dbfd7ab108
'static const' means, there must be at most one of these, and initialize it at compile time if possible or runtime if necessary. This leads to unexpected code execution, and TSAN* will complain about races on the guard variables. Generally 'constexpr' or 'const' are better choices. Neither can cause races: they're either intialized at compile time (constexpr) or intialized each time independently (const). This CL prefers constexpr where possible, and uses const where not. It even prefers constexpr over const where they don't make a difference... I want to have lots of examples of constexpr for people to see and mimic. The scoped-to-class static has nothing to do with any of this, and is not changed. * Not yet on the bots, which use an older TSAN. BUG=skia: GOLD_TRYBOT_URL= https://gold.skia.org/search?issue=2300623005 Review-Url: https://codereview.chromium.org/2300623005
149 lines
5.0 KiB
C++
149 lines
5.0 KiB
C++
/*
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* Copyright 2015 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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#include "gm.h"
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#include "SkImage.h"
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#include "SkSurface.h"
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#include "SkTArray.h"
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class ImageScaleAlignedGM : public skiagm::GM {
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protected:
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void onOnceBeforeDraw() override {
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const SkVector vectors[] = { { 1, 0 }, { 0, 1 } };
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for (size_t i = 0; i < SK_ARRAY_COUNT(vectors); ++i) {
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auto& set = fSets.push_back();
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set.fVector = vectors[i];
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set.fImages.push_back() = MakeImage(vectors[i], SK_ColorGREEN);
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set.fScales.push_back() = 1;
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set.fImages.push_back() = MakeImage(vectors[i], SK_ColorRED);
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set.fScales.push_back() = kStretchFactor;
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set.fImages.push_back() = MakeImage(vectors[i], SK_ColorGREEN);
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set.fScales.push_back() = 1;
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}
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}
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SkString onShortName() override {
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return SkString("image_scale_aligned");
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}
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SkISize onISize() override {
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return SkISize::Make(580, 780);
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}
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void onDraw(SkCanvas* canvas) override {
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struct {
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SkPoint offset;
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SkVector scale;
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} cfgs[] = {
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{{ 10, 10 }, { 1, 1 }},
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{{ 300.5f, 10 }, { 1, 1 }},
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{{ 10, 200.5f }, { 1, 1 }},
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{{ 300.5f, 200.5f }, { 1, 1 }},
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{{ 10.5f, 400.5f }, { 1, 1 }},
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{{ 550.5f, 400.5f }, { -1, 1 }},
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{{ 10.5f, 750.5f }, { 1, -1 }},
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{{ 550.5f, 750.5f }, { -1, -1 }},
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};
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for (size_t i = 0; i < SK_ARRAY_COUNT(cfgs); ++i) {
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SkAutoCanvasRestore acr(canvas, true);
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canvas->translate(cfgs[i].offset.x(), cfgs[i].offset.y());
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canvas->scale(cfgs[i].scale.x(), cfgs[i].scale.y());
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drawSets(canvas);
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}
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}
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private:
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struct ImageSet {
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SkSTArray<3, sk_sp<SkImage>, true> fImages;
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SkSTArray<3, SkScalar> fScales;
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SkVector fVector;
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};
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static sk_sp<SkImage> MakeImage(const SkVector& vec, SkColor color) {
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const SkPoint start = SkPoint::Make(vec.y() * kSegLen / 2, vec.x() * kSegLen / 2);
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const SkPoint end = SkPoint::Make(start.x() + vec.x() * (kSegLen - 1),
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start.y() + vec.y() * (kSegLen - 1));
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auto surface(SkSurface::MakeRasterN32Premul(kSegLen, kSegLen));
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surface->getCanvas()->clear(SK_ColorTRANSPARENT);
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SkPaint paint;
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paint.setAntiAlias(true);
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const SkRect border = SkRect::MakeIWH(kSegLen, kSegLen).makeInset(.5f, .5f);
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paint.setColor(SK_ColorBLUE);
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paint.setStyle(SkPaint::kStroke_Style);
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surface->getCanvas()->drawRect(border, paint);
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paint.setColor(SK_ColorBLACK);
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surface->getCanvas()->drawLine(start.x(), start.y(), end.x(), end.y(), paint);
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surface->getCanvas()->drawPoint(start.x(), start.y(), color);
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surface->getCanvas()->drawPoint(end.x(), end.y(), color);
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return surface->makeImageSnapshot();
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}
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void drawSets(SkCanvas* canvas) const {
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SkAutoCanvasRestore acr(canvas, true);
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const SkFilterQuality filters[] = {
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kNone_SkFilterQuality,
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kLow_SkFilterQuality,
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kMedium_SkFilterQuality,
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kHigh_SkFilterQuality
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};
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const bool AAs[] = { false, true };
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SkPaint paint;
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for (int i = 0; i < fSets.count(); ++i) {
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auto& set = fSets[i];
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SkPoint lastPt;
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for (size_t j = 0; j < SK_ARRAY_COUNT(AAs); ++j) {
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paint.setAntiAlias(AAs[j]);
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for (size_t k = 0; k < SK_ARRAY_COUNT(filters); ++k) {
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paint.setFilterQuality(filters[k]);
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lastPt = drawSet(canvas, set, paint);
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canvas->translate((kSegLen + 4) * set.fVector.y(),
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(kSegLen + 4) * set.fVector.x());
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}
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}
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canvas->translate(lastPt.x() + kSegLen,
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- SkIntToScalar(kSegLen + 4) * SK_ARRAY_COUNT(filters) * SK_ARRAY_COUNT(AAs));
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}
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}
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SkPoint drawSet(SkCanvas* canvas, const ImageSet& set, const SkPaint& paint) const {
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SkASSERT(set.fImages.count() == set.fScales.count());
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SkPoint pt = SkPoint::Make(0, 0);
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for (int i = 0; i < set.fImages.count(); ++i) {
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auto& img = set.fImages[i];
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const SkRect dst =
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SkRect::MakeXYWH(pt.x(), pt.y(),
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img->width() * (1 + (set.fScales[i] - 1) * set.fVector.x()),
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img->height() * (1 + (set.fScales[i] - 1) * set.fVector.y()));
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canvas->drawImageRect(img.get(), dst, &paint);
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pt.offset(dst.width() * set.fVector.x(), dst.height() * set.fVector.y());
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}
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return pt;
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}
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static constexpr unsigned kSegLen = 15;
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static constexpr unsigned kStretchFactor = 4;
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SkSTArray<2, ImageSet> fSets;
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typedef GM INHERITED;
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};
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DEF_GM(return new ImageScaleAlignedGM();)
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