mirror of
https://github.com/89luca89/distrobox.git
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543 lines
18 KiB
Bash
Executable File
543 lines
18 KiB
Bash
Executable File
#!/bin/sh
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# SPDX-License-Identifier: GPL-3.0-only
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#
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# This file is part of the distrobox project:
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# https://github.com/89luca89/distrobox
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#
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# Copyright (C) 2021 distrobox contributors
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#
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# distrobox is free software; you can redistribute it and/or modify it
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# under the terms of the GNU General Public License version 3
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# as published by the Free Software Foundation.
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#
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# distrobox is distributed in the hope that it will be useful, but
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# WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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# General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with distrobox; if not, see <http://www.gnu.org/licenses/>.
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# POSIX
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# Expected env variables:
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# HOME
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# USER
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# Optional env variables:
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# DBX_CONTAINER_MANAGER
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# DBX_CONTAINER_NAME
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# DBX_SKIP_WORKDIR
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# DBX_SUDO_PROGRAM
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trap 'rm -f ${HOME}/.cache/.${container_name}.fifo ${HOME}/.cache/.${container_name}.status' EXIT
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# Despite of running this script via SUDO/DOAS being not supported (the
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# script itself will call the appropriate tool when necessary), we still want
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# to allow people to run it as root, logged in in a shell, and create rootful
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# containers.
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#
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# SUDO_USER is a variable set by SUDO and can be used to check whether the script was called by it. Same thing for DOAS_USER, set by DOAS.
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if [ -n "${SUDO_USER}" ] || [ -n "${DOAS_USER}" ]; then
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printf >&2 "Running %s via SUDO/DOAS is not supported. Instead, please try running:\n" "$(basename "${0}")"
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printf >&2 " %s --root %s\n" "$(basename "${0}")" "$*"
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exit 1
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fi
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# Defaults
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container_command=""
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container_image_default="registry.fedoraproject.org/fedora-toolbox:38"
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container_manager="autodetect"
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container_manager_additional_flags=""
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container_name=""
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container_name_default="my-distrobox"
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non_interactive=0
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# Use cd + dirname + pwd so that we do not have relative paths in mount points
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# We're not using "realpath" here so that symlinks are not resolved this way
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# "realpath" would break situations like Nix or similar symlink based package
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# management.
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distrobox_enter_path="$(cd "$(dirname "$0")" && pwd)/distrobox-enter"
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dryrun=0
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headless=0
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# If the user runs this script as root in a login shell, set rootful=1.
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# There's no need for them to pass the --root flag option in such cases.
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[ "$(id -ru)" -eq 0 ] && rootful=1 || rootful=0
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skip_workdir=0
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verbose=0
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version="1.5.0.2"
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# Source configuration files, this is done in an hierarchy so local files have
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# priority over system defaults
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# leave priority to environment variables.
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config_files="
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/usr/share/distrobox/distrobox.conf
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/usr/share/defaults/distrobox/distrobox.conf
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/usr/etc/distrobox/distrobox.conf
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/usr/local/share/distrobox/distrobox.conf
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/etc/distrobox/distrobox.conf
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${XDG_CONFIG_HOME:-"${HOME}/.config"}/distrobox/distrobox.conf
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${HOME}/.distroboxrc
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"
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for config_file in ${config_files}; do
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# Shellcheck will give error for sourcing a variable file as it cannot follow
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# it. We don't care so let's disable this linting for now.
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# shellcheck disable=SC1090
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[ -e "${config_file}" ] && . "${config_file}"
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done
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# If we're running this script as root -- as in, logged in in the shell as root
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# user, and not via SUDO/DOAS --, we don't need to set distrobox_sudo_program
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# as it's meaningless for this use case.
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if [ "$(id -ru)" -ne 0 ]; then
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# If the DBX_SUDO_PROGRAM/distrobox_sudo_program variable was set by the
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# user, use its value instead of "sudo". But only if not running the script
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# as root (UID 0).
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distrobox_sudo_program=${DBX_SUDO_PROGRAM:-${distrobox_sudo_program:-"sudo"}}
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fi
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# Fixup non_interactive=[true|false], in case we find it in the config file(s)
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[ "${non_interactive}" = "true" ] && non_interactive=1
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[ "${non_interactive}" = "false" ] && non_interactive=0
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[ -n "${DBX_CONTAINER_MANAGER}" ] && container_manager="${DBX_CONTAINER_MANAGER}"
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[ -n "${DBX_CONTAINER_NAME}" ] && container_name="${DBX_CONTAINER_NAME}"
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[ -n "${DBX_SKIP_WORKDIR}" ] && skip_workdir="${DBX_SKIP_WORKDIR}"
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[ -n "${DBX_NON_INTERACTIVE}" ] && non_interactive="${DBX_NON_INTERACTIVE}"
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# Print usage to stdout.
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# Arguments:
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# None
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# Outputs:
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# print usage with examples.
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show_help() {
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cat << EOF
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distrobox version: ${version}
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Usage:
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distrobox-enter --name fedora-38 -- bash -l
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distrobox-enter my-alpine-container -- sh -l
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distrobox-enter --additional-flags "--preserve-fds" --name test -- bash -l
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distrobox-enter --additional-flags "--env MY_VAR=value" --name test -- bash -l
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MY_VAR=value distrobox-enter --additional-flags "--preserve-fds" --name test -- bash -l
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Options:
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--name/-n: name for the distrobox default: my-distrobox
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--/-e: end arguments execute the rest as command to execute at login default: bash -l
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--no-tty/-T: do not instantiate a tty
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--no-workdir/-nw: always start the container from container's home directory
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--additional-flags/-a: additional flags to pass to the container manager command
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--help/-h: show this message
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--root/-r: launch podman/docker with root privileges. Note that if you need root this is the preferred
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way over "sudo distrobox" (note: if using a program other than 'sudo' for root privileges is necessary,
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specify it through the DBX_SUDO_PROGRAM env variable, or 'distrobox_sudo_program' config variable)
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--dry-run/-d: only print the container manager command generated
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--verbose/-v: show more verbosity
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--version/-V: show version
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EOF
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}
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# Parse arguments
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while :; do
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case $1 in
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-h | --help)
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# Call a "show_help" function to display a synopsis, then exit.
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show_help
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exit 0
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;;
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-v | --verbose)
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shift
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verbose=1
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;;
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-T | -H | --no-tty)
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shift
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headless=1
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;;
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-r | --root)
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shift
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rootful=1
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;;
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-V | --version)
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printf "distrobox: %s\n" "${version}"
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exit 0
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;;
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-d | --dry-run)
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shift
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dryrun=1
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;;
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-nw | --no-workdir)
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shift
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skip_workdir=1
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;;
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-n | --name)
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if [ -n "$2" ]; then
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container_name="$2"
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shift
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shift
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fi
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;;
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-a | --additional-flags)
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if [ -n "$2" ]; then
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container_manager_additional_flags="${container_manager_additional_flags} ${2}"
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shift
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shift
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fi
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;;
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-Y | --yes)
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non_interactive=1
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shift
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;;
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-e | --exec | --)
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shift
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# container_command=$*
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container_command="$1"
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shift
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for arg in "$@"; do
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arg="$(echo "${arg}x" | sed 's|'\''|'\'\\\\\'\''|g')"
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arg="${arg%x}"
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container_command="${container_command} '${arg}'"
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done
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break
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;;
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-*) # Invalid options.
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printf >&2 "ERROR: Invalid flag '%s'\n\n" "$1"
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show_help
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exit 1
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;;
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*) # Default case: If no more options then break out of the loop.
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# If we have a flagless option and container_name is not specified
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# then let's accept argument as container_name
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if [ -n "$1" ]; then
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container_name="$1"
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shift
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else
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break
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fi
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;;
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esac
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done
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set -o errexit
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set -o nounset
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# set verbosity
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if [ "${verbose}" -ne 0 ]; then
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set -o xtrace
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fi
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if [ -z "${container_name}" ]; then
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container_name="${container_name_default}"
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fi
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# We depend on a container manager let's be sure we have it
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# First we use podman, else docker
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case "${container_manager}" in
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autodetect)
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if command -v podman > /dev/null; then
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container_manager="podman"
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elif command -v docker > /dev/null; then
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container_manager="docker"
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fi
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;;
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podman)
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container_manager="podman"
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;;
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docker)
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container_manager="docker"
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;;
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*)
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printf >&2 "Invalid input %s.\n" "${container_manager}"
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printf >&2 "The available choices are: 'autodetect', 'podman', 'docker'\n"
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;;
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esac
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# Be sure we have a container manager to work with.
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if ! command -v "${container_manager}" > /dev/null && [ "${dryrun}" -eq 0 ]; then
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# Error: we need at least one between docker or podman.
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printf >&2 "Missing dependency: we need a container manager.\n"
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printf >&2 "Please install one of podman or docker.\n"
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printf >&2 "You can follow the documentation on:\n"
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printf >&2 "\tman distrobox-compatibility\n"
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printf >&2 "or:\n"
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printf >&2 "\thttps://github.com/89luca89/distrobox/blob/main/docs/compatibility.md\n"
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exit 127
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fi
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# add verbose if -v is specified
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if [ "${verbose}" -ne 0 ]; then
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container_manager="${container_manager} --log-level debug"
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fi
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# prepend sudo (or the specified sudo program) if we want podman or docker to be rootful
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if [ "${rootful}" -ne 0 ]; then
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container_manager="${distrobox_sudo_program-} ${container_manager}"
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fi
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# Generate Podman or Docker command to execute.
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# Arguments:
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# None
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# Outputs:
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# prints the podman or docker command to enter the distrobox container
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generate_command() {
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result_command="${container_manager} exec"
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result_command="${result_command}
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--interactive"
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result_command="${result_command}
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--detach-keys=\"\""
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result_command="${result_command}
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--user=\"${USER}\""
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# For some usage, like use in service, or launched by non-terminal
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# eg. from desktop files, TTY can fail to instantiate, and fail to enter
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# the container.
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# To work around this, --headless let's you skip the --tty flag and make it
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# work in tty-less situations.
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# Disable tty also if we're NOT in a tty (test -t 0).
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if [ "${headless}" -eq 0 ] && [ -t 0 ]; then
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result_command="${result_command}
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--tty"
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fi
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# Entering container using our user and workdir.
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# Start container from working directory. Else default to home. Else do /.
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# Since we are entering from host, drop at workdir through '/run/host'
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# which represents host's root inside container. Any directory on host
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# even if not explicitly mounted is bound to exist under /run/host.
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# Since user $HOME is very likely present in container, enter there directly
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# to avoid confusing the user about shifted paths.
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# pass distrobox-enter path, it will be used in the distrobox-export tool.
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if [ "${skip_workdir}" -eq 0 ]; then
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workdir="$(echo "${PWD:-${container_home:-"/"}}" | sed -e 's/"/\\\"/g')"
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if [ -n "${workdir##*"${container_home}"*}" ]; then
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workdir="/run/host${workdir}"
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fi
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else
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# Skipping workdir we just enter $HOME of the container.
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workdir="${container_home}"
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fi
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result_command="${result_command}
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--workdir=\"${workdir}\""
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result_command="${result_command}
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--env \"CONTAINER_ID=${container_name}\""
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result_command="${result_command}
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--env \"DISTROBOX_ENTER_PATH=${distrobox_enter_path}\""
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# Loop through all the environment vars
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# and export them to the container.
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set +o xtrace
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# disable logging for this snippet, or it will be too talkative.
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for i in $(printenv | grep '=' | grep -Ev ' |"|`|\$' |
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grep -Ev '^(HOST|HOSTNAME|HOME|LANG|LC_CTYPE|PATH|SHELL|XDG_.*_DIRS|^_)'); do
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# We filter the environment so that we do not have strange variables,
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# multiline or containing spaces.
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# We also NEED to ignore the HOME variable, as this is set at create time
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# and needs to stay that way to use custom home dirs.
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result_command="${result_command}
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--env \"${i}\""
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done
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# Start with the $PATH set in the container's config
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container_paths="${container_path:-""}"
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# Ensure the standard FHS program paths are in PATH environment
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standard_paths="/usr/local/sbin /usr/local/bin /usr/sbin /usr/bin /sbin /bin"
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# add to the PATH after the existing paths, and only if not already present
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for standard_path in ${standard_paths}; do
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if [ -n "${container_paths##*:"${standard_path}"*}" ]; then
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container_paths="${container_paths}:${standard_path}"
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fi
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done
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# Ensure the $PATH entries from the host are appended as well
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ORIG_IFS="${IFS}"
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IFS=:
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for standard_path in ${PATH}; do
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if [ -n "${container_paths##*:"${standard_path}"*}" ]; then
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container_paths="${container_paths}:${standard_path}"
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fi
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done
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IFS="${ORIG_IFS}"
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result_command="${result_command}
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--env \"PATH=${container_paths}\""
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# Ensure the standard FHS program paths are in XDG_DATA_DIRS environment
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standard_paths="/usr/local/share /usr/share"
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container_paths="${XDG_DATA_DIRS:=}"
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# add to the XDG_DATA_DIRS only after the host's paths, and only if not already present.
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for standard_path in ${standard_paths}; do
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if [ -n "${container_paths##*:"${standard_path}"*}" ]; then
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container_paths="${container_paths}:${standard_path}"
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fi
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done
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result_command="${result_command}
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--env \"XDG_DATA_DIRS=${container_paths}\""
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# Ensure the standard FHS program paths are in XDG_CONFIG_DIRS environment
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standard_paths="/etc/xdg"
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container_paths="${XDG_CONFIG_DIRS:=}"
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# add to the XDG_CONFIG_DIRS only after the host's paths, and only if not already present.
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for standard_path in ${standard_paths}; do
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if [ -n "${container_paths##*:"${standard_path}"*}" ]; then
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container_paths="${container_paths}:${standard_path}"
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fi
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done
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result_command="${result_command}
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--env \"XDG_CONFIG_DIRS=${container_paths}\""
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# re-enable logging if it was enabled previously.
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if [ "${verbose}" -ne 0 ]; then
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set -o xtrace
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fi
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# Add additional flags
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if [ -n "${container_manager_additional_flags}" ]; then
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result_command="${result_command}
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${container_manager_additional_flags}"
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fi
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# Run selected container with specified command.
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result_command="${result_command}
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${container_name}"
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if [ -n "${container_command}" ]; then
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result_command="${result_command}
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${container_command}"
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else
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# if no command was specified, let's execute a command that will find
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# and run the default shell for the user
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result_command="${result_command}
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sh -c \"\\\$(getent passwd ${USER} | cut -f 7 -d :) -l"\"
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fi
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# Return generated command.
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printf "%s" "${result_command}"
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}
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container_home="${HOME}"
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container_path="${PATH}"
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# dry run mode, just generate the command and print it. No execution.
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if [ "${dryrun}" -ne 0 ]; then
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cmd="$(generate_command)"
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cmd="$(echo "${cmd}" | sed 's/\t//g')"
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printf "%s\n" "${cmd}"
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exit 0
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fi
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# Now inspect the container we're working with.
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container_status="unknown"
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eval "$(${container_manager} inspect --type container "${container_name}" --format \
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'container_status={{.State.Status}};
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{{range .Config.Env}}{{if slice . 0 5 | eq "HOME="}}container_home={{slice . 5 | printf "%q"}};{{end}}{{end}}
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{{range .Config.Env}}{{if slice . 0 5 | eq "PATH="}}container_path={{slice . 5 | printf "%q"}}{{end}}{{end}}')"
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# Check if the container is even there
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if [ "${container_status}" = "unknown" ]; then
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# If not, prompt to create it first
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printf >&2 "Cannot find container %s\n" "${container_name}"
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# If we're not-interactive, just don't ask questions
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if [ "${non_interactive}" -eq 1 ]; then
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response="yes"
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else
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printf >&2 "Create it now, out of image %s? [Y/n]: " "${container_image_default}"
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read -r response
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response="${response:-"Y"}"
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fi
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# Accept only y,Y,Yes,yes,n,N,No,no.
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case "${response}" in
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y | Y | Yes | yes | YES)
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# Ok, let's create the container with just 'distrobox create $container_name
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create_command="$(dirname "${0}")/distrobox-create"
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if [ "${rootful}" -ne 0 ]; then
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create_command="${create_command} --root"
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fi
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create_command="${create_command} -i ${container_image_default} -n ${container_name}"
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printf >&2 "Creating the container with command:\n"
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printf >&2 " %s\n" "${create_command}"
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if [ "${dryrun}" -ne 1 ]; then
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eval "${create_command}"
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fi
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;;
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n | N | No | no | NO)
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printf >&2 "Ok. For creating it, run this command:\n"
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printf >&2 "\tdistrobox create <name-of-container> --image <remote>/<docker>:<tag>\n"
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exit 0
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;;
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*) # Default case: If no more options then break out of the loop.
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printf >&2 "Invalid input.\n"
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printf >&2 "The available choices are: y,Y,Yes,yes,YES or n,N,No,no,NO.\nExiting.\n"
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exit 1
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;;
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esac
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fi
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# If the container is not already running, we need to start if first
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if [ "${container_status}" != "running" ]; then
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# If container is not running, start it first
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# Here, we save the timestamp before launching the start command, so we can
|
|
# be sure we're working with this very same session of logs later.
|
|
|
|
printf >&2 "Container %s is not running.\n" "${container_name}"
|
|
printf >&2 "Starting container %s\n" "${container_name}"
|
|
printf >&2 "run this command to follow along:\n\n"
|
|
printf >&2 " %s logs -f %s\n\n" "${container_manager}" "${container_name}"
|
|
|
|
log_timestamp="$(date +%FT%T.%N%:z)"
|
|
${container_manager} start "${container_name}" > /dev/null
|
|
# Check if the container is going in error status earlier than the
|
|
# entrypoint
|
|
if [ "$(${container_manager} inspect \
|
|
--type container "${container_name}" \
|
|
--format "{{.State.Status}}")" != "running" ]; then
|
|
|
|
printf >&2 "\033[31m Error: could not start entrypoint.\n\033[0m"
|
|
container_manager_log="$(${container_manager} logs \
|
|
--since "${log_timestamp}" "${container_name}")"
|
|
printf >&2 "%s\n" "${container_manager_log}"
|
|
exit 1
|
|
fi
|
|
|
|
printf >&2 "%-40s\t" " Starting container..."
|
|
mkdir -p "${HOME}/.cache/"
|
|
touch "${HOME}/.cache/.${container_name}.fifo"
|
|
touch "${HOME}/.cache/.${container_name}.status"
|
|
while true; do
|
|
# save starting loop timestamp in temp variable, we'll use it
|
|
# after to let logs command minimize possible holes
|
|
log_timestamp_new="$(date +%FT%T.%N%:z)"
|
|
${container_manager} logs \
|
|
--since "${log_timestamp}" "${container_name}" 2> /dev/null > "${HOME}/.cache/.${container_name}.fifo"
|
|
# read logs from log_timestamp to now, line by line
|
|
while IFS= read -r line; do
|
|
case "${line}" in
|
|
*"Error:"*)
|
|
printf >&2 "\033[31m %s\n\033[0m" "${line}"
|
|
exit 1
|
|
;;
|
|
*"Warning:"*)
|
|
printf >&2 "\n\033[33m %s\033[0m" "${line}"
|
|
;;
|
|
*"distrobox:"*)
|
|
current_line="$(echo "${line}" | cut -d':' -f2-)"
|
|
# Save current line in the status, to avoid printing the same line multiple times
|
|
if ! grep -q "${current_line}" "${HOME}/.cache/.${container_name}.status"; then
|
|
printf >&2 "\033[32m [ OK ]\n\033[0m%-40s\t" "${current_line}"
|
|
printf "%s\n" "${current_line}" > "${HOME}/.cache/.${container_name}.status"
|
|
fi
|
|
;;
|
|
*"container_setup_done"*)
|
|
printf >&2 "\033[32m [ OK ]\n\033[0m"
|
|
break 2
|
|
;;
|
|
*) ;;
|
|
esac
|
|
done < "${HOME}/.cache/.${container_name}.fifo"
|
|
|
|
# Register new timestamp where to start logs from.
|
|
log_timestamp="${log_timestamp_new}"
|
|
done
|
|
# cleanup fifo
|
|
rm -f "${HOME}/.cache/.${container_name}.fifo"
|
|
rm -f "${HOME}/.cache/.${container_name}.status"
|
|
printf >&2 "\nContainer Setup Complete!\n"
|
|
fi
|
|
|
|
# Generate the exec command and run it
|
|
cmd="$(generate_command)"
|
|
# shellcheck disable=SC2086
|
|
eval ${cmd}
|