c3bd8af6d5
fix reference to SkBaseDevice, which was only a problem in no-gpu build This reverts commit 4fa44a6bf73891b21917fb90d02beef9143bffa3. R=reed@google.com Author: reed@chromium.org Review URL: https://codereview.chromium.org/163603003 git-svn-id: http://skia.googlecode.com/svn/trunk@13432 2bbb7eff-a529-9590-31e7-b0007b416f81
291 lines
13 KiB
C++
291 lines
13 KiB
C++
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/*
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* Copyright 2013 Google Inc.
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*
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* Use of this source code is governed by a BSD-style license that can be
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* found in the LICENSE file.
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*/
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#ifndef SkBitmapDevice_DEFINED
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#define SkBitmapDevice_DEFINED
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#include "SkDevice.h"
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///////////////////////////////////////////////////////////////////////////////
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class SK_API SkBitmapDevice : public SkBaseDevice {
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public:
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SK_DECLARE_INST_COUNT(SkBitmapDevice)
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/**
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* Construct a new device with the specified bitmap as its backend. It is
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* valid for the bitmap to have no pixels associated with it. In that case,
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* any drawing to this device will have no effect.
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*/
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SkBitmapDevice(const SkBitmap& bitmap);
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/**
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* Construct a new device with the specified bitmap as its backend. It is
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* valid for the bitmap to have no pixels associated with it. In that case,
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* any drawing to this device will have no effect.
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*/
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SkBitmapDevice(const SkBitmap& bitmap, const SkDeviceProperties& deviceProperties);
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/**
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* Create a new raster device and have the pixels be automatically
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* allocated. The rowBytes of the device will be computed automatically
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* based on the config and the width.
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*
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* @param config The desired config for the pixels. If the request cannot
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* be met, the closest matching support config will be used.
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* @param width width (in pixels) of the device
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* @param height height (in pixels) of the device
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* @param isOpaque Set to true if it is known that all of the pixels will
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* be drawn to opaquely. Used as an accelerator when drawing
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* these pixels to another device.
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*/
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SkBitmapDevice(SkBitmap::Config config, int width, int height, bool isOpaque = false);
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/**
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* Create a new raster device and have the pixels be automatically
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* allocated. The rowBytes of the device will be computed automatically
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* based on the config and the width.
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*
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* @param config The desired config for the pixels. If the request cannot
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* be met, the closest matching support config will be used.
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* @param width width (in pixels) of the device
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* @param height height (in pixels) of the device
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* @param isOpaque Set to true if it is known that all of the pixels will
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* be drawn to opaquely. Used as an accelerator when drawing
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* these pixels to another device.
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* @param deviceProperties Properties which affect compositing.
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*/
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SkBitmapDevice(SkBitmap::Config config, int width, int height, bool isOpaque,
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const SkDeviceProperties& deviceProperties);
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virtual ~SkBitmapDevice();
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virtual uint32_t getDeviceCapabilities() SK_OVERRIDE { return 0; }
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/** Return the width of the device (in pixels).
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*/
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virtual int width() const SK_OVERRIDE { return fBitmap.width(); }
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/** Return the height of the device (in pixels).
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*/
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virtual int height() const SK_OVERRIDE { return fBitmap.height(); }
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/** Returns true if the device's bitmap's config treats every pixels as
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implicitly opaque.
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*/
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virtual bool isOpaque() const SK_OVERRIDE { return fBitmap.isOpaque(); }
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/** Return the bitmap config of the device's pixels
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*/
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virtual SkBitmap::Config config() const SK_OVERRIDE { return fBitmap.config(); }
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virtual SkImageInfo imageInfo() const SK_OVERRIDE;
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/**
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* DEPRECATED: This will be made protected once WebKit stops using it.
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* Instead use Canvas' writePixels method.
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*
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* Similar to draw sprite, this method will copy the pixels in bitmap onto
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* the device, with the top/left corner specified by (x, y). The pixel
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* values in the device are completely replaced: there is no blending.
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*
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* Currently if bitmap is backed by a texture this is a no-op. This may be
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* relaxed in the future.
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*
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* If the bitmap has config kARGB_8888_Config then the config8888 param
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* will determines how the pixel valuess are intepreted. If the bitmap is
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* not kARGB_8888_Config then this parameter is ignored.
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*/
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virtual void writePixels(const SkBitmap& bitmap, int x, int y,
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SkCanvas::Config8888 config8888) SK_OVERRIDE;
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/**
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* Return the device's associated gpu render target, or NULL.
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*/
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virtual GrRenderTarget* accessRenderTarget() SK_OVERRIDE { return NULL; }
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protected:
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/**
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* Device may filter the text flags for drawing text here. If it wants to
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* make a change to the specified values, it should write them into the
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* textflags parameter (output) and return true. If the paint is fine as
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* is, then ignore the textflags parameter and return false.
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*
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* The baseclass SkDevice filters based on its depth and blitters.
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*/
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virtual bool filterTextFlags(const SkPaint& paint, TextFlags*) SK_OVERRIDE;
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/** Clears the entire device to the specified color (including alpha).
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* Ignores the clip.
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*/
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virtual void clear(SkColor color) SK_OVERRIDE;
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/** These are called inside the per-device-layer loop for each draw call.
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When these are called, we have already applied any saveLayer operations,
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and are handling any looping from the paint, and any effects from the
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DrawFilter.
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*/
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virtual void drawPaint(const SkDraw&, const SkPaint& paint) SK_OVERRIDE;
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virtual void drawPoints(const SkDraw&, SkCanvas::PointMode mode, size_t count,
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const SkPoint[], const SkPaint& paint) SK_OVERRIDE;
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virtual void drawRect(const SkDraw&, const SkRect& r,
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const SkPaint& paint) SK_OVERRIDE;
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virtual void drawOval(const SkDraw&, const SkRect& oval,
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const SkPaint& paint) SK_OVERRIDE;
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virtual void drawRRect(const SkDraw&, const SkRRect& rr,
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const SkPaint& paint) SK_OVERRIDE;
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/**
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* If pathIsMutable, then the implementation is allowed to cast path to a
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* non-const pointer and modify it in place (as an optimization). Canvas
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* may do this to implement helpers such as drawOval, by placing a temp
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* path on the stack to hold the representation of the oval.
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*
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* If prePathMatrix is not null, it should logically be applied before any
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* stroking or other effects. If there are no effects on the paint that
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* affect the geometry/rasterization, then the pre matrix can just be
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* pre-concated with the current matrix.
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*/
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virtual void drawPath(const SkDraw&, const SkPath& path,
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const SkPaint& paint,
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const SkMatrix* prePathMatrix = NULL,
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bool pathIsMutable = false) SK_OVERRIDE;
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virtual void drawBitmap(const SkDraw&, const SkBitmap& bitmap,
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const SkMatrix& matrix, const SkPaint& paint) SK_OVERRIDE;
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virtual void drawSprite(const SkDraw&, const SkBitmap& bitmap,
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int x, int y, const SkPaint& paint) SK_OVERRIDE;
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/**
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* The default impl. will create a bitmap-shader from the bitmap,
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* and call drawRect with it.
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*/
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virtual void drawBitmapRect(const SkDraw&, const SkBitmap&,
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const SkRect* srcOrNull, const SkRect& dst,
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const SkPaint& paint,
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SkCanvas::DrawBitmapRectFlags flags) SK_OVERRIDE;
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/**
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* Does not handle text decoration.
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* Decorations (underline and stike-thru) will be handled by SkCanvas.
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*/
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virtual void drawText(const SkDraw&, const void* text, size_t len,
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SkScalar x, SkScalar y, const SkPaint& paint) SK_OVERRIDE;
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virtual void drawPosText(const SkDraw&, const void* text, size_t len,
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const SkScalar pos[], SkScalar constY,
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int scalarsPerPos, const SkPaint& paint) SK_OVERRIDE;
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virtual void drawTextOnPath(const SkDraw&, const void* text, size_t len,
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const SkPath& path, const SkMatrix* matrix,
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const SkPaint& paint) SK_OVERRIDE;
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virtual void drawVertices(const SkDraw&, SkCanvas::VertexMode, int vertexCount,
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const SkPoint verts[], const SkPoint texs[],
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const SkColor colors[], SkXfermode* xmode,
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const uint16_t indices[], int indexCount,
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const SkPaint& paint) SK_OVERRIDE;
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/** The SkBaseDevice passed will be an SkBaseDevice which was returned by a call to
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onCreateCompatibleDevice on this device with kSaveLayer_Usage.
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*/
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virtual void drawDevice(const SkDraw&, SkBaseDevice*, int x, int y,
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const SkPaint&) SK_OVERRIDE;
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///////////////////////////////////////////////////////////////////////////
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/** Update as needed the pixel value in the bitmap, so that the caller can
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access the pixels directly. Note: only the pixels field should be
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altered. The config/width/height/rowbytes must remain unchanged.
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@return the device contents as a bitmap
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*/
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virtual const SkBitmap& onAccessBitmap() SK_OVERRIDE;
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SkPixelRef* getPixelRef() const { return fBitmap.pixelRef(); }
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// just for subclasses, to assign a custom pixelref
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SkPixelRef* setPixelRef(SkPixelRef* pr) {
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fBitmap.setPixelRef(pr);
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return pr;
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}
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/**
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* Implements readPixels API. The caller will ensure that:
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* 1. bitmap has pixel config kARGB_8888_Config.
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* 2. bitmap has pixels.
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* 3. The rectangle (x, y, x + bitmap->width(), y + bitmap->height()) is
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* contained in the device bounds.
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*/
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virtual bool onReadPixels(const SkBitmap& bitmap,
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int x, int y,
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SkCanvas::Config8888 config8888) SK_OVERRIDE;
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/** Called when this device is installed into a Canvas. Balanced by a call
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to unlockPixels() when the device is removed from a Canvas.
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*/
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virtual void lockPixels() SK_OVERRIDE;
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virtual void unlockPixels() SK_OVERRIDE;
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/**
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* Returns true if the device allows processing of this imagefilter. If
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* false is returned, then the filter is ignored. This may happen for
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* some subclasses that do not support pixel manipulations after drawing
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* has occurred (e.g. printing). The default implementation returns true.
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*/
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virtual bool allowImageFilter(const SkImageFilter*) SK_OVERRIDE;
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/**
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* Override and return true for filters that the device can handle
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* intrinsically. Doing so means that SkCanvas will pass-through this
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* filter to drawSprite and drawDevice (and potentially filterImage).
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* Returning false means the SkCanvas will have apply the filter itself,
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* and just pass the resulting image to the device.
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*/
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virtual bool canHandleImageFilter(const SkImageFilter*) SK_OVERRIDE;
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/**
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* Related (but not required) to canHandleImageFilter, this method returns
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* true if the device could apply the filter to the src bitmap and return
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* the result (and updates offset as needed).
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* If the device does not recognize or support this filter,
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* it just returns false and leaves result and offset unchanged.
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*/
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virtual bool filterImage(const SkImageFilter*, const SkBitmap&, const SkMatrix&,
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SkBitmap* result, SkIPoint* offset) SK_OVERRIDE;
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private:
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friend class SkCanvas;
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friend struct DeviceCM; //for setMatrixClip
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friend class SkDraw;
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friend class SkDrawIter;
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friend class SkDeviceFilteredPaint;
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friend class SkDeviceImageFilterProxy;
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friend class SkSurface_Raster;
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void init(SkBitmap::Config config, int width, int height, bool isOpaque);
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// used to change the backend's pixels (and possibly config/rowbytes)
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// but cannot change the width/height, so there should be no change to
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// any clip information.
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virtual void replaceBitmapBackendForRasterSurface(const SkBitmap&) SK_OVERRIDE;
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/**
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* Subclasses should override this to implement createCompatibleDevice.
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*/
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virtual SkBaseDevice* onCreateCompatibleDevice(SkBitmap::Config config,
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int width, int height,
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bool isOpaque,
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Usage usage) SK_OVERRIDE;
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/** Causes any deferred drawing to the device to be completed.
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*/
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virtual void flush() SK_OVERRIDE {}
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virtual SkSurface* newSurface(const SkImageInfo&) SK_OVERRIDE;
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virtual const void* peekPixels(SkImageInfo*, size_t* rowBytes) SK_OVERRIDE;
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SkBitmap fBitmap;
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typedef SkBaseDevice INHERITED;
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};
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#endif // SkBitmapDevice_DEFINED
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