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703 lines
25 KiB
703 lines
25 KiB
/*------------------------------------------------------------------------- |
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* drawElements Quality Program OpenGL ES 2.0 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 Texture format tests. |
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* |
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* Constants: |
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* + nearest-neighbor filtering |
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* + no mipmaps |
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* + full texture coordinate range (but not outside) tested |
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* + accessed from fragment shader |
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* + texture unit 0 |
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* + named texture object |
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* |
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* Variables: |
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* + texture format |
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* + texture type: 2D or cubemap |
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*//*--------------------------------------------------------------------*/ |
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#include "es2fTextureFormatTests.hpp" |
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#include "glsTextureTestUtil.hpp" |
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#include "gluTexture.hpp" |
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#include "gluStrUtil.hpp" |
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#include "gluTextureUtil.hpp" |
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#include "gluPixelTransfer.hpp" |
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#include "tcuSurfaceAccess.hpp" |
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#include "tcuTestLog.hpp" |
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#include "tcuTextureUtil.hpp" |
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#include "deStringUtil.hpp" |
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#include "glwEnums.hpp" |
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#include "glwFunctions.hpp" |
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namespace deqp |
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{ |
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namespace gles2 |
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{ |
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namespace Functional |
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{ |
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using tcu::TestLog; |
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using std::vector; |
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using std::string; |
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using tcu::Sampler; |
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using namespace glu; |
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using namespace gls::TextureTestUtil; |
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using namespace glu::TextureTestUtil; |
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// Texture2DFormatCase |
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class Texture2DFormatCase : public tcu::TestCase |
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{ |
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public: |
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Texture2DFormatCase (tcu::TestContext& testCtx, glu::RenderContext& renderCtx, const char* name, const char* description, deUint32 format, deUint32 dataType, int width, int height); |
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~Texture2DFormatCase (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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Texture2DFormatCase (const Texture2DFormatCase& other); |
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Texture2DFormatCase& operator= (const Texture2DFormatCase& other); |
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glu::RenderContext& m_renderCtx; |
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const deUint32 m_format; |
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const deUint32 m_dataType; |
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const int m_width; |
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const int m_height; |
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glu::Texture2D* m_texture; |
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TextureRenderer m_renderer; |
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}; |
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Texture2DFormatCase::Texture2DFormatCase (tcu::TestContext& testCtx, glu::RenderContext& renderCtx, const char* name, const char* description, deUint32 format, deUint32 dataType, int width, int height) |
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: TestCase (testCtx, name, description) |
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, m_renderCtx (renderCtx) |
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, m_format (format) |
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, m_dataType (dataType) |
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, m_width (width) |
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, m_height (height) |
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, m_texture (DE_NULL) |
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, m_renderer (renderCtx, testCtx.getLog(), glu::GLSL_VERSION_100_ES, glu::PRECISION_MEDIUMP) |
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{ |
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} |
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Texture2DFormatCase::~Texture2DFormatCase (void) |
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{ |
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deinit(); |
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} |
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void Texture2DFormatCase::init (void) |
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{ |
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TestLog& log = m_testCtx.getLog(); |
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tcu::TextureFormat fmt = glu::mapGLTransferFormat(m_format, m_dataType); |
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tcu::TextureFormatInfo spec = tcu::getTextureFormatInfo(fmt); |
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std::ostringstream fmtName; |
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fmtName << getTextureFormatStr(m_format) << ", " << getTypeStr(m_dataType); |
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log << TestLog::Message << "2D texture, " << fmtName.str() << ", " << m_width << "x" << m_height |
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<< ",\n fill with " << formatGradient(&spec.valueMin, &spec.valueMax) << " gradient" |
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<< TestLog::EndMessage; |
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m_texture = new Texture2D(m_renderCtx, m_format, m_dataType, m_width, m_height); |
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// Fill level 0. |
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m_texture->getRefTexture().allocLevel(0); |
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tcu::fillWithComponentGradients(m_texture->getRefTexture().getLevel(0), spec.valueMin, spec.valueMax); |
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} |
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void Texture2DFormatCase::deinit (void) |
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{ |
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delete m_texture; |
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m_texture = DE_NULL; |
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m_renderer.clear(); |
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} |
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Texture2DFormatCase::IterateResult Texture2DFormatCase::iterate (void) |
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{ |
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TestLog& log = m_testCtx.getLog(); |
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const glw::Functions& gl = m_renderCtx.getFunctions(); |
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RandomViewport viewport (m_renderCtx.getRenderTarget(), m_width, m_height, deStringHash(getName())); |
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tcu::Surface renderedFrame (viewport.width, viewport.height); |
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tcu::Surface referenceFrame (viewport.width, viewport.height); |
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tcu::RGBA threshold = m_renderCtx.getRenderTarget().getPixelFormat().getColorThreshold() + tcu::RGBA(1,1,1,1); |
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vector<float> texCoord; |
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ReferenceParams renderParams (TEXTURETYPE_2D); |
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tcu::TextureFormatInfo spec = tcu::getTextureFormatInfo(m_texture->getRefTexture().getFormat()); |
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const deUint32 wrapS = GL_CLAMP_TO_EDGE; |
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const deUint32 wrapT = GL_CLAMP_TO_EDGE; |
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const deUint32 minFilter = GL_NEAREST; |
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const deUint32 magFilter = GL_NEAREST; |
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renderParams.flags |= RenderParams::LOG_ALL; |
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renderParams.samplerType = getSamplerType(m_texture->getRefTexture().getFormat()); |
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renderParams.sampler = Sampler(Sampler::CLAMP_TO_EDGE, Sampler::CLAMP_TO_EDGE, Sampler::CLAMP_TO_EDGE, Sampler::NEAREST, Sampler::NEAREST); |
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renderParams.colorScale = spec.lookupScale; |
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renderParams.colorBias = spec.lookupBias; |
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computeQuadTexCoord2D(texCoord, tcu::Vec2(0.0f, 0.0f), tcu::Vec2(1.0f, 1.0f)); |
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log << TestLog::Message << "Texture parameters:" |
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<< "\n WRAP_S = " << getTextureParameterValueStr(GL_TEXTURE_WRAP_S, wrapS) |
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<< "\n WRAP_T = " << getTextureParameterValueStr(GL_TEXTURE_WRAP_T, wrapT) |
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<< "\n MIN_FILTER = " << getTextureParameterValueStr(GL_TEXTURE_MIN_FILTER, minFilter) |
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<< "\n MAG_FILTER = " << getTextureParameterValueStr(GL_TEXTURE_MAG_FILTER, magFilter) |
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<< TestLog::EndMessage; |
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// Setup base viewport. |
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gl.viewport(viewport.x, viewport.y, viewport.width, viewport.height); |
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// Upload texture data to GL. |
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m_texture->upload(); |
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// Bind to unit 0. |
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gl.activeTexture(GL_TEXTURE0); |
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gl.bindTexture(GL_TEXTURE_2D, m_texture->getGLTexture()); |
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// Setup nearest neighbor filtering and clamp-to-edge. |
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gl.texParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_S, wrapS); |
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gl.texParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_T, wrapT); |
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gl.texParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, minFilter); |
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gl.texParameteri(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, magFilter); |
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GLU_EXPECT_NO_ERROR(gl.getError(), "Set texturing state"); |
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// Draw. |
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m_renderer.renderQuad(0, &texCoord[0], renderParams); |
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glu::readPixels(m_renderCtx, viewport.x, viewport.y, renderedFrame.getAccess()); |
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GLU_EXPECT_NO_ERROR(gl.getError(), "glReadPixels()"); |
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// Compute reference. |
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sampleTexture(tcu::SurfaceAccess(referenceFrame, m_renderCtx.getRenderTarget().getPixelFormat()), m_texture->getRefTexture(), &texCoord[0], renderParams); |
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// Compare and log. |
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bool isOk = compareImages(log, referenceFrame, renderedFrame, threshold); |
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m_testCtx.setTestResult(isOk ? QP_TEST_RESULT_PASS : QP_TEST_RESULT_FAIL, |
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isOk ? "Pass" : "Image comparison failed"); |
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return STOP; |
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} |
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// TextureCubeFormatCase |
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class TextureCubeFormatCase : public tcu::TestCase |
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{ |
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public: |
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TextureCubeFormatCase (tcu::TestContext& testCtx, glu::RenderContext& renderCtx, const char* name, const char* description, deUint32 format, deUint32 dataType, int width, int height); |
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~TextureCubeFormatCase (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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TextureCubeFormatCase (const TextureCubeFormatCase& other); |
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TextureCubeFormatCase& operator= (const TextureCubeFormatCase& other); |
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bool testFace (tcu::CubeFace face); |
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glu::RenderContext& m_renderCtx; |
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const deUint32 m_format; |
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const deUint32 m_dataType; |
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const int m_width; |
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const int m_height; |
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glu::TextureCube* m_texture; |
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TextureRenderer m_renderer; |
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int m_curFace; |
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bool m_isOk; |
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}; |
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TextureCubeFormatCase::TextureCubeFormatCase (tcu::TestContext& testCtx, glu::RenderContext& renderCtx, const char* name, const char* description, deUint32 format, deUint32 dataType, int width, int height) |
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: TestCase (testCtx, name, description) |
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, m_renderCtx (renderCtx) |
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, m_format (format) |
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, m_dataType (dataType) |
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, m_width (width) |
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, m_height (height) |
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, m_texture (DE_NULL) |
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, m_renderer (renderCtx, testCtx.getLog(), glu::GLSL_VERSION_100_ES, glu::PRECISION_MEDIUMP) |
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, m_curFace (0) |
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, m_isOk (false) |
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{ |
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} |
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TextureCubeFormatCase::~TextureCubeFormatCase (void) |
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{ |
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deinit(); |
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} |
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void TextureCubeFormatCase::init (void) |
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{ |
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TestLog& log = m_testCtx.getLog(); |
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tcu::TextureFormat fmt = glu::mapGLTransferFormat(m_format, m_dataType); |
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tcu::TextureFormatInfo spec = tcu::getTextureFormatInfo(fmt); |
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std::ostringstream fmtName; |
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if (m_dataType) |
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fmtName << getTextureFormatStr(m_format) << ", " << getTypeStr(m_dataType); |
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else |
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fmtName << getTextureFormatStr(m_format); |
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log << TestLog::Message << "Cube map texture, " << fmtName.str() << ", " << m_width << "x" << m_height |
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<< ",\n fill with " << formatGradient(&spec.valueMin, &spec.valueMax) << " gradient" |
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<< TestLog::EndMessage; |
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DE_ASSERT(m_width == m_height); |
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m_texture = m_dataType != GL_NONE |
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? new TextureCube(m_renderCtx, m_format, m_dataType, m_width) // Implicit internal format. |
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: new TextureCube(m_renderCtx, m_format, m_width); // Explicit internal format. |
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// Fill level 0. |
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for (int face = 0; face < tcu::CUBEFACE_LAST; face++) |
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{ |
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tcu::Vec4 gMin, gMax; |
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switch (face) |
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{ |
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case 0: gMin = spec.valueMin.swizzle(0, 1, 2, 3); gMax = spec.valueMax.swizzle(0, 1, 2, 3); break; |
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case 1: gMin = spec.valueMin.swizzle(2, 1, 0, 3); gMax = spec.valueMax.swizzle(2, 1, 0, 3); break; |
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case 2: gMin = spec.valueMin.swizzle(1, 2, 0, 3); gMax = spec.valueMax.swizzle(1, 2, 0, 3); break; |
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case 3: gMin = spec.valueMax.swizzle(0, 1, 2, 3); gMax = spec.valueMin.swizzle(0, 1, 2, 3); break; |
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case 4: gMin = spec.valueMax.swizzle(2, 1, 0, 3); gMax = spec.valueMin.swizzle(2, 1, 0, 3); break; |
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case 5: gMin = spec.valueMax.swizzle(1, 2, 0, 3); gMax = spec.valueMin.swizzle(1, 2, 0, 3); break; |
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default: |
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DE_ASSERT(false); |
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} |
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m_texture->getRefTexture().allocLevel((tcu::CubeFace)face, 0); |
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tcu::fillWithComponentGradients(m_texture->getRefTexture().getLevelFace(0, (tcu::CubeFace)face), gMin, gMax); |
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} |
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// Upload texture data to GL. |
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m_texture->upload(); |
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// Initialize iteration state. |
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m_curFace = 0; |
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m_isOk = true; |
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} |
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void TextureCubeFormatCase::deinit (void) |
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{ |
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delete m_texture; |
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m_texture = DE_NULL; |
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m_renderer.clear(); |
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} |
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bool TextureCubeFormatCase::testFace (tcu::CubeFace face) |
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{ |
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const glw::Functions& gl = m_renderCtx.getFunctions(); |
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TestLog& log = m_testCtx.getLog(); |
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RandomViewport viewport (m_renderCtx.getRenderTarget(), m_width, m_height, deStringHash(getName())+(deUint32)face); |
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tcu::Surface renderedFrame (viewport.width, viewport.height); |
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tcu::Surface referenceFrame (viewport.width, viewport.height); |
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tcu::RGBA threshold = m_renderCtx.getRenderTarget().getPixelFormat().getColorThreshold() + tcu::RGBA(1,1,1,1); |
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vector<float> texCoord; |
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ReferenceParams renderParams (TEXTURETYPE_CUBE); |
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tcu::TextureFormatInfo spec = tcu::getTextureFormatInfo(m_texture->getRefTexture().getFormat()); |
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renderParams.samplerType = getSamplerType(m_texture->getRefTexture().getFormat()); |
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renderParams.sampler = Sampler(Sampler::CLAMP_TO_EDGE, Sampler::CLAMP_TO_EDGE, Sampler::CLAMP_TO_EDGE, Sampler::NEAREST, Sampler::NEAREST); |
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renderParams.sampler.seamlessCubeMap = false; |
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renderParams.colorScale = spec.lookupScale; |
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renderParams.colorBias = spec.lookupBias; |
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// Log render info on first face. |
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if (face == tcu::CUBEFACE_NEGATIVE_X) |
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renderParams.flags |= RenderParams::LOG_ALL; |
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computeQuadTexCoordCube(texCoord, face); |
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// \todo [2011-10-28 pyry] Image set name / section? |
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log << TestLog::Message << face << TestLog::EndMessage; |
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// Setup base viewport. |
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gl.viewport(viewport.x, viewport.y, viewport.width, viewport.height); |
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// Bind to unit 0. |
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gl.activeTexture(GL_TEXTURE0); |
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gl.bindTexture(GL_TEXTURE_CUBE_MAP, m_texture->getGLTexture()); |
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// Setup nearest neighbor filtering and clamp-to-edge. |
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gl.texParameteri(GL_TEXTURE_CUBE_MAP, GL_TEXTURE_WRAP_S, GL_CLAMP_TO_EDGE); |
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gl.texParameteri(GL_TEXTURE_CUBE_MAP, GL_TEXTURE_WRAP_T, GL_CLAMP_TO_EDGE); |
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gl.texParameteri(GL_TEXTURE_CUBE_MAP, GL_TEXTURE_MIN_FILTER, GL_NEAREST); |
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gl.texParameteri(GL_TEXTURE_CUBE_MAP, GL_TEXTURE_MAG_FILTER, GL_NEAREST); |
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GLU_EXPECT_NO_ERROR(gl.getError(), "Set texturing state"); |
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m_renderer.renderQuad(0, &texCoord[0], renderParams); |
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glu::readPixels(m_renderCtx, viewport.x, viewport.y, renderedFrame.getAccess()); |
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GLU_EXPECT_NO_ERROR(gl.getError(), "glReadPixels()"); |
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// Compute reference. |
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sampleTexture(tcu::SurfaceAccess(referenceFrame, m_renderCtx.getRenderTarget().getPixelFormat()), m_texture->getRefTexture(), &texCoord[0], renderParams); |
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// Compare and log. |
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return compareImages(log, referenceFrame, renderedFrame, threshold); |
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} |
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TextureCubeFormatCase::IterateResult TextureCubeFormatCase::iterate (void) |
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{ |
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// Execute test for all faces. |
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if (!testFace((tcu::CubeFace)m_curFace)) |
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m_isOk = false; |
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m_curFace += 1; |
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if (m_curFace == tcu::CUBEFACE_LAST) |
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{ |
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m_testCtx.setTestResult(m_isOk ? QP_TEST_RESULT_PASS : QP_TEST_RESULT_FAIL, |
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m_isOk ? "Pass" : "Image comparison failed"); |
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return STOP; |
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} |
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else |
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return CONTINUE; |
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} |
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TextureFormatTests::TextureFormatTests (Context& context) |
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: TestCaseGroup(context, "format", "Texture Format Tests") |
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{ |
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} |
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TextureFormatTests::~TextureFormatTests (void) |
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{ |
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} |
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// Compressed2DFormatCase |
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class Compressed2DFormatCase : public tcu::TestCase |
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{ |
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public: |
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Compressed2DFormatCase (tcu::TestContext& testCtx, glu::RenderContext& renderCtx, const glu::ContextInfo& renderCtxInfo, const char* name, const char* description, const std::vector<std::string>& filenames); |
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~Compressed2DFormatCase (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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Compressed2DFormatCase (const Compressed2DFormatCase& other); |
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Compressed2DFormatCase& operator= (const Compressed2DFormatCase& other); |
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glu::RenderContext& m_renderCtx; |
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const glu::ContextInfo& m_renderCtxInfo; |
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std::vector<std::string> m_filenames; |
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glu::Texture2D* m_texture; |
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TextureRenderer m_renderer; |
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}; |
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Compressed2DFormatCase::Compressed2DFormatCase (tcu::TestContext& testCtx, glu::RenderContext& renderCtx, const glu::ContextInfo& renderCtxInfo, const char* name, const char* description, const std::vector<std::string>& filenames) |
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: TestCase (testCtx, name, description) |
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, m_renderCtx (renderCtx) |
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, m_renderCtxInfo (renderCtxInfo) |
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, m_filenames (filenames) |
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, m_texture (DE_NULL) |
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, m_renderer (renderCtx, testCtx.getLog(), glu::GLSL_VERSION_100_ES, glu::PRECISION_MEDIUMP) |
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{ |
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} |
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Compressed2DFormatCase::~Compressed2DFormatCase (void) |
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{ |
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deinit(); |
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} |
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void Compressed2DFormatCase::init (void) |
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{ |
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// Create texture. |
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m_texture = Texture2D::create(m_renderCtx, m_renderCtxInfo, m_testCtx.getArchive(), (int)m_filenames.size(), m_filenames); |
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} |
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void Compressed2DFormatCase::deinit (void) |
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{ |
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delete m_texture; |
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m_texture = DE_NULL; |
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m_renderer.clear(); |
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} |
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Compressed2DFormatCase::IterateResult Compressed2DFormatCase::iterate (void) |
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{ |
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const glw::Functions& gl = m_renderCtx.getFunctions(); |
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TestLog& log = m_testCtx.getLog(); |
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RandomViewport viewport (m_renderCtx.getRenderTarget(), m_texture->getRefTexture().getWidth(), m_texture->getRefTexture().getHeight(), deStringHash(getName())); |
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tcu::Surface renderedFrame (viewport.width, viewport.height); |
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tcu::Surface referenceFrame (viewport.width, viewport.height); |
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tcu::RGBA threshold = m_renderCtx.getRenderTarget().getPixelFormat().getColorThreshold() + tcu::RGBA(1,1,1,1); |
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vector<float> texCoord; |
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computeQuadTexCoord2D(texCoord, tcu::Vec2(0.0f, 0.0f), tcu::Vec2(1.0f, 1.0f)); |
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// Setup base viewport. |
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gl.viewport(viewport.x, viewport.y, viewport.width, viewport.height); |
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// Bind to unit 0. |
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gl.activeTexture(GL_TEXTURE0); |
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gl.bindTexture(GL_TEXTURE_2D, m_texture->getGLTexture()); |
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// Setup nearest neighbor filtering and clamp-to-edge. |
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gl.texParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_S, GL_CLAMP_TO_EDGE); |
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gl.texParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_T, GL_CLAMP_TO_EDGE); |
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gl.texParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_NEAREST); |
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gl.texParameteri(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_NEAREST); |
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GLU_EXPECT_NO_ERROR(gl.getError(), "Set texturing state"); |
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// Draw. |
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m_renderer.renderQuad(0, &texCoord[0], TEXTURETYPE_2D); |
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glu::readPixels(m_renderCtx, viewport.x, viewport.y, renderedFrame.getAccess()); |
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GLU_EXPECT_NO_ERROR(gl.getError(), "glReadPixels()"); |
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// Compute reference. |
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ReferenceParams refParams(TEXTURETYPE_2D); |
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refParams.sampler = Sampler(Sampler::CLAMP_TO_EDGE, Sampler::CLAMP_TO_EDGE, Sampler::CLAMP_TO_EDGE, Sampler::NEAREST, Sampler::NEAREST); |
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sampleTexture(tcu::SurfaceAccess(referenceFrame, m_renderCtx.getRenderTarget().getPixelFormat()), m_texture->getRefTexture(), &texCoord[0], refParams); |
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// Compare and log. |
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bool isOk = compareImages(log, referenceFrame, renderedFrame, threshold); |
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m_testCtx.setTestResult(isOk ? QP_TEST_RESULT_PASS : QP_TEST_RESULT_FAIL, |
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isOk ? "Pass" : "Image comparison failed"); |
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return STOP; |
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} |
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// CompressedCubeFormatCase |
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class CompressedCubeFormatCase : public tcu::TestCase |
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{ |
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public: |
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CompressedCubeFormatCase (tcu::TestContext& testCtx, glu::RenderContext& renderCtx, const glu::ContextInfo& renderCtxInfo, const char* name, const char* description, const std::vector<std::string>& filenames); |
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~CompressedCubeFormatCase (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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CompressedCubeFormatCase (const CompressedCubeFormatCase& other); |
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CompressedCubeFormatCase& operator= (const CompressedCubeFormatCase& other); |
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bool testFace (tcu::CubeFace face); |
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glu::RenderContext& m_renderCtx; |
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const glu::ContextInfo& m_renderCtxInfo; |
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std::vector<std::string> m_filenames; |
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glu::TextureCube* m_texture; |
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TextureRenderer m_renderer; |
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int m_curFace; |
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bool m_isOk; |
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}; |
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CompressedCubeFormatCase::CompressedCubeFormatCase (tcu::TestContext& testCtx, glu::RenderContext& renderCtx, const glu::ContextInfo& renderCtxInfo, const char* name, const char* description, const std::vector<std::string>& filenames) |
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: TestCase (testCtx, name, description) |
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, m_renderCtx (renderCtx) |
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, m_renderCtxInfo (renderCtxInfo) |
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, m_filenames (filenames) |
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, m_texture (DE_NULL) |
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, m_renderer (renderCtx, testCtx.getLog(), glu::GLSL_VERSION_100_ES, glu::PRECISION_MEDIUMP) |
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, m_curFace (0) |
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, m_isOk (false) |
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{ |
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} |
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CompressedCubeFormatCase::~CompressedCubeFormatCase (void) |
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{ |
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deinit(); |
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} |
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void CompressedCubeFormatCase::init (void) |
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{ |
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// Create texture. |
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DE_ASSERT(m_filenames.size() % 6 == 0); |
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m_texture = TextureCube::create(m_renderCtx, m_renderCtxInfo, m_testCtx.getArchive(), (int)m_filenames.size()/6, m_filenames); |
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m_curFace = 0; |
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m_isOk = true; |
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} |
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void CompressedCubeFormatCase::deinit (void) |
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{ |
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delete m_texture; |
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m_texture = DE_NULL; |
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m_renderer.clear(); |
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} |
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bool CompressedCubeFormatCase::testFace (tcu::CubeFace face) |
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{ |
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const glw::Functions& gl = m_renderCtx.getFunctions(); |
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TestLog& log = m_testCtx.getLog(); |
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RandomViewport viewport (m_renderCtx.getRenderTarget(), m_texture->getRefTexture().getSize(), m_texture->getRefTexture().getSize(), deStringHash(getName())+(deUint32)face); |
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tcu::Surface renderedFrame (viewport.width, viewport.height); |
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tcu::Surface referenceFrame (viewport.width, viewport.height); |
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Sampler sampler (Sampler::CLAMP_TO_EDGE, Sampler::CLAMP_TO_EDGE, Sampler::CLAMP_TO_EDGE, Sampler::NEAREST, Sampler::NEAREST); |
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tcu::RGBA threshold = m_renderCtx.getRenderTarget().getPixelFormat().getColorThreshold() + tcu::RGBA(1,1,1,1); |
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vector<float> texCoord; |
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computeQuadTexCoordCube(texCoord, face); |
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// \todo [2011-10-28 pyry] Image set name / section? |
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log << TestLog::Message << face << TestLog::EndMessage; |
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// Setup base viewport. |
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gl.viewport(viewport.x, viewport.y, viewport.width, viewport.height); |
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// Bind to unit 0. |
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gl.activeTexture(GL_TEXTURE0); |
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gl.bindTexture(GL_TEXTURE_CUBE_MAP, m_texture->getGLTexture()); |
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// Setup nearest neighbor filtering and clamp-to-edge. |
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gl.texParameteri(GL_TEXTURE_CUBE_MAP, GL_TEXTURE_WRAP_S, GL_CLAMP_TO_EDGE); |
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gl.texParameteri(GL_TEXTURE_CUBE_MAP, GL_TEXTURE_WRAP_T, GL_CLAMP_TO_EDGE); |
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gl.texParameteri(GL_TEXTURE_CUBE_MAP, GL_TEXTURE_MIN_FILTER, GL_NEAREST); |
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gl.texParameteri(GL_TEXTURE_CUBE_MAP, GL_TEXTURE_MAG_FILTER, GL_NEAREST); |
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GLU_EXPECT_NO_ERROR(gl.getError(), "Set texturing state"); |
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m_renderer.renderQuad(0, &texCoord[0], TEXTURETYPE_CUBE); |
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glu::readPixels(m_renderCtx, viewport.x, viewport.y, renderedFrame.getAccess()); |
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GLU_EXPECT_NO_ERROR(gl.getError(), "glReadPixels()"); |
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// Compute reference. |
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sampleTexture(tcu::SurfaceAccess(referenceFrame, m_renderCtx.getRenderTarget().getPixelFormat()), m_texture->getRefTexture(), &texCoord[0], ReferenceParams(TEXTURETYPE_CUBE, sampler)); |
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// Compare and log. |
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return compareImages(log, referenceFrame, renderedFrame, threshold); |
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} |
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CompressedCubeFormatCase::IterateResult CompressedCubeFormatCase::iterate (void) |
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{ |
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// Execute test for all faces. |
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if (!testFace((tcu::CubeFace)m_curFace)) |
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m_isOk = false; |
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m_curFace += 1; |
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if (m_curFace == tcu::CUBEFACE_LAST) |
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{ |
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m_testCtx.setTestResult(m_isOk ? QP_TEST_RESULT_PASS : QP_TEST_RESULT_FAIL, |
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m_isOk ? "Pass" : "Image comparison failed"); |
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return STOP; |
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} |
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else |
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return CONTINUE; |
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} |
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|
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vector<string> toStringVector (const char* const* str, int numStr) |
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{ |
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vector<string> v; |
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v.resize(numStr); |
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for (int i = 0; i < numStr; i++) |
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v[i] = str[i]; |
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return v; |
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} |
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|
|
void TextureFormatTests::init (void) |
|
{ |
|
struct |
|
{ |
|
const char* name; |
|
deUint32 format; |
|
deUint32 dataType; |
|
} texFormats[] = |
|
{ |
|
{ "a8", GL_ALPHA, GL_UNSIGNED_BYTE }, |
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{ "l8", GL_LUMINANCE, GL_UNSIGNED_BYTE }, |
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{ "la88", GL_LUMINANCE_ALPHA, GL_UNSIGNED_BYTE }, |
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{ "rgb565", GL_RGB, GL_UNSIGNED_SHORT_5_6_5 }, |
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{ "rgb888", GL_RGB, GL_UNSIGNED_BYTE }, |
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{ "rgba4444", GL_RGBA, GL_UNSIGNED_SHORT_4_4_4_4 }, |
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{ "rgba5551", GL_RGBA, GL_UNSIGNED_SHORT_5_5_5_1 }, |
|
{ "rgba8888", GL_RGBA, GL_UNSIGNED_BYTE } |
|
}; |
|
|
|
for (int formatNdx = 0; formatNdx < DE_LENGTH_OF_ARRAY(texFormats); formatNdx++) |
|
{ |
|
deUint32 format = texFormats[formatNdx].format; |
|
deUint32 dataType = texFormats[formatNdx].dataType; |
|
string nameBase = texFormats[formatNdx].name; |
|
string descriptionBase = string(glu::getTextureFormatName(format)) + ", " + glu::getTypeName(dataType); |
|
|
|
addChild(new Texture2DFormatCase (m_testCtx, m_context.getRenderContext(), (nameBase + "_2d_pot").c_str(), (descriptionBase + ", GL_TEXTURE_2D").c_str(), format, dataType, 128, 128)); |
|
addChild(new Texture2DFormatCase (m_testCtx, m_context.getRenderContext(), (nameBase + "_2d_npot").c_str(), (descriptionBase + ", GL_TEXTURE_2D").c_str(), format, dataType, 63, 112)); |
|
addChild(new TextureCubeFormatCase (m_testCtx, m_context.getRenderContext(), (nameBase + "_cube_pot").c_str(), (descriptionBase + ", GL_TEXTURE_CUBE_MAP").c_str(), format, dataType, 64, 64)); |
|
addChild(new TextureCubeFormatCase (m_testCtx, m_context.getRenderContext(), (nameBase + "_cube_npot").c_str(), (descriptionBase + ", GL_TEXTURE_CUBE_MAP").c_str(), format, dataType, 57, 57)); |
|
} |
|
|
|
// ETC-1 compressed formats. |
|
{ |
|
static const char* filenames[] = |
|
{ |
|
"data/etc1/photo_helsinki_mip_0.pkm", |
|
"data/etc1/photo_helsinki_mip_1.pkm", |
|
"data/etc1/photo_helsinki_mip_2.pkm", |
|
"data/etc1/photo_helsinki_mip_3.pkm", |
|
"data/etc1/photo_helsinki_mip_4.pkm", |
|
"data/etc1/photo_helsinki_mip_5.pkm", |
|
"data/etc1/photo_helsinki_mip_6.pkm", |
|
"data/etc1/photo_helsinki_mip_7.pkm" |
|
}; |
|
addChild(new Compressed2DFormatCase(m_testCtx, m_context.getRenderContext(), m_context.getContextInfo(), "etc1_2d_pot", "GL_ETC1_RGB8_OES, GL_TEXTURE_2D", toStringVector(filenames, DE_LENGTH_OF_ARRAY(filenames)))); |
|
} |
|
|
|
{ |
|
vector<string> filenames; |
|
filenames.push_back("data/etc1/photo_helsinki_113x89.pkm"); |
|
addChild(new Compressed2DFormatCase(m_testCtx, m_context.getRenderContext(), m_context.getContextInfo(), "etc1_2d_npot", "GL_ETC1_RGB8_OES, GL_TEXTURE_2D", filenames)); |
|
} |
|
|
|
{ |
|
static const char* faceExt[] = { "neg_x", "pos_x", "neg_y", "pos_y", "neg_z", "pos_z" }; |
|
|
|
const int potNumLevels = 7; |
|
vector<string> potFilenames; |
|
for (int level = 0; level < potNumLevels; level++) |
|
for (int face = 0; face < tcu::CUBEFACE_LAST; face++) |
|
potFilenames.push_back(string("data/etc1/skybox_") + faceExt[face] + "_mip_" + de::toString(level) + ".pkm"); |
|
|
|
addChild(new CompressedCubeFormatCase(m_testCtx, m_context.getRenderContext(), m_context.getContextInfo(), "etc1_cube_pot", "GL_ETC1_RGB8_OES, GL_TEXTURE_CUBE_MAP", potFilenames)); |
|
|
|
vector<string> npotFilenames; |
|
for (int face = 0; face < tcu::CUBEFACE_LAST; face++) |
|
npotFilenames.push_back(string("data/etc1/skybox_61x61_") + faceExt[face] + ".pkm"); |
|
|
|
addChild(new CompressedCubeFormatCase(m_testCtx, m_context.getRenderContext(), m_context.getContextInfo(), "etc1_cube_npot", "GL_ETC_RGB8_OES, GL_TEXTURE_CUBE_MAP", npotFilenames)); |
|
} |
|
} |
|
|
|
} // Functional |
|
} // gles2 |
|
} // deqp
|
|
|