1 /*-------------------------------------------------------------------------
2 * Vulkan Conformance Tests
3 * ------------------------
5 * Copyright (c) 2015 Google Inc.
7 * Licensed under the Apache License, Version 2.0 (the "License");
8 * you may not use this file except in compliance with the License.
9 * You may obtain a copy of the License at
11 * http://www.apache.org/licenses/LICENSE-2.0
13 * Unless required by applicable law or agreed to in writing, software
14 * distributed under the License is distributed on an "AS IS" BASIS,
15 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
16 * See the License for the specific language governing permissions and
17 * limitations under the License.
21 * \brief Api Feature Query tests
22 *//*--------------------------------------------------------------------*/
24 #include "vktApiFeatureInfo.hpp"
26 #include "vktTestCaseUtil.hpp"
27 #include "vktTestGroupUtil.hpp"
29 #include "vkPlatform.hpp"
30 #include "vkStrUtil.hpp"
32 #include "vkDeviceUtil.hpp"
33 #include "vkQueryUtil.hpp"
34 #include "vkImageUtil.hpp"
36 #include "tcuTestLog.hpp"
37 #include "tcuFormatUtil.hpp"
38 #include "tcuTextureUtil.hpp"
40 #include "deUniquePtr.hpp"
41 #include "deStringUtil.hpp"
42 #include "deSTLUtil.hpp"
57 using tcu::ScopedLogSection;
61 GUARD_SIZE = 0x20, //!< Number of bytes to check
62 GUARD_VALUE = 0xcd, //!< Data pattern
65 static const VkDeviceSize MINIMUM_REQUIRED_IMAGE_RESOURCE_SIZE = (1LLU<<31); //!< Minimum value for VkImageFormatProperties::maxResourceSize (2GiB)
69 LIMIT_FORMAT_SIGNED_INT,
70 LIMIT_FORMAT_UNSIGNED_INT,
72 LIMIT_FORMAT_DEVICE_SIZE,
86 #define LIMIT(_X_) DE_OFFSET_OF(VkPhysicalDeviceLimits, _X_),(char*)(#_X_)
87 #define FEATURE(_X_) DE_OFFSET_OF(VkPhysicalDeviceFeatures, _X_)
89 bool validateFeatureLimits(VkPhysicalDeviceProperties* properties, VkPhysicalDeviceFeatures* features, TestLog& log)
92 VkPhysicalDeviceLimits* limits = &properties->limits;
93 struct FeatureLimitTable
97 deUint32 uintVal; //!< Format is UNSIGNED_INT
98 deInt32 intVal; //!< Format is SIGNED_INT
99 deUint64 deviceSizeVal; //!< Format is DEVICE_SIZE
100 float floatVal; //!< Format is FLOAT
103 deInt32 unsuppTableNdx;
104 } featureLimitTable[] = //!< From gitlab.khronos.org/vulkan/vulkan.git:doc/specs/vulkan/chapters/features.txt@63b23f3bb3ecd211cd6e448e2001ce1088dacd35
106 { LIMIT(maxImageDimension1D), 4096, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN, -1 },
107 { LIMIT(maxImageDimension2D), 4096, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
108 { LIMIT(maxImageDimension3D), 256, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
109 { LIMIT(maxImageDimensionCube), 4096, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
110 { LIMIT(maxImageArrayLayers), 256, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
111 { LIMIT(maxTexelBufferElements), 65536, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
112 { LIMIT(maxUniformBufferRange), 16384, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
113 { LIMIT(maxStorageBufferRange), 0, 0, 0, 0, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_NONE, -1 },
114 { LIMIT(maxPushConstantsSize), 128, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
115 { LIMIT(maxMemoryAllocationCount), 4096, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
116 { LIMIT(maxSamplerAllocationCount), 0, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_NONE , -1 },
117 { LIMIT(bufferImageGranularity), 0, 0, 131072, 0.0f, LIMIT_FORMAT_DEVICE_SIZE, LIMIT_TYPE_MAX, -1 },
118 { LIMIT(sparseAddressSpaceSize), 0, 0, 2UL*1024*1024*1024, 0.0f, LIMIT_FORMAT_DEVICE_SIZE, LIMIT_TYPE_MIN, -1 },
119 { LIMIT(maxBoundDescriptorSets), 4, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN, -1 },
120 { LIMIT(maxPerStageDescriptorSamplers), 16, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN, -1 },
121 { LIMIT(maxPerStageDescriptorUniformBuffers), 12, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
122 { LIMIT(maxPerStageDescriptorStorageBuffers), 4, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
123 { LIMIT(maxPerStageDescriptorSampledImages), 16, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
124 { LIMIT(maxPerStageDescriptorStorageImages), 4, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
125 { LIMIT(maxPerStageDescriptorInputAttachments), 4, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
126 { LIMIT(maxPerStageResources), 0, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_NONE , -1 },
127 { LIMIT(maxDescriptorSetSamplers), 96, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN, -1 },
128 { LIMIT(maxDescriptorSetUniformBuffers), 72, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
129 { LIMIT(maxDescriptorSetUniformBuffersDynamic), 8, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN, -1 },
130 { LIMIT(maxDescriptorSetStorageBuffers), 24, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
131 { LIMIT(maxDescriptorSetStorageBuffersDynamic), 4, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
132 { LIMIT(maxDescriptorSetSampledImages), 96, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
133 { LIMIT(maxDescriptorSetStorageImages), 24, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
134 { LIMIT(maxDescriptorSetInputAttachments), 0, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_NONE , -1 },
135 { LIMIT(maxVertexInputAttributes), 16, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
136 { LIMIT(maxVertexInputBindings), 16, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
137 { LIMIT(maxVertexInputAttributeOffset), 2047, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
138 { LIMIT(maxVertexInputBindingStride), 2048, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
139 { LIMIT(maxVertexOutputComponents), 64, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
140 { LIMIT(maxTessellationGenerationLevel), 64, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
141 { LIMIT(maxTessellationPatchSize), 32, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
142 { LIMIT(maxTessellationControlPerVertexInputComponents), 64, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
143 { LIMIT(maxTessellationControlPerVertexOutputComponents), 64, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
144 { LIMIT(maxTessellationControlPerPatchOutputComponents), 120, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
145 { LIMIT(maxTessellationControlTotalOutputComponents), 2048, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
146 { LIMIT(maxTessellationEvaluationInputComponents), 64, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
147 { LIMIT(maxTessellationEvaluationOutputComponents), 64, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
148 { LIMIT(maxGeometryShaderInvocations), 32, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
149 { LIMIT(maxGeometryInputComponents), 64, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
150 { LIMIT(maxGeometryOutputComponents), 64, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
151 { LIMIT(maxGeometryOutputVertices), 256, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
152 { LIMIT(maxGeometryTotalOutputComponents), 1024, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
153 { LIMIT(maxFragmentInputComponents), 64, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
154 { LIMIT(maxFragmentOutputAttachments), 4, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
155 { LIMIT(maxFragmentDualSrcAttachments), 1, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
156 { LIMIT(maxFragmentCombinedOutputResources), 4, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
157 { LIMIT(maxComputeSharedMemorySize), 16384, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
158 { LIMIT(maxComputeWorkGroupCount[0]), 65535, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
159 { LIMIT(maxComputeWorkGroupCount[1]), 65535, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
160 { LIMIT(maxComputeWorkGroupCount[2]), 65535, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
161 { LIMIT(maxComputeWorkGroupInvocations), 128, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
162 { LIMIT(maxComputeWorkGroupSize[0]), 128, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
163 { LIMIT(maxComputeWorkGroupSize[1]), 128, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
164 { LIMIT(maxComputeWorkGroupSize[2]), 64, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
165 { LIMIT(subPixelPrecisionBits), 4, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
166 { LIMIT(subTexelPrecisionBits), 4, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
167 { LIMIT(mipmapPrecisionBits), 4, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
168 { LIMIT(maxDrawIndexedIndexValue), (deUint32)~0, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN, -1 },
169 { LIMIT(maxDrawIndirectCount), 65535, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
170 { LIMIT(maxSamplerLodBias), 0, 0, 0, 2.0f, LIMIT_FORMAT_FLOAT, LIMIT_TYPE_MIN, -1 },
171 { LIMIT(maxSamplerAnisotropy), 0, 0, 0, 16.0f, LIMIT_FORMAT_FLOAT, LIMIT_TYPE_MIN, -1 },
172 { LIMIT(maxViewports), 16, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN, -1 },
173 { LIMIT(maxViewportDimensions[0]), 4096, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
174 { LIMIT(maxViewportDimensions[1]), 4096, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN , -1 },
175 { LIMIT(viewportBoundsRange[0]), 0, 0, 0, -8192.0f, LIMIT_FORMAT_FLOAT, LIMIT_TYPE_MAX, -1 },
176 { LIMIT(viewportBoundsRange[1]), 0, 0, 0, 8191.0f, LIMIT_FORMAT_FLOAT, LIMIT_TYPE_MIN, -1 },
177 { LIMIT(viewportSubPixelBits), 0, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN, -1 },
178 { LIMIT(minMemoryMapAlignment), 64, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN, -1 },
179 { LIMIT(minTexelBufferOffsetAlignment), 256, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MAX, -1 },
180 { LIMIT(minUniformBufferOffsetAlignment), 256, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MAX, -1 },
181 { LIMIT(minStorageBufferOffsetAlignment), 256, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MAX, -1 },
182 { LIMIT(minTexelOffset), 0, -8, 0, 0.0f, LIMIT_FORMAT_SIGNED_INT, LIMIT_TYPE_MAX, -1 },
183 { LIMIT(maxTexelOffset), 7, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN, -1 },
184 { LIMIT(minTexelGatherOffset), 0, -8, 0, 0.0f, LIMIT_FORMAT_SIGNED_INT, LIMIT_TYPE_MAX, -1 },
185 { LIMIT(maxTexelGatherOffset), 7, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN, -1 },
186 { LIMIT(minInterpolationOffset), 0, 0, 0, -0.5f, LIMIT_FORMAT_FLOAT, LIMIT_TYPE_MAX, -1 },
187 { LIMIT(maxInterpolationOffset), 0, 0, 0, 0.5f - (1.0f/deFloatPow(2.0f, (float)limits->subPixelInterpolationOffsetBits)), LIMIT_FORMAT_FLOAT, LIMIT_TYPE_MIN, -1 },
188 { LIMIT(subPixelInterpolationOffsetBits), 4, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN, -1 },
189 { LIMIT(maxFramebufferWidth), 4096, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN, -1 },
190 { LIMIT(maxFramebufferHeight), 4096, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN, -1 },
191 { LIMIT(maxFramebufferLayers), 0, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN, -1 },
192 { LIMIT(framebufferColorSampleCounts), 0, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_NONE, -1 },
193 { LIMIT(framebufferDepthSampleCounts), 0, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_NONE, -1 },
194 { LIMIT(framebufferStencilSampleCounts), 0, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_NONE, -1 },
195 { LIMIT(framebufferNoAttachmentsSampleCounts), 0, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_NONE, -1 },
196 { LIMIT(maxColorAttachments), 4, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN, -1 },
197 { LIMIT(sampledImageColorSampleCounts), 4, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_NONE, -1 },
198 { LIMIT(sampledImageIntegerSampleCounts), 4, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_NONE, -1 },
199 { LIMIT(sampledImageDepthSampleCounts), 4, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_NONE, -1 },
200 { LIMIT(sampledImageStencilSampleCounts), 4, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_NONE, -1 },
201 { LIMIT(storageImageSampleCounts), 4, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_NONE, -1 },
202 { LIMIT(maxSampleMaskWords), 1, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN, -1 },
203 { LIMIT(timestampComputeAndGraphics), 0, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_NONE, -1 },
204 { LIMIT(timestampPeriod), 0, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_NONE, -1 },
205 { LIMIT(maxClipDistances), 8, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN, -1 },
206 { LIMIT(maxCullDistances), 8, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN, -1 },
207 { LIMIT(maxCombinedClipAndCullDistances), 8, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_MIN, -1 },
208 { LIMIT(discreteQueuePriorities), 8, 0, 0, 0.0f, LIMIT_FORMAT_UNSIGNED_INT, LIMIT_TYPE_NONE, -1 },
209 { LIMIT(pointSizeRange[0]), 0, 0, 0, 1.0f, LIMIT_FORMAT_FLOAT, LIMIT_TYPE_MAX, -1 },
210 { LIMIT(pointSizeRange[1]), 0, 0, 0, 1.0f, LIMIT_FORMAT_FLOAT, LIMIT_TYPE_MIN, -1 },
211 { LIMIT(pointSizeRange[0]), 0, 0, 0, 1.0f, LIMIT_FORMAT_FLOAT, LIMIT_TYPE_MAX, -1 },
212 { LIMIT(pointSizeRange[1]), 0, 0, 0, 64.0f - limits->pointSizeGranularity , LIMIT_FORMAT_FLOAT, LIMIT_TYPE_MIN, -1 },
213 { LIMIT(lineWidthRange[0]), 0, 0, 0, 1.0f, LIMIT_FORMAT_FLOAT, LIMIT_TYPE_MAX, -1 },
214 { LIMIT(lineWidthRange[1]), 0, 0, 0, 1.0f, LIMIT_FORMAT_FLOAT, LIMIT_TYPE_MIN, -1 },
215 { LIMIT(lineWidthRange[0]), 0, 0, 0, 1.0f, LIMIT_FORMAT_FLOAT, LIMIT_TYPE_MAX, -1 },
216 { LIMIT(lineWidthRange[1]), 0, 0, 0, 8.0f - limits->lineWidthGranularity, LIMIT_FORMAT_FLOAT, LIMIT_TYPE_MIN, -1 },
217 { LIMIT(pointSizeGranularity), 0, 0, 0, 1.0f, LIMIT_FORMAT_FLOAT, LIMIT_TYPE_MAX, -1 },
218 { LIMIT(lineWidthGranularity), 0, 0, 0, 1.0f, LIMIT_FORMAT_FLOAT, LIMIT_TYPE_MAX, -1 },
219 { LIMIT(strictLines), 0, 0, 0, 1.0f, LIMIT_FORMAT_FLOAT, LIMIT_TYPE_NONE, -1 },
220 { LIMIT(standardSampleLocations), 0, 0, 0, 1.0f, LIMIT_FORMAT_FLOAT, LIMIT_TYPE_NONE, -1 },
221 { LIMIT(optimalBufferCopyOffsetAlignment), 0, 0, 0, 1.0f, LIMIT_FORMAT_FLOAT, LIMIT_TYPE_NONE, -1 },
222 { LIMIT(optimalBufferCopyRowPitchAlignment), 0, 0, 0, 1.0f, LIMIT_FORMAT_FLOAT, LIMIT_TYPE_NONE, -1 },
223 { LIMIT(nonCoherentAtomSize), 0, 0, 128, 0.0f, LIMIT_FORMAT_DEVICE_SIZE, LIMIT_TYPE_MAX, -1 },
226 struct UnsupportedFeatureLimitTable
228 deUint32 limitOffset;
230 deUint32 featureOffset;
231 deUint32 uintVal; //!< Format is UNSIGNED_INT
232 deInt32 intVal; //!< Format is SIGNED_INT
233 deUint64 deviceSizeVal; //!< Format is DEVICE_SIZE
234 float floatVal; //!< Format is FLOAT
235 } unsupportedFeatureTable[] =
237 { LIMIT(sparseAddressSpaceSize), FEATURE(sparseBinding), 0, 0, 0, 0.0f },
238 { LIMIT(maxTessellationGenerationLevel), FEATURE(tessellationShader), 0, 0, 0, 0.0f },
239 { LIMIT(maxTessellationPatchSize), FEATURE(tessellationShader), 0, 0, 0, 0.0f },
240 { LIMIT(maxTessellationControlPerVertexInputComponents), FEATURE(tessellationShader), 0, 0, 0, 0.0f },
241 { LIMIT(maxTessellationControlPerVertexOutputComponents), FEATURE(tessellationShader), 0, 0, 0, 0.0f },
242 { LIMIT(maxTessellationControlPerPatchOutputComponents), FEATURE(tessellationShader), 0, 0, 0, 0.0f },
243 { LIMIT(maxTessellationControlTotalOutputComponents), FEATURE(tessellationShader), 0, 0, 0, 0.0f },
244 { LIMIT(maxTessellationEvaluationInputComponents), FEATURE(tessellationShader), 0, 0, 0, 0.0f },
245 { LIMIT(maxTessellationEvaluationOutputComponents), FEATURE(tessellationShader), 0, 0, 0, 0.0f },
246 { LIMIT(maxGeometryShaderInvocations), FEATURE(geometryShader), 0, 0, 0, 0.0f },
247 { LIMIT(maxGeometryInputComponents), FEATURE(geometryShader), 0, 0, 0, 0.0f },
248 { LIMIT(maxGeometryOutputComponents), FEATURE(geometryShader), 0, 0, 0, 0.0f },
249 { LIMIT(maxGeometryOutputVertices), FEATURE(geometryShader), 0, 0, 0, 0.0f },
250 { LIMIT(maxGeometryTotalOutputComponents), FEATURE(geometryShader), 0, 0, 0, 0.0f },
251 { LIMIT(maxFragmentDualSrcAttachments), FEATURE(dualSrcBlend), 0, 0, 0, 0.0f },
252 { LIMIT(maxDrawIndexedIndexValue), FEATURE(fullDrawIndexUint32), (1<<24)-1, 0, 0, 0.0f },
253 { LIMIT(maxDrawIndirectCount), FEATURE(multiDrawIndirect), 1, 0, 0, 0.0f },
254 { LIMIT(maxSamplerAnisotropy), FEATURE(samplerAnisotropy), 1, 0, 0, 0.0f },
255 { LIMIT(maxViewports), FEATURE(multiViewport), 1, 0, 0, 0.0f },
256 { LIMIT(minTexelGatherOffset), FEATURE(shaderImageGatherExtended), 0, 0, 0, 0.0f },
257 { LIMIT(maxTexelGatherOffset), FEATURE(shaderImageGatherExtended), 0, 0, 0, 0.0f },
258 { LIMIT(minInterpolationOffset), FEATURE(sampleRateShading), 0, 0, 0, 0.0f },
259 { LIMIT(maxInterpolationOffset), FEATURE(sampleRateShading), 0, 0, 0, 0.0f },
260 { LIMIT(subPixelInterpolationOffsetBits), FEATURE(sampleRateShading), 0, 0, 0, 0.0f },
261 { LIMIT(storageImageSampleCounts), FEATURE(shaderStorageImageMultisample), 0, 0, 0, 0.0f },
262 { LIMIT(maxClipDistances), FEATURE(shaderClipDistance), 0, 0, 0, 0.0f },
263 { LIMIT(maxCullDistances), FEATURE(shaderClipDistance), 0, 0, 0, 0.0f },
264 { LIMIT(maxCombinedClipAndCullDistances), FEATURE(shaderClipDistance), 0, 0, 0, 0.0f },
265 { LIMIT(pointSizeRange[0]), FEATURE(largePoints), 0, 0, 0, 1.0f },
266 { LIMIT(pointSizeRange[1]), FEATURE(largePoints), 0, 0, 0, 1.0f },
267 { LIMIT(lineWidthRange[0]), FEATURE(wideLines), 0, 0, 0, 1.0f },
268 { LIMIT(lineWidthRange[1]), FEATURE(wideLines), 0, 0, 0, 1.0f },
269 { LIMIT(pointSizeGranularity), FEATURE(largePoints), 0, 0, 0, 0.0f },
270 { LIMIT(lineWidthGranularity), FEATURE(wideLines), 0, 0, 0, 0.0f }
273 log << TestLog::Message << *limits << TestLog::EndMessage;
275 //!< First build a map from limit to unsupported table index
276 for (deUint32 ndx = 0; ndx < DE_LENGTH_OF_ARRAY(featureLimitTable); ndx++)
278 for (deUint32 unsuppNdx = 0; unsuppNdx < DE_LENGTH_OF_ARRAY(unsupportedFeatureTable); unsuppNdx++)
280 if (unsupportedFeatureTable[unsuppNdx].limitOffset == featureLimitTable[ndx].offset)
282 featureLimitTable[ndx].unsuppTableNdx = unsuppNdx;
288 for (deUint32 ndx = 0; ndx < DE_LENGTH_OF_ARRAY(featureLimitTable); ndx++)
290 switch (featureLimitTable[ndx].format)
292 case LIMIT_FORMAT_UNSIGNED_INT:
294 deUint32 limitToCheck = featureLimitTable[ndx].uintVal;
295 if (featureLimitTable[ndx].unsuppTableNdx != -1)
297 if (*((VkBool32*)((char*)features+unsupportedFeatureTable[featureLimitTable[ndx].unsuppTableNdx].featureOffset)) == VK_FALSE)
298 limitToCheck = unsupportedFeatureTable[featureLimitTable[ndx].unsuppTableNdx].uintVal;
301 if (featureLimitTable[ndx].type == LIMIT_TYPE_MIN)
304 if (*((deUint32*)((char*)limits+featureLimitTable[ndx].offset)) < limitToCheck)
306 log << TestLog::Message << "limit Validation failed " << featureLimitTable[ndx].name
307 << " not valid-limit type MIN - actual is "
308 << *((deUint32*)((char*)limits + featureLimitTable[ndx].offset)) << TestLog::EndMessage;
312 else if (featureLimitTable[ndx].type == LIMIT_TYPE_MAX)
314 if (*((deUint32*)((char*)limits+featureLimitTable[ndx].offset)) > limitToCheck)
316 log << TestLog::Message << "limit validation failed, " << featureLimitTable[ndx].name
317 << " not valid-limit type MAX - actual is "
318 << *((deUint32*)((char*)limits + featureLimitTable[ndx].offset)) << TestLog::EndMessage;
325 case LIMIT_FORMAT_FLOAT:
327 float limitToCheck = featureLimitTable[ndx].floatVal;
328 if (featureLimitTable[ndx].unsuppTableNdx != -1)
330 if (*((VkBool32*)((char*)features+unsupportedFeatureTable[featureLimitTable[ndx].unsuppTableNdx].featureOffset)) == VK_FALSE)
331 limitToCheck = unsupportedFeatureTable[featureLimitTable[ndx].unsuppTableNdx].floatVal;
334 if (featureLimitTable[ndx].type == LIMIT_TYPE_MIN)
336 if (*((float*)((char*)limits+featureLimitTable[ndx].offset)) < limitToCheck)
338 log << TestLog::Message << "limit validation failed, " << featureLimitTable[ndx].name
339 << " not valid-limit type MIN - actual is "
340 << *((float*)((char*)limits + featureLimitTable[ndx].offset)) << TestLog::EndMessage;
344 else if (featureLimitTable[ndx].type == LIMIT_TYPE_MAX)
346 if (*((float*)((char*)limits+featureLimitTable[ndx].offset)) > limitToCheck)
348 log << TestLog::Message << "limit validation failed, " << featureLimitTable[ndx].name
349 << " not valid-limit type MAX actual is "
350 << *((float*)((char*)limits + featureLimitTable[ndx].offset)) << TestLog::EndMessage;
357 case LIMIT_FORMAT_SIGNED_INT:
359 deInt32 limitToCheck = featureLimitTable[ndx].intVal;
360 if (featureLimitTable[ndx].unsuppTableNdx != -1)
362 if (*((VkBool32*)((char*)features+unsupportedFeatureTable[featureLimitTable[ndx].unsuppTableNdx].featureOffset)) == VK_FALSE)
363 limitToCheck = unsupportedFeatureTable[featureLimitTable[ndx].unsuppTableNdx].intVal;
365 if (featureLimitTable[ndx].type == LIMIT_TYPE_MIN)
367 if (*((deInt32*)((char*)limits+featureLimitTable[ndx].offset)) < limitToCheck)
369 log << TestLog::Message << "limit validation failed, " << featureLimitTable[ndx].name
370 << " not valid-limit type MIN actual is "
371 << *((deInt32*)((char*)limits + featureLimitTable[ndx].offset)) << TestLog::EndMessage;
375 else if (featureLimitTable[ndx].type == LIMIT_TYPE_MAX)
377 if (*((deInt32*)((char*)limits+featureLimitTable[ndx].offset)) > limitToCheck)
379 log << TestLog::Message << "limit validation failed, " << featureLimitTable[ndx].name
380 << " not valid-limit type MAX actual is "
381 << *((deInt32*)((char*)limits + featureLimitTable[ndx].offset)) << TestLog::EndMessage;
388 case LIMIT_FORMAT_DEVICE_SIZE:
390 deUint64 limitToCheck = featureLimitTable[ndx].deviceSizeVal;
391 if (featureLimitTable[ndx].unsuppTableNdx != -1)
393 if (*((VkBool32*)((char*)features+unsupportedFeatureTable[featureLimitTable[ndx].unsuppTableNdx].featureOffset)) == VK_FALSE)
394 limitToCheck = unsupportedFeatureTable[featureLimitTable[ndx].unsuppTableNdx].deviceSizeVal;
397 if (featureLimitTable[ndx].type == LIMIT_TYPE_MIN)
399 if (*((deUint64*)((char*)limits+featureLimitTable[ndx].offset)) < limitToCheck)
401 log << TestLog::Message << "limit validation failed, " << featureLimitTable[ndx].name
402 << " not valid-limit type MIN actual is "
403 << *((deUint64*)((char*)limits + featureLimitTable[ndx].offset)) << TestLog::EndMessage;
407 else if (featureLimitTable[ndx].type == LIMIT_TYPE_MAX)
409 if (*((deUint64*)((char*)limits+featureLimitTable[ndx].offset)) > limitToCheck)
411 log << TestLog::Message << "limit validation failed, " << featureLimitTable[ndx].name
412 << " not valid-limit type MAX actual is "
413 << *((deUint64*)((char*)limits + featureLimitTable[ndx].offset)) << TestLog::EndMessage;
429 tcu::TestStatus enumeratePhysicalDevices (Context& context)
431 TestLog& log = context.getTestContext().getLog();
432 const vector<VkPhysicalDevice> devices = enumeratePhysicalDevices(context.getInstanceInterface(), context.getInstance());
434 log << TestLog::Integer("NumDevices", "Number of devices", "", QP_KEY_TAG_NONE, deInt64(devices.size()));
436 for (size_t ndx = 0; ndx < devices.size(); ndx++)
437 log << TestLog::Message << ndx << ": " << devices[ndx] << TestLog::EndMessage;
439 return tcu::TestStatus::pass("Enumerating devices succeeded");
442 tcu::TestStatus enumerateInstanceLayers (Context& context)
444 TestLog& log = context.getTestContext().getLog();
445 const vector<VkLayerProperties> properties = enumerateInstanceLayerProperties(context.getPlatformInterface());
447 for (size_t ndx = 0; ndx < properties.size(); ndx++)
448 log << TestLog::Message << ndx << ": " << properties[ndx] << TestLog::EndMessage;
450 return tcu::TestStatus::pass("Enumerating layers succeeded");
453 tcu::TestStatus enumerateInstanceExtensions (Context& context)
455 TestLog& log = context.getTestContext().getLog();
458 const ScopedLogSection section (log, "Global", "Global Extensions");
459 const vector<VkExtensionProperties> properties = enumerateInstanceExtensionProperties(context.getPlatformInterface(), DE_NULL);
461 for (size_t ndx = 0; ndx < properties.size(); ndx++)
462 log << TestLog::Message << ndx << ": " << properties[ndx] << TestLog::EndMessage;
466 const vector<VkLayerProperties> layers = enumerateInstanceLayerProperties(context.getPlatformInterface());
468 for (vector<VkLayerProperties>::const_iterator layer = layers.begin(); layer != layers.end(); ++layer)
470 const ScopedLogSection section (log, layer->layerName, string("Layer: ") + layer->layerName);
471 const vector<VkExtensionProperties> properties = enumerateInstanceExtensionProperties(context.getPlatformInterface(), layer->layerName);
473 for (size_t extNdx = 0; extNdx < properties.size(); extNdx++)
474 log << TestLog::Message << extNdx << ": " << properties[extNdx] << TestLog::EndMessage;
478 return tcu::TestStatus::pass("Enumerating extensions succeeded");
481 tcu::TestStatus enumerateDeviceLayers (Context& context)
483 TestLog& log = context.getTestContext().getLog();
484 const vector<VkLayerProperties> properties = vk::enumerateDeviceLayerProperties(context.getInstanceInterface(), context.getPhysicalDevice());
486 for (size_t ndx = 0; ndx < properties.size(); ndx++)
487 log << TestLog::Message << ndx << ": " << properties[ndx] << TestLog::EndMessage;
489 return tcu::TestStatus::pass("Enumerating layers succeeded");
492 tcu::TestStatus enumerateDeviceExtensions (Context& context)
494 TestLog& log = context.getTestContext().getLog();
497 const ScopedLogSection section (log, "Global", "Global Extensions");
498 const vector<VkExtensionProperties> properties = enumerateDeviceExtensionProperties(context.getInstanceInterface(), context.getPhysicalDevice(), DE_NULL);
500 for (size_t ndx = 0; ndx < properties.size(); ndx++)
501 log << TestLog::Message << ndx << ": " << properties[ndx] << TestLog::EndMessage;
505 const vector<VkLayerProperties> layers = enumerateDeviceLayerProperties(context.getInstanceInterface(), context.getPhysicalDevice());
507 for (vector<VkLayerProperties>::const_iterator layer = layers.begin(); layer != layers.end(); ++layer)
509 const ScopedLogSection section (log, layer->layerName, string("Layer: ") + layer->layerName);
510 const vector<VkExtensionProperties> properties = enumerateDeviceExtensionProperties(context.getInstanceInterface(), context.getPhysicalDevice(), layer->layerName);
512 for (size_t extNdx = 0; extNdx < properties.size(); extNdx++)
513 log << TestLog::Message << extNdx << ": " << properties[extNdx] << TestLog::EndMessage;
517 return tcu::TestStatus::pass("Enumerating extensions succeeded");
520 #define VK_SIZE_OF(STRUCT, MEMBER) (sizeof(((STRUCT*)0)->MEMBER))
521 #define OFFSET_TABLE_ENTRY(STRUCT, MEMBER) { DE_OFFSET_OF(STRUCT, MEMBER), VK_SIZE_OF(STRUCT, MEMBER) }
523 tcu::TestStatus deviceFeatures (Context& context)
525 TestLog& log = context.getTestContext().getLog();
526 VkPhysicalDeviceFeatures* features;
527 deUint8 buffer[sizeof(VkPhysicalDeviceFeatures) + GUARD_SIZE];
529 const QueryMemberTableEntry featureOffsetTable[] =
531 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, robustBufferAccess),
532 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, fullDrawIndexUint32),
533 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, imageCubeArray),
534 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, independentBlend),
535 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, geometryShader),
536 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, tessellationShader),
537 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, sampleRateShading),
538 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, dualSrcBlend),
539 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, logicOp),
540 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, multiDrawIndirect),
541 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, drawIndirectFirstInstance),
542 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, depthClamp),
543 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, depthBiasClamp),
544 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, fillModeNonSolid),
545 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, depthBounds),
546 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, wideLines),
547 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, largePoints),
548 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, alphaToOne),
549 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, multiViewport),
550 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, samplerAnisotropy),
551 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, textureCompressionETC2),
552 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, textureCompressionASTC_LDR),
553 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, textureCompressionBC),
554 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, occlusionQueryPrecise),
555 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, pipelineStatisticsQuery),
556 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, vertexPipelineStoresAndAtomics),
557 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, fragmentStoresAndAtomics),
558 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, shaderTessellationAndGeometryPointSize),
559 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, shaderImageGatherExtended),
560 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, shaderStorageImageExtendedFormats),
561 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, shaderStorageImageMultisample),
562 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, shaderStorageImageReadWithoutFormat),
563 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, shaderStorageImageWriteWithoutFormat),
564 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, shaderUniformBufferArrayDynamicIndexing),
565 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, shaderSampledImageArrayDynamicIndexing),
566 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, shaderStorageBufferArrayDynamicIndexing),
567 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, shaderStorageImageArrayDynamicIndexing),
568 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, shaderClipDistance),
569 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, shaderCullDistance),
570 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, shaderFloat64),
571 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, shaderInt64),
572 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, shaderInt16),
573 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, shaderResourceResidency),
574 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, shaderResourceMinLod),
575 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, sparseBinding),
576 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, sparseResidencyBuffer),
577 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, sparseResidencyImage2D),
578 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, sparseResidencyImage3D),
579 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, sparseResidency2Samples),
580 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, sparseResidency4Samples),
581 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, sparseResidency8Samples),
582 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, sparseResidency16Samples),
583 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, sparseResidencyAliased),
584 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, variableMultisampleRate),
585 OFFSET_TABLE_ENTRY(VkPhysicalDeviceFeatures, inheritedQueries),
590 deMemset(buffer, GUARD_VALUE, sizeof(buffer));
591 features = reinterpret_cast<VkPhysicalDeviceFeatures*>(buffer);
593 context.getInstanceInterface().getPhysicalDeviceFeatures(context.getPhysicalDevice(), features);
595 log << TestLog::Message << "device = " << context.getPhysicalDevice() << TestLog::EndMessage
596 << TestLog::Message << *features << TestLog::EndMessage;
598 if (!features->robustBufferAccess)
599 return tcu::TestStatus::fail("robustBufferAccess is not supported");
601 for (int ndx = 0; ndx < GUARD_SIZE; ndx++)
603 if (buffer[ndx + sizeof(VkPhysicalDeviceFeatures)] != GUARD_VALUE)
605 log << TestLog::Message << "deviceFeatures - Guard offset " << ndx << " not valid" << TestLog::EndMessage;
606 return tcu::TestStatus::fail("deviceFeatures buffer overflow");
610 if (!validateInitComplete(context.getPhysicalDevice(), &InstanceInterface::getPhysicalDeviceFeatures, context.getInstanceInterface(), featureOffsetTable))
612 log << TestLog::Message << "deviceFeatures - VkPhysicalDeviceFeatures not completely initialized" << TestLog::EndMessage;
613 return tcu::TestStatus::fail("deviceFeatures incomplete initialization");
617 return tcu::TestStatus::pass("Query succeeded");
620 tcu::TestStatus deviceProperties (Context& context)
622 TestLog& log = context.getTestContext().getLog();
623 VkPhysicalDeviceProperties* props;
624 VkPhysicalDeviceFeatures features;
625 deUint8 buffer[sizeof(VkPhysicalDeviceProperties) + GUARD_SIZE];
627 const QueryMemberTableEntry limitOffsetTable[] =
629 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxImageDimension1D),
630 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxImageDimension2D),
631 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxImageDimension3D),
632 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxImageDimensionCube),
633 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxImageArrayLayers),
634 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxTexelBufferElements),
635 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxUniformBufferRange),
636 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxStorageBufferRange),
637 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxPushConstantsSize),
638 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxMemoryAllocationCount),
639 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxSamplerAllocationCount),
640 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, bufferImageGranularity),
641 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, sparseAddressSpaceSize),
642 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxBoundDescriptorSets),
643 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxPerStageDescriptorSamplers),
644 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxPerStageDescriptorUniformBuffers),
645 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxPerStageDescriptorStorageBuffers),
646 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxPerStageDescriptorSampledImages),
647 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxPerStageDescriptorStorageImages),
648 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxPerStageDescriptorInputAttachments),
649 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxPerStageResources),
650 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxDescriptorSetSamplers),
651 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxDescriptorSetUniformBuffers),
652 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxDescriptorSetUniformBuffersDynamic),
653 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxDescriptorSetStorageBuffers),
654 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxDescriptorSetStorageBuffersDynamic),
655 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxDescriptorSetSampledImages),
656 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxDescriptorSetStorageImages),
657 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxDescriptorSetInputAttachments),
658 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxVertexInputAttributes),
659 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxVertexInputBindings),
660 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxVertexInputAttributeOffset),
661 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxVertexInputBindingStride),
662 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxVertexOutputComponents),
663 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxTessellationGenerationLevel),
664 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxTessellationPatchSize),
665 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxTessellationControlPerVertexInputComponents),
666 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxTessellationControlPerVertexOutputComponents),
667 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxTessellationControlPerPatchOutputComponents),
668 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxTessellationControlTotalOutputComponents),
669 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxTessellationEvaluationInputComponents),
670 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxTessellationEvaluationOutputComponents),
671 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxGeometryShaderInvocations),
672 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxGeometryInputComponents),
673 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxGeometryOutputComponents),
674 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxGeometryOutputVertices),
675 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxGeometryTotalOutputComponents),
676 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxFragmentInputComponents),
677 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxFragmentOutputAttachments),
678 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxFragmentDualSrcAttachments),
679 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxFragmentCombinedOutputResources),
680 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxComputeSharedMemorySize),
681 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxComputeWorkGroupCount[3]),
682 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxComputeWorkGroupInvocations),
683 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxComputeWorkGroupSize[3]),
684 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, subPixelPrecisionBits),
685 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, subTexelPrecisionBits),
686 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, mipmapPrecisionBits),
687 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxDrawIndexedIndexValue),
688 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxDrawIndirectCount),
689 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxSamplerLodBias),
690 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxSamplerAnisotropy),
691 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxViewports),
692 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxViewportDimensions[2]),
693 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, viewportBoundsRange[2]),
694 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, viewportSubPixelBits),
695 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, minMemoryMapAlignment),
696 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, minTexelBufferOffsetAlignment),
697 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, minUniformBufferOffsetAlignment),
698 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, minStorageBufferOffsetAlignment),
699 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, minTexelOffset),
700 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxTexelOffset),
701 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, minTexelGatherOffset),
702 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxTexelGatherOffset),
703 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, minInterpolationOffset),
704 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxInterpolationOffset),
705 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, subPixelInterpolationOffsetBits),
706 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxFramebufferWidth),
707 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxFramebufferHeight),
708 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxFramebufferLayers),
709 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, framebufferColorSampleCounts),
710 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, framebufferDepthSampleCounts),
711 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, framebufferStencilSampleCounts),
712 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, framebufferNoAttachmentsSampleCounts),
713 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxColorAttachments),
714 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, sampledImageColorSampleCounts),
715 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, sampledImageIntegerSampleCounts),
716 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, sampledImageDepthSampleCounts),
717 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, sampledImageStencilSampleCounts),
718 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, storageImageSampleCounts),
719 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxSampleMaskWords),
720 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, timestampComputeAndGraphics),
721 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, timestampPeriod),
722 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxClipDistances),
723 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxCullDistances),
724 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, maxCombinedClipAndCullDistances),
725 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, discreteQueuePriorities),
726 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, pointSizeRange[2]),
727 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, lineWidthRange[2]),
728 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, pointSizeGranularity),
729 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, lineWidthGranularity),
730 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, strictLines),
731 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, standardSampleLocations),
732 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, optimalBufferCopyOffsetAlignment),
733 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, optimalBufferCopyRowPitchAlignment),
734 OFFSET_TABLE_ENTRY(VkPhysicalDeviceLimits, nonCoherentAtomSize),
738 props = reinterpret_cast<VkPhysicalDeviceProperties*>(buffer);
739 deMemset(props, GUARD_VALUE, sizeof(buffer));
741 context.getInstanceInterface().getPhysicalDeviceProperties(context.getPhysicalDevice(), props);
742 context.getInstanceInterface().getPhysicalDeviceFeatures(context.getPhysicalDevice(), &features);
744 log << TestLog::Message << "device = " << context.getPhysicalDevice() << TestLog::EndMessage
745 << TestLog::Message << *props << TestLog::EndMessage;
747 if (!validateFeatureLimits(props, &features, log))
748 return tcu::TestStatus::fail("deviceProperties - feature limits failed");
750 for (int ndx = 0; ndx < GUARD_SIZE; ndx++)
752 if (buffer[ndx + sizeof(VkPhysicalDeviceProperties)] != GUARD_VALUE)
754 log << TestLog::Message << "deviceProperties - Guard offset " << ndx << " not valid" << TestLog::EndMessage;
755 return tcu::TestStatus::fail("deviceProperties buffer overflow");
759 if (!validateInitComplete(context.getPhysicalDevice(), &InstanceInterface::getPhysicalDeviceProperties, context.getInstanceInterface(), limitOffsetTable))
761 log << TestLog::Message << "deviceProperties - VkPhysicalDeviceProperties not completely initialized" << TestLog::EndMessage;
762 return tcu::TestStatus::fail("deviceProperties incomplete initialization");
765 return tcu::TestStatus::pass("DeviceProperites query succeeded");
768 tcu::TestStatus deviceQueueFamilyProperties (Context& context)
770 TestLog& log = context.getTestContext().getLog();
771 const vector<VkQueueFamilyProperties> queueProperties = getPhysicalDeviceQueueFamilyProperties(context.getInstanceInterface(), context.getPhysicalDevice());
773 log << TestLog::Message << "device = " << context.getPhysicalDevice() << TestLog::EndMessage;
775 for (size_t queueNdx = 0; queueNdx < queueProperties.size(); queueNdx++)
776 log << TestLog::Message << queueNdx << ": " << queueProperties[queueNdx] << TestLog::EndMessage;
778 return tcu::TestStatus::pass("Querying queue properties succeeded");
781 tcu::TestStatus deviceMemoryProperties (Context& context)
783 TestLog& log = context.getTestContext().getLog();
784 VkPhysicalDeviceMemoryProperties* memProps;
785 deUint8 buffer[sizeof(VkPhysicalDeviceMemoryProperties) + GUARD_SIZE];
787 memProps = reinterpret_cast<VkPhysicalDeviceMemoryProperties*>(buffer);
788 deMemset(buffer, GUARD_VALUE, sizeof(buffer));
790 context.getInstanceInterface().getPhysicalDeviceMemoryProperties(context.getPhysicalDevice(), memProps);
792 log << TestLog::Message << "device = " << context.getPhysicalDevice() << TestLog::EndMessage
793 << TestLog::Message << *memProps << TestLog::EndMessage;
795 for (deInt32 ndx = 0; ndx < GUARD_SIZE; ndx++)
797 if (buffer[ndx + sizeof(VkPhysicalDeviceMemoryProperties)] != GUARD_VALUE)
799 log << TestLog::Message << "deviceMemoryProperties - Guard offset " << ndx << " not valid" << TestLog::EndMessage;
800 return tcu::TestStatus::fail("deviceMemoryProperties buffer overflow");
804 if (memProps->memoryHeapCount >= VK_MAX_MEMORY_HEAPS)
806 log << TestLog::Message << "deviceMemoryProperties - HeapCount larger than " << (deUint32)VK_MAX_MEMORY_HEAPS << TestLog::EndMessage;
807 return tcu::TestStatus::fail("deviceMemoryProperties HeapCount too large");
810 if (memProps->memoryHeapCount == 1)
812 if ((memProps->memoryHeaps[0].flags & VK_MEMORY_HEAP_DEVICE_LOCAL_BIT) == 0)
814 log << TestLog::Message << "deviceMemoryProperties - Single heap is not marked DEVICE_LOCAL" << TestLog::EndMessage;
815 return tcu::TestStatus::fail("deviceMemoryProperties invalid HeapFlags");
819 const VkMemoryPropertyFlags validPropertyFlags[] =
821 VK_MEMORY_PROPERTY_DEVICE_LOCAL_BIT,
822 VK_MEMORY_PROPERTY_DEVICE_LOCAL_BIT|VK_MEMORY_PROPERTY_HOST_VISIBLE_BIT|VK_MEMORY_PROPERTY_HOST_COHERENT_BIT,
823 VK_MEMORY_PROPERTY_DEVICE_LOCAL_BIT|VK_MEMORY_PROPERTY_HOST_VISIBLE_BIT|VK_MEMORY_PROPERTY_HOST_CACHED_BIT,
824 VK_MEMORY_PROPERTY_DEVICE_LOCAL_BIT|VK_MEMORY_PROPERTY_HOST_VISIBLE_BIT|VK_MEMORY_PROPERTY_HOST_CACHED_BIT|VK_MEMORY_PROPERTY_HOST_COHERENT_BIT,
825 VK_MEMORY_PROPERTY_HOST_VISIBLE_BIT|VK_MEMORY_PROPERTY_HOST_COHERENT_BIT,
826 VK_MEMORY_PROPERTY_HOST_VISIBLE_BIT|VK_MEMORY_PROPERTY_HOST_CACHED_BIT,
827 VK_MEMORY_PROPERTY_HOST_VISIBLE_BIT|VK_MEMORY_PROPERTY_HOST_CACHED_BIT|VK_MEMORY_PROPERTY_HOST_COHERENT_BIT,
828 VK_MEMORY_PROPERTY_DEVICE_LOCAL_BIT|VK_MEMORY_PROPERTY_LAZILY_ALLOCATED_BIT
831 const VkMemoryPropertyFlags requiredPropertyFlags[] =
833 VK_MEMORY_PROPERTY_HOST_VISIBLE_BIT|VK_MEMORY_PROPERTY_HOST_COHERENT_BIT
836 bool requiredFlagsFound[DE_LENGTH_OF_ARRAY(requiredPropertyFlags)];
837 std::fill(DE_ARRAY_BEGIN(requiredFlagsFound), DE_ARRAY_END(requiredFlagsFound), false);
839 for (deUint32 memoryNdx = 0; memoryNdx < memProps->memoryTypeCount; memoryNdx++)
841 bool validPropTypeFound = false;
843 if (memProps->memoryTypes[memoryNdx].heapIndex >= memProps->memoryHeapCount)
845 log << TestLog::Message << "deviceMemoryProperties - heapIndex " << memProps->memoryTypes[memoryNdx].heapIndex << " larger than heapCount" << TestLog::EndMessage;
846 return tcu::TestStatus::fail("deviceMemoryProperties - invalid heapIndex");
849 const VkMemoryPropertyFlags bitsToCheck = VK_MEMORY_PROPERTY_DEVICE_LOCAL_BIT|VK_MEMORY_PROPERTY_HOST_VISIBLE_BIT|VK_MEMORY_PROPERTY_HOST_COHERENT_BIT|VK_MEMORY_PROPERTY_HOST_CACHED_BIT|VK_MEMORY_PROPERTY_LAZILY_ALLOCATED_BIT;
851 for (const VkMemoryPropertyFlags* requiredFlagsIterator = DE_ARRAY_BEGIN(requiredPropertyFlags); requiredFlagsIterator != DE_ARRAY_END(requiredPropertyFlags); requiredFlagsIterator++)
852 if ((memProps->memoryTypes[memoryNdx].propertyFlags & *requiredFlagsIterator) == *requiredFlagsIterator)
853 requiredFlagsFound[requiredFlagsIterator - DE_ARRAY_BEGIN(requiredPropertyFlags)] = true;
855 if (de::contains(DE_ARRAY_BEGIN(validPropertyFlags), DE_ARRAY_END(validPropertyFlags), memProps->memoryTypes[memoryNdx].propertyFlags & bitsToCheck))
856 validPropTypeFound = true;
858 if (!validPropTypeFound)
860 log << TestLog::Message << "deviceMemoryProperties - propertyFlags "
861 << memProps->memoryTypes[memoryNdx].propertyFlags << " not valid" << TestLog::EndMessage;
862 return tcu::TestStatus::fail("deviceMemoryProperties propertyFlags not valid");
865 if (memProps->memoryTypes[memoryNdx].propertyFlags & VK_MEMORY_PROPERTY_DEVICE_LOCAL_BIT)
867 if ((memProps->memoryHeaps[memProps->memoryTypes[memoryNdx].heapIndex].flags & VK_MEMORY_HEAP_DEVICE_LOCAL_BIT) == 0)
869 log << TestLog::Message << "deviceMemoryProperties - DEVICE_LOCAL memory type references heap which is not DEVICE_LOCAL" << TestLog::EndMessage;
870 return tcu::TestStatus::fail("deviceMemoryProperties inconsistent memoryType and HeapFlags");
875 if (memProps->memoryHeaps[memProps->memoryTypes[memoryNdx].heapIndex].flags & VK_MEMORY_HEAP_DEVICE_LOCAL_BIT)
877 log << TestLog::Message << "deviceMemoryProperties - non-DEVICE_LOCAL memory type references heap with is DEVICE_LOCAL" << TestLog::EndMessage;
878 return tcu::TestStatus::fail("deviceMemoryProperties inconsistent memoryType and HeapFlags");
883 bool* requiredFlagsFoundIterator = std::find(DE_ARRAY_BEGIN(requiredFlagsFound), DE_ARRAY_END(requiredFlagsFound), false);
884 if (requiredFlagsFoundIterator != DE_ARRAY_END(requiredFlagsFound))
886 DE_ASSERT(requiredFlagsFoundIterator - DE_ARRAY_BEGIN(requiredFlagsFound) <= DE_LENGTH_OF_ARRAY(requiredPropertyFlags));
887 log << TestLog::Message << "deviceMemoryProperties - required property flags "
888 << getMemoryPropertyFlagsStr(requiredPropertyFlags[requiredFlagsFoundIterator - DE_ARRAY_BEGIN(requiredFlagsFound)]) << " not found" << TestLog::EndMessage;
890 return tcu::TestStatus::fail("deviceMemoryProperties propertyFlags not valid");
893 return tcu::TestStatus::pass("Querying memory properties succeeded");
896 // \todo [2016-01-22 pyry] Optimize by doing format -> flags mapping instead
898 VkFormatFeatureFlags getRequiredOptimalTilingFeatures (VkFormat format)
900 static const VkFormat s_requiredSampledImageBlitSrcFormats[] =
902 VK_FORMAT_B4G4R4A4_UNORM_PACK16,
903 VK_FORMAT_R5G6B5_UNORM_PACK16,
904 VK_FORMAT_A1R5G5B5_UNORM_PACK16,
909 VK_FORMAT_R8G8_UNORM,
910 VK_FORMAT_R8G8_SNORM,
913 VK_FORMAT_R8G8B8A8_UNORM,
914 VK_FORMAT_R8G8B8A8_SNORM,
915 VK_FORMAT_R8G8B8A8_UINT,
916 VK_FORMAT_R8G8B8A8_SINT,
917 VK_FORMAT_R8G8B8A8_SRGB,
918 VK_FORMAT_B8G8R8A8_UNORM,
919 VK_FORMAT_B8G8R8A8_SRGB,
920 VK_FORMAT_A8B8G8R8_UNORM_PACK32,
921 VK_FORMAT_A8B8G8R8_SNORM_PACK32,
922 VK_FORMAT_A8B8G8R8_UINT_PACK32,
923 VK_FORMAT_A8B8G8R8_SINT_PACK32,
924 VK_FORMAT_A8B8G8R8_SRGB_PACK32,
925 VK_FORMAT_A2B10G10R10_UNORM_PACK32,
926 VK_FORMAT_A2B10G10R10_UINT_PACK32,
929 VK_FORMAT_R16_SFLOAT,
930 VK_FORMAT_R16G16_UINT,
931 VK_FORMAT_R16G16_SINT,
932 VK_FORMAT_R16G16_SFLOAT,
933 VK_FORMAT_R16G16B16A16_UINT,
934 VK_FORMAT_R16G16B16A16_SINT,
935 VK_FORMAT_R16G16B16A16_SFLOAT,
938 VK_FORMAT_R32_SFLOAT,
939 VK_FORMAT_R32G32_UINT,
940 VK_FORMAT_R32G32_SINT,
941 VK_FORMAT_R32G32_SFLOAT,
942 VK_FORMAT_R32G32B32A32_UINT,
943 VK_FORMAT_R32G32B32A32_SINT,
944 VK_FORMAT_R32G32B32A32_SFLOAT,
945 VK_FORMAT_B10G11R11_UFLOAT_PACK32,
946 VK_FORMAT_E5B9G9R9_UFLOAT_PACK32,
950 static const VkFormat s_requiredSampledImageFilterLinearFormats[] =
952 VK_FORMAT_B4G4R4A4_UNORM_PACK16,
953 VK_FORMAT_R5G6B5_UNORM_PACK16,
954 VK_FORMAT_A1R5G5B5_UNORM_PACK16,
957 VK_FORMAT_R8G8_UNORM,
958 VK_FORMAT_R8G8_SNORM,
959 VK_FORMAT_R8G8B8A8_UNORM,
960 VK_FORMAT_R8G8B8A8_SNORM,
961 VK_FORMAT_R8G8B8A8_SRGB,
962 VK_FORMAT_B8G8R8A8_UNORM,
963 VK_FORMAT_B8G8R8A8_SRGB,
964 VK_FORMAT_A8B8G8R8_UNORM_PACK32,
965 VK_FORMAT_A8B8G8R8_SNORM_PACK32,
966 VK_FORMAT_A8B8G8R8_SRGB_PACK32,
967 VK_FORMAT_A2B10G10R10_UNORM_PACK32,
968 VK_FORMAT_R16_SFLOAT,
969 VK_FORMAT_R16G16_SFLOAT,
970 VK_FORMAT_R16G16B16A16_SFLOAT,
971 VK_FORMAT_B10G11R11_UFLOAT_PACK32,
972 VK_FORMAT_E5B9G9R9_UFLOAT_PACK32,
974 static const VkFormat s_requiredStorageImageFormats[] =
976 VK_FORMAT_R8G8B8A8_UNORM,
977 VK_FORMAT_R8G8B8A8_SNORM,
978 VK_FORMAT_R8G8B8A8_UINT,
979 VK_FORMAT_R8G8B8A8_SINT,
980 VK_FORMAT_R16G16B16A16_UINT,
981 VK_FORMAT_R16G16B16A16_SINT,
982 VK_FORMAT_R16G16B16A16_SFLOAT,
985 VK_FORMAT_R32_SFLOAT,
986 VK_FORMAT_R32G32_UINT,
987 VK_FORMAT_R32G32_SINT,
988 VK_FORMAT_R32G32_SFLOAT,
989 VK_FORMAT_R32G32B32A32_UINT,
990 VK_FORMAT_R32G32B32A32_SINT,
991 VK_FORMAT_R32G32B32A32_SFLOAT
993 static const VkFormat s_requiredStorageImageAtomicFormats[] =
998 static const VkFormat s_requiredColorAttachmentBlitDstFormats[] =
1000 VK_FORMAT_R5G6B5_UNORM_PACK16,
1001 VK_FORMAT_A1R5G5B5_UNORM_PACK16,
1005 VK_FORMAT_R8G8_UNORM,
1006 VK_FORMAT_R8G8_UINT,
1007 VK_FORMAT_R8G8_SINT,
1008 VK_FORMAT_R8G8B8A8_UNORM,
1009 VK_FORMAT_R8G8B8A8_UINT,
1010 VK_FORMAT_R8G8B8A8_SINT,
1011 VK_FORMAT_R8G8B8A8_SRGB,
1012 VK_FORMAT_B8G8R8A8_UNORM,
1013 VK_FORMAT_B8G8R8A8_SRGB,
1014 VK_FORMAT_A8B8G8R8_UNORM_PACK32,
1015 VK_FORMAT_A8B8G8R8_UINT_PACK32,
1016 VK_FORMAT_A8B8G8R8_SINT_PACK32,
1017 VK_FORMAT_A8B8G8R8_SRGB_PACK32,
1018 VK_FORMAT_A2B10G10R10_UNORM_PACK32,
1019 VK_FORMAT_A2B10G10R10_UINT_PACK32,
1022 VK_FORMAT_R16_SFLOAT,
1023 VK_FORMAT_R16G16_UINT,
1024 VK_FORMAT_R16G16_SINT,
1025 VK_FORMAT_R16G16_SFLOAT,
1026 VK_FORMAT_R16G16B16A16_UINT,
1027 VK_FORMAT_R16G16B16A16_SINT,
1028 VK_FORMAT_R16G16B16A16_SFLOAT,
1031 VK_FORMAT_R32_SFLOAT,
1032 VK_FORMAT_R32G32_UINT,
1033 VK_FORMAT_R32G32_SINT,
1034 VK_FORMAT_R32G32_SFLOAT,
1035 VK_FORMAT_R32G32B32A32_UINT,
1036 VK_FORMAT_R32G32B32A32_SINT,
1037 VK_FORMAT_R32G32B32A32_SFLOAT
1039 static const VkFormat s_requiredColorAttachmentBlendFormats[] =
1041 VK_FORMAT_R5G6B5_UNORM_PACK16,
1042 VK_FORMAT_A1R5G5B5_UNORM_PACK16,
1044 VK_FORMAT_R8G8_UNORM,
1045 VK_FORMAT_R8G8B8A8_UNORM,
1046 VK_FORMAT_R8G8B8A8_SRGB,
1047 VK_FORMAT_B8G8R8A8_UNORM,
1048 VK_FORMAT_B8G8R8A8_SRGB,
1049 VK_FORMAT_A8B8G8R8_UNORM_PACK32,
1050 VK_FORMAT_A8B8G8R8_SRGB_PACK32,
1051 VK_FORMAT_A2B10G10R10_UNORM_PACK32,
1052 VK_FORMAT_R16_SFLOAT,
1053 VK_FORMAT_R16G16_SFLOAT,
1054 VK_FORMAT_R16G16B16A16_SFLOAT
1056 static const VkFormat s_requiredDepthStencilAttachmentFormats[] =
1061 VkFormatFeatureFlags flags = (VkFormatFeatureFlags)0;
1063 if (de::contains(DE_ARRAY_BEGIN(s_requiredSampledImageBlitSrcFormats), DE_ARRAY_END(s_requiredSampledImageBlitSrcFormats), format))
1064 flags |= VK_FORMAT_FEATURE_SAMPLED_IMAGE_BIT|VK_FORMAT_FEATURE_BLIT_SRC_BIT;
1066 if (de::contains(DE_ARRAY_BEGIN(s_requiredSampledImageFilterLinearFormats), DE_ARRAY_END(s_requiredSampledImageFilterLinearFormats), format))
1067 flags |= VK_FORMAT_FEATURE_SAMPLED_IMAGE_FILTER_LINEAR_BIT;
1069 if (de::contains(DE_ARRAY_BEGIN(s_requiredStorageImageFormats), DE_ARRAY_END(s_requiredStorageImageFormats), format))
1070 flags |= VK_FORMAT_FEATURE_STORAGE_IMAGE_BIT;
1072 if (de::contains(DE_ARRAY_BEGIN(s_requiredStorageImageAtomicFormats), DE_ARRAY_END(s_requiredStorageImageAtomicFormats), format))
1073 flags |= VK_FORMAT_FEATURE_STORAGE_IMAGE_ATOMIC_BIT;
1075 if (de::contains(DE_ARRAY_BEGIN(s_requiredColorAttachmentBlitDstFormats), DE_ARRAY_END(s_requiredColorAttachmentBlitDstFormats), format))
1076 flags |= VK_FORMAT_FEATURE_COLOR_ATTACHMENT_BIT|VK_FORMAT_FEATURE_BLIT_DST_BIT;
1078 if (de::contains(DE_ARRAY_BEGIN(s_requiredColorAttachmentBlendFormats), DE_ARRAY_END(s_requiredColorAttachmentBlendFormats), format))
1079 flags |= VK_FORMAT_FEATURE_COLOR_ATTACHMENT_BLEND_BIT;
1081 if (de::contains(DE_ARRAY_BEGIN(s_requiredDepthStencilAttachmentFormats), DE_ARRAY_END(s_requiredDepthStencilAttachmentFormats), format))
1082 flags |= VK_FORMAT_FEATURE_DEPTH_STENCIL_ATTACHMENT_BIT;
1087 VkFormatFeatureFlags getRequiredBufferFeatures (VkFormat format)
1089 static const VkFormat s_requiredVertexBufferFormats[] =
1095 VK_FORMAT_R8G8_UNORM,
1096 VK_FORMAT_R8G8_SNORM,
1097 VK_FORMAT_R8G8_UINT,
1098 VK_FORMAT_R8G8_SINT,
1099 VK_FORMAT_R8G8B8A8_UNORM,
1100 VK_FORMAT_R8G8B8A8_SNORM,
1101 VK_FORMAT_R8G8B8A8_UINT,
1102 VK_FORMAT_R8G8B8A8_SINT,
1103 VK_FORMAT_B8G8R8A8_UNORM,
1104 VK_FORMAT_A8B8G8R8_UNORM_PACK32,
1105 VK_FORMAT_A8B8G8R8_SNORM_PACK32,
1106 VK_FORMAT_A8B8G8R8_UINT_PACK32,
1107 VK_FORMAT_A8B8G8R8_SINT_PACK32,
1108 VK_FORMAT_A2B10G10R10_UNORM_PACK32,
1109 VK_FORMAT_R16_UNORM,
1110 VK_FORMAT_R16_SNORM,
1113 VK_FORMAT_R16_SFLOAT,
1114 VK_FORMAT_R16G16_UNORM,
1115 VK_FORMAT_R16G16_SNORM,
1116 VK_FORMAT_R16G16_UINT,
1117 VK_FORMAT_R16G16_SINT,
1118 VK_FORMAT_R16G16_SFLOAT,
1119 VK_FORMAT_R16G16B16A16_UNORM,
1120 VK_FORMAT_R16G16B16A16_SNORM,
1121 VK_FORMAT_R16G16B16A16_UINT,
1122 VK_FORMAT_R16G16B16A16_SINT,
1123 VK_FORMAT_R16G16B16A16_SFLOAT,
1126 VK_FORMAT_R32_SFLOAT,
1127 VK_FORMAT_R32G32_UINT,
1128 VK_FORMAT_R32G32_SINT,
1129 VK_FORMAT_R32G32_SFLOAT,
1130 VK_FORMAT_R32G32B32_UINT,
1131 VK_FORMAT_R32G32B32_SINT,
1132 VK_FORMAT_R32G32B32_SFLOAT,
1133 VK_FORMAT_R32G32B32A32_UINT,
1134 VK_FORMAT_R32G32B32A32_SINT,
1135 VK_FORMAT_R32G32B32A32_SFLOAT
1137 static const VkFormat s_requiredUniformTexelBufferFormats[] =
1143 VK_FORMAT_R8G8_UNORM,
1144 VK_FORMAT_R8G8_SNORM,
1145 VK_FORMAT_R8G8_UINT,
1146 VK_FORMAT_R8G8_SINT,
1147 VK_FORMAT_R8G8B8A8_UNORM,
1148 VK_FORMAT_R8G8B8A8_SNORM,
1149 VK_FORMAT_R8G8B8A8_UINT,
1150 VK_FORMAT_R8G8B8A8_SINT,
1151 VK_FORMAT_B8G8R8A8_UNORM,
1152 VK_FORMAT_A8B8G8R8_UNORM_PACK32,
1153 VK_FORMAT_A8B8G8R8_SNORM_PACK32,
1154 VK_FORMAT_A8B8G8R8_UINT_PACK32,
1155 VK_FORMAT_A8B8G8R8_SINT_PACK32,
1156 VK_FORMAT_A2B10G10R10_UNORM_PACK32,
1157 VK_FORMAT_A2B10G10R10_UINT_PACK32,
1160 VK_FORMAT_R16_SFLOAT,
1161 VK_FORMAT_R16G16_UINT,
1162 VK_FORMAT_R16G16_SINT,
1163 VK_FORMAT_R16G16_SFLOAT,
1164 VK_FORMAT_R16G16B16A16_UINT,
1165 VK_FORMAT_R16G16B16A16_SINT,
1166 VK_FORMAT_R16G16B16A16_SFLOAT,
1169 VK_FORMAT_R32_SFLOAT,
1170 VK_FORMAT_R32G32_UINT,
1171 VK_FORMAT_R32G32_SINT,
1172 VK_FORMAT_R32G32_SFLOAT,
1173 VK_FORMAT_R32G32B32A32_UINT,
1174 VK_FORMAT_R32G32B32A32_SINT,
1175 VK_FORMAT_R32G32B32A32_SFLOAT,
1176 VK_FORMAT_B10G11R11_UFLOAT_PACK32
1178 static const VkFormat s_requiredStorageTexelBufferFormats[] =
1180 VK_FORMAT_R8G8B8A8_UNORM,
1181 VK_FORMAT_R8G8B8A8_SNORM,
1182 VK_FORMAT_R8G8B8A8_UINT,
1183 VK_FORMAT_R8G8B8A8_SINT,
1184 VK_FORMAT_A8B8G8R8_UNORM_PACK32,
1185 VK_FORMAT_A8B8G8R8_SNORM_PACK32,
1186 VK_FORMAT_A8B8G8R8_UINT_PACK32,
1187 VK_FORMAT_A8B8G8R8_SINT_PACK32,
1188 VK_FORMAT_R16G16B16A16_UINT,
1189 VK_FORMAT_R16G16B16A16_SINT,
1190 VK_FORMAT_R16G16B16A16_SFLOAT,
1193 VK_FORMAT_R32_SFLOAT,
1194 VK_FORMAT_R32G32_UINT,
1195 VK_FORMAT_R32G32_SINT,
1196 VK_FORMAT_R32G32_SFLOAT,
1197 VK_FORMAT_R32G32B32A32_UINT,
1198 VK_FORMAT_R32G32B32A32_SINT,
1199 VK_FORMAT_R32G32B32A32_SFLOAT
1201 static const VkFormat s_requiredStorageTexelBufferAtomicFormats[] =
1207 VkFormatFeatureFlags flags = (VkFormatFeatureFlags)0;
1209 if (de::contains(DE_ARRAY_BEGIN(s_requiredVertexBufferFormats), DE_ARRAY_END(s_requiredVertexBufferFormats), format))
1210 flags |= VK_FORMAT_FEATURE_VERTEX_BUFFER_BIT;
1212 if (de::contains(DE_ARRAY_BEGIN(s_requiredUniformTexelBufferFormats), DE_ARRAY_END(s_requiredUniformTexelBufferFormats), format))
1213 flags |= VK_FORMAT_FEATURE_UNIFORM_TEXEL_BUFFER_BIT;
1215 if (de::contains(DE_ARRAY_BEGIN(s_requiredStorageTexelBufferFormats), DE_ARRAY_END(s_requiredStorageTexelBufferFormats), format))
1216 flags |= VK_FORMAT_FEATURE_STORAGE_TEXEL_BUFFER_BIT;
1218 if (de::contains(DE_ARRAY_BEGIN(s_requiredStorageTexelBufferAtomicFormats), DE_ARRAY_END(s_requiredStorageTexelBufferAtomicFormats), format))
1219 flags |= VK_FORMAT_FEATURE_STORAGE_TEXEL_BUFFER_ATOMIC_BIT;
1224 tcu::TestStatus formatProperties (Context& context, VkFormat format)
1226 TestLog& log = context.getTestContext().getLog();
1227 const VkFormatProperties properties = getPhysicalDeviceFormatProperties(context.getInstanceInterface(), context.getPhysicalDevice(), format);
1232 VkFormatFeatureFlags VkFormatProperties::* field;
1233 const char* fieldName;
1234 VkFormatFeatureFlags requiredFeatures;
1237 { &VkFormatProperties::linearTilingFeatures, "linearTilingFeatures", (VkFormatFeatureFlags)0 },
1238 { &VkFormatProperties::optimalTilingFeatures, "optimalTilingFeatures", getRequiredOptimalTilingFeatures(format) },
1239 { &VkFormatProperties::bufferFeatures, "buffeFeatures", getRequiredBufferFeatures(format) }
1242 log << TestLog::Message << properties << TestLog::EndMessage;
1244 for (int fieldNdx = 0; fieldNdx < DE_LENGTH_OF_ARRAY(fields); fieldNdx++)
1246 const char* const fieldName = fields[fieldNdx].fieldName;
1247 const VkFormatFeatureFlags supported = properties.*fields[fieldNdx].field;
1248 const VkFormatFeatureFlags required = fields[fieldNdx].requiredFeatures;
1250 if ((supported & required) != required)
1252 log << TestLog::Message << "ERROR in " << fieldName << ":\n"
1253 << " required: " << getFormatFeatureFlagsStr(required) << "\n "
1254 << " missing: " << getFormatFeatureFlagsStr(~supported & required)
1255 << TestLog::EndMessage;
1261 return tcu::TestStatus::pass("Query and validation passed");
1263 return tcu::TestStatus::fail("Required features not supported");
1266 bool optimalTilingFeaturesSupported (Context& context, VkFormat format, VkFormatFeatureFlags features)
1268 const VkFormatProperties properties = getPhysicalDeviceFormatProperties(context.getInstanceInterface(), context.getPhysicalDevice(), format);
1270 return (properties.optimalTilingFeatures & features) == features;
1273 bool optimalTilingFeaturesSupportedForAll (Context& context, const VkFormat* begin, const VkFormat* end, VkFormatFeatureFlags features)
1275 for (const VkFormat* cur = begin; cur != end; ++cur)
1277 if (!optimalTilingFeaturesSupported(context, *cur, features))
1284 tcu::TestStatus testDepthStencilSupported (Context& context)
1286 if (!optimalTilingFeaturesSupported(context, VK_FORMAT_X8_D24_UNORM_PACK32, VK_FORMAT_FEATURE_DEPTH_STENCIL_ATTACHMENT_BIT) &&
1287 !optimalTilingFeaturesSupported(context, VK_FORMAT_D32_SFLOAT, VK_FORMAT_FEATURE_DEPTH_STENCIL_ATTACHMENT_BIT))
1288 return tcu::TestStatus::fail("Doesn't support one of VK_FORMAT_X8_D24_UNORM_PACK32 or VK_FORMAT_D32_SFLOAT");
1290 if (!optimalTilingFeaturesSupported(context, VK_FORMAT_D24_UNORM_S8_UINT, VK_FORMAT_FEATURE_DEPTH_STENCIL_ATTACHMENT_BIT) &&
1291 !optimalTilingFeaturesSupported(context, VK_FORMAT_D32_SFLOAT_S8_UINT, VK_FORMAT_FEATURE_DEPTH_STENCIL_ATTACHMENT_BIT))
1292 return tcu::TestStatus::fail("Doesn't support one of VK_FORMAT_D24_UNORM_S8_UINT or VK_FORMAT_D32_SFLOAT_S8_UINT");
1294 return tcu::TestStatus::pass("Required depth/stencil formats supported");
1297 tcu::TestStatus testCompressedFormatsSupported (Context& context)
1299 static const VkFormat s_allBcFormats[] =
1301 VK_FORMAT_BC1_RGB_UNORM_BLOCK,
1302 VK_FORMAT_BC1_RGB_SRGB_BLOCK,
1303 VK_FORMAT_BC1_RGBA_UNORM_BLOCK,
1304 VK_FORMAT_BC1_RGBA_SRGB_BLOCK,
1305 VK_FORMAT_BC2_UNORM_BLOCK,
1306 VK_FORMAT_BC2_SRGB_BLOCK,
1307 VK_FORMAT_BC3_UNORM_BLOCK,
1308 VK_FORMAT_BC3_SRGB_BLOCK,
1309 VK_FORMAT_BC4_UNORM_BLOCK,
1310 VK_FORMAT_BC4_SNORM_BLOCK,
1311 VK_FORMAT_BC5_UNORM_BLOCK,
1312 VK_FORMAT_BC5_SNORM_BLOCK,
1313 VK_FORMAT_BC6H_UFLOAT_BLOCK,
1314 VK_FORMAT_BC6H_SFLOAT_BLOCK,
1315 VK_FORMAT_BC7_UNORM_BLOCK,
1316 VK_FORMAT_BC7_SRGB_BLOCK,
1318 static const VkFormat s_allEtc2Formats[] =
1320 VK_FORMAT_ETC2_R8G8B8_UNORM_BLOCK,
1321 VK_FORMAT_ETC2_R8G8B8_SRGB_BLOCK,
1322 VK_FORMAT_ETC2_R8G8B8A1_UNORM_BLOCK,
1323 VK_FORMAT_ETC2_R8G8B8A1_SRGB_BLOCK,
1324 VK_FORMAT_ETC2_R8G8B8A8_UNORM_BLOCK,
1325 VK_FORMAT_ETC2_R8G8B8A8_SRGB_BLOCK,
1326 VK_FORMAT_EAC_R11_UNORM_BLOCK,
1327 VK_FORMAT_EAC_R11_SNORM_BLOCK,
1328 VK_FORMAT_EAC_R11G11_UNORM_BLOCK,
1329 VK_FORMAT_EAC_R11G11_SNORM_BLOCK,
1331 static const VkFormat s_allAstcLdrFormats[] =
1333 VK_FORMAT_ASTC_4x4_UNORM_BLOCK,
1334 VK_FORMAT_ASTC_4x4_SRGB_BLOCK,
1335 VK_FORMAT_ASTC_5x4_UNORM_BLOCK,
1336 VK_FORMAT_ASTC_5x4_SRGB_BLOCK,
1337 VK_FORMAT_ASTC_5x5_UNORM_BLOCK,
1338 VK_FORMAT_ASTC_5x5_SRGB_BLOCK,
1339 VK_FORMAT_ASTC_6x5_UNORM_BLOCK,
1340 VK_FORMAT_ASTC_6x5_SRGB_BLOCK,
1341 VK_FORMAT_ASTC_6x6_UNORM_BLOCK,
1342 VK_FORMAT_ASTC_6x6_SRGB_BLOCK,
1343 VK_FORMAT_ASTC_8x5_UNORM_BLOCK,
1344 VK_FORMAT_ASTC_8x5_SRGB_BLOCK,
1345 VK_FORMAT_ASTC_8x6_UNORM_BLOCK,
1346 VK_FORMAT_ASTC_8x6_SRGB_BLOCK,
1347 VK_FORMAT_ASTC_8x8_UNORM_BLOCK,
1348 VK_FORMAT_ASTC_8x8_SRGB_BLOCK,
1349 VK_FORMAT_ASTC_10x5_UNORM_BLOCK,
1350 VK_FORMAT_ASTC_10x5_SRGB_BLOCK,
1351 VK_FORMAT_ASTC_10x6_UNORM_BLOCK,
1352 VK_FORMAT_ASTC_10x6_SRGB_BLOCK,
1353 VK_FORMAT_ASTC_10x8_UNORM_BLOCK,
1354 VK_FORMAT_ASTC_10x8_SRGB_BLOCK,
1355 VK_FORMAT_ASTC_10x10_UNORM_BLOCK,
1356 VK_FORMAT_ASTC_10x10_SRGB_BLOCK,
1357 VK_FORMAT_ASTC_12x10_UNORM_BLOCK,
1358 VK_FORMAT_ASTC_12x10_SRGB_BLOCK,
1359 VK_FORMAT_ASTC_12x12_UNORM_BLOCK,
1360 VK_FORMAT_ASTC_12x12_SRGB_BLOCK,
1365 const char* setName;
1366 const char* featureName;
1367 const VkBool32 VkPhysicalDeviceFeatures::* feature;
1368 const VkFormat* formatsBegin;
1369 const VkFormat* formatsEnd;
1370 } s_compressedFormatSets[] =
1372 { "BC", "textureCompressionBC", &VkPhysicalDeviceFeatures::textureCompressionBC, DE_ARRAY_BEGIN(s_allBcFormats), DE_ARRAY_END(s_allBcFormats) },
1373 { "ETC2", "textureCompressionETC2", &VkPhysicalDeviceFeatures::textureCompressionETC2, DE_ARRAY_BEGIN(s_allEtc2Formats), DE_ARRAY_END(s_allEtc2Formats) },
1374 { "ASTC LDR", "textureCompressionASTC_LDR", &VkPhysicalDeviceFeatures::textureCompressionASTC_LDR, DE_ARRAY_BEGIN(s_allAstcLdrFormats), DE_ARRAY_END(s_allAstcLdrFormats) },
1377 TestLog& log = context.getTestContext().getLog();
1378 const VkPhysicalDeviceFeatures& features = context.getDeviceFeatures();
1379 int numSupportedSets = 0;
1381 int numWarnings = 0;
1383 for (int setNdx = 0; setNdx < DE_LENGTH_OF_ARRAY(s_compressedFormatSets); ++setNdx)
1385 const char* const setName = s_compressedFormatSets[setNdx].setName;
1386 const char* const featureName = s_compressedFormatSets[setNdx].featureName;
1387 const bool featureBitSet = features.*s_compressedFormatSets[setNdx].feature == VK_TRUE;
1388 const bool allSupported = optimalTilingFeaturesSupportedForAll(context,
1389 s_compressedFormatSets[setNdx].formatsBegin,
1390 s_compressedFormatSets[setNdx].formatsEnd,
1391 VK_FORMAT_FEATURE_SAMPLED_IMAGE_BIT);
1393 if (featureBitSet && !allSupported)
1395 log << TestLog::Message << "ERROR: " << featureName << " = VK_TRUE but " << setName << " formats not supported" << TestLog::EndMessage;
1398 else if (allSupported && !featureBitSet)
1400 log << TestLog::Message << "WARNING: " << setName << " formats supported but " << featureName << " = VK_FALSE" << TestLog::EndMessage;
1406 log << TestLog::Message << "All " << setName << " formats are supported" << TestLog::EndMessage;
1407 numSupportedSets += 1;
1410 log << TestLog::Message << setName << " formats are not supported" << TestLog::EndMessage;
1413 if (numSupportedSets == 0)
1415 log << TestLog::Message << "No compressed format sets supported" << TestLog::EndMessage;
1420 return tcu::TestStatus::fail("Compressed format support not valid");
1421 else if (numWarnings > 0)
1422 return tcu::TestStatus(QP_TEST_RESULT_QUALITY_WARNING, "Found inconsistencies in compressed format support");
1424 return tcu::TestStatus::pass("Compressed texture format support is valid");
1427 void createFormatTests (tcu::TestCaseGroup* testGroup)
1429 DE_STATIC_ASSERT(VK_FORMAT_UNDEFINED == 0);
1431 for (deUint32 formatNdx = VK_FORMAT_UNDEFINED+1; formatNdx < VK_FORMAT_LAST; ++formatNdx)
1433 const VkFormat format = (VkFormat)formatNdx;
1434 const char* const enumName = getFormatName(format);
1435 const string caseName = de::toLower(string(enumName).substr(10));
1437 addFunctionCase(testGroup, caseName, enumName, formatProperties, format);
1440 addFunctionCase(testGroup, "depth_stencil", "", testDepthStencilSupported);
1441 addFunctionCase(testGroup, "compressed_formats", "", testCompressedFormatsSupported);
1444 VkImageUsageFlags getValidImageUsageFlags (VkFormat, VkFormatFeatureFlags supportedFeatures)
1446 VkImageUsageFlags flags = (VkImageUsageFlags)0;
1448 // If format is supported at all, it must be valid transfer src+dst
1449 if (supportedFeatures != 0)
1450 flags |= VK_IMAGE_USAGE_TRANSFER_SRC_BIT|VK_IMAGE_USAGE_TRANSFER_DST_BIT;
1452 if ((supportedFeatures & VK_FORMAT_FEATURE_SAMPLED_IMAGE_BIT) != 0)
1453 flags |= VK_IMAGE_USAGE_SAMPLED_BIT;
1455 if ((supportedFeatures & VK_FORMAT_FEATURE_COLOR_ATTACHMENT_BIT) != 0)
1456 flags |= VK_IMAGE_USAGE_COLOR_ATTACHMENT_BIT|VK_IMAGE_USAGE_TRANSIENT_ATTACHMENT_BIT|VK_IMAGE_USAGE_INPUT_ATTACHMENT_BIT;
1458 if ((supportedFeatures & VK_FORMAT_FEATURE_DEPTH_STENCIL_ATTACHMENT_BIT) != 0)
1459 flags |= VK_IMAGE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT;
1461 if ((supportedFeatures & VK_FORMAT_FEATURE_STORAGE_IMAGE_BIT) != 0)
1462 flags |= VK_IMAGE_USAGE_STORAGE_BIT;
1467 bool isValidImageUsageFlagCombination (VkImageUsageFlags usage)
1472 VkImageCreateFlags getValidImageCreateFlags (const VkPhysicalDeviceFeatures& deviceFeatures, VkFormat, VkFormatFeatureFlags, VkImageType type, VkImageUsageFlags usage)
1474 VkImageCreateFlags flags = (VkImageCreateFlags)0;
1476 if ((usage & VK_IMAGE_USAGE_SAMPLED_BIT) != 0)
1478 flags |= VK_IMAGE_CREATE_MUTABLE_FORMAT_BIT;
1480 if (type == VK_IMAGE_TYPE_2D)
1481 flags |= VK_IMAGE_CREATE_CUBE_COMPATIBLE_BIT;
1484 if ((usage & (VK_IMAGE_USAGE_SAMPLED_BIT|VK_IMAGE_USAGE_STORAGE_BIT)) != 0 &&
1485 (usage & VK_IMAGE_USAGE_TRANSIENT_ATTACHMENT_BIT) == 0)
1487 if (deviceFeatures.sparseBinding)
1488 flags |= VK_IMAGE_CREATE_SPARSE_BINDING_BIT|VK_IMAGE_CREATE_SPARSE_RESIDENCY_BIT;
1490 if (deviceFeatures.sparseResidencyAliased)
1491 flags |= VK_IMAGE_CREATE_SPARSE_ALIASED_BIT;
1497 bool isValidImageCreateFlagCombination (VkImageCreateFlags)
1502 bool isRequiredImageParameterCombination (const VkPhysicalDeviceFeatures& deviceFeatures,
1503 const VkFormat format,
1504 const VkFormatProperties& formatProperties,
1505 const VkImageType imageType,
1506 const VkImageTiling imageTiling,
1507 const VkImageUsageFlags usageFlags,
1508 const VkImageCreateFlags createFlags)
1510 DE_UNREF(deviceFeatures);
1511 DE_UNREF(formatProperties);
1512 DE_UNREF(createFlags);
1514 // Linear images can have arbitrary limitations
1515 if (imageTiling == VK_IMAGE_TILING_LINEAR)
1518 // Support for other usages for compressed formats is optional
1519 if (isCompressedFormat(format) &&
1520 (usageFlags & ~(VK_IMAGE_USAGE_SAMPLED_BIT|VK_IMAGE_USAGE_TRANSFER_SRC_BIT|VK_IMAGE_USAGE_TRANSFER_DST_BIT)) != 0)
1523 // Support for 1D, and sliced 3D compressed formats is optional
1524 if (isCompressedFormat(format) && (imageType == VK_IMAGE_TYPE_1D || imageType == VK_IMAGE_TYPE_3D))
1527 DE_ASSERT(deviceFeatures.sparseBinding || (createFlags & (VK_IMAGE_CREATE_SPARSE_BINDING_BIT|VK_IMAGE_CREATE_SPARSE_RESIDENCY_BIT)) == 0);
1528 DE_ASSERT(deviceFeatures.sparseResidencyAliased || (createFlags & VK_IMAGE_CREATE_SPARSE_ALIASED_BIT) == 0);
1533 VkSampleCountFlags getRequiredOptimalTilingSampleCounts (const VkPhysicalDeviceLimits& deviceLimits,
1534 const VkFormat format,
1535 const VkImageUsageFlags usageFlags)
1537 if (!isCompressedFormat(format))
1539 const tcu::TextureFormat tcuFormat = mapVkFormat(format);
1541 if (usageFlags & VK_IMAGE_USAGE_STORAGE_BIT)
1542 return deviceLimits.storageImageSampleCounts;
1543 else if (tcuFormat.order == tcu::TextureFormat::D)
1544 return deviceLimits.sampledImageDepthSampleCounts;
1545 else if (tcuFormat.order == tcu::TextureFormat::S)
1546 return deviceLimits.sampledImageStencilSampleCounts;
1547 else if (tcuFormat.order == tcu::TextureFormat::DS)
1548 return deviceLimits.sampledImageDepthSampleCounts & deviceLimits.sampledImageStencilSampleCounts;
1551 const tcu::TextureChannelClass chnClass = tcu::getTextureChannelClass(tcuFormat.type);
1553 if (chnClass == tcu::TEXTURECHANNELCLASS_UNSIGNED_INTEGER ||
1554 chnClass == tcu::TEXTURECHANNELCLASS_SIGNED_INTEGER)
1555 return deviceLimits.sampledImageIntegerSampleCounts;
1557 return deviceLimits.sampledImageColorSampleCounts;
1561 return VK_SAMPLE_COUNT_1_BIT;
1564 struct ImageFormatPropertyCase
1567 VkImageType imageType;
1568 VkImageTiling tiling;
1570 ImageFormatPropertyCase (VkFormat format_, VkImageType imageType_, VkImageTiling tiling_)
1572 , imageType (imageType_)
1576 ImageFormatPropertyCase (void)
1577 : format (VK_FORMAT_LAST)
1578 , imageType (VK_IMAGE_TYPE_LAST)
1579 , tiling (VK_IMAGE_TILING_LAST)
1583 tcu::TestStatus imageFormatProperties (Context& context, ImageFormatPropertyCase params)
1585 TestLog& log = context.getTestContext().getLog();
1586 const VkFormat format = params.format;
1587 const VkImageType imageType = params.imageType;
1588 const VkImageTiling tiling = params.tiling;
1589 const VkPhysicalDeviceFeatures& deviceFeatures = context.getDeviceFeatures();
1590 const VkPhysicalDeviceLimits& deviceLimits = context.getDeviceProperties().limits;
1591 const VkFormatProperties formatProperties = getPhysicalDeviceFormatProperties(context.getInstanceInterface(), context.getPhysicalDevice(), format);
1593 const VkFormatFeatureFlags supportedFeatures = tiling == VK_IMAGE_TILING_LINEAR ? formatProperties.linearTilingFeatures : formatProperties.optimalTilingFeatures;
1594 const VkImageUsageFlags usageFlagSet = getValidImageUsageFlags(format, supportedFeatures);
1596 for (VkImageUsageFlags curUsageFlags = 0; curUsageFlags <= usageFlagSet; curUsageFlags++)
1598 if ((curUsageFlags & ~usageFlagSet) != 0 ||
1599 !isValidImageUsageFlagCombination(curUsageFlags))
1602 const VkImageCreateFlags createFlagSet = getValidImageCreateFlags(deviceFeatures, format, supportedFeatures, imageType, curUsageFlags);
1604 for (VkImageCreateFlags curCreateFlags = 0; curCreateFlags <= createFlagSet; curCreateFlags++)
1606 if ((curCreateFlags & ~createFlagSet) != 0 ||
1607 !isValidImageCreateFlagCombination(curCreateFlags))
1610 const bool isRequiredCombination = isRequiredImageParameterCombination(deviceFeatures,
1618 log << TestLog::Message << "Testing " << getImageTypeStr(imageType) << ", "
1619 << getImageTilingStr(tiling) << ", "
1620 << getImageUsageFlagsStr(curUsageFlags) << ", "
1621 << getImageCreateFlagsStr(curCreateFlags)
1622 << TestLog::EndMessage;
1626 const VkImageFormatProperties properties = getPhysicalDeviceImageFormatProperties(context.getInstanceInterface(),
1627 context.getPhysicalDevice(),
1633 const deUint32 fullMipPyramidSize = de::max(de::max(deLog2Ceil32(properties.maxExtent.width),
1634 deLog2Ceil32(properties.maxExtent.height)),
1635 deLog2Ceil32(properties.maxExtent.depth)) + 1;
1637 log << TestLog::Message << properties << "\n" << TestLog::EndMessage;
1639 TCU_CHECK(imageType != VK_IMAGE_TYPE_1D || (properties.maxExtent.width >= 1 && properties.maxExtent.height == 1 && properties.maxExtent.depth == 1));
1640 TCU_CHECK(imageType != VK_IMAGE_TYPE_2D || (properties.maxExtent.width >= 1 && properties.maxExtent.height >= 1 && properties.maxExtent.depth == 1));
1641 TCU_CHECK(imageType != VK_IMAGE_TYPE_3D || (properties.maxExtent.width >= 1 && properties.maxExtent.height >= 1 && properties.maxExtent.depth >= 1));
1643 if (tiling == VK_IMAGE_TILING_OPTIMAL)
1645 const VkSampleCountFlags requiredSampleCounts = getRequiredOptimalTilingSampleCounts(deviceLimits, format, curUsageFlags);
1646 TCU_CHECK((properties.sampleCounts & requiredSampleCounts) == requiredSampleCounts);
1649 TCU_CHECK(properties.sampleCounts == VK_SAMPLE_COUNT_1_BIT);
1651 if (isRequiredCombination)
1653 TCU_CHECK(imageType != VK_IMAGE_TYPE_1D || (properties.maxExtent.width >= deviceLimits.maxImageDimension1D));
1654 TCU_CHECK(imageType != VK_IMAGE_TYPE_2D || (properties.maxExtent.width >= deviceLimits.maxImageDimension2D &&
1655 properties.maxExtent.height >= deviceLimits.maxImageDimension2D));
1656 TCU_CHECK(imageType != VK_IMAGE_TYPE_3D || (properties.maxExtent.width >= deviceLimits.maxImageDimension3D &&
1657 properties.maxExtent.height >= deviceLimits.maxImageDimension3D &&
1658 properties.maxExtent.depth >= deviceLimits.maxImageDimension3D));
1659 TCU_CHECK(properties.maxMipLevels == fullMipPyramidSize);
1660 TCU_CHECK(imageType != VK_IMAGE_TYPE_3D || properties.maxArrayLayers == 1);
1661 TCU_CHECK(imageType == VK_IMAGE_TYPE_3D || properties.maxArrayLayers >= deviceLimits.maxImageArrayLayers);
1665 TCU_CHECK(properties.maxMipLevels == 1 || properties.maxMipLevels == fullMipPyramidSize);
1666 TCU_CHECK(properties.maxArrayLayers >= 1);
1669 TCU_CHECK(properties.maxResourceSize >= (VkDeviceSize)MINIMUM_REQUIRED_IMAGE_RESOURCE_SIZE);
1671 catch (const Error& error)
1673 if (error.getError() == VK_ERROR_FORMAT_NOT_SUPPORTED)
1675 log << TestLog::Message << "Got VK_ERROR_FORMAT_NOT_SUPPORTED" << TestLog::EndMessage;
1677 if (isRequiredCombination)
1678 TCU_FAIL("VK_ERROR_FORMAT_NOT_SUPPORTED returned for required image parameter combination");
1686 return tcu::TestStatus::pass("All queries succeeded");
1689 void createImageFormatTypeTilingTests (tcu::TestCaseGroup* testGroup, ImageFormatPropertyCase params)
1691 DE_ASSERT(params.format == VK_FORMAT_LAST);
1693 for (deUint32 formatNdx = VK_FORMAT_UNDEFINED+1; formatNdx < VK_FORMAT_LAST; ++formatNdx)
1695 const VkFormat format = (VkFormat)formatNdx;
1696 const char* const enumName = getFormatName(format);
1697 const string caseName = de::toLower(string(enumName).substr(10));
1699 params.format = format;
1701 addFunctionCase(testGroup, caseName, enumName, imageFormatProperties, params);
1705 void createImageFormatTypeTests (tcu::TestCaseGroup* testGroup, ImageFormatPropertyCase params)
1707 DE_ASSERT(params.tiling == VK_IMAGE_TILING_LAST);
1709 testGroup->addChild(createTestGroup(testGroup->getTestContext(), "optimal", "", createImageFormatTypeTilingTests, ImageFormatPropertyCase(VK_FORMAT_LAST, params.imageType, VK_IMAGE_TILING_OPTIMAL)));
1710 testGroup->addChild(createTestGroup(testGroup->getTestContext(), "linear", "", createImageFormatTypeTilingTests, ImageFormatPropertyCase(VK_FORMAT_LAST, params.imageType, VK_IMAGE_TILING_LINEAR)));
1713 void createImageFormatTests (tcu::TestCaseGroup* testGroup)
1715 testGroup->addChild(createTestGroup(testGroup->getTestContext(), "1d", "", createImageFormatTypeTests, ImageFormatPropertyCase(VK_FORMAT_LAST, VK_IMAGE_TYPE_1D, VK_IMAGE_TILING_LAST)));
1716 testGroup->addChild(createTestGroup(testGroup->getTestContext(), "2d", "", createImageFormatTypeTests, ImageFormatPropertyCase(VK_FORMAT_LAST, VK_IMAGE_TYPE_2D, VK_IMAGE_TILING_LAST)));
1717 testGroup->addChild(createTestGroup(testGroup->getTestContext(), "3d", "", createImageFormatTypeTests, ImageFormatPropertyCase(VK_FORMAT_LAST, VK_IMAGE_TYPE_3D, VK_IMAGE_TILING_LAST)));
1722 tcu::TestCaseGroup* createFeatureInfoTests (tcu::TestContext& testCtx)
1724 de::MovePtr<tcu::TestCaseGroup> infoTests (new tcu::TestCaseGroup(testCtx, "info", "Platform Information Tests"));
1727 de::MovePtr<tcu::TestCaseGroup> instanceInfoTests (new tcu::TestCaseGroup(testCtx, "instance", "Instance Information Tests"));
1729 addFunctionCase(instanceInfoTests.get(), "physical_devices", "Physical devices", enumeratePhysicalDevices);
1730 addFunctionCase(instanceInfoTests.get(), "layers", "Layers", enumerateInstanceLayers);
1731 addFunctionCase(instanceInfoTests.get(), "extensions", "Extensions", enumerateInstanceExtensions);
1733 infoTests->addChild(instanceInfoTests.release());
1737 de::MovePtr<tcu::TestCaseGroup> deviceInfoTests (new tcu::TestCaseGroup(testCtx, "device", "Device Information Tests"));
1739 addFunctionCase(deviceInfoTests.get(), "features", "Device Features", deviceFeatures);
1740 addFunctionCase(deviceInfoTests.get(), "properties", "Device Properties", deviceProperties);
1741 addFunctionCase(deviceInfoTests.get(), "queue_family_properties", "Queue family properties", deviceQueueFamilyProperties);
1742 addFunctionCase(deviceInfoTests.get(), "memory_properties", "Memory properties", deviceMemoryProperties);
1743 addFunctionCase(deviceInfoTests.get(), "layers", "Layers", enumerateDeviceLayers);
1744 addFunctionCase(deviceInfoTests.get(), "extensions", "Extensions", enumerateDeviceExtensions);
1746 infoTests->addChild(deviceInfoTests.release());
1749 infoTests->addChild(createTestGroup(testCtx, "format_properties", "VkGetPhysicalDeviceFormatProperties() Tests", createFormatTests));
1750 infoTests->addChild(createTestGroup(testCtx, "image_format_properties", "VkGetPhysicalDeviceImageFormatProperties() Tests", createImageFormatTests));
1752 return infoTests.release();