skia2/gm/arithmode.cpp
ericrk af96fce879 The SkArithmeticMode_gpu GL filters support clamping to valid
premultiplied colors, however the flag for whether or not to do this,
which is present in their parent filters, is dropped when creating the
GL implementations. This change adds logic to forward the value from
the parent filter to the GL implementation.

This makes GPU behavior match software and fixes a WebKit
LayoutTest. See referenced bug.

BUG=473186

Review URL: https://codereview.chromium.org/1410553002
2015-10-19 14:41:11 -07:00

169 lines
5.5 KiB
C++

/*
* Copyright 2011 Google Inc.
*
* Use of this source code is governed by a BSD-style license that can be
* found in the LICENSE file.
*/
#include "gm.h"
#include "SkCanvas.h"
#include "SkColorPriv.h"
#include "SkShader.h"
#include "SkArithmeticMode.h"
#include "SkGradientShader.h"
#define WW 100
#define HH 32
static SkBitmap make_bm() {
SkBitmap bm;
bm.allocN32Pixels(WW, HH);
bm.eraseColor(SK_ColorTRANSPARENT);
return bm;
}
static SkBitmap make_src() {
SkBitmap bm = make_bm();
SkCanvas canvas(bm);
SkPaint paint;
SkPoint pts[] = { {0, 0}, {SkIntToScalar(WW), SkIntToScalar(HH)} };
SkColor colors[] = {
SK_ColorTRANSPARENT, SK_ColorGREEN, SK_ColorCYAN,
SK_ColorRED, SK_ColorMAGENTA, SK_ColorWHITE,
};
SkShader* s = SkGradientShader::CreateLinear(pts, colors, nullptr, SK_ARRAY_COUNT(colors),
SkShader::kClamp_TileMode);
paint.setShader(s)->unref();
canvas.drawPaint(paint);
return bm;
}
static SkBitmap make_dst() {
SkBitmap bm = make_bm();
SkCanvas canvas(bm);
SkPaint paint;
SkPoint pts[] = { {0, SkIntToScalar(HH)}, {SkIntToScalar(WW), 0} };
SkColor colors[] = {
SK_ColorBLUE, SK_ColorYELLOW, SK_ColorBLACK, SK_ColorGREEN,
sk_tool_utils::color_to_565(SK_ColorGRAY)
};
SkShader* s = SkGradientShader::CreateLinear(pts, colors, nullptr, SK_ARRAY_COUNT(colors),
SkShader::kClamp_TileMode);
paint.setShader(s)->unref();
canvas.drawPaint(paint);
return bm;
}
static void show_k_text(SkCanvas* canvas, SkScalar x, SkScalar y, const SkScalar k[]) {
SkPaint paint;
paint.setTextSize(SkIntToScalar(24));
paint.setAntiAlias(true);
sk_tool_utils::set_portable_typeface(&paint);
for (int i = 0; i < 4; ++i) {
SkString str;
str.appendScalar(k[i]);
SkScalar width = paint.measureText(str.c_str(), str.size());
canvas->drawText(str.c_str(), str.size(), x, y + paint.getTextSize(), paint);
x += width + SkIntToScalar(10);
}
}
class ArithmodeGM : public skiagm::GM {
public:
ArithmodeGM () {}
protected:
virtual SkString onShortName() {
return SkString("arithmode");
}
virtual SkISize onISize() { return SkISize::Make(640, 572); }
virtual void onDraw(SkCanvas* canvas) {
SkBitmap src = make_src();
SkBitmap dst = make_dst();
const SkScalar one = SK_Scalar1;
static const SkScalar K[] = {
0, 0, 0, 0,
0, 0, 0, one,
0, one, 0, 0,
0, 0, one, 0,
0, one, one, 0,
0, one, -one, 0,
0, one/2, one/2, 0,
0, one/2, one/2, one/4,
0, one/2, one/2, -one/4,
one/4, one/2, one/2, 0,
-one/4, one/2, one/2, 0,
};
const SkScalar* k = K;
const SkScalar* stop = k + SK_ARRAY_COUNT(K);
SkScalar y = 0;
SkScalar gap = SkIntToScalar(src.width() + 20);
while (k < stop) {
SkScalar x = 0;
canvas->drawBitmap(src, x, y, nullptr);
x += gap;
canvas->drawBitmap(dst, x, y, nullptr);
x += gap;
SkRect rect = SkRect::MakeXYWH(x, y, SkIntToScalar(WW), SkIntToScalar(HH));
canvas->saveLayer(&rect, nullptr);
canvas->drawBitmap(dst, x, y, nullptr);
SkXfermode* xfer = SkArithmeticMode::Create(k[0], k[1], k[2], k[3]);
SkPaint paint;
paint.setXfermode(xfer)->unref();
canvas->drawBitmap(src, x, y, &paint);
canvas->restore();
x += gap;
show_k_text(canvas, x, y, k);
k += 4;
y += SkIntToScalar(src.height() + 12);
}
// Draw two special cases to test enforcePMColor. In these cases, we
// draw the dst bitmap twice, the first time it is halved and inverted,
// leading to invalid premultiplied colors. If we enforcePMColor, these
// invalid values should be clamped, and will not contribute to the
// second draw.
for (int i = 0; i < 2; i++) {
const bool enforcePMColor = (i == 0);
SkScalar x = gap;
canvas->drawBitmap(dst, x, y, nullptr);
x += gap;
SkRect rect = SkRect::MakeXYWH(x, y, SkIntToScalar(WW), SkIntToScalar(HH));
canvas->saveLayer(&rect, nullptr);
SkXfermode* xfer1 = SkArithmeticMode::Create(0, -one / 2, 0, 1, enforcePMColor);
SkPaint paint1;
paint1.setXfermode(xfer1)->unref();
canvas->drawBitmap(dst, x, y, &paint1);
SkXfermode* xfer2 = SkArithmeticMode::Create(0, one / 2, -one, 1);
SkPaint paint2;
paint2.setXfermode(xfer2)->unref();
canvas->drawBitmap(dst, x, y, &paint2);
canvas->restore();
x += gap;
// Label
SkPaint paint;
paint.setTextSize(SkIntToScalar(24));
paint.setAntiAlias(true);
sk_tool_utils::set_portable_typeface(&paint);
SkString str(enforcePMColor ? "enforcePM" : "no enforcePM");
canvas->drawText(str.c_str(), str.size(), x, y + paint.getTextSize(), paint);
y += SkIntToScalar(src.height() + 12);
}
}
private:
typedef GM INHERITED;
};
///////////////////////////////////////////////////////////////////////////////
static skiagm::GM* MyFactory(void*) { return new ArithmodeGM; }
static skiagm::GMRegistry reg(MyFactory);