v0.17.0 mtls added to network chain, sinks, and sources
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@@ -10,16 +10,20 @@ configure it, and — equally important — what it does not yet do.
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| TLS 1.2 / 1.3 on all network sources and sinks | Implemented |
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| Server certificate verification by dialers | Implemented |
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| Mutual TLS (client certificate required and verified) | Implemented at the transport layer |
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| Peer identity (certificate CN) recorded per session | Implemented |
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| Authorization from peer identity (CN allow-lists, node binding) | **Not implemented** — see [mtls-auth-plan.md](mtls-auth-plan.md) |
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| Peer identity recorded per session | Implemented |
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| Authorization from peer identity (allow-lists, node binding) | Implemented — see [The Auth Block](#the-auth-block) |
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| Authentication on the `http` sink's stream and status endpoints | Implemented, via the auth block |
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| Server identity pinning by dialers | Implemented, via the auth block |
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| Certificate revocation lists (CRL) or OCSP | **Not implemented** — revoke by editing the allow-list |
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| Password, token, or SCRAM authentication | **Removed**; not currently available |
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| IP allow/deny lists, per-IP connection or request limits | **Not implemented** |
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| Authentication on the `http` sink's stream and status endpoints | **Not implemented** |
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Earlier releases carried basic-auth, bearer-token, and SCRAM authentication.
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Those were removed during the move to the plugin/flow architecture and the
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switch to standard-library networking. Only certificate-based transport
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security survived that transition.
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switch to standard-library networking. Certificates are the one credential the
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transport still carries, so they are what authentication is built on: the `tls`
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block establishes that a peer chains to your CA, and the `auth` block decides
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which peers that CA vouches for may actually do what.
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## The TLS Block
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@@ -76,6 +80,130 @@ Misconfiguration fails at plugin construction, before the pipeline starts:
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certificates
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- a `min_version` that is neither `"1.2"` nor `"1.3"`
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## The Auth Block
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TLS answers "is this channel private, and does the peer chain to a CA". Auth
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answers "may *this* peer do *this*". They are separate blocks because they are
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separate questions, and because a later non-certificate method should be able to
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reuse the second one.
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```toml
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[pipelines.plugin_sources.config.auth] # or plugin_sinks.config.auth
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type = "none" # none | mtls
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identity = "cn" # cn | san_dns | san_uri | san_email
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allow = []
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allow_patterns = []
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node_binding = "force" # chain sources only
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```
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| Option | Type | Default | Description |
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|--------|------|---------|-------------|
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| `type` | string | `none` | `none` ignores the whole block; `mtls` authorizes by certificate identity |
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| `identity` | string | `cn` | Which certificate field carries the identity |
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| `allow` | []string | `[]` | Exact identities to admit |
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| `allow_patterns` | []string | `[]` | RE2 patterns matched against the identity; anchor them yourself |
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| `node_binding` | string | `force` under `mtls` | Chain sources only: `none`, `assert`, or `force` |
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**Roles by plugin:**
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| Plugin | Role | Decides |
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|--------|------|---------|
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| `tcp_chain` source, `http_chain` source | Listener | Which senders may ingest, and what node label their entries carry |
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| `tcp` sink, `http` sink | Listener | Which clients may read the stream (and, on `http`, the status endpoint) |
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| `tcp_chain` sink, `http_chain` sink | Dialer | Which server identity to accept, beyond hostname verification |
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### Identity
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The identity is one string pulled from the peer's verified leaf certificate.
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The handshake has already checked the chain, signature, and validity window, so
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this is pure field selection.
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| Mode | Source | Typical use |
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|------|--------|-------------|
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| `cn` (default) | `Subject.CommonName` | Matches the existing `tls_peer_cn` metadata |
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| `san_dns` | first DNS SAN | Host identities |
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| `san_uri` | first URI SAN | SPIFFE-style IDs |
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| `san_email` | first email SAN | Operator identities |
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A certificate with no usable value in the chosen field is rejected. An empty
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identity is a refusal, not an empty match.
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### The allow list
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`allow` is an exact-match set; `allow_patterns` holds RE2 patterns. An identity
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passes if it appears in either.
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Leaving **both** empty under `type = "mtls"` admits any identity the CA vouches
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for. That is deliberate — it is how you enable node binding without enumerating
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a whole fleet — but it is announced rather than silent:
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```
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WARN msg="Auth policy admits any identity the configured CA vouches for"
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component=tcp_chain_source instance_id=in_tcp
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hint="set auth.allow or auth.allow_patterns to authorize named peers"
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```
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Anchor your patterns. `allow_patterns = ["edge-\\d{2}"]` matches
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`evil-edge-01-impostor`; `["^edge-\\d{2}$"]` does not.
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### Node binding
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`node_binding` applies only to the chain sources, and it overrides `trust_node`.
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| Value | Connection label | Per-entry `node` field |
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|-------|------------------|------------------------|
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| `none` | `trust_node` governs | `trust_node` governs |
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| `assert` | Must equal the identity; a mismatch or an omission is rejected | `trust_node` governs |
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| `force` | Ignored; the identity is used | Overwritten with the identity |
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Use **`force`** on an ingest boundary you do not trust. Every entry is
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relabelled, so a compromised edge cannot smuggle a foreign origin through the
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per-entry `node` field either. It is the default under `type = "mtls"`.
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Use **`assert`** on a relay-to-relay hop. The relay must prove its own identity —
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a mismatch fails loudly instead of being silently corrected — but the entries it
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forwards keep the origin labels stamped at the first hop, so multi-hop
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attribution survives.
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When binding is active the source says so at startup:
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```
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INFO msg="Node labels bound to peer identity; trust_node is ignored"
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component=tcp_chain_source node_binding=force trust_node=true
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```
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### Dialer-side pinning
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On a chain sink, the same block pins the *server's* identity. Hostname
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verification already proves the server holds a certificate valid for the address
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you dialed; pinning additionally requires that certificate to name an identity
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you listed.
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```toml
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[pipelines.plugin_sinks.config.auth]
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type = "mtls"
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allow = ["relay.internal"]
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```
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The check runs as part of the handshake, so a server the policy rejects never
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receives an entry — the sink's normal backoff loop handles it like any other
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connect failure. `insecure_skip_verify` is refused alongside `type = "mtls"`:
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an identity read from an unverified chain is a claim, not a fact.
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### Validation
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Misconfiguration fails at plugin construction, before the pipeline starts:
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- `type = "mtls"` on a listener without `tls.enabled` **and** `tls.client_auth`
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- `type = "mtls"` on a dialer without `tls.enabled`, or with
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`tls.insecure_skip_verify`
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- an `identity` that is not one of the four modes
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- an `allow_patterns` entry that does not compile
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- a `node_binding` that is not one of the three values, or one set on a plugin
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that has no node concept
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Errors read like `auth: type "mtls" requires tls.client_auth`.
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## Enabling mTLS
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### 1. Generate a CA and certificates
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@@ -119,8 +247,17 @@ key_file = "/etc/logwisp/tls/relay.key"
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client_auth = true
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client_ca_file = "/etc/logwisp/tls/ca.crt"
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min_version = "1.3"
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[pipelines.plugin_sources.config.auth]
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type = "mtls"
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allow = ["edge-01", "edge-02"]
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node_binding = "force"
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```
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Without the `auth` block the listener accepts every certificate the CA issued.
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With it, only `edge-01` and `edge-02` may ingest, and their entries are labelled
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from their certificates rather than from whatever they declare.
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### 3. Configure the dialer
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```toml
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@@ -130,15 +267,21 @@ ca_file = "/etc/logwisp/tls/ca.crt"
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cert_file = "/etc/logwisp/tls/edge-01.crt"
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key_file = "/etc/logwisp/tls/edge-01.key"
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min_version = "1.3"
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[pipelines.plugin_sinks.config.auth]
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type = "mtls"
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allow = ["relay.internal"]
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```
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### 4. Verify
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Startup logs report both flags:
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Startup logs report the transport flags and the compiled policy:
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```
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INFO msg="TCP chain source initialized" ... tls=true mtls=true
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auth="mtls identity=cn allow=[2 exact, 0 pattern(s)] node_binding=force"
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INFO msg="TCP chain sink initialized" ... tls=true mtls=true
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auth="mtls identity=cn allow=[1 exact, 0 pattern(s)] node_binding=none"
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```
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A client that presents no certificate is refused during the handshake:
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@@ -148,60 +291,65 @@ WARN msg="TLS handshake failed" component=tcp_chain_source
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remote_addr=127.0.0.1:53840 error="tls: client didn't provide a certificate"
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```
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Handshake failures are counted in the `tls_handshake_errors` statistic on the
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`tcp` sink and the `tcp_chain` source.
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A client whose certificate is valid but whose identity is not authorized gets
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past the handshake and is refused by the policy:
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## What mTLS Currently Buys You
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```
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WARN msg="Connection rejected by auth policy" component=tcp_chain_source
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remote_addr=127.0.0.1:33946 error="auth: identity \"edge-99\" is not allowed"
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```
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With `client_auth = true`, the transport enforces:
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Handshake failures are counted in `tls_handshake_errors`; policy rejections in
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`auth_rejected`. Both appear in the status reporter and in the `http` sink's
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status endpoint. Accepted peers are recorded in session metadata as
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`auth_method` and `auth_identity`.
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- the peer holds a certificate chaining to `client_ca_file`
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- the certificate is within its validity window and not structurally broken
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- the peer holds the matching private key
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`test/mtls-chain-test.sh` builds a throwaway PKI and exercises the whole surface
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end to end — run it with `--auto` to see each guarantee asserted.
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That is a real membership check: an attacker without a CA-issued certificate
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cannot connect at all.
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## What Each Layer Enforces
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## What It Does Not Buy You
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**`tls` with `client_auth = true`** — a membership check. The peer holds a
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certificate chaining to `client_ca_file`, within its validity window, and holds
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the matching private key. An attacker without a CA-issued certificate cannot
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connect at all. What it does *not* decide is which CA-issued certificate: every
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one is equivalent at this layer.
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**Any** valid certificate from the configured CA is accepted. LogWisp extracts
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the peer's Common Name into session metadata (`tls_peer_cn`) but never consults
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it, so within one CA there is no way to express:
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**`auth` with `type = "mtls"`** — an identity check, per listener:
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- "only `edge-01` and `edge-02` may connect to this ingest port"
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- "the node label `edge-01` may only be claimed by the holder of the `edge-01`
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certificate"
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- "this certificate may connect but only at this rate"
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- only the identities you list may connect, so one CA can serve several trust
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domains and a single peer can be withdrawn without touching the others
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- the chain `node` label is bound to the certificate, so a compromised edge
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cannot attribute its entries to another host
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- the `http` sink's stream and status endpoints stop being open to anyone who
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can reach the port
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Two consequences follow.
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**Revocation** is the allow-list, not a CRL. Remove the identity from `allow` /
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`allow_patterns` and send `SIGHUP`: the reload rebuilds every pipeline, so the
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change takes effect on the next connection and existing ones are dropped by the
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rebuild. No network call on the handshake path, and no window between revocation
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and the next CRL publication. See
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[mtls-auth-plan.md](mtls-auth-plan.md#not-implemented) for what CRL support
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would add.
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1. **A compromised edge can impersonate any other edge.** With
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`trust_node = true` (the default) a peer declares its own node label. Any
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certificate holder can claim `edge-99`, or `relay`, and downstream consumers
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will attribute its entries accordingly. Setting `trust_node = false` replaces
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the label with the remote address, which is coarse but not forgeable at the
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application layer.
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2. **Revocation is CA-wide.** With no CRL or OCSP checking and no per-identity
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allow-list, withdrawing one node's access means re-issuing the CA or rotating
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the CA bundle for every peer.
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## Surfaces Without Access Control
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Closing both gaps is the subject of the
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[mTLS authentication plan](mtls-auth-plan.md).
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An `auth` block closes each of these. Without one, bind them to a trusted
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interface or front them with an authenticating proxy.
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## Unauthenticated Surfaces
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These endpoints have no access control at all. Bind them to a trusted interface
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or front them with an authenticating proxy.
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| Surface | Exposure |
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|---------|----------|
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| Surface | Exposure when `auth.type = "none"` |
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|---------|-----------------------------------|
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| `http` sink `stream_path` | Full log stream, with `Access-Control-Allow-Origin: *`, so any browser origin can read it |
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| `http` sink `status_path` | Host, port, TLS flag, uptime, client counts, throughput counters |
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| `tcp` sink | Full log stream to any client that connects |
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| `tcp_chain` / `http_chain` source | Ingest from any peer the CA vouches for, under any node label it claims |
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`max_connections` bounds concurrency on all three but does not distinguish
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`max_connections` bounds concurrency on all of them but does not distinguish
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callers.
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Note that `auth` requires `client_auth = true`, which requires TLS. There is no
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way to authenticate a plaintext listener.
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## Operational Guidance
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**Certificates**
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@@ -211,7 +359,10 @@ callers.
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- Key files should be `0600` and owned by the service account.
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- Rotation requires a reload (`SIGHUP`), because certificates are loaded once at
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plugin construction; there is no on-disk watch for certificate files.
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- Check expiry: `openssl x509 -in relay.crt -noout -enddate`.
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- Check expiry yourself: `openssl x509 -in relay.crt -noout -enddate`. Nothing
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warns before a certificate lapses; it surfaces as a handshake failure.
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- Keep the identity field you authorize on stable across rotations. Reissuing a
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leaf with a different CN silently drops the peer out of the allow list.
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**Deployment**
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@@ -220,8 +371,10 @@ callers.
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- Never enable `insecure_skip_verify` outside a lab; it disables server
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verification entirely and makes the connection trivially interceptable.
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- Bind listeners to specific interfaces rather than `0.0.0.0` where you can.
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- Use `trust_node = false` on any ingest port reachable from a network you do
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not fully control.
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- On any ingest port reachable from a network you do not fully control, set
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`auth.type = "mtls"` with an explicit `allow` list. `trust_node = false` is the
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fallback when certificates are not an option; it is unforgeable but labels
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entries by remote address, which is useless behind NAT or a load balancer.
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- Run LogWisp as an unprivileged user with write access only to its own log and
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configuration directories.
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