blob: c280555226f97e023367bd002e07398bbc1627b3 [file] [log] [blame]
#include "SkTestImageFilters.h"
#include "SkCanvas.h"
#include "SkDevice.h"
#include "SkFlattenableBuffers.h"
// Simple helper canvas that "takes ownership" of the provided device, so that
// when this canvas goes out of scope, so will its device. Could be replaced
// with the following:
//
// SkCanvas canvas(device);
// SkAutoTUnref<SkDevice> aur(device);
//
class OwnDeviceCanvas : public SkCanvas {
public:
OwnDeviceCanvas(SkDevice* device) : SkCanvas(device) {
SkSafeUnref(device);
}
};
///////////////////////////////////////////////////////////////////////////////
SkComposeImageFilter::~SkComposeImageFilter() {
}
bool SkComposeImageFilter::onFilterImage(Proxy* proxy,
const SkBitmap& src,
const SkMatrix& ctm,
SkBitmap* result,
SkIPoint* loc) {
SkImageFilter* outer = getInput(0);
SkImageFilter* inner = getInput(1);
if (!outer && !inner) {
return false;
}
if (!outer || !inner) {
return (outer ? outer : inner)->filterImage(proxy, src, ctm, result, loc);
}
SkBitmap tmp;
return inner->filterImage(proxy, src, ctm, &tmp, loc) &&
outer->filterImage(proxy, tmp, ctm, result, loc);
}
bool SkComposeImageFilter::onFilterBounds(const SkIRect& src,
const SkMatrix& ctm,
SkIRect* dst) {
SkImageFilter* outer = getInput(0);
SkImageFilter* inner = getInput(1);
if (!outer && !inner) {
return false;
}
if (!outer || !inner) {
return (outer ? outer : inner)->filterBounds(src, ctm, dst);
}
SkIRect tmp;
return inner->filterBounds(src, ctm, &tmp) &&
outer->filterBounds(tmp, ctm, dst);
}
SkComposeImageFilter::SkComposeImageFilter(SkFlattenableReadBuffer& buffer) : INHERITED(buffer) {
}
///////////////////////////////////////////////////////////////////////////////
bool SkDownSampleImageFilter::onFilterImage(Proxy* proxy, const SkBitmap& src,
const SkMatrix& matrix,
SkBitmap* result, SkIPoint*) {
SkScalar scale = fScale;
if (scale > SK_Scalar1 || scale <= 0) {
return false;
}
int dstW = SkScalarRoundToInt(src.width() * scale);
int dstH = SkScalarRoundToInt(src.height() * scale);
if (dstW < 1) {
dstW = 1;
}
if (dstH < 1) {
dstH = 1;
}
SkBitmap tmp;
// downsample
{
SkDevice* dev = proxy->createDevice(dstW, dstH);
if (NULL == dev) {
return false;
}
OwnDeviceCanvas canvas(dev);
SkPaint paint;
paint.setFilterBitmap(true);
canvas.scale(scale, scale);
canvas.drawBitmap(src, 0, 0, &paint);
tmp = dev->accessBitmap(false);
}
// upscale
{
SkDevice* dev = proxy->createDevice(src.width(), src.height());
if (NULL == dev) {
return false;
}
OwnDeviceCanvas canvas(dev);
SkRect r = SkRect::MakeWH(SkIntToScalar(src.width()),
SkIntToScalar(src.height()));
canvas.drawBitmapRect(tmp, NULL, r, NULL);
*result = dev->accessBitmap(false);
}
return true;
}
void SkDownSampleImageFilter::flatten(SkFlattenableWriteBuffer& buffer) const {
this->INHERITED::flatten(buffer);
buffer.writeScalar(fScale);
}
SkDownSampleImageFilter::SkDownSampleImageFilter(SkFlattenableReadBuffer& buffer) : INHERITED(buffer) {
fScale = buffer.readScalar();
}