28fcae2ec7
Reason for revert: Want to reland the original CL. Original issue's description: > Revert of Rename kPMColor_SkColorType to kN32_SkColorType. (https://codereview.chromium.org/227433009/) > > Reason for revert: > breaking the Chrome deps roll. > http://build.chromium.org/p/chromium.linux/builders/Linux%20GN%20%28dbg%29/builds/839/steps/compile/logs/stdio > > Original issue's description: > > Rename kPMColor_SkColorType to kN32_SkColorType. > > > > The new name better represents what this flag means. > > > > BUG=skia:2384 > > > > Committed: http://code.google.com/p/skia/source/detail?r=14117 > > TBR=reed@google.com,scroggo@google.com > NOTREECHECKS=true > NOTRY=true > BUG=skia:2384 > > Committed: http://code.google.com/p/skia/source/detail?r=14144 R=reed@google.com, bensong@google.com TBR=bensong@google.com, reed@google.com NOTREECHECKS=true NOTRY=true BUG=skia:2384 Author: scroggo@google.com Review URL: https://codereview.chromium.org/235523003 git-svn-id: http://skia.googlecode.com/svn/trunk@14156 2bbb7eff-a529-9590-31e7-b0007b416f81
495 lines
16 KiB
Plaintext
495 lines
16 KiB
Plaintext
#import "SkSampleUIView.h"
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#define SKGL_CONFIG kEAGLColorFormatRGB565
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//#define SKGL_CONFIG kEAGLColorFormatRGBA8
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#define FORCE_REDRAW
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#include "SkCanvas.h"
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#include "SkCGUtils.h"
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#include "SampleApp.h"
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#if SK_SUPPORT_GPU
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//#define USE_GL_1
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#define USE_GL_2
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#include "gl/GrGLInterface.h"
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#include "GrContext.h"
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#include "SkGpuDevice.h"
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#endif
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class SkiOSDeviceManager : public SampleWindow::DeviceManager {
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public:
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SkiOSDeviceManager(GLint layerFBO) {
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#if SK_SUPPORT_GPU
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fCurContext = NULL;
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fCurIntf = NULL;
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fCurRenderTarget = NULL;
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fMSAASampleCount = 0;
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fLayerFBO = layerFBO;
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#endif
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fBackend = SkOSWindow::kNone_BackEndType;
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}
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virtual ~SkiOSDeviceManager() {
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#if SK_SUPPORT_GPU
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SkSafeUnref(fCurContext);
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SkSafeUnref(fCurIntf);
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SkSafeUnref(fCurRenderTarget);
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#endif
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}
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virtual void setUpBackend(SampleWindow* win, int msaaSampleCount) SK_OVERRIDE {
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SkASSERT(SkOSWindow::kNone_BackEndType == fBackend);
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fBackend = SkOSWindow::kNone_BackEndType;
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#if SK_SUPPORT_GPU
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switch (win->getDeviceType()) {
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// these two don't use GL
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case SampleWindow::kRaster_DeviceType:
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case SampleWindow::kPicture_DeviceType:
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break;
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// these guys use the native backend
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case SampleWindow::kGPU_DeviceType:
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case SampleWindow::kNullGPU_DeviceType:
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fBackend = SkOSWindow::kNativeGL_BackEndType;
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break;
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default:
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SkASSERT(false);
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break;
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}
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SkOSWindow::AttachmentInfo info;
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bool result = win->attach(fBackend, msaaSampleCount, &info);
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if (!result) {
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SkDebugf("Failed to initialize GL");
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return;
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}
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fMSAASampleCount = msaaSampleCount;
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SkASSERT(NULL == fCurIntf);
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switch (win->getDeviceType()) {
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// these two don't use GL
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case SampleWindow::kRaster_DeviceType:
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case SampleWindow::kPicture_DeviceType:
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fCurIntf = NULL;
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break;
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case SampleWindow::kGPU_DeviceType:
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fCurIntf = GrGLCreateNativeInterface();
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break;
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case SampleWindow::kNullGPU_DeviceType:
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fCurIntf = GrGLCreateNullInterface();
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break;
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default:
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SkASSERT(false);
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break;
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}
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SkASSERT(NULL == fCurContext);
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if (SkOSWindow::kNone_BackEndType != fBackend) {
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fCurContext = GrContext::Create(kOpenGL_GrBackend,
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(GrBackendContext) fCurIntf);
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}
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if ((NULL == fCurContext || NULL == fCurIntf) &&
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SkOSWindow::kNone_BackEndType != fBackend) {
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// We need some context and interface to see results if we're using a GL backend
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SkSafeUnref(fCurContext);
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SkSafeUnref(fCurIntf);
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SkDebugf("Failed to setup 3D");
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win->detach();
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}
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#endif // SK_SUPPORT_GPU
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// call windowSizeChanged to create the render target
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this->windowSizeChanged(win);
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}
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virtual void tearDownBackend(SampleWindow *win) SK_OVERRIDE {
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#if SK_SUPPORT_GPU
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SkSafeUnref(fCurContext);
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fCurContext = NULL;
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SkSafeUnref(fCurIntf);
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fCurIntf = NULL;
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SkSafeUnref(fCurRenderTarget);
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fCurRenderTarget = NULL;
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#endif
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win->detach();
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fBackend = SampleWindow::kNone_BackEndType;
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}
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virtual SkCanvas* createCanvas(SampleWindow::DeviceType dType,
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SampleWindow* win) {
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switch (dType) {
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case SampleWindow::kRaster_DeviceType:
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// fallthrough
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case SampleWindow::kPicture_DeviceType:
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// fallthrough
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#if SK_ANGLE
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case SampleWindow::kANGLE_DeviceType:
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#endif
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break;
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#if SK_SUPPORT_GPU
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case SampleWindow::kGPU_DeviceType:
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case SampleWindow::kNullGPU_DeviceType:
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if (fCurContext) {
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SkAutoTUnref<SkBaseDevice> device(new SkGpuDevice(fCurContext,
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fCurRenderTarget));
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return new SkCanvas(device);
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} else {
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return NULL;
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}
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break;
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#endif
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default:
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SkASSERT(false);
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return NULL;
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}
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return NULL;
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}
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virtual void publishCanvas(SampleWindow::DeviceType dType,
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SkCanvas* canvas,
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SampleWindow* win) SK_OVERRIDE {
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#if SK_SUPPORT_GPU
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if (NULL != fCurContext) {
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fCurContext->flush();
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}
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#endif
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win->present();
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}
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virtual void windowSizeChanged(SampleWindow* win) SK_OVERRIDE {
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#if SK_SUPPORT_GPU
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if (NULL != fCurContext) {
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SkOSWindow::AttachmentInfo info;
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win->attach(fBackend, fMSAASampleCount, &info);
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glBindFramebuffer(GL_FRAMEBUFFER, fLayerFBO);
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GrBackendRenderTargetDesc desc;
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desc.fWidth = SkScalarRoundToInt(win->width());
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desc.fHeight = SkScalarRoundToInt(win->height());
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desc.fConfig = kSkia8888_GrPixelConfig;
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desc.fRenderTargetHandle = fLayerFBO;
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desc.fSampleCnt = info.fSampleCount;
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desc.fStencilBits = info.fStencilBits;
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SkSafeUnref(fCurRenderTarget);
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fCurRenderTarget = fCurContext->wrapBackendRenderTarget(desc);
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}
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#endif
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}
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virtual GrContext* getGrContext() SK_OVERRIDE {
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#if SK_SUPPORT_GPU
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return fCurContext;
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#else
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return NULL;
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#endif
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}
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virtual GrRenderTarget* getGrRenderTarget() SK_OVERRIDE {
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#if SK_SUPPORT_GPU
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return fCurRenderTarget;
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#else
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return NULL;
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#endif
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}
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bool isUsingGL() const { return SkOSWindow::kNone_BackEndType != fBackend; }
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private:
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#if SK_SUPPORT_GPU
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GrContext* fCurContext;
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const GrGLInterface* fCurIntf;
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GrRenderTarget* fCurRenderTarget;
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int fMSAASampleCount;
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GLint fLayerFBO;
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#endif
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SkOSWindow::SkBackEndTypes fBackend;
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typedef SampleWindow::DeviceManager INHERITED;
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};
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////////////////////////////////////////////////////////////////////////////////
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@implementation SkSampleUIView
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@synthesize fTitle, fRasterLayer, fGLLayer;
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#include "SkApplication.h"
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#include "SkEvent.h"
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#include "SkWindow.h"
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struct FPSState {
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static const int FRAME_COUNT = 60;
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CFTimeInterval fNow0, fNow1;
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CFTimeInterval fTime0, fTime1, fTotalTime;
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int fFrameCounter;
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SkString str;
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FPSState() {
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fTime0 = fTime1 = fTotalTime = 0;
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fFrameCounter = 0;
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}
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void startDraw() {
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fNow0 = CACurrentMediaTime();
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}
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void endDraw() {
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fNow1 = CACurrentMediaTime();
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}
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void flush(SkOSWindow* hwnd) {
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CFTimeInterval now2 = CACurrentMediaTime();
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fTime0 += fNow1 - fNow0;
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fTime1 += now2 - fNow1;
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if (++fFrameCounter == FRAME_COUNT) {
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CFTimeInterval totalNow = CACurrentMediaTime();
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fTotalTime = totalNow - fTotalTime;
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//SkMSec ms0 = (int)(1000 * fTime0 / FRAME_COUNT);
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//SkMSec msTotal = (int)(1000 * fTotalTime / FRAME_COUNT);
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//str.printf(" ms: %d [%d], fps: %3.1f", msTotal, ms0,
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// FRAME_COUNT / fTotalTime);
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str.printf(" fps:%3.1f", FRAME_COUNT / fTotalTime);
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hwnd->setTitle(NULL);
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fTotalTime = totalNow;
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fTime0 = fTime1 = 0;
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fFrameCounter = 0;
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}
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}
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};
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static FPSState gFPS;
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#define FPS_StartDraw() gFPS.startDraw()
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#define FPS_EndDraw() gFPS.endDraw()
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#define FPS_Flush(wind) gFPS.flush(wind)
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///////////////////////////////////////////////////////////////////////////////
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- (id)initWithDefaults {
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if (self = [super initWithDefaults]) {
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fRedrawRequestPending = false;
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fFPSState = new FPSState;
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#ifdef USE_GL_1
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fGL.fContext = [[EAGLContext alloc] initWithAPI:kEAGLRenderingAPIOpenGLES1];
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#else
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fGL.fContext = [[EAGLContext alloc] initWithAPI:kEAGLRenderingAPIOpenGLES2];
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#endif
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if (!fGL.fContext || ![EAGLContext setCurrentContext:fGL.fContext])
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{
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[self release];
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return nil;
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}
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// Create default framebuffer object. The backing will be allocated for the current layer in -resizeFromLayer
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glGenFramebuffers(1, &fGL.fFramebuffer);
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glBindFramebuffer(GL_FRAMEBUFFER, fGL.fFramebuffer);
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glGenRenderbuffers(1, &fGL.fRenderbuffer);
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glGenRenderbuffers(1, &fGL.fStencilbuffer);
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glBindRenderbuffer(GL_RENDERBUFFER, fGL.fRenderbuffer);
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glFramebufferRenderbuffer(GL_FRAMEBUFFER, GL_COLOR_ATTACHMENT0, GL_RENDERBUFFER, fGL.fRenderbuffer);
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glBindRenderbuffer(GL_RENDERBUFFER, fGL.fStencilbuffer);
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glFramebufferRenderbuffer(GL_FRAMEBUFFER, GL_STENCIL_ATTACHMENT, GL_RENDERBUFFER, fGL.fStencilbuffer);
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self.fGLLayer = [CAEAGLLayer layer];
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fGLLayer.bounds = self.bounds;
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fGLLayer.anchorPoint = CGPointMake(0, 0);
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fGLLayer.opaque = TRUE;
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[self.layer addSublayer:fGLLayer];
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fGLLayer.drawableProperties = [NSDictionary dictionaryWithObjectsAndKeys:
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[NSNumber numberWithBool:NO],
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kEAGLDrawablePropertyRetainedBacking,
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SKGL_CONFIG,
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kEAGLDrawablePropertyColorFormat,
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nil];
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self.fRasterLayer = [CALayer layer];
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fRasterLayer.anchorPoint = CGPointMake(0, 0);
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fRasterLayer.opaque = TRUE;
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[self.layer addSublayer:fRasterLayer];
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NSMutableDictionary *newActions = [[NSMutableDictionary alloc] initWithObjectsAndKeys:[NSNull null], @"onOrderIn",
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[NSNull null], @"onOrderOut",
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[NSNull null], @"sublayers",
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[NSNull null], @"contents",
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[NSNull null], @"bounds",
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nil];
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fGLLayer.actions = newActions;
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fRasterLayer.actions = newActions;
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[newActions release];
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fDevManager = new SkiOSDeviceManager(fGL.fFramebuffer);
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static char* kDummyArgv = const_cast<char*>("dummyExecutableName");
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fWind = new SampleWindow(self, 1, &kDummyArgv, fDevManager);
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fWind->resize(self.frame.size.width, self.frame.size.height,
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kN32_SkColorType);
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}
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return self;
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}
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- (void)dealloc {
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delete fDevManager;
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delete fFPSState;
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self.fRasterLayer = nil;
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self.fGLLayer = nil;
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[fGL.fContext release];
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[super dealloc];
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}
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- (void)layoutSubviews {
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int W, H;
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// Allocate color buffer backing based on the current layer size
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glBindRenderbuffer(GL_RENDERBUFFER, fGL.fRenderbuffer);
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[fGL.fContext renderbufferStorage:GL_RENDERBUFFER fromDrawable:fGLLayer];
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glGetRenderbufferParameteriv(GL_RENDERBUFFER, GL_RENDERBUFFER_WIDTH, &fGL.fWidth);
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glGetRenderbufferParameteriv(GL_RENDERBUFFER, GL_RENDERBUFFER_HEIGHT, &fGL.fHeight);
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glBindRenderbuffer(GL_RENDERBUFFER, fGL.fStencilbuffer);
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glRenderbufferStorage(GL_RENDERBUFFER, GL_STENCIL_INDEX8, fGL.fWidth, fGL.fHeight);
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if (glCheckFramebufferStatus(GL_FRAMEBUFFER) != GL_FRAMEBUFFER_COMPLETE) {
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NSLog(@"Failed to make complete framebuffer object %x", glCheckFramebufferStatus(GL_FRAMEBUFFER));
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}
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if (fDevManager->isUsingGL()) {
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W = fGL.fWidth;
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H = fGL.fHeight;
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CGRect rect = CGRectMake(0, 0, W, H);
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fGLLayer.bounds = rect;
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}
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else {
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CGRect rect = self.bounds;
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W = (int)CGRectGetWidth(rect);
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H = (int)CGRectGetHeight(rect);
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fRasterLayer.bounds = rect;
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}
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printf("---- layoutSubviews %d %d\n", W, H);
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fWind->resize(W, H);
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fWind->inval(NULL);
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}
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///////////////////////////////////////////////////////////////////////////////
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- (void)drawWithCanvas:(SkCanvas*)canvas {
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fRedrawRequestPending = false;
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fFPSState->startDraw();
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fWind->draw(canvas);
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fFPSState->endDraw();
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#ifdef FORCE_REDRAW
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fWind->inval(NULL);
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#endif
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fFPSState->flush(fWind);
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}
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- (void)drawInGL {
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// This application only creates a single context which is already set current at this point.
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// This call is redundant, but needed if dealing with multiple contexts.
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[EAGLContext setCurrentContext:fGL.fContext];
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// This application only creates a single default framebuffer which is already bound at this point.
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// This call is redundant, but needed if dealing with multiple framebuffers.
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glBindFramebuffer(GL_FRAMEBUFFER, fGL.fFramebuffer);
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GLint scissorEnable;
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glGetIntegerv(GL_SCISSOR_TEST, &scissorEnable);
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glDisable(GL_SCISSOR_TEST);
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glClearColor(0,0,0,0);
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glClear(GL_COLOR_BUFFER_BIT);
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if (scissorEnable) {
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glEnable(GL_SCISSOR_TEST);
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}
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glViewport(0, 0, fGL.fWidth, fGL.fHeight);
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SkAutoTUnref<SkCanvas> canvas(fWind->createCanvas());
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// if we're not "retained", then we have to always redraw everything.
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// This call forces us to ignore the fDirtyRgn, and draw everywhere.
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// If we are "retained", we can skip this call (as the raster case does)
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fWind->forceInvalAll();
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[self drawWithCanvas:canvas];
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// This application only creates a single color renderbuffer which is already bound at this point.
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// This call is redundant, but needed if dealing with multiple renderbuffers.
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glBindRenderbuffer(GL_RENDERBUFFER, fGL.fRenderbuffer);
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[fGL.fContext presentRenderbuffer:GL_RENDERBUFFER];
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}
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- (void)drawInRaster {
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SkAutoTUnref<SkCanvas> canvas(fWind->createCanvas());
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[self drawWithCanvas:canvas];
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CGImageRef cgimage = SkCreateCGImageRef(fWind->getBitmap());
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fRasterLayer.contents = (id)cgimage;
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CGImageRelease(cgimage);
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}
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- (void)forceRedraw {
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if (fDevManager->isUsingGL())
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[self drawInGL];
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else
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[self drawInRaster];
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}
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///////////////////////////////////////////////////////////////////////////////
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- (void)setSkTitle:(const char *)title {
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NSString* text = [NSString stringWithUTF8String:title];
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if ([text length] > 0)
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self.fTitle = text;
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if (fTitleItem && fTitle) {
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fTitleItem.title = [NSString stringWithFormat:@"%@%@", fTitle,
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[NSString stringWithUTF8String:fFPSState->str.c_str()]];
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}
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}
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- (void)postInvalWithRect:(const SkIRect*)r {
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if (!fRedrawRequestPending) {
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fRedrawRequestPending = true;
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bool gl = fDevManager->isUsingGL();
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[CATransaction begin];
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[CATransaction setAnimationDuration:0];
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fRasterLayer.hidden = gl;
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fGLLayer.hidden = !gl;
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[CATransaction commit];
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if (gl) {
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[self performSelector:@selector(drawInGL) withObject:nil afterDelay:0];
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}
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else {
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[self performSelector:@selector(drawInRaster) withObject:nil afterDelay:0];
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[self setNeedsDisplay];
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}
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}
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}
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- (void)getAttachmentInfo:(SkOSWindow::AttachmentInfo*)info {
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glBindRenderbuffer(GL_RENDERBUFFER, fGL.fRenderbuffer);
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glGetRenderbufferParameteriv(GL_RENDERBUFFER,
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GL_RENDERBUFFER_STENCIL_SIZE,
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&info->fStencilBits);
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glGetRenderbufferParameteriv(GL_RENDERBUFFER,
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GL_RENDERBUFFER_SAMPLES_APPLE,
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&info->fSampleCount);
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}
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@end
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