FROM ros:jazzy # Create the workspace and copy all source directories into it WORKDIR /ros2_ws ARG TARGETARCH COPY src ./src/ COPY patches ./patches/ COPY upstream.jazzy.repos ./upstream.jazzy.repos # Import all upstream repostories RUN vcs import ./src/upstream < ./upstream.jazzy.repos # Apply patches to upstream RUN ./patches/apply_patches.sh # system deps from frozen rosdep manifest — no rosdep at build or startup # NOTE: There should be a check in your CI that this file is up to date. # Something like: # ./scripts/freeze-rosdep.sh && git diff --exit-code rosdep-packages.txt COPY rosdep-packages.txt /tmp/rosdep-packages.txt # The --mount=type=cache option caches the apt packages with buildkit # The id-apt-cache-${TARGETARCH} option allows for separate caches for different architectures # this enables parallel builds for different architectures without cache conflicts RUN --mount=type=cache,target=/var/cache/apt,sharing=locked,id=apt-cache-${TARGETARCH} \ rm -f /etc/apt/apt.conf.d/docker-clean \ && apt-get update \ && xargs -r -a /tmp/rosdep-packages.txt apt-get install -y --no-install-recommends \ && rm -rf /var/lib/apt/lists/* # Install dependencies with rosdep # This will catch anything that wasn't installed via .deb's from the frozen rosdep manifest. RUN apt-get update && \ rosdep update && \ rosdep install --from-paths src --ignore-src -r -y && \ rm -rf /var/lib/apt/lists/* # Build the workspace with symlink install # livox_sdk is now an ament_cmake package built by colcon (no manual /usr/local install needed). RUN . /opt/ros/jazzy/setup.sh && \ colcon build --symlink-install \ --cmake-args -DROS_EDITION=ROS2 -DDISTRO_ROS=jazzy # Source the overlay on container startup RUN echo "source /opt/ros/jazzy/setup.bash" >> /root/.bashrc && \ echo "source /ros2_ws/install/setup.bash" >> /root/.bashrc CMD ["bash"]