* Copyright 2006 The Android Open Source Project
*
* Use of this source code is governed by a BSD-style license that can be
* found in the LICENSE file.
*/
#include "include/core/SkColorSpace.h"
#include "src/core/SkArenaAlloc.h"
#include "src/core/SkColorSpacePriv.h"
#include "src/core/SkColorSpaceXformSteps.h"
#include "src/core/SkCoreBlitters.h"
#include "src/core/SkOpts.h"
#include "src/core/SkRasterPipeline.h"
#include "src/core/SkSpriteBlitter.h"
SkSpriteBlitter::SkSpriteBlitter(const SkPixmap& source)
: fSource(source) {}
void SkSpriteBlitter::setup(const SkPixmap& dst, int left, int top, const SkPaint& paint) {
fDst = dst;
fLeft = left;
fTop = top;
fPaint = &paint;
}
void SkSpriteBlitter::blitH(int x, int y, int width) {
SkDEBUGFAIL("how did we get here?");
this->blitRect(x, y, width, 1);
}
void SkSpriteBlitter::blitAntiH(int x, int y, const SkAlpha antialias[], const int16_t runs[]) {
SkDEBUGFAIL("how did we get here?");
}
void SkSpriteBlitter::blitV(int x, int y, int height, SkAlpha alpha) {
SkDEBUGFAIL("how did we get here?");
INHERITED::blitV(x, y, height, alpha);
}
void SkSpriteBlitter::blitMask(const SkMask& mask, const SkIRect& clip) {
SkDEBUGFAIL("how did we get here?");
INHERITED::blitMask(mask, clip);
}
class SkSpriteBlitter_Memcpy final : public SkSpriteBlitter {
public:
static bool Supports(const SkPixmap& dst, const SkPixmap& src, const SkPaint& paint) {
SkASSERT(!SkColorSpaceXformSteps::Required(src.colorSpace(), dst.colorSpace()));
if (dst.colorType() != src.colorType()) {
return false;
}
if (paint.getMaskFilter() || paint.getColorFilter() || paint.getImageFilter()) {
return false;
}
if (0xFF != paint.getAlpha()) {
return false;
}
SkBlendMode mode = paint.getBlendMode();
return SkBlendMode::kSrc == mode || (SkBlendMode::kSrcOver == mode && src.isOpaque());
}
SkSpriteBlitter_Memcpy(const SkPixmap& src)
: INHERITED(src) {}
void blitRect(int x, int y, int width, int height) override {
SkASSERT(fDst.colorType() == fSource.colorType());
SkASSERT(width > 0 && height > 0);
char* dst = (char*)fDst.writable_addr(x, y);
const char* src = (const char*)fSource.addr(x - fLeft, y - fTop);
const size_t dstRB = fDst.rowBytes();
const size_t srcRB = fSource.rowBytes();
const size_t bytesToCopy = width << fSource.shiftPerPixel();
while (height --> 0) {
memcpy(dst, src, bytesToCopy);
dst += dstRB;
src += srcRB;
}
}
private:
typedef SkSpriteBlitter INHERITED;
};
class SkRasterPipelineSpriteBlitter : public SkSpriteBlitter {
public:
SkRasterPipelineSpriteBlitter(const SkPixmap& src, SkArenaAlloc* alloc)
: INHERITED(src)
, fAlloc(alloc)
, fBlitter(nullptr)
, fSrcPtr{nullptr, 0}
{}
void setup(const SkPixmap& dst, int left, int top, const SkPaint& paint) override {
fDst = dst;
fLeft = left;
fTop = top;
fPaintColor = paint.getColor4f();
SkRasterPipeline p(fAlloc);
p.append_load(fSource.colorType(), &fSrcPtr);
if (fSource.colorType() == kAlpha_8_SkColorType) {
p.append_set_rgb(fAlloc, fPaintColor);
p.append(SkRasterPipeline::premul);
}
if (auto dstCS = fDst.colorSpace()) {
auto srcCS = fSource.colorSpace();
if (!srcCS || fSource.colorType() == kAlpha_8_SkColorType) {
srcCS = sk_srgb_singleton();
}
auto srcAT = fSource.isOpaque() ? kOpaque_SkAlphaType
: kPremul_SkAlphaType;
fAlloc->make<SkColorSpaceXformSteps>(srcCS, srcAT,
dstCS, kPremul_SkAlphaType)
->apply(&p, fSource.colorType());
}
if (fPaintColor.fA != 1.0f) {
p.append(SkRasterPipeline::scale_1_float, &fPaintColor.fA);
}
bool is_opaque = fSource.isOpaque() && fPaintColor.fA == 1.0f;
fBlitter = SkCreateRasterPipelineBlitter(fDst, paint, p, is_opaque, fAlloc);
}
void blitRect(int x, int y, int width, int height) override {
fSrcPtr.stride = fSource.rowBytesAsPixels();
size_t bpp = fSource.info().bytesPerPixel();
fSrcPtr.pixels = (char*)fSource.addr(-fLeft+x, -fTop+y) - bpp * x
- bpp * y * fSrcPtr.stride;
fBlitter->blitRect(x,y,width,height);
}
private:
SkArenaAlloc* fAlloc;
SkBlitter* fBlitter;
SkRasterPipeline_MemoryCtx fSrcPtr;
SkColor4f fPaintColor;
typedef SkSpriteBlitter INHERITED;
};
SkBlitter* SkBlitter::ChooseSprite(const SkPixmap& dst, const SkPaint& paint,
const SkPixmap& source, int left, int top, SkArenaAlloc* allocator) {
special blitters regardless of these settings. Ignoring filtertype seems fine
since by definition there is no scale in the matrix. Ignoring antialiasing is
a bit of a hack, since we "could" pass in the fractional left/top for the bitmap,
and respect that by blending the edges of the bitmap against the device. To support
this we could either add more special blitters here, or detect antialiasing in the
paint and return null if it is set, forcing the client to take the slow shader case
(which does respect soft edges).
*/
SkASSERT(allocator != nullptr);
if (source.alphaType() == kUnpremul_SkAlphaType) {
return nullptr;
}
SkSpriteBlitter* blitter = nullptr;
if (!SkColorSpaceXformSteps::Required(source.colorSpace(), dst.colorSpace())) {
if (!blitter && SkSpriteBlitter_Memcpy::Supports(dst, source, paint)) {
blitter = allocator->make<SkSpriteBlitter_Memcpy>(source);
}
if (!blitter) {
switch (dst.colorType()) {
case kN32_SkColorType:
blitter = SkSpriteBlitter::ChooseL32(source, paint, allocator);
break;
case kRGB_565_SkColorType:
blitter = SkSpriteBlitter::ChooseL565(source, paint, allocator);
break;
case kAlpha_8_SkColorType:
blitter = SkSpriteBlitter::ChooseLA8(source, paint, allocator);
break;
default:
break;
}
}
}
if (!blitter && !paint.getMaskFilter()) {
blitter = allocator->make<SkRasterPipelineSpriteBlitter>(source, allocator);
}
if (blitter) {
blitter->setup(dst, left, top, paint);
}
return blitter;
}