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mcpmesh_node/
config.rs

1//! The `config.toml` model. Every table and key here is real, implemented surface —
2//! docs/config.md is the operator-facing reference for all of it.
3use figment::{
4    Figment,
5    providers::{Format, Toml},
6};
7use serde::Deserialize;
8use std::collections::BTreeMap;
9use std::path::PathBuf;
10
11#[derive(Debug, Default, Deserialize)]
12#[serde(default)]
13pub struct Config {
14    pub identity: IdentityCfg,
15    pub network: NetworkCfg,
16    pub limits: LimitsCfg,
17    /// Roster-mode `[roster]` tunables: the degraded-expiry grace window, the roster URL +
18    /// poll interval, and the freshness bound — one `RosterState` machine consumes them all.
19    pub roster: RosterCfg,
20    /// `[blobs]` tunables. Today: the app-blob garbage-collection interval (#80).
21    pub blobs: BlobsCfg,
22    /// `[services.<name>]` registry — each entry is a served MCP server plus its allow
23    /// list. Peers do NOT live in config; they live in the daemon's state store, so
24    /// there is no `[peers]` table here.
25    pub services: std::collections::BTreeMap<String, ServiceCfg>,
26}
27
28/// A `[services.<name>]` entry: exactly one backend kind (`run` xor `socket`) plus the
29/// nicknames/groups admitted to it. The xor is validated at access time via
30/// [`ServiceCfg::backend_result`] rather than at parse time, so a malformed entry is a
31/// per-service error, not a whole-config load failure.
32#[derive(Debug, Default, Deserialize)]
33#[serde(default)]
34pub struct ServiceCfg {
35    /// `run`: spawn this command per session (a stdio MCP server).
36    pub run: Option<Vec<String>>,
37    /// `socket`: dial this local UDS (an already-running MCP server).
38    pub socket: Option<String>,
39    /// STABLE principals admitted to this service (b64u:/eid:/roster names, #38 — never display nicknames).
40    pub allow: Vec<String>,
41    /// Per-service env vars for a `run` backend (#51). The `MCPMESH_PEER_*` identity vars win
42    /// over these. Ignored for a `socket` backend. Default empty.
43    pub env: BTreeMap<String, String>,
44    /// Working directory for a `run` backend (#51). Default: inherit the daemon's cwd.
45    pub cwd: Option<String>,
46    /// Per-service proxied-request rate (#63), falling back to `[limits].rate_limit_per_min`.
47    ///
48    /// Before #63 every service a peer could reach drew from ONE shared bucket, so an agent
49    /// hammering a browser or filesystem service starved the embedder's own low-rate control
50    /// traffic to a different service on the same node. Buckets are now per `(service, endpoint)`.
51    ///
52    /// **This can only LOWER the rate.** `[limits].rate_limit_per_min` is a hard ceiling; a larger
53    /// value here is clamped, not honoured. That is what keeps the limit from being raised by a
54    /// config edit or a `register_service` call.
55    pub rate_limit_per_min: Option<u32>,
56}
57
58/// The resolved backend kind of a [`ServiceCfg`], borrowing the config as slices (no
59/// clone). `&[String]`/`&str` rather than `&Vec`/`&String` — idiomatic and gives the
60/// daemon's backend builders the most flexible borrow.
61#[derive(Debug)]
62pub enum Backend<'a> {
63    Run(&'a [String]),
64    Socket(&'a str),
65}
66
67impl ServiceCfg {
68    /// Resolve the backend, enforcing exactly-one-of `run`/`socket`. Both or neither is an
69    /// error — surfaced to the operator, never a silent default.
70    #[allow(dead_code)] // consumed by the daemon service wiring
71    pub fn backend_result(&self) -> Result<Backend<'_>, String> {
72        match (&self.run, &self.socket) {
73            (Some(cmd), None) => Ok(Backend::Run(cmd.as_slice())),
74            (None, Some(p)) => Ok(Backend::Socket(p.as_str())),
75            (Some(_), Some(_)) => Err("service has both run and socket".into()),
76            (None, None) => Err("service has neither run nor socket".into()),
77        }
78    }
79}
80
81#[derive(Debug, Default, Deserialize)]
82#[serde(default)]
83pub struct IdentityCfg {
84    pub device_key: Option<PathBuf>, // None → paths::default_device_key_path()
85    /// This device's suggested name for itself, carried in a minted pairing invite.
86    /// `None` → the daemon defaults to a short fingerprint of the endpoint id.
87    /// Additive (`#[serde(default)]` at the struct level).
88    pub nickname: Option<String>,
89    /// Roster mode: the org id this node joined (pinned at install/join).
90    pub org_id: Option<String>,
91    /// Roster mode: the pinned org-root public key, `b64u:`. The single trust anchor
92    /// roster signatures verify against. Pinned on first roster install / `join`.
93    pub org_root_pk: Option<String>,
94    /// Roster mode: this node's stable user_id in the org. Pinned at `join` (proposed)
95    /// and reconciled to the roster's authoritative value once installed.
96    pub user_id: Option<String>,
97    /// Roster mode: path to this person's user key. Minted by `join`; binds this
98    /// person's devices. `None` → paths::default_user_key_path() when needed.
99    pub user_key: Option<PathBuf>,
100}
101
102/// `[network]`. The knobs are exactly what `daemon::net_plan` implements —
103/// no aspirational surface:
104/// - `relay_mode = "default" | "custom" | "disabled"`. `"custom"` requires `relay_urls`
105///   (self-hosted iroh relays); `"disabled"` is the HERMETIC mode — no relay AND no
106///   discovery (localhost/tests).
107/// - `discovery_mode = "default" | "custom"`. `"custom"` requires `discovery_urls` —
108///   self-hosted pkarr relay URLs (e.g. an iroh-dns-server), used for BOTH publishing and
109///   resolving peer addresses in place of n0's DNS/pkarr. Ignored (off) when
110///   `relay_mode = "disabled"`.
111///
112/// Unknown modes or a `custom` without URLs are startup ERRORS (`net_plan`), never a silent
113/// fallback — a metadata-privacy knob must not quietly revert to public infrastructure.
114#[derive(Debug, Clone, Deserialize)]
115#[serde(default)]
116pub struct NetworkCfg {
117    pub relay_mode: String,
118    /// Self-hosted relay URLs, required when `relay_mode = "custom"`.
119    pub relay_urls: Vec<String>,
120    pub discovery_mode: String,
121    /// Self-hosted pkarr relay URLs, required when `discovery_mode = "custom"`.
122    pub discovery_urls: Vec<String>,
123    /// TESTING ONLY (#116): force application data over the RELAY even when a direct path exists.
124    ///
125    /// Requires the `unstable-relay-only` cargo feature. Without it this field still PARSES — a
126    /// config must stay portable between a test build and a production one — but is ignored with a
127    /// `warn!`. It is never a startup error: a testing switch must not brick a node, and it must
128    /// never be ignored SILENTLY, because believing you tested the relay when you did not is the
129    /// exact failure #116 reports.
130    ///
131    /// Selects the relay path; it does NOT prevent hole-punching (that is socket-level behaviour a
132    /// `PathSelector` cannot reach). A direct path may still form — it simply never carries data,
133    /// and `status` reports `relay` because #64 derives the path from `is_selected()`.
134    pub relay_only: bool,
135    /// `[network].presence_mode` (#89) — who gets a reachability pong on `mcpmesh/ping/1`.
136    ///
137    /// - `"paired"` (default): any paired peer, today's behaviour.
138    /// - `"granted"`: only a caller currently holding at least one service grant. This is what
139    ///   makes an embedder's per-peer sharing switch control presence too — revoking the last
140    ///   service takes presence with it, live, with no restart and no new verb.
141    /// - `"off"`: never pong.
142    ///
143    /// The arm is gated by PAIRING alone otherwise, so `service_allow_revoke` has no effect on it:
144    /// a peer whose every service was revoked still learns you are online right now, your RTT, your
145    /// `stack_version` and your app metadata, on demand and forever. The only lever was a full
146    /// unpair — a relationship-destroying action to express a privacy preference (#89).
147    ///
148    /// A refusal under `"off"`/`"granted"` matches the trust gate's, so this arm does not
149    /// distinguish "not paired" from "hidden" from "no grants".
150    ///
151    /// **This is NOT "appear offline".** It withholds the pong payload (`stack_version`, app
152    /// metadata, the caller's services) and makes our own probe report you unreachable. It does not
153    /// hide that the node is running: a QUIC application close implies a completed handshake,
154    /// `mcpmesh/pair/1` answers any stranger by design, and a paired peer still gets a served
155    /// `mcpmesh/mcp/1` session. Do not describe it to users as invisibility (#89 gate).
156    ///
157    /// Read at BOOT — changing the mode needs a restart. The per-peer effect under `"granted"` is
158    /// live, because grants are.
159    pub presence_mode: String,
160    /// QUIC idle timeout in seconds (#56) — how long a connection survives with NO traffic and no
161    /// keepalive before the transport closes it. `None` = iroh's default, **30s** on iroh 1.0.3.
162    ///
163    /// This is not "how long an idle session lives". iroh keepalives every 5s by default, so a held
164    /// session survives indefinitely while the process runs; this is what detects a peer that
165    /// VANISHED.
166    ///
167    /// **It is NEGOTIATED, not imposed.** QUIC takes the MINIMUM of the two peers' advertised
168    /// values (RFC 9000 §10.1), so raising this on one node achieves nothing against a peer still
169    /// on the default — the connection still times out at 30s. Raising it is only meaningful when
170    /// every node is configured together; lowering it works one-sidedly.
171    ///
172    /// `0` means "no timeout" from THIS side, which likewise yields the peer's value; against a
173    /// default peer that is still 30s. Only if both sides say `0` does a vanished peer go
174    /// undetected at the transport layer.
175    #[serde(default)]
176    pub idle_timeout_secs: Option<u64>,
177    /// QUIC keepalive interval in seconds (#56) — how often the transport PINGs an otherwise idle
178    /// connection. `None` = iroh's default, **5s** on iroh 1.0.3.
179    ///
180    /// Sets BOTH the connection-level and the per-path keepalive — setting only the former would
181    /// leave every path pinging at iroh's 5s regardless.
182    ///
183    /// A transport keepalive carries no method-bearing frame, so it does NOT consume a
184    /// `[limits].rate_limit_per_min` token — unlike an application-level heartbeat, which does.
185    ///
186    /// Must be less than the EFFECTIVE idle timeout — `idle_timeout_secs` if set, otherwise iroh's
187    /// 30s — or boot fails. Note that effective timeout is the negotiated minimum, so a value that
188    /// passes this check locally can still be too slow for a peer with a shorter one.
189    ///
190    /// **This can only LOWER the ping rate.** iroh caps the per-path keepalive at 5s and silently
191    /// discards anything larger, so a value above 5 would leave every path pinging at 5s anyway —
192    /// boot refuses it rather than pretend it took effect. There is no supported way to reduce
193    /// keepalive traffic on a metered link with iroh 1.0.3.
194    #[serde(default)]
195    pub keep_alive_secs: Option<u64>,
196    /// `[network].local_discovery` (#68) — find peers on the LAN with **no internet at all**.
197    ///
198    /// - `"off"` (default): no multicast sent, none listened for.
199    /// - `"on"`: resolve peers on the link AND announce this node to it.
200    /// - `"resolve"`: learn where peers are without publishing this node's identity or addresses.
201    ///   NOT silent: resolving over mDNS means asking, and the library asks on a fixed cadence, so
202    ///   this mode multicasts a `_mcpmesh._udp.local` query roughly once a second for as long as
203    ///   the node runs. Every device on the link can see that something here runs mcpmesh and is
204    ///   up. If that matters, the mode is `"off"`.
205    ///
206    /// Peer resolution otherwise needs external infrastructure — the pkarr publisher a relay
207    /// provides, or an address someone already handed over — so two machines on the same LAN with
208    /// no uplink cannot find each other though the path between them is fine. That is the scenario
209    /// where "peer to peer" earns its keep, and the commoner weak version too: a LAN where the
210    /// internet is merely flaky, so peers that could talk directly fail to resolve because
211    /// resolution goes out first.
212    ///
213    /// **OFF by default, and #68 asked for on.** The two disclosures are not comparable. pkarr
214    /// publishes a signed record someone must already know your endpoint id to look up. mDNS
215    /// announces your endpoint id and addresses to EVERY device on the link, unprompted and
216    /// repeatedly, to machines that had no idea you existed — and that id is the one peers pin, so
217    /// it correlates you across networks. On a home LAN that is the point; on a café, hotel or
218    /// conference network it is a broadcast to strangers. A node cannot un-send a multicast packet:
219    /// turning this on is one line and reversible, turning it on for someone silently is not.
220    /// `"resolve"` is there for whoever wants the benefit without publishing their identity — with
221    /// the query caveat above, which is the honest limit of that mode.
222    ///
223    /// What `"on"` puts on the link is broader than "addresses" suggests: the LAN address, the
224    /// PUBLIC WAN IPv4, and global IPv6 addresses. A café LAN learns your home/ISP address.
225    ///
226    /// Read at BOOT. Like `relay_mode`/`presence_mode`, an unknown value is a startup ERROR.
227    #[serde(default = "default_local_discovery")]
228    pub local_discovery: String,
229}
230
231fn default_local_discovery() -> String {
232    "off".into()
233}
234impl Default for NetworkCfg {
235    fn default() -> Self {
236        Self {
237            relay_mode: "default".into(),
238            relay_urls: Vec::new(),
239            discovery_mode: "default".into(),
240            discovery_urls: Vec::new(),
241            relay_only: false,
242            presence_mode: "paired".into(),
243            idle_timeout_secs: None,
244            keep_alive_secs: None,
245            local_discovery: default_local_discovery(),
246        }
247    }
248}
249
250/// `[limits]`. NOTE — the frame cap is deliberately NOT here: the 16 MiB `max_frame`
251/// default is a fixed CONSTANT at each wire (`mcpmesh_net::endpoint` for the mesh,
252/// `ipc::MAX_FRAME_BYTES` for the control socket, `backends::MAX_FRAME_BYTES` for local MCP
253/// servers), not a config tunable. A `max_frame` config field existed historically but was never
254/// threaded into any `FrameReader` (dead surface); threading it into the mesh path would widen
255/// `mcpmesh-net`'s public API for no demonstrated need, so the field was removed instead (serde
256/// ignores an unknown `max_frame` key in existing configs).
257#[derive(Debug, Deserialize)]
258#[serde(default)]
259pub struct LimitsCfg {
260    pub rate_limit_per_min: u32,
261    pub max_inflight: u32,
262    pub max_sessions: u32,
263    /// Per-authenticated-endpoint app-blob BYTE budget, bytes per minute (#84a).
264    ///
265    /// **0 = unlimited, and that is the default**, so an existing deployment is unchanged on
266    /// upgrade. The pre-existing blob limiter counts CONNECTIONS, which cannot see one granted
267    /// peer re-pulling a 4 GB blob on each of 60 connections a minute; this bounds the bytes.
268    ///
269    /// A peer that exceeds it gets its transfer ABORTED (retryable), not paced — pacing holds the
270    /// request open and turns a bandwidth problem into an unbounded-concurrency one.
271    ///
272    /// **Use 0 or at least 32768** (two chunks); a value in `1..32768` is FLOORED to 32768.
273    ///
274    /// Admission reserves one chunk before any bytes and the transfer then meters its own chunks,
275    /// so a sub-floor budget does not fail closed — it silently caps every servable blob at
276    /// roughly `budget - 16384` bytes and truncates anything larger. Measured: 20480 serves a
277    /// 4 KiB blob and nothing bigger. Two earlier drafts of this comment got that wrong, first
278    /// recommending the bricking value and then claiming it failed closed.
279    ///
280    /// Requires a restart: the limiter and the provider's event mask are both built once at boot.
281    pub blob_bytes_per_min: u64,
282    /// Audit-log retention window in calendar months (#88). **0 = keep forever, and that is the
283    /// default** — flipping today's keep-everything behavior to auto-deletion is a product call,
284    /// deliberately not made here. When N > 0, boot deletes monthly audit files older than the
285    /// last N months (the current month counts as month 1). Boot-time only: a long-running
286    /// daemon prunes on its next start; the `audit_prune` verb covers live needs.
287    pub audit_retain_months: u32,
288}
289impl Default for LimitsCfg {
290    fn default() -> Self {
291        Self {
292            rate_limit_per_min: 120,
293            max_inflight: 16,
294            max_sessions: 4,
295            blob_bytes_per_min: 0, // unlimited: opt-in, no behaviour change on upgrade
296            audit_retain_months: 0, // keep forever: opt-in, no behaviour change on upgrade
297        }
298    }
299}
300
301/// The default degraded-expiry grace window (`[roster].grace_period` default "72h").
302/// A stale roster keeps serving for this window past `expires_at` (with a warning) before it
303/// stops granting roster identity. Kept here so [`RosterCfg::default`] and the parse fallback
304/// share one source; the gate mirrors it as `roster::gate::DEFAULT_GRACE_SECS`.
305const DEFAULT_GRACE_SECS: i64 = 72 * 3600;
306
307/// The default freshness bound (`[roster].max_staleness`, default "24h" = 86400s). A roster
308/// this node has not re-confirmed current within this window degrades on the SAME `RosterState`
309/// machine as expiry (warnings within `grace`, then serving stops) — bounding adversarial staleness at
310/// `max_staleness + grace` independent of `expires_at`. Shared by [`RosterCfg::default`] + the parse
311/// fallback.
312const DEFAULT_MAX_STALENESS_SECS: i64 = 24 * 3600;
313
314/// The `[roster]` config table. `grace_period` is the degraded-expiry grace window — how
315/// long a roster past `expires_at` keeps serving (degraded, warning) before it stops. Additive
316/// (`#[serde(default)]`): a config with no `[roster]` table gets the 72h default.
317#[derive(Debug, Deserialize)]
318#[serde(default)]
319pub struct RosterCfg {
320    /// Degraded-expiry grace window: `"72h"` / `"24h"` / plain seconds (default "72h").
321    pub grace_period: String,
322    /// The pinned roster URL for the HTTPS poll. Operator-managed static hosting; also how a
323    /// joiner bootstraps its FIRST roster. `None` → no URL poll (manual installs only).
324    /// Additive (`#[serde(default)]`): a config with no `url` key gets `None`.
325    pub url: Option<String>,
326    /// How often to poll `url` (default "1h"). Total-parse like `grace_period` — an
327    /// unparseable value falls back to the hourly default rather than disabling the poll.
328    pub poll_interval: String,
329    /// The freshness bound (default "24h"): how long this node may go without re-confirming
330    /// the installed roster current (via a TLS URL poll ≥ installed, a gossip install, or a
331    /// manual install) before it degrades on the SAME `RosterState` machine as expiry. Total-parse
332    /// like `grace_period` (an unparseable value falls back to the 24h default — a typo never disables
333    /// the bound). Additive (`#[serde(default)]`): a config with no `max_staleness` key gets 24h.
334    pub max_staleness: String,
335}
336impl Default for RosterCfg {
337    fn default() -> Self {
338        Self {
339            grace_period: "72h".into(),
340            url: None,
341            poll_interval: "1h".into(),
342            max_staleness: "24h".into(),
343        }
344    }
345}
346
347impl RosterCfg {
348    /// The grace window in SECONDS. An absent or unparseable `grace_period` falls back to the 72h
349    /// default rather than erroring — an operator typo must never disable degraded serving, and a
350    /// grace window is advisory, not a security bound (revocation is enforced regardless of
351    /// degraded state).
352    ///
353    /// Two paths degrade on the ONE `RosterState` machine (`RosterView::state`, Approved →
354    /// DegradedGrace → DegradedStopped): expiry (`expires_at` + THIS grace window) and freshness
355    /// (`last_confirmed` + `max_staleness`). Once DegradedStopped, the gate stops granting roster
356    /// identity (fail-closed — revocation is still enforced); within grace, serving continues
357    /// with a warning (`daemon::warn_if_degraded_grace`).
358    pub fn grace_seconds(&self) -> i64 {
359        parse_duration(&self.grace_period).unwrap_or(DEFAULT_GRACE_SECS)
360    }
361
362    /// The URL poll interval in SECONDS (default 3600). Like [`grace_seconds`](Self::grace_seconds)
363    /// it is TOTAL — an absent/unparseable value falls back to the hourly default rather than
364    /// erroring, so an operator typo slows the poll to hourly instead of disabling freshness.
365    pub fn poll_interval_seconds(&self) -> i64 {
366        parse_duration(&self.poll_interval).unwrap_or(3600)
367    }
368
369    /// The freshness bound in SECONDS (default 86400 = 24h). Like [`grace_seconds`](Self::grace_seconds)
370    /// it is TOTAL — an absent/unparseable value falls back to the 24h default rather than erroring, so
371    /// an operator typo tightens/loosens to 24h instead of disabling the freshness bound.
372    pub fn max_staleness_seconds(&self) -> i64 {
373        parse_duration(&self.max_staleness).unwrap_or(DEFAULT_MAX_STALENESS_SECS)
374    }
375}
376
377/// The shortest `[blobs].gc_interval` that is honoured. Below this, collection stays OFF.
378///
379/// A sweep walks every blob in the store and deletes what the scope table does not name; running
380/// it every few seconds is all cost and no benefit, and `"1s"` is far more likely to be a mistake
381/// than an intent.
382pub const MIN_GC_INTERVAL_SECS: i64 = 60;
383
384/// The `[blobs]` table.
385#[derive(Debug, Default, Deserialize)]
386#[serde(default)]
387pub struct BlobsCfg {
388    /// How often to garbage-collect the app-blob store (#80), e.g. `"1h"`. **Absent means no
389    /// collection at all** — `<data_dir>/blobs/` grows monotonically, which is the behavior of
390    /// every release up to 0.42.0.
391    ///
392    /// Opt-in because a sweep deletes bytes the node holds but no scope names, which includes
393    /// every blob this node has FETCHED and not republished. Those are reclaimable — the fetch
394    /// already wrote the caller's `dest_path` and the store copy is a cache — but it means a
395    /// `blob_republish` of a hash fetched more than one interval ago fails. Silent background
396    /// deletion is the wrong default for a local-first tool, and that interaction makes it wrong
397    /// twice.
398    pub gc_interval: Option<String>,
399}
400
401impl BlobsCfg {
402    /// The GC interval in SECONDS, or `None` for "do not collect".
403    ///
404    /// **Deliberately NOT total, unlike every other duration accessor here.**
405    /// [`RosterCfg::grace_seconds`] and friends fall back to their default on a typo because a typo
406    /// must never disable a safety property. This one runs the other way: a value that fell back to
407    /// *some* interval would let `gc_interval = "1hh"` start deleting data the operator never
408    /// authorized. So an unparseable value — or one below [`MIN_GC_INTERVAL_SECS`] — leaves
409    /// collection OFF and warns.
410    ///
411    /// A below-floor value is refused rather than clamped UP: a clamped value reads back through
412    /// `status.storage.blobs_gc.interval_secs` as honoured, and is not.
413    pub fn gc_interval_seconds(&self) -> Option<u64> {
414        let raw = self.gc_interval.as_deref()?;
415        match parse_duration(raw) {
416            Ok(secs) if secs >= MIN_GC_INTERVAL_SECS => Some(secs as u64),
417            Ok(secs) => {
418                tracing::warn!(
419                    value = raw,
420                    secs,
421                    min = MIN_GC_INTERVAL_SECS,
422                    "[blobs].gc_interval is below the minimum; blob garbage collection is OFF"
423                );
424                None
425            }
426            Err(e) => {
427                tracing::warn!(
428                    value = raw,
429                    %e,
430                    "[blobs].gc_interval is unparseable; blob garbage collection is OFF"
431                );
432                None
433            }
434        }
435    }
436}
437
438/// Parse a duration string to SECONDS: a `d`/`h`/`m`/`s` suffix (days/hours/minutes/seconds) or a
439/// bare number (seconds). Trim + suffix-strip + checked multiply; rejects a
440/// negative/overflowing/garbage value as `Err` (the caller supplies the
441/// default). `u64` parse then a checked `i64` conversion: a negative grace is meaningless, so `-1`
442/// fails the `u64` parse and falls back to the default rather than becoming a negative window.
443// Reached only by the accessors above and the `org create --expires` porcelain
444// (`enrollcmd`, the operator-managed validity window — now across the crate seam, hence
445// `pub`; still `#[doc(hidden)]` at the module level). Pure parser — no state.
446pub fn parse_duration(s: &str) -> Result<i64, String> {
447    let s = s.trim();
448    let (num, mult) = if let Some(n) = s.strip_suffix('d') {
449        (n, 24 * 3600)
450    } else if let Some(n) = s.strip_suffix('h') {
451        (n, 3600)
452    } else if let Some(n) = s.strip_suffix('m') {
453        (n, 60)
454    } else if let Some(n) = s.strip_suffix('s') {
455        (n, 1)
456    } else {
457        (s, 1)
458    };
459    num.trim()
460        .parse::<u64>()
461        .ok()
462        .and_then(|v| v.checked_mul(mult))
463        .and_then(|v| i64::try_from(v).ok())
464        .ok_or_else(|| format!("unparseable duration: {s}"))
465}
466
467// figment::Error is ~208 bytes; boxing it would churn the API for a cold path.
468#[allow(clippy::result_large_err)]
469impl Config {
470    #[allow(dead_code)] // exercised by unit tests; config-string entry point for later tooling
471    pub fn from_toml_str(s: &str) -> Result<Self, figment::Error> {
472        Figment::new().merge(Toml::string(s)).extract()
473    }
474
475    /// Missing file → defaults (first run); malformed file → Err.
476    /// Callers must surface the Err — swallowing it silently reverts user choices.
477    pub fn load(path: &std::path::Path) -> Result<Self, figment::Error> {
478        Figment::new().merge(Toml::file(path)).extract()
479    }
480}
481
482#[cfg(test)]
483mod tests {
484    use super::*;
485
486    #[test]
487    fn empty_file_yields_spec_defaults() {
488        let c = Config::from_toml_str("").unwrap();
489        assert_eq!(c.network.relay_mode, "default");
490        assert_eq!(c.network.discovery_mode, "default");
491        assert_eq!(c.limits.rate_limit_per_min, 120);
492        assert_eq!(c.limits.max_inflight, 16);
493        assert_eq!(c.limits.max_sessions, 4);
494    }
495
496    #[test]
497    fn values_override_defaults() {
498        let c = Config::from_toml_str(
499            "[network]\nrelay_mode = \"disabled\"\n[limits]\nrate_limit_per_min = 60\n",
500        )
501        .unwrap();
502        assert_eq!(c.network.relay_mode, "disabled");
503        assert_eq!(c.limits.rate_limit_per_min, 60);
504        assert_eq!(c.limits.max_inflight, 16);
505    }
506
507    /// A legacy config carrying the removed `max_frame` key still loads (serde ignores unknown
508    /// fields) — the frame cap is a fixed constant now, not a tunable (see the `LimitsCfg` doc).
509    #[test]
510    fn legacy_max_frame_key_is_ignored_not_an_error() {
511        let c =
512            Config::from_toml_str("[limits]\nmax_frame = \"1MiB\"\nmax_sessions = 2\n").unwrap();
513        assert_eq!(c.limits.max_sessions, 2);
514    }
515
516    /// The self-hosting knobs parse: `custom` modes with their URL lists. (Validation —
517    /// custom-without-urls, unknown modes — lives in `daemon::net_plan`, tested there.)
518    #[test]
519    fn network_relay_and_discovery_urls_parse() {
520        let c = Config::from_toml_str(
521            "[network]\nrelay_mode = \"custom\"\nrelay_urls = [\"https://relay.acme.com\"]\n\
522             discovery_mode = \"custom\"\ndiscovery_urls = [\"https://dns.acme.com/pkarr\"]\n",
523        )
524        .unwrap();
525        assert_eq!(c.network.relay_mode, "custom");
526        assert_eq!(
527            c.network.relay_urls,
528            vec!["https://relay.acme.com".to_string()]
529        );
530        assert_eq!(c.network.discovery_mode, "custom");
531        assert_eq!(
532            c.network.discovery_urls,
533            vec!["https://dns.acme.com/pkarr".to_string()]
534        );
535        // Absent → empty lists (the defaults need no URLs).
536        let c = Config::from_toml_str("").unwrap();
537        assert!(c.network.relay_urls.is_empty() && c.network.discovery_urls.is_empty());
538    }
539
540    #[test]
541    fn missing_file_loads_defaults() {
542        let dir = tempfile::tempdir().unwrap();
543        let c = Config::load(&dir.path().join("nope.toml")).unwrap();
544        assert_eq!(c.network.relay_mode, "default");
545    }
546
547    #[test]
548    fn roster_url_and_poll_interval_parse_with_defaults() {
549        // No [roster] table → url None, poll 1h default.
550        let c = Config::from_toml_str("").unwrap();
551        assert!(c.roster.url.is_none());
552        assert_eq!(c.roster.poll_interval_seconds(), 3600);
553        // A configured url + poll interval.
554        let c = Config::from_toml_str(
555            "[roster]\nurl = \"https://intranet.acme.com/roster.json\"\npoll_interval = \"30m\"\n",
556        )
557        .unwrap();
558        assert_eq!(
559            c.roster.url.as_deref(),
560            Some("https://intranet.acme.com/roster.json")
561        );
562        assert_eq!(c.roster.poll_interval_seconds(), 30 * 60);
563        // An unparseable poll_interval falls back to the hourly default (never disables the poll).
564        let c = Config::from_toml_str("[roster]\npoll_interval = \"never\"\n").unwrap();
565        assert_eq!(c.roster.poll_interval_seconds(), 3600);
566        // The url is additive: setting only grace_period keeps url None + the default poll.
567        let c = Config::from_toml_str("[roster]\ngrace_period = \"24h\"\n").unwrap();
568        assert!(c.roster.url.is_none());
569        assert_eq!(c.roster.poll_interval_seconds(), 3600);
570    }
571
572    #[test]
573    fn roster_max_staleness_defaults_to_24h_and_parses() {
574        // No [roster] table → the 24h freshness bound (the default).
575        let c = Config::from_toml_str("").unwrap();
576        assert_eq!(c.roster.max_staleness_seconds(), 24 * 3600);
577        // A configured value parses (units, like grace_period).
578        let c = Config::from_toml_str("[roster]\nmax_staleness = \"6h\"\n").unwrap();
579        assert_eq!(c.roster.max_staleness_seconds(), 6 * 3600);
580        // An unparseable value falls back to the 24h default (never disables the freshness bound).
581        let c = Config::from_toml_str("[roster]\nmax_staleness = \"forever\"\n").unwrap();
582        assert_eq!(c.roster.max_staleness_seconds(), 24 * 3600);
583        // Additive: setting only grace_period keeps the 24h max_staleness default.
584        let c = Config::from_toml_str("[roster]\ngrace_period = \"48h\"\n").unwrap();
585        assert_eq!(c.roster.max_staleness_seconds(), 24 * 3600);
586    }
587
588    #[test]
589    fn roster_grace_defaults_to_72h_and_parses_units() {
590        // Absent `[roster]` → the 72h default.
591        let c = Config::from_toml_str("").unwrap();
592        assert_eq!(c.roster.grace_seconds(), 72 * 3600);
593        // Hours / days / minutes / seconds / bare-seconds all resolve to seconds.
594        for (body, want) in [
595            ("[roster]\ngrace_period = \"24h\"\n", 24 * 3600),
596            ("[roster]\ngrace_period = \"72h\"\n", 72 * 3600),
597            ("[roster]\ngrace_period = \"1d\"\n", 24 * 3600),
598            ("[roster]\ngrace_period = \"30m\"\n", 30 * 60),
599            ("[roster]\ngrace_period = \"90s\"\n", 90),
600            ("[roster]\ngrace_period = \"3600\"\n", 3600), // bare seconds
601        ] {
602            assert_eq!(
603                Config::from_toml_str(body).unwrap().roster.grace_seconds(),
604                want,
605                "{body}"
606            );
607        }
608    }
609
610    #[test]
611    fn roster_grace_unparseable_or_negative_falls_back_to_default() {
612        // A garbage / negative / overflowing grace never disables degraded serving — it defaults.
613        for body in [
614            "[roster]\ngrace_period = \"seventy-two hours\"\n",
615            "[roster]\ngrace_period = \"-5h\"\n",
616            "[roster]\ngrace_period = \"18446744073709551615d\"\n", // overflows the checked_mul
617            "[roster]\ngrace_period = \"\"\n",
618        ] {
619            assert_eq!(
620                Config::from_toml_str(body).unwrap().roster.grace_seconds(),
621                72 * 3600,
622                "{body}"
623            );
624        }
625    }
626
627    #[test]
628    fn services_parse_run_and_socket() {
629        let c = Config::from_toml_str(concat!(
630            "[services.notes]\nrun = [\"npx\", \"server\"]\nallow = [\"bob\"]\n",
631            "[services.kb]\nsocket = \"/run/kb.sock\"\nallow = [\"team-eng\"]\n",
632        ))
633        .unwrap();
634        let notes = c.services.get("notes").unwrap();
635        assert!(
636            matches!(notes.backend_result(), Ok(Backend::Run(cmd)) if cmd == &["npx".to_string(), "server".to_string()][..])
637        );
638        assert_eq!(notes.allow, vec!["bob".to_string()]);
639        assert!(
640            matches!(c.services.get("kb").unwrap().backend_result(), Ok(Backend::Socket(p)) if p == "/run/kb.sock")
641        );
642    }
643
644    #[test]
645    fn service_with_both_run_and_socket_is_an_error() {
646        let e = Config::from_toml_str("[services.x]\nrun=[\"a\"]\nsocket=\"/s\"\nallow=[]\n");
647        // exactly one backend kind is required — validate at access time.
648        assert!(
649            e.unwrap()
650                .services
651                .get("x")
652                .unwrap()
653                .backend_result()
654                .is_err()
655        );
656    }
657
658    #[test]
659    fn identity_reads_user_id_and_user_key() {
660        let toml = "[identity]\n\
661            org_id = \"acme\"\n\
662            org_root_pk = \"b64u:AAAA\"\n\
663            user_id = \"alice\"\n\
664            user_key = \"/home/alice/.config/mcpmesh/user.key\"\n";
665        let cfg: Config = toml::from_str(toml).unwrap();
666        assert_eq!(cfg.identity.user_id.as_deref(), Some("alice"));
667        assert_eq!(
668            cfg.identity.user_key.as_deref(),
669            Some(std::path::Path::new("/home/alice/.config/mcpmesh/user.key"))
670        );
671        // Absent → None (pure-pairing / operator-only node).
672        let bare: Config = toml::from_str("[identity]\n").unwrap();
673        assert!(bare.identity.user_id.is_none() && bare.identity.user_key.is_none());
674    }
675
676    /// #80: `[blobs].gc_interval` must FAIL SAFE. A knob that deletes bytes gets the opposite
677    /// convention from every other duration here.
678    ///
679    /// `grace_period`/`poll_interval`/`max_staleness` fall back to their default on a typo, because
680    /// a typo must never disable a safety property. Here a fallback to *some* interval would let
681    /// `"1hh"` start deleting data the operator never authorized, so the fallback is OFF.
682    #[test]
683    fn a_bad_gc_interval_leaves_collection_off_rather_than_guessing_one() {
684        let off: Config = toml::from_str("[identity]\n").unwrap();
685        assert_eq!(
686            off.blobs.gc_interval_seconds(),
687            None,
688            "absent means no collection at all — the behavior of every release up to 0.42.0"
689        );
690
691        let on: Config = toml::from_str("[blobs]\ngc_interval = \"2h\"\n").unwrap();
692        assert_eq!(on.blobs.gc_interval_seconds(), Some(7200));
693
694        for bad in ["1hh", "", "soon", "-1", "0.5h"] {
695            let c: Config = toml::from_str(&format!("[blobs]\ngc_interval = \"{bad}\"\n")).unwrap();
696            assert_eq!(
697                c.blobs.gc_interval_seconds(),
698                None,
699                "an unparseable interval ({bad:?}) must leave collection OFF, never fall back to \
700                 a default that deletes data"
701            );
702        }
703    }
704
705    /// Below the floor is REFUSED, not clamped up.
706    ///
707    /// A clamped value reads back through `status.storage.blobs_gc.interval_secs` as honoured and
708    /// is not. The boundary is pinned from both sides so a `>` / `>=` slip is visible.
709    #[test]
710    fn a_sub_minimum_gc_interval_is_refused_rather_than_clamped() {
711        let at: Config = toml::from_str(&format!(
712            "[blobs]\ngc_interval = \"{MIN_GC_INTERVAL_SECS}s\"\n"
713        ))
714        .unwrap();
715        assert_eq!(
716            at.blobs.gc_interval_seconds(),
717            Some(MIN_GC_INTERVAL_SECS as u64),
718            "exactly the floor is honoured"
719        );
720        for under in [MIN_GC_INTERVAL_SECS - 1, 1, 0] {
721            let c: Config =
722                toml::from_str(&format!("[blobs]\ngc_interval = \"{under}s\"\n")).unwrap();
723            assert_eq!(
724                c.blobs.gc_interval_seconds(),
725                None,
726                "{under}s is below the floor and must leave collection OFF, not be raised to it"
727            );
728        }
729    }
730}