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https://github.com/snapotter-hq/SnapOtter.git
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The entrypoint only fixed volume permissions when started as root (chown +
gosu-drop to snapotter). Launched under a non-root/foreign UID (TrueNAS app
user, Kubernetes runAsUser, OpenShift) it did no permission setup, so /data and
/tmp/workspace -- owned by uid 999 from the image -- were not writable by the
running user. Uploads and processing then failed with a cryptic EACCES
("workspace folder is not writable") and AI bundle installs failed the same way,
while health checks still reported the container healthy.
- entrypoint: source new entrypoint-lib.sh; verify writability up front when
non-root, and as snapotter after chown when root (catches root-squashed
mounts), failing fast with an actionable message (which dir, uid/gid, how to
fix) instead of a late, cryptic EACCES
- Dockerfile: own /data and /tmp/workspace as snapotter:0, group-writable with
setgid, so an arbitrary UID with the root supplementary group (OpenShift /
Kubernetes fsGroup) can write; keep /opt/venv world-readable for the AI venv
bootstrap under arbitrary UIDs
- api: assert storage writability at boot (lib/storage-writable.ts), failing
fast with the same guidance even when the entrypoint is bypassed
- docs: add a Storage permissions section (named volumes, bind mounts, TrueNAS,
Kubernetes/OpenShift) and cross-link it from the security guide
Fixes #230
58 lines
2.4 KiB
Bash
58 lines
2.4 KiB
Bash
#!/bin/sh
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# Shared helpers for the SnapOtter container entrypoint. Sourced by
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# docker/entrypoint.sh and kept in its own file so the permission logic can be
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# unit-tested directly (tests/unit/security/entrypoint-permissions.test.ts)
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# rather than mirrored. Sourcing has no side effects -- only function defs.
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#
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# Functions use _-prefixed variables (sh has no portable `local`) to avoid
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# clobbering the caller's variables.
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# dir_writable <dir>
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# Creates <dir> (best-effort, recursive) and returns 0 if the current user can
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# write inside it, 1 otherwise. Probes by creating then removing a temp file:
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# an actual write is the only reliable check across ACLs, NFS root-squash, and
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# read-only mounts, which ownership/mode arithmetic alone would miss.
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dir_writable() {
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_dw_dir="$1"
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mkdir -p "$_dw_dir" 2>/dev/null || true
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_dw_probe="$_dw_dir/.snapotter-write-probe.$$"
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if touch "$_dw_probe" 2>/dev/null; then
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rm -f "$_dw_probe" 2>/dev/null || true
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return 0
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fi
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return 1
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}
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# print_storage_permission_error <dir>
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# Emits an actionable remediation message to stderr. Mirrors the wording of
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# storagePermissionMessage() in apps/api/src/lib/storage-writable.ts.
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print_storage_permission_error() {
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_pe_dir="$1"
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_pe_uid="$(id -u 2>/dev/null || echo '?')"
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_pe_gid="$(id -g 2>/dev/null || echo '?')"
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{
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echo "FATAL: Storage directory \"$_pe_dir\" is not writable by the current user (uid=$_pe_uid gid=$_pe_gid)."
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echo "SnapOtter cannot upload, process, or store files until this is fixed. Common fixes:"
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echo " - Host volume owned by another user: on the host run \"chown -R $_pe_uid:$_pe_gid <host-path>\""
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echo " (or set the container user to match the volume's owner)."
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echo " - Running as a non-root user (TrueNAS, Kubernetes runAsUser, OpenShift): run the container as"
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echo " root (the default entrypoint self-corrects), set PUID/PGID to match the volume, or grant the"
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echo " process supplementary group 0 (Kubernetes fsGroup: 0)."
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echo " See https://docs.snapotter.com/guide/deployment#storage-permissions"
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} >&2
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}
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# ensure_writable <dir>...
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# Verifies every directory is writable, printing an actionable error for each
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# that is not. Returns 0 only when all are writable, 1 otherwise.
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ensure_writable() {
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_ew_failed=0
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for _ew_dir in "$@"; do
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if ! dir_writable "$_ew_dir"; then
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print_storage_permission_error "$_ew_dir"
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_ew_failed=1
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fi
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done
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return "$_ew_failed"
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}
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