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tatara_github_watcher/
handler.rs

1//! axum HTTP handler — verify signature, dispatch on event kind, apply
2//! resulting Allocation via kube-rs.
3
4use std::sync::Arc;
5
6use axum::body::Bytes;
7use axum::extract::State;
8use axum::http::{HeaderMap, StatusCode};
9use axum::response::IntoResponse;
10use kube::api::{Api, DeleteParams, PostParams};
11use kube::Client;
12use tracing::{info, warn};
13
14use tatara_process::allocation::EphemeralAllocation;
15
16use crate::allocation_factory::{allocation_name, build_allocation, FactoryError};
17use crate::config::WatcherConfig;
18use crate::event::{EventKind, PullRequestEvent};
19use crate::verify::verify_signature;
20
21/// Handler state shared across requests.
22#[derive(Clone)]
23pub struct HandlerState {
24    pub config: Arc<WatcherConfig>,
25    pub kube: Client,
26}
27
28impl HandlerState {
29    /// Namespaced `Api<EphemeralAllocation>` bound to this handler's
30    /// client + configured watcher namespace — the ONE substrate
31    /// primitive that owns the `Api::namespaced(self.kube.clone(),
32    /// &self.config.namespace)` shape for the github-watcher.
33    ///
34    /// Pre-lift the two-slot `(self.kube.clone(), &self.config.
35    /// namespace)` incantation was hand-authored at TWO sites in
36    /// `handler::handle_pr_event`, past the ★★ PRIME-DIRECTIVE ≥ 2
37    /// duplication threshold — the `PrAction::Closed` delete-branch
38    /// slot (`api.delete(&name, …)`) plus the `PrAction::{Opened,
39    /// Reopened, Synchronize}` create-branch slot (`api.create(&pp,
40    /// &alloc)`) each restated the SAME `Api::namespaced(state.kube.
41    /// clone(), &state.config.namespace)` chain verbatim. Post-lift
42    /// the two consumers share ONE substrate owner; a future emitter
43    /// of `Api<EphemeralAllocation>` on the handler reaches for
44    /// `state.allocation_api()` rather than re-authoring the two-slot
45    /// chain a third time — matching the composition discipline the
46    /// peer [`tatara_pool_reconciler::context::PoolContext::
47    /// allocation_api`] substrate primitive already establishes on
48    /// the pool-reconciler side of the same CRD.
49    ///
50    /// The typed `Api<EphemeralAllocation>` return pins the resource
51    /// kind at rustc time — a future consumer that reaches for a
52    /// different CRD via this primitive's client-slot fails to
53    /// compile rather than silently issuing a REST request under the
54    /// wrong resource plural.
55    pub fn allocation_api(&self) -> Api<EphemeralAllocation> {
56        Api::namespaced(self.kube.clone(), &self.config.namespace)
57    }
58}
59
60/// POST handler for GitHub webhooks.
61pub async fn webhook(
62    State(state): State<HandlerState>,
63    headers: HeaderMap,
64    body: Bytes,
65) -> impl IntoResponse {
66    // 1. Verify HMAC.
67    let sig_header = headers
68        .get("X-Hub-Signature-256")
69        .and_then(|v| v.to_str().ok())
70        .unwrap_or("");
71    if let Err(e) = verify_signature(sig_header, &body, state.config.secret.as_bytes()) {
72        warn!(error = %e, "webhook signature verification failed");
73        return (StatusCode::UNAUTHORIZED, format!("signature: {e}")).into_response();
74    }
75
76    // 2. Dispatch on event kind.
77    let event_header = headers
78        .get("X-GitHub-Event")
79        .and_then(|v| v.to_str().ok())
80        .unwrap_or("");
81    let kind = EventKind::from_header(event_header);
82
83    match kind {
84        EventKind::PullRequest => handle_pr_event(&state, &body).await,
85        EventKind::Push => {
86            // Push events handled by a separate path (e.g., main-branch
87            // attestation runs). v0 just acknowledges.
88            (StatusCode::OK, "push event acknowledged (not allocated)").into_response()
89        }
90        EventKind::Other => (StatusCode::OK, "event ignored").into_response(),
91    }
92}
93
94async fn handle_pr_event(state: &HandlerState, body: &[u8]) -> axum::response::Response {
95    let evt: PullRequestEvent = match serde_json::from_slice(body) {
96        Ok(e) => e,
97        Err(e) => {
98            warn!(error = %e, "failed to parse PR event");
99            return (StatusCode::BAD_REQUEST, format!("parse: {e}")).into_response();
100        }
101    };
102
103    // Repo allowlist.
104    if !state.config.allow_repos.is_empty()
105        && !repo_allowed(&evt.repository.full_name, &state.config.allow_repos)
106    {
107        info!(repo = %evt.repository.full_name, "repo not in allowlist; skipping");
108        return (StatusCode::OK, "repo not in allowlist").into_response();
109    }
110
111    use crate::event::PrAction;
112    match evt.action {
113        PrAction::Closed => {
114            // Delete the allocation; pool reconciler returns the member.
115            let name = allocation_name(&evt.repository.full_name, evt.number);
116            // `Api<EphemeralAllocation>` binds via the ONE substrate
117            // primitive `HandlerState::allocation_api` — pre-lift this
118            // was a hand-authored `Api::namespaced(state.kube.clone(),
119            // &state.config.namespace)` chain, one of TWO workspace-
120            // wide restatements past the ★★ PRIME-DIRECTIVE ≥ 2
121            // duplication threshold (peer at the `PrAction::{Opened,
122            // Reopened, Synchronize}` create-branch slot below). Post-
123            // lift the two consumers share ONE substrate owner.
124            let api = state.allocation_api();
125            match api.delete(&name, &DeleteParams::default()).await {
126                Ok(_) => {
127                    info!(
128                        namespace = %state.config.namespace,
129                        allocation = %name,
130                        "closed PR → deleted Allocation"
131                    );
132                    (StatusCode::OK, "allocation deleted").into_response()
133                }
134                Err(kube::Error::Api(e)) if e.code == 404 => {
135                    (StatusCode::OK, "allocation already gone").into_response()
136                }
137                Err(e) => {
138                    warn!(error = %e, "delete failed");
139                    (StatusCode::INTERNAL_SERVER_ERROR, format!("delete: {e}")).into_response()
140                }
141            }
142        }
143        PrAction::Opened | PrAction::Reopened | PrAction::Synchronize => {
144            // Build + create-or-replace the allocation.
145            let alloc = match build_allocation(
146                &evt,
147                &state.config.namespace,
148                state.config.pin_pool.as_deref(),
149                state.config.include_drafts,
150            ) {
151                Ok(a) => a,
152                Err(FactoryError::DraftExcluded) => {
153                    info!("draft PR — skipping allocation");
154                    return (StatusCode::OK, "draft excluded").into_response();
155                }
156                Err(FactoryError::NotAllocatable(_)) => {
157                    return (StatusCode::OK, "action not allocatable").into_response();
158                }
159            };
160            // `Api<EphemeralAllocation>` binds via the ONE substrate
161            // primitive `HandlerState::allocation_api` — pre-lift this
162            // was a hand-authored `Api::namespaced(state.kube.clone(),
163            // &state.config.namespace)` chain, peer to the
164            // `PrAction::Closed` delete-branch slot already routed
165            // through the primitive above. Post-lift both consumers
166            // share ONE substrate owner.
167            let api = state.allocation_api();
168            match api.create(&PostParams::default(), &alloc).await {
169                Ok(_) => {
170                    info!(
171                        namespace = %state.config.namespace,
172                        allocation = alloc.metadata.name.as_deref().unwrap_or("?"),
173                        pr_number = evt.number,
174                        repo = %evt.repository.full_name,
175                        "PR event → created Allocation"
176                    );
177                    (StatusCode::CREATED, "allocation created").into_response()
178                }
179                Err(kube::Error::Api(e)) if e.code == 409 => {
180                    // Already exists — refresh via PATCH (synchronize event).
181                    (StatusCode::OK, "allocation already exists (synchronize)").into_response()
182                }
183                Err(e) => {
184                    warn!(error = %e, "create allocation failed");
185                    (StatusCode::INTERNAL_SERVER_ERROR, format!("create: {e}")).into_response()
186                }
187            }
188        }
189        PrAction::Other => (StatusCode::OK, "action ignored").into_response(),
190    }
191}
192
193fn repo_allowed(repo: &str, allowlist: &[String]) -> bool {
194    allowlist.iter().any(|p| repo_matches(p, repo))
195}
196
197fn repo_matches(pattern: &str, repo: &str) -> bool {
198    if let Some(prefix) = pattern.strip_suffix("/*") {
199        repo.starts_with(&format!("{prefix}/"))
200    } else {
201        pattern == repo
202    }
203}
204
205#[cfg(test)]
206mod tests {
207    use super::*;
208
209    // ─── HandlerState api-primitive substrate pins ─────────────────
210    //
211    // The two-slot `(state.kube.clone(), &state.config.namespace)`
212    // incantation was hand-authored at TWO sites in
213    // `handle_pr_event` before `HandlerState::allocation_api` closed
214    // it. These pins bind the primitive at fail-before-pass-after
215    // granularity so a regression that drifts the configured
216    // namespace, the resource kind, or the reused client-slot
217    // surfaces here rather than as silent operator-facing drift at
218    // every downstream webhook path.
219    //
220    // `Client::try_from(Config::new(url))` needs a live tokio
221    // reactor (`tower::buffer::Buffer::new` spawns a background task
222    // on construction), so every pin runs under `#[tokio::test]`.
223    #[cfg(test)]
224    mod api_primitive_pins {
225        use super::*;
226        use kube::Config;
227
228        fn state_with_namespace(namespace: &str) -> HandlerState {
229            let url = "http://localhost:9999".parse().expect("valid probe url");
230            let client = Client::try_from(Config::new(url)).expect("build kube client");
231            let config = WatcherConfig {
232                listen: "0.0.0.0:8080".into(),
233                secret: "test-secret".into(),
234                namespace: namespace.into(),
235                pin_pool: None,
236                include_drafts: false,
237                allow_repos: Vec::new(),
238            };
239            HandlerState {
240                config: Arc::new(config),
241                kube: client,
242            }
243        }
244
245        #[tokio::test]
246        async fn allocation_api_binds_configured_namespace_into_resource_url() {
247            // The webhook handler reads the target namespace from
248            // `state.config.namespace` (operator-configured via
249            // `TATARA_WATCHER_NAMESPACE`) and expects
250            // `state.allocation_api()` to bind that namespace onto
251            // the returned Api's REST path — the primitive routes
252            // the configured slot through to the `Api::namespaced`
253            // dispatcher's `ns` argument unchanged.
254            let state = state_with_namespace("watcher-test-ns");
255            let api = state.allocation_api();
256            let url = api.resource_url();
257            assert!(
258                url.contains("/namespaces/watcher-test-ns/"),
259                "allocation_api resource url must carry the configured namespace verbatim; got {url}"
260            );
261        }
262
263        #[tokio::test]
264        async fn allocation_api_binds_the_ephemeral_allocation_kind() {
265            // The typed `Api<EphemeralAllocation>` return pins the
266            // resource kind at rustc time; this pin adds the runtime
267            // witness — the emitted REST path targets the
268            // `tatara.pleme.io/v1alpha1/ephemeralallocations`
269            // collection matching the `#[kube(group =
270            // "tatara.pleme.io", version = "v1alpha1", plural =
271            // "ephemeralallocations")]` attribute on
272            // `AllocationSpec`.
273            let state = state_with_namespace("default");
274            let api = state.allocation_api();
275            let url = api.resource_url();
276            assert!(
277                url.starts_with("/apis/tatara.pleme.io/v1alpha1/"),
278                "Api resource url must be scoped to the tatara.pleme.io/v1alpha1 group; got {url}"
279            );
280            assert!(
281                url.ends_with("/ephemeralallocations"),
282                "Api resource url must terminate at the `ephemeralallocations` collection; got {url}"
283            );
284        }
285
286        #[tokio::test]
287        async fn allocation_api_matches_hand_authored_pre_lift_bytewise() {
288            // Bytewise equivalence with the pre-lift `Api::namespaced
289            // (state.kube.clone(), &state.config.namespace)` chain —
290            // the primitive changes the authoring surface, not the
291            // observable REST path, so a regression that drifts the
292            // routing on this primitive surfaces here rather than as
293            // silent operator-facing drift at every handler branch.
294            for ns in ["default", "ephemeral-pools", "watcher-alt"] {
295                let state = state_with_namespace(ns);
296                let via_primitive = state.allocation_api();
297                let via_pre_lift: Api<EphemeralAllocation> =
298                    Api::namespaced(state.kube.clone(), &state.config.namespace);
299                assert_eq!(
300                    via_primitive.resource_url(),
301                    via_pre_lift.resource_url(),
302                    "allocation_api must be byte-identical to the pre-lift chain for ns={ns:?}"
303                );
304            }
305        }
306    }
307
308    #[test]
309    fn repo_matches_exact() {
310        assert!(repo_matches("pleme-io/demo-app", "pleme-io/demo-app"));
311        assert!(!repo_matches("pleme-io/demo-app", "pleme-io/other"));
312    }
313
314    #[test]
315    fn repo_matches_org_wildcard() {
316        assert!(repo_matches("pleme-io/*", "pleme-io/demo-app"));
317        assert!(repo_matches("pleme-io/*", "pleme-io/tatara"));
318        assert!(!repo_matches("pleme-io/*", "drzln/dotfiles"));
319    }
320
321    #[test]
322    fn empty_allowlist_skipped_at_caller() {
323        // The caller's check `!allowlist.is_empty()` gates this function;
324        // sanity test that an empty allowlist would reject everything if
325        // called directly.
326        assert!(!repo_allowed("anything", &[]));
327    }
328
329    #[test]
330    fn allowlist_with_one_pattern_filters() {
331        let allow = vec!["pleme-io/*".to_string()];
332        assert!(repo_allowed("pleme-io/demo-app", &allow));
333        assert!(!repo_allowed("drzln/dotfiles", &allow));
334    }
335}