsets[i - 1],
djsollen@google.com53648ab2013-04-03 12:34:16 +0000162 colorData[i], colorData[i - 1], result);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000163 result->append("}\n");
164 }
165
166 // Clamp the final color.
167 result->append("{pop ");
168 result->appendScalar(colorData[info.fColorCount - 1][0]);
169 result->append(" ");
170 result->appendScalar(colorData[info.fColorCount - 1][1]);
171 result->append(" ");
172 result->appendScalar(colorData[info.fColorCount - 1][2]);
173
174 for (int i = 0 ; i < info.fColorCount; i++) {
175 result->append("} ifelse\n");
176 }
177}
178
179/* Map a value of t on the stack into [0, 1) for Repeat or Mirror tile mode. */
180static void tileModeCode(SkShader::TileMode mode, SkString* result) {
181 if (mode == SkShader::kRepeat_TileMode) {
182 result->append("dup truncate sub\n"); // Get the fractional part.
183 result->append("dup 0 le {1 add} if\n"); // Map (-1,0) => (0,1)
184 return;
185 }
186
187 if (mode == SkShader::kMirror_TileMode) {
188 // Map t mod 2 into [0, 1, 1, 0].
189 // Code Stack
190 result->append("abs " // Map negative to positive.
191 "dup " // t.s t.s
192 "truncate " // t.s t
193 "dup " // t.s t t
194 "cvi " // t.s t T
195 "2 mod " // t.s t (i mod 2)
196 "1 eq " // t.s t true|false
197 "3 1 roll " // true|false t.s t
198 "sub " // true|false 0.s
199 "exch " // 0.s true|false
200 "{1 exch sub} if\n"); // 1 - 0.s|0.s
201 }
202}
203
204static SkString linearCode(const SkShader::GradientInfo& info) {
ctguil@chromium.orga5c72342011-08-15 23:55:03 +0000205 SkString function("{pop\n"); // Just ditch the y value.
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000206 tileModeCode(info.fTileMode, &function);
207 gradientFunctionCode(info, &function);
208 function.append("}");
209 return function;
210}
211
212static SkString radialCode(const SkShader::GradientInfo& info) {
213 SkString function("{");
214 // Find the distance from the origin.
215 function.append("dup " // x y y
216 "mul " // x y^2
217 "exch " // y^2 x
218 "dup " // y^2 x x
219 "mul " // y^2 x^2
220 "add " // y^2+x^2
221 "sqrt\n"); // sqrt(y^2+x^2)
222
223 tileModeCode(info.fTileMode, &function);
224 gradientFunctionCode(info, &function);
225 function.append("}");
226 return function;
227}
228
229/* The math here is all based on the description in Two_Point_Radial_Gradient,
230 with one simplification, the coordinate space has been scaled so that
231 Dr = 1. This means we don't need to scale the entire equation by 1/Dr^2.
232 */
233static SkString twoPointRadialCode(const SkShader::GradientInfo& info) {
234 SkScalar dx = info.fPoint[0].fX - info.fPoint[1].fX;
235 SkScalar dy = info.fPoint[0].fY - info.fPoint[1].fY;
236 SkScalar sr = info.fRadius[0];
237 SkScalar a = SkScalarMul(dx, dx) + SkScalarMul(dy, dy) - SK_Scalar1;
238 bool posRoot = info.fRadius[1] > info.fRadius[0];
239
240 // We start with a stack of (x y), copy it and then consume one copy in
241 // order to calculate b and the other to calculate c.
242 SkString function("{");
243 function.append("2 copy ");
244
245 // Calculate -b and b^2.
246 function.appendScalar(dy);
247 function.append(" mul exch ");
248 function.appendScalar(dx);
249 function.append(" mul add ");
250 function.appendScalar(sr);
251 function.append(" sub 2 mul neg dup dup mul\n");
252
253 // Calculate c
254 function.append("4 2 roll dup mul exch dup mul add ");
255 function.appendScalar(SkScalarMul(sr, sr));
256 function.append(" sub\n");
257
258 // Calculate the determinate
259 function.appendScalar(SkScalarMul(SkIntToScalar(4), a));
260 function.append(" mul sub abs sqrt\n");
261
262 // And then the final value of t.
263 if (posRoot) {
264 function.append("sub ");
265 } else {
266 function.append("add ");
267 }
268 function.appendScalar(SkScalarMul(SkIntToScalar(2), a));
269 function.append(" div\n");
270
271 tileModeCode(info.fTileMode, &function);
272 gradientFunctionCode(info, &function);
273 function.append("}");
274 return function;
275}
276
rileya@google.com62197282012-07-10 20:05:23 +0000277/* Conical gradient shader, based on the Canvas spec for radial gradients
rmistry@google.comd6176b02012-08-23 18:14:13 +0000278 See: http://www.w3.org/TR/2dcontext/#dom-context-2d-createradialgradient
rileya@google.com62197282012-07-10 20:05:23 +0000279 */
280static SkString twoPointConicalCode(const SkShader::GradientInfo& info) {
281 SkScalar dx = info.fPoint[1].fX - info.fPoint[0].fX;
282 SkScalar dy = info.fPoint[1].fY - info.fPoint[0].fY;
283 SkScalar r0 = info.fRadius[0];
284 SkScalar dr = info.fRadius[1] - info.fRadius[0];
rmistry@google.comd6176b02012-08-23 18:14:13 +0000285 SkScalar a = SkScalarMul(dx, dx) + SkScalarMul(dy, dy) -
rileya@google.com62197282012-07-10 20:05:23 +0000286 SkScalarMul(dr, dr);
287
288 // First compute t, if the pixel falls outside the cone, then we'll end
289 // with 'false' on the stack, otherwise we'll push 'true' with t below it
290
291 // We start with a stack of (x y), copy it and then consume one copy in
292 // order to calculate b and the other to calculate c.
293 SkString function("{");
294 function.append("2 copy ");
295
296 // Calculate b and b^2; b = -2 * (y * dy + x * dx + r0 * dr).
297 function.appendScalar(dy);
298 function.append(" mul exch ");
299 function.appendScalar(dx);
300 function.append(" mul add ");
301 function.appendScalar(SkScalarMul(r0, dr));
302 function.append(" add -2 mul dup dup mul\n");
303
304 // c = x^2 + y^2 + radius0^2
305 function.append("4 2 roll dup mul exch dup mul add ");
306 function.appendScalar(SkScalarMul(r0, r0));
307 function.append(" sub dup 4 1 roll\n");
308
309 // Contents of the stack at this point: c, b, b^2, c
310
311 // if a = 0, then we collapse to a simpler linear case
312 if (a == 0) {
313
314 // t = -c/b
315 function.append("pop pop div neg dup ");
316
317 // compute radius(t)
318 function.appendScalar(dr);
319 function.append(" mul ");
320 function.appendScalar(r0);
321 function.append(" add\n");
322
323 // if r(t) < 0, then it's outside the cone
rileya@google.comab2fe822012-07-10 20:41:38 +0000324 function.append("0 lt {pop false} {true} ifelse\n");
rileya@google.com62197282012-07-10 20:05:23 +0000325
326 } else {
327
328 // quadratic case: the Canvas spec wants the largest
329 // root t for which radius(t) > 0
rmistry@google.comd6176b02012-08-23 18:14:13 +0000330
rileya@google.com62197282012-07-10 20:05:23 +0000331 // compute the discriminant (b^2 - 4ac)
332 function.appendScalar(SkScalarMul(SkIntToScalar(4), a));
333 function.append(" mul sub dup\n");
334
335 // if d >= 0, proceed
336 function.append("0 ge {\n");
337
338 // an intermediate value we'll use to compute the roots:
339 // q = -0.5 * (b +/- sqrt(d))
340 function.append("sqrt exch dup 0 lt {exch -1 mul} if");
341 function.append(" add -0.5 mul dup\n");
342
343 // first root = q / a
344 function.appendScalar(a);
345 function.append(" div\n");
346
347 // second root = c / q
348 function.append("3 1 roll div\n");
349
350 // put the larger root on top of the stack
351 function.append("2 copy gt {exch} if\n");
352
353 // compute radius(t) for larger root
354 function.append("dup ");
355 function.appendScalar(dr);
356 function.append(" mul ");
357 function.appendScalar(r0);
358 function.append(" add\n");
359
360 // if r(t) > 0, we have our t, pop off the smaller root and we're done
361 function.append(" 0 gt {exch pop true}\n");
362
363 // otherwise, throw out the larger one and try the smaller root
364 function.append("{pop dup\n");
365 function.appendScalar(dr);
366 function.append(" mul ");
367 function.appendScalar(r0);
368 function.append(" add\n");
369
370 // if r(t) < 0, push false, otherwise the smaller root is our t
rileya@google.comab2fe822012-07-10 20:41:38 +0000371 function.append("0 le {pop false} {true} ifelse\n");
rileya@google.com62197282012-07-10 20:05:23 +0000372 function.append("} ifelse\n");
373
374 // d < 0, clear the stack and push false
rileya@google.comab2fe822012-07-10 20:41:38 +0000375 function.append("} {pop pop pop false} ifelse\n");
rileya@google.com62197282012-07-10 20:05:23 +0000376 }
377
378 // if the pixel is in the cone, proceed to compute a color
379 function.append("{");
380 tileModeCode(info.fTileMode, &function);
381 gradientFunctionCode(info, &function);
382
383 // otherwise, just write black
384 function.append("} {0 0 0} ifelse }");
385
386 return function;
387}
388
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000389static SkString sweepCode(const SkShader::GradientInfo& info) {
390 SkString function("{exch atan 360 div\n");
391 tileModeCode(info.fTileMode, &function);
392 gradientFunctionCode(info, &function);
393 function.append("}");
394 return function;
395}
396
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000397class SkPDFShader::State {
398public:
399 SkShader::GradientType fType;
400 SkShader::GradientInfo fInfo;
401 SkAutoFree fColorData;
402 SkMatrix fCanvasTransform;
403 SkMatrix fShaderTransform;
404 SkIRect fBBox;
405
406 SkBitmap fImage;
407 uint32_t fPixelGeneration;
408 SkShader::TileMode fImageTileModes[2];
409
410 explicit State(const SkShader& shader, const SkMatrix& canvasTransform,
411 const SkIRect& bbox);
412 bool operator==(const State& b) const;
413};
414
415class SkPDFFunctionShader : public SkPDFDict, public SkPDFShader {
416public:
ctguil@chromium.orga5c72342011-08-15 23:55:03 +0000417 explicit SkPDFFunctionShader(SkPDFShader::State* state);
robertphillips@google.com05141c22012-04-27 12:54:01 +0000418 virtual ~SkPDFFunctionShader() {
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000419 if (isValid()) {
420 RemoveShader(this);
421 }
422 fResources.unrefAll();
423 }
424
vandebo@chromium.org386dfc02012-04-17 22:31:52 +0000425 virtual bool isValid() { return fResources.count() > 0; }
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000426
edisonn@google.com6addb192013-04-02 15:33:08 +0000427 void getResources(const SkTSet<SkPDFObject*>& knownResourceObjects,
428 SkTSet<SkPDFObject*>* newResourceObjects) {
429 GetResourcesHelper(&fResources,
430 knownResourceObjects,
431 newResourceObjects);
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000432 }
433
434private:
435 static SkPDFObject* RangeObject();
436
437 SkTDArray<SkPDFObject*> fResources;
438 SkAutoTDelete<const SkPDFShader::State> fState;
439
440 SkPDFStream* makePSFunction(const SkString& psCode, SkPDFArray* domain);
441};
442
443class SkPDFImageShader : public SkPDFStream, public SkPDFShader {
444public:
ctguil@chromium.orga5c72342011-08-15 23:55:03 +0000445 explicit SkPDFImageShader(SkPDFShader::State* state);
robertphillips@google.com05141c22012-04-27 12:54:01 +0000446 virtual ~SkPDFImageShader() {
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000447 RemoveShader(this);
448 fResources.unrefAll();
449 }
450
vandebo@chromium.org386dfc02012-04-17 22:31:52 +0000451 virtual bool isValid() { return size() > 0; }
452
edisonn@google.com6addb192013-04-02 15:33:08 +0000453 void getResources(const SkTSet<SkPDFObject*>& knownResourceObjects,
454 SkTSet<SkPDFObject*>* newResourceObjects) {
455 GetResourcesHelper(&fResources.toArray(),
456 knownResourceObjects,
457 newResourceObjects);
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000458 }
459
460private:
edisonn@google.com6addb192013-04-02 15:33:08 +0000461 SkTSet<SkPDFObject*> fResources;
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000462 SkAutoTDelete<const SkPDFShader::State> fState;
463};
464
465SkPDFShader::SkPDFShader() {}
466
467// static
468void SkPDFShader::RemoveShader(SkPDFObject* shader) {
vandebo@chromium.orgb88cfe52011-07-18 18:40:32 +0000469 SkAutoMutexAcquire lock(CanonicalShadersMutex());
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000470 ShaderCanonicalEntry entry(shader, NULL);
vandebo@chromium.orgb88cfe52011-07-18 18:40:32 +0000471 int index = CanonicalShaders().find(entry);
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000472 SkASSERT(index >= 0);
473 CanonicalShaders().removeShuffle(index);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000474}
475
476// static
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000477SkPDFObject* SkPDFShader::GetPDFShader(const SkShader& shader,
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000478 const SkMatrix& matrix,
479 const SkIRect& surfaceBBox) {
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000480 SkPDFObject* result;
vandebo@chromium.orgb88cfe52011-07-18 18:40:32 +0000481 SkAutoMutexAcquire lock(CanonicalShadersMutex());
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000482 SkAutoTDelete<State> shaderState(new State(shader, matrix, surfaceBBox));
vandebo@chromium.orgda6c5692012-06-28 21:37:20 +0000483 if (shaderState.get()->fType == SkShader::kNone_GradientType &&
484 shaderState.get()->fImage.isNull()) {
485 // TODO(vandebo) This drops SKComposeShader on the floor. We could
486 // handle compose shader by pulling things up to a layer, drawing with
487 // the first shader, applying the xfer mode and drawing again with the
488 // second shader, then applying the layer to the original drawing.
489 return NULL;
490 }
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000491
492 ShaderCanonicalEntry entry(NULL, shaderState.get());
vandebo@chromium.orgb88cfe52011-07-18 18:40:32 +0000493 int index = CanonicalShaders().find(entry);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000494 if (index >= 0) {
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000495 result = CanonicalShaders()[index].fPDFShader;
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000496 result->ref();
497 return result;
498 }
vandebo@chromium.org386dfc02012-04-17 22:31:52 +0000499
500 bool valid = false;
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000501 // The PDFShader takes ownership of the shaderSate.
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000502 if (shaderState.get()->fType == SkShader::kNone_GradientType) {
vandebo@chromium.org386dfc02012-04-17 22:31:52 +0000503 SkPDFImageShader* imageShader =
504 new SkPDFImageShader(shaderState.detach());
505 valid = imageShader->isValid();
506 result = imageShader;
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000507 } else {
508 SkPDFFunctionShader* functionShader =
509 new SkPDFFunctionShader(shaderState.detach());
vandebo@chromium.org386dfc02012-04-17 22:31:52 +0000510 valid = functionShader->isValid();
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000511 result = functionShader;
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000512 }
vandebo@chromium.org386dfc02012-04-17 22:31:52 +0000513 if (!valid) {
514 delete result;
515 return NULL;
516 }
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000517 entry.fPDFShader = result;
vandebo@chromium.orgb88cfe52011-07-18 18:40:32 +0000518 CanonicalShaders().push(entry);
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000519 return result; // return the reference that came from new.
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000520}
521
522// static
vandebo@chromium.orgb88cfe52011-07-18 18:40:32 +0000523SkTDArray<SkPDFShader::ShaderCanonicalEntry>& SkPDFShader::CanonicalShaders() {
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000524 // This initialization is only thread safe with gcc.
525 static SkTDArray<ShaderCanonicalEntry> gCanonicalShaders;
526 return gCanonicalShaders;
527}
528
529// static
digit@google.com1771cbf2012-01-26 21:26:40 +0000530SkBaseMutex& SkPDFShader::CanonicalShadersMutex() {
531 // This initialization is only thread safe with gcc or when
532 // POD-style mutex initialization is used.
533 SK_DECLARE_STATIC_MUTEX(gCanonicalShadersMutex);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000534 return gCanonicalShadersMutex;
535}
536
537// static
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000538SkPDFObject* SkPDFFunctionShader::RangeObject() {
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000539 // This initialization is only thread safe with gcc.
540 static SkPDFArray* range = NULL;
vandebo@chromium.orgb88cfe52011-07-18 18:40:32 +0000541 // This method is only used with CanonicalShadersMutex, so it's safe to
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000542 // populate domain.
543 if (range == NULL) {
544 range = new SkPDFArray;
545 range->reserve(6);
reed@google.comc789cf12011-07-20 12:14:33 +0000546 range->appendInt(0);
547 range->appendInt(1);
548 range->appendInt(0);
549 range->appendInt(1);
550 range->appendInt(0);
551 range->appendInt(1);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000552 }
553 return range;
554}
555
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000556SkPDFFunctionShader::SkPDFFunctionShader(SkPDFShader::State* state)
557 : SkPDFDict("Pattern"),
558 fState(state) {
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000559 SkString (*codeFunction)(const SkShader::GradientInfo& info) = NULL;
560 SkPoint transformPoints[2];
561
562 // Depending on the type of the gradient, we want to transform the
563 // coordinate space in different ways.
564 const SkShader::GradientInfo* info = &fState.get()->fInfo;
565 transformPoints[0] = info->fPoint[0];
566 transformPoints[1] = info->fPoint[1];
567 switch (fState.get()->fType) {
568 case SkShader::kLinear_GradientType:
569 codeFunction = &linearCode;
570 break;
571 case SkShader::kRadial_GradientType:
572 transformPoints[1] = transformPoints[0];
573 transformPoints[1].fX += info->fRadius[0];
574 codeFunction = &radialCode;
575 break;
576 case SkShader::kRadial2_GradientType: {
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000577 // Bail out if the radii are the same. Empty fResources signals
578 // an error and isValid will return false.
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000579 if (info->fRadius[0] == info->fRadius[1]) {
580 return;
581 }
582 transformPoints[1] = transformPoints[0];
583 SkScalar dr = info->fRadius[1] - info->fRadius[0];
584 transformPoints[1].fX += dr;
585 codeFunction = &twoPointRadialCode;
586 break;
587 }
rileya@google.com62197282012-07-10 20:05:23 +0000588 case SkShader::kConical_GradientType: {
589 transformPoints[1] = transformPoints[0];
590 transformPoints[1].fX += SK_Scalar1;
591 codeFunction = &twoPointConicalCode;
592 break;
593 }
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000594 case SkShader::kSweep_GradientType:
595 transformPoints[1] = transformPoints[0];
vandebo@chromium.orgc39c8672012-04-17 21:46:18 +0000596 transformPoints[1].fX += SK_Scalar1;
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000597 codeFunction = &sweepCode;
598 break;
599 case SkShader::kColor_GradientType:
600 case SkShader::kNone_GradientType:
vandebo@chromium.org020798a2011-12-21 01:49:35 +0000601 default:
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000602 return;
603 }
604
605 // Move any scaling (assuming a unit gradient) or translation
606 // (and rotation for linear gradient), of the final gradient from
607 // info->fPoints to the matrix (updating bbox appropriately). Now
608 // the gradient can be drawn on on the unit segment.
609 SkMatrix mapperMatrix;
610 unitToPointsMatrix(transformPoints, &mapperMatrix);
611 SkMatrix finalMatrix = fState.get()->fCanvasTransform;
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000612 finalMatrix.preConcat(fState.get()->fShaderTransform);
commit-bot@chromium.orgace22692013-06-12 21:33:02 +0000613 finalMatrix.preConcat(mapperMatrix);
614
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000615 SkRect bbox;
616 bbox.set(fState.get()->fBBox);
vandebo@chromium.org386dfc02012-04-17 22:31:52 +0000617 if (!transformBBox(finalMatrix, &bbox)) {
618 return;
619 }
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000620
vandebo@chromium.orgd96d17b2013-01-04 19:31:24 +0000621 SkAutoTUnref<SkPDFArray> domain(new SkPDFArray);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000622 domain->reserve(4);
reed@google.comc789cf12011-07-20 12:14:33 +0000623 domain->appendScalar(bbox.fLeft);
624 domain->appendScalar(bbox.fRight);
625 domain->appendScalar(bbox.fTop);
626 domain->appendScalar(bbox.fBottom);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000627
628 SkString functionCode;
629 // The two point radial gradient further references fState.get()->fInfo
630 // in translating from x, y coordinates to the t parameter. So, we have
631 // to transform the points and radii according to the calculated matrix.
632 if (fState.get()->fType == SkShader::kRadial2_GradientType) {
633 SkShader::GradientInfo twoPointRadialInfo = *info;
634 SkMatrix inverseMapperMatrix;
vandebo@chromium.orgb0549902012-04-13 20:45:46 +0000635 if (!mapperMatrix.invert(&inverseMapperMatrix)) {
vandebo@chromium.org386dfc02012-04-17 22:31:52 +0000636 return;
vandebo@chromium.orgb0549902012-04-13 20:45:46 +0000637 }
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000638 inverseMapperMatrix.mapPoints(twoPointRadialInfo.fPoint, 2);
639 twoPointRadialInfo.fRadius[0] =
640 inverseMapperMatrix.mapRadius(info->fRadius[0]);
641 twoPointRadialInfo.fRadius[1] =
642 inverseMapperMatrix.mapRadius(info->fRadius[1]);
643 functionCode = codeFunction(twoPointRadialInfo);
644 } else {
645 functionCode = codeFunction(*info);
646 }
647
vandebo@chromium.orgd96d17b2013-01-04 19:31:24 +0000648 SkAutoTUnref<SkPDFDict> pdfShader(new SkPDFDict);
reed@google.comc789cf12011-07-20 12:14:33 +0000649 pdfShader->insertInt("ShadingType", 1);
650 pdfShader->insertName("ColorSpace", "DeviceRGB");
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000651 pdfShader->insert("Domain", domain.get());
vandebo@chromium.orgd96d17b2013-01-04 19:31:24 +0000652
653 SkPDFStream* function = makePSFunction(functionCode, domain.get());
654 pdfShader->insert("Function", new SkPDFObjRef(function))->unref();
655 fResources.push(function); // Pass ownership to resource list.
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000656
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000657 insertInt("PatternType", 2);
658 insert("Matrix", SkPDFUtils::MatrixToArray(finalMatrix))->unref();
659 insert("Shading", pdfShader.get());
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000660}
661
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000662SkPDFImageShader::SkPDFImageShader(SkPDFShader::State* state) : fState(state) {
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000663 fState.get()->fImage.lockPixels();
664
665 SkMatrix finalMatrix = fState.get()->fCanvasTransform;
666 finalMatrix.preConcat(fState.get()->fShaderTransform);
667 SkRect surfaceBBox;
668 surfaceBBox.set(fState.get()->fBBox);
vandebo@chromium.org386dfc02012-04-17 22:31:52 +0000669 if (!transformBBox(finalMatrix, &surfaceBBox)) {
670 return;
671 }
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000672
vandebo@chromium.org75f97e42011-04-11 23:24:18 +0000673 SkMatrix unflip;
vandebo@chromium.org54ff85c2012-03-09 17:18:50 +0000674 unflip.setTranslate(0, SkScalarRoundToScalar(surfaceBBox.height()));
vandebo@chromium.org663515b2012-01-05 18:45:27 +0000675 unflip.preScale(SK_Scalar1, -SK_Scalar1);
vandebo@chromium.orgbe2048a2011-05-02 15:24:01 +0000676 SkISize size = SkISize::Make(SkScalarRound(surfaceBBox.width()),
677 SkScalarRound(surfaceBBox.height()));
ctguil@chromium.org15261292011-04-29 17:54:16 +0000678 SkPDFDevice pattern(size, size, unflip);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000679 SkCanvas canvas(&pattern);
vandebo@chromium.orgbe2048a2011-05-02 15:24:01 +0000680 canvas.translate(-surfaceBBox.fLeft, -surfaceBBox.fTop);
681 finalMatrix.preTranslate(surfaceBBox.fLeft, surfaceBBox.fTop);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000682
683 const SkBitmap* image = &fState.get()->fImage;
vandebo@chromium.org54ff85c2012-03-09 17:18:50 +0000684 SkScalar width = SkIntToScalar(image->width());
685 SkScalar height = SkIntToScalar(image->height());
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000686 SkShader::TileMode tileModes[2];
687 tileModes[0] = fState.get()->fImageTileModes[0];
688 tileModes[1] = fState.get()->fImageTileModes[1];
689
690 canvas.drawBitmap(*image, 0, 0);
vandebo@chromium.orgbe2048a2011-05-02 15:24:01 +0000691 SkRect patternBBox = SkRect::MakeXYWH(-surfaceBBox.fLeft, -surfaceBBox.fTop,
692 width, height);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000693
694 // Tiling is implied. First we handle mirroring.
695 if (tileModes[0] == SkShader::kMirror_TileMode) {
696 SkMatrix xMirror;
697 xMirror.setScale(-1, 1);
698 xMirror.postTranslate(2 * width, 0);
699 canvas.drawBitmapMatrix(*image, xMirror);
700 patternBBox.fRight += width;
701 }
702 if (tileModes[1] == SkShader::kMirror_TileMode) {
703 SkMatrix yMirror;
vandebo@chromium.org663515b2012-01-05 18:45:27 +0000704 yMirror.setScale(SK_Scalar1, -SK_Scalar1);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000705 yMirror.postTranslate(0, 2 * height);
706 canvas.drawBitmapMatrix(*image, yMirror);
707 patternBBox.fBottom += height;
708 }
709 if (tileModes[0] == SkShader::kMirror_TileMode &&
710 tileModes[1] == SkShader::kMirror_TileMode) {
711 SkMatrix mirror;
712 mirror.setScale(-1, -1);
713 mirror.postTranslate(2 * width, 2 * height);
714 canvas.drawBitmapMatrix(*image, mirror);
715 }
716
717 // Then handle Clamping, which requires expanding the pattern canvas to
718 // cover the entire surfaceBBox.
719
720 // If both x and y are in clamp mode, we start by filling in the corners.
721 // (Which are just a rectangles of the corner colors.)
722 if (tileModes[0] == SkShader::kClamp_TileMode &&
723 tileModes[1] == SkShader::kClamp_TileMode) {
724 SkPaint paint;
725 SkRect rect;
726 rect = SkRect::MakeLTRB(surfaceBBox.fLeft, surfaceBBox.fTop, 0, 0);
727 if (!rect.isEmpty()) {
728 paint.setColor(image->getColor(0, 0));
729 canvas.drawRect(rect, paint);
730 }
731
732 rect = SkRect::MakeLTRB(width, surfaceBBox.fTop, surfaceBBox.fRight, 0);
733 if (!rect.isEmpty()) {
vandebo@chromium.org54ff85c2012-03-09 17:18:50 +0000734 paint.setColor(image->getColor(image->width() - 1, 0));
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000735 canvas.drawRect(rect, paint);
736 }
737
738 rect = SkRect::MakeLTRB(width, height, surfaceBBox.fRight,
739 surfaceBBox.fBottom);
740 if (!rect.isEmpty()) {
vandebo@chromium.org54ff85c2012-03-09 17:18:50 +0000741 paint.setColor(image->getColor(image->width() - 1,
742 image->height() - 1));
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000743 canvas.drawRect(rect, paint);
744 }
745
746 rect = SkRect::MakeLTRB(surfaceBBox.fLeft, height, 0,
747 surfaceBBox.fBottom);
748 if (!rect.isEmpty()) {
vandebo@chromium.org54ff85c2012-03-09 17:18:50 +0000749 paint.setColor(image->getColor(0, image->height() - 1));
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000750 canvas.drawRect(rect, paint);
751 }
752 }
753
754 // Then expand the left, right, top, then bottom.
755 if (tileModes[0] == SkShader::kClamp_TileMode) {
vandebo@chromium.org54ff85c2012-03-09 17:18:50 +0000756 SkIRect subset = SkIRect::MakeXYWH(0, 0, 1, image->height());
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000757 if (surfaceBBox.fLeft < 0) {
758 SkBitmap left;
759 SkAssertResult(image->extractSubset(&left, subset));
760
761 SkMatrix leftMatrix;
762 leftMatrix.setScale(-surfaceBBox.fLeft, 1);
763 leftMatrix.postTranslate(surfaceBBox.fLeft, 0);
764 canvas.drawBitmapMatrix(left, leftMatrix);
765
766 if (tileModes[1] == SkShader::kMirror_TileMode) {
vandebo@chromium.org663515b2012-01-05 18:45:27 +0000767 leftMatrix.postScale(SK_Scalar1, -SK_Scalar1);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000768 leftMatrix.postTranslate(0, 2 * height);
769 canvas.drawBitmapMatrix(left, leftMatrix);
770 }
vandebo@chromium.orgbe2048a2011-05-02 15:24:01 +0000771 patternBBox.fLeft = 0;
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000772 }
773
774 if (surfaceBBox.fRight > width) {
775 SkBitmap right;
vandebo@chromium.org54ff85c2012-03-09 17:18:50 +0000776 subset.offset(image->width() - 1, 0);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000777 SkAssertResult(image->extractSubset(&right, subset));
778
779 SkMatrix rightMatrix;
780 rightMatrix.setScale(surfaceBBox.fRight - width, 1);
781 rightMatrix.postTranslate(width, 0);
782 canvas.drawBitmapMatrix(right, rightMatrix);
783
784 if (tileModes[1] == SkShader::kMirror_TileMode) {
vandebo@chromium.org663515b2012-01-05 18:45:27 +0000785 rightMatrix.postScale(SK_Scalar1, -SK_Scalar1);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000786 rightMatrix.postTranslate(0, 2 * height);
787 canvas.drawBitmapMatrix(right, rightMatrix);
788 }
vandebo@chromium.orgbe2048a2011-05-02 15:24:01 +0000789 patternBBox.fRight = surfaceBBox.width();
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000790 }
791 }
792
793 if (tileModes[1] == SkShader::kClamp_TileMode) {
vandebo@chromium.org54ff85c2012-03-09 17:18:50 +0000794 SkIRect subset = SkIRect::MakeXYWH(0, 0, image->width(), 1);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000795 if (surfaceBBox.fTop < 0) {
796 SkBitmap top;
797 SkAssertResult(image->extractSubset(&top, subset));
798
799 SkMatrix topMatrix;
vandebo@chromium.org663515b2012-01-05 18:45:27 +0000800 topMatrix.setScale(SK_Scalar1, -surfaceBBox.fTop);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000801 topMatrix.postTranslate(0, surfaceBBox.fTop);
802 canvas.drawBitmapMatrix(top, topMatrix);
803
804 if (tileModes[0] == SkShader::kMirror_TileMode) {
805 topMatrix.postScale(-1, 1);
806 topMatrix.postTranslate(2 * width, 0);
807 canvas.drawBitmapMatrix(top, topMatrix);
808 }
vandebo@chromium.orgbe2048a2011-05-02 15:24:01 +0000809 patternBBox.fTop = 0;
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000810 }
811
812 if (surfaceBBox.fBottom > height) {
813 SkBitmap bottom;
vandebo@chromium.org54ff85c2012-03-09 17:18:50 +0000814 subset.offset(0, image->height() - 1);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000815 SkAssertResult(image->extractSubset(&bottom, subset));
816
817 SkMatrix bottomMatrix;
vandebo@chromium.org663515b2012-01-05 18:45:27 +0000818 bottomMatrix.setScale(SK_Scalar1, surfaceBBox.fBottom - height);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000819 bottomMatrix.postTranslate(0, height);
820 canvas.drawBitmapMatrix(bottom, bottomMatrix);
821
822 if (tileModes[0] == SkShader::kMirror_TileMode) {
823 bottomMatrix.postScale(-1, 1);
824 bottomMatrix.postTranslate(2 * width, 0);
825 canvas.drawBitmapMatrix(bottom, bottomMatrix);
826 }
vandebo@chromium.orgbe2048a2011-05-02 15:24:01 +0000827 patternBBox.fBottom = surfaceBBox.height();
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000828 }
829 }
830
vandebo@chromium.orgd96d17b2013-01-04 19:31:24 +0000831 SkAutoTUnref<SkPDFArray> patternBBoxArray(new SkPDFArray);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000832 patternBBoxArray->reserve(4);
reed@google.comc789cf12011-07-20 12:14:33 +0000833 patternBBoxArray->appendScalar(patternBBox.fLeft);
834 patternBBoxArray->appendScalar(patternBBox.fTop);
835 patternBBoxArray->appendScalar(patternBBox.fRight);
836 patternBBoxArray->appendScalar(patternBBox.fBottom);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000837
838 // Put the canvas into the pattern stream (fContent).
vandebo@chromium.orgd96d17b2013-01-04 19:31:24 +0000839 SkAutoTUnref<SkStream> content(pattern.content());
840 setData(content.get());
edisonn@google.com6addb192013-04-02 15:33:08 +0000841 pattern.getResources(fResources, &fResources, false);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000842
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000843 insertName("Type", "Pattern");
844 insertInt("PatternType", 1);
845 insertInt("PaintType", 1);
846 insertInt("TilingType", 1);
847 insert("BBox", patternBBoxArray.get());
848 insertScalar("XStep", patternBBox.width());
849 insertScalar("YStep", patternBBox.height());
reed@google.com1feb3302011-07-20 18:43:19 +0000850 insert("Resources", pattern.getResourceDict());
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000851 insert("Matrix", SkPDFUtils::MatrixToArray(finalMatrix))->unref();
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000852
853 fState.get()->fImage.unlockPixels();
854}
855
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000856SkPDFStream* SkPDFFunctionShader::makePSFunction(const SkString& psCode,
857 SkPDFArray* domain) {
858 SkAutoDataUnref funcData(SkData::NewWithCopy(psCode.c_str(),
859 psCode.size()));
860 SkPDFStream* result = new SkPDFStream(funcData.get());
reed@google.comc789cf12011-07-20 12:14:33 +0000861 result->insertInt("FunctionType", 4);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000862 result->insert("Domain", domain);
reed@google.comf6c3ebd2011-07-20 17:20:28 +0000863 result->insert("Range", RangeObject());
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000864 return result;
865}
866
vandebo@chromium.org421d6442011-07-20 17:39:01 +0000867SkPDFShader::ShaderCanonicalEntry::ShaderCanonicalEntry(SkPDFObject* pdfShader,
868 const State* state)
869 : fPDFShader(pdfShader),
870 fState(state) {
871}
872
873bool SkPDFShader::ShaderCanonicalEntry::operator==(
874 const ShaderCanonicalEntry& b) const {
875 return fPDFShader == b.fPDFShader ||
876 (fState != NULL && b.fState != NULL && *fState == *b.fState);
877}
878
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000879bool SkPDFShader::State::operator==(const SkPDFShader::State& b) const {
880 if (fType != b.fType ||
881 fCanvasTransform != b.fCanvasTransform ||
882 fShaderTransform != b.fShaderTransform ||
883 fBBox != b.fBBox) {
884 return false;
885 }
886
887 if (fType == SkShader::kNone_GradientType) {
888 if (fPixelGeneration != b.fPixelGeneration ||
889 fPixelGeneration == 0 ||
890 fImageTileModes[0] != b.fImageTileModes[0] ||
891 fImageTileModes[1] != b.fImageTileModes[1]) {
892 return false;
893 }
894 } else {
895 if (fInfo.fColorCount != b.fInfo.fColorCount ||
896 memcmp(fInfo.fColors, b.fInfo.fColors,
897 sizeof(SkColor) * fInfo.fColorCount) != 0 ||
898 memcmp(fInfo.fColorOffsets, b.fInfo.fColorOffsets,
899 sizeof(SkScalar) * fInfo.fColorCount) != 0 ||
900 fInfo.fPoint[0] != b.fInfo.fPoint[0] ||
901 fInfo.fTileMode != b.fInfo.fTileMode) {
902 return false;
903 }
904
905 switch (fType) {
906 case SkShader::kLinear_GradientType:
907 if (fInfo.fPoint[1] != b.fInfo.fPoint[1]) {
908 return false;
909 }
910 break;
911 case SkShader::kRadial_GradientType:
912 if (fInfo.fRadius[0] != b.fInfo.fRadius[0]) {
913 return false;
914 }
915 break;
916 case SkShader::kRadial2_GradientType:
reed@google.com49085332012-06-11 18:54:07 +0000917 case SkShader::kConical_GradientType:
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000918 if (fInfo.fPoint[1] != b.fInfo.fPoint[1] ||
919 fInfo.fRadius[0] != b.fInfo.fRadius[0] ||
920 fInfo.fRadius[1] != b.fInfo.fRadius[1]) {
921 return false;
922 }
923 break;
924 case SkShader::kSweep_GradientType:
925 case SkShader::kNone_GradientType:
926 case SkShader::kColor_GradientType:
927 break;
928 }
929 }
930 return true;
931}
932
933SkPDFShader::State::State(const SkShader& shader,
934 const SkMatrix& canvasTransform, const SkIRect& bbox)
935 : fCanvasTransform(canvasTransform),
vandebo@chromium.orge1bc2742011-06-21 22:26:39 +0000936 fBBox(bbox),
937 fPixelGeneration(0) {
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000938 fInfo.fColorCount = 0;
939 fInfo.fColors = NULL;
940 fInfo.fColorOffsets = NULL;
bsalomon@google.comf94b3a42012-10-31 18:09:01 +0000941 fShaderTransform = shader.getLocalMatrix();
vandebo@chromium.orge1bc2742011-06-21 22:26:39 +0000942 fImageTileModes[0] = fImageTileModes[1] = SkShader::kClamp_TileMode;
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000943
944 fType = shader.asAGradient(&fInfo);
945
946 if (fType == SkShader::kNone_GradientType) {
947 SkShader::BitmapType bitmapType;
948 SkMatrix matrix;
rileya@google.com91f319c2012-07-25 17:18:31 +0000949 bitmapType = shader.asABitmap(&fImage, &matrix, fImageTileModes);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000950 if (bitmapType != SkShader::kDefault_BitmapType) {
951 fImage.reset();
952 return;
953 }
954 SkASSERT(matrix.isIdentity());
955 fPixelGeneration = fImage.getGenerationID();
956 } else {
957 fColorData.set(sk_malloc_throw(
958 fInfo.fColorCount * (sizeof(SkColor) + sizeof(SkScalar))));
ctguil@chromium.orga5c72342011-08-15 23:55:03 +0000959 fInfo.fColors = reinterpret_cast<SkColor*>(fColorData.get());
vandebo@chromium.org020798a2011-12-21 01:49:35 +0000960 fInfo.fColorOffsets =
961 reinterpret_cast<SkScalar*>(fInfo.fColors + fInfo.fColorCount);
vandebo@chromium.orgda912d62011-03-08 18:31:02 +0000962 shader.asAGradient(&fInfo);
963 }
964}