mirror of
https://github.com/openglow-org/forgefirm.git
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The rootfs mounted read-write, so a slot ran with its own files open to change, and the factory-slot mounts rode along on the release image. Both images now carry the read-only-rootfs feature: the ro root line and the rcS default, the volatile links made at rootfs time, a writable copy of /var/lib at boot, a build failure for a post-install that needs the machine, and the removal of shadow, base-passwd, update-rc.d and update-alternatives. What must last or change at run time is handled file by file: - forgefirm-users renders the four account files from the record into /run/forgefirm/accounts and bind-mounts each copy over its /etc file (useradd and the rest are gone with shadow); a render writes through the mount, and the image's own files apply until the first render. - forgefirm-banner bind-mounts a copy of /etc/issue and writes the address block through it. - sshd keeps its host keys under /data/forgefirm/ssh, so the fingerprint survives updates; both sshd configs carry the same HostKey lines. - forgefirm-logging passes logrotate a state file under /var/run (logrotate refuses to run without one). - forgefirm-persist points the boot timestamp and the random seed at /data/forgefirm. The dev image appends the /factory slot mounts, without nofail (busybox mount hands it to the kernel, which rejects it). The rootfs command entries lose their semicolons: on scarthgap the value is the task's vardeps, split on whitespace, so "name;" left the function body out of the signature and a changed body did not remake the rootfs; with the bodies tracked, the dev image's DATETIME string needs a vardepsexclude. release.sh gains the read-only gate (root ro, no /factory line, ROOTFS_READ_ONLY=yes, host keys on /data). image.health checks the mounts, the account binds, the banner bind, the host keys and the dev-only /factory mounts. Proven on the bench reference (dev image 20260909140901): / ro, /data rw, /var/lib a tmpfs copy, the four account files and /etc/issue bound from tmpfs, the host keys in /data/forgefirm/ssh, no "Read-only file system" line in any log; forgectrl.auth and commission.account-login (a temporary account rendered, logged in over HTTPS and removed again), kernel.latch-locked-idle and motion.liveness-probe PASS; logrotate runs with the volatile state. forgetest unit tests 335 OK; both images build clean, and debugfs on the built rootfs shows every setting above.
237 lines
7.9 KiB
Bash
237 lines
7.9 KiB
Bash
#!/bin/sh
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# Copyright 2020-2026 514 LLC d/b/a OpenGlow
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# Written by Scott Wiederhold
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# https://community.openglow.org
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# SPDX-License-Identifier: MIT
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#
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# Boot-slot tool for Glowforge factory hardware running ForgeFIRM or
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# factory firmware: inventories what is installed on each bootable
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# partition and switches the boot target by rewriting the saved U-Boot
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# environment (mmcdev/mmchwpart/mmcpart/mmcroot).
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#
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# The flip writes all four variables in one fw_setenv -s transaction and
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# read-back verifies them, retrying with the classic u-boot-tools script
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# format ("name value") if the libubootenv format ("name=value") did not
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# take, and per-variable calls as a last resort. A switch target must
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# pass a content probe (rootfs mounts, kernel present) unless forced.
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usage () {
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cat <<END
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usage: ffboot -l | -s|-e[<partition>] [-n] [-f]
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-l: inventory bootable partitions (key=value lines) and exit
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-s: SDCARD OpenGlow/ForgeFIRM
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-e[<partition>]: eMMC
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1: eMMC slot 1 (factory image 1)
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2: eMMC slot 2 (factory image 2)
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4: legacy OpenGlow/ForgeFIRM partition
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Default: factory image with the most recent firmware
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-n: No reboot
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-f: Force - skip the target content probe
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END
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}
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# --- fw_env config selection -------------------------------------------------
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# The env lives on the eMMC user area (0x80000/0x82000, redundant). Factory
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# firmware ships per-device configs; the mmcblk2-specific override is honored
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# if present, otherwise the standard /etc/fw_env.config is used.
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if [ -f "/etc/fw_env_mmcblk2.config" ] && [ ! -d "/factory" ]; then
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FWCONFIG="/etc/fw_env_mmcblk2.config"
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else
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FWCONFIG="/etc/fw_env.config"
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fi
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BOOTED_ROOT=$(sed -n 's/.*root=\([^ ]*\).*/\1/p' /proc/cmdline)
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# --- partition probe ---------------------------------------------------------
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# probe_part <device>
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# Sets: P_PRESENT P_STATE(ok|empty|unreadable) P_TYPE(forgefirm|factory|unknown)
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# P_VERSION (display) P_DATE (build datetime, for ordering) P_KERNEL(yes|no)
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probe_part () {
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P_PRESENT=no; P_STATE=unreadable; P_TYPE=unknown
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P_VERSION=""; P_DATE=""; P_KERNEL=no
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P_MOUNTED=""
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[ -b "$1" ] || return 1
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P_PRESENT=yes
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if [ "$1" = "$BOOTED_ROOT" ]; then
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ROOT_DIR=""
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else
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# Reuse an existing mount (the dev image keeps the factory slots
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# mounted under /factory); a fresh mount is explicit -t ext4 - letting mount
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# iterate types provokes a cosmetic kernel "Can't open blockdev" for
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# each foreign-type claim against an already-mounted device.
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ROOT_DIR=$(sed -n "s|^$1 \([^ ]*\).*|\1|p" /proc/mounts | head -n 1)
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if [ -z "$ROOT_DIR" ]; then
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P_MOUNTED=yes
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ROOT_DIR=$(mktemp -d /tmp/ffboot.probe.XXXXXX) || return 1
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if ! mount -o ro,noload -t ext4 "$1" "$ROOT_DIR" 2>/dev/null; then
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rmdir "$ROOT_DIR" 2>/dev/null
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return 1
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fi
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fi
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fi
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if [ -f "$ROOT_DIR/etc/forgefirm-version" ]; then
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P_TYPE=forgefirm; P_STATE=ok
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P_VERSION=$(cat "$ROOT_DIR/etc/forgefirm-version")
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elif [ -f "$ROOT_DIR/etc/version" ]; then
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P_TYPE=factory; P_STATE=ok
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# The build datetime orders releases reliably (used by -e); the
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# semantic FIRMWARE_VERSION in /etc/build is what the factory calls
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# the release and what we display (fall back to the datetime).
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P_DATE=$(cat "$ROOT_DIR/etc/version")
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FV=$(sed -n 's/^FIRMWARE_VERSION[[:space:]]*=[[:space:]]*\([^[:space:]]*\).*/\1/p' \
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"$ROOT_DIR/etc/build" 2>/dev/null)
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if [ -n "$FV" ]; then
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P_VERSION="v$FV"
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else
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P_VERSION="$P_DATE"
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fi
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else
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P_STATE=empty
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fi
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[ -f "$ROOT_DIR/boot/zImage" ] && P_KERNEL=yes
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if [ -n "$P_MOUNTED" ]; then
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umount "$ROOT_DIR" 2>/dev/null
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rmdir "$ROOT_DIR" 2>/dev/null
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fi
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return 0
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}
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env_get () {
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fw_printenv -c "$FWCONFIG" -n "$1" 2>/dev/null
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}
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# --- inventory ---------------------------------------------------------------
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inventory () {
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E_DEV=$(env_get mmcdev); E_PART=$(env_get mmcpart); E_ROOT=$(env_get mmcroot)
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echo "env.mmcdev=$E_DEV"
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echo "env.mmchwpart=$(env_get mmchwpart)"
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echo "env.mmcpart=$E_PART"
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echo "env.mmcroot=$E_ROOT"
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echo "booted.root=$BOOTED_ROOT"
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for ENTRY in "sd /dev/mmcblk1p1" "a /dev/mmcblk2p1" "b /dev/mmcblk2p2" "legacy /dev/mmcblk2p4"; do
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NAME=${ENTRY%% *}; DEV=${ENTRY#* }
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probe_part "$DEV"
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echo "slot.$NAME.device=$DEV"
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echo "slot.$NAME.present=$P_PRESENT"
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[ "$P_PRESENT" = "yes" ] || continue
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echo "slot.$NAME.state=$P_STATE"
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echo "slot.$NAME.type=$P_TYPE"
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echo "slot.$NAME.version=$P_VERSION"
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echo "slot.$NAME.kernel=$P_KERNEL"
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[ "$DEV" = "$BOOTED_ROOT" ] && echo "slot.$NAME.booted=yes"
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[ "$DEV" = "$E_ROOT" ] && echo "slot.$NAME.next=yes"
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done
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}
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# --- verified env flip -------------------------------------------------------
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# set_env <mmcdev> <mmchwpart> <mmcpart> <mmcroot>
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env_verify () {
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[ "$(env_get mmcdev)" = "$1" ] && [ "$(env_get mmchwpart)" = "$2" ] && \
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[ "$(env_get mmcpart)" = "$3" ] && [ "$(env_get mmcroot)" = "$4" ]
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}
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set_env () {
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SCRIPT=$(mktemp /tmp/ffboot.env.XXXXXX) || return 1
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# libubootenv format
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printf 'mmcdev=%s\nmmchwpart=%s\nmmcpart=%s\nmmcroot=%s\n' "$1" "$2" "$3" "$4" > "$SCRIPT"
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fw_setenv -c "$FWCONFIG" -s "$SCRIPT" 2>/dev/null
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if env_verify "$1" "$2" "$3" "$4"; then rm -f "$SCRIPT"; return 0; fi
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# classic u-boot-tools format
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printf 'mmcdev %s\nmmchwpart %s\nmmcpart %s\nmmcroot %s\n' "$1" "$2" "$3" "$4" > "$SCRIPT"
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fw_setenv -c "$FWCONFIG" -s "$SCRIPT" 2>/dev/null
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rm -f "$SCRIPT"
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if env_verify "$1" "$2" "$3" "$4"; then return 0; fi
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# last resort: per-variable
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fw_setenv -c "$FWCONFIG" mmcdev "$1" && \
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fw_setenv -c "$FWCONFIG" mmchwpart "$2" && \
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fw_setenv -c "$FWCONFIG" mmcpart "$3" && \
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fw_setenv -c "$FWCONFIG" mmcroot "$4"
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env_verify "$1" "$2" "$3" "$4"
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}
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# --- argument parsing --------------------------------------------------------
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REBOOT=1
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FORCE=0
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MODE=""
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for ARG in "$@"; do
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case "$ARG" in
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-l) MODE=list ;;
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-n) REBOOT=0 ;;
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-f) FORCE=1 ;;
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-s|-e|-e1|-e2|-e4)
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[ -z "$MODE" ] || { usage; exit 2; }
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MODE="$ARG" ;;
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*) usage; exit 2 ;;
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esac
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done
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[ -n "$MODE" ] || { usage; exit 2; }
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if [ ! -f "$FWCONFIG" ]; then
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echo "ERROR: $FWCONFIG not found; cannot access the U-Boot environment" >&2
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exit 1
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fi
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if [ "$MODE" = "list" ]; then
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inventory
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exit 0
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fi
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# --- resolve the switch target ----------------------------------------------
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case "$MODE" in
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-s)
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MMCDEV=0; MMCPART=1 ;;
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-e)
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# Pick the factory slot with the newest firmware; a slot occupied by
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# ForgeFIRM is not a factory-restore target.
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MMCDEV=1; MMCPART=""
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BEST=0
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for CAND in 1 2; do
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probe_part "/dev/mmcblk2p$CAND" || continue
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[ "$P_TYPE" = "factory" ] || continue
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# Order by the build datetime (monotonic), not the semantic
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# version string.
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V=$(echo "$P_DATE" | tr -cd '0-9')
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[ -n "$V" ] || V=0
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if [ -z "$MMCPART" ] || [ "$V" -gt "$BEST" ]; then
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MMCPART=$CAND; BEST=$V
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fi
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done
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[ -n "$MMCPART" ] || {
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echo "ERROR: no factory image found in eMMC slot 1 or 2." >&2
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echo "Use -e1/-e2/-e4 to select a slot explicitly." >&2
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exit 1
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} ;;
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-e1) MMCDEV=1; MMCPART=1 ;;
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-e2) MMCDEV=1; MMCPART=2 ;;
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-e4) MMCDEV=1; MMCPART=4 ;;
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esac
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MMCROOT="/dev/mmcblk$((MMCDEV + 1))p$MMCPART"
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# --- target sanity probe -----------------------------------------------------
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if [ "$FORCE" -eq 0 ]; then
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if ! probe_part "$MMCROOT"; then
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echo "ERROR: $MMCROOT is missing or unreadable (use -f to override)" >&2
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exit 1
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fi
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if [ "$P_STATE" != "ok" ] || [ "$P_KERNEL" != "yes" ]; then
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echo "ERROR: $MMCROOT does not look bootable (state=$P_STATE kernel=$P_KERNEL; use -f to override)" >&2
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exit 1
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fi
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echo "Target $MMCROOT: $P_TYPE $P_VERSION"
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fi
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echo "Setting boot to $MMCROOT"
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if ! set_env "$MMCDEV" 0 "$MMCPART" "$MMCROOT"; then
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echo "ERROR: environment write did not verify; boot selection unchanged or inconsistent" >&2
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exit 1
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fi
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if [ "$REBOOT" -gt 0 ]; then
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echo "Rebooting..."
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reboot
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fi
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exit 0
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