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788 lines
24 KiB
788 lines
24 KiB
/*------------------------------------------------------------------------- |
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* drawElements Quality Program EGL Module |
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* --------------------------------------- |
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* |
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* Copyright 2015 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 Test EXT_buffer_age |
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*//*--------------------------------------------------------------------*/ |
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#include "teglBufferAgeTests.hpp" |
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#include "tcuImageCompare.hpp" |
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#include "tcuTestLog.hpp" |
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#include "tcuSurface.hpp" |
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#include "tcuTextureUtil.hpp" |
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#include "egluNativeWindow.hpp" |
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#include "egluUtil.hpp" |
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#include "egluConfigFilter.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 "gluRenderContext.hpp" |
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#include "gluShaderProgram.hpp" |
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#include "glwDefs.hpp" |
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#include "glwEnums.hpp" |
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#include "glwFunctions.hpp" |
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#include "deRandom.hpp" |
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#include "deString.h" |
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#include <string> |
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#include <vector> |
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#include <sstream> |
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using std::string; |
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using std::vector; |
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using glw::GLubyte; |
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using tcu::IVec2; |
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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 |
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{ |
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typedef tcu::Vector<GLubyte, 3> Color; |
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class GLES2Renderer; |
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class ReferenceRenderer; |
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class BufferAgeTest : public TestCase |
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{ |
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public: |
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enum DrawType |
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{ |
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DRAWTYPE_GLES2_CLEAR, |
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DRAWTYPE_GLES2_RENDER |
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}; |
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enum ResizeType |
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{ |
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RESIZETYPE_NONE = 0, |
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RESIZETYPE_BEFORE_SWAP, |
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RESIZETYPE_AFTER_SWAP, |
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RESIZETYPE_LAST |
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}; |
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BufferAgeTest (EglTestContext& eglTestCtx, |
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bool preserveColorBuffer, |
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const vector<DrawType>& oddFrameDrawType, |
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const vector<DrawType>& evenFrameDrawType, |
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ResizeType resizeType, |
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const char* name, |
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const char* description); |
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~BufferAgeTest (void); |
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void init (void); |
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void deinit (void); |
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IterateResult iterate (void); |
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private: |
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void initEGLSurface (EGLConfig config); |
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void initEGLContext (EGLConfig config); |
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const int m_seed; |
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const bool m_preserveColorBuffer; |
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const vector<DrawType> m_oddFrameDrawType; |
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const vector<DrawType> m_evenFrameDrawType; |
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const ResizeType m_resizeType; |
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EGLDisplay m_eglDisplay; |
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eglu::NativeWindow* m_window; |
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EGLSurface m_eglSurface; |
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EGLConfig m_eglConfig; |
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EGLContext m_eglContext; |
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glw::Functions m_gl; |
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GLES2Renderer* m_gles2Renderer; |
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ReferenceRenderer* m_refRenderer; |
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}; |
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struct ColoredRect |
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{ |
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public: |
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ColoredRect (const IVec2& bottomLeft_, const IVec2& topRight_, const Color& color_); |
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IVec2 bottomLeft; |
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IVec2 topRight; |
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Color color; |
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}; |
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ColoredRect::ColoredRect (const IVec2& bottomLeft_, const IVec2& topRight_, const Color& color_) |
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: bottomLeft(bottomLeft_) |
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, topRight (topRight_) |
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, color (color_) |
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{ |
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} |
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struct DrawCommand |
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{ |
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DrawCommand (const BufferAgeTest::DrawType drawType_, const ColoredRect& rect_); |
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BufferAgeTest::DrawType drawType; |
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ColoredRect rect; |
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}; |
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DrawCommand::DrawCommand (const BufferAgeTest::DrawType drawType_, const ColoredRect& rect_) |
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: drawType(drawType_) |
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, rect (rect_) |
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{ |
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} |
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struct Frame |
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{ |
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Frame (int width_, int height_); |
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int width; |
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int height; |
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vector<DrawCommand> draws; |
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}; |
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Frame::Frame (int width_, int height_) |
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: width(width_) |
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, height(height_) |
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{ |
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} |
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// (x1,y1) lie in the lower-left quadrant while (x2,y2) lie in the upper-right. |
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// the coords are multiplied by 4 to amplify the minimial difference between coords to 4 (if not zero) |
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// to avoid the situation where two edges are too close to each other which makes the rounding error |
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// intoleratable by compareToReference() |
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void generateRandomFrame (Frame* dst, const vector<BufferAgeTest::DrawType>& drawTypes, de::Random& rnd) |
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{ |
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for (size_t ndx = 0; ndx < drawTypes.size(); ndx++) |
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{ |
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const int x1 = rnd.getInt(0, (dst->width-1)/8) * 4; |
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const int y1 = rnd.getInt(0, (dst->height-1)/8) * 4; |
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const int x2 = rnd.getInt((dst->width-1)/8, (dst->width-1)/4) * 4; |
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const int y2 = rnd.getInt((dst->height-1)/8, (dst->height-1)/4) * 4; |
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const GLubyte r = rnd.getUint8(); |
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const GLubyte g = rnd.getUint8(); |
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const GLubyte b = rnd.getUint8(); |
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const ColoredRect coloredRect (IVec2(x1, y1), IVec2(x2, y2), Color(r, g, b)); |
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const DrawCommand drawCommand (drawTypes[ndx], coloredRect); |
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(*dst).draws.push_back(drawCommand); |
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} |
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} |
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typedef vector<Frame> FrameSequence; |
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//helper function declaration |
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EGLConfig getEGLConfig (const Library& egl, EGLDisplay eglDisplay, bool preserveColorBuffer); |
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void clearColorScreen (const glw::Functions& gl, const tcu::Vec4& clearColor); |
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void clearColorReference (tcu::Surface* ref, const tcu::Vec4& clearColor); |
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void readPixels (const glw::Functions& gl, tcu::Surface* screen); |
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float windowToDeviceCoordinates (int x, int length); |
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bool compareToReference (tcu::TestLog& log, const tcu::Surface& reference, const tcu::Surface& buffer, int frameNdx, int bufferNum); |
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vector<int> getFramesOnBuffer (const vector<int>& bufferAges, int frameNdx); |
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class GLES2Renderer |
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{ |
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public: |
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GLES2Renderer (const glw::Functions& gl); |
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~GLES2Renderer (void); |
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void render (int width, int height, const Frame& frame) const; |
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private: |
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GLES2Renderer (const GLES2Renderer&); |
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GLES2Renderer& operator= (const GLES2Renderer&); |
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const glw::Functions& m_gl; |
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glu::ShaderProgram m_glProgram; |
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glw::GLuint m_coordLoc; |
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glw::GLuint m_colorLoc; |
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}; |
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// generate sources for vertex and fragment buffer |
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glu::ProgramSources getSources (void) |
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{ |
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const char* const vertexShaderSource = |
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"attribute mediump vec4 a_pos;\n" |
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"attribute mediump vec4 a_color;\n" |
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"varying mediump vec4 v_color;\n" |
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"void main(void)\n" |
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"{\n" |
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"\tv_color = a_color;\n" |
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"\tgl_Position = a_pos;\n" |
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"}"; |
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const char* const fragmentShaderSource = |
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"varying mediump vec4 v_color;\n" |
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"void main(void)\n" |
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"{\n" |
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"\tgl_FragColor = v_color;\n" |
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"}"; |
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return glu::makeVtxFragSources(vertexShaderSource, fragmentShaderSource); |
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} |
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GLES2Renderer::GLES2Renderer (const glw::Functions& gl) |
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: m_gl (gl) |
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, m_glProgram (gl, getSources()) |
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, m_coordLoc ((glw::GLuint)-1) |
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, m_colorLoc ((glw::GLuint)-1) |
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{ |
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m_colorLoc = m_gl.getAttribLocation(m_glProgram.getProgram(), "a_color"); |
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m_coordLoc = m_gl.getAttribLocation(m_glProgram.getProgram(), "a_pos"); |
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GLU_EXPECT_NO_ERROR(m_gl.getError(), "Failed to get attribute locations"); |
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} |
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GLES2Renderer::~GLES2Renderer (void) |
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{ |
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} |
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void GLES2Renderer::render (int width, int height, const Frame& frame) const |
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{ |
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for (size_t drawNdx = 0; drawNdx < frame.draws.size(); drawNdx++) |
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{ |
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const ColoredRect& coloredRect = frame.draws[drawNdx].rect; |
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if (frame.draws[drawNdx].drawType == BufferAgeTest::DRAWTYPE_GLES2_RENDER) |
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{ |
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float x1 = windowToDeviceCoordinates(coloredRect.bottomLeft.x(), width); |
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float y1 = windowToDeviceCoordinates(coloredRect.bottomLeft.y(), height); |
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float x2 = windowToDeviceCoordinates(coloredRect.topRight.x(), width); |
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float y2 = windowToDeviceCoordinates(coloredRect.topRight.y(), height); |
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const glw::GLfloat coords[] = |
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{ |
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x1, y1, 0.0f, 1.0f, |
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x1, y2, 0.0f, 1.0f, |
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x2, y2, 0.0f, 1.0f, |
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x2, y2, 0.0f, 1.0f, |
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x2, y1, 0.0f, 1.0f, |
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x1, y1, 0.0f, 1.0f |
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}; |
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const glw::GLubyte colors[] = |
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{ |
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coloredRect.color.x(), coloredRect.color.y(), coloredRect.color.z(), 255, |
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coloredRect.color.x(), coloredRect.color.y(), coloredRect.color.z(), 255, |
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coloredRect.color.x(), coloredRect.color.y(), coloredRect.color.z(), 255, |
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coloredRect.color.x(), coloredRect.color.y(), coloredRect.color.z(), 255, |
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coloredRect.color.x(), coloredRect.color.y(), coloredRect.color.z(), 255, |
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coloredRect.color.x(), coloredRect.color.y(), coloredRect.color.z(), 255, |
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}; |
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m_gl.useProgram(m_glProgram.getProgram()); |
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GLU_EXPECT_NO_ERROR(m_gl.getError(), "glUseProgram() failed"); |
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m_gl.enableVertexAttribArray(m_coordLoc); |
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m_gl.enableVertexAttribArray(m_colorLoc); |
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GLU_EXPECT_NO_ERROR(m_gl.getError(), "Failed to enable attributes"); |
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m_gl.vertexAttribPointer(m_coordLoc, 4, GL_FLOAT, GL_FALSE, 0, coords); |
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m_gl.vertexAttribPointer(m_colorLoc, 4, GL_UNSIGNED_BYTE, GL_TRUE, 0, colors); |
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GLU_EXPECT_NO_ERROR(m_gl.getError(), "Failed to set attribute pointers"); |
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m_gl.drawArrays(GL_TRIANGLES, 0, DE_LENGTH_OF_ARRAY(coords)/4); |
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GLU_EXPECT_NO_ERROR(m_gl.getError(), "glDrawArrays(), failed"); |
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m_gl.disableVertexAttribArray(m_coordLoc); |
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m_gl.disableVertexAttribArray(m_colorLoc); |
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GLU_EXPECT_NO_ERROR(m_gl.getError(), "Failed to disable attributes"); |
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m_gl.useProgram(0); |
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GLU_EXPECT_NO_ERROR(m_gl.getError(), "glUseProgram() failed"); |
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} |
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else if (frame.draws[drawNdx].drawType == BufferAgeTest::DRAWTYPE_GLES2_CLEAR) |
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{ |
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m_gl.enable(GL_SCISSOR_TEST); |
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m_gl.scissor(coloredRect.bottomLeft.x(), coloredRect.bottomLeft.y(), |
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coloredRect.topRight.x()-coloredRect.bottomLeft.x(), coloredRect.topRight.y()-coloredRect.bottomLeft.y()); |
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m_gl.clearColor(coloredRect.color.x()/255.0f, coloredRect.color.y()/255.0f, coloredRect.color.z()/255.0f, 1.0f); |
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m_gl.clear(GL_COLOR_BUFFER_BIT); |
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m_gl.disable(GL_SCISSOR_TEST); |
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} |
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else |
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DE_ASSERT(false); |
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} |
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} |
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class ReferenceRenderer |
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{ |
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public: |
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ReferenceRenderer (void); |
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void render (tcu::Surface* target, const Frame& frame) const; |
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private: |
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ReferenceRenderer (const ReferenceRenderer&); |
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ReferenceRenderer& operator= (const ReferenceRenderer&); |
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}; |
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ReferenceRenderer::ReferenceRenderer(void) |
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{ |
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} |
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void ReferenceRenderer::render (tcu::Surface* target, const Frame& frame) const |
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{ |
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for (size_t drawNdx = 0; drawNdx < frame.draws.size(); drawNdx++) |
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{ |
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const ColoredRect& coloredRect = frame.draws[drawNdx].rect; |
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if (frame.draws[drawNdx].drawType == BufferAgeTest::DRAWTYPE_GLES2_RENDER || frame.draws[drawNdx].drawType == BufferAgeTest::DRAWTYPE_GLES2_CLEAR) |
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{ |
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// tcu does not support degenerate subregions. Since they correspond to no-op rendering, just skip them. |
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if (coloredRect.bottomLeft.x() == coloredRect.topRight.x() || coloredRect.bottomLeft.y() == coloredRect.topRight.y()) |
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continue; |
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const tcu::UVec4 color(coloredRect.color.x(), coloredRect.color.y(), coloredRect.color.z(), 255); |
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tcu::clear(tcu::getSubregion(target->getAccess(), coloredRect.bottomLeft.x(), coloredRect.bottomLeft.y(), |
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coloredRect.topRight.x()-coloredRect.bottomLeft.x(), coloredRect.topRight.y()-coloredRect.bottomLeft.y()), color); |
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} |
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else |
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DE_ASSERT(false); |
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} |
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} |
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BufferAgeTest::BufferAgeTest (EglTestContext& eglTestCtx, |
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bool preserveColorBuffer, |
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const vector<DrawType>& oddFrameDrawType, |
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const vector<DrawType>& evenFrameDrawType, |
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ResizeType resizeType, |
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const char* name, |
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const char* description) |
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: TestCase (eglTestCtx, name, description) |
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, m_seed (deStringHash(name)) |
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, m_preserveColorBuffer (preserveColorBuffer) |
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, m_oddFrameDrawType (oddFrameDrawType) |
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, m_evenFrameDrawType (evenFrameDrawType) |
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, m_resizeType (resizeType) |
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, m_eglDisplay (EGL_NO_DISPLAY) |
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, m_window (DE_NULL) |
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, m_eglSurface (EGL_NO_SURFACE) |
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, m_eglContext (EGL_NO_CONTEXT) |
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, m_gles2Renderer (DE_NULL) |
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, m_refRenderer (DE_NULL) |
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{ |
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} |
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BufferAgeTest::~BufferAgeTest (void) |
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{ |
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deinit(); |
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} |
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void BufferAgeTest::init (void) |
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{ |
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const Library& egl = m_eglTestCtx.getLibrary(); |
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m_eglDisplay = eglu::getAndInitDisplay(m_eglTestCtx.getNativeDisplay()); |
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m_eglConfig = getEGLConfig(m_eglTestCtx.getLibrary(), m_eglDisplay, m_preserveColorBuffer); |
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if (m_eglConfig == DE_NULL) |
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TCU_THROW(NotSupportedError, "No supported config found"); |
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//create surface and context and make them current |
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initEGLSurface(m_eglConfig); |
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initEGLContext(m_eglConfig); |
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m_eglTestCtx.initGLFunctions(&m_gl, glu::ApiType::es(2,0)); |
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if (eglu::hasExtension(egl, m_eglDisplay, "EGL_EXT_buffer_age") == false) |
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TCU_THROW(NotSupportedError, "EGL_EXT_buffer_age is not supported"); |
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m_gles2Renderer = new GLES2Renderer(m_gl); |
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m_refRenderer = new ReferenceRenderer(); |
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} |
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void BufferAgeTest::deinit (void) |
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{ |
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const Library& egl = m_eglTestCtx.getLibrary(); |
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delete m_refRenderer; |
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m_refRenderer = DE_NULL; |
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delete m_gles2Renderer; |
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m_gles2Renderer = DE_NULL; |
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if (m_eglContext != EGL_NO_CONTEXT) |
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{ |
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egl.makeCurrent(m_eglDisplay, EGL_NO_SURFACE, EGL_NO_SURFACE, EGL_NO_CONTEXT); |
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egl.destroyContext(m_eglDisplay, m_eglContext); |
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m_eglContext = EGL_NO_CONTEXT; |
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} |
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if (m_eglSurface != EGL_NO_SURFACE) |
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{ |
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egl.destroySurface(m_eglDisplay, m_eglSurface); |
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m_eglSurface = EGL_NO_SURFACE; |
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} |
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if (m_eglDisplay != EGL_NO_DISPLAY) |
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{ |
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egl.terminate(m_eglDisplay); |
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m_eglDisplay = EGL_NO_DISPLAY; |
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} |
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delete m_window; |
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m_window = DE_NULL; |
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} |
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void BufferAgeTest::initEGLSurface (EGLConfig config) |
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{ |
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const eglu::NativeWindowFactory& factory = eglu::selectNativeWindowFactory(m_eglTestCtx.getNativeDisplayFactory(), m_testCtx.getCommandLine()); |
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m_window = factory.createWindow(&m_eglTestCtx.getNativeDisplay(), m_eglDisplay, config, DE_NULL, |
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eglu::WindowParams(480, 480, eglu::parseWindowVisibility(m_testCtx.getCommandLine()))); |
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m_eglSurface = eglu::createWindowSurface(m_eglTestCtx.getNativeDisplay(), *m_window, m_eglDisplay, config, DE_NULL); |
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} |
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void BufferAgeTest::initEGLContext (EGLConfig config) |
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{ |
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const Library& egl = m_eglTestCtx.getLibrary(); |
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const EGLint attribList[] = |
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{ |
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EGL_CONTEXT_CLIENT_VERSION, 2, |
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EGL_NONE |
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}; |
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egl.bindAPI(EGL_OPENGL_ES_API); |
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m_eglContext = egl.createContext(m_eglDisplay, config, EGL_NO_CONTEXT, attribList); |
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EGLU_CHECK_MSG(egl, "eglCreateContext"); |
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DE_ASSERT(m_eglSurface != EGL_NO_SURFACE); |
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egl.makeCurrent(m_eglDisplay, m_eglSurface, m_eglSurface, m_eglContext); |
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EGLU_CHECK_MSG(egl, "eglMakeCurrent"); |
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} |
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// return indices of frames that have been written to the given buffer |
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vector<int> getFramesOnBuffer (const vector<int>& bufferAges, int frameNdx) |
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{ |
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DE_ASSERT(frameNdx < (int)bufferAges.size()); |
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vector<int> frameOnBuffer; |
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int age = bufferAges[frameNdx]; |
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while (age != 0) |
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{ |
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frameNdx = frameNdx - age; |
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DE_ASSERT(frameNdx >= 0); |
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frameOnBuffer.push_back(frameNdx); |
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age = bufferAges[frameNdx]; |
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} |
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reverse(frameOnBuffer.begin(), frameOnBuffer.end()); |
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return frameOnBuffer; |
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} |
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TestCase::IterateResult BufferAgeTest::iterate (void) |
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{ |
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de::Random rnd (m_seed); |
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const Library& egl = m_eglTestCtx.getLibrary(); |
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tcu::TestLog& log = m_testCtx.getLog(); |
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const int width = eglu::querySurfaceInt(egl, m_eglDisplay, m_eglSurface, EGL_WIDTH); |
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const int height = eglu::querySurfaceInt(egl, m_eglDisplay, m_eglSurface, EGL_HEIGHT); |
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const float clearRed = rnd.getFloat(); |
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const float clearGreen = rnd.getFloat(); |
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const float clearBlue = rnd.getFloat(); |
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const tcu::Vec4 clearColor (clearRed, clearGreen, clearBlue, 1.0f); |
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const int numFrames = 20; |
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FrameSequence frameSequence; |
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vector<int> bufferAges; |
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if (m_preserveColorBuffer) |
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EGLU_CHECK_CALL(egl, surfaceAttrib(m_eglDisplay, m_eglSurface, EGL_SWAP_BEHAVIOR, EGL_BUFFER_PRESERVED)); |
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else |
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EGLU_CHECK_CALL(egl, surfaceAttrib(m_eglDisplay, m_eglSurface, EGL_SWAP_BEHAVIOR, EGL_BUFFER_DESTROYED)); |
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for (int frameNdx = 0; frameNdx < numFrames; frameNdx++) |
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{ |
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tcu::Surface currentBuffer (width, height); |
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tcu::Surface refBuffer (width, height); |
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Frame newFrame (width, height); |
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EGLint currentBufferAge = -1; |
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if (frameNdx % 2 == 0) |
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generateRandomFrame(&newFrame, m_evenFrameDrawType, rnd); |
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else |
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generateRandomFrame(&newFrame, m_oddFrameDrawType, rnd); |
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frameSequence.push_back(newFrame); |
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EGLU_CHECK_CALL(egl, querySurface(m_eglDisplay, m_eglSurface, EGL_BUFFER_AGE_EXT, ¤tBufferAge)); |
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if (currentBufferAge > frameNdx || currentBufferAge < 0) // invalid buffer age |
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{ |
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std::ostringstream stream; |
|
stream << "Fail, the age is invalid. Age: " << currentBufferAge << ", frameNdx: " << frameNdx; |
|
m_testCtx.setTestResult(QP_TEST_RESULT_FAIL, stream.str().c_str()); |
|
return STOP; |
|
} |
|
|
|
if (frameNdx > 0 && m_preserveColorBuffer && currentBufferAge != 1) |
|
{ |
|
std::ostringstream stream; |
|
stream << "Fail, EGL_BUFFER_PRESERVED is set to true, but buffer age is: " << currentBufferAge << " (should be 1)"; |
|
m_testCtx.setTestResult(QP_TEST_RESULT_FAIL, stream.str().c_str()); |
|
return STOP; |
|
} |
|
|
|
bufferAges.push_back(currentBufferAge); |
|
DE_ASSERT((int)bufferAges.size() == frameNdx+1); |
|
|
|
// during first half, just keep rendering without reading pixel back to mimic ordinary use case |
|
if (frameNdx < numFrames/2) |
|
{ |
|
if (currentBufferAge == 0) |
|
clearColorScreen(m_gl, clearColor); |
|
|
|
m_gles2Renderer->render(width, height, newFrame); |
|
|
|
if (m_resizeType == RESIZETYPE_BEFORE_SWAP) |
|
{ |
|
if (frameNdx % 2 == 0) |
|
m_window->setSurfaceSize(IVec2(width*2, height/2)); |
|
else |
|
m_window->setSurfaceSize(IVec2(height/2, width*2)); |
|
} |
|
|
|
EGLU_CHECK_CALL(egl, swapBuffers(m_eglDisplay, m_eglSurface)); |
|
|
|
if (m_resizeType == RESIZETYPE_AFTER_SWAP) |
|
{ |
|
if (frameNdx % 2 == 0) |
|
m_window->setSurfaceSize(IVec2(width*2, height/2)); |
|
else |
|
m_window->setSurfaceSize(IVec2(height/2, width*2)); |
|
} |
|
|
|
continue; |
|
} |
|
|
|
// do verification in the second half |
|
if (currentBufferAge > 0) //buffer contain previous content, need to verify |
|
{ |
|
const vector<int> framesOnBuffer = getFramesOnBuffer(bufferAges, frameNdx); |
|
readPixels(m_gl, ¤tBuffer); |
|
clearColorReference(&refBuffer, clearColor); |
|
|
|
for (vector<int>::const_iterator it = framesOnBuffer.begin(); it != framesOnBuffer.end(); it++) |
|
m_refRenderer->render(&refBuffer, frameSequence[*it]); |
|
|
|
if (compareToReference(log, refBuffer, currentBuffer, frameNdx, frameNdx-currentBufferAge) == false) |
|
{ |
|
m_testCtx.setTestResult(QP_TEST_RESULT_FAIL, "Fail, buffer content is not well preserved when age > 0"); |
|
return STOP; |
|
} |
|
} |
|
else // currentBufferAge == 0, content is undefined, clear the buffer, currentBufferAge < 0 is ruled out at the beginning |
|
{ |
|
clearColorScreen(m_gl, clearColor); |
|
clearColorReference(&refBuffer, clearColor); |
|
} |
|
|
|
m_gles2Renderer->render(width, height, newFrame); |
|
m_refRenderer->render(&refBuffer, newFrame); |
|
|
|
readPixels(m_gl, ¤tBuffer); |
|
|
|
if (compareToReference(log, refBuffer, currentBuffer, frameNdx, frameNdx) == false) |
|
{ |
|
m_testCtx.setTestResult(QP_TEST_RESULT_FAIL, "Fail, render result is wrong"); |
|
return STOP; |
|
} |
|
|
|
if (m_resizeType == RESIZETYPE_BEFORE_SWAP) |
|
{ |
|
if (frameNdx % 2 == 0) |
|
m_window->setSurfaceSize(IVec2(width*2, height/2)); |
|
else |
|
m_window->setSurfaceSize(IVec2(height/2, width*2)); |
|
} |
|
|
|
EGLU_CHECK_CALL(egl, swapBuffers(m_eglDisplay, m_eglSurface)); |
|
|
|
if (m_resizeType == RESIZETYPE_AFTER_SWAP) |
|
{ |
|
if (frameNdx % 2 == 0) |
|
m_window->setSurfaceSize(IVec2(width*2, height/2)); |
|
else |
|
m_window->setSurfaceSize(IVec2(height/2, width*2)); |
|
} |
|
} |
|
|
|
m_testCtx.setTestResult(QP_TEST_RESULT_PASS, "Pass"); |
|
return STOP; |
|
} |
|
|
|
string generateDrawTypeName (const vector<BufferAgeTest::DrawType>& drawTypes) |
|
{ |
|
std::ostringstream stream; |
|
if (drawTypes.size() == 0) |
|
return string("_none"); |
|
|
|
for (size_t ndx = 0; ndx < drawTypes.size(); ndx++) |
|
{ |
|
if (drawTypes[ndx] == BufferAgeTest::DRAWTYPE_GLES2_RENDER) |
|
stream << "_render"; |
|
else if (drawTypes[ndx] == BufferAgeTest::DRAWTYPE_GLES2_CLEAR) |
|
stream << "_clear"; |
|
else |
|
DE_ASSERT(false); |
|
} |
|
return stream.str(); |
|
} |
|
|
|
string generateTestName (const vector<BufferAgeTest::DrawType>& oddFrameDrawType, const vector<BufferAgeTest::DrawType>& evenFrameDrawType) |
|
{ |
|
return "odd" + generateDrawTypeName(oddFrameDrawType) + "_even" + generateDrawTypeName(evenFrameDrawType); |
|
} |
|
|
|
string generateResizeGroupName (BufferAgeTest::ResizeType resizeType) |
|
{ |
|
switch (resizeType) |
|
{ |
|
case BufferAgeTest::RESIZETYPE_NONE: |
|
return "no_resize"; |
|
|
|
case BufferAgeTest::RESIZETYPE_AFTER_SWAP: |
|
return "resize_after_swap"; |
|
|
|
case BufferAgeTest::RESIZETYPE_BEFORE_SWAP: |
|
return "resize_before_swap"; |
|
|
|
default: |
|
DE_FATAL("Unknown resize type"); |
|
return ""; |
|
} |
|
} |
|
|
|
bool isWindow (const eglu::CandidateConfig& c) |
|
{ |
|
return (c.surfaceType() & EGL_WINDOW_BIT) == EGL_WINDOW_BIT; |
|
} |
|
|
|
bool isES2Renderable (const eglu::CandidateConfig& c) |
|
{ |
|
return (c.get(EGL_RENDERABLE_TYPE) & EGL_OPENGL_ES2_BIT) == EGL_OPENGL_ES2_BIT; |
|
} |
|
|
|
bool hasPreserveSwap (const eglu::CandidateConfig& c) |
|
{ |
|
return (c.surfaceType() & EGL_SWAP_BEHAVIOR_PRESERVED_BIT) == EGL_SWAP_BEHAVIOR_PRESERVED_BIT; |
|
} |
|
|
|
EGLConfig getEGLConfig (const Library& egl, EGLDisplay eglDisplay, bool preserveColorBuffer) |
|
{ |
|
eglu::FilterList filters; |
|
filters << isWindow << isES2Renderable; |
|
if (preserveColorBuffer) |
|
filters << hasPreserveSwap; |
|
return eglu::chooseSingleConfig(egl, eglDisplay, filters); |
|
} |
|
|
|
void clearColorScreen (const glw::Functions& gl, const tcu::Vec4& clearColor) |
|
{ |
|
gl.clearColor(clearColor.x(), clearColor.y(), clearColor.z(), clearColor.w()); |
|
gl.clear(GL_COLOR_BUFFER_BIT); |
|
} |
|
|
|
void clearColorReference (tcu::Surface* ref, const tcu::Vec4& clearColor) |
|
{ |
|
tcu::clear(ref->getAccess(), clearColor); |
|
} |
|
|
|
void readPixels (const glw::Functions& gl, tcu::Surface* screen) |
|
{ |
|
gl.readPixels(0, 0, screen->getWidth(), screen->getHeight(), GL_RGBA, GL_UNSIGNED_BYTE, screen->getAccess().getDataPtr()); |
|
} |
|
|
|
float windowToDeviceCoordinates (int x, int length) |
|
{ |
|
return (2.0f * float(x) / float(length)) - 1.0f; |
|
} |
|
|
|
bool compareToReference (tcu::TestLog& log, const tcu::Surface& reference, const tcu::Surface& buffer, int frameNdx, int bufferNum) |
|
{ |
|
std::ostringstream stream; |
|
stream << "FrameNdx = " << frameNdx << ", compare current buffer (numbered: " << bufferNum << ") to reference"; |
|
return tcu::intThresholdPositionDeviationCompare(log, "buffer age test", stream.str().c_str(), reference.getAccess(), buffer.getAccess(), |
|
tcu::UVec4(8, 8, 8, 0), tcu::IVec3(2,2,0), true, tcu::COMPARE_LOG_RESULT); |
|
} |
|
|
|
} // anonymous |
|
|
|
BufferAgeTests::BufferAgeTests (EglTestContext& eglTestCtx) |
|
: TestCaseGroup(eglTestCtx, "buffer_age", "Color buffer age tests") |
|
{ |
|
} |
|
|
|
void BufferAgeTests::init (void) |
|
{ |
|
const BufferAgeTest::DrawType clearRender[] = |
|
{ |
|
BufferAgeTest::DRAWTYPE_GLES2_CLEAR, |
|
BufferAgeTest::DRAWTYPE_GLES2_RENDER |
|
}; |
|
|
|
const BufferAgeTest::DrawType renderClear[] = |
|
{ |
|
BufferAgeTest::DRAWTYPE_GLES2_RENDER, |
|
BufferAgeTest::DRAWTYPE_GLES2_CLEAR |
|
}; |
|
|
|
const BufferAgeTest::ResizeType resizeTypes[] = |
|
{ |
|
BufferAgeTest::RESIZETYPE_NONE, |
|
BufferAgeTest::RESIZETYPE_BEFORE_SWAP, |
|
BufferAgeTest::RESIZETYPE_AFTER_SWAP |
|
}; |
|
|
|
vector< vector<BufferAgeTest::DrawType> > frameDrawTypes; |
|
frameDrawTypes.push_back(vector<BufferAgeTest::DrawType> ()); |
|
frameDrawTypes.push_back(vector<BufferAgeTest::DrawType> (1, BufferAgeTest::DRAWTYPE_GLES2_CLEAR)); |
|
frameDrawTypes.push_back(vector<BufferAgeTest::DrawType> (1, BufferAgeTest::DRAWTYPE_GLES2_RENDER)); |
|
frameDrawTypes.push_back(vector<BufferAgeTest::DrawType> (2, BufferAgeTest::DRAWTYPE_GLES2_CLEAR)); |
|
frameDrawTypes.push_back(vector<BufferAgeTest::DrawType> (2, BufferAgeTest::DRAWTYPE_GLES2_RENDER)); |
|
frameDrawTypes.push_back(vector<BufferAgeTest::DrawType> (DE_ARRAY_BEGIN(clearRender), DE_ARRAY_END(clearRender))); |
|
frameDrawTypes.push_back(vector<BufferAgeTest::DrawType> (DE_ARRAY_BEGIN(renderClear), DE_ARRAY_END(renderClear))); |
|
|
|
for (int preserveNdx = 0; preserveNdx < 2; preserveNdx++) |
|
{ |
|
const bool preserve = (preserveNdx == 0); |
|
TestCaseGroup* const preserveGroup = new TestCaseGroup(m_eglTestCtx, (preserve ? "preserve" : "no_preserve"), ""); |
|
|
|
for (size_t resizeTypeNdx = 0; resizeTypeNdx < DE_LENGTH_OF_ARRAY(resizeTypes); resizeTypeNdx++) |
|
{ |
|
const BufferAgeTest::ResizeType resizeType = resizeTypes[resizeTypeNdx]; |
|
TestCaseGroup* const resizeGroup = new TestCaseGroup(m_eglTestCtx, generateResizeGroupName(resizeType).c_str(), ""); |
|
|
|
for (size_t evenNdx = 0; evenNdx < frameDrawTypes.size(); evenNdx++) |
|
{ |
|
const vector<BufferAgeTest::DrawType>& evenFrameDrawType = frameDrawTypes[evenNdx]; |
|
|
|
for (size_t oddNdx = evenNdx; oddNdx < frameDrawTypes.size(); oddNdx++) |
|
{ |
|
const vector<BufferAgeTest::DrawType>& oddFrameDrawType = frameDrawTypes[oddNdx]; |
|
const std::string name = generateTestName(oddFrameDrawType, evenFrameDrawType); |
|
resizeGroup->addChild(new BufferAgeTest(m_eglTestCtx, preserve, oddFrameDrawType, evenFrameDrawType, BufferAgeTest::RESIZETYPE_NONE, name.c_str(), "")); |
|
} |
|
} |
|
|
|
preserveGroup->addChild(resizeGroup); |
|
} |
|
addChild(preserveGroup); |
|
} |
|
} |
|
|
|
} // egl |
|
} // deqp
|
|
|