3724e574a7
BUG=skia: GOLD_TRYBOT_URL= https://gold.skia.org/search2?unt=true&query=source_type%3Dgm&master=false&issue=1815823002 CQ_EXTRA_TRYBOTS=client.skia.compile:Build-Ubuntu-GCC-x86_64-Release-CMake-Trybot,Build-Mac-Clang-x86_64-Release-CMake-Trybot Committed: https://skia.googlesource.com/skia/+/fe3456cb006110d045b26ff3f8681b893a757b58 Review URL: https://codereview.chromium.org/1815823002
338 lines
10 KiB
C++
338 lines
10 KiB
C++
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/*
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* Copyright 2011 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 "gl/GLContext.h"
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#include <GLES2/gl2.h>
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#define EGL_EGLEXT_PROTOTYPES
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#include <EGL/egl.h>
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#include <EGL/eglext.h>
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#include "gl/GrGLDefines.h"
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#include "gl/GrGLUtil.h"
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namespace {
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// TODO: Share this class with ANGLE if/when it gets support for EGL_KHR_fence_sync.
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class SkEGLFenceSync : public SkGpuFenceSync {
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public:
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static SkEGLFenceSync* CreateIfSupported(EGLDisplay);
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SkPlatformGpuFence SK_WARN_UNUSED_RESULT insertFence() const override;
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bool waitFence(SkPlatformGpuFence fence, bool flush) const override;
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void deleteFence(SkPlatformGpuFence fence) const override;
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private:
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SkEGLFenceSync(EGLDisplay display) : fDisplay(display) {}
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EGLDisplay fDisplay;
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typedef SkGpuFenceSync INHERITED;
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};
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class EGLGLContext : public sk_gpu_test::GLContext {
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public:
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EGLGLContext(GrGLStandard forcedGpuAPI);
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~EGLGLContext() override;
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GrEGLImage texture2DToEGLImage(GrGLuint texID) const override;
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void destroyEGLImage(GrEGLImage) const override;
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GrGLuint eglImageToExternalTexture(GrEGLImage) const override;
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sk_gpu_test::GLContext* createNew() const override;
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private:
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void destroyGLContext();
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void onPlatformMakeCurrent() const override;
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void onPlatformSwapBuffers() const override;
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GrGLFuncPtr onPlatformGetProcAddress(const char*) const override;
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EGLContext fContext;
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EGLDisplay fDisplay;
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EGLSurface fSurface;
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};
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EGLGLContext::EGLGLContext(GrGLStandard forcedGpuAPI)
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: fContext(EGL_NO_CONTEXT)
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, fDisplay(EGL_NO_DISPLAY)
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, fSurface(EGL_NO_SURFACE) {
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static const EGLint kEGLContextAttribsForOpenGL[] = {
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EGL_NONE
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};
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static const EGLint kEGLContextAttribsForOpenGLES[] = {
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EGL_CONTEXT_CLIENT_VERSION, 2,
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EGL_NONE
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};
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static const struct {
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const EGLint* fContextAttribs;
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EGLenum fAPI;
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EGLint fRenderableTypeBit;
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GrGLStandard fStandard;
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} kAPIs[] = {
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{ // OpenGL
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kEGLContextAttribsForOpenGL,
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EGL_OPENGL_API,
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EGL_OPENGL_BIT,
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kGL_GrGLStandard
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},
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{ // OpenGL ES. This seems to work for both ES2 and 3 (when available).
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kEGLContextAttribsForOpenGLES,
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EGL_OPENGL_ES_API,
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EGL_OPENGL_ES2_BIT,
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kGLES_GrGLStandard
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},
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};
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size_t apiLimit = SK_ARRAY_COUNT(kAPIs);
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size_t api = 0;
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if (forcedGpuAPI == kGL_GrGLStandard) {
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apiLimit = 1;
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} else if (forcedGpuAPI == kGLES_GrGLStandard) {
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api = 1;
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}
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SkASSERT(forcedGpuAPI == kNone_GrGLStandard || kAPIs[api].fStandard == forcedGpuAPI);
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SkAutoTUnref<const GrGLInterface> gl;
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for (; nullptr == gl.get() && api < apiLimit; ++api) {
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fDisplay = eglGetDisplay(EGL_DEFAULT_DISPLAY);
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EGLint majorVersion;
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EGLint minorVersion;
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eglInitialize(fDisplay, &majorVersion, &minorVersion);
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#if 0
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SkDebugf("VENDOR: %s\n", eglQueryString(fDisplay, EGL_VENDOR));
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SkDebugf("APIS: %s\n", eglQueryString(fDisplay, EGL_CLIENT_APIS));
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SkDebugf("VERSION: %s\n", eglQueryString(fDisplay, EGL_VERSION));
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SkDebugf("EXTENSIONS %s\n", eglQueryString(fDisplay, EGL_EXTENSIONS));
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#endif
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if (!eglBindAPI(kAPIs[api].fAPI)) {
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continue;
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}
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EGLint numConfigs = 0;
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const EGLint configAttribs[] = {
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EGL_SURFACE_TYPE, EGL_PBUFFER_BIT,
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EGL_RENDERABLE_TYPE, kAPIs[api].fRenderableTypeBit,
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EGL_RED_SIZE, 8,
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EGL_GREEN_SIZE, 8,
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EGL_BLUE_SIZE, 8,
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EGL_ALPHA_SIZE, 8,
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EGL_NONE
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};
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EGLConfig surfaceConfig;
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if (!eglChooseConfig(fDisplay, configAttribs, &surfaceConfig, 1, &numConfigs)) {
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SkDebugf("eglChooseConfig failed. EGL Error: 0x%08x\n", eglGetError());
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continue;
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}
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if (0 == numConfigs) {
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SkDebugf("No suitable EGL config found.\n");
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continue;
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}
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fContext = eglCreateContext(fDisplay, surfaceConfig, nullptr, kAPIs[api].fContextAttribs);
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if (EGL_NO_CONTEXT == fContext) {
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SkDebugf("eglCreateContext failed. EGL Error: 0x%08x\n", eglGetError());
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continue;
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}
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static const EGLint kSurfaceAttribs[] = {
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EGL_WIDTH, 1,
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EGL_HEIGHT, 1,
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EGL_NONE
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};
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fSurface = eglCreatePbufferSurface(fDisplay, surfaceConfig, kSurfaceAttribs);
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if (EGL_NO_SURFACE == fSurface) {
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SkDebugf("eglCreatePbufferSurface failed. EGL Error: 0x%08x\n", eglGetError());
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this->destroyGLContext();
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continue;
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}
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if (!eglMakeCurrent(fDisplay, fSurface, fSurface, fContext)) {
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SkDebugf("eglMakeCurrent failed. EGL Error: 0x%08x\n", eglGetError());
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this->destroyGLContext();
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continue;
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}
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gl.reset(GrGLCreateNativeInterface());
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if (nullptr == gl.get()) {
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SkDebugf("Failed to create gl interface.\n");
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this->destroyGLContext();
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continue;
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}
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if (!gl->validate()) {
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SkDebugf("Failed to validate gl interface.\n");
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this->destroyGLContext();
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continue;
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}
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this->init(gl.release(), SkEGLFenceSync::CreateIfSupported(fDisplay));
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break;
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}
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}
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EGLGLContext::~EGLGLContext() {
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this->teardown();
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this->destroyGLContext();
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}
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void EGLGLContext::destroyGLContext() {
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if (fDisplay) {
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eglMakeCurrent(fDisplay, 0, 0, 0);
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if (fContext) {
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eglDestroyContext(fDisplay, fContext);
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fContext = EGL_NO_CONTEXT;
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}
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if (fSurface) {
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eglDestroySurface(fDisplay, fSurface);
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fSurface = EGL_NO_SURFACE;
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}
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//TODO should we close the display?
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fDisplay = EGL_NO_DISPLAY;
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}
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}
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GrEGLImage EGLGLContext::texture2DToEGLImage(GrGLuint texID) const {
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if (!this->gl()->hasExtension("EGL_KHR_gl_texture_2D_image")) {
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return GR_EGL_NO_IMAGE;
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}
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GrEGLImage img;
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GrEGLint attribs[] = { GR_EGL_GL_TEXTURE_LEVEL, 0, GR_EGL_NONE };
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GrEGLClientBuffer clientBuffer = reinterpret_cast<GrEGLClientBuffer>(texID);
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GR_GL_CALL_RET(this->gl(), img,
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EGLCreateImage(fDisplay, fContext, GR_EGL_GL_TEXTURE_2D, clientBuffer, attribs));
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return img;
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}
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void EGLGLContext::destroyEGLImage(GrEGLImage image) const {
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GR_GL_CALL(this->gl(), EGLDestroyImage(fDisplay, image));
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}
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GrGLuint EGLGLContext::eglImageToExternalTexture(GrEGLImage image) const {
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GrGLClearErr(this->gl());
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if (!this->gl()->hasExtension("GL_OES_EGL_image_external")) {
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return 0;
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}
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typedef GrGLvoid (*EGLImageTargetTexture2DProc)(GrGLenum, GrGLeglImage);
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EGLImageTargetTexture2DProc glEGLImageTargetTexture2D =
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(EGLImageTargetTexture2DProc) eglGetProcAddress("glEGLImageTargetTexture2DOES");
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if (!glEGLImageTargetTexture2D) {
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return 0;
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}
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GrGLuint texID;
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glGenTextures(1, &texID);
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if (!texID) {
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return 0;
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}
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glBindTexture(GR_GL_TEXTURE_EXTERNAL, texID);
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if (glGetError() != GR_GL_NO_ERROR) {
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glDeleteTextures(1, &texID);
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return 0;
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}
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glEGLImageTargetTexture2D(GR_GL_TEXTURE_EXTERNAL, image);
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if (glGetError() != GR_GL_NO_ERROR) {
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glDeleteTextures(1, &texID);
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return 0;
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}
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return texID;
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}
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sk_gpu_test::GLContext* EGLGLContext::createNew() const {
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sk_gpu_test::GLContext* ctx = new EGLGLContext(this->gl()->fStandard);
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if (ctx) {
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ctx->makeCurrent();
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}
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return ctx;
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}
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void EGLGLContext::onPlatformMakeCurrent() const {
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if (!eglMakeCurrent(fDisplay, fSurface, fSurface, fContext)) {
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SkDebugf("Could not set the context.\n");
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}
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}
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void EGLGLContext::onPlatformSwapBuffers() const {
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if (!eglSwapBuffers(fDisplay, fSurface)) {
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SkDebugf("Could not complete eglSwapBuffers.\n");
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}
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}
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GrGLFuncPtr EGLGLContext::onPlatformGetProcAddress(const char* procName) const {
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return eglGetProcAddress(procName);
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}
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static bool supports_egl_extension(EGLDisplay display, const char* extension) {
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size_t extensionLength = strlen(extension);
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const char* extensionsStr = eglQueryString(display, EGL_EXTENSIONS);
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while (const char* match = strstr(extensionsStr, extension)) {
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// Ensure the string we found is its own extension, not a substring of a larger extension
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// (e.g. GL_ARB_occlusion_query / GL_ARB_occlusion_query2).
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if ((match == extensionsStr || match[-1] == ' ') &&
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(match[extensionLength] == ' ' || match[extensionLength] == '\0')) {
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return true;
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}
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extensionsStr = match + extensionLength;
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}
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return false;
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}
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SkEGLFenceSync* SkEGLFenceSync::CreateIfSupported(EGLDisplay display) {
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if (!display || !supports_egl_extension(display, "EGL_KHR_fence_sync")) {
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return nullptr;
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}
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return new SkEGLFenceSync(display);
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}
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SkPlatformGpuFence SkEGLFenceSync::insertFence() const {
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return eglCreateSyncKHR(fDisplay, EGL_SYNC_FENCE_KHR, nullptr);
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}
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bool SkEGLFenceSync::waitFence(SkPlatformGpuFence platformFence, bool flush) const {
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EGLSyncKHR eglsync = static_cast<EGLSyncKHR>(platformFence);
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return EGL_CONDITION_SATISFIED_KHR ==
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eglClientWaitSyncKHR(fDisplay,
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eglsync,
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flush ? EGL_SYNC_FLUSH_COMMANDS_BIT_KHR : 0,
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EGL_FOREVER_KHR);
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}
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void SkEGLFenceSync::deleteFence(SkPlatformGpuFence platformFence) const {
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EGLSyncKHR eglsync = static_cast<EGLSyncKHR>(platformFence);
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eglDestroySyncKHR(fDisplay, eglsync);
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}
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} // anonymous namespace
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namespace sk_gpu_test {
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GLContext *CreatePlatformGLContext(GrGLStandard forcedGpuAPI, GLContext *shareContext) {
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SkASSERT(!shareContext);
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if (shareContext) {
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return nullptr;
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}
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EGLGLContext *ctx = new EGLGLContext(forcedGpuAPI);
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if (!ctx->isValid()) {
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delete ctx;
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return nullptr;
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}
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return ctx;
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}
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} // namespace sk_gpu_test
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