| /OK3568_Linux_fs/kernel/drivers/leds/ |
| H A D | TODO | 29 really different from driver for RGB color LED that can run its own 32 * Figure out what to do with RGB leds 36 RGB, and not even RGB-White or RGB-Yellow variants emerged. 38 Multicolor is not a good fit for RGB LED. It does not really know 46 multicolor for RGB LEDs. 50 RGB LEDs are quite common, and it would be good to be able to turn LED
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| /OK3568_Linux_fs/kernel/drivers/gpu/drm/panel/ |
| H A D | Kconfig | 39 24 bit RGB per pixel. It provides a MIPI DSI interface to 106 QVGA (320x240) RGB, YUV and ITU-T BT.656 panels. 125 24 bit RGB per pixel. It provides a MIPI DSI interface to 136 The panel has a 1200(RGB)×1920 (WUXGA) resolution and uses 147 24 bit RGB per pixel. It provides a MIPI DSI interface to 158 24 bit RGB per pixel. It provides a MIPI DSI interface to 169 24 bit RGB per pixel. It provides a MIPI DSI interface to 173 tristate "Samsung LD9040 RGB/SPI panel" 178 tristate "LG LB035Q024573 RGB panel" 181 Say Y here if you want to enable support for the LB035Q02 RGB panel [all …]
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| /OK3568_Linux_fs/kernel/Documentation/leds/ |
| H A D | leds-lp5562.rst | 26 Value: RGB or W 46 Engine mux has two different mode, RGB and W. 47 RGB is used for loading RGB program data, W is used for W program data. 52 echo "RGB" > /sys/bus/i2c/devices/xxxx/engine_mux # engine mux for RGB
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| H A D | leds-blinkm.rst | 7 They are RGB-LED modules driven by a (AT)tiny microcontroller and 12 The device accepts RGB and HSB color values through separate commands.
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| /OK3568_Linux_fs/kernel/Documentation/devicetree/bindings/display/bridge/ |
| H A D | adi,adv7125.txt | 1 Analog Device ADV7125 RGB to VGA DAC bridge 5 RGB input. 20 - Video port 0 for RGB input
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| /OK3568_Linux_fs/kernel/Documentation/fb/ |
| H A D | arkfb.rst | 21 * 16 bpp truecolor modes (RGB 555 and RGB 565) 22 * 24 bpp truecolor mode (RGB 888) 23 * 32 bpp truecolor mode (RGB 888)
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| H A D | s3fb.rst | 28 * 16 bpp truecolor modes (RGB 555 and RGB 565) 29 * 24 bpp truecolor mode (RGB 888) on (only on Virge VX) 30 * 32 bpp truecolor mode (RGB 888) on (not on Virge VX)
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| H A D | vt8623fb.rst | 20 * 16 bpp truecolor mode (RGB 565) 21 * 32 bpp truecolor mode (RGB 888)
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| H A D | pxafb.rst | 89 support palette and no-palette RGB formats, as well as YUV formats (only 144 4) var->{red, green, blue, transp} if RGB mode is to be used 165 - 0 - RGB
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| /OK3568_Linux_fs/kernel/Documentation/userspace-api/media/v4l/ |
| H A D | pixfmt-meta-vsp1-hgo.rst | 18 The VSP1 HGO is a histogram computation engine that can operate on RGB, YCrCb 24 three channels (RGB data only) or on the Y channel only (YCbCr only). It can 29 to compute three 64-bins histograms. RGB, YCbCr and HSV image formats are 32 channels to compute a single 64-bins histogram. Only the RGB image format is 37 channels to compute a single 256-bins histogram. Only the RGB image format is
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| H A D | colorspaces.rst | 13 actually *means* to have an RGB value of e.g. (255, 0, 0). That is, 23 different wavelengths, so instead of RGB we would be using the 91 Both the CIE XYZ and the RGB colorspace that are derived from the 99 values are denoted RGB, non-linear are denoted as R'G'B'. In general 101 linear RGB. Special care should be taken when dealing with openGL to 102 provide linear RGB colors or to use the built-in openGL support to apply 121 The final step is how the RGB, R'G'B' or Y'CbCr values are quantized. 130 definition. In practice RGB or R'G'B' values are full range, i.e. they 134 Unfortunately, in some cases limited range RGB is also used where the
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| H A D | ext-ctrls-dv.rst | 80 Select the quantization range for RGB output. V4L2_DV_RANGE_AUTO 81 follows the RGB quantization range specified in the standard for the 139 Select the quantization range for RGB input. V4L2_DV_RANGE_AUTO 140 follows the RGB quantization range specified in the standard for the
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| /OK3568_Linux_fs/kernel/Documentation/gpu/ |
| H A D | afbc.rst | 28 (AFBC_FORMAT_MOD_YTR, which should be enabled for RGB buffers for 126 - 10-bit per component RGB, with 2-bit alpha 134 - 8-bit per component RGB, with 8-bit alpha 142 - 8-bit per component RGB 149 - 5/6-bit per component RGB 156 - 5-bit per component RGB, with 1-bit alpha
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| H A D | kms-properties.csv | 20 i915,Generic,"""Broadcast RGB""",ENUM,"{ ""Automatic"", ""Full"", ""Limited 16:235"" }",Connector,"… 40 CDV gma-500,Generic,"""Broadcast RGB""",ENUM,"{ “Full”, “Limited 16:235” }",Connector,TBD 41 ,,"""Broadcast RGB""",ENUM,"{ “off”, “auto”, “on” }",Connector,TBD 68 …NUM,"{ ""disabled"", ""Y component"", ""U component"" , ""V component"", ""RGB"", “R component"", …
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| /OK3568_Linux_fs/u-boot/doc/device-tree-bindings/video/ |
| H A D | exynos_mipi_dsi.txt | 10 samsung,dsim-config-e-interface: interface to be used (RGB interface 17 in Non-burst mode, RGB data area is filled with RGB data and 18 NULL packets, according to input bandwidth of RGB interface.
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| /OK3568_Linux_fs/kernel/arch/arm/boot/dts/ |
| H A D | am335x-boneblack-common.dtsi | 75 /* If you want to get 24 bit RGB and 16 BGR mode instead of 76 * current 16 bit RGB and 24 BGR modes, set the propety 100 /* Convert 24bit BGR to RGB, e.g. cross red and blue wiring */
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| /OK3568_Linux_fs/kernel/Documentation/admin-guide/media/ |
| H A D | vimc.dot | 17 n00000013 [label="RGB/YUV Input\n/dev/video2", shape=box, style=filled, fillcolor=yellow] 21 n0000001a [label="RGB/YUV Capture\n/dev/video3", shape=box, style=filled, fillcolor=yellow]
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| /OK3568_Linux_fs/buildroot/package/gstreamer1/gst1-plugins-good/ |
| H A D | 0005-video-flip-Support-rockchip-RGA-2D-accel.patch | 35 - "RGB, BGR, I420, YV12, IYUV, YUY2, UYVY, YVYU, NV12, NV21," 36 + "RGB, BGR, I420, YV12, IYUV, YUY2, UYVY, YVYU, NV12, NV21, NV12_10LE40, " 44 - "RGB, BGR, I420, YV12, IYUV, YUY2, UYVY, YVYU, NV12, NV21," 45 + "RGB, BGR, I420, YV12, IYUV, YUY2, UYVY, YVYU, NV12, NV21, NV12_10LE40, "
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| /OK3568_Linux_fs/yocto/meta-rockchip/recipes-multimedia/gstreamer/gstreamer1.0-plugins-good_1.22/ |
| H A D | 0005-video-flip-Support-rockchip-RGA-2D-accel.patch | 35 - "RGB, BGR, I420, YV12, IYUV, YUY2, UYVY, YVYU, NV12, NV21," 36 + "RGB, BGR, I420, YV12, IYUV, YUY2, UYVY, YVYU, NV12, NV21, NV12_10LE40, " 44 - "RGB, BGR, I420, YV12, IYUV, YUY2, UYVY, YVYU, NV12, NV21," 45 + "RGB, BGR, I420, YV12, IYUV, YUY2, UYVY, YVYU, NV12, NV21, NV12_10LE40, "
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| /OK3568_Linux_fs/u-boot/drivers/video/bridge/ |
| H A D | Kconfig | 30 bool "Support Analogix ANX6345 RGB->DP bridge" 34 The Analogix ANX6345 is RGB-to-DP converter. It enables an eDP LCD
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| /OK3568_Linux_fs/external/xserver/hw/xwin/ |
| H A D | winmultiwindowicons.c | 312 RGB(((char *) pixels)[2], ((char *) pixels)[1], in NetWMToWinIconThreshold() 314 SetPixelV(andDC, col, row, RGB(0, 0, 0)); /* black mask */ in NetWMToWinIconThreshold() 317 SetPixelV(xorDC, col, row, RGB(0, 0, 0)); in NetWMToWinIconThreshold() 318 SetPixelV(andDC, col, row, RGB(255, 255, 255)); /* white mask */ in NetWMToWinIconThreshold()
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| H A D | windialogs.c | 84 crText = RGB(128 + 64, 0, 0); in winDrawURLWindow() 86 crText = RGB(0, 128 + 64, 0); in winDrawURLWindow() 88 crText = RGB(0, 0, 128 + 64); in winDrawURLWindow()
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| /OK3568_Linux_fs/external/xserver/include/ |
| H A D | rgb.h | 51 } RGB; typedef
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| /OK3568_Linux_fs/external/linux-rga/docs/ |
| H A D | Rockchip_FAQ_RGA_CN.md | 1024 该功能与RGB颜色填充调用一致,通过配置需要填充色彩的RGB值填充色彩,不同的是输出结果可以设置为YUV格式。 1049 …,librga中CSC 转YUV格式时默认为BT.601 limit range,而limit range的Y通道并不是0~255,涉及到CSC转换(RGB转YUV)输出为Y400格式时,需要注意… 1059 **Q2.11**:使用RGA其他功能正常,仅在RGB与YUV格式转换时出现严重色差(偏粉偏绿)是什么原因? 1083 **A2.12**:如果输出结果为RGB格式,可以通过 **imblend()** 接口实现,通常选择src over模式,将src通道的图像叠加在dst通道的图像上;如果输出结果为YUV格式,可以… 1087 …/pat和dst通道只支持RGB2YUV转换,而RGA内部的叠加均需要在RGB格式下进行,所以为了保证RGB图像叠加在YUV图像上,必须src作为叠加的背景图像YUV,src1作为叠加的前景图像R… 1097 **Q2.13**:为什么调用RGA实现YUV格式与RGB格式相互转换输出有亮度或者数值差异? 1101 1). YUV与RGB互转配置相同时,部分像素数值会有轻微差异(通常相差为1),这是由于RGA硬件实现CSC功能时公式的精度问题导致,RGA1和RGA2的CSC公式的小数位精度均为8bit,…
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| /OK3568_Linux_fs/u-boot/drivers/video/ |
| H A D | ipu_disp.c | 443 if (in_fmt == RGB) { in ipu_dp_init() 444 if (out_fmt == RGB) in ipu_dp_init() 449 if (out_fmt == RGB) in ipu_dp_init() 455 if (in_fmt == RGB) { in ipu_dp_init() 456 if (out_fmt == RGB) in ipu_dp_init() 461 if (out_fmt == RGB) in ipu_dp_init()
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