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A code execution vulnerability has been identified in the Robot Operating System (ROS) 'rosbag' tool, affecting ROS distributions Noetic Ninjemys and earlier. The vulnerability arises from the use of the eval() function to process unsanitized, user-supplied input in the 'rosbag filter' command. This flaw enables attackers to craft and execute arbitrary Python code.
A code injection vulnerability has been discovered in the Robot Operating System (ROS) 'rostopic' command-line tool, affecting ROS distributions Noetic Ninjemys and earlier. The vulnerability lies in the 'echo' verb, which allows a user to introspect a ROS topic and accepts a user-provided Python expression via the --filter option. This input is passed directly to the eval() function without sanitization, allowing a local user to craft and execute arbitrary code.
A code injection vulnerability has been discovered in the Robot Operating System (ROS) 'rostopic' command-line tool, affecting ROS distributions Noetic Ninjemys and earlier. The vulnerability lies in the 'hz' verb, which reports the publishing rate of a topic and accepts a user-provided Python expression via the --filter option. This input is passed directly to the eval() function without sanitization, allowing a local user to craft and execute arbitrary code.
A code injection vulnerability has been identified in the Robot Operating System (ROS) 'roslaunch' command-line tool, affecting ROS distributions Noetic Ninjemys and earlier. The vulnerability arises from the use of the eval() method to process user-supplied, unsanitized parameter values within the substitution args mechanism, which roslaunch evaluates before launching a node. This flaw allows attackers to craft and execute arbitrary Python code.
A code execution vulnerability has been discovered in the Robot Operating System (ROS) 'rosparam' tool, affecting ROS distributions Noetic Ninjemys and earlier. The vulnerability stems from the use of the eval() function to process unsanitized, user-supplied parameter values via special converters for angle representations in radians. This flaw allowed attackers to craft and execute arbitrary Python code.
A YAML deserialization vulnerability was found in the Robot Operating System (ROS) 'dynparam', a command-line tool for getting, setting, and deleting parameters of a dynamically configurable node, affecting ROS distributions Noetic and earlier. The issue is caused by the use of the yaml.load() function in the 'set' and 'get' verbs, and allows for the creation of arbitrary Python objects. Through this flaw, a local or remote user can craft and execute arbitrary Python code.
Open Robotics Robotic Operating System 2 (ROS2) and Nav2 humble version was discovered to contain a heap overflow in the nav2amcl process. This vulnerability is triggered via sending a crafted message to the component /initialpose.
Open Robotics Robotic Operating System 2 (ROS2) and Nav2 humble versions were discovered to contain a use-after-free via the nav2amcl process. This vulnerability is triggered via remotely sending a request for change the value of dynamic-parameter/amcl zrand .
Open Robotics Robotic Operating System 2 (ROS2) and Nav2 humble versions were discovered to contain a use-after-free via the nav2amcl process. This vulnerability is triggered via remotely sending a request to change the value of dynamic-parameter/amcl lasermodeltype .
Open Robotics Robotic Operating System 2 (ROS2) and Nav2 humble versions were discovered to contain a use-after-free via the nav2amcl process. This vulnerability is triggered via remotely sending a request to change the value of dynamic-parameter/amcl odomframeid .
Open Robotics Robotic Operating System 2 (ROS2) and Nav2 humble versions were discovered to contain a use-after-free via the nav2amcl process. This vulnerability is triggered via remotely sending a request for change the value of dynamic-parameter /amcl zshort.
Insecure Permissions vulnerability in Open Robotics Robotic Operating System 2 ROS2 navigation2 v.humble allows an attacker to execute arbitrary code via the dynparamhandler component.
Open Robotics Robotic Operating System 2 (ROS2) and Nav2 humble versions were discovered to contain a use-after-free via the nav2amcl process. This vulnerability is triggered via remotely sending a request for change the value of dynamic-parameter/amcl zmax .
Open Robotics Robotic Operating System 2 (ROS2) and Nav2 humble versions were discovered to contain a use-after-free via the nav2amcl process. This vulnerability is triggered via remotely sending a request to change the value of dynamic-parameter /amcl dobeamskip.
Insecure Permissions vulnerability in Open Robotics Robotic Operating System 2 ROS2 navigation2 v.humble allows an attacker to execute arbitrary code via a crafted script to the executorthread.
Insecure Permissions vulnerability in Open Robotics Robotic Operating System 2 ROS2 navigation2 v.humble allows an attacker to execute arbitrary code via a crafted script to the nav2dwbcontroller.
Insecure Permissions vulnerability in Open Robotics Robotic Operating System 2 ROS2 navigation2 v.humble allows an attacker to execute arbitrary code via a crafted script to the nav2amcl.
Insecure Permissions vulnerability in Open Robotics Robotic Operating System 2 ROS2 navigation2 v.humble allows an attacker to execute arbitrary code via a crafted script to the nav2mppicontroller.
Insecure Permissions vulnerability in Open Robotics Robotic Operating System 2 ROS2 navigation2 v.humble allows an attacker to execute arbitrary code via a crafted script to the nav2costmap2d.
Insecure Permissions vulnerability in Open Robotics Robotic Operating System 2 ROS2 navigation2 v.humble allows an attacker to execute arbitrary code via a crafted script to the nav2regulatedpurepursuitcontroller.
Open Robotics Robotic Operating System 2 ROS2 navigation2 v.humble was discovered to contain a NULL pointer dereference via the component computeControl().
Open Robotics Robotic Operating System 2 ROS2 navigation2 v.humble was discovered to contain a NULL pointer dereference via the component smoothPlan().
Open Robotics Robotic Operating System 2 ROS2 navigation2 v.humble was discovered to contain a NULL pointer dereference via the component nav2navfnplanner().
Open Robotics Robotic Operating System 2 ROS2 navigation2 v.humble was discovered to contain a NULL pointer dereference via the component nav2smacplanner().
Open Robotics Robotic Operating System 2 ROS2 navigation2 v.humble was discovered to contain a segmentation violation via the component thetastar::ThetaStar::isUnsafeToPlan().
Insecure Permissions vulnerability in Open Robotics Robotic Operating System 2 (ROS2) navigation2- ROS2-humble and navigation 2-humble allows a local attacker to execute arbitrary code via the error-thrown mechanism in nav2btnavigator.
Buffer Overflow vulnerability in Open Robotics Robotic Operating System 2 (ROS2) navigation2- ROS2-humble and navigation 2-humble allows a local attacker to execute arbitrary code via the nav2amcl process
Inappropriate pointer order of laserscanfilter.reset() and tflistener.reset() (amclnode.cpp) in Open Robotics Robotic Operating Sytstem 2 (ROS2) and Nav2 humble versions leads to a use-after-free.
Inappropriate pointer order of mapsub and mapfree(map) (amclnode.cpp) in Open Robotics Robotic Operating Sytstem 2 (ROS2) and Nav2 humble versions leads to a use-after-free.
Open Robotics Robotic Operating Sytstem 2 (ROS2) and Nav2 humble versions were discovered to contain a buffer overflow via the nav2controller process. This vulnerability is triggerd via sending a crafted .yaml file.