#!/bin/bash

# omarchy:summary=Install, launch, stop, inspect, or remove the Windows VM
# omarchy:args=<install|remove|launch|stop|status> [options]
# omarchy:requires-sudo=true

# The Windows VM runs a privileged container (KVM, /dev/net/tun, NET_ADMIN), so
# it needs the root-owned Docker daemon. By default the user is NOT in the docker
# group (that group is root-equivalent), so Docker access is gated behind a
# single polkit prompt. If the user opted into sudoless Docker
# (omarchy-setup-security-sudoless-docker), the socket is reachable directly and
# no prompt appears.
#
# The compose file lives in a root-owned directory and is only ever written by
# the elevated, input-validated write_compose action below. That is the whole
# point: a root-invoked `docker compose up` must never consume a file that a
# process running as the user could have rewritten to bind-mount / into the
# container. Earlier versions kept it under ~/.config/windows, which a rogue
# process could edit and then trigger a privileged bring-up of — a file-swap
# path to root. Do not move it back under $HOME.

RUNTIME_DIR="${OMARCHY_WINDOWS_DIR:-/var/lib/omarchy/windows}"
COMPOSE_FILE="$RUNTIME_DIR/docker-compose.yml"
LEGACY_COMPOSE_FILE="$HOME/.config/windows/docker-compose.yml"
# The guest password lives in the root-owned compose (readable by root and the
# docker group), but RDP needs it as the user. Keep a private copy here, 0600 in
# the user's own config, so the plaintext password is never world-readable.
CREDENTIALS_FILE="$HOME/.config/windows/credentials"
IMAGE="dockurr/windows"
CONTAINER="omarchy-windows"
VM_LOCK_DIR=/run/lock/omarchy-windows-vm
# Removal is the only path that recursively proves there are no bind aliases.
# Bound every metadata walk so a large or hostile caller tree fails closed
# instead of hanging a privileged action indefinitely.
TREE_SCAN_TIMEOUT_SECONDS=5
TREE_SCAN_KILL_AFTER_SECONDS=1
TREE_SCAN_TIMEOUT=/usr/bin/timeout
TREE_SCAN_FIND=/usr/bin/find

# The privileged process must not resolve mount, stat, Docker, or any other
# helper from a caller-controlled PATH, and validation must not change with an
# inherited locale. pkexec normally sanitizes both; pin them here as defense in
# depth for every direct __priv entry as well.
if ((EUID == 0)); then
  export PATH=/usr/bin:/usr/sbin:/bin:/sbin
  export LC_ALL=C.UTF-8
fi

# --- privilege helpers -------------------------------------------------------

# True when this session can reach the Docker socket directly (sudoless Docker
# on and in effect). Asking about the socket rather than the configured groups
# keeps the prompt in place through the window where sudoless Docker is enabled
# but the reboot that grants the group has not happened yet.
docker_needs_sudo() { omarchy-sudo-docker; }

# The command to hand pkexec for the privileged re-exec. pkexec runs whatever
# executable it is given (after authorization) and only shows the path in the
# prompt — it does NOT require the target to be root-owned. So resolve to the
# packaged command and refuse to elevate anything a non-root user could have
# written: a PATH-injected shim, or a user-owned dev checkout. Without this, a
# prompt the user grants for the trusted helper could run an attacker's binary
# as root. Fails closed (empty output) when no trustworthy target is found.
priv_target() {
  local candidate=/usr/bin/omarchy-windows-vm canonical probe owner mode
  [[ -f $candidate && ! -L $candidate && -x $candidate ]] || return 1
  canonical=$(realpath -e -- "$candidate" 2>/dev/null) || return 1
  [[ $canonical == "$candidate" ]] || return 1
  probe=$candidate
  while :; do
    owner=$(stat -Lc '%u' "$probe" 2>/dev/null) || return 1
    mode=$(stat -Lc '%a' "$probe" 2>/dev/null) || return 1
    [[ $owner == 0 ]] && ! ((8#$mode & 022)) || return 1
    [[ $probe == / ]] && break
    probe=$(dirname -- "$probe")
  done
  printf '%s\n' "$candidate"
}

# Run a privileged VM action. write_compose always elevates (the compose is
# root-owned); the daemon operations run directly when sudoless Docker is on and
# otherwise behind a polkit prompt. The stock org.freedesktop.policykit.exec
# policy is auth_admin (not auth_admin_keep), so each elevated action prompts:
# a launch asks once to start and, unless authorization is still cached by the
# agent, again to stop.
priv() {
  local action="$1"
  shift
  if [[ $action != write_compose && $action != remove ]] && ! docker_needs_sudo; then
    # Bring-up normally runs directly for a docker-group user, but recreating
    # the protected bind anchors after reboot (or migrating an old compose)
    # still needs one privileged invocation.
    if [[ -d $VM_LOCK_DIR && ! -L $VM_LOCK_DIR && -r $VM_LOCK_DIR && -x $VM_LOCK_DIR ]] && {
      [[ $action != up && $action != up_wait ]] || {
        ! compose_needs_security_migration && mounts_ready >/dev/null 2>&1
      }
    }; then
      with_vm_lock "__priv_$action" "$@"
      return
    fi
  fi
  local target
  target=$(priv_target) || {
    echo "omarchy-windows-vm: refusing to run a non-root-owned command as root" >&2
    return 1
  }
  pkexec "$target" __priv "$action" "$@"
}

dc() { docker-compose -f "$COMPOSE_FILE" "$@"; }

with_vm_lock() {
  local fd rc=0
  if ((EUID == 0)); then
    assert_boundary_dir /run 0 && assert_boundary_dir /run/lock 0 || return 1
    if getent group docker >/dev/null 2>&1; then
      install -d -o root -g docker -m 0750 -- "$VM_LOCK_DIR" || return 1
    else
      install -d -o root -g root -m 0700 -- "$VM_LOCK_DIR" || return 1
    fi
  fi
  assert_boundary_dir "$VM_LOCK_DIR" 0 || return 1
  # Flock the directory inode itself. Concurrent first callers may both run
  # install -d, but mkdir is atomic and they necessarily open the same stable
  # inode below the root-owned /run/lock parent.
  exec {fd}<"$VM_LOCK_DIR/." || return 1
  flock -x "$fd" || { exec {fd}<&-; return 1; }
  "$@" || rc=$?
  flock -u "$fd" || rc=1
  exec {fd}<&-
  return "$rc"
}

# --- validation (shared by the user-side prompts and the root-side writer) ----

valid_ram() { [[ $1 =~ ^[0-9]{1,3}G$ ]]; }
valid_cores() { [[ $1 =~ ^[0-9]{1,2}$ ]] && ((10#$1 >= 1)); }
valid_disk() { [[ $1 =~ ^[0-9]{1,4}G$ ]]; }
valid_username() { [[ $1 =~ ^[A-Za-z0-9_-]{1,20}$ ]]; }
valid_tz() { [[ $1 =~ ^[A-Za-z0-9_/.+-]{1,64}$ ]]; }
valid_password() { [[ $1 =~ ^[[:print:]]{1,64}$ ]]; }

# The only privileged sub-actions __priv may dispatch. A bash command name
# containing a slash is executed as a path, so validating the action here — not
# just interpolating it into "__priv_${action}" — is what stops an action like
# ../tmp/evil from running an arbitrary file as root.
valid_priv_action() {
  case "$1" in
  write_compose | up | up_wait | down | status | remove) return 0 ;;
  *) return 1 ;;
  esac
}

# --- privileged actions (run as root via pkexec, or directly when sudoless) ---

# Resolve the account that authorized pkexec. Never trust HOME or a caller-
# supplied mount path in the privileged process: pkexec can reset HOME, and the
# old path arguments were the source of an arbitrary host bind-mount primitive.
resolve_caller() {
  local entry canonical parent owner mode

  if ((EUID == 0)); then
    [[ ${PKEXEC_UID:-} =~ ^[0-9]{1,10}$ ]] && ((10#$PKEXEC_UID > 0)) || {
      echo "omarchy-windows-vm: cannot identify the user who authorized this action" >&2
      return 1
    }
    CALLER_UID=$((10#$PKEXEC_UID))
  else
    CALLER_UID=$(id -u)
  fi

  entry=$(getent passwd "$CALLER_UID") || {
    echo "omarchy-windows-vm: no account exists for uid $CALLER_UID" >&2
    return 1
  }
  IFS=: read -r _ _ _ CALLER_GID _ CALLER_HOME _ <<<"$entry"
  [[ $CALLER_GID =~ ^[0-9]+$ && $CALLER_HOME == /* && -d $CALLER_HOME ]] || {
    echo "omarchy-windows-vm: invalid home directory for uid $CALLER_UID" >&2
    return 1
  }

  # A direct, non-root development invocation with a non-standard runtime has
  # no privilege boundary and may use its current HOME (which also keeps these
  # functions testable). Production always uses the account database value.
  if ((EUID != 0)) && [[ $RUNTIME_DIR != /var/lib/omarchy/windows ]]; then
    CALLER_HOME=${HOME:-$CALLER_HOME}
  fi
  canonical=$(realpath -e -- "$CALLER_HOME" 2>/dev/null) || return 1
  [[ $canonical == "$CALLER_HOME" ]] || {
    echo "omarchy-windows-vm: refusing a home directory reached through a symlink" >&2
    return 1
  }

  if ((EUID == 0)); then
    owner=$(stat -Lc '%u' "$CALLER_HOME") || return 1
    [[ $owner == "$CALLER_UID" ]] || {
      echo "omarchy-windows-vm: caller does not own $CALLER_HOME" >&2
      return 1
    }
    # The user must not be able to rename or replace their home while root is
    # opening and pinning the familiar data entries below it.
    parent=$(dirname -- "$CALLER_HOME")
    while :; do
      owner=$(stat -Lc '%u' "$parent") || return 1
      mode=$(stat -Lc '%a' "$parent") || return 1
      [[ $owner == 0 ]] && ! ((8#$mode & 022)) || {
        echo "omarchy-windows-vm: unsafe writable parent in home path: $parent" >&2
        return 1
      }
      [[ $parent == / ]] && break
      parent=$(dirname -- "$parent")
    done
  fi

  # Docker only ever sees fixed paths below the root-owned runtime tree. The
  # user's real data stays wherever ~/.windows and ~/Windows resolve (including
  # separately mounted homes and legitimate symlinks); those sources are pinned
  # into these anchors with bind mounts before Docker is allowed to start.
  MOUNT_ROOT="$RUNTIME_DIR/mounts"
  USERS_DIR="$MOUNT_ROOT/users"
  CALLER_DATA_ROOT="$USERS_DIR/$CALLER_UID"
  EXPECTED_STORAGE="$CALLER_DATA_ROOT/storage"
  EXPECTED_SHARED="$CALLER_DATA_ROOT/shared"
  LEGACY_STORAGE="$CALLER_HOME/.windows"
  LEGACY_SHARED="$CALLER_HOME/Windows"
  # The first protected-anchor implementation used a root-owned sibling of
  # home. Recognize that exact derived pair during upgrade, but never accept a
  # path read from user input.
  OLD_MOUNT_ROOT="$(dirname -- "$CALLER_HOME")/.omarchy-windows"
  OLD_EXPECTED_STORAGE="$OLD_MOUNT_ROOT/users/$CALLER_UID/storage"
  OLD_EXPECTED_SHARED="$OLD_MOUNT_ROOT/users/$CALLER_UID/shared"
}

boundary_owner() {
  # Production boundaries remain root-owned even when a docker-group user runs
  # the read-only bring-up checks directly. A non-standard runtime is supported
  # only for unprivileged tests/development and is owned by that caller.
  if ((EUID == 0)) || [[ $RUNTIME_DIR == /var/lib/omarchy/windows ]]; then
    printf '0'
  else
    printf '%s' "$CALLER_UID"
  fi
}

assert_boundary_dir() {
  local path="$1" expected_owner="$2" owner mode canonical
  [[ -d $path && ! -L $path ]] || return 1
  canonical=$(realpath -e -- "$path" 2>/dev/null) || return 1
  [[ $canonical == "$path" ]] || return 1
  owner=$(stat -Lc '%u' "$path") || return 1
  mode=$(stat -Lc '%a' "$path") || return 1
  [[ $owner == "$expected_owner" ]] && ! ((8#$mode & 022))
}

prepare_boundary_component() {
  local path="$1" parent="$2" owner="$3" mode="$4"
  assert_boundary_dir "$parent" "$owner" || return 1
  if [[ -e $path || -L $path ]]; then
    assert_boundary_dir "$path" "$owner" || return 1
  else
    if ((EUID == 0)); then
      install -d -o root -g root -m "$mode" -- "$path" || return 1
    else
      install -d -m "$mode" -- "$path" || return 1
    fi
  fi
  chmod "$mode" -- "$path" || return 1
  if ((EUID == 0)); then chown root:root -- "$path" || return 1; fi
  assert_boundary_dir "$path" "$owner"
}

prepare_runtime_tree() {
  local owner probe runtime_parent
  owner=$(boundary_owner)
  if ((EUID == 0)); then
    [[ $RUNTIME_DIR == /var/lib/omarchy/windows ]] || {
      echo "omarchy-windows-vm: refusing a non-standard privileged runtime path" >&2
      return 1
    }
    # Check the nearest existing ancestor before mkdir can follow anything.
    # Every new component is then created by root and checked again below.
    probe=$RUNTIME_DIR
    while [[ ! -e $probe && ! -L $probe ]]; do probe=$(dirname -- "$probe"); done
    while :; do
      assert_boundary_dir "$probe" 0 || {
        echo "omarchy-windows-vm: unsafe runtime parent: $probe" >&2
        return 1
      }
      [[ $probe == / ]] && break
      probe=$(dirname -- "$probe")
    done
  fi

  runtime_parent=$(dirname -- "$RUNTIME_DIR")
  if ((EUID == 0)) && [[ ! -e $runtime_parent && ! -L $runtime_parent ]]; then
    [[ $runtime_parent == /var/lib/omarchy ]] || return 1
    assert_boundary_dir /var/lib 0 || return 1
    install -d -o root -g root -m 0755 -- "$runtime_parent" || return 1
  fi
  prepare_boundary_component "$RUNTIME_DIR" "$runtime_parent" "$owner" 0755 &&
    prepare_boundary_component "$MOUNT_ROOT" "$RUNTIME_DIR" "$owner" 0711 &&
    prepare_boundary_component "$USERS_DIR" "$MOUNT_ROOT" "$owner" 0711 &&
    prepare_boundary_component "$CALLER_DATA_ROOT" "$USERS_DIR" "$owner" 0711 || {
    echo "omarchy-windows-vm: unsafe VM mount boundary" >&2
    return 1
  }
}

# Open the source directory itself and keep the descriptor alive until after the
# bind. /proc/$BASHPID/fd refers to this exact shell process (including when a
# function runs in a pipeline subshell), not the short-lived mount subprocess,
# so a rename or symlink swap after open cannot change which inode is mounted.
open_mount_source() {
  local path="$1" label="$2" fd record uid identity
  [[ -d $path ]] || {
    echo "omarchy-windows-vm: $label source is not a directory: $path" >&2
    return 1
  }
  # Appending /. makes a directory-to-FIFO swap fail with ENOTDIR instead of
  # leaving the privileged helper blocked while opening an attacker-held pipe.
  exec {fd}<"$path/." || {
    echo "omarchy-windows-vm: cannot open $label source: $path" >&2
    return 1
  }
  [[ -d /proc/$BASHPID/fd/$fd ]] || {
    exec {fd}<&-
    return 1
  }
  record=$(stat -Lc '%u|%d:%i' "/proc/$BASHPID/fd/$fd" 2>/dev/null) || {
    exec {fd}<&-
    return 1
  }
  IFS='|' read -r uid identity <<<"$record"
  [[ $uid == "$CALLER_UID" ]] || {
    exec {fd}<&-
    echo "omarchy-windows-vm: $label source must be a directory owned by uid $CALLER_UID" >&2
    return 1
  }
  OPENED_MOUNT_FD=$fd
  OPENED_MOUNT_ID=$identity
}

# Return 0 when ancestor_id contains the already-open descendant directory, 1
# when the walk reaches the namespace root without finding it, and 2 on any
# error or an implausibly deep walk. Every hop is opened relative to a pinned
# directory FD; no caller-mutable pathname is re-resolved.
pinned_dir_contains() {
  local ancestor_id="$1" descendant_fd="$2" walk_fd parent_fd current_id parent_id depth
  exec {walk_fd}<"/proc/$BASHPID/fd/$descendant_fd/." || return 2
  for ((depth = 0; depth < 256; depth++)); do
    current_id=$(stat -Lc '%d:%i' "/proc/$BASHPID/fd/$walk_fd" 2>/dev/null) || {
      exec {walk_fd}<&-
      return 2
    }
    if [[ $current_id == "$ancestor_id" ]]; then
      exec {walk_fd}<&-
      return 0
    fi
    exec {parent_fd}<"/proc/$BASHPID/fd/$walk_fd/.." || {
      exec {walk_fd}<&-
      return 2
    }
    parent_id=$(stat -Lc '%d:%i' "/proc/$BASHPID/fd/$parent_fd" 2>/dev/null) || {
      exec {parent_fd}<&-
      exec {walk_fd}<&-
      return 2
    }
    if [[ $parent_id == "$current_id" ]]; then
      exec {parent_fd}<&-
      exec {walk_fd}<&-
      return 1
    fi
    exec {walk_fd}<&-
    walk_fd=$parent_fd
  done
  exec {walk_fd}<&-
  return 2
}

# A bind alias can give the same directory inode a second parent chain, so an
# upward walk alone is insufficient for destructive removal. Search from a
# pinned tree root for the other pinned inode without following symlinks or
# crossing the removal traversal's filesystem boundary. Return 0 when found, 1
# when absent, and 2 on timeout, traversal error, or unexpected output.
pinned_tree_contains() {
  local root_fd="$1" needle_fd="$2" found rc
  # -xdev still evaluates a nested mountpoint itself before pruning its
  # children, so a direct different-filesystem alias of the needle is found too.
  # This matches removal's traversal boundary without skipping mount aliases.
  if found=$("$TREE_SCAN_TIMEOUT" --signal=TERM --kill-after="${TREE_SCAN_KILL_AFTER_SECONDS}s" \
    "${TREE_SCAN_TIMEOUT_SECONDS}s" "$TREE_SCAN_FIND" -P "/proc/$BASHPID/fd/$root_fd/." \
    -xdev -type d -samefile "/proc/$BASHPID/fd/$needle_fd/." \
    -printf 'found\n' -quit 2>/dev/null); then
    rc=0
  else
    rc=$?
  fi
  ((rc == 0)) || return 2
  case "$found" in
  found) return 0 ;;
  "") return 1 ;;
  *) return 2 ;;
  esac
}

validate_pinned_sources_disjoint() {
  local storage_fd="$1" storage_id="$2" shared_fd="$3" shared_id="$4" rc
  if [[ $storage_id == "$shared_id" ]]; then
    echo "omarchy-windows-vm: storage and shared must be different directories" >&2
    return 1
  fi
  if pinned_dir_contains "$storage_id" "$shared_fd"; then
    echo "omarchy-windows-vm: shared directory must not be inside storage" >&2
    return 1
  else
    rc=$?
    ((rc == 1)) || {
      echo "omarchy-windows-vm: could not verify storage/shared ancestry" >&2
      return 1
    }
  fi
  if pinned_dir_contains "$shared_id" "$storage_fd"; then
    echo "omarchy-windows-vm: storage directory must not be inside shared" >&2
    return 1
  else
    rc=$?
    ((rc == 1)) || {
      echo "omarchy-windows-vm: could not verify storage/shared ancestry" >&2
      return 1
    }
  fi
}

removal_trees_disjoint() {
  local storage_fd shared_fd anchor_storage_fd anchor_shared_fd storage_id shared_id rc=1 scan_rc
  local scan scan_root_fd scan_needle_fd scan_label
  open_mount_source "$LEGACY_STORAGE" storage || return 1
  storage_fd=$OPENED_MOUNT_FD
  storage_id=$OPENED_MOUNT_ID
  if ! open_mount_source "$LEGACY_SHARED" shared; then
    exec {storage_fd}<&-
    return 1
  fi
  shared_fd=$OPENED_MOUNT_FD
  shared_id=$OPENED_MOUNT_ID
  if ! validate_pinned_sources_disjoint "$storage_fd" "$storage_id" "$shared_fd" "$shared_id" ||
    ! mounted_leaf_matches "$EXPECTED_STORAGE" "$storage_id" ||
    ! mounted_leaf_matches "$EXPECTED_SHARED" "$shared_id"; then
    exec {storage_fd}<&-
    exec {shared_fd}<&-
    return 1
  fi
  if ! exec {anchor_storage_fd}<"$EXPECTED_STORAGE/."; then
    exec {storage_fd}<&-
    exec {shared_fd}<&-
    return 1
  fi
  if ! exec {anchor_shared_fd}<"$EXPECTED_SHARED/."; then
    exec {anchor_storage_fd}<&-
    exec {storage_fd}<&-
    exec {shared_fd}<&-
    return 1
  fi

  # Scan the protected anchor views first. Also scan the pinned caller views:
  # a submount attached after the original non-recursive bind is intentionally
  # absent from the anchor view, but removal must still refuse that alias.
  rc=0
  for scan in \
    "$anchor_storage_fd:$anchor_shared_fd:shared below protected storage" \
    "$anchor_shared_fd:$anchor_storage_fd:storage below protected shared" \
    "$storage_fd:$shared_fd:shared below storage source" \
    "$shared_fd:$storage_fd:storage below shared source"; do
    IFS=: read -r scan_root_fd scan_needle_fd scan_label <<<"$scan"
    if pinned_tree_contains "$scan_root_fd" "$scan_needle_fd"; then
      echo "omarchy-windows-vm: refusing removal: $scan_label" >&2
      rc=1
      break
    else
      scan_rc=$?
      if ((scan_rc != 1)); then
        echo "omarchy-windows-vm: removal containment scan failed or timed out" >&2
        rc=1
        break
      fi
    fi
  done

  exec {anchor_storage_fd}<&-
  exec {anchor_shared_fd}<&-
  exec {storage_fd}<&-
  exec {shared_fd}<&-
  return "$rc"
}

prepare_mount_anchor() {
  local path="$1" owner
  owner=$(boundary_owner)
  [[ ! -L $path ]] || return 1
  if mountpoint -q -- "$path" 2>/dev/null; then return 0; fi
  prepare_boundary_component "$path" "$CALLER_DATA_ROOT" "$owner" 0700 || return 1
  [[ -z $(find "$path" -mindepth 1 -print -quit) ]] || {
    echo "omarchy-windows-vm: refusing to hide data below mount anchor: $path" >&2
    return 1
  }
}

mounted_leaf_matches() {
  local stable="$1" identity="$2" actual owner mode canonical
  [[ -d $stable && ! -L $stable ]] || return 1
  canonical=$(realpath -e -- "$stable" 2>/dev/null) || return 1
  [[ $canonical == "$stable" ]] || return 1
  mountpoint -q -- "$stable" 2>/dev/null || return 1
  [[ $(mount_layer_count "$stable") == 1 ]] || return 1
  actual=$(stat -Lc '%d:%i' "$stable" 2>/dev/null) || return 1
  owner=$(stat -Lc '%u' "$stable" 2>/dev/null) || return 1
  mode=$(stat -Lc '%a' "$stable" 2>/dev/null) || return 1
  [[ $actual == "$identity" && $owner == "$CALLER_UID" && $mode == 700 ]]
}

bind_mount_leaf() {
  local fd="$1" identity="$2" stable="$3" actual owner
  MOUNT_LEAF_NEW=0
  if mountpoint -q -- "$stable" 2>/dev/null; then
    mounted_leaf_matches "$stable" "$identity" || {
      echo "omarchy-windows-vm: protected mount at $stable no longer matches its home source" >&2
      return 1
    }
    return 0
  fi

  # util-linux normally canonicalizes a /proc/<pid>/fd link back to a pathname,
  # which would throw away the FD pin. Pass the procfd to mount(2) unchanged.
  mount --no-canonicalize --bind "/proc/$BASHPID/fd/$fd" "$stable" || return 1
  MOUNT_LEAF_NEW=1
  actual=$(stat -Lc '%d:%i' "$stable" 2>/dev/null) || actual=""
  owner=$(stat -Lc '%u' "$stable" 2>/dev/null) || owner=""
  if [[ $actual != "$identity" || $owner != "$CALLER_UID" ]]; then
    if umount -- "$stable"; then
      MOUNT_LEAF_NEW=0
    else
      echo "omarchy-windows-vm: could not roll back unverified bind at $stable" >&2
    fi
    echo "omarchy-windows-vm: bind verification failed for $stable" >&2
    return 1
  fi
  mounted_leaf_matches "$stable" "$identity" || {
    if umount -- "$stable"; then
      MOUNT_LEAF_NEW=0
    else
      echo "omarchy-windows-vm: could not roll back invalid bind at $stable" >&2
    fi
    return 1
  }
}

prepare_caller_mounts() {
  local storage_fd storage_id shared_fd shared_id storage_mode shared_mode
  CALLER_MOUNTS_NEW_STORAGE=0
  CALLER_MOUNTS_NEW_SHARED=0
  resolve_caller && prepare_runtime_tree || return 1
  prepare_mount_anchor "$EXPECTED_STORAGE" && prepare_mount_anchor "$EXPECTED_SHARED" || return 1

  # Pre-open and validate both sources before changing either mount anchor.
  open_mount_source "$LEGACY_STORAGE" storage || return 1
  storage_fd=$OPENED_MOUNT_FD
  storage_id=$OPENED_MOUNT_ID
  if ! open_mount_source "$LEGACY_SHARED" shared; then
    exec {storage_fd}<&-
    return 1
  fi
  shared_fd=$OPENED_MOUNT_FD
  shared_id=$OPENED_MOUNT_ID
  if ! validate_pinned_sources_disjoint "$storage_fd" "$storage_id" "$shared_fd" "$shared_id"; then
    exec {storage_fd}<&-
    exec {shared_fd}<&-
    return 1
  fi

  # Privacy is an explicit preflight step for both already-pinned sources, not
  # a side effect halfway through the two-mount transaction. Old umask-022
  # installs are hardened together before either Docker-facing anchor changes.
  chmod 0700 -- "/proc/$BASHPID/fd/$storage_fd" "/proc/$BASHPID/fd/$shared_fd" || {
    exec {storage_fd}<&-
    exec {shared_fd}<&-
    return 1
  }
  storage_mode=$(stat -Lc '%a' "/proc/$BASHPID/fd/$storage_fd" 2>/dev/null) || storage_mode=""
  shared_mode=$(stat -Lc '%a' "/proc/$BASHPID/fd/$shared_fd" 2>/dev/null) || shared_mode=""
  if [[ $storage_mode != 700 || $shared_mode != 700 ]]; then
    exec {storage_fd}<&-
    exec {shared_fd}<&-
    return 1
  fi

  if bind_mount_leaf "$storage_fd" "$storage_id" "$EXPECTED_STORAGE"; then
    CALLER_MOUNTS_NEW_STORAGE=$MOUNT_LEAF_NEW
  else
    CALLER_MOUNTS_NEW_STORAGE=$MOUNT_LEAF_NEW
    rollback_new_caller_mounts || true
    exec {storage_fd}<&-
    exec {shared_fd}<&-
    return 1
  fi
  if ! bind_mount_leaf "$shared_fd" "$shared_id" "$EXPECTED_SHARED"; then
    CALLER_MOUNTS_NEW_SHARED=$MOUNT_LEAF_NEW
    rollback_new_caller_mounts || true
    exec {storage_fd}<&-
    exec {shared_fd}<&-
    return 1
  fi
  CALLER_MOUNTS_NEW_SHARED=$MOUNT_LEAF_NEW

  exec {storage_fd}<&-
  exec {shared_fd}<&-
}

mounts_ready() {
  local storage_fd storage_id shared_fd shared_id rc=1
  resolve_caller || return 1
  open_mount_source "$LEGACY_STORAGE" storage || return 1
  storage_fd=$OPENED_MOUNT_FD
  storage_id=$OPENED_MOUNT_ID
  if ! open_mount_source "$LEGACY_SHARED" shared; then
    exec {storage_fd}<&-
    return 1
  fi
  shared_fd=$OPENED_MOUNT_FD
  shared_id=$OPENED_MOUNT_ID
  if ! validate_pinned_sources_disjoint "$storage_fd" "$storage_id" "$shared_fd" "$shared_id"; then
    exec {storage_fd}<&-
    exec {shared_fd}<&-
    return 1
  fi
  if assert_boundary_dir "$RUNTIME_DIR" "$(boundary_owner)" &&
    assert_boundary_dir "$MOUNT_ROOT" "$(boundary_owner)" &&
    assert_boundary_dir "$USERS_DIR" "$(boundary_owner)" &&
    assert_boundary_dir "$CALLER_DATA_ROOT" "$(boundary_owner)" &&
    mounted_leaf_matches "$EXPECTED_STORAGE" "$storage_id" &&
    mounted_leaf_matches "$EXPECTED_SHARED" "$shared_id"; then
    rc=0
  fi
  exec {storage_fd}<&-
  exec {shared_fd}<&-
  return "$rc"
}

mount_layer_count() {
  local path="$1"
  awk -v path="$path" '$5 == path { count++ } END { print count + 0 }' /proc/self/mountinfo
}

mount_descendant_count() {
  local path="$1"
  awk -v prefix="$path/" 'index($5, prefix) == 1 { count++ } END { print count + 0 }' /proc/self/mountinfo
}

rollback_new_caller_mounts() {
  local failed=0
  if ((CALLER_MOUNTS_NEW_SHARED)); then
    if umount -- "$EXPECTED_SHARED"; then CALLER_MOUNTS_NEW_SHARED=0; else failed=1; fi
  fi
  if ((CALLER_MOUNTS_NEW_STORAGE)); then
    if umount -- "$EXPECTED_STORAGE"; then CALLER_MOUNTS_NEW_STORAGE=0; else failed=1; fi
  fi
  ((failed == 0)) || echo "omarchy-windows-vm: could not roll back newly created VM mounts" >&2
  return "$failed"
}

write_compose_atomically() (
  local ram="$1" cores="$2" disk="$3" username="$4" password="$5" tz="$6"
  local tmp="" rc esc_password
  cleanup_writer() {
    rc=$?
    trap - EXIT
    [[ -z $tmp ]] || rm -f -- "$tmp" || true
    if ((rc != 0)) && ! rollback_new_caller_mounts; then rc=1; fi
    exit "$rc"
  }
  trap cleanup_writer EXIT

  # Neutralize anything in the password that could be misread when the compose
  # is parsed. Two layers apply, in this order at parse time: docker compose
  # variable interpolation over the raw text ($VAR / $$), then YAML parsing of
  # the double-quoted scalar. Encode for the inner layer first (backslash, then
  # double-quote) and the interpolation layer last ($ -> $$), so a password
  # containing " \ or $ reaches the guest verbatim. unescape() reverses this in
  # the opposite order for the RDP credentials.
  esc_password=${password//\\/\\\\}
  esc_password=${esc_password//\"/\\\"}
  esc_password=${esc_password//\$/\$\$}

  tmp=$(mktemp "$RUNTIME_DIR/.compose.XXXXXX") || exit 1
  # omarchy:heredoc-expands paths=EXPECTED_STORAGE,EXPECTED_SHARED -- both are
  # root-protected anchors derived from the authenticated caller uid and bound
  # to source inodes that were opened and validated before this compose is
  # written. The remaining expansions are revalidated scalar settings.
  cat >"$tmp" <<EOF || exit 1
services:
  windows:
    image: $IMAGE
    container_name: $CONTAINER
    environment:
      VERSION: "11"
      RAM_SIZE: "$ram"
      CPU_CORES: "$cores"
      DISK_SIZE: "$disk"
      USERNAME: "$username"
      PASSWORD: "$esc_password"
      PROTECT: "Y"
      TZ: "$tz"
      ARGUMENTS: "-rtc base=localtime,clock=host,driftfix=slew"
    devices:
      - /dev/kvm
      - /dev/net/tun
    cap_add:
      - NET_ADMIN
    ports:
      - 127.0.0.1:8006:8006
      - 127.0.0.1:3389:3389/tcp
      - 127.0.0.1:3389:3389/udp
    volumes:
      - $EXPECTED_STORAGE:/storage
      - $EXPECTED_SHARED:/shared
    restart: "no"
    stop_grace_period: 2m
EOF
  chmod 0640 "$tmp" || exit 1
  if ((EUID == 0)); then
    chown root:docker "$tmp" 2>/dev/null || chown root:root "$tmp" || exit 1
  fi
  mv -fT -- "$tmp" "$COMPOSE_FILE" || exit 1
  tmp=""
  trap - EXIT
)

# Reads KEY=VALUE lines on stdin, re-validates every field, and writes the
# compose atomically as root. Re-validation here is the security boundary: the
# writer refuses rather than emit a compose an attacker could have influenced.
# Only these fixed keys are honored; image, container name, devices, caps, and
# port bindings are hard-coded and never taken from input.
__priv_write_compose() {
  local ram cores disk username password tz key value

  while IFS='=' read -r key value; do
    case "$key" in
    RAM) ram="$value" ;;
    CORES) cores="$value" ;;
    DISK) disk="$value" ;;
    USERNAME) username="$value" ;;
    PASSWORD) password="$value" ;;
    TZ) tz="$value" ;;
    esac
  done

  valid_ram "$ram" || { echo "invalid RAM: $ram" >&2; exit 2; }
  valid_cores "$cores" || { echo "invalid CPU cores: $cores" >&2; exit 2; }
  valid_disk "$disk" || { echo "invalid disk size: $disk" >&2; exit 2; }
  valid_username "$username" || { echo "invalid username: $username" >&2; exit 2; }
  valid_password "$password" || { echo "invalid password" >&2; exit 2; }
  valid_tz "$tz" || tz="UTC"
  prepare_caller_mounts || exit 2
  # Readable by root and the docker group only. Any failure after mounting rolls
  # back just the binds this writer created and leaves an old compose untouched.
  write_compose_atomically "$ram" "$cores" "$disk" "$username" "$password" "$tz" || exit 2
}

# Read the host source of a bind mount out of the compose (e.g. /storage).
get_mount_source() {
  sed -n "s|^[[:space:]]*-[[:space:]]*\(/[^:]*\):$1\$|\1|p" "$COMPOSE_FILE" | head -n1
}

# True only when a trusted compose has an exact security upgrade path. The
# result forces a one-time elevated migration for sudoless-Docker users. An
# arbitrary or mixed bind pair is never classified as migratable.
compose_needs_security_migration() {
  local storage shared
  [[ -f $COMPOSE_FILE ]] || return 1
  resolve_caller || return 1
  [[ $(mount_source_count /storage) == 1 && $(mount_source_count /shared) == 1 ]] || return 1
  storage=$(get_mount_source /storage)
  shared=$(get_mount_source /shared)
  if compose_mount_pair_is_migratable "$storage" "$shared"; then
    return 0
  fi
  [[ $storage == "$EXPECTED_STORAGE" && $shared == "$EXPECTED_SHARED" ]] && ! compose_web_protected
}

compose_mount_pair_is_migratable() {
  local storage="$1" shared="$2"
  [[ $storage == "$LEGACY_STORAGE" && $shared == "$LEGACY_SHARED" ]] ||
    [[ $storage == "$OLD_EXPECTED_STORAGE" && $shared == "$OLD_EXPECTED_SHARED" ]]
}

mount_source_count() {
  local destination="$1"
  sed -n "s|^[[:space:]]*-[[:space:]]*\(/[^:]*\):$destination\$|x|p" "$COMPOSE_FILE" | wc -l
}

compose_web_protected() {
  [[ $(sed -n 's/^[[:space:]]*PROTECT:.*$/x/p' "$COMPOSE_FILE" | wc -l) == 1 &&
    $(sed -n 's/^[[:space:]]*PROTECT:[[:space:]]*"Y"[[:space:]]*$/x/p' "$COMPOSE_FILE" | wc -l) == 1 ]]
}

rewrite_compose_security() {
  local tmp
  tmp=$(mktemp "$RUNTIME_DIR/.compose.XXXXXX") || return 1
  awk -v storage="$EXPECTED_STORAGE" -v shared="$EXPECTED_SHARED" '
    /^    environment:$/ { print; print "      PROTECT: \"Y\""; next }
    /^[[:space:]]+PROTECT:/ { next }
    /^[[:space:]]*-[[:space:]]*\/[^:]*:\/storage$/ { print "      - " storage ":/storage"; next }
    /^[[:space:]]*-[[:space:]]*\/[^:]*:\/shared$/  { print "      - " shared ":/shared"; next }
    { print }
  ' "$COMPOSE_FILE" >"$tmp" || { rm -f "$tmp"; return 1; }
  [[ $(sed -n 's/^[[:space:]]*PROTECT:.*$/x/p' "$tmp" | wc -l) == 1 &&
    $(sed -n 's/^[[:space:]]*PROTECT:[[:space:]]*"Y"[[:space:]]*$/x/p' "$tmp" | wc -l) == 1 ]] || {
    rm -f "$tmp"
    return 1
  }
  chmod 0640 "$tmp" || { rm -f "$tmp"; return 1; }
  if ((EUID == 0)); then
    chown root:docker "$tmp" 2>/dev/null || chown root:root "$tmp" || {
      rm -f "$tmp"
      return 1
    }
  fi
  mv -fT -- "$tmp" "$COMPOSE_FILE" || { rm -f "$tmp"; return 1; }
}

assert_compose_trusted() {
  local owner expected mode
  [[ -f $COMPOSE_FILE && ! -L $COMPOSE_FILE ]] || return 1
  owner=$(stat -Lc '%u' "$COMPOSE_FILE") || return 1
  mode=$(stat -Lc '%a' "$COMPOSE_FILE") || return 1
  expected=$(boundary_owner)
  [[ $owner == "$expected" ]] && ! ((8#$mode & 022))
}

assert_mounts_safe() {
  local storage shared needs_rewrite=0 mounts_prepared=0
  resolve_caller || return 1
  assert_compose_trusted || {
    echo "omarchy-windows-vm: refusing an untrusted compose file" >&2
    return 1
  }
  storage=$(get_mount_source /storage)
  shared=$(get_mount_source /shared)

  [[ $(mount_source_count /storage) == 1 && $(mount_source_count /shared) == 1 ]] || {
    echo "omarchy-windows-vm: refusing duplicate or missing VM mounts in the compose" >&2
    return 1
  }

  if compose_mount_pair_is_migratable "$storage" "$shared"; then
    ((EUID == 0)) || {
      echo "omarchy-windows-vm: legacy VM data needs an authorized migration" >&2
      return 1
    }
    prepare_caller_mounts || return 1
    mounts_prepared=1
    needs_rewrite=1
    storage=$EXPECTED_STORAGE
    shared=$EXPECTED_SHARED
  fi

  [[ $storage == "$EXPECTED_STORAGE" && $shared == "$EXPECTED_SHARED" ]] || {
    echo "omarchy-windows-vm: refusing unexpected host paths in the compose" >&2
    return 1
  }

  if ! compose_web_protected; then
    ((EUID == 0)) || {
      echo "omarchy-windows-vm: web-console protection needs an authorized migration" >&2
      return 1
    }
    needs_rewrite=1
  fi

  if ((needs_rewrite)) && ! rewrite_compose_security; then
    if ((mounts_prepared)); then rollback_new_caller_mounts || true; fi
    return 1
  fi

  # Mounts disappear at reboot. Root recreates them from the already-opened,
  # caller-owned sources; a docker-group invocation may proceed directly only
  # while the exact pinned pair is still present.
  if ((EUID == 0)); then
    prepare_caller_mounts || return 1
  fi
  mounts_ready || {
    echo "omarchy-windows-vm: refusing an unsafe VM mount anchor" >&2
    return 1
  }
}

__priv_up() { assert_mounts_safe && dc up -d; }

__priv_down() { dc down; }

# Bring the VM up and wait until the guest reports it is ready, all under a
# single elevation so the readiness poll does not prompt on every iteration.
__priv_up_wait() {
  assert_mounts_safe || return 1
  local status
  status=$(docker inspect --format='{{.State.Status}}' "$CONTAINER" 2>/dev/null)
  if [[ $status != "running" ]]; then
    dc up -d || return 1
  fi

  # docker logs persists across restarts, so anchor the scan to the current
  # start time; an empty --since would match a stale "started successfully".
  local started_at count=0
  while true; do
    started_at=$(docker inspect --format='{{.State.StartedAt}}' "$CONTAINER" 2>/dev/null)
    if [[ -n $started_at ]] && docker logs --since "$started_at" "$CONTAINER" 2>&1 | grep -qi "windows started successfully"; then
      return 0
    fi
    sleep 2
    ((++count > 60)) && {
      echo "Timeout: Windows VM did not report ready within 2 minutes" >&2
      return 1
    }
  done
}

# Print the status (empty if the container does not exist) and always succeed,
# so a non-zero exit from priv status means the elevation itself failed
# (authorization declined) rather than "no such container".
__priv_status() { docker inspect --format='{{.State.Status}}' "$CONTAINER" 2>/dev/null || true; }

__priv_remove() {
  # Rebuild/verify both pinned binds before deleting through the storage anchor.
  # In particular, a legitimate ~/.windows symlink means deleting only the link
  # from the user side would strand the virtual disk in its external target.
  assert_mounts_safe || return 1
  [[ $EXPECTED_STORAGE == "$USERS_DIR/$CALLER_UID/storage" ]] || return 1
  [[ $EXPECTED_SHARED == "$USERS_DIR/$CALLER_UID/shared" ]] || return 1
  [[ $(mount_layer_count "$EXPECTED_STORAGE") == 1 &&
    $(mount_layer_count "$EXPECTED_SHARED") == 1 &&
    $(mount_descendant_count "$EXPECTED_STORAGE") == 0 &&
    $(mount_descendant_count "$EXPECTED_SHARED") == 0 ]] || {
    echo "omarchy-windows-vm: refusing removal with unknown or stacked VM mounts" >&2
    return 1
  }

  dc down || {
    echo "omarchy-windows-vm: could not stop the Windows VM; storage was not deleted" >&2
    return 1
  }
  if docker inspect "$CONTAINER" >/dev/null 2>&1; then
    echo "omarchy-windows-vm: Windows container still exists; storage was not deleted" >&2
    return 1
  fi
  docker info >/dev/null 2>&1 || {
    echo "omarchy-windows-vm: cannot verify Docker state; storage was not deleted" >&2
    return 1
  }
  mounts_ready || {
    echo "omarchy-windows-vm: VM mount identity changed during removal" >&2
    return 1
  }
  removal_trees_disjoint || return 1

  # find -xdev deliberately empties the verified disk source without crossing
  # into another mounted filesystem. Shared files are never traversed.
  find "$EXPECTED_STORAGE" -xdev -mindepth 1 -delete || return 1
  [[ -z $(find "$EXPECTED_STORAGE" -mindepth 1 -print -quit) ]] || return 1

  # Release only the single known top mounts checked above. Unmount shared first
  # so a storage-unmount failure cannot expose shared data to deletion.
  umount -- "$EXPECTED_SHARED" || return 1
  umount -- "$EXPECTED_STORAGE" || return 1
  docker rmi "$IMAGE" 2>/dev/null || true
  rm -f "$COMPOSE_FILE"
  rmdir -- "$EXPECTED_STORAGE" "$EXPECTED_SHARED" "$CALLER_DATA_ROOT" 2>/dev/null || true
}

# --- config helpers ----------------------------------------------------------

# Validate both familiar home entries before creating or changing either. A
# legitimate symlink is kept exactly as-is; only its caller-owned directory
# target is used. The privileged half repeats the ownership check on pinned FDs.
preflight_user_mount_source() {
  local path="$1" label="$2" uid owner
  uid=$(id -u)
  if [[ -L $path ]]; then
    [[ -d $path ]] || {
      echo "omarchy-windows-vm: $label is a broken or non-directory symlink: $path" >&2
      return 1
    }
  elif [[ -e $path ]]; then
    [[ -d $path ]] || {
      echo "omarchy-windows-vm: $label is not a directory: $path" >&2
      return 1
    }
  else
    return 0
  fi
  owner=$(stat -Lc '%u' -- "$path") || return 1
  [[ $owner == "$uid" ]] || {
    echo "omarchy-windows-vm: $label must be owned by uid $uid: $path" >&2
    return 1
  }
}

prepare_user_mount_sources() {
  local storage="$HOME/.windows" shared="$HOME/Windows" storage_id shared_id
  preflight_user_mount_source "$storage" storage &&
    preflight_user_mount_source "$shared" shared || return 1
  [[ -e $storage || -L $storage ]] || install -d -m 0700 -- "$storage" || return 1
  [[ -e $shared || -L $shared ]] || install -d -m 0700 -- "$shared" || return 1
  storage_id=$(stat -Lc '%d:%i' -- "$storage") || return 1
  shared_id=$(stat -Lc '%d:%i' -- "$shared") || return 1
  [[ $storage_id != "$shared_id" ]] || {
    echo "omarchy-windows-vm: storage and shared must be different directories" >&2
    return 1
  }
  chmod 0700 -- "$storage" "$shared"
}

storage_space_path() {
  if [[ -d $HOME/.windows ]]; then
    realpath -e -- "$HOME/.windows"
  else
    printf '%s\n' "$HOME"
  fi
}

available_storage_gb() {
  local path
  path=$(storage_space_path) || return 1
  df -P -- "$path" | awk 'NR==2 {print int($4/1024/1024)}'
}

# Feed the collected settings to the elevated writer.
write_compose() {
  local ram="$1" cores="$2" disk="$3" username="$4" password="$5" tz="$6"
  printf 'RAM=%s\nCORES=%s\nDISK=%s\nUSERNAME=%s\nPASSWORD=%s\nTZ=%s\n' \
    "$ram" "$cores" "$disk" "$username" "$password" "$tz" |
    priv write_compose
}

# Reverse, in the opposite order, the escaping __priv_write_compose applied to
# the password: undo the interpolation layer ($$ -> $) first, then the YAML
# layer (\" -> ", then \\ -> \).
unescape() {
  local v=$1
  v=${v//\$\$/\$}
  v=${v//\\\"/\"}
  v=${v//\\\\/\\}
  printf '%s' "$v"
}

# Store the RDP credentials privately for the user (0600) so the plaintext
# password is not world-readable. The password is one validated printable line
# (no newline), so plain KEY=VALUE is safe.
write_credentials() {
  local username="$1" password="$2" old_umask dir tmp
  dir=$(dirname -- "$CREDENTIALS_FILE")
  mkdir -p "$dir" || return 1
  chmod 0700 "$dir" || return 1
  old_umask=$(umask)
  umask 077
  tmp=$(mktemp "$dir/.credentials.XXXXXX") || { umask "$old_umask"; return 1; }
  if ! printf 'USERNAME=%s\nPASSWORD=%s\n' "$username" "$password" >"$tmp" ||
    ! chmod 0600 "$tmp" || ! mv -fT -- "$tmp" "$CREDENTIALS_FILE"; then
    rm -f -- "$tmp"
    umask "$old_umask"
    return 1
  fi
  umask "$old_umask"
}

# Read one field from the private credentials file; IFS on the first = keeps a
# password that itself contains =.
read_credential() {
  local want="$1" key value
  [[ -f $CREDENTIALS_FILE ]] || return 1
  while IFS='=' read -r key value; do
    [[ $key == "$want" ]] && {
      printf '%s' "$value"
      return 0
    }
  done <"$CREDENTIALS_FILE"
  return 1
}

read_compose_value() {
  local key="$1" file="$2"
  sed -n "s/.*${key}: \"\(.*\)\"/\1/p" "$file" | head -n1
}

# Older installs kept the compose under ~/.config/windows. Carry those settings
# into the root-owned location (preserving the VM's data via the same volume
# paths) so an upgrade does not strand or re-download an existing VM.
migrate_legacy_compose() {
  [[ -f $COMPOSE_FILE ]] && return 0
  [[ -f $LEGACY_COMPOSE_FILE ]] || return 1

  echo "Migrating Windows VM configuration to $COMPOSE_FILE ..."
  local ram cores disk username password tz
  ram=$(read_compose_value RAM_SIZE "$LEGACY_COMPOSE_FILE")
  cores=$(read_compose_value CPU_CORES "$LEGACY_COMPOSE_FILE")
  disk=$(read_compose_value DISK_SIZE "$LEGACY_COMPOSE_FILE")
  username=$(read_compose_value USERNAME "$LEGACY_COMPOSE_FILE")
  password=$(read_compose_value PASSWORD "$LEGACY_COMPOSE_FILE")
  tz=$(read_compose_value TZ "$LEGACY_COMPOSE_FILE")
  [[ -z $tz ]] && tz="UTC"
  prepare_user_mount_sources || {
    echo "Could not validate the existing Windows VM data directories." >&2
    return 1
  }
  write_credentials "$username" "$password" || return 1
  # The elevated writer derives both mount anchors from the authenticated uid;
  # it never consumes volume paths from this user-owned legacy file.
  if ! write_compose "$ram" "$cores" "$disk" "$username" "$password" "$tz"; then
    echo "Could not migrate the existing configuration automatically." >&2
    echo "Re-run: omarchy-windows-vm install" >&2
    return 1
  fi
  rm -f "$LEGACY_COMPOSE_FILE"
}

# --- prerequisites -----------------------------------------------------------

check_prerequisites() {
  local DISK_SIZE_GB=${1:-64}
  local REQUIRED_SPACE=$((DISK_SIZE_GB + 10)) # Add 10GB for Windows ISO and overhead

  # Check for KVM support
  if [[ ! -e /dev/kvm ]]; then
    gum style \
      --border normal \
      --padding "1 2" \
      --margin "1" \
      "❌ KVM virtualization not available!" \
      "" \
      "Please enable virtualization in BIOS or run:" \
      "  sudo modprobe kvm-intel  # for Intel CPUs" \
      "  sudo modprobe kvm-amd    # for AMD CPUs"
    exit 1
  fi

  # Check disk space
  AVAILABLE_SPACE=$(available_storage_gb) || {
    echo "❌ Could not determine available space for $HOME/.windows" >&2
    exit 1
  }
  if ((AVAILABLE_SPACE < REQUIRED_SPACE)); then
    echo "❌ Insufficient disk space!"
    echo "   Available: ${AVAILABLE_SPACE}GB"
    echo "   Required: ${REQUIRED_SPACE}GB (${DISK_SIZE_GB}GB disk + 10GB for Windows image)"
    exit 1
  fi
}

# --- commands ----------------------------------------------------------------

install_windows() {
  # Set up trap to handle Ctrl+C
  trap "echo ''; echo 'Installation cancelled by user'; exit 1" INT

  prepare_user_mount_sources || exit 1
  check_prerequisites

  omarchy-pkg-add freerdp openbsd-netcat gum

  mkdir -p "$HOME/.local/share/applications"

  cat <<EOF | tee "$HOME/.local/share/applications/windows-vm.desktop" >/dev/null
[Desktop Entry]
Name=Windows
Comment=Start Windows VM via Docker and connect with RDP
Exec=uwsm app -- omarchy-windows-vm launch
Icon=windows
Terminal=false
Type=Application
Categories=System;Virtualization;
EOF

  # Get system resources
  TOTAL_RAM=$(free -h | awk 'NR==2 {print $2}')
  TOTAL_RAM_GB=$(awk 'NR==1 {printf "%d", $2/1024/1024}' /proc/meminfo)
  TOTAL_CORES=$(nproc)

  echo ""
  echo "System Resources Detected:"
  echo "  Total RAM: $TOTAL_RAM"
  echo "  Total CPU Cores: $TOTAL_CORES"
  echo ""

  RAM_OPTIONS=""
  for size in 2 4 8 16 32 64; do
    if ((size <= TOTAL_RAM_GB)); then
      RAM_OPTIONS="$RAM_OPTIONS ${size}G"
    fi
  done

  SELECTED_RAM=$(echo $RAM_OPTIONS | tr ' ' '\n' | gum choose --selected="4G" --header="How much RAM would you like to allocate to Windows VM?")

  # Check if user cancelled
  if [[ -z $SELECTED_RAM ]]; then
    echo "Installation cancelled by user"
    exit 1
  fi

  SELECTED_CORES=$(gum input --placeholder="Number of CPU cores (1-$TOTAL_CORES)" --value="2" --header="How many CPU cores would you like to allocate to Windows VM?" --char-limit=2)

  # Check if user cancelled (Ctrl+C in gum input returns empty string)
  if [[ -z $SELECTED_CORES ]]; then
    echo "Installation cancelled by user"
    exit 1
  fi

  if ! valid_cores "$SELECTED_CORES" || ((SELECTED_CORES > TOTAL_CORES)); then
    echo "Invalid input. Using default: 2 cores"
    SELECTED_CORES=2
  fi

  AVAILABLE_SPACE=$(available_storage_gb) || {
    echo "❌ Could not determine available space for $HOME/.windows" >&2
    exit 1
  }
  MAX_DISK_GB=$((AVAILABLE_SPACE - 10)) # Leave 10GB for Windows image

  # Check if we have enough space for minimum
  if ((MAX_DISK_GB < 32)); then
    echo "❌ Insufficient disk space for Windows VM!"
    echo "   Available: ${AVAILABLE_SPACE}GB"
    echo "   Minimum required: 42GB (32GB disk + 10GB for Windows image)"
    exit 1
  fi

  DISK_OPTIONS=""
  for size in 32 64 128 256 512; do
    if ((size <= MAX_DISK_GB)); then
      DISK_OPTIONS="$DISK_OPTIONS ${size}G"
    fi
  done

  # Default to 64G if available, otherwise 32G
  DEFAULT_DISK="64G"
  if ! echo "$DISK_OPTIONS" | grep -q "64G"; then
    DEFAULT_DISK="32G"
  fi

  SELECTED_DISK=$(echo $DISK_OPTIONS | tr ' ' '\n' | gum choose --selected="$DEFAULT_DISK" --header="How much disk space would you like to give Windows VM? (64GB+ recommended)")

  # Check if user cancelled
  if [[ -z $SELECTED_DISK ]]; then
    echo "Installation cancelled by user"
    exit 1
  fi

  # Extract just the number for prerequisite check
  DISK_SIZE_NUM=$(echo "$SELECTED_DISK" | sed 's/G//')

  # Re-check prerequisites with selected disk size
  check_prerequisites "$DISK_SIZE_NUM"

  # Prompt for username and password
  USERNAME=$(gum input --placeholder="Username (Press enter to use default: docker)" --header="Enter Windows username:")
  if [[ -z $USERNAME ]]; then
    USERNAME="docker"
  fi
  if ! valid_username "$USERNAME"; then
    echo "Invalid username (use letters, digits, - or _, up to 20 chars). Using default: docker"
    USERNAME="docker"
  fi

  PASSWORD=$(gum input --placeholder="Password (Press enter to use default: admin)" --password --header="Enter Windows password:")
  if [[ -z $PASSWORD ]]; then
    PASSWORD="admin"
    PASSWORD_DISPLAY="(default)"
  else
    PASSWORD_DISPLAY="(user-defined)"
  fi
  if ! valid_password "$PASSWORD"; then
    echo "Invalid password (printable characters, up to 64). Using default: admin"
    PASSWORD="admin"
    PASSWORD_DISPLAY="(default)"
  fi

  # Display configuration summary
  gum style \
    --border normal \
    --padding "1 2" \
    --margin "1" \
    --align left \
    --bold \
    "Windows VM Configuration" \
    "" \
    "RAM:       $SELECTED_RAM" \
    "CPU:       $SELECTED_CORES cores" \
    "Disk:      $SELECTED_DISK" \
    "Username:  $USERNAME" \
    "Password:  $PASSWORD_DISPLAY"

  # Ask for confirmation
  echo ""
  if ! gum confirm "Proceed with this configuration?"; then
    echo "Installation cancelled by user"
    exit 1
  fi

  local tz
  tz=$(timedatectl show -p Timezone --value 2>/dev/null || echo UTC)

  # Write the root-owned compose from the validated settings (one prompt if
  # sudoless Docker is off). The writer pins the familiar home directories (or
  # their legitimate symlink targets) into root-protected bind anchors.
  write_compose "$SELECTED_RAM" "$SELECTED_CORES" "$SELECTED_DISK" \
    "$USERNAME" "$PASSWORD" "$tz" || {
    echo "❌ Failed to write the Windows VM configuration."
    exit 1
  }
  write_credentials "$USERNAME" "$PASSWORD" || {
    echo "❌ Failed to store private RDP credentials." >&2
    exit 1
  }

  echo ""
  echo "Starting Windows VM installation..."
  echo "This will download a Windows 11 image (may take 10-15 minutes)."
  echo ""
  echo "Monitor installation progress at: http://127.0.0.1:8006"
  echo ""

  echo "Starting Windows VM with docker-compose..."
  if ! priv up; then
    echo "❌ Failed to start Windows VM!"
    echo "   Common issues:"
    echo "   - Docker daemon not running: sudo systemctl start docker"
    echo "   - Port already in use: check if another VM is running"
    exit 1
  fi

  echo ""
  echo "Windows VM is starting up!"
  echo ""
  echo "Opening browser to monitor installation..."

  # Open browser to monitor installation
  sleep 3
  xdg-open "http://127.0.0.1:8006"

  echo ""
  echo "Installation is running in the background."
  echo "You can monitor progress at: http://127.0.0.1:8006"
  echo ""
  echo "Once finished, launch 'Windows' via Super + Space"
  echo ""
  echo "To stop the VM: omarchy-windows-vm stop"
  echo ""
}

remove_windows() {
  if ! gum confirm --default=false "Remove Windows VM and delete all associated data?"; then
    echo "Removal cancelled by user"
    exit 1
  fi

  echo "Removing Windows VM..."

  if [[ ! -f $COMPOSE_FILE && -f $LEGACY_COMPOSE_FILE ]]; then
    migrate_legacy_compose || {
      echo "❌ Could not safely migrate the VM before removal." >&2
      exit 1
    }
  fi
  if [[ -f $COMPOSE_FILE ]]; then
    priv remove || {
      echo "❌ Windows VM removal stopped before user-side cleanup; inspect the VM data before retrying." >&2
      exit 1
    }
  fi

  rm -f "$HOME/.local/share/applications/windows-vm.desktop"
  rm -rf "$HOME/.config/windows"
  rm -rf "$HOME/.windows"

  echo ""
  echo "Windows VM removal completed!"
}

launch_windows() {
  KEEP_ALIVE=false
  if [[ $1 = "--keep-alive" ]] || [[ $1 = "-k" ]]; then
    KEEP_ALIVE=true
  fi

  if ! migrate_legacy_compose; then
    if [[ ! -f $COMPOSE_FILE ]]; then
      echo "Windows VM not configured. Please run: omarchy-windows-vm install"
      exit 1
    fi
  fi

  # RDP credentials come from the private per-user file. Fall back to the compose
  # only when it is readable (sudoless mode), reversing the writer's escaping.
  WIN_USER=$(read_credential USERNAME) || WIN_USER=""
  WIN_PASS=$(read_credential PASSWORD) || WIN_PASS=""
  if [[ -z $WIN_USER || -z $WIN_PASS ]] && [[ -r $COMPOSE_FILE ]]; then
    [[ -z $WIN_USER ]] && WIN_USER=$(unescape "$(read_compose_value USERNAME "$COMPOSE_FILE")")
    [[ -z $WIN_PASS ]] && WIN_PASS=$(unescape "$(read_compose_value PASSWORD "$COMPOSE_FILE")")
  fi
  [[ -z $WIN_USER ]] && WIN_USER="docker"
  [[ -z $WIN_PASS ]] && WIN_PASS="admin"

  echo "Starting Windows VM (this may prompt for authorization)..."
  if ! priv up_wait; then
    echo "❌ Failed to start Windows VM!"
    echo "   Try checking: omarchy-windows-vm status"
    omarchy-notification-send -u critical "Windows VM" "Failed to start Windows VM"
    exit 1
  fi

  # Build the connection info
  if [[ $KEEP_ALIVE = "true" ]]; then
    LIFECYCLE="VM will keep running after RDP closes
To stop: omarchy-windows-vm stop"
  else
    LIFECYCLE="VM will auto-stop when RDP closes"
  fi

  gum style \
    --border normal \
    --padding "1 2" \
    --margin "1" \
    --align center \
    "Connecting to Windows VM" \
    "" \
    "$LIFECYCLE"

  # FreeRDP 3 tries Kerberos before NTLM for NLA, and krb5 ships /etc/krb5.conf
  # as the MIT sample with default_realm = ATHENA.MIT.EDU. Every connect then
  # goes looking for MIT's KDC: with internet up it fails fast, but off the
  # network each attempt blocks ~23s and no RDP window is ever drawn. The VM
  # authenticates against a local Windows account, so point FreeRDP at a
  # realm-less config and let it fall straight through to NTLM.
  KRB5_CONF="$HOME/.config/windows/krb5.conf"
  mkdir -p "$(dirname "$KRB5_CONF")"
  if [[ ! -f $KRB5_CONF ]]; then
    printf '[libdefaults]\n  dns_lookup_kdc = false\n  dns_lookup_realm = false\n' >"$KRB5_CONF"
  fi
  export KRB5_CONFIG="$KRB5_CONF"

  # Detect display scale from Hyprland
  HYPR_SCALE=$(hyprctl monitors -j | jq -r '.[] | select (.focused == true) | .scale')
  SCALE_PERCENT=$(echo "$HYPR_SCALE" | awk '{print int($1 * 100)}')

  RDP_SCALE=""
  if ((SCALE_PERCENT >= 170)); then
    RDP_SCALE="/scale:180"
  elif ((SCALE_PERCENT >= 130)); then
    RDP_SCALE="/scale:140"
  fi
  # If scale is less than 130%, don't set any scale (use default 100)

  # Connect with RDP in fullscreen (auto-detects resolution)
  xfreerdp3 /u:"$WIN_USER" /p:"$WIN_PASS" /v:127.0.0.1:3389 -grab-keyboard /sound /microphone /clipboard /cert:ignore /title:"Windows VM - Omarchy" /dynamic-resolution /gfx:AVC444 /floatbar:sticky:off,default:visible,show:fullscreen $RDP_SCALE

  # After RDP closes, stop the container unless --keep-alive was specified
  if [[ $KEEP_ALIVE = "false" ]]; then
    echo ""
    echo "RDP session closed. Stopping Windows VM..."
    if priv down; then
      echo "Windows VM stopped."
    else
      echo "⚠️  Could not stop the Windows VM (authorization declined?)."
      echo "   It may still be running. Stop it with: omarchy-windows-vm stop"
    fi
  else
    echo ""
    echo "RDP session closed. Windows VM is still running."
    echo "To stop it: omarchy-windows-vm stop"
  fi
}

stop_windows() {
  migrate_legacy_compose 2>/dev/null || true
  if [[ ! -f $COMPOSE_FILE ]]; then
    echo "Windows VM not configured."
    exit 1
  fi

  echo "Stopping Windows VM..."
  if priv down; then
    echo "Windows VM stopped."
  else
    echo "⚠️  Could not stop the Windows VM (authorization declined?). It may still be running."
    exit 1
  fi
}

status_windows() {
  migrate_legacy_compose 2>/dev/null || true
  if [[ ! -f $COMPOSE_FILE ]]; then
    echo "Windows VM not configured."
    echo "To set up: omarchy-windows-vm install"
    exit 1
  fi

  if ! CONTAINER_STATUS=$(priv status); then
    echo "Could not query the Windows VM (authorization declined?)."
    echo "To try again: omarchy-windows-vm status"
    exit 1
  fi

  if [[ -z $CONTAINER_STATUS ]]; then
    echo "Windows VM container not found."
    echo "To start: omarchy-windows-vm launch"
  elif [[ $CONTAINER_STATUS = "running" ]]; then
    gum style \
      --border normal \
      --padding "1 2" \
      --margin "1" \
      --align left \
      "Windows VM Status: RUNNING" \
      "" \
      "Web interface: http://127.0.0.1:8006" \
      "RDP available: port 3389" \
      "" \
      "To connect: omarchy-windows-vm launch" \
      "To stop:    omarchy-windows-vm stop"
  else
    echo "Windows VM is stopped (status: $CONTAINER_STATUS)"
    echo "To start: omarchy-windows-vm launch"
  fi
}

show_usage() {
  echo "Usage: omarchy-windows-vm [command] [options]"
  echo ""
  echo "Commands:"
  echo "  install              Install and configure Windows VM"
  echo "  remove               Remove Windows VM and optionally its data"
  echo "  launch [options]     Start Windows VM (if needed) and connect via RDP"
  echo "                       Options:"
  echo "                         --keep-alive, -k   Keep VM running after RDP closes"
  echo "  stop                 Stop the running Windows VM"
  echo "  status               Show current VM status"
  echo "  help                 Show this help message"
  echo ""
  echo "Examples:"
  echo "  omarchy-windows-vm install           # Set up Windows VM for first time"
  echo "  omarchy-windows-vm launch            # Connect to VM (auto-stop on exit)"
  echo "  omarchy-windows-vm launch -k         # Connect to VM (keep running)"
  echo "  omarchy-windows-vm stop              # Shut down the VM"
}

# Main command dispatcher
case "$1" in
__priv)
  ((EUID == 0)) || {
    echo "omarchy-windows-vm __priv must run as root" >&2
    exit 1
  }
  action="$2"
  shift 2
  valid_priv_action "$action" || {
    echo "omarchy-windows-vm: unknown privileged action" >&2
    exit 1
  }
  with_vm_lock "__priv_${action}" "$@"
  ;;
install)
  install_windows
  ;;
remove)
  remove_windows
  ;;
launch | start)
  launch_windows "$2"
  ;;
stop | down)
  stop_windows
  ;;
status)
  status_windows
  ;;
help | --help | -h | "")
  show_usage
  ;;
*)
  echo "Unknown command: $1" >&2
  echo "" >&2
  show_usage >&2
  exit 1
  ;;
esac
