Skip to main content

subc_daemon/
daemon_config.rs

1use std::{
2    collections::BTreeMap,
3    env,
4    error::Error,
5    ffi::OsString,
6    fmt, fs, io,
7    path::{Path, PathBuf},
8    time::Duration,
9};
10
11use cortexkit_log::Retention;
12use serde::Deserialize;
13use subc_control::ModuleProtocol;
14use subc_jsonc::jsonc_to_json;
15use subc_protocol::manifest::is_valid_capability_identifier;
16
17use crate::{
18    supervise::{ModuleOverlap, SUBC_SPAWN_ROLE_ENV},
19    HealthAction, HealthConfig, ModuleSpec, RestartPolicy,
20};
21
22const DAEMON_CONFIG_RELATIVE_PATH: &str = "cortexkit/subc.jsonc";
23const SUPPORTED_CONFIG_VERSION: u32 = 1;
24pub(crate) const CK_LOG_ENV: &str = "CK_LOG";
25pub(crate) const CAPTURE_MAX_FILE_MB_ENV: &str = "__SUBC_CAPTURE_LOG_MAX_FILE_MB";
26pub(crate) const CAPTURE_KEEP_ENV: &str = "__SUBC_CAPTURE_LOG_KEEP";
27pub(crate) const CAPTURE_MAX_AGE_DAYS_ENV: &str = "__SUBC_CAPTURE_LOG_MAX_AGE_DAYS";
28/// The child's own segment retention, read by `cortexkit_log::Config::from_env`.
29/// Unlike the `__SUBC_CAPTURE_*` names above these are a real child-process
30/// contract and are spawned into the environment.
31pub(crate) const CHILD_LOG_MAX_AGE_DAYS_ENV: &str = "CK_LOG_MAX_AGE_DAYS";
32pub(crate) const CHILD_LOG_ALARM_SEGMENT_MB_ENV: &str = "CK_LOG_ALARM_SEGMENT_MB";
33
34/// Top-level daemon config sections that rescan cannot apply. The daemon
35/// snapshots these sections at start and reports later rescan changes as
36/// `restart_required`. Setup intersects this set with sections core
37/// configuration would write so a dry-run can flag a restart before the
38/// config file exists on disk. Match this enum exhaustively so a new section
39/// cannot be added without a comparison.
40#[derive(Clone, Copy, Debug, Eq, PartialEq)]
41pub enum RestartRequiredSection {
42    Port,
43    Storage,
44    AdmissionFactsCarrierModuleId,
45    AdmissionFactsTargets,
46    ScopeAuthorityOwners,
47}
48
49impl RestartRequiredSection {
50    pub const ALL: [Self; 5] = [
51        Self::Port,
52        Self::Storage,
53        Self::AdmissionFactsCarrierModuleId,
54        Self::AdmissionFactsTargets,
55        Self::ScopeAuthorityOwners,
56    ];
57
58    pub const fn label(self) -> &'static str {
59        match self {
60            Self::Port => "port",
61            Self::Storage => "storage",
62            Self::AdmissionFactsCarrierModuleId => "admission_facts_carrier_module_id",
63            Self::AdmissionFactsTargets => "admission_facts_targets",
64            Self::ScopeAuthorityOwners => "scope_authority_owners",
65        }
66    }
67}
68
69/// `scope_authority_owners` when the config does not set it: the session
70/// runtime, the same module that carries admission facts today.
71pub fn default_scope_authority_owners() -> Vec<String> {
72    vec!["prefrontal-core".to_string()]
73}
74
75/// Refused at parse time by both layers (daemon-wide and per-module) — `0`
76/// would turn every affected bind into an instant failure, which is not a
77/// posture anyone deliberately configures. The asymmetry with
78/// `drain_timeout_ms` (which accepts `0` as a legitimate "tear down now")
79/// is intentional: drain `0` is an *action* an operator takes during a
80/// wedge bounce; bind `0` is a typo wearing a config key. Operators who
81/// want a module unreachable should use `enabled: false` instead.
82///
83/// The per-module variant prefixes the offending module id before this
84/// message — see `parse_doc`.
85const ROUTE_BIND_RELAY_ZERO_MESSAGE: &str = "route_bind_relay_timeout_ms must be greater than 0 (a zero budget fails every bind to the module; to make a module unreachable use enabled: false)";
86
87/// Refused at parse time because a zero window and a large one are different
88/// settings that look alike in a diff. The crash budget counts restarts inside
89/// `window_secs`; with `0`, no restart is ever inside it, so the cap can never
90/// be reached and the module restarts forever. That is a real posture, but it
91/// is "unlimited restarts", and anyone choosing it must say so by name rather
92/// than by writing a zero that reads like "no delay".
93const RESTART_WINDOW_ZERO_MESSAGE: &str = "restart.window_secs must be greater than 0 (a zero window holds no crash, so the budget can never be spent; for effectively unlimited restarts set a deliberately large window_secs, and to stop restarting entirely set restart.max_restarts: 0)";
94
95/// Logging policy parsed from `subc.jsonc`.
96///
97/// `retention` is the rename-rotating policy for the daemon's per-child
98/// stderr CAPTURE file (single writer). The daemon's own log and every module's
99/// log are date segments under fleet-logging r2, which never rotate; for those
100/// only `retention.max_age_days` applies, plus `alarm_segment_mb`.
101#[derive(Debug, Clone, PartialEq, Eq)]
102pub struct LoggingConfig {
103    pub level: String,
104    /// Per-logger levels. Keys are logger names; a key with no dot is taken
105    /// as a COMPONENT of the module it is configured on (`perf` on synapse is
106    /// `synapse.perf`), so an operator's `subc.jsonc` reads naturally. See
107    /// [`LoggingConfig::filter_spec`].
108    pub tags: BTreeMap<String, String>,
109    pub retention: Retention,
110    /// Segment size at which the writer alarms (never truncates).
111    pub alarm_segment_mb: u32,
112}
113
114impl LoggingConfig {
115    /// The `CK_LOG` value for `module_id`. Logger names in `CK_LOG` are
116    /// absolute (`synapse.perf=info`), while the config block is written per
117    /// module, so a dotless key is prefixed with the module id here. A key
118    /// that already starts with `<module_id>.` or contains a dot is passed
119    /// verbatim; a key equal to the module id is the root and is also
120    /// verbatim. Without this a config `tags: { perf: debug }` would emit
121    /// `perf=debug`, which matches no logger on the r2 hierarchy and silently
122    /// does nothing.
123    pub fn filter_spec(&self, module_id: &str) -> String {
124        let mut directives = vec![self.level.clone()];
125        directives.extend(self.tags.iter().map(|(logger, level)| {
126            if logger == module_id || logger.contains('.') {
127                format!("{logger}={level}")
128            } else {
129                format!("{module_id}.{logger}={level}")
130            }
131        }));
132        directives.join(",")
133    }
134
135    pub fn segment_retention(&self) -> cortexkit_log::SegmentRetention {
136        cortexkit_log::SegmentRetention {
137            max_age_days: self.retention.max_age_days,
138            alarm_segment_mb: self.alarm_segment_mb,
139        }
140    }
141}
142
143#[derive(Debug, Clone, PartialEq, Eq)]
144pub struct DaemonConfig {
145    pub path: PathBuf,
146    pub port: Option<u16>,
147    /// Daemon-wide default drain budget (ms) for module teardown: how long a
148    /// drain waits for already-dispatched requests to finalize. `None` uses
149    /// the built-in default (30s). Per-module `drain_timeout_ms` overrides.
150    pub drain_timeout_ms: Option<u64>,
151    /// Daemon-wide default route.bind relay budget (ms): how long the daemon
152    /// waits for the target module to acknowledge a relayed `route.bind` before
153    /// reporting `module_timeout`. `None` uses the built-in default (12s, set
154    /// in `control::DEFAULT_ROUTE_BIND_RELAY_TIMEOUT`). Per-module
155    /// `route_bind_relay_timeout_ms` overrides. `0` is refused at parse time
156    /// (a zero budget fails every bind; use `enabled: false` to make a
157    /// module unreachable) — this is deliberately asymmetric with
158    /// `drain_timeout_ms`, where `0` is the sanctioned "tear down now".
159    pub route_bind_relay_timeout_ms: Option<u64>,
160    pub modules: Vec<ConfiguredModule>,
161    /// Central storage policy: the single backend choice all managed modules use.
162    /// `None` when the config has no `storage` section (no managed storage).
163    pub storage: Option<StorageConfig>,
164    /// Exact module id whose reserved process may carry admission facts.
165    pub admission_facts_carrier_module_id: Option<String>,
166    /// Exact target module ids that may receive facts from the configured carrier.
167    pub admission_facts_targets: Option<Vec<String>>,
168    /// Module ids whose scopes may set the attributes that grant authority
169    /// (`agent_id`, `delegates`), and whose scopes are stamped
170    /// `owner_authorized`. Restart-required: a change reaching a running daemon
171    /// would leave live routes holding an `owner_authorized` stamp the owner no
172    /// longer has, and a restart closes every route.
173    pub scope_authority_owners: Vec<String>,
174    /// Capability names reserved to one module id. The binding may name a module
175    /// that is not configured yet so an operator can reserve an interface before
176    /// installing its provider.
177    pub reserved_capabilities: BTreeMap<String, String>,
178}
179
180/// Central storage configuration: one backend for every managed module. subc
181/// resolves this into a per-module storage descriptor and delivers it in the
182/// module's HELLO_ACK; the module opens it via the shared store library.
183#[derive(Debug, Clone, PartialEq, Eq)]
184pub enum StorageConfig {
185    /// Each module gets its own sqlite file under `data_home`.
186    Sqlite { data_home: PathBuf },
187}
188
189impl StorageConfig {
190    /// Resolve this central policy into a module's storage descriptor: the opaque
191    /// JSON delivered in `HELLO_ACK.storage`. The shape matches
192    /// `cortexkit_store_types::StorageDescriptor` (subc constructs it by hand to
193    /// avoid a database-library dependency in the thin daemon). The module
194    /// deserializes it into that type and hands it to `cortexkit-store`.
195    ///
196    /// THE DESCRIPTOR IS ADVISORY, NOT BINDING, and the daemon has no way to
197    /// tell whether a module consumed it. A module that opens its store BEFORE
198    /// connecting -- building its own descriptor from an environment variable --
199    /// never reads this at all, and nothing on the wire reports that.
200    ///
201    /// Two consequences worth knowing before reasoning from a store path:
202    ///
203    /// * A store at the path below does NOT prove the descriptor arrived or was
204    ///   keyed correctly; a self-keying module can land on the same path by
205    ///   agreeing with the convention rather than by consuming the descriptor.
206    ///   Any test asserting "the store landed under MODULE_ID" proves the
207    ///   daemon's half only for modules that derive the path from the id they
208    ///   claimed.
209    /// * Where a self-keying module disagrees, BOTH paths can exist. Observed on
210    ///   the live box: astrocyte is handed a data dir already ending in
211    ///   `cortexkit/astrocyte` and appends the same suffix again, so its real
212    ///   store sits nested while an empty file remains at the path this function
213    ///   names -- and a reader inspecting that directory would reasonably
214    ///   conclude the module has an empty store.
215    pub fn descriptor_for(&self, module_id: &str) -> serde_json::Value {
216        match self {
217            // Path convention mirrors cortexkit_store_types::sqlite_store_path:
218            // <data_home>/cortexkit/<module_id>/store.db. One database per module;
219            // a project-scoped module partitions its own rows internally.
220            //
221            // Build the path with forward slashes (NOT PathBuf::join, which inserts
222            // backslashes on Windows) so the delivered wire descriptor is identical
223            // cross-platform and byte-matches the store-types helper. Forward-slash
224            // paths are accepted by sqlite on every platform.
225            StorageConfig::Sqlite { data_home } => {
226                let data_home = data_home.to_string_lossy();
227                let path = format!(
228                    "{}/cortexkit/{module_id}/store.db",
229                    data_home.trim_end_matches('/')
230                );
231                serde_json::json!({
232                    "module_id": module_id,
233                    "storage_namespace": "default",
234                    "isolation": { "kind": "module" },
235                    "backend": { "backend": "sqlite", "path": path },
236                })
237            }
238        }
239    }
240}
241
242#[derive(Debug, Clone, PartialEq, Eq)]
243pub struct ConfiguredModule {
244    pub module_id: String,
245    pub program: PathBuf,
246    pub args: Vec<String>,
247    pub env: Vec<(String, String)>,
248    /// Effective module logging policy. An absent module block inherits the
249    /// daemon-wide logging block; when neither exists this stays absent so
250    /// `CK_LOG` is genuinely absent from the service-manager-minimal child env.
251    pub log: Option<LoggingConfig>,
252    pub enabled: bool,
253    /// When true, only the daemon-spawned process for this `module_id` may register
254    /// it: subc injects a one-time launch nonce on spawn and rejects any HELLO for
255    /// this id whose nonce does not match. Protects security-boundary modules (e.g.
256    /// the credential vault) from being impersonated by another key-holder while the
257    /// real process is down or restarting. Defaults to false.
258    pub reserved: bool,
259    /// Namespace prefixes owned by this reserved, supervised module. A HELLO for a
260    /// module id under one of these prefixes must echo this owner module's current
261    /// spawn nonce.
262    pub reserved_prefixes: Vec<String>,
263    /// Which wire protocol this module speaks, as declared. Absent in config
264    /// means `Subc`, which is what every module written before this key meant.
265    pub protocol: ModuleProtocol,
266    /// Whether a second process of this module may run beside the first, which
267    /// a blue/green swap does. Absent in config means exclusive.
268    pub overlap: ModuleOverlap,
269    pub health: HealthConfig,
270    /// Effective drain budget (ms) for this module's teardown, already resolved
271    /// against the daemon-wide default at parse time. `None` = built-in default.
272    pub drain_timeout_ms: Option<u64>,
273    /// Effective route.bind relay budget (ms) for this module, already resolved
274    /// against the daemon-wide default at parse time. `None` = built-in default
275    /// (12s). A `0` is refused at parse time at both layers — see
276    /// `DaemonConfig::route_bind_relay_timeout_ms` and `ROUTE_BIND_RELAY_ZERO_MESSAGE`.
277    pub route_bind_relay_timeout_ms: Option<u64>,
278    /// This module's crash-restart budget, fully resolved at parse time: every
279    /// absent key of the optional `restart` block falls back to the supervisor
280    /// default (3 restarts per 600s, 100ms base backoff, 30s maximum backoff).
281    /// Stored resolved rather than as an `Option` so no later layer has to
282    /// re-derive the defaults and get them subtly different.
283    ///
284    /// Read when a module STARTS being supervised (daemon start, or a rescan
285    /// that adds the module). Like `drain_timeout_ms`, an edit to this block for
286    /// an already-running module is not part of the rescan diff, so it takes
287    /// effect on the next daemon start rather than immediately.
288    pub restart: RestartPolicy,
289}
290
291impl ConfiguredModule {
292    pub fn module_spec(&self) -> ModuleSpec {
293        let mut env = self.env.clone();
294        if let Some(log) = &self.log {
295            env.retain(|(key, _)| {
296                key != CK_LOG_ENV
297                    && key != CAPTURE_MAX_FILE_MB_ENV
298                    && key != CAPTURE_KEEP_ENV
299                    && key != CAPTURE_MAX_AGE_DAYS_ENV
300            });
301            env.retain(|(key, _)| {
302                key != CHILD_LOG_MAX_AGE_DAYS_ENV && key != CHILD_LOG_ALARM_SEGMENT_MB_ENV
303            });
304            env.push((CK_LOG_ENV.to_string(), log.filter_spec(&self.module_id)));
305            env.push((
306                CHILD_LOG_MAX_AGE_DAYS_ENV.to_string(),
307                log.retention.max_age_days.to_string(),
308            ));
309            env.push((
310                CHILD_LOG_ALARM_SEGMENT_MB_ENV.to_string(),
311                log.alarm_segment_mb.to_string(),
312            ));
313            // The capture file's own rotation policy. These private entries are
314            // supervisor metadata and are removed before spawn: the child never
315            // sees them, and the capture sink reads them back at spawn time.
316            env.push((
317                CAPTURE_MAX_FILE_MB_ENV.to_string(),
318                log.retention.max_file_mb.to_string(),
319            ));
320            env.push((CAPTURE_KEEP_ENV.to_string(), log.retention.keep.to_string()));
321            env.push((
322                CAPTURE_MAX_AGE_DAYS_ENV.to_string(),
323                log.retention.max_age_days.to_string(),
324            ));
325        }
326        ModuleSpec {
327            module_id: self.module_id.clone(),
328            program: self.program.clone(),
329            args: self.args.clone(),
330            env,
331            reserved: self.reserved,
332            reserved_prefixes: self.reserved_prefixes.clone(),
333            protocol: self.protocol,
334            overlap: self.overlap,
335        }
336    }
337}
338
339#[derive(Debug)]
340pub enum DaemonConfigError {
341    Read {
342        path: PathBuf,
343        source: io::Error,
344    },
345    InvalidJsonc {
346        path: PathBuf,
347        message: String,
348    },
349    InvalidJson {
350        path: PathBuf,
351        source: serde_json::Error,
352    },
353    UnsupportedVersion {
354        path: PathBuf,
355        version: u32,
356    },
357    InvalidValue {
358        path: PathBuf,
359        message: String,
360    },
361}
362
363#[derive(Debug, Deserialize)]
364struct RawDaemonConfig {
365    version: u32,
366    #[serde(default)]
367    port: Option<u16>,
368    #[serde(default)]
369    drain_timeout_ms: Option<u64>,
370    #[serde(default)]
371    route_bind_relay_timeout_ms: Option<u64>,
372    #[serde(default)]
373    log: Option<RawLoggingConfig>,
374    #[serde(default)]
375    modules: BTreeMap<String, RawModuleConfig>,
376    #[serde(default)]
377    storage: Option<RawStorageConfig>,
378    #[serde(default)]
379    admission_facts_carrier_module_id: Option<String>,
380    #[serde(default)]
381    admission_facts_targets: Option<Vec<String>>,
382    #[serde(default)]
383    scope_authority_owners: Option<Vec<String>>,
384    #[serde(default)]
385    reserved_capabilities: BTreeMap<String, String>,
386}
387
388#[derive(Debug, Deserialize)]
389#[serde(tag = "backend", rename_all = "snake_case")]
390enum RawStorageConfig {
391    Sqlite {
392        /// Where per-module sqlite files live. Defaults to the platform data home
393        /// (`$XDG_DATA_HOME`, else `~/.local/share`) when omitted.
394        #[serde(default)]
395        data_home: Option<PathBuf>,
396    },
397}
398
399#[derive(Debug, Deserialize)]
400struct RawModuleConfig {
401    program: PathBuf,
402    #[serde(default)]
403    args: Vec<String>,
404    #[serde(default)]
405    env: BTreeMap<String, String>,
406    #[serde(default)]
407    log: Option<RawLoggingConfig>,
408    #[serde(default = "default_enabled")]
409    enabled: bool,
410    #[serde(default)]
411    reserved: bool,
412    // Unknown module keys remain ignored. Retain them only to warn about the
413    // retired nonce switch for one release, including an explicitly null value.
414    #[serde(flatten)]
415    ignored: BTreeMap<String, serde_json::Value>,
416    #[serde(default)]
417    reserved_prefixes: Vec<String>,
418    /// Read as a raw string rather than a serde enum so an unusable value is
419    /// refused as an `InvalidValue` naming the module and the value the operator
420    /// typed, instead of a serde variant error that names neither.
421    #[serde(default)]
422    protocol: Option<String>,
423    /// Read as a raw string for the same reason as `protocol`.
424    #[serde(default)]
425    overlap: Option<String>,
426    #[serde(default)]
427    health: Option<RawHealthConfig>,
428    #[serde(default)]
429    drain_timeout_ms: Option<u64>,
430    #[serde(default)]
431    route_bind_relay_timeout_ms: Option<u64>,
432    #[serde(default)]
433    restart: Option<RawRestartConfig>,
434}
435
436#[derive(Debug, Clone, Deserialize)]
437struct RawLoggingConfig {
438    #[serde(default)]
439    level: Option<String>,
440    #[serde(default)]
441    tags: BTreeMap<String, String>,
442    #[serde(default)]
443    alarm_segment_mb: Option<u32>,
444    #[serde(default)]
445    max_file_mb: Option<u32>,
446    #[serde(default)]
447    keep: Option<u8>,
448    #[serde(default)]
449    max_age_days: Option<u32>,
450}
451
452#[derive(Debug, Deserialize)]
453struct RawRestartConfig {
454    #[serde(default)]
455    max_restarts: Option<u32>,
456    #[serde(default)]
457    window_secs: Option<u64>,
458    #[serde(default)]
459    backoff_ms: Option<u64>,
460    #[serde(default)]
461    max_backoff_ms: Option<u64>,
462}
463
464#[derive(Debug, Deserialize)]
465struct RawHealthConfig {
466    #[serde(default)]
467    cadence_ms: Option<u64>,
468    #[serde(default)]
469    deadline_ms: Option<u64>,
470    #[serde(default)]
471    failure_threshold: Option<u32>,
472    #[serde(default)]
473    on_degraded: Option<RawHealthAction>,
474    #[serde(default)]
475    on_failing: Option<RawHealthAction>,
476    #[serde(default)]
477    critical: bool,
478}
479
480#[derive(Debug, Deserialize)]
481#[serde(rename_all = "snake_case")]
482enum RawHealthAction {
483    Report,
484    Restart,
485    Alert,
486}
487
488pub fn default_config_path() -> PathBuf {
489    default_config_home().join(DAEMON_CONFIG_RELATIVE_PATH)
490}
491
492/// The XDG-style CONFIG HOME (`~/.config`, `%APPDATA%`), with no `cortexkit/`
493/// tail. This is the AUTHORITY for every module that resolves its own config
494/// file: mirrors (`cortexkit-store-types::resolve_config_home`, and any module
495/// still carrying a hand copy of this ladder) assert against
496/// `tests/golden/config_home_resolution.json` and may not diverge. It is split
497/// from `default_config_path` so the mirror and the daemon share one ladder
498/// rather than one ladder plus a tail that each copy re-appends differently --
499/// the daemon appends `cortexkit/subc.jsonc`, a module appends
500/// `cortexkit/<its file>`, and a copy that bakes the tail in cannot be reused.
501///
502/// Resolution: `XDG_CONFIG_HOME` → `APPDATA` (Windows) → `USERPROFILE` +
503/// `AppData\Roaming` (Windows) → `HOME/.config` → `.config` relative.
504/// Empty values count as unset. Mirrors the data-home ladder exactly except for
505/// the per-platform tails (`.local/share` there, `.config` here).
506///
507/// A RELATIVE result means one of two things and the resolver does not say
508/// which: no home variable was set (the final rung), or `XDG_CONFIG_HOME` was
509/// itself relative (honoured as-is, golden-pinned). Either way the path resolves
510/// against the caller's cwd, which is a true answer about a directory nobody
511/// chose. Callers that must be fail-closed check `is_absolute()` and refuse;
512/// the daemon does so for the storage descriptor it serves (`parse_doc`).
513pub fn default_config_home() -> PathBuf {
514    if let Some(config_home) = non_empty_os_var("XDG_CONFIG_HOME") {
515        return PathBuf::from(config_home);
516    }
517
518    #[cfg(windows)]
519    {
520        if let Some(app_data) = non_empty_os_var("APPDATA") {
521            return PathBuf::from(app_data);
522        }
523        if let Some(user_profile) = non_empty_os_var("USERPROFILE") {
524            return PathBuf::from(user_profile).join("AppData").join("Roaming");
525        }
526    }
527
528    if let Some(home) = non_empty_os_var("HOME") {
529        return PathBuf::from(home).join(".config");
530    }
531
532    PathBuf::from(".config")
533}
534
535pub fn load(path: impl AsRef<Path>) -> Result<Option<DaemonConfig>, DaemonConfigError> {
536    let path = path.as_ref();
537    let Some(doc) = read_config_doc(path)? else {
538        return Ok(None);
539    };
540    parse_doc(&doc, path).map(Some)
541}
542
543/// Loads only the daemon-wide logging block for tracing initialization.
544///
545/// The daemon installs its global subscriber before bootstrap parses the full
546/// configuration. A malformed full config is still reported by bootstrap after
547/// the file sink is live; this early read only chooses its filter and retention.
548pub fn load_logging(path: impl AsRef<Path>) -> Result<Option<LoggingConfig>, DaemonConfigError> {
549    let path = path.as_ref();
550    let Some(doc) = read_config_doc(path)? else {
551        return Ok(None);
552    };
553    let json = jsonc_to_json(&doc).map_err(|message| DaemonConfigError::InvalidJsonc {
554        path: path.to_path_buf(),
555        message,
556    })?;
557    let raw: RawDaemonConfig =
558        serde_json::from_str(&json).map_err(|source| DaemonConfigError::InvalidJson {
559            path: path.to_path_buf(),
560            source,
561        })?;
562    if raw.version != SUPPORTED_CONFIG_VERSION {
563        return Err(DaemonConfigError::UnsupportedVersion {
564            path: path.to_path_buf(),
565            version: raw.version,
566        });
567    }
568    raw.log
569        .map(|log| parse_logging_config(log, path, "daemon log"))
570        .transpose()
571}
572
573/// Create the daemon run directory at 0700 if absent, and tighten it if wider.
574///
575/// WHY A SEPARATE STEP RATHER THAN A MODE ON THE CREATOR. Several things create
576/// this directory and none of them owns it: the log sink's `create_dir_all`
577/// (0777 & ~umask, so 0755 on a default desk), the terminal journal, and the
578/// connection-file writer -- which DOES build its parents at 0700, but returns
579/// early when the directory already exists, because an existing directory keeps
580/// its mode. So the first creator to run decides the mode for every later one,
581/// and on this fleet that was the log sink.
582///
583/// WHAT THE BIT COSTS, stated so nobody over- or under-reads it: the connection
584/// secret inside is written 0600 and was never readable by another account. A
585/// world-listable run directory leaks the MAP -- which modules are live and what
586/// their connection files are named -- not the key. It is worth closing anyway
587/// because the map is reconnaissance and costs nothing to withhold. (Found by
588/// prefrontal's campaign-rig isolation probe, 2026-09-20, on a real desk.)
589///
590/// TIGHTENING IS BEST-EFFORT AND NEVER FATAL. The daemon does not own every
591/// deployment: a directory it cannot chmod belongs to someone else, and refusing
592/// to boot over a permission bit would trade a reconnaissance leak for an
593/// outage. The caller logs what it could not do.
594///
595/// A run directory that cannot be resolved (see [`daemon_run_dir`]) is reported
596/// as an `InvalidInput` I/O error rather than created under the working
597/// directory.
598pub fn ensure_daemon_run_dir_private() -> Result<PathBuf, io::Error> {
599    let path = daemon_run_dir()
600        .map_err(|error| io::Error::new(io::ErrorKind::InvalidInput, error.to_string()))?;
601    ensure_directory_private(&path)?;
602    Ok(path)
603}
604
605/// The policy half, taking the directory so a test drives a real one without
606/// touching the process environment (this crate forbids unsafe, and `set_var` is
607/// unsafe in this edition -- which is the better outcome: the seam is a parameter
608/// rather than a global the test has to fight).
609#[cfg(unix)]
610fn ensure_directory_private(path: &Path) -> Result<(), io::Error> {
611    use std::os::unix::fs::{DirBuilderExt, PermissionsExt};
612
613    if !path.exists() {
614        fs::DirBuilder::new()
615            .recursive(true)
616            .mode(0o700)
617            .create(path)?;
618        return Ok(());
619    }
620    let mode = fs::metadata(path)?.permissions().mode() & 0o777;
621    if mode & 0o077 != 0 {
622        fs::set_permissions(path, fs::Permissions::from_mode(0o700))?;
623    }
624    Ok(())
625}
626
627/// Windows has no mode bits to tighten; the directory is created on first use.
628#[cfg(not(unix))]
629fn ensure_directory_private(path: &Path) -> Result<(), io::Error> {
630    if !path.exists() {
631        fs::create_dir_all(path)?;
632    }
633    Ok(())
634}
635
636/// Existing per-user daemon run directory (`<data-home>/cortexkit/run`).
637///
638/// Refuses a relative data home (HOME and XDG_DATA_HOME both unset, or a
639/// relative XDG_DATA_HOME) instead of resolving it against the working
640/// directory. Resolving it there once wrote a stray `.local/` tree into a crate
641/// directory and dirtied a release build: the run directory holds the
642/// connection file, the terminal journal and the daemon's logs, so it must not
643/// depend on where a process happened to be started. The storage data home is
644/// refused at config parse for the same reason.
645pub fn daemon_run_dir() -> Result<PathBuf, DaemonRunDirError> {
646    daemon_run_dir_from(default_data_home())
647}
648
649/// The policy half of [`daemon_run_dir`], taking the data home as a parameter so
650/// a test can drive both outcomes without touching the process environment.
651fn daemon_run_dir_from(data_home: PathBuf) -> Result<PathBuf, DaemonRunDirError> {
652    if !data_home.is_absolute() {
653        return Err(DaemonRunDirError::RelativeDataHome { data_home });
654    }
655    Ok(data_home.join("cortexkit").join("run"))
656}
657
658/// Why the daemon run directory could not be resolved.
659#[derive(Debug, Clone, PartialEq, Eq)]
660pub enum DaemonRunDirError {
661    /// The data home resolved to a relative path, which would place the run
662    /// directory under whatever directory the process was started from.
663    RelativeDataHome { data_home: PathBuf },
664}
665
666impl fmt::Display for DaemonRunDirError {
667    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
668        match self {
669            Self::RelativeDataHome { data_home } => write!(
670                f,
671                "cannot resolve the daemon run directory: the data home `{}` is relative, \
672                 so it would land under the current working directory; {}",
673                data_home.display(),
674                DATA_HOME_REMEDY
675            ),
676        }
677    }
678}
679
680impl std::error::Error for DaemonRunDirError {}
681
682/// Which environment variables make the data home absolute on this platform.
683#[cfg(windows)]
684const DATA_HOME_REMEDY: &str =
685    "set XDG_DATA_HOME to an absolute path, or set APPDATA, USERPROFILE or HOME";
686#[cfg(not(windows))]
687const DATA_HOME_REMEDY: &str = "set XDG_DATA_HOME to an absolute path, or set HOME";
688
689fn read_config_doc(path: &Path) -> Result<Option<String>, DaemonConfigError> {
690    match fs::read_to_string(path) {
691        Ok(doc) => Ok(Some(doc)),
692        Err(source) if source.kind() == io::ErrorKind::NotFound => Ok(None),
693        Err(source) => Err(DaemonConfigError::Read {
694            path: path.to_path_buf(),
695            source,
696        }),
697    }
698}
699
700fn parse_doc(doc: &str, path: &Path) -> Result<DaemonConfig, DaemonConfigError> {
701    let json = jsonc_to_json(doc).map_err(|message| DaemonConfigError::InvalidJsonc {
702        path: path.to_path_buf(),
703        message,
704    })?;
705    let raw: RawDaemonConfig =
706        serde_json::from_str(&json).map_err(|source| DaemonConfigError::InvalidJson {
707            path: path.to_path_buf(),
708            source,
709        })?;
710
711    if raw.version != SUPPORTED_CONFIG_VERSION {
712        return Err(DaemonConfigError::UnsupportedVersion {
713            path: path.to_path_buf(),
714            version: raw.version,
715        });
716    }
717
718    let daemon_logging = raw
719        .log
720        .map(|log| parse_logging_config(log, path, "daemon log"))
721        .transpose()?;
722    let default_drain_timeout_ms = raw.drain_timeout_ms;
723    // `0` here would turn every bind to a slow module into an instant failure;
724    // "off is not a budget" so refuse the key at parse time. Operators who
725    // want a module unreachable should use `enabled: false` instead. The
726    // check is per-layer (daemon-wide + per-module) because either alone
727    // poisons every affected bind.
728    let default_route_bind_relay_timeout_ms = match raw.route_bind_relay_timeout_ms {
729        Some(0) => {
730            return Err(DaemonConfigError::InvalidValue {
731                path: path.to_path_buf(),
732                message: ROUTE_BIND_RELAY_ZERO_MESSAGE.to_string(),
733            });
734        }
735        Some(value) => Some(value),
736        None => None,
737    };
738    let modules = raw
739        .modules
740        .into_iter()
741        .map(|(module_id, module)| {
742            let health = module
743                .health
744                .map(|health| parse_health_config(health, path, &module_id))
745                .transpose()?
746                .unwrap_or_default();
747            if let Err(reason) = crate::registry::module_id_path_hazard(&module_id) {
748                return Err(DaemonConfigError::InvalidValue {
749                    path: path.to_path_buf(),
750                    message: format!(
751                        "module id '{}' is not usable as a path component ({reason}): \
752                         the daemon derives each module's store path from its id",
753                        module_id.escape_debug()
754                    ),
755                });
756            }
757            // Same rejection at the per-module layer. `Some(0)` from a module
758            // is refused even when the daemon-wide value is also Some(0): the
759            // failure must name the offending module id so the operator can
760            // locate it in the file.
761            let per_module_route_bind_relay_timeout_ms = match module.route_bind_relay_timeout_ms {
762                Some(0) => {
763                    return Err(DaemonConfigError::InvalidValue {
764                        path: path.to_path_buf(),
765                        message: format!(
766                            "module '{module_id}' {ROUTE_BIND_RELAY_ZERO_MESSAGE}",
767                            module_id = module_id.escape_debug()
768                        ),
769                    });
770                }
771                Some(value) => Some(value),
772                None => default_route_bind_relay_timeout_ms,
773            };
774            // Through the daemon's log, not stderr: under launchd or systemd the
775            // daemon's stderr is usually discarded, so a warning written there is
776            // one no operator reads. The daemon installs its logger before it
777            // loads the full config, so this lands in run/logs/subc.<date>.log.
778            if module.ignored.contains_key("launch_nonce_env") {
779                tracing::warn!(
780                    module_id = %module_id.escape_debug(),
781                    "launch_nonce_env is deprecated and ignored; nonce delivery is determined by the platform"
782                );
783            }
784            let protocol = parse_module_protocol(module.protocol.as_deref(), path, &module_id)?;
785            let overlap = parse_module_overlap(module.overlap.as_deref(), path, &module_id)?;
786            // The spawn role is set by the supervisor on a swap candidate and
787            // nowhere else; a configured value would put the long swap warm-up
788            // budget on every plain restart, where callers wait on it.
789            if module.env.contains_key(SUBC_SPAWN_ROLE_ENV) {
790                return Err(DaemonConfigError::InvalidValue {
791                    path: path.to_path_buf(),
792                    message: format!(
793                        "module '{module_id}' sets {SUBC_SPAWN_ROLE_ENV} in env; that variable is set by the supervisor on a swap candidate only and cannot be configured",
794                        module_id = module_id.escape_debug()
795                    ),
796                });
797            }
798            // A reserved module is one only the daemon-spawned process may
799            // REGISTER as, enforced by matching a launch nonce in its HELLO. A
800            // module that speaks no subc wire sends no HELLO, so the gate has
801            // nothing to check and the pairing states an intent the daemon
802            // cannot carry out. Refusing at parse is better than accepting a
803            // security-looking declaration that protects nothing.
804            if protocol == ModuleProtocol::None && module.reserved {
805                return Err(DaemonConfigError::InvalidValue {
806                    path: path.to_path_buf(),
807                    message: format!(
808                        "module '{module_id}' sets reserved: true with protocol: \"none\"; \
809                         reserved is enforced on the module's HELLO and a protocol: \"none\" \
810                         module never registers, so the reservation could never be checked",
811                        module_id = module_id.escape_debug()
812                    ),
813                });
814            }
815            let restart = parse_restart_config(module.restart, path, &module_id)?;
816            let log = module
817                .log
818                .map(|log| parse_logging_config(log, path, &format!("module '{module_id}' log")))
819                .transpose()?
820                .or_else(|| daemon_logging.clone());
821            Ok(ConfiguredModule {
822                module_id,
823                program: module.program,
824                args: module.args,
825                env: module.env.into_iter().collect(),
826                log,
827                enabled: module.enabled,
828                reserved: module.reserved,
829                reserved_prefixes: module.reserved_prefixes,
830                protocol,
831                overlap,
832                health,
833                // Per-module wins; the daemon-wide value is the fallback. `0` is
834                // legitimate ("never wait"), so this is `.or`, not `filter+or`.
835                drain_timeout_ms: module.drain_timeout_ms.or(default_drain_timeout_ms),
836                // Same shape as drain: an explicit per-module value wins over
837                // the daemon-wide default. A `0` here is rejected above
838                // (see "off is not a budget"), so `None` means "use the
839                // daemon-wide value" and `Some(value > 0)` means "use this".
840                route_bind_relay_timeout_ms: per_module_route_bind_relay_timeout_ms,
841                restart,
842            })
843        })
844        .collect::<Result<Vec<_>, DaemonConfigError>>()?;
845
846    validate_reserved_prefixes(&modules, path)?;
847    validate_reserved_capabilities(&raw.reserved_capabilities, path)?;
848    validate_admission_facts_config(
849        &modules,
850        raw.admission_facts_carrier_module_id.as_deref(),
851        raw.admission_facts_targets.as_deref(),
852        path,
853    )?;
854    let scope_authority_owners = raw
855        .scope_authority_owners
856        .unwrap_or_else(default_scope_authority_owners);
857    if scope_authority_owners.iter().any(|owner| owner.is_empty()) {
858        return Err(DaemonConfigError::InvalidValue {
859            path: path.to_path_buf(),
860            message: "scope_authority_owners must not contain empty module ids".to_string(),
861        });
862    }
863
864    let storage = raw
865        .storage
866        .map(|s| match s {
867            RawStorageConfig::Sqlite { data_home } => {
868                let data_home = data_home.unwrap_or_else(default_data_home);
869                // A relative data home is served to every module in its storage
870                // descriptor and resolves against each module's own cwd, so one
871                // daemon would hand out N different directories while every
872                // module's gate stays green. The resolver returns a relative
873                // path when no home variable is set (golden-pinned) or when an
874                // operator set XDG_DATA_HOME to one; both are refused here rather
875                // than in the resolver, because the resolver's contract is shared
876                // with modules that may legitimately tolerate it.
877                if !data_home.is_absolute() {
878                    return Err(DaemonConfigError::InvalidValue {
879                        path: path.to_path_buf(),
880                        message: format!(
881                            "storage data home resolved to the relative path {} \
882                             (no absolute XDG_DATA_HOME, APPDATA, USERPROFILE, or HOME \
883                             in the daemon's environment); refusing to serve a \
884                             cwd-relative storage descriptor to modules. Set \
885                             XDG_DATA_HOME or HOME to an absolute path, or set \
886                             storage.data_home in this file.",
887                            data_home.display()
888                        ),
889                    });
890                }
891                Ok(StorageConfig::Sqlite { data_home })
892            }
893        })
894        .transpose()?;
895
896    Ok(DaemonConfig {
897        path: path.to_path_buf(),
898        port: raw.port,
899        drain_timeout_ms: default_drain_timeout_ms,
900        route_bind_relay_timeout_ms: default_route_bind_relay_timeout_ms,
901        modules,
902        storage,
903        admission_facts_carrier_module_id: raw.admission_facts_carrier_module_id,
904        admission_facts_targets: raw.admission_facts_targets,
905        scope_authority_owners,
906        reserved_capabilities: raw.reserved_capabilities,
907    })
908}
909
910fn parse_logging_config(
911    raw: RawLoggingConfig,
912    path: &Path,
913    owner: &str,
914) -> Result<LoggingConfig, DaemonConfigError> {
915    fn valid_level(level: &str) -> bool {
916        matches!(level, "off" | "error" | "warn" | "info" | "debug" | "trace")
917    }
918
919    let level = raw.level.unwrap_or_else(|| "info".to_string());
920    if !valid_level(&level) {
921        return Err(DaemonConfigError::InvalidValue {
922            path: path.to_path_buf(),
923            message: format!(
924                "{owner}.level must be one of off, error, warn, info, debug, trace; got {level:?}"
925            ),
926        });
927    }
928    for (tag, tag_level) in &raw.tags {
929        // A logger name is dotted segments of [a-z][a-z0-9-]*: the same
930        // grammar cortexkit-log renders and filters on. Anything else would
931        // pass through CK_LOG and be refused there, one process away from the
932        // config that caused it.
933        let well_formed = !tag.is_empty()
934            && tag.split('.').all(|segment| {
935                let mut chars = segment.chars();
936                matches!(chars.next(), Some('a'..='z'))
937                    && chars.all(|c| matches!(c, 'a'..='z' | '0'..='9' | '-'))
938            });
939        if !well_formed {
940            return Err(DaemonConfigError::InvalidValue {
941                path: path.to_path_buf(),
942                message: format!(
943                    "{owner}.tags key {tag:?} is not a logger name (dotted segments of [a-z][a-z0-9-]*)"
944                ),
945            });
946        }
947        if !valid_level(tag_level) {
948            return Err(DaemonConfigError::InvalidValue {
949                path: path.to_path_buf(),
950                message: format!(
951                    "{owner}.tags.{tag} must be one of off, error, warn, info, debug, trace; got {tag_level:?}"
952                ),
953            });
954        }
955    }
956
957    let defaults = Retention::default();
958    let retention = Retention {
959        max_file_mb: raw.max_file_mb.unwrap_or(defaults.max_file_mb),
960        keep: raw.keep.unwrap_or(defaults.keep),
961        max_age_days: raw.max_age_days.unwrap_or(defaults.max_age_days),
962    };
963    if retention.max_file_mb == 0 {
964        return Err(DaemonConfigError::InvalidValue {
965            path: path.to_path_buf(),
966            message: format!("{owner}.max_file_mb must be greater than 0"),
967        });
968    }
969
970    let alarm_segment_mb = raw
971        .alarm_segment_mb
972        .unwrap_or(cortexkit_log::SegmentRetention::default().alarm_segment_mb);
973    if alarm_segment_mb == 0 {
974        return Err(DaemonConfigError::InvalidValue {
975            path: path.to_path_buf(),
976            message: format!("{owner}.alarm_segment_mb must be greater than 0"),
977        });
978    }
979
980    Ok(LoggingConfig {
981        level,
982        tags: raw.tags,
983        retention,
984        alarm_segment_mb,
985    })
986}
987
988/// Resolve a module's declared `protocol` key.
989///
990/// Absent and `"subc"` are the SAME answer on purpose: a config written before
991/// this key existed meant "a subc module", so there is no third state for
992/// "unspecified" to drift into. Anything else is refused with the value quoted,
993/// because the alternative -- falling back to `subc` for a typo like `"non"` --
994/// silently restores the exact supervision behaviour the operator was trying to
995/// turn off.
996fn parse_module_protocol(
997    raw: Option<&str>,
998    path: &Path,
999    module_id: &str,
1000) -> Result<ModuleProtocol, DaemonConfigError> {
1001    match raw {
1002        None | Some("subc") => Ok(ModuleProtocol::Subc),
1003        Some("none") => Ok(ModuleProtocol::None),
1004        // `{other:?}` quotes and escapes the operator's own bytes, so a value
1005        // carrying control characters cannot rewrite the terminal of whoever
1006        // reads the refusal.
1007        Some(other) => Err(DaemonConfigError::InvalidValue {
1008            path: path.to_path_buf(),
1009            message: format!(
1010                "module '{module_id}' declares protocol {other:?}; supported values are \
1011                 \"subc\" (the default when the key is absent) and \"none\"",
1012                module_id = module_id.escape_debug(),
1013            ),
1014        }),
1015    }
1016}
1017
1018/// Resolve a module's declared `overlap` key. Absent means `"exclusive"`,
1019/// and an unknown value is refused rather than read as either: a typo that
1020/// became `"safe"` would let a swap run two processes on a single-writer store.
1021fn parse_module_overlap(
1022    raw: Option<&str>,
1023    path: &Path,
1024    module_id: &str,
1025) -> Result<ModuleOverlap, DaemonConfigError> {
1026    match raw {
1027        None | Some("exclusive") => Ok(ModuleOverlap::Exclusive),
1028        Some("safe") => Ok(ModuleOverlap::Safe),
1029        Some(other) => Err(DaemonConfigError::InvalidValue {
1030            path: path.to_path_buf(),
1031            message: format!(
1032                "module '{module_id}' declares overlap {other:?}; supported values are \
1033                 \"exclusive\" (the default when the key is absent) and \"safe\"",
1034                module_id = module_id.escape_debug(),
1035            ),
1036        }),
1037    }
1038}
1039
1040fn validate_reserved_capabilities(
1041    bindings: &BTreeMap<String, String>,
1042    path: &Path,
1043) -> Result<(), DaemonConfigError> {
1044    for (capability, module_id) in bindings {
1045        if !is_valid_capability_identifier(capability) {
1046            return Err(DaemonConfigError::InvalidValue {
1047                path: path.to_path_buf(),
1048                message: format!(
1049                    "reserved_capabilities key {:?} is not a valid capability identifier",
1050                    capability
1051                ),
1052            });
1053        }
1054        if module_id.trim().is_empty() {
1055            return Err(DaemonConfigError::InvalidValue {
1056                path: path.to_path_buf(),
1057                message: format!(
1058                    "reserved_capabilities binding for {:?} has an empty module id",
1059                    capability
1060                ),
1061            });
1062        }
1063        if let Err(reason) = crate::registry::module_id_path_hazard(module_id) {
1064            return Err(DaemonConfigError::InvalidValue {
1065                path: path.to_path_buf(),
1066                message: format!(
1067                    "reserved_capabilities binding for {:?} has an unusable module id {:?}: {reason}",
1068                    capability, module_id
1069                ),
1070            });
1071        }
1072    }
1073    Ok(())
1074}
1075
1076fn validate_admission_facts_config(
1077    modules: &[ConfiguredModule],
1078    carrier_module_id: Option<&str>,
1079    targets: Option<&[String]>,
1080    path: &Path,
1081) -> Result<(), DaemonConfigError> {
1082    let Some(carrier_module_id) = carrier_module_id else {
1083        return Ok(());
1084    };
1085
1086    let Some(carrier) = modules
1087        .iter()
1088        .find(|module| module.module_id == carrier_module_id)
1089    else {
1090        return Err(DaemonConfigError::InvalidValue {
1091            path: path.to_path_buf(),
1092            message: format!(
1093                "admission_facts_carrier_module_id '{carrier_module_id}' must name a configured module"
1094            ),
1095        });
1096    };
1097    if !carrier.enabled || !carrier.reserved {
1098        return Err(DaemonConfigError::InvalidValue {
1099            path: path.to_path_buf(),
1100            message: format!(
1101                "admission_facts_carrier_module_id '{carrier_module_id}' must name an enabled reserved module"
1102            ),
1103        });
1104    }
1105
1106    let Some(targets) = targets else {
1107        return Err(DaemonConfigError::InvalidValue {
1108            path: path.to_path_buf(),
1109            message: "admission_facts_targets must be present when an admission facts carrier is configured".to_string(),
1110        });
1111    };
1112    if targets.is_empty() || targets.iter().any(String::is_empty) {
1113        return Err(DaemonConfigError::InvalidValue {
1114            path: path.to_path_buf(),
1115            message:
1116                "admission_facts_targets must be non-empty and must not contain empty module ids"
1117                    .to_string(),
1118        });
1119    }
1120
1121    Ok(())
1122}
1123
1124fn default_enabled() -> bool {
1125    true
1126}
1127
1128fn validate_reserved_prefixes(
1129    modules: &[ConfiguredModule],
1130    path: &Path,
1131) -> Result<(), DaemonConfigError> {
1132    for module in modules {
1133        if module.reserved_prefixes.is_empty() {
1134            continue;
1135        }
1136        if !module.reserved {
1137            return Err(DaemonConfigError::InvalidValue {
1138                path: path.to_path_buf(),
1139                message: format!(
1140                    "module '{}' reserved_prefixes require reserved=true so the owner is spawn-nonce protected",
1141                    module.module_id
1142                ),
1143            });
1144        }
1145        for prefix in &module.reserved_prefixes {
1146            if !prefix.ends_with(':') {
1147                return Err(DaemonConfigError::InvalidValue {
1148                    path: path.to_path_buf(),
1149                    message: format!(
1150                        "module '{}' reserved prefix '{}' must end with ':'",
1151                        module.module_id, prefix
1152                    ),
1153                });
1154            }
1155        }
1156    }
1157
1158    for module in modules {
1159        for prefix in &module.reserved_prefixes {
1160            if let Some(colliding) = modules
1161                .iter()
1162                .find(|candidate| candidate.module_id.starts_with(prefix))
1163            {
1164                return Err(DaemonConfigError::InvalidValue {
1165                    path: path.to_path_buf(),
1166                    message: format!(
1167                        "reserved prefix '{}' owned by '{}' collides with configured module id '{}'",
1168                        prefix, module.module_id, colliding.module_id
1169                    ),
1170                });
1171            }
1172        }
1173    }
1174
1175    for (left_index, left) in modules.iter().enumerate() {
1176        for right in modules.iter().skip(left_index + 1) {
1177            if left.module_id == right.module_id {
1178                continue;
1179            }
1180            for left_prefix in &left.reserved_prefixes {
1181                for right_prefix in &right.reserved_prefixes {
1182                    if left_prefix.starts_with(right_prefix)
1183                        || right_prefix.starts_with(left_prefix)
1184                    {
1185                        return Err(DaemonConfigError::InvalidValue {
1186                            path: path.to_path_buf(),
1187                            message: format!(
1188                                "reserved prefixes '{}' owned by '{}' and '{}' owned by '{}' overlap",
1189                                left_prefix, left.module_id, right_prefix, right.module_id
1190                            ),
1191                        });
1192                    }
1193                }
1194            }
1195        }
1196    }
1197
1198    Ok(())
1199}
1200
1201fn parse_health_config(
1202    raw: RawHealthConfig,
1203    path: &Path,
1204    module_id: &str,
1205) -> Result<HealthConfig, DaemonConfigError> {
1206    let defaults = HealthConfig::default();
1207    let cadence = positive_millis(
1208        raw.cadence_ms,
1209        defaults.cadence,
1210        path,
1211        module_id,
1212        "cadence_ms",
1213    )?;
1214    let deadline = positive_millis(
1215        raw.deadline_ms,
1216        defaults.deadline,
1217        path,
1218        module_id,
1219        "deadline_ms",
1220    )?;
1221    let failure_threshold = match raw.failure_threshold {
1222        Some(0) => {
1223            return Err(DaemonConfigError::InvalidValue {
1224                path: path.to_path_buf(),
1225                message: format!("module '{module_id}' health.failure_threshold must be positive"),
1226            })
1227        }
1228        Some(value) => value,
1229        None => defaults.failure_threshold,
1230    };
1231
1232    Ok(HealthConfig {
1233        cadence,
1234        deadline,
1235        failure_threshold,
1236        on_degraded: match raw.on_degraded {
1237            Some(RawHealthAction::Restart) => {
1238                return Err(DaemonConfigError::InvalidValue {
1239                    path: path.to_path_buf(),
1240                    message: format!(
1241                        "module '{module_id}' health.on_degraded may not be 'restart': a degraded module is slow-but-moving, so restarting it converts transient load into an outage. Use 'report' or 'alert' (Health-Path v2: only total wreckage or reported-unresponsiveness restarts)."
1242                    ),
1243                });
1244            }
1245            Some(action) => health_action(action),
1246            None => defaults.on_degraded,
1247        },
1248        on_failing: raw
1249            .on_failing
1250            .map(health_action)
1251            .unwrap_or(defaults.on_failing),
1252        critical: raw.critical,
1253    })
1254}
1255
1256/// Resolve one module's `restart` block against the supervisor defaults.
1257///
1258/// Every key is optional and independent: a config that sets only
1259/// `window_secs` keeps the default cap and backoff, and a config with no
1260/// `restart` block at all gets exactly the policy the daemon used before the
1261/// block existed.
1262fn parse_restart_config(
1263    raw: Option<RawRestartConfig>,
1264    path: &Path,
1265    module_id: &str,
1266) -> Result<RestartPolicy, DaemonConfigError> {
1267    let defaults = RestartPolicy::default();
1268    let Some(raw) = raw else {
1269        return Ok(defaults);
1270    };
1271
1272    let window = match raw.window_secs {
1273        Some(0) => {
1274            return Err(DaemonConfigError::InvalidValue {
1275                path: path.to_path_buf(),
1276                message: format!(
1277                    "module '{module_id}' {RESTART_WINDOW_ZERO_MESSAGE}",
1278                    module_id = module_id.escape_debug()
1279                ),
1280            });
1281        }
1282        Some(secs) => Duration::from_secs(secs),
1283        None => defaults.window,
1284    };
1285    let backoff = raw
1286        .backoff_ms
1287        .map(Duration::from_millis)
1288        .unwrap_or(defaults.backoff);
1289    let max_backoff = raw
1290        .max_backoff_ms
1291        .map(Duration::from_millis)
1292        .unwrap_or(defaults.max_backoff);
1293    if max_backoff < backoff {
1294        return Err(DaemonConfigError::InvalidValue {
1295            path: path.to_path_buf(),
1296            message: format!(
1297                "module '{}' restart.max_backoff_ms must be greater than or equal to restart.backoff_ms (max_backoff_ms={max_backoff:?}, backoff_ms={backoff:?})",
1298                module_id.escape_debug()
1299            ),
1300        });
1301    }
1302
1303    Ok(RestartPolicy {
1304        // `0` is a deliberate posture here ("never replace this module"), unlike
1305        // the window, so it is accepted as written.
1306        max_restarts: raw.max_restarts.unwrap_or(defaults.max_restarts),
1307        backoff,
1308        max_backoff,
1309        window,
1310    })
1311}
1312
1313fn positive_millis(
1314    value: Option<u64>,
1315    default: std::time::Duration,
1316    path: &Path,
1317    module_id: &str,
1318    field: &str,
1319) -> Result<std::time::Duration, DaemonConfigError> {
1320    match value {
1321        Some(0) => Err(DaemonConfigError::InvalidValue {
1322            path: path.to_path_buf(),
1323            message: format!("module '{module_id}' health.{field} must be positive"),
1324        }),
1325        Some(value) => Ok(std::time::Duration::from_millis(value)),
1326        None => Ok(default),
1327    }
1328}
1329
1330fn health_action(action: RawHealthAction) -> HealthAction {
1331    match action {
1332        RawHealthAction::Report => HealthAction::Report,
1333        RawHealthAction::Restart => HealthAction::Restart,
1334        RawHealthAction::Alert => HealthAction::Alert,
1335    }
1336}
1337
1338/// Platform data home for per-module storage: `$XDG_DATA_HOME`, else
1339/// `~/.local/share` (or the Windows roaming app data), else a relative fallback.
1340pub(crate) fn default_data_home() -> PathBuf {
1341    if let Some(data_home) = non_empty_os_var("XDG_DATA_HOME") {
1342        return PathBuf::from(data_home);
1343    }
1344
1345    #[cfg(windows)]
1346    {
1347        if let Some(app_data) = non_empty_os_var("APPDATA") {
1348            return PathBuf::from(app_data);
1349        }
1350        if let Some(user_profile) = non_empty_os_var("USERPROFILE") {
1351            return PathBuf::from(user_profile).join("AppData").join("Roaming");
1352        }
1353    }
1354
1355    if let Some(home) = non_empty_os_var("HOME") {
1356        return PathBuf::from(home).join(".local").join("share");
1357    }
1358
1359    PathBuf::from(".local").join("share")
1360}
1361
1362fn non_empty_os_var(key: &str) -> Option<OsString> {
1363    let value = env::var_os(key)?;
1364    if value.is_empty() {
1365        None
1366    } else {
1367        Some(value)
1368    }
1369}
1370
1371impl fmt::Display for DaemonConfigError {
1372    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
1373        match self {
1374            Self::Read { path, source } => {
1375                write!(f, "failed to read daemon config {}: {source}", path.display())
1376            }
1377            Self::InvalidJsonc { path, message } => {
1378                write!(f, "invalid JSONC in daemon config {}: {message}", path.display())
1379            }
1380            Self::InvalidJson { path, source } => {
1381                write!(f, "invalid daemon config {}: {source}", path.display())
1382            }
1383            Self::UnsupportedVersion { path, version } => write!(
1384                f,
1385                "invalid daemon config {}: version {version} is unsupported (expected {SUPPORTED_CONFIG_VERSION})",
1386                path.display()
1387            ),
1388            Self::InvalidValue { path, message } => {
1389                write!(f, "invalid daemon config {}: {message}", path.display())
1390            }
1391        }
1392    }
1393}
1394
1395impl Error for DaemonConfigError {
1396    fn source(&self) -> Option<&(dyn Error + 'static)> {
1397        match self {
1398            Self::Read { source, .. } => Some(source),
1399            Self::InvalidJson { source, .. } => Some(source),
1400            Self::InvalidJsonc { .. }
1401            | Self::UnsupportedVersion { .. }
1402            | Self::InvalidValue { .. } => None,
1403        }
1404    }
1405}
1406
1407#[cfg(all(test, unix))]
1408mod run_dir_privacy_tests {
1409    use std::fs;
1410    use std::os::unix::fs::PermissionsExt;
1411    use subc_test_support::TestTempDir;
1412
1413    /// Both arms of the thing that actually bit: a directory this code CREATES,
1414    /// and one it INHERITS from another creator. The second is the real case --
1415    /// every desk in the fleet already had a 0755 run directory made by the log
1416    /// sink, so a fix that only sets the mode at creation would have changed
1417    /// nothing anywhere it mattered.
1418    #[test]
1419    fn run_dir_is_created_private_and_an_inherited_wide_one_is_tightened() {
1420        let temp = TestTempDir::new("subc-run-dir-privacy");
1421        let created = temp.path().join("cortexkit").join("run");
1422        super::ensure_directory_private(&created).expect("create run dir");
1423        let mode = fs::metadata(&created)
1424            .expect("stat created")
1425            .permissions()
1426            .mode()
1427            & 0o777;
1428        assert_eq!(
1429            mode, 0o700,
1430            "observable a run directory this code creates must be 0700, got {mode:o}"
1431        );
1432
1433        // Now the inherited case: widen it the way create_dir_all would have.
1434        fs::set_permissions(&created, fs::Permissions::from_mode(0o755)).expect("widen");
1435        let widened = fs::metadata(&created)
1436            .expect("stat widened")
1437            .permissions()
1438            .mode()
1439            & 0o777;
1440        assert_eq!(
1441            widened, 0o755,
1442            "observable the fixture must actually be wide before the tighten"
1443        );
1444
1445        super::ensure_directory_private(&created).expect("tighten run dir");
1446        let mode = fs::metadata(&created)
1447            .expect("stat tightened")
1448            .permissions()
1449            .mode()
1450            & 0o777;
1451        assert_eq!(
1452            mode, 0o700,
1453            "observable an inherited group- or world-readable run directory must be tightened to 0700, got {mode:o}"
1454        );
1455    }
1456}
1457
1458#[cfg(test)]
1459mod tests {
1460    use super::*;
1461
1462    /// The golden fixture is the CONTRACT for data-home resolution: mirror
1463    /// implementations (cortexkit-store-types `resolve_data_home`,
1464    /// @cortexkit/store `resolveDataHome`) assert against the same rows, so a
1465    /// rule change here that skips the fixture breaks THIS test rather than
1466    /// silently splitting a module's self-resolved path from the descriptor
1467    /// the daemon serves (the CKCRED Windows divergence, 2026-08).
1468    /// Env-mutating tests share this lock: cargo runs tests on multiple
1469    /// threads and the four data-home variables are process-global.
1470    static ENV_LOCK: std::sync::Mutex<()> = std::sync::Mutex::new(());
1471
1472    /// A path that is absolute on the platform running the test. `/data` is
1473    /// relative on Windows (no drive letter), which is not a bug in the resolver
1474    /// but a bug in a test that assumes POSIX absoluteness -- the relative-home
1475    /// refusal exposed three such tests on the Windows leg.
1476    fn abs(posix: &str) -> PathBuf {
1477        if cfg!(windows) {
1478            PathBuf::from(format!("C:{}", posix.replace('/', "\\")))
1479        } else {
1480            PathBuf::from(posix)
1481        }
1482    }
1483
1484    #[test]
1485    fn default_data_home_matches_golden_fixture() {
1486        let _g = ENV_LOCK.lock().unwrap_or_else(|p| p.into_inner());
1487        let doc: serde_json::Value =
1488            serde_json::from_str(include_str!("../tests/golden/data_home_resolution.json"))
1489                .expect("golden parses");
1490        let vars = ["XDG_DATA_HOME", "APPDATA", "USERPROFILE", "HOME"];
1491        let saved: Vec<(&str, Option<std::ffi::OsString>)> =
1492            vars.iter().map(|v| (*v, env::var_os(v))).collect();
1493        let platform_matches =
1494            |p: &str| p == "any" || p == if cfg!(windows) { "windows" } else { "unix" };
1495
1496        let mut ran = 0usize;
1497        for case in doc["cases"].as_array().expect("cases array") {
1498            let name = case["name"].as_str().expect("name");
1499            if !platform_matches(case["platform"].as_str().expect("platform")) {
1500                continue;
1501            }
1502            for v in vars {
1503                env::remove_var(v);
1504            }
1505            for (k, v) in case["env"].as_object().expect("env map") {
1506                env::set_var(k, v.as_str().expect("env value"));
1507            }
1508            let got = default_data_home();
1509            assert_eq!(
1510                got.to_string_lossy(),
1511                case["expect"].as_str().expect("expect"),
1512                "golden case '{name}' diverged"
1513            );
1514            ran += 1;
1515        }
1516        // Vacuity floor: 'any' rows plus this platform's rows must both run.
1517        assert!(
1518            ran >= 6,
1519            "only {ran} golden cases ran; fixture or filter broken"
1520        );
1521
1522        for (k, v) in saved {
1523            match v {
1524                Some(val) => env::set_var(k, val),
1525                None => env::remove_var(k),
1526            }
1527        }
1528    }
1529
1530    /// A relative data home is what `default_data_home` returns when HOME and
1531    /// XDG_DATA_HOME are both unset (the golden fixture pins `.local/share`), or
1532    /// when XDG_DATA_HOME itself is relative. Either must be refused, never
1533    /// joined onto the working directory.
1534    #[test]
1535    fn daemon_run_dir_refuses_a_relative_data_home_and_names_the_variables() {
1536        for data_home in [PathBuf::from(".local/share"), PathBuf::from("relative-xdg")] {
1537            let error = daemon_run_dir_from(data_home.clone())
1538                .expect_err("a relative data home must be refused");
1539            assert_eq!(
1540                error,
1541                DaemonRunDirError::RelativeDataHome {
1542                    data_home: data_home.clone()
1543                }
1544            );
1545            let message = error.to_string();
1546            assert!(
1547                message.contains("XDG_DATA_HOME") && message.contains("HOME"),
1548                "the refusal must name the variables to set: {message}"
1549            );
1550        }
1551    }
1552
1553    #[test]
1554    fn daemon_run_dir_under_an_absolute_data_home_is_cortexkit_run() {
1555        let data_home = env::temp_dir().join("subc-run-dir-probe").join("data");
1556        assert!(data_home.is_absolute());
1557        assert_eq!(
1558            daemon_run_dir_from(data_home.clone()),
1559            Ok(data_home.join("cortexkit").join("run"))
1560        );
1561    }
1562
1563    /// Same harness as the data-home golden, over the config-home ladder. The two
1564    /// fixtures share a row shape on purpose: a divergence between the ladders
1565    /// (one honouring a variable the other does not) is exactly the class that
1566    /// produced the doubled-path store defect, and a shared harness makes it
1567    /// visible as a fixture diff rather than as a runtime surprise.
1568    #[test]
1569    fn default_config_home_matches_golden_fixture() {
1570        let _g = ENV_LOCK.lock().unwrap_or_else(|p| p.into_inner());
1571        let doc: serde_json::Value =
1572            serde_json::from_str(include_str!("../tests/golden/config_home_resolution.json"))
1573                .expect("golden parses");
1574        let vars = ["XDG_CONFIG_HOME", "APPDATA", "USERPROFILE", "HOME"];
1575        let saved: Vec<(&str, Option<std::ffi::OsString>)> =
1576            vars.iter().map(|v| (*v, env::var_os(v))).collect();
1577        let platform_matches =
1578            |p: &str| p == "any" || p == if cfg!(windows) { "windows" } else { "unix" };
1579
1580        let mut ran = 0usize;
1581        for case in doc["cases"].as_array().expect("cases array") {
1582            let name = case["name"].as_str().expect("name");
1583            if !platform_matches(case["platform"].as_str().expect("platform")) {
1584                continue;
1585            }
1586            for v in vars {
1587                env::remove_var(v);
1588            }
1589            for (k, v) in case["env"].as_object().expect("env map") {
1590                env::set_var(k, v.as_str().expect("env value"));
1591            }
1592            let got = default_config_home();
1593            assert_eq!(
1594                got.to_string_lossy(),
1595                case["expect"].as_str().expect("expect"),
1596                "golden case '{name}' diverged"
1597            );
1598            ran += 1;
1599        }
1600        assert!(
1601            ran >= 6,
1602            "only {ran} golden cases ran; fixture or filter broken"
1603        );
1604
1605        for (k, v) in saved {
1606            match v {
1607                Some(val) => env::set_var(k, val),
1608                None => env::remove_var(k),
1609            }
1610        }
1611    }
1612
1613    /// A relative storage data home is refused at parse rather than served.
1614    /// Both ways a relative path arises are covered: an explicit relative
1615    /// `storage.data_home` in the file, and the resolver's own fall-through when
1616    /// no home variable is set. The control proves the guard is on the VALUE and
1617    /// not on the presence of the key: the same document with an absolute home
1618    /// parses.
1619    #[test]
1620    fn relative_storage_data_home_is_refused_at_parse() {
1621        let _g = ENV_LOCK.lock().unwrap_or_else(|p| p.into_inner());
1622        let path = Path::new("/golden/subc.jsonc");
1623
1624        // Arm 1: explicit relative value in the file.
1625        let doc =
1626            r#"{ "version": 1, "storage": { "backend": "sqlite", "data_home": "relative/home" } }"#;
1627        let err = parse_doc(doc, path).expect_err("relative data_home must refuse");
1628        assert!(
1629            matches!(&err, DaemonConfigError::InvalidValue { message, .. }
1630                if message.contains("relative path relative/home")),
1631            "wrong refusal: {err:?}"
1632        );
1633
1634        // Arm 2: the resolver's fall-through, with every home variable cleared.
1635        let vars = ["XDG_DATA_HOME", "APPDATA", "USERPROFILE", "HOME"];
1636        let saved: Vec<(&str, Option<std::ffi::OsString>)> =
1637            vars.iter().map(|v| (*v, env::var_os(v))).collect();
1638        for v in vars {
1639            env::remove_var(v);
1640        }
1641        let doc = r#"{ "version": 1, "storage": { "backend": "sqlite" } }"#;
1642        let err = parse_doc(doc, path).expect_err("no home in env must refuse");
1643        assert!(
1644            matches!(&err, DaemonConfigError::InvalidValue { message, .. }
1645                if message.contains("no absolute XDG_DATA_HOME")),
1646            "wrong refusal: {err:?}"
1647        );
1648
1649        // Control: an absolute value parses -- the guard is on the value. The
1650        // path must be absolute ON THIS PLATFORM; `/abs/home` is relative on
1651        // Windows and would make the control refuse for the wrong reason.
1652        let want = abs("/abs/home");
1653        let doc = format!(
1654            r#"{{ "version": 1, "storage": {{ "backend": "sqlite", "data_home": {} }} }}"#,
1655            serde_json::to_string(&want).expect("json path")
1656        );
1657        let cfg = parse_doc(&doc, path).expect("absolute data_home parses");
1658        assert!(matches!(
1659            cfg.storage,
1660            Some(StorageConfig::Sqlite { ref data_home }) if *data_home == want
1661        ));
1662
1663        for (k, v) in saved {
1664            match v {
1665                Some(val) => env::set_var(k, val),
1666                None => env::remove_var(k),
1667            }
1668        }
1669    }
1670
1671    #[test]
1672    fn restart_required_sections_are_the_rescan_cannot_apply_set() {
1673        assert_eq!(
1674            RestartRequiredSection::ALL.map(RestartRequiredSection::label),
1675            [
1676                "port",
1677                "storage",
1678                "admission_facts_carrier_module_id",
1679                "admission_facts_targets",
1680                "scope_authority_owners",
1681            ]
1682        );
1683    }
1684
1685    #[test]
1686    fn scope_authority_owners_defaults_to_the_session_runtime() {
1687        let config = parse_doc(r#"{ "version": 1 }"#, Path::new("/tmp/subc.jsonc")).unwrap();
1688        assert_eq!(config.scope_authority_owners, vec!["prefrontal-core"]);
1689    }
1690
1691    #[test]
1692    fn scope_authority_owners_is_read_when_set_and_refuses_an_empty_id() {
1693        let config = parse_doc(
1694            r#"{ "version": 1, "scope_authority_owners": ["a", "b"] }"#,
1695            Path::new("/tmp/subc.jsonc"),
1696        )
1697        .unwrap();
1698        assert_eq!(config.scope_authority_owners, vec!["a", "b"]);
1699        // An explicit empty list is a real posture (no owner may set gated
1700        // attributes), distinct from an absent key.
1701        let config = parse_doc(
1702            r#"{ "version": 1, "scope_authority_owners": [] }"#,
1703            Path::new("/tmp/subc.jsonc"),
1704        )
1705        .unwrap();
1706        assert!(config.scope_authority_owners.is_empty());
1707        let error = parse_doc(
1708            r#"{ "version": 1, "scope_authority_owners": [""] }"#,
1709            Path::new("/tmp/subc.jsonc"),
1710        )
1711        .expect_err("an empty module id is refused");
1712        assert!(
1713            error.to_string().contains("scope_authority_owners"),
1714            "{error}"
1715        );
1716    }
1717
1718    #[test]
1719    fn no_storage_section_yields_none() {
1720        let config = parse_doc(
1721            r#"{ "version": 1, "modules": {} }"#,
1722            Path::new("/tmp/subc.jsonc"),
1723        )
1724        .expect("parse");
1725        assert_eq!(config.storage, None);
1726    }
1727
1728    #[test]
1729    fn sqlite_storage_parses_with_explicit_data_home() {
1730        let config = parse_doc(
1731            &format!(
1732                r#"{{ "version": 1, "storage": {{ "backend": "sqlite", "data_home": {} }} }}"#,
1733                serde_json::to_string(&abs("/data")).expect("json path")
1734            ),
1735            Path::new("/tmp/subc.jsonc"),
1736        )
1737        .expect("parse");
1738        assert_eq!(
1739            config.storage,
1740            Some(StorageConfig::Sqlite {
1741                data_home: abs("/data")
1742            })
1743        );
1744    }
1745
1746    #[test]
1747    fn sqlite_storage_defaults_data_home_when_omitted() {
1748        // With no data_home, it falls back to the platform data home (here forced
1749        // via XDG_DATA_HOME so the test is deterministic).
1750        // Mutating the environment is a process-wide side effect; every test
1751        // reading or writing the data-home variables serializes on ENV_LOCK
1752        // (the golden-fixture test above mutates all four variables).
1753        let _g = ENV_LOCK.lock().unwrap_or_else(|p| p.into_inner());
1754        std::env::set_var("XDG_DATA_HOME", abs("/forced/data/home"));
1755        let config = parse_doc(
1756            r#"{ "version": 1, "storage": { "backend": "sqlite" } }"#,
1757            Path::new("/tmp/subc.jsonc"),
1758        )
1759        .expect("parse");
1760        std::env::remove_var("XDG_DATA_HOME");
1761        assert_eq!(
1762            config.storage,
1763            Some(StorageConfig::Sqlite {
1764                data_home: abs("/forced/data/home")
1765            })
1766        );
1767    }
1768
1769    #[test]
1770    fn descriptor_for_matches_store_types_shape() {
1771        // The opaque descriptor subc delivers must match the
1772        // cortexkit_store_types::StorageDescriptor JSON shape exactly (path
1773        // convention <data_home>/cortexkit/<module>/store.db, one db per module).
1774        let cfg = StorageConfig::Sqlite {
1775            data_home: PathBuf::from("/data"),
1776        };
1777        let descriptor = cfg.descriptor_for("alfonso-routing");
1778        assert_eq!(
1779            descriptor,
1780            serde_json::json!({
1781                "module_id": "alfonso-routing",
1782                "storage_namespace": "default",
1783                "isolation": { "kind": "module" },
1784                "backend": {
1785                    "backend": "sqlite",
1786                    "path": "/data/cortexkit/alfonso-routing/store.db"
1787                }
1788            })
1789        );
1790    }
1791
1792    #[test]
1793    fn path_hazard_module_id_refuses_config_parse() {
1794        let path = Path::new("/tmp/subc.jsonc");
1795        let err = parse_doc(
1796            r#"{ "version": 1, "modules": { "../escape": { "program": "x" } } }"#,
1797            path,
1798        )
1799        .expect_err("separator-bearing module id must refuse");
1800        let text = format!("{err}");
1801        assert!(
1802            text.contains("not usable as a path component"),
1803            "refusal must name the hazard: {text}"
1804        );
1805    }
1806
1807    #[test]
1808    fn drain_timeout_resolves_module_over_daemon_over_absent() {
1809        let path = Path::new("/tmp/subc.jsonc");
1810        let config = parse_doc(
1811            r#"
1812            {
1813              "version": 1,
1814              "drain_timeout_ms": 45000,
1815              "modules": {
1816                "fast": { "program": "fast", "drain_timeout_ms": 0 },
1817                "slow": { "program": "slow", "drain_timeout_ms": 120000 },
1818                "inherits": { "program": "inherits" }
1819              }
1820            }
1821            "#,
1822            path,
1823        )
1824        .unwrap();
1825        let by_id = |id: &str| {
1826            config
1827                .modules
1828                .iter()
1829                .find(|m| m.module_id == id)
1830                .unwrap()
1831                .drain_timeout_ms
1832        };
1833        // Per-module wins, INCLUDING an explicit 0 ("never wait") -- the case a
1834        // truthiness-shaped resolution would silently replace with the default.
1835        assert_eq!(by_id("fast"), Some(0));
1836        assert_eq!(by_id("slow"), Some(120_000));
1837        // No per-module value: the daemon-wide default flows in at parse time.
1838        assert_eq!(by_id("inherits"), Some(45_000));
1839        assert_eq!(config.drain_timeout_ms, Some(45_000));
1840    }
1841
1842    #[test]
1843    fn drain_timeout_absent_everywhere_stays_none_for_builtin_default() {
1844        let path = Path::new("/tmp/subc.jsonc");
1845        let config = parse_doc(
1846            r#"{ "version": 1, "modules": { "m": { "program": "m" } } }"#,
1847            path,
1848        )
1849        .unwrap();
1850        // None here is load-bearing: it means "use the compiled default", so a
1851        // future default bump reaches every unconfigured module without a
1852        // config migration.
1853        assert_eq!(config.modules[0].drain_timeout_ms, None);
1854        assert_eq!(config.drain_timeout_ms, None);
1855    }
1856
1857    #[test]
1858    fn route_bind_relay_timeout_resolves_module_over_daemon_over_absent() {
1859        // Precedence still holds for valid non-zero values. `0` at either
1860        // layer is rejected by `route_bind_relay_timeout_zero_at_daemon_layer_is_refused`
1861        // and `route_bind_relay_timeout_zero_at_module_layer_is_refused` below
1862        // — the asymmetry is deliberate (drain `0` is still accepted; see
1863        // `drain_timeout_zero_still_parses_for_wedge_bounces`).
1864        let path = Path::new("/tmp/subc.jsonc");
1865        let config = parse_doc(
1866            r#"
1867            {
1868              "version": 1,
1869              "route_bind_relay_timeout_ms": 30000,
1870              "modules": {
1871                "tight": { "program": "tight", "route_bind_relay_timeout_ms": 5000 },
1872                "loose": { "program": "loose", "route_bind_relay_timeout_ms": 60000 },
1873                "inherits": { "program": "inherits" }
1874              }
1875            }
1876            "#,
1877            path,
1878        )
1879        .unwrap();
1880        let by_id = |id: &str| {
1881            config
1882                .modules
1883                .iter()
1884                .find(|m| m.module_id == id)
1885                .unwrap()
1886                .route_bind_relay_timeout_ms
1887        };
1888        // Per-module wins for every non-zero value.
1889        assert_eq!(by_id("tight"), Some(5_000));
1890        assert_eq!(by_id("loose"), Some(60_000));
1891        // No per-module value: the daemon-wide default flows in at parse time.
1892        assert_eq!(by_id("inherits"), Some(30_000));
1893        assert_eq!(config.route_bind_relay_timeout_ms, Some(30_000));
1894    }
1895
1896    #[test]
1897    fn log_tag_keys_must_be_logger_names_and_the_error_names_the_key() {
1898        let path = Path::new("/tmp/subc.jsonc");
1899        for bad in ["Perf", "a b", "perf.", ".perf", "gc..walk", "a=b"] {
1900            let doc = format!(
1901                r#"{{ "version": 1, "modules": {{ "m": {{ "program": "m", "log": {{ "tags": {{ "{bad}": "debug" }} }} }} }} }}"#
1902            );
1903            let err = parse_doc(&doc, path).expect_err(bad);
1904            let text = format!("{err}");
1905            assert!(
1906                text.contains(&format!("{bad:?}")),
1907                "must name the key: {text}"
1908            );
1909            assert!(
1910                text.contains("logger name"),
1911                "must say what a key is: {text}"
1912            );
1913        }
1914        // Control: dotted, hyphenated, root-equal keys are all fine.
1915        let ok = parse_doc(
1916            r#"{ "version": 1, "modules": { "m": { "program": "m", "log": { "tags": { "perf": "debug", "gc.walk": "trace", "m": "error", "a-b": "info" } } } } }"#,
1917            path,
1918        );
1919        assert!(ok.is_ok(), "{ok:?}");
1920    }
1921
1922    #[test]
1923    fn log_filter_spec_prefixes_bare_keys_with_the_module_and_passes_absolute_ones() {
1924        let path = Path::new("/tmp/subc.jsonc");
1925        let config = parse_doc(
1926            r#"{ "version": 1, "modules": { "synapse": { "program": "s", "log": { "level": "warn", "tags": { "perf": "debug", "gc.walk": "trace", "synapse": "error", "other.x": "info" } } } } }"#,
1927            path,
1928        )
1929        .unwrap();
1930        let log = config.modules[0].log.as_ref().unwrap();
1931        // BTreeMap order: gc.walk, other.x, perf, synapse.
1932        assert_eq!(
1933            log.filter_spec("synapse"),
1934            "warn,gc.walk=trace,other.x=info,synapse.perf=debug,synapse=error"
1935        );
1936    }
1937
1938    #[test]
1939    fn log_alarm_segment_mb_defaults_to_the_crate_default_and_refuses_zero() {
1940        let path = Path::new("/tmp/subc.jsonc");
1941        let config = parse_doc(
1942            r#"{ "version": 1, "modules": { "m": { "program": "m", "log": { "level": "info" } } } }"#,
1943            path,
1944        )
1945        .unwrap();
1946        assert_eq!(
1947            config.modules[0].log.as_ref().unwrap().alarm_segment_mb,
1948            cortexkit_log::SegmentRetention::default().alarm_segment_mb
1949        );
1950        let err = parse_doc(
1951            r#"{ "version": 1, "modules": { "m": { "program": "m", "log": { "alarm_segment_mb": 0 } } } }"#,
1952            path,
1953        )
1954        .expect_err("zero alarm must refuse");
1955        assert!(format!("{err}").contains("alarm_segment_mb"));
1956    }
1957
1958    #[test]
1959    fn route_bind_relay_timeout_zero_at_daemon_layer_is_refused() {
1960        let path = Path::new("/tmp/subc.jsonc");
1961        let err = parse_doc(
1962            r#"
1963            {
1964              "version": 1,
1965              "route_bind_relay_timeout_ms": 0,
1966              "modules": { "m": { "program": "m" } }
1967            }
1968            "#,
1969            path,
1970        )
1971        .expect_err("a daemon-wide zero budget must refuse parse");
1972        let text = format!("{err}");
1973        assert!(
1974            text.contains("route_bind_relay_timeout_ms"),
1975            "error must name the offending key: {text}"
1976        );
1977        assert!(
1978            text.contains("enabled: false"),
1979            "error must name the remedy (enable false): {text}"
1980        );
1981    }
1982
1983    #[test]
1984    fn route_bind_relay_timeout_zero_at_module_layer_is_refused() {
1985        let path = Path::new("/tmp/subc.jsonc");
1986        let err = parse_doc(
1987            r#"
1988            {
1989              "version": 1,
1990              "modules": {
1991                "good": { "program": "good" },
1992                "broken": { "program": "broken", "route_bind_relay_timeout_ms": 0 }
1993              }
1994            }
1995            "#,
1996            path,
1997        )
1998        .expect_err("a per-module zero budget must refuse parse");
1999        let text = format!("{err}");
2000        assert!(
2001            text.contains("route_bind_relay_timeout_ms"),
2002            "error must name the offending key: {text}"
2003        );
2004        assert!(
2005            text.contains("broken"),
2006            "error must name the offending module id: {text}"
2007        );
2008        assert!(
2009            text.contains("enabled: false"),
2010            "error must name the remedy (enable false): {text}"
2011        );
2012    }
2013
2014    #[test]
2015    fn drain_timeout_zero_still_parses_for_wedge_bounces() {
2016        // The asymmetry guard: `drain_timeout_ms: 0` is the sanctioned "tear
2017        // down now" used during a wedge bounce and MUST keep parsing. Anyone
2018        // later tempted to "fix the inconsistency" between drain and bind by
2019        // rejecting drain `0` too will break the wedge-bounce path; this
2020        // test names that contract explicitly.
2021        let path = Path::new("/tmp/subc.jsonc");
2022        let config = parse_doc(
2023            r#"
2024            {
2025              "version": 1,
2026              "drain_timeout_ms": 0,
2027              "modules": {
2028                "wedge": { "program": "wedge", "drain_timeout_ms": 0 }
2029              }
2030            }
2031            "#,
2032            path,
2033        )
2034        .expect("drain_timeout_ms: 0 must still parse; wedge-bounce uses it");
2035        let wedge = config
2036            .modules
2037            .iter()
2038            .find(|m| m.module_id == "wedge")
2039            .unwrap();
2040        assert_eq!(wedge.drain_timeout_ms, Some(0));
2041        assert_eq!(config.drain_timeout_ms, Some(0));
2042    }
2043
2044    #[test]
2045    fn route_bind_relay_timeout_absent_everywhere_stays_none_for_builtin_default() {
2046        // Backward-compatibility guard: a config that does not mention
2047        // `route_bind_relay_timeout_ms` at all (the shape every pre-#38 daemon
2048        // shipped) parses to `None` on both layers, so the bind path keeps
2049        // its compiled 12s default.
2050        let path = Path::new("/tmp/subc.jsonc");
2051        let config = parse_doc(
2052            r#"{ "version": 1, "modules": { "m": { "program": "m" } } }"#,
2053            path,
2054        )
2055        .unwrap();
2056        assert_eq!(config.modules[0].route_bind_relay_timeout_ms, None);
2057        assert_eq!(config.route_bind_relay_timeout_ms, None);
2058    }
2059
2060    /// The shape every config in the field has today: no `restart` block at
2061    /// all. It must keep parsing, and it must land on the exact policy the
2062    /// daemon used before the block existed -- all three numbers asserted, so
2063    /// that quietly changing one is a failing test rather than a fleet-wide
2064    /// behaviour change nobody configured.
2065    #[test]
2066    fn a_config_without_a_restart_block_keeps_the_supervisor_defaults() {
2067        let path = Path::new("/tmp/subc.jsonc");
2068        let config = parse_doc(
2069            r#"{ "version": 1, "modules": { "m": { "program": "m" } } }"#,
2070            path,
2071        )
2072        .unwrap();
2073        assert_eq!(config.modules[0].restart.max_restarts, 3);
2074        assert_eq!(config.modules[0].restart.window, Duration::from_secs(600));
2075        assert_eq!(
2076            config.modules[0].restart.backoff,
2077            Duration::from_millis(100)
2078        );
2079        assert_eq!(
2080            config.modules[0].restart.max_backoff,
2081            Duration::from_secs(30)
2082        );
2083    }
2084
2085    #[test]
2086    fn a_restart_block_resolves_each_key_independently() {
2087        let path = Path::new("/tmp/subc.jsonc");
2088        let config = parse_doc(
2089            r#"
2090            {
2091              "version": 1,
2092              "modules": {
2093                "all": {
2094                  "program": "all",
2095                  "restart": { "max_restarts": 5, "window_secs": 60, "backoff_ms": 250, "max_backoff_ms": 5000 }
2096                },
2097                "window-only": {
2098                  "program": "window-only",
2099                  "restart": { "window_secs": 7200 }
2100                },
2101                "never": {
2102                  "program": "never",
2103                  "restart": { "max_restarts": 0 }
2104                }
2105              }
2106            }
2107            "#,
2108            path,
2109        )
2110        .unwrap();
2111        let by_id = |id: &str| {
2112            config
2113                .modules
2114                .iter()
2115                .find(|m| m.module_id == id)
2116                .unwrap()
2117                .restart
2118        };
2119
2120        let all = by_id("all");
2121        assert_eq!(all.max_restarts, 5);
2122        assert_eq!(all.window, Duration::from_secs(60));
2123        assert_eq!(all.backoff, Duration::from_millis(250));
2124        assert_eq!(all.max_backoff, Duration::from_secs(5));
2125
2126        // A module that only widens its window keeps the default cap and
2127        // backoff: the keys do not travel as a set.
2128        let window_only = by_id("window-only");
2129        assert_eq!(window_only.max_restarts, 3);
2130        assert_eq!(window_only.window, Duration::from_secs(7_200));
2131        assert_eq!(window_only.backoff, Duration::from_millis(100));
2132        assert_eq!(window_only.max_backoff, Duration::from_secs(30));
2133
2134        // `max_restarts: 0` is a posture, not a mistake: never replace this
2135        // module. Unlike a zero window, it is accepted as written.
2136        assert_eq!(by_id("never").max_restarts, 0);
2137    }
2138
2139    /// A zero window makes the budget unspendable, which is the opposite of a
2140    /// tight limit and looks almost identical in a diff. Refuse it by name so
2141    /// the operator writes what they meant.
2142    #[test]
2143    fn restart_window_zero_is_refused_by_name() {
2144        let path = Path::new("/tmp/subc.jsonc");
2145        let err = parse_doc(
2146            r#"
2147            {
2148              "version": 1,
2149              "modules": {
2150                "good": { "program": "good" },
2151                "broken": { "program": "broken", "restart": { "window_secs": 0 } }
2152              }
2153            }
2154            "#,
2155            path,
2156        )
2157        .expect_err("a zero crash window must refuse parse");
2158        assert!(
2159            matches!(err, DaemonConfigError::InvalidValue { .. }),
2160            "a zero window is an invalid value, not a parse failure: {err:?}"
2161        );
2162        let text = format!("{err}");
2163        assert!(
2164            text.contains("restart.window_secs"),
2165            "error must name the offending key: {text}"
2166        );
2167        assert!(
2168            text.contains("broken"),
2169            "error must name the offending module id: {text}"
2170        );
2171        assert!(
2172            text.contains("max_restarts: 0"),
2173            "error must name the setting that actually stops restarts: {text}"
2174        );
2175    }
2176
2177    #[test]
2178    fn restart_max_backoff_below_backoff_is_refused_by_name() {
2179        let path = Path::new("/tmp/subc.jsonc");
2180        let err = parse_doc(
2181            r#"
2182            {
2183              "version": 1,
2184              "modules": {
2185                "broken": {
2186                  "program": "broken",
2187                  "restart": { "backoff_ms": 1000, "max_backoff_ms": 999 }
2188                }
2189              }
2190            }
2191            "#,
2192            path,
2193        )
2194        .expect_err("a maximum below the base backoff must refuse parse");
2195        assert!(
2196            matches!(err, DaemonConfigError::InvalidValue { .. }),
2197            "an invalid restart bound must be an InvalidValue: {err:?}"
2198        );
2199        let text = format!("{err}");
2200        assert!(
2201            text.contains("restart.max_backoff_ms"),
2202            "error must name max_backoff_ms: {text}"
2203        );
2204        assert!(
2205            text.contains("restart.backoff_ms"),
2206            "error must name backoff_ms: {text}"
2207        );
2208        assert!(
2209            text.contains("broken"),
2210            "error must name the offending module id: {text}"
2211        );
2212    }
2213
2214    #[test]
2215    fn parse_jsonc_defaults_and_ignores_unknown_fields() {
2216        let path = Path::new("/tmp/subc.jsonc");
2217        let config = parse_doc(
2218            r#"
2219            {
2220              // forward-compatible root field
2221              "version": 1,
2222              "unknown": { "ignored": true },
2223              "modules": {
2224                "aft": {
2225                  "program": "aft",
2226                  "args": ["module",],
2227                  "env": { "A": "B", },
2228                  "future": 42,
2229                },
2230                "disabled": { "program": "disabled", "enabled": false }
2231              },
2232            }
2233            "#,
2234            path,
2235        )
2236        .unwrap();
2237
2238        assert_eq!(config.port, None);
2239        assert_eq!(config.modules.len(), 2);
2240        assert_eq!(config.modules[0].module_id, "aft");
2241        assert_eq!(config.modules[0].program, PathBuf::from("aft"));
2242        assert_eq!(config.modules[0].args, ["module"]);
2243        assert_eq!(config.modules[0].env, [("A".to_string(), "B".to_string())]);
2244        assert!(config.modules[0].enabled);
2245        assert!(config.modules[0].reserved_prefixes.is_empty());
2246        assert_eq!(config.modules[0].health, HealthConfig::default());
2247        assert!(!config.modules[1].enabled);
2248    }
2249
2250    #[test]
2251    fn reserved_capabilities_accept_unknown_bound_modules_and_refuse_bad_identifiers() {
2252        let path = Path::new("/tmp/subc.jsonc");
2253        let config = parse_doc(
2254            r#"{
2255                "version": 1,
2256                "reserved_capabilities": {
2257                    "credentials-provider/v1": "future-vault"
2258                },
2259                "modules": {}
2260            }"#,
2261            path,
2262        )
2263        .expect("a binding may predate its provider installation");
2264        assert_eq!(
2265            config.reserved_capabilities,
2266            BTreeMap::from([(
2267                "credentials-provider/v1".to_string(),
2268                "future-vault".to_string()
2269            )])
2270        );
2271
2272        let error = parse_doc(
2273            r#"{
2274                "version": 1,
2275                "reserved_capabilities": { "Credentials/v1": "vault" },
2276                "modules": {}
2277            }"#,
2278            path,
2279        )
2280        .expect_err("reserved capabilities use the capability identifier grammar");
2281        assert!(error.to_string().contains("reserved_capabilities key"));
2282    }
2283
2284    #[test]
2285    fn retired_launch_nonce_env_is_ignored_for_any_value() {
2286        let parse = |field: &str| {
2287            parse_doc(
2288                &format!(r#"{{"version":1,"modules":{{"probe":{{"program":"probe"{field}}}}}}}"#),
2289                Path::new("subc.jsonc"),
2290            )
2291            .unwrap()
2292            .modules
2293            .remove(0)
2294            .module_spec()
2295        };
2296        for value in ["true", "false", "null", "0", "\"false\"", "[]", "{}"] {
2297            assert_eq!(
2298                parse(""),
2299                parse(&format!(",\"launch_nonce_env\":{value}")),
2300                "the retired key must not change the launch spec or require a restart"
2301            );
2302        }
2303    }
2304
2305    /// An old config and an explicit `subc` declaration must normalize identically
2306    /// so adding the protocol key does not silently change existing modules.
2307    #[test]
2308    fn an_absent_protocol_key_and_an_explicit_subc_are_the_same_module() {
2309        let parse = |module_body: &str| {
2310            parse_doc(
2311                &format!(
2312                    r#"{{
2313                      "version": 1,
2314                      "modules": {{ "aft": {{ "program": "aft"{module_body} }} }}
2315                    }}"#
2316                ),
2317                Path::new("subc.jsonc"),
2318            )
2319            .expect("module parses")
2320            .modules
2321            .remove(0)
2322        };
2323
2324        let absent = parse("");
2325        let explicit = parse(r#", "protocol": "subc""#);
2326        let none = parse(r#", "protocol": "none""#);
2327
2328        assert_eq!(absent.protocol, ModuleProtocol::Subc);
2329        assert_eq!(explicit.protocol, ModuleProtocol::Subc);
2330        assert_eq!(
2331            absent, explicit,
2332            "an absent protocol key must produce exactly the module an explicit subc does"
2333        );
2334        assert_eq!(none.protocol, ModuleProtocol::None);
2335        // The declaration has to survive into what the supervisor is handed;
2336        // parsing it into a field nothing reads would leave every behaviour
2337        // gated on it unreachable.
2338        assert_eq!(none.module_spec().protocol, ModuleProtocol::None);
2339    }
2340
2341    /// `overlap` defaults to exclusive, `"safe"` opts in and reaches the spec
2342    /// the supervisor is handed, and anything else is refused rather than read
2343    /// as either value.
2344    #[test]
2345    fn overlap_defaults_to_exclusive_and_only_safe_opts_in() {
2346        let parse = |module_body: &str| {
2347            parse_doc(
2348                &format!(
2349                    r#"{{
2350                      "version": 1,
2351                      "modules": {{ "aft": {{ "program": "aft"{module_body} }} }}
2352                    }}"#
2353                ),
2354                Path::new("subc.jsonc"),
2355            )
2356        };
2357
2358        let absent = parse("").unwrap().modules.remove(0);
2359        assert_eq!(absent.overlap, ModuleOverlap::Exclusive);
2360        assert_eq!(absent.module_spec().overlap, ModuleOverlap::Exclusive);
2361        let safe = parse(r#", "overlap": "safe""#).unwrap().modules.remove(0);
2362        assert_eq!(safe.module_spec().overlap, ModuleOverlap::Safe);
2363        let typo = parse(r#", "overlap": "sfae""#).expect_err("an unknown overlap is refused");
2364        assert!(typo.to_string().contains("sfae"), "{typo}");
2365    }
2366
2367    /// The spawn role is the supervisor's to set on a swap candidate. A
2368    /// configured value would reach every plain spawn and make the module pick
2369    /// its long swap warm-up budget while callers wait on a restart.
2370    #[test]
2371    fn the_spawn_role_is_refused_as_a_configured_env_key() {
2372        let error = parse_doc(
2373            r#"{
2374              "version": 1,
2375              "modules": { "aft": { "program": "aft", "env": { "SUBC_SPAWN_ROLE": "swap_candidate" } } }
2376            }"#,
2377            Path::new("subc.jsonc"),
2378        )
2379        .expect_err("SUBC_SPAWN_ROLE must not be configurable");
2380        assert!(
2381            matches!(error, DaemonConfigError::InvalidValue { .. }),
2382            "expected InvalidValue, got {error:?}"
2383        );
2384        assert!(error.to_string().contains("SUBC_SPAWN_ROLE"), "{error}");
2385    }
2386
2387    /// An unusable value is refused WITH THE VALUE IN THE MESSAGE. Falling back
2388    /// to `subc` on a typo would restore the exact supervision the operator was
2389    /// trying to turn off -- health probing, restart-on-silence, SIGKILL
2390    /// teardown -- and the config file would still read as if it had been
2391    /// applied.
2392    #[test]
2393    fn an_unsupported_protocol_value_is_refused_by_name() {
2394        let error = parse_doc(
2395            r#"{
2396              "version": 1,
2397              "modules": { "nats": { "program": "nats-server", "protocol": "grpc" } }
2398            }"#,
2399            Path::new("subc.jsonc"),
2400        )
2401        .expect_err("an unknown protocol must not fall back to a default");
2402
2403        assert!(
2404            matches!(error, DaemonConfigError::InvalidValue { .. }),
2405            "expected InvalidValue, got {error:?}"
2406        );
2407        let message = error.to_string();
2408        assert!(
2409            message.contains("grpc"),
2410            "the refusal must name the offending value: {message}"
2411        );
2412        assert!(
2413            message.contains("nats"),
2414            "the refusal must name the module so it can be found in the file: {message}"
2415        );
2416    }
2417
2418    /// `reserved` is enforced on a module's HELLO. A module that speaks no subc
2419    /// wire never sends one, so the pair declares a protection that could never
2420    /// be applied -- worse than no protection, because the config file states it.
2421    #[test]
2422    fn reserved_true_with_protocol_none_is_refused_with_the_reason() {
2423        let error = parse_doc(
2424            r#"{
2425              "version": 1,
2426              "modules": {
2427                "nats": { "program": "nats-server", "protocol": "none", "reserved": true }
2428              }
2429            }"#,
2430            Path::new("subc.jsonc"),
2431        )
2432        .expect_err("a reservation that can never be checked must not parse");
2433
2434        assert!(
2435            matches!(error, DaemonConfigError::InvalidValue { .. }),
2436            "expected InvalidValue, got {error:?}"
2437        );
2438        let message = error.to_string();
2439        assert!(
2440            message.contains("nats") && message.contains("reserved"),
2441            "the refusal must name the module and the offending key: {message}"
2442        );
2443        assert!(
2444            message.contains("HELLO") || message.contains("never registers"),
2445            "the refusal must say WHY the pair cannot work: {message}"
2446        );
2447    }
2448
2449    #[test]
2450    fn reserved_prefixes_parse_for_reserved_modules() {
2451        let config = parse_doc(
2452            r#"
2453            {
2454              "version": 1,
2455              "modules": {
2456                "federation": {
2457                  "program": "fed",
2458                  "reserved": true,
2459                  "reserved_prefixes": ["fed:"]
2460                }
2461              }
2462            }
2463            "#,
2464            Path::new("subc.jsonc"),
2465        )
2466        .unwrap();
2467
2468        assert_eq!(config.modules[0].reserved_prefixes, ["fed:".to_string()]);
2469    }
2470
2471    #[test]
2472    fn reserved_prefixes_reject_bad_boundaries_and_owners() {
2473        let missing_delimiter = parse_doc(
2474            r#"{
2475              "version": 1,
2476              "modules": {
2477                "federation": { "program": "fed", "reserved": true, "reserved_prefixes": ["fed"] }
2478              }
2479            }"#,
2480            Path::new("subc.jsonc"),
2481        )
2482        .unwrap_err();
2483        assert!(matches!(
2484            missing_delimiter,
2485            DaemonConfigError::InvalidValue { .. }
2486        ));
2487
2488        let non_reserved_owner = parse_doc(
2489            r#"{
2490              "version": 1,
2491              "modules": {
2492                "federation": { "program": "fed", "reserved_prefixes": ["fed:"] }
2493              }
2494            }"#,
2495            Path::new("subc.jsonc"),
2496        )
2497        .unwrap_err();
2498        assert!(matches!(
2499            non_reserved_owner,
2500            DaemonConfigError::InvalidValue { .. }
2501        ));
2502    }
2503
2504    #[test]
2505    fn reserved_prefixes_reject_cross_owner_overlap_and_exact_id_collisions() {
2506        let overlap = parse_doc(
2507            r#"{
2508              "version": 1,
2509              "modules": {
2510                "fed-owner": { "program": "fed", "reserved": true, "reserved_prefixes": ["fed:"] },
2511                "sub-owner": { "program": "fed-sub", "reserved": true, "reserved_prefixes": ["fed:sub:"] }
2512              }
2513            }"#,
2514            Path::new("subc.jsonc"),
2515        )
2516        .unwrap_err();
2517        assert!(matches!(overlap, DaemonConfigError::InvalidValue { .. }));
2518
2519        let exact_collision = parse_doc(
2520            r#"{
2521              "version": 1,
2522              "modules": {
2523                "federation": { "program": "fed", "reserved": true, "reserved_prefixes": ["fed:"] },
2524                "fed:special": { "program": "special" }
2525              }
2526            }"#,
2527            Path::new("subc.jsonc"),
2528        )
2529        .unwrap_err();
2530        assert!(matches!(
2531            exact_collision,
2532            DaemonConfigError::InvalidValue { .. }
2533        ));
2534    }
2535
2536    #[test]
2537    fn health_config_parses_and_ignores_unknown_fields() {
2538        let config = parse_doc(
2539            r#"
2540            {
2541              "version": 1,
2542              "modules": {
2543                "aft": {
2544                  "program": "aft",
2545                  "health": {
2546                    "cadence_ms": 100,
2547                    "deadline_ms": 20,
2548                    "failure_threshold": 2,
2549                    "on_degraded": "report",
2550                    "on_failing": "restart",
2551                    "critical": true,
2552                    "future": "ignored"
2553                  }
2554                }
2555              }
2556            }
2557            "#,
2558            Path::new("subc.jsonc"),
2559        )
2560        .unwrap();
2561
2562        let health = config.modules[0].health;
2563        assert_eq!(health.cadence, std::time::Duration::from_millis(100));
2564        assert_eq!(health.deadline, std::time::Duration::from_millis(20));
2565        assert_eq!(health.failure_threshold, 2);
2566        assert_eq!(health.on_degraded, HealthAction::Report);
2567        assert_eq!(health.on_failing, HealthAction::Restart);
2568        assert!(health.critical);
2569    }
2570
2571    #[test]
2572    fn health_config_rejects_bad_enum_and_non_positive_numbers() {
2573        let bad_enum = parse_doc(
2574            r#"{
2575              "version": 1,
2576              "modules": { "aft": { "program": "aft", "health": { "on_failing": "page" } } }
2577            }"#,
2578            Path::new("subc.jsonc"),
2579        )
2580        .unwrap_err();
2581        assert!(matches!(bad_enum, DaemonConfigError::InvalidJson { .. }));
2582
2583        let zero = parse_doc(
2584            r#"{
2585              "version": 1,
2586              "modules": { "aft": { "program": "aft", "health": { "cadence_ms": 0 } } }
2587            }"#,
2588            Path::new("subc.jsonc"),
2589        )
2590        .unwrap_err();
2591        assert!(matches!(zero, DaemonConfigError::InvalidValue { .. }));
2592    }
2593
2594    #[test]
2595    fn admission_facts_carrier_requires_non_empty_targets() {
2596        let missing_targets = parse_doc(
2597            r#"{
2598              "version": 1,
2599              "admission_facts_carrier_module_id": "fed",
2600              "modules": { "fed": { "program": "fed", "reserved": true } }
2601            }"#,
2602            Path::new("subc.jsonc"),
2603        )
2604        .unwrap_err();
2605        // Pin the message, not just the variant. Every rule in this validator
2606        // returns InvalidValue, and the guard below rejects an empty list -- so
2607        // a change that turned a missing list into an empty one would still be
2608        // refused, by a different rule, and a variant-only assertion could not
2609        // tell the two apart.
2610        assert!(
2611            matches!(&missing_targets, DaemonConfigError::InvalidValue { message, .. }
2612                if message.contains("must be present")),
2613            "expected the presence rule, got: {missing_targets:?}"
2614        );
2615
2616        let empty_targets = parse_doc(
2617            r#"{
2618              "version": 1,
2619              "admission_facts_carrier_module_id": "fed",
2620              "admission_facts_targets": [""],
2621              "modules": { "fed": { "program": "fed", "reserved": true } }
2622            }"#,
2623            Path::new("subc.jsonc"),
2624        )
2625        .unwrap_err();
2626        assert!(
2627            matches!(&empty_targets, DaemonConfigError::InvalidValue { message, .. }
2628                if message.contains("must be non-empty")),
2629            "expected the non-empty rule, got: {empty_targets:?}"
2630        );
2631    }
2632
2633    #[test]
2634    fn admission_facts_carrier_must_be_enabled_reserved_and_configured() {
2635        for module in [
2636            r#"{ "program": "fed", "enabled": false, "reserved": true }"#,
2637            r#"{ "program": "fed", "enabled": true, "reserved": false }"#,
2638        ] {
2639            let doc = format!(
2640                r#"{{
2641                  "version": 1,
2642                  "admission_facts_carrier_module_id": "fed",
2643                  "admission_facts_targets": ["target"],
2644                  "modules": {{ "fed": {module}, "target": {{ "program": "target" }} }}
2645                }}"#
2646            );
2647            let err = parse_doc(&doc, Path::new("subc.jsonc")).unwrap_err();
2648            // Pin which refusal fired. Both inputs are also missing nothing
2649            // else, so without this the neighbouring "must name a configured
2650            // module" rule would satisfy the assertion if this one were removed.
2651            assert!(
2652                matches!(&err, DaemonConfigError::InvalidValue { message, .. }
2653                    if message.contains("enabled reserved module")),
2654                "expected the enabled-and-reserved rule, got: {err:?}"
2655            );
2656        }
2657
2658        let absent = parse_doc(
2659            r#"{
2660              "version": 1,
2661              "admission_facts_carrier_module_id": "missing",
2662              "admission_facts_targets": ["target"],
2663              "modules": { "target": { "program": "target" } }
2664            }"#,
2665            Path::new("subc.jsonc"),
2666        )
2667        .unwrap_err();
2668        assert!(
2669            matches!(&absent, DaemonConfigError::InvalidValue { message, .. }
2670                if message.contains("must name a configured module")),
2671            "expected the configured-module rule, got: {absent:?}"
2672        );
2673    }
2674
2675    #[test]
2676    fn reject_unsupported_version() {
2677        let err = parse_doc(
2678            r#"{ "version": 2, "modules": {} }"#,
2679            Path::new("subc.jsonc"),
2680        )
2681        .unwrap_err();
2682        assert!(matches!(
2683            err,
2684            DaemonConfigError::UnsupportedVersion { version: 2, .. }
2685        ));
2686    }
2687
2688    #[test]
2689    fn reject_unterminated_block_comment() {
2690        let err = parse_doc(r#"{ "version": 1, /*"#, Path::new("subc.jsonc")).unwrap_err();
2691        assert!(matches!(err, DaemonConfigError::InvalidJsonc { .. }));
2692    }
2693}