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platform/scripts/setup/machine-setup/lib/packages.sh
T
pastilhasandClaude Opus 5 b075f1f882 macOS is a dev machine, and machine-setup now treats it as one
Officer on a Mac is a dev helper on a laptop somebody sits at. It is never the
homelab or VPS case, so the role is not asked for there — it is `dev`, and every
section that exists to make a machine a good server is skipped.

Seventeen of twenty-six sections skip, listed once in MACOS_SKIP in lib/base.sh
with a reason each, rather than an `if macos` threaded through each section. Most
would simply fail — no systemd, no ufw, no netplan, no useradd, no
/etc/ssh/sshd_config.d — but a few would SUCCEED and be wrong, which is worse:
stopping a laptop from sleeping, or freezing the address of a machine that moves
between networks daily.

Nine run: System update, Core utils, Tailscale, Command-line tools, Git, Docker,
Neovim, JavaScript runtimes, Agent CLIs.

The blocker was root. Linux needs it for nearly everything; Homebrew REFUSES to
run as root and says so, so the whole script under sudo would have failed at the
first brew install having already taken a password. It is now required on Linux
and refused on macOS, which works precisely because the macOS path skips
everything that needed it.

Docker is checked, not installed. Docker Desktop is a GUI app that wants opening,
permissions and a running window — not a shell script's business — and colima and
lima both cost an evening the first time something does not resolve. So the step
reports whether the daemon answers and points at the download otherwise. The
group-vs-rootless choice below it is Linux only: Desktop runs containers in a VM
owned by whoever is logged in, so there is no group to join.

Added the Xcode command line tools as a macOS-only step, before anything that
builds. node-pty ships no prebuilt binary on any platform and always falls
through to node-gyp, so `bun install` cannot finish without a compiler — and it
fails deep in a dependency tree naming neither Xcode nor node-pty. `xcode-select
--install` opens a dialogue and returns immediately, so the step says to come
back rather than pretending to have waited.

Tailscale takes the cask, not install.sh — that script is a Linux package-manager
wrapper. The cask ships a usable CLI; the Mac App Store build is sandboxed and
does not.

Not run on a Mac. There isn't one here, so this is read from the code and from
what each tool documents, not observed.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-08-13 02:29:56 +00:00

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#!/bin/bash
# =============================================================================
# machine-setup — distro packages
# =============================================================================
#
# Definitions only, like lib/base.sh. Sourcing this installs nothing.
#
# ── The rule: install what is missing, never touch what is there ──
#
# `apt-get install <present-package>` is NOT a no-op — it upgrades the package if
# the repository has a newer one. On a machine somebody already uses, that can
# move a version they chose deliberately, and the setup script is the last thing
# that should be doing that behind their back.
#
# So every install here goes through pkg_install, which queries the package
# database first, installs only the subset that is genuinely absent, and prints
# both lists before doing it. A package already present is never named on a
# command line at all.
#
# ── Why per-package-manager lists rather than a translation table ──
#
# The names disagree across distributions (build-essential/base-devel/fd/fd-find)
# and some packages are not a package elsewhere at all: apt-transport-https,
# lsb-release and software-properties-common are apt concepts. A canonical-name
# table with per-manager overrides hides both of those behind indirection. A
# plain `case $PM` says what each system actually gets, in one place, and matches
# the shape scripts/setup-old/setup.sh already used.
[[ -n "${MACHINE_SETUP_PACKAGES_LOADED:-}" ]] && return 0
MACHINE_SETUP_PACKAGES_LOADED=1
# What the last pkg_install/tools_install actually put on the machine, as opposed
# to what it was asked for. Read by the caller to write an honest summary line:
# without it every section reports its whole list as installed, including the
# packages it deliberately left alone.
LAST_INSTALLED=()
LAST_KEPT=()
LAST_SKIPPED=()
# -----------------------------------------------------------------------------
# The sections
# -----------------------------------------------------------------------------
# Core: what this script itself would break without, plus the command-line tools
# that make a machine worth sitting at.
#
# The first six are load-bearing and each is used by a later step — curl fetches
# in nine of them, jq parses the lazygit release API, gnupg dearmors the Docker
# keyring, git clones the Neovim config, unzip opens anything that arrives as an
# archive, and ca-certificates is what makes any of the fetching work. The rest
# are the environment: nothing calls them, they are here because a box you use
# should have them.
#
# Four entries earn a note.
#
# python3 is not a tool anybody here calls — it is node-gyp's build dependency,
# and node-gyp is not optional on Linux. node-pty ships prebuilt binaries for
# darwin and win32 ONLY, so on Linux its install script always falls through to
# `node-gyp rebuild` and compiles from source. Without python3 that fails, and
# the failure surfaces as a broken terminal sidecar rather than as a missing
# package. build-essential below is the other half of the same requirement.
#
# unattended-upgrades installs updates on a timer with nobody watching. apt only:
# it is a Debian and Ubuntu package, dnf's equivalent is dnf-automatic and pacman
# has no equivalent at all, so it is not a name to translate. Installing the
# package is not by itself enough to switch it on — /etc/apt/apt.conf.d/20auto-upgrades
# is what the apt-daily timers read, and on this host no package owns that file.
# The section makes sure it is there.
#
# fail2ban is not a tool, it is a daemon: installing it starts it, and Ubuntu
# ships /etc/fail2ban/jail.d/defaults-debian.conf with `[sshd] enabled = true`.
# Verified on this host — maxretry 5, findtime 600, bantime 600 — so from the
# moment it installs, an address failing to log in five times in ten minutes is
# blocked for ten, including yours. That is the point of it and it is worth
# having by default, but it is why it belongs in this comment rather than being
# thought of as one more binary. An existing install with its own jails is
# untouched, because pkg_install never names a package that is already there.
#
# build-essential is the other: a meta-package (gcc, g++, make, libc6-dev,
# dpkg-dev), so on a machine where a specific gcc was pinned it pulls the
# distribution's default alongside it. It stays in core because anything that
# compiles a native module needs it, but it is the one to move out first if that
# ever bites.
pkgs_core() {
case "$PM" in
apt)
# apt-transport-https, lsb-release and software-properties-common are not
# tools — they are what lets later steps add the Docker repository and the
# fastfetch PPA. They have no counterpart on the other systems.
echo curl ca-certificates gnupg git jq unzip \
apt-transport-https lsb-release software-properties-common \
wget zip build-essential python3 btop htop tree tmux ripgrep fd-find net-tools \
fail2ban unattended-upgrades
;;
pacman)
echo curl ca-certificates gnupg git jq unzip \
wget zip base-devel python btop htop tree tmux ripgrep fd net-tools \
fail2ban
;;
dnf)
echo curl ca-certificates gnupg2 git jq unzip \
wget zip python3 btop htop tree tmux ripgrep fd-find net-tools \
fail2ban
;;
brew)
# curl, unzip and the TLS roots ship with macOS; the compilers come from
# the Xcode command line tools, which is not a formula — see xcode_clt_*.
echo gnupg git jq wget btop htop tree ripgrep fd
;;
esac
}
# -----------------------------------------------------------------------------
# Querying
# -----------------------------------------------------------------------------
# Is this package installed right now?
#
# dpkg-query on the status field rather than `dpkg -s`, which also succeeds for a
# package that was removed but left its config behind — that state would be read
# as "present" and the package would never be reinstalled.
pkg_is_installed() {
case "$PM" in
apt) [[ "$(dpkg-query -W -f='${db:Status-Status}' "$1" 2>/dev/null)" == "installed" ]] ;;
pacman) pacman -Qi "$1" &>/dev/null ;;
dnf) rpm -q "$1" &>/dev/null ;;
brew) brew list --formula "$1" &>/dev/null ;;
*) return 1 ;;
esac
}
# -----------------------------------------------------------------------------
# Acting
# -----------------------------------------------------------------------------
# Refresh the package index.
#
# DEBIAN_FRONTEND stops debconf opening a dialog on a machine with no terminal to
# draw it on, and NEEDRESTART_MODE=a stops needrestart — on by default since
# Ubuntu 22.04 — interrupting to ask which services to restart. Both belong here
# rather than at each call site, because forgetting one turns an unattended run
# into one that is silently waiting for a keypress.
pkg_refresh() {
case "$PM" in
apt) DEBIAN_FRONTEND=noninteractive NEEDRESTART_MODE=a apt-get update -y ;;
pacman) pacman -Sy --noconfirm ;;
dnf) dnf makecache ;;
brew) brew update ;;
esac
}
# What an upgrade would actually move, one package name per line.
#
# Asked before the upgrade runs so the section can name what it is about to
# change rather than asking to be trusted. Needs a refreshed index to be
# accurate, which is why pkg_refresh runs first.
#
# `apt-get upgrade -s` simulates and prints an "Inst <name> …" line per package,
# which is the same calculation the real run does — as opposed to
# `apt list --upgradable`, which also lists packages that are held back and
# would not actually move.
pkg_upgradable() {
case "$PM" in
apt) apt-get upgrade -s 2>/dev/null | awk '/^Inst /{print $2}' ;;
pacman) pacman -Qu 2>/dev/null | awk '{print $1}' ;;
dnf) dnf -q check-update 2>/dev/null | awk 'NF >= 3 && $1 !~ /^(Last|Obsoleting)/ {print $1}' ;;
brew) brew outdated --quiet 2>/dev/null ;;
esac
}
# Upgrade everything already installed. Separate from pkg_install on purpose:
# this one DOES move versions, so it is a deliberate step rather than something
# that happens as a side effect of installing a tool.
pkg_upgrade_all() {
case "$PM" in
apt) DEBIAN_FRONTEND=noninteractive NEEDRESTART_MODE=a apt-get upgrade -y ;;
pacman) pacman -Su --noconfirm ;;
dnf) dnf upgrade -y ;;
brew) brew upgrade ;;
esac
}
# The raw install, with no presence check. Use pkg_install instead.
pkg_install_now() {
case "$PM" in
apt) DEBIAN_FRONTEND=noninteractive NEEDRESTART_MODE=a apt-get install -y "$@" ;;
pacman) pacman -S --noconfirm --needed "$@" ;;
dnf) dnf install -y "$@" ;;
brew) brew install "$@" ;;
esac
}
# Announce a section, then install only what is absent from it.
#
# pkg_install "Core packages" $(pkgs_core)
#
# Prints both lists before touching anything, so the run says what it is about to
# do to this machine and what it is deliberately leaving alone. Returns 0 when
# there was nothing to do.
pkg_install() {
local label="$1"
shift
local pkg
local -a missing=() present=()
LAST_SKIPPED=()
for pkg in "$@"; do
if pkg_is_installed "$pkg"; then present+=("$pkg"); else missing+=("$pkg"); fi
done
LAST_INSTALLED=("${missing[@]}")
LAST_KEPT=("${present[@]}")
announce_plan "$label" present missing || return 0
pkg_install_now "${missing[@]}"
}
# Print what a section is about to do and ask permission for it.
#
# Takes the NAMES of the two arrays rather than their contents, because a list
# passed by value cannot be told apart from an empty one once it has been through
# word splitting.
#
# Returns non-zero when there is nothing to do, or when the answer was no — in
# both cases the caller should skip its action. LAST_INSTALLED is cleared on a
# refusal so the summary does not claim work that never happened.
announce_plan() {
local label="$1"
local -n _present="$2"
local -n _missing="$3"
echo ""
info "${label} — installs what is missing, keeps what you already have"
((${#_present[@]})) && echo " already here: ${_present[*]}"
if ((${#_missing[@]} == 0)); then
echo " to install: nothing, all present"
return 1
fi
echo " to install: ${_missing[*]}"
if ! confirm "Proceed?"; then
warn "skipped by request"
LAST_INSTALLED=()
LAST_SKIPPED=("${_missing[@]}")
return 1
fi
return 0
}
# One summary line describing what a section actually did, from LAST_INSTALLED
# and LAST_KEPT. Call straight after pkg_install or tools_install.
summarise_last() {
local label="$1"
if ((${#LAST_SKIPPED[@]})); then
SUMMARY+=("$label: SKIPPED by request — ${LAST_SKIPPED[*]}")
elif ((${#LAST_INSTALLED[@]} == 0)); then
SUMMARY+=("$label: already present, nothing installed")
elif ((${#LAST_KEPT[@]} == 0)); then
SUMMARY+=("$label installed: ${LAST_INSTALLED[*]}")
else
SUMMARY+=("$label installed: ${LAST_INSTALLED[*]} (${#LAST_KEPT[@]} already present)")
fi
}
# -----------------------------------------------------------------------------
# The Xcode command line tools
# -----------------------------------------------------------------------------
#
# macOS's build-essential, and not installable as a formula. It matters here for
# one specific reason: node-pty ships no prebuilt binary for any platform, so
# `bun install` always falls through to node-gyp and needs a working compiler.
# Without this the platform install fails deep inside a dependency tree with an
# error that names neither Xcode nor node-pty.
#
# `xcode-select --install` opens a GUI dialogue and returns immediately — it does
# not block until the download finishes. So this asks, and then says to come back,
# rather than pretending to have waited.
xcode_clt_installed() { xcode-select -p &>/dev/null; }
xcode_clt_install() {
xcode-select --install 2>/dev/null || true
}