2016-04-06 13:08:59 +00:00
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/*
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* Copyright 2016 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 "VulkanViewer.h"
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2016-04-08 14:24:09 +00:00
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#include "GMSlide.h"
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#include "SKPSlide.h"
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2016-04-06 13:08:59 +00:00
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#include "SkCanvas.h"
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#include "SkCommonFlags.h"
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2016-04-08 14:24:09 +00:00
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#include "SkOSFile.h"
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#include "SkRandom.h"
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#include "SkStream.h"
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2016-04-06 13:08:59 +00:00
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Application* Application::Create(int argc, char** argv, void* platformData) {
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return new VulkanViewer(argc, argv, platformData);
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}
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2016-04-06 19:08:51 +00:00
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static bool on_key_handler(Window::Key key, Window::InputState state, uint32_t modifiers,
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void* userData) {
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2016-04-06 13:08:59 +00:00
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VulkanViewer* vv = reinterpret_cast<VulkanViewer*>(userData);
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2016-04-06 19:08:51 +00:00
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return vv->onKey(key, state, modifiers);
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2016-04-06 13:08:59 +00:00
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}
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2016-04-08 19:51:45 +00:00
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static bool on_char_handler(SkUnichar c, uint32_t modifiers, void* userData) {
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VulkanViewer* vv = reinterpret_cast<VulkanViewer*>(userData);
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return vv->onChar(c, modifiers);
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}
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2016-04-06 13:08:59 +00:00
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static void on_paint_handler(SkCanvas* canvas, void* userData) {
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VulkanViewer* vv = reinterpret_cast<VulkanViewer*>(userData);
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return vv->onPaint(canvas);
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}
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2016-04-08 14:24:09 +00:00
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DEFINE_bool2(fullscreen, f, true, "Run fullscreen.");
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DEFINE_string(key, "", "Space-separated key/value pairs to add to JSON identifying this builder.");
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DEFINE_string2(match, m, nullptr,
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"[~][^]substring[$] [...] of bench name to run.\n"
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"Multiple matches may be separated by spaces.\n"
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"~ causes a matching bench to always be skipped\n"
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"^ requires the start of the bench to match\n"
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"$ requires the end of the bench to match\n"
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"^ and $ requires an exact match\n"
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"If a bench does not match any list entry,\n"
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"it is skipped unless some list entry starts with ~");
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DEFINE_string(skps, "skps", "Directory to read skps from.");
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2016-04-08 19:51:45 +00:00
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VulkanViewer::VulkanViewer(int argc, char** argv, void* platformData)
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: fCurrentMeasurement(0)
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, fDisplayStats(false)
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2016-04-11 15:30:40 +00:00
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, fZoomCenterX(0.0f)
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, fZoomCenterY(0.0f)
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, fZoomLevel(0.0f)
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, fZoomScale(SK_Scalar1)
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{
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memset(fMeasurements, 0, sizeof(fMeasurements));
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SkDebugf("Command line arguments: ");
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for (int i = 1; i < argc; ++i) {
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SkDebugf("%s ", argv[i]);
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}
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SkDebugf("\n");
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SkCommandLineFlags::Parse(argc, argv);
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2016-04-06 13:08:59 +00:00
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fWindow = Window::CreateNativeWindow(platformData);
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fWindow->attach(Window::kVulkan_BackendType, 0, nullptr);
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// register callbacks
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fWindow->registerKeyFunc(on_key_handler, this);
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fWindow->registerCharFunc(on_char_handler, this);
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fWindow->registerPaintFunc(on_paint_handler, this);
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2016-04-08 14:24:09 +00:00
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// set up slides
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this->initSlides();
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2016-04-21 14:59:44 +00:00
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fAnimTimer.run();
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// set up first frame
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fCurrentSlide = 0;
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setupCurrentSlide(-1);
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2016-04-21 14:59:44 +00:00
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updateMatrix();
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2016-04-08 14:24:09 +00:00
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fWindow->show();
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}
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void VulkanViewer::initSlides() {
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const skiagm::GMRegistry* gms(skiagm::GMRegistry::Head());
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while (gms) {
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SkAutoTDelete<skiagm::GM> gm(gms->factory()(nullptr));
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if (!SkCommandLineFlags::ShouldSkip(FLAGS_match, gm->getName())) {
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sk_sp<Slide> slide(new GMSlide(gm.release()));
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fSlides.push_back(slide);
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}
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gms = gms->next();
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}
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// reverse array
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for (int i = 0; i < fSlides.count()/2; ++i) {
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sk_sp<Slide> temp = fSlides[i];
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fSlides[i] = fSlides[fSlides.count() - i - 1];
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fSlides[fSlides.count() - i - 1] = temp;
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}
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// SKPs
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for (int i = 0; i < FLAGS_skps.count(); i++) {
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if (SkStrEndsWith(FLAGS_skps[i], ".skp")) {
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if (SkCommandLineFlags::ShouldSkip(FLAGS_match, FLAGS_skps[i])) {
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continue;
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}
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2016-04-08 14:24:09 +00:00
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SkString path(FLAGS_skps[i]);
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sk_sp<SKPSlide> slide(new SKPSlide(SkOSPath::Basename(path.c_str()), path));
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if (slide) {
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fSlides.push_back(slide);
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}
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} else {
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SkOSFile::Iter it(FLAGS_skps[i], ".skp");
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SkString skpName;
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while (it.next(&skpName)) {
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if (SkCommandLineFlags::ShouldSkip(FLAGS_match, skpName.c_str())) {
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continue;
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}
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SkString path = SkOSPath::Join(FLAGS_skps[i], skpName.c_str());
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sk_sp<SKPSlide> slide(new SKPSlide(skpName, path));
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2016-04-08 14:24:09 +00:00
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if (slide) {
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fSlides.push_back(slide);
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}
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}
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}
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}
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}
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2016-04-06 13:08:59 +00:00
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VulkanViewer::~VulkanViewer() {
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fWindow->detach();
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delete fWindow;
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}
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2016-04-08 19:51:45 +00:00
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void VulkanViewer::setupCurrentSlide(int previousSlide) {
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SkString title("VulkanViewer: ");
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title.append(fSlides[fCurrentSlide]->getName());
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fSlides[fCurrentSlide]->load();
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if (previousSlide >= 0) {
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fSlides[previousSlide]->unload();
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}
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fWindow->setTitle(title.c_str());
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fWindow->inval();
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}
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#define MAX_ZOOM_LEVEL 8
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#define MIN_ZOOM_LEVEL -8
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void VulkanViewer::changeZoomLevel(float delta) {
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fZoomLevel += delta;
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if (fZoomLevel > 0) {
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fZoomLevel = SkMinScalar(fZoomLevel, MAX_ZOOM_LEVEL);
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fZoomScale = fZoomLevel + SK_Scalar1;
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} else if (fZoomLevel < 0) {
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fZoomLevel = SkMaxScalar(fZoomLevel, MIN_ZOOM_LEVEL);
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fZoomScale = SK_Scalar1 / (SK_Scalar1 - fZoomLevel);
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} else {
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fZoomScale = SK_Scalar1;
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}
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this->updateMatrix();
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}
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void VulkanViewer::updateMatrix(){
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SkMatrix m;
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m.reset();
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if (fZoomLevel) {
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SkPoint center;
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//m = this->getLocalMatrix();//.invert(&m);
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m.mapXY(fZoomCenterX, fZoomCenterY, ¢er);
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SkScalar cx = center.fX;
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SkScalar cy = center.fY;
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m.setTranslate(-cx, -cy);
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m.postScale(fZoomScale, fZoomScale);
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m.postTranslate(cx, cy);
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}
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// TODO: add gesture support
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// Apply any gesture matrix
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//m.preConcat(fGesture.localM());
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//m.preConcat(fGesture.globalM());
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fLocalMatrix = m;
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}
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2016-04-06 19:08:51 +00:00
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bool VulkanViewer::onKey(Window::Key key, Window::InputState state, uint32_t modifiers) {
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if (Window::kDown_InputState == state) {
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switch (key) {
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case Window::kRight_Key: {
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int previousSlide = fCurrentSlide;
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fCurrentSlide++;
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if (fCurrentSlide >= fSlides.count()) {
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fCurrentSlide = 0;
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}
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setupCurrentSlide(previousSlide);
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return true;
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}
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case Window::kLeft_Key: {
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int previousSlide = fCurrentSlide;
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fCurrentSlide--;
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if (fCurrentSlide < 0) {
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fCurrentSlide = fSlides.count() - 1;
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}
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SkString title("VulkanViewer: ");
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title.append(fSlides[fCurrentSlide]->getName());
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fWindow->setTitle(title.c_str());
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setupCurrentSlide(previousSlide);
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return true;
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}
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case Window::kUp_Key: {
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this->changeZoomLevel(1.f / 32.f);
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2016-04-11 15:30:40 +00:00
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fWindow->inval();
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2016-04-08 19:51:45 +00:00
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return true;
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2016-04-08 14:24:09 +00:00
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}
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2016-04-08 19:51:45 +00:00
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case Window::kDown_Key: {
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this->changeZoomLevel(-1.f / 32.f);
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2016-04-11 15:30:40 +00:00
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fWindow->inval();
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2016-04-08 19:51:45 +00:00
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return true;
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}
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default:
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break;
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}
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}
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2016-04-08 19:51:45 +00:00
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return false;
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}
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bool VulkanViewer::onChar(SkUnichar c, uint32_t modifiers) {
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if ('s' == c) {
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fDisplayStats = !fDisplayStats;
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return true;
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}
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return false;
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2016-04-06 13:08:59 +00:00
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}
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void VulkanViewer::onPaint(SkCanvas* canvas) {
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2016-04-08 19:51:45 +00:00
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int count = canvas->save();
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2016-04-21 14:59:44 +00:00
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if (fWindow->supportsContentRect()) {
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SkRect contentRect = fWindow->getContentRect();
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canvas->clipRect(contentRect);
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canvas->translate(contentRect.fLeft, contentRect.fTop);
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}
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canvas->clear(SK_ColorWHITE);
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if (fWindow->supportsContentRect() && fWindow->scaleContentToFit()) {
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const SkRect contentRect = fWindow->getContentRect();
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const SkISize slideSize = fSlides[fCurrentSlide]->getDimensions();
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const SkRect slideBounds = SkRect::MakeIWH(slideSize.width(), slideSize.height());
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SkMatrix matrix;
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matrix.setRectToRect(slideBounds, contentRect, SkMatrix::kCenter_ScaleToFit);
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canvas->concat(matrix);
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}
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canvas->concat(fLocalMatrix);
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2016-04-08 14:24:09 +00:00
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fSlides[fCurrentSlide]->draw(canvas);
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canvas->restoreToCount(count);
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if (fDisplayStats) {
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drawStats(canvas);
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}
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2016-04-07 18:09:51 +00:00
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}
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void VulkanViewer::drawStats(SkCanvas* canvas) {
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static const float kPixelPerMS = 2.0f;
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static const int kDisplayWidth = 130;
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static const int kDisplayHeight = 100;
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static const int kDisplayPadding = 10;
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static const int kGraphPadding = 3;
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static const SkScalar kBaseMS = 1000.f / 60.f; // ms/frame to hit 60 fps
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SkISize canvasSize = canvas->getDeviceSize();
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SkRect rect = SkRect::MakeXYWH(SkIntToScalar(canvasSize.fWidth-kDisplayWidth-kDisplayPadding),
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SkIntToScalar(kDisplayPadding),
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SkIntToScalar(kDisplayWidth), SkIntToScalar(kDisplayHeight));
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SkPaint paint;
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canvas->save();
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2016-04-21 14:59:44 +00:00
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if (fWindow->supportsContentRect()) {
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SkRect contentRect = fWindow->getContentRect();
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canvas->clipRect(contentRect);
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canvas->translate(contentRect.fLeft, contentRect.fTop);
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}
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2016-04-07 18:09:51 +00:00
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canvas->clipRect(rect);
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paint.setColor(SK_ColorBLACK);
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canvas->drawRect(rect, paint);
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// draw the 16ms line
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paint.setColor(SK_ColorLTGRAY);
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canvas->drawLine(rect.fLeft, rect.fBottom - kBaseMS*kPixelPerMS,
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rect.fRight, rect.fBottom - kBaseMS*kPixelPerMS, paint);
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paint.setColor(SK_ColorRED);
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paint.setStyle(SkPaint::kStroke_Style);
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canvas->drawRect(rect, paint);
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int x = SkScalarTruncToInt(rect.fLeft) + kGraphPadding;
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const int xStep = 2;
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const int startY = SkScalarTruncToInt(rect.fBottom);
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int i = fCurrentMeasurement;
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do {
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int endY = startY - (int)(fMeasurements[i] * kPixelPerMS + 0.5); // round to nearest value
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canvas->drawLine(SkIntToScalar(x), SkIntToScalar(startY),
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SkIntToScalar(x), SkIntToScalar(endY), paint);
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i++;
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i &= (kMeasurementCount - 1); // fast mod
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x += xStep;
|
|
|
|
} while (i != fCurrentMeasurement);
|
2016-04-06 13:08:59 +00:00
|
|
|
|
|
|
|
canvas->restore();
|
|
|
|
}
|
|
|
|
|
2016-04-07 18:09:51 +00:00
|
|
|
void VulkanViewer::onIdle(double ms) {
|
|
|
|
// Record measurements
|
|
|
|
fMeasurements[fCurrentMeasurement++] = ms;
|
|
|
|
fCurrentMeasurement &= (kMeasurementCount - 1); // fast mod
|
|
|
|
SkASSERT(fCurrentMeasurement < kMeasurementCount);
|
|
|
|
|
2016-04-08 19:51:45 +00:00
|
|
|
fAnimTimer.updateTime();
|
|
|
|
if (fDisplayStats || fSlides[fCurrentSlide]->animate(fAnimTimer)) {
|
|
|
|
fWindow->inval();
|
|
|
|
}
|
2016-04-06 13:08:59 +00:00
|
|
|
}
|