| OLD | NEW |
| 1 /* | 1 /* |
| 2 * Copyright (c) 2008, Google Inc. All rights reserved. | 2 * Copyright (c) 2008, Google Inc. All rights reserved. |
| 3 * Copyright (C) 2009 Dirk Schulze <krit@webkit.org> | 3 * Copyright (C) 2009 Dirk Schulze <krit@webkit.org> |
| 4 * Copyright (C) 2010 Torch Mobile (Beijing) Co. Ltd. All rights reserved. | 4 * Copyright (C) 2010 Torch Mobile (Beijing) Co. Ltd. All rights reserved. |
| 5 * | 5 * |
| 6 * Redistribution and use in source and binary forms, with or without | 6 * Redistribution and use in source and binary forms, with or without |
| 7 * modification, are permitted provided that the following conditions are | 7 * modification, are permitted provided that the following conditions are |
| 8 * met: | 8 * met: |
| 9 * | 9 * |
| 10 * * Redistributions of source code must retain the above copyright | 10 * * Redistributions of source code must retain the above copyright |
| (...skipping 19 matching lines...) Expand all Loading... |
| 30 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. | 30 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. |
| 31 */ | 31 */ |
| 32 | 32 |
| 33 #include "config.h" | 33 #include "config.h" |
| 34 #include "platform/graphics/ImageBuffer.h" | 34 #include "platform/graphics/ImageBuffer.h" |
| 35 | 35 |
| 36 #include "platform/MIMETypeRegistry.h" | 36 #include "platform/MIMETypeRegistry.h" |
| 37 #include "platform/geometry/IntRect.h" | 37 #include "platform/geometry/IntRect.h" |
| 38 #include "platform/graphics/BitmapImage.h" | 38 #include "platform/graphics/BitmapImage.h" |
| 39 #include "platform/graphics/Extensions3D.h" | 39 #include "platform/graphics/Extensions3D.h" |
| 40 #include "platform/graphics/GraphicsContext.h" |
| 40 #include "platform/graphics/GraphicsContext3D.h" | 41 #include "platform/graphics/GraphicsContext3D.h" |
| 42 #include "platform/graphics/UnacceleratedImageBufferSurface.h" |
| 41 #include "platform/graphics/gpu/DrawingBuffer.h" | 43 #include "platform/graphics/gpu/DrawingBuffer.h" |
| 42 #include "platform/graphics/gpu/SharedGraphicsContext3D.h" | 44 #include "platform/graphics/gpu/SharedGraphicsContext3D.h" |
| 43 #include "platform/graphics/skia/GaneshUtils.h" | |
| 44 #include "platform/graphics/skia/NativeImageSkia.h" | 45 #include "platform/graphics/skia/NativeImageSkia.h" |
| 45 #include "platform/graphics/skia/SkiaUtils.h" | 46 #include "platform/graphics/skia/SkiaUtils.h" |
| 46 #include "platform/image-encoders/skia/JPEGImageEncoder.h" | 47 #include "platform/image-encoders/skia/JPEGImageEncoder.h" |
| 47 #include "platform/image-encoders/skia/PNGImageEncoder.h" | 48 #include "platform/image-encoders/skia/PNGImageEncoder.h" |
| 48 #include "platform/image-encoders/skia/WEBPImageEncoder.h" | 49 #include "platform/image-encoders/skia/WEBPImageEncoder.h" |
| 49 #include "public/platform/Platform.h" | 50 #include "public/platform/Platform.h" |
| 50 #include "skia/ext/platform_canvas.h" | |
| 51 #include "third_party/skia/include/core/SkBitmapDevice.h" | |
| 52 #include "third_party/skia/include/core/SkColorFilter.h" | |
| 53 #include "third_party/skia/include/core/SkColorPriv.h" | |
| 54 #include "third_party/skia/include/core/SkSurface.h" | |
| 55 #include "third_party/skia/include/effects/SkTableColorFilter.h" | 51 #include "third_party/skia/include/effects/SkTableColorFilter.h" |
| 56 #include "third_party/skia/include/gpu/GrContext.h" | |
| 57 #include "third_party/skia/include/gpu/SkGpuDevice.h" | |
| 58 #include "third_party/skia/include/gpu/SkGrPixelRef.h" | |
| 59 #include "wtf/MathExtras.h" | 52 #include "wtf/MathExtras.h" |
| 60 #include "wtf/text/Base64.h" | 53 #include "wtf/text/Base64.h" |
| 61 #include "wtf/text/WTFString.h" | 54 #include "wtf/text/WTFString.h" |
| 62 | 55 |
| 63 using namespace std; | 56 using namespace std; |
| 64 | 57 |
| 65 namespace WebCore { | 58 namespace WebCore { |
| 66 | 59 |
| 67 static PassRefPtr<SkCanvas> createAcceleratedCanvas(const IntSize& size, Canvas2
DLayerBridgePtr* outLayerBridge, OpacityMode opacityMode, int msaaSampleCount) | 60 PassOwnPtr<ImageBuffer> ImageBuffer::create(PassOwnPtr<ImageBufferSurface> surfa
ce) |
| 68 { | 61 { |
| 69 RefPtr<GraphicsContext3D> context3D = SharedGraphicsContext3D::get(); | 62 if (!surface->isValid()) |
| 70 if (!context3D) | 63 return nullptr; |
| 71 return 0; | 64 return adoptPtr(new ImageBuffer(surface)); |
| 72 Canvas2DLayerBridge::OpacityMode bridgeOpacityMode = opacityMode == Opaque ?
Canvas2DLayerBridge::Opaque : Canvas2DLayerBridge::NonOpaque; | |
| 73 *outLayerBridge = Canvas2DLayerBridge::create(context3D.release(), size, bri
dgeOpacityMode, msaaSampleCount); | |
| 74 // If canvas buffer allocation failed, debug build will have asserted | |
| 75 // For release builds, we must verify whether the device has a render target | |
| 76 return (*outLayerBridge) ? (*outLayerBridge)->getCanvas() : 0; | |
| 77 } | 65 } |
| 78 | 66 |
| 79 static PassRefPtr<SkCanvas> createTextureBackedCanvas(const IntSize& size) | 67 PassOwnPtr<ImageBuffer> ImageBuffer::create(const IntSize& size, OpacityMode opa
cityMode) |
| 80 { | 68 { |
| 81 RefPtr<GraphicsContext3D> context3D = SharedGraphicsContext3D::get(); | 69 OwnPtr<ImageBufferSurface> surface = adoptPtr(new UnacceleratedImageBufferSu
rface(size, opacityMode)); |
| 82 if (!context3D) | 70 if (!surface->isValid()) |
| 83 return 0; | 71 return nullptr; |
| 84 GrContext* gr = context3D->grContext(); | 72 return adoptPtr(new ImageBuffer(surface.release())); |
| 85 if (!gr) | |
| 86 return 0; | |
| 87 SkBitmap* bitmap = new SkBitmap; | |
| 88 if (!bitmap || !ensureTextureBackedSkBitmap(gr, *bitmap, size, kDefault_GrSu
rfaceOrigin, kRGBA_8888_GrPixelConfig)) | |
| 89 return 0; | |
| 90 return adoptRef(new SkCanvas(*bitmap)); | |
| 91 } | 73 } |
| 92 | 74 |
| 93 static PassRefPtr<SkCanvas> createNonPlatformCanvas(const IntSize& size) | 75 ImageBuffer::ImageBuffer(PassOwnPtr<ImageBufferSurface> surface) |
| 76 : m_surface(surface) |
| 94 { | 77 { |
| 95 SkAutoTUnref<SkBaseDevice> device(new SkBitmapDevice(SkBitmap::kARGB_8888_Co
nfig, size.width(), size.height())); | 78 if (m_surface->canvas()) { |
| 96 SkPixelRef* pixelRef = device->accessBitmap(false).pixelRef(); | 79 m_context = adoptPtr(new GraphicsContext(m_surface->canvas())); |
| 97 return adoptRef(pixelRef ? new SkCanvas(device) : 0); | 80 m_context->setCertainlyOpaque(m_surface->opacityMode() == Opaque); |
| 98 } | 81 m_context->setAccelerated(m_surface->isAccelerated()); |
| 99 | |
| 100 PassOwnPtr<ImageBuffer> ImageBuffer::createCompatibleBuffer(const IntSize& size,
float resolutionScale, const GraphicsContext* context, bool hasAlpha) | |
| 101 { | |
| 102 bool success = false; | |
| 103 OwnPtr<ImageBuffer> buf = adoptPtr(new ImageBuffer(size, resolutionScale, co
ntext, hasAlpha, success)); | |
| 104 if (!success) | |
| 105 return nullptr; | |
| 106 return buf.release(); | |
| 107 } | |
| 108 | |
| 109 PassOwnPtr<ImageBuffer> ImageBuffer::createBufferForTile(const FloatSize& tileSi
ze, const FloatSize& clampedTileSize, RenderingMode renderingMode) | |
| 110 { | |
| 111 IntSize imageSize(roundedIntSize(clampedTileSize)); | |
| 112 IntSize unclampedImageSize(roundedIntSize(tileSize)); | |
| 113 | |
| 114 // Don't create empty ImageBuffers. | |
| 115 if (imageSize.isEmpty()) | |
| 116 return nullptr; | |
| 117 | |
| 118 OwnPtr<ImageBuffer> image = ImageBuffer::create(imageSize, 1, renderingMode)
; | |
| 119 if (!image) | |
| 120 return nullptr; | |
| 121 | |
| 122 GraphicsContext* imageContext = image->context(); | |
| 123 ASSERT(imageContext); | |
| 124 | |
| 125 // Compensate rounding effects, as the absolute target rect is using floatin
g-point numbers and the image buffer size is integer. | |
| 126 imageContext->scale(FloatSize(unclampedImageSize.width() / tileSize.width(),
unclampedImageSize.height() / tileSize.height())); | |
| 127 | |
| 128 return image.release(); | |
| 129 } | |
| 130 | |
| 131 ImageBuffer::ImageBuffer(const IntSize& size, float resolutionScale, const Graph
icsContext* compatibleContext, bool hasAlpha, bool& success) | |
| 132 : m_size(size) | |
| 133 , m_logicalSize(size) | |
| 134 , m_resolutionScale(resolutionScale) | |
| 135 { | |
| 136 if (!compatibleContext) { | |
| 137 success = false; | |
| 138 return; | |
| 139 } | 82 } |
| 140 | |
| 141 SkAutoTUnref<SkBaseDevice> device(compatibleContext->createCompatibleDevice(
size, hasAlpha)); | |
| 142 if (!device.get()) { | |
| 143 success = false; | |
| 144 return; | |
| 145 } | |
| 146 | |
| 147 SkPixelRef* pixelRef = device->accessBitmap(false).pixelRef(); | |
| 148 if (!pixelRef) { | |
| 149 success = false; | |
| 150 return; | |
| 151 } | |
| 152 | |
| 153 m_canvas = adoptRef(new SkCanvas(device)); | |
| 154 m_context = adoptPtr(new GraphicsContext(m_canvas.get())); | |
| 155 m_context->setCertainlyOpaque(!hasAlpha); | |
| 156 m_context->scale(FloatSize(m_resolutionScale, m_resolutionScale)); | |
| 157 | |
| 158 success = true; | |
| 159 } | |
| 160 | |
| 161 ImageBuffer::ImageBuffer(const IntSize& size, float resolutionScale, RenderingMo
de renderingMode, OpacityMode opacityMode, int acceleratedSampleCount, bool& suc
cess) | |
| 162 : m_size(size) | |
| 163 , m_logicalSize(size) | |
| 164 , m_resolutionScale(resolutionScale) | |
| 165 { | |
| 166 if (renderingMode == Accelerated) { | |
| 167 m_canvas = createAcceleratedCanvas(size, &m_layerBridge, opacityMode, ac
celeratedSampleCount); | |
| 168 if (!m_canvas) | |
| 169 renderingMode = UnacceleratedNonPlatformBuffer; | |
| 170 } | |
| 171 | |
| 172 if (renderingMode == TextureBacked) { | |
| 173 m_canvas = createTextureBackedCanvas(size); | |
| 174 if (!m_canvas) | |
| 175 renderingMode = UnacceleratedNonPlatformBuffer; | |
| 176 } | |
| 177 | |
| 178 if (renderingMode == UnacceleratedNonPlatformBuffer) | |
| 179 m_canvas = createNonPlatformCanvas(size); | |
| 180 | |
| 181 if (!m_canvas) | |
| 182 m_canvas = adoptRef(skia::TryCreateBitmapCanvas(size.width(), size.heigh
t(), false)); | |
| 183 | |
| 184 if (!m_canvas) { | |
| 185 success = false; | |
| 186 return; | |
| 187 } | |
| 188 | |
| 189 m_context = adoptPtr(new GraphicsContext(m_canvas.get())); | |
| 190 m_context->setCertainlyOpaque(opacityMode == Opaque); | |
| 191 m_context->setAccelerated(renderingMode == Accelerated); | |
| 192 m_context->scale(FloatSize(m_resolutionScale, m_resolutionScale)); | |
| 193 | |
| 194 // Clear the background transparent or opaque, as required. It would be nice
if this wasn't | |
| 195 // required, but the canvas is currently filled with the magic transparency | |
| 196 // color. Can we have another way to manage this? | |
| 197 if (renderingMode != TextureBacked) { | |
| 198 if (opacityMode == Opaque) | |
| 199 m_canvas->drawARGB(255, 0, 0, 0, SkXfermode::kSrc_Mode); | |
| 200 else | |
| 201 m_canvas->drawARGB(0, 0, 0, 0, SkXfermode::kClear_Mode); | |
| 202 } | |
| 203 | |
| 204 success = true; | |
| 205 } | 83 } |
| 206 | 84 |
| 207 ImageBuffer::~ImageBuffer() | 85 ImageBuffer::~ImageBuffer() |
| 208 { | 86 { |
| 209 } | 87 } |
| 210 | 88 |
| 211 GraphicsContext* ImageBuffer::context() const | 89 GraphicsContext* ImageBuffer::context() const |
| 212 { | 90 { |
| 213 if (m_layerBridge) { | 91 m_surface->willUse(); |
| 214 // We're using context acquisition as a signal that someone is about to
render into our buffer and we need | |
| 215 // to be ready. This isn't logically const-correct, hence the cast. | |
| 216 const_cast<Canvas2DLayerBridge*>(m_layerBridge.get())->contextAcquired()
; | |
| 217 } | |
| 218 return m_context.get(); | 92 return m_context.get(); |
| 219 } | 93 } |
| 220 | 94 |
| 221 | 95 |
| 222 bool ImageBuffer::isValid() const | 96 bool ImageBuffer::isValid() const |
| 223 { | 97 { |
| 224 if (m_layerBridge) | 98 return m_surface->isValid(); |
| 225 return const_cast<Canvas2DLayerBridge*>(m_layerBridge.get())->isValid(); | |
| 226 return true; | |
| 227 } | 99 } |
| 228 | 100 |
| 229 static SkBitmap deepSkBitmapCopy(const SkBitmap& bitmap) | 101 static SkBitmap deepSkBitmapCopy(const SkBitmap& bitmap) |
| 230 { | 102 { |
| 231 SkBitmap tmp; | 103 SkBitmap tmp; |
| 232 if (!bitmap.deepCopyTo(&tmp, bitmap.config())) | 104 if (!bitmap.deepCopyTo(&tmp, bitmap.config())) |
| 233 bitmap.copyTo(&tmp, bitmap.config()); | 105 bitmap.copyTo(&tmp, bitmap.config()); |
| 234 | 106 |
| 235 return tmp; | 107 return tmp; |
| 236 } | 108 } |
| 237 | 109 |
| 238 PassRefPtr<Image> ImageBuffer::copyImage(BackingStoreCopy copyBehavior, ScaleBeh
avior) const | 110 PassRefPtr<Image> ImageBuffer::copyImage(BackingStoreCopy copyBehavior, ScaleBeh
avior) const |
| 239 { | 111 { |
| 240 if (!isValid()) | 112 if (!isValid()) |
| 241 return BitmapImage::create(NativeImageSkia::create()); | 113 return BitmapImage::create(NativeImageSkia::create()); |
| 242 | 114 |
| 243 const SkBitmap& bitmap = *context()->bitmap(); | 115 const SkBitmap& bitmap = m_surface->bitmap(); |
| 244 // FIXME: Start honoring ScaleBehavior to scale 2x buffers down to 1x. | 116 return BitmapImage::create(NativeImageSkia::create(copyBehavior == CopyBacki
ngStore ? deepSkBitmapCopy(bitmap) : bitmap)); |
| 245 return BitmapImage::create(NativeImageSkia::create(copyBehavior == CopyBacki
ngStore ? deepSkBitmapCopy(bitmap) : bitmap, m_resolutionScale)); | |
| 246 } | 117 } |
| 247 | 118 |
| 248 BackingStoreCopy ImageBuffer::fastCopyImageMode() | 119 BackingStoreCopy ImageBuffer::fastCopyImageMode() |
| 249 { | 120 { |
| 250 return DontCopyBackingStore; | 121 return DontCopyBackingStore; |
| 251 } | 122 } |
| 252 | 123 |
| 253 blink::WebLayer* ImageBuffer::platformLayer() const | 124 blink::WebLayer* ImageBuffer::platformLayer() const |
| 254 { | 125 { |
| 255 return m_layerBridge ? m_layerBridge->layer() : 0; | 126 return m_surface->layer(); |
| 256 } | 127 } |
| 257 | 128 |
| 258 bool ImageBuffer::copyToPlatformTexture(GraphicsContext3D& context, Platform3DOb
ject texture, GC3Denum internalFormat, GC3Denum destType, GC3Dint level, bool pr
emultiplyAlpha, bool flipY) | 129 bool ImageBuffer::copyToPlatformTexture(GraphicsContext3D& context, Platform3DOb
ject texture, GC3Denum internalFormat, GC3Denum destType, GC3Dint level, bool pr
emultiplyAlpha, bool flipY) |
| 259 { | 130 { |
| 260 if (!m_layerBridge || !platformLayer() || !isValid()) | 131 if (!m_surface->isAccelerated() || !platformLayer() || !isValid()) |
| 261 return false; | 132 return false; |
| 262 | 133 |
| 263 Platform3DObject sourceTexture = m_layerBridge->backBufferTexture(); | |
| 264 | |
| 265 if (!context.makeContextCurrent()) | 134 if (!context.makeContextCurrent()) |
| 266 return false; | 135 return false; |
| 267 | 136 |
| 268 Extensions3D* extensions = context.extensions(); | 137 Extensions3D* extensions = context.extensions(); |
| 269 if (!extensions->supports("GL_CHROMIUM_copy_texture") || !extensions->suppor
ts("GL_CHROMIUM_flipy") | 138 if (!extensions->supports("GL_CHROMIUM_copy_texture") || !extensions->suppor
ts("GL_CHROMIUM_flipy") |
| 270 || !extensions->canUseCopyTextureCHROMIUM(internalFormat, destType, leve
l)) | 139 || !extensions->canUseCopyTextureCHROMIUM(internalFormat, destType, leve
l)) |
| 271 return false; | 140 return false; |
| 272 | 141 |
| 273 // The canvas is stored in a premultiplied format, so unpremultiply if neces
sary. | 142 // The canvas is stored in a premultiplied format, so unpremultiply if neces
sary. |
| 274 context.pixelStorei(Extensions3D::UNPACK_UNPREMULTIPLY_ALPHA_CHROMIUM, !prem
ultiplyAlpha); | 143 context.pixelStorei(Extensions3D::UNPACK_UNPREMULTIPLY_ALPHA_CHROMIUM, !prem
ultiplyAlpha); |
| 275 | 144 |
| 276 // The canvas is stored in an inverted position, so the flip semantics are r
eversed. | 145 // The canvas is stored in an inverted position, so the flip semantics are r
eversed. |
| 277 context.pixelStorei(Extensions3D::UNPACK_FLIP_Y_CHROMIUM, !flipY); | 146 context.pixelStorei(Extensions3D::UNPACK_FLIP_Y_CHROMIUM, !flipY); |
| 278 | 147 extensions->copyTextureCHROMIUM(GraphicsContext3D::TEXTURE_2D, getBackingTex
ture(), texture, level, internalFormat, destType); |
| 279 extensions->copyTextureCHROMIUM(GraphicsContext3D::TEXTURE_2D, sourceTexture
, texture, level, internalFormat, destType); | |
| 280 | 148 |
| 281 context.pixelStorei(Extensions3D::UNPACK_FLIP_Y_CHROMIUM, false); | 149 context.pixelStorei(Extensions3D::UNPACK_FLIP_Y_CHROMIUM, false); |
| 282 context.pixelStorei(Extensions3D::UNPACK_UNPREMULTIPLY_ALPHA_CHROMIUM, false
); | 150 context.pixelStorei(Extensions3D::UNPACK_UNPREMULTIPLY_ALPHA_CHROMIUM, false
); |
| 283 context.flush(); | 151 context.flush(); |
| 284 return true; | 152 return true; |
| 285 } | 153 } |
| 286 | 154 |
| 287 static bool drawNeedsCopy(GraphicsContext* src, GraphicsContext* dst) | 155 static bool drawNeedsCopy(GraphicsContext* src, GraphicsContext* dst) |
| 288 { | 156 { |
| 157 ASSERT(dst); |
| 289 return (src == dst); | 158 return (src == dst); |
| 290 } | 159 } |
| 291 | 160 |
| 292 Platform3DObject ImageBuffer::getBackingTexture() | 161 Platform3DObject ImageBuffer::getBackingTexture() |
| 293 { | 162 { |
| 294 if (!m_context || !m_context->bitmap()) | 163 return m_surface->getBackingTexture(); |
| 295 return 0; | |
| 296 const SkBitmap& bitmap = *m_context->bitmap(); | |
| 297 if (bitmap.getTexture()) | |
| 298 return (bitmap.getTexture())->getTextureHandle(); | |
| 299 return 0; | |
| 300 } | 164 } |
| 301 | 165 |
| 302 bool ImageBuffer::copyRenderingResultsFromDrawingBuffer(DrawingBuffer* drawingBu
ffer) | 166 bool ImageBuffer::copyRenderingResultsFromDrawingBuffer(DrawingBuffer* drawingBu
ffer) |
| 303 { | 167 { |
| 304 if (!drawingBuffer) | 168 if (!drawingBuffer) |
| 305 return false; | 169 return false; |
| 306 RefPtr<GraphicsContext3D> context3D = SharedGraphicsContext3D::get(); | 170 RefPtr<GraphicsContext3D> context3D = SharedGraphicsContext3D::get(); |
| 307 Platform3DObject tex = getBackingTexture(); | 171 Platform3DObject tex = m_surface->getBackingTexture(); |
| 308 if (!context3D || !tex) | 172 if (!context3D || !tex) |
| 309 return false; | 173 return false; |
| 310 | 174 |
| 311 return drawingBuffer->copyToPlatformTexture(*(context3D.get()), tex, Graphic
sContext3D::RGBA, | 175 return drawingBuffer->copyToPlatformTexture(*(context3D.get()), tex, Graphic
sContext3D::RGBA, |
| 312 GraphicsContext3D::UNSIGNED_BYTE, 0, true, false); | 176 GraphicsContext3D::UNSIGNED_BYTE, 0, true, false); |
| 313 } | 177 } |
| 314 | 178 |
| 315 void ImageBuffer::draw(GraphicsContext* context, const FloatRect& destRect, cons
t FloatRect& srcRect, | 179 void ImageBuffer::draw(GraphicsContext* context, const FloatRect& destRect, cons
t FloatRect& srcRect, |
| 316 CompositeOperator op, blink::WebBlendMode blendMode, bool useLowQualityScale
) | 180 CompositeOperator op, blink::WebBlendMode blendMode, bool useLowQualityScale
) |
| 317 { | 181 { |
| 318 if (!isValid()) | 182 if (!isValid()) |
| 319 return; | 183 return; |
| 320 | 184 |
| 321 const SkBitmap& bitmap = *m_context->bitmap(); | 185 const SkBitmap& bitmap = m_surface->bitmap(); |
| 322 RefPtr<Image> image = BitmapImage::create(NativeImageSkia::create(drawNeedsC
opy(m_context.get(), context) ? deepSkBitmapCopy(bitmap) : bitmap)); | 186 RefPtr<Image> image = BitmapImage::create(NativeImageSkia::create(drawNeedsC
opy(m_context.get(), context) ? deepSkBitmapCopy(bitmap) : bitmap)); |
| 323 context->drawImage(image.get(), destRect, srcRect, op, blendMode, DoNotRespe
ctImageOrientation, useLowQualityScale); | 187 context->drawImage(image.get(), destRect, srcRect, op, blendMode, DoNotRespe
ctImageOrientation, useLowQualityScale); |
| 324 } | 188 } |
| 325 | 189 |
| 326 void ImageBuffer::flush() | 190 void ImageBuffer::flush() |
| 327 { | 191 { |
| 328 if (m_canvas) { | 192 if (m_surface->canvas()) { |
| 329 m_canvas->flush(); | 193 m_surface->canvas()->flush(); |
| 330 } | 194 } |
| 331 } | 195 } |
| 332 | 196 |
| 333 void ImageBuffer::drawPattern(GraphicsContext* context, const FloatRect& srcRect
, const FloatSize& scale, | 197 void ImageBuffer::drawPattern(GraphicsContext* context, const FloatRect& srcRect
, const FloatSize& scale, |
| 334 const FloatPoint& phase, CompositeOperator op, const FloatRect& destRect, bl
ink::WebBlendMode blendMode, const IntSize& repeatSpacing) | 198 const FloatPoint& phase, CompositeOperator op, const FloatRect& destRect, bl
ink::WebBlendMode blendMode, const IntSize& repeatSpacing) |
| 335 { | 199 { |
| 336 if (!isValid()) | 200 if (!isValid()) |
| 337 return; | 201 return; |
| 338 | 202 |
| 339 const SkBitmap& bitmap = *m_context->bitmap(); | 203 const SkBitmap& bitmap = m_surface->bitmap(); |
| 340 RefPtr<Image> image = BitmapImage::create(NativeImageSkia::create(drawNeedsC
opy(m_context.get(), context) ? deepSkBitmapCopy(bitmap) : bitmap)); | 204 RefPtr<Image> image = BitmapImage::create(NativeImageSkia::create(drawNeedsC
opy(m_context.get(), context) ? deepSkBitmapCopy(bitmap) : bitmap)); |
| 341 image->drawPattern(context, srcRect, scale, phase, op, destRect, blendMode,
repeatSpacing); | 205 image->drawPattern(context, srcRect, scale, phase, op, destRect, blendMode,
repeatSpacing); |
| 342 } | 206 } |
| 343 | 207 |
| 344 static const Vector<uint8_t>& getLinearRgbLUT() | 208 static const Vector<uint8_t>& getLinearRgbLUT() |
| 345 { | 209 { |
| 346 DEFINE_STATIC_LOCAL(Vector<uint8_t>, linearRgbLUT, ()); | 210 DEFINE_STATIC_LOCAL(Vector<uint8_t>, linearRgbLUT, ()); |
| 347 if (linearRgbLUT.isEmpty()) { | 211 if (linearRgbLUT.isEmpty()) { |
| 348 linearRgbLUT.reserveCapacity(256); | 212 linearRgbLUT.reserveCapacity(256); |
| 349 for (unsigned i = 0; i < 256; i++) { | 213 for (unsigned i = 0; i < 256; i++) { |
| (...skipping 30 matching lines...) Expand all Loading... |
| 380 | 244 |
| 381 // only sRGB <-> linearRGB are supported at the moment | 245 // only sRGB <-> linearRGB are supported at the moment |
| 382 if ((srcColorSpace != ColorSpaceLinearRGB && srcColorSpace != ColorSpaceDevi
ceRGB) | 246 if ((srcColorSpace != ColorSpaceLinearRGB && srcColorSpace != ColorSpaceDevi
ceRGB) |
| 383 || (dstColorSpace != ColorSpaceLinearRGB && dstColorSpace != ColorSpaceD
eviceRGB)) | 247 || (dstColorSpace != ColorSpaceLinearRGB && dstColorSpace != ColorSpaceD
eviceRGB)) |
| 384 return; | 248 return; |
| 385 | 249 |
| 386 // FIXME: Disable color space conversions on accelerated canvases (for now). | 250 // FIXME: Disable color space conversions on accelerated canvases (for now). |
| 387 if (context()->isAccelerated() || !isValid()) | 251 if (context()->isAccelerated() || !isValid()) |
| 388 return; | 252 return; |
| 389 | 253 |
| 390 const SkBitmap& bitmap = *context()->bitmap(); | 254 const SkBitmap& bitmap = m_surface->bitmap(); |
| 391 if (bitmap.isNull()) | 255 if (bitmap.isNull()) |
| 392 return; | 256 return; |
| 393 | 257 |
| 394 const Vector<uint8_t>& lookUpTable = dstColorSpace == ColorSpaceLinearRGB ? | 258 const Vector<uint8_t>& lookUpTable = dstColorSpace == ColorSpaceLinearRGB ? |
| 395 getLinearRgbLUT() : getDeviceRgbLUT(); | 259 getLinearRgbLUT() : getDeviceRgbLUT(); |
| 396 | 260 |
| 397 ASSERT(bitmap.config() == SkBitmap::kARGB_8888_Config); | 261 ASSERT(bitmap.config() == SkBitmap::kARGB_8888_Config); |
| 262 IntSize size = m_surface->size(); |
| 398 SkAutoLockPixels bitmapLock(bitmap); | 263 SkAutoLockPixels bitmapLock(bitmap); |
| 399 for (int y = 0; y < m_size.height(); ++y) { | 264 for (int y = 0; y < size.height(); ++y) { |
| 400 uint32_t* srcRow = bitmap.getAddr32(0, y); | 265 uint32_t* srcRow = bitmap.getAddr32(0, y); |
| 401 for (int x = 0; x < m_size.width(); ++x) { | 266 for (int x = 0; x < size.width(); ++x) { |
| 402 SkColor color = SkPMColorToColor(srcRow[x]); | 267 SkColor color = SkPMColorToColor(srcRow[x]); |
| 403 srcRow[x] = SkPreMultiplyARGB( | 268 srcRow[x] = SkPreMultiplyARGB( |
| 404 SkColorGetA(color), | 269 SkColorGetA(color), |
| 405 lookUpTable[SkColorGetR(color)], | 270 lookUpTable[SkColorGetR(color)], |
| 406 lookUpTable[SkColorGetG(color)], | 271 lookUpTable[SkColorGetG(color)], |
| 407 lookUpTable[SkColorGetB(color)]); | 272 lookUpTable[SkColorGetB(color)]); |
| 408 } | 273 } |
| 409 } | 274 } |
| 410 } | 275 } |
| 411 | 276 |
| (...skipping 41 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
| 453 SkCanvas::Config8888 config8888; | 318 SkCanvas::Config8888 config8888; |
| 454 if (multiplied == Premultiplied) | 319 if (multiplied == Premultiplied) |
| 455 config8888 = SkCanvas::kRGBA_Premul_Config8888; | 320 config8888 = SkCanvas::kRGBA_Premul_Config8888; |
| 456 else | 321 else |
| 457 config8888 = SkCanvas::kRGBA_Unpremul_Config8888; | 322 config8888 = SkCanvas::kRGBA_Unpremul_Config8888; |
| 458 | 323 |
| 459 context->readPixels(&destBitmap, rect.x(), rect.y(), config8888); | 324 context->readPixels(&destBitmap, rect.x(), rect.y(), config8888); |
| 460 return result.release(); | 325 return result.release(); |
| 461 } | 326 } |
| 462 | 327 |
| 463 PassRefPtr<Uint8ClampedArray> ImageBuffer::getUnmultipliedImageData(const IntRec
t& rect, CoordinateSystem) const | 328 PassRefPtr<Uint8ClampedArray> ImageBuffer::getUnmultipliedImageData(const IntRec
t& rect) const |
| 464 { | 329 { |
| 465 if (!isValid()) | 330 if (!isValid()) |
| 466 return Uint8ClampedArray::create(rect.width() * rect.height() * 4); | 331 return Uint8ClampedArray::create(rect.width() * rect.height() * 4); |
| 467 return getImageData<Unmultiplied>(rect, context(), m_size); | 332 return getImageData<Unmultiplied>(rect, context(), m_surface->size()); |
| 468 } | 333 } |
| 469 | 334 |
| 470 PassRefPtr<Uint8ClampedArray> ImageBuffer::getPremultipliedImageData(const IntRe
ct& rect, CoordinateSystem) const | 335 PassRefPtr<Uint8ClampedArray> ImageBuffer::getPremultipliedImageData(const IntRe
ct& rect) const |
| 471 { | 336 { |
| 472 if (!isValid()) | 337 if (!isValid()) |
| 473 return Uint8ClampedArray::create(rect.width() * rect.height() * 4); | 338 return Uint8ClampedArray::create(rect.width() * rect.height() * 4); |
| 474 return getImageData<Premultiplied>(rect, context(), m_size); | 339 return getImageData<Premultiplied>(rect, context(), m_surface->size()); |
| 475 } | 340 } |
| 476 | 341 |
| 477 void ImageBuffer::putByteArray(Multiply multiplied, Uint8ClampedArray* source, c
onst IntSize& sourceSize, const IntRect& sourceRect, const IntPoint& destPoint,
CoordinateSystem) | 342 void ImageBuffer::putByteArray(Multiply multiplied, Uint8ClampedArray* source, c
onst IntSize& sourceSize, const IntRect& sourceRect, const IntPoint& destPoint) |
| 478 { | 343 { |
| 479 if (!isValid()) | 344 if (!isValid()) |
| 480 return; | 345 return; |
| 481 | 346 |
| 482 ASSERT(sourceRect.width() > 0); | 347 ASSERT(sourceRect.width() > 0); |
| 483 ASSERT(sourceRect.height() > 0); | 348 ASSERT(sourceRect.height() > 0); |
| 484 | 349 |
| 485 int originX = sourceRect.x(); | 350 int originX = sourceRect.x(); |
| 486 int destX = destPoint.x() + sourceRect.x(); | 351 int destX = destPoint.x() + sourceRect.x(); |
| 487 ASSERT(destX >= 0); | 352 ASSERT(destX >= 0); |
| 488 ASSERT(destX < m_size.width()); | 353 ASSERT(destX < m_surface->size().width()); |
| 489 ASSERT(originX >= 0); | 354 ASSERT(originX >= 0); |
| 490 ASSERT(originX < sourceRect.maxX()); | 355 ASSERT(originX < sourceRect.maxX()); |
| 491 | 356 |
| 492 int endX = destPoint.x() + sourceRect.maxX(); | 357 int endX = destPoint.x() + sourceRect.maxX(); |
| 493 ASSERT(endX <= m_size.width()); | 358 ASSERT(endX <= m_surface->size().width()); |
| 494 | 359 |
| 495 int numColumns = endX - destX; | 360 int numColumns = endX - destX; |
| 496 | 361 |
| 497 int originY = sourceRect.y(); | 362 int originY = sourceRect.y(); |
| 498 int destY = destPoint.y() + sourceRect.y(); | 363 int destY = destPoint.y() + sourceRect.y(); |
| 499 ASSERT(destY >= 0); | 364 ASSERT(destY >= 0); |
| 500 ASSERT(destY < m_size.height()); | 365 ASSERT(destY < m_surface->size().height()); |
| 501 ASSERT(originY >= 0); | 366 ASSERT(originY >= 0); |
| 502 ASSERT(originY < sourceRect.maxY()); | 367 ASSERT(originY < sourceRect.maxY()); |
| 503 | 368 |
| 504 int endY = destPoint.y() + sourceRect.maxY(); | 369 int endY = destPoint.y() + sourceRect.maxY(); |
| 505 ASSERT(endY <= m_size.height()); | 370 ASSERT(endY <= m_surface->size().height()); |
| 506 int numRows = endY - destY; | 371 int numRows = endY - destY; |
| 507 | 372 |
| 508 unsigned srcBytesPerRow = 4 * sourceSize.width(); | 373 unsigned srcBytesPerRow = 4 * sourceSize.width(); |
| 509 SkBitmap srcBitmap; | 374 SkBitmap srcBitmap; |
| 510 srcBitmap.setConfig(SkBitmap::kARGB_8888_Config, numColumns, numRows, srcByt
esPerRow); | 375 srcBitmap.setConfig(SkBitmap::kARGB_8888_Config, numColumns, numRows, srcByt
esPerRow); |
| 511 srcBitmap.setPixels(source->data() + originY * srcBytesPerRow + originX * 4)
; | 376 srcBitmap.setPixels(source->data() + originY * srcBytesPerRow + originX * 4)
; |
| 512 | 377 |
| 513 SkCanvas::Config8888 config8888; | 378 SkCanvas::Config8888 config8888; |
| 514 if (multiplied == Premultiplied) | 379 if (multiplied == Premultiplied) |
| 515 config8888 = SkCanvas::kRGBA_Premul_Config8888; | 380 config8888 = SkCanvas::kRGBA_Premul_Config8888; |
| (...skipping 22 matching lines...) Expand all Loading... |
| 538 return false; | 403 return false; |
| 539 } else { | 404 } else { |
| 540 if (!PNGImageEncoder::encode(source, encodedImage)) | 405 if (!PNGImageEncoder::encode(source, encodedImage)) |
| 541 return false; | 406 return false; |
| 542 ASSERT(mimeType == "image/png"); | 407 ASSERT(mimeType == "image/png"); |
| 543 } | 408 } |
| 544 | 409 |
| 545 return true; | 410 return true; |
| 546 } | 411 } |
| 547 | 412 |
| 548 String ImageBuffer::toDataURL(const String& mimeType, const double* quality, Coo
rdinateSystem) const | 413 String ImageBuffer::toDataURL(const String& mimeType, const double* quality) con
st |
| 549 { | 414 { |
| 550 ASSERT(MIMETypeRegistry::isSupportedImageMIMETypeForEncoding(mimeType)); | 415 ASSERT(MIMETypeRegistry::isSupportedImageMIMETypeForEncoding(mimeType)); |
| 551 | 416 |
| 552 Vector<char> encodedImage; | 417 Vector<char> encodedImage; |
| 553 if (!isValid() || !encodeImage(*context()->bitmap(), mimeType, quality, &enc
odedImage)) | 418 if (!isValid() || !encodeImage(m_surface->bitmap(), mimeType, quality, &enco
dedImage)) |
| 554 return "data:,"; | 419 return "data:,"; |
| 555 Vector<char> base64Data; | 420 Vector<char> base64Data; |
| 556 base64Encode(encodedImage, base64Data); | 421 base64Encode(encodedImage, base64Data); |
| 557 | 422 |
| 558 return "data:" + mimeType + ";base64," + base64Data; | 423 return "data:" + mimeType + ";base64," + base64Data; |
| 559 } | 424 } |
| 560 | 425 |
| 561 String ImageDataToDataURL(const ImageDataBuffer& imageData, const String& mimeTy
pe, const double* quality) | 426 String ImageDataToDataURL(const ImageDataBuffer& imageData, const String& mimeTy
pe, const double* quality) |
| 562 { | 427 { |
| 563 ASSERT(MIMETypeRegistry::isSupportedImageMIMETypeForEncoding(mimeType)); | 428 ASSERT(MIMETypeRegistry::isSupportedImageMIMETypeForEncoding(mimeType)); |
| 564 | 429 |
| 565 Vector<char> encodedImage; | 430 Vector<char> encodedImage; |
| 566 if (!encodeImage(imageData, mimeType, quality, &encodedImage)) | 431 if (!encodeImage(imageData, mimeType, quality, &encodedImage)) |
| 567 return "data:,"; | 432 return "data:,"; |
| 568 | 433 |
| 569 Vector<char> base64Data; | 434 Vector<char> base64Data; |
| 570 base64Encode(encodedImage, base64Data); | 435 base64Encode(encodedImage, base64Data); |
| 571 | 436 |
| 572 return "data:" + mimeType + ";base64," + base64Data; | 437 return "data:" + mimeType + ";base64," + base64Data; |
| 573 } | 438 } |
| 574 | 439 |
| 575 } // namespace WebCore | 440 } // namespace WebCore |
| OLD | NEW |