188 lines
4.6 KiB
Bash
Executable File
188 lines
4.6 KiB
Bash
Executable File
#!/usr/bin/env bash
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# auto-rotate — rotate a wlroots output from iio-sensor-proxy orientation events.
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#
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# Unlike rot8 this does not read the accelerometer itself. iio-sensor-proxy owns
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# sensor selection (fuji has two accel_3d devices), applies its own hysteresis,
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# and reports `undefined` when the device is too flat to have a meaningful
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# orientation — so there is no dead zone in which we silently keep a stale state.
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#
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# SIGUSR1 toggle rotation lock (current transform is kept)
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# SIGUSR2 re-apply the last known orientation (e.g. after kanshi resets it)
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set -uo pipefail
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OUTPUT="${AUTOROTATE_OUTPUT:-eDP-1}"
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HOOKS=()
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VERBOSE=0
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usage() {
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cat <<-EOF
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usage: auto-rotate [-o OUTPUT] [-H HOOK]... [-v]
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-o, --output OUTPUT output to rotate (default: ${OUTPUT})
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-H, --hook CMD run CMD after each rotation; may be repeated.
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\$ORIENTATION and \$PREV_ORIENTATION are exported.
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-v, --verbose log every sensor event, not just rotations
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EOF
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}
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while [ $# -gt 0 ]; do
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case "$1" in
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-o | --output)
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OUTPUT="${2:?--output needs a value}"
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shift 2
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;;
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-H | --hook)
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HOOKS+=("${2:?--hook needs a value}")
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shift 2
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;;
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-v | --verbose)
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VERBOSE=1
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shift
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;;
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-h | --help)
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usage
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exit 0
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;;
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*)
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printf 'auto-rotate: unknown argument: %s\n' "$1" >&2
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usage >&2
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exit 1
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;;
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esac
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done
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for cmd in monitor-sensor wlr-randr; do
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command -v "$cmd" >/dev/null || {
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printf 'auto-rotate: %s not found in PATH\n' "$cmd" >&2
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exit 1
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}
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done
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log() { printf '[auto-rotate] %s\n' "$*"; }
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vlog() { [ "$VERBOSE" = 1 ] && log "$@"; return 0; }
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# iio-sensor-proxy orientation -> wlr-randr transform.
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#
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# NOTE: if the screen ends up 180 degrees off, swap the left-up and right-up
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# lines. This mapping is the common convention but it is not something the
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# sensor tells us, so it has to be confirmed by hand once.
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transform_for() {
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case "$1" in
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normal) printf 'normal' ;;
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left-up) printf '90' ;;
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bottom-up) printf '180' ;;
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right-up) printf '270' ;;
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*) return 1 ;;
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esac
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}
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current_transform() {
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wlr-randr 2>/dev/null |
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awk -v o="$OUTPUT" '
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$1 == o { found = 1; next }
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/^[^ \t]/ { found = 0 }
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found && $1 == "Transform:" { print $2; exit }
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'
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}
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applied="$(current_transform)"
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[ -n "$applied" ] || {
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printf 'auto-rotate: output %s not found\n' "$OUTPUT" >&2
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exit 1
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}
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log "output ${OUTPUT}, current transform ${applied}"
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orientation="" # last non-undefined orientation from the sensor
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prev_orientation="" # the one before that, exported to hooks
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locked=0
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toggle_lock() {
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locked=$((1 - locked))
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[ "$locked" = 1 ] && log "rotation locked at ${applied}" || log "rotation unlocked"
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}
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apply() {
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local target
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target="$(transform_for "$orientation")" || return 0
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[ "$target" = "$applied" ] && return 0
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if ! wlr-randr --output "$OUTPUT" --transform "$target"; then
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# Do not advance `applied` — a failed rotation must not desync our idea
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# of the output state from reality. This was rot8's other failure mode.
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log "wlr-randr failed, keeping transform as ${applied}"
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return 0
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fi
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log "${applied} -> ${target} (${orientation})"
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applied="$target"
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local hook
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for hook in ${HOOKS+"${HOOKS[@]}"}; do
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ORIENTATION="$orientation" PREV_ORIENTATION="$prev_orientation" \
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bash -c "$hook" || log "hook failed: ${hook}"
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done
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}
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reapply() {
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applied="$(current_transform)"
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log "re-syncing, output is at ${applied}"
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[ "$locked" = 0 ] && [ -n "$orientation" ] && apply
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return 0
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}
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trap toggle_lock USR1
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trap reapply USR2
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exec 3< <(stdbuf -oL monitor-sensor 2>&1)
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monitor_pid=$!
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trap 'kill "$monitor_pid" 2>/dev/null; exit 0' INT TERM EXIT
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while :; do
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# A signal interrupts read; that is not an error, so retry rather than exit.
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IFS= read -r line <&3 || {
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kill -0 "$monitor_pid" 2>/dev/null && continue
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break
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}
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case "$line" in
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*"Accelerometer orientation changed: "*)
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new="${line##*: }"
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;;
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*"Has accelerometer (orientation: "*)
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# The initial state only ever arrives on this banner line; a
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# "changed" line is not emitted until the orientation moves.
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new="${line#*orientation: }"
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new="${new%%,*}"
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;;
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*"iio-sensor-proxy appeared"*)
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# The proxy restarted; our cached transform may be stale.
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reapply
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continue
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;;
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*"Compass heading changed"*)
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# ~1 Hz of noise we have no use for; drop it even when verbose.
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continue
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;;
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*)
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vlog "$line"
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continue
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;;
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esac
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vlog "sensor says ${new}"
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# `undefined` means the device is lying too flat to tell. Hold position.
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[ "$new" = undefined ] && continue
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[ "$new" = "$orientation" ] && continue
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prev_orientation="$orientation"
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orientation="$new"
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[ "$locked" = 1 ] && {
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vlog "locked, ignoring ${orientation}"
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continue
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}
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apply
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done
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log "monitor-sensor exited"
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