Field report: a Bedrock Claude Sonnet 4.6 request showing 3 input / 1514 output tokens displayed a cost of $0.1372 instead of the expected $0.0227. Root cause analysis: the calculation is correct — the request's first call also wrote a ~30.5k-token prompt cache (cache_creation_input_tokens, billed at 1.25x input per AWS pricing), which is folded into total_tokens and the cost but not visible next to the input/output counts. Lock the pipeline down with tests so any real calculation regression fails loudly: - Add a provider cost matrix test driving the real proxy pipeline (llm_request_parser -> llm_response_parser -> cost_meter) with realistic wire fixtures for every metered surface (OpenAI JSON/SSE incl. cached subset, Anthropic JSON/SSE incl. cache buckets, Bedrock InvokeModel and Converse in both buffered and streaming form, Vertex path-routed, Kimi Anthropic-shape, unpriced gateway-prefixed ids) against the embedded default pricing table, asserting exact USD amounts derived from the published per-million prices. Covers the reported scenario byte-for-byte ($0.022719 bare, $0.137199 with the 30,528-token cache write) and would catch a per-token-instead-of-per-1k-chunk regression as a 1000x blowup. - Pin the management catalog (dashboard-displayed prices) to the proxy's embedded pricing table so the two can never drift apart silently. - Validate cost end-to-end in the live e2e provider matrix: each provider's ingested access-log row must carry a cost_usd matching the vendor's published per-1k rates applied to the row's token counts (cache-aware for the additive Anthropic/Bedrock buckets, zero for gateway-prefixed model ids the meter deliberately skips). - Fix a real under-billing bug the audit surfaced: the Bedrock Converse shapes report prompt-cache usage as camelCase cacheReadInputTokens / cacheWriteInputTokens, which neither the buffered parser nor the converse-stream metadata handler read - cached Converse traffic was metered without its cache buckets. Parse both fields into the same Usage buckets as the InvokeModel snake_case fields.
Netbird Reverse Proxy
The NetBird Reverse Proxy is a separate service that can act as a public entrypoint to certain resources within a NetBird network. At a high level, the way that it operates is:
- Configured routes are communicated from the Management server to the proxy.
- For each route the proxy creates a NetBird connection to the NetBird Peer that hosts the resource.
- When traffic hits the proxy at the address and path configured for the proxied resource, the NetBird Proxy brings up a relevant authentication method for that resource.
- On successful authentication the proxy will forward traffic onwards to the NetBird Peer.
Proxy Authentication methods supported are:
- No authentication
- Oauth2/OIDC
- Emailed Magic Link
- Simple PIN
- HTTP Basic Auth Username and Password
Management Connection and Authentication
The Proxy communicates with the Management server over a gRPC connection. Proxies act as clients to the Management server, the following RPCs are used:
- Server-side streaming for proxied service updates.
- Client-side streaming for proxy logs.
To authenticate with the Management server, the proxy server uses Machine-to-Machine OAuth2. If you are using the embedded IdP //TODO: explain how to get credentials. Otherwise, create a new machine-to-machine profile in your IdP for proxy servers and set the relevant settings in the proxy's environment or flags (see below).
User Authentication
When a request hits the Proxy, it looks up the permitted authentication methods for the Host domain. If no authentication methods are registered for the Host domain, then no authentication will be applied (for fully public resources). If any authentication methods are registered for the Host domain, then the Proxy will first serve an authentication page allowing the user to select an authentication method (from the permitted methods) and enter the required information for that authentication method. If the user is successfully authenticated, their request will be forwarded through to the Proxy to be proxied to the relevant Peer. Successful authentication does not guarantee a successful forwarding of the request as there may be failures behind the Proxy, such as with Peer connectivity or the underlying resource.
TLS
Due to the authentication provided, the Proxy uses HTTPS for its endpoint, even if the underlying service is HTTP.
Certificate generation can either be via ACME (by default, using Let's Encrypt, but alternative ACME providers can be used) or through certificate files.
When not using ACME, the proxy server attempts to load a certificate and key from the files tls.crt and tls.key in a specified certificate directory.
When using ACME, the proxy server will store generated certificates in the specified certificate directory.
Auth UI
The authentication UI is a Vite + React application located in the web/ directory. It is embedded into the Go binary at build time.
To build the UI:
cd web
npm install
npm run build
For UI development with hot reload (served at http://localhost:3031):
npm run dev
The built assets in web/dist/ are embedded via //go:embed and served by the web.ServeHTTP handler.
Configuration
NetBird Proxy deployment configuration is via flags or environment variables, with flags taking precedence over the environment. The following deployment configuration is available:
| Flag | Env | Purpose | Default |
|---|---|---|---|
-debug |
NB_PROXY_DEBUG_LOGS |
Enable debug logging | false |
-mgmt |
NB_PROXY_MANAGEMENT_ADDRESS |
The address of the management server for the proxy to get configuration from. | "https://api.netbird.io:443" |
-addr |
NB_PROXY_ADDRESS |
The address that the reverse proxy will listen on. | ":443 |
-url |
NB_PROXY_URL |
The URL that the proxy will be reached at (where endpoints will be CNAMEd to). If unset, this will fall back to the proxy address. | "proxy.netbird.io" |
-cert-dir |
NB_PROXY_CERTIFICATE_DIRECTORY |
The location that certificates are stored in. | "./certs" |
-acme-certs |
NB_PROXY_ACME_CERTIFICATES |
Whether to use ACME to generate certificates. | false |
-acme-addr |
NB_PROXY_ACME_ADDRESS |
The HTTP address the proxy will listen on to respond to HTTP-01 ACME challenges | ":80" |
-acme-dir |
NB_PROXY_ACME_DIRECTORY |
The directory URL of the ACME server to be used | "https://acme-v02.api.letsencrypt.org/directory" |
-oidc-id |
NB_PROXY_OIDC_CLIENT_ID |
The OAuth2 Client ID for OIDC User Authentication | "netbird-proxy" |
-oidc-secret |
NB_PROXY_OIDC_CLIENT_SECRET |
The OAuth2 Client Secret for OIDC User Authentication | "" |
-oidc-endpoint |
NB_PROXY_OIDC_ENDPOINT |
The OAuth2 provider endpoint for OIDC User Authentication | "https://api.netbird.io/oauth2" |
-oidc-scopes |
NB_PROXY_OIDC_SCOPES |
The OAuth2 scopes for OIDC User Authentication, comma separated | "openid,profile,email" |