Add the in-band, signature-gated consent handshake that governs whether a
node may be recruited into a measured SOR circuit, plus a per-recipient
sealed box so a hop credential decrypts only with the host's X25519 key.
- crypto.rs: seal_to_pubkey/open_sealed (ephemeral X25519 -> HKDF-SHA256 ->
Fernet AEAD), reusing the existing fernet crate (no new symmetric primitive).
- sor/consent.rs: signed ConsentRequest (Ed25519 persona), node_evaluate
(reject unless the signature verifies), CircuitBuilder that recruits a hop
only on an accept it can open; parse_sor_frame with never-panic proptests.
- net.rs: {"_sor":...} control frames are live-only and classified out-of-band
by the SOR layer (parse_sor), never surfaced as chat/app events.
- cmd_chat/sor/consent.py + bridge _sor case: bit-compatible Python mirror;
the agent only observes/classifies consent frames — it never auto-accepts
and stands up no forwarder (forwarding is R4, isolated-engine-only).
Acceptance check (roadmap R5) green both languages: host recruits a hop only
after an explicit accept; a reject leaves no entry; the credential opens only
with the host key (third party cannot); unsigned/forged request -> rejected.
Cross-language KDF parity pinned by a shared known-answer vector.
Rust 75 passed; Python SOR suite 37 passed.
Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
hack-house
encrypted collaborative sessions with a summoned sandbox
zero-knowledge server · end-to-end fernet · srp · ratatui
they want you dependent. we want you free.
hack-house is the evolution of cmd-chat: a multi-user, end-to-end-encrypted
terminal session where a small crew shares chat, files, and — when
summoned — a disposable sandboxed Linux box they drive together, with real
Linux permissions and an owner who can delegate the keys.
The server never sees plaintext. Everything — messages, files, terminal output — is relayed as opaque ciphertext. Close the window, the house empties.
status
This is the Rust client (ratatui) for the unchanged Python (Sanic) server. The
wire protocol is JSON-over-WebSocket; SRP + HKDF→Fernet are byte-for-byte
compatible with the Python srp / cryptography stack.
| phase | feature | state |
|---|---|---|
| P0 | Rust↔Python SRP / Fernet crypto parity | ✅ proven (golden vectors + live + cross-lang E2E) |
| P2 | multi-user session (cap 4, infra for more) + authoritative roster | ✅ done |
| P1 | ratatui UI (chat, roster, themes, help overlay) | ✅ done |
| P3 | sandbox box (local / docker / multipass) + shared PTY | ✅ done |
| P4 | permissions (app drive ACL + VM unix users / sudo) | ✅ done |
| P5 | file + directory transfer into the shared session | ✅ done |
crypto parity — the load-bearing proof
$ hack-house selftest # offline: Rust SRP ≡ Python srp golden vectors
$ hack-house handshake <ip> <port> <name> --password <pw> --no-tls
/srp/verify ok — server identity proven (H_AMK ✓)
round-trip ✓ decrypted: "the house is open"
tools/gen_vectors.py regenerates the golden vectors from the live Python
library (must match the server's _ctsrp backend with rfc5054_enable()).
note: the SRP identity is always the fixed room identity
b"chat"; the display name is carried only in JSON, never in the SRP proof. The Pythonsrppackage'srfc5054_enable()toggles the active backend's flag — vectors must be generated with the same backend the server actually loads (_ctsrp).
license
MIT · malware bless · hack the planet