subc_protocol/lib.rs
1//! subc wire contract.
2//!
3//! This crate is the single source of truth for the subc <-> module wire,
4//! shared by subc-core and AFT. It defines the **envelope** (the fixed
5//! 21-byte routing header subc splices on), the canonical subc-generated body
6//! schemas such as [`ErrorBody`], and the capability manifest. JSON-RPC request
7//! and response bodies remain module-owned opaque payloads to subc.
8//!
9//! ## The envelope (locked — see docs/subc-core-architecture.md §4.8)
10//!
11//! ```text
12//! offset size field type purpose
13//! 0 4 len u32 # of BODY bytes after this 21-byte header
14//! 4 1 ver u8 envelope version
15//! 5 1 type u8 frame kind (see FrameType)
16//! 6 1 flags u8 bit0 BINARY · bits1-2 PRIORITY · bit3 LAST · bits4-5 ADMISSION · bit6 DAEMON_ORIGIN · bit7 SUBSCRIPTION
17//! 7 2 channel u16 route = (component, session); 0 = subc itself
18//! 9 4 epoch u32 per-slot binding epoch; 0 on channel 0
19//! 13 8 corr u64 correlation id; CANCEL carries the target call's corr
20//! 21 -> body
21//! ```
22//!
23//! Little-endian (same-machine, native, no byte-swap on the hot path).
24//!
25//! **Frozen prefix (the versioning invariant):** `len` (u32 @ 0) and `ver`
26//! (u8 @ 4) keep fixed meaning + position in *every* future version. A reader
27//! of any version can therefore always read the first 5 bytes, learn `ver`,
28//! look up that version's header length, read the rest, and splice `len` body
29//! bytes. `decode_header` enforces this discipline.
30
31#![forbid(unsafe_code)]
32
33use std::{error::Error, fmt, path::PathBuf};
34
35use serde::{Deserialize, Serialize};
36
37pub use machine_id::{MachineId, MachineIdError};
38
39pub mod frame;
40pub mod machine_id;
41pub mod manifest;
42pub mod scope;
43pub mod session;
44pub mod tool_call;
45
46/// Canonical error codes emitted while opening a client route.
47///
48/// Error frames remain extensible strings, but these daemon-owned route-open
49/// outcomes need identical spelling across the daemon and SDK retry policies.
50pub mod error_codes {
51 use crate::Flags;
52
53 pub const UNKNOWN_CHANNEL: &str = "unknown_channel";
54 pub const STALE_ROUTE_EPOCH: &str = "stale_route_epoch";
55 pub const UNKNOWN_MODULE: &str = "unknown_module";
56 pub const MODULE_REMOVED: &str = "module_removed";
57 /// The target module's endpoint is draining for a reload, restart or disable.
58 ///
59 /// On the data plane (an `ERROR` frame answering a `REQUEST` on a bound route)
60 /// this code is a PRE-SEND GUARANTEE: the daemon returns it only when the
61 /// request could not take a route credit because the endpoint is draining,
62 /// and it returns it BEFORE forwarding, so the module never received the
63 /// request. A caller may therefore re-dispatch the same request once the
64 /// route is reopened without risking a duplicated side effect, exactly as it
65 /// may after `unknown_channel`. The daemon keeps this guarantee:
66 /// `supervisor_reload_rejects_new_work_during_drain` asserts the module's
67 /// event journal never records the rejected request. A request the module
68 /// already received is answered by the module (or its route closes with
69 /// `route.closed`), never by this code.
70 pub const MODULE_RELOADING: &str = "module_reloading";
71 pub const MODULE_WARMING: &str = "module_warming";
72 pub const TARGET_UNAVAILABLE: &str = "target_unavailable";
73 /// A flow-scoped route targets a module that does not provide
74 /// `flow-scopes/v1`. TERMINAL: decoding `flow_id` alone does not promise
75 /// flow behaviour, and removing it would silently change the identity.
76 pub const TARGET_FLOW_UNSUPPORTED: &str = "target_flow_unsupported";
77 pub const MODULE_TIMEOUT: &str = "module_timeout";
78 /// The target module is declared as speaking no subc wire protocol
79 /// (`protocol: "none"` in daemon config), so it has no control lane and can
80 /// never accept a route. The daemon supervises its process and nothing else.
81 ///
82 /// TERMINAL, and deliberately neither of its two neighbours. It is not
83 /// `unknown_module`, which means "no module of this id is registered or
84 /// supervised here" and is likewise terminal; retrying here would storm the
85 /// daemon forever, because the answer is a property of the module's
86 /// declaration rather than of its current state. It is not `module_removed` either: the module is configured,
87 /// running, and supervised. Only an edit to its configuration can change
88 /// this answer, and a caller cannot wait that out.
89 pub const MODULE_NO_PROTOCOL: &str = "module_no_protocol";
90 /// A request field is malformed. The error's `detail.field` names the field
91 /// (for a `route.open`, `role_versions`). TERMINAL: the same request will be
92 /// refused the same way every time, so only a corrected request can succeed.
93 pub const INVALID_REQUEST: &str = "invalid_request";
94
95 /// A `route.open` named a scope whose owner is configured but has not
96 /// synced since this daemon incarnation started. RETRYABLE: after a daemon
97 /// restart a carrier's open can arrive before the owner re-syncs, and the
98 /// carrier waits within its own deadline. See `docs/designs/daemon-scopes.md`.
99 pub const SCOPE_NOT_SYNCED: &str = "scope_not_synced";
100 /// A scoped `route.open` was admitted, but the scope record changed before
101 /// the module's bind committed. Nothing was sent on the route, so the caller
102 /// may re-open against the current record: RETRYABLE.
103 pub const SCOPE_CHANGED: &str = "scope_changed";
104 /// A scoped `route.open` named no `scope_epoch`. Every opener names one,
105 /// the owner included, so an old call can never be carried into a newer
106 /// session that reused the ref. TERMINAL.
107 pub const SCOPE_EPOCH_REQUIRED: &str = "scope_epoch_required";
108 /// A scoped `route.open` named a ref the owner's synced set does not hold,
109 /// or an owner that is not a configured module. TERMINAL.
110 pub const SCOPE_NOT_LIVE: &str = "scope_not_live";
111 /// A scoped `route.open` named a `scope_epoch` that is not the live one, or
112 /// the scope ended between admission and commit. TERMINAL.
113 pub const SCOPE_ENDED: &str = "scope_ended";
114 /// The opener of a scoped `route.open` is neither the scope's owner nor a
115 /// listed carrier, or it is a targeted carrier and the target module is not
116 /// in its list. TERMINAL.
117 pub const SCOPE_NOT_CARRIER: &str = "scope_not_carrier";
118 /// Raised by a carrier, never by the daemon: the daemon does not advertise
119 /// `scopes/v1`, so the carrier fails the call instead of opening an
120 /// unscoped route.
121 pub const SCOPE_UNSUPPORTED: &str = "scope_unsupported";
122
123 /// `scope.sync` came from a connection that is not the owner's sync
124 /// authority: another connection of the same launch holds it, or this
125 /// connection's launch is no longer the owner's current one (a blue/green
126 /// swap candidate before cutover, or an incumbent after it).
127 pub const SCOPE_SYNC_NOT_AUTHORITY: &str = "scope_sync_not_authority";
128 /// `scope.sync` carried a generation no larger than the last one the
129 /// authority had accepted. The whole sync is refused and nothing changes.
130 pub const SCOPE_SYNC_STALE: &str = "scope_sync_stale";
131 /// `scope.sync` named more live scopes than one owner may hold. The whole
132 /// sync is refused and nothing changes.
133 pub const SCOPE_LIVE_LIMIT_EXCEEDED: &str = "scope_live_limit_exceeded";
134 /// One record in a `scope.sync` carried more attribute bytes than a scope may
135 /// hold. The whole sync is refused and nothing changes.
136 pub const SCOPE_ATTRIBUTES_TOO_LARGE: &str = "scope_attributes_too_large";
137
138 // Per-record refusals: each is reported against one record in the
139 // `scope.sync` reply, that record keeps its previous state, and the rest
140 // of the sync applies.
141
142 /// The record lowers the `scope_epoch` the daemon holds for its ref.
143 pub const SCOPE_EPOCH_REGRESSED: &str = "scope_epoch_regressed";
144 /// The record names an `(owner, ref, scope_epoch)` that already ended in
145 /// this daemon incarnation; an ended session cannot come back.
146 pub const SCOPE_EPOCH_ENDED: &str = "scope_epoch_ended";
147 /// The record changes `kind` at the same `scope_epoch`.
148 pub const SCOPE_KIND_CHANGED: &str = "scope_kind_changed";
149 /// The record sets `agent_id` or `delegates` and its owner is not listed in
150 /// the daemon's `scope_authority_owners`.
151 pub const SCOPE_ATTRIBUTE_NOT_PERMITTED: &str = "scope_attribute_not_permitted";
152 /// The record's parent link is not permitted: the parent's owner has synced
153 /// and the parent is not live at the named epoch, the syncing owner is
154 /// neither the parent's owner nor in its `child_owners`, or the link would
155 /// close a cycle.
156 pub const SCOPE_PARENT_NOT_PERMITTED: &str = "scope_parent_not_permitted";
157 /// A targeted carrier entry lists no target modules, or more than
158 /// `scope::MAX_CARRIER_TARGETS`.
159 pub const SCOPE_CARRIER_TARGETS_INVALID: &str = "scope_carrier_targets_invalid";
160 /// The record sets `delegates` without an `agent_id` to delegate.
161 pub const SCOPE_DELEGATES_WITHOUT_AGENT: &str = "scope_delegates_without_agent";
162
163 /// Whether a `route.open` refusal carrying `code` may be retried in place
164 /// within the caller's deadline, or is terminal for the target as named.
165 ///
166 /// This lives beside the codes because every consumer with its own
167 /// connection layer needs the same answer: a copied list breaks loudly on
168 /// a renamed code and silently on an added one. The SDKs call this; the
169 /// golden `decision_tables.json` (`route_open_retryable`) is the record
170 /// the daemon and every SDK are tested against, and the test in
171 /// `golden_json.rs` holds this function to it.
172 ///
173 /// Unknown codes are terminal: a refusal this crate has never heard of
174 /// must not be retried on the strength of a match-all arm.
175 ///
176 /// `unknown_module` is terminal: it now means only "no module of this id
177 /// is registered or supervised here" — a typo, or a peer not deployed on
178 /// this host. The daemon reports a configured-but-late target with its own
179 /// retryable codes (`module_warming`, `target_unavailable`), so a caller
180 /// that races an unsupervised module's HELLO owns its own retry; retrying
181 /// in place only papers over that race for one narrow window.
182 pub fn is_retryable_route_open(code: &str) -> bool {
183 if code == TARGET_FLOW_UNSUPPORTED {
184 return false;
185 }
186 matches!(
187 code,
188 MODULE_RELOADING
189 | MODULE_WARMING
190 | TARGET_UNAVAILABLE
191 | MODULE_TIMEOUT
192 | SCOPE_NOT_SYNCED
193 | SCOPE_CHANGED
194 )
195 }
196
197 /// Whether the caller should evict this established route, reopen it, and
198 /// resend the request once. Consumers mapping route death to their own
199 /// custody, provider, or suspect verdict keep their own named code lists;
200 /// sharing this predicate for those meanings can change a verdict on a
201 /// protocol bump (prefrontal#59).
202 ///
203 /// Takes envelope flags so the daemon-origin check can be enabled here in
204 /// one place. Phase 2 requires first that every daemon a consumer can meet
205 /// sets DAEMON_ORIGIN on these error frames, both landed and deployed;
206 /// only then may this predicate require the bit. Requiring it sooner makes
207 /// a new SDK against an older daemon stop evicting on a genuine
208 /// `stale_route_epoch` — the failure this predicate is meant to prevent.
209 ///
210 /// The daemon emits these codes in `RouterError::to_error_frame` at
211 /// `crates/subc-daemon/src/router.rs` (UnknownChannel and StaleRouteEpoch).
212 pub fn is_established_route_dead(_flags: Flags, code: &str) -> bool {
213 matches!(code, UNKNOWN_CHANNEL | STALE_ROUTE_EPOCH)
214 }
215}
216
217pub use frame::{Frame, FrameBuildError};
218
219/// Why subc is closing a module's client routes.
220#[derive(Debug, Clone, Copy, Serialize, Deserialize, PartialEq, Eq)]
221#[serde(rename_all = "snake_case")]
222pub enum RouteCloseReason {
223 Reload,
224 Restart,
225 Disable,
226 Crash,
227 /// A live route became forbidden because newly attested capability metadata
228 /// matched its supervised opening module's deny edge.
229 CapabilityDenied,
230 /// The route's scope ended: its owner removed it, or replaced it with a
231 /// higher `scope_epoch` (a new session under the same ref).
232 ScopeEnded,
233 /// The route's opener is no longer a listed carrier of its scope, or the
234 /// route's target was removed from that carrier's target list.
235 ScopeCarrierRemoved,
236 /// The scope's `delegates` went from true to false, or its `agent_id`
237 /// changed.
238 ScopeDelegationChanged,
239 /// The scope's parent ended, so its stamp no longer names a live parent.
240 ScopeParentEnded,
241}
242
243/// Per-route bind identity shared by client-facing and module-facing control.
244///
245/// EVERY FIELD HERE IS CLIENT-SUPPLIED AND UNATTESTED. The daemon canonicalizes
246/// `project_root` as a path but does not verify that the caller has any relation
247/// to it, and `harness`, `session`, and `project_id` are strings the caller chose.
248/// A client holding the connection key can present any values it likes.
249///
250/// This sits directly above `Principal`, which is the opposite: stamped BY the
251/// daemon from a launch nonce it minted. The two travel together on every
252/// `route.bind`, so a module reading them side by side is reading one fact it can
253/// trust and four it cannot. THE DISTINCTION IS INVISIBLE FROM THE TYPES, which
254/// is why it is written here.
255///
256/// So these fields are for SCOPING AND ATTRIBUTION -- which project's state to
257/// open, which session to thread, what to log -- and never for authorization. A
258/// module that grants capability on `harness` or trusts `project_root` to bound
259/// what a caller may reach has built an authorization check on a value the caller
260/// controls. Gate on `Principal` instead, and where a module needs a caller fact
261/// subc does not stamp, it must establish that fact itself rather than believe
262/// this struct.
263#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
264#[non_exhaustive]
265pub struct BindIdentity {
266 pub project_root: PathBuf,
267 pub harness: String,
268 pub session: String,
269 /// The entorhinal-registered project id (`pj-…`) for `project_root`, when
270 /// the root is a registered project. Aliases count as registered projects;
271 /// implicit roots do not. Absent means "no stable id, key on the triple",
272 /// not "unknown".
273 ///
274 /// A producer sends the id on every bind of a session or on none. A producer
275 /// that alternates between `Some(id)` and `None` across binds silently forks
276 /// the consumer's lineage into separate stores, with no error at either end.
277 /// Therefore, a producer that cannot answer consistently must answer `None`
278 /// consistently.
279 ///
280 /// Resolve this at most once per session, before its first bind, and persist
281 /// the outcome with the session. ALF's resolver has real `Resolved`, `Unavailable`,
282 /// and `Disabled` outcomes: if unavailable at cold start is re-resolved on a
283 /// later bind, the session can alternate from `None` to `Some(id)`. Send only
284 /// registered or alias resolutions, never implicit, unavailable, or disabled
285 /// fallback ids.
286 #[serde(default, skip_serializing_if = "Option::is_none")]
287 pub project_id: Option<String>,
288}
289
290impl BindIdentity {
291 /// Constructs an identity with no registered project id.
292 ///
293 /// Use this instead of a struct literal so future additive identity fields do
294 /// not force construction-site migrations across the fleet.
295 pub fn new(
296 project_root: impl Into<PathBuf>,
297 harness: impl Into<String>,
298 session: impl Into<String>,
299 ) -> Self {
300 Self {
301 project_root: project_root.into(),
302 harness: harness.into(),
303 session: session.into(),
304 project_id: None,
305 }
306 }
307}
308
309/// Caller fact stamped by subc on each route.bind relayed to a module.
310#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
311#[serde(tag = "kind", rename_all = "snake_case")]
312pub enum Principal {
313 /// A daemon-spawned module proved possession of its launch nonce.
314 Reserved { module_id: String },
315 /// No consumer identity was presented; the caller is a direct key-holder.
316 Direct,
317 /// Reserved vocabulary for a future degraded/no-key-auth mode.
318 Unverified,
319}
320
321/// Explicit target for a route open/bind operation.
322///
323/// RouteTarget.kind ↔ ProviderRole mapping:
324///
325/// | RouteTarget.kind | required ProviderRole | disambiguator |
326/// |---|---|---|
327/// | `tool_provider` | `ToolProvider` | v1: ≤1 per module |
328/// | `management_surface` | `ManagementSurface` | v1: ≤1 per module |
329/// | `internal_service` | `InternalService` | `service_id` (multiple allowed) |
330///
331/// `ProviderRole::PipelineStage` is intentionally unroutable; pipeline modules
332/// are wired by an orchestrator rather than opened directly by clients.
333#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
334#[serde(tag = "kind", rename_all = "snake_case")]
335pub enum RouteTarget {
336 ToolProvider {
337 module_id: String,
338 },
339 ManagementSurface {
340 module_id: String,
341 },
342 InternalService {
343 module_id: String,
344 service_id: String,
345 },
346}
347
348/// Envelope protocol version this build speaks.
349pub const PROTOCOL_VERSION: u8 = 2;
350
351/// The version of THIS crate (`subc-protocol`) as compiled into the linking
352/// binary — the fleet's shared wire-vocabulary version, and the value
353/// `ManifestProvenance.wire_crate_version` declares. Not the version of a
354/// module's own envelope or payload crates: those are different numbering
355/// spaces, and declaring one here produces a confident wrong answer at any
356/// version gate (insula shipped exactly that before the referent was written
357/// down). `env!` makes it a property of the compiled binary, not of whatever
358/// source tree sits beside it at run time.
359pub const SUBC_PROTOCOL_CRATE_VERSION: &str = env!("CARGO_PKG_VERSION");
360
361/// Oldest envelope protocol version this build accepts.
362pub const MIN_SUPPORTED_VERSION: u8 = 2;
363
364/// Env var subc sets on each supervised child telling it the module_id it is
365/// supervised under, so it can register under that id.
366pub const SUBC_MODULE_ID_ENV: &str = "SUBC_MODULE_ID";
367
368/// Env var subc sets, on each spawn of a `reserved` module only, to a fresh
369/// one-time launch nonce. The child echoes it in `ModuleHelloBody::launch_nonce`;
370/// subc accepts a reserved module_id's HELLO only when the nonce matches the one it
371/// last injected for that id. Non-reserved modules never receive it.
372pub const SUBC_LAUNCH_NONCE_ENV: &str = "SUBC_LAUNCH_NONCE";
373
374/// Fixed header length for `PROTOCOL_VERSION` 2.
375pub const HEADER_LEN: usize = 21;
376
377/// Bytes of the frozen prefix (`len` u32 + `ver` u8) that are stable across
378/// every envelope version. A reader needs only these to learn the version and
379/// thus the full header length.
380pub const FROZEN_PREFIX_LEN: usize = 5;
381
382/// Maximum frame body accepted before allocation.
383///
384/// This 64 MiB starting cap prevents a malformed header from forcing an
385/// unbounded allocation. Future protocol versions can negotiate or encode a
386/// different cap while preserving the frozen prefix.
387pub const MAX_FRAME_BODY_LEN: u32 = 64 * 1024 * 1024;
388
389/// Canonical JSON body for all subc-generated `ERROR` frames.
390///
391/// `detail` is an optional machine-parsable surface for refusals whose remedy
392/// needs more than a code (e.g. a producer-published backoff number, an
393/// observed-vs-configured size pair). Absent detail serializes to nothing, so
394/// bodies without it are byte-identical to the pre-detail wire and older
395/// readers simply never see the field. Producers document each code's detail
396/// fields where the code is defined; `detail` must never carry secrets.
397#[derive(Debug, Clone, Serialize, Deserialize, PartialEq)]
398pub struct ErrorBody {
399 pub code: String,
400 pub message: String,
401 #[serde(default, skip_serializing_if = "Option::is_none")]
402 pub detail: Option<serde_json::Value>,
403}
404
405impl ErrorBody {
406 /// A detail-less error body; the common case.
407 pub fn new(code: impl Into<String>, message: impl Into<String>) -> Self {
408 Self {
409 code: code.into(),
410 message: message.into(),
411 detail: None,
412 }
413 }
414
415 /// Attach a machine-parsable detail object to this error.
416 pub fn with_detail(mut self, detail: serde_json::Value) -> Self {
417 self.detail = Some(detail);
418 self
419 }
420}
421
422/// Module-to-subc `HELLO` body used during module registration.
423#[derive(Clone, Serialize, Deserialize, PartialEq)]
424pub struct ModuleHelloBody {
425 pub manifest: manifest::ModuleManifest,
426 pub protocol_ver: u8,
427 #[serde(default)]
428 pub control_ops: Option<Vec<String>>,
429 /// One-time launch nonce, echoed back from the `SUBC_LAUNCH_NONCE` environment
430 /// variable the daemon injected when it spawned this process. Only a daemon-spawned
431 /// process for a `reserved` module receives a nonce; subc accepts a reserved
432 /// `module_id`'s HELLO only when this matches the nonce it last injected for that
433 /// id, so a different process cannot register as a reserved module while the real
434 /// one is down/restarting. Absent (`serde(default)`) for non-reserved modules and
435 /// self-connecting providers, which are never nonce-checked.
436 #[serde(default, skip_serializing_if = "Option::is_none")]
437 pub launch_nonce: Option<String>,
438}
439
440// Hand-written so the launch nonce is never printed. The nonce is the credential
441// that attributes a connection to a supervised module, and a derived Debug would
442// write it into any log line or panic message that formats this value. Same
443// reasoning as ConnectionInfo's Debug in subc-transport.
444impl fmt::Debug for ModuleHelloBody {
445 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
446 f.debug_struct("ModuleHelloBody")
447 .field("manifest", &self.manifest)
448 .field("protocol_ver", &self.protocol_ver)
449 .field("control_ops", &self.control_ops)
450 .field(
451 "launch_nonce",
452 &self
453 .launch_nonce
454 .as_ref()
455 .map(|nonce| format!("<{} bytes redacted>", nonce.len())),
456 )
457 .finish()
458 }
459}
460
461/// subc-to-module `HELLO_ACK` body used during module registration.
462#[derive(Debug, Clone, Serialize, Deserialize, PartialEq, Eq)]
463pub struct ModuleHelloAckBody {
464 pub negotiated_ver: u8,
465 pub subc_ops: Vec<String>,
466 pub subc_capabilities: Vec<String>,
467 /// The module's resolved storage descriptor, when the daemon's central config
468 /// configures managed storage. Carried opaquely here (subc-protocol stays a
469 /// thin wire crate with no storage/database dependency); a module that uses
470 /// managed storage deserializes it into `cortexkit_store_types::StorageDescriptor`
471 /// and hands it to `cortexkit-store`. Absent when no storage is configured, and
472 /// `serde(default)` so an older module simply ignores it.
473 #[serde(default, skip_serializing_if = "Option::is_none")]
474 pub storage: Option<serde_json::Value>,
475 /// The daemon's machine id (see [`MachineId`]): a name for this machine,
476 /// never an authority. Nothing may admit a peer, grant trust or skip a check
477 /// because two messages carry the same value.
478 ///
479 /// Carried as a plain string so one malformed value cannot fail the whole
480 /// registration reply; a module validates it with [`MachineId::parse`].
481 /// Absent from a daemon that predates the machine id, which a module must
482 /// read as exactly that, never as "no machine" and never as a reason to mint
483 /// its own.
484 #[serde(default, skip_serializing_if = "Option::is_none")]
485 pub machine_id: Option<String>,
486}
487
488/// Frame kind (`type` byte at offset 5).
489///
490/// `CANCEL`, `PING`, `PONG`, and `GOODBYE` are pure-header frames (`len == 0`);
491/// only `HELLO`/`HELLO_ACK` and the RPC payloads carry bodies.
492#[derive(Debug, Clone, Copy, PartialEq, Eq)]
493#[repr(u8)]
494pub enum FrameType {
495 Request = 0,
496 Response = 1,
497 Push = 2,
498 StreamData = 3,
499 StreamEnd = 4,
500 Error = 5,
501 Cancel = 6,
502 Ping = 7,
503 Pong = 8,
504 Hello = 9,
505 HelloAck = 10,
506 Goodbye = 11,
507}
508
509impl FrameType {
510 /// Map the raw `type` byte to a `FrameType`, or `None` if unknown.
511 pub fn from_u8(b: u8) -> Option<Self> {
512 Some(match b {
513 0 => Self::Request,
514 1 => Self::Response,
515 2 => Self::Push,
516 3 => Self::StreamData,
517 4 => Self::StreamEnd,
518 5 => Self::Error,
519 6 => Self::Cancel,
520 7 => Self::Ping,
521 8 => Self::Pong,
522 9 => Self::Hello,
523 10 => Self::HelloAck,
524 11 => Self::Goodbye,
525 _ => return None,
526 })
527 }
528
529 pub fn is_pure_header(self) -> bool {
530 matches!(self, Self::Cancel | Self::Ping | Self::Pong | Self::Goodbye)
531 }
532}
533
534/// Scheduling priority carried in `flags` bits 1-2. subc schedules on this
535/// without parsing the body.
536#[derive(Debug, Clone, Copy, PartialEq, Eq)]
537#[repr(u8)]
538pub enum Priority {
539 Passive = 0,
540 Interactive = 1,
541 Background = 2,
542}
543
544impl Priority {
545 fn from_bits(bits: u8) -> Option<Self> {
546 Some(match bits {
547 0 => Self::Passive,
548 1 => Self::Interactive,
549 2 => Self::Background,
550 _ => return None,
551 })
552 }
553}
554
555/// Admission behavior carried in `flags` bits 4-5.
556#[derive(Debug, Clone, Copy, PartialEq, Eq)]
557#[repr(u8)]
558pub enum AdmissionClass {
559 Normal = 0,
560 Expedite = 1,
561 Sheddable = 2,
562}
563
564impl AdmissionClass {
565 fn from_bits(bits: u8) -> Option<Self> {
566 Some(match bits {
567 0 => Self::Normal,
568 1 => Self::Expedite,
569 2 => Self::Sheddable,
570 _ => return None,
571 })
572 }
573}
574
575const FLAG_BINARY: u8 = 0b0000_0001; // bit 0
576const FLAG_PRIORITY_MASK: u8 = 0b0000_0110; // bits 1-2
577const FLAG_PRIORITY_SHIFT: u8 = 1;
578const FLAG_LAST: u8 = 0b0000_1000; // bit 3
579const FLAG_ADMISSION_MASK: u8 = 0b0011_0000; // bits 4-5
580const FLAG_ADMISSION_SHIFT: u8 = 4;
581pub const FLAG_DAEMON_ORIGIN: u8 = 0b0100_0000;
582/// A request credit the client explicitly declares as a held-open subscription.
583pub const FLAG_SUBSCRIPTION: u8 = 0b1000_0000;
584
585/// The `flags` byte (offset 6): binary, priority, last, admission, daemon origin, subscription.
586#[derive(Debug, Clone, Copy, PartialEq, Eq)]
587pub struct Flags(pub u8);
588
589impl Flags {
590 /// Build flags with the default [`AdmissionClass::Normal`] class.
591 pub fn new(binary: bool, priority: Priority, last: bool) -> Self {
592 let mut b = 0u8;
593 if binary {
594 b |= FLAG_BINARY;
595 }
596 b |= (priority as u8) << FLAG_PRIORITY_SHIFT;
597 if last {
598 b |= FLAG_LAST;
599 }
600 Flags(b)
601 }
602
603 /// Return these flags with a typed admission class.
604 pub fn with_admission_class(mut self, admission_class: AdmissionClass) -> Self {
605 self.0 =
606 (self.0 & !FLAG_ADMISSION_MASK) | ((admission_class as u8) << FLAG_ADMISSION_SHIFT);
607 self
608 }
609
610 /// Body is raw bytes (bulk lane) rather than JSON-RPC.
611 pub fn is_binary(self) -> bool {
612 self.0 & FLAG_BINARY != 0
613 }
614
615 /// Final frame of a streamed message.
616 pub fn is_last(self) -> bool {
617 self.0 & FLAG_LAST != 0
618 }
619
620 /// Decode the priority bits, or `None` if they hold a reserved value.
621 pub fn priority(self) -> Option<Priority> {
622 Priority::from_bits((self.0 & FLAG_PRIORITY_MASK) >> FLAG_PRIORITY_SHIFT)
623 }
624
625 /// Decode the admission-class bits, or `None` if they hold `0b11`.
626 pub fn admission_class(self) -> Option<AdmissionClass> {
627 AdmissionClass::from_bits((self.0 & FLAG_ADMISSION_MASK) >> FLAG_ADMISSION_SHIFT)
628 }
629
630 /// True when a request was explicitly opened as a held-open subscription.
631 pub fn is_subscription(self) -> bool {
632 self.0 & FLAG_SUBSCRIPTION != 0
633 }
634
635 /// True when the frame was authored by the daemon.
636 pub fn is_daemon_origin(self) -> bool {
637 self.0 & FLAG_DAEMON_ORIGIN != 0
638 }
639
640 /// Return these flags with daemon origin asserted.
641 pub fn with_daemon_origin(mut self) -> Self {
642 self.0 |= FLAG_DAEMON_ORIGIN;
643 self
644 }
645
646 /// Return these flags with daemon origin cleared.
647 pub fn without_daemon_origin(self) -> Self {
648 Self(self.0 & !FLAG_DAEMON_ORIGIN)
649 }
650}
651
652/// A decoded envelope header. The body is the `len` bytes that follow it.
653#[derive(Debug, Clone, Copy, PartialEq, Eq)]
654pub struct EnvelopeHeader {
655 /// Number of body bytes after the header.
656 pub len: u32,
657 /// Envelope version.
658 pub ver: u8,
659 /// Frame kind.
660 pub ty: FrameType,
661 /// Flag bits.
662 pub flags: Flags,
663 /// Sender-local route slot; 0 is the control channel.
664 pub channel: u16,
665 /// Sender-local binding epoch; 0 is reserved for the control channel.
666 pub epoch: u32,
667 /// Correlation id.
668 pub corr: u64,
669}
670
671impl EnvelopeHeader {
672 /// Serialize the header to its fixed 21-byte little-endian form.
673 pub fn encode(&self) -> [u8; HEADER_LEN] {
674 let mut buf = [0u8; HEADER_LEN];
675 buf[0..4].copy_from_slice(&self.len.to_le_bytes());
676 buf[4] = self.ver;
677 buf[5] = self.ty as u8;
678 buf[6] = self.flags.0;
679 buf[7..9].copy_from_slice(&self.channel.to_le_bytes());
680 buf[9..13].copy_from_slice(&self.epoch.to_le_bytes());
681 buf[13..21].copy_from_slice(&self.corr.to_le_bytes());
682 buf
683 }
684}
685
686/// Why a header could not be decoded.
687#[derive(Debug, Clone, Copy, PartialEq, Eq)]
688pub enum DecodeError {
689 /// Fewer than `FROZEN_PREFIX_LEN` bytes — cannot even read `len`/`ver`.
690 TooShortForPrefix { have: usize },
691 /// `ver` is not a version this build understands.
692 UnsupportedVersion { ver: u8 },
693 /// Version known but fewer than its header length is present.
694 TooShortForHeader { have: usize, need: usize },
695 /// `type` byte is not a known `FrameType`.
696 UnknownFrameType { byte: u8 },
697 /// A reserved flag bit is set (retained for older decoder error compatibility).
698 ReservedFlagBits { flags: u8 },
699 /// Priority bits 1-2 hold the reserved value `0b11`.
700 ReservedPriorityBits { flags: u8 },
701 /// Admission bits 4-5 hold the reserved value `0b11`.
702 ReservedAdmissionClass { flags: u8 },
703 /// SHEDDABLE is set on a frame type that must be delivered.
704 SheddableIllegalFrameType { ty: FrameType, flags: u8 },
705 /// Channel 0 carried an epoch other than its reserved epoch 0.
706 NonzeroEpochOnControlChannel { epoch: u32 },
707 /// A pure-header frame declared body bytes.
708 PureHeaderFrameWithBody { ty: FrameType, len: u32 },
709}
710
711impl fmt::Display for DecodeError {
712 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
713 match self {
714 Self::TooShortForPrefix { have } => {
715 write!(f, "header shorter than frozen prefix: have {have} bytes")
716 }
717 Self::UnsupportedVersion { ver } => write!(f, "unsupported envelope version {ver}"),
718 Self::TooShortForHeader { have, need } => {
719 write!(
720 f,
721 "header too short for version: have {have} bytes, need {need}"
722 )
723 }
724 Self::UnknownFrameType { byte } => write!(f, "unknown frame type byte {byte}"),
725 Self::ReservedFlagBits { flags } => {
726 write!(f, "reserved flag bits set in flags 0b{flags:08b}")
727 }
728 Self::ReservedPriorityBits { flags } => {
729 write!(f, "reserved priority bits set in flags 0b{flags:08b}")
730 }
731 Self::ReservedAdmissionClass { flags } => {
732 write!(f, "reserved admission class set in flags 0b{flags:08b}")
733 }
734 Self::SheddableIllegalFrameType { ty, flags } => write!(
735 f,
736 "SHEDDABLE admission class is illegal on {ty:?} in flags 0b{flags:08b}"
737 ),
738 Self::NonzeroEpochOnControlChannel { epoch } => {
739 write!(f, "control channel carried nonzero epoch {epoch}")
740 }
741 Self::PureHeaderFrameWithBody { ty, len } => {
742 write!(
743 f,
744 "pure-header frame {ty:?} declared non-zero body length {len}"
745 )
746 }
747 }
748 }
749}
750
751impl Error for DecodeError {}
752
753/// How many header bytes a given envelope version occupies. Driven by the
754/// frozen prefix: read `ver`, then learn the full header length here.
755fn header_len_for_version(ver: u8) -> Option<usize> {
756 match ver {
757 PROTOCOL_VERSION => Some(HEADER_LEN),
758 _ => None,
759 }
760}
761
762/// Decode an envelope header from the front of `bytes`, following the
763/// frozen-prefix discipline:
764/// 1. need at least the 5-byte prefix to read `len` + `ver`;
765/// 2. dispatch the full header length on `ver`;
766/// 3. need the full header present; then parse the rest.
767///
768/// Never panics on malformed input — returns a typed [`DecodeError`].
769pub fn decode_header(bytes: &[u8]) -> Result<EnvelopeHeader, DecodeError> {
770 if bytes.len() < FROZEN_PREFIX_LEN {
771 return Err(DecodeError::TooShortForPrefix { have: bytes.len() });
772 }
773 let ver = bytes[4];
774 let need = header_len_for_version(ver).ok_or(DecodeError::UnsupportedVersion { ver })?;
775 if bytes.len() < need {
776 return Err(DecodeError::TooShortForHeader {
777 have: bytes.len(),
778 need,
779 });
780 }
781
782 let len = u32::from_le_bytes([bytes[0], bytes[1], bytes[2], bytes[3]]);
783 let ty =
784 FrameType::from_u8(bytes[5]).ok_or(DecodeError::UnknownFrameType { byte: bytes[5] })?;
785 let flags = Flags(bytes[6]);
786 if flags.priority().is_none() {
787 return Err(DecodeError::ReservedPriorityBits { flags: bytes[6] });
788 }
789 let admission_class = flags
790 .admission_class()
791 .ok_or(DecodeError::ReservedAdmissionClass { flags: bytes[6] })?;
792 if admission_class == AdmissionClass::Sheddable
793 && !matches!(ty, FrameType::Push | FrameType::StreamData)
794 {
795 return Err(DecodeError::SheddableIllegalFrameType {
796 ty,
797 flags: bytes[6],
798 });
799 }
800 if ty.is_pure_header() && len != 0 {
801 return Err(DecodeError::PureHeaderFrameWithBody { ty, len });
802 }
803 let channel = u16::from_le_bytes([bytes[7], bytes[8]]);
804 let epoch = u32::from_le_bytes([bytes[9], bytes[10], bytes[11], bytes[12]]);
805 if channel == 0 && epoch != 0 {
806 return Err(DecodeError::NonzeroEpochOnControlChannel { epoch });
807 }
808 let corr = u64::from_le_bytes([
809 bytes[13], bytes[14], bytes[15], bytes[16], bytes[17], bytes[18], bytes[19], bytes[20],
810 ]);
811
812 Ok(EnvelopeHeader {
813 len,
814 ver,
815 ty,
816 flags,
817 channel,
818 epoch,
819 corr,
820 })
821}
822
823#[cfg(test)]
824mod tests {
825 use super::*;
826
827 fn hdr(len: u32, ty: FrameType, flags: Flags, channel: u16, corr: u64) -> EnvelopeHeader {
828 hdr_with_epoch(len, ty, flags, channel, u32::from(channel != 0), corr)
829 }
830
831 fn hdr_with_epoch(
832 len: u32,
833 ty: FrameType,
834 flags: Flags,
835 channel: u16,
836 epoch: u32,
837 corr: u64,
838 ) -> EnvelopeHeader {
839 EnvelopeHeader {
840 len,
841 ver: PROTOCOL_VERSION,
842 ty,
843 flags,
844 channel,
845 epoch,
846 corr,
847 }
848 }
849
850 #[test]
851 fn bind_identity_with_project_id_round_trips_json() {
852 let mut identity = BindIdentity::new("/tmp/project", "opencode", "session-1");
853 identity.project_id = Some("pj-a1b2c3d4".to_string());
854
855 let encoded = serde_json::to_vec(&identity).unwrap();
856 let decoded: BindIdentity = serde_json::from_slice(&encoded).unwrap();
857
858 assert_eq!(decoded, identity);
859 }
860
861 #[test]
862 fn bind_identity_without_project_id_round_trips_json() {
863 let identity = BindIdentity::new("/tmp/project", "opencode", "session-1");
864
865 let encoded = serde_json::to_vec(&identity).unwrap();
866 let decoded: BindIdentity = serde_json::from_slice(&encoded).unwrap();
867
868 assert_eq!(decoded, identity);
869 }
870
871 #[test]
872 fn legacy_bind_identity_without_project_id_decodes() {
873 let decoded: BindIdentity = serde_json::from_value(serde_json::json!({
874 "project_root": "/tmp/project",
875 "harness": "opencode",
876 "session": "session-1"
877 }))
878 .unwrap();
879
880 assert_eq!(decoded.project_id, None);
881 }
882
883 #[test]
884 fn bind_identity_none_omits_project_id_instead_of_serializing_null() {
885 let encoded =
886 serde_json::to_value(BindIdentity::new("/tmp/project", "opencode", "session-1"))
887 .unwrap();
888
889 assert!(encoded.get("project_id").is_none());
890 }
891
892 #[test]
893 fn wire_crate_version_is_a_numeric_three_component_version() {
894 let components = SUBC_PROTOCOL_CRATE_VERSION.split('.').collect::<Vec<_>>();
895
896 assert!(!SUBC_PROTOCOL_CRATE_VERSION.is_empty());
897 assert_eq!(components.len(), 3);
898 assert!(components
899 .iter()
900 .all(|component| !component.is_empty() && component.parse::<u64>().is_ok()));
901 }
902
903 #[test]
904 fn route_target_variants_round_trip_json() {
905 let targets = [
906 RouteTarget::ToolProvider {
907 module_id: "aft".to_string(),
908 },
909 RouteTarget::ManagementSurface {
910 module_id: "memory".to_string(),
911 },
912 RouteTarget::InternalService {
913 module_id: "bus".to_string(),
914 service_id: "dm".to_string(),
915 },
916 ];
917
918 for target in targets {
919 let encoded = serde_json::to_vec(&target).unwrap();
920 let decoded: RouteTarget = serde_json::from_slice(&encoded).unwrap();
921 assert_eq!(decoded, target);
922 }
923 }
924
925 #[test]
926 fn error_body_round_trips_json() {
927 let body = ErrorBody {
928 code: "config_divergence".to_string(),
929 message: "active config differs".to_string(),
930 detail: None,
931 };
932
933 let encoded = serde_json::to_vec(&body).unwrap();
934 let decoded: ErrorBody = serde_json::from_slice(&encoded).unwrap();
935
936 assert_eq!(decoded, body);
937 }
938
939 #[test]
940 fn round_trip_request() {
941 let h = hdr(
942 1234,
943 FrameType::Request,
944 Flags::new(false, Priority::Interactive, false),
945 42,
946 0xDEAD_BEEF_0000_0001,
947 );
948 let decoded = decode_header(&h.encode()).unwrap();
949 assert_eq!(h, decoded);
950 }
951
952 #[test]
953 fn round_trip_all_frame_types() {
954 for b in 0u8..=11 {
955 let ty = FrameType::from_u8(b).unwrap();
956 let h = hdr(0, ty, Flags::new(false, Priority::Passive, false), 0, 0);
957 assert_eq!(decode_header(&h.encode()).unwrap().ty, ty);
958 }
959 }
960
961 #[test]
962 fn pure_header_frame_has_zero_len() {
963 // CANCEL carries only header (len = 0) + the target corr.
964 let h = hdr(
965 0,
966 FrameType::Cancel,
967 Flags::new(false, Priority::Passive, false),
968 7,
969 99,
970 );
971 let d = decode_header(&h.encode()).unwrap();
972 assert_eq!(d.len, 0);
973 assert_eq!(d.corr, 99);
974 }
975
976 #[test]
977 fn flags_round_trip() {
978 let f = Flags::new(true, Priority::Background, true)
979 .with_admission_class(AdmissionClass::Expedite);
980 assert!(f.is_binary());
981 assert!(f.is_last());
982 assert_eq!(f.priority(), Some(Priority::Background));
983 assert_eq!(f.admission_class(), Some(AdmissionClass::Expedite));
984 let h = hdr(8, FrameType::StreamData, f, 1, 1);
985 assert_eq!(decode_header(&h.encode()).unwrap().flags, f);
986 }
987
988 #[test]
989 fn daemon_origin_flags_decode_and_round_trip() {
990 let old = hdr(0, FrameType::Error, Flags(0), 7, 1);
991 let old_decoded = decode_header(&old.encode()).unwrap();
992 assert!(!old_decoded.flags.is_daemon_origin());
993
994 let daemon = hdr(0, FrameType::Error, Flags(0).with_daemon_origin(), 7, 1);
995 let daemon_decoded = decode_header(&daemon.encode()).unwrap();
996 assert!(daemon_decoded.flags.is_daemon_origin());
997 assert_eq!(daemon_decoded.flags.without_daemon_origin(), Flags(0));
998 assert!(Flags(0).with_daemon_origin().is_daemon_origin());
999 }
1000
1001 #[test]
1002 fn little_endian_and_frozen_prefix_layout() {
1003 let h = hdr_with_epoch(
1004 0x0403_0201,
1005 FrameType::Request,
1006 Flags(0),
1007 0x0605,
1008 0x0a09_0807,
1009 0x1211_100f_0e0d_0c0b,
1010 );
1011 let buf = h.encode();
1012 assert_eq!(&buf[0..4], &[1, 2, 3, 4]);
1013 assert_eq!(buf[4], PROTOCOL_VERSION);
1014 assert_eq!(&buf[7..9], &[5, 6]);
1015 assert_eq!(&buf[9..13], &[7, 8, 9, 10]);
1016 assert_eq!(&buf[13..21], &[11, 12, 13, 14, 15, 16, 17, 18]);
1017 assert_eq!(buf.len(), HEADER_LEN);
1018 }
1019
1020 #[test]
1021 fn reject_too_short_for_prefix() {
1022 assert_eq!(
1023 decode_header(&[0, 0, 0, 0]),
1024 Err(DecodeError::TooShortForPrefix { have: 4 })
1025 );
1026 }
1027
1028 #[test]
1029 fn reject_too_short_for_header() {
1030 // Valid 5-byte prefix but the v2 header is truncated.
1031 let mut b = [0u8; 10];
1032 b[4] = PROTOCOL_VERSION;
1033 assert_eq!(
1034 decode_header(&b),
1035 Err(DecodeError::TooShortForHeader {
1036 have: 10,
1037 need: HEADER_LEN
1038 })
1039 );
1040 }
1041
1042 #[test]
1043 fn reject_unsupported_version() {
1044 let mut b = [0u8; HEADER_LEN];
1045 b[4] = 1;
1046 assert_eq!(
1047 decode_header(&b),
1048 Err(DecodeError::UnsupportedVersion { ver: 1 })
1049 );
1050 }
1051
1052 #[test]
1053 fn reject_unknown_frame_type() {
1054 let mut b = [0u8; HEADER_LEN];
1055 b[4] = PROTOCOL_VERSION;
1056 b[5] = 99;
1057 assert_eq!(
1058 decode_header(&b),
1059 Err(DecodeError::UnknownFrameType { byte: 99 })
1060 );
1061 }
1062
1063 #[test]
1064 fn subscription_flag_decodes_and_tags_the_request() {
1065 let mut b = [0u8; HEADER_LEN];
1066 b[4] = PROTOCOL_VERSION;
1067 b[5] = FrameType::Request as u8;
1068 b[6] = FLAG_SUBSCRIPTION;
1069 let decoded = decode_header(&b).unwrap();
1070 assert!(decoded.flags.is_subscription());
1071 }
1072
1073 #[test]
1074 fn reject_reserved_priority_bits() {
1075 let mut b = [0u8; HEADER_LEN];
1076 b[4] = PROTOCOL_VERSION;
1077 b[5] = FrameType::Request as u8;
1078 b[6] = 0b0000_0110; // priority bits 1-2 are reserved value 0b11
1079 assert_eq!(
1080 decode_header(&b),
1081 Err(DecodeError::ReservedPriorityBits { flags: 0b0000_0110 })
1082 );
1083 }
1084
1085 #[test]
1086 fn reject_pure_header_frame_with_body_len() {
1087 let h = hdr(
1088 1,
1089 FrameType::Ping,
1090 Flags::new(false, Priority::Passive, false),
1091 0,
1092 1,
1093 );
1094 assert_eq!(
1095 decode_header(&h.encode()),
1096 Err(DecodeError::PureHeaderFrameWithBody {
1097 ty: FrameType::Ping,
1098 len: 1
1099 })
1100 );
1101 }
1102
1103 #[test]
1104 fn epoch_boundaries_round_trip() {
1105 for (channel, epoch) in [(0, 0), (1, 1), (u16::MAX, u32::MAX)] {
1106 let h = hdr_with_epoch(
1107 0,
1108 FrameType::Request,
1109 Flags::new(false, Priority::Passive, false),
1110 channel,
1111 epoch,
1112 9,
1113 );
1114 assert_eq!(decode_header(&h.encode()).unwrap(), h);
1115 }
1116 }
1117
1118 #[test]
1119 fn admission_classes_accept_three_values_and_reject_reserved_value() {
1120 for (ty, admission_class) in [
1121 (FrameType::Request, AdmissionClass::Normal),
1122 (FrameType::Request, AdmissionClass::Expedite),
1123 (FrameType::Push, AdmissionClass::Sheddable),
1124 (FrameType::StreamData, AdmissionClass::Sheddable),
1125 ] {
1126 let flags = Flags::new(false, Priority::Interactive, false)
1127 .with_admission_class(admission_class);
1128 let h = hdr(0, ty, flags, 1, 2);
1129 assert_eq!(decode_header(&h.encode()).unwrap().flags, flags);
1130 }
1131
1132 let mut h = hdr(
1133 0,
1134 FrameType::Push,
1135 Flags::new(false, Priority::Passive, false),
1136 1,
1137 2,
1138 )
1139 .encode();
1140 h[6] |= 0b0011_0000;
1141 assert_eq!(
1142 decode_header(&h),
1143 Err(DecodeError::ReservedAdmissionClass { flags: h[6] })
1144 );
1145 }
1146
1147 #[test]
1148 fn sheddable_rejected_on_every_illegal_frame_type() {
1149 let flags = Flags::new(false, Priority::Passive, false)
1150 .with_admission_class(AdmissionClass::Sheddable);
1151 for ty in [
1152 FrameType::Request,
1153 FrameType::Response,
1154 FrameType::StreamEnd,
1155 FrameType::Error,
1156 FrameType::Cancel,
1157 FrameType::Ping,
1158 FrameType::Pong,
1159 FrameType::Hello,
1160 FrameType::HelloAck,
1161 FrameType::Goodbye,
1162 ] {
1163 let h = hdr(0, ty, flags, 1, 2);
1164 assert_eq!(
1165 decode_header(&h.encode()),
1166 Err(DecodeError::SheddableIllegalFrameType { ty, flags: flags.0 })
1167 );
1168 }
1169 }
1170
1171 #[test]
1172 fn nonzero_epoch_on_control_channel_is_rejected() {
1173 let h = hdr_with_epoch(
1174 0,
1175 FrameType::Request,
1176 Flags::new(false, Priority::Passive, false),
1177 0,
1178 u32::MAX,
1179 2,
1180 );
1181 assert_eq!(
1182 decode_header(&h.encode()),
1183 Err(DecodeError::NonzeroEpochOnControlChannel { epoch: u32::MAX })
1184 );
1185 }
1186}
1187
1188#[cfg(test)]
1189mod launch_nonce_redaction_tests {
1190 use super::*;
1191
1192 #[test]
1193 fn hello_body_debug_never_prints_the_nonce() {
1194 let body = ModuleHelloBody {
1195 manifest: manifest::ModuleManifest::builder("broca", "0.1.0").build(),
1196 protocol_ver: 2,
1197 control_ops: None,
1198 launch_nonce: Some("nonce-f00dfeed1234abcd".to_string()),
1199 };
1200 let printed = format!("{body:?}");
1201 assert!(printed.contains("broca"), "{printed}");
1202 assert!(
1203 !printed.contains("nonce-f00dfeed1234abcd"),
1204 "launch nonce printed: {printed}"
1205 );
1206 }
1207}