Inbound email: a provider POSTs a normalized JSON message to
POST /api/v1/email-inbound/{app_id}/{trigger_id}; the public receiver
verifies the optional HMAC signature, builds a TriggerEvent::Email, and
enqueues an outbox row the dispatcher delivers like any async trigger.
Handlers see ctx.event.email = #{from,to,cc,subject,text,html,
received_at,message_id}.
- migration 0024: widen triggers.kind + outbox.source_kind CHECKs to
'email'; new email_trigger_details table.
- TriggerKind::Email, TriggerDetails::Email{has_inbound_secret},
OutboxSourceKind::Email, TriggerEvent::Email; dispatcher routes the
email row via the generic resolve_trigger path.
- Admin POST /apps/{id}/triggers/email (validate_trigger_target; module
+ cross-app rejection). inbound_secret is stored ENCRYPTED via the
master key (deviation from the brief's plaintext default; decrypted
per inbound request — see HANDBACK §7).
- Dashboard: email trigger form on the Triggers tab + webhook URL +
expected-payload help.
- 8 DB-gated e2e tests (202/401/404/422/cross-app/handler-fire) +
receiver unit tests (HMAC verify, secret round-trip, payload parse).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
308 lines
10 KiB
Rust
308 lines
10 KiB
Rust
//! `POST /api/v1/email-inbound/{app_id}/{trigger_id}` — the inbound-email
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//! webhook receiver (v1.1.7).
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//!
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//! A configured provider (Mailgun / Postmark / SendGrid / SES) POSTs a
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//! normalized JSON message here; the receiver verifies the optional HMAC
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//! signature, builds a `TriggerEvent::Email`, and enqueues an outbox row
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//! the dispatcher picks up like any other async trigger.
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//!
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//! This is a PUBLIC endpoint (no admin auth) — the trigger URL itself,
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//! plus the per-trigger HMAC secret, are the security boundary. It is
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//! mounted OUTSIDE the `require_authenticated` layer.
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//!
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//! Status codes:
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//! * 202 — accepted + enqueued
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//! * 401 — HMAC required but missing/invalid
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//! * 404 — trigger missing, disabled, not `kind=email`, or app mismatch
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//! * 422 — body is not the expected JSON shape
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//!
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//! Only the generic provider-agnostic JSON shape is accepted in v1.1.7
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//! (see [`InboundPayload`]); provider-specific unmarshallers are v1.2.
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use std::sync::Arc;
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use axum::body::Bytes;
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use axum::extract::{Path, State};
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use axum::http::{HeaderMap, StatusCode};
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use axum::response::{IntoResponse, Json, Response};
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use axum::routing::post;
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use axum::Router;
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use hmac::{Hmac, Mac};
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use picloud_shared::{AppId, MasterKey, TriggerEvent, TriggerId};
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use serde::Deserialize;
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use serde_json::json;
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use sha2::Sha256;
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use crate::outbox_repo::{NewOutboxRow, OutboxRepo, OutboxSourceKind};
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use crate::secrets_repo::StoredSecret;
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use crate::secrets_service::open;
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use crate::trigger_repo::TriggerRepo;
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type HmacSha256 = Hmac<Sha256>;
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/// Header the provider's HMAC signature is read from. The signature is
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/// the lowercase hex of `HMAC-SHA256(inbound_secret, raw_body)`.
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const SIGNATURE_HEADER: &str = "x-picloud-signature";
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#[derive(Clone)]
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pub struct EmailInboundState {
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pub triggers: Arc<dyn TriggerRepo>,
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pub outbox: Arc<dyn OutboxRepo>,
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pub master_key: MasterKey,
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}
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pub fn email_inbound_router(state: EmailInboundState) -> Router {
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Router::new()
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.route(
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"/email-inbound/{app_id}/{trigger_id}",
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post(receive_inbound_email),
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)
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.with_state(state)
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}
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/// The generic provider-agnostic inbound shape. Users configure their
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/// provider's webhook templating to POST this. `from` is required;
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/// everything else defaults.
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#[derive(Debug, Deserialize)]
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struct InboundPayload {
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from: String,
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#[serde(default)]
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to: Vec<String>,
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#[serde(default)]
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cc: Vec<String>,
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#[serde(default)]
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subject: String,
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#[serde(default)]
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text: Option<String>,
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#[serde(default)]
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html: Option<String>,
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#[serde(default)]
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message_id: Option<String>,
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}
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async fn receive_inbound_email(
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State(s): State<EmailInboundState>,
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Path((app_id, trigger_id)): Path<(AppId, TriggerId)>,
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headers: HeaderMap,
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body: Bytes,
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) -> Result<StatusCode, EmailInboundError> {
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// Resolve the trigger. 404 covers missing / wrong-kind / cross-app /
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// disabled — all "this URL doesn't address a live email trigger".
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let target = s
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.triggers
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.email_inbound_target(trigger_id)
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.await
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.map_err(|e| EmailInboundError::Backend(e.to_string()))?
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.ok_or(EmailInboundError::NotFound)?;
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if target.app_id != app_id || !target.enabled {
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return Err(EmailInboundError::NotFound);
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}
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// HMAC verification (only when the trigger has a secret configured).
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if let (Some(ct), Some(nonce)) = (
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target.inbound_secret_encrypted.as_ref(),
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target.inbound_secret_nonce.as_ref(),
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) {
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let secret = decrypt_secret(&s.master_key, ct, nonce)?;
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verify_signature(&headers, &body, secret.as_bytes())?;
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}
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// Parse the generic JSON shape. Malformed → 422.
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let payload: InboundPayload =
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serde_json::from_slice(&body).map_err(|e| EmailInboundError::Malformed(e.to_string()))?;
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let event = TriggerEvent::Email {
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from: payload.from,
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to: payload.to,
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cc: payload.cc,
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subject: payload.subject,
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text: payload.text,
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html: payload.html,
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received_at: chrono::Utc::now(),
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message_id: payload.message_id,
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};
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let payload_json = serde_json::to_value(&event)
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.map_err(|e| EmailInboundError::Backend(format!("serialize event: {e}")))?;
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s.outbox
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.insert(NewOutboxRow {
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app_id,
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source_kind: OutboxSourceKind::Email,
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trigger_id: Some(trigger_id),
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script_id: Some(target.script_id),
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reply_to: None,
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payload: payload_json,
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origin_principal: Some(target.registered_by_principal),
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// Inbound email is the root of a trigger chain (depth 1).
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trigger_depth: 1,
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root_execution_id: None,
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})
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.await
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.map_err(|e| EmailInboundError::Backend(e.to_string()))?;
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Ok(StatusCode::ACCEPTED)
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}
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/// Decrypt the stored inbound secret back to its raw string. It was
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/// sealed as a JSON string by the admin layer, so `open` yields a
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/// `Value::String`.
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fn decrypt_secret(
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master_key: &MasterKey,
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ciphertext: &[u8],
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nonce: &[u8],
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) -> Result<String, EmailInboundError> {
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let stored = StoredSecret {
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encrypted_value: ciphertext.to_vec(),
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nonce: nonce.to_vec(),
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};
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let value = open(master_key, &stored).map_err(|_| {
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// Corrupted secret means we can't verify — fail closed (401).
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EmailInboundError::Unauthorized
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})?;
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value
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.as_str()
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.map(str::to_string)
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.ok_or(EmailInboundError::Unauthorized)
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}
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/// Constant-time HMAC-SHA256 verification of the body against the
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/// `X-Picloud-Signature` header (lowercase hex).
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fn verify_signature(
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headers: &HeaderMap,
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body: &[u8],
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secret: &[u8],
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) -> Result<(), EmailInboundError> {
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let provided_hex = headers
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.get(SIGNATURE_HEADER)
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.and_then(|h| h.to_str().ok())
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.ok_or(EmailInboundError::Unauthorized)?;
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let provided = hex::decode(provided_hex.trim()).map_err(|_| EmailInboundError::Unauthorized)?;
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let mut mac =
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HmacSha256::new_from_slice(secret).map_err(|_| EmailInboundError::Unauthorized)?;
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mac.update(body);
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mac.verify_slice(&provided)
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.map_err(|_| EmailInboundError::Unauthorized)
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}
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#[derive(Debug, thiserror::Error)]
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pub enum EmailInboundError {
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#[error("trigger not found")]
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NotFound,
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#[error("invalid signature")]
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Unauthorized,
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#[error("malformed body: {0}")]
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Malformed(String),
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#[error("backend: {0}")]
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Backend(String),
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}
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impl IntoResponse for EmailInboundError {
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fn into_response(self) -> Response {
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let (status, body) = match &self {
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Self::NotFound => (
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StatusCode::NOT_FOUND,
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json!({ "error": "trigger not found" }),
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),
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Self::Unauthorized => (
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StatusCode::UNAUTHORIZED,
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json!({ "error": "invalid or missing signature" }),
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),
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Self::Malformed(m) => (
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StatusCode::UNPROCESSABLE_ENTITY,
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json!({ "error": format!("malformed inbound email body: {m}") }),
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),
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Self::Backend(e) => {
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tracing::error!(error = %e, "inbound email receiver backend error");
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(
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StatusCode::INTERNAL_SERVER_ERROR,
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json!({ "error": "internal error" }),
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)
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}
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};
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(status, Json(body)).into_response()
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}
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}
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#[cfg(test)]
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mod tests {
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//! Unit tests for the security-critical helpers (HMAC verify, secret
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//! round-trip, payload parsing). The full request flow — 202 / 401 /
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//! 404 / 422 / cross-app — is exercised end-to-end against a real
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//! Postgres in `crates/picloud/tests/email_inbound.rs`.
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use super::*;
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use crate::secrets_service::seal;
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use crate::secrets_service::DEFAULT_SECRET_MAX_VALUE_BYTES;
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fn sign(secret: &[u8], body: &[u8]) -> String {
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let mut mac = HmacSha256::new_from_slice(secret).unwrap();
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mac.update(body);
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hex::encode(mac.finalize().into_bytes())
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}
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fn headers_with_sig(sig: &str) -> HeaderMap {
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let mut h = HeaderMap::new();
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h.insert(SIGNATURE_HEADER, sig.parse().unwrap());
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h
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}
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#[test]
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fn valid_signature_verifies() {
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let secret = b"shhh";
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let body = br#"{"from":"a@b.com"}"#;
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let sig = sign(secret, body);
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assert!(verify_signature(&headers_with_sig(&sig), body, secret).is_ok());
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}
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#[test]
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fn wrong_signature_rejected() {
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let body = br#"{"from":"a@b.com"}"#;
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let sig = sign(b"shhh", body);
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let err = verify_signature(&headers_with_sig(&sig), body, b"different").unwrap_err();
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assert!(matches!(err, EmailInboundError::Unauthorized));
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}
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#[test]
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fn missing_signature_header_rejected() {
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let err = verify_signature(&HeaderMap::new(), b"body", b"secret").unwrap_err();
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assert!(matches!(err, EmailInboundError::Unauthorized));
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}
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#[test]
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fn tampered_body_fails_verification() {
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let secret = b"shhh";
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let sig = sign(secret, b"original");
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let err = verify_signature(&headers_with_sig(&sig), b"tampered", secret).unwrap_err();
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assert!(matches!(err, EmailInboundError::Unauthorized));
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}
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#[test]
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fn secret_round_trips_through_seal_open() {
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let key = MasterKey::from_bytes([3u8; 32]);
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let (ct, nonce) = seal(
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&key,
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&serde_json::Value::String("provider-secret".into()),
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DEFAULT_SECRET_MAX_VALUE_BYTES,
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)
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.unwrap();
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let recovered = decrypt_secret(&key, &ct, &nonce).unwrap();
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assert_eq!(recovered, "provider-secret");
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// And a signature made with the recovered secret verifies.
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let body = br#"{"from":"x@y.com"}"#;
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let sig = sign(recovered.as_bytes(), body);
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assert!(verify_signature(&headers_with_sig(&sig), body, recovered.as_bytes()).is_ok());
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}
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#[test]
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fn payload_requires_from_but_defaults_rest() {
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let ok: Result<InboundPayload, _> = serde_json::from_slice(br#"{"from":"a@b.com"}"#);
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let p = ok.expect("from-only payload parses");
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assert_eq!(p.from, "a@b.com");
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assert!(p.to.is_empty() && p.cc.is_empty() && p.text.is_none());
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// Missing `from` → malformed.
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let bad: Result<InboundPayload, _> = serde_json::from_slice(br#"{"subject":"hi"}"#);
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assert!(bad.is_err());
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}
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}
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