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skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001/*
2 * Copyright 2011 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 "SkGpuDevice.h"
9
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +000010#include "effects/GrBicubicEffect.h"
commit-bot@chromium.org907fbd52013-12-09 17:03:02 +000011#include "effects/GrTextureDomain.h"
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +000012#include "effects/GrSimpleTextureEffect.h"
13
14#include "GrContext.h"
15#include "GrBitmapTextContext.h"
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +000016#include "GrDistanceFieldTextContext.h"
commit-bot@chromium.org8ddc26b2014-03-31 17:55:12 +000017#include "GrPictureUtils.h"
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +000018
19#include "SkGrTexturePixelRef.h"
20
commit-bot@chromium.org82139702014-03-10 22:53:20 +000021#include "SkBounder.h"
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +000022#include "SkColorFilter.h"
23#include "SkDeviceImageFilterProxy.h"
24#include "SkDrawProcs.h"
25#include "SkGlyphCache.h"
26#include "SkImageFilter.h"
commit-bot@chromium.org82139702014-03-10 22:53:20 +000027#include "SkMaskFilter.h"
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +000028#include "SkPathEffect.h"
commit-bot@chromium.org145d1c02014-03-16 19:46:36 +000029#include "SkPicture.h"
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +000030#include "SkRRect.h"
31#include "SkStroke.h"
reed@google.com76f10a32014-02-05 15:32:21 +000032#include "SkSurface.h"
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +000033#include "SkTLazy.h"
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +000034#include "SkUtils.h"
35#include "SkErrorInternals.h"
36
37#define CACHE_COMPATIBLE_DEVICE_TEXTURES 1
38
39#if 0
40 extern bool (*gShouldDrawProc)();
41 #define CHECK_SHOULD_DRAW(draw, forceI) \
42 do { \
43 if (gShouldDrawProc && !gShouldDrawProc()) return; \
44 this->prepareDraw(draw, forceI); \
45 } while (0)
46#else
47 #define CHECK_SHOULD_DRAW(draw, forceI) this->prepareDraw(draw, forceI)
48#endif
49
50// This constant represents the screen alignment criterion in texels for
51// requiring texture domain clamping to prevent color bleeding when drawing
52// a sub region of a larger source image.
commit-bot@chromium.org4b413c82013-11-25 19:44:07 +000053#define COLOR_BLEED_TOLERANCE 0.001f
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +000054
55#define DO_DEFERRED_CLEAR() \
56 do { \
57 if (fNeedClear) { \
58 this->clear(SK_ColorTRANSPARENT); \
59 } \
60 } while (false) \
61
62///////////////////////////////////////////////////////////////////////////////
63
64#define CHECK_FOR_ANNOTATION(paint) \
65 do { if (paint.getAnnotation()) { return; } } while (0)
66
67///////////////////////////////////////////////////////////////////////////////
68
69
70class SkGpuDevice::SkAutoCachedTexture : public ::SkNoncopyable {
71public:
72 SkAutoCachedTexture()
73 : fDevice(NULL)
74 , fTexture(NULL) {
75 }
76
77 SkAutoCachedTexture(SkGpuDevice* device,
78 const SkBitmap& bitmap,
79 const GrTextureParams* params,
80 GrTexture** texture)
81 : fDevice(NULL)
82 , fTexture(NULL) {
83 SkASSERT(NULL != texture);
84 *texture = this->set(device, bitmap, params);
85 }
86
87 ~SkAutoCachedTexture() {
88 if (NULL != fTexture) {
89 GrUnlockAndUnrefCachedBitmapTexture(fTexture);
90 }
91 }
92
93 GrTexture* set(SkGpuDevice* device,
94 const SkBitmap& bitmap,
95 const GrTextureParams* params) {
96 if (NULL != fTexture) {
97 GrUnlockAndUnrefCachedBitmapTexture(fTexture);
98 fTexture = NULL;
99 }
100 fDevice = device;
101 GrTexture* result = (GrTexture*)bitmap.getTexture();
102 if (NULL == result) {
103 // Cannot return the native texture so look it up in our cache
104 fTexture = GrLockAndRefCachedBitmapTexture(device->context(), bitmap, params);
105 result = fTexture;
106 }
107 return result;
108 }
109
110private:
111 SkGpuDevice* fDevice;
112 GrTexture* fTexture;
113};
114
115///////////////////////////////////////////////////////////////////////////////
116
117struct GrSkDrawProcs : public SkDrawProcs {
118public:
119 GrContext* fContext;
120 GrTextContext* fTextContext;
121 GrFontScaler* fFontScaler; // cached in the skia glyphcache
122};
123
124///////////////////////////////////////////////////////////////////////////////
125
126static SkBitmap::Config grConfig2skConfig(GrPixelConfig config, bool* isOpaque) {
127 switch (config) {
128 case kAlpha_8_GrPixelConfig:
129 *isOpaque = false;
130 return SkBitmap::kA8_Config;
131 case kRGB_565_GrPixelConfig:
132 *isOpaque = true;
133 return SkBitmap::kRGB_565_Config;
134 case kRGBA_4444_GrPixelConfig:
135 *isOpaque = false;
136 return SkBitmap::kARGB_4444_Config;
137 case kSkia8888_GrPixelConfig:
138 // we don't currently have a way of knowing whether
139 // a 8888 is opaque based on the config.
140 *isOpaque = false;
141 return SkBitmap::kARGB_8888_Config;
142 default:
143 *isOpaque = false;
144 return SkBitmap::kNo_Config;
145 }
146}
147
148/*
149 * GrRenderTarget does not know its opaqueness, only its config, so we have
150 * to make conservative guesses when we return an "equivalent" bitmap.
151 */
152static SkBitmap make_bitmap(GrContext* context, GrRenderTarget* renderTarget) {
153 bool isOpaque;
154 SkBitmap::Config config = grConfig2skConfig(renderTarget->config(), &isOpaque);
155
156 SkBitmap bitmap;
157 bitmap.setConfig(config, renderTarget->width(), renderTarget->height(), 0,
158 isOpaque ? kOpaque_SkAlphaType : kPremul_SkAlphaType);
159 return bitmap;
160}
161
commit-bot@chromium.orgd8a57af2014-03-19 21:19:16 +0000162SkGpuDevice* SkGpuDevice::Create(GrSurface* surface, unsigned flags) {
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000163 SkASSERT(NULL != surface);
164 if (NULL == surface->asRenderTarget() || NULL == surface->getContext()) {
165 return NULL;
166 }
167 if (surface->asTexture()) {
commit-bot@chromium.orgd8a57af2014-03-19 21:19:16 +0000168 return SkNEW_ARGS(SkGpuDevice, (surface->getContext(), surface->asTexture(), flags));
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000169 } else {
commit-bot@chromium.orgd8a57af2014-03-19 21:19:16 +0000170 return SkNEW_ARGS(SkGpuDevice, (surface->getContext(), surface->asRenderTarget(), flags));
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000171 }
172}
173
commit-bot@chromium.orgd8a57af2014-03-19 21:19:16 +0000174SkGpuDevice::SkGpuDevice(GrContext* context, GrTexture* texture, unsigned flags)
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000175 : SkBitmapDevice(make_bitmap(context, texture->asRenderTarget())) {
commit-bot@chromium.orgd8a57af2014-03-19 21:19:16 +0000176 this->initFromRenderTarget(context, texture->asRenderTarget(), flags);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000177}
178
commit-bot@chromium.orgd8a57af2014-03-19 21:19:16 +0000179SkGpuDevice::SkGpuDevice(GrContext* context, GrRenderTarget* renderTarget, unsigned flags)
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000180 : SkBitmapDevice(make_bitmap(context, renderTarget)) {
commit-bot@chromium.orgd8a57af2014-03-19 21:19:16 +0000181 this->initFromRenderTarget(context, renderTarget, flags);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000182}
183
184void SkGpuDevice::initFromRenderTarget(GrContext* context,
185 GrRenderTarget* renderTarget,
commit-bot@chromium.orgd8a57af2014-03-19 21:19:16 +0000186 unsigned flags) {
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000187 fDrawProcs = NULL;
188
189 fContext = context;
190 fContext->ref();
191
commit-bot@chromium.org47841822014-03-27 14:19:17 +0000192 fMainTextContext = SkNEW_ARGS(GrDistanceFieldTextContext, (fContext, fLeakyProperties));
193 fFallbackTextContext = SkNEW_ARGS(GrBitmapTextContext, (fContext, fLeakyProperties));
194
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000195 fRenderTarget = NULL;
commit-bot@chromium.orgd8a57af2014-03-19 21:19:16 +0000196 fNeedClear = flags & kNeedClear_Flag;
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000197
198 SkASSERT(NULL != renderTarget);
199 fRenderTarget = renderTarget;
200 fRenderTarget->ref();
201
202 // Hold onto to the texture in the pixel ref (if there is one) because the texture holds a ref
203 // on the RT but not vice-versa.
204 // TODO: Remove this trickery once we figure out how to make SkGrPixelRef do this without
205 // busting chrome (for a currently unknown reason).
206 GrSurface* surface = fRenderTarget->asTexture();
207 if (NULL == surface) {
208 surface = fRenderTarget;
209 }
reed@google.combf790232013-12-13 19:45:58 +0000210
211 SkImageInfo info;
212 surface->asImageInfo(&info);
bungeman@google.coma95a0662014-03-19 23:26:50 +0000213 SkPixelRef* pr = SkNEW_ARGS(SkGrPixelRef, (info, surface, SkToBool(flags & kCached_Flag)));
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000214
reed@google.com672588b2014-01-08 15:42:01 +0000215 this->setPixelRef(pr)->unref();
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000216}
217
commit-bot@chromium.org15a14052014-02-16 00:59:25 +0000218SkGpuDevice* SkGpuDevice::Create(GrContext* context, const SkImageInfo& origInfo,
219 int sampleCount) {
220 if (kUnknown_SkColorType == origInfo.colorType() ||
221 origInfo.width() < 0 || origInfo.height() < 0) {
222 return NULL;
223 }
224
225 SkImageInfo info = origInfo;
226 // TODO: perhas we can loosen this check now that colortype is more detailed
227 // e.g. can we support both RGBA and BGRA here?
228 if (kRGB_565_SkColorType == info.colorType()) {
229 info.fAlphaType = kOpaque_SkAlphaType; // force this setting
230 } else {
231 info.fColorType = kPMColor_SkColorType;
232 if (kOpaque_SkAlphaType != info.alphaType()) {
233 info.fAlphaType = kPremul_SkAlphaType; // force this setting
234 }
235 }
236
237 GrTextureDesc desc;
238 desc.fFlags = kRenderTarget_GrTextureFlagBit;
239 desc.fWidth = info.width();
240 desc.fHeight = info.height();
241 desc.fConfig = SkImageInfo2GrPixelConfig(info.colorType(), info.alphaType());
242 desc.fSampleCnt = sampleCount;
243
244 SkAutoTUnref<GrTexture> texture(context->createUncachedTexture(desc, NULL, 0));
245 if (!texture.get()) {
246 return NULL;
247 }
skia.committer@gmail.com969588f2014-02-16 03:01:56 +0000248
commit-bot@chromium.org15a14052014-02-16 00:59:25 +0000249 return SkNEW_ARGS(SkGpuDevice, (context, texture.get()));
250}
251
252#ifdef SK_SUPPORT_LEGACY_COMPATIBLEDEVICE_CONFIG
253static SkBitmap make_bitmap(SkBitmap::Config config, int width, int height) {
254 SkBitmap bm;
255 bm.setConfig(SkImageInfo::Make(width, height,
256 SkBitmapConfigToColorType(config),
257 kPremul_SkAlphaType));
258 return bm;
259}
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000260SkGpuDevice::SkGpuDevice(GrContext* context,
261 SkBitmap::Config config,
262 int width,
263 int height,
264 int sampleCount)
commit-bot@chromium.org15a14052014-02-16 00:59:25 +0000265 : SkBitmapDevice(make_bitmap(config, width, height))
reed@google.combf790232013-12-13 19:45:58 +0000266{
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000267 fDrawProcs = NULL;
skia.committer@gmail.com969588f2014-02-16 03:01:56 +0000268
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000269 fContext = context;
270 fContext->ref();
skia.committer@gmail.com969588f2014-02-16 03:01:56 +0000271
commit-bot@chromium.org47841822014-03-27 14:19:17 +0000272 fMainTextContext = SkNEW_ARGS(GrDistanceFieldTextContext, (fContext, fLeakyProperties));
273 fFallbackTextContext = SkNEW_ARGS(GrBitmapTextContext, (fContext, fLeakyProperties));
274
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000275 fRenderTarget = NULL;
276 fNeedClear = false;
skia.committer@gmail.com969588f2014-02-16 03:01:56 +0000277
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000278 if (config != SkBitmap::kRGB_565_Config) {
279 config = SkBitmap::kARGB_8888_Config;
280 }
skia.committer@gmail.com969588f2014-02-16 03:01:56 +0000281
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000282 GrTextureDesc desc;
283 desc.fFlags = kRenderTarget_GrTextureFlagBit;
284 desc.fWidth = width;
285 desc.fHeight = height;
286 desc.fConfig = SkBitmapConfig2GrPixelConfig(config);
287 desc.fSampleCnt = sampleCount;
skia.committer@gmail.com969588f2014-02-16 03:01:56 +0000288
reed@google.combf790232013-12-13 19:45:58 +0000289 SkImageInfo info;
290 if (!GrPixelConfig2ColorType(desc.fConfig, &info.fColorType)) {
291 sk_throw();
292 }
293 info.fWidth = width;
294 info.fHeight = height;
295 info.fAlphaType = kPremul_SkAlphaType;
skia.committer@gmail.com969588f2014-02-16 03:01:56 +0000296
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000297 SkAutoTUnref<GrTexture> texture(fContext->createUncachedTexture(desc, NULL, 0));
skia.committer@gmail.com969588f2014-02-16 03:01:56 +0000298
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000299 if (NULL != texture) {
300 fRenderTarget = texture->asRenderTarget();
301 fRenderTarget->ref();
skia.committer@gmail.com969588f2014-02-16 03:01:56 +0000302
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000303 SkASSERT(NULL != fRenderTarget);
skia.committer@gmail.com969588f2014-02-16 03:01:56 +0000304
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000305 // wrap the bitmap with a pixelref to expose our texture
reed@google.combf790232013-12-13 19:45:58 +0000306 SkGrPixelRef* pr = SkNEW_ARGS(SkGrPixelRef, (info, texture));
reed@google.com672588b2014-01-08 15:42:01 +0000307 this->setPixelRef(pr)->unref();
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000308 } else {
309 GrPrintf("--- failed to create gpu-offscreen [%d %d]\n",
310 width, height);
311 SkASSERT(false);
312 }
313}
commit-bot@chromium.org15a14052014-02-16 00:59:25 +0000314#endif
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000315
316SkGpuDevice::~SkGpuDevice() {
317 if (fDrawProcs) {
318 delete fDrawProcs;
319 }
skia.committer@gmail.comd2ac07b2014-01-25 07:01:49 +0000320
commit-bot@chromium.orgcbbc4812014-01-30 22:05:47 +0000321 delete fMainTextContext;
322 delete fFallbackTextContext;
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000323
324 // The GrContext takes a ref on the target. We don't want to cause the render
325 // target to be unnecessarily kept alive.
326 if (fContext->getRenderTarget() == fRenderTarget) {
327 fContext->setRenderTarget(NULL);
328 }
329
330 if (fContext->getClip() == &fClipData) {
331 fContext->setClip(NULL);
332 }
333
334 SkSafeUnref(fRenderTarget);
335 fContext->unref();
336}
337
338///////////////////////////////////////////////////////////////////////////////
339
340void SkGpuDevice::makeRenderTargetCurrent() {
341 DO_DEFERRED_CLEAR();
342 fContext->setRenderTarget(fRenderTarget);
343}
344
345///////////////////////////////////////////////////////////////////////////////
346
commit-bot@chromium.orga713f9c2014-03-17 21:31:26 +0000347bool SkGpuDevice::onReadPixels(const SkImageInfo& dstInfo, void* dstPixels, size_t dstRowBytes,
348 int x, int y) {
349 DO_DEFERRED_CLEAR();
350
351 // TODO: teach fRenderTarget to take ImageInfo directly to specify the src pixels
352 GrPixelConfig config = SkImageInfo2GrPixelConfig(dstInfo.colorType(), dstInfo.alphaType());
353 if (kUnknown_GrPixelConfig == config) {
354 return false;
355 }
356
357 uint32_t flags = 0;
358 if (kUnpremul_SkAlphaType == dstInfo.alphaType()) {
359 flags = GrContext::kUnpremul_PixelOpsFlag;
360 }
361 return fContext->readRenderTargetPixels(fRenderTarget, x, y, dstInfo.width(), dstInfo.height(),
362 config, dstPixels, dstRowBytes, flags);
363}
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000364
commit-bot@chromium.org4cd9e212014-03-07 03:25:16 +0000365bool SkGpuDevice::onWritePixels(const SkImageInfo& info, const void* pixels, size_t rowBytes,
366 int x, int y) {
367 // TODO: teach fRenderTarget to take ImageInfo directly to specify the src pixels
368 GrPixelConfig config = SkImageInfo2GrPixelConfig(info.colorType(), info.alphaType());
369 if (kUnknown_GrPixelConfig == config) {
370 return false;
371 }
372 uint32_t flags = 0;
373 if (kUnpremul_SkAlphaType == info.alphaType()) {
374 flags = GrContext::kUnpremul_PixelOpsFlag;
375 }
376 fRenderTarget->writePixels(x, y, info.width(), info.height(), config, pixels, rowBytes, flags);
377
378 // need to bump our genID for compatibility with clients that "know" we have a bitmap
379 this->onAccessBitmap().notifyPixelsChanged();
380
381 return true;
382}
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000383
senorblanco@chromium.orgb7b7eb32014-03-19 18:24:04 +0000384const SkBitmap& SkGpuDevice::onAccessBitmap() {
385 DO_DEFERRED_CLEAR();
386 return INHERITED::onAccessBitmap();
387}
388
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000389void SkGpuDevice::onAttachToCanvas(SkCanvas* canvas) {
390 INHERITED::onAttachToCanvas(canvas);
391
392 // Canvas promises that this ptr is valid until onDetachFromCanvas is called
393 fClipData.fClipStack = canvas->getClipStack();
394}
395
396void SkGpuDevice::onDetachFromCanvas() {
397 INHERITED::onDetachFromCanvas();
398 fClipData.fClipStack = NULL;
399}
400
401// call this every draw call, to ensure that the context reflects our state,
402// and not the state from some other canvas/device
403void SkGpuDevice::prepareDraw(const SkDraw& draw, bool forceIdentity) {
404 SkASSERT(NULL != fClipData.fClipStack);
405
406 fContext->setRenderTarget(fRenderTarget);
407
408 SkASSERT(draw.fClipStack && draw.fClipStack == fClipData.fClipStack);
409
410 if (forceIdentity) {
411 fContext->setIdentityMatrix();
412 } else {
413 fContext->setMatrix(*draw.fMatrix);
414 }
415 fClipData.fOrigin = this->getOrigin();
416
417 fContext->setClip(&fClipData);
418
419 DO_DEFERRED_CLEAR();
420}
421
422GrRenderTarget* SkGpuDevice::accessRenderTarget() {
423 DO_DEFERRED_CLEAR();
424 return fRenderTarget;
425}
426
427///////////////////////////////////////////////////////////////////////////////
428
429SK_COMPILE_ASSERT(SkShader::kNone_BitmapType == 0, shader_type_mismatch);
430SK_COMPILE_ASSERT(SkShader::kDefault_BitmapType == 1, shader_type_mismatch);
431SK_COMPILE_ASSERT(SkShader::kRadial_BitmapType == 2, shader_type_mismatch);
432SK_COMPILE_ASSERT(SkShader::kSweep_BitmapType == 3, shader_type_mismatch);
433SK_COMPILE_ASSERT(SkShader::kTwoPointRadial_BitmapType == 4,
434 shader_type_mismatch);
435SK_COMPILE_ASSERT(SkShader::kTwoPointConical_BitmapType == 5,
436 shader_type_mismatch);
437SK_COMPILE_ASSERT(SkShader::kLinear_BitmapType == 6, shader_type_mismatch);
438SK_COMPILE_ASSERT(SkShader::kLast_BitmapType == 6, shader_type_mismatch);
439
440namespace {
441
442// converts a SkPaint to a GrPaint, ignoring the skPaint's shader
443// justAlpha indicates that skPaint's alpha should be used rather than the color
444// Callers may subsequently modify the GrPaint. Setting constantColor indicates
445// that the final paint will draw the same color at every pixel. This allows
446// an optimization where the the color filter can be applied to the skPaint's
447// color once while converting to GrPaint and then ignored.
448inline bool skPaint2GrPaintNoShader(SkGpuDevice* dev,
449 const SkPaint& skPaint,
450 bool justAlpha,
451 bool constantColor,
452 GrPaint* grPaint) {
453
454 grPaint->setDither(skPaint.isDither());
455 grPaint->setAntiAlias(skPaint.isAntiAlias());
456
457 SkXfermode::Coeff sm;
458 SkXfermode::Coeff dm;
459
460 SkXfermode* mode = skPaint.getXfermode();
461 GrEffectRef* xferEffect = NULL;
462 if (SkXfermode::AsNewEffectOrCoeff(mode, &xferEffect, &sm, &dm)) {
463 if (NULL != xferEffect) {
464 grPaint->addColorEffect(xferEffect)->unref();
465 sm = SkXfermode::kOne_Coeff;
466 dm = SkXfermode::kZero_Coeff;
467 }
468 } else {
469 //SkDEBUGCODE(SkDebugf("Unsupported xfer mode.\n");)
470#if 0
471 return false;
472#else
473 // Fall back to src-over
474 sm = SkXfermode::kOne_Coeff;
475 dm = SkXfermode::kISA_Coeff;
476#endif
477 }
478 grPaint->setBlendFunc(sk_blend_to_grblend(sm), sk_blend_to_grblend(dm));
479
480 if (justAlpha) {
481 uint8_t alpha = skPaint.getAlpha();
482 grPaint->setColor(GrColorPackRGBA(alpha, alpha, alpha, alpha));
483 // justAlpha is currently set to true only if there is a texture,
484 // so constantColor should not also be true.
485 SkASSERT(!constantColor);
486 } else {
487 grPaint->setColor(SkColor2GrColor(skPaint.getColor()));
488 }
489
490 SkColorFilter* colorFilter = skPaint.getColorFilter();
491 if (NULL != colorFilter) {
492 // if the source color is a constant then apply the filter here once rather than per pixel
493 // in a shader.
494 if (constantColor) {
495 SkColor filtered = colorFilter->filterColor(skPaint.getColor());
496 grPaint->setColor(SkColor2GrColor(filtered));
497 } else {
498 SkAutoTUnref<GrEffectRef> effect(colorFilter->asNewEffect(dev->context()));
499 if (NULL != effect.get()) {
500 grPaint->addColorEffect(effect);
501 }
502 }
503 }
504
505 return true;
506}
507
508// This function is similar to skPaint2GrPaintNoShader but also converts
509// skPaint's shader to a GrTexture/GrEffectStage if possible. The texture to
510// be used is set on grPaint and returned in param act. constantColor has the
511// same meaning as in skPaint2GrPaintNoShader.
512inline bool skPaint2GrPaintShader(SkGpuDevice* dev,
513 const SkPaint& skPaint,
514 bool constantColor,
515 GrPaint* grPaint) {
516 SkShader* shader = skPaint.getShader();
517 if (NULL == shader) {
518 return skPaint2GrPaintNoShader(dev, skPaint, false, constantColor, grPaint);
519 }
520
commit-bot@chromium.org60770572014-01-13 15:57:05 +0000521 // SkShader::asNewEffect() may do offscreen rendering. Setup default drawing state and require
522 // the shader to set a render target .
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000523 GrContext::AutoWideOpenIdentityDraw awo(dev->context(), NULL);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000524
525 // setup the shader as the first color effect on the paint
526 SkAutoTUnref<GrEffectRef> effect(shader->asNewEffect(dev->context(), skPaint));
527 if (NULL != effect.get()) {
528 grPaint->addColorEffect(effect);
529 // Now setup the rest of the paint.
530 return skPaint2GrPaintNoShader(dev, skPaint, true, false, grPaint);
531 } else {
532 // We still don't have SkColorShader::asNewEffect() implemented.
533 SkShader::GradientInfo info;
534 SkColor color;
535
536 info.fColors = &color;
537 info.fColorOffsets = NULL;
538 info.fColorCount = 1;
539 if (SkShader::kColor_GradientType == shader->asAGradient(&info)) {
540 SkPaint copy(skPaint);
541 copy.setShader(NULL);
542 // modulate the paint alpha by the shader's solid color alpha
543 U8CPU newA = SkMulDiv255Round(SkColorGetA(color), copy.getAlpha());
544 copy.setColor(SkColorSetA(color, newA));
545 return skPaint2GrPaintNoShader(dev, copy, false, constantColor, grPaint);
546 } else {
547 return false;
548 }
549 }
550}
551}
552
553///////////////////////////////////////////////////////////////////////////////
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000554
555SkBitmap::Config SkGpuDevice::config() const {
556 if (NULL == fRenderTarget) {
557 return SkBitmap::kNo_Config;
558 }
559
560 bool isOpaque;
561 return grConfig2skConfig(fRenderTarget->config(), &isOpaque);
562}
563
564void SkGpuDevice::clear(SkColor color) {
565 SkIRect rect = SkIRect::MakeWH(this->width(), this->height());
566 fContext->clear(&rect, SkColor2GrColor(color), true, fRenderTarget);
567 fNeedClear = false;
568}
569
570void SkGpuDevice::drawPaint(const SkDraw& draw, const SkPaint& paint) {
571 CHECK_SHOULD_DRAW(draw, false);
572
573 GrPaint grPaint;
574 if (!skPaint2GrPaintShader(this, paint, true, &grPaint)) {
575 return;
576 }
577
578 fContext->drawPaint(grPaint);
579}
580
581// must be in SkCanvas::PointMode order
582static const GrPrimitiveType gPointMode2PrimtiveType[] = {
583 kPoints_GrPrimitiveType,
584 kLines_GrPrimitiveType,
585 kLineStrip_GrPrimitiveType
586};
587
588void SkGpuDevice::drawPoints(const SkDraw& draw, SkCanvas::PointMode mode,
589 size_t count, const SkPoint pts[], const SkPaint& paint) {
590 CHECK_FOR_ANNOTATION(paint);
591 CHECK_SHOULD_DRAW(draw, false);
592
593 SkScalar width = paint.getStrokeWidth();
594 if (width < 0) {
595 return;
596 }
597
598 // we only handle hairlines and paints without path effects or mask filters,
599 // else we let the SkDraw call our drawPath()
600 if (width > 0 || paint.getPathEffect() || paint.getMaskFilter()) {
601 draw.drawPoints(mode, count, pts, paint, true);
602 return;
603 }
604
605 GrPaint grPaint;
606 if (!skPaint2GrPaintShader(this, paint, true, &grPaint)) {
607 return;
608 }
609
610 fContext->drawVertices(grPaint,
611 gPointMode2PrimtiveType[mode],
robertphillips@google.coma4662862013-11-21 14:24:16 +0000612 SkToS32(count),
commit-bot@chromium.org972f9cd2014-03-28 17:58:28 +0000613 (SkPoint*)pts,
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000614 NULL,
615 NULL,
616 NULL,
617 0);
618}
619
620///////////////////////////////////////////////////////////////////////////////
621
622void SkGpuDevice::drawRect(const SkDraw& draw, const SkRect& rect,
623 const SkPaint& paint) {
624 CHECK_FOR_ANNOTATION(paint);
625 CHECK_SHOULD_DRAW(draw, false);
626
627 bool doStroke = paint.getStyle() != SkPaint::kFill_Style;
628 SkScalar width = paint.getStrokeWidth();
629
630 /*
631 We have special code for hairline strokes, miter-strokes, bevel-stroke
632 and fills. Anything else we just call our path code.
633 */
634 bool usePath = doStroke && width > 0 &&
635 (paint.getStrokeJoin() == SkPaint::kRound_Join ||
636 (paint.getStrokeJoin() == SkPaint::kBevel_Join && rect.isEmpty()));
637 // another two reasons we might need to call drawPath...
638 if (paint.getMaskFilter() || paint.getPathEffect()) {
639 usePath = true;
640 }
641 if (!usePath && paint.isAntiAlias() && !fContext->getMatrix().rectStaysRect()) {
642#if defined(SHADER_AA_FILL_RECT) || !defined(IGNORE_ROT_AA_RECT_OPT)
643 if (doStroke) {
644#endif
645 usePath = true;
646#if defined(SHADER_AA_FILL_RECT) || !defined(IGNORE_ROT_AA_RECT_OPT)
647 } else {
648 usePath = !fContext->getMatrix().preservesRightAngles();
649 }
650#endif
651 }
652 // until we can both stroke and fill rectangles
653 if (paint.getStyle() == SkPaint::kStrokeAndFill_Style) {
654 usePath = true;
655 }
656
657 if (usePath) {
658 SkPath path;
659 path.addRect(rect);
660 this->drawPath(draw, path, paint, NULL, true);
661 return;
662 }
663
664 GrPaint grPaint;
665 if (!skPaint2GrPaintShader(this, paint, true, &grPaint)) {
666 return;
667 }
668
669 if (!doStroke) {
670 fContext->drawRect(grPaint, rect);
671 } else {
672 SkStrokeRec stroke(paint);
673 fContext->drawRect(grPaint, rect, &stroke);
674 }
675}
676
677///////////////////////////////////////////////////////////////////////////////
678
679void SkGpuDevice::drawRRect(const SkDraw& draw, const SkRRect& rect,
680 const SkPaint& paint) {
681 CHECK_FOR_ANNOTATION(paint);
682 CHECK_SHOULD_DRAW(draw, false);
683
commit-bot@chromium.org82139702014-03-10 22:53:20 +0000684 GrPaint grPaint;
685 if (!skPaint2GrPaintShader(this, paint, true, &grPaint)) {
686 return;
687 }
688
689 SkStrokeRec stroke(paint);
690 if (paint.getMaskFilter()) {
691 // try to hit the fast path for drawing filtered round rects
692
693 SkRRect devRRect;
694 if (rect.transform(fContext->getMatrix(), &devRRect)) {
695 if (devRRect.allCornersCircular()) {
696 SkRect maskRect;
697 if (paint.getMaskFilter()->canFilterMaskGPU(devRRect.rect(),
698 draw.fClip->getBounds(),
699 fContext->getMatrix(),
700 &maskRect)) {
701 SkIRect finalIRect;
702 maskRect.roundOut(&finalIRect);
703 if (draw.fClip->quickReject(finalIRect)) {
704 // clipped out
705 return;
706 }
707 if (NULL != draw.fBounder && !draw.fBounder->doIRect(finalIRect)) {
708 // nothing to draw
709 return;
710 }
711 if (paint.getMaskFilter()->directFilterRRectMaskGPU(fContext, &grPaint,
712 stroke, devRRect)) {
713 return;
714 }
715 }
716
717 }
718 }
719
720 }
721
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000722 bool usePath = !rect.isSimple();
723 // another two reasons we might need to call drawPath...
724 if (paint.getMaskFilter() || paint.getPathEffect()) {
725 usePath = true;
726 }
727 // until we can rotate rrects...
728 if (!usePath && !fContext->getMatrix().rectStaysRect()) {
729 usePath = true;
730 }
731
732 if (usePath) {
733 SkPath path;
734 path.addRRect(rect);
735 this->drawPath(draw, path, paint, NULL, true);
736 return;
737 }
738
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000739 fContext->drawRRect(grPaint, rect, stroke);
740}
741
commit-bot@chromium.org82139702014-03-10 22:53:20 +0000742/////////////////////////////////////////////////////////////////////////////
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000743
744void SkGpuDevice::drawOval(const SkDraw& draw, const SkRect& oval,
745 const SkPaint& paint) {
746 CHECK_FOR_ANNOTATION(paint);
747 CHECK_SHOULD_DRAW(draw, false);
748
749 bool usePath = false;
750 // some basic reasons we might need to call drawPath...
751 if (paint.getMaskFilter() || paint.getPathEffect()) {
752 usePath = true;
753 }
754
755 if (usePath) {
756 SkPath path;
757 path.addOval(oval);
758 this->drawPath(draw, path, paint, NULL, true);
759 return;
760 }
761
762 GrPaint grPaint;
763 if (!skPaint2GrPaintShader(this, paint, true, &grPaint)) {
764 return;
765 }
766 SkStrokeRec stroke(paint);
767
768 fContext->drawOval(grPaint, oval, stroke);
769}
770
771#include "SkMaskFilter.h"
772#include "SkBounder.h"
773
774///////////////////////////////////////////////////////////////////////////////
775
776// helpers for applying mask filters
777namespace {
778
779// Draw a mask using the supplied paint. Since the coverage/geometry
780// is already burnt into the mask this boils down to a rect draw.
781// Return true if the mask was successfully drawn.
782bool draw_mask(GrContext* context, const SkRect& maskRect,
783 GrPaint* grp, GrTexture* mask) {
784 GrContext::AutoMatrix am;
785 if (!am.setIdentity(context, grp)) {
786 return false;
787 }
788
789 SkMatrix matrix;
790 matrix.setTranslate(-maskRect.fLeft, -maskRect.fTop);
791 matrix.postIDiv(mask->width(), mask->height());
792
793 grp->addCoverageEffect(GrSimpleTextureEffect::Create(mask, matrix))->unref();
794 context->drawRect(*grp, maskRect);
795 return true;
796}
797
798bool draw_with_mask_filter(GrContext* context, const SkPath& devPath,
799 SkMaskFilter* filter, const SkRegion& clip, SkBounder* bounder,
800 GrPaint* grp, SkPaint::Style style) {
801 SkMask srcM, dstM;
802
803 if (!SkDraw::DrawToMask(devPath, &clip.getBounds(), filter, &context->getMatrix(), &srcM,
804 SkMask::kComputeBoundsAndRenderImage_CreateMode, style)) {
805 return false;
806 }
807 SkAutoMaskFreeImage autoSrc(srcM.fImage);
808
809 if (!filter->filterMask(&dstM, srcM, context->getMatrix(), NULL)) {
810 return false;
811 }
812 // this will free-up dstM when we're done (allocated in filterMask())
813 SkAutoMaskFreeImage autoDst(dstM.fImage);
814
815 if (clip.quickReject(dstM.fBounds)) {
816 return false;
817 }
818 if (bounder && !bounder->doIRect(dstM.fBounds)) {
819 return false;
820 }
821
822 // we now have a device-aligned 8bit mask in dstM, ready to be drawn using
823 // the current clip (and identity matrix) and GrPaint settings
824 GrTextureDesc desc;
825 desc.fWidth = dstM.fBounds.width();
826 desc.fHeight = dstM.fBounds.height();
827 desc.fConfig = kAlpha_8_GrPixelConfig;
828
829 GrAutoScratchTexture ast(context, desc);
830 GrTexture* texture = ast.texture();
831
832 if (NULL == texture) {
833 return false;
834 }
835 texture->writePixels(0, 0, desc.fWidth, desc.fHeight, desc.fConfig,
836 dstM.fImage, dstM.fRowBytes);
837
838 SkRect maskRect = SkRect::Make(dstM.fBounds);
839
840 return draw_mask(context, maskRect, grp, texture);
841}
842
843// Create a mask of 'devPath' and place the result in 'mask'. Return true on
844// success; false otherwise.
845bool create_mask_GPU(GrContext* context,
846 const SkRect& maskRect,
847 const SkPath& devPath,
848 const SkStrokeRec& stroke,
849 bool doAA,
850 GrAutoScratchTexture* mask) {
851 GrTextureDesc desc;
852 desc.fFlags = kRenderTarget_GrTextureFlagBit;
853 desc.fWidth = SkScalarCeilToInt(maskRect.width());
854 desc.fHeight = SkScalarCeilToInt(maskRect.height());
855 // We actually only need A8, but it often isn't supported as a
856 // render target so default to RGBA_8888
857 desc.fConfig = kRGBA_8888_GrPixelConfig;
858 if (context->isConfigRenderable(kAlpha_8_GrPixelConfig, false)) {
859 desc.fConfig = kAlpha_8_GrPixelConfig;
860 }
861
862 mask->set(context, desc);
863 if (NULL == mask->texture()) {
864 return false;
865 }
866
867 GrTexture* maskTexture = mask->texture();
868 SkRect clipRect = SkRect::MakeWH(maskRect.width(), maskRect.height());
869
870 GrContext::AutoRenderTarget art(context, maskTexture->asRenderTarget());
871 GrContext::AutoClip ac(context, clipRect);
872
873 context->clear(NULL, 0x0, true);
874
875 GrPaint tempPaint;
876 if (doAA) {
877 tempPaint.setAntiAlias(true);
878 // AA uses the "coverage" stages on GrDrawTarget. Coverage with a dst
879 // blend coeff of zero requires dual source blending support in order
880 // to properly blend partially covered pixels. This means the AA
881 // code path may not be taken. So we use a dst blend coeff of ISA. We
882 // could special case AA draws to a dst surface with known alpha=0 to
883 // use a zero dst coeff when dual source blending isn't available.
884 tempPaint.setBlendFunc(kOne_GrBlendCoeff, kISC_GrBlendCoeff);
885 }
886
887 GrContext::AutoMatrix am;
888
889 // Draw the mask into maskTexture with the path's top-left at the origin using tempPaint.
890 SkMatrix translate;
891 translate.setTranslate(-maskRect.fLeft, -maskRect.fTop);
892 am.set(context, translate);
893 context->drawPath(tempPaint, devPath, stroke);
894 return true;
895}
896
897SkBitmap wrap_texture(GrTexture* texture) {
reed@google.combf790232013-12-13 19:45:58 +0000898 SkImageInfo info;
899 texture->asImageInfo(&info);
900
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000901 SkBitmap result;
reed@google.combf790232013-12-13 19:45:58 +0000902 result.setConfig(info);
903 result.setPixelRef(SkNEW_ARGS(SkGrPixelRef, (info, texture)))->unref();
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000904 return result;
905}
906
907};
908
909void SkGpuDevice::drawPath(const SkDraw& draw, const SkPath& origSrcPath,
910 const SkPaint& paint, const SkMatrix* prePathMatrix,
911 bool pathIsMutable) {
912 CHECK_FOR_ANNOTATION(paint);
913 CHECK_SHOULD_DRAW(draw, false);
914
915 GrPaint grPaint;
916 if (!skPaint2GrPaintShader(this, paint, true, &grPaint)) {
917 return;
918 }
919
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000920 // If we have a prematrix, apply it to the path, optimizing for the case
921 // where the original path can in fact be modified in place (even though
922 // its parameter type is const).
923 SkPath* pathPtr = const_cast<SkPath*>(&origSrcPath);
commit-bot@chromium.orgf0c41e22014-01-14 18:42:34 +0000924 SkTLazy<SkPath> tmpPath;
925 SkTLazy<SkPath> effectPath;
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000926
927 if (prePathMatrix) {
928 SkPath* result = pathPtr;
929
930 if (!pathIsMutable) {
commit-bot@chromium.orgf0c41e22014-01-14 18:42:34 +0000931 result = tmpPath.init();
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000932 pathIsMutable = true;
933 }
934 // should I push prePathMatrix on our MV stack temporarily, instead
935 // of applying it here? See SkDraw.cpp
936 pathPtr->transform(*prePathMatrix, result);
937 pathPtr = result;
938 }
939 // at this point we're done with prePathMatrix
940 SkDEBUGCODE(prePathMatrix = (const SkMatrix*)0x50FF8001;)
941
942 SkStrokeRec stroke(paint);
943 SkPathEffect* pathEffect = paint.getPathEffect();
944 const SkRect* cullRect = NULL; // TODO: what is our bounds?
commit-bot@chromium.orgf0c41e22014-01-14 18:42:34 +0000945 if (pathEffect && pathEffect->filterPath(effectPath.init(), *pathPtr, &stroke,
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000946 cullRect)) {
commit-bot@chromium.orgf0c41e22014-01-14 18:42:34 +0000947 pathPtr = effectPath.get();
948 pathIsMutable = true;
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000949 }
950
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000951 if (paint.getMaskFilter()) {
952 if (!stroke.isHairlineStyle()) {
commit-bot@chromium.orgf0c41e22014-01-14 18:42:34 +0000953 SkPath* strokedPath = pathIsMutable ? pathPtr : tmpPath.init();
954 if (stroke.applyToPath(strokedPath, *pathPtr)) {
955 pathPtr = strokedPath;
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000956 pathIsMutable = true;
957 stroke.setFillStyle();
958 }
959 }
960
961 // avoid possibly allocating a new path in transform if we can
commit-bot@chromium.orgf0c41e22014-01-14 18:42:34 +0000962 SkPath* devPathPtr = pathIsMutable ? pathPtr : tmpPath.init();
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000963
964 // transform the path into device space
965 pathPtr->transform(fContext->getMatrix(), devPathPtr);
skia.committer@gmail.com4c18e9f2014-01-31 03:01:59 +0000966
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000967 SkRect maskRect;
968 if (paint.getMaskFilter()->canFilterMaskGPU(devPathPtr->getBounds(),
969 draw.fClip->getBounds(),
970 fContext->getMatrix(),
971 &maskRect)) {
commit-bot@chromium.org439ff1b2014-01-13 16:39:39 +0000972 // The context's matrix may change while creating the mask, so save the CTM here to
973 // pass to filterMaskGPU.
974 const SkMatrix ctm = fContext->getMatrix();
975
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000976 SkIRect finalIRect;
977 maskRect.roundOut(&finalIRect);
978 if (draw.fClip->quickReject(finalIRect)) {
979 // clipped out
980 return;
981 }
982 if (NULL != draw.fBounder && !draw.fBounder->doIRect(finalIRect)) {
983 // nothing to draw
984 return;
985 }
skia.committer@gmail.com4c18e9f2014-01-31 03:01:59 +0000986
commit-bot@chromium.orgcf34bc02014-01-30 15:34:43 +0000987 if (paint.getMaskFilter()->directFilterMaskGPU(fContext, &grPaint,
commit-bot@chromium.org82139702014-03-10 22:53:20 +0000988 stroke, *devPathPtr)) {
commit-bot@chromium.orgcf34bc02014-01-30 15:34:43 +0000989 // the mask filter was able to draw itself directly, so there's nothing
990 // left to do.
991 return;
992 }
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +0000993
994 GrAutoScratchTexture mask;
995
996 if (create_mask_GPU(fContext, maskRect, *devPathPtr, stroke,
997 grPaint.isAntiAlias(), &mask)) {
998 GrTexture* filtered;
999
commit-bot@chromium.org41bf9302014-01-08 22:25:53 +00001000 if (paint.getMaskFilter()->filterMaskGPU(mask.texture(),
commit-bot@chromium.org439ff1b2014-01-13 16:39:39 +00001001 ctm, maskRect, &filtered, true)) {
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001002 // filterMaskGPU gives us ownership of a ref to the result
1003 SkAutoTUnref<GrTexture> atu(filtered);
1004
1005 // If the scratch texture that we used as the filter src also holds the filter
1006 // result then we must detach so that this texture isn't recycled for a later
1007 // draw.
1008 if (filtered == mask.texture()) {
1009 mask.detach();
1010 filtered->unref(); // detach transfers GrAutoScratchTexture's ref to us.
1011 }
1012
1013 if (draw_mask(fContext, maskRect, &grPaint, filtered)) {
1014 // This path is completely drawn
1015 return;
1016 }
1017 }
1018 }
1019 }
1020
1021 // draw the mask on the CPU - this is a fallthrough path in case the
1022 // GPU path fails
1023 SkPaint::Style style = stroke.isHairlineStyle() ? SkPaint::kStroke_Style :
1024 SkPaint::kFill_Style;
1025 draw_with_mask_filter(fContext, *devPathPtr, paint.getMaskFilter(),
1026 *draw.fClip, draw.fBounder, &grPaint, style);
1027 return;
1028 }
1029
1030 fContext->drawPath(grPaint, *pathPtr, stroke);
1031}
1032
1033static const int kBmpSmallTileSize = 1 << 10;
1034
1035static inline int get_tile_count(const SkIRect& srcRect, int tileSize) {
1036 int tilesX = (srcRect.fRight / tileSize) - (srcRect.fLeft / tileSize) + 1;
1037 int tilesY = (srcRect.fBottom / tileSize) - (srcRect.fTop / tileSize) + 1;
1038 return tilesX * tilesY;
1039}
1040
1041static int determine_tile_size(const SkBitmap& bitmap, const SkIRect& src, int maxTileSize) {
1042 if (maxTileSize <= kBmpSmallTileSize) {
1043 return maxTileSize;
1044 }
1045
1046 size_t maxTileTotalTileSize = get_tile_count(src, maxTileSize);
1047 size_t smallTotalTileSize = get_tile_count(src, kBmpSmallTileSize);
1048
1049 maxTileTotalTileSize *= maxTileSize * maxTileSize;
1050 smallTotalTileSize *= kBmpSmallTileSize * kBmpSmallTileSize;
1051
1052 if (maxTileTotalTileSize > 2 * smallTotalTileSize) {
1053 return kBmpSmallTileSize;
1054 } else {
1055 return maxTileSize;
1056 }
1057}
1058
1059// Given a bitmap, an optional src rect, and a context with a clip and matrix determine what
1060// pixels from the bitmap are necessary.
1061static void determine_clipped_src_rect(const GrContext* context,
1062 const SkBitmap& bitmap,
1063 const SkRect* srcRectPtr,
1064 SkIRect* clippedSrcIRect) {
1065 const GrClipData* clip = context->getClip();
1066 clip->getConservativeBounds(context->getRenderTarget(), clippedSrcIRect, NULL);
1067 SkMatrix inv;
1068 if (!context->getMatrix().invert(&inv)) {
1069 clippedSrcIRect->setEmpty();
1070 return;
1071 }
1072 SkRect clippedSrcRect = SkRect::Make(*clippedSrcIRect);
1073 inv.mapRect(&clippedSrcRect);
1074 if (NULL != srcRectPtr) {
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001075 // we've setup src space 0,0 to map to the top left of the src rect.
1076 clippedSrcRect.offset(srcRectPtr->fLeft, srcRectPtr->fTop);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001077 if (!clippedSrcRect.intersect(*srcRectPtr)) {
1078 clippedSrcIRect->setEmpty();
1079 return;
1080 }
1081 }
1082 clippedSrcRect.roundOut(clippedSrcIRect);
1083 SkIRect bmpBounds = SkIRect::MakeWH(bitmap.width(), bitmap.height());
1084 if (!clippedSrcIRect->intersect(bmpBounds)) {
1085 clippedSrcIRect->setEmpty();
1086 }
1087}
1088
1089bool SkGpuDevice::shouldTileBitmap(const SkBitmap& bitmap,
1090 const GrTextureParams& params,
1091 const SkRect* srcRectPtr,
1092 int maxTileSize,
1093 int* tileSize,
1094 SkIRect* clippedSrcRect) const {
1095 // if bitmap is explictly texture backed then just use the texture
1096 if (NULL != bitmap.getTexture()) {
1097 return false;
1098 }
1099
1100 // if it's larger than the max tile size, then we have no choice but tiling.
1101 if (bitmap.width() > maxTileSize || bitmap.height() > maxTileSize) {
1102 determine_clipped_src_rect(fContext, bitmap, srcRectPtr, clippedSrcRect);
1103 *tileSize = determine_tile_size(bitmap, *clippedSrcRect, maxTileSize);
1104 return true;
1105 }
1106
1107 if (bitmap.width() * bitmap.height() < 4 * kBmpSmallTileSize * kBmpSmallTileSize) {
1108 return false;
1109 }
1110
1111 // if the entire texture is already in our cache then no reason to tile it
1112 if (GrIsBitmapInCache(fContext, bitmap, &params)) {
1113 return false;
1114 }
1115
1116 // At this point we know we could do the draw by uploading the entire bitmap
1117 // as a texture. However, if the texture would be large compared to the
1118 // cache size and we don't require most of it for this draw then tile to
1119 // reduce the amount of upload and cache spill.
1120
1121 // assumption here is that sw bitmap size is a good proxy for its size as
1122 // a texture
1123 size_t bmpSize = bitmap.getSize();
1124 size_t cacheSize;
1125 fContext->getTextureCacheLimits(NULL, &cacheSize);
1126 if (bmpSize < cacheSize / 2) {
1127 return false;
1128 }
1129
1130 // Figure out how much of the src we will need based on the src rect and clipping.
1131 determine_clipped_src_rect(fContext, bitmap, srcRectPtr, clippedSrcRect);
1132 *tileSize = kBmpSmallTileSize; // already know whole bitmap fits in one max sized tile.
1133 size_t usedTileBytes = get_tile_count(*clippedSrcRect, kBmpSmallTileSize) *
1134 kBmpSmallTileSize * kBmpSmallTileSize;
1135
1136 return usedTileBytes < 2 * bmpSize;
1137}
1138
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001139void SkGpuDevice::drawBitmap(const SkDraw& origDraw,
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001140 const SkBitmap& bitmap,
1141 const SkMatrix& m,
1142 const SkPaint& paint) {
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001143 SkMatrix concat;
1144 SkTCopyOnFirstWrite<SkDraw> draw(origDraw);
1145 if (!m.isIdentity()) {
1146 concat.setConcat(*draw->fMatrix, m);
1147 draw.writable()->fMatrix = &concat;
1148 }
1149 this->drawBitmapCommon(*draw, bitmap, NULL, NULL, paint, SkCanvas::kNone_DrawBitmapRectFlag);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001150}
1151
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001152// This method outsets 'iRect' by 'outset' all around and then clamps its extents to
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001153// 'clamp'. 'offset' is adjusted to remain positioned over the top-left corner
1154// of 'iRect' for all possible outsets/clamps.
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001155static inline void clamped_outset_with_offset(SkIRect* iRect,
1156 int outset,
1157 SkPoint* offset,
1158 const SkIRect& clamp) {
1159 iRect->outset(outset, outset);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001160
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001161 int leftClampDelta = clamp.fLeft - iRect->fLeft;
1162 if (leftClampDelta > 0) {
1163 offset->fX -= outset - leftClampDelta;
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001164 iRect->fLeft = clamp.fLeft;
1165 } else {
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001166 offset->fX -= outset;
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001167 }
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001168
1169 int topClampDelta = clamp.fTop - iRect->fTop;
1170 if (topClampDelta > 0) {
1171 offset->fY -= outset - topClampDelta;
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001172 iRect->fTop = clamp.fTop;
1173 } else {
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001174 offset->fY -= outset;
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001175 }
1176
1177 if (iRect->fRight > clamp.fRight) {
1178 iRect->fRight = clamp.fRight;
1179 }
1180 if (iRect->fBottom > clamp.fBottom) {
1181 iRect->fBottom = clamp.fBottom;
1182 }
1183}
1184
1185void SkGpuDevice::drawBitmapCommon(const SkDraw& draw,
1186 const SkBitmap& bitmap,
1187 const SkRect* srcRectPtr,
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001188 const SkSize* dstSizePtr,
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001189 const SkPaint& paint,
1190 SkCanvas::DrawBitmapRectFlags flags) {
1191 CHECK_SHOULD_DRAW(draw, false);
1192
1193 SkRect srcRect;
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001194 SkSize dstSize;
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001195 // If there is no src rect, or the src rect contains the entire bitmap then we're effectively
1196 // in the (easier) bleed case, so update flags.
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001197 if (NULL == srcRectPtr) {
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001198 SkScalar w = SkIntToScalar(bitmap.width());
1199 SkScalar h = SkIntToScalar(bitmap.height());
1200 dstSize.fWidth = w;
1201 dstSize.fHeight = h;
1202 srcRect.set(0, 0, w, h);
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001203 flags = (SkCanvas::DrawBitmapRectFlags) (flags | SkCanvas::kBleed_DrawBitmapRectFlag);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001204 } else {
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001205 SkASSERT(NULL != dstSizePtr);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001206 srcRect = *srcRectPtr;
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001207 dstSize = *dstSizePtr;
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001208 if (srcRect.fLeft <= 0 && srcRect.fTop <= 0 &&
1209 srcRect.fRight >= bitmap.width() && srcRect.fBottom >= bitmap.height()) {
1210 flags = (SkCanvas::DrawBitmapRectFlags) (flags | SkCanvas::kBleed_DrawBitmapRectFlag);
1211 }
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001212 }
1213
1214 if (paint.getMaskFilter()){
1215 // Convert the bitmap to a shader so that the rect can be drawn
1216 // through drawRect, which supports mask filters.
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001217 SkBitmap tmp; // subset of bitmap, if necessary
1218 const SkBitmap* bitmapPtr = &bitmap;
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001219 SkMatrix localM;
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001220 if (NULL != srcRectPtr) {
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001221 localM.setTranslate(-srcRectPtr->fLeft, -srcRectPtr->fTop);
1222 localM.postScale(dstSize.fWidth / srcRectPtr->width(),
1223 dstSize.fHeight / srcRectPtr->height());
commit-bot@chromium.orgd6ca4ac2013-11-22 20:34:59 +00001224 // In bleed mode we position and trim the bitmap based on the src rect which is
1225 // already accounted for in 'm' and 'srcRect'. In clamp mode we need to chop out
1226 // the desired portion of the bitmap and then update 'm' and 'srcRect' to
1227 // compensate.
1228 if (!(SkCanvas::kBleed_DrawBitmapRectFlag & flags)) {
1229 SkIRect iSrc;
1230 srcRect.roundOut(&iSrc);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001231
commit-bot@chromium.orgd6ca4ac2013-11-22 20:34:59 +00001232 SkPoint offset = SkPoint::Make(SkIntToScalar(iSrc.fLeft),
1233 SkIntToScalar(iSrc.fTop));
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001234
commit-bot@chromium.orgd6ca4ac2013-11-22 20:34:59 +00001235 if (!bitmap.extractSubset(&tmp, iSrc)) {
1236 return; // extraction failed
1237 }
1238 bitmapPtr = &tmp;
1239 srcRect.offset(-offset.fX, -offset.fY);
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001240
commit-bot@chromium.orgd6ca4ac2013-11-22 20:34:59 +00001241 // The source rect has changed so update the matrix
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001242 localM.preTranslate(offset.fX, offset.fY);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001243 }
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001244 } else {
1245 localM.reset();
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001246 }
1247
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001248 SkPaint paintWithShader(paint);
1249 paintWithShader.setShader(SkShader::CreateBitmapShader(*bitmapPtr,
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001250 SkShader::kClamp_TileMode, SkShader::kClamp_TileMode))->unref();
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001251 paintWithShader.getShader()->setLocalMatrix(localM);
1252 SkRect dstRect = {0, 0, dstSize.fWidth, dstSize.fHeight};
1253 this->drawRect(draw, dstRect, paintWithShader);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001254
1255 return;
1256 }
1257
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001258 // If there is no mask filter than it is OK to handle the src rect -> dst rect scaling using
1259 // the view matrix rather than a local matrix.
1260 SkMatrix m;
1261 m.setScale(dstSize.fWidth / srcRect.width(),
1262 dstSize.fHeight / srcRect.height());
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001263 fContext->concatMatrix(m);
1264
1265 GrTextureParams params;
1266 SkPaint::FilterLevel paintFilterLevel = paint.getFilterLevel();
1267 GrTextureParams::FilterMode textureFilterMode;
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001268
1269 int tileFilterPad;
1270 bool doBicubic = false;
1271
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001272 switch(paintFilterLevel) {
1273 case SkPaint::kNone_FilterLevel:
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001274 tileFilterPad = 0;
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001275 textureFilterMode = GrTextureParams::kNone_FilterMode;
1276 break;
1277 case SkPaint::kLow_FilterLevel:
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001278 tileFilterPad = 1;
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001279 textureFilterMode = GrTextureParams::kBilerp_FilterMode;
1280 break;
1281 case SkPaint::kMedium_FilterLevel:
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001282 tileFilterPad = 1;
commit-bot@chromium.org79b7eee2013-12-16 21:02:29 +00001283 if (fContext->getMatrix().getMinStretch() < SK_Scalar1) {
1284 textureFilterMode = GrTextureParams::kMipMap_FilterMode;
1285 } else {
1286 // Don't trigger MIP level generation unnecessarily.
1287 textureFilterMode = GrTextureParams::kBilerp_FilterMode;
1288 }
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001289 break;
commit-bot@chromium.org79b7eee2013-12-16 21:02:29 +00001290 case SkPaint::kHigh_FilterLevel:
commit-bot@chromium.orgcea9abb2013-12-09 19:15:37 +00001291 // Minification can look bad with the bicubic effect.
commit-bot@chromium.org7d7f3142013-12-16 15:18:11 +00001292 if (fContext->getMatrix().getMinStretch() >= SK_Scalar1) {
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001293 // We will install an effect that does the filtering in the shader.
1294 textureFilterMode = GrTextureParams::kNone_FilterMode;
1295 tileFilterPad = GrBicubicEffect::kFilterTexelPad;
1296 doBicubic = true;
1297 } else {
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001298 textureFilterMode = GrTextureParams::kMipMap_FilterMode;
1299 tileFilterPad = 1;
1300 }
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001301 break;
1302 default:
1303 SkErrorInternals::SetError( kInvalidPaint_SkError,
1304 "Sorry, I don't understand the filtering "
1305 "mode you asked for. Falling back to "
1306 "MIPMaps.");
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001307 tileFilterPad = 1;
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001308 textureFilterMode = GrTextureParams::kMipMap_FilterMode;
1309 break;
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001310 }
1311
1312 params.setFilterMode(textureFilterMode);
1313
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001314 int maxTileSize = fContext->getMaxTextureSize() - 2 * tileFilterPad;
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001315 int tileSize;
1316
1317 SkIRect clippedSrcRect;
1318 if (this->shouldTileBitmap(bitmap, params, srcRectPtr, maxTileSize, &tileSize,
1319 &clippedSrcRect)) {
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001320 this->drawTiledBitmap(bitmap, srcRect, clippedSrcRect, params, paint, flags, tileSize,
1321 doBicubic);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001322 } else {
1323 // take the simple case
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001324 this->internalDrawBitmap(bitmap, srcRect, params, paint, flags, doBicubic);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001325 }
1326}
1327
1328// Break 'bitmap' into several tiles to draw it since it has already
1329// been determined to be too large to fit in VRAM
1330void SkGpuDevice::drawTiledBitmap(const SkBitmap& bitmap,
1331 const SkRect& srcRect,
1332 const SkIRect& clippedSrcIRect,
1333 const GrTextureParams& params,
1334 const SkPaint& paint,
1335 SkCanvas::DrawBitmapRectFlags flags,
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001336 int tileSize,
1337 bool bicubic) {
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001338 SkRect clippedSrcRect = SkRect::Make(clippedSrcIRect);
1339
1340 int nx = bitmap.width() / tileSize;
1341 int ny = bitmap.height() / tileSize;
1342 for (int x = 0; x <= nx; x++) {
1343 for (int y = 0; y <= ny; y++) {
1344 SkRect tileR;
1345 tileR.set(SkIntToScalar(x * tileSize),
1346 SkIntToScalar(y * tileSize),
1347 SkIntToScalar((x + 1) * tileSize),
1348 SkIntToScalar((y + 1) * tileSize));
1349
1350 if (!SkRect::Intersects(tileR, clippedSrcRect)) {
1351 continue;
1352 }
1353
1354 if (!tileR.intersect(srcRect)) {
1355 continue;
1356 }
1357
1358 SkBitmap tmpB;
1359 SkIRect iTileR;
1360 tileR.roundOut(&iTileR);
1361 SkPoint offset = SkPoint::Make(SkIntToScalar(iTileR.fLeft),
1362 SkIntToScalar(iTileR.fTop));
1363
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001364 // Adjust the context matrix to draw at the right x,y in device space
1365 SkMatrix tmpM;
1366 GrContext::AutoMatrix am;
1367 tmpM.setTranslate(offset.fX - srcRect.fLeft, offset.fY - srcRect.fTop);
1368 am.setPreConcat(fContext, tmpM);
1369
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001370 if (SkPaint::kNone_FilterLevel != paint.getFilterLevel() || bicubic) {
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001371 SkIRect iClampRect;
1372
1373 if (SkCanvas::kBleed_DrawBitmapRectFlag & flags) {
1374 // In bleed mode we want to always expand the tile on all edges
1375 // but stay within the bitmap bounds
1376 iClampRect = SkIRect::MakeWH(bitmap.width(), bitmap.height());
1377 } else {
1378 // In texture-domain/clamp mode we only want to expand the
1379 // tile on edges interior to "srcRect" (i.e., we want to
1380 // not bleed across the original clamped edges)
1381 srcRect.roundOut(&iClampRect);
1382 }
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001383 int outset = bicubic ? GrBicubicEffect::kFilterTexelPad : 1;
1384 clamped_outset_with_offset(&iTileR, outset, &offset, iClampRect);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001385 }
1386
1387 if (bitmap.extractSubset(&tmpB, iTileR)) {
1388 // now offset it to make it "local" to our tmp bitmap
1389 tileR.offset(-offset.fX, -offset.fY);
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001390
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001391 this->internalDrawBitmap(tmpB, tileR, params, paint, flags, bicubic);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001392 }
1393 }
1394 }
1395}
1396
1397static bool has_aligned_samples(const SkRect& srcRect,
1398 const SkRect& transformedRect) {
1399 // detect pixel disalignment
1400 if (SkScalarAbs(SkScalarRoundToScalar(transformedRect.left()) -
1401 transformedRect.left()) < COLOR_BLEED_TOLERANCE &&
1402 SkScalarAbs(SkScalarRoundToScalar(transformedRect.top()) -
1403 transformedRect.top()) < COLOR_BLEED_TOLERANCE &&
1404 SkScalarAbs(transformedRect.width() - srcRect.width()) <
1405 COLOR_BLEED_TOLERANCE &&
1406 SkScalarAbs(transformedRect.height() - srcRect.height()) <
1407 COLOR_BLEED_TOLERANCE) {
1408 return true;
1409 }
1410 return false;
1411}
1412
1413static bool may_color_bleed(const SkRect& srcRect,
1414 const SkRect& transformedRect,
1415 const SkMatrix& m) {
1416 // Only gets called if has_aligned_samples returned false.
1417 // So we can assume that sampling is axis aligned but not texel aligned.
1418 SkASSERT(!has_aligned_samples(srcRect, transformedRect));
1419 SkRect innerSrcRect(srcRect), innerTransformedRect,
1420 outerTransformedRect(transformedRect);
1421 innerSrcRect.inset(SK_ScalarHalf, SK_ScalarHalf);
1422 m.mapRect(&innerTransformedRect, innerSrcRect);
1423
1424 // The gap between outerTransformedRect and innerTransformedRect
1425 // represents the projection of the source border area, which is
1426 // problematic for color bleeding. We must check whether any
1427 // destination pixels sample the border area.
1428 outerTransformedRect.inset(COLOR_BLEED_TOLERANCE, COLOR_BLEED_TOLERANCE);
1429 innerTransformedRect.outset(COLOR_BLEED_TOLERANCE, COLOR_BLEED_TOLERANCE);
1430 SkIRect outer, inner;
1431 outerTransformedRect.round(&outer);
1432 innerTransformedRect.round(&inner);
1433 // If the inner and outer rects round to the same result, it means the
1434 // border does not overlap any pixel centers. Yay!
1435 return inner != outer;
1436}
1437
1438
1439/*
1440 * This is called by drawBitmap(), which has to handle images that may be too
1441 * large to be represented by a single texture.
1442 *
1443 * internalDrawBitmap assumes that the specified bitmap will fit in a texture
1444 * and that non-texture portion of the GrPaint has already been setup.
1445 */
1446void SkGpuDevice::internalDrawBitmap(const SkBitmap& bitmap,
1447 const SkRect& srcRect,
1448 const GrTextureParams& params,
1449 const SkPaint& paint,
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001450 SkCanvas::DrawBitmapRectFlags flags,
1451 bool bicubic) {
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001452 SkASSERT(bitmap.width() <= fContext->getMaxTextureSize() &&
1453 bitmap.height() <= fContext->getMaxTextureSize());
1454
1455 GrTexture* texture;
1456 SkAutoCachedTexture act(this, bitmap, &params, &texture);
1457 if (NULL == texture) {
1458 return;
1459 }
1460
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001461 SkRect dstRect = {0, 0, srcRect.width(), srcRect.height() };
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001462 SkRect paintRect;
1463 SkScalar wInv = SkScalarInvert(SkIntToScalar(texture->width()));
1464 SkScalar hInv = SkScalarInvert(SkIntToScalar(texture->height()));
1465 paintRect.setLTRB(SkScalarMul(srcRect.fLeft, wInv),
1466 SkScalarMul(srcRect.fTop, hInv),
1467 SkScalarMul(srcRect.fRight, wInv),
1468 SkScalarMul(srcRect.fBottom, hInv));
1469
1470 bool needsTextureDomain = false;
1471 if (!(flags & SkCanvas::kBleed_DrawBitmapRectFlag) &&
commit-bot@chromium.org7d7f3142013-12-16 15:18:11 +00001472 (bicubic || params.filterMode() != GrTextureParams::kNone_FilterMode)) {
1473 // Need texture domain if drawing a sub rect
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001474 needsTextureDomain = srcRect.width() < bitmap.width() ||
1475 srcRect.height() < bitmap.height();
commit-bot@chromium.org7d7f3142013-12-16 15:18:11 +00001476 if (!bicubic && needsTextureDomain && fContext->getMatrix().rectStaysRect()) {
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001477 const SkMatrix& matrix = fContext->getMatrix();
1478 // sampling is axis-aligned
1479 SkRect transformedRect;
1480 matrix.mapRect(&transformedRect, srcRect);
1481
1482 if (has_aligned_samples(srcRect, transformedRect)) {
1483 // We could also turn off filtering here (but we already did a cache lookup with
1484 // params).
1485 needsTextureDomain = false;
1486 } else {
1487 needsTextureDomain = may_color_bleed(srcRect, transformedRect, matrix);
1488 }
1489 }
1490 }
1491
1492 SkRect textureDomain = SkRect::MakeEmpty();
1493 SkAutoTUnref<GrEffectRef> effect;
1494 if (needsTextureDomain) {
1495 // Use a constrained texture domain to avoid color bleeding
1496 SkScalar left, top, right, bottom;
1497 if (srcRect.width() > SK_Scalar1) {
1498 SkScalar border = SK_ScalarHalf / texture->width();
1499 left = paintRect.left() + border;
1500 right = paintRect.right() - border;
1501 } else {
1502 left = right = SkScalarHalf(paintRect.left() + paintRect.right());
1503 }
1504 if (srcRect.height() > SK_Scalar1) {
1505 SkScalar border = SK_ScalarHalf / texture->height();
1506 top = paintRect.top() + border;
1507 bottom = paintRect.bottom() - border;
1508 } else {
1509 top = bottom = SkScalarHalf(paintRect.top() + paintRect.bottom());
1510 }
1511 textureDomain.setLTRB(left, top, right, bottom);
commit-bot@chromium.org7d7f3142013-12-16 15:18:11 +00001512 if (bicubic) {
1513 effect.reset(GrBicubicEffect::Create(texture, SkMatrix::I(), textureDomain));
1514 } else {
1515 effect.reset(GrTextureDomainEffect::Create(texture,
1516 SkMatrix::I(),
1517 textureDomain,
1518 GrTextureDomain::kClamp_Mode,
1519 params.filterMode()));
1520 }
commit-bot@chromium.orgdec61502013-12-02 22:22:35 +00001521 } else if (bicubic) {
commit-bot@chromium.orgbc91fd72013-12-10 12:53:39 +00001522 SkASSERT(GrTextureParams::kNone_FilterMode == params.filterMode());
1523 SkShader::TileMode tileModes[2] = { params.getTileModeX(), params.getTileModeY() };
1524 effect.reset(GrBicubicEffect::Create(texture, SkMatrix::I(), tileModes));
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001525 } else {
1526 effect.reset(GrSimpleTextureEffect::Create(texture, SkMatrix::I(), params));
1527 }
1528
1529 // Construct a GrPaint by setting the bitmap texture as the first effect and then configuring
1530 // the rest from the SkPaint.
1531 GrPaint grPaint;
1532 grPaint.addColorEffect(effect);
1533 bool alphaOnly = !(SkBitmap::kA8_Config == bitmap.config());
1534 if (!skPaint2GrPaintNoShader(this, paint, alphaOnly, false, &grPaint)) {
1535 return;
1536 }
1537
1538 fContext->drawRectToRect(grPaint, dstRect, paintRect, NULL);
1539}
1540
1541static bool filter_texture(SkBaseDevice* device, GrContext* context,
commit-bot@chromium.orgae761f72014-02-05 22:32:02 +00001542 GrTexture* texture, const SkImageFilter* filter,
senorblanco@chromium.org4cb543d2014-03-14 15:44:01 +00001543 int w, int h, const SkImageFilter::Context& ctx,
1544 SkBitmap* result, SkIPoint* offset) {
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001545 SkASSERT(filter);
1546 SkDeviceImageFilterProxy proxy(device);
1547
1548 if (filter->canFilterImageGPU()) {
1549 // Save the render target and set it to NULL, so we don't accidentally draw to it in the
1550 // filter. Also set the clip wide open and the matrix to identity.
1551 GrContext::AutoWideOpenIdentityDraw awo(context, NULL);
senorblanco@chromium.org4cb543d2014-03-14 15:44:01 +00001552 return filter->filterImageGPU(&proxy, wrap_texture(texture), ctx, result, offset);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001553 } else {
1554 return false;
1555 }
1556}
1557
1558void SkGpuDevice::drawSprite(const SkDraw& draw, const SkBitmap& bitmap,
1559 int left, int top, const SkPaint& paint) {
1560 // drawSprite is defined to be in device coords.
1561 CHECK_SHOULD_DRAW(draw, true);
1562
1563 SkAutoLockPixels alp(bitmap, !bitmap.getTexture());
1564 if (!bitmap.getTexture() && !bitmap.readyToDraw()) {
1565 return;
1566 }
1567
1568 int w = bitmap.width();
1569 int h = bitmap.height();
1570
1571 GrTexture* texture;
1572 // draw sprite uses the default texture params
1573 SkAutoCachedTexture act(this, bitmap, NULL, &texture);
1574
1575 SkImageFilter* filter = paint.getImageFilter();
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001576 // This bitmap will own the filtered result as a texture.
1577 SkBitmap filteredBitmap;
1578
1579 if (NULL != filter) {
senorblanco@chromium.org6776b822014-01-03 21:48:22 +00001580 SkIPoint offset = SkIPoint::Make(0, 0);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001581 SkMatrix matrix(*draw.fMatrix);
1582 matrix.postTranslate(SkIntToScalar(-left), SkIntToScalar(-top));
senorblanco@chromium.org4cb543d2014-03-14 15:44:01 +00001583 SkIRect clipBounds = SkIRect::MakeWH(bitmap.width(), bitmap.height());
1584 SkImageFilter::Context ctx(matrix, clipBounds);
1585 if (filter_texture(this, fContext, texture, filter, w, h, ctx, &filteredBitmap,
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001586 &offset)) {
1587 texture = (GrTexture*) filteredBitmap.getTexture();
1588 w = filteredBitmap.width();
1589 h = filteredBitmap.height();
senorblanco@chromium.org6776b822014-01-03 21:48:22 +00001590 left += offset.x();
1591 top += offset.y();
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001592 } else {
1593 return;
1594 }
1595 }
1596
1597 GrPaint grPaint;
1598 grPaint.addColorTextureEffect(texture, SkMatrix::I());
1599
1600 if(!skPaint2GrPaintNoShader(this, paint, true, false, &grPaint)) {
1601 return;
1602 }
1603
1604 fContext->drawRectToRect(grPaint,
senorblanco@chromium.org6776b822014-01-03 21:48:22 +00001605 SkRect::MakeXYWH(SkIntToScalar(left),
1606 SkIntToScalar(top),
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001607 SkIntToScalar(w),
1608 SkIntToScalar(h)),
1609 SkRect::MakeXYWH(0,
1610 0,
1611 SK_Scalar1 * w / texture->width(),
1612 SK_Scalar1 * h / texture->height()));
1613}
1614
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001615void SkGpuDevice::drawBitmapRect(const SkDraw& origDraw, const SkBitmap& bitmap,
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001616 const SkRect* src, const SkRect& dst,
1617 const SkPaint& paint,
1618 SkCanvas::DrawBitmapRectFlags flags) {
1619 SkMatrix matrix;
1620 SkRect bitmapBounds, tmpSrc;
1621
1622 bitmapBounds.set(0, 0,
1623 SkIntToScalar(bitmap.width()),
1624 SkIntToScalar(bitmap.height()));
1625
1626 // Compute matrix from the two rectangles
1627 if (NULL != src) {
1628 tmpSrc = *src;
1629 } else {
1630 tmpSrc = bitmapBounds;
1631 }
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001632
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001633 matrix.setRectToRect(tmpSrc, dst, SkMatrix::kFill_ScaleToFit);
1634
1635 // clip the tmpSrc to the bounds of the bitmap. No check needed if src==null.
1636 if (NULL != src) {
1637 if (!bitmapBounds.contains(tmpSrc)) {
1638 if (!tmpSrc.intersect(bitmapBounds)) {
1639 return; // nothing to draw
1640 }
1641 }
1642 }
1643
commit-bot@chromium.orga7d89c82014-01-13 14:47:00 +00001644 SkRect tmpDst;
1645 matrix.mapRect(&tmpDst, tmpSrc);
1646
1647 SkTCopyOnFirstWrite<SkDraw> draw(origDraw);
1648 if (0 != tmpDst.fLeft || 0 != tmpDst.fTop) {
1649 // Translate so that tempDst's top left is at the origin.
1650 matrix = *origDraw.fMatrix;
1651 matrix.preTranslate(tmpDst.fLeft, tmpDst.fTop);
1652 draw.writable()->fMatrix = &matrix;
1653 }
1654 SkSize dstSize;
1655 dstSize.fWidth = tmpDst.width();
1656 dstSize.fHeight = tmpDst.height();
1657
1658 this->drawBitmapCommon(*draw, bitmap, &tmpSrc, &dstSize, paint, flags);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001659}
1660
1661void SkGpuDevice::drawDevice(const SkDraw& draw, SkBaseDevice* device,
1662 int x, int y, const SkPaint& paint) {
1663 // clear of the source device must occur before CHECK_SHOULD_DRAW
1664 SkGpuDevice* dev = static_cast<SkGpuDevice*>(device);
1665 if (dev->fNeedClear) {
1666 // TODO: could check here whether we really need to draw at all
1667 dev->clear(0x0);
1668 }
1669
1670 // drawDevice is defined to be in device coords.
1671 CHECK_SHOULD_DRAW(draw, true);
1672
1673 GrRenderTarget* devRT = dev->accessRenderTarget();
1674 GrTexture* devTex;
1675 if (NULL == (devTex = devRT->asTexture())) {
1676 return;
1677 }
1678
1679 const SkBitmap& bm = dev->accessBitmap(false);
1680 int w = bm.width();
1681 int h = bm.height();
1682
1683 SkImageFilter* filter = paint.getImageFilter();
1684 // This bitmap will own the filtered result as a texture.
1685 SkBitmap filteredBitmap;
1686
1687 if (NULL != filter) {
1688 SkIPoint offset = SkIPoint::Make(0, 0);
1689 SkMatrix matrix(*draw.fMatrix);
1690 matrix.postTranslate(SkIntToScalar(-x), SkIntToScalar(-y));
senorblanco@chromium.org4cb543d2014-03-14 15:44:01 +00001691 SkIRect clipBounds = SkIRect::MakeWH(devTex->width(), devTex->height());
1692 SkImageFilter::Context ctx(matrix, clipBounds);
1693 if (filter_texture(this, fContext, devTex, filter, w, h, ctx, &filteredBitmap,
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001694 &offset)) {
1695 devTex = filteredBitmap.getTexture();
1696 w = filteredBitmap.width();
1697 h = filteredBitmap.height();
1698 x += offset.fX;
1699 y += offset.fY;
1700 } else {
1701 return;
1702 }
1703 }
1704
1705 GrPaint grPaint;
1706 grPaint.addColorTextureEffect(devTex, SkMatrix::I());
1707
1708 if (!skPaint2GrPaintNoShader(this, paint, true, false, &grPaint)) {
1709 return;
1710 }
1711
1712 SkRect dstRect = SkRect::MakeXYWH(SkIntToScalar(x),
1713 SkIntToScalar(y),
1714 SkIntToScalar(w),
1715 SkIntToScalar(h));
1716
1717 // The device being drawn may not fill up its texture (e.g. saveLayer uses approximate
1718 // scratch texture).
1719 SkRect srcRect = SkRect::MakeWH(SK_Scalar1 * w / devTex->width(),
1720 SK_Scalar1 * h / devTex->height());
1721
1722 fContext->drawRectToRect(grPaint, dstRect, srcRect);
1723}
1724
commit-bot@chromium.orgae761f72014-02-05 22:32:02 +00001725bool SkGpuDevice::canHandleImageFilter(const SkImageFilter* filter) {
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001726 return filter->canFilterImageGPU();
1727}
1728
commit-bot@chromium.orgae761f72014-02-05 22:32:02 +00001729bool SkGpuDevice::filterImage(const SkImageFilter* filter, const SkBitmap& src,
senorblanco@chromium.org4cb543d2014-03-14 15:44:01 +00001730 const SkImageFilter::Context& ctx,
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001731 SkBitmap* result, SkIPoint* offset) {
1732 // want explicitly our impl, so guard against a subclass of us overriding it
1733 if (!this->SkGpuDevice::canHandleImageFilter(filter)) {
1734 return false;
1735 }
1736
1737 SkAutoLockPixels alp(src, !src.getTexture());
1738 if (!src.getTexture() && !src.readyToDraw()) {
1739 return false;
1740 }
1741
1742 GrTexture* texture;
1743 // We assume here that the filter will not attempt to tile the src. Otherwise, this cache lookup
1744 // must be pushed upstack.
1745 SkAutoCachedTexture act(this, src, NULL, &texture);
1746
senorblanco@chromium.org4cb543d2014-03-14 15:44:01 +00001747 return filter_texture(this, fContext, texture, filter, src.width(), src.height(), ctx,
1748 result, offset);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001749}
1750
1751///////////////////////////////////////////////////////////////////////////////
1752
1753// must be in SkCanvas::VertexMode order
1754static const GrPrimitiveType gVertexMode2PrimitiveType[] = {
1755 kTriangles_GrPrimitiveType,
1756 kTriangleStrip_GrPrimitiveType,
1757 kTriangleFan_GrPrimitiveType,
1758};
1759
1760void SkGpuDevice::drawVertices(const SkDraw& draw, SkCanvas::VertexMode vmode,
1761 int vertexCount, const SkPoint vertices[],
1762 const SkPoint texs[], const SkColor colors[],
1763 SkXfermode* xmode,
1764 const uint16_t indices[], int indexCount,
1765 const SkPaint& paint) {
1766 CHECK_SHOULD_DRAW(draw, false);
1767
1768 GrPaint grPaint;
1769 // we ignore the shader if texs is null.
1770 if (NULL == texs) {
1771 if (!skPaint2GrPaintNoShader(this, paint, false, NULL == colors, &grPaint)) {
1772 return;
1773 }
1774 } else {
1775 if (!skPaint2GrPaintShader(this, paint, NULL == colors, &grPaint)) {
1776 return;
1777 }
1778 }
1779
1780 if (NULL != xmode && NULL != texs && NULL != colors) {
1781 if (!SkXfermode::IsMode(xmode, SkXfermode::kModulate_Mode)) {
1782 SkDebugf("Unsupported vertex-color/texture xfer mode.\n");
1783#if 0
1784 return
1785#endif
1786 }
1787 }
1788
1789 SkAutoSTMalloc<128, GrColor> convertedColors(0);
1790 if (NULL != colors) {
1791 // need to convert byte order and from non-PM to PM
1792 convertedColors.reset(vertexCount);
1793 for (int i = 0; i < vertexCount; ++i) {
1794 convertedColors[i] = SkColor2GrColor(colors[i]);
1795 }
1796 colors = convertedColors.get();
1797 }
1798 fContext->drawVertices(grPaint,
1799 gVertexMode2PrimitiveType[vmode],
1800 vertexCount,
commit-bot@chromium.org972f9cd2014-03-28 17:58:28 +00001801 vertices,
1802 texs,
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001803 colors,
1804 indices,
1805 indexCount);
1806}
1807
1808///////////////////////////////////////////////////////////////////////////////
1809
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001810void SkGpuDevice::drawText(const SkDraw& draw, const void* text,
1811 size_t byteLength, SkScalar x, SkScalar y,
1812 const SkPaint& paint) {
1813 CHECK_SHOULD_DRAW(draw, false);
1814
commit-bot@chromium.orgcbbc4812014-01-30 22:05:47 +00001815 if (fMainTextContext->canDraw(paint)) {
commit-bot@chromium.org8128d8c2013-12-19 16:12:25 +00001816 GrPaint grPaint;
1817 if (!skPaint2GrPaintShader(this, paint, true, &grPaint)) {
1818 return;
1819 }
1820
1821 SkDEBUGCODE(this->validate();)
1822
commit-bot@chromium.orgcbbc4812014-01-30 22:05:47 +00001823 fMainTextContext->drawText(grPaint, paint, (const char *)text, byteLength, x, y);
1824 } else if (fFallbackTextContext && fFallbackTextContext->canDraw(paint)) {
commit-bot@chromium.org9f94b912014-01-30 15:22:54 +00001825 GrPaint grPaint;
1826 if (!skPaint2GrPaintShader(this, paint, true, &grPaint)) {
1827 return;
1828 }
1829
1830 SkDEBUGCODE(this->validate();)
1831
commit-bot@chromium.orgcbbc4812014-01-30 22:05:47 +00001832 fFallbackTextContext->drawText(grPaint, paint, (const char *)text, byteLength, x, y);
commit-bot@chromium.org9f94b912014-01-30 15:22:54 +00001833 } else {
1834 // this guy will just call our drawPath()
1835 draw.drawText_asPaths((const char*)text, byteLength, x, y, paint);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001836 }
1837}
1838
1839void SkGpuDevice::drawPosText(const SkDraw& draw, const void* text,
1840 size_t byteLength, const SkScalar pos[],
1841 SkScalar constY, int scalarsPerPos,
1842 const SkPaint& paint) {
1843 CHECK_SHOULD_DRAW(draw, false);
1844
commit-bot@chromium.orgcbbc4812014-01-30 22:05:47 +00001845 if (fMainTextContext->canDraw(paint)) {
commit-bot@chromium.org8128d8c2013-12-19 16:12:25 +00001846 GrPaint grPaint;
1847 if (!skPaint2GrPaintShader(this, paint, true, &grPaint)) {
1848 return;
1849 }
1850
1851 SkDEBUGCODE(this->validate();)
1852
skia.committer@gmail.com4c18e9f2014-01-31 03:01:59 +00001853 fMainTextContext->drawPosText(grPaint, paint, (const char *)text, byteLength, pos,
commit-bot@chromium.orgcbbc4812014-01-30 22:05:47 +00001854 constY, scalarsPerPos);
1855 } else if (fFallbackTextContext && fFallbackTextContext->canDraw(paint)) {
commit-bot@chromium.org9f94b912014-01-30 15:22:54 +00001856 GrPaint grPaint;
1857 if (!skPaint2GrPaintShader(this, paint, true, &grPaint)) {
1858 return;
1859 }
skia.committer@gmail.com4c18e9f2014-01-31 03:01:59 +00001860
commit-bot@chromium.org9f94b912014-01-30 15:22:54 +00001861 SkDEBUGCODE(this->validate();)
skia.committer@gmail.com4c18e9f2014-01-31 03:01:59 +00001862
1863 fFallbackTextContext->drawPosText(grPaint, paint, (const char *)text, byteLength, pos,
commit-bot@chromium.orgcbbc4812014-01-30 22:05:47 +00001864 constY, scalarsPerPos);
commit-bot@chromium.org9f94b912014-01-30 15:22:54 +00001865 } else {
1866 draw.drawPosText_asPaths((const char*)text, byteLength, pos, constY,
1867 scalarsPerPos, paint);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001868 }
1869}
1870
1871void SkGpuDevice::drawTextOnPath(const SkDraw& draw, const void* text,
1872 size_t len, const SkPath& path,
1873 const SkMatrix* m, const SkPaint& paint) {
1874 CHECK_SHOULD_DRAW(draw, false);
1875
1876 SkASSERT(draw.fDevice == this);
1877 draw.drawTextOnPath((const char*)text, len, path, m, paint);
1878}
1879
1880///////////////////////////////////////////////////////////////////////////////
1881
1882bool SkGpuDevice::filterTextFlags(const SkPaint& paint, TextFlags* flags) {
1883 if (!paint.isLCDRenderText()) {
1884 // we're cool with the paint as is
1885 return false;
1886 }
1887
1888 if (paint.getShader() ||
1889 paint.getXfermode() || // unless its srcover
1890 paint.getMaskFilter() ||
1891 paint.getRasterizer() ||
1892 paint.getColorFilter() ||
1893 paint.getPathEffect() ||
1894 paint.isFakeBoldText() ||
1895 paint.getStyle() != SkPaint::kFill_Style) {
1896 // turn off lcd
1897 flags->fFlags = paint.getFlags() & ~SkPaint::kLCDRenderText_Flag;
1898 flags->fHinting = paint.getHinting();
1899 return true;
1900 }
1901 // we're cool with the paint as is
1902 return false;
1903}
1904
1905void SkGpuDevice::flush() {
1906 DO_DEFERRED_CLEAR();
1907 fContext->resolveRenderTarget(fRenderTarget);
1908}
1909
1910///////////////////////////////////////////////////////////////////////////////
1911
commit-bot@chromium.org15a14052014-02-16 00:59:25 +00001912SkBaseDevice* SkGpuDevice::onCreateDevice(const SkImageInfo& info, Usage usage) {
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001913 GrTextureDesc desc;
1914 desc.fConfig = fRenderTarget->config();
1915 desc.fFlags = kRenderTarget_GrTextureFlagBit;
commit-bot@chromium.org15a14052014-02-16 00:59:25 +00001916 desc.fWidth = info.width();
1917 desc.fHeight = info.height();
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001918 desc.fSampleCnt = fRenderTarget->numSamples();
1919
1920 SkAutoTUnref<GrTexture> texture;
1921 // Skia's convention is to only clear a device if it is non-opaque.
commit-bot@chromium.orgd8a57af2014-03-19 21:19:16 +00001922 unsigned flags = info.isOpaque() ? 0 : kNeedClear_Flag;
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001923
1924#if CACHE_COMPATIBLE_DEVICE_TEXTURES
1925 // layers are never draw in repeat modes, so we can request an approx
1926 // match and ignore any padding.
commit-bot@chromium.orgd8a57af2014-03-19 21:19:16 +00001927 flags |= kCached_Flag;
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001928 const GrContext::ScratchTexMatch match = (kSaveLayer_Usage == usage) ?
1929 GrContext::kApprox_ScratchTexMatch :
1930 GrContext::kExact_ScratchTexMatch;
1931 texture.reset(fContext->lockAndRefScratchTexture(desc, match));
1932#else
1933 texture.reset(fContext->createUncachedTexture(desc, NULL, 0));
1934#endif
1935 if (NULL != texture.get()) {
commit-bot@chromium.orgd8a57af2014-03-19 21:19:16 +00001936 return SkGpuDevice::Create(texture, flags);
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001937 } else {
commit-bot@chromium.org15a14052014-02-16 00:59:25 +00001938 GrPrintf("---- failed to create compatible device texture [%d %d]\n",
1939 info.width(), info.height());
skia.committer@gmail.com11a253b2013-11-12 07:02:05 +00001940 return NULL;
1941 }
1942}
1943
reed@google.com76f10a32014-02-05 15:32:21 +00001944SkSurface* SkGpuDevice::newSurface(const SkImageInfo& info) {
1945 return SkSurface::NewRenderTarget(fContext, info, fRenderTarget->numSamples());
1946}
1947
commit-bot@chromium.org145d1c02014-03-16 19:46:36 +00001948// In the future this may not be a static method if we need to incorporate the
1949// clip and matrix state into the key
1950SkPicture::AccelData::Key SkGpuDevice::ComputeAccelDataKey() {
1951 static const SkPicture::AccelData::Key gGPUID = SkPicture::AccelData::GenerateDomain();
1952
1953 return gGPUID;
1954}
1955
1956void SkGpuDevice::EXPERIMENTAL_optimize(SkPicture* picture) {
1957 SkPicture::AccelData::Key key = ComputeAccelDataKey();
1958
1959 GPUAccelData* data = SkNEW_ARGS(GPUAccelData, (key));
1960
1961 picture->EXPERIMENTAL_addAccelData(data);
commit-bot@chromium.org8ddc26b2014-03-31 17:55:12 +00001962
1963 GatherGPUInfo(picture, data);
commit-bot@chromium.org145d1c02014-03-16 19:46:36 +00001964}
1965
commit-bot@chromium.org8ddc26b2014-03-31 17:55:12 +00001966bool SkGpuDevice::EXPERIMENTAL_drawPicture(SkPicture* picture) {
1967
commit-bot@chromium.org145d1c02014-03-16 19:46:36 +00001968 SkPicture::AccelData::Key key = ComputeAccelDataKey();
1969
commit-bot@chromium.org8ddc26b2014-03-31 17:55:12 +00001970 const SkPicture::AccelData* data = picture->EXPERIMENTAL_getAccelData(key);
commit-bot@chromium.org145d1c02014-03-16 19:46:36 +00001971 if (NULL == data) {
1972 return false;
1973 }
1974
commit-bot@chromium.org145d1c02014-03-16 19:46:36 +00001975 const GPUAccelData *gpuData = static_cast<const GPUAccelData*>(data);
commit-bot@chromium.org8ddc26b2014-03-31 17:55:12 +00001976
1977//#define SK_PRINT_PULL_FORWARD_INFO 1
1978
1979#ifdef SK_PRINT_PULL_FORWARD_INFO
1980 static bool gPrintedAccelData = false;
1981
1982 if (!gPrintedAccelData) {
1983 for (int i = 0; i < gpuData->numSaveLayers(); ++i) {
1984 const GPUAccelData::SaveLayerInfo& info = gpuData->saveLayerInfo(i);
1985
skia.committer@gmail.com2c48ee82014-04-01 03:07:47 +00001986 SkDebugf("%d: Width: %d Height: %d SL: %d R: %d hasNestedLayers: %s\n",
commit-bot@chromium.org8ddc26b2014-03-31 17:55:12 +00001987 i,
skia.committer@gmail.com2c48ee82014-04-01 03:07:47 +00001988 info.fSize.fWidth,
1989 info.fSize.fHeight,
1990 info.fSaveLayerOpID,
1991 info.fRestoreOpID,
commit-bot@chromium.org8ddc26b2014-03-31 17:55:12 +00001992 info.fHasNestedLayers ? "T" : "F");
1993 }
1994 gPrintedAccelData = true;
1995 }
1996#endif
1997
1998 SkAutoTArray<bool> pullForward(gpuData->numSaveLayers());
1999 for (int i = 0; i < gpuData->numSaveLayers(); ++i) {
2000 pullForward[i] = false;
2001 }
2002
2003 SkIRect clip;
2004
2005 fClipData.getConservativeBounds(this->width(), this->height(), &clip, NULL);
2006
2007 SkMatrix inv;
2008 if (!fContext->getMatrix().invert(&inv)) {
2009 return false;
2010 }
2011
2012 SkRect r = SkRect::Make(clip);
2013 inv.mapRect(&r);
2014 r.roundOut(&clip);
2015
2016 const SkPicture::OperationList& ops = picture->EXPERIMENTAL_getActiveOps(clip);
2017
2018#ifdef SK_PRINT_PULL_FORWARD_INFO
2019 SkDebugf("rect: %d %d %d %d\n", clip.fLeft, clip.fTop, clip.fRight, clip.fBottom);
2020#endif
2021
2022 for (int i = 0; i < ops.numOps(); ++i) {
2023 for (int j = 0; j < gpuData->numSaveLayers(); ++j) {
2024 const GPUAccelData::SaveLayerInfo& info = gpuData->saveLayerInfo(j);
2025
2026 if (ops.offset(i) > info.fSaveLayerOpID && ops.offset(i) < info.fRestoreOpID) {
2027 pullForward[j] = true;
2028 }
2029 }
2030 }
2031
2032#ifdef SK_PRINT_PULL_FORWARD_INFO
2033 SkDebugf("Need SaveLayers: ");
2034 for (int i = 0; i < gpuData->numSaveLayers(); ++i) {
2035 if (pullForward[i]) {
2036 SkDebugf("%d, ", i);
2037 }
2038 }
2039 SkDebugf("\n");
commit-bot@chromium.org145d1c02014-03-16 19:46:36 +00002040#endif
2041
2042 return false;
2043}