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Recipe name Version Description Layer
image-pipeline 2.2.1-1 image_pipeline fills the gap between getting raw images from a camera driver and higher-level vision processing. meta-ros2-foxy
image-pipeline 7.1.3-1 image_pipeline fills the gap between getting raw images from a camera driver and higher-level vision processing. meta-ros2-rolling
image-pipeline 1.17.0-1 image_pipeline fills the gap between getting raw images from a camera driver and higher-level vision processing. meta-ros1-noetic
image-pipeline 2.2.1-3 image_pipeline fills the gap between getting raw images from a camera driver and higher-level vision processing. meta-ros2-galactic
image-pipeline 3.0.9-1 image_pipeline fills the gap between getting raw images from a camera driver and higher-level vision processing. meta-ros2-humble
image-pipeline 5.0.12-1 image_pipeline fills the gap between getting raw images from a camera driver and higher-level vision processing. meta-ros2-jazzy
image-pipeline 6.0.12-1 image_pipeline fills the gap between getting raw images from a camera driver and higher-level vision processing. meta-ros2-kilted
image-proc 1.15.0-1 Single image rectification and color processing. meta-ros1-melodic
image-proc 2.1.1-1 Single image rectification and color processing. meta-ros2-dashing
image-proc 2.2.1-1 Single image rectification and color processing. meta-ros2-foxy
image-proc 7.1.3-1 Single image rectification and color processing. meta-ros2-rolling
image-proc 1.17.0-1 Single image rectification and color processing. meta-ros1-noetic
image-proc 2.2.1-3 Single image rectification and color processing. meta-ros2-galactic
image-proc 3.0.9-1 Single image rectification and color processing. meta-ros2-humble
image-proc 5.0.12-1 Single image rectification and color processing. meta-ros2-jazzy
image-proc 6.0.12-1 Single image rectification and color processing. meta-ros2-kilted
image-publisher 1.15.0-1 <p> Contains a node publish an image stream from single image file or avi motion file. </p> meta-ros1-melodic
image-publisher 2.1.1-1 Contains a node publish an image stream from single image file or avi motion file. meta-ros2-dashing
image-publisher 2.2.1-1 Contains a node publish an image stream from single image file or avi motion file. meta-ros2-foxy
image-publisher 7.1.3-1 Contains a node publish an image stream from single image file or avi motion file. meta-ros2-rolling
image-publisher 1.17.0-1 <p> Contains a node publish an image stream from single image file or avi motion file. </p> meta-ros1-noetic
image-publisher 2.2.1-3 Contains a node publish an image stream from single image file or avi motion file. meta-ros2-galactic
image-publisher 3.0.9-1 Contains a node publish an image stream from single image file or avi motion file. meta-ros2-humble
image-publisher 5.0.12-1 Contains a node publish an image stream from single image file or avi motion file. meta-ros2-jazzy
image-publisher 6.0.12-1 Contains a node publish an image stream from single image file or avi motion file. meta-ros2-kilted
image-rotate 1.15.0-1 <p> Contains a node that rotates an image stream in a way that minimizes the angle between a vector in some arbitrary frame and a vector in the camera frame. The frame of the outgoing image is published by the node. </p> <p> This node is intended to allow camera images to be visualized in an orientation that is more intuitive than the hardware-constrained orientation of the physical camera. This is particularly helpful, for example, to show images from the PR2's forearm cameras with a consistent up direction, despite the fact that the forearms need to rotate in arbitrary ways during manipulation. </p> <p> It is not recommended to use the output from this node for further computation, as it interpolates the source image, introduces black borders, and does not output a camera_info. </p> meta-ros1-melodic
image-rotate 2.1.1-1 <p> Contains a node that rotates an image stream in a way that minimizes the angle between a vector in some arbitrary frame and a vector in the camera frame. The frame of the outgoing image is published by the node. </p> <p> This node is intended to allow camera images to be visualized in an orientation that is more intuitive than the hardware-constrained orientation of the physical camera. This is particularly helpful, for example, to show images from the PR2's forearm cameras with a consistent up direction, despite the fact that the forearms need to rotate in arbitrary ways during manipulation. </p> <p> It is not recommended to use the output from this node for further computation, as it interpolates the source image, introduces black borders, and does not output a camera_info. </p> meta-ros2-dashing
image-rotate 2.2.1-1 <p> Contains a node that rotates an image stream in a way that minimizes the angle between a vector in some arbitrary frame and a vector in the camera frame. The frame of the outgoing image is published by the node. </p> <p> This node is intended to allow camera images to be visualized in an orientation that is more intuitive than the hardware-constrained orientation of the physical camera. This is particularly helpful, for example, to show images from the PR2's forearm cameras with a consistent up direction, despite the fact that the forearms need to rotate in arbitrary ways during manipulation. </p> <p> It is not recommended to use the output from this node for further computation, as it interpolates the source image, introduces black borders, and does not output a camera_info. </p> meta-ros2-foxy
image-rotate 7.1.3-1 <p> Contains a node that rotates an image stream in a way that minimizes the angle between a vector in some arbitrary frame and a vector in the camera frame. The frame of the outgoing image is published by the node. </p> <p> This node is intended to allow camera images to be visualized in an orientation that is more intuitive than the hardware-constrained orientation of the physical camera. This is particularly helpful, for example, to show images from the PR2's forearm cameras with a consistent up direction, despite the fact that the forearms need to rotate in arbitrary ways during manipulation. </p> <p> It is not recommended to use the output from this node for further computation, as it interpolates the source image, introduces black borders, and does not output a camera_info. </p> meta-ros2-rolling
image-rotate 1.17.0-1 <p> Contains a node that rotates an image stream in a way that minimizes the angle between a vector in some arbitrary frame and a vector in the camera frame. The frame of the outgoing image is published by the node. </p> <p> This node is intended to allow camera images to be visualized in an orientation that is more intuitive than the hardware-constrained orientation of the physical camera. This is particularly helpful, for example, to show images from the PR2's forearm cameras with a consistent up direction, despite the fact that the forearms need to rotate in arbitrary ways during manipulation. </p> <p> It is not recommended to use the output from this node for further computation, as it interpolates the source image, introduces black borders, and does not output a camera_info. </p> meta-ros1-noetic
image-rotate 2.2.1-3 <p> Contains a node that rotates an image stream in a way that minimizes the angle between a vector in some arbitrary frame and a vector in the camera frame. The frame of the outgoing image is published by the node. </p> <p> This node is intended to allow camera images to be visualized in an orientation that is more intuitive than the hardware-constrained orientation of the physical camera. This is particularly helpful, for example, to show images from the PR2's forearm cameras with a consistent up direction, despite the fact that the forearms need to rotate in arbitrary ways during manipulation. </p> <p> It is not recommended to use the output from this node for further computation, as it interpolates the source image, introduces black borders, and does not output a camera_info. </p> meta-ros2-galactic
image-rotate 3.0.9-1 <p> Contains a node that rotates an image stream in a way that minimizes the angle between a vector in some arbitrary frame and a vector in the camera frame. The frame of the outgoing image is published by the node. </p> <p> This node is intended to allow camera images to be visualized in an orientation that is more intuitive than the hardware-constrained orientation of the physical camera. This is particularly helpful, for example, to show images from the PR2's forearm cameras with a consistent up direction, despite the fact that the forearms need to rotate in arbitrary ways during manipulation. </p> <p> It is not recommended to use the output from this node for further computation, as it interpolates the source image, introduces black borders, and does not output a camera_info. </p> meta-ros2-humble
image-rotate 5.0.12-1 <p> Contains a node that rotates an image stream in a way that minimizes the angle between a vector in some arbitrary frame and a vector in the camera frame. The frame of the outgoing image is published by the node. </p> <p> This node is intended to allow camera images to be visualized in an orientation that is more intuitive than the hardware-constrained orientation of the physical camera. This is particularly helpful, for example, to show images from the PR2's forearm cameras with a consistent up direction, despite the fact that the forearms need to rotate in arbitrary ways during manipulation. </p> <p> It is not recommended to use the output from this node for further computation, as it interpolates the source image, introduces black borders, and does not output a camera_info. </p> meta-ros2-jazzy
image-rotate 6.0.12-1 <p> Contains a node that rotates an image stream in a way that minimizes the angle between a vector in some arbitrary frame and a vector in the camera frame. The frame of the outgoing image is published by the node. </p> <p> This node is intended to allow camera images to be visualized in an orientation that is more intuitive than the hardware-constrained orientation of the physical camera. This is particularly helpful, for example, to show images from the PR2's forearm cameras with a consistent up direction, despite the fact that the forearms need to rotate in arbitrary ways during manipulation. </p> <p> It is not recommended to use the output from this node for further computation, as it interpolates the source image, introduces black borders, and does not output a camera_info. </p> meta-ros2-kilted
image-tools 0.7.9-1 Tools to capture and play back images to and from DDS subscriptions and publications. meta-ros2-dashing
image-tools 0.8.4-1 Tools to capture and play back images to and from DDS subscriptions and publications. meta-ros2-eloquent
image-tools 0.9.3-1 Tools to capture and play back images to and from DDS subscriptions and publications. meta-ros2-foxy
image-tools 0.37.8-1 Tools to capture and play back images to and from DDS subscriptions and publications. meta-ros2-rolling
image-tools 0.14.3-1 Tools to capture and play back images to and from DDS subscriptions and publications. meta-ros2-galactic
image-tools 0.20.9-1 Tools to capture and play back images to and from DDS subscriptions and publications. meta-ros2-humble
image-tools 0.33.11-1 Tools to capture and play back images to and from DDS subscriptions and publications. meta-ros2-jazzy
image-tools 0.36.5-1 Tools to capture and play back images to and from DDS subscriptions and publications. meta-ros2-kilted
image-transport 1.11.13 image_transport should always be used to subscribe to and publish images. It provides transparent support for transporting images in low-bandwidth compressed formats. Examples (provided by separate plugin packages) include JPEG/PNG compression and Theora streaming video. meta-ros1-melodic
image-transport 2.1.1-1 image_transport should always be used to subscribe to and publish images. It provides transparent support for transporting images in low-bandwidth compressed formats. Examples (provided by separate plugin packages) include JPEG/PNG compression and Theora streaming video. meta-ros2-dashing
image-transport 2.2.1-1 image_transport should always be used to subscribe to and publish images. It provides transparent support for transporting images in low-bandwidth compressed formats. Examples (provided by separate plugin packages) include JPEG/PNG compression and Theora streaming video. meta-ros2-eloquent
image-transport 2.3.0-1 image_transport should always be used to subscribe to and publish images. It provides transparent support for transporting images in low-bandwidth compressed formats. Examples (provided by separate plugin packages) include JPEG/PNG compression and Theora streaming video. meta-ros2-foxy
image-transport 6.4.7-1 image_transport should always be used to subscribe to and publish images. It provides transparent support for transporting images in low-bandwidth compressed formats. Examples (provided by separate plugin packages) include JPEG/PNG compression and Theora streaming video. meta-ros2-rolling
image-transport 1.12.1-1 image_transport should always be used to subscribe to and publish images. It provides transparent support for transporting images in low-bandwidth compressed formats. Examples (provided by separate plugin packages) include JPEG/PNG compression and Theora streaming video. meta-ros1-noetic
image-transport 2.3.0-3 image_transport should always be used to subscribe to and publish images. It provides transparent support for transporting images in low-bandwidth compressed formats. Examples (provided by separate plugin packages) include JPEG/PNG compression and Theora streaming video. meta-ros2-galactic
image-transport 3.1.13-1 image_transport should always be used to subscribe to and publish images. It provides transparent support for transporting images in low-bandwidth compressed formats. Examples (provided by separate plugin packages) include JPEG/PNG compression and Theora streaming video. meta-ros2-humble