smolvm_protocol/lib.rs
1//! Protocol types for smolvm host-guest communication.
2//!
3//! This crate defines the wire protocol for vsock communication between
4//! the smolvm host and the guest agent (smolvm-agent).
5//!
6//! # Protocol Overview
7//!
8//! Communication uses JSON-encoded messages over vsock. Each message is
9//! prefixed with a 4-byte big-endian length header.
10//!
11//! ```text
12//! +----------------+-------------------+
13//! | Length (4 BE) | JSON payload |
14//! +----------------+-------------------+
15//! ```
16
17#![deny(missing_docs)]
18
19use serde::{Deserialize, Serialize};
20
21pub mod forkpoint;
22pub mod guest_env;
23pub mod image_ref;
24pub mod publish_socket;
25pub mod retry;
26pub mod secrets;
27
28pub use image_ref::{image_repo, normalize_image_ref};
29pub use secrets::{SecretRef, SecretSourceKind};
30
31/// Serde helper for encoding `Vec<u8>` as a base64 string in JSON.
32///
33/// Without this, serde_json serializes `Vec<u8>` as a JSON array of numbers
34/// (e.g., `[104,101,108,108,111]`), which inflates binary data by ~4x.
35/// Base64 encoding reduces this to ~1.33x.
36pub mod base64_bytes {
37 use base64::{engine::general_purpose::STANDARD, Engine};
38 use serde::{Deserialize, Deserializer, Serializer};
39
40 /// Serialize `Vec<u8>` as a base64 string.
41 pub fn serialize<S: Serializer>(data: &[u8], serializer: S) -> Result<S::Ok, S::Error> {
42 serializer.serialize_str(&STANDARD.encode(data))
43 }
44
45 /// Deserialize a base64 string into `Vec<u8>`.
46 pub fn deserialize<'de, D: Deserializer<'de>>(deserializer: D) -> Result<Vec<u8>, D::Error> {
47 let s = String::deserialize(deserializer)?;
48 STANDARD.decode(&s).map_err(serde::de::Error::custom)
49 }
50}
51
52/// Protocol version.
53pub const PROTOCOL_VERSION: u32 = 1;
54
55/// virtiofs tag under which the host exposes the Rosetta 2 Linux runtime to the
56/// guest. Shared host↔guest so the launcher's `krun_add_virtiofs` tag and the
57/// guest agent's `mount -t virtiofs` source can't drift apart.
58pub const ROSETTA_TAG: &str = "rosetta";
59
60/// Guest mount point for the Rosetta 2 Linux runtime. The ptrace wrapper execs
61/// `<ROSETTA_GUEST_PATH>/rosetta` (the translator), so this path is baked into
62/// both the wrapper and the `binfmt_misc` registration.
63pub const ROSETTA_GUEST_PATH: &str = "/mnt/rosetta";
64
65/// Maximum frame size (32 MB - layer exports use chunked streaming).
66pub const MAX_FRAME_SIZE: u32 = 32 * 1024 * 1024;
67
68/// Chunk size for streaming layer data (~16 MB raw, ~21 MB as base64 JSON).
69pub const LAYER_CHUNK_SIZE: usize = 16 * 1024 * 1024;
70
71/// Files at or below this size are written with a single `FileWrite`
72/// message. Larger files must stream via
73/// `FileWriteBegin` + `FileWriteChunk` so no single frame approaches
74/// [`MAX_FRAME_SIZE`] (base64 + JSON inflation is ~1.4x).
75///
76/// Chosen to keep the single-shot frame comfortably under the frame
77/// limit while preserving the fast-path latency for small config
78/// files / scripts / keys.
79pub const FILE_WRITE_SINGLE_SHOT_MAX: usize = 1024 * 1024;
80
81/// Payload bytes per streaming upload chunk. Deliberately small —
82/// equal to [`FILE_WRITE_SINGLE_SHOT_MAX`] — so each chunk's encoded
83/// frame (~1.4 MB) fits inside typical kernel Unix-socket send
84/// buffers (`SO_SNDBUF` defaults on the order of 200–256 KiB but
85/// can grow). Larger chunks would force `write_all` to spin waiting
86/// for the agent to drain, and any latency spike trips the 10 s
87/// write timeout with `EAGAIN` — exactly the failure David
88/// reproduced before this fix landed.
89///
90/// Note: [`LAYER_CHUNK_SIZE`] is 16 MiB for agent→host (download)
91/// streaming, which works because the host side of the socket has
92/// more headroom than the guest side. Upload streaming is the
93/// asymmetric case and needs a smaller chunk.
94pub const FILE_WRITE_CHUNK_SIZE: usize = FILE_WRITE_SINGLE_SHOT_MAX;
95
96// The single-shot threshold must be <= the chunk size. They can be equal (a
97// 1 MiB file is a single shot; a 1 MiB + 1 byte file streams as two chunks),
98// but SINGLE_SHOT > CHUNK would be incoherent — a file slightly over the shot
99// threshold would have to stream as a single oversized chunk. Enforced at
100// compile time so a bad edit fails the build rather than a test.
101const _: () = assert!(FILE_WRITE_SINGLE_SHOT_MAX <= FILE_WRITE_CHUNK_SIZE);
102
103/// Hard ceiling on a single file transfer in either direction.
104///
105/// On the write path: enforced at `FileWriteBegin` by the agent —
106/// `total_size > FILE_TRANSFER_MAX_TOTAL` is rejected before any
107/// staging file is created.
108///
109/// On the read path: enforced by the host's `read_file` loop —
110/// after the first chunk that pushes the accumulated total past the
111/// cap, the call bails with an error and the partial buffer is
112/// dropped. This protects the host process from OOM if the guest
113/// (compromised or merely buggy) streams unbounded data.
114///
115/// 4 GiB matches the order-of-magnitude of the default overlay disk and the
116/// `gpu_vram_mib` cap. It is the compiled-in default. The host-side transfer
117/// paths (read/export, including `pack create --from-vm`) raise it at runtime
118/// via `SMOLVM_FILE_TRANSFER_MAX_BYTES` (see
119/// `agent::client::file_transfer_max_total`) so a VM snapshot whose overlay
120/// carries a large dependency tree (e.g. a torch + CUDA-wheels environment is
121/// ~5 GiB) can be packed without lowering the DoS bound for everyone else. The
122/// guest agent's write-path check runs inside the VM and cannot see that host
123/// env var, so it always enforces this const. Callers that need to move larger
124/// blobs routinely should stage via a virtiofs mount instead of `cp`.
125pub const FILE_TRANSFER_MAX_TOTAL: u64 = 4 * 1024 * 1024 * 1024;
126
127/// Filename of the virtiofs-visible marker the agent creates when it is
128/// ready to accept vsock connections.
129///
130/// The host polls for this file through its virtiofs mount of the guest
131/// rootfs. The agent writes it (and optionally a symlink from `/oldroot/`)
132/// during deferred init, just before opening the vsock listener.
133///
134/// Both sides must agree on this name; keeping it here prevents silent drift.
135pub const AGENT_READY_MARKER: &str = ".smolvm-ready";
136
137/// Well-known vsock ports.
138pub mod ports {
139 /// Control channel for workload VMs.
140 pub const WORKLOAD_CONTROL: u32 = 5000;
141 /// Log streaming from workload VMs.
142 pub const WORKLOAD_LOGS: u32 = 5001;
143 /// Agent control port (for OCI operations and management).
144 pub const AGENT_CONTROL: u32 = 6000;
145 /// SSH agent forwarding (host SSH_AUTH_SOCK bridged to guest).
146 pub const SSH_AGENT: u32 = 6001;
147 /// DNS filtering proxy (guest forwards DNS queries to host for filtering).
148 pub const DNS_FILTER: u32 = 6002;
149 /// Docker socket bridge: the guest listens on this vsock port and proxies
150 /// each connection to the in-guest `/var/run/docker.sock`, so the host can
151 /// reach the guest's Docker daemon over a host-side Unix socket
152 /// (`DOCKER_HOST=unix://…`). Inbound (host connects in), like the agent
153 /// control channel — unlike the outbound SSH/DNS/CUDA bridges.
154 pub const DOCKER: u32 = 6003;
155 /// Readiness doorbell: the guest connects OUT to this host port the instant it
156 /// finishes init, and the host's `accept()` fires — an event-driven readiness
157 /// signal that needs no writable filesystem, DAX window, or extra virtio
158 /// device. Outbound (guest connects in), like the SSH/DNS/CUDA bridges. The
159 /// primary readiness signal; the ready-marker file and the control-channel
160 /// ping remain as fallbacks. A fork clone resumes past the ring, so it never
161 /// dials this — clones detect readiness by pinging the restored agent.
162 pub const AGENT_READY: u32 = 6004;
163 /// CUDA-over-vsock (experimental): guest CUDA client forwards Driver-API
164 /// calls to a host CUDA server that runs them on the host NVIDIA GPU.
165 pub const CUDA: u32 = 7000;
166
167 /// Base vsock port for user-published Unix-socket bridges
168 /// (`--expose-socket` / `--mount-socket`). Each published socket is assigned
169 /// `PUBLISH_SOCKET_BASE + index`. Kept clear of the fixed ports above (and of
170 /// CUDA at 7000) so a reasonable number of sockets never collides.
171 pub const PUBLISH_SOCKET_BASE: u32 = 6100;
172
173 /// Maximum number of user-published sockets per VM. Bounds the vsock-port
174 /// window (`6100..6100+MAX`) below CUDA's 7000.
175 pub const PUBLISH_SOCKET_MAX: usize = 64;
176}
177
178/// vsock CID constants.
179pub mod cid {
180 /// Host CID (always 2).
181 pub const HOST: u32 = 2;
182 /// Guest CID (always 3 for the first/only guest).
183 pub const GUEST: u32 = 3;
184 /// Any CID (for listening).
185 pub const ANY: u32 = u32::MAX;
186}
187
188/// fsnotify event masks, mirroring the kernel's `FS_*` bits in
189/// `include/linux/fsnotify_backend.h`. Shared by the host watcher (which maps a
190/// host filesystem event to one of these) and the guest agent (which forwards
191/// the raw bits to `/proc/smolvm-fsnotify`). Only the subset relevant to
192/// file-watching tools is defined.
193pub mod fsnotify_mask {
194 /// File was modified.
195 pub const FS_MODIFY: u32 = 0x0000_0002;
196 /// Metadata changed (chmod/chown/utimes).
197 pub const FS_ATTRIB: u32 = 0x0000_0004;
198 /// Writable file was closed.
199 pub const FS_CLOSE_WRITE: u32 = 0x0000_0008;
200 /// File was moved away from the watched dir.
201 pub const FS_MOVED_FROM: u32 = 0x0000_0040;
202 /// File was moved into the watched dir.
203 pub const FS_MOVED_TO: u32 = 0x0000_0080;
204 /// Subfile was created.
205 pub const FS_CREATE: u32 = 0x0000_0100;
206 /// Subfile was deleted.
207 pub const FS_DELETE: u32 = 0x0000_0200;
208 /// Event occurred against a directory.
209 pub const FS_ISDIR: u32 = 0x4000_0000;
210}
211
212/// A single host-originated filesystem change to replay into the guest.
213#[derive(Debug, Clone, Serialize, Deserialize)]
214pub struct FsNotifyEvent {
215 /// Guest-side absolute path the event occurred on (virtiofs staging path).
216 pub path: String,
217 /// `fsnotify_mask::FS_*` bitmask for the event.
218 pub mask: u32,
219}
220
221// ============================================================================
222// Agent Protocol (OCI Operations)
223// ============================================================================
224
225/// Agent request types (for image management and OCI operations).
226#[derive(Debug, Clone, Serialize, Deserialize)]
227#[serde(tag = "method", rename_all = "snake_case")]
228pub enum AgentRequest {
229 /// Ping to check if agent is alive.
230 Ping,
231
232 /// Inject host-originated fsnotify events into the guest.
233 ///
234 /// virtiofs does not deliver host-side file changes to the guest as
235 /// fsnotify/inotify events, so inotify-based hot-reload (Vite, webpack,
236 /// nodemon) never fires when a mounted file is edited on the host. The host
237 /// watches the mount source and sends the resulting events here; the agent
238 /// writes them to `/proc/smolvm-fsnotify`, which fires the matching event on
239 /// the guest inode so watchers on the (bind-mounted) container path wake up.
240 /// Each `path` is a guest-side absolute path (the virtiofs staging path),
241 /// `mask` an `fsnotify_mask::FS_*` bitmask.
242 FsNotify {
243 /// Host-originated filesystem changes to replay as guest fsnotify events.
244 #[serde(default)]
245 events: Vec<FsNotifyEvent>,
246 },
247
248 /// Pull an OCI image and extract layers.
249 Pull {
250 /// Image reference (e.g., "alpine:latest", "docker.io/library/ubuntu:22.04").
251 image: String,
252 /// OCI platform to pull (e.g., "linux/arm64", "linux/amd64").
253 oci_platform: Option<String>,
254 /// Optional registry authentication credentials.
255 #[serde(default, skip_serializing_if = "Option::is_none")]
256 auth: Option<RegistryAuth>,
257 /// Proxy URL applied to the registry client (sets HTTP_PROXY and HTTPS_PROXY).
258 #[serde(default, skip_serializing_if = "Option::is_none")]
259 proxy: Option<String>,
260 /// Comma-separated NO_PROXY list of hosts/CIDRs that bypass the proxy.
261 #[serde(default, skip_serializing_if = "Option::is_none")]
262 no_proxy: Option<String>,
263 },
264
265 /// Query if an image exists locally.
266 Query {
267 /// Image reference.
268 image: String,
269 },
270
271 /// List all cached images.
272 ListImages,
273
274 /// Run garbage collection on unused layers.
275 GarbageCollect {
276 /// If true, only report what would be deleted.
277 dry_run: bool,
278 /// If true, delete all image manifests and configs first,
279 /// making all layers unreferenced so they get collected.
280 #[serde(default)]
281 purge_all: bool,
282 },
283
284 /// Prepare overlay rootfs for a workload.
285 PrepareOverlay {
286 /// Image reference.
287 image: String,
288 /// Unique workload ID for the overlay.
289 workload_id: String,
290 },
291
292 /// Clean up overlay rootfs for a workload.
293 CleanupOverlay {
294 /// Workload ID to clean up.
295 workload_id: String,
296 },
297
298 /// Format the storage disk (first-time setup).
299 FormatStorage,
300
301 /// Get storage disk status.
302 StorageStatus,
303
304 /// Test network connectivity directly from the agent (not via chroot).
305 /// Used to debug TSI networking.
306 NetworkTest {
307 /// URL to test (e.g., "http://1.1.1.1")
308 url: String,
309 },
310
311 /// Shutdown the agent.
312 Shutdown,
313
314 /// Export a layer as a tar archive.
315 ///
316 /// Used by `smolvm pack` to extract OCI layers for packaging.
317 /// The agent streams the layer tar data back via LayerData responses.
318 ExportLayer {
319 /// Image digest (sha256:...).
320 image_digest: String,
321 /// Layer index (0-based).
322 layer_index: usize,
323 },
324
325 /// Merge a stack of directories into a single tar archive.
326 ///
327 /// `pack create --from-vm` ships the machine's image layers plus whatever the
328 /// container has written since as ONE flattened layer. The merge has to apply
329 /// whiteouts and opaque markers exactly as the runtime would, so it is done
330 /// with a read-only overlay mount rather than a file copy.
331 ///
332 /// The agent owns this rather than the host driving `mount(8)` over `VmExec`,
333 /// because `mount(8)` rejects a `lowerdir=` value beyond ~255 bytes — about
334 /// three OCI layer paths — while the agent can append each layer separately
335 /// through the same `fsconfig` path the runtime container mount uses.
336 FlattenLayers {
337 /// Directories to merge, bottom -> top. Entries that are missing or empty
338 /// are dropped, so a caller may include a container overlay's upper dir
339 /// without first checking whether the machine ever wrote to it.
340 lowerdirs: Vec<String>,
341 /// Guest path to write the tar archive to.
342 output: String,
343 },
344
345 /// Execute a command directly in the VM (not in a container).
346 ///
347 /// This runs the command in the agent's Alpine rootfs without any
348 /// container isolation. Useful for VM-level operations and debugging.
349 VmExec {
350 /// Command and arguments.
351 command: Vec<String>,
352 /// Environment variables.
353 #[serde(default)]
354 env: Vec<(String, String)>,
355 /// Working directory in the VM.
356 workdir: Option<String>,
357 /// Timeout in milliseconds.
358 #[serde(default)]
359 timeout_ms: Option<u64>,
360 /// Interactive mode - stream I/O instead of buffering.
361 #[serde(default)]
362 interactive: bool,
363 /// Allocate a pseudo-TTY for the command.
364 #[serde(default)]
365 tty: bool,
366 /// Background mode - spawn and return PID immediately without waiting.
367 #[serde(default)]
368 background: bool,
369 /// Data to pipe to the command's stdin.
370 #[serde(default)]
371 stdin_data: Option<String>,
372 },
373
374 /// Run a command in an image's rootfs.
375 ///
376 /// This prepares an overlay, chroots into it, and executes the command.
377 /// Returns stdout, stderr, and exit code when the command completes.
378 Run {
379 /// Image reference (must be pulled first).
380 image: String,
381 /// Command and arguments.
382 command: Vec<String>,
383 /// Environment variables.
384 #[serde(default)]
385 env: Vec<(String, String)>,
386 /// Working directory inside the rootfs.
387 workdir: Option<String>,
388 /// User inside the rootfs. If omitted, the OCI image default applies.
389 #[serde(default, skip_serializing_if = "Option::is_none")]
390 user: Option<String>,
391 /// Volume mounts to bind into the container.
392 /// Each tuple is (virtiofs_tag, container_path, read_only).
393 #[serde(default)]
394 mounts: Vec<(String, String, bool)>,
395 /// Timeout in milliseconds. If the command exceeds this duration,
396 /// it will be killed and return exit code 124.
397 #[serde(default)]
398 timeout_ms: Option<u64>,
399 /// Interactive mode - stream I/O instead of buffering.
400 /// When true, output is streamed via Stdout/Stderr responses,
401 /// and stdin can be sent via the Stdin request.
402 #[serde(default)]
403 interactive: bool,
404 /// Allocate a pseudo-TTY for the command.
405 /// Enables terminal features like colors, line editing, and signal handling.
406 #[serde(default)]
407 tty: bool,
408 /// Detached mode — start the container and return immediately with the
409 /// container ID. Only meaningful when `persistent_overlay_id` is set.
410 /// Returns a `Completed` response with `stdout` containing the container ID.
411 #[serde(default)]
412 detached: bool,
413 /// Run the workload as an unprivileged container: restricted capabilities,
414 /// read-only cgroup, and no extra tmpfs. The default (false) is "VM-grade"
415 /// — since the microVM is the isolation boundary, the workload gets a full
416 /// capability set and the mounts an init system needs (so any image, incl.
417 /// systemd, boots). Opt in for defense-in-depth when running untrusted code.
418 #[serde(default)]
419 unprivileged: bool,
420 /// If set, use a persistent overlay that survives across exec sessions.
421 /// The overlay is identified by this ID (typically the machine name)
422 /// and reused on subsequent runs. If not set, an ephemeral overlay is
423 /// created and destroyed after the run.
424 #[serde(default, skip_serializing_if = "Option::is_none")]
425 persistent_overlay_id: Option<String>,
426 /// Data to pipe to the command's stdin (non-interactive runs only).
427 /// The pipe is closed after writing, so the command sees EOF.
428 #[serde(default, skip_serializing_if = "Option::is_none")]
429 stdin_data: Option<String>,
430 /// Spawn the container and return immediately with the crun PID.
431 /// The container runs detached; stdout/stderr go to /dev/null.
432 /// Incompatible with `interactive` and `tty`.
433 #[serde(default)]
434 background: bool,
435 },
436
437 /// Send stdin data to a running interactive command.
438 Stdin {
439 /// Input data to send to the command's stdin.
440 #[serde(with = "base64_bytes")]
441 data: Vec<u8>,
442 },
443
444 /// Resize the PTY window (for TTY mode).
445 Resize {
446 /// New width in columns.
447 cols: u16,
448 /// New height in rows.
449 rows: u16,
450 },
451
452 // ========================================================================
453 // File I/O
454 // ========================================================================
455 /// Write a file inside the VM in a single message.
456 ///
457 /// Use only for files up to [`FILE_WRITE_SINGLE_SHOT_MAX`]. Larger
458 /// files must stream via [`Self::FileWriteBegin`] +
459 /// [`Self::FileWriteChunk`] to avoid exceeding [`MAX_FRAME_SIZE`]
460 /// after base64 + JSON inflation.
461 FileWrite {
462 /// Absolute path in the VM filesystem.
463 path: String,
464 /// File contents.
465 #[serde(with = "base64_bytes")]
466 data: Vec<u8>,
467 /// File mode (e.g., 0o644). None = default (0644).
468 #[serde(default)]
469 mode: Option<u32>,
470 },
471
472 /// Open a streaming file upload session on this connection.
473 ///
474 /// Must be followed by one or more [`Self::FileWriteChunk`]
475 /// requests. The final chunk sets `done: true` to finalize.
476 /// Dropping the connection (or sending any non-chunk request)
477 /// before `done` aborts the session and leaves no partial file
478 /// at `path`.
479 ///
480 /// Sessions are per-connection — one session at a time.
481 FileWriteBegin {
482 /// Absolute path in the VM filesystem.
483 path: String,
484 /// File mode (e.g., 0o644). None = default (0644).
485 #[serde(default)]
486 mode: Option<u32>,
487 /// Expected total size in bytes. Rejected if it exceeds
488 /// [`FILE_TRANSFER_MAX_TOTAL`]. The agent uses this for an
489 /// early-fail check only; the actual size written is the sum
490 /// of chunk byte lengths.
491 total_size: u64,
492 },
493
494 /// Append a chunk to the currently open streaming upload.
495 /// If `done` is true, the agent fsyncs and atomically renames the
496 /// staging file onto the target path.
497 FileWriteChunk {
498 /// Chunk bytes. Typically [`FILE_WRITE_CHUNK_SIZE`] except
499 /// for the last chunk.
500 #[serde(with = "base64_bytes")]
501 data: Vec<u8>,
502 /// True on the final chunk; closes and renames the staging
503 /// file. False on intermediate chunks.
504 done: bool,
505 },
506
507 /// Read a file from the VM.
508 FileRead {
509 /// Absolute path in the VM filesystem.
510 path: String,
511 },
512
513 /// Create (without starting) a Kubernetes pod container whose rootfs is a
514 /// virtiofs-shared host directory (containerd snapshotter output) and whose
515 /// process definition comes from the host's OCI config. The agent builds
516 /// its crun bundle around the shared rootfs; nothing runs until
517 /// `PodStart`. Part of the containerd shim v2 datapath
518 /// (docs/kubernetes-runtime.md).
519 PodCreate {
520 /// Container ID (containerd task id).
521 id: String,
522 /// Rootfs path relative to the sandbox's shared virtiofs mount. The
523 /// shim boots the sandbox VM with ONE shared dir and bind-mounts each
524 /// container's rootfs under it (virtiofs shares are fixed at boot, but
525 /// pod containers are created afterwards), so the guest resolves this
526 /// as `<sandbox-share-mount>/<rootfs_rel>`.
527 rootfs_rel: String,
528 /// The host OCI runtime spec (config.json bytes). The agent extracts
529 /// process/env/cwd/user/mounts/resources and grafts them onto its own
530 /// guest bundle template; host-specific namespaces/paths are ignored.
531 spec_json: String,
532 /// Allocate a PTY for the init process.
533 #[serde(default)]
534 tty: bool,
535 },
536
537 /// Start a pod container created by `PodCreate` (or an exec process
538 /// registered by `PodExec`), streaming its I/O on THIS connection:
539 /// `Started` → `Stdout`/`Stderr`... → `Exited`. Stdin arrives via `Stdin`
540 /// requests; PTY resize via `Resize`.
541 PodStart {
542 /// Container ID.
543 id: String,
544 /// Exec process to start instead of the init process.
545 #[serde(default, skip_serializing_if = "Option::is_none")]
546 exec_id: Option<String>,
547 },
548
549 /// Register an exec process for a running pod container. Started later by
550 /// `PodStart { exec_id }`.
551 PodExec {
552 /// Container ID.
553 id: String,
554 /// Exec process ID (unique within the container).
555 exec_id: String,
556 /// OCI Process JSON (containerd's ExecProcessRequest spec).
557 process_json: String,
558 /// Allocate a PTY for the exec process.
559 #[serde(default)]
560 tty: bool,
561 },
562
563 /// Signal a pod container's init process (or one exec process).
564 PodSignal {
565 /// Container ID.
566 id: String,
567 /// Exec process to signal instead of init.
568 #[serde(default, skip_serializing_if = "Option::is_none")]
569 exec_id: Option<String>,
570 /// Signal number (SIGKILL = 9, SIGTERM = 15, ...).
571 signal: u32,
572 /// Signal the whole container process group.
573 #[serde(default)]
574 all: bool,
575 },
576
577 /// List PIDs inside a pod container (guest view).
578 PodPids {
579 /// Container ID.
580 id: String,
581 },
582
583 /// Sample a pod container's resource usage (guest view). The agent reads the
584 /// container's process tree from /proc (there is no per-container cgroup); the
585 /// shim maps the reply into containerd's cgroups metrics for CRI stats.
586 PodStats {
587 /// Container ID.
588 id: String,
589 },
590
591 /// Remove a pod container's (or exec process's) guest resources after
592 /// exit: bundle, cgroup, PTY. Exit status was already streamed by
593 /// `PodStart`'s `Exited`.
594 PodDelete {
595 /// Container ID.
596 id: String,
597 /// Exec process to remove instead of the whole container.
598 #[serde(default, skip_serializing_if = "Option::is_none")]
599 exec_id: Option<String>,
600 },
601}
602
603impl AgentRequest {
604 /// A log-safe one-line summary of the request.
605 ///
606 /// This string is written to the machine's console log, which is exposed
607 /// over the logs API — so it must NEVER include credential- or data-bearing
608 /// fields: registry `auth`, `env` (which can carry host-resolved secrets),
609 /// `proxy` (may embed credentials), or `data` (file/stdin bytes). Only the
610 /// variant name plus a non-secret identifier (image) is emitted.
611 ///
612 /// The match is exhaustive with no catch-all on purpose: adding a new
613 /// variant forces a compile error here, so redaction is a deliberate
614 /// decision rather than an accidental leak in some future request type.
615 pub fn log_summary(&self) -> String {
616 match self {
617 AgentRequest::Ping => "Ping".into(),
618 AgentRequest::FsNotify { events } => format!("FsNotify {{ count: {} }}", events.len()),
619 AgentRequest::Pull { image, .. } => format!("Pull {{ image: {image} }}"),
620 AgentRequest::Query { image, .. } => format!("Query {{ image: {image} }}"),
621 AgentRequest::ListImages => "ListImages".into(),
622 AgentRequest::GarbageCollect { .. } => "GarbageCollect".into(),
623 AgentRequest::PrepareOverlay { .. } => "PrepareOverlay".into(),
624 AgentRequest::CleanupOverlay { .. } => "CleanupOverlay".into(),
625 AgentRequest::FormatStorage => "FormatStorage".into(),
626 AgentRequest::StorageStatus => "StorageStatus".into(),
627 AgentRequest::NetworkTest { .. } => "NetworkTest".into(),
628 AgentRequest::Shutdown => "Shutdown".into(),
629 AgentRequest::ExportLayer { .. } => "ExportLayer".into(),
630 AgentRequest::FlattenLayers { lowerdirs, .. } => {
631 format!("FlattenLayers {{ count: {} }}", lowerdirs.len())
632 }
633 AgentRequest::VmExec { .. } => "VmExec".into(),
634 AgentRequest::Run { image, .. } => format!("Run {{ image: {image} }}"),
635 AgentRequest::Stdin { .. } => "Stdin".into(),
636 AgentRequest::Resize { .. } => "Resize".into(),
637 AgentRequest::FileWrite { .. } => "FileWrite".into(),
638 AgentRequest::FileWriteBegin { .. } => "FileWriteBegin".into(),
639 AgentRequest::FileWriteChunk { .. } => "FileWriteChunk".into(),
640 AgentRequest::FileRead { .. } => "FileRead".into(),
641 // Pod requests: spec/process JSON may carry env secrets — emit ids only.
642 AgentRequest::PodCreate { id, .. } => format!("PodCreate {{ id: {id} }}"),
643 AgentRequest::PodStart { id, exec_id } => match exec_id {
644 Some(e) => format!("PodStart {{ id: {id}, exec: {e} }}"),
645 None => format!("PodStart {{ id: {id} }}"),
646 },
647 AgentRequest::PodExec { id, exec_id, .. } => {
648 format!("PodExec {{ id: {id}, exec: {exec_id} }}")
649 }
650 AgentRequest::PodSignal {
651 id, signal, all, ..
652 } => format!("PodSignal {{ id: {id}, signal: {signal}, all: {all} }}"),
653 AgentRequest::PodPids { id } => format!("PodPids {{ id: {id} }}"),
654 AgentRequest::PodStats { id } => format!("PodStats {{ id: {id} }}"),
655 AgentRequest::PodDelete { id, exec_id } => match exec_id {
656 Some(e) => format!("PodDelete {{ id: {id}, exec: {e} }}"),
657 None => format!("PodDelete {{ id: {id} }}"),
658 },
659 }
660 }
661}
662
663/// Agent response types.
664#[derive(Debug, Clone, Serialize, Deserialize)]
665#[serde(tag = "status", rename_all = "snake_case")]
666pub enum AgentResponse {
667 /// Operation completed successfully.
668 Ok {
669 /// Response data (varies by request type).
670 #[serde(default, skip_serializing_if = "Option::is_none")]
671 data: Option<serde_json::Value>,
672 },
673
674 /// Pong response to ping.
675 Pong {
676 /// Protocol version.
677 version: u32,
678 /// Optional agent features that can evolve independently of the base protocol.
679 #[serde(default, skip_serializing_if = "Vec::is_empty")]
680 capabilities: Vec<String>,
681 },
682
683 /// Progress update (for long operations like pull).
684 Progress {
685 /// Human-readable message.
686 message: String,
687 /// Completion percentage (0-100).
688 #[serde(default, skip_serializing_if = "Option::is_none")]
689 percent: Option<u8>,
690 /// Current layer being processed.
691 #[serde(default, skip_serializing_if = "Option::is_none")]
692 layer: Option<String>,
693 },
694
695 /// Operation failed.
696 Error {
697 /// Error message.
698 message: String,
699 /// Error code (for programmatic handling).
700 #[serde(default, skip_serializing_if = "Option::is_none")]
701 code: Option<String>,
702 },
703
704 /// Command execution completed (non-interactive mode).
705 Completed {
706 /// Exit code from the command.
707 exit_code: i32,
708 /// Standard output (may be truncated). `Vec<u8>` preserves binary
709 /// output (image bytes, tarballs, etc.) that would be truncated by
710 /// `String` at the first non-UTF-8 byte. Serialized as base64 JSON
711 /// string — the same format as the streaming `Stdout` variant.
712 #[serde(with = "base64_bytes")]
713 stdout: Vec<u8>,
714 /// Standard error (may be truncated).
715 #[serde(with = "base64_bytes")]
716 stderr: Vec<u8>,
717 },
718
719 /// Command started (interactive mode).
720 /// Indicates the command is running and ready to receive stdin.
721 Started,
722
723 /// Stdout data from a running command (interactive mode).
724 Stdout {
725 /// Output data.
726 #[serde(with = "base64_bytes")]
727 data: Vec<u8>,
728 },
729
730 /// Stderr data from a running command (interactive mode).
731 Stderr {
732 /// Error output data.
733 #[serde(with = "base64_bytes")]
734 data: Vec<u8>,
735 },
736
737 /// Command exited (interactive mode).
738 Exited {
739 /// Exit code from the command.
740 exit_code: i32,
741 /// The container was terminated by the cgroup OOM killer. The shim
742 /// turns this into a TaskOOM event so the CRI reports
743 /// `reason=OOMKilled`. Only ever set on a pod container's init exit.
744 #[serde(default)]
745 oom: bool,
746 },
747
748 /// PIDs inside a pod container (`PodPids` reply).
749 Pids {
750 /// Guest PIDs, container-init first when known.
751 pids: Vec<u32>,
752 },
753
754 /// Resource usage sample for a pod container (`PodStats` reply). Summed over
755 /// the container's process tree read from /proc (no per-container cgroup).
756 Stats {
757 /// Cumulative CPU time of the process tree, in nanoseconds.
758 cpu_usage_ns: u64,
759 /// Resident memory of the process tree, in bytes.
760 memory_bytes: u64,
761 },
762
763 /// Streaming binary-data chunk.
764 ///
765 /// Used by every streaming download direction: the agent sends
766 /// one or more `DataChunk` responses in sequence, with `done: true`
767 /// on the final chunk. Current producers: `ExportLayer` and
768 /// `FileRead`.
769 ///
770 /// Payload size per chunk should stay under
771 /// [`LAYER_CHUNK_SIZE`] so the encoded frame (~1.33× after
772 /// base64) fits inside [`MAX_FRAME_SIZE`] with JSON overhead to
773 /// spare.
774 DataChunk {
775 /// Chunk bytes. Empty allowed on the final frame (common for
776 /// EOF-on-clean-boundary cases).
777 #[serde(with = "base64_bytes")]
778 data: Vec<u8>,
779 /// True on the final chunk of the stream.
780 done: bool,
781 },
782}
783
784// ============================================================================
785// Error Code Constants
786// ============================================================================
787//
788// Standard error codes for AgentResponse::Error. Using constants ensures
789// consistency across the codebase and makes error handling more reliable.
790
791/// Error codes for agent responses.
792pub mod error_codes {
793 /// Request payload was invalid or malformed.
794 pub const INVALID_REQUEST: &str = "INVALID_REQUEST";
795 /// Requested resource was not found.
796 pub const NOT_FOUND: &str = "NOT_FOUND";
797 /// Internal error during operation.
798 pub const INTERNAL_ERROR: &str = "INTERNAL_ERROR";
799 /// Image pull operation failed.
800 pub const PULL_FAILED: &str = "PULL_FAILED";
801 /// Image query operation failed.
802 pub const QUERY_FAILED: &str = "QUERY_FAILED";
803 /// Command execution failed.
804 pub const RUN_FAILED: &str = "RUN_FAILED";
805 /// Command execution failed in container.
806 pub const EXEC_FAILED: &str = "EXEC_FAILED";
807 /// Process spawn failed.
808 pub const SPAWN_FAILED: &str = "SPAWN_FAILED";
809 /// Mount operation failed.
810 pub const MOUNT_FAILED: &str = "MOUNT_FAILED";
811 /// File I/O operation failed.
812 pub const FILE_IO_FAILED: &str = "FILE_IO_FAILED";
813 /// Overlay filesystem operation failed.
814 pub const OVERLAY_FAILED: &str = "OVERLAY_FAILED";
815 /// Cleanup operation failed.
816 pub const CLEANUP_FAILED: &str = "CLEANUP_FAILED";
817 /// Storage format operation failed.
818 pub const FORMAT_FAILED: &str = "FORMAT_FAILED";
819 /// Storage status query failed.
820 pub const STATUS_FAILED: &str = "STATUS_FAILED";
821 /// List operation failed.
822 pub const LIST_FAILED: &str = "LIST_FAILED";
823 /// Garbage collection failed.
824 pub const GC_FAILED: &str = "GC_FAILED";
825 /// Container creation failed.
826 pub const CREATE_FAILED: &str = "CREATE_FAILED";
827 /// Container start failed.
828 pub const START_FAILED: &str = "START_FAILED";
829 /// Container stop failed.
830 pub const STOP_FAILED: &str = "STOP_FAILED";
831 /// Container delete failed.
832 pub const DELETE_FAILED: &str = "DELETE_FAILED";
833 /// Export operation failed.
834 pub const EXPORT_FAILED: &str = "EXPORT_FAILED";
835 /// Serialization error.
836 pub const SERIALIZATION_ERROR: &str = "SERIALIZATION_ERROR";
837 /// Message size exceeds maximum.
838 pub const MESSAGE_TOO_LARGE: &str = "MESSAGE_TOO_LARGE";
839 /// Process wait operation failed.
840 pub const WAIT_FAILED: &str = "WAIT_FAILED";
841}
842
843impl AgentResponse {
844 /// Create an error response with the given message and code.
845 ///
846 /// # Example
847 ///
848 /// ```
849 /// use smolvm_protocol::{AgentResponse, error_codes};
850 ///
851 /// let response = AgentResponse::error("image not found", error_codes::NOT_FOUND);
852 /// ```
853 pub fn error(message: impl Into<String>, code: &str) -> Self {
854 AgentResponse::Error {
855 message: message.into(),
856 code: Some(code.to_string()),
857 }
858 }
859
860 /// Create an error response from a Result's error, with the given code.
861 ///
862 /// # Example
863 ///
864 /// ```ignore
865 /// let response = some_operation()
866 /// .map(|data| AgentResponse::ok_with_data(data))
867 /// .unwrap_or_else(|e| AgentResponse::from_err(e, error_codes::PULL_FAILED));
868 /// ```
869 pub fn from_err<E: std::fmt::Display>(err: E, code: &str) -> Self {
870 AgentResponse::Error {
871 message: err.to_string(),
872 code: Some(code.to_string()),
873 }
874 }
875
876 /// Create an Ok response with optional JSON data.
877 pub fn ok(data: Option<serde_json::Value>) -> Self {
878 AgentResponse::Ok { data }
879 }
880
881 /// Create an Ok response with JSON-serializable data.
882 ///
883 /// Returns an error response if serialization fails.
884 pub fn ok_with_data<T: serde::Serialize>(data: T) -> Self {
885 match serde_json::to_value(data) {
886 Ok(value) => AgentResponse::Ok { data: Some(value) },
887 Err(e) => AgentResponse::error(
888 format!("failed to serialize response: {}", e),
889 error_codes::SERIALIZATION_ERROR,
890 ),
891 }
892 }
893
894 /// Convert a Result into an AgentResponse.
895 ///
896 /// On success, serializes the value to JSON. On error, creates an error response.
897 ///
898 /// # Example
899 ///
900 /// ```ignore
901 /// let response = AgentResponse::from_result(
902 /// storage::pull_image(image),
903 /// error_codes::PULL_FAILED,
904 /// );
905 /// ```
906 pub fn from_result<T, E>(result: Result<T, E>, error_code: &str) -> Self
907 where
908 T: serde::Serialize,
909 E: std::fmt::Display,
910 {
911 match result {
912 Ok(data) => Self::ok_with_data(data),
913 Err(e) => Self::from_err(e, error_code),
914 }
915 }
916}
917
918/// Image information returned by Query/ListImages.
919#[derive(Debug, Clone, Serialize, Deserialize)]
920pub struct ImageInfo {
921 /// Image reference.
922 pub reference: String,
923 /// Image digest (sha256:...).
924 pub digest: String,
925 /// Image size in bytes.
926 pub size: u64,
927 /// Creation timestamp (ISO 8601).
928 pub created: Option<String>,
929 /// Platform architecture.
930 pub architecture: String,
931 /// Platform OS.
932 pub os: String,
933 /// Number of layers.
934 pub layer_count: usize,
935 /// Layer digests in order.
936 pub layers: Vec<String>,
937 /// Image entrypoint (from OCI config).
938 #[serde(default)]
939 pub entrypoint: Vec<String>,
940 /// Image default command (from OCI config).
941 #[serde(default)]
942 pub cmd: Vec<String>,
943 /// Image environment variables (from OCI config).
944 #[serde(default)]
945 pub env: Vec<String>,
946 /// Image working directory (from OCI config).
947 #[serde(default)]
948 pub workdir: Option<String>,
949 /// Image default user (from OCI config).
950 #[serde(default)]
951 pub user: Option<String>,
952}
953
954/// Overlay preparation result.
955#[derive(Debug, Clone, Serialize, Deserialize)]
956pub struct OverlayInfo {
957 /// Path to the merged overlay rootfs.
958 pub rootfs_path: String,
959 /// Path to the upper (writable) directory.
960 pub upper_path: String,
961 /// Path to the work directory.
962 pub work_path: String,
963}
964
965/// Storage status information.
966#[derive(Debug, Clone, Serialize, Deserialize)]
967pub struct StorageStatus {
968 /// Whether the storage is formatted and ready.
969 pub ready: bool,
970 /// Total size in bytes.
971 pub total_bytes: u64,
972 /// Used size in bytes.
973 pub used_bytes: u64,
974 /// Number of cached layers.
975 pub layer_count: usize,
976 /// Number of cached images.
977 pub image_count: usize,
978}
979
980/// Registry authentication credentials for pulling images.
981///
982/// `Debug` is hand-written to redact the password: this value is carried inside
983/// `AgentRequest::Pull`, and any `{:?}` of that request (e.g. a tracing span)
984/// would otherwise serialize the token verbatim into the machine's console log,
985/// which is exposed over the logs API.
986#[derive(Clone, Serialize, Deserialize)]
987pub struct RegistryAuth {
988 /// Username for authentication.
989 pub username: String,
990 /// Password or token for authentication.
991 pub password: String,
992}
993
994impl std::fmt::Debug for RegistryAuth {
995 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
996 f.debug_struct("RegistryAuth")
997 .field("username", &self.username)
998 .field("password", &"***")
999 .finish()
1000 }
1001}
1002
1003// ============================================================================
1004// Workload VM Protocol (Command Execution)
1005// ============================================================================
1006
1007/// Messages from host to workload VM.
1008#[derive(Debug, Clone, Serialize, Deserialize)]
1009#[serde(tag = "type", rename_all = "snake_case")]
1010pub enum HostMessage {
1011 /// Authentication request.
1012 Auth {
1013 /// Authentication token (base64).
1014 token: String,
1015 /// Protocol version.
1016 protocol_version: u32,
1017 },
1018
1019 /// Run a command.
1020 Run {
1021 /// Request ID for correlating responses.
1022 request_id: u64,
1023 /// Command and arguments.
1024 command: Vec<String>,
1025 /// Environment variables.
1026 env: Vec<(String, String)>,
1027 /// Working directory.
1028 workdir: Option<String>,
1029 },
1030
1031 /// Execute a command in running VM.
1032 Exec {
1033 /// Request ID.
1034 request_id: u64,
1035 /// Command and arguments.
1036 command: Vec<String>,
1037 /// Allocate a TTY.
1038 tty: bool,
1039 },
1040
1041 /// Send a signal to a running command.
1042 Signal {
1043 /// Request ID of the command.
1044 request_id: u64,
1045 /// Signal number.
1046 signal: i32,
1047 },
1048
1049 /// Request graceful shutdown.
1050 Stop {
1051 /// Timeout in milliseconds.
1052 timeout_ms: u64,
1053 },
1054}
1055
1056/// Messages from workload VM to host.
1057#[derive(Debug, Clone, Serialize, Deserialize)]
1058#[serde(tag = "type", rename_all = "snake_case")]
1059pub enum GuestMessage {
1060 /// Authentication successful.
1061 AuthOk,
1062
1063 /// Authentication failed.
1064 AuthFailed,
1065
1066 /// VM is ready to receive commands.
1067 Ready,
1068
1069 /// Command started.
1070 Started {
1071 /// Request ID.
1072 request_id: u64,
1073 },
1074
1075 /// Stdout data from command.
1076 Stdout {
1077 /// Request ID.
1078 request_id: u64,
1079 /// Output data.
1080 #[serde(with = "base64_bytes")]
1081 data: Vec<u8>,
1082 /// Whether output was truncated.
1083 truncated: bool,
1084 },
1085
1086 /// Stderr data from command.
1087 Stderr {
1088 /// Request ID.
1089 request_id: u64,
1090 /// Output data.
1091 #[serde(with = "base64_bytes")]
1092 data: Vec<u8>,
1093 /// Whether output was truncated.
1094 truncated: bool,
1095 },
1096
1097 /// Command exited.
1098 Exit {
1099 /// Request ID.
1100 request_id: u64,
1101 /// Exit code.
1102 code: i32,
1103 /// Exit reason.
1104 reason: String,
1105 },
1106
1107 /// Error occurred.
1108 Error {
1109 /// Request ID (if applicable).
1110 request_id: Option<u64>,
1111 /// Error message.
1112 message: String,
1113 },
1114}
1115
1116// ============================================================================
1117// Wire Format Helpers
1118// ============================================================================
1119
1120/// Envelope that wraps any message with an optional trace ID for correlation.
1121///
1122/// On the wire, the trace_id is flattened into the JSON alongside the message
1123/// fields: `{"trace_id":"abc123","method":"ping"}`.
1124#[derive(Debug, Clone, Serialize, Deserialize)]
1125pub struct Envelope<T> {
1126 /// Trace ID for correlating host API requests to agent operations.
1127 #[serde(skip_serializing_if = "Option::is_none", default)]
1128 pub trace_id: Option<String>,
1129 /// The wrapped message.
1130 #[serde(flatten)]
1131 pub body: T,
1132}
1133
1134impl<T> Envelope<T> {
1135 /// Create an envelope with no trace ID.
1136 pub fn new(body: T) -> Self {
1137 Self {
1138 trace_id: None,
1139 body,
1140 }
1141 }
1142
1143 /// Create an envelope with an optional trace ID.
1144 pub fn with_trace_id(body: T, trace_id: Option<String>) -> Self {
1145 Self { trace_id, body }
1146 }
1147}
1148
1149/// Encode a message to wire format (length-prefixed JSON).
1150pub fn encode_message<T: Serialize>(msg: &T) -> Result<Vec<u8>, serde_json::Error> {
1151 let json = serde_json::to_vec(msg)?;
1152 let len = json.len() as u32;
1153
1154 let mut buf = Vec::with_capacity(4 + json.len());
1155 buf.extend_from_slice(&len.to_be_bytes());
1156 buf.extend_from_slice(&json);
1157
1158 Ok(buf)
1159}
1160
1161/// Decode a message from wire format.
1162pub fn decode_message<T: for<'de> Deserialize<'de>>(data: &[u8]) -> Result<T, DecodeError> {
1163 if data.len() < 4 {
1164 return Err(DecodeError::TooShort);
1165 }
1166
1167 let len = u32::from_be_bytes([data[0], data[1], data[2], data[3]]) as usize;
1168
1169 if len > MAX_FRAME_SIZE as usize {
1170 return Err(DecodeError::TooLarge(len));
1171 }
1172
1173 if data.len() < 4 + len {
1174 return Err(DecodeError::Incomplete {
1175 expected: len,
1176 got: data.len() - 4,
1177 });
1178 }
1179
1180 serde_json::from_slice(&data[4..4 + len]).map_err(DecodeError::Json)
1181}
1182
1183/// Error decoding a wire message.
1184#[derive(Debug)]
1185pub enum DecodeError {
1186 /// Data too short to contain length header.
1187 TooShort,
1188 /// Frame size exceeds maximum.
1189 TooLarge(usize),
1190 /// Incomplete frame.
1191 Incomplete {
1192 /// Expected length.
1193 expected: usize,
1194 /// Actual length.
1195 got: usize,
1196 },
1197 /// JSON parse error.
1198 Json(serde_json::Error),
1199}
1200
1201impl std::fmt::Display for DecodeError {
1202 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
1203 match self {
1204 DecodeError::TooShort => write!(f, "data too short for length header"),
1205 DecodeError::TooLarge(size) => write!(f, "frame too large: {} bytes", size),
1206 DecodeError::Incomplete { expected, got } => {
1207 write!(
1208 f,
1209 "incomplete frame: expected {} bytes, got {}",
1210 expected, got
1211 )
1212 }
1213 DecodeError::Json(e) => write!(f, "JSON decode error: {}", e),
1214 }
1215 }
1216}
1217
1218impl std::error::Error for DecodeError {}
1219
1220#[cfg(test)]
1221mod tests {
1222 use super::*;
1223
1224 #[test]
1225 fn test_encode_decode_roundtrip() {
1226 let req = AgentRequest::Pull {
1227 image: "alpine:latest".to_string(),
1228 oci_platform: Some("linux/arm64".to_string()),
1229 auth: None,
1230 proxy: None,
1231 no_proxy: None,
1232 };
1233
1234 let encoded = encode_message(&req).unwrap();
1235 let decoded: AgentRequest = decode_message(&encoded).unwrap();
1236
1237 let AgentRequest::Pull {
1238 image,
1239 oci_platform,
1240 auth,
1241 proxy,
1242 no_proxy,
1243 } = decoded
1244 else {
1245 panic!("expected Pull variant, got {:?}", decoded);
1246 };
1247 assert_eq!(image, "alpine:latest");
1248 assert_eq!(oci_platform, Some("linux/arm64".to_string()));
1249 assert!(auth.is_none());
1250 assert!(proxy.is_none());
1251 assert!(no_proxy.is_none());
1252 }
1253
1254 #[test]
1255 fn test_encode_decode_with_auth() {
1256 let req = AgentRequest::Pull {
1257 image: "ghcr.io/owner/repo:latest".to_string(),
1258 oci_platform: None,
1259 auth: Some(RegistryAuth {
1260 username: "testuser".to_string(),
1261 password: "testpass".to_string(),
1262 }),
1263 proxy: None,
1264 no_proxy: None,
1265 };
1266
1267 let encoded = encode_message(&req).unwrap();
1268 let decoded: AgentRequest = decode_message(&encoded).unwrap();
1269
1270 let AgentRequest::Pull {
1271 image,
1272 oci_platform,
1273 auth,
1274 proxy: _,
1275 no_proxy: _,
1276 } = decoded
1277 else {
1278 panic!("expected Pull variant, got {:?}", decoded);
1279 };
1280 assert_eq!(image, "ghcr.io/owner/repo:latest");
1281 assert!(oci_platform.is_none());
1282 let auth = auth.expect("auth should be Some");
1283 assert_eq!(auth.username, "testuser");
1284 assert_eq!(auth.password, "testpass");
1285 }
1286
1287 #[test]
1288 fn test_encode_decode_with_proxy() {
1289 let req = AgentRequest::Pull {
1290 image: "alpine:latest".to_string(),
1291 oci_platform: None,
1292 auth: None,
1293 proxy: Some("http://192.168.127.254:3128".to_string()),
1294 no_proxy: Some("127.0.0.1,localhost,.internal".to_string()),
1295 };
1296
1297 let encoded = encode_message(&req).unwrap();
1298 let decoded: AgentRequest = decode_message(&encoded).unwrap();
1299
1300 let AgentRequest::Pull {
1301 proxy, no_proxy, ..
1302 } = decoded
1303 else {
1304 panic!("expected Pull variant, got {:?}", decoded);
1305 };
1306 assert_eq!(proxy.as_deref(), Some("http://192.168.127.254:3128"));
1307 assert_eq!(no_proxy.as_deref(), Some("127.0.0.1,localhost,.internal"));
1308 }
1309
1310 #[test]
1311 fn test_decode_too_short() {
1312 let data = [0u8; 2];
1313 let result: Result<AgentRequest, _> = decode_message(&data);
1314 assert!(matches!(result, Err(DecodeError::TooShort)));
1315 }
1316
1317 #[test]
1318 fn test_decode_incomplete() {
1319 let mut data = vec![0, 0, 0, 100]; // claims 100 bytes
1320 data.extend_from_slice(b"{}"); // only 2 bytes of payload
1321 let result: Result<AgentRequest, _> = decode_message(&data);
1322 assert!(matches!(result, Err(DecodeError::Incomplete { .. })));
1323 }
1324
1325 #[test]
1326 fn test_agent_request_serialization() {
1327 let req = AgentRequest::Ping;
1328 let json = serde_json::to_string(&req).unwrap();
1329 assert!(json.contains("ping"));
1330
1331 let req = AgentRequest::PrepareOverlay {
1332 image: "ubuntu:22.04".to_string(),
1333 workload_id: "wl-123".to_string(),
1334 };
1335 let json = serde_json::to_string(&req).unwrap();
1336 assert!(json.contains("prepare_overlay"));
1337 }
1338
1339 #[test]
1340 fn test_agent_response_serialization() {
1341 let resp = AgentResponse::Pong {
1342 version: PROTOCOL_VERSION,
1343 capabilities: vec![forkpoint::WORKER_READY_CAPABILITY.to_string()],
1344 };
1345 let json = serde_json::to_string(&resp).unwrap();
1346 assert!(json.contains("pong"));
1347 assert!(json.contains(forkpoint::WORKER_READY_CAPABILITY));
1348
1349 let legacy: AgentResponse =
1350 serde_json::from_str(r#"{"status":"pong","version":1}"#).unwrap();
1351 assert!(matches!(
1352 legacy,
1353 AgentResponse::Pong {
1354 version: PROTOCOL_VERSION,
1355 capabilities
1356 } if capabilities.is_empty()
1357 ));
1358
1359 let resp = AgentResponse::Progress {
1360 message: "Pulling layer 1/3".to_string(),
1361 percent: Some(33),
1362 layer: Some("sha256:abc123".to_string()),
1363 };
1364 let json = serde_json::to_string(&resp).unwrap();
1365 assert!(json.contains("progress"));
1366 }
1367
1368 #[test]
1369 fn file_write_begin_roundtrips() {
1370 let req = AgentRequest::FileWriteBegin {
1371 path: "/tmp/target".into(),
1372 mode: Some(0o600),
1373 total_size: 123_456_789,
1374 };
1375 let bytes = encode_message(&req).unwrap();
1376 let back: AgentRequest = decode_message(&bytes).unwrap();
1377 match back {
1378 AgentRequest::FileWriteBegin {
1379 path,
1380 mode,
1381 total_size,
1382 } => {
1383 assert_eq!(path, "/tmp/target");
1384 assert_eq!(mode, Some(0o600));
1385 assert_eq!(total_size, 123_456_789);
1386 }
1387 _ => panic!("wrong variant"),
1388 }
1389 }
1390
1391 #[test]
1392 fn file_write_chunk_roundtrips_binary_data() {
1393 // Binary data (bytes outside UTF-8) must survive the base64
1394 // trip intact. If the encoding ever silently lossifies, this
1395 // fires.
1396 let payload: Vec<u8> = (0u8..=255).collect();
1397 let req = AgentRequest::FileWriteChunk {
1398 data: payload.clone(),
1399 done: true,
1400 };
1401 let bytes = encode_message(&req).unwrap();
1402 let back: AgentRequest = decode_message(&bytes).unwrap();
1403 match back {
1404 AgentRequest::FileWriteChunk { data, done } => {
1405 assert_eq!(data, payload);
1406 assert!(done);
1407 }
1408 _ => panic!("wrong variant"),
1409 }
1410 }
1411
1412 #[test]
1413 fn file_write_size_constants_are_frame_safe() {
1414 // Sanity: a single streaming chunk at FILE_WRITE_CHUNK_SIZE
1415 // must fit inside MAX_FRAME_SIZE after base64 (+ ~33%) and
1416 // JSON overhead. If anyone bumps CHUNK_SIZE past the limit,
1417 // this test fires before production does.
1418 let chunk_bytes = FILE_WRITE_CHUNK_SIZE as u64;
1419 let base64_bytes = chunk_bytes.div_ceil(3) * 4; // ceil(n/3)*4
1420 let json_overhead = 256u64; // method tag, done bool, quotes
1421 let total = base64_bytes + json_overhead;
1422 assert!(
1423 total < MAX_FRAME_SIZE as u64,
1424 "FILE_WRITE_CHUNK_SIZE of {} bytes would produce a frame \
1425 of ~{} bytes which exceeds MAX_FRAME_SIZE of {}",
1426 chunk_bytes,
1427 total,
1428 MAX_FRAME_SIZE
1429 );
1430 }
1431
1432 #[test]
1433 fn test_ports_constants() {
1434 assert_eq!(ports::WORKLOAD_CONTROL, 5000);
1435 assert_eq!(ports::WORKLOAD_LOGS, 5001);
1436 assert_eq!(ports::AGENT_CONTROL, 6000);
1437 assert_eq!(ports::SSH_AGENT, 6001);
1438 }
1439
1440 #[test]
1441 fn test_cid_constants() {
1442 assert_eq!(cid::HOST, 2);
1443 assert_eq!(cid::GUEST, 3);
1444 }
1445
1446 #[test]
1447 fn test_envelope_serialization_with_trace_id() {
1448 let req = AgentRequest::Ping;
1449 let envelope = Envelope::with_trace_id(&req, Some("abc123".to_string()));
1450 let json = serde_json::to_string(&envelope).unwrap();
1451
1452 // trace_id should be flattened alongside the method tag
1453 assert!(json.contains("\"trace_id\":\"abc123\""));
1454 assert!(json.contains("\"method\":\"ping\""));
1455
1456 // Deserialize back — Envelope<AgentRequest> with flatten
1457 let parsed: Envelope<AgentRequest> = serde_json::from_str(&json).unwrap();
1458 assert_eq!(parsed.trace_id.as_deref(), Some("abc123"));
1459 assert!(matches!(parsed.body, AgentRequest::Ping));
1460 }
1461
1462 #[test]
1463 fn test_envelope_without_trace_id() {
1464 let req = AgentRequest::Ping;
1465 let envelope = Envelope::new(&req);
1466 let json = serde_json::to_string(&envelope).unwrap();
1467
1468 // No trace_id field (skip_serializing_if = None)
1469 assert!(!json.contains("trace_id"));
1470 assert!(json.contains("\"method\":\"ping\""));
1471 }
1472
1473 #[test]
1474 fn test_envelope_backward_compat_bare_request() {
1475 // A bare AgentRequest (no Envelope) should fail to parse as Envelope
1476 // but succeed as bare AgentRequest — this is the agent's fallback path
1477 let bare_json = r#"{"method":"ping"}"#;
1478
1479 // Envelope parse should fail (no body field to flatten into)
1480 // Actually with flatten, this may work — let's verify
1481 let envelope_result = serde_json::from_str::<Envelope<AgentRequest>>(bare_json);
1482 let bare_result = serde_json::from_str::<AgentRequest>(bare_json);
1483
1484 // At least one must succeed for backward compat
1485 assert!(
1486 envelope_result.is_ok() || bare_result.is_ok(),
1487 "Neither Envelope nor bare parse succeeded"
1488 );
1489
1490 // Bare parse must always work
1491 assert!(bare_result.is_ok());
1492 assert!(matches!(bare_result.unwrap(), AgentRequest::Ping));
1493
1494 // If Envelope works, trace_id should be None
1495 if let Ok(env) = envelope_result {
1496 assert!(env.trace_id.is_none());
1497 }
1498 }
1499}