Compare commits
6
Commits
| Author | SHA1 | Date | |
|---|---|---|---|
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42b6916c02 | ||
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e3c4ba03ad | ||
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8ad2a86e4b | ||
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a891b726e5 | ||
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ab63b5f777 | ||
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9cf9cdd8eb |
+9
-2
@@ -88,7 +88,9 @@ RUN CGO_ENABLED=1 make build VERSION="$VERSION" GO_LDFLAGS='-extldflags "-static
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# alpine:3.21, 2026-03-17
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FROM alpine:3.21@sha256:c3f8e73fdb79deaebaa2037150150191b9dcbfba68b4a46d70103204c53f4709
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RUN apk --no-cache add ca-certificates
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# su-exec 0.2-r3 (Alpine 3.21), 2026-09-29: the entrypoint runs the app
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# as webhooker with it.
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RUN apk --no-cache add ca-certificates su-exec=0.2-r3
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# Create non-root user
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RUN addgroup -g 1000 -S webhooker && \
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@@ -99,13 +101,17 @@ WORKDIR /app
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# Copy binary from builder
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COPY --from=builder /build/bin/webhooker /app/webhooker
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# Not under /app, which belongs to webhooker: this script runs as root.
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COPY deploy/docker-entrypoint.sh /usr/local/bin/docker-entrypoint.sh
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# Create data directory for all SQLite databases (main app DB +
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# per-webhook event DBs). DATA_DIR defaults to /var/lib/webhooker.
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RUN mkdir -p /var/lib/webhooker
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RUN chown -R webhooker:webhooker /app /var/lib/webhooker
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USER webhooker
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# No USER: the entrypoint starts as root to make the data directory
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# webhooker's, then runs the app as webhooker.
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EXPOSE 8080
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@@ -124,4 +130,5 @@ ENV BIND_ADDRESS=0.0.0.0
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HEALTHCHECK --interval=30s --timeout=3s --start-period=5s --retries=3 \
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CMD wget --no-verbose --tries=1 --spider http://localhost:8080/.well-known/healthcheck || exit 1
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ENTRYPOINT ["/usr/local/bin/docker-entrypoint.sh"]
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CMD ["/app/webhooker"]
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@@ -147,7 +147,7 @@ TTY detection, and security headers are always applied.
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| `RETENTION_SWEEP_INTERVAL` | How often the retention reaper and archive sweeper run (Go duration, must be positive) | `1h` |
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| `SESSION_IDLE_TIMEOUT` | Idle session timeout (Go duration) | `24h` |
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| `RECEIVER_RATE_LIMIT` | Receiver requests/minute per IP per entrypoint (10x that per IP across the route) | `120` |
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| `TRUSTED_PROXIES` | CIDRs whose forwarded headers are trusted. A set value replaces the default. Under the default, any client with a private address, whether it connects directly or through the proxy, can choose its own rate-limit key by sending its own `X-Forwarded-For`; if any clients have private addresses, set it to the proxy's address alone. See [Trusted proxies](#trusted-proxies) | `10.0.0.0/8,172.16.0.0/12,192.168.0.0/16` (RFC 1918) |
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| `TRUSTED_PROXIES` | CIDRs whose forwarded headers are trusted (unset: all clients behind a proxy share one rate-limit bucket; a correct login password is never throttled either way) | `""` (none) |
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| `ALLOWED_EGRESS_CIDRS` | CIDRs that delivery targets may reach despite the SSRF blocklist. Read [Allowing egress to your own network](#allowing-egress-to-your-own-network) before setting it | `""` (none) |
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#### Allowing egress to your own network
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@@ -379,48 +379,41 @@ unlocked.
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`TRUSTED_PROXIES` is a comma-separated list of CIDR blocks (a bare
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address such as `192.168.1.7` is accepted and treated as a single
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host), for example `192.168.1.7, 2001:db8::5`. It decides whose
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`X-Forwarded-For` header the rate limiters believe, so it should cover
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the addresses of your reverse proxies.
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`X-Forwarded-For` header the rate limiters believe, so it should name
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the addresses of your reverse proxies and nothing else.
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`X-Forwarded-For` is honoured **only** when the connecting peer is
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inside one of these blocks; for every other peer the client identity is
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the connection's own address and the header is ignored. Unset (or
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empty), the list is the RFC 1918 private ranges: `10.0.0.0/8`,
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`172.16.0.0/12` and `192.168.0.0/16`. That covers a reverse proxy
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reaching webhooker over a Docker network or a private LAN without
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anything set. A set value replaces the default entirely. A set but
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unparseable value aborts startup.
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the connection's own address and the header is ignored. The default is
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the empty list, which trusts nobody — anything else would let any
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client pick its own rate limit bucket, minting a fresh one per request
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or draining someone else's. Set it to the address of your reverse
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proxy, and to nothing wider. A set but unparseable value aborts
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startup.
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Trusting those ranges has two consequences for clients with private
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addresses:
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- Any such client, whether it connects directly or through the proxy,
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can choose its own rate-limit key by sending its own
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`X-Forwarded-For`. A direct client's header is walked because the
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client is itself trusted; behind the proxy, the client's own address
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is skipped as a trusted hop when the chain is walked (below), so the
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entry it wrote is taken as the client. If any of your clients have
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private addresses, you must set `TRUSTED_PROXIES` to the proxy's
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address alone.
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- A client behind the proxy that sends no `X-Forwarded-For` of its own
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shares the proxy's bucket, because its own address is skipped too.
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Setting the list to the proxy's address alone gives each its own
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bucket.
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A proxy the list does not cover, such as nginx on the same host
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reaching webhooker over loopback, is not trusted: every request through
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it keys on the proxy's own address and all clients share a single
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That default is safe against forged headers, but leaving it unset in
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production has a cost you must know about. Production runs behind a
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TLS-terminating reverse proxy, so with `TRUSTED_PROXIES` unset every
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request keys on the proxy's own address and all clients share a single
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bucket per limit. The receiver limits become service-wide ceilings,
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and the login endpoint's failure counting collapses onto one key, so a
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stranger's wrong passwords throttle every other client's wrong
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passwords. Set `TRUSTED_PROXIES` to that proxy's address to restore
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per-client buckets.
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passwords.
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What it cannot do is lock the operator out. The login endpoint
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verifies credentials **before** it consults any limit and charges only
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failures, so a correct password is never throttled no matter how full
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the bucket is. See [Rate Limiting](#rate-limiting).
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The remedy is to set `TRUSTED_PROXIES` to your reverse proxy's
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address, which restores per-client buckets. webhooker logs a warning
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at startup whenever `TRUSTED_PROXIES` is empty, in every environment,
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because behind a proxy every client shares one bucket in `dev` and
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`prod` alike. The warning is informational when nothing proxies to the
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process: with no proxy in front, the peer address is the client's own
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and the buckets are already per-client. See
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[Rate Limiting](#rate-limiting) for what each limit shares.
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`X-Real-IP` and `True-Client-IP` are **never** read, from any peer.
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Reverse proxies append to `X-Forwarded-For` but forward other client
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headers verbatim, so a single-valued header is client-controlled even
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@@ -442,14 +435,14 @@ Two operator requirements follow:
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(nginx `$proxy_add_x_forwarded_for`, HAProxy `option forwardfor`,
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Caddy and AWS ALB by default), and must append a bare address with
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no port.
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- Keep clients out of the list. Any address inside `TRUSTED_PROXIES`
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- List proxy hosts **only**. Any address inside `TRUSTED_PROXIES`
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chooses its own rate-limit key: its `X-Forwarded-For` is walked, so
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it can name a different address on every request to get a fresh
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bucket each time, or name another client's address to drain that
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client's bucket. A block that also covers clients — the default, on
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a network where clients have private addresses — makes all three
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limits, including the unauthenticated webhook receiver, silently
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bypassable by every client in the block.
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client's bucket. Never list a block that also covers clients — a
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broad `10.0.0.0/8` on a network where clients live in the same range
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makes all three limits, including the unauthenticated webhook
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receiver, silently bypassable by every client in the block.
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#### Sessions
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@@ -559,8 +552,9 @@ printf '%s' "$NEW_PASSWORD" | \
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DATA_DIR=/var/lib/webhooker webhooker resetpw admin
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```
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In a container it is the same binary, which the image sets as `CMD`
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rather than `ENTRYPOINT`, so the whole command has to be given:
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In a container it is the same binary. The image's `CMD` is
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`/app/webhooker`, and a command given to `docker run` replaces all of
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it, so the whole command has to be given:
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```bash
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docker run --rm -v webhooker-data:/var/lib/webhooker \
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@@ -697,38 +691,22 @@ those three values rather than trusting the figure. Measured at 65s on
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Docker 29.7.2.) A container `unhealthy` with `connection refused` in
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its health log, or a published port that resets connections, is this.
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The container runs as a non-root user (`webhooker`, UID 1000), exposes
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port 8080, and includes a health check against
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`/.well-known/healthcheck`. The `/var/lib/webhooker` volume holds all
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SQLite databases: the main application database (`webhooker.db`), the
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per-webhook event databases (`events-{uuid}.db`), and any archive
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databases written by `database` targets (`archive-{uuid}.db`). Mount
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this as a persistent volume to preserve data across container
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restarts.
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The app runs as a non-root user (`webhooker`, UID 1000), exposes port
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8080, and includes a health check against `/.well-known/healthcheck`.
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The `/var/lib/webhooker` volume holds all SQLite databases: the main
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application database (`webhooker.db`), the per-webhook event databases
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(`events-{uuid}.db`), and any archive databases written by `database`
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targets (`archive-{uuid}.db`). Mount this as a persistent volume to
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preserve data across container restarts.
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**The bind-mounted directory must be owned by UID 1000, or the
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container does not start.** Docker creates a `-v` source path that
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does not exist yet as `root:root`, and the process runs as UID 1000,
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||||
so it cannot take its `DATA_DIR` lock:
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||||
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||||
```
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webhooker: locking data directory /var/lib/webhooker: open
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||||
/var/lib/webhooker/webhooker.lock: permission denied
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||||
```
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It exits non-zero at that point, before opening any database. Create
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the directory ahead of the first `docker run`:
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```bash
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mkdir -p /path/to/data
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chown 1000:1000 /path/to/data
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chmod 750 /path/to/data
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||||
```
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The same `chown` is what a restore needs — see step 4 of
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[Restore](#restore). A **named volume** does not have this problem:
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Docker copies the image's ownership onto a volume it initializes, and
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the image creates `/var/lib/webhooker` owned by `webhooker`.
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||||
**The container sets its data directory's owner and mode itself
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before the app starts**, so a host directory can be mounted as it is,
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||||
whoever owns it. The image's `ENTRYPOINT`,
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||||
`deploy/docker-entrypoint.sh`, starts as root, creates `DATA_DIR` if
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it is missing, gives the directory and anything in it that belongs to
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another user to `webhooker`, sets the directory to `0750`, and only
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then runs the app as `webhooker`. Started with `--user`, it changes
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nothing and runs the app as that user.
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||||
**The file modes are not yours to set, and do not depend on the
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||||
directory.** `webhooker.db` holds target configuration in plaintext —
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@@ -736,13 +714,10 @@ bearer tokens, API keys, Slack webhook URLs — along with the session
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encryption key, so webhooker creates every SQLite file it owns `0600`:
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||||
each database and both of its `-wal` and `-shm` sidecars, across all
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||||
three tiers. Files an earlier build left `0644` are tightened when
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||||
they are opened. A `DATA_DIR` webhooker creates itself is `0750`, but
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||||
a bind mount supplies its own directory and Docker's default for one
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||||
it creates is `0755`; the `0600` files hold there regardless. The
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||||
`chmod 750` above is defence in depth — it stops other local users
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||||
listing the directory and learning your webhook UUIDs from the
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||||
`events-{uuid}.db` filenames — not the barrier protecting the
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||||
credentials.
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||||
they are opened. The directory's `0750` is defence in depth — it stops
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||||
other local users listing the directory and learning your webhook
|
||||
UUIDs from the `events-{uuid}.db` filenames — not the barrier
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||||
protecting the credentials.
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||||
|
||||
### Running under upaas
|
||||
|
||||
@@ -758,29 +733,12 @@ repository's `Dockerfile` and runs it. The app needs:
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||||
app name, port `8080`. Leave `PORT` unset: the image's health check
|
||||
probes `8080`.
|
||||
- **Volume:** one host directory mounted at `/var/lib/webhooker`.
|
||||
upaas bind-mounts the host path it is given and does not create it,
|
||||
and the container does not start unless UID 1000 owns it (see
|
||||
[Running with Docker](#running-with-docker)). Create it before the
|
||||
first deploy:
|
||||
|
||||
```bash
|
||||
mkdir -p /path/to/data
|
||||
chown 1000:1000 /path/to/data
|
||||
chmod 750 /path/to/data
|
||||
```
|
||||
|
||||
- **Environment variables:**
|
||||
- `WEBHOOKER_ENVIRONMENT=prod`
|
||||
- `TRUSTED_PROXIES`: Docker networks use private addresses, so the
|
||||
default covers your reverse proxy on that network. Under the
|
||||
default, any client with a private address, whether it connects
|
||||
directly or through the proxy, can choose its own rate-limit key
|
||||
by sending its own `X-Forwarded-For`. If any clients have private
|
||||
addresses, or the network's addresses are outside the RFC 1918
|
||||
ranges, set it to the proxy's address there. The `remoteIP` field
|
||||
of the `http request` log line for a request that came through
|
||||
the proxy shows it; the health check's own lines show `::1`. See
|
||||
[Trusted proxies](#trusted-proxies).
|
||||
- `TRUSTED_PROXIES`: your reverse proxy's address on that Docker
|
||||
network. The `remoteIP` field of the `http request` log line for a
|
||||
request that came through the proxy shows it; the health check's
|
||||
own lines show `::1`. See [Trusted proxies](#trusted-proxies).
|
||||
- Leave `BIND_ADDRESS` and `DATA_DIR` unset: the image sets
|
||||
`BIND_ADDRESS` to `0.0.0.0`, and `DATA_DIR` defaults to
|
||||
`/var/lib/webhooker`.
|
||||
@@ -843,14 +801,12 @@ reports.
|
||||
behind a proxy means the `X-Forwarded-Proto` header. The block below
|
||||
sets it; without it every request is read as plaintext and cookies
|
||||
ship without `Secure`. See [Configuration](#configuration).
|
||||
3. **Make sure `TRUSTED_PROXIES` covers the proxy's address.** Unset,
|
||||
it covers the RFC 1918 private ranges, so a proxy on a Docker
|
||||
network or a private LAN is covered and one on loopback is not. For
|
||||
a proxy it does not cover, every rate limiter keys on the connecting
|
||||
peer, which is the proxy on every request: all clients collapse into
|
||||
one global bucket per limit and the receiver's per-IP limits become
|
||||
service-wide ceilings. See [Trusted proxies](#trusted-proxies). If
|
||||
any clients have private addresses, list the proxy and nothing else.
|
||||
3. **Set `TRUSTED_PROXIES` to the proxy's address.** Unset, every rate
|
||||
limiter keys on the connecting peer, which behind a proxy is the
|
||||
proxy on every request: all clients collapse into one global bucket
|
||||
per limit and the receiver's per-IP limits become service-wide
|
||||
ceilings. See [Trusted proxies](#trusted-proxies). List the proxy
|
||||
and nothing else.
|
||||
4. **Send `Host` as `$http_host`, not `$host`.** `$host` strips the
|
||||
port. webhooker's Origin/Referer check compares against the host it
|
||||
was given, so on any port other than 443 `$host` makes every form
|
||||
@@ -1035,12 +991,12 @@ done
|
||||
`.backup` reads through the WAL and writes a single consistent file with
|
||||
no sidecars of its own, so the destination is complete as it stands.
|
||||
Two caveats. First, the runtime image is `alpine:3.21` with only
|
||||
`ca-certificates` added — the `sqlite3` CLI is **not** in it, so run
|
||||
this on the host against the volume path, or from a throwaway container
|
||||
that mounts the volume. Second, each file is captured at its own
|
||||
instant, so a webhook created or an event delivered between two files
|
||||
being copied lands in one and not the other. If you need the whole set
|
||||
coherent as of a single moment, stop the service.
|
||||
`ca-certificates` and `su-exec` added — the `sqlite3` CLI is **not** in
|
||||
it, so run this on the host against the volume path, or from a
|
||||
throwaway container that mounts the volume. Second, each file is
|
||||
captured at its own instant, so a webhook created or an event delivered
|
||||
between two files being copied lands in one and not the other. If you
|
||||
need the whole set coherent as of a single moment, stop the service.
|
||||
|
||||
Note that `sqlite3 <db> .dump` is **not** one of these procedures: it is
|
||||
an export, it holds a read transaction open for as long as it runs, and
|
||||
@@ -1094,21 +1050,11 @@ with any `-wal`/`-shm` beside it, or wait until there are none.
|
||||
archive not opened since a crash. A copy salvaged from a crashed
|
||||
instance has them for everything, and needs all of them.
|
||||
|
||||
4. **Fix ownership.** The container runs as the non-root `webhooker`
|
||||
user, UID 1000 / GID 1000. Restored files must be owned by (or
|
||||
writable by) that UID, and so must the directory itself — SQLite
|
||||
creates the `-wal` and `-shm` sidecars beside the database, so a
|
||||
writable file inside a directory it cannot write is not enough:
|
||||
|
||||
```bash
|
||||
chown -R 1000:1000 /path/to/data
|
||||
```
|
||||
|
||||
Restoring as `root` on the host and forgetting this step is the
|
||||
usual way a restore fails.
|
||||
|
||||
5. Start the service. `AutoMigrate` runs against each restored database
|
||||
as it is opened.
|
||||
4. Start the service. The container gives the directory and the
|
||||
restored files to the `webhooker` user before the app starts,
|
||||
whoever restored them (see
|
||||
[Running with Docker](#running-with-docker)). `AutoMigrate` runs
|
||||
against each restored database as it is opened.
|
||||
|
||||
### Upgrades
|
||||
|
||||
@@ -1411,11 +1357,10 @@ It uses:
|
||||
- **[go-chi/httprate](https://github.com/go-chi/httprate)** for
|
||||
sliding-window rate limiting of the password-change and webhook
|
||||
receiver endpoints. The bucket is per client IP only when
|
||||
`TRUSTED_PROXIES` covers the reverse proxy (by default it covers the
|
||||
RFC 1918 private ranges); otherwise every client behind that proxy
|
||||
shares one bucket per limit. The login endpoint counts failed
|
||||
attempts itself instead, so that a correct password is never
|
||||
throttled (see [Rate Limiting](#rate-limiting))
|
||||
`TRUSTED_PROXIES` names the reverse proxy; unset, every client
|
||||
behind that proxy shares one bucket per limit. The login endpoint
|
||||
counts failed attempts itself instead, so that a correct password is
|
||||
never throttled (see [Rate Limiting](#rate-limiting))
|
||||
- **[Prometheus](https://prometheus.io)** for metrics, served at
|
||||
`/metrics` behind basic auth
|
||||
- **[Sentry](https://sentry.io)** for optional error reporting
|
||||
@@ -2596,30 +2541,30 @@ let one subscriber rotate source addresses and mint a fresh bucket per
|
||||
request, evading these limits at the network layer without spoofing
|
||||
anything; the cost is that distinct clients inside one `/64` share a
|
||||
bucket. IPv4-mapped addresses (`::ffff:1.2.3.4`) key as the IPv4 address
|
||||
they carry. See [Trusted proxies](#trusted-proxies). When that variable
|
||||
does not cover the reverse proxy, a client behind it shares one bucket
|
||||
with every other client behind the same proxy. Set `TRUSTED_PROXIES` to
|
||||
the proxy's address to get per-client limits back. What the shared bucket
|
||||
they carry. See [Trusted proxies](#trusted-proxies). Deployed without that
|
||||
variable set, a client behind a reverse proxy shares one bucket with
|
||||
every other client behind the same proxy. Set `TRUSTED_PROXIES` to the
|
||||
proxy's address to get per-client limits back. What the shared bucket
|
||||
costs is not the same for every limiter, and the two cases pull in
|
||||
opposite directions:
|
||||
|
||||
- For the **receiver** limits it costs throughput, which is the safe
|
||||
direction to be wrong in: sharing can only make a limit bind sooner,
|
||||
never let a sender past it. It matters more for the aggregate limit
|
||||
than for the per-entrypoint one: when `TRUSTED_PROXIES` does not
|
||||
cover the reverse proxy a production deployment is required to run
|
||||
behind, every request keys on the proxy, so the aggregate limit
|
||||
becomes a service-wide ceiling of 1200 requests per minute across all
|
||||
senders and all entrypoints, where the per-entrypoint limit's
|
||||
capacity still grows with the number of entrypoints. Any deployment
|
||||
with more than a handful of busy entrypoints must make sure
|
||||
`TRUSTED_PROXIES` covers its proxy.
|
||||
than for the per-entrypoint one: with `TRUSTED_PROXIES` unset behind
|
||||
the reverse proxy a production deployment is required to run behind,
|
||||
every request keys on the proxy, so the aggregate limit becomes a
|
||||
service-wide ceiling of 1200 requests per minute across all senders
|
||||
and all entrypoints, where the per-entrypoint limit's capacity still
|
||||
grows with the number of entrypoints. Any deployment with more than a
|
||||
handful of busy entrypoints must set `TRUSTED_PROXIES`.
|
||||
- For the **login and password-change** limits it costs precision, not
|
||||
availability. Login failures from every client land in one counter,
|
||||
so a stranger's wrong passwords make the operator's own wrong
|
||||
passwords answer `429` sooner; the operator's _correct_ password is
|
||||
never affected, because it is never counted. Production deployments
|
||||
should still make sure `TRUSTED_PROXIES` covers their proxy.
|
||||
should still set `TRUSTED_PROXIES`; webhooker warns at startup
|
||||
whenever it is empty, in any environment.
|
||||
|
||||
#### The login endpoint
|
||||
|
||||
@@ -2722,10 +2667,8 @@ re-fills both verification slots on its first two requests. The
|
||||
remedies are to block the source at the reverse proxy, or to
|
||||
rate-limit `POST /pages/login` there — the one place a limit can be
|
||||
applied without reintroducing the lockout, because the proxy sees the
|
||||
real client address. `TRUSTED_PROXIES` does not stop the saturation.
|
||||
The flood's source is in the proxy's access log: webhooker's own logs
|
||||
record the proxy's address, not the client's (see
|
||||
[Deployment behind a reverse proxy](#deployment-behind-a-reverse-proxy)).
|
||||
real client address. Setting `TRUSTED_PROXIES` does not stop the
|
||||
saturation, but it makes the source visible in the failure logs.
|
||||
|
||||
Finer-grained per-webhook rate limits (configured in the web UI and
|
||||
enforced in the webhook handler) can layer on top of this env-level
|
||||
@@ -2739,7 +2682,7 @@ abuse limit later; they are tracked as future work.
|
||||
| ------ | --------------------------- | ----------- |
|
||||
| `GET` | `/` | Root redirect, 303 (authenticated → `/sources`, unauthenticated → `/pages/login`) |
|
||||
| `GET` | `/.well-known/healthcheck` | Health check (JSON: `status`, `now`, `uptimeSeconds`, `uptimeHuman`, `version`, `appname`, `maintenanceMode`) |
|
||||
| any | `/s/*` | Static file serving (embedded CSS, JS). Mounted for every method, not just `GET`/`HEAD`: chi's `Mount` registers all methods and `http.FileServer` special-cases only `HEAD` (by omitting the body), so a `POST` or `DELETE` to an asset is answered `200` with the file. Pinned by `TestStaticServesEveryMethod` |
|
||||
| `GET`, `HEAD` | `/s/*` | Static file serving (embedded CSS, JS). `GET` and `HEAD` only — `POST`, `PUT`, `PATCH`, `DELETE`, `OPTIONS`, `TRACE` and `CONNECT` are answered `405 Method Not Allowed` with `Allow: GET, HEAD`. Any other method (such as `PROPFIND`) is refused by chi before it reaches this route, and gets `405` without an `Allow` header. Pinned by `TestStaticServesOnlyGetAndHead` |
|
||||
| `POST` | `/webhook/{uuid}` | Webhook receiver endpoint. `POST` only — every other method is answered `405 Method Not Allowed` with `Allow: POST`. Rate limited (see [Rate Limiting](#rate-limiting)) |
|
||||
|
||||
#### Authentication Endpoints
|
||||
@@ -3082,13 +3025,18 @@ check, see [The login endpoint](#the-login-endpoint).
|
||||
It runs behind session auth, so only a client already holding a
|
||||
valid session reaches it, and an operator throttled out of changing
|
||||
a password can still log in. The bucket is per client IP only when
|
||||
`TRUSTED_PROXIES` covers the reverse proxy; otherwise every client
|
||||
`TRUSTED_PROXIES` names the reverse proxy; unset, every client
|
||||
shares one bucket, which costs precision rather than availability
|
||||
(see [Rate Limiting](#rate-limiting))
|
||||
(see [Rate Limiting](#rate-limiting)). webhooker warns at startup
|
||||
whenever `TRUSTED_PROXIES` is empty
|
||||
- Prometheus metrics behind basic auth
|
||||
- Static assets embedded in binary (no filesystem access needed at
|
||||
runtime)
|
||||
- Container runs as non-root user (UID 1000)
|
||||
- The app runs as the non-root `webhooker` user (UID 1000) in the
|
||||
container. The image sets no `USER`, so these run as root: the
|
||||
`ENTRYPOINT` script, which sets the data directory's owner and mode
|
||||
before the app starts; the image's health check; and `docker exec`,
|
||||
unless given `--user`
|
||||
- GORM soft deletes on every entity that carries `BaseModel`, which is
|
||||
all of them but `Setting` (data preserved for audit)
|
||||
|
||||
@@ -3215,10 +3163,13 @@ version is fixed independently of the compiler's:
|
||||
`GO_LDFLAGS`, so neither can drop the `-X` that stamps the version.
|
||||
The version arrives as the `VERSION` build arg, since the context
|
||||
has no `.git` (see [Version stamping](#version-stamping)).
|
||||
3. **Runtime stage** (`alpine:3.21`) — copies the static binary,
|
||||
creates the `/var/lib/webhooker` directory for all SQLite databases,
|
||||
runs as the non-root `webhooker` user (UID 1000), exposes port 8080,
|
||||
and includes a health check against `/.well-known/healthcheck`.
|
||||
3. **Runtime stage** (`alpine:3.21`) — copies the static binary and
|
||||
`deploy/docker-entrypoint.sh`, creates the `/var/lib/webhooker`
|
||||
directory for all SQLite databases, exposes port 8080, and includes
|
||||
a health check against `/.well-known/healthcheck`. It sets no
|
||||
`USER`: the `ENTRYPOINT` script starts as root, sets the data
|
||||
directory's owner and mode, and runs the app as the non-root
|
||||
`webhooker` user (UID 1000) through `su-exec`.
|
||||
|
||||
The lint stage invokes `golangci-lint` directly rather than `make lint`:
|
||||
it is already the pinned linter image, and `make lint` builds
|
||||
@@ -3297,3 +3248,5 @@ MIT
|
||||
## Author
|
||||
|
||||
[@sneak](https://sneak.berlin)
|
||||
|
||||
|
||||
|
||||
Executable
+22
@@ -0,0 +1,22 @@
|
||||
#!/bin/sh
|
||||
# deploy/docker-entrypoint.sh: the image's ENTRYPOINT. A bind-mounted
|
||||
# data directory keeps its owner from the host, often root, and the app
|
||||
# could not write to it. Started as root, this creates DATA_DIR if
|
||||
# needed, gives it and everything in it to webhooker, sets its mode, and
|
||||
# runs the command as webhooker, so the app never runs as root. Started
|
||||
# as another user, it only runs the command.
|
||||
set -eu
|
||||
|
||||
main() {
|
||||
if [ "$(id -u)" != 0 ]; then
|
||||
exec "$@"
|
||||
fi
|
||||
|
||||
dir="${DATA_DIR:-/var/lib/webhooker}"
|
||||
mkdir -p "$dir"
|
||||
find "$dir" ! -user webhooker -exec chown -h webhooker:webhooker {} +
|
||||
chmod 750 "$dir"
|
||||
exec su-exec webhooker "$@"
|
||||
}
|
||||
|
||||
main "$@"
|
||||
+60
-22
@@ -75,11 +75,6 @@ const (
|
||||
// internet-exposed endpoint.
|
||||
defaultReceiverRateLimit = 120
|
||||
|
||||
// defaultTrustedProxies is TRUSTED_PROXIES when it is unset: the
|
||||
// RFC 1918 private ranges, which a reverse proxy reaching the
|
||||
// process over a Docker network or a private LAN connects from.
|
||||
defaultTrustedProxies = "10.0.0.0/8,172.16.0.0/12,192.168.0.0/16"
|
||||
|
||||
// maxPort is the highest valid TCP port number. The lower
|
||||
// bound (at least 1) is enforced by envPositiveInt.
|
||||
maxPort = 65535
|
||||
@@ -177,14 +172,13 @@ type Config struct {
|
||||
|
||||
// TrustedProxies is the set of networks whose members are
|
||||
// allowed to speak for the client with X-Forwarded-For, the
|
||||
// only forwarded header read. Unless TRUSTED_PROXIES is set it
|
||||
// is the RFC 1918 private ranges (defaultTrustedProxies).
|
||||
// Other peers' forwarded headers are ignored and they are
|
||||
// identified by the connection's own address. Under the
|
||||
// default any client with a private address, directly or
|
||||
// through a proxy, can choose its own rate-limit key, so
|
||||
// where any clients have private addresses this must be set
|
||||
// to the proxy hosts alone.
|
||||
// only forwarded header read. It is empty unless
|
||||
// TRUSTED_PROXIES is set, and empty means no peer is
|
||||
// trusted: forwarded headers are then ignored entirely and
|
||||
// clients are identified by the connection's own address.
|
||||
// Members can choose their own rate-limit key, so this must
|
||||
// name proxy hosts only, never a block that also covers
|
||||
// clients.
|
||||
TrustedProxies []netip.Prefix
|
||||
|
||||
// AllowedEgressCIDRs is the set of networks a delivery target
|
||||
@@ -466,15 +460,14 @@ func parseCIDR(entry string) (netip.Prefix, error) {
|
||||
|
||||
// envPrefixList returns the value of the named environment variable
|
||||
// parsed as a comma-separated list of CIDR blocks (bare addresses
|
||||
// allowed). An unset, empty, or blank value is read as defaultValue
|
||||
// instead. A set value containing an unparseable entry is a hard
|
||||
// error naming the key and the bad entry, so startup fails loudly
|
||||
// rather than silently running with a list the operator did not
|
||||
// intend.
|
||||
func envPrefixList(key, defaultValue string) ([]netip.Prefix, error) {
|
||||
// allowed). An unset, empty, or blank value yields an empty list. A
|
||||
// set value containing an unparseable entry is a hard error naming
|
||||
// the key and the bad entry, so startup fails loudly rather than
|
||||
// silently running with a list the operator did not intend.
|
||||
func envPrefixList(key string) ([]netip.Prefix, error) {
|
||||
v := strings.TrimSpace(os.Getenv(key))
|
||||
if v == "" {
|
||||
v = defaultValue
|
||||
return nil, nil
|
||||
}
|
||||
|
||||
var prefixes []netip.Prefix
|
||||
@@ -688,12 +681,12 @@ func loadFromEnv() (*Config, error) {
|
||||
return nil, err
|
||||
}
|
||||
|
||||
trustedProxies, err := envPrefixList("TRUSTED_PROXIES", defaultTrustedProxies)
|
||||
trustedProxies, err := envPrefixList("TRUSTED_PROXIES")
|
||||
if err != nil {
|
||||
return nil, err
|
||||
}
|
||||
|
||||
allowedEgressCIDRs, err := envPrefixList("ALLOWED_EGRESS_CIDRS", "")
|
||||
allowedEgressCIDRs, err := envPrefixList("ALLOWED_EGRESS_CIDRS")
|
||||
if err != nil {
|
||||
return nil, err
|
||||
}
|
||||
@@ -767,6 +760,50 @@ func (c *Config) warnEgressAllowlist(log *slog.Logger) {
|
||||
)
|
||||
}
|
||||
|
||||
// warnSharedRateLimitBucket logs a startup warning whenever
|
||||
// TRUSTED_PROXIES is empty, in any environment.
|
||||
//
|
||||
// With no trusted proxies every rate limiter keys on the connecting
|
||||
// peer's address. Whether that is harmless or dangerous depends on
|
||||
// what is in front of the process, which this code cannot observe:
|
||||
// with nothing in front, the peer is the client and the limits are
|
||||
// per-client as intended; behind a reverse proxy the peer is the proxy
|
||||
// for every request, so all clients share one bucket per limiter.
|
||||
//
|
||||
// The login endpoint no longer spends budget on arrival — it verifies
|
||||
// credentials first and charges only failures — so a shared bucket
|
||||
// cannot deny the operator a correct password. What it does collapse
|
||||
// is the failure counting: one client's wrong passwords throttle
|
||||
// everyone else's wrong passwords, and the receiver's limits become
|
||||
// service-wide ceilings.
|
||||
//
|
||||
// The warning is deliberately not gated on WEBHOOKER_ENVIRONMENT:
|
||||
// behind a proxy every client shares one bucket in dev and prod alike.
|
||||
//
|
||||
// The default of trusting nobody is deliberate — trusting forwarded
|
||||
// headers from arbitrary peers lets any client choose its own bucket —
|
||||
// so this warns rather than failing startup or changing the key.
|
||||
func (c *Config) warnSharedRateLimitBucket(log *slog.Logger) {
|
||||
if len(c.TrustedProxies) > 0 {
|
||||
return
|
||||
}
|
||||
|
||||
log.Warn(
|
||||
"TRUSTED_PROXIES is empty: every rate limit keys on the "+
|
||||
"connecting peer's address. With nothing proxying to "+
|
||||
"this process that is the client itself and the limits "+
|
||||
"are per-client as intended. Behind a reverse proxy the "+
|
||||
"peer is the proxy on every request, so all clients "+
|
||||
"share one bucket per limit: the receiver limits become "+
|
||||
"service-wide ceilings, and one client's failed logins "+
|
||||
"throttle every other client's failed logins — a "+
|
||||
"correct password still gets in. If anything proxies to "+
|
||||
"this process, set TRUSTED_PROXIES to its address.",
|
||||
"environment", c.Environment,
|
||||
"trustedProxies", len(c.TrustedProxies),
|
||||
)
|
||||
}
|
||||
|
||||
// New creates a Config by reading environment variables.
|
||||
//
|
||||
//nolint:revive // lc parameter is required by fx even if unused.
|
||||
@@ -812,6 +849,7 @@ func New(lc fx.Lifecycle, params ConfigParams) (*Config, error) {
|
||||
"hasMetricsAuth", s.MetricsAuthEnabled(),
|
||||
)
|
||||
|
||||
s.warnSharedRateLimitBucket(log)
|
||||
s.warnEgressAllowlist(log)
|
||||
|
||||
return s, nil
|
||||
|
||||
+101
-14
@@ -551,11 +551,6 @@ func testReceiverRateLimitSuccess(
|
||||
}
|
||||
|
||||
func TestTrustedProxies(t *testing.T) {
|
||||
// Unset, the RFC 1918 private ranges are trusted, so a reverse
|
||||
// proxy on a Docker network or a private LAN is covered without
|
||||
// configuration.
|
||||
defaultProxies := []string{cidrPrivateV4, "172.16.0.0/12", "192.168.0.0/16"}
|
||||
|
||||
tests := []struct {
|
||||
name string
|
||||
set bool
|
||||
@@ -564,21 +559,18 @@ func TestTrustedProxies(t *testing.T) {
|
||||
expected []string
|
||||
}{
|
||||
{
|
||||
// The default must be "trust nobody": an empty list
|
||||
// means forwarded headers are ignored, never that
|
||||
// every peer may speak for the client.
|
||||
name: caseUnsetUsesDefault,
|
||||
set: false,
|
||||
expected: defaultProxies,
|
||||
expected: []string{},
|
||||
},
|
||||
{
|
||||
name: "blank value uses default",
|
||||
name: "blank value trusts nothing",
|
||||
set: true,
|
||||
value: " ",
|
||||
expected: defaultProxies,
|
||||
},
|
||||
{
|
||||
name: "set value replaces the default entirely",
|
||||
set: true,
|
||||
value: "203.0.113.7",
|
||||
expected: []string{"203.0.113.7/32"},
|
||||
expected: []string{},
|
||||
},
|
||||
{
|
||||
name: caseValidValueParsed,
|
||||
@@ -853,6 +845,101 @@ func TestEgressAllowlistWarning(t *testing.T) {
|
||||
}
|
||||
}
|
||||
|
||||
// TestSharedRateLimitBucketWarning covers the startup warning that
|
||||
// tells an operator a deployment behind a reverse proxy shares one
|
||||
// rate-limit bucket between every client, which turns the receiver
|
||||
// limits into service-wide ceilings and collapses login failure
|
||||
// counting. It must fire whenever TRUSTED_PROXIES is empty, in any
|
||||
// environment, because behind a proxy every client shares one bucket
|
||||
// in dev and prod alike. It stays quiet once proxies are named.
|
||||
func TestSharedRateLimitBucketWarning(t *testing.T) {
|
||||
tests := []struct {
|
||||
name string
|
||||
environment string
|
||||
trustedProxies string
|
||||
expectWarning bool
|
||||
}{
|
||||
{
|
||||
name: "prod without trusted proxies warns",
|
||||
environment: config.EnvironmentProd,
|
||||
expectWarning: true,
|
||||
},
|
||||
{
|
||||
name: "prod with trusted proxies is quiet",
|
||||
environment: config.EnvironmentProd,
|
||||
trustedProxies: cidrPrivateV4,
|
||||
expectWarning: false,
|
||||
},
|
||||
{
|
||||
name: "dev without trusted proxies warns",
|
||||
environment: config.EnvironmentDev,
|
||||
expectWarning: true,
|
||||
},
|
||||
{
|
||||
name: "dev with trusted proxies is quiet",
|
||||
environment: config.EnvironmentDev,
|
||||
trustedProxies: cidrPrivateV4,
|
||||
expectWarning: false,
|
||||
},
|
||||
}
|
||||
|
||||
for _, tt := range tests {
|
||||
t.Run(tt.name, func(t *testing.T) {
|
||||
// Cannot use t.Parallel() here because t.Setenv
|
||||
// is incompatible with parallel subtests.
|
||||
t.Setenv("WEBHOOKER_ENVIRONMENT", tt.environment)
|
||||
|
||||
if tt.trustedProxies == "" {
|
||||
require.NoError(
|
||||
t, os.Unsetenv("TRUSTED_PROXIES"),
|
||||
)
|
||||
} else {
|
||||
t.Setenv("TRUSTED_PROXIES", tt.trustedProxies)
|
||||
}
|
||||
|
||||
var buf bytes.Buffer
|
||||
|
||||
log := slog.New(slog.NewJSONHandler(
|
||||
&buf, &slog.HandlerOptions{
|
||||
Level: slog.LevelDebug,
|
||||
},
|
||||
))
|
||||
|
||||
require.NoError(
|
||||
t,
|
||||
config.WarnSharedRateLimitBucketForTest(log),
|
||||
)
|
||||
|
||||
if !tt.expectWarning {
|
||||
assert.Empty(t, buf.String())
|
||||
|
||||
return
|
||||
}
|
||||
|
||||
logged := buf.String()
|
||||
|
||||
assert.Contains(t, logged, `"level":"WARN"`)
|
||||
assert.Contains(t, logged, "TRUSTED_PROXIES")
|
||||
assert.Contains(t, logged, "share one bucket")
|
||||
assert.Contains(
|
||||
t, logged, "throttle every other client's failed logins",
|
||||
)
|
||||
// The warning must not claim a lockout the login
|
||||
// endpoint no longer permits: credentials are verified
|
||||
// before any budget is spent.
|
||||
assert.Contains(
|
||||
t, logged, "a correct password still gets in",
|
||||
)
|
||||
// The text must stay accurate for a developer with
|
||||
// nothing in front of the process, where an empty
|
||||
// list costs nothing.
|
||||
assert.Contains(
|
||||
t, logged, "nothing proxying to this process",
|
||||
)
|
||||
})
|
||||
}
|
||||
}
|
||||
|
||||
// metricsEnv describes what one subtest below puts in the
|
||||
// environment for a single METRICS_ variable. A variable that is
|
||||
// set to the empty string and one that is not set at all are
|
||||
|
||||
@@ -6,6 +6,21 @@ import "log/slog"
|
||||
// the external config_test package so each helper can be covered by
|
||||
// its own table-driven test without weakening the package API.
|
||||
|
||||
// WarnSharedRateLimitBucketForTest loads a Config from the current
|
||||
// environment and emits its startup warnings to log. The real logger
|
||||
// writes to stdout, so this lets the warning's firing condition be
|
||||
// asserted against a handler the test controls.
|
||||
func WarnSharedRateLimitBucketForTest(log *slog.Logger) error {
|
||||
c, err := loadFromEnv()
|
||||
if err != nil {
|
||||
return err
|
||||
}
|
||||
|
||||
c.warnSharedRateLimitBucket(log)
|
||||
|
||||
return nil
|
||||
}
|
||||
|
||||
// WarnEgressAllowlistForTest loads a Config from the current
|
||||
// environment and emits its egress-allowlist startup warning to
|
||||
// log, so a test can assert both that the warning fires only when
|
||||
|
||||
@@ -103,10 +103,9 @@ func (h *Handlers) renderLoginError(
|
||||
// The credential check runs BEFORE any rate-limit budget is
|
||||
// consulted, and only a failed check spends budget. That is what
|
||||
// keeps the single administrative path reachable: behind the reverse
|
||||
// proxy this deployment requires, when TRUSTED_PROXIES does not cover
|
||||
// it, every client shares one bucket, so a limiter spent on arrival
|
||||
// lets any stranger deny the operator's own correct password
|
||||
// indefinitely.
|
||||
// proxy this deployment requires, with TRUSTED_PROXIES unset, every
|
||||
// client shares one bucket, so a limiter spent on arrival lets any
|
||||
// stranger deny the operator's own correct password indefinitely.
|
||||
//
|
||||
// Verifying first means every login POST costs an Argon2id hash, so
|
||||
// the work is taken under a bounded number of verification slots.
|
||||
|
||||
@@ -25,7 +25,7 @@ const (
|
||||
|
||||
// sharedProxyPeer is the whole point of this file. Production is
|
||||
// required to run behind a TLS-terminating reverse proxy, and
|
||||
// when TRUSTED_PROXIES does not cover it every client — attacker
|
||||
// TRUSTED_PROXIES defaults to empty, so every client — attacker
|
||||
// and operator alike — reaches the process from the proxy's
|
||||
// address and shares one rate-limit bucket. Both parties in
|
||||
// these tests therefore use the same RemoteAddr.
|
||||
@@ -115,11 +115,11 @@ func floodFailures(
|
||||
// done-criterion of https://git.eeqj.de/sneak/webhooker/issues/150.
|
||||
//
|
||||
// The attacker and the operator share one rate-limit bucket, because
|
||||
// behind the mandated reverse proxy, when TRUSTED_PROXIES does not
|
||||
// cover it, every client keys on the proxy's address. The attacker
|
||||
// floods the operator's own username — a single-admin product has a
|
||||
// predictable one — far past the failure limit. The operator must
|
||||
// still be able to log in with the correct password.
|
||||
// behind the mandated reverse proxy with TRUSTED_PROXIES unset every
|
||||
// client keys on the proxy's address. The attacker floods the
|
||||
// operator's own username — a single-admin product has a predictable
|
||||
// one — far past the failure limit. The operator must still be able
|
||||
// to log in with the correct password.
|
||||
//
|
||||
// This fails if credentials stop being verified ahead of the limiter.
|
||||
func TestLogin_StrangersFloodCannotLockOutTheOperator(t *testing.T) {
|
||||
|
||||
@@ -108,10 +108,10 @@ type failureWindow struct {
|
||||
//
|
||||
// A limiter that spends budget on arrival cannot protect a
|
||||
// single-admin product: behind the reverse proxy the deployment
|
||||
// requires, when TRUSTED_PROXIES does not cover it, every client
|
||||
// keys on the proxy, so a stranger trickling five POSTs a minute
|
||||
// keeps the one bucket full and the operator's own correct password
|
||||
// is answered 429 forever. There is no second administrative path.
|
||||
// requires, with TRUSTED_PROXIES unset, every client keys on the
|
||||
// proxy, so a stranger trickling five POSTs a minute keeps the one
|
||||
// bucket full and the operator's own correct password is answered 429
|
||||
// forever. There is no second administrative path.
|
||||
//
|
||||
// So budget is spent only by a FAILED verification. A correct
|
||||
// password is never throttled, whatever the counters say, which is
|
||||
|
||||
@@ -123,8 +123,9 @@ func bucketKey(addr netip.Addr) string {
|
||||
return prefix.String()
|
||||
}
|
||||
|
||||
// isTrustedProxy reports whether addr belongs to a network in
|
||||
// TRUSTED_PROXIES, which by default is the RFC 1918 private ranges.
|
||||
// isTrustedProxy reports whether addr belongs to a network the
|
||||
// operator listed in TRUSTED_PROXIES. The list is empty by default,
|
||||
// so by default nothing is trusted.
|
||||
func (m *Middleware) isTrustedProxy(addr netip.Addr) bool {
|
||||
for _, prefix := range m.params.Config.TrustedProxies {
|
||||
if prefix.Contains(addr) {
|
||||
|
||||
@@ -426,8 +426,8 @@ func assertSharedBucket(
|
||||
}
|
||||
|
||||
// TestRateLimitKey_SpoofedForwardedFromUntrustedPeer is the test
|
||||
// this gating exists for: from a peer that is not a trusted
|
||||
// proxy, a client that rotates a forwarded header on every
|
||||
// this gating exists for: with no trusted proxies configured (the
|
||||
// default), a client that rotates a forwarded header on every
|
||||
// request must stay in one bucket. If forwarded headers were
|
||||
// trusted unconditionally, each spoofed value would mint a fresh
|
||||
// bucket and the limit would stop no one.
|
||||
|
||||
@@ -92,11 +92,25 @@ func (s *Server) setupGlobalMiddleware() {
|
||||
func (s *Server) setupRoutes() {
|
||||
s.router.Get("/", s.h.HandleIndex())
|
||||
|
||||
s.router.Mount(
|
||||
"/s",
|
||||
http.StripPrefix("/s", http.FileServer(http.FS(static.Static))),
|
||||
// Static assets answer GET and HEAD only. chi's default 405
|
||||
// carries no Allow header, so this group supplies its own.
|
||||
staticFiles := http.StripPrefix(
|
||||
"/s", http.FileServer(http.FS(static.Static)),
|
||||
)
|
||||
|
||||
s.router.Route("/s", func(r chi.Router) {
|
||||
r.MethodNotAllowed(func(w http.ResponseWriter, _ *http.Request) {
|
||||
w.Header().Set("Allow", "GET, HEAD")
|
||||
http.Error(
|
||||
w,
|
||||
"Method Not Allowed",
|
||||
http.StatusMethodNotAllowed,
|
||||
)
|
||||
})
|
||||
r.Method(http.MethodGet, "/*", staticFiles)
|
||||
r.Method(http.MethodHead, "/*", staticFiles)
|
||||
})
|
||||
|
||||
s.router.Route("/api/v1", func(_ chi.Router) {
|
||||
// API routes will be added here.
|
||||
})
|
||||
@@ -140,12 +154,11 @@ func (s *Server) setupPageRoutes() {
|
||||
r.Use(s.mw.NoCache())
|
||||
|
||||
// The login POST carries no pre-emptive rate limiter. Behind
|
||||
// the reverse proxy production requires, when TRUSTED_PROXIES
|
||||
// does not cover it, every client shares one bucket, so a
|
||||
// limiter spent on arrival lets any stranger deny the operator
|
||||
// the only administrative path. The handler verifies
|
||||
// credentials first and charges only failures; see
|
||||
// Handlers.authenticateUser.
|
||||
// the reverse proxy production requires, with TRUSTED_PROXIES
|
||||
// unset, every client shares one bucket, so a limiter spent
|
||||
// on arrival lets any stranger deny the operator the only
|
||||
// administrative path. The handler verifies credentials first
|
||||
// and charges only failures; see Handlers.authenticateUser.
|
||||
r.Get("/login", s.h.HandleLoginPage())
|
||||
r.Post("/login", s.h.HandleLoginSubmit())
|
||||
|
||||
|
||||
@@ -396,13 +396,15 @@ func (e *testEnv) storedHash(t *testing.T, username string) string {
|
||||
|
||||
// --- /s static group ---
|
||||
|
||||
// TestStaticServesEveryMethod pins what the static mount actually
|
||||
// answers. chi's Mount registers the handler for all methods and
|
||||
// http.FileServer only special-cases HEAD (by suppressing the body),
|
||||
// so a POST or a DELETE to an asset is served the file rather than
|
||||
// refused. The README documents this; the test is what keeps the two
|
||||
// from drifting.
|
||||
func TestStaticServesEveryMethod(t *testing.T) {
|
||||
// TestStaticServesOnlyGetAndHead pins the methods the static group
|
||||
// answers: GET and HEAD are served the asset, and the other methods
|
||||
// chi routes (POST, PUT, DELETE and the rest) are refused with 405
|
||||
// and an Allow header naming those two. A method chi does not route,
|
||||
// such as PROPFIND, is refused with 405 by the top-level router
|
||||
// before it reaches the static group, so it gets no Allow header.
|
||||
// The README documents this; the test is what keeps the two from
|
||||
// drifting.
|
||||
func TestStaticServesOnlyGetAndHead(t *testing.T) {
|
||||
t.Parallel()
|
||||
|
||||
env := newTestEnv(t)
|
||||
@@ -417,6 +419,7 @@ func TestStaticServesEveryMethod(t *testing.T) {
|
||||
http.MethodPost,
|
||||
http.MethodPut,
|
||||
http.MethodDelete,
|
||||
"PROPFIND",
|
||||
} {
|
||||
t.Run(method, func(t *testing.T) {
|
||||
t.Parallel()
|
||||
@@ -428,18 +431,38 @@ func TestStaticServesEveryMethod(t *testing.T) {
|
||||
w := httptest.NewRecorder()
|
||||
env.router.ServeHTTP(w, req)
|
||||
|
||||
assert.Equal(t, http.StatusOK, w.Code,
|
||||
"static mount answers every method")
|
||||
|
||||
if method == http.MethodHead {
|
||||
switch method {
|
||||
case http.MethodGet:
|
||||
assert.Equal(t, http.StatusOK, w.Code)
|
||||
assert.Equal(t, body, w.Body.Bytes(),
|
||||
"the asset itself is returned")
|
||||
case http.MethodHead:
|
||||
assert.Equal(t, http.StatusOK, w.Code)
|
||||
assert.Empty(t, w.Body.Bytes(),
|
||||
"HEAD must not carry a body")
|
||||
|
||||
return
|
||||
case "PROPFIND":
|
||||
assert.Equal(
|
||||
t, http.StatusMethodNotAllowed, w.Code,
|
||||
)
|
||||
assert.Empty(t, w.Header().Get("Allow"),
|
||||
"chi refuses a method it does not route "+
|
||||
"before the static group runs")
|
||||
assert.NotContains(
|
||||
t, w.Body.String(), string(body),
|
||||
"a refused method must not get the asset",
|
||||
)
|
||||
default:
|
||||
assert.Equal(
|
||||
t, http.StatusMethodNotAllowed, w.Code,
|
||||
)
|
||||
assert.Equal(
|
||||
t, "GET, HEAD", w.Header().Get("Allow"),
|
||||
)
|
||||
assert.NotContains(
|
||||
t, w.Body.String(), string(body),
|
||||
"a refused method must not get the asset",
|
||||
)
|
||||
}
|
||||
|
||||
assert.Equal(t, body, w.Body.Bytes(),
|
||||
"the asset itself is returned")
|
||||
})
|
||||
}
|
||||
}
|
||||
|
||||
Reference in New Issue
Block a user