external/vulkancts/modules/vulkan/wsi/vktWsiSurfaceTests.cpp \
external/vulkancts/modules/vulkan/wsi/vktWsiSwapchainTests.cpp \
external/vulkancts/modules/vulkan/wsi/vktWsiTests.cpp \
+ external/vulkancts/modules/vulkan/ycbcr/vktYCbCrConversionTests.cpp \
+ external/vulkancts/modules/vulkan/ycbcr/vktYCbCrFormatTests.cpp \
+ external/vulkancts/modules/vulkan/ycbcr/vktYCbCrImageQueryTests.cpp \
+ external/vulkancts/modules/vulkan/ycbcr/vktYCbCrTests.cpp \
+ external/vulkancts/modules/vulkan/ycbcr/vktYCbCrUtil.cpp \
+ external/vulkancts/modules/vulkan/ycbcr/vktYCbCrViewTests.cpp \
framework/common/tcuApp.cpp \
framework/common/tcuArray.cpp \
framework/common/tcuAstcUtil.cpp \
$(deqp_dir)/external/vulkancts/modules/vulkan/ubo \
$(deqp_dir)/external/vulkancts/modules/vulkan \
$(deqp_dir)/external/vulkancts/modules/vulkan/wsi \
+ $(deqp_dir)/external/vulkancts/modules/vulkan/ycbcr \
$(deqp_dir)/framework/common \
$(deqp_dir)/framework/delibs/debase \
$(deqp_dir)/framework/delibs/decpp \
dEQP-VK.api.info.format_properties.astc_12x10_srgb_block
dEQP-VK.api.info.format_properties.astc_12x12_unorm_block
dEQP-VK.api.info.format_properties.astc_12x12_srgb_block
+dEQP-VK.api.info.format_properties.g8b8g8r8_422_unorm_khr
+dEQP-VK.api.info.format_properties.b8g8r8g8_422_unorm_khr
+dEQP-VK.api.info.format_properties.g8_b8_r8_3plane_420_unorm_khr
+dEQP-VK.api.info.format_properties.g8_b8r8_2plane_420_unorm_khr
+dEQP-VK.api.info.format_properties.g8_b8_r8_3plane_422_unorm_khr
+dEQP-VK.api.info.format_properties.g8_b8r8_2plane_422_unorm_khr
+dEQP-VK.api.info.format_properties.g8_b8_r8_3plane_444_unorm_khr
+dEQP-VK.api.info.format_properties.r10x6_unorm_pack16_khr
+dEQP-VK.api.info.format_properties.r10x6g10x6_unorm_2pack16_khr
+dEQP-VK.api.info.format_properties.r10x6g10x6b10x6a10x6_unorm_4pack16_khr
+dEQP-VK.api.info.format_properties.g10x6b10x6g10x6r10x6_422_unorm_4pack16_khr
+dEQP-VK.api.info.format_properties.b10x6g10x6r10x6g10x6_422_unorm_4pack16_khr
+dEQP-VK.api.info.format_properties.g10x6_b10x6_r10x6_3plane_420_unorm_3pack16_khr
+dEQP-VK.api.info.format_properties.g10x6_b10x6r10x6_2plane_420_unorm_3pack16_khr
+dEQP-VK.api.info.format_properties.g10x6_b10x6_r10x6_3plane_422_unorm_3pack16_khr
+dEQP-VK.api.info.format_properties.g10x6_b10x6r10x6_2plane_422_unorm_3pack16_khr
+dEQP-VK.api.info.format_properties.g10x6_b10x6_r10x6_3plane_444_unorm_3pack16_khr
+dEQP-VK.api.info.format_properties.r12x4_unorm_pack16_khr
+dEQP-VK.api.info.format_properties.r12x4g12x4_unorm_2pack16_khr
+dEQP-VK.api.info.format_properties.r12x4g12x4b12x4a12x4_unorm_4pack16_khr
+dEQP-VK.api.info.format_properties.g12x4b12x4g12x4r12x4_422_unorm_4pack16_khr
+dEQP-VK.api.info.format_properties.b12x4g12x4r12x4g12x4_422_unorm_4pack16_khr
+dEQP-VK.api.info.format_properties.g12x4_b12x4_r12x4_3plane_420_unorm_3pack16_khr
+dEQP-VK.api.info.format_properties.g12x4_b12x4r12x4_2plane_420_unorm_3pack16_khr
+dEQP-VK.api.info.format_properties.g12x4_b12x4_r12x4_3plane_422_unorm_3pack16_khr
+dEQP-VK.api.info.format_properties.g12x4_b12x4r12x4_2plane_422_unorm_3pack16_khr
+dEQP-VK.api.info.format_properties.g12x4_b12x4_r12x4_3plane_444_unorm_3pack16_khr
+dEQP-VK.api.info.format_properties.g16b16g16r16_422_unorm_khr
+dEQP-VK.api.info.format_properties.b16g16r16g16_422_unorm_khr
+dEQP-VK.api.info.format_properties.g16_b16_r16_3plane_420_unorm_khr
+dEQP-VK.api.info.format_properties.g16_b16r16_2plane_420_unorm_khr
+dEQP-VK.api.info.format_properties.g16_b16_r16_3plane_422_unorm_khr
+dEQP-VK.api.info.format_properties.g16_b16r16_2plane_422_unorm_khr
+dEQP-VK.api.info.format_properties.g16_b16_r16_3plane_444_unorm_khr
dEQP-VK.api.info.format_properties.depth_stencil
dEQP-VK.api.info.format_properties.compressed_formats
dEQP-VK.api.info.image_format_properties.1d.optimal.r4g4_unorm_pack8
dEQP-VK.memory.requirements.dedicated_allocation.image.sparse_aliased_tiling_linear
dEQP-VK.memory.requirements.dedicated_allocation.image.sparse_aliased_tiling_optimal
dEQP-VK.memory.requirements.dedicated_allocation.image.sparse_residency_aliased_tiling_optimal
+dEQP-VK.memory.requirements.multiplane_image.regular_optimal
+dEQP-VK.memory.requirements.multiplane_image.regular_linear
+dEQP-VK.memory.requirements.multiplane_image.transient_optimal
+dEQP-VK.memory.requirements.multiplane_image.transient_linear
+dEQP-VK.memory.requirements.multiplane_image.sparse_optimal
+dEQP-VK.memory.requirements.multiplane_image.sparse_residency_optimal
+dEQP-VK.memory.requirements.multiplane_image.sparse_aliased_optimal
+dEQP-VK.memory.requirements.multiplane_image.sparse_residency_aliased_optimal
dEQP-VK.memory.binding.regular.suballocated.buffer_33
dEQP-VK.memory.binding.regular.suballocated.buffer_257
dEQP-VK.memory.binding.regular.suballocated.buffer_4087
dEQP-VK.multiview.index.tesellation_shader.8_1_1_8
dEQP-VK.multiview.index.tesellation_shader.1_2_4_8_16_32
dEQP-VK.multiview.index.tesellation_shader.max_multi_view_view_count
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.vertex_optimal
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.vertex_linear
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.vertex_linear_mapped
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.fragment_optimal
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.fragment_linear
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.fragment_linear_mapped
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.geometry_optimal
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.geometry_linear
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.geometry_linear_mapped
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.tess_control_optimal
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.tess_control_linear
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.tess_control_linear_mapped
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.tess_eval_optimal
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.tess_eval_linear
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.tess_eval_linear_mapped
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.compute_optimal
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.compute_linear
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.compute_linear_mapped
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.vertex_optimal
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.vertex_linear
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.vertex_linear_mapped
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.fragment_optimal
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.fragment_linear
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.fragment_linear_mapped
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.geometry_optimal
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.geometry_linear
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.geometry_linear_mapped
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.tess_control_optimal
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.tess_control_linear
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.tess_control_linear_mapped
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.tess_eval_optimal
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.tess_eval_linear
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.tess_eval_linear_mapped
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.compute_optimal
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.compute_linear
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.compute_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.vertex_optimal
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.vertex_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.vertex_linear
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.vertex_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.vertex_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.vertex_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.fragment_optimal
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.fragment_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.fragment_linear
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.fragment_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.fragment_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.fragment_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.geometry_optimal
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.geometry_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.geometry_linear
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.geometry_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.geometry_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.geometry_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_control_optimal
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_control_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_control_linear
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_control_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_control_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_control_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_eval_optimal
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_eval_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_eval_linear
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_eval_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_eval_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_eval_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.compute_optimal
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.compute_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.compute_linear
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.compute_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.compute_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.compute_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.vertex_optimal
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.vertex_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.vertex_linear
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.vertex_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.vertex_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.vertex_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.fragment_optimal
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.fragment_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.fragment_linear
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.fragment_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.fragment_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.fragment_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.geometry_optimal
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.geometry_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.geometry_linear
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.geometry_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.geometry_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.geometry_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.tess_control_optimal
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.tess_control_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.tess_control_linear
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.tess_control_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.tess_control_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.tess_control_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.tess_eval_optimal
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.tess_eval_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.tess_eval_linear
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.tess_eval_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.tess_eval_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.tess_eval_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.compute_optimal
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.compute_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.compute_linear
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.compute_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.compute_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.compute_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.vertex_optimal
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.vertex_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.vertex_linear
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.vertex_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.vertex_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.vertex_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.fragment_optimal
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.fragment_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.fragment_linear
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.fragment_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.fragment_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.fragment_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.geometry_optimal
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.geometry_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.geometry_linear
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.geometry_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.geometry_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.geometry_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.tess_control_optimal
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.tess_control_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.tess_control_linear
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.tess_control_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.tess_control_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.tess_control_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.tess_eval_optimal
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.tess_eval_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.tess_eval_linear
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.tess_eval_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_422_unorm_khr.tess_eval_linear_mapped
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+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_linear_cosited_cosited_tiling_linear_disjoint
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_linear_cosited_cosited_tiling_linear_disjoint_swapped_chroma
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_linear_cosited_cosited_tiling_optimal_disjoint
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_linear_cosited_cosited_tiling_optimal_disjoint_swapped_chroma
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_linear_cosited_midpoint_tiling_linear_disjoint
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_linear_cosited_midpoint_tiling_linear_disjoint_swapped_chroma
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_linear_cosited_midpoint_tiling_optimal_disjoint
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_linear_cosited_midpoint_tiling_optimal_disjoint_swapped_chroma
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_linear_midpoint_cosited_tiling_linear_disjoint
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_linear_midpoint_cosited_tiling_linear_disjoint_swapped_chroma
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_linear_midpoint_cosited_tiling_optimal_disjoint
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_linear_midpoint_cosited_tiling_optimal_disjoint_swapped_chroma
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_linear_midpoint_midpoint_tiling_linear_disjoint
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_linear_midpoint_midpoint_tiling_linear_disjoint_swapped_chroma
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_linear_midpoint_midpoint_tiling_optimal_disjoint
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_linear_midpoint_midpoint_tiling_optimal_disjoint_swapped_chroma
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_nearest_tiling_linear_disjoint
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_nearest_tiling_linear_disjoint_swapped_chroma
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_nearest_tiling_optimal_disjoint
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_nearest_tiling_optimal_disjoint_swapped_chroma
},
{
// Plane Type Offs Size Stride
- { 0, unorm, 16, 8, 4 }, // R
+ { 0, unorm, 24, 8, 4 }, // R
{ 0, unorm, 0, 8, 2 }, // G
{ 0, unorm, 8, 8, 4 }, // B
{ 0, 0, 0, 0, 0 }
DE_ASSERT(de::inBounds<deUint32>(format, VK_FORMAT_UNDEFINED+1, VK_CORE_FORMAT_LAST));
+#if (DE_ENDIANNESS != DE_LITTLE_ENDIAN)
+# error "Big-endian is not supported"
+#endif
+
switch (format)
{
+
+ case VK_FORMAT_R4G4B4A4_UNORM_PACK16:
+ {
+ const PlanarFormatDescription desc =
+ {
+ 1, // planes
+ chanR|chanG|chanB|chanA,
+ {
+ // Size WDiv HDiv
+ { 2, 1, 1 },
+ { 0, 0, 0 },
+ { 0, 0, 0 },
+ },
+ {
+ // Plane Type Offs Size Stride
+ { 0, unorm, 12, 4, 2 }, // R
+ { 0, unorm, 8, 4, 2 }, // G
+ { 0, unorm, 4, 4, 2 }, // B
+ { 0, unorm, 0, 4, 2 } // A
+ }
+ };
+ return desc;
+ }
+
+ case VK_FORMAT_B4G4R4A4_UNORM_PACK16:
+ {
+ const PlanarFormatDescription desc =
+ {
+ 1, // planes
+ chanR|chanG|chanB|chanA,
+ {
+ // Size WDiv HDiv
+ { 2, 1, 1 },
+ { 0, 0, 0 },
+ { 0, 0, 0 },
+ },
+ {
+ // Plane Type Offs Size Stride
+ { 0, unorm, 4, 4, 2 }, // R
+ { 0, unorm, 8, 4, 2 }, // G
+ { 0, unorm, 12, 4, 2 }, // B
+ { 0, unorm, 0, 4, 2 } // A
+ }
+ };
+ return desc;
+ }
+
+ case VK_FORMAT_R5G6B5_UNORM_PACK16:
+ {
+ const PlanarFormatDescription desc =
+ {
+ 1, // planes
+ chanR|chanG|chanB,
+ {
+ // Size WDiv HDiv
+ { 2, 1, 1 },
+ { 0, 0, 0 },
+ { 0, 0, 0 },
+ },
+ {
+ // Plane Type Offs Size Stride
+ { 0, unorm, 11, 5, 2 }, // R
+ { 0, unorm, 5, 6, 2 }, // G
+ { 0, unorm, 0, 5, 2 }, // B
+ { 0, 0, 0, 0, 0 } // A
+ }
+ };
+ return desc;
+ }
+
+ case VK_FORMAT_B5G6R5_UNORM_PACK16:
+ {
+ const PlanarFormatDescription desc =
+ {
+ 1, // planes
+ chanR|chanG|chanB,
+ {
+ // Size WDiv HDiv
+ { 2, 1, 1 },
+ { 0, 0, 0 },
+ { 0, 0, 0 },
+ },
+ {
+ // Plane Type Offs Size Stride
+ { 0, unorm, 0, 5, 2 }, // R
+ { 0, unorm, 5, 6, 2 }, // G
+ { 0, unorm, 11, 5, 2 }, // B
+ { 0, 0, 0, 0, 0 } // A
+ }
+ };
+ return desc;
+ }
+
+ case VK_FORMAT_R5G5B5A1_UNORM_PACK16:
+ {
+ const PlanarFormatDescription desc =
+ {
+ 1, // planes
+ chanR|chanG|chanB|chanA,
+ {
+ // Size WDiv HDiv
+ { 2, 1, 1 },
+ { 0, 0, 0 },
+ { 0, 0, 0 },
+ },
+ {
+ // Plane Type Offs Size Stride
+ { 0, unorm, 11, 5, 2 }, // R
+ { 0, unorm, 6, 5, 2 }, // G
+ { 0, unorm, 1, 5, 2 }, // B
+ { 0, unorm, 0, 1, 2 } // A
+ }
+ };
+ return desc;
+ }
+
+ case VK_FORMAT_B5G5R5A1_UNORM_PACK16:
+ {
+ const PlanarFormatDescription desc =
+ {
+ 1, // planes
+ chanR|chanG|chanB|chanA,
+ {
+ // Size WDiv HDiv
+ { 2, 1, 1 },
+ { 0, 0, 0 },
+ { 0, 0, 0 },
+ },
+ {
+ // Plane Type Offs Size Stride
+ { 0, unorm, 1, 5, 2 }, // R
+ { 0, unorm, 6, 5, 2 }, // G
+ { 0, unorm, 11, 5, 2 }, // B
+ { 0, unorm, 0, 1, 2 } // A
+ }
+ };
+ return desc;
+ }
+
+ case VK_FORMAT_A1R5G5B5_UNORM_PACK16:
+ {
+ const PlanarFormatDescription desc =
+ {
+ 1, // planes
+ chanR|chanG|chanB|chanA,
+ {
+ // Size WDiv HDiv
+ { 2, 1, 1 },
+ { 0, 0, 0 },
+ { 0, 0, 0 },
+ },
+ {
+ // Plane Type Offs Size Stride
+ { 0, unorm, 10, 5, 2 }, // R
+ { 0, unorm, 5, 5, 2 }, // G
+ { 0, unorm, 0, 5, 2 }, // B
+ { 0, unorm, 15, 1, 2 } // A
+ }
+ };
+ return desc;
+ }
+
+ case VK_FORMAT_R8G8B8_UNORM:
+ {
+ const PlanarFormatDescription desc =
+ {
+ 1, // planes
+ chanR|chanG|chanB,
+ {
+ // Size WDiv HDiv
+ { 3, 1, 1 },
+ { 0, 0, 0 },
+ { 0, 0, 0 },
+ },
+ {
+ // Plane Type Offs Size Stride
+ { 0, unorm, 0, 8, 3 }, // R
+ { 0, unorm, 8, 8, 3 }, // G
+ { 0, unorm, 16, 8, 3 }, // B
+ { 0, 0, 0, 0, 0 } // A
+ }
+ };
+ return desc;
+ }
+
+ case VK_FORMAT_B8G8R8_UNORM:
+ {
+ const PlanarFormatDescription desc =
+ {
+ 1, // planes
+ chanR|chanG|chanB,
+ {
+ // Size WDiv HDiv
+ { 3, 1, 1 },
+ { 0, 0, 0 },
+ { 0, 0, 0 },
+ },
+ {
+ // Plane Type Offs Size Stride
+ { 0, unorm, 16, 8, 3 }, // R
+ { 0, unorm, 8, 8, 3 }, // G
+ { 0, unorm, 0, 8, 3 }, // B
+ { 0, 0, 0, 0, 0 } // A
+ }
+ };
+ return desc;
+ }
+
case VK_FORMAT_R8G8B8A8_UNORM:
+ case VK_FORMAT_A8B8G8R8_UNORM_PACK32:
{
const PlanarFormatDescription desc =
{
return desc;
}
+ case VK_FORMAT_B8G8R8A8_UNORM:
+ {
+ const PlanarFormatDescription desc =
+ {
+ 1, // planes
+ chanR|chanG|chanB|chanA,
+ {
+ // Size WDiv HDiv
+ { 4, 1, 1 },
+ { 0, 0, 0 },
+ { 0, 0, 0 },
+ },
+ {
+ // Plane Type Offs Size Stride
+ { 0, unorm, 16, 8, 4 }, // R
+ { 0, unorm, 8, 8, 4 }, // G
+ { 0, unorm, 0, 8, 4 }, // B
+ { 0, unorm, 24, 8, 4 } // A
+ }
+ };
+ return desc;
+ }
+
+ case VK_FORMAT_A2R10G10B10_UNORM_PACK32:
+ {
+ const PlanarFormatDescription desc =
+ {
+ 1, // planes
+ chanR|chanG|chanB|chanA,
+ {
+ // Size WDiv HDiv
+ { 4, 1, 1 },
+ { 0, 0, 0 },
+ { 0, 0, 0 },
+ },
+ {
+ // Plane Type Offs Size Stride
+ { 0, unorm, 20, 10, 4 }, // R
+ { 0, unorm, 10, 10, 4 }, // G
+ { 0, unorm, 0, 10, 4 }, // B
+ { 0, unorm, 30, 2, 4 } // A
+ }
+ };
+ return desc;
+ }
+
+ case VK_FORMAT_A2B10G10R10_UNORM_PACK32:
+ {
+ const PlanarFormatDescription desc =
+ {
+ 1, // planes
+ chanR|chanG|chanB|chanA,
+ {
+ // Size WDiv HDiv
+ { 4, 1, 1 },
+ { 0, 0, 0 },
+ { 0, 0, 0 },
+ },
+ {
+ // Plane Type Offs Size Stride
+ { 0, unorm, 0, 10, 4 }, // R
+ { 0, unorm, 10, 10, 4 }, // G
+ { 0, unorm, 20, 10, 4 }, // B
+ { 0, unorm, 30, 2, 4 } // A
+ }
+ };
+ return desc;
+ }
+
+ case VK_FORMAT_R16G16B16_UNORM:
+ {
+ const PlanarFormatDescription desc =
+ {
+ 1, // planes
+ chanR|chanG|chanB,
+ {
+ // Size WDiv HDiv
+ { 6, 1, 1 },
+ { 0, 0, 0 },
+ { 0, 0, 0 },
+ },
+ {
+ // Plane Type Offs Size Stride
+ { 0, unorm, 0, 16, 6 }, // R
+ { 0, unorm, 16, 16, 6 }, // G
+ { 0, unorm, 32, 16, 6 }, // B
+ { 0, 0, 0, 0, 0 } // A
+ }
+ };
+ return desc;
+ }
+
+ case VK_FORMAT_R16G16B16A16_UNORM:
+ {
+ const PlanarFormatDescription desc =
+ {
+ 1, // planes
+ chanR|chanG|chanB|chanA,
+ {
+ // Size WDiv HDiv
+ { 16, 1, 1 },
+ { 0, 0, 0 },
+ { 0, 0, 0 },
+ },
+ {
+ // Plane Type Offs Size Stride
+ { 0, unorm, 0, 16, 8 }, // R
+ { 0, unorm, 16, 16, 8 }, // G
+ { 0, unorm, 32, 16, 8 }, // B
+ { 0, unorm, 48, 16, 8 } // A
+ }
+ };
+ return desc;
+ }
+
default:
TCU_THROW(InternalError, "Not implemented");
}
}
}
+bool isChromaSubsampled (VkFormat format)
+{
+ switch (format)
+ {
+ case VK_FORMAT_G8B8G8R8_422_UNORM_KHR:
+ case VK_FORMAT_B8G8R8G8_422_UNORM_KHR:
+ case VK_FORMAT_G8_B8_R8_3PLANE_420_UNORM_KHR:
+ case VK_FORMAT_G8_B8R8_2PLANE_420_UNORM_KHR:
+ case VK_FORMAT_G8_B8_R8_3PLANE_422_UNORM_KHR:
+ case VK_FORMAT_G8_B8R8_2PLANE_422_UNORM_KHR:
+ case VK_FORMAT_G8_B8_R8_3PLANE_444_UNORM_KHR:
+ case VK_FORMAT_G10X6B10X6G10X6R10X6_422_UNORM_4PACK16_KHR:
+ case VK_FORMAT_B10X6G10X6R10X6G10X6_422_UNORM_4PACK16_KHR:
+ case VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_420_UNORM_3PACK16_KHR:
+ case VK_FORMAT_G10X6_B10X6R10X6_2PLANE_420_UNORM_3PACK16_KHR:
+ case VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_422_UNORM_3PACK16_KHR:
+ case VK_FORMAT_G10X6_B10X6R10X6_2PLANE_422_UNORM_3PACK16_KHR:
+ case VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_444_UNORM_3PACK16_KHR:
+ case VK_FORMAT_G12X4B12X4G12X4R12X4_422_UNORM_4PACK16_KHR:
+ case VK_FORMAT_B12X4G12X4R12X4G12X4_422_UNORM_4PACK16_KHR:
+ case VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_420_UNORM_3PACK16_KHR:
+ case VK_FORMAT_G12X4_B12X4R12X4_2PLANE_420_UNORM_3PACK16_KHR:
+ case VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_422_UNORM_3PACK16_KHR:
+ case VK_FORMAT_G12X4_B12X4R12X4_2PLANE_422_UNORM_3PACK16_KHR:
+ case VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_444_UNORM_3PACK16_KHR:
+ case VK_FORMAT_G16B16G16R16_422_UNORM_KHR:
+ case VK_FORMAT_B16G16R16G16_422_UNORM_KHR:
+ case VK_FORMAT_G16_B16_R16_3PLANE_420_UNORM_KHR:
+ case VK_FORMAT_G16_B16R16_2PLANE_420_UNORM_KHR:
+ case VK_FORMAT_G16_B16_R16_3PLANE_422_UNORM_KHR:
+ case VK_FORMAT_G16_B16R16_2PLANE_422_UNORM_KHR:
+ case VK_FORMAT_G16_B16_R16_3PLANE_444_UNORM_KHR:
+ return true;
+
+ default:
+ return false;
+ }
+}
+
bool isSupportedByFramework (VkFormat format)
{
if (format == VK_FORMAT_UNDEFINED || format > VK_CORE_FORMAT_LAST)
int getPlaneCount (VkFormat format);
VkImageAspectFlagBits getPlaneAspect (deUint32 planeNdx);
deUint32 getAspectPlaneNdx (VkImageAspectFlagBits planeAspect);
+bool isChromaSubsampled (VkFormat format);
tcu::PixelBufferAccess getChannelAccess (const PlanarFormatDescription& formatInfo,
const tcu::UVec2& size,
add_subdirectory(robustness)
add_subdirectory(renderpass)
add_subdirectory(multiview)
+add_subdirectory(ycbcr)
include_directories(
api
robustness
renderpass
multiview
+ ycbcr
)
set(DEQP_VK_SRCS
deqp-vk-robustness
deqp-vk-render-pass
deqp-vk-multiview
+ deqp-vk-ycbcr
)
if (DE_COMPILER_IS_MSC AND (DE_PTR_SIZE EQUAL 4))
"VK_KHR_external_memory_capabilities",
"VK_KHR_external_semaphore_capabilities",
"VK_KHR_external_fence_capabilities",
+ "VK_KHR_sampler_ycbcr_conversion"
};
checkKhrExtensions(results, extensions, DE_LENGTH_OF_ARRAY(s_allowedInstanceKhrExtensions), s_allowedInstanceKhrExtensions);
tcu::TestStatus formatProperties (Context& context, VkFormat format)
{
- TestLog& log = context.getTestContext().getLog();
- const VkFormatProperties properties = getPhysicalDeviceFormatProperties(context.getInstanceInterface(), context.getPhysicalDevice(), format);
- bool allOk = true;
+ TestLog& log = context.getTestContext().getLog();
+ const VkFormatProperties properties = getPhysicalDeviceFormatProperties(context.getInstanceInterface(), context.getPhysicalDevice(), format);
+ bool allOk = true;
+
+ // \todo [2017-05-16 pyry] This should be extended to cover for example COLOR_ATTACHMENT for depth formats etc.
+ // \todo [2017-05-18 pyry] Any other color conversion related features that can't be supported by regular formats?
+ const VkFormatFeatureFlags notAllowedFeatures = VK_FORMAT_FEATURE_DISJOINT_BIT_KHR;
+
const struct
{
{
{ &VkFormatProperties::linearTilingFeatures, "linearTilingFeatures", (VkFormatFeatureFlags)0 },
{ &VkFormatProperties::optimalTilingFeatures, "optimalTilingFeatures", getRequiredOptimalTilingFeatures(format) },
- { &VkFormatProperties::bufferFeatures, "buffeFeatures", getRequiredBufferFeatures(format) }
+ { &VkFormatProperties::bufferFeatures, "bufferFeatures", getRequiredBufferFeatures(format) }
};
log << TestLog::Message << properties << TestLog::EndMessage;
<< TestLog::EndMessage;
allOk = false;
}
+
+ if ((supported & notAllowedFeatures) != 0)
+ {
+ log << TestLog::Message << "ERROR in " << fieldName << ":\n"
+ << " has: " << getFormatFeatureFlagsStr(supported & notAllowedFeatures)
+ << TestLog::EndMessage;
+ allOk = false;
+ }
+ }
+
+ if (allOk)
+ return tcu::TestStatus::pass("Query and validation passed");
+ else
+ return tcu::TestStatus::fail("Required features not supported");
+}
+
+VkPhysicalDeviceSamplerYcbcrConversionFeaturesKHR getPhysicalDeviceSamplerYcbcrConversionFeatures (const InstanceInterface& vk, VkPhysicalDevice physicalDevice)
+{
+ VkPhysicalDeviceFeatures2KHR coreFeatures;
+ VkPhysicalDeviceSamplerYcbcrConversionFeaturesKHR ycbcrFeatures;
+
+ deMemset(&coreFeatures, 0, sizeof(coreFeatures));
+ deMemset(&ycbcrFeatures, 0, sizeof(ycbcrFeatures));
+
+ coreFeatures.sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_FEATURES_2_KHR;
+ coreFeatures.pNext = &ycbcrFeatures;
+ ycbcrFeatures.sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_SAMPLER_YCBCR_CONVERSION_FEATURES_KHR;
+
+ vk.getPhysicalDeviceFeatures2KHR(physicalDevice, &coreFeatures);
+
+ return ycbcrFeatures;
+}
+
+void checkYcbcrConversionSupport (Context& context)
+{
+ if (!de::contains(context.getDeviceExtensions().begin(), context.getDeviceExtensions().end(), "VK_KHR_sampler_ycbcr_conversion"))
+ TCU_THROW(NotSupportedError, "VK_KHR_sampler_ycbcr_conversion is not supported");
+
+ // Hard dependency for ycbcr
+ TCU_CHECK(de::contains(context.getInstanceExtensions().begin(), context.getInstanceExtensions().end(), "VK_KHR_get_physical_device_properties2"));
+
+ {
+ const VkPhysicalDeviceSamplerYcbcrConversionFeaturesKHR ycbcrFeatures = getPhysicalDeviceSamplerYcbcrConversionFeatures(context.getInstanceInterface(), context.getPhysicalDevice());
+
+ if (ycbcrFeatures.samplerYcbcrConversion == VK_FALSE)
+ TCU_THROW(NotSupportedError, "samplerYcbcrConversion is not supported");
+ }
+}
+
+VkFormatFeatureFlags getAllowedYcbcrFormatFeatures (VkFormat format)
+{
+ DE_ASSERT(isYCbCrFormat(format));
+
+ VkFormatFeatureFlags flags = (VkFormatFeatureFlags)0;
+
+ // all formats *may* support these
+ flags |= VK_FORMAT_FEATURE_SAMPLED_IMAGE_BIT;
+ flags |= VK_FORMAT_FEATURE_SAMPLED_IMAGE_FILTER_LINEAR_BIT;
+ flags |= VK_FORMAT_FEATURE_TRANSFER_SRC_BIT_KHR;
+ flags |= VK_FORMAT_FEATURE_TRANSFER_DST_BIT_KHR;
+ flags |= VK_FORMAT_FEATURE_MIDPOINT_CHROMA_SAMPLES_BIT_KHR;
+ flags |= VK_FORMAT_FEATURE_COSITED_CHROMA_SAMPLES_BIT_KHR;
+ flags |= VK_FORMAT_FEATURE_SAMPLED_IMAGE_YCBCR_CONVERSION_LINEAR_FILTER_BIT_KHR;
+ flags |= VK_FORMAT_FEATURE_SAMPLED_IMAGE_YCBCR_CONVERSION_SEPARATE_RECONSTRUCTION_FILTER_BIT_KHR;
+ flags |= VK_FORMAT_FEATURE_SAMPLED_IMAGE_YCBCR_CONVERSION_CHROMA_RECONSTRUCTION_EXPLICIT_BIT_KHR;
+ flags |= VK_FORMAT_FEATURE_SAMPLED_IMAGE_YCBCR_CONVERSION_CHROMA_RECONSTRUCTION_EXPLICIT_FORCEABLE_BIT_KHR;
+ flags |= VK_FORMAT_FEATURE_SAMPLED_IMAGE_FILTER_MINMAX_BIT_KHR;
+
+ // multi-plane formats *may* support DISJOINT_BIT_KHR
+ if (getPlaneCount(format) >= 2)
+ flags |= VK_FORMAT_FEATURE_DISJOINT_BIT_KHR;
+
+ if (isChromaSubsampled(format))
+ flags |= VK_FORMAT_FEATURE_COSITED_CHROMA_SAMPLES_BIT_KHR;
+
+ return flags;
+}
+
+tcu::TestStatus ycbcrFormatProperties (Context& context, VkFormat format)
+{
+ DE_ASSERT(isYCbCrFormat(format));
+ checkYcbcrConversionSupport(context);
+
+ TestLog& log = context.getTestContext().getLog();
+ const VkFormatProperties properties = getPhysicalDeviceFormatProperties(context.getInstanceInterface(), context.getPhysicalDevice(), format);
+ bool allOk = true;
+ const VkFormatFeatureFlags allowedImageFeatures = getAllowedYcbcrFormatFeatures(format);
+
+ const struct
+ {
+ VkFormatFeatureFlags VkFormatProperties::* field;
+ const char* fieldName;
+ bool requiredFeatures;
+ VkFormatFeatureFlags allowedFeatures;
+ } fields[] =
+ {
+ { &VkFormatProperties::linearTilingFeatures, "linearTilingFeatures", false, allowedImageFeatures },
+ { &VkFormatProperties::optimalTilingFeatures, "optimalTilingFeatures", true, allowedImageFeatures },
+ { &VkFormatProperties::bufferFeatures, "bufferFeatures", false, (VkFormatFeatureFlags)0 }
+ };
+ static const VkFormat s_requiredBaseFormats[] =
+ {
+ VK_FORMAT_G8_B8R8_2PLANE_420_UNORM_KHR,
+ VK_FORMAT_G8_B8_R8_3PLANE_420_UNORM_KHR
+ };
+ const bool isRequiredBaseFormat (de::contains(DE_ARRAY_BEGIN(s_requiredBaseFormats), DE_ARRAY_END(s_requiredBaseFormats), format));
+
+ log << TestLog::Message << properties << TestLog::EndMessage;
+
+ for (int fieldNdx = 0; fieldNdx < DE_LENGTH_OF_ARRAY(fields); fieldNdx++)
+ {
+ const char* const fieldName = fields[fieldNdx].fieldName;
+ const VkFormatFeatureFlags supported = properties.*fields[fieldNdx].field;
+ const VkFormatFeatureFlags allowed = fields[fieldNdx].allowedFeatures;
+
+ if (isRequiredBaseFormat && fields[fieldNdx].requiredFeatures)
+ {
+ const VkFormatFeatureFlags required = VK_FORMAT_FEATURE_SAMPLED_IMAGE_BIT
+ | VK_FORMAT_FEATURE_TRANSFER_SRC_BIT_KHR
+ | VK_FORMAT_FEATURE_TRANSFER_DST_BIT_KHR
+ | VK_FORMAT_FEATURE_SAMPLED_IMAGE_YCBCR_CONVERSION_LINEAR_FILTER_BIT_KHR;
+
+ if ((supported & required) != required)
+ {
+ log << TestLog::Message << "ERROR in " << fieldName << ":\n"
+ << " required: " << getFormatFeatureFlagsStr(required) << "\n "
+ << " missing: " << getFormatFeatureFlagsStr(~supported & required)
+ << TestLog::EndMessage;
+ allOk = false;
+ }
+
+ if ((supported & (VK_FORMAT_FEATURE_MIDPOINT_CHROMA_SAMPLES_BIT_KHR | VK_FORMAT_FEATURE_COSITED_CHROMA_SAMPLES_BIT_KHR)) == 0)
+ {
+ log << TestLog::Message << "ERROR in " << fieldName << ":\n"
+ << " Either VK_FORMAT_FEATURE_MIDPOINT_CHROMA_SAMPLES_BIT_KHR or VK_FORMAT_FEATURE_COSITED_CHROMA_SAMPLES_BIT_KHR required"
+ << TestLog::EndMessage;
+ allOk = false;
+ }
+ }
+
+ if ((supported & ~allowed) != 0)
+ {
+ log << TestLog::Message << "ERROR in " << fieldName << ":\n"
+ << " has: " << getFormatFeatureFlagsStr(supported & ~allowed)
+ << TestLog::EndMessage;
+ allOk = false;
+ }
}
if (allOk)
{
DE_STATIC_ASSERT(VK_FORMAT_UNDEFINED == 0);
- for (deUint32 formatNdx = VK_FORMAT_UNDEFINED+1; formatNdx < VK_CORE_FORMAT_LAST; ++formatNdx)
+ static const struct
{
- const VkFormat format = (VkFormat)formatNdx;
- const char* const enumName = getFormatName(format);
- const string caseName = de::toLower(string(enumName).substr(10));
+ VkFormat begin;
+ VkFormat end;
+ FunctionInstance1<VkFormat>::Function testFunction;
+ } s_formatRanges[] =
+ {
+ // core formats
+ { (VkFormat)(VK_FORMAT_UNDEFINED+1), VK_CORE_FORMAT_LAST, formatProperties },
+
+ // YCbCr formats
+ { VK_FORMAT_G8B8G8R8_422_UNORM_KHR, (VkFormat)(VK_FORMAT_G16_B16_R16_3PLANE_444_UNORM_KHR+1), ycbcrFormatProperties },
+ };
- addFunctionCase(testGroup, caseName, enumName, formatProperties, format);
+ for (int rangeNdx = 0; rangeNdx < DE_LENGTH_OF_ARRAY(s_formatRanges); ++rangeNdx)
+ {
+ const VkFormat rangeBegin = s_formatRanges[rangeNdx].begin;
+ const VkFormat rangeEnd = s_formatRanges[rangeNdx].end;
+ const FunctionInstance1<VkFormat>::Function testFunction = s_formatRanges[rangeNdx].testFunction;
+
+ for (VkFormat format = rangeBegin; format != rangeEnd; format = (VkFormat)(format+1))
+ {
+ const char* const enumName = getFormatName(format);
+ const string caseName = de::toLower(string(enumName).substr(10));
+
+ addFunctionCase(testGroup, caseName, enumName, testFunction, format);
+ }
}
addFunctionCase(testGroup, "depth_stencil", "", testDepthStencilSupported);
infoTests->addChild(createTestGroup(testCtx, "format_properties", "VkGetPhysicalDeviceFormatProperties() Tests", createFormatTests));
infoTests->addChild(createTestGroup(testCtx, "image_format_properties", "VkGetPhysicalDeviceImageFormatProperties() Tests", createImageFormatTests, imageFormatProperties));
+ // \todo [2017-05-16 pyry] Extend image_format_properties to cover ycbcr formats
{
de::MovePtr<tcu::TestCaseGroup> extendedPropertiesTests (new tcu::TestCaseGroup(testCtx, "get_physical_device_properties2", "VK_KHR_get_physical_device_properties2"));
infoTests->addChild(createTestGroup(testCtx, "image_format_properties2", "VkGetPhysicalDeviceImageFormatProperties2KHR() Tests", createImageFormatTests, imageFormatProperties2));
infoTests->addChild(createTestGroup(testCtx, "sparse_image_format_properties2", "VkGetPhysicalDeviceSparseImageFormatProperties2KHR() Tests", createImageFormatTests, sparseImageFormatProperties2));
+ // \todo [2017-05-16 pyry] Extend image_format_properties2 to cover ycbcr formats
{
de::MovePtr<tcu::TestCaseGroup> androidTests (new tcu::TestCaseGroup(testCtx, "android", "Android CTS Tests"));
break;
}
- std::vector<Shader> shaders;
- shaders.push_back(Shader(VK_SHADER_STAGE_VERTEX_BIT, context.getBinaryCollection().get("vert")));
- shaders.push_back(Shader(VK_SHADER_STAGE_FRAGMENT_BIT, context.getBinaryCollection().get("frag")));
+ std::vector<VulkanShader> shaders;
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_VERTEX_BIT, context.getBinaryCollection().get("vert")));
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_FRAGMENT_BIT, context.getBinaryCollection().get("frag")));
tcu::TestLog& log = context.getTestContext().getLog();
int numPassed = 0;
//! Primitives fully outside the clip volume.
tcu::TestStatus testPrimitivesOutside (Context& context, const VkPrimitiveTopology topology)
{
- std::vector<Shader> shaders;
- shaders.push_back(Shader(VK_SHADER_STAGE_VERTEX_BIT, context.getBinaryCollection().get("vert")));
- shaders.push_back(Shader(VK_SHADER_STAGE_FRAGMENT_BIT, context.getBinaryCollection().get("frag")));
+ std::vector<VulkanShader> shaders;
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_VERTEX_BIT, context.getBinaryCollection().get("vert")));
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_FRAGMENT_BIT, context.getBinaryCollection().get("frag")));
tcu::TestLog& log = context.getTestContext().getLog();
int numPassed = 0;
{
requireFeatures(context.getInstanceInterface(), context.getPhysicalDevice(), FEATURE_DEPTH_CLAMP);
- std::vector<Shader> shaders;
- shaders.push_back(Shader(VK_SHADER_STAGE_VERTEX_BIT, context.getBinaryCollection().get("vert")));
- shaders.push_back(Shader(VK_SHADER_STAGE_FRAGMENT_BIT, context.getBinaryCollection().get("frag")));
+ std::vector<VulkanShader> shaders;
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_VERTEX_BIT, context.getBinaryCollection().get("vert")));
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_FRAGMENT_BIT, context.getBinaryCollection().get("frag")));
const int numCases = 4;
const IVec2 regionSize = IVec2(RENDER_SIZE/2, RENDER_SIZE); //! size of the clamped region
return tcu::TestStatus::pass("OK");
}
- std::vector<Shader> shaders;
- shaders.push_back(Shader(VK_SHADER_STAGE_VERTEX_BIT, context.getBinaryCollection().get("vert")));
- shaders.push_back(Shader(VK_SHADER_STAGE_FRAGMENT_BIT, context.getBinaryCollection().get("frag")));
+ std::vector<VulkanShader> shaders;
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_VERTEX_BIT, context.getBinaryCollection().get("vert")));
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_FRAGMENT_BIT, context.getBinaryCollection().get("frag")));
std::vector<Vec4> vertices;
{
{
requireFeatures(context.getInstanceInterface(), context.getPhysicalDevice(), FEATURE_WIDE_LINES);
- std::vector<Shader> shaders;
- shaders.push_back(Shader(VK_SHADER_STAGE_VERTEX_BIT, context.getBinaryCollection().get("vert")));
- shaders.push_back(Shader(VK_SHADER_STAGE_FRAGMENT_BIT, context.getBinaryCollection().get("frag")));
+ std::vector<VulkanShader> shaders;
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_VERTEX_BIT, context.getBinaryCollection().get("vert")));
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_FRAGMENT_BIT, context.getBinaryCollection().get("frag")));
const float delta = 0.1f; // much smaller than the line width
return tcu::TestStatus::fail("maxCombinedClipAndCullDistances smaller than the minimum required by the spec");
}
- std::vector<Shader> shaders;
- shaders.push_back(Shader(VK_SHADER_STAGE_VERTEX_BIT, context.getBinaryCollection().get("vert")));
- shaders.push_back(Shader(VK_SHADER_STAGE_FRAGMENT_BIT, context.getBinaryCollection().get("frag")));
+ std::vector<VulkanShader> shaders;
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_VERTEX_BIT, context.getBinaryCollection().get("vert")));
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_FRAGMENT_BIT, context.getBinaryCollection().get("frag")));
if (caseDef.enableTessellation)
{
- shaders.push_back(Shader(VK_SHADER_STAGE_TESSELLATION_CONTROL_BIT, context.getBinaryCollection().get("tesc")));
- shaders.push_back(Shader(VK_SHADER_STAGE_TESSELLATION_EVALUATION_BIT, context.getBinaryCollection().get("tese")));
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_TESSELLATION_CONTROL_BIT, context.getBinaryCollection().get("tesc")));
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_TESSELLATION_EVALUATION_BIT, context.getBinaryCollection().get("tese")));
}
if (caseDef.enableGeometry)
- shaders.push_back(Shader(VK_SHADER_STAGE_GEOMETRY_BIT, context.getBinaryCollection().get("geom")));
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_GEOMETRY_BIT, context.getBinaryCollection().get("geom")));
const int numBars = MAX_COMBINED_CLIP_AND_CULL_DISTANCES;
requireFeatures(vki, physDevice, FEATURE_SHADER_CLIP_DISTANCE);
}
- std::vector<Shader> shaders;
- shaders.push_back(Shader(VK_SHADER_STAGE_VERTEX_BIT, context.getBinaryCollection().get("vert")));
- shaders.push_back(Shader(VK_SHADER_STAGE_FRAGMENT_BIT, context.getBinaryCollection().get("frag")));
+ std::vector<VulkanShader> shaders;
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_VERTEX_BIT, context.getBinaryCollection().get("vert")));
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_FRAGMENT_BIT, context.getBinaryCollection().get("frag")));
std::vector<Vec4> vertices;
{
#include "vkQueryUtil.hpp"
#include "vkStrUtil.hpp"
#include "vkTypeUtil.hpp"
+#include "vkImageUtil.hpp"
#include "deUniquePtr.hpp"
#include "deStringUtil.hpp"
{
using namespace vk;
using de::MovePtr;
+using tcu::TestLog;
Move<VkBuffer> makeBuffer (const DeviceInterface& vk, const VkDevice device, const VkDeviceSize size, const VkBufferCreateFlags flags, const VkBufferUsageFlags usage)
{
struct ImageTestParams
{
+ ImageTestParams (VkImageCreateFlags flags_,
+ VkImageTiling tiling_,
+ bool transient_)
+ : flags (flags_)
+ , tiling (tiling_)
+ , transient (transient_)
+ {
+ }
+
+ ImageTestParams (void)
+ {
+ }
+
VkImageCreateFlags flags;
VkImageTiling tiling;
bool transient;
const VkPhysicalDeviceMemoryProperties& deviceMemoryProperties);
private:
- virtual bool isUsageMatchesFeatures (const VkImageUsageFlags usage,
- const VkFormatFeatureFlags featureFlags);
-
virtual bool isImageSupported (const InstanceInterface& vki,
const VkPhysicalDevice physDevice,
const VkImageCreateInfo& info);
- virtual VkExtent3D makeExtentForImage (const VkImageType imageType);
-
virtual bool isFormatMatchingAspect (const VkFormat format,
const VkImageAspectFlags aspect);
-
- virtual std::string getImageInfoString (const VkImageCreateInfo& imageInfo);
-
protected:
VkImageCreateInfo m_currentTestImageInfo;
VkMemoryRequirements m_currentTestRequirements;
}
}
-bool ImageMemoryRequirementsOriginal::isUsageMatchesFeatures (const VkImageUsageFlags usage, const VkFormatFeatureFlags featureFlags)
+bool isUsageMatchesFeatures (const VkImageUsageFlags usage, const VkFormatFeatureFlags featureFlags)
{
if ((usage & VK_IMAGE_USAGE_SAMPLED_BIT) && (featureFlags & VK_FORMAT_FEATURE_SAMPLED_IMAGE_BIT))
return true;
{
DE_ASSERT(info.extent.width >= 1u && info.extent.height >= 1u && info.extent.depth >= 1u);
+ if (isYCbCrFormat(info.format)
+ && (info.imageType != VK_IMAGE_TYPE_2D
+ || info.mipLevels != 1
+ || info.arrayLayers != 1
+ || info.samples != VK_SAMPLE_COUNT_1_BIT))
+ {
+ return false;
+ }
+
if (info.imageType == VK_IMAGE_TYPE_1D)
{
DE_ASSERT(info.extent.height == 1u && info.extent.depth == 1u);
return result == VK_SUCCESS;
}
-VkExtent3D ImageMemoryRequirementsOriginal::makeExtentForImage (const VkImageType imageType)
+VkExtent3D makeExtentForImage (const VkImageType imageType)
{
VkExtent3D extent = { 64u, 64u, 4u };
return (aspect == (VK_IMAGE_ASPECT_DEPTH_BIT | VK_IMAGE_ASPECT_STENCIL_BIT)) == isDepthStencilFormat;
}
-std::string ImageMemoryRequirementsOriginal::getImageInfoString (const VkImageCreateInfo& imageInfo)
+std::string getImageInfoString (const VkImageCreateInfo& imageInfo)
{
std::ostringstream str;
tcu::TestStatus ImageMemoryRequirementsOriginal::execTest (Context& context, const ImageTestParams params)
{
+ const VkFormat formats[] =
+ {
+ VK_FORMAT_R4G4_UNORM_PACK8,
+ VK_FORMAT_R4G4B4A4_UNORM_PACK16,
+ VK_FORMAT_B4G4R4A4_UNORM_PACK16,
+ VK_FORMAT_R5G6B5_UNORM_PACK16,
+ VK_FORMAT_B5G6R5_UNORM_PACK16,
+ VK_FORMAT_R5G5B5A1_UNORM_PACK16,
+ VK_FORMAT_B5G5R5A1_UNORM_PACK16,
+ VK_FORMAT_A1R5G5B5_UNORM_PACK16,
+ VK_FORMAT_R8_UNORM,
+ VK_FORMAT_R8_SNORM,
+ VK_FORMAT_R8_USCALED,
+ VK_FORMAT_R8_SSCALED,
+ VK_FORMAT_R8_UINT,
+ VK_FORMAT_R8_SINT,
+ VK_FORMAT_R8_SRGB,
+ VK_FORMAT_R8G8_UNORM,
+ VK_FORMAT_R8G8_SNORM,
+ VK_FORMAT_R8G8_USCALED,
+ VK_FORMAT_R8G8_SSCALED,
+ VK_FORMAT_R8G8_UINT,
+ VK_FORMAT_R8G8_SINT,
+ VK_FORMAT_R8G8_SRGB,
+ VK_FORMAT_R8G8B8_UNORM,
+ VK_FORMAT_R8G8B8_SNORM,
+ VK_FORMAT_R8G8B8_USCALED,
+ VK_FORMAT_R8G8B8_SSCALED,
+ VK_FORMAT_R8G8B8_UINT,
+ VK_FORMAT_R8G8B8_SINT,
+ VK_FORMAT_R8G8B8_SRGB,
+ VK_FORMAT_B8G8R8_UNORM,
+ VK_FORMAT_B8G8R8_SNORM,
+ VK_FORMAT_B8G8R8_USCALED,
+ VK_FORMAT_B8G8R8_SSCALED,
+ VK_FORMAT_B8G8R8_UINT,
+ VK_FORMAT_B8G8R8_SINT,
+ VK_FORMAT_B8G8R8_SRGB,
+ VK_FORMAT_R8G8B8A8_UNORM,
+ VK_FORMAT_R8G8B8A8_SNORM,
+ VK_FORMAT_R8G8B8A8_USCALED,
+ VK_FORMAT_R8G8B8A8_SSCALED,
+ VK_FORMAT_R8G8B8A8_UINT,
+ VK_FORMAT_R8G8B8A8_SINT,
+ VK_FORMAT_R8G8B8A8_SRGB,
+ VK_FORMAT_B8G8R8A8_UNORM,
+ VK_FORMAT_B8G8R8A8_SNORM,
+ VK_FORMAT_B8G8R8A8_USCALED,
+ VK_FORMAT_B8G8R8A8_SSCALED,
+ VK_FORMAT_B8G8R8A8_UINT,
+ VK_FORMAT_B8G8R8A8_SINT,
+ VK_FORMAT_B8G8R8A8_SRGB,
+ VK_FORMAT_A8B8G8R8_UNORM_PACK32,
+ VK_FORMAT_A8B8G8R8_SNORM_PACK32,
+ VK_FORMAT_A8B8G8R8_USCALED_PACK32,
+ VK_FORMAT_A8B8G8R8_SSCALED_PACK32,
+ VK_FORMAT_A8B8G8R8_UINT_PACK32,
+ VK_FORMAT_A8B8G8R8_SINT_PACK32,
+ VK_FORMAT_A8B8G8R8_SRGB_PACK32,
+ VK_FORMAT_A2R10G10B10_UNORM_PACK32,
+ VK_FORMAT_A2R10G10B10_SNORM_PACK32,
+ VK_FORMAT_A2R10G10B10_USCALED_PACK32,
+ VK_FORMAT_A2R10G10B10_SSCALED_PACK32,
+ VK_FORMAT_A2R10G10B10_UINT_PACK32,
+ VK_FORMAT_A2R10G10B10_SINT_PACK32,
+ VK_FORMAT_A2B10G10R10_UNORM_PACK32,
+ VK_FORMAT_A2B10G10R10_SNORM_PACK32,
+ VK_FORMAT_A2B10G10R10_USCALED_PACK32,
+ VK_FORMAT_A2B10G10R10_SSCALED_PACK32,
+ VK_FORMAT_A2B10G10R10_UINT_PACK32,
+ VK_FORMAT_A2B10G10R10_SINT_PACK32,
+ VK_FORMAT_R16_UNORM,
+ VK_FORMAT_R16_SNORM,
+ VK_FORMAT_R16_USCALED,
+ VK_FORMAT_R16_SSCALED,
+ VK_FORMAT_R16_UINT,
+ VK_FORMAT_R16_SINT,
+ VK_FORMAT_R16_SFLOAT,
+ VK_FORMAT_R16G16_UNORM,
+ VK_FORMAT_R16G16_SNORM,
+ VK_FORMAT_R16G16_USCALED,
+ VK_FORMAT_R16G16_SSCALED,
+ VK_FORMAT_R16G16_UINT,
+ VK_FORMAT_R16G16_SINT,
+ VK_FORMAT_R16G16_SFLOAT,
+ VK_FORMAT_R16G16B16_UNORM,
+ VK_FORMAT_R16G16B16_SNORM,
+ VK_FORMAT_R16G16B16_USCALED,
+ VK_FORMAT_R16G16B16_SSCALED,
+ VK_FORMAT_R16G16B16_UINT,
+ VK_FORMAT_R16G16B16_SINT,
+ VK_FORMAT_R16G16B16_SFLOAT,
+ VK_FORMAT_R16G16B16A16_UNORM,
+ VK_FORMAT_R16G16B16A16_SNORM,
+ VK_FORMAT_R16G16B16A16_USCALED,
+ VK_FORMAT_R16G16B16A16_SSCALED,
+ VK_FORMAT_R16G16B16A16_UINT,
+ VK_FORMAT_R16G16B16A16_SINT,
+ VK_FORMAT_R16G16B16A16_SFLOAT,
+ VK_FORMAT_R32_UINT,
+ VK_FORMAT_R32_SINT,
+ VK_FORMAT_R32_SFLOAT,
+ VK_FORMAT_R32G32_UINT,
+ VK_FORMAT_R32G32_SINT,
+ VK_FORMAT_R32G32_SFLOAT,
+ VK_FORMAT_R32G32B32_UINT,
+ VK_FORMAT_R32G32B32_SINT,
+ VK_FORMAT_R32G32B32_SFLOAT,
+ VK_FORMAT_R32G32B32A32_UINT,
+ VK_FORMAT_R32G32B32A32_SINT,
+ VK_FORMAT_R32G32B32A32_SFLOAT,
+ VK_FORMAT_R64_UINT,
+ VK_FORMAT_R64_SINT,
+ VK_FORMAT_R64_SFLOAT,
+ VK_FORMAT_R64G64_UINT,
+ VK_FORMAT_R64G64_SINT,
+ VK_FORMAT_R64G64_SFLOAT,
+ VK_FORMAT_R64G64B64_UINT,
+ VK_FORMAT_R64G64B64_SINT,
+ VK_FORMAT_R64G64B64_SFLOAT,
+ VK_FORMAT_R64G64B64A64_UINT,
+ VK_FORMAT_R64G64B64A64_SINT,
+ VK_FORMAT_R64G64B64A64_SFLOAT,
+ VK_FORMAT_B10G11R11_UFLOAT_PACK32,
+ VK_FORMAT_E5B9G9R9_UFLOAT_PACK32,
+ VK_FORMAT_D16_UNORM,
+ VK_FORMAT_X8_D24_UNORM_PACK32,
+ VK_FORMAT_D32_SFLOAT,
+ VK_FORMAT_S8_UINT,
+ VK_FORMAT_D16_UNORM_S8_UINT,
+ VK_FORMAT_D24_UNORM_S8_UINT,
+ VK_FORMAT_D32_SFLOAT_S8_UINT,
+ VK_FORMAT_BC1_RGB_UNORM_BLOCK,
+ VK_FORMAT_BC1_RGB_SRGB_BLOCK,
+ VK_FORMAT_BC1_RGBA_UNORM_BLOCK,
+ VK_FORMAT_BC1_RGBA_SRGB_BLOCK,
+ VK_FORMAT_BC2_UNORM_BLOCK,
+ VK_FORMAT_BC2_SRGB_BLOCK,
+ VK_FORMAT_BC3_UNORM_BLOCK,
+ VK_FORMAT_BC3_SRGB_BLOCK,
+ VK_FORMAT_BC4_UNORM_BLOCK,
+ VK_FORMAT_BC4_SNORM_BLOCK,
+ VK_FORMAT_BC5_UNORM_BLOCK,
+ VK_FORMAT_BC5_SNORM_BLOCK,
+ VK_FORMAT_BC6H_UFLOAT_BLOCK,
+ VK_FORMAT_BC6H_SFLOAT_BLOCK,
+ VK_FORMAT_BC7_UNORM_BLOCK,
+ VK_FORMAT_BC7_SRGB_BLOCK,
+ VK_FORMAT_ETC2_R8G8B8_UNORM_BLOCK,
+ VK_FORMAT_ETC2_R8G8B8_SRGB_BLOCK,
+ VK_FORMAT_ETC2_R8G8B8A1_UNORM_BLOCK,
+ VK_FORMAT_ETC2_R8G8B8A1_SRGB_BLOCK,
+ VK_FORMAT_ETC2_R8G8B8A8_UNORM_BLOCK,
+ VK_FORMAT_ETC2_R8G8B8A8_SRGB_BLOCK,
+ VK_FORMAT_EAC_R11_UNORM_BLOCK,
+ VK_FORMAT_EAC_R11_SNORM_BLOCK,
+ VK_FORMAT_EAC_R11G11_UNORM_BLOCK,
+ VK_FORMAT_EAC_R11G11_SNORM_BLOCK,
+ VK_FORMAT_ASTC_4x4_UNORM_BLOCK,
+ VK_FORMAT_ASTC_4x4_SRGB_BLOCK,
+ VK_FORMAT_ASTC_5x4_UNORM_BLOCK,
+ VK_FORMAT_ASTC_5x4_SRGB_BLOCK,
+ VK_FORMAT_ASTC_5x5_UNORM_BLOCK,
+ VK_FORMAT_ASTC_5x5_SRGB_BLOCK,
+ VK_FORMAT_ASTC_6x5_UNORM_BLOCK,
+ VK_FORMAT_ASTC_6x5_SRGB_BLOCK,
+ VK_FORMAT_ASTC_6x6_UNORM_BLOCK,
+ VK_FORMAT_ASTC_6x6_SRGB_BLOCK,
+ VK_FORMAT_ASTC_8x5_UNORM_BLOCK,
+ VK_FORMAT_ASTC_8x5_SRGB_BLOCK,
+ VK_FORMAT_ASTC_8x6_UNORM_BLOCK,
+ VK_FORMAT_ASTC_8x6_SRGB_BLOCK,
+ VK_FORMAT_ASTC_8x8_UNORM_BLOCK,
+ VK_FORMAT_ASTC_8x8_SRGB_BLOCK,
+ VK_FORMAT_ASTC_10x5_UNORM_BLOCK,
+ VK_FORMAT_ASTC_10x5_SRGB_BLOCK,
+ VK_FORMAT_ASTC_10x6_UNORM_BLOCK,
+ VK_FORMAT_ASTC_10x6_SRGB_BLOCK,
+ VK_FORMAT_ASTC_10x8_UNORM_BLOCK,
+ VK_FORMAT_ASTC_10x8_SRGB_BLOCK,
+ VK_FORMAT_ASTC_10x10_UNORM_BLOCK,
+ VK_FORMAT_ASTC_10x10_SRGB_BLOCK,
+ VK_FORMAT_ASTC_12x10_UNORM_BLOCK,
+ VK_FORMAT_ASTC_12x10_SRGB_BLOCK,
+ VK_FORMAT_ASTC_12x12_UNORM_BLOCK,
+ VK_FORMAT_ASTC_12x12_SRGB_BLOCK,
+ VK_FORMAT_G8B8G8R8_422_UNORM_KHR,
+ VK_FORMAT_B8G8R8G8_422_UNORM_KHR,
+ VK_FORMAT_G8_B8_R8_3PLANE_420_UNORM_KHR,
+ VK_FORMAT_G8_B8R8_2PLANE_420_UNORM_KHR,
+ VK_FORMAT_G8_B8_R8_3PLANE_422_UNORM_KHR,
+ VK_FORMAT_G8_B8R8_2PLANE_422_UNORM_KHR,
+ VK_FORMAT_G8_B8_R8_3PLANE_444_UNORM_KHR,
+ VK_FORMAT_R10X6_UNORM_PACK16_KHR,
+ VK_FORMAT_R10X6G10X6_UNORM_2PACK16_KHR,
+ VK_FORMAT_R10X6G10X6B10X6A10X6_UNORM_4PACK16_KHR,
+ VK_FORMAT_G10X6B10X6G10X6R10X6_422_UNORM_4PACK16_KHR,
+ VK_FORMAT_B10X6G10X6R10X6G10X6_422_UNORM_4PACK16_KHR,
+ VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_420_UNORM_3PACK16_KHR,
+ VK_FORMAT_G10X6_B10X6R10X6_2PLANE_420_UNORM_3PACK16_KHR,
+ VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_422_UNORM_3PACK16_KHR,
+ VK_FORMAT_G10X6_B10X6R10X6_2PLANE_422_UNORM_3PACK16_KHR,
+ VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_444_UNORM_3PACK16_KHR,
+ VK_FORMAT_R12X4_UNORM_PACK16_KHR,
+ VK_FORMAT_R12X4G12X4_UNORM_2PACK16_KHR,
+ VK_FORMAT_R12X4G12X4B12X4A12X4_UNORM_4PACK16_KHR,
+ VK_FORMAT_G12X4B12X4G12X4R12X4_422_UNORM_4PACK16_KHR,
+ VK_FORMAT_B12X4G12X4R12X4G12X4_422_UNORM_4PACK16_KHR,
+ VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_420_UNORM_3PACK16_KHR,
+ VK_FORMAT_G12X4_B12X4R12X4_2PLANE_420_UNORM_3PACK16_KHR,
+ VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_422_UNORM_3PACK16_KHR,
+ VK_FORMAT_G12X4_B12X4R12X4_2PLANE_422_UNORM_3PACK16_KHR,
+ VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_444_UNORM_3PACK16_KHR,
+ VK_FORMAT_G16B16G16R16_422_UNORM_KHR,
+ VK_FORMAT_B16G16R16G16_422_UNORM_KHR,
+ VK_FORMAT_G16_B16_R16_3PLANE_420_UNORM_KHR,
+ VK_FORMAT_G16_B16R16_2PLANE_420_UNORM_KHR,
+ VK_FORMAT_G16_B16_R16_3PLANE_422_UNORM_KHR,
+ VK_FORMAT_G16_B16R16_2PLANE_422_UNORM_KHR,
+ VK_FORMAT_G16_B16_R16_3PLANE_444_UNORM_KHR
+ };
const DeviceInterface& vk = context.getDeviceInterface();
const InstanceInterface& vki = context.getInstanceInterface();
const VkDevice device = context.getDevice();
const VkImageAspectFlags aspect = allAspects[loopAspectNdx];
deUint32 previousMemoryTypeBits = notInitializedBits;
- for (VkFormat loopFormat = VK_FORMAT_R4G4_UNORM_PACK8; loopFormat <= VK_FORMAT_ASTC_12x12_SRGB_BLOCK; loopFormat = nextEnum(loopFormat))
- if (isFormatMatchingAspect(loopFormat, aspect))
+ for (size_t formatNdx = 0; formatNdx < DE_LENGTH_OF_ARRAY(formats); formatNdx++)
{
- // memoryTypeBits may differ between depth/stencil formats
- if (aspect == depthStencilAspect)
- previousMemoryTypeBits = notInitializedBits;
-
- for (VkImageType loopImageType = VK_IMAGE_TYPE_1D; loopImageType != VK_IMAGE_TYPE_LAST; loopImageType = nextEnum(loopImageType))
- for (VkImageCreateFlags loopCreateFlags = (VkImageCreateFlags)0; loopCreateFlags <= VK_IMAGE_CREATE_CUBE_COMPATIBLE_BIT; loopCreateFlags = nextFlagExcluding(loopCreateFlags, sparseFlags))
- for (VkImageUsageFlags loopUsageFlags = VK_IMAGE_USAGE_TRANSFER_SRC_BIT; loopUsageFlags <= VK_IMAGE_USAGE_INPUT_ATTACHMENT_BIT; loopUsageFlags = nextFlagExcluding(loopUsageFlags, transientFlags))
- for (VkSampleCountFlagBits loopSampleCount = VK_SAMPLE_COUNT_1_BIT; loopSampleCount <= VK_SAMPLE_COUNT_16_BIT; loopSampleCount = nextFlag(loopSampleCount))
+ const VkFormat format = formats[formatNdx];
+
+ if (isFormatMatchingAspect(format, aspect))
{
- const VkImageCreateFlags actualCreateFlags = loopCreateFlags | params.flags;
- const VkImageUsageFlags actualUsageFlags = loopUsageFlags | (params.transient ? VK_IMAGE_USAGE_TRANSIENT_ATTACHMENT_BIT : (VkImageUsageFlagBits)0);
- const bool isCube = (actualCreateFlags & VK_IMAGE_CREATE_CUBE_COMPATIBLE_BIT) != 0u;
- const VkImageCreateInfo imageInfo =
+ // memoryTypeBits may differ between depth/stencil formats
+ if (aspect == depthStencilAspect)
+ previousMemoryTypeBits = notInitializedBits;
+
+ for (VkImageType loopImageType = VK_IMAGE_TYPE_1D; loopImageType != VK_IMAGE_TYPE_LAST; loopImageType = nextEnum(loopImageType))
+ for (VkImageCreateFlags loopCreateFlags = (VkImageCreateFlags)0; loopCreateFlags <= VK_IMAGE_CREATE_CUBE_COMPATIBLE_BIT; loopCreateFlags = nextFlagExcluding(loopCreateFlags, sparseFlags))
+ for (VkImageUsageFlags loopUsageFlags = VK_IMAGE_USAGE_TRANSFER_SRC_BIT; loopUsageFlags <= VK_IMAGE_USAGE_INPUT_ATTACHMENT_BIT; loopUsageFlags = nextFlagExcluding(loopUsageFlags, transientFlags))
+ for (VkSampleCountFlagBits loopSampleCount = VK_SAMPLE_COUNT_1_BIT; loopSampleCount <= VK_SAMPLE_COUNT_16_BIT; loopSampleCount = nextFlag(loopSampleCount))
{
- VK_STRUCTURE_TYPE_IMAGE_CREATE_INFO, // VkStructureType sType;
- DE_NULL, // const void* pNext;
- actualCreateFlags, // VkImageCreateFlags flags;
- loopImageType, // VkImageType imageType;
- loopFormat, // VkFormat format;
- makeExtentForImage(loopImageType), // VkExtent3D extent;
- 1u, // uint32_t mipLevels;
- (isCube ? 6u : 1u), // uint32_t arrayLayers;
- loopSampleCount, // VkSampleCountFlagBits samples;
- params.tiling, // VkImageTiling tiling;
- actualUsageFlags, // VkImageUsageFlags usage;
- VK_SHARING_MODE_EXCLUSIVE, // VkSharingMode sharingMode;
- 0u, // uint32_t queueFamilyIndexCount;
- DE_NULL, // const uint32_t* pQueueFamilyIndices;
- VK_IMAGE_LAYOUT_UNDEFINED, // VkImageLayout initialLayout;
- };
-
- m_currentTestImageInfo = imageInfo;
-
- if (!isImageSupported(vki, physDevice, m_currentTestImageInfo))
- continue;
-
- log << tcu::TestLog::Message << "- " << getImageInfoString(m_currentTestImageInfo) << tcu::TestLog::EndMessage;
- ++numCheckedImages;
-
- tcu::ResultCollector result(log, "ERROR: ");
-
- updateMemoryRequirements(vk, device);
-
- verifyMemoryRequirements(result, memoryProperties);
-
- // For the same tiling, transient usage, and sparse flags, (and format, if D/S) memoryTypeBits must be the same for all images
- result.check((previousMemoryTypeBits == notInitializedBits) || (m_currentTestRequirements.memoryTypeBits == previousMemoryTypeBits),
- "memoryTypeBits differ from the ones in the previous image configuration");
-
- if (result.getResult() != QP_TEST_RESULT_PASS)
- allPass = false;
-
- previousMemoryTypeBits = m_currentTestRequirements.memoryTypeBits;
+ const VkImageCreateFlags actualCreateFlags = loopCreateFlags | params.flags;
+ const VkImageUsageFlags actualUsageFlags = loopUsageFlags | (params.transient ? VK_IMAGE_USAGE_TRANSIENT_ATTACHMENT_BIT : (VkImageUsageFlagBits)0);
+ const bool isCube = (actualCreateFlags & VK_IMAGE_CREATE_CUBE_COMPATIBLE_BIT) != 0u;
+ const VkImageCreateInfo imageInfo =
+ {
+ VK_STRUCTURE_TYPE_IMAGE_CREATE_INFO, // VkStructureType sType;
+ DE_NULL, // const void* pNext;
+ actualCreateFlags, // VkImageCreateFlags flags;
+ loopImageType, // VkImageType imageType;
+ format, // VkFormat format;
+ makeExtentForImage(loopImageType), // VkExtent3D extent;
+ 1u, // uint32_t mipLevels;
+ (isCube ? 6u : 1u), // uint32_t arrayLayers;
+ loopSampleCount, // VkSampleCountFlagBits samples;
+ params.tiling, // VkImageTiling tiling;
+ actualUsageFlags, // VkImageUsageFlags usage;
+ VK_SHARING_MODE_EXCLUSIVE, // VkSharingMode sharingMode;
+ 0u, // uint32_t queueFamilyIndexCount;
+ DE_NULL, // const uint32_t* pQueueFamilyIndices;
+ VK_IMAGE_LAYOUT_UNDEFINED, // VkImageLayout initialLayout;
+ };
+
+ m_currentTestImageInfo = imageInfo;
+
+ if (!isImageSupported(vki, physDevice, m_currentTestImageInfo))
+ continue;
+
+ log << tcu::TestLog::Message << "- " << getImageInfoString(m_currentTestImageInfo) << tcu::TestLog::EndMessage;
+ ++numCheckedImages;
+
+ tcu::ResultCollector result(log, "ERROR: ");
+
+ updateMemoryRequirements(vk, device);
+
+ verifyMemoryRequirements(result, memoryProperties);
+
+ // For the same tiling, transient usage, and sparse flags, (and format, if D/S) memoryTypeBits must be the same for all images
+ result.check((previousMemoryTypeBits == notInitializedBits) || (m_currentTestRequirements.memoryTypeBits == previousMemoryTypeBits),
+ "memoryTypeBits differ from the ones in the previous image configuration");
+
+ if (result.getResult() != QP_TEST_RESULT_PASS)
+ allPass = false;
+
+ previousMemoryTypeBits = m_currentTestRequirements.memoryTypeBits;
+ }
}
}
}
imageTest.populateTestGroup(group);
}
-void populateDedicatedAllocationTestGroup(tcu::TestCaseGroup* group)
+void populateDedicatedAllocationTestGroup (tcu::TestCaseGroup* group)
{
BufferMemoryRequirementsDedicatedAllocation bufferTest;
ImageMemoryRequirementsDedicatedAllocation imageTest;
imageTest.populateTestGroup(group);
}
+bool isMultiplaneImageSupported (const InstanceInterface& vki,
+ const VkPhysicalDevice physicalDevice,
+ const VkImageCreateInfo& info)
+{
+ if ((info.flags & VK_IMAGE_CREATE_CUBE_COMPATIBLE_BIT) && info.imageType != VK_IMAGE_TYPE_2D)
+ return false;
+
+ if ((info.usage & VK_IMAGE_USAGE_TRANSIENT_ATTACHMENT_BIT) &&
+ (info.usage & (VK_IMAGE_USAGE_COLOR_ATTACHMENT_BIT | VK_IMAGE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT | VK_IMAGE_USAGE_INPUT_ATTACHMENT_BIT)) == 0u)
+ return false;
+
+ const VkPhysicalDeviceFeatures features = getPhysicalDeviceFeatures(vki, physicalDevice);
+
+ if (info.flags & VK_IMAGE_CREATE_SPARSE_RESIDENCY_BIT)
+ {
+ DE_ASSERT(info.tiling == VK_IMAGE_TILING_OPTIMAL);
+
+ if (info.imageType == VK_IMAGE_TYPE_2D && !features.sparseResidencyImage2D)
+ return false;
+ }
+
+ const VkFormatProperties formatProperties = getPhysicalDeviceFormatProperties(vki, physicalDevice, info.format);
+ const VkFormatFeatureFlags formatFeatures = (info.tiling == VK_IMAGE_TILING_LINEAR ? formatProperties.linearTilingFeatures
+ : formatProperties.optimalTilingFeatures);
+
+ if (!isUsageMatchesFeatures(info.usage, formatFeatures))
+ return false;
+
+ VkImageFormatProperties imageFormatProperties;
+ const VkResult result = vki.getPhysicalDeviceImageFormatProperties(
+ physicalDevice, info.format, info.imageType, info.tiling, info.usage, info.flags, &imageFormatProperties);
+
+ if (result == VK_SUCCESS)
+ {
+ if (info.arrayLayers > imageFormatProperties.maxArrayLayers)
+ return false;
+ if (info.mipLevels > imageFormatProperties.maxMipLevels)
+ return false;
+ if ((info.samples & imageFormatProperties.sampleCounts) == 0u)
+ return false;
+ }
+
+ return result == VK_SUCCESS;
+}
+
+tcu::TestStatus testMultiplaneImages (Context& context, ImageTestParams params)
+{
+ const VkFormat multiplaneFormats[] =
+ {
+ VK_FORMAT_G8_B8_R8_3PLANE_420_UNORM_KHR,
+ VK_FORMAT_G8_B8R8_2PLANE_420_UNORM_KHR,
+ VK_FORMAT_G8_B8_R8_3PLANE_422_UNORM_KHR,
+ VK_FORMAT_G8_B8R8_2PLANE_422_UNORM_KHR,
+ VK_FORMAT_G8_B8_R8_3PLANE_444_UNORM_KHR,
+ VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_420_UNORM_3PACK16_KHR,
+ VK_FORMAT_G10X6_B10X6R10X6_2PLANE_420_UNORM_3PACK16_KHR,
+ VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_422_UNORM_3PACK16_KHR,
+ VK_FORMAT_G10X6_B10X6R10X6_2PLANE_422_UNORM_3PACK16_KHR,
+ VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_444_UNORM_3PACK16_KHR,
+ VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_420_UNORM_3PACK16_KHR,
+ VK_FORMAT_G12X4_B12X4R12X4_2PLANE_420_UNORM_3PACK16_KHR,
+ VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_422_UNORM_3PACK16_KHR,
+ VK_FORMAT_G12X4_B12X4R12X4_2PLANE_422_UNORM_3PACK16_KHR,
+ VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_444_UNORM_3PACK16_KHR,
+ VK_FORMAT_G16_B16_R16_3PLANE_420_UNORM_KHR,
+ VK_FORMAT_G16_B16R16_2PLANE_420_UNORM_KHR,
+ VK_FORMAT_G16_B16_R16_3PLANE_422_UNORM_KHR,
+ VK_FORMAT_G16_B16R16_2PLANE_422_UNORM_KHR
+ };
+ {
+ const std::string extensionName("VK_KHR_get_memory_requirements2");
+
+ if (!de::contains(context.getDeviceExtensions().begin(), context.getDeviceExtensions().end(), extensionName))
+ TCU_THROW(NotSupportedError, std::string(extensionName + " is not supported").c_str());
+ }
+ {
+ const std::string extensionName("VK_KHR_sampler_ycbcr_conversion");
+
+ if (!de::contains(context.getDeviceExtensions().begin(), context.getDeviceExtensions().end(), extensionName))
+ TCU_THROW(NotSupportedError, std::string(extensionName + " is not supported").c_str());
+ }
+
+ const DeviceInterface& vk = context.getDeviceInterface();
+ const InstanceInterface& vki = context.getInstanceInterface();
+ const VkDevice device = context.getDevice();
+ const VkPhysicalDevice physicalDevice = context.getPhysicalDevice();
+ const VkImageCreateFlags sparseFlags = VK_IMAGE_CREATE_SPARSE_BINDING_BIT | VK_IMAGE_CREATE_SPARSE_RESIDENCY_BIT | VK_IMAGE_CREATE_SPARSE_ALIASED_BIT;
+ const VkImageUsageFlags transientFlags = VK_IMAGE_USAGE_TRANSIENT_ATTACHMENT_BIT;
+ const VkPhysicalDeviceMemoryProperties memoryProperties = getPhysicalDeviceMemoryProperties(vki, physicalDevice);
+ tcu::TestLog& log = context.getTestContext().getLog();
+ tcu::ResultCollector result (log, "ERROR: ");
+ deUint32 errorCount = 0;
+
+ log << TestLog::Message << "Memory properties: " << memoryProperties << TestLog::EndMessage;
+
+ for (size_t formatNdx = 0; formatNdx < DE_LENGTH_OF_ARRAY(multiplaneFormats); formatNdx++)
+ {
+ for (VkImageCreateFlags loopCreateFlags = (VkImageCreateFlags)0; loopCreateFlags <= VK_IMAGE_CREATE_CUBE_COMPATIBLE_BIT; loopCreateFlags = nextFlagExcluding(loopCreateFlags, sparseFlags))
+ for (VkImageUsageFlags loopUsageFlags = VK_IMAGE_USAGE_TRANSFER_SRC_BIT; loopUsageFlags <= VK_IMAGE_USAGE_INPUT_ATTACHMENT_BIT; loopUsageFlags = nextFlagExcluding(loopUsageFlags, transientFlags))
+ {
+ const VkFormat format = multiplaneFormats[formatNdx];
+ const VkImageCreateFlags actualCreateFlags = loopCreateFlags | params.flags;
+ const VkImageUsageFlags actualUsageFlags = loopUsageFlags | (params.transient ? VK_IMAGE_USAGE_TRANSIENT_ATTACHMENT_BIT : (VkImageUsageFlagBits)0);
+ const VkImageCreateInfo imageInfo =
+ {
+ VK_STRUCTURE_TYPE_IMAGE_CREATE_INFO, // VkStructureType sType;
+ DE_NULL, // const void* pNext;
+ actualCreateFlags, // VkImageCreateFlags flags;
+ VK_IMAGE_TYPE_2D, // VkImageType imageType;
+ format, // VkFormat format;
+ { 64u, 64u, 1u, }, // VkExtent3D extent;
+ 1u, // uint32_t mipLevels;
+ 1u, // uint32_t arrayLayers;
+ VK_SAMPLE_COUNT_1_BIT, // VkSampleCountFlagBits samples;
+ params.tiling, // VkImageTiling tiling;
+ actualUsageFlags, // VkImageUsageFlags usage;
+ VK_SHARING_MODE_EXCLUSIVE, // VkSharingMode sharingMode;
+ 0u, // uint32_t queueFamilyIndexCount;
+ DE_NULL, // const uint32_t* pQueueFamilyIndices;
+ VK_IMAGE_LAYOUT_UNDEFINED, // VkImageLayout initialLayout;
+ };
+
+ if (isMultiplaneImageSupported(vki, physicalDevice, imageInfo))
+ {
+ const Unique<VkImage> image (createImage(vk, device, &imageInfo));
+
+ log << tcu::TestLog::Message << "- " << getImageInfoString(imageInfo) << tcu::TestLog::EndMessage;
+
+ for (deUint32 planeNdx = 0; planeNdx < (deUint32)getPlaneCount(format); planeNdx++)
+ {
+ const VkImageAspectFlagBits aspect = getPlaneAspect(planeNdx);
+ const VkImagePlaneMemoryRequirementsInfoKHR aspectInfo =
+ {
+ VK_STRUCTURE_TYPE_IMAGE_PLANE_MEMORY_REQUIREMENTS_INFO_KHR,
+ DE_NULL,
+ aspect
+ };
+ const VkImageMemoryRequirementsInfo2KHR info =
+ {
+ VK_STRUCTURE_TYPE_IMAGE_MEMORY_REQUIREMENTS_INFO_2_KHR,
+ (actualCreateFlags & VK_IMAGE_CREATE_DISJOINT_BIT_KHR) == 0 ? DE_NULL : &aspectInfo,
+ *image
+ };
+ VkMemoryRequirements2KHR requirements =
+ {
+ VK_STRUCTURE_TYPE_MEMORY_REQUIREMENTS_2_KHR,
+ DE_NULL,
+ { 0u, 0u, 0u }
+ };
+
+ vk.getImageMemoryRequirements2KHR(device, &info, &requirements);
+
+ log << TestLog::Message << "Aspect: " << getImageAspectFlagsStr(aspect) << ", Requirements: " << requirements << TestLog::EndMessage;
+
+ result.check(deIsPowerOfTwo64(static_cast<deUint64>(requirements.memoryRequirements.alignment)), "VkMemoryRequirements alignment isn't power of two");
+
+ if (result.check(requirements.memoryRequirements.memoryTypeBits != 0, "No supported memory types"))
+ {
+ bool hasHostVisibleType = false;
+
+ for (deUint32 memoryTypeIndex = 0; (0x1u << memoryTypeIndex) <= requirements.memoryRequirements.memoryTypeBits; memoryTypeIndex++)
+ {
+ if (result.check(memoryTypeIndex < memoryProperties.memoryTypeCount, "Unknown memory type bits set in memory requirements"))
+ {
+ const VkMemoryPropertyFlags propertyFlags (memoryProperties.memoryTypes[memoryTypeIndex].propertyFlags);
+
+ if (propertyFlags & VK_MEMORY_PROPERTY_HOST_VISIBLE_BIT)
+ hasHostVisibleType = true;
+
+ if (propertyFlags & VK_MEMORY_PROPERTY_LAZILY_ALLOCATED_BIT)
+ {
+ result.check((imageInfo.usage & VK_IMAGE_USAGE_TRANSIENT_ATTACHMENT_BIT) != 0u,
+ "Memory type includes VK_MEMORY_PROPERTY_LAZILY_ALLOCATED_BIT for a non-transient attachment image");
+ }
+ }
+ else
+ break;
+ }
+
+ result.check(params.tiling != VK_IMAGE_TILING_LINEAR || hasHostVisibleType, "Required memory type doesn't include VK_MEMORY_PROPERTY_HOST_VISIBLE_BIT");
+ }
+ }
+ }
+ }
+ }
+
+ if (errorCount > 1)
+ return tcu::TestStatus(result.getResult(), "Failed " + de::toString(errorCount) + " cases.");
+ else
+ return tcu::TestStatus(result.getResult(), result.getMessage());
+}
+
+void populateMultiplaneTestGroup (tcu::TestCaseGroup* group)
+{
+ const struct
+ {
+ VkImageCreateFlags flags;
+ bool transient;
+ const char* const name;
+ } imageFlagsCases[] =
+ {
+ { (VkImageCreateFlags)0, false, "regular" },
+ { (VkImageCreateFlags)0, true, "transient" },
+ { VK_IMAGE_CREATE_SPARSE_BINDING_BIT, false, "sparse" },
+ { VK_IMAGE_CREATE_SPARSE_BINDING_BIT | VK_IMAGE_CREATE_SPARSE_RESIDENCY_BIT, false, "sparse_residency" },
+ { VK_IMAGE_CREATE_SPARSE_BINDING_BIT | VK_IMAGE_CREATE_SPARSE_ALIASED_BIT, false, "sparse_aliased" },
+ { VK_IMAGE_CREATE_SPARSE_BINDING_BIT | VK_IMAGE_CREATE_SPARSE_RESIDENCY_BIT | VK_IMAGE_CREATE_SPARSE_ALIASED_BIT, false, "sparse_residency_aliased" },
+ };
+ const struct
+ {
+ VkImageTiling value;
+ const char* name;
+ } tilings[] =
+ {
+ { VK_IMAGE_TILING_OPTIMAL, "optimal" },
+ { VK_IMAGE_TILING_LINEAR, "linear" }
+ };
+
+ for (size_t flagsNdx = 0; flagsNdx < DE_LENGTH_OF_ARRAY(imageFlagsCases); ++flagsNdx)
+ for (size_t tilingNdx = 0; tilingNdx < DE_LENGTH_OF_ARRAY(tilings); ++tilingNdx)
+ {
+ const VkImageCreateFlags flags = imageFlagsCases[flagsNdx].flags;
+ const bool transient = imageFlagsCases[flagsNdx].transient;
+ const VkImageTiling tiling = tilings[tilingNdx].value;
+ const ImageTestParams params (flags, tiling, transient);
+ const std::string name = std::string(imageFlagsCases[flagsNdx].name) + "_" + tilings[tilingNdx].name;
+
+ if (tiling == VK_IMAGE_TILING_LINEAR && (flags & VK_IMAGE_CREATE_SPARSE_BINDING_BIT) != 0)
+ continue;
+
+ addFunctionCase(group, name, name, testMultiplaneImages, params);
+ }
+}
+
} // anonymous
requirementsGroup->addChild(createTestGroup(testCtx, "core", "Memory requirements tests with core functionality", populateCoreTestGroup));
requirementsGroup->addChild(createTestGroup(testCtx, "extended", "Memory requirements tests with extension VK_KHR_get_memory_requirements2", populateExtendedTestGroup));
requirementsGroup->addChild(createTestGroup(testCtx, "dedicated_allocation", "Memory requirements tests with extension VK_KHR_dedicated_allocation", populateDedicatedAllocationTestGroup));
+ requirementsGroup->addChild(createTestGroup(testCtx, "multiplane_image", "Memory requirements tests with vkGetImagePlaneMemoryRequirements", populateMultiplaneTestGroup));
return requirementsGroup.release();
}
{
std::ostringstream src;
- src << "#version 310 es\n"
- "layout(location=0) out highp vec4 o_color;\n";
+ src << "#version 310 es\n"
+ "layout(location=0) out highp vec4 o_color;\n";
src << "void main (void)\n{\n";
src << " o_color = vec4(0.0);\n";
std::ostringstream src;
int location = 0;
- src << "#version 310 es\n"
- "layout(location = " << location << ") in highp vec4 a_position;\n";
+ src << "#version 310 es\n"
+ "layout(location = " << location << ") in highp vec4 a_position;\n";
for (vector<Symbol>::const_iterator input = inputs.begin(); input != inputs.end(); ++input)
{
std::ostringstream src;
- src << "#version 310 es\n";
+ src << glu::getGLSLVersionDeclaration(shaderSpec.glslVersion) << "\n";
if (!shaderSpec.globalDeclarations.empty())
src << shaderSpec.globalDeclarations << "\n";
{
std::ostringstream src;
- src << "#version 310 es\n";
+ src <<"#version 310 es\n";
if (!shaderSpec.globalDeclarations.empty())
src << shaderSpec.globalDeclarations << "\n";
std::ostringstream src;
- src << "#version 310 es\n"
- "#extension GL_EXT_geometry_shader : require\n";
+ src << glu::getGLSLVersionDeclaration(shaderSpec.glslVersion) << "\n";
+
+ if (shaderSpec.glslVersion == glu::GLSL_VERSION_310_ES)
+ src << "#extension GL_EXT_geometry_shader : require\n";
if (!shaderSpec.globalDeclarations.empty())
src << shaderSpec.globalDeclarations << "\n";
static std::string generateFragmentShader (const ShaderSpec& shaderSpec, bool useIntOutputs, const std::map<std::string, int>& outLocationMap, const std::string& inputPrefix, const std::string& outputPrefix)
{
std::ostringstream src;
- src << "#version 310 es\n";
+ src << glu::getGLSLVersionDeclaration(shaderSpec.glslVersion) << "\n";
if (!shaderSpec.globalDeclarations.empty())
src << shaderSpec.globalDeclarations << "\n";
std::string ComputeShaderExecutor::generateComputeShader (const ShaderSpec& spec)
{
std::ostringstream src;
- src << "#version 310 es\n";
+ src << glu::getGLSLVersionDeclaration(spec.glslVersion) << "\n";
if (!spec.globalDeclarations.empty())
src << spec.globalDeclarations << "\n";
static std::string generateVertexShaderForTess (void)
{
std::ostringstream src;
- src << "#version 310 es\n"
+ src << "#version 310 es\n"
<< "void main (void)\n{\n"
<< " gl_Position = vec4(gl_VertexIndex/2, gl_VertexIndex%2, 0.0, 1.0);\n"
<< "}\n";
std::string TessControlExecutor::generateTessControlShader (const ShaderSpec& shaderSpec)
{
std::ostringstream src;
- src << "#version 310 es\n"
- "#extension GL_EXT_tessellation_shader : require\n\n";
+ src << glu::getGLSLVersionDeclaration(shaderSpec.glslVersion) << "\n";
+
+ if (shaderSpec.glslVersion == glu::GLSL_VERSION_310_ES)
+ src << "#extension GL_EXT_tessellation_shader : require\n\n";
if (!shaderSpec.globalDeclarations.empty())
src << shaderSpec.globalDeclarations << "\n";
{
std::ostringstream src;
- src << "#version 310 es\n"
- "#extension GL_EXT_tessellation_shader : require\n\n";
+ src << "#version 310 es\n"
+ "#extension GL_EXT_tessellation_shader : require\n\n";
src << "layout(triangles, ccw) in;\n";
{
std::ostringstream src;
- src << "#version 310 es\n"
- "#extension GL_EXT_tessellation_shader : require\n\n";
+ src << "#version 310 es\n"
+ "#extension GL_EXT_tessellation_shader : require\n\n";
src << "layout(vertices = 1) out;\n\n";
{
std::ostringstream src;
- src << "#version 310 es\n"
- "#extension GL_EXT_tessellation_shader : require\n\n";
+ src << glu::getGLSLVersionDeclaration(shaderSpec.glslVersion) << "\n";
+
+ if (shaderSpec.glslVersion == glu::GLSL_VERSION_310_ES)
+ src << "#extension GL_EXT_tessellation_shader : require\n\n";
if (!shaderSpec.globalDeclarations.empty())
src << shaderSpec.globalDeclarations << "\n";
//! Complete shader specification.
struct ShaderSpec
{
+ glu::GLSLVersion glslVersion;
std::vector<Symbol> inputs;
std::vector<Symbol> outputs;
std::string globalDeclarations; //!< These are placed into global scope. Can contain uniform declarations for example.
std::string source; //!< Source snippet to be executed.
vk::GlslBuildOptions buildOptions;
- ShaderSpec (void) {}
+ ShaderSpec (void)
+ : glslVersion(glu::GLSL_VERSION_310_ES)
+ {}
};
enum
{
TestLog& log = m_context.getTestContext().getLog();
std::vector<Vec4> vertices;
- std::vector<Shader> shaders;
+ std::vector<VulkanShader> shaders;
FrontFacingVertexShader vertexShader;
FrontFacingFragmentShader fragmentShader;
std::string testDesc;
vertices.push_back(Vec4( 0.75f, -0.75f, 0.0f, 1.0f));
vertices.push_back(Vec4( 0.0f, -0.75f, 0.0f, 1.0f));
- shaders.push_back(Shader(VK_SHADER_STAGE_VERTEX_BIT, m_context.getBinaryCollection().get("vert")));
- shaders.push_back(Shader(VK_SHADER_STAGE_FRAGMENT_BIT, m_context.getBinaryCollection().get("frag")));
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_VERTEX_BIT, m_context.getBinaryCollection().get("vert")));
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_FRAGMENT_BIT, m_context.getBinaryCollection().get("frag")));
testDesc = "gl_FrontFacing " + getPrimitiveTopologyShortName(m_topology) + " ";
// Perform Draw
{
std::vector<Vec4> vertices;
- std::vector<Shader> shaders;
+ std::vector<VulkanShader> shaders;
Move<VkDescriptorSetLayout> descriptorSetLayout;
Move<VkDescriptorPool> descriptorPool;
Move<VkDescriptorSet> descriptorSet;
vertices.push_back(Vec4( 0.78f, 0.0f, 0.0f, 1.0f));
vertices.push_back(Vec4( -0.1f, 0.6f, 0.0f, 1.0f));
- shaders.push_back(Shader(VK_SHADER_STAGE_VERTEX_BIT, m_context.getBinaryCollection().get("FragDepthVert")));
- shaders.push_back(Shader(VK_SHADER_STAGE_FRAGMENT_BIT, m_context.getBinaryCollection().get("FragDepthFrag")));
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_VERTEX_BIT, m_context.getBinaryCollection().get("FragDepthVert")));
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_FRAGMENT_BIT, m_context.getBinaryCollection().get("FragDepthFrag")));
DrawState drawState(m_topology, m_renderSize.x(), m_renderSize.y());
DrawCallData drawCallData(vertices);
drawState.depthTestEnable = true;
drawState.depthWriteEnable = true;
drawState.sampleShadingEnable = true;
- vulkanProgram.depthImageView = depthImageView;
- vulkanProgram.descriptorSetLayout = descriptorSetLayout;
- vulkanProgram.descriptorSet = descriptorSet;
+ vulkanProgram.depthImageView = *depthImageView;
+ vulkanProgram.descriptorSetLayout = *descriptorSetLayout;
+ vulkanProgram.descriptorSet = *descriptorSet;
VulkanDrawContext vulkanDrawContext(m_context, drawState, drawCallData, vulkanProgram);
vulkanDrawContext.draw();
vulkanDrawContext.getColorPixels().getHeight(),
1,
vulkanDrawContext.getColorPixels().getDataPtr()));
-
- depthImageView = vulkanProgram.depthImageView;
}
// Barrier to transition between first and second pass
// Resolve Depth Buffer
{
std::vector<Vec4> vertices;
- std::vector<Shader> shaders;
+ std::vector<VulkanShader> shaders;
Move<VkDescriptorSetLayout> descriptorSetLayout;
Move<VkDescriptorPool> descriptorPool;
Move<VkDescriptorSet> descriptorSet;
vertices.push_back(Vec4( 1.0f, -1.0f, 0.0f, 1.0f));
vertices.push_back(Vec4( 1.0f, 1.0f, 0.0f, 1.0f));
- shaders.push_back(Shader(VK_SHADER_STAGE_VERTEX_BIT, m_context.getBinaryCollection().get("FragDepthVertPass2")));
- shaders.push_back(Shader(VK_SHADER_STAGE_FRAGMENT_BIT, m_context.getBinaryCollection().get("FragDepthFragPass2")));
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_VERTEX_BIT, m_context.getBinaryCollection().get("FragDepthVertPass2")));
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_FRAGMENT_BIT, m_context.getBinaryCollection().get("FragDepthFragPass2")));
DrawState drawState(VK_PRIMITIVE_TOPOLOGY_TRIANGLE_STRIP, m_renderSize.x(), m_renderSize.y());
DrawCallData drawCallData(vertices);
// Perform draw
{
std::vector<Vec4> vertices;
- std::vector<Shader> shaders;
+ std::vector<VulkanShader> shaders;
vertices.push_back(Vec4( -1.0f, -1.0f, 0.0f, 1.0f));
vertices.push_back(Vec4( -1.0f, 1.0f, 0.0f, 1.0f));
vertices.push_back(Vec4( 1.0f, -1.0f, 0.0f, 1.0f));
vertices.push_back(Vec4( 1.0f, 1.0f, 0.0f, 1.0f));
- shaders.push_back(Shader(VK_SHADER_STAGE_VERTEX_BIT, m_context.getBinaryCollection().get("FragCoordMsaaVert")));
- shaders.push_back(Shader(VK_SHADER_STAGE_FRAGMENT_BIT, m_context.getBinaryCollection().get("FragCoordMsaaFrag")));
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_VERTEX_BIT, m_context.getBinaryCollection().get("FragCoordMsaaVert")));
+ shaders.push_back(VulkanShader(VK_SHADER_STAGE_FRAGMENT_BIT, m_context.getBinaryCollection().get("FragCoordMsaaFrag")));
DrawState drawState(VK_PRIMITIVE_TOPOLOGY_TRIANGLE_STRIP, m_renderSize.x(), m_renderSize.y());
DrawCallData drawCallData(vertices);
m_refImage.getAccess().getDataPtr());
}
-VulkanDrawContext::VulkanDrawContext ( Context& context,
- const DrawState& drawState,
- const DrawCallData& drawCallData,
- VulkanProgram& vulkanProgram)
- : DrawContext (drawState, drawCallData)
- , m_context (context)
- , m_program (vulkanProgram)
+VulkanDrawContext::VulkanDrawContext ( Context& context,
+ const DrawState& drawState,
+ const DrawCallData& drawCallData,
+ const VulkanProgram& vulkanProgram)
+ : DrawContext (drawState, drawCallData)
+ , m_context (context)
+ , m_program (vulkanProgram)
{
const DeviceInterface& vk = m_context.getDeviceInterface();
const VkDevice device = m_context.getDevice();
if (!vulkanProgram.descriptorSetLayout)
m_pipelineLayout = makePipelineLayoutWithoutDescriptors(vk, device);
else
- m_pipelineLayout = makePipelineLayout(vk, device, vulkanProgram.descriptorSetLayout.get());
+ m_pipelineLayout = makePipelineLayout(vk, device, vulkanProgram.descriptorSetLayout);
}
// Renderpass
};
attachmentDescriptions.push_back(attachDescriptors[0]);
- if (vulkanProgram.depthImageView)
+ if (!!vulkanProgram.depthImageView)
attachmentDescriptions.push_back(attachDescriptors[1]);
- deUint32 depthReferenceNdx = vulkanProgram.depthImageView ? 1 : 2;
+ deUint32 depthReferenceNdx = !!vulkanProgram.depthImageView ? 1 : 2;
const VkSubpassDescription subpassDescription =
{
(VkSubpassDescriptionFlags)0, // VkSubpassDescriptionFlags flags;
std::vector<VkImageView> attachmentBindInfos;
deUint32 numAttachments;
attachmentBindInfos.push_back(*m_colorImageView);
- if (vulkanProgram.depthImageView)
- attachmentBindInfos.push_back(*vulkanProgram.depthImageView);
+ if (!!vulkanProgram.depthImageView)
+ attachmentBindInfos.push_back(vulkanProgram.depthImageView);
numAttachments = (deUint32)(attachmentBindInfos.size());
const VkFramebufferCreateInfo framebufferInfo = {
const VkDeviceSize zeroOffset = 0ull;
beginCommandBuffer(vk, *m_cmdBuffer);
- if (vulkanProgram.descriptorSet)
- vk.cmdBindDescriptorSets(*m_cmdBuffer, VK_PIPELINE_BIND_POINT_GRAPHICS, *m_pipelineLayout, 0u, 1u, &*vulkanProgram.descriptorSet, 0u, DE_NULL);
+ if (!!vulkanProgram.descriptorSet)
+ vk.cmdBindDescriptorSets(*m_cmdBuffer, VK_PIPELINE_BIND_POINT_GRAPHICS, *m_pipelineLayout, 0u, 1u, &vulkanProgram.descriptorSet, 0u, DE_NULL);
// Begin render pass
{
std::vector<VkClearValue> clearValues;
clearValues.push_back(makeClearValueColor(Vec4(0.0f, 0.0f, 0.0f, 1.0f)));
- if (vulkanProgram.depthImageView)
+ if (!!vulkanProgram.depthImageView)
clearValues.push_back(makeClearValueDepthStencil(0.0, 0));
const VkRect2D renderArea =
namespace drawutil
{
-struct Shader
-{
- vk::VkShaderStageFlagBits stage;
- const vk::ProgramBinary* binary;
-
- Shader (const vk::VkShaderStageFlagBits stage_, const vk::ProgramBinary& binary_)
- : stage (stage_)
- , binary (&binary_)
- {
- }
-};
-
struct DrawState
{
vk::VkPrimitiveTopology topology;
virtual void draw (void) = 0;
virtual tcu::ConstPixelBufferAccess getColorPixels (void) const = 0;
protected:
- const DrawState& m_drawState;
- const DrawCallData& m_drawCallData;
+ const DrawState& m_drawState;
+ const DrawCallData& m_drawCallData;
};
class ReferenceDrawContext : public DrawContext
tcu::TextureLevel m_refImage;
};
-struct VulkanProgram
+struct VulkanShader
{
- const std::vector<Shader>& shaders;
- vk::Move<vk::VkImageView> depthImageView;
- vk::Move<vk::VkDescriptorSetLayout> descriptorSetLayout;
- vk::Move<vk::VkDescriptorSet> descriptorSet;
+ vk::VkShaderStageFlagBits stage;
+ const vk::ProgramBinary* binary;
- VulkanProgram (const std::vector<Shader>& shaders_)
- : shaders (shaders_)
+ VulkanShader (const vk::VkShaderStageFlagBits stage_, const vk::ProgramBinary& binary_)
+ : stage (stage_)
+ , binary (&binary_)
{
}
};
+struct VulkanProgram
+{
+ std::vector<VulkanShader> shaders;
+ vk::VkImageView depthImageView; // \todo [2017-06-06 pyry] This shouldn't be here? Doesn't logically belong to program
+ vk::VkDescriptorSetLayout descriptorSetLayout;
+ vk::VkDescriptorSet descriptorSet;
+
+ VulkanProgram (const std::vector<VulkanShader>& shaders_)
+ : shaders (shaders_)
+ , depthImageView (0)
+ , descriptorSetLayout (0)
+ , descriptorSet (0)
+ {}
+
+ VulkanProgram (void)
+ : depthImageView (0)
+ , descriptorSetLayout (0)
+ , descriptorSet (0)
+ {}
+};
+
class VulkanDrawContext : public DrawContext
{
public:
VulkanDrawContext (Context& context,
const DrawState& drawState,
const DrawCallData& drawCallData,
- VulkanProgram& vulkanProgram);
+ const VulkanProgram& vulkanProgram);
virtual ~VulkanDrawContext (void);
virtual void draw (void);
virtual tcu::ConstPixelBufferAccess getColorPixels (void) const;
MAX_NUM_SHADER_MODULES = 5,
};
Context& m_context;
- VulkanProgram& m_program;
+ const VulkanProgram& m_program;
de::MovePtr<vk::ImageWithMemory> m_colorImage;
de::MovePtr<vk::ImageWithMemory> m_resolveImage;
de::MovePtr<vk::BufferWithMemory> m_colorAttachmentBuffer;
#include "vktGeometryTests.hpp"
#include "vktRobustnessTests.hpp"
#include "vktMultiViewTests.hpp"
+#include "vktYCbCrTests.hpp"
#include <vector>
#include <sstream>
addChild(geometry::createTests (m_testCtx));
addChild(robustness::createTests (m_testCtx));
addChild(MultiView::createTests (m_testCtx));
+ addChild(ycbcr::createTests (m_testCtx));
}
} // vkt
--- /dev/null
+# YCbCr Tests
+
+include_directories(
+ ..
+ ../shaderexecutor
+ )
+
+set(DEQP_VK_YCBCR_SRCS
+ vktYCbCrConversionTests.cpp
+ vktYCbCrConversionTests.hpp
+ vktYCbCrFormatTests.cpp
+ vktYCbCrFormatTests.hpp
+ vktYCbCrImageQueryTests.cpp
+ vktYCbCrImageQueryTests.hpp
+ vktYCbCrViewTests.cpp
+ vktYCbCrViewTests.hpp
+ vktYCbCrTests.cpp
+ vktYCbCrTests.hpp
+ vktYCbCrUtil.cpp
+ vktYCbCrUtil.hpp
+ )
+
+set(DEQP_VK_YCBCR_LIBS
+ deqp-vk-shaderexecutor
+ deqp-vk-package
+ tcutil
+ vkutil
+ )
+
+add_library(deqp-vk-ycbcr STATIC ${DEQP_VK_YCBCR_SRCS})
+target_link_libraries(deqp-vk-ycbcr ${DEQP_VK_YCBCR_LIBS})
--- /dev/null
+/*------------------------------------------------------------------------
+ * Vulkan Conformance Tests
+ * ------------------------
+ *
+ * Copyright (c) 2017 Google Inc.
+ *
+ * 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
+ *
+ * Unless required by applicable law or agreed to in writing, software
+ * distributed under the License is distributed on an "AS IS" BASIS,
+ * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
+ * See the License for the specific language governing permissions and
+ * limitations under the License.
+ *
+ *//*!
+ * \file
+ * \brief Texture color conversion tests
+ *//*--------------------------------------------------------------------*/
+
+#include "vktYCbCrConversionTests.hpp"
+
+#include "vktShaderExecutor.hpp"
+#include "vktTestCaseUtil.hpp"
+#include "vktTestGroupUtil.hpp"
+#include "vktYCbCrUtil.hpp"
+
+#include "vkImageUtil.hpp"
+#include "vkMemUtil.hpp"
+#include "vkPrograms.hpp"
+#include "vkRefUtil.hpp"
+#include "vkTypeUtil.hpp"
+#include "vkQueryUtil.hpp"
+
+#include "tcuInterval.hpp"
+#include "tcuTestLog.hpp"
+#include "tcuTexture.hpp"
+#include "tcuTextureUtil.hpp"
+#include "tcuVector.hpp"
+#include "tcuVectorUtil.hpp"
+#include "tcuFloatFormat.hpp"
+#include "tcuFloat.hpp"
+
+#include "deRandom.hpp"
+#include "deSTLUtil.hpp"
+#include "deSharedPtr.hpp"
+
+#include "deMath.h"
+#include "deFloat16.h"
+
+#include <vector>
+#include <iomanip>
+
+// \todo When defined color conversion extension is not used and conversion is performed in the shader
+// #define FAKE_COLOR_CONVERSION
+
+using tcu::Vec2;
+using tcu::Vec4;
+
+using tcu::UVec2;
+using tcu::UVec3;
+using tcu::UVec4;
+
+using tcu::IVec2;
+using tcu::IVec3;
+using tcu::IVec4;
+
+using tcu::TestLog;
+using tcu::Interval;
+using tcu::FloatFormat;
+
+using std::vector;
+using std::string;
+
+using namespace vkt::shaderexecutor;
+
+namespace vkt
+{
+namespace ycbcr
+{
+namespace
+{
+typedef de::SharedPtr<vk::Unique<vk::VkBuffer> > VkBufferSp;
+typedef de::SharedPtr<vk::Allocation> AllocationSp;
+
+// \note Used for range expansion
+UVec4 getBitDepth (vk::VkFormat format)
+{
+ switch (format)
+ {
+ case vk::VK_FORMAT_G8B8G8R8_422_UNORM_KHR:
+ case vk::VK_FORMAT_B8G8R8G8_422_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8_R8_3PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8R8_2PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8_R8_3PLANE_422_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8R8_2PLANE_422_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8_R8_3PLANE_444_UNORM_KHR:
+ return UVec4(8, 8, 8, 0);
+
+ case vk::VK_FORMAT_R10X6_UNORM_PACK16_KHR:
+ return UVec4(10, 0, 0, 0);
+
+ case vk::VK_FORMAT_R10X6G10X6_UNORM_2PACK16_KHR:
+ return UVec4(10, 10, 0, 0);
+
+ case vk::VK_FORMAT_R10X6G10X6B10X6A10X6_UNORM_4PACK16_KHR:
+ return UVec4(10, 10, 10, 10);
+
+ case vk::VK_FORMAT_G10X6B10X6G10X6R10X6_422_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_B10X6G10X6R10X6G10X6_422_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6R10X6_2PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_422_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6R10X6_2PLANE_422_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_444_UNORM_3PACK16_KHR:
+ return UVec4(10, 10, 10, 0);
+
+ case vk::VK_FORMAT_R12X4_UNORM_PACK16_KHR:
+ return UVec4(12, 0, 0, 0);
+
+ case vk::VK_FORMAT_R12X4G12X4_UNORM_2PACK16_KHR:
+ return UVec4(12, 12, 0, 0);
+
+ case vk::VK_FORMAT_R12X4G12X4B12X4A12X4_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_G12X4B12X4G12X4R12X4_422_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_B12X4G12X4R12X4G12X4_422_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4R12X4_2PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_422_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4R12X4_2PLANE_422_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_444_UNORM_3PACK16_KHR:
+ return UVec4(12, 12, 12, 12);
+
+ case vk::VK_FORMAT_G16B16G16R16_422_UNORM_KHR:
+ case vk::VK_FORMAT_B16G16R16G16_422_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16_R16_3PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16R16_2PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16_R16_3PLANE_422_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16R16_2PLANE_422_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16_R16_3PLANE_444_UNORM_KHR:
+ return UVec4(16, 16, 16, 0);
+
+ default:
+ return tcu::getTextureFormatBitDepth(vk::mapVkFormat(format)).cast<deUint32>();
+ }
+}
+
+// \note Taken from explicit lod filtering tests
+FloatFormat getFilteringPrecision (vk::VkFormat format)
+{
+ const FloatFormat reallyLow (0, 0, 6, false, tcu::YES);
+ const FloatFormat low (0, 0, 7, false, tcu::YES);
+ const FloatFormat fp16 (-14, 15, 10, false);
+ const FloatFormat fp32 (-126, 127, 23, true);
+
+ switch (format)
+ {
+ case vk::VK_FORMAT_R4G4B4A4_UNORM_PACK16:
+ case vk::VK_FORMAT_B4G4R4A4_UNORM_PACK16:
+ case vk::VK_FORMAT_R5G6B5_UNORM_PACK16:
+ case vk::VK_FORMAT_B5G6R5_UNORM_PACK16:
+ case vk::VK_FORMAT_R5G5B5A1_UNORM_PACK16:
+ case vk::VK_FORMAT_B5G5R5A1_UNORM_PACK16:
+ case vk::VK_FORMAT_A1R5G5B5_UNORM_PACK16:
+ return reallyLow;
+
+ case vk::VK_FORMAT_R8G8B8_UNORM:
+ case vk::VK_FORMAT_B8G8R8_UNORM:
+ case vk::VK_FORMAT_R8G8B8A8_UNORM:
+ case vk::VK_FORMAT_B8G8R8A8_UNORM:
+ case vk::VK_FORMAT_A8B8G8R8_UNORM_PACK32:
+ case vk::VK_FORMAT_G8B8G8R8_422_UNORM_KHR:
+ case vk::VK_FORMAT_B8G8R8G8_422_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8_R8_3PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8R8_2PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8_R8_3PLANE_422_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8R8_2PLANE_422_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8_R8_3PLANE_444_UNORM_KHR:
+ return low;
+
+ case vk::VK_FORMAT_A2R10G10B10_UNORM_PACK32:
+ case vk::VK_FORMAT_A2B10G10R10_UNORM_PACK32:
+ case vk::VK_FORMAT_R16G16B16_UNORM:
+ case vk::VK_FORMAT_R16G16B16A16_UNORM:
+ case vk::VK_FORMAT_R10X6_UNORM_PACK16_KHR:
+ case vk::VK_FORMAT_R10X6G10X6_UNORM_2PACK16_KHR:
+ case vk::VK_FORMAT_R10X6G10X6B10X6A10X6_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_G10X6B10X6G10X6R10X6_422_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_B10X6G10X6R10X6G10X6_422_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6R10X6_2PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_422_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6R10X6_2PLANE_422_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_444_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_R12X4_UNORM_PACK16_KHR:
+ case vk::VK_FORMAT_R12X4G12X4_UNORM_2PACK16_KHR:
+ case vk::VK_FORMAT_R12X4G12X4B12X4A12X4_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_G12X4B12X4G12X4R12X4_422_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_B12X4G12X4R12X4G12X4_422_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4R12X4_2PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_422_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4R12X4_2PLANE_422_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_444_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G16B16G16R16_422_UNORM_KHR:
+ case vk::VK_FORMAT_B16G16R16G16_422_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16_R16_3PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16R16_2PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16_R16_3PLANE_422_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16R16_2PLANE_422_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16_R16_3PLANE_444_UNORM_KHR:
+ return fp16;
+
+ default:
+ DE_FATAL("Precision not defined for format");
+ return fp32;
+ }
+}
+
+// \note Taken from explicit lod filtering tests
+FloatFormat getConversionPrecision (vk::VkFormat format)
+{
+ const FloatFormat reallyLow (0, 0, 8, false, tcu::YES);
+ const FloatFormat fp16 (-14, 15, 10, false);
+ const FloatFormat fp32 (-126, 127, 23, true);
+
+ switch (format)
+ {
+ case vk::VK_FORMAT_R4G4B4A4_UNORM_PACK16:
+ case vk::VK_FORMAT_B4G4R4A4_UNORM_PACK16:
+ case vk::VK_FORMAT_R5G6B5_UNORM_PACK16:
+ case vk::VK_FORMAT_B5G6R5_UNORM_PACK16:
+ case vk::VK_FORMAT_R5G5B5A1_UNORM_PACK16:
+ case vk::VK_FORMAT_B5G5R5A1_UNORM_PACK16:
+ case vk::VK_FORMAT_A1R5G5B5_UNORM_PACK16:
+ return reallyLow;
+
+ case vk::VK_FORMAT_R8G8B8_UNORM:
+ case vk::VK_FORMAT_B8G8R8_UNORM:
+ case vk::VK_FORMAT_R8G8B8A8_UNORM:
+ case vk::VK_FORMAT_B8G8R8A8_UNORM:
+ case vk::VK_FORMAT_A8B8G8R8_UNORM_PACK32:
+ case vk::VK_FORMAT_G8B8G8R8_422_UNORM_KHR:
+ case vk::VK_FORMAT_B8G8R8G8_422_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8_R8_3PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8R8_2PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8_R8_3PLANE_422_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8R8_2PLANE_422_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8_R8_3PLANE_444_UNORM_KHR:
+ return reallyLow;
+
+ case vk::VK_FORMAT_A2R10G10B10_UNORM_PACK32:
+ case vk::VK_FORMAT_A2B10G10R10_UNORM_PACK32:
+ case vk::VK_FORMAT_R16G16B16_UNORM:
+ case vk::VK_FORMAT_R16G16B16A16_UNORM:
+ case vk::VK_FORMAT_R10X6_UNORM_PACK16_KHR:
+ case vk::VK_FORMAT_R10X6G10X6_UNORM_2PACK16_KHR:
+ case vk::VK_FORMAT_R10X6G10X6B10X6A10X6_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_G10X6B10X6G10X6R10X6_422_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_B10X6G10X6R10X6G10X6_422_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6R10X6_2PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_422_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6R10X6_2PLANE_422_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_444_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_R12X4_UNORM_PACK16_KHR:
+ case vk::VK_FORMAT_R12X4G12X4_UNORM_2PACK16_KHR:
+ case vk::VK_FORMAT_R12X4G12X4B12X4A12X4_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_G12X4B12X4G12X4R12X4_422_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_B12X4G12X4R12X4G12X4_422_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4R12X4_2PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_422_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4R12X4_2PLANE_422_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_444_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G16B16G16R16_422_UNORM_KHR:
+ case vk::VK_FORMAT_B16G16R16G16_422_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16_R16_3PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16R16_2PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16_R16_3PLANE_422_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16R16_2PLANE_422_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16_R16_3PLANE_444_UNORM_KHR:
+ return fp16;
+
+ default:
+ DE_FATAL("Precision not defined for format");
+ return fp32;
+ }
+}
+
+class ChannelAccess
+{
+public:
+ ChannelAccess (tcu::TextureChannelClass channelClass,
+ deUint8 channelSize,
+ const IVec3& size,
+ const IVec3& bitPitch,
+ void* data,
+ deUint32 bitOffset);
+
+ const IVec3& getSize (void) const { return m_size; }
+ const IVec3& getBitPitch (void) const { return m_bitPitch; }
+ void* getDataPtr (void) const { return m_data; }
+
+ Interval getChannel (const FloatFormat& conversionFormat,
+ const IVec3& pos) const;
+ deUint32 getChannelUint (const IVec3& pos) const;
+ float getChannel (const IVec3& pos) const;
+ void setChannel (const IVec3& pos, deUint32 x);
+ void setChannel (const IVec3& pos, float x);
+
+private:
+ const tcu::TextureChannelClass m_channelClass;
+ const deUint8 m_channelSize;
+ const IVec3 m_size;
+ const IVec3 m_bitPitch;
+ void* const m_data;
+ const deInt32 m_bitOffset;
+
+};
+
+ChannelAccess::ChannelAccess (tcu::TextureChannelClass channelClass,
+ deUint8 channelSize,
+ const IVec3& size,
+ const IVec3& bitPitch,
+ void* data,
+ deUint32 bitOffset)
+ : m_channelClass (channelClass)
+ , m_channelSize (channelSize)
+ , m_size (size)
+ , m_bitPitch (bitPitch)
+
+ , m_data ((deUint8*)data + (bitOffset / 8))
+ , m_bitOffset (bitOffset % 8)
+{
+}
+
+//! Extend < 32b signed integer to 32b
+inline deInt32 signExtend (deUint32 src, int bits)
+{
+ const deUint32 signBit = 1u << (bits-1);
+
+ src |= ~((src & signBit) - 1);
+
+ return (deInt32)src;
+}
+
+deUint32 divRoundUp (deUint32 a, deUint32 b)
+{
+ if (a % b == 0)
+ return a / b;
+ else
+ return (a / b) + 1;
+}
+
+deUint32 ChannelAccess::getChannelUint (const IVec3& pos) const
+{
+ DE_ASSERT(pos[0] < m_size[0]);
+ DE_ASSERT(pos[1] < m_size[1]);
+ DE_ASSERT(pos[2] < m_size[2]);
+
+ const deInt32 bitOffset (m_bitOffset + tcu::dot(m_bitPitch, pos));
+ const deUint8* const firstByte = ((const deUint8*)m_data) + (bitOffset / 8);
+ const deUint32 byteCount = divRoundUp((bitOffset + m_channelSize) - 8u * (bitOffset / 8u), 8u);
+ const deUint32 mask (m_channelSize == 32u ? ~0x0u : (0x1u << m_channelSize) - 1u);
+ const deUint32 offset = bitOffset % 8;
+ deUint32 bits = 0u;
+
+ deMemcpy(&bits, firstByte, byteCount);
+
+ return (bits >> offset) & mask;
+}
+
+void ChannelAccess::setChannel (const IVec3& pos, deUint32 x)
+{
+ DE_ASSERT(pos[0] < m_size[0]);
+ DE_ASSERT(pos[1] < m_size[1]);
+ DE_ASSERT(pos[2] < m_size[2]);
+
+ const deInt32 bitOffset (m_bitOffset + tcu::dot(m_bitPitch, pos));
+ deUint8* const firstByte = ((deUint8*)m_data) + (bitOffset / 8);
+ const deUint32 byteCount = divRoundUp((bitOffset + m_channelSize) - 8u * (bitOffset / 8u), 8u);
+ const deUint32 mask (m_channelSize == 32u ? ~0x0u : (0x1u << m_channelSize) - 1u);
+ const deUint32 offset = bitOffset % 8;
+
+ const deUint32 bits = (x & mask) << offset;
+ deUint32 oldBits = 0;
+
+ deMemcpy(&oldBits, firstByte, byteCount);
+
+ {
+ const deUint32 newBits = bits | (oldBits & (~(mask << offset)));
+
+ deMemcpy(firstByte, &newBits, byteCount);
+ }
+}
+
+float ChannelAccess::getChannel (const IVec3& pos) const
+{
+ const deUint32 bits (getChannelUint(pos));
+
+ switch (m_channelClass)
+ {
+ case tcu::TEXTURECHANNELCLASS_UNSIGNED_FIXED_POINT:
+ return (float)bits / (float)(m_channelSize == 32 ? ~0x0u : ((0x1u << m_channelSize) - 1u));
+
+ case tcu::TEXTURECHANNELCLASS_UNSIGNED_INTEGER:
+ return (float)bits;
+
+ case tcu::TEXTURECHANNELCLASS_SIGNED_FIXED_POINT:
+ return de::max(-1.0f, (float)signExtend(bits, m_channelSize) / (float)((0x1u << (m_channelSize - 1u)) - 1u));
+
+ case tcu::TEXTURECHANNELCLASS_SIGNED_INTEGER:
+ return (float)signExtend(bits, m_channelSize);
+
+ case tcu::TEXTURECHANNELCLASS_FLOATING_POINT:
+ if (m_channelSize == 32)
+ return tcu::Float32(bits).asFloat();
+ else
+ {
+ DE_FATAL("Float type not supported");
+ return -1.0f;
+ }
+
+ default:
+ DE_FATAL("Unknown texture channel class");
+ return -1.0f;
+ }
+}
+
+Interval ChannelAccess::getChannel (const FloatFormat& conversionFormat,
+ const IVec3& pos) const
+{
+ const deUint32 bits (getChannelUint(pos));
+
+ switch (m_channelClass)
+ {
+ case tcu::TEXTURECHANNELCLASS_UNSIGNED_FIXED_POINT:
+ return conversionFormat.roundOut(conversionFormat.roundOut((double)bits, false)
+ / conversionFormat.roundOut((double)(m_channelSize == 32 ? ~0x0u : ((0x1u << m_channelSize) - 1u)), false), false);
+
+ case tcu::TEXTURECHANNELCLASS_UNSIGNED_INTEGER:
+ return conversionFormat.roundOut((double)bits, false);
+
+ case tcu::TEXTURECHANNELCLASS_SIGNED_FIXED_POINT:
+ {
+ const Interval result (conversionFormat.roundOut(conversionFormat.roundOut((double)signExtend(bits, m_channelSize), false)
+ / conversionFormat.roundOut((double)((0x1u << (m_channelSize - 1u)) - 1u), false), false));
+
+ return Interval(de::max(-1.0, result.lo()), de::max(-1.0, result.hi()));
+ }
+
+ case tcu::TEXTURECHANNELCLASS_SIGNED_INTEGER:
+ return conversionFormat.roundOut((double)signExtend(bits, m_channelSize), false);
+
+ case tcu::TEXTURECHANNELCLASS_FLOATING_POINT:
+ if (m_channelSize == 32)
+ return conversionFormat.roundOut(tcu::Float32(bits).asFloat(), false);
+ else
+ {
+ DE_FATAL("Float type not supported");
+ return Interval();
+ }
+
+ default:
+ DE_FATAL("Unknown texture channel class");
+ return Interval();
+ }
+}
+
+// \todo Taken from tcuTexture.cpp
+// \todo [2011-09-21 pyry] Move to tcutil?
+template <typename T>
+inline T convertSatRte (float f)
+{
+ // \note Doesn't work for 64-bit types
+ DE_STATIC_ASSERT(sizeof(T) < sizeof(deUint64));
+ DE_STATIC_ASSERT((-3 % 2 != 0) && (-4 % 2 == 0));
+
+ deInt64 minVal = std::numeric_limits<T>::min();
+ deInt64 maxVal = std::numeric_limits<T>::max();
+ float q = deFloatFrac(f);
+ deInt64 intVal = (deInt64)(f-q);
+
+ // Rounding.
+ if (q == 0.5f)
+ {
+ if (intVal % 2 != 0)
+ intVal++;
+ }
+ else if (q > 0.5f)
+ intVal++;
+ // else Don't add anything
+
+ // Saturate.
+ intVal = de::max(minVal, de::min(maxVal, intVal));
+
+ return (T)intVal;
+}
+
+void ChannelAccess::setChannel (const IVec3& pos, float x)
+{
+ DE_ASSERT(pos[0] < m_size[0]);
+ DE_ASSERT(pos[1] < m_size[1]);
+ DE_ASSERT(pos[2] < m_size[2]);
+
+ const deUint32 mask (m_channelSize == 32u ? ~0x0u : (0x1u << m_channelSize) - 1u);
+
+ switch (m_channelClass)
+ {
+ case tcu::TEXTURECHANNELCLASS_UNSIGNED_FIXED_POINT:
+ {
+ const deUint32 maxValue (mask);
+ const deUint32 value (de::min(maxValue, (deUint32)convertSatRte<deUint32>(x * (float)maxValue)));
+ setChannel(pos, value);
+ break;
+ }
+
+ case tcu::TEXTURECHANNELCLASS_SIGNED_FIXED_POINT:
+ {
+ const deInt32 range ((0x1u << (m_channelSize - 1u)) - 1u);
+ const deUint32 value ((deUint32)de::clamp<deInt32>(convertSatRte<deInt32>(x * (float)range), -range, range));
+ setChannel(pos, value);
+ break;
+ }
+
+ case tcu::TEXTURECHANNELCLASS_UNSIGNED_INTEGER:
+ {
+ const deUint32 maxValue (mask);
+ const deUint32 value (de::min(maxValue, (deUint32)x));
+ setChannel(pos, value);
+ break;
+ }
+
+ case tcu::TEXTURECHANNELCLASS_SIGNED_INTEGER:
+ {
+ const deInt32 minValue (-(deInt32)(1u << (m_channelSize - 1u)));
+ const deInt32 maxValue ((deInt32)((1u << (m_channelSize - 1u)) - 1u));
+ const deUint32 value ((deUint32)de::clamp((deInt32)x, minValue, maxValue));
+ setChannel(pos, value);
+ break;
+ }
+
+ case tcu::TEXTURECHANNELCLASS_FLOATING_POINT:
+ {
+ if (m_channelSize == 32)
+ {
+ const deUint32 value = tcu::Float32(x).bits();
+ setChannel(pos, value);
+ }
+ else
+ DE_FATAL("Float type not supported");
+ break;
+ }
+
+ default:
+ DE_FATAL("Unknown texture channel class");
+ }
+}
+
+ChannelAccess getChannelAccess (MultiPlaneImageData& data,
+ const vk::PlanarFormatDescription& formatInfo,
+ const UVec2& size,
+ int channelNdx)
+{
+ DE_ASSERT(formatInfo.hasChannelNdx(channelNdx));
+
+ const deUint32 planeNdx = formatInfo.channels[channelNdx].planeNdx;
+ const deUint32 valueOffsetBits = formatInfo.channels[channelNdx].offsetBits;
+ const deUint32 pixelStrideBytes = formatInfo.channels[channelNdx].strideBytes;
+ const deUint32 pixelStrideBits = pixelStrideBytes * 8;
+ const deUint8 sizeBits = formatInfo.channels[channelNdx].sizeBits;
+
+ DE_ASSERT(size.x() % formatInfo.planes[planeNdx].widthDivisor == 0);
+ DE_ASSERT(size.y() % formatInfo.planes[planeNdx].heightDivisor == 0);
+
+ deUint32 accessWidth = size.x() / formatInfo.planes[planeNdx].widthDivisor;
+ const deUint32 accessHeight = size.y() / formatInfo.planes[planeNdx].heightDivisor;
+ const deUint32 elementSizeBytes = formatInfo.planes[planeNdx].elementSizeBytes;
+
+ const deUint32 rowPitch = formatInfo.planes[planeNdx].elementSizeBytes * accessWidth;
+ const deUint32 rowPitchBits = rowPitch * 8;
+
+ if (pixelStrideBytes != elementSizeBytes)
+ {
+ DE_ASSERT(elementSizeBytes % pixelStrideBytes == 0);
+ accessWidth *= elementSizeBytes/pixelStrideBytes;
+ }
+
+ return ChannelAccess((tcu::TextureChannelClass)formatInfo.channels[channelNdx].type, sizeBits, IVec3(accessWidth, accessHeight, 1u), IVec3((int)pixelStrideBits, (int)rowPitchBits, 0), data.getPlanePtr(planeNdx), (deUint32)valueOffsetBits);
+}
+
+ShaderSpec createShaderSpec (void)
+{
+ ShaderSpec spec;
+
+ spec.globalDeclarations = "layout(set=" + de::toString((int)EXTRA_RESOURCES_DESCRIPTOR_SET_INDEX) + ", binding=0) uniform highp sampler2D u_sampler;";
+
+ spec.inputs.push_back(Symbol("uv", glu::VarType(glu::TYPE_FLOAT_VEC2, glu::PRECISION_HIGHP)));
+ spec.outputs.push_back(Symbol("o_color", glu::VarType(glu::TYPE_FLOAT_VEC4, glu::PRECISION_HIGHP)));
+
+ spec.source = "o_color = texture(u_sampler, uv);\n";
+
+ return spec;
+}
+
+void genTexCoords (std::vector<Vec2>& coords,
+ const UVec2& size)
+{
+ for (deUint32 y = 0; y < size.y() + (size.y() / 2); y++)
+ for (deUint32 x = 0; x < size.x() + (size.x() / 2); x++)
+ {
+ const float fx = (float)x;
+ const float fy = (float)y;
+
+ const float fw = (float)size.x();
+ const float fh = (float)size.y();
+
+ const float s = 1.5f * ((fx * 1.5f * fw + fx) / (1.5f * fw * 1.5f * fw)) - 0.25f;
+ const float t = 1.5f * ((fy * 1.5f * fh + fy) / (1.5f * fh * 1.5f * fh)) - 0.25f;
+
+ coords.push_back(Vec2(s, t));
+ }
+}
+
+Interval rangeExpandChroma (vk::VkSamplerYcbcrRangeKHR range,
+ const FloatFormat& conversionFormat,
+ const deUint32 bits,
+ const Interval& sample)
+{
+ const deUint32 values (0x1u << bits);
+
+ switch (range)
+ {
+ case vk::VK_SAMPLER_YCBCR_RANGE_ITU_FULL_KHR:
+ return conversionFormat.roundOut(sample - conversionFormat.roundOut(Interval((double)(0x1u << (bits - 1u)) / (double)((0x1u << bits) - 1u)), false), false);
+
+ case vk::VK_SAMPLER_YCBCR_RANGE_ITU_NARROW_KHR:
+ {
+ const Interval a (conversionFormat.roundOut(sample * Interval((double)(values - 1u)), false));
+ const Interval dividend (conversionFormat.roundOut(a - Interval((double)(128u * (0x1u << (bits - 8u)))), false));
+ const Interval divisor ((double)(224u * (0x1u << (bits - 8u))));
+ const Interval result (conversionFormat.roundOut(dividend / divisor, false));
+
+ return result;
+ }
+
+ default:
+ DE_FATAL("Unknown YCbCrRange");
+ return Interval();
+ }
+}
+
+Interval rangeExpandLuma (vk::VkSamplerYcbcrRangeKHR range,
+ const FloatFormat& conversionFormat,
+ const deUint32 bits,
+ const Interval& sample)
+{
+ const deUint32 values (0x1u << bits);
+
+ switch (range)
+ {
+ case vk::VK_SAMPLER_YCBCR_RANGE_ITU_FULL_KHR:
+ return conversionFormat.roundOut(sample, false);
+
+ case vk::VK_SAMPLER_YCBCR_RANGE_ITU_NARROW_KHR:
+ {
+ const Interval a (conversionFormat.roundOut(sample * Interval((double)(values - 1u)), false));
+ const Interval dividend (conversionFormat.roundOut(a - Interval((double)(16u * (0x1u << (bits - 8u)))), false));
+ const Interval divisor ((double)(219u * (0x1u << (bits - 8u))));
+ const Interval result (conversionFormat.roundOut(dividend / divisor, false));
+
+ return result;
+ }
+
+ default:
+ DE_FATAL("Unknown YCbCrRange");
+ return Interval();
+ }
+}
+
+Interval clampMaybe (const Interval& x,
+ double min,
+ double max)
+{
+ Interval result = x;
+
+ DE_ASSERT(min <= max);
+
+ if (x.lo() < min)
+ result = result | Interval(min);
+
+ if (x.hi() > max)
+ result = result | Interval(max);
+
+ return result;
+}
+
+void convertColor (vk::VkSamplerYcbcrModelConversionKHR colorModel,
+ vk::VkSamplerYcbcrRangeKHR range,
+ const FloatFormat& conversionFormat,
+ const UVec4& bitDepth,
+ const Interval input[4],
+ Interval output[4])
+{
+ switch (colorModel)
+ {
+ case vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_RGB_IDENTITY_KHR:
+ {
+ for (size_t ndx = 0; ndx < 4; ndx++)
+ output[ndx] = input[ndx];
+ break;
+ }
+
+ case vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_YCBCR_IDENTITY_KHR:
+ {
+ output[0] = clampMaybe(rangeExpandChroma(range, conversionFormat, bitDepth[0], input[0]), -0.5, 0.5);
+ output[1] = clampMaybe(rangeExpandLuma(range, conversionFormat, bitDepth[1], input[1]), 0.0, 1.0);
+ output[2] = clampMaybe(rangeExpandChroma(range, conversionFormat, bitDepth[2], input[2]), -0.5, 0.5);
+ output[3] = input[3];
+ break;
+ }
+
+ case vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_YCBCR_601_KHR:
+ {
+ const Interval y (rangeExpandLuma(range, conversionFormat, bitDepth[1], input[1]));
+ const Interval cr (rangeExpandChroma(range, conversionFormat, bitDepth[0], input[0]));
+ const Interval cb (rangeExpandChroma(range, conversionFormat, bitDepth[2], input[2]));
+
+ const Interval yClamped (clampMaybe(y, 0.0, 1.0));
+ const Interval crClamped (clampMaybe(cr, -0.5, 0.5));
+ const Interval cbClamped (clampMaybe(cb, -0.5, 0.5));
+
+ output[0] = conversionFormat.roundOut(yClamped + conversionFormat.roundOut(1.402 * crClamped, false), false);
+ output[1] = conversionFormat.roundOut(conversionFormat.roundOut(yClamped - conversionFormat.roundOut((0.202008 / 0.587) * cbClamped, false), false) - conversionFormat.roundOut((0.419198 / 0.587) * crClamped, false), false);
+ output[2] = conversionFormat.roundOut(yClamped + conversionFormat.roundOut(1.772 * cbClamped, false), false);
+ output[3] = input[3];
+ break;
+ }
+
+ case vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_YCBCR_709_KHR:
+ {
+ const Interval y (rangeExpandLuma(range, conversionFormat, bitDepth[1], input[1]));
+ const Interval cr (rangeExpandChroma(range, conversionFormat, bitDepth[0], input[0]));
+ const Interval cb (rangeExpandChroma(range, conversionFormat, bitDepth[2], input[2]));
+
+ const Interval yClamped (clampMaybe(y, 0.0, 1.0));
+ const Interval crClamped (clampMaybe(cr, -0.5, 0.5));
+ const Interval cbClamped (clampMaybe(cb, -0.5, 0.5));
+
+ output[0] = conversionFormat.roundOut(yClamped + conversionFormat.roundOut(1.5748 * crClamped, false), false);
+ output[1] = conversionFormat.roundOut(conversionFormat.roundOut(yClamped - conversionFormat.roundOut((0.13397432 / 0.7152) * cbClamped, false), false) - conversionFormat.roundOut((0.33480248 / 0.7152) * crClamped, false), false);
+ output[2] = conversionFormat.roundOut(yClamped + conversionFormat.roundOut(1.8556 * cbClamped, false), false);
+ output[3] = input[3];
+ break;
+ }
+
+ case vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_YCBCR_2020_KHR:
+ {
+ const Interval y (rangeExpandLuma(range, conversionFormat, bitDepth[1], input[1]));
+ const Interval cr (rangeExpandChroma(range, conversionFormat, bitDepth[0], input[0]));
+ const Interval cb (rangeExpandChroma(range, conversionFormat, bitDepth[2], input[2]));
+
+ const Interval yClamped (clampMaybe(y, 0.0, 1.0));
+ const Interval crClamped (clampMaybe(cr, -0.5, 0.5));
+ const Interval cbClamped (clampMaybe(cb, -0.5, 0.5));
+
+ output[0] = conversionFormat.roundOut(yClamped + conversionFormat.roundOut(1.4746 * crClamped, false), false);
+ output[1] = conversionFormat.roundOut(conversionFormat.roundOut(yClamped - conversionFormat.roundOut(conversionFormat.roundOut(0.11156702 / 0.6780, false) * cbClamped, false), false) - conversionFormat.roundOut(conversionFormat.roundOut(0.38737742 / 0.6780, false) * crClamped, false), false);
+ output[2] = conversionFormat.roundOut(yClamped + conversionFormat.roundOut(1.8814 * cbClamped, false), false);
+ output[3] = input[3];
+ break;
+ }
+
+ default:
+ DE_FATAL("Unknown YCbCrModel");
+ }
+
+ if (colorModel != vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_YCBCR_IDENTITY_KHR)
+ {
+ for (int ndx = 0; ndx < 3; ndx++)
+ output[ndx] = clampMaybe(output[ndx], 0.0, 1.0);
+ }
+}
+
+int mirror (int coord)
+{
+ return coord >= 0 ? coord : -(1 + coord);
+}
+
+int imod (int a, int b)
+{
+ int m = a % b;
+ return m < 0 ? m + b : m;
+}
+
+int wrap (vk::VkSamplerAddressMode addressMode,
+ int coord,
+ int size)
+{
+ switch (addressMode)
+ {
+ case vk::VK_SAMPLER_ADDRESS_MODE_MIRRORED_REPEAT:
+ return (size - 1) - mirror(imod(coord, 2 * size) - size);
+
+ case vk::VK_SAMPLER_ADDRESS_MODE_REPEAT:
+ return imod(coord, size);
+
+ case vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE:
+ return de::clamp(coord, 0, size - 1);
+
+ case vk::VK_SAMPLER_ADDRESS_MODE_MIRROR_CLAMP_TO_EDGE:
+ return de::clamp(mirror(coord), 0, size - 1);
+
+ default:
+ DE_FATAL("Unknown wrap mode");
+ return ~0;
+ }
+}
+
+Interval frac (const Interval& x)
+{
+ if (x.hi() - x.lo() >= 1.0)
+ return Interval(0.0, 1.0);
+ else
+ {
+ const Interval ret (deFrac(x.lo()), deFrac(x.hi()));
+
+ return ret;
+ }
+}
+
+Interval calculateUV (const FloatFormat& coordFormat,
+ const Interval& st,
+ const int size)
+{
+ return coordFormat.roundOut(coordFormat.roundOut(st, false) * Interval((double)size), false);
+}
+
+IVec2 calculateNearestIJRange (const FloatFormat& coordFormat,
+ const Interval& uv)
+{
+ const Interval ij (coordFormat.roundOut(coordFormat.roundOut(uv, false) - Interval(0.5), false));
+
+ return IVec2(deRoundToInt32(ij.lo() - coordFormat.ulp(ij.lo(), 1)), deRoundToInt32(ij.hi() + coordFormat.ulp(ij.hi(), 1)));
+}
+
+// Calculate range of pixel coordinates that can be used as lower coordinate for linear sampling
+IVec2 calculateLinearIJRange (const FloatFormat& coordFormat,
+ const Interval& uv)
+{
+ const Interval ij (coordFormat.roundOut(uv - Interval(0.5), false));
+
+ return IVec2(deFloorToInt32(ij.lo()), deFloorToInt32(ij.hi()));
+}
+
+Interval calculateAB (const deUint32 subTexelPrecisionBits,
+ const Interval& uv,
+ int ij)
+{
+ const deUint32 subdivisions = 0x1u << subTexelPrecisionBits;
+ const Interval ab (frac((uv - 0.5) & Interval((double)ij, (double)(ij + 1))));
+ const Interval gridAB (ab * Interval(subdivisions));
+ const Interval rounded (de::max(deFloor(gridAB.lo()) / subdivisions, 0.0) , de::min(deCeil(gridAB.hi()) / subdivisions, 1.0));
+
+ return rounded;
+}
+
+Interval lookupWrapped (const ChannelAccess& access,
+ const FloatFormat& conversionFormat,
+ vk::VkSamplerAddressMode addressModeU,
+ vk::VkSamplerAddressMode addressModeV,
+ const IVec2& coord)
+{
+ return access.getChannel(conversionFormat, IVec3(wrap(addressModeU, coord.x(), access.getSize().x()), wrap(addressModeV, coord.y(), access.getSize().y()), 0));
+}
+
+Interval linearInterpolate (const FloatFormat& filteringFormat,
+ const Interval& a,
+ const Interval& b,
+ const Interval& p00,
+ const Interval& p10,
+ const Interval& p01,
+ const Interval& p11)
+{
+ const Interval p[4] =
+ {
+ p00,
+ p10,
+ p01,
+ p11
+ };
+ Interval result (0.0);
+
+ for (size_t ndx = 0; ndx < 4; ndx++)
+ {
+ const Interval weightA (filteringFormat.roundOut((ndx % 2) == 0 ? (1.0 - a) : a, false));
+ const Interval weightB (filteringFormat.roundOut((ndx / 2) == 0 ? (1.0 - b) : b, false));
+ const Interval weight (filteringFormat.roundOut(weightA * weightB, false));
+
+ result = filteringFormat.roundOut(result + filteringFormat.roundOut(p[ndx] * weight, false), false);
+ }
+
+ return result;
+}
+
+Interval calculateImplicitChromaUV (const FloatFormat& coordFormat,
+ vk::VkChromaLocationKHR offset,
+ const Interval& uv)
+{
+ if (offset == vk::VK_CHROMA_LOCATION_COSITED_EVEN_KHR)
+ return coordFormat.roundOut(0.5 * coordFormat.roundOut(uv + 0.5, false), false);
+ else
+ return coordFormat.roundOut(0.5 * uv, false);
+}
+
+Interval linearSample (const ChannelAccess& access,
+ const FloatFormat& conversionFormat,
+ const FloatFormat& filteringFormat,
+ vk::VkSamplerAddressMode addressModeU,
+ vk::VkSamplerAddressMode addressModeV,
+ const IVec2& coord,
+ const Interval& a,
+ const Interval& b)
+{
+ return linearInterpolate(filteringFormat, a, b,
+ lookupWrapped(access, conversionFormat, addressModeU, addressModeV, coord + IVec2(0, 0)),
+ lookupWrapped(access, conversionFormat, addressModeU, addressModeV, coord + IVec2(1, 0)),
+ lookupWrapped(access, conversionFormat, addressModeU, addressModeV, coord + IVec2(0, 1)),
+ lookupWrapped(access, conversionFormat, addressModeU, addressModeV, coord + IVec2(1, 1)));
+}
+
+int divFloor (int a, int b)
+{
+ if (a % b == 0)
+ return a / b;
+ else if (a > 0)
+ return a / b;
+ else
+ return (a / b) - 1;
+}
+
+Interval reconstructLinearXChromaSample (const FloatFormat& filteringFormat,
+ const FloatFormat& conversionFormat,
+ vk::VkChromaLocationKHR offset,
+ vk::VkSamplerAddressMode addressModeU,
+ vk::VkSamplerAddressMode addressModeV,
+ const ChannelAccess& access,
+ int i,
+ int j)
+{
+ const int subI = divFloor(i, 2);
+
+ if (offset == vk::VK_CHROMA_LOCATION_COSITED_EVEN_KHR)
+ {
+ if (i % 2 == 0)
+ return lookupWrapped(access, conversionFormat, addressModeU, addressModeV, IVec2(subI, j));
+ else
+ {
+ const Interval a (filteringFormat.roundOut(0.5 * lookupWrapped(access, conversionFormat, addressModeU, addressModeV, IVec2(subI, j)), false));
+ const Interval b (filteringFormat.roundOut(0.5 * lookupWrapped(access, conversionFormat, addressModeU, addressModeV, IVec2(subI + 1, j)), false));
+
+ return filteringFormat.roundOut(a + b, false);
+ }
+ }
+ else if (offset == vk::VK_CHROMA_LOCATION_MIDPOINT_KHR)
+ {
+ if (i % 2 == 0)
+ {
+ const Interval a (filteringFormat.roundOut(0.25 * lookupWrapped(access, conversionFormat, addressModeU, addressModeV, IVec2(subI - 1, j)), false));
+ const Interval b (filteringFormat.roundOut(0.75 * lookupWrapped(access, conversionFormat, addressModeU, addressModeV, IVec2(subI, j)), false));
+
+ return filteringFormat.roundOut(a + b, false);
+ }
+ else
+ {
+ const Interval a (filteringFormat.roundOut(0.25 * lookupWrapped(access, conversionFormat, addressModeU, addressModeV, IVec2(subI + 1, j)), false));
+ const Interval b (filteringFormat.roundOut(0.75 * lookupWrapped(access, conversionFormat, addressModeU, addressModeV, IVec2(subI, j)), false));
+
+ return filteringFormat.roundOut(a + b, false);
+ }
+ }
+ else
+ {
+ DE_FATAL("Unknown sample location");
+ return Interval();
+ }
+}
+
+Interval reconstructLinearXYChromaSample (const FloatFormat& filteringFormat,
+ const FloatFormat& conversionFormat,
+ vk::VkChromaLocationKHR xOffset,
+ vk::VkChromaLocationKHR yOffset,
+ vk::VkSamplerAddressMode addressModeU,
+ vk::VkSamplerAddressMode addressModeV,
+ const ChannelAccess& access,
+ int i,
+ int j)
+{
+ const int subI = xOffset == vk::VK_CHROMA_LOCATION_COSITED_EVEN_KHR
+ ? divFloor(i, 2)
+ : (i % 2 == 0 ? divFloor(i, 2) - 1 : divFloor(i, 2));
+ const int subJ = yOffset == vk::VK_CHROMA_LOCATION_COSITED_EVEN_KHR
+ ? divFloor(j, 2)
+ : (j % 2 == 0 ? divFloor(j, 2) - 1 : divFloor(j, 2));
+
+ const double a = xOffset == vk::VK_CHROMA_LOCATION_COSITED_EVEN_KHR
+ ? (i % 2 == 0 ? 0.0 : 0.5)
+ : (i % 2 == 0 ? 0.25 : 0.75);
+ const double b = yOffset == vk::VK_CHROMA_LOCATION_COSITED_EVEN_KHR
+ ? (j % 2 == 0 ? 0.0 : 0.5)
+ : (j % 2 == 0 ? 0.25 : 0.75);
+
+ return linearInterpolate(filteringFormat, a, b,
+ lookupWrapped(access, conversionFormat, addressModeU, addressModeV, IVec2(subI, subJ)),
+ lookupWrapped(access, conversionFormat, addressModeU, addressModeV, IVec2(subI + 1, subJ)),
+ lookupWrapped(access, conversionFormat, addressModeU, addressModeV, IVec2(subI, subJ + 1)),
+ lookupWrapped(access, conversionFormat, addressModeU, addressModeV, IVec2(subI + 1, subJ + 1)));
+}
+
+const ChannelAccess& swizzle (vk::VkComponentSwizzle swizzle,
+ const ChannelAccess& identityPlane,
+ const ChannelAccess& rPlane,
+ const ChannelAccess& gPlane,
+ const ChannelAccess& bPlane,
+ const ChannelAccess& aPlane)
+{
+ switch (swizzle)
+ {
+ case vk::VK_COMPONENT_SWIZZLE_IDENTITY: return identityPlane;
+ case vk::VK_COMPONENT_SWIZZLE_R: return rPlane;
+ case vk::VK_COMPONENT_SWIZZLE_G: return gPlane;
+ case vk::VK_COMPONENT_SWIZZLE_B: return bPlane;
+ case vk::VK_COMPONENT_SWIZZLE_A: return aPlane;
+
+ default:
+ DE_FATAL("Unsupported swizzle");
+ return identityPlane;
+ }
+}
+
+void calculateBounds (const ChannelAccess& rPlane,
+ const ChannelAccess& gPlane,
+ const ChannelAccess& bPlane,
+ const ChannelAccess& aPlane,
+ const UVec4& bitDepth,
+ const vector<Vec2>& sts,
+ const FloatFormat& filteringFormat,
+ const FloatFormat& conversionFormat,
+ const deUint32 subTexelPrecisionBits,
+ vk::VkFilter filter,
+ vk::VkSamplerYcbcrModelConversionKHR colorModel,
+ vk::VkSamplerYcbcrRangeKHR range,
+ vk::VkFilter chromaFilter,
+ vk::VkChromaLocationKHR xChromaOffset,
+ vk::VkChromaLocationKHR yChromaOffset,
+ const vk::VkComponentMapping& componentMapping,
+ bool explicitReconstruction,
+ vk::VkSamplerAddressMode addressModeU,
+ vk::VkSamplerAddressMode addressModeV,
+ std::vector<Vec4>& minBounds,
+ std::vector<Vec4>& maxBounds,
+ std::vector<Vec4>& uvBounds,
+ std::vector<IVec4>& ijBounds)
+{
+ const FloatFormat highp (-126, 127, 23, true,
+ tcu::MAYBE, // subnormals
+ tcu::YES, // infinities
+ tcu::MAYBE); // NaN
+ const FloatFormat coordFormat (-32, 32, 16, true);
+ const ChannelAccess& rAccess (swizzle(componentMapping.r, rPlane, rPlane, gPlane, bPlane, aPlane));
+ const ChannelAccess& gAccess (swizzle(componentMapping.g, gPlane, rPlane, gPlane, bPlane, aPlane));
+ const ChannelAccess& bAccess (swizzle(componentMapping.b, bPlane, rPlane, gPlane, bPlane, aPlane));
+ const ChannelAccess& aAccess (swizzle(componentMapping.a, aPlane, rPlane, gPlane, bPlane, aPlane));
+
+ const bool subsampledX = gAccess.getSize().x() > rAccess.getSize().x();
+ const bool subsampledY = gAccess.getSize().y() > rAccess.getSize().y();
+
+ minBounds.resize(sts.size(), Vec4(TCU_INFINITY));
+ maxBounds.resize(sts.size(), Vec4(-TCU_INFINITY));
+
+ uvBounds.resize(sts.size(), Vec4(TCU_INFINITY, -TCU_INFINITY, TCU_INFINITY, -TCU_INFINITY));
+ ijBounds.resize(sts.size(), IVec4(0x7FFFFFFF, -1 -0x7FFFFFFF, 0x7FFFFFFF, -1 -0x7FFFFFFF));
+
+ // Chroma plane sizes must match
+ DE_ASSERT(rAccess.getSize() == bAccess.getSize());
+
+ // Luma plane sizes must match
+ DE_ASSERT(gAccess.getSize() == aAccess.getSize());
+
+ // Luma plane size must match chroma plane or be twice as big
+ DE_ASSERT(rAccess.getSize().x() == gAccess.getSize().x() || 2 * rAccess.getSize().x() == gAccess.getSize().x());
+ DE_ASSERT(rAccess.getSize().y() == gAccess.getSize().y() || 2 * rAccess.getSize().y() == gAccess.getSize().y());
+
+ for (size_t ndx = 0; ndx < sts.size(); ndx++)
+ {
+ const Vec2 st (sts[ndx]);
+ Interval bounds[4];
+
+ const Interval u (calculateUV(coordFormat, st[0], gAccess.getSize().x()));
+ const Interval v (calculateUV(coordFormat, st[1], gAccess.getSize().y()));
+
+ uvBounds[ndx][0] = (float)u.lo();
+ uvBounds[ndx][1] = (float)u.hi();
+
+ uvBounds[ndx][2] = (float)v.lo();
+ uvBounds[ndx][3] = (float)v.hi();
+
+ if (filter == vk::VK_FILTER_NEAREST)
+ {
+ const IVec2 iRange (calculateNearestIJRange(coordFormat, u));
+ const IVec2 jRange (calculateNearestIJRange(coordFormat, v));
+
+ ijBounds[ndx][0] = iRange[0];
+ ijBounds[ndx][1] = iRange[1];
+
+ ijBounds[ndx][2] = jRange[0];
+ ijBounds[ndx][3] = jRange[1];
+
+ for (int j = jRange.x(); j <= jRange.y(); j++)
+ for (int i = iRange.x(); i <= iRange.y(); i++)
+ {
+ const Interval gValue (lookupWrapped(gAccess, conversionFormat, addressModeU, addressModeV, IVec2(i, j)));
+ const Interval aValue (lookupWrapped(aAccess, conversionFormat, addressModeU, addressModeV, IVec2(i, j)));
+
+ if (subsampledX || subsampledY)
+ {
+ if (explicitReconstruction)
+ {
+ if (chromaFilter == vk::VK_FILTER_NEAREST)
+ {
+ // Nearest, Reconstructed chroma with explicit nearest filtering
+ const int subI = subsampledX ? i / 2 : i;
+ const int subJ = subsampledY ? j / 2 : j;
+ const Interval srcColor[] =
+ {
+ lookupWrapped(rAccess, conversionFormat, addressModeU, addressModeV, IVec2(subI, subJ)),
+ gValue,
+ lookupWrapped(bAccess, conversionFormat, addressModeU, addressModeV, IVec2(subI, subJ)),
+ aValue
+ };
+ Interval dstColor[4];
+
+ convertColor(colorModel, range, conversionFormat, bitDepth, srcColor, dstColor);
+
+ for (size_t compNdx = 0; compNdx < 4; compNdx++)
+ bounds[compNdx] |= highp.roundOut(dstColor[compNdx], false);
+ }
+ else if (chromaFilter == vk::VK_FILTER_LINEAR)
+ {
+ if (subsampledX && subsampledY)
+ {
+ // Nearest, Reconstructed both chroma samples with explicit linear filtering
+ const Interval rValue (reconstructLinearXYChromaSample(filteringFormat, conversionFormat, xChromaOffset, yChromaOffset, addressModeU, addressModeV, rAccess, i, j));
+ const Interval bValue (reconstructLinearXYChromaSample(filteringFormat, conversionFormat, xChromaOffset, yChromaOffset, addressModeU, addressModeV, bAccess, i, j));
+ const Interval srcColor[] =
+ {
+ rValue,
+ gValue,
+ bValue,
+ aValue
+ };
+ Interval dstColor[4];
+
+ convertColor(colorModel, range, conversionFormat, bitDepth, srcColor, dstColor);
+
+ for (size_t compNdx = 0; compNdx < 4; compNdx++)
+ bounds[compNdx] |= highp.roundOut(dstColor[compNdx], false);
+ }
+ else if (subsampledX)
+ {
+ // Nearest, Reconstructed x chroma samples with explicit linear filtering
+ const Interval rValue (reconstructLinearXChromaSample(filteringFormat, conversionFormat, xChromaOffset, addressModeU, addressModeV, rAccess, i, j));
+ const Interval bValue (reconstructLinearXChromaSample(filteringFormat, conversionFormat, xChromaOffset, addressModeU, addressModeV, bAccess, i, j));
+ const Interval srcColor[] =
+ {
+ rValue,
+ gValue,
+ bValue,
+ aValue
+ };
+ Interval dstColor[4];
+
+ convertColor(colorModel, range, conversionFormat, bitDepth, srcColor, dstColor);
+
+ for (size_t compNdx = 0; compNdx < 4; compNdx++)
+ bounds[compNdx] |= highp.roundOut(dstColor[compNdx], false);
+ }
+ else
+ DE_FATAL("Unexpected chroma reconstruction");
+ }
+ else
+ DE_FATAL("Unknown filter");
+ }
+ else
+ {
+ const Interval chromaU (subsampledX ? calculateImplicitChromaUV(coordFormat, xChromaOffset, u) : u);
+ const Interval chromaV (subsampledY ? calculateImplicitChromaUV(coordFormat, yChromaOffset, v) : v);
+
+ if (chromaFilter == vk::VK_FILTER_NEAREST)
+ {
+ // Nearest, reconstructed chroma samples with implicit nearest filtering
+ const IVec2 chromaIRange (subsampledX ? calculateNearestIJRange(coordFormat, chromaU) : IVec2(i, i));
+ const IVec2 chromaJRange (subsampledY ? calculateNearestIJRange(coordFormat, chromaV) : IVec2(j, j));
+
+ for (int chromaJ = chromaJRange.x(); chromaJ <= chromaJRange.y(); chromaJ++)
+ for (int chromaI = chromaIRange.x(); chromaI <= chromaIRange.x(); chromaI++)
+ {
+ const Interval srcColor[] =
+ {
+ lookupWrapped(rAccess, conversionFormat, addressModeU, addressModeV, IVec2(chromaI, chromaJ)),
+ gValue,
+ lookupWrapped(bAccess, conversionFormat, addressModeU, addressModeV, IVec2(chromaI, chromaJ)),
+ aValue
+ };
+ Interval dstColor[4];
+
+ convertColor(colorModel, range, conversionFormat, bitDepth, srcColor, dstColor);
+
+ for (size_t compNdx = 0; compNdx < 4; compNdx++)
+ bounds[compNdx] |= highp.roundOut(dstColor[compNdx], false);
+ }
+ }
+ else if (chromaFilter == vk::VK_FILTER_LINEAR)
+ {
+ // Nearest, reconstructed chroma samples with implicit linear filtering
+ const IVec2 chromaIRange (subsampledX ? calculateLinearIJRange(coordFormat, chromaU) : IVec2(i, i));
+ const IVec2 chromaJRange (subsampledY ? calculateLinearIJRange(coordFormat, chromaV) : IVec2(j, j));
+
+ for (int chromaJ = chromaJRange.x(); chromaJ <= chromaJRange.y(); chromaJ++)
+ for (int chromaI = chromaIRange.x(); chromaI <= chromaIRange.x(); chromaI++)
+ {
+ const Interval chromaA (calculateAB(subTexelPrecisionBits, chromaU, chromaI));
+ const Interval chromaB (calculateAB(subTexelPrecisionBits, chromaV, chromaJ));
+
+ const Interval srcColor[] =
+ {
+ linearSample(rAccess, conversionFormat, filteringFormat, addressModeU, addressModeV, IVec2(chromaI, chromaJ), chromaA, chromaB),
+ gValue,
+ linearSample(bAccess, conversionFormat, filteringFormat, addressModeU, addressModeV, IVec2(chromaI, chromaJ), chromaA, chromaB),
+ aValue
+ };
+ Interval dstColor[4];
+
+ convertColor(colorModel, range, conversionFormat, bitDepth, srcColor, dstColor);
+
+ for (size_t compNdx = 0; compNdx < 4; compNdx++)
+ bounds[compNdx] |= highp.roundOut(dstColor[compNdx], false);
+ }
+ }
+ else
+ DE_FATAL("Unknown filter");
+ }
+ }
+ else
+ {
+ // Linear, no chroma subsampling
+ const Interval srcColor[] =
+ {
+ lookupWrapped(rAccess, conversionFormat, addressModeU, addressModeV, IVec2(i, j)),
+ gValue,
+ lookupWrapped(bAccess, conversionFormat, addressModeU, addressModeV, IVec2(i, j)),
+ aValue
+ };
+ Interval dstColor[4];
+
+ convertColor(colorModel, range, conversionFormat, bitDepth, srcColor, dstColor);
+
+ for (size_t compNdx = 0; compNdx < 4; compNdx++)
+ bounds[compNdx] |= highp.roundOut(dstColor[compNdx], false);
+ }
+ }
+ }
+ else if (filter == vk::VK_FILTER_LINEAR)
+ {
+ const IVec2 iRange (calculateLinearIJRange(coordFormat, u));
+ const IVec2 jRange (calculateLinearIJRange(coordFormat, v));
+
+ ijBounds[ndx][0] = iRange[0];
+ ijBounds[ndx][1] = iRange[1];
+
+ ijBounds[ndx][2] = jRange[0];
+ ijBounds[ndx][3] = jRange[1];
+
+ for (int j = jRange.x(); j <= jRange.y(); j++)
+ for (int i = iRange.x(); i <= iRange.y(); i++)
+ {
+ const Interval lumaA (calculateAB(subTexelPrecisionBits, u, i));
+ const Interval lumaB (calculateAB(subTexelPrecisionBits, v, j));
+
+ const Interval gValue (linearSample(gAccess, conversionFormat, filteringFormat, addressModeU, addressModeV, IVec2(i, j), lumaA, lumaB));
+ const Interval aValue (linearSample(aAccess, conversionFormat, filteringFormat, addressModeU, addressModeV, IVec2(i, j), lumaA, lumaB));
+
+ if (subsampledX || subsampledY)
+ {
+ if (explicitReconstruction)
+ {
+ if (chromaFilter == vk::VK_FILTER_NEAREST)
+ {
+ const Interval srcColor[] =
+ {
+ linearInterpolate(filteringFormat, lumaA, lumaB,
+ lookupWrapped(rAccess, conversionFormat, addressModeU, addressModeV, IVec2(i / (subsampledX ? 2 : 1), j / (subsampledY ? 2 : 1))),
+ lookupWrapped(rAccess, conversionFormat, addressModeU, addressModeV, IVec2((i + 1) / (subsampledX ? 2 : 1), j / (subsampledY ? 2 : 1))),
+ lookupWrapped(rAccess, conversionFormat, addressModeU, addressModeV, IVec2(i / (subsampledX ? 2 : 1), (j + 1) / (subsampledY ? 2 : 1))),
+ lookupWrapped(rAccess, conversionFormat, addressModeU, addressModeV, IVec2((i + 1) / (subsampledX ? 2 : 1), (j + 1) / (subsampledY ? 2 : 1)))),
+ gValue,
+ linearInterpolate(filteringFormat, lumaA, lumaB,
+ lookupWrapped(bAccess, conversionFormat, addressModeU, addressModeV, IVec2(i / (subsampledX ? 2 : 1), j / (subsampledY ? 2 : 1))),
+ lookupWrapped(bAccess, conversionFormat, addressModeU, addressModeV, IVec2((i + 1) / (subsampledX ? 2 : 1), j / (subsampledY ? 2 : 1))),
+ lookupWrapped(bAccess, conversionFormat, addressModeU, addressModeV, IVec2(i / (subsampledX ? 2 : 1), (j + 1) / (subsampledY ? 2 : 1))),
+ lookupWrapped(bAccess, conversionFormat, addressModeU, addressModeV, IVec2((i + 1) / (subsampledX ? 2 : 1), (j + 1) / (subsampledY ? 2 : 1)))),
+ aValue
+ };
+ Interval dstColor[4];
+
+ convertColor(colorModel, range, conversionFormat, bitDepth, srcColor, dstColor);
+
+ for (size_t compNdx = 0; compNdx < 4; compNdx++)
+ bounds[compNdx] |= highp.roundOut(dstColor[compNdx], false);
+ }
+ else if (chromaFilter == vk::VK_FILTER_LINEAR)
+ {
+ if (subsampledX && subsampledY)
+ {
+ // Linear, Reconstructed xx chroma samples with explicit linear filtering
+ const Interval rValue (linearInterpolate(filteringFormat, lumaA, lumaB,
+ reconstructLinearXYChromaSample(filteringFormat, conversionFormat, xChromaOffset, yChromaOffset, addressModeU, addressModeV, rAccess, i, j),
+ reconstructLinearXYChromaSample(filteringFormat, conversionFormat, xChromaOffset, yChromaOffset, addressModeU, addressModeV, rAccess, i + 1, j),
+ reconstructLinearXYChromaSample(filteringFormat, conversionFormat, xChromaOffset, yChromaOffset, addressModeU, addressModeV, rAccess, i , j + 1),
+ reconstructLinearXYChromaSample(filteringFormat, conversionFormat, xChromaOffset, yChromaOffset, addressModeU, addressModeV, rAccess, i + 1, j + 1)));
+ const Interval bValue (linearInterpolate(filteringFormat, lumaA, lumaB,
+ reconstructLinearXYChromaSample(filteringFormat, conversionFormat, xChromaOffset, yChromaOffset, addressModeU, addressModeV, bAccess, i, j),
+ reconstructLinearXYChromaSample(filteringFormat, conversionFormat, xChromaOffset, yChromaOffset, addressModeU, addressModeV, bAccess, i + 1, j),
+ reconstructLinearXYChromaSample(filteringFormat, conversionFormat, xChromaOffset, yChromaOffset, addressModeU, addressModeV, bAccess, i , j + 1),
+ reconstructLinearXYChromaSample(filteringFormat, conversionFormat, xChromaOffset, yChromaOffset, addressModeU, addressModeV, bAccess, i + 1, j + 1)));
+ const Interval srcColor[] =
+ {
+ rValue,
+ gValue,
+ bValue,
+ aValue
+ };
+ Interval dstColor[4];
+
+ convertColor(colorModel, range, conversionFormat, bitDepth, srcColor, dstColor);
+
+ for (size_t compNdx = 0; compNdx < 4; compNdx++)
+ bounds[compNdx] |= highp.roundOut(dstColor[compNdx], false);
+
+ }
+ else if (subsampledX)
+ {
+ // Linear, Reconstructed x chroma samples with explicit linear filtering
+ const Interval rValue (linearInterpolate(filteringFormat, lumaA, lumaB,
+ reconstructLinearXChromaSample(filteringFormat, conversionFormat, xChromaOffset, addressModeU, addressModeV, rAccess, i, j),
+ reconstructLinearXChromaSample(filteringFormat, conversionFormat, xChromaOffset, addressModeU, addressModeV, rAccess, i + 1, j),
+ reconstructLinearXChromaSample(filteringFormat, conversionFormat, xChromaOffset, addressModeU, addressModeV, rAccess, i , j + 1),
+ reconstructLinearXChromaSample(filteringFormat, conversionFormat, xChromaOffset, addressModeU, addressModeV, rAccess, i + 1, j + 1)));
+ const Interval bValue (linearInterpolate(filteringFormat, lumaA, lumaB,
+ reconstructLinearXChromaSample(filteringFormat, conversionFormat, xChromaOffset, addressModeU, addressModeV, bAccess, i, j),
+ reconstructLinearXChromaSample(filteringFormat, conversionFormat, xChromaOffset, addressModeU, addressModeV, bAccess, i + 1, j),
+ reconstructLinearXChromaSample(filteringFormat, conversionFormat, xChromaOffset, addressModeU, addressModeV, bAccess, i , j + 1),
+ reconstructLinearXChromaSample(filteringFormat, conversionFormat, xChromaOffset, addressModeU, addressModeV, bAccess, i + 1, j + 1)));
+ const Interval srcColor[] =
+ {
+ rValue,
+ gValue,
+ bValue,
+ aValue
+ };
+ Interval dstColor[4];
+
+ convertColor(colorModel, range, conversionFormat, bitDepth, srcColor, dstColor);
+
+ for (size_t compNdx = 0; compNdx < 4; compNdx++)
+ bounds[compNdx] |= highp.roundOut(dstColor[compNdx], false);
+ }
+ else
+ DE_FATAL("Unknown subsampling config");
+ }
+ else
+ DE_FATAL("Unknown chroma filter");
+ }
+ else
+ {
+ const Interval chromaU (subsampledX ? calculateImplicitChromaUV(coordFormat, xChromaOffset, u) : u);
+ const Interval chromaV (subsampledY ? calculateImplicitChromaUV(coordFormat, yChromaOffset, v) : v);
+
+ if (chromaFilter == vk::VK_FILTER_NEAREST)
+ {
+ const IVec2 chromaIRange (calculateNearestIJRange(coordFormat, chromaU));
+ const IVec2 chromaJRange (calculateNearestIJRange(coordFormat, chromaV));
+
+ for (int chromaJ = chromaJRange.x(); chromaJ <= chromaJRange.y(); chromaJ++)
+ for (int chromaI = chromaIRange.x(); chromaI <= chromaIRange.x(); chromaI++)
+ {
+ const Interval srcColor[] =
+ {
+ lookupWrapped(rAccess, conversionFormat, addressModeU, addressModeV, IVec2(chromaI, chromaJ)),
+ gValue,
+ lookupWrapped(bAccess, conversionFormat, addressModeU, addressModeV, IVec2(chromaI, chromaJ)),
+ aValue
+ };
+ Interval dstColor[4];
+
+ convertColor(colorModel, range, conversionFormat, bitDepth, srcColor, dstColor);
+
+ for (size_t compNdx = 0; compNdx < 4; compNdx++)
+ bounds[compNdx] |= highp.roundOut(dstColor[compNdx], false);
+ }
+ }
+ else if (chromaFilter == vk::VK_FILTER_LINEAR)
+ {
+ const IVec2 chromaIRange (calculateNearestIJRange(coordFormat, chromaU));
+ const IVec2 chromaJRange (calculateNearestIJRange(coordFormat, chromaV));
+
+ for (int chromaJ = chromaJRange.x(); chromaJ <= chromaJRange.y(); chromaJ++)
+ for (int chromaI = chromaIRange.x(); chromaI <= chromaIRange.x(); chromaI++)
+ {
+ const Interval chromaA (calculateAB(subTexelPrecisionBits, chromaU, chromaI));
+ const Interval chromaB (calculateAB(subTexelPrecisionBits, chromaV, chromaJ));
+
+ const Interval rValue (linearSample(rAccess, conversionFormat, filteringFormat, addressModeU, addressModeV, IVec2(chromaI, chromaJ), chromaA, chromaB));
+ const Interval bValue (linearSample(bAccess, conversionFormat, filteringFormat, addressModeU, addressModeV, IVec2(chromaI, chromaJ), chromaA, chromaB));
+
+ const Interval srcColor[] =
+ {
+ rValue,
+ gValue,
+ bValue,
+ aValue
+ };
+ Interval dstColor[4];
+ convertColor(colorModel, range, conversionFormat, bitDepth, srcColor, dstColor);
+
+ for (size_t compNdx = 0; compNdx < 4; compNdx++)
+ bounds[compNdx] |= highp.roundOut(dstColor[compNdx], false);
+ }
+ }
+ else
+ DE_FATAL("Unknown chroma filter");
+ }
+ }
+ else
+ {
+ const Interval chromaA (lumaA);
+ const Interval chromaB (lumaB);
+ const Interval rValue (linearSample(rAccess, conversionFormat, filteringFormat, addressModeU, addressModeV, IVec2(i, j), chromaA, chromaB));
+ const Interval bValue (linearSample(bAccess, conversionFormat, filteringFormat, addressModeU, addressModeV, IVec2(i, j), chromaA, chromaB));
+ const Interval srcColor[] =
+ {
+ rValue,
+ gValue,
+ bValue,
+ aValue
+ };
+ Interval dstColor[4];
+
+ convertColor(colorModel, range, conversionFormat, bitDepth, srcColor, dstColor);
+
+ for (size_t compNdx = 0; compNdx < 4; compNdx++)
+ bounds[compNdx] |= highp.roundOut(dstColor[compNdx], false);
+ }
+ }
+ }
+ else
+ DE_FATAL("Unknown filter");
+
+ minBounds[ndx] = Vec4((float)bounds[0].lo(), (float)bounds[1].lo(), (float)bounds[2].lo(), (float)bounds[3].lo());
+ maxBounds[ndx] = Vec4((float)bounds[0].hi(), (float)bounds[1].hi(), (float)bounds[2].hi(), (float)bounds[3].hi());
+ }
+}
+
+struct TestConfig
+{
+ TestConfig (glu::ShaderType shaderType_,
+ vk::VkFormat format_,
+ vk::VkImageTiling imageTiling_,
+ vk::VkFilter textureFilter_,
+ vk::VkSamplerAddressMode addressModeU_,
+ vk::VkSamplerAddressMode addressModeV_,
+
+ vk::VkFilter chromaFilter_,
+ vk::VkChromaLocationKHR xChromaOffset_,
+ vk::VkChromaLocationKHR yChromaOffset_,
+ bool explicitReconstruction_,
+ bool disjoint_,
+
+ vk::VkSamplerYcbcrRangeKHR colorRange_,
+ vk::VkSamplerYcbcrModelConversionKHR colorModel_,
+ vk::VkComponentMapping componentMapping_)
+ : shaderType (shaderType_)
+ , format (format_)
+ , imageTiling (imageTiling_)
+ , textureFilter (textureFilter_)
+ , addressModeU (addressModeU_)
+ , addressModeV (addressModeV_)
+
+ , chromaFilter (chromaFilter_)
+ , xChromaOffset (xChromaOffset_)
+ , yChromaOffset (yChromaOffset_)
+ , explicitReconstruction (explicitReconstruction_)
+ , disjoint (disjoint_)
+
+ , colorRange (colorRange_)
+ , colorModel (colorModel_)
+ , componentMapping (componentMapping_)
+ {
+ }
+
+ glu::ShaderType shaderType;
+ vk::VkFormat format;
+ vk::VkImageTiling imageTiling;
+ vk::VkFilter textureFilter;
+ vk::VkSamplerAddressMode addressModeU;
+ vk::VkSamplerAddressMode addressModeV;
+
+ vk::VkFilter chromaFilter;
+ vk::VkChromaLocationKHR xChromaOffset;
+ vk::VkChromaLocationKHR yChromaOffset;
+ bool explicitReconstruction;
+ bool disjoint;
+
+ vk::VkSamplerYcbcrRangeKHR colorRange;
+ vk::VkSamplerYcbcrModelConversionKHR colorModel;
+ vk::VkComponentMapping componentMapping;
+};
+
+vk::Move<vk::VkDescriptorSetLayout> createDescriptorSetLayout (const vk::DeviceInterface& vkd,
+ vk::VkDevice device,
+ vk::VkSampler sampler)
+{
+ const vk::VkDescriptorSetLayoutBinding layoutBindings[] =
+ {
+ {
+ 0u,
+ vk::VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER,
+ 1u,
+ vk::VK_SHADER_STAGE_ALL,
+ &sampler
+ }
+ };
+ const vk::VkDescriptorSetLayoutCreateInfo layoutCreateInfo =
+ {
+ vk::VK_STRUCTURE_TYPE_DESCRIPTOR_SET_LAYOUT_CREATE_INFO,
+ DE_NULL,
+
+ 0u,
+ DE_LENGTH_OF_ARRAY(layoutBindings),
+ layoutBindings
+ };
+
+ return vk::createDescriptorSetLayout(vkd, device, &layoutCreateInfo);
+}
+
+vk::Move<vk::VkDescriptorPool> createDescriptorPool (const vk::DeviceInterface& vkd,
+ vk::VkDevice device)
+{
+ const vk::VkDescriptorPoolSize poolSizes[] =
+ {
+ { vk::VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER, 1u, }
+ };
+ const vk::VkDescriptorPoolCreateInfo descriptorPoolCreateInfo =
+ {
+ vk::VK_STRUCTURE_TYPE_DESCRIPTOR_POOL_CREATE_INFO,
+ DE_NULL,
+ vk::VK_DESCRIPTOR_POOL_CREATE_FREE_DESCRIPTOR_SET_BIT,
+
+ 1u,
+ DE_LENGTH_OF_ARRAY(poolSizes),
+ poolSizes
+ };
+
+ return createDescriptorPool(vkd, device, &descriptorPoolCreateInfo);
+}
+
+vk::Move<vk::VkDescriptorSet> createDescriptorSet (const vk::DeviceInterface& vkd,
+ vk::VkDevice device,
+ vk::VkDescriptorPool descriptorPool,
+ vk::VkDescriptorSetLayout layout,
+ vk::VkSampler sampler,
+ vk::VkImageView imageView)
+{
+ const vk::VkDescriptorSetAllocateInfo descriptorSetAllocateInfo =
+ {
+ vk::VK_STRUCTURE_TYPE_DESCRIPTOR_SET_ALLOCATE_INFO,
+ DE_NULL,
+
+ descriptorPool,
+ 1u,
+ &layout
+ };
+ vk::Move<vk::VkDescriptorSet> descriptorSet (vk::allocateDescriptorSet(vkd, device, &descriptorSetAllocateInfo));
+ const vk::VkDescriptorImageInfo imageInfo =
+ {
+ sampler,
+ imageView,
+ vk::VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL
+ };
+
+ {
+ const vk::VkWriteDescriptorSet writes[] =
+ {
+ {
+ vk::VK_STRUCTURE_TYPE_WRITE_DESCRIPTOR_SET,
+ DE_NULL,
+
+ *descriptorSet,
+ 0u,
+ 0u,
+ 1u,
+ vk::VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER,
+ &imageInfo,
+ DE_NULL,
+ DE_NULL
+ }
+ };
+
+ vkd.updateDescriptorSets(device, DE_LENGTH_OF_ARRAY(writes), writes, 0u, DE_NULL);
+ }
+
+ return descriptorSet;
+}
+
+vk::Move<vk::VkSampler> createSampler (const vk::DeviceInterface& vkd,
+ vk::VkDevice device,
+ vk::VkFilter textureFilter,
+ vk::VkSamplerAddressMode addressModeU,
+ vk::VkSamplerAddressMode addressModeV,
+ vk::VkSamplerYcbcrConversionKHR conversion)
+{
+#if !defined(FAKE_COLOR_CONVERSION)
+ const vk::VkSamplerYcbcrConversionInfoKHR samplerConversionInfo =
+ {
+ vk::VK_STRUCTURE_TYPE_SAMPLER_YCBCR_CONVERSION_INFO_KHR,
+ DE_NULL,
+ conversion
+ };
+#else
+ DE_UNREF(conversion);
+#endif
+ const vk::VkSamplerCreateInfo createInfo =
+ {
+ vk::VK_STRUCTURE_TYPE_SAMPLER_CREATE_INFO,
+#if !defined(FAKE_COLOR_CONVERSION)
+ &samplerConversionInfo,
+#else
+ DE_NULL,
+#endif
+
+ 0u,
+ textureFilter,
+ textureFilter,
+ vk::VK_SAMPLER_MIPMAP_MODE_NEAREST,
+ addressModeU,
+ addressModeV,
+ vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
+ 0.0f,
+ VK_FALSE,
+ 1.0f,
+ VK_FALSE,
+ vk::VK_COMPARE_OP_ALWAYS,
+ 0.0f,
+ 0.0f,
+ vk::VK_BORDER_COLOR_FLOAT_TRANSPARENT_BLACK,
+ VK_FALSE,
+ };
+
+ return createSampler(vkd, device, &createInfo);
+}
+
+vk::Move<vk::VkImage> createImage (const vk::DeviceInterface& vkd,
+ vk::VkDevice device,
+ vk::VkFormat format,
+ const UVec2& size,
+ bool disjoint,
+ vk::VkImageTiling tiling)
+{
+ const vk::VkImageCreateInfo createInfo =
+ {
+ vk::VK_STRUCTURE_TYPE_IMAGE_CREATE_INFO,
+ DE_NULL,
+ disjoint ? (vk::VkImageCreateFlags)vk::VK_IMAGE_CREATE_DISJOINT_BIT_KHR : (vk::VkImageCreateFlags)0u,
+
+ vk::VK_IMAGE_TYPE_2D,
+ format,
+ vk::makeExtent3D(size.x(), size.y(), 1u),
+ 1u,
+ 1u,
+ vk::VK_SAMPLE_COUNT_1_BIT,
+ tiling,
+ vk::VK_IMAGE_USAGE_TRANSFER_DST_BIT | vk::VK_IMAGE_USAGE_SAMPLED_BIT,
+ vk::VK_SHARING_MODE_EXCLUSIVE,
+ 0u,
+ (const deUint32*)DE_NULL,
+ vk::VK_IMAGE_LAYOUT_UNDEFINED,
+ };
+
+ return vk::createImage(vkd, device, &createInfo);
+}
+
+vk::Move<vk::VkImageView> createImageView (const vk::DeviceInterface& vkd,
+ vk::VkDevice device,
+ vk::VkImage image,
+ vk::VkFormat format,
+ vk::VkSamplerYcbcrConversionKHR conversion)
+{
+#if !defined(FAKE_COLOR_CONVERSION)
+ const vk::VkSamplerYcbcrConversionInfoKHR conversionInfo =
+ {
+ vk::VK_STRUCTURE_TYPE_SAMPLER_YCBCR_CONVERSION_INFO_KHR,
+ DE_NULL,
+ conversion
+ };
+#else
+ DE_UNREF(conversion);
+#endif
+ const vk::VkImageViewCreateInfo viewInfo =
+ {
+ vk::VK_STRUCTURE_TYPE_IMAGE_VIEW_CREATE_INFO,
+#if defined(FAKE_COLOR_CONVERSION)
+ DE_NULL,
+#else
+ &conversionInfo,
+#endif
+ (vk::VkImageViewCreateFlags)0,
+
+ image,
+ vk::VK_IMAGE_VIEW_TYPE_2D,
+ format,
+ {
+ vk::VK_COMPONENT_SWIZZLE_IDENTITY,
+ vk::VK_COMPONENT_SWIZZLE_IDENTITY,
+ vk::VK_COMPONENT_SWIZZLE_IDENTITY,
+ vk::VK_COMPONENT_SWIZZLE_IDENTITY,
+ },
+ { vk::VK_IMAGE_ASPECT_COLOR_BIT, 0u, 1u, 0u, 1u },
+ };
+
+ return vk::createImageView(vkd, device, &viewInfo);
+}
+
+vk::Move<vk::VkSamplerYcbcrConversionKHR> createConversion (const vk::DeviceInterface& vkd,
+ vk::VkDevice device,
+ vk::VkFormat format,
+ vk::VkSamplerYcbcrModelConversionKHR colorModel,
+ vk::VkSamplerYcbcrRangeKHR colorRange,
+ vk::VkChromaLocationKHR xChromaOffset,
+ vk::VkChromaLocationKHR yChromaOffset,
+ vk::VkFilter chromaFilter,
+ const vk::VkComponentMapping& componentMapping,
+ bool explicitReconstruction)
+{
+ const vk::VkSamplerYcbcrConversionCreateInfoKHR conversionInfo =
+ {
+ vk::VK_STRUCTURE_TYPE_SAMPLER_YCBCR_CONVERSION_CREATE_INFO_KHR,
+ DE_NULL,
+
+ format,
+ colorModel,
+ colorRange,
+ componentMapping,
+ xChromaOffset,
+ yChromaOffset,
+ chromaFilter,
+ explicitReconstruction ? VK_TRUE : VK_FALSE
+ };
+
+ return vk::createSamplerYcbcrConversionKHR(vkd, device, &conversionInfo);
+}
+
+void evalShader (Context& context,
+ glu::ShaderType shaderType,
+ const MultiPlaneImageData& imageData,
+ const UVec2& size,
+ vk::VkFormat format,
+ vk::VkImageTiling imageTiling,
+ bool disjoint,
+ vk::VkFilter textureFilter,
+ vk::VkSamplerAddressMode addressModeU,
+ vk::VkSamplerAddressMode addressModeV,
+ vk::VkSamplerYcbcrModelConversionKHR colorModel,
+ vk::VkSamplerYcbcrRangeKHR colorRange,
+ vk::VkChromaLocationKHR xChromaOffset,
+ vk::VkChromaLocationKHR yChromaOffset,
+ vk::VkFilter chromaFilter,
+ const vk::VkComponentMapping& componentMapping,
+ bool explicitReconstruction,
+ const vector<Vec2>& sts,
+ vector<Vec4>& results)
+{
+ const vk::DeviceInterface& vkd (context.getDeviceInterface());
+ const vk::VkDevice device (context.getDevice());
+#if !defined(FAKE_COLOR_CONVERSION)
+ const vk::Unique<vk::VkSamplerYcbcrConversionKHR> conversion (createConversion(vkd, device, format, colorModel, colorRange, xChromaOffset, yChromaOffset, chromaFilter, componentMapping, explicitReconstruction));
+ const vk::Unique<vk::VkSampler> sampler (createSampler(vkd, device, textureFilter, addressModeU, addressModeV, *conversion));
+#else
+ DE_UNREF(colorModel);
+ DE_UNREF(colorRange);
+ DE_UNREF(xChromaOffset);
+ DE_UNREF(yChromaOffset);
+ DE_UNREF(chromaFilter);
+ DE_UNREF(explicitReconstruction);
+ DE_UNREF(componentMapping);
+ DE_UNREF(createConversion);
+ const vk::Unique<vk::VkSampler> sampler (createSampler(vkd, device, textureFilter, addressModeU, addressModeV, (vk::VkSamplerYcbcrConversionKHR)0u));
+#endif
+ const vk::Unique<vk::VkImage> image (createImage(vkd, device, format, size, disjoint, imageTiling));
+ const vk::MemoryRequirement memoryRequirement (imageTiling == vk::VK_IMAGE_TILING_OPTIMAL
+ ? vk::MemoryRequirement::Any
+ : vk::MemoryRequirement::HostVisible);
+ const vk::VkImageCreateFlags createFlags (disjoint ? vk::VK_IMAGE_CREATE_DISJOINT_BIT_KHR : (vk::VkImageCreateFlagBits)0u);
+ const vector<AllocationSp> imageMemory (allocateAndBindImageMemory(vkd, device, context.getDefaultAllocator(), *image, format, createFlags, memoryRequirement));
+#if defined(FAKE_COLOR_CONVERSION)
+ const vk::Unique<vk::VkImageView> imageView (createImageView(vkd, device, *image, format, (vk::VkSamplerYcbcrConversionKHR)0));
+#else
+ const vk::Unique<vk::VkImageView> imageView (createImageView(vkd, device, *image, format, *conversion));
+#endif
+
+ const vk::Unique<vk::VkDescriptorSetLayout> layout (createDescriptorSetLayout(vkd, device, *sampler));
+ const vk::Unique<vk::VkDescriptorPool> descriptorPool (createDescriptorPool(vkd, device));
+ const vk::Unique<vk::VkDescriptorSet> descriptorSet (createDescriptorSet(vkd, device, *descriptorPool, *layout, *sampler, *imageView));
+
+ const ShaderSpec spec (createShaderSpec());
+ const de::UniquePtr<ShaderExecutor> executor (createExecutor(context, shaderType, spec, *layout));
+
+ if (imageTiling == vk::VK_IMAGE_TILING_OPTIMAL)
+ uploadImage(vkd, device, context.getUniversalQueueFamilyIndex(), context.getDefaultAllocator(), *image, imageData, vk::VK_ACCESS_SHADER_READ_BIT, vk::VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL);
+ else
+ fillImageMemory(vkd, device, context.getUniversalQueueFamilyIndex(), *image, imageMemory, imageData, vk::VK_ACCESS_SHADER_READ_BIT, vk::VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL);
+
+ results.resize(sts.size());
+
+ {
+ const void* const inputs[] =
+ {
+ &sts[0]
+ };
+ void* const outputs[] =
+ {
+ &results[0]
+ };
+
+ executor->execute((int)sts.size(), inputs, outputs, *descriptorSet);
+ }
+}
+
+bool isXChromaSubsampled (vk::VkFormat format)
+{
+ switch (format)
+ {
+ case vk::VK_FORMAT_G8B8G8R8_422_UNORM_KHR:
+ case vk::VK_FORMAT_B8G8R8G8_422_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8_R8_3PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8R8_2PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8_R8_3PLANE_422_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8R8_2PLANE_422_UNORM_KHR:
+ case vk::VK_FORMAT_G10X6B10X6G10X6R10X6_422_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_B10X6G10X6R10X6G10X6_422_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6R10X6_2PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_422_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6R10X6_2PLANE_422_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4B12X4G12X4R12X4_422_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_B12X4G12X4R12X4G12X4_422_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4R12X4_2PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_422_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4R12X4_2PLANE_422_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G16B16G16R16_422_UNORM_KHR:
+ case vk::VK_FORMAT_B16G16R16G16_422_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16_R16_3PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16R16_2PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16_R16_3PLANE_422_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16R16_2PLANE_422_UNORM_KHR:
+ return true;
+
+ default:
+ return false;
+ }
+}
+
+bool isYChromaSubsampled (vk::VkFormat format)
+{
+ switch (format)
+ {
+ case vk::VK_FORMAT_G8_B8_R8_3PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8R8_2PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6R10X6_2PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4R12X4_2PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G16_B16_R16_3PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16R16_2PLANE_420_UNORM_KHR:
+ return true;
+
+ default:
+ return false;
+ }
+}
+
+void logTestCaseInfo (TestLog& log, const TestConfig& config)
+{
+ log << TestLog::Message << "ShaderType: " << config.shaderType << TestLog::EndMessage;
+ log << TestLog::Message << "Format: " << config.format << TestLog::EndMessage;
+ log << TestLog::Message << "ImageTiling: " << config.imageTiling << TestLog::EndMessage;
+ log << TestLog::Message << "TextureFilter: " << config.textureFilter << TestLog::EndMessage;
+ log << TestLog::Message << "AddressModeU: " << config.addressModeU << TestLog::EndMessage;
+ log << TestLog::Message << "AddressModeV: " << config.addressModeV << TestLog::EndMessage;
+ log << TestLog::Message << "ChromaFilter: " << config.chromaFilter << TestLog::EndMessage;
+ log << TestLog::Message << "XChromaOffset: " << config.xChromaOffset << TestLog::EndMessage;
+ log << TestLog::Message << "YChromaOffset: " << config.yChromaOffset << TestLog::EndMessage;
+ log << TestLog::Message << "ExplicitReconstruction: " << (config.explicitReconstruction ? "true" : "false") << TestLog::EndMessage;
+ log << TestLog::Message << "Disjoint: " << (config.explicitReconstruction ? "true" : "false") << TestLog::EndMessage;
+ log << TestLog::Message << "ColorRange: " << config.colorRange << TestLog::EndMessage;
+ log << TestLog::Message << "ColorModel: " << config.colorModel << TestLog::EndMessage;
+ log << TestLog::Message << "ComponentMapping: " << config.componentMapping << TestLog::EndMessage;
+}
+
+
+tcu::TestStatus textureConversionTest (Context& context, const TestConfig config)
+{
+ const FloatFormat filteringPrecision (getFilteringPrecision(config.format));
+ const FloatFormat conversionPrecision (getConversionPrecision(config.format));
+ const deUint32 subTexelPrecisionBits (vk::getPhysicalDeviceProperties(context.getInstanceInterface(), context.getPhysicalDevice()).limits.subTexelPrecisionBits);
+ const tcu::UVec4 bitDepth (getBitDepth(config.format));
+ const UVec2 size (isXChromaSubsampled(config.format) ? 12 : 7,
+ isYChromaSubsampled(config.format) ? 8 : 13);
+ TestLog& log (context.getTestContext().getLog());
+ bool explicitReconstruction = config.explicitReconstruction;
+ bool isOk = true;
+
+ logTestCaseInfo(log, config);
+
+#if !defined(FAKE_COLOR_CONVERSION)
+ if (!de::contains(context.getDeviceExtensions().begin(), context.getDeviceExtensions().end(), string("VK_KHR_sampler_ycbcr_conversion")))
+ TCU_THROW(NotSupportedError, "Extension VK_KHR_sampler_ycbcr_conversion not supported");
+
+ try
+ {
+ const vk::VkFormatProperties properties (vk::getPhysicalDeviceFormatProperties(context.getInstanceInterface(), context.getPhysicalDevice(), config.format));
+ const vk::VkFormatFeatureFlags features (config.imageTiling == vk::VK_IMAGE_TILING_OPTIMAL
+ ? properties.optimalTilingFeatures
+ : properties.linearTilingFeatures);
+
+ if ((features & (vk::VK_FORMAT_FEATURE_MIDPOINT_CHROMA_SAMPLES_BIT_KHR | vk::VK_FORMAT_FEATURE_COSITED_CHROMA_SAMPLES_BIT_KHR)) == 0)
+ TCU_THROW(NotSupportedError, "Format doesn't support YCbCr conversions");
+
+ if ((features & vk::VK_FORMAT_FEATURE_SAMPLED_IMAGE_BIT) == 0)
+ TCU_THROW(NotSupportedError, "Format doesn't support sampling");
+
+ if (config.textureFilter == vk::VK_FILTER_LINEAR && ((features & vk::VK_FORMAT_FEATURE_SAMPLED_IMAGE_YCBCR_CONVERSION_LINEAR_FILTER_BIT_KHR) == 0))
+ TCU_THROW(NotSupportedError, "Format doesn't support YCbCr linear chroma reconstruction");
+
+ if (config.chromaFilter == vk::VK_FILTER_LINEAR && ((features & vk::VK_FORMAT_FEATURE_SAMPLED_IMAGE_YCBCR_CONVERSION_LINEAR_FILTER_BIT_KHR) == 0))
+ TCU_THROW(NotSupportedError, "Format doesn't support YCbCr linear chroma reconstruction");
+
+ if (config.chromaFilter != config.textureFilter && ((features & vk::VK_FORMAT_FEATURE_SAMPLED_IMAGE_YCBCR_CONVERSION_SEPARATE_RECONSTRUCTION_FILTER_BIT_KHR) == 0))
+ TCU_THROW(NotSupportedError, "Format doesn't support different chroma and texture filters");
+
+ if (config.explicitReconstruction && ((features & vk::VK_FORMAT_FEATURE_SAMPLED_IMAGE_YCBCR_CONVERSION_CHROMA_RECONSTRUCTION_EXPLICIT_FORCEABLE_BIT_KHR) == 0))
+ TCU_THROW(NotSupportedError, "Format doesn't support explicit chroma reconstruction");
+
+ if (config.disjoint && ((features & vk::VK_FORMAT_FEATURE_DISJOINT_BIT_KHR) == 0))
+ TCU_THROW(NotSupportedError, "Format doesn't disjoint planes");
+
+ if (isXChromaSubsampled(config.format) && (config.xChromaOffset == vk::VK_CHROMA_LOCATION_COSITED_EVEN_KHR) && ((features & vk::VK_FORMAT_FEATURE_COSITED_CHROMA_SAMPLES_BIT_KHR) == 0))
+ TCU_THROW(NotSupportedError, "Format doesn't support cosited chroma samples");
+
+ if (isXChromaSubsampled(config.format) && (config.xChromaOffset == vk::VK_CHROMA_LOCATION_MIDPOINT_KHR) && ((features & vk::VK_FORMAT_FEATURE_MIDPOINT_CHROMA_SAMPLES_BIT_KHR) == 0))
+ TCU_THROW(NotSupportedError, "Format doesn't support midpoint chroma samples");
+
+ if (isYChromaSubsampled(config.format) && (config.yChromaOffset == vk::VK_CHROMA_LOCATION_COSITED_EVEN_KHR) && ((features & vk::VK_FORMAT_FEATURE_COSITED_CHROMA_SAMPLES_BIT_KHR) == 0))
+ TCU_THROW(NotSupportedError, "Format doesn't support cosited chroma samples");
+
+ if (isYChromaSubsampled(config.format) && (config.yChromaOffset == vk::VK_CHROMA_LOCATION_MIDPOINT_KHR) && ((features & vk::VK_FORMAT_FEATURE_MIDPOINT_CHROMA_SAMPLES_BIT_KHR) == 0))
+ TCU_THROW(NotSupportedError, "Format doesn't support midpoint chroma samples");
+
+ if ((features & vk::VK_FORMAT_FEATURE_SAMPLED_IMAGE_YCBCR_CONVERSION_CHROMA_RECONSTRUCTION_EXPLICIT_BIT_KHR) != 0)
+ explicitReconstruction = true;
+
+ log << TestLog::Message << "FormatFeatures: " << vk::getFormatFeatureFlagsStr(features) << TestLog::EndMessage;
+ }
+ catch (const vk::Error& err)
+ {
+ if (err.getError() == vk::VK_ERROR_FORMAT_NOT_SUPPORTED)
+ TCU_THROW(NotSupportedError, "Format not supported");
+
+ throw;
+ }
+#endif
+
+ {
+ const vk::PlanarFormatDescription planeInfo (vk::getPlanarFormatDescription(config.format));
+ MultiPlaneImageData src (config.format, size);
+
+ deUint32 nullAccessData (0u);
+ ChannelAccess nullAccess (tcu::TEXTURECHANNELCLASS_UNSIGNED_FIXED_POINT, 1u, IVec3(size.x(), size.y(), 1), IVec3(0, 0, 0), &nullAccessData, 0u);
+ deUint32 nullAccessAlphaData (~0u);
+ ChannelAccess nullAccessAlpha (tcu::TEXTURECHANNELCLASS_UNSIGNED_FIXED_POINT, 1u, IVec3(size.x(), size.y(), 1), IVec3(0, 0, 0), &nullAccessAlphaData, 0u);
+ ChannelAccess rChannelAccess (planeInfo.hasChannelNdx(0) ? getChannelAccess(src, planeInfo, size, 0) : nullAccess);
+ ChannelAccess gChannelAccess (planeInfo.hasChannelNdx(1) ? getChannelAccess(src, planeInfo, size, 1) : nullAccess);
+ ChannelAccess bChannelAccess (planeInfo.hasChannelNdx(2) ? getChannelAccess(src, planeInfo, size, 2) : nullAccess);
+ ChannelAccess aChannelAccess (planeInfo.hasChannelNdx(3) ? getChannelAccess(src, planeInfo, size, 3) : nullAccessAlpha);
+
+ vector<Vec2> sts;
+ vector<Vec4> results;
+ vector<Vec4> minBounds;
+ vector<Vec4> maxBounds;
+ vector<Vec4> uvBounds;
+ vector<IVec4> ijBounds;
+
+ for (deUint32 planeNdx = 0; planeNdx < planeInfo.numPlanes; planeNdx++)
+ deMemset(src.getPlanePtr(planeNdx), 0u, src.getPlaneSize(planeNdx));
+
+ // \todo Limit values to only values that produce defined values using selected colorRange and colorModel? The verification code handles those cases already correctly.
+ if (planeInfo.hasChannelNdx(0))
+ {
+ for (int y = 0; y < rChannelAccess.getSize().y(); y++)
+ for (int x = 0; x < rChannelAccess.getSize().x(); x++)
+ rChannelAccess.setChannel(IVec3(x, y, 0), (float)x / (float)rChannelAccess.getSize().x());
+ }
+
+ if (planeInfo.hasChannelNdx(1))
+ {
+ for (int y = 0; y < gChannelAccess.getSize().y(); y++)
+ for (int x = 0; x < gChannelAccess.getSize().x(); x++)
+ gChannelAccess.setChannel(IVec3(x, y, 0), (float)y / (float)gChannelAccess.getSize().y());
+ }
+
+ if (planeInfo.hasChannelNdx(2))
+ {
+ for (int y = 0; y < bChannelAccess.getSize().y(); y++)
+ for (int x = 0; x < bChannelAccess.getSize().x(); x++)
+ bChannelAccess.setChannel(IVec3(x, y, 0), (float)(x + y) / (float)(bChannelAccess.getSize().x() + bChannelAccess.getSize().y()));
+ }
+
+ if (planeInfo.hasChannelNdx(3))
+ {
+ for (int y = 0; y < aChannelAccess.getSize().y(); y++)
+ for (int x = 0; x < aChannelAccess.getSize().x(); x++)
+ aChannelAccess.setChannel(IVec3(x, y, 0), (float)(x * y) / (float)(aChannelAccess.getSize().x() * aChannelAccess.getSize().y()));
+ }
+
+ genTexCoords(sts, size);
+
+ calculateBounds(rChannelAccess, gChannelAccess, bChannelAccess, aChannelAccess, bitDepth, sts, filteringPrecision, conversionPrecision, subTexelPrecisionBits, config.textureFilter, config.colorModel, config.colorRange, config.chromaFilter, config.xChromaOffset, config.yChromaOffset, config.componentMapping, explicitReconstruction, config.addressModeU, config.addressModeV, minBounds, maxBounds, uvBounds, ijBounds);
+
+ if (vk::isYCbCrFormat(config.format))
+ {
+ tcu::TextureLevel rImage (tcu::TextureFormat(tcu::TextureFormat::R, tcu::TextureFormat::FLOAT), rChannelAccess.getSize().x(), rChannelAccess.getSize().y());
+ tcu::TextureLevel gImage (tcu::TextureFormat(tcu::TextureFormat::R, tcu::TextureFormat::FLOAT), gChannelAccess.getSize().x(), gChannelAccess.getSize().y());
+ tcu::TextureLevel bImage (tcu::TextureFormat(tcu::TextureFormat::R, tcu::TextureFormat::FLOAT), bChannelAccess.getSize().x(), bChannelAccess.getSize().y());
+ tcu::TextureLevel aImage (tcu::TextureFormat(tcu::TextureFormat::R, tcu::TextureFormat::FLOAT), aChannelAccess.getSize().x(), aChannelAccess.getSize().y());
+
+ for (int y = 0; y < (int)rChannelAccess.getSize().y(); y++)
+ for (int x = 0; x < (int)rChannelAccess.getSize().x(); x++)
+ rImage.getAccess().setPixel(Vec4(rChannelAccess.getChannel(IVec3(x, y, 0))), x, y);
+
+ for (int y = 0; y < (int)gChannelAccess.getSize().y(); y++)
+ for (int x = 0; x < (int)gChannelAccess.getSize().x(); x++)
+ gImage.getAccess().setPixel(Vec4(gChannelAccess.getChannel(IVec3(x, y, 0))), x, y);
+
+ for (int y = 0; y < (int)bChannelAccess.getSize().y(); y++)
+ for (int x = 0; x < (int)bChannelAccess.getSize().x(); x++)
+ bImage.getAccess().setPixel(Vec4(bChannelAccess.getChannel(IVec3(x, y, 0))), x, y);
+
+ for (int y = 0; y < (int)aChannelAccess.getSize().y(); y++)
+ for (int x = 0; x < (int)aChannelAccess.getSize().x(); x++)
+ aImage.getAccess().setPixel(Vec4(aChannelAccess.getChannel(IVec3(x, y, 0))), x, y);
+
+ {
+ const Vec4 scale (1.0f);
+ const Vec4 bias (0.0f);
+
+ log << TestLog::Image("SourceImageR", "SourceImageR", rImage.getAccess(), scale, bias);
+ log << TestLog::Image("SourceImageG", "SourceImageG", gImage.getAccess(), scale, bias);
+ log << TestLog::Image("SourceImageB", "SourceImageB", bImage.getAccess(), scale, bias);
+ log << TestLog::Image("SourceImageA", "SourceImageA", aImage.getAccess(), scale, bias);
+ }
+ }
+ else
+ {
+ tcu::TextureLevel srcImage (vk::mapVkFormat(config.format), size.x(), size.y());
+
+ for (int y = 0; y < (int)size.y(); y++)
+ for (int x = 0; x < (int)size.x(); x++)
+ {
+ const IVec3 pos (x, y, 0);
+ srcImage.getAccess().setPixel(Vec4(rChannelAccess.getChannel(pos), gChannelAccess.getChannel(pos), bChannelAccess.getChannel(pos), aChannelAccess.getChannel(pos)), x, y);
+ }
+
+ log << TestLog::Image("SourceImage", "SourceImage", srcImage.getAccess());
+ }
+
+ evalShader(context, config.shaderType, src, size, config.format, config.imageTiling, config.disjoint, config.textureFilter, config.addressModeU, config.addressModeV, config.colorModel, config.colorRange, config.xChromaOffset, config.yChromaOffset, config.chromaFilter, config.componentMapping, config.explicitReconstruction, sts, results);
+
+ {
+ tcu::TextureLevel minImage (tcu::TextureFormat(tcu::TextureFormat::RGBA, tcu::TextureFormat::FLOAT), size.x() + (size.x() / 2), size.y() + (size.y() / 2));
+ tcu::TextureLevel maxImage (tcu::TextureFormat(tcu::TextureFormat::RGBA, tcu::TextureFormat::FLOAT), size.x() + (size.x() / 2), size.y() + (size.y() / 2));
+ tcu::TextureLevel resImage (tcu::TextureFormat(tcu::TextureFormat::RGBA, tcu::TextureFormat::FLOAT), size.x() + (size.x() / 2), size.y() + (size.y() / 2));
+
+ for (int y = 0; y < (int)(size.y() + (size.y() / 2)); y++)
+ for (int x = 0; x < (int)(size.x() + (size.x() / 2)); x++)
+ {
+ const int ndx = x + y * (int)(size.x() + (size.x() / 2));
+ minImage.getAccess().setPixel(minBounds[ndx], x, y);
+ maxImage.getAccess().setPixel(maxBounds[ndx], x, y);
+ }
+
+ for (int y = 0; y < (int)(size.y() + (size.y() / 2)); y++)
+ for (int x = 0; x < (int)(size.x() + (size.x() / 2)); x++)
+ {
+ const int ndx = x + y * (int)(size.x() + (size.x() / 2));
+ resImage.getAccess().setPixel(results[ndx], x, y);
+ }
+
+ {
+ const Vec4 scale (1.0f);
+ const Vec4 bias (0.0f);
+
+ log << TestLog::Image("MinBoundImage", "MinBoundImage", minImage.getAccess(), scale, bias);
+ log << TestLog::Image("MaxBoundImage", "MaxBoundImage", maxImage.getAccess(), scale, bias);
+ log << TestLog::Image("ResultImage", "ResultImage", resImage.getAccess(), scale, bias);
+ }
+ }
+
+ size_t errorCount = 0;
+
+ for (size_t ndx = 0; ndx < sts.size(); ndx++)
+ {
+ if (tcu::boolAny(tcu::lessThan(results[ndx], minBounds[ndx])) || tcu::boolAny(tcu::greaterThan(results[ndx], maxBounds[ndx])))
+ {
+ log << TestLog::Message << "Fail: " << sts[ndx] << " " << results[ndx] << TestLog::EndMessage;
+ log << TestLog::Message << " Min : " << minBounds[ndx] << TestLog::EndMessage;
+ log << TestLog::Message << " Max : " << maxBounds[ndx] << TestLog::EndMessage;
+ log << TestLog::Message << " Threshold: " << (maxBounds[ndx] - minBounds[ndx]) << TestLog::EndMessage;
+ log << TestLog::Message << " UMin : " << uvBounds[ndx][0] << TestLog::EndMessage;
+ log << TestLog::Message << " UMax : " << uvBounds[ndx][1] << TestLog::EndMessage;
+ log << TestLog::Message << " VMin : " << uvBounds[ndx][2] << TestLog::EndMessage;
+ log << TestLog::Message << " VMax : " << uvBounds[ndx][3] << TestLog::EndMessage;
+ log << TestLog::Message << " IMin : " << ijBounds[ndx][0] << TestLog::EndMessage;
+ log << TestLog::Message << " IMax : " << ijBounds[ndx][1] << TestLog::EndMessage;
+ log << TestLog::Message << " JMin : " << ijBounds[ndx][2] << TestLog::EndMessage;
+ log << TestLog::Message << " JMax : " << ijBounds[ndx][3] << TestLog::EndMessage;
+
+ if (isXChromaSubsampled(config.format))
+ {
+ log << TestLog::Message << " LumaAlphaValues : " << TestLog::EndMessage;
+ log << TestLog::Message << " Offset : (" << ijBounds[ndx][0] << ", " << ijBounds[ndx][2] << ")" << TestLog::EndMessage;
+
+ for (deInt32 j = ijBounds[ndx][2]; j <= ijBounds[ndx][3] + (config.textureFilter == vk::VK_FILTER_LINEAR ? 1 : 0); j++)
+ {
+ const deInt32 wrappedJ = wrap(config.addressModeV, j, gChannelAccess.getSize().y());
+ bool first = true;
+ std::ostringstream line;
+
+ for (deInt32 i = ijBounds[ndx][0]; i <= ijBounds[ndx][1] + (config.textureFilter == vk::VK_FILTER_LINEAR ? 1 : 0); i++)
+ {
+ const deInt32 wrappedI = wrap(config.addressModeU, i, gChannelAccess.getSize().x());
+
+ if (!first)
+ {
+ line << ", ";
+ first = false;
+ }
+
+ line << "(" << std::setfill(' ') << std::setw(5) << gChannelAccess.getChannelUint(IVec3(wrappedI, wrappedJ, 0))
+ << ", " << std::setfill(' ') << std::setw(5) << aChannelAccess.getChannelUint(IVec3(wrappedI, wrappedJ, 0)) << ")";
+ }
+ log << TestLog::Message << " " << line.str() << TestLog::EndMessage;
+ }
+
+ {
+ const IVec2 chromaIRange (divFloor(ijBounds[ndx][0], 2) - 1, divFloor(ijBounds[ndx][1] + (config.textureFilter == vk::VK_FILTER_LINEAR ? 1 : 0), 2) + 1);
+ const IVec2 chromaJRange (isYChromaSubsampled(config.format)
+ ? IVec2(divFloor(ijBounds[ndx][2], 2) - 1, divFloor(ijBounds[ndx][3] + (config.textureFilter == vk::VK_FILTER_LINEAR ? 1 : 0), 2) + 1)
+ : IVec2(ijBounds[ndx][2], ijBounds[ndx][3] + (config.textureFilter == vk::VK_FILTER_LINEAR ? 1 : 0)));
+
+ log << TestLog::Message << " ChromaValues : " << TestLog::EndMessage;
+ log << TestLog::Message << " Offset : (" << chromaIRange[0] << ", " << chromaJRange[0] << ")" << TestLog::EndMessage;
+
+ for (deInt32 j = chromaJRange[0]; j <= chromaJRange[1]; j++)
+ {
+ const deInt32 wrappedJ = wrap(config.addressModeV, j, rChannelAccess.getSize().y());
+ bool first = true;
+ std::ostringstream line;
+
+ for (deInt32 i = chromaIRange[0]; i <= chromaIRange[1]; i++)
+ {
+ const deInt32 wrappedI = wrap(config.addressModeU, i, rChannelAccess.getSize().x());
+
+ if (!first)
+ {
+ line << ", ";
+ first = false;
+ }
+
+ line << "(" << std::setfill(' ') << std::setw(5) << rChannelAccess.getChannelUint(IVec3(wrappedI, wrappedJ, 0))
+ << ", " << std::setfill(' ') << std::setw(5) << bChannelAccess.getChannelUint(IVec3(wrappedI, wrappedJ, 0)) << ")";
+ }
+ log << TestLog::Message << " " << line.str() << TestLog::EndMessage;
+ }
+ }
+ }
+ else
+ {
+ log << TestLog::Message << " Values : " << TestLog::EndMessage;
+ log << TestLog::Message << " Offset : (" << ijBounds[ndx][0] << ", " << ijBounds[ndx][2] << ")" << TestLog::EndMessage;
+
+ for (deInt32 j = ijBounds[ndx][2]; j <= ijBounds[ndx][3] + (config.textureFilter == vk::VK_FILTER_LINEAR ? 1 : 0); j++)
+ {
+ const deInt32 wrappedJ = wrap(config.addressModeV, j, rChannelAccess.getSize().y());
+ bool first = true;
+ std::ostringstream line;
+
+ for (deInt32 i = ijBounds[ndx][0]; i <= ijBounds[ndx][1] + (config.textureFilter == vk::VK_FILTER_LINEAR ? 1 : 0); i++)
+ {
+ const deInt32 wrappedI = wrap(config.addressModeU, i, rChannelAccess.getSize().x());
+
+ if (!first)
+ {
+ line << ", ";
+ first = false;
+ }
+
+ line << "(" << std::setfill(' ') << std::setw(5) << rChannelAccess.getChannelUint(IVec3(wrappedI, wrappedJ, 0))
+ << ", " << std::setfill(' ') << std::setw(5) << gChannelAccess.getChannelUint(IVec3(wrappedI, wrappedJ, 0))
+ << ", " << std::setfill(' ') << std::setw(5) << bChannelAccess.getChannelUint(IVec3(wrappedI, wrappedJ, 0))
+ << ", " << std::setfill(' ') << std::setw(5) << aChannelAccess.getChannelUint(IVec3(wrappedI, wrappedJ, 0)) << ")";
+ }
+ log << TestLog::Message << " " << line.str() << TestLog::EndMessage;
+ }
+ }
+
+ errorCount++;
+ isOk = false;
+
+ if (errorCount > 30)
+ {
+ log << TestLog::Message << "Encountered " << errorCount << " errors. Omitting rest of the per result logs." << TestLog::EndMessage;
+ break;
+ }
+ }
+ }
+ }
+
+ if (isOk)
+ return tcu::TestStatus::pass("Pass");
+ else
+ return tcu::TestStatus::fail("Result comparison failed");
+}
+
+#if defined(FAKE_COLOR_CONVERSION)
+const char* swizzleToCompName (const char* identity, vk::VkComponentSwizzle swizzle)
+{
+ switch (swizzle)
+ {
+ case vk::VK_COMPONENT_SWIZZLE_IDENTITY: return identity;
+ case vk::VK_COMPONENT_SWIZZLE_R: return "r";
+ case vk::VK_COMPONENT_SWIZZLE_G: return "g";
+ case vk::VK_COMPONENT_SWIZZLE_B: return "b";
+ case vk::VK_COMPONENT_SWIZZLE_A: return "a";
+ default:
+ DE_FATAL("Unsupported swizzle");
+ return DE_NULL;
+ }
+}
+#endif
+
+void createTestShaders (vk::SourceCollections& dst, TestConfig config)
+{
+#if !defined(FAKE_COLOR_CONVERSION)
+ const ShaderSpec spec (createShaderSpec());
+
+ generateSources(config.shaderType, spec, dst);
+#else
+ const UVec4 bits (getBitDepth(config.format));
+ ShaderSpec spec;
+
+ spec.globalDeclarations = "layout(set=" + de::toString((int)EXTRA_RESOURCES_DESCRIPTOR_SET_INDEX) + ", binding=0) uniform highp sampler2D u_sampler;";
+
+ spec.inputs.push_back(Symbol("uv", glu::VarType(glu::TYPE_FLOAT_VEC2, glu::PRECISION_HIGHP)));
+ spec.outputs.push_back(Symbol("o_color", glu::VarType(glu::TYPE_FLOAT_VEC4, glu::PRECISION_HIGHP)));
+
+ std::ostringstream source;
+
+ source << "highp vec4 inputColor = texture(u_sampler, uv);\n";
+
+ source << "highp float r = inputColor." << swizzleToCompName("r", config.componentMapping.r) << ";\n";
+ source << "highp float g = inputColor." << swizzleToCompName("g", config.componentMapping.g) << ";\n";
+ source << "highp float b = inputColor." << swizzleToCompName("b", config.componentMapping.b) << ";\n";
+ source << "highp float a = inputColor." << swizzleToCompName("a", config.componentMapping.a) << ";\n";
+
+ switch (config.colorRange)
+ {
+ case vk::VK_SAMPLER_YCBCR_RANGE_ITU_FULL_KHR:
+ source << "highp float cr = r - (float(" << (0x1u << (bits[0] - 0x1u)) << ") / float(" << ((0x1u << bits[0]) - 1u) << "));\n";
+ source << "highp float y = g;\n";
+ source << "highp float cb = b - (float(" << (0x1u << (bits[2] - 0x1u)) << ") / float(" << ((0x1u << bits[2]) - 1u) << "));\n";
+ break;
+
+ case vk::VK_SAMPLER_YCBCR_RANGE_ITU_NARROW_KHR:
+ source << "highp float cr = (r * float(" << ((0x1u << bits[0]) - 1u) << ") - float(" << (128u * (0x1u << (bits[0] - 8))) << ")) / float(" << (224u * (0x1u << (bits[0] - 8))) << ");\n";
+ source << "highp float y = (g * float(" << ((0x1u << bits[1]) - 1u) << ") - float(" << (16u * (0x1u << (bits[1] - 8))) << ")) / float(" << (219u * (0x1u << (bits[1] - 8))) << ");\n";
+ source << "highp float cb = (b * float(" << ((0x1u << bits[2]) - 1u) << ") - float(" << (128u * (0x1u << (bits[2] - 8))) << ")) / float(" << (224u * (0x1u << (bits[2] - 8))) << ");\n";
+ break;
+
+ default:
+ DE_FATAL("Unknown color range");
+ }
+
+ source << "highp vec4 color;\n";
+
+ switch (config.colorModel)
+ {
+ case vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_RGB_IDENTITY_KHR:
+ source << "color = vec4(r, g, b, a);\n";
+ break;
+
+ case vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_YCBCR_IDENTITY_KHR:
+ source << "color = vec4(cr, y, cb, a);\n";
+ break;
+
+ case vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_YCBCR_601_KHR:
+ source << "color = vec4(y + 1.402 * cr, y - float(" << (0.202008 / 0.587) << ") * cb - float(" << (0.419198 / 0.587) << ") * cr, y + 1.772 * cb, a);\n";
+ break;
+
+ case vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_YCBCR_709_KHR:
+ source << "color = vec4(y + 1.5748 * cr, y - float(" << (0.13397432 / 0.7152) << ") * cb - float(" << (0.33480248 / 0.7152) << ") * cr, y + 1.8556 * cb, a);\n";
+ break;
+
+ case vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_YCBCR_2020_KHR:
+ source << "color = vec4(y + 1.4746 * cr, (y - float(" << (0.11156702 / 0.6780) << ") * cb) - float(" << (0.38737742 / 0.6780) << ") * cr, y + 1.8814 * cb, a);\n";
+ break;
+
+ default:
+ DE_FATAL("Unknown color model");
+ };
+
+ source << "o_color = color;\n";
+
+ spec.source = source.str();
+ generateSources(config.shaderType, spec, dst);
+#endif
+}
+
+deUint32 getFormatChannelCount (vk::VkFormat format)
+{
+ switch (format)
+ {
+ case vk::VK_FORMAT_A1R5G5B5_UNORM_PACK16:
+ case vk::VK_FORMAT_A2B10G10R10_UNORM_PACK32:
+ case vk::VK_FORMAT_A2R10G10B10_UNORM_PACK32:
+ case vk::VK_FORMAT_A8B8G8R8_UNORM_PACK32:
+ case vk::VK_FORMAT_B4G4R4A4_UNORM_PACK16:
+ case vk::VK_FORMAT_B5G5R5A1_UNORM_PACK16:
+ case vk::VK_FORMAT_B8G8R8A8_UNORM:
+ case vk::VK_FORMAT_R10X6G10X6B10X6A10X6_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_R12X4G12X4B12X4A12X4_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_R16G16B16A16_UNORM:
+ case vk::VK_FORMAT_R4G4B4A4_UNORM_PACK16:
+ case vk::VK_FORMAT_R5G5B5A1_UNORM_PACK16:
+ case vk::VK_FORMAT_R8G8B8A8_UNORM:
+ return 4;
+
+ case vk::VK_FORMAT_B10X6G10X6R10X6G10X6_422_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_B12X4G12X4R12X4G12X4_422_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_B16G16R16G16_422_UNORM_KHR:
+ case vk::VK_FORMAT_B5G6R5_UNORM_PACK16:
+ case vk::VK_FORMAT_B8G8R8G8_422_UNORM_KHR:
+ case vk::VK_FORMAT_B8G8R8_UNORM:
+ case vk::VK_FORMAT_G10X6B10X6G10X6R10X6_422_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6R10X6_2PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6R10X6_2PLANE_422_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_422_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_444_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4B12X4G12X4R12X4_422_UNORM_4PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4R12X4_2PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4R12X4_2PLANE_422_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_420_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_422_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_444_UNORM_3PACK16_KHR:
+ case vk::VK_FORMAT_G16B16G16R16_422_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16R16_2PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16R16_2PLANE_422_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16_R16_3PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16_R16_3PLANE_422_UNORM_KHR:
+ case vk::VK_FORMAT_G16_B16_R16_3PLANE_444_UNORM_KHR:
+ case vk::VK_FORMAT_G8B8G8R8_422_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8R8_2PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8R8_2PLANE_422_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8_R8_3PLANE_420_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8_R8_3PLANE_422_UNORM_KHR:
+ case vk::VK_FORMAT_G8_B8_R8_3PLANE_444_UNORM_KHR:
+ case vk::VK_FORMAT_R16G16B16_UNORM:
+ case vk::VK_FORMAT_R5G6B5_UNORM_PACK16:
+ case vk::VK_FORMAT_R8G8B8_UNORM:
+ return 3;
+
+ case vk::VK_FORMAT_R10X6G10X6_UNORM_2PACK16_KHR:
+ case vk::VK_FORMAT_R12X4G12X4_UNORM_2PACK16_KHR:
+ return 2;
+
+ case vk::VK_FORMAT_R10X6_UNORM_PACK16_KHR:
+ case vk::VK_FORMAT_R12X4_UNORM_PACK16_KHR:
+ return 1;
+
+ default:
+ DE_FATAL("Unknown number of channels");
+ return -1;
+ }
+}
+
+struct RangeNamePair
+{
+ const char* name;
+ vk::VkSamplerYcbcrRangeKHR value;
+};
+
+
+struct ChromaLocationNamePair
+{
+ const char* name;
+ vk::VkChromaLocationKHR value;
+};
+
+void initTests (tcu::TestCaseGroup* testGroup)
+{
+ const vk::VkFormat noChromaSubsampledFormats[] =
+ {
+ vk::VK_FORMAT_R4G4B4A4_UNORM_PACK16,
+ vk::VK_FORMAT_B4G4R4A4_UNORM_PACK16,
+ vk::VK_FORMAT_R5G6B5_UNORM_PACK16,
+ vk::VK_FORMAT_B5G6R5_UNORM_PACK16,
+ vk::VK_FORMAT_R5G5B5A1_UNORM_PACK16,
+ vk::VK_FORMAT_B5G5R5A1_UNORM_PACK16,
+ vk::VK_FORMAT_A1R5G5B5_UNORM_PACK16,
+ vk::VK_FORMAT_R8G8B8_UNORM,
+ vk::VK_FORMAT_B8G8R8_UNORM,
+ vk::VK_FORMAT_R8G8B8A8_UNORM,
+ vk::VK_FORMAT_B8G8R8A8_UNORM,
+ vk::VK_FORMAT_A8B8G8R8_UNORM_PACK32,
+ vk::VK_FORMAT_A2R10G10B10_UNORM_PACK32,
+ vk::VK_FORMAT_A2B10G10R10_UNORM_PACK32,
+ vk::VK_FORMAT_R16G16B16_UNORM,
+ vk::VK_FORMAT_R16G16B16A16_UNORM,
+ vk::VK_FORMAT_R10X6_UNORM_PACK16_KHR,
+ vk::VK_FORMAT_R10X6G10X6_UNORM_2PACK16_KHR,
+ vk::VK_FORMAT_R10X6G10X6B10X6A10X6_UNORM_4PACK16_KHR,
+ vk::VK_FORMAT_R12X4_UNORM_PACK16_KHR,
+ vk::VK_FORMAT_R12X4G12X4_UNORM_2PACK16_KHR,
+ vk::VK_FORMAT_R12X4G12X4B12X4A12X4_UNORM_4PACK16_KHR,
+ vk::VK_FORMAT_G8_B8_R8_3PLANE_444_UNORM_KHR,
+ vk::VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_444_UNORM_3PACK16_KHR,
+ vk::VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_444_UNORM_3PACK16_KHR,
+ vk::VK_FORMAT_G16_B16_R16_3PLANE_444_UNORM_KHR
+ };
+ const vk::VkFormat xChromaSubsampledFormats[] =
+ {
+ vk::VK_FORMAT_G8B8G8R8_422_UNORM_KHR,
+ vk::VK_FORMAT_B8G8R8G8_422_UNORM_KHR,
+ vk::VK_FORMAT_G8_B8_R8_3PLANE_422_UNORM_KHR,
+ vk::VK_FORMAT_G8_B8R8_2PLANE_422_UNORM_KHR,
+
+ vk::VK_FORMAT_G10X6B10X6G10X6R10X6_422_UNORM_4PACK16_KHR,
+ vk::VK_FORMAT_B10X6G10X6R10X6G10X6_422_UNORM_4PACK16_KHR,
+ vk::VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_422_UNORM_3PACK16_KHR,
+ vk::VK_FORMAT_G10X6_B10X6R10X6_2PLANE_422_UNORM_3PACK16_KHR,
+ vk::VK_FORMAT_G12X4B12X4G12X4R12X4_422_UNORM_4PACK16_KHR,
+ vk::VK_FORMAT_B12X4G12X4R12X4G12X4_422_UNORM_4PACK16_KHR,
+ vk::VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_422_UNORM_3PACK16_KHR,
+ vk::VK_FORMAT_G12X4_B12X4R12X4_2PLANE_422_UNORM_3PACK16_KHR,
+ vk::VK_FORMAT_G16B16G16R16_422_UNORM_KHR,
+ vk::VK_FORMAT_B16G16R16G16_422_UNORM_KHR,
+ vk::VK_FORMAT_G16_B16_R16_3PLANE_422_UNORM_KHR,
+ vk::VK_FORMAT_G16_B16R16_2PLANE_422_UNORM_KHR,
+ };
+ const vk::VkFormat xyChromaSubsampledFormats[] =
+ {
+ vk::VK_FORMAT_G8_B8_R8_3PLANE_420_UNORM_KHR,
+ vk::VK_FORMAT_G8_B8R8_2PLANE_420_UNORM_KHR,
+ vk::VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_420_UNORM_3PACK16_KHR,
+ vk::VK_FORMAT_G10X6_B10X6R10X6_2PLANE_420_UNORM_3PACK16_KHR,
+ vk::VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_420_UNORM_3PACK16_KHR,
+ vk::VK_FORMAT_G12X4_B12X4R12X4_2PLANE_420_UNORM_3PACK16_KHR,
+ vk::VK_FORMAT_G16_B16_R16_3PLANE_420_UNORM_KHR,
+ vk::VK_FORMAT_G16_B16R16_2PLANE_420_UNORM_KHR,
+ };
+ const struct
+ {
+ const char* const name;
+ const vk::VkSamplerYcbcrModelConversionKHR value;
+ } colorModels[] =
+ {
+ { "rgb_identity", vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_RGB_IDENTITY_KHR },
+ { "ycbcr_identity", vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_YCBCR_IDENTITY_KHR },
+ { "ycbcr_709", vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_YCBCR_709_KHR },
+ { "ycbcr_601", vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_YCBCR_601_KHR },
+ { "ycbcr_2020", vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_YCBCR_2020_KHR }
+ };
+ const RangeNamePair colorRanges[] =
+ {
+ { "itu_full", vk::VK_SAMPLER_YCBCR_RANGE_ITU_FULL_KHR },
+ { "itu_narrow", vk::VK_SAMPLER_YCBCR_RANGE_ITU_NARROW_KHR }
+ };
+ const ChromaLocationNamePair chromaLocations[] =
+ {
+ { "cosited", vk::VK_CHROMA_LOCATION_COSITED_EVEN_KHR },
+ { "midpoint", vk::VK_CHROMA_LOCATION_MIDPOINT_KHR }
+ };
+ const struct
+ {
+ const char* const name;
+ vk::VkFilter value;
+ } textureFilters[] =
+ {
+ { "linear", vk::VK_FILTER_LINEAR },
+ { "nearest", vk::VK_FILTER_NEAREST }
+ };
+ // Used by the chroma reconstruction tests
+ const vk::VkSamplerYcbcrModelConversionKHR defaultColorModel (vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_RGB_IDENTITY_KHR);
+ const vk::VkSamplerYcbcrRangeKHR defaultColorRange (vk::VK_SAMPLER_YCBCR_RANGE_ITU_FULL_KHR);
+ const vk::VkComponentMapping identitySwizzle =
+ {
+ vk::VK_COMPONENT_SWIZZLE_IDENTITY,
+ vk::VK_COMPONENT_SWIZZLE_IDENTITY,
+ vk::VK_COMPONENT_SWIZZLE_IDENTITY,
+ vk::VK_COMPONENT_SWIZZLE_IDENTITY
+ };
+ const vk::VkComponentMapping swappedChromaSwizzle =
+ {
+ vk::VK_COMPONENT_SWIZZLE_B,
+ vk::VK_COMPONENT_SWIZZLE_IDENTITY,
+ vk::VK_COMPONENT_SWIZZLE_R,
+ vk::VK_COMPONENT_SWIZZLE_IDENTITY
+ };
+ const glu::ShaderType shaderTypes[] =
+ {
+ glu::SHADERTYPE_VERTEX,
+ glu::SHADERTYPE_FRAGMENT,
+ glu::SHADERTYPE_COMPUTE
+ };
+ const struct
+ {
+ const char* name;
+ vk::VkImageTiling value;
+ } imageTilings[] =
+ {
+ { "tiling_linear", vk::VK_IMAGE_TILING_LINEAR },
+ { "tiling_optimal", vk::VK_IMAGE_TILING_OPTIMAL }
+ };
+ tcu::TestContext& testCtx (testGroup->getTestContext());
+ de::Random rng (1978765638u);
+
+ // Test formats without chroma reconstruction
+ for (size_t formatNdx = 0; formatNdx < DE_LENGTH_OF_ARRAY(noChromaSubsampledFormats); formatNdx++)
+ {
+ const vk::VkFormat format (noChromaSubsampledFormats[formatNdx]);
+ const std::string formatName (de::toLower(std::string(getFormatName(format)).substr(10)));
+ de::MovePtr<tcu::TestCaseGroup> formatGroup (new tcu::TestCaseGroup(testCtx, formatName.c_str(), ("Tests for color conversion using format " + formatName).c_str()));
+
+ for (size_t modelNdx = 0; modelNdx < DE_LENGTH_OF_ARRAY(colorModels); modelNdx++)
+ {
+ const char* const colorModelName (colorModels[modelNdx].name);
+ const vk::VkSamplerYcbcrModelConversionKHR colorModel (colorModels[modelNdx].value);
+
+ if (colorModel != vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_RGB_IDENTITY_KHR && getFormatChannelCount(format) < 3)
+ continue;
+
+ de::MovePtr<tcu::TestCaseGroup> colorModelGroup (new tcu::TestCaseGroup(testCtx, colorModelName, ("Tests for color model " + string(colorModelName)).c_str()));
+
+ if (colorModel == vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_RGB_IDENTITY_KHR)
+ {
+ for (size_t textureFilterNdx = 0; textureFilterNdx < DE_LENGTH_OF_ARRAY(textureFilters); textureFilterNdx++)
+ {
+ const char* const textureFilterName (textureFilters[textureFilterNdx].name);
+ const vk::VkFilter textureFilter (textureFilters[textureFilterNdx].value);
+
+ for (size_t tilingNdx = 0; tilingNdx < DE_LENGTH_OF_ARRAY(imageTilings); tilingNdx++)
+ {
+ const vk::VkImageTiling tiling (imageTilings[tilingNdx].value);
+ const char* const tilingName (imageTilings[tilingNdx].name);
+ const glu::ShaderType shaderType (rng.choose<glu::ShaderType>(DE_ARRAY_BEGIN(shaderTypes), DE_ARRAY_END(shaderTypes)));
+ const vk::VkSamplerYcbcrRangeKHR colorRange (rng.choose<RangeNamePair, const RangeNamePair*>(DE_ARRAY_BEGIN(colorRanges), DE_ARRAY_END(colorRanges)).value);
+ const vk::VkChromaLocationKHR chromaLocation (rng.choose<ChromaLocationNamePair, const ChromaLocationNamePair*>(DE_ARRAY_BEGIN(chromaLocations), DE_ARRAY_END(chromaLocations)).value);
+
+ const TestConfig config (shaderType, format, tiling, textureFilter, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
+ textureFilter, chromaLocation, chromaLocation, false, false,
+ colorRange, colorModel, identitySwizzle);
+
+ addFunctionCaseWithPrograms(colorModelGroup.get(), std::string(textureFilterName) + "_" + tilingName, "", createTestShaders, textureConversionTest, config);
+ }
+ }
+ }
+ else
+ {
+ for (size_t rangeNdx = 0; rangeNdx < DE_LENGTH_OF_ARRAY(colorRanges); rangeNdx++)
+ {
+ const char* const colorRangeName (colorRanges[rangeNdx].name);
+ const vk::VkSamplerYcbcrRangeKHR colorRange (colorRanges[rangeNdx].value);
+
+ // Narrow range doesn't really work with formats that have less than 8 bits
+ if (colorRange == vk::VK_SAMPLER_YCBCR_RANGE_ITU_NARROW_KHR)
+ {
+ const UVec4 bitDepth (getBitDepth(format));
+
+ if (bitDepth[0] < 8 || bitDepth[1] < 8 || bitDepth[2] < 8)
+ continue;
+ }
+
+ de::MovePtr<tcu::TestCaseGroup> colorRangeGroup (new tcu::TestCaseGroup(testCtx, colorRangeName, ("Tests for color range " + string(colorRangeName)).c_str()));
+
+ for (size_t textureFilterNdx = 0; textureFilterNdx < DE_LENGTH_OF_ARRAY(textureFilters); textureFilterNdx++)
+ {
+ const char* const textureFilterName (textureFilters[textureFilterNdx].name);
+ const vk::VkFilter textureFilter (textureFilters[textureFilterNdx].value);
+
+ for (size_t tilingNdx = 0; tilingNdx < DE_LENGTH_OF_ARRAY(imageTilings); tilingNdx++)
+ {
+ const vk::VkImageTiling tiling (imageTilings[tilingNdx].value);
+ const char* const tilingName (imageTilings[tilingNdx].name);
+ const glu::ShaderType shaderType (rng.choose<glu::ShaderType>(DE_ARRAY_BEGIN(shaderTypes), DE_ARRAY_END(shaderTypes)));
+ const vk::VkChromaLocationKHR chromaLocation (rng.choose<ChromaLocationNamePair, const ChromaLocationNamePair*>(DE_ARRAY_BEGIN(chromaLocations), DE_ARRAY_END(chromaLocations)).value);
+ const TestConfig config (shaderType, format, tiling, textureFilter, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
+ textureFilter, chromaLocation, chromaLocation, false, false,
+ colorRange, colorModel, identitySwizzle);
+
+ addFunctionCaseWithPrograms(colorRangeGroup.get(), std::string(textureFilterName) + "_" + tilingName, "", createTestShaders, textureConversionTest, config);
+ }
+ }
+
+ colorModelGroup->addChild(colorRangeGroup.release());
+ }
+ }
+
+ formatGroup->addChild(colorModelGroup.release());
+ }
+
+ testGroup->addChild(formatGroup.release());
+ }
+
+ // Test formats with x chroma reconstruction
+ for (size_t formatNdx = 0; formatNdx < DE_LENGTH_OF_ARRAY(xChromaSubsampledFormats); formatNdx++)
+ {
+ const vk::VkFormat format (xChromaSubsampledFormats[formatNdx]);
+ const std::string formatName (de::toLower(std::string(getFormatName(format)).substr(10)));
+ de::MovePtr<tcu::TestCaseGroup> formatGroup (new tcu::TestCaseGroup(testCtx, formatName.c_str(), ("Tests for color conversion using format " + formatName).c_str()));
+
+ // Color conversion tests
+ {
+ de::MovePtr<tcu::TestCaseGroup> conversionGroup (new tcu::TestCaseGroup(testCtx, "color_conversion", ""));
+
+ for (size_t xChromaOffsetNdx = 0; xChromaOffsetNdx < DE_LENGTH_OF_ARRAY(chromaLocations); xChromaOffsetNdx++)
+ {
+ const char* const xChromaOffsetName (chromaLocations[xChromaOffsetNdx].name);
+ const vk::VkChromaLocationKHR xChromaOffset (chromaLocations[xChromaOffsetNdx].value);
+
+ for (size_t modelNdx = 0; modelNdx < DE_LENGTH_OF_ARRAY(colorModels); modelNdx++)
+ {
+ const char* const colorModelName (colorModels[modelNdx].name);
+ const vk::VkSamplerYcbcrModelConversionKHR colorModel (colorModels[modelNdx].value);
+
+ if (colorModel != vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_RGB_IDENTITY_KHR && getFormatChannelCount(format) < 3)
+ continue;
+
+
+ if (colorModel == vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_RGB_IDENTITY_KHR)
+ {
+ for (size_t tilingNdx = 0; tilingNdx < DE_LENGTH_OF_ARRAY(imageTilings); tilingNdx++)
+ {
+ const vk::VkImageTiling tiling (imageTilings[tilingNdx].value);
+ const char* const tilingName (imageTilings[tilingNdx].name);
+ const vk::VkSamplerYcbcrRangeKHR colorRange (rng.choose<RangeNamePair, const RangeNamePair*>(DE_ARRAY_BEGIN(colorRanges), DE_ARRAY_END(colorRanges)).value);
+ const glu::ShaderType shaderType (rng.choose<glu::ShaderType>(DE_ARRAY_BEGIN(shaderTypes), DE_ARRAY_END(shaderTypes)));
+ const vk::VkChromaLocationKHR yChromaOffset (rng.choose<ChromaLocationNamePair, const ChromaLocationNamePair*>(DE_ARRAY_BEGIN(chromaLocations), DE_ARRAY_END(chromaLocations)).value);
+ const TestConfig config (shaderType, format, tiling, vk::VK_FILTER_NEAREST, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
+ vk::VK_FILTER_NEAREST, xChromaOffset, yChromaOffset, false, false,
+ colorRange, colorModel, identitySwizzle);
+
+ addFunctionCaseWithPrograms(conversionGroup.get(), std::string(colorModelName) + "_" + tilingName + "_" + xChromaOffsetName, "", createTestShaders, textureConversionTest, config);
+ }
+ }
+ else
+ {
+ for (size_t rangeNdx = 0; rangeNdx < DE_LENGTH_OF_ARRAY(colorRanges); rangeNdx++)
+ {
+ const char* const colorRangeName (colorRanges[rangeNdx].name);
+ const vk::VkSamplerYcbcrRangeKHR colorRange (colorRanges[rangeNdx].value);
+
+ // Narrow range doesn't really work with formats that have less than 8 bits
+ if (colorRange == vk::VK_SAMPLER_YCBCR_RANGE_ITU_NARROW_KHR)
+ {
+ const UVec4 bitDepth (getBitDepth(format));
+
+ if (bitDepth[0] < 8 || bitDepth[1] < 8 || bitDepth[2] < 8)
+ continue;
+ }
+
+ for (size_t tilingNdx = 0; tilingNdx < DE_LENGTH_OF_ARRAY(imageTilings); tilingNdx++)
+ {
+ const vk::VkImageTiling tiling (imageTilings[tilingNdx].value);
+ const char* const tilingName (imageTilings[tilingNdx].name);
+ const glu::ShaderType shaderType (rng.choose<glu::ShaderType>(DE_ARRAY_BEGIN(shaderTypes), DE_ARRAY_END(shaderTypes)));
+ const vk::VkChromaLocationKHR yChromaOffset (rng.choose<ChromaLocationNamePair, const ChromaLocationNamePair*>(DE_ARRAY_BEGIN(chromaLocations), DE_ARRAY_END(chromaLocations)).value);
+ const TestConfig config (shaderType, format, tiling, vk::VK_FILTER_NEAREST, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
+ vk::VK_FILTER_NEAREST, xChromaOffset, yChromaOffset, false, false,
+ colorRange, colorModel, identitySwizzle);
+
+ addFunctionCaseWithPrograms(conversionGroup.get(), (string(colorModelName) + "_" + colorRangeName + "_" + tilingName + "_" + xChromaOffsetName).c_str(), "", createTestShaders, textureConversionTest, config);
+ }
+ }
+ }
+ }
+ }
+
+ formatGroup->addChild(conversionGroup.release());
+ }
+
+ // Chroma reconstruction tests
+ {
+ de::MovePtr<tcu::TestCaseGroup> reconstrucGroup (new tcu::TestCaseGroup(testCtx, "chroma_reconstruction", ""));
+
+ for (size_t textureFilterNdx = 0; textureFilterNdx < DE_LENGTH_OF_ARRAY(textureFilters); textureFilterNdx++)
+ {
+ const char* const textureFilterName (textureFilters[textureFilterNdx].name);
+ const vk::VkFilter textureFilter (textureFilters[textureFilterNdx].value);
+ de::MovePtr<tcu::TestCaseGroup> textureFilterGroup (new tcu::TestCaseGroup(testCtx, textureFilterName, textureFilterName));
+
+ for (size_t explicitReconstructionNdx = 0; explicitReconstructionNdx < 2; explicitReconstructionNdx++)
+ {
+ const bool explicitReconstruction (explicitReconstructionNdx == 1);
+
+ for (size_t disjointNdx = 0; disjointNdx < 2; disjointNdx++)
+ {
+ const bool disjoint (disjointNdx == 1);
+
+ for (size_t xChromaOffsetNdx = 0; xChromaOffsetNdx < DE_LENGTH_OF_ARRAY(chromaLocations); xChromaOffsetNdx++)
+ {
+ const vk::VkChromaLocationKHR xChromaOffset (chromaLocations[xChromaOffsetNdx].value);
+ const char* const xChromaOffsetName (chromaLocations[xChromaOffsetNdx].name);
+
+ for (size_t tilingNdx = 0; tilingNdx < DE_LENGTH_OF_ARRAY(imageTilings); tilingNdx++)
+ {
+ const vk::VkImageTiling tiling (imageTilings[tilingNdx].value);
+ const char* const tilingName (imageTilings[tilingNdx].name);
+
+ {
+ const glu::ShaderType shaderType (rng.choose<glu::ShaderType>(DE_ARRAY_BEGIN(shaderTypes), DE_ARRAY_END(shaderTypes)));
+ const vk::VkChromaLocationKHR yChromaOffset (rng.choose<ChromaLocationNamePair, const ChromaLocationNamePair*>(DE_ARRAY_BEGIN(chromaLocations), DE_ARRAY_END(chromaLocations)).value);
+ const TestConfig config (shaderType, format, tiling, textureFilter, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
+ vk::VK_FILTER_LINEAR, xChromaOffset, yChromaOffset, explicitReconstruction, disjoint,
+ defaultColorRange, defaultColorModel, identitySwizzle);
+
+ addFunctionCaseWithPrograms(textureFilterGroup.get(), string(explicitReconstruction ? "explicit_linear_" : "default_linear_") + xChromaOffsetName + "_" + tilingName + (disjoint ? "_disjoint" : ""), "", createTestShaders, textureConversionTest, config);
+ }
+
+ {
+ const glu::ShaderType shaderType (rng.choose<glu::ShaderType>(DE_ARRAY_BEGIN(shaderTypes), DE_ARRAY_END(shaderTypes)));
+ const vk::VkChromaLocationKHR yChromaOffset (rng.choose<ChromaLocationNamePair, const ChromaLocationNamePair*>(DE_ARRAY_BEGIN(chromaLocations), DE_ARRAY_END(chromaLocations)).value);
+ const TestConfig config (shaderType, format, tiling, textureFilter, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
+ vk::VK_FILTER_LINEAR, xChromaOffset, yChromaOffset, explicitReconstruction, disjoint,
+ defaultColorRange, defaultColorModel, swappedChromaSwizzle);
+
+ addFunctionCaseWithPrograms(textureFilterGroup.get(), string(explicitReconstruction ? "explicit_linear_" : "default_linear_") + xChromaOffsetName + "_" + tilingName + (disjoint ? "_disjoint" : "") + "_swapped_chroma", "", createTestShaders, textureConversionTest, config);
+ }
+
+ if (!explicitReconstruction)
+ {
+ {
+ const glu::ShaderType shaderType (rng.choose<glu::ShaderType>(DE_ARRAY_BEGIN(shaderTypes), DE_ARRAY_END(shaderTypes)));
+ const vk::VkChromaLocationKHR yChromaOffset (rng.choose<ChromaLocationNamePair, const ChromaLocationNamePair*>(DE_ARRAY_BEGIN(chromaLocations), DE_ARRAY_END(chromaLocations)).value);
+ const TestConfig config (shaderType, format, tiling, textureFilter, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
+ vk::VK_FILTER_NEAREST, xChromaOffset, yChromaOffset, explicitReconstruction, disjoint,
+ defaultColorRange, defaultColorModel, identitySwizzle);
+
+ addFunctionCaseWithPrograms(textureFilterGroup.get(), string("default_nearest_") + xChromaOffsetName + "_" + tilingName + (disjoint ? "_disjoint" : ""), "", createTestShaders, textureConversionTest, config);
+ }
+
+ {
+ const glu::ShaderType shaderType (rng.choose<glu::ShaderType>(DE_ARRAY_BEGIN(shaderTypes), DE_ARRAY_END(shaderTypes)));
+ const vk::VkChromaLocationKHR yChromaOffset (rng.choose<ChromaLocationNamePair, const ChromaLocationNamePair*>(DE_ARRAY_BEGIN(chromaLocations), DE_ARRAY_END(chromaLocations)).value);
+ const TestConfig config (shaderType, format, tiling, textureFilter, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
+ vk::VK_FILTER_NEAREST, xChromaOffset, yChromaOffset, explicitReconstruction, disjoint,
+ defaultColorRange, defaultColorModel, swappedChromaSwizzle);
+
+ addFunctionCaseWithPrograms(textureFilterGroup.get(), string("default_nearest_") + xChromaOffsetName + "_" + tilingName + (disjoint ? "_disjoint" : "") + "_swapped_chroma", "", createTestShaders, textureConversionTest, config);
+ }
+ }
+ }
+ }
+
+ if (explicitReconstruction)
+ {
+ for (size_t tilingNdx = 0; tilingNdx < DE_LENGTH_OF_ARRAY(imageTilings); tilingNdx++)
+ {
+ const vk::VkImageTiling tiling (imageTilings[tilingNdx].value);
+ const char* const tilingName (imageTilings[tilingNdx].name);
+ {
+ const glu::ShaderType shaderType (rng.choose<glu::ShaderType>(DE_ARRAY_BEGIN(shaderTypes), DE_ARRAY_END(shaderTypes)));
+ const vk::VkChromaLocationKHR chromaLocation (rng.choose<ChromaLocationNamePair, const ChromaLocationNamePair*>(DE_ARRAY_BEGIN(chromaLocations), DE_ARRAY_END(chromaLocations)).value);
+ const TestConfig config (shaderType, format, tiling, textureFilter, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
+ vk::VK_FILTER_NEAREST, chromaLocation, chromaLocation, explicitReconstruction, disjoint,
+ defaultColorRange, defaultColorModel, identitySwizzle);
+
+ addFunctionCaseWithPrograms(textureFilterGroup.get(), string("explicit_nearest") + "_" + tilingName + (disjoint ? "_disjoint" : ""), "", createTestShaders, textureConversionTest, config);
+ }
+
+ {
+ const glu::ShaderType shaderType (rng.choose<glu::ShaderType>(DE_ARRAY_BEGIN(shaderTypes), DE_ARRAY_END(shaderTypes)));
+ const vk::VkChromaLocationKHR chromaLocation (rng.choose<ChromaLocationNamePair, const ChromaLocationNamePair*>(DE_ARRAY_BEGIN(chromaLocations), DE_ARRAY_END(chromaLocations)).value);
+ const TestConfig config (shaderType, format, tiling, textureFilter, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
+ vk::VK_FILTER_NEAREST, chromaLocation, chromaLocation, explicitReconstruction, disjoint,
+ defaultColorRange, defaultColorModel, swappedChromaSwizzle);
+
+ addFunctionCaseWithPrograms(textureFilterGroup.get(), string("explicit_nearest") + "_" + tilingName + (disjoint ? "_disjoint" : "") + "_swapped_chroma", "", createTestShaders, textureConversionTest, config);
+ }
+ }
+ }
+ }
+ }
+
+ reconstrucGroup->addChild(textureFilterGroup.release());
+ }
+
+ formatGroup->addChild(reconstrucGroup.release());
+ }
+
+ testGroup->addChild(formatGroup.release());
+ }
+
+ // Test formats with xy chroma reconstruction
+ for (size_t formatNdx = 0; formatNdx < DE_LENGTH_OF_ARRAY(xyChromaSubsampledFormats); formatNdx++)
+ {
+ const vk::VkFormat format (xyChromaSubsampledFormats[formatNdx]);
+ const std::string formatName (de::toLower(std::string(getFormatName(format)).substr(10)));
+ de::MovePtr<tcu::TestCaseGroup> formatGroup (new tcu::TestCaseGroup(testCtx, formatName.c_str(), ("Tests for color conversion using format " + formatName).c_str()));
+
+ // Color conversion tests
+ {
+ de::MovePtr<tcu::TestCaseGroup> conversionGroup (new tcu::TestCaseGroup(testCtx, "color_conversion", ""));
+
+ for (size_t chromaOffsetNdx = 0; chromaOffsetNdx < DE_LENGTH_OF_ARRAY(chromaLocations); chromaOffsetNdx++)
+ {
+ const char* const chromaOffsetName (chromaLocations[chromaOffsetNdx].name);
+ const vk::VkChromaLocationKHR chromaOffset (chromaLocations[chromaOffsetNdx].value);
+
+ for (size_t modelNdx = 0; modelNdx < DE_LENGTH_OF_ARRAY(colorModels); modelNdx++)
+ {
+ const char* const colorModelName (colorModels[modelNdx].name);
+ const vk::VkSamplerYcbcrModelConversionKHR colorModel (colorModels[modelNdx].value);
+
+ if (colorModel != vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_RGB_IDENTITY_KHR && getFormatChannelCount(format) < 3)
+ continue;
+
+ if (colorModel == vk::VK_SAMPLER_YCBCR_MODEL_CONVERSION_RGB_IDENTITY_KHR)
+ {
+ for (size_t tilingNdx = 0; tilingNdx < DE_LENGTH_OF_ARRAY(imageTilings); tilingNdx++)
+ {
+ const vk::VkImageTiling tiling (imageTilings[tilingNdx].value);
+ const char* const tilingName (imageTilings[tilingNdx].name);
+ const vk::VkSamplerYcbcrRangeKHR colorRange (rng.choose<RangeNamePair, const RangeNamePair*>(DE_ARRAY_BEGIN(colorRanges), DE_ARRAY_END(colorRanges)).value);
+ const glu::ShaderType shaderType (rng.choose<glu::ShaderType>(DE_ARRAY_BEGIN(shaderTypes), DE_ARRAY_END(shaderTypes)));
+ const TestConfig config (shaderType, format, tiling, vk::VK_FILTER_NEAREST, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
+ vk::VK_FILTER_NEAREST, chromaOffset, chromaOffset, false, false,
+ colorRange, colorModel, identitySwizzle);
+
+ addFunctionCaseWithPrograms(conversionGroup.get(), std::string(colorModelName) + "_" + tilingName + "_" + chromaOffsetName, "", createTestShaders, textureConversionTest, config);
+ }
+ }
+ else
+ {
+ for (size_t rangeNdx = 0; rangeNdx < DE_LENGTH_OF_ARRAY(colorRanges); rangeNdx++)
+ {
+ const char* const colorRangeName (colorRanges[rangeNdx].name);
+ const vk::VkSamplerYcbcrRangeKHR colorRange (colorRanges[rangeNdx].value);
+
+ // Narrow range doesn't really work with formats that have less than 8 bits
+ if (colorRange == vk::VK_SAMPLER_YCBCR_RANGE_ITU_NARROW_KHR)
+ {
+ const UVec4 bitDepth (getBitDepth(format));
+
+ if (bitDepth[0] < 8 || bitDepth[1] < 8 || bitDepth[2] < 8)
+ continue;
+ }
+
+ for (size_t tilingNdx = 0; tilingNdx < DE_LENGTH_OF_ARRAY(imageTilings); tilingNdx++)
+ {
+ const vk::VkImageTiling tiling (imageTilings[tilingNdx].value);
+ const char* const tilingName (imageTilings[tilingNdx].name);
+ const glu::ShaderType shaderType (rng.choose<glu::ShaderType>(DE_ARRAY_BEGIN(shaderTypes), DE_ARRAY_END(shaderTypes)));
+ const TestConfig config (shaderType, format, tiling, vk::VK_FILTER_NEAREST, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
+ vk::VK_FILTER_NEAREST, chromaOffset, chromaOffset, false, false,
+ colorRange, colorModel, identitySwizzle);
+
+ addFunctionCaseWithPrograms(conversionGroup.get(), (string(colorModelName) + "_" + colorRangeName + "_" + tilingName + "_" + chromaOffsetName).c_str(), "", createTestShaders, textureConversionTest, config);
+ }
+ }
+ }
+ }
+ }
+
+ formatGroup->addChild(conversionGroup.release());
+ }
+
+ // Chroma reconstruction tests
+ {
+ de::MovePtr<tcu::TestCaseGroup> reconstrucGroup (new tcu::TestCaseGroup(testCtx, "chroma_reconstruction", ""));
+
+ for (size_t textureFilterNdx = 0; textureFilterNdx < DE_LENGTH_OF_ARRAY(textureFilters); textureFilterNdx++)
+ {
+ const char* const textureFilterName (textureFilters[textureFilterNdx].name);
+ const vk::VkFilter textureFilter (textureFilters[textureFilterNdx].value);
+ de::MovePtr<tcu::TestCaseGroup> textureFilterGroup (new tcu::TestCaseGroup(testCtx, textureFilterName, textureFilterName));
+
+ for (size_t explicitReconstructionNdx = 0; explicitReconstructionNdx < 2; explicitReconstructionNdx++)
+ {
+ const bool explicitReconstruction (explicitReconstructionNdx == 1);
+
+ for (size_t disjointNdx = 0; disjointNdx < 2; disjointNdx++)
+ {
+ const bool disjoint (disjointNdx == 1);
+
+ for (size_t xChromaOffsetNdx = 0; xChromaOffsetNdx < DE_LENGTH_OF_ARRAY(chromaLocations); xChromaOffsetNdx++)
+ for (size_t yChromaOffsetNdx = 0; yChromaOffsetNdx < DE_LENGTH_OF_ARRAY(chromaLocations); yChromaOffsetNdx++)
+ {
+ const vk::VkChromaLocationKHR xChromaOffset (chromaLocations[xChromaOffsetNdx].value);
+ const char* const xChromaOffsetName (chromaLocations[xChromaOffsetNdx].name);
+
+ const vk::VkChromaLocationKHR yChromaOffset (chromaLocations[yChromaOffsetNdx].value);
+ const char* const yChromaOffsetName (chromaLocations[yChromaOffsetNdx].name);
+
+ for (size_t tilingNdx = 0; tilingNdx < DE_LENGTH_OF_ARRAY(imageTilings); tilingNdx++)
+ {
+ const vk::VkImageTiling tiling (imageTilings[tilingNdx].value);
+ const char* const tilingName (imageTilings[tilingNdx].name);
+ {
+ const glu::ShaderType shaderType (rng.choose<glu::ShaderType>(DE_ARRAY_BEGIN(shaderTypes), DE_ARRAY_END(shaderTypes)));
+ const TestConfig config (shaderType, format, tiling, textureFilter, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
+ vk::VK_FILTER_LINEAR, xChromaOffset, yChromaOffset, explicitReconstruction, disjoint,
+ defaultColorRange, defaultColorModel, identitySwizzle);
+
+ addFunctionCaseWithPrograms(textureFilterGroup.get(), string(explicitReconstruction ? "explicit_linear_" : "default_linear_") + xChromaOffsetName + "_" + yChromaOffsetName + "_" + tilingName + (disjoint ? "_disjoint" : ""), "", createTestShaders, textureConversionTest, config);
+ }
+
+ {
+ const glu::ShaderType shaderType (rng.choose<glu::ShaderType>(DE_ARRAY_BEGIN(shaderTypes), DE_ARRAY_END(shaderTypes)));
+ const TestConfig config (shaderType, format, tiling, textureFilter, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
+ vk::VK_FILTER_LINEAR, xChromaOffset, yChromaOffset, explicitReconstruction, disjoint,
+ defaultColorRange, defaultColorModel, swappedChromaSwizzle);
+
+ addFunctionCaseWithPrograms(textureFilterGroup.get(), string(explicitReconstruction ? "explicit_linear_" : "default_linear_") + xChromaOffsetName + "_" + yChromaOffsetName + "_" + tilingName + (disjoint ? "_disjoint" : "") + "_swapped_chroma", "", createTestShaders, textureConversionTest, config);
+ }
+
+ if (!explicitReconstruction)
+ {
+ {
+ const glu::ShaderType shaderType (rng.choose<glu::ShaderType>(DE_ARRAY_BEGIN(shaderTypes), DE_ARRAY_END(shaderTypes)));
+ const TestConfig config (shaderType, format, tiling, textureFilter, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
+ vk::VK_FILTER_NEAREST, xChromaOffset, yChromaOffset, explicitReconstruction, disjoint,
+ defaultColorRange, defaultColorModel, identitySwizzle);
+
+ addFunctionCaseWithPrograms(textureFilterGroup.get(), string("default_nearest_") + xChromaOffsetName + "_" + yChromaOffsetName + "_" + tilingName + (disjoint ? "_disjoint" : ""), "", createTestShaders, textureConversionTest, config);
+ }
+
+ {
+ const glu::ShaderType shaderType (rng.choose<glu::ShaderType>(DE_ARRAY_BEGIN(shaderTypes), DE_ARRAY_END(shaderTypes)));
+ const TestConfig config (shaderType, format, tiling, textureFilter, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
+ vk::VK_FILTER_NEAREST, xChromaOffset, yChromaOffset, explicitReconstruction, disjoint,
+ defaultColorRange, defaultColorModel, swappedChromaSwizzle);
+
+ addFunctionCaseWithPrograms(textureFilterGroup.get(), string("default_nearest_") + xChromaOffsetName + "_" + yChromaOffsetName + "_" + tilingName + (disjoint ? "_disjoint" : "") + "_swapped_chroma", "", createTestShaders, textureConversionTest, config);
+ }
+ }
+ }
+ }
+
+ if (explicitReconstruction)
+ {
+ for (size_t tilingNdx = 0; tilingNdx < DE_LENGTH_OF_ARRAY(imageTilings); tilingNdx++)
+ {
+ const vk::VkImageTiling tiling (imageTilings[tilingNdx].value);
+ const char* const tilingName (imageTilings[tilingNdx].name);
+ {
+ const glu::ShaderType shaderType (rng.choose<glu::ShaderType>(DE_ARRAY_BEGIN(shaderTypes), DE_ARRAY_END(shaderTypes)));
+ const vk::VkChromaLocationKHR chromaLocation (rng.choose<ChromaLocationNamePair, const ChromaLocationNamePair*>(DE_ARRAY_BEGIN(chromaLocations), DE_ARRAY_END(chromaLocations)).value);
+ const TestConfig config (shaderType, format, tiling, textureFilter, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
+ vk::VK_FILTER_NEAREST, chromaLocation, chromaLocation, explicitReconstruction, disjoint,
+ defaultColorRange, defaultColorModel, identitySwizzle);
+
+ addFunctionCaseWithPrograms(textureFilterGroup.get(), string("explicit_nearest") + "_" + tilingName + (disjoint ? "_disjoint" : ""), "", createTestShaders, textureConversionTest, config);
+ }
+
+ {
+ const glu::ShaderType shaderType (rng.choose<glu::ShaderType>(DE_ARRAY_BEGIN(shaderTypes), DE_ARRAY_END(shaderTypes)));
+ const vk::VkChromaLocationKHR chromaLocation (rng.choose<ChromaLocationNamePair, const ChromaLocationNamePair*>(DE_ARRAY_BEGIN(chromaLocations), DE_ARRAY_END(chromaLocations)).value);
+ const TestConfig config (shaderType, format, tiling, textureFilter, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, vk::VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
+ vk::VK_FILTER_NEAREST, chromaLocation, chromaLocation, explicitReconstruction, disjoint,
+ defaultColorRange, defaultColorModel, swappedChromaSwizzle);
+
+ addFunctionCaseWithPrograms(textureFilterGroup.get(), string("explicit_nearest") + "_" + tilingName + (disjoint ? "_disjoint" : "") + "_swapped_chroma", "", createTestShaders, textureConversionTest, config);
+ }
+ }
+ }
+ }
+ }
+
+ reconstrucGroup->addChild(textureFilterGroup.release());
+ }
+
+ formatGroup->addChild(reconstrucGroup.release());
+ }
+
+ testGroup->addChild(formatGroup.release());
+ }
+}
+
+} // anonymous
+
+tcu::TestCaseGroup* createConversionTests (tcu::TestContext& testCtx)
+{
+ return createTestGroup(testCtx, "conversion", "Sampler YCbCr Conversion Tests", initTests);
+}
+
+} // ycbcr
+} // vkt
--- /dev/null
+#ifndef _VKTYCBCRCONVERSIONTESTS_HPP
+#define _VKTYCBCRCONVERSIONTESTS_HPP
+/*------------------------------------------------------------------------
+ * Vulkan Conformance Tests
+ * ------------------------
+ *
+ * Copyright (c) 2017 Google Inc.
+ *
+ * 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
+ *
+ * Unless required by applicable law or agreed to in writing, software
+ * distributed under the License is distributed on an "AS IS" BASIS,
+ * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
+ * See the License for the specific language governing permissions and
+ * limitations under the License.
+ *
+ *//*!
+ * \file
+ * \brief Sampler YCbCr conversion tests
+ *//*--------------------------------------------------------------------*/
+
+#include "tcuDefs.hpp"
+#include "tcuTestCase.hpp"
+
+namespace vkt
+{
+namespace ycbcr
+{
+
+tcu::TestCaseGroup* createConversionTests (tcu::TestContext& testCtx);
+
+} // ycbcr
+} // vkt
+
+#endif // _VKTYCBCRCONVERSIONTESTS_HPP
--- /dev/null
+/*-------------------------------------------------------------------------
+ * Vulkan Conformance Tests
+ * ------------------------
+ *
+ * Copyright (c) 2017 Google Inc.
+ *
+ * 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
+ *
+ * Unless required by applicable law or agreed to in writing, software
+ * distributed under the License is distributed on an "AS IS" BASIS,
+ * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
+ * See the License for the specific language governing permissions and
+ * limitations under the License.
+ *
+ *//*!
+ * \file
+ * \brief YCbCr Format Tests
+ *//*--------------------------------------------------------------------*/
+
+#include "vktYCbCrFormatTests.hpp"
+#include "vktTestCaseUtil.hpp"
+#include "vktTestGroupUtil.hpp"
+#include "vktShaderExecutor.hpp"
+#include "vktYCbCrUtil.hpp"
+
+#include "vkStrUtil.hpp"
+#include "vkRef.hpp"
+#include "vkRefUtil.hpp"
+#include "vkTypeUtil.hpp"
+#include "vkQueryUtil.hpp"
+#include "vkMemUtil.hpp"
+#include "vkImageUtil.hpp"
+
+#include "tcuTestLog.hpp"
+#include "tcuVectorUtil.hpp"
+
+#include "deStringUtil.hpp"
+#include "deSharedPtr.hpp"
+#include "deUniquePtr.hpp"
+#include "deRandom.hpp"
+#include "deSTLUtil.hpp"
+
+namespace vkt
+{
+namespace ycbcr
+{
+namespace
+{
+
+// \todo [2017-05-24 pyry] Extend:
+// * VK_IMAGE_TILING_LINEAR
+// * Other shader types
+
+using namespace vk;
+using namespace shaderexecutor;
+
+using tcu::UVec2;
+using tcu::Vec2;
+using tcu::Vec4;
+using tcu::TestLog;
+using de::MovePtr;
+using de::UniquePtr;
+using std::vector;
+using std::string;
+
+typedef de::SharedPtr<Allocation> AllocationSp;
+typedef de::SharedPtr<vk::Unique<VkBuffer> > VkBufferSp;
+
+Move<VkImage> createTestImage (const DeviceInterface& vkd,
+ VkDevice device,
+ VkFormat format,
+ const UVec2& size,
+ VkImageCreateFlags createFlags,
+ VkImageTiling tiling,
+ VkImageLayout layout)
+{
+ const VkImageCreateInfo createInfo =
+ {
+ VK_STRUCTURE_TYPE_IMAGE_CREATE_INFO,
+ DE_NULL,
+ createFlags,
+ VK_IMAGE_TYPE_2D,
+ format,
+ makeExtent3D(size.x(), size.y(), 1u),
+ 1u, // mipLevels
+ 1u, // arrayLayers
+ VK_SAMPLE_COUNT_1_BIT,
+ tiling,
+ VK_IMAGE_USAGE_TRANSFER_DST_BIT|VK_IMAGE_USAGE_SAMPLED_BIT,
+ VK_SHARING_MODE_EXCLUSIVE,
+ 0u,
+ (const deUint32*)DE_NULL,
+ layout,
+ };
+
+ return createImage(vkd, device, &createInfo);
+}
+
+Move<VkImageView> createImageView (const DeviceInterface& vkd,
+ VkDevice device,
+ VkImage image,
+ VkFormat format,
+ VkSamplerYcbcrConversionKHR conversion)
+{
+ const VkSamplerYcbcrConversionInfoKHR conversionInfo =
+ {
+ VK_STRUCTURE_TYPE_SAMPLER_YCBCR_CONVERSION_INFO_KHR,
+ DE_NULL,
+ conversion
+ };
+ const VkImageViewCreateInfo viewInfo =
+ {
+ VK_STRUCTURE_TYPE_IMAGE_VIEW_CREATE_INFO,
+ &conversionInfo,
+ (VkImageViewCreateFlags)0,
+ image,
+ VK_IMAGE_VIEW_TYPE_2D,
+ format,
+ {
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ },
+ { VK_IMAGE_ASPECT_COLOR_BIT, 0u, 1u, 0u, 1u },
+ };
+
+ return createImageView(vkd, device, &viewInfo);
+}
+
+Move<VkDescriptorSetLayout> createDescriptorSetLayout (const DeviceInterface& vkd, VkDevice device, VkSampler sampler)
+{
+ const VkDescriptorSetLayoutBinding binding =
+ {
+ 0u, // binding
+ VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER,
+ 1u, // descriptorCount
+ VK_SHADER_STAGE_ALL,
+ &sampler
+ };
+ const VkDescriptorSetLayoutCreateInfo layoutInfo =
+ {
+ VK_STRUCTURE_TYPE_DESCRIPTOR_SET_LAYOUT_CREATE_INFO,
+ DE_NULL,
+ (VkDescriptorSetLayoutCreateFlags)0u,
+ 1u,
+ &binding,
+ };
+
+ return createDescriptorSetLayout(vkd, device, &layoutInfo);
+}
+
+Move<VkDescriptorPool> createDescriptorPool (const DeviceInterface& vkd, VkDevice device)
+{
+ const VkDescriptorPoolSize poolSizes[] =
+ {
+ { VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER, 1u },
+ };
+ const VkDescriptorPoolCreateInfo poolInfo =
+ {
+ VK_STRUCTURE_TYPE_DESCRIPTOR_POOL_CREATE_INFO,
+ DE_NULL,
+ (VkDescriptorPoolCreateFlags)VK_DESCRIPTOR_POOL_CREATE_FREE_DESCRIPTOR_SET_BIT,
+ 1u, // maxSets
+ DE_LENGTH_OF_ARRAY(poolSizes),
+ poolSizes,
+ };
+
+ return createDescriptorPool(vkd, device, & poolInfo);
+}
+
+Move<VkDescriptorSet> createDescriptorSet (const DeviceInterface& vkd,
+ VkDevice device,
+ VkDescriptorPool descPool,
+ VkDescriptorSetLayout descLayout,
+ VkImageView imageView,
+ VkSampler sampler)
+{
+ Move<VkDescriptorSet> descSet;
+
+ {
+ const VkDescriptorSetAllocateInfo allocInfo =
+ {
+ VK_STRUCTURE_TYPE_DESCRIPTOR_SET_ALLOCATE_INFO,
+ DE_NULL,
+ descPool,
+ 1u,
+ &descLayout,
+ };
+
+ descSet = allocateDescriptorSet(vkd, device, &allocInfo);
+ }
+
+ {
+ const VkDescriptorImageInfo imageInfo =
+ {
+ sampler,
+ imageView,
+ VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL
+ };
+ const VkWriteDescriptorSet descriptorWrite =
+ {
+ VK_STRUCTURE_TYPE_WRITE_DESCRIPTOR_SET,
+ DE_NULL,
+ *descSet,
+ 0u, // dstBinding
+ 0u, // dstArrayElement
+ 1u, // descriptorCount
+ VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER,
+ &imageInfo,
+ (const VkDescriptorBufferInfo*)DE_NULL,
+ (const VkBufferView*)DE_NULL,
+ };
+
+ vkd.updateDescriptorSets(device, 1u, &descriptorWrite, 0u, DE_NULL);
+ }
+
+ return descSet;
+}
+
+struct TestParameters
+{
+ VkFormat format;
+ UVec2 size;
+ VkImageCreateFlags flags;
+ VkImageTiling tiling;
+ glu::ShaderType shaderType;
+ bool useMappedMemory;
+
+ TestParameters (VkFormat format_,
+ const UVec2& size_,
+ VkImageCreateFlags flags_,
+ VkImageTiling tiling_,
+ glu::ShaderType shaderType_,
+ bool useMappedMemory_)
+ : format (format_)
+ , size (size_)
+ , flags (flags_)
+ , tiling (tiling_)
+ , shaderType (shaderType_)
+ , useMappedMemory (useMappedMemory_)
+ {
+ }
+
+ TestParameters (void)
+ : format (VK_FORMAT_UNDEFINED)
+ , flags (0u)
+ , tiling (VK_IMAGE_TILING_OPTIMAL)
+ , shaderType (glu::SHADERTYPE_LAST)
+ , useMappedMemory (false)
+ {
+ }
+};
+
+ShaderSpec getShaderSpec (const TestParameters&)
+{
+ ShaderSpec spec;
+
+ spec.inputs.push_back(Symbol("texCoord", glu::VarType(glu::TYPE_FLOAT_VEC2, glu::PRECISION_HIGHP)));
+ spec.outputs.push_back(Symbol("result", glu::VarType(glu::TYPE_FLOAT_VEC4, glu::PRECISION_HIGHP)));
+
+ spec.globalDeclarations =
+ "layout(binding = 0, set = 1) uniform highp sampler2D u_image;\n";
+
+ spec.source =
+ "result = texture(u_image, texCoord);\n";
+
+ return spec;
+}
+
+void checkSupport (Context& context, const TestParameters& params)
+{
+ checkImageSupport(context, params.format, params.flags, params.tiling);
+}
+
+void generateLookupCoordinates (const UVec2& imageSize, vector<Vec2>* dst)
+{
+ dst->resize(imageSize.x() * imageSize.y());
+
+ for (deUint32 texelY = 0; texelY < imageSize.y(); ++texelY)
+ for (deUint32 texelX = 0; texelX < imageSize.x(); ++texelX)
+ {
+ const float x = ((float)texelX + 0.5f) / (float)imageSize.x();
+ const float y = ((float)texelY + 0.5f) / (float)imageSize.y();
+
+ (*dst)[texelY*imageSize.x() + texelX] = Vec2(x, y);
+ }
+}
+
+tcu::TestStatus testFormat (Context& context, TestParameters params)
+{
+ checkSupport(context, params);
+
+ const DeviceInterface& vkd = context.getDeviceInterface();
+ const VkDevice device = context.getDevice();
+
+ const VkFormat format = params.format;
+ const PlanarFormatDescription formatInfo = getPlanarFormatDescription(format);
+ const UVec2 size = params.size;
+ const VkImageCreateFlags createFlags = params.flags;
+ const VkImageTiling tiling = params.tiling;
+ const bool mappedMemory = params.useMappedMemory;
+
+ const Unique<VkImage> image (createTestImage(vkd, device, format, size, createFlags, tiling, mappedMemory ? VK_IMAGE_LAYOUT_PREINITIALIZED : VK_IMAGE_LAYOUT_UNDEFINED));
+ const vector<AllocationSp> allocations (allocateAndBindImageMemory(vkd, device, context.getDefaultAllocator(), *image, format, createFlags, mappedMemory ? MemoryRequirement::HostVisible : MemoryRequirement::Any));
+
+ const VkSamplerYcbcrConversionCreateInfoKHR conversionInfo =
+ {
+ VK_STRUCTURE_TYPE_SAMPLER_YCBCR_CONVERSION_CREATE_INFO_KHR,
+ DE_NULL,
+ format,
+ VK_SAMPLER_YCBCR_MODEL_CONVERSION_RGB_IDENTITY_KHR,
+ VK_SAMPLER_YCBCR_RANGE_ITU_FULL_KHR,
+ {
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ },
+ VK_CHROMA_LOCATION_MIDPOINT_KHR,
+ VK_CHROMA_LOCATION_MIDPOINT_KHR,
+ VK_FILTER_NEAREST,
+ VK_FALSE, // forceExplicitReconstruction
+ };
+ const Unique<VkSamplerYcbcrConversionKHR> conversion (createSamplerYcbcrConversionKHR(vkd, device, &conversionInfo));
+ const Unique<VkImageView> imageView (createImageView(vkd, device, *image, format, *conversion));
+
+ const VkSamplerYcbcrConversionInfoKHR samplerConversionInfo =
+ {
+ VK_STRUCTURE_TYPE_SAMPLER_YCBCR_CONVERSION_INFO_KHR,
+ DE_NULL,
+ *conversion,
+ };
+
+ const VkSamplerCreateInfo samplerInfo =
+ {
+ VK_STRUCTURE_TYPE_SAMPLER_CREATE_INFO,
+ &samplerConversionInfo,
+ 0u,
+ VK_FILTER_NEAREST, // magFilter
+ VK_FILTER_NEAREST, // minFilter
+ VK_SAMPLER_MIPMAP_MODE_NEAREST, // mipmapMode
+ VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, // addressModeU
+ VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, // addressModeV
+ VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, // addressModeW
+ 0.0f, // mipLodBias
+ VK_FALSE, // anisotropyEnable
+ 1.0f, // maxAnisotropy
+ VK_FALSE, // compareEnable
+ VK_COMPARE_OP_ALWAYS, // compareOp
+ 0.0f, // minLod
+ 0.0f, // maxLod
+ VK_BORDER_COLOR_FLOAT_TRANSPARENT_BLACK, // borderColor
+ VK_FALSE, // unnormalizedCoords
+ };
+
+ const Unique<VkSampler> sampler (createSampler(vkd, device, &samplerInfo));
+
+ const Unique<VkDescriptorSetLayout> descLayout (createDescriptorSetLayout(vkd, device, *sampler));
+ const Unique<VkDescriptorPool> descPool (createDescriptorPool(vkd, device));
+ const Unique<VkDescriptorSet> descSet (createDescriptorSet(vkd, device, *descPool, *descLayout, *imageView, *sampler));
+
+ MultiPlaneImageData imageData (format, size);
+
+ // Prepare texture data
+ fillGradient(&imageData, Vec4(0.0f), Vec4(1.0f));
+
+ if (mappedMemory)
+ {
+ // Fill and prepare image
+ fillImageMemory(vkd,
+ device,
+ context.getUniversalQueueFamilyIndex(),
+ *image,
+ allocations,
+ imageData,
+ (VkAccessFlags)VK_ACCESS_SHADER_READ_BIT,
+ VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL);
+ }
+ else
+ {
+ // Upload and prepare image
+ uploadImage(vkd,
+ device,
+ context.getUniversalQueueFamilyIndex(),
+ context.getDefaultAllocator(),
+ *image,
+ imageData,
+ (VkAccessFlags)VK_ACCESS_SHADER_READ_BIT,
+ VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL);
+ }
+
+ {
+ vector<Vec2> texCoord;
+ vector<Vec4> result;
+ vector<Vec4> reference;
+ bool allOk = true;
+ Vec4 threshold (0.02f);
+
+ generateLookupCoordinates(size, &texCoord);
+
+ result.resize(texCoord.size());
+ reference.resize(texCoord.size());
+
+ {
+ UniquePtr<ShaderExecutor> executor (createExecutor(context, params.shaderType, getShaderSpec(params), *descLayout));
+ const void* inputs[] = { texCoord[0].getPtr() };
+ void* outputs[] = { result[0].getPtr() };
+
+ executor->execute((int)texCoord.size(), inputs, outputs, *descSet);
+ }
+
+ for (deUint32 channelNdx = 0; channelNdx < 4; channelNdx++)
+ {
+ if (formatInfo.hasChannelNdx(channelNdx))
+ {
+ const tcu::ConstPixelBufferAccess channelAccess = imageData.getChannelAccess(channelNdx);
+ const tcu::Sampler refSampler = mapVkSampler(samplerInfo);
+ const tcu::Texture2DView refTexView (1u, &channelAccess);
+
+ for (size_t ndx = 0; ndx < texCoord.size(); ++ndx)
+ {
+ const Vec2& coord = texCoord[ndx];
+ reference[ndx][channelNdx] = refTexView.sample(refSampler, coord.x(), coord.y(), 0.0f)[0];
+ }
+ }
+ else
+ {
+ for (size_t ndx = 0; ndx < texCoord.size(); ++ndx)
+ reference[ndx][channelNdx] = channelNdx == 3 ? 1.0f : 0.0f;
+ }
+ }
+
+ for (size_t ndx = 0; ndx < texCoord.size(); ++ndx)
+ {
+ if (boolAny(greaterThanEqual(abs(result[ndx] - reference[ndx]), threshold)))
+ {
+ context.getTestContext().getLog()
+ << TestLog::Message << "ERROR: At " << texCoord[ndx]
+ << ": got " << result[ndx]
+ << ", expected " << reference[ndx]
+ << TestLog::EndMessage;
+ allOk = false;
+ }
+ }
+
+ if (allOk)
+ return tcu::TestStatus::pass("All samples passed");
+ else
+ {
+ const tcu::ConstPixelBufferAccess refAccess (tcu::TextureFormat(tcu::TextureFormat::RGBA, tcu::TextureFormat::FLOAT),
+ tcu::IVec3((int)size.x(), (int)size.y(), 1u),
+ reference[0].getPtr());
+ const tcu::ConstPixelBufferAccess resAccess (tcu::TextureFormat(tcu::TextureFormat::RGBA, tcu::TextureFormat::FLOAT),
+ tcu::IVec3((int)size.x(), (int)size.y(), 1u),
+ result[0].getPtr());
+
+ context.getTestContext().getLog()
+ << TestLog::Image("Result", "Result Image", resAccess, Vec4(1.0f), Vec4(0.0f))
+ << TestLog::Image("Reference", "Reference Image", refAccess, Vec4(1.0f), Vec4(0.0f));
+
+ return tcu::TestStatus::fail("Got invalid results");
+ }
+ }
+}
+
+void initPrograms (SourceCollections& dst, TestParameters params)
+{
+ const ShaderSpec spec = getShaderSpec(params);
+
+ generateSources(params.shaderType, spec, dst);
+}
+
+void populatePerFormatGroup (tcu::TestCaseGroup* group, VkFormat format)
+{
+ const UVec2 size (66, 32);
+ const struct
+ {
+ const char* name;
+ glu::ShaderType value;
+ } shaderTypes[] =
+ {
+ { "vertex", glu::SHADERTYPE_VERTEX },
+ { "fragment", glu::SHADERTYPE_FRAGMENT },
+ { "geometry", glu::SHADERTYPE_GEOMETRY },
+ { "tess_control", glu::SHADERTYPE_TESSELLATION_CONTROL },
+ { "tess_eval", glu::SHADERTYPE_TESSELLATION_EVALUATION },
+ { "compute", glu::SHADERTYPE_COMPUTE }
+ };
+ const struct
+ {
+ const char* name;
+ VkImageTiling value;
+ } tilings[] =
+ {
+ { "optimal", VK_IMAGE_TILING_OPTIMAL },
+ { "linear", VK_IMAGE_TILING_LINEAR }
+ };
+
+ for (int shaderTypeNdx = 0; shaderTypeNdx < DE_LENGTH_OF_ARRAY(shaderTypes); shaderTypeNdx++)
+ for (int tilingNdx = 0; tilingNdx < DE_LENGTH_OF_ARRAY(tilings); tilingNdx++)
+ {
+ const VkImageTiling tiling = tilings[tilingNdx].value;
+ const char* const tilingName = tilings[tilingNdx].name;
+ const glu::ShaderType shaderType = shaderTypes[shaderTypeNdx].value;
+ const char* const shaderTypeName = shaderTypes[shaderTypeNdx].name;
+ const string name = string(shaderTypeName) + "_" + tilingName;
+
+ addFunctionCaseWithPrograms(group, name, "", initPrograms, testFormat, TestParameters(format, size, 0u, tiling, shaderType, false));
+
+ if (getPlaneCount(format) > 1)
+ addFunctionCaseWithPrograms(group, name + "_disjoint", "", initPrograms, testFormat, TestParameters(format, size, (VkImageCreateFlags)VK_IMAGE_CREATE_DISJOINT_BIT_KHR, tiling, shaderType, false));
+
+ if (tiling == VK_IMAGE_TILING_LINEAR)
+ {
+ addFunctionCaseWithPrograms(group, name + "_mapped", "", initPrograms, testFormat, TestParameters(format, size, 0u, tiling, shaderType, true));
+
+ if (getPlaneCount(format) > 1)
+ addFunctionCaseWithPrograms(group, name + "_disjoint_mapped", "", initPrograms, testFormat, TestParameters(format, size, (VkImageCreateFlags)VK_IMAGE_CREATE_DISJOINT_BIT_KHR, tiling, shaderType, true));
+ }
+ }
+}
+
+void populateFormatGroup (tcu::TestCaseGroup* group)
+{
+ for (int formatNdx = VK_YCBCR_FORMAT_FIRST; formatNdx < VK_YCBCR_FORMAT_LAST; formatNdx++)
+ {
+ const VkFormat format = (VkFormat)formatNdx;
+ const string formatName = de::toLower(de::toString(format).substr(10));
+
+ group->addChild(createTestGroup<VkFormat>(group->getTestContext(), formatName, "", populatePerFormatGroup, format));
+ }
+}
+
+} // namespace
+
+tcu::TestCaseGroup* createFormatTests (tcu::TestContext& testCtx)
+{
+ return createTestGroup(testCtx, "format", "YCbCr Format Tests", populateFormatGroup);
+}
+
+} // ycbcr
+} // vkt
--- /dev/null
+#ifndef _VKTYCBCRFORMATTESTS_HPP
+#define _VKTYCBCRFORMATTESTS_HPP
+/*-------------------------------------------------------------------------
+ * Vulkan Conformance Tests
+ * ------------------------
+ *
+ * Copyright (c) 2017 Google Inc.
+ *
+ * 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
+ *
+ * Unless required by applicable law or agreed to in writing, software
+ * distributed under the License is distributed on an "AS IS" BASIS,
+ * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
+ * See the License for the specific language governing permissions and
+ * limitations under the License.
+ *
+ *//*!
+ * \file
+ * \brief YCbCr Format Tests
+ *//*--------------------------------------------------------------------*/
+
+#include "tcuDefs.hpp"
+#include "tcuTestCase.hpp"
+
+namespace vkt
+{
+namespace ycbcr
+{
+
+tcu::TestCaseGroup* createFormatTests (tcu::TestContext& testCtx);
+
+} // ycbcr
+} // vkt
+
+#endif // _VKTYCBCRFORMATTESTS_HPP
--- /dev/null
+/*-------------------------------------------------------------------------
+ * Vulkan Conformance Tests
+ * ------------------------
+ *
+ * Copyright (c) 2017 Google Inc.
+ *
+ * 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
+ *
+ * Unless required by applicable law or agreed to in writing, software
+ * distributed under the License is distributed on an "AS IS" BASIS,
+ * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
+ * See the License for the specific language governing permissions and
+ * limitations under the License.
+ *
+ *//*!
+ * \file
+ * \brief OpImageQuery & YCbCr Tests
+ *//*--------------------------------------------------------------------*/
+
+#include "vktYCbCrImageQueryTests.hpp"
+#include "vktTestCaseUtil.hpp"
+#include "vktTestGroupUtil.hpp"
+#include "vktShaderExecutor.hpp"
+#include "vktYCbCrUtil.hpp"
+#include "vktDrawUtil.hpp"
+
+#include "vkStrUtil.hpp"
+#include "vkRef.hpp"
+#include "vkRefUtil.hpp"
+#include "vkTypeUtil.hpp"
+#include "vkQueryUtil.hpp"
+#include "vkMemUtil.hpp"
+#include "vkImageUtil.hpp"
+
+#include "tcuTestLog.hpp"
+#include "tcuVectorUtil.hpp"
+#include "tcuTexLookupVerifier.hpp"
+
+#include "deStringUtil.hpp"
+#include "deSharedPtr.hpp"
+#include "deUniquePtr.hpp"
+#include "deRandom.hpp"
+#include "deSTLUtil.hpp"
+
+namespace vkt
+{
+namespace ycbcr
+{
+namespace
+{
+
+using namespace vk;
+using namespace shaderexecutor;
+
+using tcu::UVec2;
+using tcu::Vec2;
+using tcu::Vec4;
+using tcu::TestLog;
+using de::MovePtr;
+using de::UniquePtr;
+using std::vector;
+using std::string;
+
+typedef de::SharedPtr<Allocation> AllocationSp;
+typedef de::SharedPtr<vk::Unique<VkBuffer> > VkBufferSp;
+
+enum QueryType
+{
+ QUERY_TYPE_IMAGE_SIZE_LOD, // OpImageQuerySizeLod
+ QUERY_TYPE_IMAGE_LOD, // OpImageQueryLod
+ QUERY_TYPE_IMAGE_LEVELS, // OpImageQueryLevels
+
+ QUERY_TYPE_LAST
+};
+
+struct TestParameters
+{
+ QueryType query;
+ VkFormat format;
+ VkImageCreateFlags flags;
+ glu::ShaderType shaderType;
+
+ TestParameters (QueryType query_, VkFormat format_, VkImageCreateFlags flags_, glu::ShaderType shaderType_)
+ : query (query_)
+ , format (format_)
+ , flags (flags_)
+ , shaderType(shaderType_)
+ {
+ }
+
+ TestParameters (void)
+ : query (QUERY_TYPE_LAST)
+ , format (VK_FORMAT_UNDEFINED)
+ , flags (0u)
+ , shaderType(glu::SHADERTYPE_LAST)
+ {
+ }
+};
+
+ShaderSpec getShaderSpec (const TestParameters& params)
+{
+ ShaderSpec spec;
+ const char* expr = DE_NULL;
+ glu::DataType resultType = glu::TYPE_LAST;
+
+ switch (params.query)
+ {
+ case QUERY_TYPE_IMAGE_SIZE_LOD:
+ expr = "textureSize(u_image, lod)";
+ resultType = glu::TYPE_INT_VEC2;
+ break;
+
+ case QUERY_TYPE_IMAGE_LEVELS:
+ expr = "textureQueryLevels(u_image)";
+ resultType = glu::TYPE_INT;
+ break;
+
+ default:
+ DE_FATAL("Unknown query");
+ }
+
+ spec.glslVersion = glu::GLSL_VERSION_450;
+
+ spec.inputs.push_back(Symbol("lod", glu::VarType(glu::TYPE_INT, glu::PRECISION_HIGHP)));
+ spec.outputs.push_back(Symbol("result", glu::VarType(resultType, glu::PRECISION_HIGHP)));
+
+ spec.globalDeclarations =
+ "layout(binding = 0, set = 1) uniform highp sampler2D u_image;\n";
+
+ spec.source =
+ string("result = ") + expr + ";\n";
+
+ return spec;
+}
+
+Move<VkImage> createTestImage (const DeviceInterface& vkd,
+ VkDevice device,
+ VkFormat format,
+ const UVec2& size,
+ VkImageCreateFlags createFlags)
+{
+ const VkImageCreateInfo createInfo =
+ {
+ VK_STRUCTURE_TYPE_IMAGE_CREATE_INFO,
+ DE_NULL,
+ createFlags,
+ VK_IMAGE_TYPE_2D,
+ format,
+ makeExtent3D(size.x(), size.y(), 1u),
+ 1u, // mipLevels
+ 1u, // arrayLayers
+ VK_SAMPLE_COUNT_1_BIT,
+ VK_IMAGE_TILING_OPTIMAL,
+ VK_IMAGE_USAGE_TRANSFER_DST_BIT|VK_IMAGE_USAGE_SAMPLED_BIT,
+ VK_SHARING_MODE_EXCLUSIVE,
+ 0u,
+ (const deUint32*)DE_NULL,
+ VK_IMAGE_LAYOUT_UNDEFINED,
+ };
+
+ return createImage(vkd, device, &createInfo);
+}
+
+Move<VkImageView> createImageView (const DeviceInterface& vkd,
+ VkDevice device,
+ VkImage image,
+ VkFormat format)
+{
+ const VkImageViewCreateInfo viewInfo =
+ {
+ VK_STRUCTURE_TYPE_IMAGE_VIEW_CREATE_INFO,
+ DE_NULL,
+ (VkImageViewCreateFlags)0,
+ image,
+ VK_IMAGE_VIEW_TYPE_2D,
+ format,
+ {
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ },
+ { VK_IMAGE_ASPECT_COLOR_BIT, 0u, 1u, 0u, 1u },
+ };
+
+ return createImageView(vkd, device, &viewInfo);
+}
+
+class TestImage
+{
+public:
+ TestImage (const DeviceInterface& vkd,
+ VkDevice device,
+ Allocator& allocator,
+ VkFormat format,
+ const UVec2& size,
+ const VkImageCreateFlags createFlags);
+
+ const UVec2& getSize (void) const { return m_size; }
+ VkImageView getImageView (void) const { return *m_imageView; }
+
+private:
+ const UVec2 m_size;
+ const Unique<VkImage> m_image;
+ const vector<AllocationSp> m_allocations;
+ const Unique<VkImageView> m_imageView;
+};
+
+TestImage::TestImage (const DeviceInterface& vkd,
+ VkDevice device,
+ Allocator& allocator,
+ VkFormat format,
+ const UVec2& size,
+ const VkImageCreateFlags createFlags)
+ : m_size (size)
+ , m_image (createTestImage(vkd, device, format, size, createFlags))
+ , m_allocations (allocateAndBindImageMemory(vkd, device, allocator, *m_image, format, createFlags))
+ , m_imageView (createImageView(vkd, device, *m_image, format))
+{
+}
+
+typedef de::SharedPtr<TestImage> TestImageSp;
+
+Move<VkDescriptorSetLayout> createDescriptorSetLayout (const DeviceInterface& vkd, VkDevice device, VkSampler sampler)
+{
+ const VkDescriptorSetLayoutBinding binding =
+ {
+ 0u, // binding
+ VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER,
+ 1u, // descriptorCount
+ VK_SHADER_STAGE_ALL,
+ &sampler
+ };
+ const VkDescriptorSetLayoutCreateInfo layoutInfo =
+ {
+ VK_STRUCTURE_TYPE_DESCRIPTOR_SET_LAYOUT_CREATE_INFO,
+ DE_NULL,
+ (VkDescriptorSetLayoutCreateFlags)0u,
+ 1u,
+ &binding,
+ };
+
+ return createDescriptorSetLayout(vkd, device, &layoutInfo);
+}
+
+Move<VkDescriptorPool> createDescriptorPool (const DeviceInterface& vkd, VkDevice device)
+{
+ const VkDescriptorPoolSize poolSizes[] =
+ {
+ { VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER, 1u },
+ };
+ const VkDescriptorPoolCreateInfo poolInfo =
+ {
+ VK_STRUCTURE_TYPE_DESCRIPTOR_POOL_CREATE_INFO,
+ DE_NULL,
+ (VkDescriptorPoolCreateFlags)VK_DESCRIPTOR_POOL_CREATE_FREE_DESCRIPTOR_SET_BIT,
+ 1u, // maxSets
+ DE_LENGTH_OF_ARRAY(poolSizes),
+ poolSizes,
+ };
+
+ return createDescriptorPool(vkd, device, & poolInfo);
+}
+
+Move<VkDescriptorSet> createDescriptorSet (const DeviceInterface& vkd,
+ VkDevice device,
+ VkDescriptorPool descPool,
+ VkDescriptorSetLayout descLayout)
+{
+ const VkDescriptorSetAllocateInfo allocInfo =
+ {
+ VK_STRUCTURE_TYPE_DESCRIPTOR_SET_ALLOCATE_INFO,
+ DE_NULL,
+ descPool,
+ 1u,
+ &descLayout,
+ };
+
+ return allocateDescriptorSet(vkd, device, &allocInfo);
+}
+
+void bindImage (const DeviceInterface& vkd,
+ VkDevice device,
+ VkDescriptorSet descriptorSet,
+ VkImageView imageView,
+ VkSampler sampler)
+{
+ const VkDescriptorImageInfo imageInfo =
+ {
+ sampler,
+ imageView,
+ VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL
+ };
+ const VkWriteDescriptorSet descriptorWrite =
+ {
+ VK_STRUCTURE_TYPE_WRITE_DESCRIPTOR_SET,
+ DE_NULL,
+ descriptorSet,
+ 0u, // dstBinding
+ 0u, // dstArrayElement
+ 1u, // descriptorCount
+ VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER,
+ &imageInfo,
+ (const VkDescriptorBufferInfo*)DE_NULL,
+ (const VkBufferView*)DE_NULL,
+ };
+
+ vkd.updateDescriptorSets(device, 1u, &descriptorWrite, 0u, DE_NULL);
+}
+
+UVec2 getMaxPlaneDivisor (const PlanarFormatDescription& formatDesc)
+{
+ UVec2 maxDivisor (1u, 1u);
+
+ for (deUint32 ndx = 0; ndx < formatDesc.numPlanes; ++ndx)
+ {
+ maxDivisor.x() = de::max<deUint32>(maxDivisor.x(), formatDesc.planes[ndx].widthDivisor);
+ maxDivisor.y() = de::max<deUint32>(maxDivisor.y(), formatDesc.planes[ndx].heightDivisor);
+ }
+
+ return maxDivisor;
+}
+
+tcu::TestStatus testImageQuery (Context& context, TestParameters params)
+{
+ const bool isYCbCrImage = isYCbCrFormat(params.format);
+
+ if (isYCbCrImage)
+ checkImageSupport(context, params.format, params.flags);
+
+ const DeviceInterface& vkd = context.getDeviceInterface();
+ const VkDevice device = context.getDevice();
+
+ const VkSamplerYcbcrConversionCreateInfoKHR conversionInfo =
+ {
+ VK_STRUCTURE_TYPE_SAMPLER_YCBCR_CONVERSION_CREATE_INFO_KHR,
+ DE_NULL,
+ params.format,
+ VK_SAMPLER_YCBCR_MODEL_CONVERSION_RGB_IDENTITY_KHR,
+ VK_SAMPLER_YCBCR_RANGE_ITU_FULL_KHR,
+ {
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ },
+ VK_CHROMA_LOCATION_MIDPOINT_KHR,
+ VK_CHROMA_LOCATION_MIDPOINT_KHR,
+ VK_FILTER_NEAREST,
+ VK_FALSE, // forceExplicitReconstruction
+ };
+ const Unique<VkSamplerYcbcrConversionKHR> conversion (isYCbCrImage
+ ? createSamplerYcbcrConversionKHR(vkd, device, &conversionInfo)
+ : Move<VkSamplerYcbcrConversionKHR>());
+
+ const VkSamplerYcbcrConversionInfoKHR samplerConversionInfo =
+ {
+ VK_STRUCTURE_TYPE_SAMPLER_YCBCR_CONVERSION_INFO_KHR,
+ DE_NULL,
+ *conversion,
+ };
+
+ const VkSamplerCreateInfo samplerInfo =
+ {
+ VK_STRUCTURE_TYPE_SAMPLER_CREATE_INFO,
+ isYCbCrImage ? &samplerConversionInfo : DE_NULL,
+ 0u,
+ VK_FILTER_NEAREST, // magFilter
+ VK_FILTER_NEAREST, // minFilter
+ VK_SAMPLER_MIPMAP_MODE_NEAREST, // mipmapMode
+ VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, // addressModeU
+ VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, // addressModeV
+ VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, // addressModeW
+ 0.0f, // mipLodBias
+ VK_FALSE, // anisotropyEnable
+ 1.0f, // maxAnisotropy
+ VK_FALSE, // compareEnable
+ VK_COMPARE_OP_ALWAYS, // compareOp
+ 0.0f, // minLod
+ 0.0f, // maxLod
+ VK_BORDER_COLOR_FLOAT_TRANSPARENT_BLACK, // borderColor
+ VK_FALSE, // unnormalizedCoords
+ };
+
+ const Unique<VkSampler> sampler (createSampler(vkd, device, &samplerInfo));
+ const Unique<VkDescriptorSetLayout> descLayout (createDescriptorSetLayout(vkd, device, *sampler));
+ const Unique<VkDescriptorPool> descPool (createDescriptorPool(vkd, device));
+ const Unique<VkDescriptorSet> descSet (createDescriptorSet(vkd, device, *descPool, *descLayout));
+
+ vector<TestImageSp> testImages;
+
+ if (params.query == QUERY_TYPE_IMAGE_SIZE_LOD)
+ {
+ const PlanarFormatDescription& formatDesc = getPlanarFormatDescription(params.format);
+ const UVec2 maxDivisor = getMaxPlaneDivisor(formatDesc);
+ vector<UVec2> testSizes;
+
+ testSizes.push_back(maxDivisor);
+ testSizes.push_back(maxDivisor * UVec2(2u, 1u));
+ testSizes.push_back(maxDivisor * UVec2(1u, 2u));
+ testSizes.push_back(maxDivisor * UVec2(63u, 79u));
+ testSizes.push_back(maxDivisor * UVec2(99u, 1u));
+ testSizes.push_back(maxDivisor * UVec2(421u, 1117u));
+
+ testImages.resize(testSizes.size());
+
+ for (size_t ndx = 0; ndx < testSizes.size(); ++ndx)
+ testImages[ndx] = TestImageSp(new TestImage(vkd, device, context.getDefaultAllocator(), params.format, testSizes[ndx], params.flags));
+ }
+ else
+ testImages.push_back(TestImageSp(new TestImage(vkd, device, context.getDefaultAllocator(), params.format, UVec2(16, 18), params.flags)));
+
+ {
+ UniquePtr<ShaderExecutor> executor (createExecutor(context, params.shaderType, getShaderSpec(params), *descLayout));
+ bool allOk = true;
+
+ for (size_t imageNdx = 0; imageNdx < testImages.size(); ++imageNdx)
+ {
+ const deUint32 lod = 0u;
+ UVec2 result (~0u, ~0u);
+ const void* inputs[] = { &lod };
+ void* outputs[] = { result.getPtr() };
+
+ bindImage(vkd, device, *descSet, testImages[imageNdx]->getImageView(), *sampler);
+
+ executor->execute(1, inputs, outputs, *descSet);
+
+ switch (params.query)
+ {
+ case QUERY_TYPE_IMAGE_SIZE_LOD:
+ {
+ const UVec2 reference = testImages[imageNdx]->getSize();
+
+ if (result != reference)
+ {
+ context.getTestContext().getLog()
+ << TestLog::Message << "ERROR: Image " << imageNdx
+ << ": got " << result
+ << ", expected " << reference
+ << TestLog::EndMessage;
+ allOk = false;
+ }
+ break;
+ }
+
+ case QUERY_TYPE_IMAGE_LEVELS:
+ {
+ if (result.x() != 1u)
+ {
+ context.getTestContext().getLog()
+ << TestLog::Message << "ERROR: Image " << imageNdx
+ << ": got " << result.x()
+ << ", expected " << 1
+ << TestLog::EndMessage;
+ allOk = false;
+ }
+ break;
+ }
+
+ default:
+ DE_FATAL("Invalid query type");
+ }
+ }
+
+ if (allOk)
+ return tcu::TestStatus::pass("Queries passed");
+ else
+ return tcu::TestStatus::fail("Got invalid results");
+ }
+}
+
+tcu::TestStatus testImageQueryLod (Context& context, TestParameters params)
+{
+ const bool isYCbCrImage = isYCbCrFormat(params.format);
+
+ if (isYCbCrImage)
+ checkImageSupport(context, params.format, params.flags);
+
+ const DeviceInterface& vkd = context.getDeviceInterface();
+ const VkDevice device = context.getDevice();
+
+ const VkSamplerYcbcrConversionCreateInfoKHR conversionInfo =
+ {
+ VK_STRUCTURE_TYPE_SAMPLER_YCBCR_CONVERSION_CREATE_INFO_KHR,
+ DE_NULL,
+ params.format,
+ VK_SAMPLER_YCBCR_MODEL_CONVERSION_RGB_IDENTITY_KHR,
+ VK_SAMPLER_YCBCR_RANGE_ITU_FULL_KHR,
+ {
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ },
+ VK_CHROMA_LOCATION_MIDPOINT_KHR,
+ VK_CHROMA_LOCATION_MIDPOINT_KHR,
+ VK_FILTER_NEAREST,
+ VK_FALSE, // forceExplicitReconstruction
+ };
+ const Unique<VkSamplerYcbcrConversionKHR> conversion (isYCbCrImage
+ ? createSamplerYcbcrConversionKHR(vkd, device, &conversionInfo)
+ : Move<VkSamplerYcbcrConversionKHR>());
+
+ const VkSamplerYcbcrConversionInfoKHR samplerConversionInfo =
+ {
+ VK_STRUCTURE_TYPE_SAMPLER_YCBCR_CONVERSION_INFO_KHR,
+ DE_NULL,
+ *conversion,
+ };
+
+ const VkSamplerCreateInfo samplerInfo =
+ {
+ VK_STRUCTURE_TYPE_SAMPLER_CREATE_INFO,
+ isYCbCrImage ? &samplerConversionInfo : DE_NULL,
+ 0u,
+ VK_FILTER_NEAREST, // magFilter
+ VK_FILTER_NEAREST, // minFilter
+ VK_SAMPLER_MIPMAP_MODE_NEAREST, // mipmapMode
+ VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, // addressModeU
+ VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, // addressModeV
+ VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, // addressModeW
+ 0.0f, // mipLodBias
+ VK_FALSE, // anisotropyEnable
+ 1.0f, // maxAnisotropy
+ VK_FALSE, // compareEnable
+ VK_COMPARE_OP_ALWAYS, // compareOp
+ 0.0f, // minLod
+ 0.0f, // maxLod
+ VK_BORDER_COLOR_FLOAT_TRANSPARENT_BLACK, // borderColor
+ VK_FALSE, // unnormalizedCoords
+ };
+
+ const Unique<VkSampler> sampler (createSampler(vkd, device, &samplerInfo));
+ const Unique<VkDescriptorSetLayout> descLayout (createDescriptorSetLayout(vkd, device, *sampler));
+ const Unique<VkDescriptorPool> descPool (createDescriptorPool(vkd, device));
+ const Unique<VkDescriptorSet> descSet (createDescriptorSet(vkd, device, *descPool, *descLayout));
+
+ vector<TestImageSp> testImages;
+
+ DE_ASSERT(params.query == QUERY_TYPE_IMAGE_LOD);
+ DE_ASSERT(params.shaderType == glu::SHADERTYPE_FRAGMENT);
+
+ {
+ const PlanarFormatDescription& formatDesc = getPlanarFormatDescription(params.format);
+ const UVec2 maxDivisor = getMaxPlaneDivisor(formatDesc);
+ vector<UVec2> testSizes;
+
+ testSizes.push_back(maxDivisor);
+ testSizes.push_back(maxDivisor * UVec2(2u, 1u));
+ testSizes.push_back(maxDivisor * UVec2(1u, 2u));
+ testSizes.push_back(maxDivisor * UVec2(4u, 123u));
+ testSizes.push_back(maxDivisor * UVec2(312u, 13u));
+ testSizes.push_back(maxDivisor * UVec2(841u, 917u));
+
+ testImages.resize(testSizes.size());
+
+ for (size_t ndx = 0; ndx < testSizes.size(); ++ndx)
+ testImages[ndx] = TestImageSp(new TestImage(vkd, device, context.getDefaultAllocator(), params.format, testSizes[ndx], params.flags));
+ }
+
+ {
+ using namespace drawutil;
+
+ struct LocalUtil
+ {
+ static DrawState getDrawState (UVec2 renderSize)
+ {
+ DrawState state(VK_PRIMITIVE_TOPOLOGY_TRIANGLE_LIST, renderSize.x(), renderSize.y());
+ state.colorFormat = VK_FORMAT_R32G32_SFLOAT;
+ return state;
+ }
+
+ static vector<Vec4> getVertices (void)
+ {
+ vector<Vec4> vertices;
+
+ vertices.push_back(Vec4(-1.0f, -1.0f, 0.0f, 1.0f));
+ vertices.push_back(Vec4(+1.0f, -1.0f, 0.0f, 1.0f));
+ vertices.push_back(Vec4(-1.0f, +1.0f, 0.0f, 1.0f));
+
+ vertices.push_back(Vec4(+1.0f, -1.0f, 0.0f, 1.0f));
+ vertices.push_back(Vec4(-1.0f, +1.0f, 0.0f, 1.0f));
+ vertices.push_back(Vec4(+1.0f, +1.0f, 0.0f, 1.0f));
+
+ return vertices;
+ }
+
+ static VulkanProgram getProgram (Context& ctx, VkDescriptorSetLayout descriptorLayout, VkDescriptorSet descriptorSet)
+ {
+ VulkanProgram prog;
+
+ prog.shaders.push_back(VulkanShader(VK_SHADER_STAGE_VERTEX_BIT, ctx.getBinaryCollection().get("vert")));
+ prog.shaders.push_back(VulkanShader(VK_SHADER_STAGE_FRAGMENT_BIT, ctx.getBinaryCollection().get("frag")));
+
+ prog.descriptorSet = descriptorSet;
+ prog.descriptorSetLayout = descriptorLayout;
+
+ return prog;
+ }
+ };
+
+ const UVec2 renderSize (128, 256);
+ const vector<Vec4> vertices (LocalUtil::getVertices());
+ const DrawState drawState (LocalUtil::getDrawState(renderSize));
+ const DrawCallData drawCallData(vertices);
+ const VulkanProgram program (LocalUtil::getProgram(context, *descLayout, *descSet));
+
+ bool allOk = true;
+
+ context.getTestContext().getLog()
+ << TestLog::Message << "Rendering " << renderSize << " quad" << TestLog::EndMessage;
+
+ for (size_t imageNdx = 0; imageNdx < testImages.size(); ++imageNdx)
+ {
+ context.getTestContext().getLog()
+ << TestLog::Message << "Testing image size " << testImages[imageNdx]->getSize() << TestLog::EndMessage;
+
+ bindImage(vkd, device, *descSet, testImages[imageNdx]->getImageView(), *sampler);
+
+ VulkanDrawContext renderer (context, drawState, drawCallData, program);
+ renderer.draw();
+
+ {
+ // Only du/dx and dv/dy are non-zero
+ const Vec2 dtdp = testImages[imageNdx]->getSize().cast<float>() / renderSize.cast<float>();
+ const tcu::LodPrecision lodPrec (16, 4); // Pretty lax since we are not verifying LOD precision
+ const Vec2 lodBounds (tcu::computeLodBoundsFromDerivates(dtdp.x(), 0.0f, 0.0f, dtdp.y(), lodPrec));
+ tcu::ConstPixelBufferAccess resultImg (renderer.getColorPixels());
+ const int maxErrors = 5;
+ int numErrors = 0;
+
+ for (int y = 0; y < resultImg.getHeight(); ++y)
+ for (int x = 0; x < resultImg.getWidth(); ++x)
+ {
+ const Vec2 result = resultImg.getPixel(x, y).swizzle(0,1);
+ const bool levelOk = result.x() == 0.0f;
+ const bool lodOk = de::inRange(result.y(), lodBounds.x(), lodBounds.y());
+
+ if (!levelOk || !lodOk)
+ {
+ if (numErrors < maxErrors)
+ {
+ context.getTestContext().getLog()
+ << TestLog::Message << "ERROR: At (" << x << ", " << y << ")"
+ << ": got " << result
+ << ", expected (0, [" << lodBounds.x() << ", " << lodBounds.y() << "])"
+ << TestLog::EndMessage;
+ }
+ else if (numErrors == maxErrors)
+ context.getTestContext().getLog() << TestLog::Message << "..." << TestLog::EndMessage;
+
+ numErrors += 1;
+ }
+ }
+
+ allOk = allOk && (numErrors == 0);
+ }
+ }
+
+ if (allOk)
+ return tcu::TestStatus::pass("Queries passed");
+ else
+ return tcu::TestStatus::fail("Got invalid results");
+ }
+}
+
+void initImageQueryPrograms (SourceCollections& dst, TestParameters params)
+{
+ const ShaderSpec spec = getShaderSpec(params);
+
+ generateSources(params.shaderType, spec, dst);
+}
+
+void initImageQueryLodPrograms (SourceCollections& dst, TestParameters)
+{
+ dst.glslSources.add("vert")
+ << glu::VertexSource("#version 450\n"
+ "layout(location = 0) in highp vec4 a_position;\n"
+ "layout(location = 0) out highp vec2 v_texCoord;\n"
+ "\n"
+ "void main (void)\n"
+ "{\n"
+ " gl_Position = a_position;\n"
+ " v_texCoord = a_position.xy * 0.5 - 0.5;\n"
+ "}\n");
+ dst.glslSources.add("frag")
+ << glu::FragmentSource("#version 450\n"
+ "layout(binding = 0, set = 0) uniform highp sampler2D u_image;\n"
+ "layout(location = 0) in highp vec2 v_texCoord;\n"
+ "layout(location = 0) out highp vec2 o_lod;\n"
+ "\n"
+ "void main (void)\n"
+ "{\n"
+ " o_lod = textureQueryLod(u_image, v_texCoord);\n"
+ "}\n");
+}
+
+void addImageQueryCase (tcu::TestCaseGroup* group, const TestParameters& params)
+{
+ std::string name = de::toLower(de::toString(params.format).substr(10));
+ const bool isLod = params.query == QUERY_TYPE_IMAGE_LOD;
+
+ if ((params.flags & VK_IMAGE_CREATE_DISJOINT_BIT_KHR) != 0)
+ name += "_disjoint";
+
+ addFunctionCaseWithPrograms(group,
+ name,
+ "",
+ isLod ? initImageQueryLodPrograms : initImageQueryPrograms,
+ isLod ? testImageQueryLod : testImageQuery,
+ params);
+}
+
+struct QueryGroupParams
+{
+ QueryType query;
+ glu::ShaderType shaderType;
+
+ QueryGroupParams (QueryType query_, glu::ShaderType shaderType_)
+ : query (query_)
+ , shaderType(shaderType_)
+ {}
+
+ QueryGroupParams (void)
+ : query (QUERY_TYPE_LAST)
+ , shaderType(glu::SHADERTYPE_LAST)
+ {}
+};
+
+void populateQueryInShaderGroup (tcu::TestCaseGroup* group, QueryGroupParams params)
+{
+ // "Reference" formats for testing
+ addImageQueryCase(group, TestParameters(params.query, VK_FORMAT_R8G8B8A8_UNORM, 0u, params.shaderType));
+
+ for (int formatNdx = VK_YCBCR_FORMAT_FIRST; formatNdx < VK_YCBCR_FORMAT_LAST; formatNdx++)
+ {
+ const VkFormat format = (VkFormat)formatNdx;
+
+ addImageQueryCase(group, TestParameters(params.query, format, 0u, params.shaderType));
+
+ if (getPlaneCount(format) > 1)
+ addImageQueryCase(group, TestParameters(params.query, format, (VkImageCreateFlags)VK_IMAGE_CREATE_DISJOINT_BIT_KHR, params.shaderType));
+ }
+}
+
+void populateQueryGroup (tcu::TestCaseGroup* group, QueryType query)
+{
+ for (int shaderTypeNdx = 0; shaderTypeNdx < glu::SHADERTYPE_LAST; ++shaderTypeNdx)
+ {
+ const glu::ShaderType shaderType = (glu::ShaderType)shaderTypeNdx;
+
+ if (query == QUERY_TYPE_IMAGE_LOD && shaderType != glu::SHADERTYPE_FRAGMENT)
+ continue;
+
+ addTestGroup(group, glu::getShaderTypeName(shaderType), "", populateQueryInShaderGroup, QueryGroupParams(query, shaderType));
+ }
+}
+
+void populateImageQueryGroup (tcu::TestCaseGroup* group)
+{
+ addTestGroup(group, "size_lod", "OpImageQuerySizeLod", populateQueryGroup, QUERY_TYPE_IMAGE_SIZE_LOD);
+ addTestGroup(group, "lod", "OpImageQueryLod", populateQueryGroup, QUERY_TYPE_IMAGE_LOD);
+ addTestGroup(group, "levels", "OpImageQueryLevels", populateQueryGroup, QUERY_TYPE_IMAGE_LEVELS);
+}
+
+} // namespace
+
+tcu::TestCaseGroup* createImageQueryTests (tcu::TestContext& testCtx)
+{
+ return createTestGroup(testCtx, "query", "Image Query Tests", populateImageQueryGroup);
+}
+
+} // ycbcr
+} // vkt
--- /dev/null
+#ifndef _VKTYCBCRIMAGEQUERYTESTS_HPP
+#define _VKTYCBCRIMAGEQUERYTESTS_HPP
+/*-------------------------------------------------------------------------
+ * Vulkan Conformance Tests
+ * ------------------------
+ *
+ * Copyright (c) 2017 Google Inc.
+ *
+ * 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
+ *
+ * Unless required by applicable law or agreed to in writing, software
+ * distributed under the License is distributed on an "AS IS" BASIS,
+ * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
+ * See the License for the specific language governing permissions and
+ * limitations under the License.
+ *
+ *//*!
+ * \file
+ * \brief OpImageQuery & YCbCr Tests
+ *//*--------------------------------------------------------------------*/
+
+#include "tcuDefs.hpp"
+#include "tcuTestCase.hpp"
+
+namespace vkt
+{
+namespace ycbcr
+{
+
+tcu::TestCaseGroup* createImageQueryTests (tcu::TestContext& testCtx);
+
+} // ycbcr
+} // vkt
+
+#endif // _VKTYCBCRIMAGEQUERYTESTS_HPP
--- /dev/null
+/*-------------------------------------------------------------------------
+ * Vulkan Conformance Tests
+ * ------------------------
+ *
+ * Copyright (c) 2017 Google Inc.
+ *
+ * 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
+ *
+ * Unless required by applicable law or agreed to in writing, software
+ * distributed under the License is distributed on an "AS IS" BASIS,
+ * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
+ * See the License for the specific language governing permissions and
+ * limitations under the License.
+ *
+ *//*!
+ * \file
+ * \brief YCbCr Conversion Tests
+ *//*--------------------------------------------------------------------*/
+
+#include "vktYCbCrTests.hpp"
+#include "vktTestGroupUtil.hpp"
+#include "vktYCbCrFormatTests.hpp"
+#include "vktYCbCrViewTests.hpp"
+#include "vktYCbCrImageQueryTests.hpp"
+#include "vktYCbCrConversionTests.hpp"
+
+namespace vkt
+{
+namespace ycbcr
+{
+
+namespace
+{
+
+void populateTestGroup (tcu::TestCaseGroup* ycbcrTests)
+{
+ tcu::TestContext& testCtx = ycbcrTests->getTestContext();
+
+ ycbcrTests->addChild(createFormatTests(testCtx));
+ ycbcrTests->addChild(createViewTests(testCtx));
+ ycbcrTests->addChild(createImageQueryTests(testCtx));
+ ycbcrTests->addChild(createConversionTests(testCtx));
+}
+
+} // anonymous
+
+tcu::TestCaseGroup* createTests (tcu::TestContext& testCtx)
+{
+ return createTestGroup(testCtx, "ycbcr", "YCbCr Conversion Tests", populateTestGroup);
+}
+
+} // ycbcr
+} // vkt
--- /dev/null
+#ifndef _VKTYCBCRTESTS_HPP
+#define _VKTYCBCRTESTS_HPP
+/*-------------------------------------------------------------------------
+ * Vulkan Conformance Tests
+ * ------------------------
+ *
+ * Copyright (c) 2017 Google Inc.
+ *
+ * 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
+ *
+ * Unless required by applicable law or agreed to in writing, software
+ * distributed under the License is distributed on an "AS IS" BASIS,
+ * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
+ * See the License for the specific language governing permissions and
+ * limitations under the License.
+ *
+ *//*!
+ * \file
+ * \brief YCbCr Conversion Tests
+ *//*--------------------------------------------------------------------*/
+
+#include "tcuDefs.hpp"
+#include "tcuTestCase.hpp"
+
+namespace vkt
+{
+namespace ycbcr
+{
+
+tcu::TestCaseGroup* createTests (tcu::TestContext& testCtx);
+
+} // ycbcr
+} // vkt
+
+#endif // _VKTYCBCRTESTS_HPP
--- /dev/null
+/*-------------------------------------------------------------------------
+ * Vulkan Conformance Tests
+ * ------------------------
+ *
+ * Copyright (c) 2017 Google Inc.
+ *
+ * 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
+ *
+ * Unless required by applicable law or agreed to in writing, software
+ * distributed under the License is distributed on an "AS IS" BASIS,
+ * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
+ * See the License for the specific language governing permissions and
+ * limitations under the License.
+ *
+ *//*!
+ * \file
+ * \brief YCbCr Test Utilities
+ *//*--------------------------------------------------------------------*/
+
+#include "vktYCbCrUtil.hpp"
+
+#include "vkQueryUtil.hpp"
+#include "vkRefUtil.hpp"
+#include "vkTypeUtil.hpp"
+
+#include "tcuTextureUtil.hpp"
+
+#include "deSTLUtil.hpp"
+#include "deUniquePtr.hpp"
+
+namespace vkt
+{
+namespace ycbcr
+{
+
+using namespace vk;
+
+using de::MovePtr;
+using tcu::UVec2;
+using std::vector;
+using std::string;
+
+typedef de::SharedPtr<Allocation> AllocationSp;
+typedef de::SharedPtr<vk::Unique<VkBuffer> > VkBufferSp;
+
+// MultiPlaneImageData
+
+MultiPlaneImageData::MultiPlaneImageData (VkFormat format, const UVec2& size)
+ : m_format (format)
+ , m_description (getPlanarFormatDescription(format))
+ , m_size (size)
+{
+ for (deUint32 planeNdx = 0; planeNdx < m_description.numPlanes; ++planeNdx)
+ {
+ const deUint32 planeW = size.x() / m_description.planes[planeNdx].widthDivisor;
+ const deUint32 planeH = size.y() / m_description.planes[planeNdx].heightDivisor;
+ const deUint32 planeSize = m_description.planes[planeNdx].elementSizeBytes * planeW * planeH;
+
+ m_planeData[planeNdx].resize(planeSize);
+ }
+}
+
+MultiPlaneImageData::~MultiPlaneImageData (void)
+{
+}
+
+tcu::PixelBufferAccess MultiPlaneImageData::getChannelAccess (deUint32 channelNdx)
+{
+ void* planePtrs[PlanarFormatDescription::MAX_PLANES];
+ deUint32 planeRowPitches[PlanarFormatDescription::MAX_PLANES];
+
+ for (deUint32 planeNdx = 0; planeNdx < m_description.numPlanes; ++planeNdx)
+ {
+ const deUint32 planeW = m_size.x() / m_description.planes[planeNdx].widthDivisor;
+
+ planeRowPitches[planeNdx] = m_description.planes[planeNdx].elementSizeBytes * planeW;
+ planePtrs[planeNdx] = &m_planeData[planeNdx][0];
+ }
+
+ return vk::getChannelAccess(m_description,
+ m_size,
+ planeRowPitches,
+ planePtrs,
+ channelNdx);
+}
+
+tcu::ConstPixelBufferAccess MultiPlaneImageData::getChannelAccess (deUint32 channelNdx) const
+{
+ const void* planePtrs[PlanarFormatDescription::MAX_PLANES];
+ deUint32 planeRowPitches[PlanarFormatDescription::MAX_PLANES];
+
+ for (deUint32 planeNdx = 0; planeNdx < m_description.numPlanes; ++planeNdx)
+ {
+ const deUint32 planeW = m_size.x() / m_description.planes[planeNdx].widthDivisor;
+
+ planeRowPitches[planeNdx] = m_description.planes[planeNdx].elementSizeBytes * planeW;
+ planePtrs[planeNdx] = &m_planeData[planeNdx][0];
+ }
+
+ return vk::getChannelAccess(m_description,
+ m_size,
+ planeRowPitches,
+ planePtrs,
+ channelNdx);
+}
+
+// Misc utilities
+
+namespace
+{
+
+void allocateAndUploadStagingBuffers (const DeviceInterface& vkd,
+ VkDevice device,
+ Allocator& allocator,
+ const MultiPlaneImageData& imageData,
+ vector<VkBufferSp>* buffers,
+ vector<AllocationSp>* allocations)
+{
+ for (deUint32 planeNdx = 0; planeNdx < imageData.getDescription().numPlanes; ++planeNdx)
+ {
+ const VkBufferCreateInfo bufferInfo =
+ {
+ VK_STRUCTURE_TYPE_BUFFER_CREATE_INFO,
+ DE_NULL,
+ (VkBufferCreateFlags)0u,
+ (VkDeviceSize)imageData.getPlaneSize(planeNdx),
+ VK_BUFFER_USAGE_TRANSFER_SRC_BIT,
+ VK_SHARING_MODE_EXCLUSIVE,
+ 0u,
+ (const deUint32*)DE_NULL,
+ };
+ Move<VkBuffer> buffer (createBuffer(vkd, device, &bufferInfo));
+ MovePtr<Allocation> allocation (allocator.allocate(getBufferMemoryRequirements(vkd, device, *buffer),
+ MemoryRequirement::HostVisible|MemoryRequirement::Coherent));
+
+ VK_CHECK(vkd.bindBufferMemory(device, *buffer, allocation->getMemory(), allocation->getOffset()));
+ deMemcpy(allocation->getHostPtr(), imageData.getPlanePtr(planeNdx), imageData.getPlaneSize(planeNdx));
+
+ buffers->push_back(VkBufferSp(new Unique<VkBuffer>(buffer)));
+ allocations->push_back(AllocationSp(allocation.release()));
+ }
+}
+
+} // anonymous
+
+void checkImageSupport (Context& context, VkFormat format, VkImageCreateFlags createFlags, VkImageTiling tiling)
+{
+ const bool disjoint = (createFlags & VK_IMAGE_CREATE_DISJOINT_BIT_KHR) != 0;
+ const VkPhysicalDeviceSamplerYcbcrConversionFeaturesKHR* features = findStructure<VkPhysicalDeviceSamplerYcbcrConversionFeaturesKHR>(context.getDeviceFeatures2().pNext);
+ vector<string> reqExts;
+
+ reqExts.push_back("VK_KHR_sampler_ycbcr_conversion");
+
+ if (disjoint)
+ {
+ reqExts.push_back("VK_KHR_bind_memory2");
+ reqExts.push_back("VK_KHR_get_memory_requirements2");
+ }
+
+ for (vector<string>::const_iterator extIter = reqExts.begin(); extIter != reqExts.end(); ++extIter)
+ {
+ if (!de::contains(context.getDeviceExtensions().begin(), context.getDeviceExtensions().end(), *extIter))
+ TCU_THROW(NotSupportedError, (*extIter + " is not supported").c_str());
+ }
+
+ if (!features || features->samplerYcbcrConversion == VK_FALSE)
+ TCU_THROW(NotSupportedError, "samplerYcbcrConversion is not supported");
+
+ {
+ const VkFormatProperties formatProperties = getPhysicalDeviceFormatProperties(context.getInstanceInterface(),
+ context.getPhysicalDevice(),
+ format);
+ const VkFormatFeatureFlags featureFlags = tiling == VK_IMAGE_TILING_OPTIMAL
+ ? formatProperties.optimalTilingFeatures
+ : formatProperties.linearTilingFeatures;
+
+ if ((featureFlags & (VK_FORMAT_FEATURE_MIDPOINT_CHROMA_SAMPLES_BIT_KHR | VK_FORMAT_FEATURE_COSITED_CHROMA_SAMPLES_BIT_KHR)) == 0)
+ TCU_THROW(NotSupportedError, "YCbCr conversion is not supported for format");
+
+ if (disjoint && ((featureFlags & VK_FORMAT_FEATURE_DISJOINT_BIT_KHR) == 0))
+ TCU_THROW(NotSupportedError, "Disjoint planes are not supported for format");
+ }
+}
+
+void fillRandom (de::Random* randomGen, MultiPlaneImageData* imageData)
+{
+ // \todo [pyry] Optimize, take into account bits that must be 0
+
+ for (deUint32 planeNdx = 0; planeNdx < imageData->getDescription().numPlanes; ++planeNdx)
+ {
+ const size_t planeSize = imageData->getPlaneSize(planeNdx);
+ deUint8* const planePtr = (deUint8*)imageData->getPlanePtr(planeNdx);
+
+ for (size_t ndx = 0; ndx < planeSize; ++ndx)
+ planePtr[ndx] = randomGen->getUint8();
+ }
+}
+
+void fillGradient (MultiPlaneImageData* imageData, const tcu::Vec4& minVal, const tcu::Vec4& maxVal)
+{
+ const PlanarFormatDescription& formatInfo = imageData->getDescription();
+
+ // \todo [pyry] Optimize: no point in re-rendering source gradient for each channel.
+
+ for (deUint32 channelNdx = 0; channelNdx < 4; channelNdx++)
+ {
+ if (formatInfo.hasChannelNdx(channelNdx))
+ {
+ const tcu::PixelBufferAccess channelAccess = imageData->getChannelAccess(channelNdx);
+ tcu::TextureLevel tmpTexture (tcu::TextureFormat(tcu::TextureFormat::RGBA, tcu::TextureFormat::FLOAT), channelAccess.getWidth(), channelAccess.getHeight());
+ const tcu::ConstPixelBufferAccess tmpAccess = tmpTexture.getAccess();
+
+ tcu::fillWithComponentGradients(tmpTexture, minVal, maxVal);
+
+ for (int y = 0; y < channelAccess.getHeight(); ++y)
+ for (int x = 0; x < channelAccess.getWidth(); ++x)
+ {
+ channelAccess.setPixel(tcu::Vec4(tmpAccess.getPixel(x, y)[channelNdx]), x, y);
+ }
+ }
+ }
+}
+
+vector<AllocationSp> allocateAndBindImageMemory (const DeviceInterface& vkd,
+ VkDevice device,
+ Allocator& allocator,
+ VkImage image,
+ VkFormat format,
+ VkImageCreateFlags createFlags,
+ vk::MemoryRequirement requirement)
+{
+ vector<AllocationSp> allocations;
+
+ if ((createFlags & VK_IMAGE_CREATE_DISJOINT_BIT_KHR) != 0)
+ {
+ const deUint32 numPlanes = getPlaneCount(format);
+
+ for (deUint32 planeNdx = 0; planeNdx < numPlanes; ++planeNdx)
+ {
+ const VkImageAspectFlagBits planeAspect = getPlaneAspect(planeNdx);
+ const VkMemoryRequirements reqs = getImagePlaneMemoryRequirements(vkd, device, image, planeAspect);
+
+ allocations.push_back(AllocationSp(allocator.allocate(reqs, requirement).release()));
+
+ bindImagePlaneMemory(vkd, device, image, allocations.back()->getMemory(), allocations.back()->getOffset(), planeAspect);
+ }
+ }
+ else
+ {
+ const VkMemoryRequirements reqs = getImageMemoryRequirements(vkd, device, image);
+
+ allocations.push_back(AllocationSp(allocator.allocate(reqs, requirement).release()));
+
+ VK_CHECK(vkd.bindImageMemory(device, image, allocations.back()->getMemory(), allocations.back()->getOffset()));
+ }
+
+ return allocations;
+}
+
+void uploadImage (const DeviceInterface& vkd,
+ VkDevice device,
+ deUint32 queueFamilyNdx,
+ Allocator& allocator,
+ VkImage image,
+ const MultiPlaneImageData& imageData,
+ VkAccessFlags nextAccess,
+ VkImageLayout finalLayout)
+{
+ const VkQueue queue = getDeviceQueue(vkd, device, queueFamilyNdx, 0u);
+ const Unique<VkCommandPool> cmdPool (createCommandPool(vkd, device, (VkCommandPoolCreateFlags)0, queueFamilyNdx));
+ const Unique<VkCommandBuffer> cmdBuffer (allocateCommandBuffer(vkd, device, *cmdPool, VK_COMMAND_BUFFER_LEVEL_PRIMARY));
+ vector<VkBufferSp> stagingBuffers;
+ vector<AllocationSp> stagingMemory;
+
+ const PlanarFormatDescription& formatDesc = imageData.getDescription();
+
+ allocateAndUploadStagingBuffers(vkd, device, allocator, imageData, &stagingBuffers, &stagingMemory);
+
+ {
+ const VkCommandBufferBeginInfo beginInfo =
+ {
+ VK_STRUCTURE_TYPE_COMMAND_BUFFER_BEGIN_INFO,
+ DE_NULL,
+ (VkCommandBufferUsageFlags)VK_COMMAND_BUFFER_USAGE_ONE_TIME_SUBMIT_BIT,
+ (const VkCommandBufferInheritanceInfo*)DE_NULL
+ };
+
+ VK_CHECK(vkd.beginCommandBuffer(*cmdBuffer, &beginInfo));
+ }
+
+ {
+ const VkImageMemoryBarrier preCopyBarrier =
+ {
+ VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER,
+ DE_NULL,
+ (VkAccessFlags)0,
+ VK_ACCESS_TRANSFER_WRITE_BIT,
+ VK_IMAGE_LAYOUT_UNDEFINED,
+ VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL,
+ VK_QUEUE_FAMILY_IGNORED,
+ VK_QUEUE_FAMILY_IGNORED,
+ image,
+ { VK_IMAGE_ASPECT_COLOR_BIT, 0u, 1u, 0u, 1u }
+ };
+
+ vkd.cmdPipelineBarrier(*cmdBuffer,
+ (VkPipelineStageFlags)VK_PIPELINE_STAGE_HOST_BIT,
+ (VkPipelineStageFlags)VK_PIPELINE_STAGE_TRANSFER_BIT,
+ (VkDependencyFlags)0u,
+ 0u,
+ (const VkMemoryBarrier*)DE_NULL,
+ 0u,
+ (const VkBufferMemoryBarrier*)DE_NULL,
+ 1u,
+ &preCopyBarrier);
+ }
+
+ for (deUint32 planeNdx = 0; planeNdx < imageData.getDescription().numPlanes; ++planeNdx)
+ {
+ const VkImageAspectFlagBits aspect = (formatDesc.numPlanes > 1)
+ ? getPlaneAspect(planeNdx)
+ : VK_IMAGE_ASPECT_COLOR_BIT;
+ const deUint32 planeW = (formatDesc.numPlanes > 1)
+ ? imageData.getSize().x() / formatDesc.planes[planeNdx].widthDivisor
+ : imageData.getSize().x();
+ const deUint32 planeH = (formatDesc.numPlanes > 1)
+ ? imageData.getSize().y() / formatDesc.planes[planeNdx].heightDivisor
+ : imageData.getSize().y();
+ const VkBufferImageCopy copy =
+ {
+ 0u, // bufferOffset
+ 0u, // bufferRowLength
+ 0u, // bufferImageHeight
+ { (VkImageAspectFlags)aspect, 0u, 0u, 1u },
+ makeOffset3D(0u, 0u, 0u),
+ makeExtent3D(planeW, planeH, 1u),
+ };
+
+ vkd.cmdCopyBufferToImage(*cmdBuffer, **stagingBuffers[planeNdx], image, VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL, 1u, ©);
+ }
+
+ {
+ const VkImageMemoryBarrier postCopyBarrier =
+ {
+ VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER,
+ DE_NULL,
+ VK_ACCESS_TRANSFER_WRITE_BIT,
+ nextAccess,
+ VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL,
+ finalLayout,
+ VK_QUEUE_FAMILY_IGNORED,
+ VK_QUEUE_FAMILY_IGNORED,
+ image,
+ { VK_IMAGE_ASPECT_COLOR_BIT, 0u, 1u, 0u, 1u }
+ };
+
+ vkd.cmdPipelineBarrier(*cmdBuffer,
+ (VkPipelineStageFlags)VK_PIPELINE_STAGE_TRANSFER_BIT,
+ (VkPipelineStageFlags)VK_PIPELINE_STAGE_ALL_GRAPHICS_BIT,
+ (VkDependencyFlags)0u,
+ 0u,
+ (const VkMemoryBarrier*)DE_NULL,
+ 0u,
+ (const VkBufferMemoryBarrier*)DE_NULL,
+ 1u,
+ &postCopyBarrier);
+ }
+
+ VK_CHECK(vkd.endCommandBuffer(*cmdBuffer));
+
+ {
+ const Unique<VkFence> fence (createFence(vkd, device));
+ const VkSubmitInfo submitInfo =
+ {
+ VK_STRUCTURE_TYPE_SUBMIT_INFO,
+ DE_NULL,
+ 0u,
+ (const VkSemaphore*)DE_NULL,
+ (const VkPipelineStageFlags*)DE_NULL,
+ 1u,
+ &*cmdBuffer,
+ 0u,
+ (const VkSemaphore*)DE_NULL,
+ };
+
+ VK_CHECK(vkd.queueSubmit(queue, 1u, &submitInfo, *fence));
+ VK_CHECK(vkd.waitForFences(device, 1u, &*fence, VK_TRUE, ~0ull));
+ }
+}
+
+void fillImageMemory (const vk::DeviceInterface& vkd,
+ vk::VkDevice device,
+ deUint32 queueFamilyNdx,
+ vk::VkImage image,
+ const std::vector<de::SharedPtr<vk::Allocation> >& allocations,
+ const MultiPlaneImageData& imageData,
+ vk::VkAccessFlags nextAccess,
+ vk::VkImageLayout finalLayout)
+{
+ const VkQueue queue = getDeviceQueue(vkd, device, queueFamilyNdx, 0u);
+ const Unique<VkCommandPool> cmdPool (createCommandPool(vkd, device, (VkCommandPoolCreateFlags)0, queueFamilyNdx));
+ const Unique<VkCommandBuffer> cmdBuffer (allocateCommandBuffer(vkd, device, *cmdPool, VK_COMMAND_BUFFER_LEVEL_PRIMARY));
+ const PlanarFormatDescription& formatDesc = imageData.getDescription();
+
+ for (deUint32 planeNdx = 0; planeNdx < formatDesc.numPlanes; ++planeNdx)
+ {
+ const VkImageAspectFlagBits aspect = (formatDesc.numPlanes > 1)
+ ? getPlaneAspect(planeNdx)
+ : VK_IMAGE_ASPECT_COLOR_BIT;
+ const de::SharedPtr<Allocation>& allocation = allocations.size() > 1
+ ? allocations[planeNdx]
+ : allocations[0];
+ const size_t planeSize = imageData.getPlaneSize(planeNdx);
+ const deUint32 planeH = imageData.getSize().y() / formatDesc.planes[planeNdx].heightDivisor;
+ const VkImageSubresource subresource =
+ {
+ aspect,
+ 0u,
+ 0u,
+ };
+ VkSubresourceLayout layout;
+
+ vkd.getImageSubresourceLayout(device, image, &subresource, &layout);
+
+ for (deUint32 row = 0; row < planeH; ++row)
+ {
+ const size_t rowSize = planeSize / planeH;
+ void* const dstPtr = ((deUint8*)allocation->getHostPtr()) + layout.offset + layout.rowPitch * row;
+ const void* const srcPtr = ((const deUint8*)imageData.getPlanePtr(planeNdx)) + row * rowSize;
+
+ deMemcpy(dstPtr, srcPtr, rowSize);
+ }
+ flushMappedMemoryRange(vkd, device, allocation->getMemory(), 0u, VK_WHOLE_SIZE);
+ }
+
+ {
+ const VkCommandBufferBeginInfo beginInfo =
+ {
+ VK_STRUCTURE_TYPE_COMMAND_BUFFER_BEGIN_INFO,
+ DE_NULL,
+ (VkCommandBufferUsageFlags)VK_COMMAND_BUFFER_USAGE_ONE_TIME_SUBMIT_BIT,
+ (const VkCommandBufferInheritanceInfo*)DE_NULL
+ };
+
+ VK_CHECK(vkd.beginCommandBuffer(*cmdBuffer, &beginInfo));
+ }
+
+
+ {
+ const VkImageMemoryBarrier postCopyBarrier =
+ {
+ VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER,
+ DE_NULL,
+ 0u,
+ nextAccess,
+ VK_IMAGE_LAYOUT_PREINITIALIZED,
+ finalLayout,
+ VK_QUEUE_FAMILY_IGNORED,
+ VK_QUEUE_FAMILY_IGNORED,
+ image,
+ { VK_IMAGE_ASPECT_COLOR_BIT, 0u, 1u, 0u, 1u }
+ };
+
+ vkd.cmdPipelineBarrier(*cmdBuffer,
+ (VkPipelineStageFlags)VK_PIPELINE_STAGE_HOST_BIT,
+ (VkPipelineStageFlags)VK_PIPELINE_STAGE_ALL_GRAPHICS_BIT,
+ (VkDependencyFlags)0u,
+ 0u,
+ (const VkMemoryBarrier*)DE_NULL,
+ 0u,
+ (const VkBufferMemoryBarrier*)DE_NULL,
+ 1u,
+ &postCopyBarrier);
+ }
+
+ VK_CHECK(vkd.endCommandBuffer(*cmdBuffer));
+
+ {
+ const Unique<VkFence> fence (createFence(vkd, device));
+ const VkSubmitInfo submitInfo =
+ {
+ VK_STRUCTURE_TYPE_SUBMIT_INFO,
+ DE_NULL,
+ 0u,
+ (const VkSemaphore*)DE_NULL,
+ (const VkPipelineStageFlags*)DE_NULL,
+ 1u,
+ &*cmdBuffer,
+ 0u,
+ (const VkSemaphore*)DE_NULL,
+ };
+
+ VK_CHECK(vkd.queueSubmit(queue, 1u, &submitInfo, *fence));
+ VK_CHECK(vkd.waitForFences(device, 1u, &*fence, VK_TRUE, ~0ull));
+ }
+}
+
+} // ycbcr
+} // vkt
--- /dev/null
+#ifndef _VKTYCBCRUTIL_HPP
+#define _VKTYCBCRUTIL_HPP
+/*-------------------------------------------------------------------------
+ * Vulkan Conformance Tests
+ * ------------------------
+ *
+ * Copyright (c) 2017 Google Inc.
+ *
+ * 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
+ *
+ * Unless required by applicable law or agreed to in writing, software
+ * distributed under the License is distributed on an "AS IS" BASIS,
+ * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
+ * See the License for the specific language governing permissions and
+ * limitations under the License.
+ *
+ *//*!
+ * \file
+ * \brief YCbCr Test Utilities
+ *//*--------------------------------------------------------------------*/
+
+#include "tcuDefs.hpp"
+
+#include "vktTestCase.hpp"
+
+#include "vkImageUtil.hpp"
+#include "vkMemUtil.hpp"
+#include "vkRef.hpp"
+
+#include "deSharedPtr.hpp"
+#include "deRandom.hpp"
+
+namespace vkt
+{
+namespace ycbcr
+{
+
+#define VK_YCBCR_FORMAT_FIRST VK_FORMAT_G8B8G8R8_422_UNORM_KHR
+#define VK_YCBCR_FORMAT_LAST ((vk::VkFormat)(VK_FORMAT_G16_B16_R16_3PLANE_444_UNORM_KHR+1))
+
+class MultiPlaneImageData
+{
+public:
+ MultiPlaneImageData (vk::VkFormat format, const tcu::UVec2& size);
+ ~MultiPlaneImageData (void);
+
+ vk::VkFormat getFormat (void) const { return m_format; }
+ const vk::PlanarFormatDescription& getDescription (void) const { return m_description; }
+ const tcu::UVec2& getSize (void) const { return m_size; }
+
+ size_t getPlaneSize (deUint32 planeNdx) const { return m_planeData[planeNdx].size(); }
+ void* getPlanePtr (deUint32 planeNdx) { return &m_planeData[planeNdx][0]; }
+ const void* getPlanePtr (deUint32 planeNdx) const { return &m_planeData[planeNdx][0]; }
+
+ tcu::PixelBufferAccess getChannelAccess (deUint32 channelNdx);
+ tcu::ConstPixelBufferAccess getChannelAccess (deUint32 channelNdx) const;
+
+private:
+ MultiPlaneImageData (const MultiPlaneImageData&);
+ MultiPlaneImageData& operator= (const MultiPlaneImageData&);
+
+ const vk::VkFormat m_format;
+ const vk::PlanarFormatDescription m_description;
+ const tcu::UVec2 m_size;
+
+ std::vector<deUint8> m_planeData[vk::PlanarFormatDescription::MAX_PLANES];
+};
+
+void checkImageSupport (Context& context, vk::VkFormat format, vk::VkImageCreateFlags createFlags, vk::VkImageTiling tiling = vk::VK_IMAGE_TILING_OPTIMAL);
+
+void fillRandom (de::Random* randomGen, MultiPlaneImageData* imageData);
+void fillGradient (MultiPlaneImageData* imageData, const tcu::Vec4& minVal, const tcu::Vec4& maxVal);
+
+std::vector<de::SharedPtr<vk::Allocation> > allocateAndBindImageMemory (const vk::DeviceInterface& vkd,
+ vk::VkDevice device,
+ vk::Allocator& allocator,
+ vk::VkImage image,
+ vk::VkFormat format,
+ vk::VkImageCreateFlags createFlags,
+ vk::MemoryRequirement requirement = vk::MemoryRequirement::Any);
+
+void uploadImage (const vk::DeviceInterface& vkd,
+ vk::VkDevice device,
+ deUint32 queueFamilyNdx,
+ vk::Allocator& allocator,
+ vk::VkImage image,
+ const MultiPlaneImageData& imageData,
+ vk::VkAccessFlags nextAccess,
+ vk::VkImageLayout finalLayout);
+
+void fillImageMemory (const vk::DeviceInterface& vkd,
+ vk::VkDevice device,
+ deUint32 queueFamilyNdx,
+ vk::VkImage image,
+ const std::vector<de::SharedPtr<vk::Allocation> >& memory,
+ const MultiPlaneImageData& imageData,
+ vk::VkAccessFlags nextAccess,
+ vk::VkImageLayout finalLayout);
+
+} // ycbcr
+} // vkt
+
+#endif // _VKTYCBCRUTIL_HPP
--- /dev/null
+/*-------------------------------------------------------------------------
+ * Vulkan Conformance Tests
+ * ------------------------
+ *
+ * Copyright (c) 2017 Google Inc.
+ *
+ * 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
+ *
+ * Unless required by applicable law or agreed to in writing, software
+ * distributed under the License is distributed on an "AS IS" BASIS,
+ * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
+ * See the License for the specific language governing permissions and
+ * limitations under the License.
+ *
+ *//*!
+ * \file
+ * \brief YCbCr Image View Tests
+ *//*--------------------------------------------------------------------*/
+
+#include "vktYCbCrViewTests.hpp"
+#include "vktYCbCrUtil.hpp"
+#include "vktTestCaseUtil.hpp"
+#include "vktTestGroupUtil.hpp"
+#include "vktShaderExecutor.hpp"
+
+#include "vkStrUtil.hpp"
+#include "vkRef.hpp"
+#include "vkRefUtil.hpp"
+#include "vkTypeUtil.hpp"
+#include "vkQueryUtil.hpp"
+#include "vkMemUtil.hpp"
+#include "vkImageUtil.hpp"
+
+#include "tcuTestLog.hpp"
+#include "tcuVectorUtil.hpp"
+
+#include "deStringUtil.hpp"
+#include "deSharedPtr.hpp"
+#include "deUniquePtr.hpp"
+#include "deRandom.hpp"
+#include "deSTLUtil.hpp"
+
+namespace vkt
+{
+namespace ycbcr
+{
+namespace
+{
+
+using namespace vk;
+using namespace shaderexecutor;
+
+using tcu::UVec2;
+using tcu::Vec2;
+using tcu::Vec4;
+using tcu::TestLog;
+using de::MovePtr;
+using de::UniquePtr;
+using std::vector;
+using std::string;
+
+typedef de::SharedPtr<Allocation> AllocationSp;
+typedef de::SharedPtr<vk::Unique<VkBuffer> > VkBufferSp;
+
+VkFormat getPlaneCompatibleFormat (VkFormat multiPlanarFormat, deUint32 planeNdx)
+{
+ switch (multiPlanarFormat)
+ {
+ case VK_FORMAT_G8_B8_R8_3PLANE_420_UNORM_KHR:
+ case VK_FORMAT_G8_B8_R8_3PLANE_422_UNORM_KHR:
+ case VK_FORMAT_G8_B8_R8_3PLANE_444_UNORM_KHR:
+ if (de::inRange(planeNdx, 0u, 2u))
+ return VK_FORMAT_R8_UNORM;
+
+ case VK_FORMAT_G8_B8R8_2PLANE_420_UNORM_KHR:
+ case VK_FORMAT_G8_B8R8_2PLANE_422_UNORM_KHR:
+ if (planeNdx == 0)
+ return VK_FORMAT_R8_UNORM;
+ else if (planeNdx == 1)
+ return VK_FORMAT_R8G8_UNORM;
+
+ case VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_420_UNORM_3PACK16_KHR:
+ case VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_422_UNORM_3PACK16_KHR:
+ case VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_444_UNORM_3PACK16_KHR:
+ if (de::inRange(planeNdx, 0u, 2u))
+ return VK_FORMAT_R10X6_UNORM_PACK16_KHR;
+
+ case VK_FORMAT_G10X6_B10X6R10X6_2PLANE_420_UNORM_3PACK16_KHR:
+ case VK_FORMAT_G10X6_B10X6R10X6_2PLANE_422_UNORM_3PACK16_KHR:
+ if (planeNdx == 0)
+ return VK_FORMAT_R10X6_UNORM_PACK16_KHR;
+ else if (planeNdx == 1)
+ return VK_FORMAT_R10X6G10X6_UNORM_2PACK16_KHR;
+
+ case VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_420_UNORM_3PACK16_KHR:
+ case VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_422_UNORM_3PACK16_KHR:
+ case VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_444_UNORM_3PACK16_KHR:
+ if (de::inRange(planeNdx, 0u, 2u))
+ return VK_FORMAT_R12X4_UNORM_PACK16_KHR;
+
+ case VK_FORMAT_G12X4_B12X4R12X4_2PLANE_420_UNORM_3PACK16_KHR:
+ case VK_FORMAT_G12X4_B12X4R12X4_2PLANE_422_UNORM_3PACK16_KHR:
+ if (planeNdx == 0)
+ return VK_FORMAT_R12X4_UNORM_PACK16_KHR;
+ else if (planeNdx == 1)
+ return VK_FORMAT_R12X4G12X4_UNORM_2PACK16_KHR;
+
+ case VK_FORMAT_G16_B16_R16_3PLANE_420_UNORM_KHR:
+ case VK_FORMAT_G16_B16_R16_3PLANE_422_UNORM_KHR:
+ case VK_FORMAT_G16_B16_R16_3PLANE_444_UNORM_KHR:
+ if (de::inRange(planeNdx, 0u, 2u))
+ return VK_FORMAT_R16_UNORM;
+
+ case VK_FORMAT_G16_B16R16_2PLANE_420_UNORM_KHR:
+ case VK_FORMAT_G16_B16R16_2PLANE_422_UNORM_KHR:
+ if (planeNdx == 0)
+ return VK_FORMAT_R16_UNORM;
+ else if (planeNdx == 1)
+ return VK_FORMAT_R16G16_UNORM;
+
+ default:
+ DE_FATAL("Invalid format and plane index combination");
+ return VK_FORMAT_UNDEFINED;
+ }
+}
+
+Move<VkImage> createTestImage (const DeviceInterface& vkd,
+ VkDevice device,
+ VkFormat format,
+ const UVec2& size,
+ VkImageCreateFlags createFlags)
+{
+ const VkImageCreateInfo createInfo =
+ {
+ VK_STRUCTURE_TYPE_IMAGE_CREATE_INFO,
+ DE_NULL,
+ createFlags,
+ VK_IMAGE_TYPE_2D,
+ format,
+ makeExtent3D(size.x(), size.y(), 1u),
+ 1u, // mipLevels
+ 1u, // arrayLayers
+ VK_SAMPLE_COUNT_1_BIT,
+ VK_IMAGE_TILING_OPTIMAL,
+ VK_IMAGE_USAGE_SAMPLED_BIT|VK_IMAGE_USAGE_TRANSFER_DST_BIT,
+ VK_SHARING_MODE_EXCLUSIVE,
+ 0u,
+ (const deUint32*)DE_NULL,
+ VK_IMAGE_LAYOUT_UNDEFINED,
+ };
+
+ return createImage(vkd, device, &createInfo);
+}
+
+Move<VkImageView> createImageView (const DeviceInterface& vkd,
+ VkDevice device,
+ VkImage image,
+ VkFormat format,
+ VkImageAspectFlagBits imageAspect,
+ VkSamplerYcbcrConversionKHR conversion)
+{
+ const VkSamplerYcbcrConversionInfoKHR samplerConversionInfo =
+ {
+ VK_STRUCTURE_TYPE_SAMPLER_YCBCR_CONVERSION_INFO_KHR,
+ DE_NULL,
+ conversion
+ };
+ const VkImageViewCreateInfo viewInfo =
+ {
+ VK_STRUCTURE_TYPE_IMAGE_VIEW_CREATE_INFO,
+ &samplerConversionInfo,
+ (VkImageViewCreateFlags)0,
+ image,
+ VK_IMAGE_VIEW_TYPE_2D,
+ format,
+ {
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ },
+ { (VkImageAspectFlags)imageAspect, 0u, 1u, 0u, 1u },
+ };
+
+ return createImageView(vkd, device, &viewInfo);
+}
+
+// Descriptor layout for set 1:
+// 0: Plane view bound as COMBINED_IMAGE_SAMPLER
+// 1: "Whole" image bound as COMBINED_IMAGE_SAMPLER
+// + immutable sampler (required for color conversion)
+
+Move<VkDescriptorSetLayout> createDescriptorSetLayout (const DeviceInterface& vkd, VkDevice device, VkSampler conversionSampler)
+{
+ const VkDescriptorSetLayoutBinding bindings[] =
+ {
+ {
+ 0u, // binding
+ VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER,
+ 1u, // descriptorCount
+ VK_SHADER_STAGE_ALL,
+ (const VkSampler*)DE_NULL
+ },
+ {
+ 1u, // binding
+ VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER,
+ 1u, // descriptorCount
+ VK_SHADER_STAGE_ALL,
+ &conversionSampler
+ }
+ };
+ const VkDescriptorSetLayoutCreateInfo layoutInfo =
+ {
+ VK_STRUCTURE_TYPE_DESCRIPTOR_SET_LAYOUT_CREATE_INFO,
+ DE_NULL,
+ (VkDescriptorSetLayoutCreateFlags)0u,
+ DE_LENGTH_OF_ARRAY(bindings),
+ bindings,
+ };
+
+ return createDescriptorSetLayout(vkd, device, &layoutInfo);
+}
+
+Move<VkDescriptorPool> createDescriptorPool (const DeviceInterface& vkd, VkDevice device)
+{
+ const VkDescriptorPoolSize poolSizes[] =
+ {
+ { VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER, 2u },
+ };
+ const VkDescriptorPoolCreateInfo poolInfo =
+ {
+ VK_STRUCTURE_TYPE_DESCRIPTOR_POOL_CREATE_INFO,
+ DE_NULL,
+ (VkDescriptorPoolCreateFlags)VK_DESCRIPTOR_POOL_CREATE_FREE_DESCRIPTOR_SET_BIT,
+ 1u, // maxSets
+ DE_LENGTH_OF_ARRAY(poolSizes),
+ poolSizes,
+ };
+
+ return createDescriptorPool(vkd, device, & poolInfo);
+}
+
+Move<VkDescriptorSet> createDescriptorSet (const DeviceInterface& vkd,
+ VkDevice device,
+ VkDescriptorPool descPool,
+ VkDescriptorSetLayout descLayout,
+ VkImageView planeView,
+ VkSampler planeViewSampler,
+ VkImageView wholeView,
+ VkSampler wholeViewSampler)
+{
+ Move<VkDescriptorSet> descSet;
+
+ {
+ const VkDescriptorSetAllocateInfo allocInfo =
+ {
+ VK_STRUCTURE_TYPE_DESCRIPTOR_SET_ALLOCATE_INFO,
+ DE_NULL,
+ descPool,
+ 1u,
+ &descLayout,
+ };
+
+ descSet = allocateDescriptorSet(vkd, device, &allocInfo);
+ }
+
+ {
+ const VkDescriptorImageInfo imageInfo0 =
+ {
+ planeViewSampler,
+ planeView,
+ VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL
+ };
+ const VkDescriptorImageInfo imageInfo1 =
+ {
+ wholeViewSampler,
+ wholeView,
+ VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL
+ };
+ const VkWriteDescriptorSet descriptorWrites[] =
+ {
+ {
+ VK_STRUCTURE_TYPE_WRITE_DESCRIPTOR_SET,
+ DE_NULL,
+ *descSet,
+ 0u, // dstBinding
+ 0u, // dstArrayElement
+ 1u, // descriptorCount
+ VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER,
+ &imageInfo0,
+ (const VkDescriptorBufferInfo*)DE_NULL,
+ (const VkBufferView*)DE_NULL,
+ },
+ {
+ VK_STRUCTURE_TYPE_WRITE_DESCRIPTOR_SET,
+ DE_NULL,
+ *descSet,
+ 1u, // dstBinding
+ 0u, // dstArrayElement
+ 1u, // descriptorCount
+ VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER,
+ &imageInfo1,
+ (const VkDescriptorBufferInfo*)DE_NULL,
+ (const VkBufferView*)DE_NULL,
+ }
+ };
+
+ vkd.updateDescriptorSets(device, DE_LENGTH_OF_ARRAY(descriptorWrites), descriptorWrites, 0u, DE_NULL);
+ }
+
+ return descSet;
+}
+
+void executeImageBarrier (const DeviceInterface& vkd,
+ VkDevice device,
+ deUint32 queueFamilyNdx,
+ VkPipelineStageFlags srcStage,
+ VkPipelineStageFlags dstStage,
+ const VkImageMemoryBarrier& barrier)
+{
+ const VkQueue queue = getDeviceQueue(vkd, device, queueFamilyNdx, 0u);
+ const Unique<VkCommandPool> cmdPool (createCommandPool(vkd, device, (VkCommandPoolCreateFlags)0, queueFamilyNdx));
+ const Unique<VkCommandBuffer> cmdBuffer (allocateCommandBuffer(vkd, device, *cmdPool, VK_COMMAND_BUFFER_LEVEL_PRIMARY));
+
+ {
+ const VkCommandBufferBeginInfo beginInfo =
+ {
+ VK_STRUCTURE_TYPE_COMMAND_BUFFER_BEGIN_INFO,
+ DE_NULL,
+ (VkCommandBufferUsageFlags)VK_COMMAND_BUFFER_USAGE_ONE_TIME_SUBMIT_BIT,
+ (const VkCommandBufferInheritanceInfo*)DE_NULL
+ };
+
+ VK_CHECK(vkd.beginCommandBuffer(*cmdBuffer, &beginInfo));
+ }
+
+ vkd.cmdPipelineBarrier(*cmdBuffer,
+ srcStage,
+ dstStage,
+ (VkDependencyFlags)0u,
+ 0u,
+ (const VkMemoryBarrier*)DE_NULL,
+ 0u,
+ (const VkBufferMemoryBarrier*)DE_NULL,
+ 1u,
+ &barrier);
+
+ VK_CHECK(vkd.endCommandBuffer(*cmdBuffer));
+
+ {
+ const Unique<VkFence> fence (createFence(vkd, device));
+ const VkSubmitInfo submitInfo =
+ {
+ VK_STRUCTURE_TYPE_SUBMIT_INFO,
+ DE_NULL,
+ 0u,
+ (const VkSemaphore*)DE_NULL,
+ (const VkPipelineStageFlags*)DE_NULL,
+ 1u,
+ &*cmdBuffer,
+ 0u,
+ (const VkSemaphore*)DE_NULL,
+ };
+
+ VK_CHECK(vkd.queueSubmit(queue, 1u, &submitInfo, *fence));
+ VK_CHECK(vkd.waitForFences(device, 1u, &*fence, VK_TRUE, ~0ull));
+ }
+}
+
+struct TestParameters
+{
+ enum ViewType
+ {
+ VIEWTYPE_IMAGE_VIEW = 0,
+ VIEWTYPE_MEMORY_ALIAS,
+
+ VIEWTYPE_LAST
+ };
+
+ ViewType viewType;
+ VkFormat format;
+ UVec2 size;
+ VkImageCreateFlags createFlags;
+ deUint32 planeNdx;
+ glu::ShaderType shaderType;
+
+ TestParameters (ViewType viewType_, VkFormat format_, const UVec2& size_, VkImageCreateFlags createFlags_, deUint32 planeNdx_, glu::ShaderType shaderType_)
+ : viewType (viewType_)
+ , format (format_)
+ , size (size_)
+ , createFlags (createFlags_)
+ , planeNdx (planeNdx_)
+ , shaderType (shaderType_)
+ {
+ }
+
+ TestParameters (void)
+ : viewType (VIEWTYPE_LAST)
+ , format (VK_FORMAT_UNDEFINED)
+ , createFlags (0u)
+ , planeNdx (0u)
+ , shaderType (glu::SHADERTYPE_LAST)
+ {
+ }
+};
+
+ShaderSpec getShaderSpec (const TestParameters&)
+{
+ ShaderSpec spec;
+
+ spec.inputs.push_back(Symbol("texCoord", glu::VarType(glu::TYPE_FLOAT_VEC2, glu::PRECISION_HIGHP)));
+ spec.outputs.push_back(Symbol("result0", glu::VarType(glu::TYPE_FLOAT_VEC4, glu::PRECISION_HIGHP)));
+ spec.outputs.push_back(Symbol("result1", glu::VarType(glu::TYPE_FLOAT_VEC4, glu::PRECISION_HIGHP)));
+
+ spec.globalDeclarations =
+ "layout(binding = 1, set = 1) uniform highp sampler2D u_image;\n"
+ "layout(binding = 0, set = 1) uniform highp sampler2D u_planeView;\n";
+
+ spec.source =
+ "result0 = texture(u_image, texCoord);\n"
+ "result1 = texture(u_planeView, texCoord);\n";
+
+ return spec;
+}
+
+
+void generateLookupCoordinates (const UVec2& imageSize, size_t numCoords, de::Random* rnd, vector<Vec2>* dst)
+{
+ dst->resize(numCoords);
+
+ for (size_t coordNdx = 0; coordNdx < numCoords; ++coordNdx)
+ {
+ const deUint32 texelX = rnd->getUint32() % imageSize.x();
+ const deUint32 texelY = rnd->getUint32() % imageSize.y();
+ const float x = ((float)texelX + 0.5f) / (float)imageSize.x();
+ const float y = ((float)texelY + 0.5f) / (float)imageSize.y();
+
+ (*dst)[coordNdx] = Vec2(x, y);
+ }
+}
+
+void checkImageUsageSupport (Context& context,
+ VkFormat format,
+ VkImageUsageFlags usage)
+{
+ {
+ const VkFormatProperties formatProperties = getPhysicalDeviceFormatProperties(context.getInstanceInterface(),
+ context.getPhysicalDevice(),
+ format);
+ const VkFormatFeatureFlags featureFlags = formatProperties.optimalTilingFeatures;
+
+ if ((usage & VK_IMAGE_USAGE_SAMPLED_BIT) != 0
+ && (featureFlags & VK_FORMAT_FEATURE_SAMPLED_IMAGE_BIT) == 0)
+ {
+ TCU_THROW(NotSupportedError, "Format doesn't support sampling");
+ }
+
+ // Other image usages are not handled currently
+ DE_ASSERT((usage & ~(VK_IMAGE_USAGE_TRANSFER_SRC_BIT|VK_IMAGE_USAGE_TRANSFER_DST_BIT|VK_IMAGE_USAGE_SAMPLED_BIT)) == 0);
+ }
+}
+
+
+tcu::TestStatus testPlaneView (Context& context, TestParameters params)
+{
+ de::Random randomGen (deInt32Hash((deUint32)params.format) ^
+ deInt32Hash((deUint32)params.planeNdx) ^
+ deInt32Hash((deUint32)params.shaderType));
+
+ const DeviceInterface& vkd = context.getDeviceInterface();
+ const VkDevice device = context.getDevice();
+
+ const VkFormat format = params.format;
+ const VkImageCreateFlags createFlags = params.createFlags;
+ const VkFormat planeViewFormat = getPlaneCompatibleFormat(format, params.planeNdx);
+ const PlanarFormatDescription formatInfo = getPlanarFormatDescription(format);
+ const UVec2 size = params.size;
+ const UVec2 planeSize (size.x() / formatInfo.planes[params.planeNdx].widthDivisor,
+ size.y() / formatInfo.planes[params.planeNdx].heightDivisor);
+ const VkImageUsageFlags usage = VK_IMAGE_USAGE_SAMPLED_BIT|VK_IMAGE_USAGE_TRANSFER_DST_BIT;
+
+ checkImageSupport(context, format, createFlags);
+ checkImageUsageSupport(context, format, usage);
+ checkImageUsageSupport(context, planeViewFormat, usage);
+
+ const Unique<VkImage> image (createTestImage(vkd, device, format, size, createFlags));
+ const Unique<VkImage> imageAlias ((params.viewType == TestParameters::VIEWTYPE_MEMORY_ALIAS)
+ ? createTestImage(vkd, device, planeViewFormat, planeSize, createFlags)
+ : Move<VkImage>());
+ const vector<AllocationSp> allocations (allocateAndBindImageMemory(vkd, device, context.getDefaultAllocator(), *image, format, createFlags));
+
+ if (imageAlias)
+ VK_CHECK(vkd.bindImageMemory(device, *imageAlias, allocations[params.planeNdx]->getMemory(), allocations[params.planeNdx]->getOffset()));
+
+ const VkSamplerYcbcrConversionCreateInfoKHR conversionInfo =
+ {
+ VK_STRUCTURE_TYPE_SAMPLER_YCBCR_CONVERSION_CREATE_INFO_KHR,
+ DE_NULL,
+ format,
+ VK_SAMPLER_YCBCR_MODEL_CONVERSION_RGB_IDENTITY_KHR,
+ VK_SAMPLER_YCBCR_RANGE_ITU_FULL_KHR,
+ {
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ VK_COMPONENT_SWIZZLE_IDENTITY,
+ },
+ VK_CHROMA_LOCATION_MIDPOINT_KHR,
+ VK_CHROMA_LOCATION_MIDPOINT_KHR,
+ VK_FILTER_NEAREST,
+ VK_FALSE, // forceExplicitReconstruction
+ };
+ const Unique<VkSamplerYcbcrConversionKHR> conversion (createSamplerYcbcrConversionKHR(vkd, device, &conversionInfo));
+ const Unique<VkImageView> wholeView (createImageView(vkd, device, *image, format, VK_IMAGE_ASPECT_COLOR_BIT, *conversion));
+ const Unique<VkImageView> planeView (createImageView(vkd,
+ device,
+ !imageAlias ? *image : *imageAlias,
+ planeViewFormat,
+ !imageAlias ? getPlaneAspect(params.planeNdx) : VK_IMAGE_ASPECT_COLOR_BIT,
+ *conversion));
+
+ const VkSamplerYcbcrConversionInfoKHR samplerConversionInfo =
+ {
+ VK_STRUCTURE_TYPE_SAMPLER_YCBCR_CONVERSION_INFO_KHR,
+ DE_NULL,
+ *conversion,
+ };
+ const VkSamplerCreateInfo wholeSamplerInfo =
+ {
+ VK_STRUCTURE_TYPE_SAMPLER_CREATE_INFO,
+ &samplerConversionInfo,
+ 0u,
+ VK_FILTER_NEAREST, // magFilter
+ VK_FILTER_NEAREST, // minFilter
+ VK_SAMPLER_MIPMAP_MODE_NEAREST, // mipmapMode
+ VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, // addressModeU
+ VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, // addressModeV
+ VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, // addressModeW
+ 0.0f, // mipLodBias
+ VK_FALSE, // anisotropyEnable
+ 1.0f, // maxAnisotropy
+ VK_FALSE, // compareEnable
+ VK_COMPARE_OP_ALWAYS, // compareOp
+ 0.0f, // minLod
+ 0.0f, // maxLod
+ VK_BORDER_COLOR_FLOAT_TRANSPARENT_BLACK, // borderColor
+ VK_FALSE, // unnormalizedCoords
+ };
+ const VkSamplerCreateInfo planeSamplerInfo =
+ {
+ VK_STRUCTURE_TYPE_SAMPLER_CREATE_INFO,
+ DE_NULL,
+ 0u,
+ VK_FILTER_NEAREST, // magFilter
+ VK_FILTER_NEAREST, // minFilter
+ VK_SAMPLER_MIPMAP_MODE_NEAREST, // mipmapMode
+ VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, // addressModeU
+ VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, // addressModeV
+ VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE, // addressModeW
+ 0.0f, // mipLodBias
+ VK_FALSE, // anisotropyEnable
+ 1.0f, // maxAnisotropy
+ VK_FALSE, // compareEnable
+ VK_COMPARE_OP_ALWAYS, // compareOp
+ 0.0f, // minLod
+ 0.0f, // maxLod
+ VK_BORDER_COLOR_FLOAT_TRANSPARENT_BLACK, // borderColor
+ VK_FALSE, // unnormalizedCoords
+ };
+
+ const Unique<VkSampler> wholeSampler(createSampler(vkd, device, &wholeSamplerInfo));
+ const Unique<VkSampler> planeSampler(createSampler(vkd, device, &planeSamplerInfo));
+
+ const Unique<VkDescriptorSetLayout> descLayout (createDescriptorSetLayout(vkd, device, *wholeSampler));
+ const Unique<VkDescriptorPool> descPool (createDescriptorPool(vkd, device));
+ const Unique<VkDescriptorSet> descSet (createDescriptorSet(vkd, device, *descPool, *descLayout, *planeView, *planeSampler, *wholeView, *wholeSampler));
+
+ MultiPlaneImageData imageData (format, size);
+
+ // Prepare texture data
+ fillRandom(&randomGen, &imageData);
+
+ if (imageAlias)
+ {
+ // Transition alias to right layout first
+ const VkImageMemoryBarrier initAliasBarrier =
+ {
+ VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER,
+ DE_NULL,
+ (VkAccessFlags)0,
+ VK_ACCESS_SHADER_READ_BIT,
+ VK_IMAGE_LAYOUT_UNDEFINED,
+ VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL,
+ VK_QUEUE_FAMILY_IGNORED,
+ VK_QUEUE_FAMILY_IGNORED,
+ *imageAlias,
+ { VK_IMAGE_ASPECT_COLOR_BIT, 0u, 1u, 0u, 1u }
+ };
+
+ executeImageBarrier(vkd,
+ device,
+ context.getUniversalQueueFamilyIndex(),
+ (VkPipelineStageFlags)VK_PIPELINE_STAGE_HOST_BIT,
+ (VkPipelineStageFlags)VK_PIPELINE_STAGE_ALL_GRAPHICS_BIT,
+ initAliasBarrier);
+ }
+
+ // Upload and prepare image
+ uploadImage(vkd,
+ device,
+ context.getUniversalQueueFamilyIndex(),
+ context.getDefaultAllocator(),
+ *image,
+ imageData,
+ (VkAccessFlags)VK_ACCESS_SHADER_READ_BIT,
+ VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL);
+
+ {
+ const size_t numValues = 500;
+ vector<Vec2> texCoord (numValues);
+ vector<Vec4> resultWhole (numValues);
+ vector<Vec4> resultPlane (numValues);
+ vector<Vec4> referenceWhole (numValues);
+ vector<Vec4> referencePlane (numValues);
+ bool allOk = true;
+ Vec4 threshold (0.02f);
+
+ generateLookupCoordinates(size, numValues, &randomGen, &texCoord);
+
+ {
+ UniquePtr<ShaderExecutor> executor (createExecutor(context, params.shaderType, getShaderSpec(params), *descLayout));
+ const void* inputs[] = { texCoord[0].getPtr() };
+ void* outputs[] = { resultWhole[0].getPtr(), resultPlane[0].getPtr() };
+
+ executor->execute((int)numValues, inputs, outputs, *descSet);
+ }
+
+ // Whole image sampling reference
+ for (deUint32 channelNdx = 0; channelNdx < 4; channelNdx++)
+ {
+ if (formatInfo.hasChannelNdx(channelNdx))
+ {
+ const tcu::ConstPixelBufferAccess channelAccess = imageData.getChannelAccess(channelNdx);
+ const tcu::Sampler refSampler = mapVkSampler(wholeSamplerInfo);
+ const tcu::Texture2DView refTexView (1u, &channelAccess);
+
+ for (size_t ndx = 0; ndx < numValues; ++ndx)
+ {
+ const Vec2& coord = texCoord[ndx];
+ referenceWhole[ndx][channelNdx] = refTexView.sample(refSampler, coord.x(), coord.y(), 0.0f)[0];
+ }
+ }
+ else
+ {
+ for (size_t ndx = 0; ndx < numValues; ++ndx)
+ referenceWhole[ndx][channelNdx] = channelNdx == 3 ? 1.0f : 0.0f;
+ }
+ }
+
+ // Plane view sampling reference
+ {
+ const tcu::ConstPixelBufferAccess planeAccess (mapVkFormat(planeViewFormat),
+ tcu::IVec3((int)planeSize.x(), (int)planeSize.y(), 1),
+ imageData.getPlanePtr(params.planeNdx));
+ const tcu::Sampler refSampler = mapVkSampler(planeSamplerInfo);
+ const tcu::Texture2DView refTexView (1u, &planeAccess);
+
+ for (size_t ndx = 0; ndx < numValues; ++ndx)
+ {
+ const Vec2& coord = texCoord[ndx];
+ referencePlane[ndx] = refTexView.sample(refSampler, coord.x(), coord.y(), 0.0f);
+ }
+ }
+
+ for (int viewNdx = 0; viewNdx < 2; ++viewNdx)
+ {
+ const char* const viewName = (viewNdx == 0) ? "complete image" : "plane view";
+ const vector<Vec4>& reference = (viewNdx == 0) ? referenceWhole : referencePlane;
+ const vector<Vec4>& result = (viewNdx == 0) ? resultWhole : resultPlane;
+
+ for (size_t ndx = 0; ndx < numValues; ++ndx)
+ {
+ if (boolAny(greaterThanEqual(abs(result[ndx] - reference[ndx]), threshold)))
+ {
+ context.getTestContext().getLog()
+ << TestLog::Message << "ERROR: When sampling " << viewName << " at " << texCoord[ndx]
+ << ": got " << result[ndx]
+ << ", expected " << reference[ndx]
+ << TestLog::EndMessage;
+ allOk = false;
+ }
+ }
+ }
+
+ if (allOk)
+ return tcu::TestStatus::pass("All samples passed");
+ else
+ return tcu::TestStatus::fail("Got invalid results");
+ }
+}
+
+void initPrograms (SourceCollections& dst, TestParameters params)
+{
+ const ShaderSpec spec = getShaderSpec(params);
+
+ generateSources(params.shaderType, spec, dst);
+}
+
+void addPlaneViewCase (tcu::TestCaseGroup* group, const TestParameters& params)
+{
+ std::ostringstream name;
+
+ name << de::toLower(de::toString(params.format).substr(10));
+
+ if ((params.viewType != TestParameters::VIEWTYPE_MEMORY_ALIAS) &&
+ ((params.createFlags & VK_IMAGE_CREATE_DISJOINT_BIT_KHR) != 0))
+ name << "_disjoint";
+
+ name << "_plane_" << params.planeNdx;
+
+ addFunctionCaseWithPrograms(group, name.str(), "", initPrograms, testPlaneView, params);
+}
+
+void populateViewTypeGroup (tcu::TestCaseGroup* group, TestParameters::ViewType viewType)
+{
+ const glu::ShaderType shaderType = glu::SHADERTYPE_FRAGMENT;
+ const UVec2 size (32, 58);
+ const VkImageCreateFlags baseFlags = (VkImageCreateFlags)VK_IMAGE_CREATE_MUTABLE_FORMAT_BIT
+ | (viewType == TestParameters::VIEWTYPE_MEMORY_ALIAS ? (VkImageCreateFlags)VK_IMAGE_CREATE_ALIAS_BIT_KHR : 0u);
+
+ for (int formatNdx = VK_YCBCR_FORMAT_FIRST; formatNdx < VK_YCBCR_FORMAT_LAST; formatNdx++)
+ {
+ const VkFormat format = (VkFormat)formatNdx;
+ const deUint32 numPlanes = getPlaneCount(format);
+
+ if (numPlanes == 1)
+ continue; // Plane views not possible
+
+ for (int isDisjoint = 0; isDisjoint < 2; ++isDisjoint)
+ {
+ const VkImageCreateFlags flags = baseFlags | (isDisjoint == 1 ? (VkImageCreateFlags)VK_IMAGE_CREATE_DISJOINT_BIT_KHR : 0u);
+
+ if ((viewType == TestParameters::VIEWTYPE_MEMORY_ALIAS) &&
+ ((flags & VK_IMAGE_CREATE_DISJOINT_BIT_KHR) == 0))
+ continue; // Memory alias cases require disjoint planes
+
+ for (deUint32 planeNdx = 0; planeNdx < numPlanes; ++planeNdx)
+ addPlaneViewCase(group, TestParameters(viewType, format, size, flags, planeNdx, shaderType));
+ }
+ }
+}
+
+void populateViewGroup (tcu::TestCaseGroup* group)
+{
+ addTestGroup(group, "image_view", "Plane View via VkImageView", populateViewTypeGroup, TestParameters::VIEWTYPE_IMAGE_VIEW);
+ addTestGroup(group, "memory_alias", "Plane View via Memory Aliasing", populateViewTypeGroup, TestParameters::VIEWTYPE_MEMORY_ALIAS);
+}
+
+} // anonymous
+
+tcu::TestCaseGroup* createViewTests (tcu::TestContext& testCtx)
+{
+ // \todo [2017-05-24 pyry] Extend with memory alias views
+ return createTestGroup(testCtx, "plane_view", "YCbCr Plane View Tests", populateViewGroup);
+}
+
+} // ycbcr
+} // vkt
+
--- /dev/null
+#ifndef _VKTYCBCRVIEWTESTS_HPP
+#define _VKTYCBCRVIEWTESTS_HPP
+/*-------------------------------------------------------------------------
+ * Vulkan Conformance Tests
+ * ------------------------
+ *
+ * Copyright (c) 2017 Google Inc.
+ *
+ * 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
+ *
+ * Unless required by applicable law or agreed to in writing, software
+ * distributed under the License is distributed on an "AS IS" BASIS,
+ * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
+ * See the License for the specific language governing permissions and
+ * limitations under the License.
+ *
+ *//*!
+ * \file
+ * \brief YCbCr Image View Tests
+ *//*--------------------------------------------------------------------*/
+
+#include "tcuDefs.hpp"
+#include "tcuTestCase.hpp"
+
+namespace vkt
+{
+namespace ycbcr
+{
+
+tcu::TestCaseGroup* createViewTests (tcu::TestContext& testCtx);
+
+} // ycbcr
+} // vkt
+
+#endif // _VKTYCBCRVIEWTESTS_HPP
dEQP-VK.api.info.format_properties.astc_12x10_srgb_block
dEQP-VK.api.info.format_properties.astc_12x12_unorm_block
dEQP-VK.api.info.format_properties.astc_12x12_srgb_block
+dEQP-VK.api.info.format_properties.g8b8g8r8_422_unorm_khr
+dEQP-VK.api.info.format_properties.b8g8r8g8_422_unorm_khr
+dEQP-VK.api.info.format_properties.g8_b8_r8_3plane_420_unorm_khr
+dEQP-VK.api.info.format_properties.g8_b8r8_2plane_420_unorm_khr
+dEQP-VK.api.info.format_properties.g8_b8_r8_3plane_422_unorm_khr
+dEQP-VK.api.info.format_properties.g8_b8r8_2plane_422_unorm_khr
+dEQP-VK.api.info.format_properties.g8_b8_r8_3plane_444_unorm_khr
+dEQP-VK.api.info.format_properties.r10x6_unorm_pack16_khr
+dEQP-VK.api.info.format_properties.r10x6g10x6_unorm_2pack16_khr
+dEQP-VK.api.info.format_properties.r10x6g10x6b10x6a10x6_unorm_4pack16_khr
+dEQP-VK.api.info.format_properties.g10x6b10x6g10x6r10x6_422_unorm_4pack16_khr
+dEQP-VK.api.info.format_properties.b10x6g10x6r10x6g10x6_422_unorm_4pack16_khr
+dEQP-VK.api.info.format_properties.g10x6_b10x6_r10x6_3plane_420_unorm_3pack16_khr
+dEQP-VK.api.info.format_properties.g10x6_b10x6r10x6_2plane_420_unorm_3pack16_khr
+dEQP-VK.api.info.format_properties.g10x6_b10x6_r10x6_3plane_422_unorm_3pack16_khr
+dEQP-VK.api.info.format_properties.g10x6_b10x6r10x6_2plane_422_unorm_3pack16_khr
+dEQP-VK.api.info.format_properties.g10x6_b10x6_r10x6_3plane_444_unorm_3pack16_khr
+dEQP-VK.api.info.format_properties.r12x4_unorm_pack16_khr
+dEQP-VK.api.info.format_properties.r12x4g12x4_unorm_2pack16_khr
+dEQP-VK.api.info.format_properties.r12x4g12x4b12x4a12x4_unorm_4pack16_khr
+dEQP-VK.api.info.format_properties.g12x4b12x4g12x4r12x4_422_unorm_4pack16_khr
+dEQP-VK.api.info.format_properties.b12x4g12x4r12x4g12x4_422_unorm_4pack16_khr
+dEQP-VK.api.info.format_properties.g12x4_b12x4_r12x4_3plane_420_unorm_3pack16_khr
+dEQP-VK.api.info.format_properties.g12x4_b12x4r12x4_2plane_420_unorm_3pack16_khr
+dEQP-VK.api.info.format_properties.g12x4_b12x4_r12x4_3plane_422_unorm_3pack16_khr
+dEQP-VK.api.info.format_properties.g12x4_b12x4r12x4_2plane_422_unorm_3pack16_khr
+dEQP-VK.api.info.format_properties.g12x4_b12x4_r12x4_3plane_444_unorm_3pack16_khr
+dEQP-VK.api.info.format_properties.g16b16g16r16_422_unorm_khr
+dEQP-VK.api.info.format_properties.b16g16r16g16_422_unorm_khr
+dEQP-VK.api.info.format_properties.g16_b16_r16_3plane_420_unorm_khr
+dEQP-VK.api.info.format_properties.g16_b16r16_2plane_420_unorm_khr
+dEQP-VK.api.info.format_properties.g16_b16_r16_3plane_422_unorm_khr
+dEQP-VK.api.info.format_properties.g16_b16r16_2plane_422_unorm_khr
+dEQP-VK.api.info.format_properties.g16_b16_r16_3plane_444_unorm_khr
dEQP-VK.api.info.format_properties.depth_stencil
dEQP-VK.api.info.format_properties.compressed_formats
dEQP-VK.api.info.image_format_properties.1d.optimal.r4g4_unorm_pack8
dEQP-VK.memory.requirements.dedicated_allocation.image.sparse_aliased_tiling_linear
dEQP-VK.memory.requirements.dedicated_allocation.image.sparse_aliased_tiling_optimal
dEQP-VK.memory.requirements.dedicated_allocation.image.sparse_residency_aliased_tiling_optimal
+dEQP-VK.memory.requirements.multiplane_image.regular_optimal
+dEQP-VK.memory.requirements.multiplane_image.regular_linear
+dEQP-VK.memory.requirements.multiplane_image.transient_optimal
+dEQP-VK.memory.requirements.multiplane_image.transient_linear
+dEQP-VK.memory.requirements.multiplane_image.sparse_optimal
+dEQP-VK.memory.requirements.multiplane_image.sparse_residency_optimal
+dEQP-VK.memory.requirements.multiplane_image.sparse_aliased_optimal
+dEQP-VK.memory.requirements.multiplane_image.sparse_residency_aliased_optimal
dEQP-VK.memory.binding.regular.suballocated.buffer_33
dEQP-VK.memory.binding.regular.suballocated.buffer_257
dEQP-VK.memory.binding.regular.suballocated.buffer_4087
dEQP-VK.multiview.index.tesellation_shader.8_1_1_8
dEQP-VK.multiview.index.tesellation_shader.1_2_4_8_16_32
dEQP-VK.multiview.index.tesellation_shader.max_multi_view_view_count
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.vertex_optimal
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.vertex_linear
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.vertex_linear_mapped
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.fragment_optimal
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.fragment_linear
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.fragment_linear_mapped
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.geometry_optimal
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.geometry_linear
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.geometry_linear_mapped
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.tess_control_optimal
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.tess_control_linear
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.tess_control_linear_mapped
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.tess_eval_optimal
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.tess_eval_linear
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.tess_eval_linear_mapped
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.compute_optimal
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.compute_linear
+dEQP-VK.ycbcr.format.g8b8g8r8_422_unorm_khr.compute_linear_mapped
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.vertex_optimal
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.vertex_linear
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.vertex_linear_mapped
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.fragment_optimal
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.fragment_linear
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.fragment_linear_mapped
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.geometry_optimal
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.geometry_linear
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.geometry_linear_mapped
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.tess_control_optimal
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.tess_control_linear
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.tess_control_linear_mapped
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.tess_eval_optimal
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.tess_eval_linear
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.tess_eval_linear_mapped
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.compute_optimal
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.compute_linear
+dEQP-VK.ycbcr.format.b8g8r8g8_422_unorm_khr.compute_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.vertex_optimal
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.vertex_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.vertex_linear
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.vertex_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.vertex_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.vertex_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.fragment_optimal
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.fragment_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.fragment_linear
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.fragment_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.fragment_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.fragment_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.geometry_optimal
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.geometry_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.geometry_linear
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.geometry_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.geometry_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.geometry_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_control_optimal
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_control_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_control_linear
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_control_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_control_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_control_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_eval_optimal
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_eval_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_eval_linear
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_eval_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_eval_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.tess_eval_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.compute_optimal
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.compute_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.compute_linear
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.compute_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.compute_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8_r8_3plane_420_unorm_khr.compute_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.vertex_optimal
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.vertex_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.vertex_linear
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.vertex_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.vertex_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.vertex_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.fragment_optimal
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.fragment_optimal_disjoint
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.fragment_linear
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.fragment_linear_disjoint
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.fragment_linear_mapped
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.fragment_linear_disjoint_mapped
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.geometry_optimal
+dEQP-VK.ycbcr.format.g8_b8r8_2plane_420_unorm_khr.geometry_optimal_disjoint
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+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.default_linear_midpoint_cosited_tiling_optimal_disjoint_swapped_chroma
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+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.default_nearest_midpoint_cosited_tiling_optimal_disjoint_swapped_chroma
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.default_linear_midpoint_midpoint_tiling_linear_disjoint
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.default_linear_midpoint_midpoint_tiling_linear_disjoint_swapped_chroma
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+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.default_nearest_midpoint_midpoint_tiling_linear_disjoint_swapped_chroma
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.default_linear_midpoint_midpoint_tiling_optimal_disjoint
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.default_linear_midpoint_midpoint_tiling_optimal_disjoint_swapped_chroma
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.default_nearest_midpoint_midpoint_tiling_optimal_disjoint
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.default_nearest_midpoint_midpoint_tiling_optimal_disjoint_swapped_chroma
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_linear_cosited_cosited_tiling_linear
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_linear_cosited_cosited_tiling_linear_swapped_chroma
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+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_nearest_tiling_optimal
+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_nearest_tiling_optimal_swapped_chroma
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+dEQP-VK.ycbcr.conversion.g16_b16r16_2plane_420_unorm_khr.chroma_reconstruction.nearest.explicit_linear_midpoint_cosited_tiling_optimal_disjoint_swapped_chroma
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, lodBits (16)
{
}
+
+ LodPrecision (int derivateBits_, int lodBits_)
+ : derivateBits (derivateBits_)
+ , lodBits (lodBits_)
+ {}
};
enum TexLookupScaleMode
/* Conversion to integer. */
-DE_INLINE deInt32 deChopFloatToInt32 (float x) { return (deInt32)x; }
-DE_INLINE deInt32 deFloorFloatToInt32 (float x) { return (deInt32)(deFloatFloor(x)); }
-DE_INLINE deInt32 deCeilFloatToInt32 (float x) { return (deInt32)(deFloatCeil(x)); }
+DE_INLINE deInt32 deChopFloatToInt32 (float x) { return (deInt32)x; }
+DE_INLINE deInt32 deFloorFloatToInt32 (float x) { return (deInt32)(deFloatFloor(x)); }
+DE_INLINE deInt32 deCeilFloatToInt32 (float x) { return (deInt32)(deFloatCeil(x)); }
+
+DE_INLINE deInt32 deChopToInt32 (double x) { return (deInt32)x; }
+DE_INLINE deInt32 deFloorToInt32 (double x) { return (deInt32)(deFloor(x)); }
+DE_INLINE deInt32 deCeilToInt32 (double x) { return (deInt32)(deCeil(x)); }
/* Arithmetic round */
-DE_INLINE deInt16 deRoundFloatToInt16 (float x) { if(x >= 0.0f) return (deInt16)(x + 0.5f); else return (deInt16)(x - 0.5f); }
-DE_INLINE deInt32 deRoundFloatToInt32 (float x) { if(x >= 0.0f) return (deInt32)(x + 0.5f); else return (deInt32)(x - 0.5f); }
-DE_INLINE deInt64 deRoundFloatToInt64 (float x) { if(x >= 0.0f) return (deInt64)(x + 0.5f); else return (deInt64)(x - 0.5f); }
+DE_INLINE deInt16 deRoundFloatToInt16 (float x) { if(x >= 0.0f) return (deInt16)(x + 0.5f); else return (deInt16)(x - 0.5f); }
+DE_INLINE deInt32 deRoundFloatToInt32 (float x) { if(x >= 0.0f) return (deInt32)(x + 0.5f); else return (deInt32)(x - 0.5f); }
+DE_INLINE deInt64 deRoundFloatToInt64 (float x) { if(x >= 0.0f) return (deInt64)(x + 0.5f); else return (deInt64)(x - 0.5f); }
+
+DE_INLINE deInt16 deRoundToInt16 (double x) { if(x >= 0.0) return (deInt16)(x + 0.5); else return (deInt16)(x - 0.5); }
+DE_INLINE deInt32 deRoundToInt32 (double x) { if(x >= 0.0) return (deInt32)(x + 0.5); else return (deInt32)(x - 0.5); }
+DE_INLINE deInt64 deRoundToInt64 (double x) { if(x >= 0.0) return (deInt64)(x + 0.5); else return (deInt64)(x - 0.5); }
DE_END_EXTERN_C