forked from Minki/linux
drm/fourcc: Add DRM_FORMAT_D[1248]
As Rn covers single-channel formats with a direct relationship between channel value and brightness, and Cn can be any colors, there are currently no fourcc codes to describe single-channel formats with an inverse relationship between channel value and brightness. Introduce fourcc codes for a single-channel frame buffer format with two, four, sixteen, or 256 brightness ("darkness") levels, where there is an inverse relationship between channel value and brightness. As the number of bits per pixel may be less than eight, some of these formats rely on proper block handling for the calculation of bits per pixel and pitch. The fill order (the order in which multiple pixels are packed in a byte) is the same order as used for grayscale (2, 4, and 16 levels) images in the PNG specification, Version 1.2. This order is also the recommended and default order (FillOrder = 1) for bilevel and grayscale (16 levels) images in the TIFF 6.0 Specification, and is also used for monochrome images in the PBM file format, monochrome Linux frame buffer logos, and BDF and PSF (Linux kernel) font files. Signed-off-by: Geert Uytterhoeven <geert@linux-m68k.org> Reviewed-by: Javier Martinez Canillas <javierm@redhat.com> Signed-off-by: Sam Ravnborg <sam@ravnborg.org> Link: https://patchwork.freedesktop.org/patch/msgid/6119f3abeda9baaa88652843960adc032da276b4.1657294931.git.geert@linux-m68k.org
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@ -154,6 +154,13 @@ const struct drm_format_info *__drm_format_info(u32 format)
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{ .format = DRM_FORMAT_C4, .depth = 4, .num_planes = 1,
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.char_per_block = { 1, }, .block_w = { 2, }, .block_h = { 1, }, .hsub = 1, .vsub = 1, .is_color_indexed = true },
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{ .format = DRM_FORMAT_C8, .depth = 8, .num_planes = 1, .cpp = { 1, 0, 0 }, .hsub = 1, .vsub = 1, .is_color_indexed = true },
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{ .format = DRM_FORMAT_D1, .depth = 1, .num_planes = 1,
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.char_per_block = { 1, }, .block_w = { 8, }, .block_h = { 1, }, .hsub = 1, .vsub = 1 },
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{ .format = DRM_FORMAT_D2, .depth = 2, .num_planes = 1,
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.char_per_block = { 1, }, .block_w = { 4, }, .block_h = { 1, }, .hsub = 1, .vsub = 1 },
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{ .format = DRM_FORMAT_D4, .depth = 4, .num_planes = 1,
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.char_per_block = { 1, }, .block_w = { 2, }, .block_h = { 1, }, .hsub = 1, .vsub = 1 },
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{ .format = DRM_FORMAT_D8, .depth = 8, .num_planes = 1, .cpp = { 1, 0, 0 }, .hsub = 1, .vsub = 1 },
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{ .format = DRM_FORMAT_R1, .depth = 1, .num_planes = 1,
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.char_per_block = { 1, }, .block_w = { 8, }, .block_h = { 1, }, .hsub = 1, .vsub = 1 },
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{ .format = DRM_FORMAT_R2, .depth = 2, .num_planes = 1,
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@ -104,6 +104,18 @@ extern "C" {
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#define DRM_FORMAT_C4 fourcc_code('C', '4', ' ', ' ') /* [7:0] C0:C1 4:4 two pixels/byte */
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#define DRM_FORMAT_C8 fourcc_code('C', '8', ' ', ' ') /* [7:0] C */
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/* 1 bpp Darkness (inverse relationship between channel value and brightness) */
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#define DRM_FORMAT_D1 fourcc_code('D', '1', ' ', ' ') /* [7:0] D0:D1:D2:D3:D4:D5:D6:D7 1:1:1:1:1:1:1:1 eight pixels/byte */
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/* 2 bpp Darkness (inverse relationship between channel value and brightness) */
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#define DRM_FORMAT_D2 fourcc_code('D', '2', ' ', ' ') /* [7:0] D0:D1:D2:D3 2:2:2:2 four pixels/byte */
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/* 4 bpp Darkness (inverse relationship between channel value and brightness) */
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#define DRM_FORMAT_D4 fourcc_code('D', '4', ' ', ' ') /* [7:0] D0:D1 4:4 two pixels/byte */
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/* 8 bpp Darkness (inverse relationship between channel value and brightness) */
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#define DRM_FORMAT_D8 fourcc_code('D', '8', ' ', ' ') /* [7:0] D */
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/* 1 bpp Red (direct relationship between channel value and brightness) */
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#define DRM_FORMAT_R1 fourcc_code('R', '1', ' ', ' ') /* [7:0] R0:R1:R2:R3:R4:R5:R6:R7 1:1:1:1:1:1:1:1 eight pixels/byte */
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