mirror of
https://github.com/GreemDev/Ryujinx.git
synced 2024-12-23 09:15:46 +00:00
470be03c2f
* Add conversion for 16 bit RGBA formats (not supported in Rosetta) * Rebase fix Rebase fix * Forgot to remove this * Fix RGBA16 format conversion * Add RGBA4 -> RGBA8 conversion * Handle host stride alignment * Address Feedback Part 1 * Can't count * Don't zero out rgb when alpha is 0 * Separate RGBA4 and 5-bit component formats Not sure of a better way to name them... * Add A1B5G5R5 conversion * Put this in the right place. * Make format naming consistent for capabilities * Change method names
667 lines
No EOL
22 KiB
C#
667 lines
No EOL
22 KiB
C#
namespace Ryujinx.Graphics.GAL
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{
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public enum Format
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{
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R8Unorm,
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R8Snorm,
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R8Uint,
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R8Sint,
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R16Float,
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R16Unorm,
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R16Snorm,
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R16Uint,
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R16Sint,
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R32Float,
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R32Uint,
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R32Sint,
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R8G8Unorm,
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R8G8Snorm,
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R8G8Uint,
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R8G8Sint,
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R16G16Float,
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R16G16Unorm,
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R16G16Snorm,
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R16G16Uint,
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R16G16Sint,
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R32G32Float,
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R32G32Uint,
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R32G32Sint,
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R8G8B8Unorm,
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R8G8B8Snorm,
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R8G8B8Uint,
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R8G8B8Sint,
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R16G16B16Float,
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R16G16B16Unorm,
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R16G16B16Snorm,
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R16G16B16Uint,
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R16G16B16Sint,
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R32G32B32Float,
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R32G32B32Uint,
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R32G32B32Sint,
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R8G8B8A8Unorm,
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R8G8B8A8Snorm,
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R8G8B8A8Uint,
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R8G8B8A8Sint,
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R16G16B16A16Float,
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R16G16B16A16Unorm,
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R16G16B16A16Snorm,
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R16G16B16A16Uint,
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R16G16B16A16Sint,
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R32G32B32A32Float,
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R32G32B32A32Uint,
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R32G32B32A32Sint,
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S8Uint,
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D16Unorm,
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S8UintD24Unorm,
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D32Float,
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D24UnormS8Uint,
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D32FloatS8Uint,
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R8G8B8A8Srgb,
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R4G4Unorm,
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R4G4B4A4Unorm,
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R5G5B5X1Unorm,
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R5G5B5A1Unorm,
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R5G6B5Unorm,
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R10G10B10A2Unorm,
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R10G10B10A2Uint,
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R11G11B10Float,
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R9G9B9E5Float,
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Bc1RgbaUnorm,
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Bc2Unorm,
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Bc3Unorm,
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Bc1RgbaSrgb,
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Bc2Srgb,
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Bc3Srgb,
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Bc4Unorm,
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Bc4Snorm,
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Bc5Unorm,
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Bc5Snorm,
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Bc7Unorm,
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Bc7Srgb,
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Bc6HSfloat,
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Bc6HUfloat,
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Etc2RgbUnorm,
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Etc2RgbaUnorm,
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Etc2RgbPtaUnorm,
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Etc2RgbSrgb,
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Etc2RgbaSrgb,
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Etc2RgbPtaSrgb,
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R8Uscaled,
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R8Sscaled,
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R16Uscaled,
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R16Sscaled,
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R32Uscaled,
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R32Sscaled,
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R8G8Uscaled,
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R8G8Sscaled,
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R16G16Uscaled,
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R16G16Sscaled,
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R32G32Uscaled,
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R32G32Sscaled,
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R8G8B8Uscaled,
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R8G8B8Sscaled,
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R16G16B16Uscaled,
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R16G16B16Sscaled,
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R32G32B32Uscaled,
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R32G32B32Sscaled,
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R8G8B8A8Uscaled,
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R8G8B8A8Sscaled,
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R16G16B16A16Uscaled,
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R16G16B16A16Sscaled,
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R32G32B32A32Uscaled,
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R32G32B32A32Sscaled,
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R10G10B10A2Snorm,
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R10G10B10A2Sint,
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R10G10B10A2Uscaled,
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R10G10B10A2Sscaled,
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Astc4x4Unorm,
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Astc5x4Unorm,
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Astc5x5Unorm,
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Astc6x5Unorm,
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Astc6x6Unorm,
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Astc8x5Unorm,
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Astc8x6Unorm,
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Astc8x8Unorm,
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Astc10x5Unorm,
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Astc10x6Unorm,
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Astc10x8Unorm,
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Astc10x10Unorm,
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Astc12x10Unorm,
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Astc12x12Unorm,
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Astc4x4Srgb,
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Astc5x4Srgb,
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Astc5x5Srgb,
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Astc6x5Srgb,
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Astc6x6Srgb,
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Astc8x5Srgb,
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Astc8x6Srgb,
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Astc8x8Srgb,
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Astc10x5Srgb,
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Astc10x6Srgb,
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Astc10x8Srgb,
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Astc10x10Srgb,
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Astc12x10Srgb,
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Astc12x12Srgb,
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B5G6R5Unorm,
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B5G5R5A1Unorm,
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A1B5G5R5Unorm,
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B8G8R8A8Unorm,
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B8G8R8A8Srgb
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}
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public static class FormatExtensions
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{
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/// <summary>
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/// The largest scalar size for a buffer format.
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/// </summary>
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public const int MaxBufferFormatScalarSize = 4;
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/// <summary>
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/// Gets the byte size for a single component of this format, or its packed size.
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/// </summary>
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/// <param name="format">Texture format</param>
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/// <returns>Byte size for a single component, or packed size</returns>
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public static int GetScalarSize(this Format format)
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{
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switch (format)
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{
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case Format.R8Unorm:
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case Format.R8Snorm:
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case Format.R8Uint:
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case Format.R8Sint:
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case Format.R8G8Unorm:
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case Format.R8G8Snorm:
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case Format.R8G8Uint:
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case Format.R8G8Sint:
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case Format.R8G8B8Unorm:
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case Format.R8G8B8Snorm:
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case Format.R8G8B8Uint:
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case Format.R8G8B8Sint:
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case Format.R8G8B8A8Unorm:
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case Format.R8G8B8A8Snorm:
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case Format.R8G8B8A8Uint:
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case Format.R8G8B8A8Sint:
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case Format.R8G8B8A8Srgb:
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case Format.R4G4Unorm:
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case Format.R8Uscaled:
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case Format.R8Sscaled:
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case Format.R8G8Uscaled:
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case Format.R8G8Sscaled:
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case Format.R8G8B8Uscaled:
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case Format.R8G8B8Sscaled:
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case Format.R8G8B8A8Uscaled:
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case Format.R8G8B8A8Sscaled:
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case Format.B8G8R8A8Unorm:
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case Format.B8G8R8A8Srgb:
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return 1;
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case Format.R16Float:
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case Format.R16Unorm:
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case Format.R16Snorm:
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case Format.R16Uint:
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case Format.R16Sint:
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case Format.R16G16Float:
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case Format.R16G16Unorm:
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case Format.R16G16Snorm:
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case Format.R16G16Uint:
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case Format.R16G16Sint:
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case Format.R16G16B16Float:
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case Format.R16G16B16Unorm:
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case Format.R16G16B16Snorm:
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case Format.R16G16B16Uint:
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case Format.R16G16B16Sint:
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case Format.R16G16B16A16Float:
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case Format.R16G16B16A16Unorm:
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case Format.R16G16B16A16Snorm:
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case Format.R16G16B16A16Uint:
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case Format.R16G16B16A16Sint:
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case Format.R4G4B4A4Unorm:
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case Format.R5G5B5X1Unorm:
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case Format.R5G5B5A1Unorm:
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case Format.R5G6B5Unorm:
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case Format.R16Uscaled:
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case Format.R16Sscaled:
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case Format.R16G16Uscaled:
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case Format.R16G16Sscaled:
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case Format.R16G16B16Uscaled:
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case Format.R16G16B16Sscaled:
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case Format.R16G16B16A16Uscaled:
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case Format.R16G16B16A16Sscaled:
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case Format.B5G6R5Unorm:
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case Format.B5G5R5A1Unorm:
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case Format.A1B5G5R5Unorm:
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return 2;
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case Format.R32Float:
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case Format.R32Uint:
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case Format.R32Sint:
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case Format.R32G32Float:
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case Format.R32G32Uint:
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case Format.R32G32Sint:
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case Format.R32G32B32Float:
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case Format.R32G32B32Uint:
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case Format.R32G32B32Sint:
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case Format.R32G32B32A32Float:
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case Format.R32G32B32A32Uint:
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case Format.R32G32B32A32Sint:
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case Format.R10G10B10A2Unorm:
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case Format.R10G10B10A2Uint:
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case Format.R11G11B10Float:
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case Format.R9G9B9E5Float:
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case Format.R32Uscaled:
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case Format.R32Sscaled:
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case Format.R32G32Uscaled:
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case Format.R32G32Sscaled:
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case Format.R32G32B32Uscaled:
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case Format.R32G32B32Sscaled:
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case Format.R32G32B32A32Uscaled:
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case Format.R32G32B32A32Sscaled:
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case Format.R10G10B10A2Snorm:
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case Format.R10G10B10A2Sint:
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case Format.R10G10B10A2Uscaled:
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case Format.R10G10B10A2Sscaled:
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return 4;
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case Format.S8Uint:
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return 1;
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case Format.D16Unorm:
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return 2;
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case Format.S8UintD24Unorm:
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case Format.D32Float:
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case Format.D24UnormS8Uint:
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return 4;
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case Format.D32FloatS8Uint:
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return 8;
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case Format.Bc1RgbaUnorm:
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case Format.Bc1RgbaSrgb:
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return 8;
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case Format.Bc2Unorm:
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case Format.Bc3Unorm:
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case Format.Bc2Srgb:
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case Format.Bc3Srgb:
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case Format.Bc4Unorm:
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case Format.Bc4Snorm:
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case Format.Bc5Unorm:
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case Format.Bc5Snorm:
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case Format.Bc7Unorm:
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case Format.Bc7Srgb:
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case Format.Bc6HSfloat:
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case Format.Bc6HUfloat:
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return 16;
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case Format.Etc2RgbUnorm:
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case Format.Etc2RgbPtaUnorm:
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case Format.Etc2RgbSrgb:
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case Format.Etc2RgbPtaSrgb:
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return 8;
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case Format.Etc2RgbaUnorm:
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case Format.Etc2RgbaSrgb:
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return 16;
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case Format.Astc4x4Unorm:
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case Format.Astc5x4Unorm:
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case Format.Astc5x5Unorm:
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case Format.Astc6x5Unorm:
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case Format.Astc6x6Unorm:
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case Format.Astc8x5Unorm:
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case Format.Astc8x6Unorm:
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case Format.Astc8x8Unorm:
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case Format.Astc10x5Unorm:
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case Format.Astc10x6Unorm:
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case Format.Astc10x8Unorm:
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case Format.Astc10x10Unorm:
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case Format.Astc12x10Unorm:
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case Format.Astc12x12Unorm:
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case Format.Astc4x4Srgb:
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case Format.Astc5x4Srgb:
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case Format.Astc5x5Srgb:
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case Format.Astc6x5Srgb:
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case Format.Astc6x6Srgb:
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case Format.Astc8x5Srgb:
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case Format.Astc8x6Srgb:
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case Format.Astc8x8Srgb:
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case Format.Astc10x5Srgb:
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case Format.Astc10x6Srgb:
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case Format.Astc10x8Srgb:
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case Format.Astc10x10Srgb:
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case Format.Astc12x10Srgb:
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case Format.Astc12x12Srgb:
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return 16;
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}
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return 1;
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}
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/// <summary>
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/// Checks if the texture format is valid to use as image format.
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/// </summary>
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/// <param name="format">Texture format</param>
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/// <returns>True if the texture can be used as image, false otherwise</returns>
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public static bool IsImageCompatible(this Format format)
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{
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switch (format)
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{
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case Format.R8Unorm:
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case Format.R8Snorm:
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case Format.R8Uint:
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case Format.R8Sint:
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case Format.R16Float:
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case Format.R16Unorm:
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case Format.R16Snorm:
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case Format.R16Uint:
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case Format.R16Sint:
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case Format.R32Float:
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case Format.R32Uint:
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case Format.R32Sint:
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case Format.R8G8Unorm:
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case Format.R8G8Snorm:
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case Format.R8G8Uint:
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case Format.R8G8Sint:
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case Format.R16G16Float:
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case Format.R16G16Unorm:
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case Format.R16G16Snorm:
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case Format.R16G16Uint:
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case Format.R16G16Sint:
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case Format.R32G32Float:
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case Format.R32G32Uint:
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case Format.R32G32Sint:
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case Format.R8G8B8A8Unorm:
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case Format.R8G8B8A8Snorm:
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case Format.R8G8B8A8Uint:
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case Format.R8G8B8A8Sint:
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case Format.R16G16B16A16Float:
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case Format.R16G16B16A16Unorm:
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case Format.R16G16B16A16Snorm:
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case Format.R16G16B16A16Uint:
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case Format.R16G16B16A16Sint:
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case Format.R32G32B32A32Float:
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case Format.R32G32B32A32Uint:
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case Format.R32G32B32A32Sint:
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case Format.R10G10B10A2Unorm:
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case Format.R10G10B10A2Uint:
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case Format.R11G11B10Float:
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return true;
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}
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return false;
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}
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/// <summary>
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/// Checks if the texture format is valid to use as render target color format.
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/// </summary>
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/// <param name="format">Texture format</param>
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/// <returns>True if the texture can be used as render target, false otherwise</returns>
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public static bool IsRtColorCompatible(this Format format)
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{
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switch (format)
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{
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case Format.R32G32B32A32Float:
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case Format.R32G32B32A32Sint:
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case Format.R32G32B32A32Uint:
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case Format.R16G16B16A16Unorm:
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case Format.R16G16B16A16Snorm:
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case Format.R16G16B16A16Sint:
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case Format.R16G16B16A16Uint:
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case Format.R16G16B16A16Float:
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case Format.R32G32Float:
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case Format.R32G32Sint:
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case Format.R32G32Uint:
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case Format.B8G8R8A8Unorm:
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case Format.B8G8R8A8Srgb:
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case Format.R10G10B10A2Unorm:
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case Format.R10G10B10A2Uint:
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case Format.R8G8B8A8Unorm:
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case Format.R8G8B8A8Srgb:
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case Format.R8G8B8A8Snorm:
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case Format.R8G8B8A8Sint:
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case Format.R8G8B8A8Uint:
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case Format.R16G16Unorm:
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case Format.R16G16Snorm:
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case Format.R16G16Sint:
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case Format.R16G16Uint:
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case Format.R16G16Float:
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case Format.R11G11B10Float:
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case Format.R32Sint:
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case Format.R32Uint:
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case Format.R32Float:
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case Format.B5G6R5Unorm:
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case Format.B5G5R5A1Unorm:
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case Format.R8G8Unorm:
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case Format.R8G8Snorm:
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case Format.R8G8Sint:
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case Format.R8G8Uint:
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case Format.R16Unorm:
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case Format.R16Snorm:
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case Format.R16Sint:
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case Format.R16Uint:
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case Format.R16Float:
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case Format.R8Unorm:
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case Format.R8Snorm:
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case Format.R8Sint:
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case Format.R8Uint:
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return true;
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}
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return false;
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}
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/// <summary>
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/// Checks if the texture format is 16 bit packed.
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/// </summary>
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/// <param name="format">Texture format</param>
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/// <returns>True if the texture format is 16 bit packed, false otherwise</returns>
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public static bool Is16BitPacked(this Format format)
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{
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switch (format)
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{
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case Format.B5G6R5Unorm:
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case Format.B5G5R5A1Unorm:
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case Format.R5G5B5X1Unorm:
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case Format.R5G5B5A1Unorm:
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case Format.R5G6B5Unorm:
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case Format.R4G4B4A4Unorm:
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return true;
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}
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return false;
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}
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/// <summary>
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/// Checks if the texture format is an ASTC format.
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/// </summary>
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/// <param name="format">Texture format</param>
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/// <returns>True if the texture format is an ASTC format, false otherwise</returns>
|
|
public static bool IsAstc(this Format format)
|
|
{
|
|
return format.IsAstcUnorm() || format.IsAstcSrgb();
|
|
}
|
|
|
|
/// <summary>
|
|
/// Checks if the texture format is an ASTC Unorm format.
|
|
/// </summary>
|
|
/// <param name="format">Texture format</param>
|
|
/// <returns>True if the texture format is an ASTC Unorm format, false otherwise</returns>
|
|
public static bool IsAstcUnorm(this Format format)
|
|
{
|
|
switch (format)
|
|
{
|
|
case Format.Astc4x4Unorm:
|
|
case Format.Astc5x4Unorm:
|
|
case Format.Astc5x5Unorm:
|
|
case Format.Astc6x5Unorm:
|
|
case Format.Astc6x6Unorm:
|
|
case Format.Astc8x5Unorm:
|
|
case Format.Astc8x6Unorm:
|
|
case Format.Astc8x8Unorm:
|
|
case Format.Astc10x5Unorm:
|
|
case Format.Astc10x6Unorm:
|
|
case Format.Astc10x8Unorm:
|
|
case Format.Astc10x10Unorm:
|
|
case Format.Astc12x10Unorm:
|
|
case Format.Astc12x12Unorm:
|
|
return true;
|
|
}
|
|
|
|
return false;
|
|
}
|
|
|
|
/// <summary>
|
|
/// Checks if the texture format is an ASTC SRGB format.
|
|
/// </summary>
|
|
/// <param name="format">Texture format</param>
|
|
/// <returns>True if the texture format is an ASTC SRGB format, false otherwise</returns>
|
|
public static bool IsAstcSrgb(this Format format)
|
|
{
|
|
switch (format)
|
|
{
|
|
case Format.Astc4x4Srgb:
|
|
case Format.Astc5x4Srgb:
|
|
case Format.Astc5x5Srgb:
|
|
case Format.Astc6x5Srgb:
|
|
case Format.Astc6x6Srgb:
|
|
case Format.Astc8x5Srgb:
|
|
case Format.Astc8x6Srgb:
|
|
case Format.Astc8x8Srgb:
|
|
case Format.Astc10x5Srgb:
|
|
case Format.Astc10x6Srgb:
|
|
case Format.Astc10x8Srgb:
|
|
case Format.Astc10x10Srgb:
|
|
case Format.Astc12x10Srgb:
|
|
case Format.Astc12x12Srgb:
|
|
return true;
|
|
}
|
|
|
|
return false;
|
|
}
|
|
|
|
/// <summary>
|
|
/// Checks if the texture format is an ETC2 format.
|
|
/// </summary>
|
|
/// <param name="format">Texture format</param>
|
|
/// <returns>True if the texture format is an ETC2 format, false otherwise</returns>
|
|
public static bool IsEtc2(this Format format)
|
|
{
|
|
switch (format)
|
|
{
|
|
case Format.Etc2RgbaSrgb:
|
|
case Format.Etc2RgbaUnorm:
|
|
case Format.Etc2RgbPtaSrgb:
|
|
case Format.Etc2RgbPtaUnorm:
|
|
case Format.Etc2RgbSrgb:
|
|
case Format.Etc2RgbUnorm:
|
|
return true;
|
|
}
|
|
|
|
return false;
|
|
}
|
|
|
|
/// <summary>
|
|
/// Checks if the texture format is a BGR format.
|
|
/// </summary>
|
|
/// <param name="format">Texture format</param>
|
|
/// <returns>True if the texture format is a BGR format, false otherwise</returns>
|
|
public static bool IsBgr(this Format format)
|
|
{
|
|
switch (format)
|
|
{
|
|
case Format.B5G6R5Unorm:
|
|
case Format.B5G5R5A1Unorm:
|
|
case Format.B8G8R8A8Unorm:
|
|
case Format.B8G8R8A8Srgb:
|
|
return true;
|
|
}
|
|
|
|
return false;
|
|
}
|
|
|
|
/// <summary>
|
|
/// Checks if the texture format is a depth, stencil or depth-stencil format.
|
|
/// </summary>
|
|
/// <param name="format">Texture format</param>
|
|
/// <returns>True if the format is a depth, stencil or depth-stencil format, false otherwise</returns>
|
|
public static bool IsDepthOrStencil(this Format format)
|
|
{
|
|
switch (format)
|
|
{
|
|
case Format.D16Unorm:
|
|
case Format.D24UnormS8Uint:
|
|
case Format.S8UintD24Unorm:
|
|
case Format.D32Float:
|
|
case Format.D32FloatS8Uint:
|
|
case Format.S8Uint:
|
|
return true;
|
|
}
|
|
|
|
return false;
|
|
}
|
|
|
|
/// <summary>
|
|
/// Checks if the texture format is an unsigned integer color format.
|
|
/// </summary>
|
|
/// <param name="format">Texture format</param>
|
|
/// <returns>True if the texture format is an unsigned integer color format, false otherwise</returns>
|
|
public static bool IsUint(this Format format)
|
|
{
|
|
switch (format)
|
|
{
|
|
case Format.R8Uint:
|
|
case Format.R16Uint:
|
|
case Format.R32Uint:
|
|
case Format.R8G8Uint:
|
|
case Format.R16G16Uint:
|
|
case Format.R32G32Uint:
|
|
case Format.R8G8B8Uint:
|
|
case Format.R16G16B16Uint:
|
|
case Format.R32G32B32Uint:
|
|
case Format.R8G8B8A8Uint:
|
|
case Format.R16G16B16A16Uint:
|
|
case Format.R32G32B32A32Uint:
|
|
case Format.R10G10B10A2Uint:
|
|
return true;
|
|
}
|
|
|
|
return false;
|
|
}
|
|
|
|
/// <summary>
|
|
/// Checks if the texture format is a signed integer color format.
|
|
/// </summary>
|
|
/// <param name="format">Texture format</param>
|
|
/// <returns>True if the texture format is a signed integer color format, false otherwise</returns>
|
|
public static bool IsSint(this Format format)
|
|
{
|
|
switch (format)
|
|
{
|
|
case Format.R8Sint:
|
|
case Format.R16Sint:
|
|
case Format.R32Sint:
|
|
case Format.R8G8Sint:
|
|
case Format.R16G16Sint:
|
|
case Format.R32G32Sint:
|
|
case Format.R8G8B8Sint:
|
|
case Format.R16G16B16Sint:
|
|
case Format.R32G32B32Sint:
|
|
case Format.R8G8B8A8Sint:
|
|
case Format.R16G16B16A16Sint:
|
|
case Format.R32G32B32A32Sint:
|
|
case Format.R10G10B10A2Sint:
|
|
return true;
|
|
}
|
|
|
|
return false;
|
|
}
|
|
|
|
/// <summary>
|
|
/// Checks if the texture format is an integer color format.
|
|
/// </summary>
|
|
/// <param name="format">Texture format</param>
|
|
/// <returns>True if the texture format is an integer color format, false otherwise</returns>
|
|
public static bool IsInteger(this Format format)
|
|
{
|
|
return format.IsUint() || format.IsSint();
|
|
}
|
|
}
|
|
} |