/* Copyright 2015-2019 Egor Yusov * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT OF ANY PROPRIETARY RIGHTS. * * In no event and under no legal theory, whether in tort (including negligence), * contract, or otherwise, unless required by applicable law (such as deliberate * and grossly negligent acts) or agreed to in writing, shall any Contributor be * liable for any damages, including any direct, indirect, special, incidental, * or consequential damages of any character arising as a result of this License or * out of the use or inability to use the software (including but not limited to damages * for loss of goodwill, work stoppage, computer failure or malfunction, or any and * all other commercial damages or losses), even if such Contributor has been advised * of the possibility of such damages. */ #include "pch.h" #include "TestSamplerCreation.h" #include "RenderDevice.h" using namespace Diligent; TestSamplerCreation::TestSamplerCreation(IRenderDevice *pDevice) : UnitTestBase("Test sampler creation"), m_pDevice(pDevice) { // Test different filters for(int Min = 0; Min < 2; ++Min) for(int Mag = 0; Mag < 2; ++Mag) for(int Mip = 0; Mip < 2; ++Mip) { SamplerDesc SamplerDesc; SamplerDesc.MinFilter = Min ? FILTER_TYPE_LINEAR : FILTER_TYPE_POINT; SamplerDesc.MagFilter = Mag ? FILTER_TYPE_LINEAR : FILTER_TYPE_POINT; SamplerDesc.MipFilter = Mip ? FILTER_TYPE_LINEAR : FILTER_TYPE_POINT; RefCntAutoPtr pSampler; m_pDevice->CreateSampler(SamplerDesc, &pSampler); } { SamplerDesc SamplerDesc; SamplerDesc.MinFilter = FILTER_TYPE_ANISOTROPIC; SamplerDesc.MagFilter = FILTER_TYPE_ANISOTROPIC; SamplerDesc.MipFilter = FILTER_TYPE_ANISOTROPIC; SamplerDesc.MaxAnisotropy = 4; RefCntAutoPtr pSampler; m_pDevice->CreateSampler(SamplerDesc, &pSampler); } for(int Min = 0; Min < 2; ++Min) for(int Mag = 0; Mag < 2; ++Mag) for(int Mip = 0; Mip < 2; ++Mip) { SamplerDesc SamplerDesc; SamplerDesc.MinFilter = Min ? FILTER_TYPE_COMPARISON_LINEAR : FILTER_TYPE_COMPARISON_POINT; SamplerDesc.MagFilter = Mag ? FILTER_TYPE_COMPARISON_LINEAR : FILTER_TYPE_COMPARISON_POINT; SamplerDesc.MipFilter = Mip ? FILTER_TYPE_COMPARISON_LINEAR : FILTER_TYPE_COMPARISON_POINT; RefCntAutoPtr pSampler; m_pDevice->CreateSampler(SamplerDesc, &pSampler); } { SamplerDesc SamplerDesc; SamplerDesc.MinFilter = FILTER_TYPE_COMPARISON_ANISOTROPIC; SamplerDesc.MagFilter = FILTER_TYPE_COMPARISON_ANISOTROPIC; SamplerDesc.MipFilter = FILTER_TYPE_COMPARISON_ANISOTROPIC; SamplerDesc.MaxAnisotropy = 4; RefCntAutoPtr pSampler; m_pDevice->CreateSampler(SamplerDesc, &pSampler); } // Test address modes TEXTURE_ADDRESS_MODE AddrModes[] = { TEXTURE_ADDRESS_WRAP, TEXTURE_ADDRESS_MIRROR, TEXTURE_ADDRESS_CLAMP, TEXTURE_ADDRESS_BORDER //TEXTURE_ADDRESS_MIRROR_ONCE // This mode is not supported on Intel HW }; for(int AddrMode = 0; AddrMode < _countof(AddrModes); ++AddrMode) { SamplerDesc SamplerDesc; SamplerDesc.MinFilter = FILTER_TYPE_LINEAR; SamplerDesc.MagFilter = FILTER_TYPE_LINEAR; SamplerDesc.MipFilter = FILTER_TYPE_LINEAR; SamplerDesc.AddressU = SamplerDesc.AddressV = SamplerDesc.AddressW = AddrModes[AddrMode]; RefCntAutoPtr pSampler; m_pDevice->CreateSampler(SamplerDesc, &pSampler); } // Test comparison funcs COMPARISON_FUNCTION CmpFuncs[] = { COMPARISON_FUNC_NEVER, COMPARISON_FUNC_LESS, COMPARISON_FUNC_EQUAL, COMPARISON_FUNC_LESS_EQUAL, COMPARISON_FUNC_GREATER, COMPARISON_FUNC_NOT_EQUAL, COMPARISON_FUNC_GREATER_EQUAL, COMPARISON_FUNC_ALWAYS }; for(int CmpFunc=0; CmpFunc < _countof(CmpFuncs); ++CmpFunc) { SamplerDesc SamplerDesc; SamplerDesc.MinFilter = FILTER_TYPE_LINEAR; SamplerDesc.MagFilter = FILTER_TYPE_LINEAR; SamplerDesc.MipFilter = FILTER_TYPE_LINEAR; SamplerDesc.ComparisonFunc = CmpFuncs[CmpFunc]; RefCntAutoPtr pSampler1, pSampler2; SamplerDesc.Name = "Sam1"; m_pDevice->CreateSampler(SamplerDesc, &pSampler1); SamplerDesc.Name = "Sam2"; m_pDevice->CreateSampler(SamplerDesc, &pSampler2); assert(pSampler1 == pSampler2); } SetStatus(TestResult::Succeeded); }