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641 lines
22 KiB
641 lines
22 KiB
/*-------------------------------------------------------------------------
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* drawElements Quality Program EGL Module
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* ---------------------------------------
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*
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* Copyright 2014 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*
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*//*!
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* \file
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* \brief EGL image tests.
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*//*--------------------------------------------------------------------*/
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#include "teglImageTests.hpp"
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#include "teglImageUtil.hpp"
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#include "teglAndroidUtil.hpp"
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#include "teglImageFormatTests.hpp"
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#include "egluNativeDisplay.hpp"
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#include "egluNativeWindow.hpp"
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#include "egluNativePixmap.hpp"
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#include "egluStrUtil.hpp"
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#include "egluUnique.hpp"
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#include "egluUtil.hpp"
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#include "egluGLUtil.hpp"
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#include "eglwLibrary.hpp"
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#include "eglwEnums.hpp"
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#include "gluDefs.hpp"
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#include "gluCallLogWrapper.hpp"
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#include "gluObjectWrapper.hpp"
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#include "gluStrUtil.hpp"
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#include "glwDefs.hpp"
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#include "glwEnums.hpp"
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#include "tcuTestLog.hpp"
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#include "tcuCommandLine.hpp"
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#include "deUniquePtr.hpp"
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#include <algorithm>
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#include <sstream>
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#include <string>
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#include <vector>
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#include <set>
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using tcu::TestLog;
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using std::string;
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using std::vector;
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using std::set;
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using std::ostringstream;
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using de::MovePtr;
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using de::UniquePtr;
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using glu::ApiType;
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using glu::ContextType;
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using glu::Texture;
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using eglu::AttribMap;
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using eglu::NativeWindow;
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using eglu::NativePixmap;
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using eglu::UniqueImage;
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using eglu::UniqueSurface;
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using eglu::ScopedCurrentContext;
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using namespace glw;
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using namespace eglw;
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namespace deqp
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{
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namespace egl
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{
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namespace Image
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{
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#define CHECK_EXTENSION(DPY, EXTNAME) \
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TCU_CHECK_AND_THROW(NotSupportedError, eglu::hasExtension(m_eglTestCtx.getLibrary(), DPY, EXTNAME), (string("Unsupported extension: ") + (EXTNAME)).c_str())
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template <typename RetVal>
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RetVal checkCallError (EglTestContext& eglTestCtx, const char* call, RetVal returnValue, EGLint expectError)
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{
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tcu::TestContext& testCtx = eglTestCtx.getTestContext();
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TestLog& log = testCtx.getLog();
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EGLint error;
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log << TestLog::Message << call << TestLog::EndMessage;
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error = eglTestCtx.getLibrary().getError();
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if (error != expectError)
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{
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log << TestLog::Message << " Fail: Error code mismatch! Expected " << eglu::getErrorStr(expectError) << ", got " << eglu::getErrorStr(error) << TestLog::EndMessage;
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log << TestLog::Message << " " << returnValue << " was returned" << TestLog::EndMessage;
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if (testCtx.getTestResult() == QP_TEST_RESULT_PASS)
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testCtx.setTestResult(QP_TEST_RESULT_FAIL, "Invalid error code");
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}
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return returnValue;
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}
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template <typename RetVal>
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void checkCallReturn (EglTestContext& eglTestCtx, const char* call, RetVal returnValue, RetVal expectReturnValue, EGLint expectError)
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{
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tcu::TestContext& testCtx = eglTestCtx.getTestContext();
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TestLog& log = testCtx.getLog();
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EGLint error;
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log << TestLog::Message << call << TestLog::EndMessage;
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error = eglTestCtx.getLibrary().getError();
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if (returnValue != expectReturnValue)
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{
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log << TestLog::Message << " Fail: Return value mismatch! Expected " << expectReturnValue << ", got " << returnValue << TestLog::EndMessage;
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if (testCtx.getTestResult() == QP_TEST_RESULT_PASS)
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testCtx.setTestResult(QP_TEST_RESULT_FAIL, "Invalid return value");
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}
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if (error != expectError)
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{
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log << TestLog::Message << " Fail: Error code mismatch! Expected " << eglu::getErrorStr(expectError) << ", got " << eglu::getErrorStr(error) << TestLog::EndMessage;
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if (testCtx.getTestResult() == QP_TEST_RESULT_PASS)
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testCtx.setTestResult(QP_TEST_RESULT_FAIL, "Invalid error code");
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}
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}
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// \note These macros expect "EglTestContext m_eglTestCtx" to be defined.
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#define CHECK_EXT_CALL_RET(CALL, EXPECT_RETURN_VALUE, EXPECT_ERROR) checkCallReturn(m_eglTestCtx, #CALL, CALL, (EXPECT_RETURN_VALUE), (EXPECT_ERROR))
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#define CHECK_EXT_CALL_ERR(CALL, EXPECT_ERROR) checkCallError(m_eglTestCtx, #CALL, CALL, (EXPECT_ERROR))
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class ImageTestCase : public TestCase, public glu::CallLogWrapper
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{
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public:
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ImageTestCase (EglTestContext& eglTestCtx, ApiType api, const string& name, const string& desc)
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: TestCase (eglTestCtx, name.c_str(), desc.c_str())
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, glu::CallLogWrapper (m_gl, m_testCtx.getLog())
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, m_api (api)
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, m_display (EGL_NO_DISPLAY)
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{
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}
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void init (void)
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{
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DE_ASSERT(m_display == EGL_NO_DISPLAY);
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m_display = eglu::getAndInitDisplay(m_eglTestCtx.getNativeDisplay());
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const char* extensions[] = { "GL_OES_EGL_image" };
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m_eglTestCtx.initGLFunctions(&m_gl, m_api, DE_LENGTH_OF_ARRAY(extensions), &extensions[0]);
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}
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void deinit (void)
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{
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m_eglTestCtx.getLibrary().terminate(m_display);
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m_display = EGL_NO_DISPLAY;
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}
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bool isGLRedSupported (void)
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{
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return m_api.getMajorVersion() >= 3 || glu::hasExtension(m_gl, m_api, "GL_EXT_texture_rg");
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}
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protected:
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glw::Functions m_gl;
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ApiType m_api;
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EGLDisplay m_display;
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};
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class InvalidCreateImage : public ImageTestCase
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{
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public:
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typedef EGLImage (Library::*createImage)(EGLDisplay, EGLContext, EGLenum, EGLClientBuffer, const EGLAttrib *) const ;
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typedef EGLImageKHR (Library::*createImageKHR)(EGLDisplay, EGLContext, EGLenum, EGLClientBuffer, const EGLint *) const ;
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InvalidCreateImage (EglTestContext& eglTestCtx)
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: ImageTestCase(eglTestCtx, ApiType::es(2, 0), "invalid_create_image", "eglCreateImageKHR() with invalid arguments")
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{
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}
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template <typename createImageFuncType, typename imageType>
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void checkCreate (createImageFuncType createImageFunc,
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string createImageName,
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const char* msg,
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EGLDisplay dpy,
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const char* dpyStr,
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EGLContext context,
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const char* ctxStr,
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EGLenum source,
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const char* srcStr,
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EGLint expectError,
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imageType noImageVal);
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IterateResult iterate (void)
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{
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const Library& egl = m_eglTestCtx.getLibrary();
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if (eglu::getVersion(egl, m_display) < eglu::Version(1, 5) &&
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!eglu::hasExtension(egl, m_display, "EGL_KHR_image") &&
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!eglu::hasExtension(egl, m_display, "EGL_KHR_image_base"))
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{
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TCU_THROW(NotSupportedError, "EGLimages not supported");
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}
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if (eglu::getVersion(egl, m_display) >= eglu::Version(1, 5))
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{
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#define CHECK_CREATE(MSG, DPY, CONTEXT, SOURCE, ERR) \
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checkCreate<createImage, EGLImage>(&Library::createImage, "eglCreateImage", MSG, DPY, #DPY, CONTEXT, #CONTEXT, SOURCE, #SOURCE, ERR, EGL_NO_IMAGE)
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CHECK_CREATE("Testing bad display (-1)...", (EGLDisplay)-1, EGL_NO_CONTEXT, EGL_NONE, EGL_BAD_DISPLAY);
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CHECK_CREATE("Testing bad context (-1)...", m_display, (EGLContext)-1, EGL_NONE, EGL_BAD_CONTEXT);
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CHECK_CREATE("Testing bad source (-1)...", m_display, EGL_NO_CONTEXT, (EGLenum)-1, EGL_BAD_PARAMETER);
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#undef CHECK_CREATE
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}
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if (eglu::hasExtension(egl, m_display, "EGL_KHR_image") &&
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eglu::hasExtension(egl, m_display, "EGL_KHR_image_base"))
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{
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#define CHECK_CREATE_KHR(MSG, DPY, CONTEXT, SOURCE, ERR) \
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checkCreate<createImageKHR, EGLImageKHR>(&Library::createImageKHR, "eglCreateImageKHR", MSG, DPY, #DPY, CONTEXT, #CONTEXT, SOURCE, #SOURCE, ERR, EGL_NO_IMAGE_KHR)
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CHECK_CREATE_KHR("Testing bad display (-1)...", (EGLDisplay)-1, EGL_NO_CONTEXT, EGL_NONE, EGL_BAD_DISPLAY);
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CHECK_CREATE_KHR("Testing bad context (-1)...", m_display, (EGLContext)-1, EGL_NONE, EGL_BAD_CONTEXT);
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CHECK_CREATE_KHR("Testing bad source (-1)...", m_display, EGL_NO_CONTEXT, (EGLenum)-1, EGL_BAD_PARAMETER);
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#undef CHECK_CREATE_KHR
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}
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m_testCtx.setTestResult(QP_TEST_RESULT_PASS, "Pass");
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return STOP;
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}
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};
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template <typename createImageFuncType, typename imageType>
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void InvalidCreateImage::checkCreate (createImageFuncType createImageFunc,
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string createImageName,
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const char* msg,
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EGLDisplay dpy,
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const char* dpyStr,
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EGLContext context,
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const char* ctxStr,
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EGLenum source,
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const char* srcStr,
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EGLint expectError,
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imageType noImageVal)
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{
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m_testCtx.getLog() << TestLog::Message << msg << TestLog::EndMessage;
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{
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const Library& egl = m_eglTestCtx.getLibrary();
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const imageType image = (egl.*createImageFunc)(dpy, context, source, 0, DE_NULL);
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ostringstream call;
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call << createImageName << "(" << dpyStr << ", " << ctxStr << ", " << srcStr << ", 0, DE_NULL)";
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checkCallReturn(m_eglTestCtx, call.str().c_str(), image, noImageVal, expectError);
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}
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}
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EGLConfig chooseConfig (const Library& egl, EGLDisplay display, ApiType apiType)
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{
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AttribMap attribs;
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vector<EGLConfig> configs;
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// Prefer configs in order: pbuffer, window, pixmap
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static const EGLenum s_surfaceTypes[] = { EGL_PBUFFER_BIT, EGL_WINDOW_BIT, EGL_PIXMAP_BIT };
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attribs[EGL_RENDERABLE_TYPE] = eglu::apiRenderableType(apiType);
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for (int ndx = 0; ndx < DE_LENGTH_OF_ARRAY(s_surfaceTypes); ++ndx)
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{
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attribs[EGL_SURFACE_TYPE] = s_surfaceTypes[ndx];
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configs = eglu::chooseConfigs(egl, display, attribs);
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if (!configs.empty())
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return configs.front();
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}
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TCU_THROW(NotSupportedError, "No compatible EGL configs found");
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return (EGLConfig)0;
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}
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class Context
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{
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public:
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Context (EglTestContext& eglTestCtx, EGLDisplay display, ContextType ctxType, int width, int height)
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: m_eglTestCtx (eglTestCtx)
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, m_display (display)
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, m_config (chooseConfig(eglTestCtx.getLibrary(), display, ctxType.getAPI()))
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, m_context (m_eglTestCtx.getLibrary(), m_display, eglu::createGLContext(eglTestCtx.getLibrary(), m_display, m_config, ctxType))
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, m_surface (createSurface(eglTestCtx, m_display, m_config, width, height))
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, m_current (eglTestCtx.getLibrary(), m_display, m_surface->get(), m_surface->get(), *m_context)
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{
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m_eglTestCtx.initGLFunctions(&m_gl, ctxType.getAPI());
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}
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EGLConfig getConfig (void) const { return m_config; }
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EGLDisplay getEglDisplay (void) const { return m_display; }
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EGLContext getEglContext (void) const { return *m_context; }
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const glw::Functions& gl (void) const { return m_gl; }
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private:
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EglTestContext& m_eglTestCtx;
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EGLDisplay m_display;
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EGLConfig m_config;
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eglu::UniqueContext m_context;
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UniquePtr<ManagedSurface> m_surface;
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ScopedCurrentContext m_current;
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glw::Functions m_gl;
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Context (const Context&);
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Context& operator= (const Context&);
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};
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class CreateImageGLES2 : public ImageTestCase
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{
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public:
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static const char* getTargetName (EGLint target)
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{
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switch (target)
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{
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case EGL_GL_TEXTURE_2D_KHR: return "tex2d";
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case EGL_GL_TEXTURE_CUBE_MAP_POSITIVE_X_KHR: return "cubemap_pos_x";
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case EGL_GL_TEXTURE_CUBE_MAP_NEGATIVE_X_KHR: return "cubemap_neg_x";
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case EGL_GL_TEXTURE_CUBE_MAP_POSITIVE_Y_KHR: return "cubemap_pos_y";
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case EGL_GL_TEXTURE_CUBE_MAP_NEGATIVE_Y_KHR: return "cubemap_neg_y";
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case EGL_GL_TEXTURE_CUBE_MAP_POSITIVE_Z_KHR: return "cubemap_pos_z";
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case EGL_GL_TEXTURE_CUBE_MAP_NEGATIVE_Z_KHR: return "cubemap_neg_z";
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case EGL_GL_RENDERBUFFER_KHR: return "renderbuffer";
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case EGL_NATIVE_BUFFER_ANDROID: return "android_native";
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default: DE_ASSERT(DE_FALSE); return "";
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}
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}
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static const char* getStorageName (GLenum storage)
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{
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switch (storage)
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{
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case GL_RED: return "red";
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case GL_RG: return "rg";
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case GL_LUMINANCE: return "luminance";
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case GL_LUMINANCE_ALPHA: return "luminance_alpha";
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case GL_RGB: return "rgb";
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case GL_RGBA: return "rgba";
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case GL_RGBA16F: return "rgba16f";
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case GL_DEPTH_COMPONENT16: return "depth_component_16";
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case GL_DEPTH_COMPONENT24: return "depth_component_24";
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case GL_DEPTH_COMPONENT32F: return "depth_component_32f";
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case GL_DEPTH24_STENCIL8: return "depth24_stencil8";
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case GL_DEPTH32F_STENCIL8: return "depth32f_stencil8";
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case GL_RGB10_A2: return "rgb10_a2";
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case GL_RGBA4: return "rgba4";
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case GL_RGB5_A1: return "rgb5_a1";
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case GL_RGB565: return "rgb565";
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case GL_RGB8: return "rgb8";
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case GL_RGBA8: return "rgba8";
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case GL_STENCIL_INDEX8: return "stencil_index8";
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default:
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DE_ASSERT(DE_FALSE);
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return "";
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}
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}
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MovePtr<ImageSource> getImageSource (EGLint target, GLenum internalFormat, GLenum format, GLenum type, bool useTexLevel0)
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{
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switch (target)
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{
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case EGL_GL_TEXTURE_2D_KHR:
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case EGL_GL_TEXTURE_CUBE_MAP_POSITIVE_X_KHR:
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case EGL_GL_TEXTURE_CUBE_MAP_NEGATIVE_X_KHR:
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case EGL_GL_TEXTURE_CUBE_MAP_POSITIVE_Y_KHR:
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case EGL_GL_TEXTURE_CUBE_MAP_NEGATIVE_Y_KHR:
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case EGL_GL_TEXTURE_CUBE_MAP_POSITIVE_Z_KHR:
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case EGL_GL_TEXTURE_CUBE_MAP_NEGATIVE_Z_KHR:
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DE_ASSERT(format != 0u && type != 0u);
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return createTextureImageSource(target, internalFormat, format, type, useTexLevel0);
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case EGL_GL_RENDERBUFFER_KHR:
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DE_ASSERT(format == 0u && type == 0u);
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return createRenderbufferImageSource(internalFormat);
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case EGL_NATIVE_BUFFER_ANDROID:
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DE_ASSERT(format == 0u && type == 0u);
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return createAndroidNativeImageSource(internalFormat);
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default:
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DE_FATAL("Impossible");
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return MovePtr<ImageSource>();
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}
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}
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CreateImageGLES2 (EglTestContext& eglTestCtx, EGLint target, GLenum internalFormat, GLenum format, GLenum type, bool useTexLevel0 = false)
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: ImageTestCase (eglTestCtx, ApiType::es(2, 0), string("create_image_gles2_") + getTargetName(target) + "_" + getStorageName(internalFormat) + (useTexLevel0 ? "_level0_only" : ""), "Create EGLImage from GLES2 object")
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, m_source (getImageSource(target, internalFormat, format, type, useTexLevel0))
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, m_internalFormat (internalFormat)
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{
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}
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IterateResult iterate (void)
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{
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const Library& egl = m_eglTestCtx.getLibrary();
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const EGLDisplay dpy = m_display;
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if (eglu::getVersion(egl, dpy) < eglu::Version(1, 5))
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CHECK_EXTENSION(dpy, m_source->getRequiredExtension());
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// Initialize result.
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m_testCtx.setTestResult(QP_TEST_RESULT_PASS, "Pass");
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// Create GLES2 context
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TestLog& log = m_testCtx.getLog();
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const ContextType contextType (ApiType::es(2, 0));
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Context context (m_eglTestCtx, dpy, contextType, 64, 64);
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const EGLContext eglContext = context.getEglContext();
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if ((m_internalFormat == GL_RED || m_internalFormat == GL_RG) && !isGLRedSupported())
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TCU_THROW(NotSupportedError, "Unsupported extension: GL_EXT_texture_rg");
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log << TestLog::Message << "Using EGL config " << eglu::getConfigID(egl, dpy, context.getConfig()) << TestLog::EndMessage;
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UniquePtr<ClientBuffer> clientBuffer (m_source->createBuffer(egl, context.gl()));
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const EGLImageKHR image = m_source->createImage(egl, dpy, eglContext, clientBuffer->get());
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if (image == EGL_NO_IMAGE_KHR)
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{
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log << TestLog::Message << " Fail: Got EGL_NO_IMAGE_KHR!" << TestLog::EndMessage;
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if (m_testCtx.getTestResult() == QP_TEST_RESULT_PASS)
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m_testCtx.setTestResult(QP_TEST_RESULT_FAIL, "Got EGL_NO_IMAGE_KHR");
|
|
}
|
|
|
|
// Destroy image
|
|
CHECK_EXT_CALL_RET(egl.destroyImageKHR(context.getEglDisplay(), image), (EGLBoolean)EGL_TRUE, EGL_SUCCESS);
|
|
|
|
return STOP;
|
|
}
|
|
|
|
private:
|
|
const UniquePtr<ImageSource> m_source;
|
|
const GLenum m_internalFormat;
|
|
};
|
|
|
|
class ImageTargetGLES2 : public ImageTestCase
|
|
{
|
|
public:
|
|
static const char* getTargetName (GLenum target)
|
|
{
|
|
switch (target)
|
|
{
|
|
case GL_TEXTURE_2D: return "tex2d";
|
|
case GL_RENDERBUFFER: return "renderbuffer";
|
|
default:
|
|
DE_ASSERT(DE_FALSE);
|
|
return "";
|
|
}
|
|
}
|
|
|
|
ImageTargetGLES2 (EglTestContext& eglTestCtx, GLenum target)
|
|
: ImageTestCase (eglTestCtx, ApiType::es(2, 0), string("image_target_gles2_") + getTargetName(target), "Use EGLImage as GLES2 object")
|
|
, m_target (target)
|
|
{
|
|
}
|
|
|
|
IterateResult iterate (void)
|
|
{
|
|
const Library& egl = m_eglTestCtx.getLibrary();
|
|
TestLog& log = m_testCtx.getLog();
|
|
|
|
// \todo [2011-07-21 pyry] Try all possible EGLImage sources
|
|
CHECK_EXTENSION(m_display, "EGL_KHR_gl_texture_2D_image");
|
|
|
|
// Initialize result.
|
|
m_testCtx.setTestResult(QP_TEST_RESULT_PASS, "Pass");
|
|
|
|
// Create GLES2 context
|
|
|
|
Context context(m_eglTestCtx, m_display, ContextType(ApiType::es(2, 0)), 64, 64);
|
|
log << TestLog::Message << "Using EGL config " << eglu::getConfigID(m_eglTestCtx.getLibrary(), context.getEglDisplay(), context.getConfig()) << TestLog::EndMessage;
|
|
|
|
// Check for OES_EGL_image
|
|
{
|
|
const char* glExt = (const char*)glGetString(GL_EXTENSIONS);
|
|
|
|
if (string(glExt).find("GL_OES_EGL_image") == string::npos)
|
|
throw tcu::NotSupportedError("Extension not supported", "GL_OES_EGL_image", __FILE__, __LINE__);
|
|
|
|
TCU_CHECK(m_gl.eglImageTargetTexture2DOES);
|
|
TCU_CHECK(m_gl.eglImageTargetRenderbufferStorageOES);
|
|
}
|
|
|
|
// Create GL_TEXTURE_2D and EGLImage from it.
|
|
log << TestLog::Message << "Creating EGLImage using GL_TEXTURE_2D with GL_RGBA storage" << TestLog::EndMessage;
|
|
|
|
deUint32 srcTex = 1;
|
|
GLU_CHECK_CALL(glBindTexture(GL_TEXTURE_2D, srcTex));
|
|
GLU_CHECK_CALL(glTexImage2D(GL_TEXTURE_2D, 0, GL_RGBA, 64, 64, 0, GL_RGBA, GL_UNSIGNED_BYTE, DE_NULL));
|
|
GLU_CHECK_CALL(glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_LINEAR));
|
|
|
|
// Create EGL image
|
|
EGLint attribs[] = { EGL_GL_TEXTURE_LEVEL_KHR, 0, EGL_NONE };
|
|
EGLImageKHR image = CHECK_EXT_CALL_ERR(egl.createImageKHR(context.getEglDisplay(), context.getEglContext(), EGL_GL_TEXTURE_2D_KHR, (EGLClientBuffer)(deUintptr)srcTex, attribs), EGL_SUCCESS);
|
|
if (image == EGL_NO_IMAGE_KHR)
|
|
{
|
|
log << TestLog::Message << " Fail: Got EGL_NO_IMAGE_KHR!" << TestLog::EndMessage;
|
|
|
|
if (m_testCtx.getTestResult() == QP_TEST_RESULT_PASS)
|
|
m_testCtx.setTestResult(QP_TEST_RESULT_FAIL, "Got EGL_NO_IMAGE_KHR");
|
|
}
|
|
|
|
// Create texture or renderbuffer
|
|
if (m_target == GL_TEXTURE_2D)
|
|
{
|
|
log << TestLog::Message << "Creating GL_TEXTURE_2D from EGLimage" << TestLog::EndMessage;
|
|
|
|
deUint32 dstTex = 2;
|
|
GLU_CHECK_CALL(glBindTexture(GL_TEXTURE_2D, dstTex));
|
|
GLU_CHECK_CALL(glEGLImageTargetTexture2DOES(GL_TEXTURE_2D, (GLeglImageOES)image));
|
|
GLU_CHECK_CALL(glDeleteTextures(1, &dstTex));
|
|
}
|
|
else
|
|
{
|
|
DE_ASSERT(m_target == GL_RENDERBUFFER);
|
|
|
|
log << TestLog::Message << "Creating GL_RENDERBUFFER from EGLimage" << TestLog::EndMessage;
|
|
|
|
deUint32 dstRbo = 2;
|
|
GLU_CHECK_CALL(glBindRenderbuffer(GL_RENDERBUFFER, dstRbo));
|
|
GLU_CHECK_CALL(glEGLImageTargetRenderbufferStorageOES(GL_RENDERBUFFER, (GLeglImageOES)image));
|
|
GLU_CHECK_CALL(glDeleteRenderbuffers(1, &dstRbo));
|
|
}
|
|
|
|
// Destroy image
|
|
CHECK_EXT_CALL_RET(egl.destroyImageKHR(context.getEglDisplay(), image), (EGLBoolean)EGL_TRUE, EGL_SUCCESS);
|
|
|
|
// Destroy source texture object
|
|
GLU_CHECK_CALL(glDeleteTextures(1, &srcTex));
|
|
|
|
return STOP;
|
|
}
|
|
|
|
private:
|
|
GLenum m_target;
|
|
};
|
|
|
|
class ApiTests : public TestCaseGroup
|
|
{
|
|
public:
|
|
ApiTests (EglTestContext& eglTestCtx, const string& name, const string& desc) : TestCaseGroup(eglTestCtx, name.c_str(), desc.c_str()) {}
|
|
|
|
void init (void)
|
|
{
|
|
addChild(new Image::InvalidCreateImage(m_eglTestCtx));
|
|
|
|
addChild(new Image::CreateImageGLES2(m_eglTestCtx, EGL_GL_TEXTURE_2D_KHR, GL_RED, GL_RED, GL_UNSIGNED_BYTE, false));
|
|
addChild(new Image::CreateImageGLES2(m_eglTestCtx, EGL_GL_TEXTURE_2D_KHR, GL_RG, GL_RG, GL_UNSIGNED_BYTE, false));
|
|
|
|
addChild(new Image::CreateImageGLES2(m_eglTestCtx, EGL_GL_TEXTURE_2D_KHR, GL_LUMINANCE, GL_LUMINANCE, GL_UNSIGNED_BYTE));
|
|
addChild(new Image::CreateImageGLES2(m_eglTestCtx, EGL_GL_TEXTURE_2D_KHR, GL_LUMINANCE_ALPHA, GL_LUMINANCE_ALPHA, GL_UNSIGNED_BYTE));
|
|
|
|
addChild(new Image::CreateImageGLES2(m_eglTestCtx, EGL_GL_TEXTURE_2D_KHR, GL_RGB, GL_RGB, GL_UNSIGNED_BYTE));
|
|
addChild(new Image::CreateImageGLES2(m_eglTestCtx, EGL_GL_TEXTURE_2D_KHR, GL_RGBA, GL_RGBA, GL_UNSIGNED_BYTE));
|
|
addChild(new Image::CreateImageGLES2(m_eglTestCtx, EGL_GL_TEXTURE_2D_KHR, GL_RGBA, GL_RGBA, GL_UNSIGNED_BYTE, true));
|
|
|
|
addChild(new Image::CreateImageGLES2(m_eglTestCtx, EGL_GL_TEXTURE_CUBE_MAP_POSITIVE_X_KHR, GL_RGB, GL_RGB, GL_UNSIGNED_BYTE));
|
|
addChild(new Image::CreateImageGLES2(m_eglTestCtx, EGL_GL_TEXTURE_CUBE_MAP_POSITIVE_X_KHR, GL_RGBA, GL_RGBA, GL_UNSIGNED_BYTE));
|
|
addChild(new Image::CreateImageGLES2(m_eglTestCtx, EGL_GL_TEXTURE_CUBE_MAP_POSITIVE_X_KHR, GL_RGBA, GL_RGBA, GL_UNSIGNED_BYTE, true));
|
|
|
|
addChild(new Image::CreateImageGLES2(m_eglTestCtx, EGL_GL_TEXTURE_CUBE_MAP_NEGATIVE_X_KHR, GL_RGBA, GL_RGBA, GL_UNSIGNED_BYTE));
|
|
addChild(new Image::CreateImageGLES2(m_eglTestCtx, EGL_GL_TEXTURE_CUBE_MAP_POSITIVE_Y_KHR, GL_RGBA, GL_RGBA, GL_UNSIGNED_BYTE));
|
|
addChild(new Image::CreateImageGLES2(m_eglTestCtx, EGL_GL_TEXTURE_CUBE_MAP_NEGATIVE_Y_KHR, GL_RGBA, GL_RGBA, GL_UNSIGNED_BYTE));
|
|
addChild(new Image::CreateImageGLES2(m_eglTestCtx, EGL_GL_TEXTURE_CUBE_MAP_POSITIVE_Z_KHR, GL_RGBA, GL_RGBA, GL_UNSIGNED_BYTE));
|
|
addChild(new Image::CreateImageGLES2(m_eglTestCtx, EGL_GL_TEXTURE_CUBE_MAP_NEGATIVE_Z_KHR, GL_RGBA, GL_RGBA, GL_UNSIGNED_BYTE));
|
|
|
|
static const GLenum rboStorages[] =
|
|
{
|
|
GL_DEPTH_COMPONENT16,
|
|
GL_RGBA4,
|
|
GL_RGB5_A1,
|
|
GL_RGB565,
|
|
GL_STENCIL_INDEX8
|
|
};
|
|
for (int storageNdx = 0; storageNdx < DE_LENGTH_OF_ARRAY(rboStorages); storageNdx++)
|
|
addChild(new Image::CreateImageGLES2(m_eglTestCtx, EGL_GL_RENDERBUFFER_KHR, rboStorages[storageNdx], (GLenum)0, (GLenum)0));
|
|
|
|
static const GLenum androidFormats[] =
|
|
{
|
|
GL_RGB565,
|
|
GL_RGB8,
|
|
GL_RGBA8,
|
|
GL_RGBA4,
|
|
GL_RGB5_A1,
|
|
GL_DEPTH_COMPONENT16,
|
|
GL_DEPTH_COMPONENT24,
|
|
GL_DEPTH24_STENCIL8,
|
|
GL_DEPTH_COMPONENT32F,
|
|
GL_DEPTH32F_STENCIL8,
|
|
GL_RGB10_A2,
|
|
GL_RGBA16F,
|
|
GL_STENCIL_INDEX8
|
|
};
|
|
|
|
for (int formatNdx = 0; formatNdx < DE_LENGTH_OF_ARRAY(androidFormats); ++formatNdx)
|
|
addChild(new Image::CreateImageGLES2(m_eglTestCtx, EGL_NATIVE_BUFFER_ANDROID, androidFormats[formatNdx], (GLenum)0, (GLenum)0));
|
|
|
|
addChild(new Image::ImageTargetGLES2(m_eglTestCtx, GL_TEXTURE_2D));
|
|
addChild(new Image::ImageTargetGLES2(m_eglTestCtx, GL_RENDERBUFFER));
|
|
}
|
|
};
|
|
|
|
} // Image
|
|
|
|
ImageTests::ImageTests (EglTestContext& eglTestCtx)
|
|
: TestCaseGroup(eglTestCtx, "image", "EGLImage Tests")
|
|
{
|
|
}
|
|
|
|
ImageTests::~ImageTests (void)
|
|
{
|
|
}
|
|
|
|
void ImageTests::init (void)
|
|
{
|
|
addChild(new Image::ApiTests(m_eglTestCtx, "api", "EGLImage API tests"));
|
|
addChild(Image::createSimpleCreationTests(m_eglTestCtx, "create", "EGLImage creation tests"));
|
|
addChild(Image::createModifyTests(m_eglTestCtx, "modify", "EGLImage modifying tests"));
|
|
addChild(Image::createMultiContextRenderTests(m_eglTestCtx, "render_multiple_contexts", "EGLImage render tests on multiple contexts"));
|
|
}
|
|
|
|
} // egl
|
|
} // deqp
|