boatramp_node/config.rs
1//! Local configuration files (RON).
2//!
3//! Two distinct files, split by audience:
4//!
5//! - **`project.cfg`** — one per project folder, read by the client commands
6//! (`sync`, `build`, `bundle`, `validate`): where/how to publish, the optional
7//! build/bundle steps, and the deploy-scoped `routing` config that is folded
8//! into the immutable deployment manifest. See [`ProjectConfig`].
9//! - **`boatramp.cfg`** — the server daemon config, read by `serve`:
10//! `serve` / `handlers` / `cluster`. See [`ServerConfig`].
11//!
12//! Both are RON; a missing file yields the default config.
13
14use std::collections::BTreeMap;
15use std::net::SocketAddr;
16use std::path::{Path, PathBuf};
17
18use boatramp_core::config::DeployConfig;
19use serde::Deserialize;
20
21/// RON parse options shared by both loaders: `implicit_some` lets optional fields
22/// be written as bare values (`server: "..."`, not `Some("...")`). `pub` so the
23/// binary (which re-exports this module) can parse a manifest with the same
24/// options after the module moved into this crate.
25pub fn ron_options() -> ron::Options {
26 ron::Options::default().with_default_extension(ron::extensions::Extensions::IMPLICIT_SOME)
27}
28
29/// The wire format an operator-authored config file is decoded as (v0.6.5).
30///
31/// Config files are historically RON. JSON was added as a second **input** format
32/// purely for interop — so a config can be generated from Nickel (`nickel export` →
33/// JSON) and fed to boatramp unchanged. It is an alternative *decoder* into the
34/// **same** typed structs (they all derive serde `Deserialize` with externally-tagged
35/// enums + `deny_unknown_fields`), so JSON preserves every variant name and the same
36/// strictness — no type changes, and the same downstream validation runs either way.
37#[derive(Debug, Clone, Copy, PartialEq, Eq, Default)]
38#[cfg_attr(feature = "clap", derive(clap::ValueEnum))]
39pub enum ConfigFormat {
40 /// RON (the historical, default format). Selected for every non-`.json`
41 /// extension (`.cfg` / `.ron` / none).
42 #[default]
43 Ron,
44 /// JSON — for configs generated from Nickel (`nickel export`) or any JSON
45 /// pipeline. Selected for a `.json` (case-insensitive) extension.
46 Json,
47}
48
49/// Resolve the [`ConfigFormat`] for a config path.
50///
51/// The rule is explicit and predictable (config is the operator trust boundary, so
52/// there is **no content-sniffing** — a sniff could silently RON-parse a JSON file
53/// into a wrong-but-valid config, and vice versa):
54///
55/// 1. an explicit `override_` (the CLI `--format ron|json`) always wins; else
56/// 2. auto by extension — a `.json` (case-insensitive) extension ⇒ [`ConfigFormat::Json`];
57/// everything else (`.cfg` / `.ron` / no extension) ⇒ [`ConfigFormat::Ron`].
58pub fn resolve_format(path: &Path, override_: Option<ConfigFormat>) -> ConfigFormat {
59 if let Some(fmt) = override_ {
60 return fmt;
61 }
62 match path.extension().and_then(|e| e.to_str()) {
63 Some(ext) if ext.eq_ignore_ascii_case("json") => ConfigFormat::Json,
64 _ => ConfigFormat::Ron,
65 }
66}
67
68/// A failure loading or parsing a local config file (`project.cfg` / `boatramp.cfg`).
69#[derive(Debug, thiserror::Error)]
70pub enum ConfigError {
71 /// Wraps an underlying error with the file path it came from.
72 #[error("{path}: {source}")]
73 File {
74 path: String,
75 #[source]
76 source: Box<Self>,
77 },
78 /// The RON document failed to parse.
79 #[error("invalid config syntax: {0}")]
80 Ron(#[from] ron::error::SpannedError),
81 /// The JSON document failed to parse (JSON config input — e.g. from
82 /// `nickel export`). Same strictness as RON: `deny_unknown_fields` on the
83 /// structs makes a typo'd/unknown key a hard error here, not a silent drop.
84 #[error("invalid JSON config: {0}")]
85 Json(#[from] serde_json::Error),
86 /// The `routing` section failed its compile-check.
87 #[error("routing: {0}")]
88 Routing(#[from] boatramp_core::ConfigError),
89 /// Reading the file failed (other than not-found, which yields defaults).
90 #[error(transparent)]
91 Io(#[from] std::io::Error),
92 /// An environment-variable override could not be parsed (bad number/bool).
93 #[error("environment variable {var}: {reason}")]
94 Env {
95 /// The offending `BOATRAMP_*` variable. Owned because some names are built
96 /// dynamically (the keyed `databases` map, whose members aren't known at
97 /// compile time).
98 var: String,
99 /// Why the value was rejected.
100 reason: String,
101 },
102 /// A `handlers.bindings.sql.databases` binding name is not a safe URL path
103 /// segment — it is threaded verbatim into `/api/sql/{db}/…` and `--db`, so an
104 /// empty/`//`-collapsing or path-separator-bearing name is refused at load
105 /// (fail-closed) rather than emitting a malformed control-plane path.
106 #[error("SQL database binding {name:?}: {reason}{cure}")]
107 InvalidDbName {
108 /// The offending binding name (the `databases` map key).
109 name: String,
110 /// Why it was rejected (from the canonical validator).
111 reason: &'static str,
112 /// A trailing remediation hint (empty unless this is the legacy empty-name
113 /// default case, where it points at the `default` cure).
114 cure: &'static str,
115 },
116}
117
118/// Project configuration, loaded from `project.cfg` (RON) in the project folder.
119///
120/// Read by the client commands (`sync`, `build`, `bundle`, `validate`).
121/// Everything is optional; a missing file is the default.
122#[derive(Debug, Default, Deserialize)]
123#[serde(default)]
124pub struct ProjectConfig {
125 /// Where and how to publish this project.
126 pub publish: PublishConfig,
127 /// Optional build step run before `sync`.
128 pub build: Option<BuildConfig>,
129 /// Optional embedded-bundler step (`bundler` feature).
130 pub bundle: Option<BundleConfig>,
131 /// Deploy-scoped routing/handlers config. Folded into the deployment
132 /// manifest at `sync` (so it is atomic with the content and rolls back with
133 /// it). The bulk of a project's config — redirects, rewrites, headers,
134 /// handlers, consumers, crons, streams.
135 pub routing: DeployConfig,
136}
137
138impl ProjectConfig {
139 /// Parse a `project.cfg` document as **RON** (the default). Kept for the existing
140 /// callers/tests; [`Self::parse_with_format`] is the format-aware entry point.
141 pub fn parse(text: &str) -> Result<Self, ConfigError> {
142 Self::parse_with_format(text, ConfigFormat::Ron)
143 }
144
145 /// Parse a `project.cfg` document in `fmt` (RON or JSON). The deserializer is
146 /// selected by format (RON ⇒ [`ron_options`], JSON ⇒ `serde_json`) into the SAME
147 /// typed struct; the `routing` section is then compile-checked (route patterns,
148 /// cron schedules, imports) regardless of format so a bad config fails fast.
149 pub fn parse_with_format(text: &str, fmt: ConfigFormat) -> Result<Self, ConfigError> {
150 let config: Self = match fmt {
151 ConfigFormat::Ron => ron_options().from_str(text)?,
152 ConfigFormat::Json => serde_json::from_str(text)?,
153 };
154 config.routing.compile_check()?;
155 Ok(config)
156 }
157
158 /// Load from `path`, decoding as RON or JSON per [`resolve_format`] (`override_`
159 /// wins; else `.json` ⇒ JSON, everything else ⇒ RON). A missing file yields the
160 /// default config (unlike an apply manifest).
161 pub fn load(path: &Path, override_: Option<ConfigFormat>) -> Result<Self, ConfigError> {
162 let fmt = resolve_format(path, override_);
163 match std::fs::read_to_string(path) {
164 Ok(contents) => {
165 Self::parse_with_format(&contents, fmt).map_err(|err| ConfigError::File {
166 path: path.display().to_string(),
167 source: Box::new(err),
168 })
169 }
170 Err(err) if err.kind() == std::io::ErrorKind::NotFound => Ok(Self::default()),
171 Err(err) => Err(err.into()),
172 }
173 }
174}
175
176/// Server daemon configuration, loaded from `boatramp.cfg` (RON). Read by
177/// `boatramp serve`; flags/env override the `serve` values.
178#[derive(Debug, Default, Deserialize)]
179#[serde(default)]
180pub struct ServerConfig {
181 /// Server defaults for `serve` (flag/env override these).
182 pub serve: Option<ServeConfig>,
183 /// Server-side handler runtime config (which backend serves each binding),
184 /// consumed only with the `handlers` feature.
185 pub handlers: Option<HandlersConfig>,
186 /// Self-hosted cluster mode (consumed only with the `cluster` feature).
187 pub cluster: Option<ClusterConfig>,
188 /// Opt-in **compute** backends. Present ⇒ this node
189 /// runs compute workloads via the backends it can offer; absent ⇒ no compute
190 /// (the reconcile loop stays a no-op).
191 pub compute: Option<ComputeConfig>,
192 /// Operator security posture (the hardening knobs): a profile
193 /// preset + overrides, resolved at startup. Absent ⇒ the strict
194 /// `multi-tenant` default. Operator-only — never part of site config.
195 pub security: Option<boatramp_core::security::SecurityConfig>,
196 /// Secrets-at-rest envelope. Absent ⇒ private
197 /// keys stored cleartext in the (replicated) control plane.
198 pub secrets: Option<SecretsConfig>,
199}
200
201/// `secrets` section — envelope encryption for private keys at rest.
202#[cfg_attr(not(feature = "cluster"), allow(dead_code))]
203#[derive(Debug, Clone, Default, Deserialize)]
204#[serde(default, deny_unknown_fields)]
205pub struct SecretsConfig {
206 /// Backend: `"local"` (machine-local AES-256-GCM KEK) or `"vault"` (Vault
207 /// Transit). Empty/other ⇒ no wrapping. In a cluster a local KEK must be the
208 /// **same file on every node** (wrapped certs replicate); Vault avoids that.
209 pub envelope: String,
210 /// Local-KEK key file (`envelope = "local"`). Default
211 /// `<data-dir>/secrets/kek`. Auto-generated `0600` if absent.
212 pub kek_file: Option<PathBuf>,
213 /// Vault Transit config (`envelope = "vault"`).
214 pub vault: Option<VaultSecretsConfig>,
215}
216
217/// Vault Transit settings for `envelope = "vault"`. The token is read from the
218/// environment (`token_env`), never stored in the config file.
219#[cfg_attr(not(all(feature = "cluster", feature = "acme-dns")), allow(dead_code))]
220#[derive(Debug, Clone, Deserialize)]
221#[serde(deny_unknown_fields)]
222pub struct VaultSecretsConfig {
223 /// Vault address, e.g. `https://vault:8200`.
224 pub addr: String,
225 /// Transit key name to wrap under.
226 pub key: String,
227 /// Environment variable holding the Vault token (default `VAULT_TOKEN`).
228 #[serde(default = "default_vault_token_env")]
229 pub token_env: String,
230}
231
232fn default_vault_token_env() -> String {
233 "VAULT_TOKEN".to_string()
234}
235
236impl Default for VaultSecretsConfig {
237 fn default() -> Self {
238 Self {
239 addr: String::new(),
240 key: String::new(),
241 token_env: default_vault_token_env(),
242 }
243 }
244}
245
246/// The RESERVED compute-workload name prefix (#501 Stage B LOW-2). boatramp DERIVES the
247/// per-project managed-database server workloads with this prefix
248/// (`boatramp_storage::tenant_provision::DERIVED_MANAGED_DB_PREFIX`), so an operator must
249/// NOT name a static `[handlers].bindings.sql.databases.*.compute` workload with it — a
250/// collision could shadow / alias a derived managed server. Screened fail-closed at
251/// config load ([`ServerConfig::validate_sql_db_names`]). Kept as a literal here (not the
252/// `boatramp-storage` const) so the screen holds on a build without the sql engine
253/// features; the two must stay in sync (a single source of truth would couple config
254/// loading to the optional storage dep).
255const RESERVED_MANAGED_DB_COMPUTE_PREFIX: &str = "bramp-db-";
256
257impl ServerConfig {
258 /// Parse a `boatramp.cfg` document as **RON** (the default). Kept for the existing
259 /// callers/tests; [`Self::parse_with_format`] is the format-aware entry point.
260 pub fn parse(text: &str) -> Result<Self, ConfigError> {
261 Self::parse_with_format(text, ConfigFormat::Ron)
262 }
263
264 /// Parse a `boatramp.cfg` document in `fmt` (RON or JSON). The deserializer is
265 /// selected by format (RON ⇒ [`ron_options`], JSON ⇒ `serde_json`) into the SAME
266 /// typed struct. Db-binding names declared in the file are validated here (the same
267 /// fail-closed check `load` re-runs after the env merge) **regardless of format**, so
268 /// a file-only config path — e.g. `boatramp cloudflare` rendering, or the
269 /// operator-resources loader — is guarded even without going through `load`.
270 pub fn parse_with_format(text: &str, fmt: ConfigFormat) -> Result<Self, ConfigError> {
271 let config: Self = match fmt {
272 ConfigFormat::Ron => ron_options().from_str(text)?,
273 ConfigFormat::Json => serde_json::from_str(text)?,
274 };
275 config.validate_sql_db_names()?;
276 Ok(config)
277 }
278
279 /// Load from `path`, decoding as RON or JSON per [`resolve_format`] (`override_`
280 /// wins; else `.json` ⇒ JSON, everything else ⇒ RON), then layer `BOATRAMP_*`
281 /// environment overrides on top. A missing file yields the default config, so
282 /// `serve` can be configured entirely from the environment (12-factor deployments
283 /// where dropping a `boatramp.cfg` is awkward — fly.io / Cloudflare / containers).
284 ///
285 /// The env-override merge runs AFTER the parse for either format — JSON is only an
286 /// alternative decoder into the same typed struct; it does not change the
287 /// file < env precedence.
288 pub fn load(path: &Path, override_: Option<ConfigFormat>) -> Result<Self, ConfigError> {
289 let fmt = resolve_format(path, override_);
290 let mut config = match std::fs::read_to_string(path) {
291 Ok(contents) => {
292 Self::parse_with_format(&contents, fmt).map_err(|err| ConfigError::File {
293 path: path.display().to_string(),
294 source: Box::new(err),
295 })?
296 }
297 Err(err) if err.kind() == std::io::ErrorKind::NotFound => Self::default(),
298 Err(err) => return Err(err.into()),
299 };
300 config.apply_env_overrides(&EnvSource::Process)?;
301 Ok(config)
302 }
303
304 /// Layer `BOATRAMP_*` environment overrides onto the loaded config for the
305 /// `compute`, `security`, and handler-`sql` sections — the operational knobs
306 /// that were previously reachable only through the `boatramp.cfg` file.
307 ///
308 /// **Precedence: env overrides file.** This matches the existing `serve`
309 /// section (its `#[arg(long, env = …)]` flags already let an env var win over
310 /// the file value), keeping the resolution rule uniform. A set variable
311 /// updates the field even when the file also set it; an unset variable leaves
312 /// the file (or built-in default) untouched. When a section is absent from the
313 /// file but any of its variables are set, the section is materialised from its
314 /// defaults first — so no config file is required to configure it.
315 ///
316 /// `source` supplies the variables (the process environment in production; an
317 /// explicit map in tests), so this stays a pure function of its inputs.
318 fn apply_env_overrides(&mut self, source: &EnvSource) -> Result<(), ConfigError> {
319 // --- compute ---------------------------------------------------------
320 // Materialise `[compute]` only if at least one of its variables is set, so
321 // an unset environment leaves an absent section absent (⇒ no compute).
322 if source.any(COMPUTE_ENV_VARS) {
323 let compute = self.compute.get_or_insert_with(ComputeConfig::default);
324 if let Some(v) = source.get("BOATRAMP_COMPUTE_BRIDGE") {
325 compute.bridge = v;
326 }
327 if let Some(v) = source.get("BOATRAMP_COMPUTE_SUBNET") {
328 compute.subnet = v;
329 }
330 if let Some(v) = source.parse("BOATRAMP_COMPUTE_VCPUS")? {
331 compute.vcpus = v;
332 }
333 if let Some(v) = source.parse("BOATRAMP_COMPUTE_MEM_MIB")? {
334 compute.mem_mib = v;
335 }
336 if let Some(v) = source.get("BOATRAMP_COMPUTE_REGION") {
337 compute.region = Some(v);
338 }
339 if let Some(v) = source.get("BOATRAMP_COMPUTE_SQL_SHIM_URL") {
340 compute.sql_shim_url = Some(v);
341 }
342 // The two shared-kernel enums have no `FromStr`, only a serde
343 // `rename_all = "lowercase"`; map their variants by that same spelling.
344 if let Some(v) = source.parse_enum(
345 "BOATRAMP_COMPUTE_MANAGED_DB_PRIVILEGE",
346 &[
347 ("rootless", ManagedDbPrivilege::Rootless),
348 ("caps", ManagedDbPrivilege::Caps),
349 ],
350 )? {
351 compute.managed_db_privilege = v;
352 }
353 if let Some(v) = source.parse_enum(
354 "BOATRAMP_COMPUTE_DOCKER_ENDPOINT",
355 &[
356 ("published", boatramp_docker::DockerEndpoint::Published),
357 ("bridge", boatramp_docker::DockerEndpoint::Bridge),
358 ],
359 )? {
360 compute.docker_endpoint = v;
361 }
362 if let Some(v) = source.parse_enum(
363 "BOATRAMP_COMPUTE_DOCKER_VOLUME_MODE",
364 &[
365 ("named", boatramp_docker::DockerVolumeMode::Named),
366 ("bind", boatramp_docker::DockerVolumeMode::Bind),
367 ],
368 )? {
369 compute.docker_volume_mode = v;
370 }
371 // Kernel trust anchors — comma-separated lists. These are
372 // security-critical: they are the trust anchor for the posture-scaled
373 // kernel bar, so a value here decides which kernels a `multi-tenant`
374 // node will boot. In a 12-factor deployment the environment IS the
375 // operator's trusted config source (a fly.toml `[env]` is committed the
376 // same as a file), so they are exposed here — but an operator should
377 // know the environment is *more* visible than a file (it leaks through
378 // `/proc/<pid>/environ` and is inherited by every subprocess), so a
379 // file remains the better home for them when one is available.
380 if let Some(v) = source.parse_list("BOATRAMP_COMPUTE_KERNEL_SIGNING_PUBKEYS") {
381 compute.kernel_signing_pubkeys = v;
382 }
383 if let Some(v) = source.parse_list("BOATRAMP_COMPUTE_KERNEL_ALLOWED_HASHES") {
384 compute.kernel_allowed_hashes = v;
385 }
386 // Internal DNS (per-project service discovery on the bridge gateway).
387 if let Some(v) = source.parse_bool("BOATRAMP_COMPUTE_INTERNAL_DNS")? {
388 compute.internal_dns = v;
389 }
390 if let Some(v) = source.get("BOATRAMP_COMPUTE_DNS_UPSTREAM") {
391 compute.dns_upstream = v;
392 }
393 if let Some(v) = source.get("BOATRAMP_COMPUTE_DNS_DOMAIN") {
394 compute.dns_domain = v;
395 }
396 }
397
398 // --- security --------------------------------------------------------
399 // Always materialise `[security]` when any knob is set: an absent section
400 // resolves to the strict `multi-tenant` default, and an env override then
401 // layers over that exactly as a file `overrides` block would.
402 if source.any(SECURITY_ENV_VARS) {
403 let security = self
404 .security
405 .get_or_insert_with(boatramp_core::security::SecurityConfig::default);
406 if let Some(v) = source.get("BOATRAMP_SECURITY_PROFILE") {
407 security.profile = Some(v);
408 }
409 let o = &mut security.overrides;
410 if let Some(v) =
411 source.parse_bool("BOATRAMP_SECURITY_ALLOW_UNAUTHENTICATED_PUBLIC_BIND")?
412 {
413 o.allow_unauthenticated_public_bind = Some(v);
414 }
415 if let Some(v) = source.parse("BOATRAMP_SECURITY_MAX_UPLOAD_BYTES")? {
416 o.max_upload_bytes = Some(v);
417 }
418 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_ALLOW_SITE_UNIX_UPSTREAMS")? {
419 o.allow_site_unix_upstreams = Some(v);
420 }
421 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_ALLOW_SITE_PRIVATE_UPSTREAMS")? {
422 o.allow_site_private_upstreams = Some(v);
423 }
424 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_ALLOW_GUEST_PRIVATE_EGRESS")? {
425 o.allow_guest_private_egress = Some(v);
426 }
427 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_ALLOW_GUEST_SELF_EGRESS")? {
428 o.allow_guest_self_egress = Some(v);
429 }
430 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_ALLOW_GUEST_EGRESS_EXTRA_CA")? {
431 o.allow_guest_egress_extra_ca = Some(v);
432 }
433 if let Some(v) = source.parse("BOATRAMP_SECURITY_MAX_HANDLER_BLOB_BYTES")? {
434 o.max_handler_blob_bytes = Some(v);
435 }
436 if let Some(v) = source.parse("BOATRAMP_SECURITY_MAX_COMPONENT_BYTES")? {
437 o.max_component_bytes = Some(v);
438 }
439 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_OIDC_REQUIRE_AUDIENCE")? {
440 o.oidc_require_audience = Some(v);
441 }
442 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_DOMAIN_VERIFY_ALLOW_PRIVATE")? {
443 o.domain_verify_allow_private = Some(v);
444 }
445 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_DOMAIN_VERIFY_SELF_SERVE")? {
446 o.domain_verify_self_serve = Some(v);
447 }
448 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_ALLOW_SHARED_KERNEL_COMPUTE")? {
449 o.allow_shared_kernel_compute = Some(v);
450 }
451 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_ALLOW_COMPUTE_EXEC")? {
452 o.allow_compute_exec = Some(v);
453 }
454 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_RATELIMIT_FAIL_OPEN")? {
455 o.ratelimit_fail_open = Some(v);
456 }
457 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_ALLOW_IMPLICIT_ROUTING")? {
458 o.allow_implicit_routing = Some(v);
459 }
460 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_REQUIRE_POP")? {
461 o.require_pop = Some(v);
462 }
463 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_REQUIRE_DOMAIN_VERIFICATION")? {
464 o.require_domain_verification = Some(v);
465 }
466 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_ALLOW_ENV_SECRET_REFS")? {
467 o.allow_env_secret_refs = Some(v);
468 }
469 // The multi-tenant sub-knobs (Gap 4b): previously file-only, now env-settable so a
470 // 12-factor deployment can tune tenancy isolation + guest capability minting without a
471 // `boatramp.cfg`. Fleet-scoped (a per-project override still lives in the config file).
472 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_REQUIRE_TENANCY_DECLARATION")? {
473 o.require_tenancy_declaration = Some(v);
474 }
475 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_ALLOW_CROSS_TENANT_DB")? {
476 o.allow_cross_tenant_db = Some(v);
477 }
478 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_ALLOW_GUEST_MINT_CAPABILITY")? {
479 o.allow_guest_mint_capability = Some(v);
480 }
481 if let Some(v) = source.parse("BOATRAMP_SECURITY_MAX_GUEST_CAPABILITY_TTL_SECS")? {
482 o.max_guest_capability_ttl_secs = Some(v);
483 }
484 // Remaining guest-feature knobs — env parity for a 12-factor fleet that runs env-only
485 // (no `boatramp.cfg`). Each preset defaults these OFF under `multi-tenant`, so an
486 // env-only multi-tenant deployment had no lever to opt a guest feature back on. The
487 // override field + `apply()` + `explain()` already exist for every one; only the env
488 // mapping was missing (`allow_guest_email` regressed prod SMTP on the P48 cutover).
489 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_ALLOW_GUEST_EMAIL")? {
490 o.allow_guest_email = Some(v);
491 }
492 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_ALLOW_GUEST_ADMIN_DOMAINS")? {
493 o.allow_guest_admin_domains = Some(v);
494 }
495 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_ALLOW_GUEST_ADMIN_EMAIL")? {
496 o.allow_guest_admin_email = Some(v);
497 }
498 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_ALLOW_GUEST_ADMIN_SITE")? {
499 o.allow_guest_admin_site = Some(v);
500 }
501 if let Some(v) = source.parse_bool("BOATRAMP_SECURITY_ALLOW_GUEST_ADMIN_SECRETS")? {
502 o.allow_guest_admin_secrets = Some(v);
503 }
504 }
505
506 // --- handler sql (`handlers.bindings.sql`) ---------------------------
507 // Materialise the nested `handlers.bindings.sql` chain only when a `sql`
508 // variable is set, so an unset environment doesn't conjure an empty
509 // handlers section. The variables mirror the config path
510 // (`BOATRAMP_HANDLERS_SQL_*`) and cover the cluster-vs-single-node knobs;
511 // secrets stay indirected via `*_TOKEN_ENV` names, never the token itself.
512 if source.any(SQL_ENV_VARS) {
513 let handlers = self.handlers.get_or_insert_with(HandlersConfig::default);
514 let sql = handlers
515 .bindings
516 .sql
517 .get_or_insert_with(SqlBindingConfig::default);
518 if let Some(v) = source.get("BOATRAMP_HANDLERS_SQL_DIR") {
519 sql.dir = Some(PathBuf::from(v));
520 }
521 if let Some(v) = source.get("BOATRAMP_HANDLERS_SQL_URL") {
522 sql.url = Some(v);
523 }
524 if let Some(v) = source.get("BOATRAMP_HANDLERS_SQL_ADMIN_URL") {
525 sql.admin_url = Some(v);
526 }
527 if let Some(v) = source.get("BOATRAMP_HANDLERS_SQL_REPLICA_URL") {
528 sql.replica_url = Some(v);
529 }
530 if let Some(v) = source.get("BOATRAMP_HANDLERS_SQL_TOKEN_ENV") {
531 sql.token_env = Some(v);
532 }
533 if let Some(v) = source.get("BOATRAMP_HANDLERS_SQL_ADMIN_TOKEN_ENV") {
534 sql.admin_token_env = Some(v);
535 }
536 if let Some(v) = source.get("BOATRAMP_HANDLERS_SQL_PREVIEW_MODE") {
537 sql.preview_mode = Some(v);
538 }
539 if let Some(v) = source.get("BOATRAMP_HANDLERS_SQL_PREVIEW_INIT") {
540 sql.preview_init = Some(PathBuf::from(v));
541 }
542 if let Some(v) = source.parse("BOATRAMP_HANDLERS_SQL_DEPROVISION_GRACE_SECS")? {
543 sql.deprovision_grace_secs = Some(v);
544 }
545 }
546
547 // --- handler sql external databases (`handlers.bindings.sql.databases`) ---
548 // The bring-your-own / managed-compute DB map, keyed by name. There is no
549 // config file to enumerate the members, so the member names are discovered
550 // from the environment: any `BOATRAMP_HANDLERS_SQL_DB_<NAME>_<FIELD>`
551 // variable declares database `<NAME>`. Each env-declared DB is merged into
552 // (overriding, per field, by key) whatever the file already declared under
553 // that name — the same env-over-file precedence as the scalars.
554 //
555 // The default database (the binding a handler opens as `sql.open("")`) is
556 // addressed by the reserved `DEFAULT` token, which can't appear as a literal
557 // in a variable name: `BOATRAMP_HANDLERS_SQL_DB_DEFAULT_KIND` populates the
558 // reserved [`DEFAULT_DB_NAME`](boatramp_core::project::DEFAULT_DB_NAME) key
559 // (`"default"`). As of v0.5.0 this is a real, path-segment-safe name (never the
560 // empty string), so the binding is addressable as `--db default` and every
561 // db-name ingress carries a valid URL path segment. The guest-facing
562 // `sql.open("")` contract is preserved by aliasing `"" ⇄ "default"` at the
563 // backend-resolution boundary — external bindings are a pure label over their
564 // connection params, so the renamed binding points at the SAME physical DB.
565 if source.any_with_prefix(SQL_DB_ENV_PREFIX) {
566 let handlers = self.handlers.get_or_insert_with(HandlersConfig::default);
567 let sql = handlers
568 .bindings
569 .sql
570 .get_or_insert_with(SqlBindingConfig::default);
571 for name in source.sql_database_names() {
572 // `DEFAULT` is the reserved token for the default database; it maps to
573 // the reserved real name `"default"` (v0.5.0; was the empty string).
574 let key = if name == "DEFAULT" {
575 boatramp_core::project::DEFAULT_DB_NAME.to_string()
576 } else {
577 name.clone()
578 };
579 let db = sql.databases.entry(key).or_default();
580 let prefix = format!("{SQL_DB_ENV_PREFIX}{name}_");
581 if let Some(v) = source.get(&format!("{prefix}KIND")) {
582 db.kind = v;
583 }
584 if let Some(v) = source.get(&format!("{prefix}URL_ENV")) {
585 db.url_env = v;
586 }
587 if let Some(v) = source.get(&format!("{prefix}READ_URL_ENV")) {
588 db.read_url_env = Some(v);
589 }
590 if let Some(v) = source.get(&format!("{prefix}COMPUTE")) {
591 db.compute = Some(v);
592 }
593 if let Some(v) = source.get(&format!("{prefix}DATABASE")) {
594 db.database = Some(v);
595 }
596 if let Some(v) = source.get(&format!("{prefix}USER")) {
597 db.user = Some(v);
598 }
599 if let Some(v) = source.get(&format!("{prefix}PASSWORD_ENV")) {
600 db.password_env = Some(v);
601 }
602 if let Some(v) = source.parse(&format!("{prefix}POOL_MAX"))? {
603 db.pool_max = Some(v);
604 }
605 if let Some(v) = source.parse_bool(&format!("{prefix}READ_ONLY"))? {
606 db.read_only = v;
607 }
608 if let Some(v) = source.parse_bool(&format!("{prefix}ALLOW_PREVIEW"))? {
609 db.allow_preview = v;
610 }
611 if let Some(v) = source.parse(&format!("{prefix}CONNECT_TIMEOUT_SECS"))? {
612 db.connect_timeout_secs = Some(v);
613 }
614 if let Some(v) = source.get(&format!("{prefix}IMAGE")) {
615 db.image = Some(v);
616 }
617 if let Some(v) = source.parse(&format!("{prefix}VOLUME_SIZE_MIB"))? {
618 db.volume_size_mib = Some(v);
619 }
620 if let Some(v) = source.parse(&format!("{prefix}STARTUP_GRACE_SECS"))? {
621 db.startup_grace_secs = Some(v);
622 }
623 if let Some(v) = source.parse_enum(
624 &format!("{prefix}TENANT"),
625 &[
626 ("single", TenantIsolation::Single),
627 ("shared", TenantIsolation::Shared),
628 ],
629 )? {
630 db.tenant = v;
631 }
632 if let Some(v) = source.parse_enum(
633 &format!("{prefix}TENANT_SCOPE"),
634 &[
635 ("project", TenantScope::Project),
636 ("site", TenantScope::Site),
637 ],
638 )? {
639 db.tenant_scope = v;
640 }
641 if let Some(v) = source.parse_bool(&format!("{prefix}RLS_SESSION"))? {
642 db.rls_session = v;
643 }
644 if let Some(v) = source.get(&format!("{prefix}TENANT_GUC")) {
645 db.tenant_guc = Some(v);
646 }
647 if let Some(v) = source.get(&format!("{prefix}SESSION_GUC")) {
648 db.session_guc = Some(v);
649 }
650 if let Some(v) = source.get(&format!("{prefix}TENANT_ALL_MARKER")) {
651 db.tenant_all_marker = Some(v);
652 }
653 }
654 }
655
656 // --- secrets (`[secrets]`) -------------------------------------------
657 // Envelope encryption for private keys at rest. `kek_file` holds a *path*
658 // (never key material) and the Vault token stays indirected via
659 // `token_env` (a variable name, not the token). Materialise the nested
660 // `vault` sub-config only when a vault variable is set.
661 if source.any(SECRETS_ENV_VARS) {
662 let secrets = self.secrets.get_or_insert_with(SecretsConfig::default);
663 if let Some(v) = source.get("BOATRAMP_SECRETS_ENVELOPE") {
664 secrets.envelope = v;
665 }
666 if let Some(v) = source.get("BOATRAMP_SECRETS_KEK_FILE") {
667 secrets.kek_file = Some(PathBuf::from(v));
668 }
669 if source.any(SECRETS_VAULT_ENV_VARS) {
670 let vault = secrets
671 .vault
672 .get_or_insert_with(VaultSecretsConfig::default);
673 if let Some(v) = source.get("BOATRAMP_SECRETS_VAULT_ADDR") {
674 vault.addr = v;
675 }
676 if let Some(v) = source.get("BOATRAMP_SECRETS_VAULT_KEY") {
677 vault.key = v;
678 }
679 if let Some(v) = source.get("BOATRAMP_SECRETS_VAULT_TOKEN_ENV") {
680 vault.token_env = v;
681 }
682 }
683 }
684
685 // --- cluster (`[cluster]`) -------------------------------------------
686 // The self-hosted cluster section's own fields. The founding/joining
687 // *actions* already have their own `serve` flags with env
688 // (`BOATRAMP_CLUSTER_INIT` / `_JOIN` / `_ADVERTISE_ADDR`); those are
689 // distinct from — and not duplicated by — the `[cluster]` section fields
690 // exposed here. `join_token` keeps a secret out of plain sight via the
691 // usual `env:VAR` / `path:/file` prefix, so the env holds the *reference*,
692 // not the token. `ClusterConfig` has no `Default` (a founder needs at least
693 // a `listen`), so a `BOATRAMP_CLUSTER_LISTEN` is required to materialise an
694 // absent section from the environment.
695 if source.any(CLUSTER_ENV_VARS) {
696 // Materialise an absent section only if a bind address is supplied;
697 // otherwise there is no valid `ClusterConfig` to build (it has no
698 // `Default` — a node must know where to bind its mesh). When the file
699 // already declared `[cluster]`, its `listen` stands and the other env
700 // fields layer over it even without `BOATRAMP_CLUSTER_LISTEN`.
701 let listen = source.parse::<SocketAddr>("BOATRAMP_CLUSTER_LISTEN")?;
702 if self.cluster.is_none()
703 && let Some(listen) = listen
704 {
705 self.cluster = Some(ClusterConfig {
706 listen,
707 root_pubkeys: Vec::new(),
708 seeds: Vec::new(),
709 join_token: None,
710 store_dir: None,
711 mesh: None,
712 });
713 }
714 if let Some(cluster) = self.cluster.as_mut() {
715 // A `listen` override applies to an already-present section too (a
716 // freshly materialised one already carries it).
717 if let Some(v) = listen {
718 cluster.listen = v;
719 }
720 if let Some(v) = source.parse_list("BOATRAMP_CLUSTER_ROOT_PUBKEYS") {
721 cluster.root_pubkeys = v;
722 }
723 if let Some(v) = source.parse_list("BOATRAMP_CLUSTER_SEEDS") {
724 cluster.seeds = v;
725 }
726 if let Some(v) = source.get("BOATRAMP_CLUSTER_JOIN_TOKEN") {
727 cluster.join_token = Some(v);
728 }
729 if let Some(v) = source.get("BOATRAMP_CLUSTER_STORE_DIR") {
730 cluster.store_dir = Some(PathBuf::from(v));
731 }
732 if source.any(CLUSTER_MESH_ENV_VARS) {
733 let mesh = cluster.mesh.get_or_insert_with(MeshConfig::default);
734 if let Some(v) = source.get("BOATRAMP_CLUSTER_MESH_KEY_FILE") {
735 mesh.key_file = Some(PathBuf::from(v));
736 }
737 if let Some(v) = source.get("BOATRAMP_CLUSTER_MESH_KEY_ROTATION") {
738 mesh.key_rotation = Some(v);
739 }
740 if let Some(v) = source.get("BOATRAMP_CLUSTER_MESH_JOIN_TOKEN_TTL") {
741 mesh.join_token_ttl = Some(v);
742 }
743 if let Some(v) =
744 source.parse_bool("BOATRAMP_CLUSTER_MESH_GATE_CLIENT_WRITES")?
745 {
746 mesh.gate_client_writes = Some(v);
747 }
748 }
749 }
750 }
751
752 // Fail closed on any db-binding name that is not a safe URL path segment.
753 // Runs on the fully merged (file + env) `databases` map, so it catches a name
754 // from either source — and (crucially) the legacy empty-string default key,
755 // which is no longer produced by the `DEFAULT` token but could still be
756 // written literally in a `boatramp.cfg` file.
757 self.validate_sql_db_names()?;
758 Ok(())
759 }
760
761 /// Validate every configured `handlers.bindings.sql.databases` binding name
762 /// through the one canonical [`validate_resource_name`](boatramp_core::project::validate_resource_name)
763 /// (`kind = "database"`). A db-binding name is threaded verbatim into the
764 /// control-plane URL (`/api/sql/{db}/…`, `/api/migrate/{db}/…`) and the CLI
765 /// `--db`, so it must be a non-empty, path-segment-safe identifier — the same rule
766 /// project/site/function names already pass. The empty-string legacy default key
767 /// gets a targeted cure pointing at the reserved `default` name.
768 ///
769 /// Also screens each binding's `compute` field against the
770 /// [`RESERVED_MANAGED_DB_COMPUTE_PREFIX`] (#501 Stage B LOW-2): the `bramp-db-`
771 /// prefix is reserved for the derived per-project managed-DB server workloads, so an
772 /// operator may not point a static BYO binding at a `bramp-db-…` workload.
773 fn validate_sql_db_names(&self) -> Result<(), ConfigError> {
774 let Some(databases) = self
775 .handlers
776 .as_ref()
777 .and_then(|h| h.bindings.sql.as_ref())
778 .map(|s| &s.databases)
779 else {
780 return Ok(());
781 };
782 for (name, db) in databases {
783 if let Err(err) = boatramp_core::project::validate_resource_name("database", name) {
784 // The empty-string case is the pre-v0.5.0 default binding key: point
785 // at the cure (name it `default`, or set nothing and let the reserved
786 // `DEFAULT` token map to `default` automatically).
787 let cure = if name.is_empty() {
788 " — name your default binding `default` (or set \
789 BOATRAMP_HANDLERS_SQL_DB_DEFAULT_*, which now maps to `default` \
790 automatically); see the v0.5.0 CHANGELOG"
791 } else {
792 ""
793 };
794 return Err(ConfigError::InvalidDbName {
795 name: err.value,
796 reason: err.reason,
797 cure,
798 });
799 }
800 // #501 Stage B LOW-2: the `bramp-db-` compute-workload prefix is RESERVED for
801 // the derived per-project managed-DB server workloads
802 // (`boatramp_storage::tenant_provision::DERIVED_MANAGED_DB_PREFIX`). An operator
803 // must not point a static BYO binding at a `compute` workload with that prefix —
804 // it could shadow / alias a derived managed server. Screen it fail-closed at
805 // config load (cheap: a `starts_with` on an already-parsed field).
806 if let Some(compute) = db.compute.as_deref()
807 && compute.starts_with(RESERVED_MANAGED_DB_COMPUTE_PREFIX)
808 {
809 return Err(ConfigError::InvalidDbName {
810 name: compute.to_string(),
811 reason: "the `bramp-db-` compute-workload prefix is reserved for \
812 boatramp-derived managed-database servers",
813 cure: " — rename the `compute` workload to not start with `bramp-db-`",
814 });
815 }
816 }
817 Ok(())
818 }
819}
820
821/// The `BOATRAMP_*` variables that populate the `[compute]` section. Kept as one
822/// list so [`ServerConfig::apply_env_overrides`] can decide whether to materialise
823/// an absent section without repeating the names.
824const COMPUTE_ENV_VARS: &[&str] = &[
825 "BOATRAMP_COMPUTE_BRIDGE",
826 "BOATRAMP_COMPUTE_SUBNET",
827 "BOATRAMP_COMPUTE_VCPUS",
828 "BOATRAMP_COMPUTE_MEM_MIB",
829 "BOATRAMP_COMPUTE_REGION",
830 "BOATRAMP_COMPUTE_SQL_SHIM_URL",
831 "BOATRAMP_COMPUTE_MANAGED_DB_PRIVILEGE",
832 "BOATRAMP_COMPUTE_DOCKER_ENDPOINT",
833 "BOATRAMP_COMPUTE_DOCKER_VOLUME_MODE",
834 "BOATRAMP_COMPUTE_KERNEL_SIGNING_PUBKEYS",
835 "BOATRAMP_COMPUTE_KERNEL_ALLOWED_HASHES",
836 "BOATRAMP_COMPUTE_INTERNAL_DNS",
837 "BOATRAMP_COMPUTE_DNS_UPSTREAM",
838 "BOATRAMP_COMPUTE_DNS_DOMAIN",
839];
840
841/// The `BOATRAMP_*` variables that populate the `[security]` section.
842const SECURITY_ENV_VARS: &[&str] = &[
843 "BOATRAMP_SECURITY_PROFILE",
844 "BOATRAMP_SECURITY_ALLOW_UNAUTHENTICATED_PUBLIC_BIND",
845 "BOATRAMP_SECURITY_MAX_UPLOAD_BYTES",
846 "BOATRAMP_SECURITY_ALLOW_SITE_UNIX_UPSTREAMS",
847 "BOATRAMP_SECURITY_ALLOW_SITE_PRIVATE_UPSTREAMS",
848 "BOATRAMP_SECURITY_ALLOW_GUEST_PRIVATE_EGRESS",
849 "BOATRAMP_SECURITY_ALLOW_GUEST_SELF_EGRESS",
850 "BOATRAMP_SECURITY_ALLOW_GUEST_EGRESS_EXTRA_CA",
851 "BOATRAMP_SECURITY_MAX_HANDLER_BLOB_BYTES",
852 "BOATRAMP_SECURITY_MAX_COMPONENT_BYTES",
853 "BOATRAMP_SECURITY_OIDC_REQUIRE_AUDIENCE",
854 "BOATRAMP_SECURITY_DOMAIN_VERIFY_ALLOW_PRIVATE",
855 "BOATRAMP_SECURITY_DOMAIN_VERIFY_SELF_SERVE",
856 "BOATRAMP_SECURITY_ALLOW_SHARED_KERNEL_COMPUTE",
857 "BOATRAMP_SECURITY_ALLOW_COMPUTE_EXEC",
858 "BOATRAMP_SECURITY_RATELIMIT_FAIL_OPEN",
859 "BOATRAMP_SECURITY_ALLOW_IMPLICIT_ROUTING",
860 "BOATRAMP_SECURITY_REQUIRE_POP",
861 "BOATRAMP_SECURITY_REQUIRE_DOMAIN_VERIFICATION",
862 "BOATRAMP_SECURITY_ALLOW_ENV_SECRET_REFS",
863 "BOATRAMP_SECURITY_REQUIRE_TENANCY_DECLARATION",
864 "BOATRAMP_SECURITY_ALLOW_CROSS_TENANT_DB",
865 "BOATRAMP_SECURITY_ALLOW_GUEST_MINT_CAPABILITY",
866 "BOATRAMP_SECURITY_MAX_GUEST_CAPABILITY_TTL_SECS",
867 "BOATRAMP_SECURITY_ALLOW_GUEST_EMAIL",
868 "BOATRAMP_SECURITY_ALLOW_GUEST_ADMIN_DOMAINS",
869 "BOATRAMP_SECURITY_ALLOW_GUEST_ADMIN_EMAIL",
870 "BOATRAMP_SECURITY_ALLOW_GUEST_ADMIN_SITE",
871 "BOATRAMP_SECURITY_ALLOW_GUEST_ADMIN_SECRETS",
872];
873
874/// The `BOATRAMP_*` variables that populate `handlers.bindings.sql`.
875const SQL_ENV_VARS: &[&str] = &[
876 "BOATRAMP_HANDLERS_SQL_DIR",
877 "BOATRAMP_HANDLERS_SQL_URL",
878 "BOATRAMP_HANDLERS_SQL_ADMIN_URL",
879 "BOATRAMP_HANDLERS_SQL_REPLICA_URL",
880 "BOATRAMP_HANDLERS_SQL_TOKEN_ENV",
881 "BOATRAMP_HANDLERS_SQL_ADMIN_TOKEN_ENV",
882 "BOATRAMP_HANDLERS_SQL_PREVIEW_MODE",
883 "BOATRAMP_HANDLERS_SQL_PREVIEW_INIT",
884 "BOATRAMP_HANDLERS_SQL_DEPROVISION_GRACE_SECS",
885];
886
887/// The fixed prefix of a keyed `handlers.bindings.sql.databases` variable —
888/// `BOATRAMP_HANDLERS_SQL_DB_<NAME>_<FIELD>`. Member names aren't known ahead of
889/// time (there is no config file to enumerate them), so they are discovered by
890/// scanning the environment for this prefix.
891const SQL_DB_ENV_PREFIX: &str = "BOATRAMP_HANDLERS_SQL_DB_";
892
893/// The recognised `_<FIELD>` suffixes of a `databases` variable, ordered so a
894/// name-isolating strip matches the **longest** suffix first (`_READ_URL_ENV`
895/// before `_URL_ENV`). Each mirrors a field of [`ExternalDatabaseConfig`].
896const SQL_DB_FIELD_SUFFIXES: &[&str] = &[
897 "_STARTUP_GRACE_SECS",
898 "_CONNECT_TIMEOUT_SECS",
899 // `_SESSION_GUC` / `_TENANT_GUC` / `_TENANT_ALL_MARKER` before `_TENANT`/`_TENANT_SCOPE`
900 // (longest-first name isolation).
901 "_SESSION_GUC",
902 "_TENANT_ALL_MARKER",
903 "_TENANT_GUC",
904 "_VOLUME_SIZE_MIB",
905 "_READ_URL_ENV",
906 "_PASSWORD_ENV",
907 "_ALLOW_PREVIEW",
908 "_URL_ENV",
909 "_DATABASE",
910 "_READ_ONLY",
911 "_POOL_MAX",
912 "_RLS_SESSION",
913 "_TENANT_SCOPE",
914 "_COMPUTE",
915 "_TENANT",
916 "_IMAGE",
917 "_KIND",
918 "_USER",
919];
920
921/// The `BOATRAMP_*` variables that populate the `[secrets]` section (excluding the
922/// nested `vault` sub-config, gated separately by [`SECRETS_VAULT_ENV_VARS`]).
923const SECRETS_ENV_VARS: &[&str] = &[
924 "BOATRAMP_SECRETS_ENVELOPE",
925 "BOATRAMP_SECRETS_KEK_FILE",
926 "BOATRAMP_SECRETS_VAULT_ADDR",
927 "BOATRAMP_SECRETS_VAULT_KEY",
928 "BOATRAMP_SECRETS_VAULT_TOKEN_ENV",
929];
930
931/// The `BOATRAMP_*` variables that populate the nested `[secrets.vault]` sub-config.
932const SECRETS_VAULT_ENV_VARS: &[&str] = &[
933 "BOATRAMP_SECRETS_VAULT_ADDR",
934 "BOATRAMP_SECRETS_VAULT_KEY",
935 "BOATRAMP_SECRETS_VAULT_TOKEN_ENV",
936];
937
938/// The `BOATRAMP_*` variables that populate the `[cluster]` section fields (the
939/// section's own config, distinct from the founding/joining *action* flags
940/// `BOATRAMP_CLUSTER_INIT` / `_JOIN` / `_ADVERTISE_ADDR`, which are `serve` clap
941/// args and are deliberately not listed here).
942const CLUSTER_ENV_VARS: &[&str] = &[
943 "BOATRAMP_CLUSTER_LISTEN",
944 "BOATRAMP_CLUSTER_ROOT_PUBKEYS",
945 "BOATRAMP_CLUSTER_SEEDS",
946 "BOATRAMP_CLUSTER_JOIN_TOKEN",
947 "BOATRAMP_CLUSTER_STORE_DIR",
948 "BOATRAMP_CLUSTER_MESH_KEY_FILE",
949 "BOATRAMP_CLUSTER_MESH_KEY_ROTATION",
950 "BOATRAMP_CLUSTER_MESH_JOIN_TOKEN_TTL",
951 "BOATRAMP_CLUSTER_MESH_GATE_CLIENT_WRITES",
952];
953
954/// The `BOATRAMP_*` variables that populate the nested `[cluster.mesh]` sub-config.
955const CLUSTER_MESH_ENV_VARS: &[&str] = &[
956 "BOATRAMP_CLUSTER_MESH_KEY_FILE",
957 "BOATRAMP_CLUSTER_MESH_KEY_ROTATION",
958 "BOATRAMP_CLUSTER_MESH_JOIN_TOKEN_TTL",
959 "BOATRAMP_CLUSTER_MESH_GATE_CLIENT_WRITES",
960];
961
962/// Where env-override values come from: the real process environment, or an
963/// explicit map for a deterministic unit test. Keeping the lookup behind this enum
964/// lets [`ServerConfig::apply_env_overrides`] be tested without touching (racy,
965/// process-global) `std::env`.
966enum EnvSource {
967 /// The live process environment (`std::env::var`).
968 Process,
969 /// A fixed name→value map (tests only).
970 #[cfg(test)]
971 Map(BTreeMap<String, String>),
972}
973
974impl EnvSource {
975 /// The value of `var`, if set to a non-empty string. An empty value is treated
976 /// as unset so an accidental `VAR=` doesn't clobber a file value with `""`.
977 fn get(&self, var: &str) -> Option<String> {
978 let raw = match self {
979 Self::Process => std::env::var(var).ok(),
980 #[cfg(test)]
981 Self::Map(m) => m.get(var).cloned(),
982 };
983 raw.filter(|v| !v.is_empty())
984 }
985
986 /// Whether any of `vars` is set (to a non-empty value).
987 fn any(&self, vars: &[&str]) -> bool {
988 vars.iter().any(|v| self.get(v).is_some())
989 }
990
991 /// Whether any variable whose name starts with `prefix` is set (to a
992 /// non-empty value). Used to decide whether to materialise a keyed map (the
993 /// `databases` env scheme) whose member names aren't known ahead of time.
994 fn any_with_prefix(&self, prefix: &str) -> bool {
995 self.names()
996 .any(|name| name.starts_with(prefix) && self.get(&name).is_some())
997 }
998
999 /// The full set of variable names visible to this source. Used to discover the
1000 /// keyed-map member names from the environment (there is no config file to
1001 /// enumerate them). Returned owned so it doesn't borrow the process env.
1002 fn names(&self) -> Box<dyn Iterator<Item = String> + '_> {
1003 match self {
1004 Self::Process => Box::new(std::env::vars().map(|(k, _)| k)),
1005 #[cfg(test)]
1006 Self::Map(m) => Box::new(m.keys().cloned()),
1007 }
1008 }
1009
1010 /// Parse `var` as one of a fixed set of string-mapped variants, mapping an
1011 /// unknown value to a clear [`ConfigError::Env`] that names the variable and
1012 /// the accepted values. Used for the config enums that have no `FromStr`
1013 /// (their only string mapping is a serde `rename_all`). `Ok(None)` when unset.
1014 fn parse_enum<T: Copy>(
1015 &self,
1016 var: &str,
1017 variants: &[(&str, T)],
1018 ) -> Result<Option<T>, ConfigError> {
1019 match self.get(var) {
1020 Some(raw) => {
1021 let lower = raw.trim().to_ascii_lowercase();
1022 variants
1023 .iter()
1024 .find(|(name, _)| *name == lower)
1025 .map(|(_, v)| Some(*v))
1026 .ok_or_else(|| ConfigError::Env {
1027 var: var.to_string(),
1028 reason: format!(
1029 "expected one of {}, got {raw:?}",
1030 variants
1031 .iter()
1032 .map(|(n, _)| *n)
1033 .collect::<Vec<_>>()
1034 .join("/")
1035 ),
1036 })
1037 }
1038 None => Ok(None),
1039 }
1040 }
1041
1042 /// The distinct `<NAME>` tokens of every `BOATRAMP_HANDLERS_SQL_DB_<NAME>_<FIELD>`
1043 /// variable that is set. The name is everything between the fixed prefix and the
1044 /// *last* `_<FIELD>` segment, so a database name may itself contain underscores
1045 /// (the field suffix is one of a known set). Returned sorted + de-duplicated so
1046 /// the map is built deterministically.
1047 fn sql_database_names(&self) -> Vec<String> {
1048 let mut names: Vec<String> = self
1049 .names()
1050 .filter(|n| n.starts_with(SQL_DB_ENV_PREFIX) && self.get(n).is_some())
1051 .filter_map(|n| {
1052 let rest = n.strip_prefix(SQL_DB_ENV_PREFIX)?;
1053 // Strip the recognised field suffix to isolate `<NAME>`. The suffixes
1054 // are matched longest-first so `READ_URL_ENV` wins over `URL_ENV`.
1055 SQL_DB_FIELD_SUFFIXES
1056 .iter()
1057 .find_map(|suffix| rest.strip_suffix(suffix))
1058 .filter(|name| !name.is_empty())
1059 .map(str::to_string)
1060 })
1061 .collect();
1062 names.sort();
1063 names.dedup();
1064 names
1065 }
1066
1067 /// Parse `var` as a **comma-separated** list of non-empty trimmed items, e.g.
1068 /// the kernel trust anchors. A single value (no comma) yields a one-element
1069 /// list. Empty items are dropped so a trailing comma or doubled separator is
1070 /// tolerated. `Ok(None)` when unset; `Some(Vec::new())` never happens (an
1071 /// all-empty value is treated as unset by [`Self::get`]).
1072 fn parse_list(&self, var: &str) -> Option<Vec<String>> {
1073 self.get(var).map(|raw| {
1074 raw.split(',')
1075 .map(str::trim)
1076 .filter(|s| !s.is_empty())
1077 .map(str::to_string)
1078 .collect()
1079 })
1080 }
1081
1082 /// Parse `var` as any [`FromStr`](std::str::FromStr) type (numbers), mapping a
1083 /// parse failure to a clear [`ConfigError::Env`]. `Ok(None)` when the variable
1084 /// is unset.
1085 fn parse<T>(&self, var: &str) -> Result<Option<T>, ConfigError>
1086 where
1087 T: std::str::FromStr,
1088 T::Err: std::fmt::Display,
1089 {
1090 match self.get(var) {
1091 Some(raw) => raw.parse::<T>().map(Some).map_err(|e| ConfigError::Env {
1092 var: var.to_string(),
1093 reason: e.to_string(),
1094 }),
1095 None => Ok(None),
1096 }
1097 }
1098
1099 /// Parse `var` as a boolean, accepting the common truthy/falsey spellings
1100 /// (`true`/`false`, `1`/`0`, `yes`/`no`, `on`/`off`) case-insensitively so an
1101 /// operator isn't surprised by a strict `true`-only parse. `Ok(None)` when
1102 /// unset.
1103 fn parse_bool(&self, var: &str) -> Result<Option<bool>, ConfigError> {
1104 match self.get(var) {
1105 Some(raw) => match raw.trim().to_ascii_lowercase().as_str() {
1106 "true" | "1" | "yes" | "on" => Ok(Some(true)),
1107 "false" | "0" | "no" | "off" => Ok(Some(false)),
1108 other => Err(ConfigError::Env {
1109 var: var.to_string(),
1110 reason: format!("expected a boolean (true/false), got {other:?}"),
1111 }),
1112 },
1113 None => Ok(None),
1114 }
1115 }
1116}
1117
1118/// How a **managed database** (PLAN-managed-compute-sql) runs its stock image on a
1119/// shared-kernel backend, whose entrypoint would otherwise fail under the dropped-`ALL`
1120/// hardening. `rootless` (the default) needs no capabilities and works under any
1121/// posture; `caps` is the fallback for an image that won't run rootless.
1122#[derive(Debug, Clone, Copy, Default, PartialEq, Eq, Deserialize)]
1123#[serde(rename_all = "lowercase")]
1124pub enum ManagedDbPrivilege {
1125 /// Run the DB as its image's user (`999:999` for the official postgres/mysql
1126 /// images) against a pre-owned volume — no added capabilities, any posture.
1127 #[default]
1128 Rootless,
1129 /// Add the minimal capability set the entrypoint needs (`CHOWN`, `DAC_OVERRIDE`,
1130 /// `FOWNER`, `SETUID`, `SETGID`). Honored only under the single-tenant posture.
1131 Caps,
1132}
1133
1134/// `compute` section — opt-in compute backends. Present
1135/// ⇒ `serve` registers the backends this node can offer and advertises them to
1136/// the scheduler; backends are capability-detected (container on Linux, remote
1137/// docker when a daemon is reachable, VMM when `/dev/kvm` exists).
1138#[derive(Debug, Clone, Deserialize)]
1139#[serde(default, deny_unknown_fields)]
1140pub struct ComputeConfig {
1141 /// Bridge the container veths / VM taps attach to (default `br-boatramp`).
1142 pub bridge: String,
1143 /// Guest IP subnet (default `10.0.0.0/24`).
1144 pub subnet: String,
1145 /// vCPUs this node advertises as schedulable (`0` ⇒ detect from the host).
1146 pub vcpus: u32,
1147 /// Memory (MiB) this node advertises as schedulable (`0` ⇒ a 1 GiB default).
1148 pub mem_mib: u32,
1149 /// **Static** kernel-signing public keys (`"<alg>:<hex>"`) — the trust anchor
1150 /// for the posture-scaled kernel bar. Under `multi-tenant`, a dynamically-
1151 /// selected default kernel must carry a signature verifying against one of
1152 /// these. Host-access-gated (never in the KV tier); changing it needs a
1153 /// restart. Empty ⇒ no kernel may be signed-verified (strict posture then
1154 /// accepts none).
1155 pub kernel_signing_pubkeys: Vec<String>,
1156 /// **Static** allow-list of kernel content hashes (sha256 hex) a dynamic
1157 /// default may select under `multi-tenant`. Host-access-gated. Empty ⇒ no
1158 /// kernel is allow-listed.
1159 pub kernel_allowed_hashes: Vec<String>,
1160 /// This node's **region** tag (FA-8). Advertised on the compute `Node` so a
1161 /// gateway routing to a `compute:`-backed workload with `--lb nearest` sends
1162 /// each request to the nearest replica by its node's region — no manual
1163 /// `--region` map. `None` ⇒ region-agnostic.
1164 pub region: Option<String>,
1165 /// How the remote-Docker backend reports a workload's reachable endpoint.
1166 /// `published` (default) publishes the container port on `127.0.0.1:<ephemeral>`
1167 /// so a host-native `serve` reaches it on any daemon (incl. Docker Desktop /
1168 /// macOS, where the bridge IP is not host-routable); `bridge` routes to the
1169 /// container bridge IP directly (only when `serve` shares the daemon's network).
1170 pub docker_endpoint: boatramp_docker::DockerEndpoint,
1171 /// How the remote-Docker backend backs a workload's persistent volumes.
1172 /// `named` (default) attaches a daemon-managed `docker volume` by name (portable
1173 /// across daemons + Docker Desktop / macOS); `bind` bind-mounts a host directory
1174 /// under `<data_dir>/compute/volumes/<name>` (local daemon only).
1175 pub docker_volume_mode: boatramp_docker::DockerVolumeMode,
1176 /// Guest-reachable base URL of the compute **sql-shim** (PLAN-compute-bindings) —
1177 /// e.g. `http://10.0.0.1:8081` (the compute bridge gateway) or the docker bridge
1178 /// gateway. Set ⇒ a workload's `--bind sql` reaches the managed database through a
1179 /// listener bound on `0.0.0.0:<port>`. `None` (default) ⇒ compute sql bindings off.
1180 #[serde(default, skip_serializing_if = "Option::is_none")]
1181 #[cfg_attr(not(feature = "handlers"), allow(dead_code))]
1182 pub sql_shim_url: Option<String>,
1183 /// Privilege strategy for a managed database's stock image on a shared-kernel
1184 /// backend (see [`ManagedDbPrivilege`]). `rootless` by default.
1185 #[serde(default)]
1186 #[cfg_attr(not(feature = "handlers"), allow(dead_code))]
1187 pub managed_db_privilege: ManagedDbPrivilege,
1188 /// Per-project **internal DNS** (service discovery): run a lightweight resolver
1189 /// on the bridge gateway so a guest can reach peers by name (`<workload>` /
1190 /// `<workload>.<project>.<dns_domain>`) instead of a numeric IP, scoped to its
1191 /// own project. Default **on** — it activates only when the container backend +
1192 /// bridge come up, so a node without them is unaffected. `false` disables it and
1193 /// leaves each image's own `/etc/resolv.conf`.
1194 #[serde(default = "default_internal_dns")]
1195 pub internal_dns: bool,
1196 /// The upstream resolver the internal DNS forwards non-internal queries to
1197 /// (external names + non-`A`/`AAAA` types), so the resolver is the guest's single
1198 /// nameserver. `"host:port"`; default `1.1.1.1:53`.
1199 #[serde(default = "default_dns_upstream")]
1200 pub dns_upstream: String,
1201 /// The internal DNS suffix names live under (`<workload>.<project>.<dns_domain>`);
1202 /// also the `search` domain written into each container's resolv.conf. Default
1203 /// `boatramp.internal`.
1204 #[serde(default = "default_dns_domain")]
1205 pub dns_domain: String,
1206}
1207
1208/// Default for [`ComputeConfig::internal_dns`] — on (activates only with the
1209/// container backend + bridge).
1210fn default_internal_dns() -> bool {
1211 true
1212}
1213
1214/// Default upstream resolver for [`ComputeConfig::dns_upstream`].
1215fn default_dns_upstream() -> String {
1216 "1.1.1.1:53".to_string()
1217}
1218
1219/// Default internal DNS suffix for [`ComputeConfig::dns_domain`].
1220fn default_dns_domain() -> String {
1221 boatramp_container::dns::DEFAULT_INTERNAL_DOMAIN.to_string()
1222}
1223
1224/// The built-in **boatramp kernel-signing public key** (`es256:…`), whose private
1225/// half lives as the `KERNEL_SIGNING_KEY` Actions secret in
1226/// [`BoatRamp/boatramp-vmlinux`](https://github.com/BoatRamp/boatramp-vmlinux).
1227/// Shipped as a default trust anchor so the first-party signed `boatramp-vmlinux`
1228/// verifies out of the box under the strict posture. An operator can replace
1229/// `kernel_signing_pubkeys` to trust only their own keys.
1230pub const BOATRAMP_KERNEL_SIGNING_PUBKEY: &str =
1231 "es256:02c4e4af2e9cba6ba6745c513f193622e6674a8b2d0187ebea5612f5b46a7eade4";
1232
1233/// The first-party signed-kernel content hashes trusted under the **strict**
1234/// posture, for this build's **guest arch**. The guest arch mirrors the host: an
1235/// x86_64 host boots x86_64 KVM guests (the embedded VMM); an Apple-silicon host
1236/// boots aarch64 guests (the Virtualization.framework `vmm-vz` backend). An x86_64
1237/// kernel can't boot an aarch64 VM (and vice versa), so each arch trusts only its
1238/// own signed `boatramp-vmlinux-<arch>` releases. Bump on each new signed release.
1239///
1240/// The **relaxed** (single-tenant) posture ignores this list — it verifies only the
1241/// content-hash pin — so an operator-supplied kernel boots there regardless of arch.
1242fn default_allowed_kernel_hashes() -> Vec<String> {
1243 #[cfg(target_arch = "x86_64")]
1244 {
1245 vec![
1246 // v0.2.0 minimal Firecracker 6.1-config kernel: boots under the
1247 // firecracker-*binary* backend (ACPI device discovery) but NOT the
1248 // in-process embedded VMM. Kept trusted so operators on the currently
1249 // published release don't fail strict verification.
1250 "cf1e590a9e642be3667131ca35fbf390378a457d8908169d2a169608e299d974".to_string(),
1251 // Same kernel + CONFIG_VIRTIO_MMIO_CMDLINE_DEVICES=y (flake `#vmlinux`),
1252 // so the embedded VMM binds its virtio-block root over the cmdline
1253 // transport. Reproducible build output (deterministic nix build,
1254 // verified on KVM); the next signed boatramp-vmlinux release — which
1255 // reuses this flake — publishes + signs it, gated by
1256 // `vmlinux-release-boot.yml`.
1257 "d0dc2098ab2a2a3c1bc72ab61dc85d9e464d798d7e55b6b80525db5ca2f00c5a".to_string(),
1258 ]
1259 }
1260 #[cfg(target_arch = "aarch64")]
1261 {
1262 vec![
1263 // `boatramp-vmlinux-aarch64` v0.2.3 (the Virtualization.framework guest
1264 // kernel, flake `#vmlinux` on aarch64-linux — a raw arm64 `Image`). This
1265 // release enables the generic PCIe host + virtio-pci so the guest actually
1266 // discovers VZ's virtio disk/net/console (the earlier v0.2.2 `be95fb0d…`
1267 // built with `CONFIG_PCI` off never booted under VZ and is dropped). This
1268 // is the hash of the **published, ES256-signed** release asset (signed by
1269 // BOATRAMP_KERNEL_SIGNING_PUBKEY), so a selected `compute.default_kernel`
1270 // clears the strict bar out of the box; the boot + scale-to-zero round-trip
1271 // was validated against this exact published kernel. NOTE: unlike x86_64,
1272 // the aarch64 build is not currently bit-reproducible across build hosts
1273 // (same config + size, different build metadata), so pin/verify against the
1274 // published `.sha256`/`.sig`, not a local rebuild. Bump on each new release.
1275 "d785a48d754e65a4630443301f1fb84cb69cf882336d3cf37055e437b3d8e21f".to_string(),
1276 ]
1277 }
1278 #[cfg(not(any(target_arch = "x86_64", target_arch = "aarch64")))]
1279 {
1280 Vec::new()
1281 }
1282}
1283
1284impl Default for ComputeConfig {
1285 fn default() -> Self {
1286 Self {
1287 bridge: "br-boatramp".to_string(),
1288 subnet: "10.0.0.0/24".to_string(),
1289 vcpus: 0,
1290 mem_mib: 0,
1291 kernel_signing_pubkeys: vec![BOATRAMP_KERNEL_SIGNING_PUBKEY.to_string()],
1292 kernel_allowed_hashes: default_allowed_kernel_hashes(),
1293 region: None,
1294 docker_endpoint: boatramp_docker::DockerEndpoint::default(),
1295 docker_volume_mode: boatramp_docker::DockerVolumeMode::default(),
1296 sql_shim_url: None,
1297 managed_db_privilege: ManagedDbPrivilege::default(),
1298 internal_dns: default_internal_dns(),
1299 dns_upstream: default_dns_upstream(),
1300 dns_domain: default_dns_domain(),
1301 }
1302 }
1303}
1304
1305/// `cluster` section — self-hosted **cluster mode**. Parsed in
1306/// every build so config files stay portable; only *consumed* when the `cluster`
1307/// feature is compiled in (`boatramp serve --mode cluster`).
1308#[cfg_attr(not(feature = "cluster"), allow(dead_code))]
1309#[derive(Debug, Clone, Deserialize)]
1310pub struct ClusterConfig {
1311 /// Address to bind this node's Raft **peer mesh** on (the `/raft/*` +
1312 /// `/stream/*` endpoints) — distinct from the public `serve.addr`.
1313 pub listen: SocketAddr,
1314 /// The cluster **root anchor set** — the `es256:`/`ed25519:`-tagged public
1315 /// keys that define this cluster's identity (a cluster *is* its root key).
1316 /// Every join/trust decision verifies against this set. Empty ⇒ falls back to
1317 /// `serve.auth_root_public_key` (the single-anchor default). A *set* enables
1318 /// make-before-break root rotation.
1319 #[serde(default)]
1320 pub root_pubkeys: Vec<String>,
1321 /// **Seeds** — control-plane addresses of existing cluster members
1322 /// (`host:port`), any of which can admit this node. Present ⇒ this node
1323 /// **joins** (redeems its `join_token`); absent + no durable state + explicit
1324 /// `--cluster-init` ⇒ it **founds**. There is no peer map: members are learned
1325 /// from the root-signed join response.
1326 #[serde(default)]
1327 pub seeds: Vec<String>,
1328 /// The single-use bearer **join token** used when `seeds` are set. Keeps the
1329 /// secret out of the file via a prefix: `env:VAR`, `path:/file`, or an inline
1330 /// literal. Usually supplied via `serve --cluster-join <ticket>` instead.
1331 #[serde(default)]
1332 pub join_token: Option<String>,
1333 /// Directory for this node's **durable** Raft log/state store (node-local;
1334 /// distinct from the replicated control plane). Default
1335 /// `<data-dir>/raft`.
1336 #[serde(default)]
1337 pub store_dir: Option<PathBuf>,
1338 /// Mesh identity + TLS settings. Absent ⇒ defaults (identity key
1339 /// auto-generated under `<data-dir>/mesh/identity.key`).
1340 #[serde(default)]
1341 pub mesh: Option<MeshConfig>,
1342}
1343
1344/// `[cluster.mesh]` — mesh identity + TLS knobs.
1345#[cfg_attr(not(feature = "cluster"), allow(dead_code))]
1346#[derive(Debug, Clone, Default, Deserialize)]
1347#[serde(default, deny_unknown_fields)]
1348pub struct MeshConfig {
1349 /// Path to this node's Ed25519 identity key (PKCS#8 DER, `0600`,
1350 /// auto-generated). Default `<data-dir>/mesh/identity.key`.
1351 pub key_file: Option<PathBuf>,
1352 /// Automatic key-rotation cadence (e.g. `"30d"`); `None` = manual only.
1353 /// Consumed by the rotation loop.
1354 pub key_rotation: Option<String>,
1355 /// TTL for a single-use join token (e.g. `"1h"`).
1356 pub join_token_ttl: Option<String>,
1357 /// Gate mesh `client-write`s behind a control-plane **cluster-write
1358 /// capability**, so a trusted peer can't inject arbitrary
1359 /// control-plane writes on mesh trust alone. Requires the token root
1360 /// **private** key on every node (each mints + presents its own capability);
1361 /// default `false`.
1362 pub gate_client_writes: Option<bool>,
1363}
1364
1365/// `handlers` section — server-side handler runtime config (read by `serve`).
1366/// Parsed in every build (so config files stay portable), but only *consumed*
1367/// when the `handlers` feature is compiled in.
1368#[cfg_attr(not(feature = "handlers"), allow(dead_code))]
1369#[derive(Debug, Clone, Default, Deserialize)]
1370#[serde(default)]
1371pub struct HandlersConfig {
1372 /// `handlers.bindings` — which backend serves each handler binding.
1373 pub bindings: BindingsConfig,
1374 /// Use the wasmtime **pooling** instance allocator: faster
1375 /// instantiation at the cost of a large up-front virtual-memory reservation.
1376 /// Off by default — opt in and benchmark for your workload.
1377 pub pooling: bool,
1378 /// Engine-wide **safety max** on a *connection-bearing* invocation (a site
1379 /// handler or a synchronous function/webhook invoke), milliseconds. A route
1380 /// or function may declare a *lower* timeout, never a higher one. Kept tight
1381 /// on purpose: a client, proxy, and the shared request pool are all blocked
1382 /// while a sync handler runs. Absent ⇒ 10s (the historical default). This is
1383 /// a node safety ceiling, not a per-invocation budget, and is distinct from
1384 /// a per-site `max_timeout_ms`.
1385 pub sync_max_timeout_ms: Option<u64>,
1386 /// Engine-wide safety max on a *durable async* invocation — the drain that
1387 /// runs `?mode=async` calls, workflow steps, cron/queue/blob triggers, and
1388 /// `wasi:messaging` consumers, milliseconds. No client is connected and the
1389 /// work is retried + dead-lettered, so this can be far larger than the sync
1390 /// ceiling: it is what lets a legitimately long background job (e.g. an LLM
1391 /// generation) declare and actually get minutes of runtime. Absent ⇒ 15
1392 /// minutes. Runs on its own concurrency budget (`async_max_concurrency`), so
1393 /// a long job never starves live traffic.
1394 pub async_max_timeout_ms: Option<u64>,
1395 /// Max concurrent in-flight *async-lane* invocations, kept separate from the
1396 /// (larger) request pool so a burst of long background jobs can't exhaust the
1397 /// slots live site traffic needs. Absent ⇒ 8.
1398 pub async_max_concurrency: Option<usize>,
1399 /// Optional CPU **fuel** ceiling for an async-lane invocation. A large async
1400 /// timeout bounds only wall-clock; without a fuel bound a CPU-bound guest can
1401 /// spin for the whole window. Absent ⇒ unmetered (same as the sync default).
1402 pub async_max_fuel: Option<u64>,
1403 /// **Relaxed messaging-publish durability** — the max number of published
1404 /// messages that may be acknowledged from the in-memory buffer BEFORE a durable
1405 /// checkpoint is forced. **Absent / `0` ⇒ strong durability (the default):**
1406 /// every `publish()` returns only after the message is crash-durable — a
1407 /// *stronger* guarantee than NATS JetStream's default sync publish. Set `N > 0`
1408 /// to opt a node into fast-ack (publish returns on the buffer insert, ~10µs
1409 /// instead of ~one flush interval), at the cost of a **bounded loss window: up
1410 /// to `N` acknowledged-but-unflushed messages are lost on a process crash / OOM
1411 /// / SIGKILL / power loss** before the next flush. Affects ONLY the messaging
1412 /// bus publish path — control-plane, auth, and consumer ack/redelivery
1413 /// durability are unaffected. Single-node only (cluster durability is
1414 /// replication). A node with `N > 0` logs a warning at startup.
1415 pub messaging_max_unflushed_msgs: Option<usize>,
1416 /// **Event-driven delivery — safety-net reconcile cadence** (ms). The coarse timer the delivery
1417 /// drainer falls back to when no fast-path wake fires: it drains the durable ready-set and fires
1418 /// lease-expiry redelivery via the per-message due-heap, so a dropped wake or a time-based
1419 /// visibility never stalls delivery beyond this interval. It never scans idle topics (an idle
1420 /// fleet costs ~0). Absent ⇒ ~2 s. Lower for tighter redelivery latency at more wakeups; raise to
1421 /// quiet a large idle fleet further.
1422 pub messaging_safetynet_interval_ms: Option<u64>,
1423 /// **Event-driven delivery — ready-set rebuild cadence** (ms). The long-cadence self-heal that
1424 /// re-derives the ready-set from the authoritative message index — recovering a marker lost to a
1425 /// crash between the index write and the ready write, pruning a stale marker, and self-populating
1426 /// a fresh/upgraded node's ready-set. This is the one full-ish scan, so it runs rarely. Absent ⇒
1427 /// ~30 s. The correctness backstop for the ready-set (a lost marker costs at most one rebuild
1428 /// interval of latency, never a lost message).
1429 pub messaging_readyset_rebuild_interval_ms: Option<u64>,
1430 /// Max wall-clock for a *streaming-lane* response (a `#[handler(stream)]`
1431 /// route — SSE, chunked, agent token streaming), milliseconds. A client is
1432 /// connected but the body is written incrementally over seconds-to-minutes,
1433 /// so this is far larger than the sync ceiling. Runs on its own concurrency
1434 /// budget (`streaming_max_concurrency`), isolated from both the fast request
1435 /// pool and the async drain. Absent ⇒ 15 minutes.
1436 pub streaming_max_timeout_ms: Option<u64>,
1437 /// Max concurrent in-flight *streaming-lane* responses, kept separate from the
1438 /// request pool and the async drain so a burst of long-lived streams starves
1439 /// neither. Absent ⇒ 64.
1440 pub streaming_max_concurrency: Option<usize>,
1441 /// Optional CPU **fuel** ceiling for a streaming-lane response. Absent ⇒
1442 /// unmetered (a stream is I/O-bound on the client, not CPU-bound).
1443 pub streaming_max_fuel: Option<u64>,
1444 /// Optional ceiling on a guest's **outbound** `wasi:http` call — the connect
1445 /// and time-to-first-byte wait — milliseconds, independent of the invocation
1446 /// timeout, so a hung upstream is bounded on its own terms. The streaming
1447 /// (between-bytes) timeout is left at wasmtime's default so a slow token
1448 /// stream is not cut mid-flight. Absent ⇒ wasmtime's default.
1449 pub outbound_timeout_ms: Option<u64>,
1450}
1451
1452/// `handlers.bindings` — per-binding backend configuration. kv/blob reuse the
1453/// server's own KV/Storage backends (per-site prefixed); `sql` is the single
1454/// libsql backend, whose single-node-vs-cluster split is the only choice.
1455#[cfg_attr(not(feature = "handlers"), allow(dead_code))]
1456#[derive(Debug, Clone, Default, Deserialize)]
1457#[serde(default)]
1458pub struct BindingsConfig {
1459 /// `handlers.bindings.sql` — libsql settings. Absent ⇒ single-node,
1460 /// per-site embedded files under `<data-dir>/handlers-sql`.
1461 pub sql: Option<SqlBindingConfig>,
1462}
1463
1464/// libsql settings for the handler `sql` binding — the single SQL backend. Each
1465/// site gets a real database boundary (an embedded file per site, or a sqld
1466/// namespace per site), never schema separation (which arbitrary guest SQL
1467/// escapes). Setting `url` switches from single-node to a shared sqld cluster;
1468/// everything else stays identical.
1469#[cfg_attr(not(feature = "handlers"), allow(dead_code))]
1470#[derive(Debug, Clone, Default, Deserialize)]
1471#[serde(default)]
1472pub struct SqlBindingConfig {
1473 /// Single-node: root directory for the per-site embedded database files
1474 /// (default `<data-dir>/handlers-sql`). Ignored when `url` is set.
1475 pub dir: Option<PathBuf>,
1476 /// Cluster: base sqld data URL (e.g. `http://sqld:8080`). When set, each
1477 /// site is a sqld namespace addressed as a subdomain of this URL; `admin_url`
1478 /// is then required.
1479 pub url: Option<String>,
1480 /// Cluster: sqld admin API base URL (e.g. `http://sqld:9090`) for creating
1481 /// per-site namespaces. Required when `url` is set.
1482 pub admin_url: Option<String>,
1483 /// Cluster: optional sqld **read-replica** data URL. When set, handlers'
1484 /// read-only `sql` transactions (`open-read-only`) route to this endpoint
1485 /// while writes stay on `url` (reads → replicas, writes → primary).
1486 /// Reads may lag (eventually consistent). Ignored in
1487 /// single-node mode (no `url`).
1488 pub replica_url: Option<String>,
1489 /// Name of the env var holding the sqld data auth token (optional; never
1490 /// the token itself in-file).
1491 pub token_env: Option<String>,
1492 /// Name of the env var holding the sqld admin API auth key (optional).
1493 pub admin_token_env: Option<String>,
1494 /// How preview deployments get their SQL database: `empty` (default — a
1495 /// fresh isolated db), `branch` (a consistent copy of the site's live db;
1496 /// single-node only), or `shared` (the site's live db). See
1497 /// `boatramp_core::sql::PreviewSqlMode`.
1498 pub preview_mode: Option<String>,
1499 /// Path to an idempotent SQL script run when an `empty` preview database is
1500 /// first opened (e.g. schema/seed). Ignored in `branch`/`shared` modes.
1501 pub preview_init: Option<PathBuf>,
1502 /// `handlers.bindings.sql.databases` — external **bring-your-own** databases,
1503 /// each opened by name via `sql.open("<name>")`. An operator-configured
1504 /// Postgres/MySQL whose *isolation is the operator's* (it's their database),
1505 /// so these bypass the per-site libsql boundary and are reachable by any
1506 /// handler/function granted the `sql` binding. Needs the `sql-postgres` /
1507 /// `sql-mysql` build feature for the engine. A name here shadows the same
1508 /// name on the managed libsql default.
1509 pub databases: BTreeMap<String, ExternalDatabaseConfig>,
1510 /// **Soft-delete grace window** for a per-tenant managed database, in seconds
1511 /// (env `BOATRAMP_HANDLERS_SQL_DEPROVISION_GRACE_SECS`). When a project/site is
1512 /// deleted, a **Shared + Postgres** tenant is *soft*-deleted (its database is
1513 /// renamed aside and its role disabled) and stays recoverable for this long
1514 /// before a reaper hard-drops it — see
1515 /// [`tenant_sql`](crate::tenant_sql). `None` ⇒ the 7-day default
1516 /// (`DEFAULT_DEPROVISION_GRACE_SECS`); `0` ⇒ disable the soft path (immediate,
1517 /// irreversible hard drop everywhere). MySQL and all `Single` tenants always
1518 /// hard-drop immediately (the engine/cell can't be renamed aside safely), so this
1519 /// knob only affects the Shared-Postgres cell.
1520 pub deprovision_grace_secs: Option<u64>,
1521 /// **Trusted-extension allowlist** for the owner-gated schema-migration surface — the ONLY
1522 /// Postgres extensions a migration `Extension` step may enable (a name not here is refused
1523 /// fail-closed). A raw `sql` migration step may not `CREATE EXTENSION` at all, so this list is
1524 /// the single, operator-controlled gate on which extensions a project can install via
1525 /// migrations. Empty / `None` ⇒ no extension may be enabled through a migration (the safest
1526 /// default). Keep it tight (e.g. `["pgcrypto", "uuid-ossp", "citext"]`); an entry like
1527 /// `dblink`/`postgres_fdw` deliberately widens cross-database reach, so add those only knowingly.
1528 pub migrate_trusted_extensions: Option<Vec<String>>,
1529 /// **Per-project declared-database COUNT ceiling** (#501 Stage B MEDIUM-1 — the
1530 /// disk-exhaustion / errno-28 guard). The maximum number of `databases:` entries a
1531 /// single project may declare; a declare that would exceed it is refused fail-closed
1532 /// (a 422-class error). Each declared DB eagerly provisions a 10–200 GiB volume, so
1533 /// without this a `Project·Admin` could declare an unbounded number and exhaust the
1534 /// node's disk. `None` ⇒ the built-in default
1535 /// (`apply_db_caps::DEFAULT_MAX_DECLARED_DATABASES_PER_PROJECT`, 16); `0` ⇒ declaring
1536 /// any managed database is disabled on this node.
1537 pub max_declared_databases: Option<usize>,
1538 /// **Per-project aggregate declared-VOLUME ceiling**, in MiB (#501 Stage B
1539 /// MEDIUM-1). The maximum SUM of `volume_size_mib` across all of a project's declared
1540 /// databases; a declare whose incoming volume would push the project's total past
1541 /// this is refused fail-closed. `None` ⇒ the built-in default
1542 /// (`apply_db_caps::DEFAULT_MAX_DECLARED_VOLUME_MIB`, 512 GiB); `0` ⇒ disable managed
1543 /// declarations on this node (the aggregate can never fit a non-zero volume).
1544 pub max_declared_volume_mib: Option<u64>,
1545}
1546
1547/// One external SQL database for the handler `sql` binding. Its **source** is one
1548/// of two mutually-exclusive forms:
1549/// - `url_env` — a **bring-your-own** database: the connection URL is a secret,
1550/// named indirectly by an env var (never written in the config file).
1551/// - `compute` — a database **boatramp runs** as a compute workload: boatramp
1552/// derives the connection from the workload's live endpoint (host\:port) plus
1553/// the `database`/`user`/`password_env` here, so there is no URL to hand-map and
1554/// it follows the workload across restarts (PLAN-managed-compute-sql).
1555#[cfg_attr(not(feature = "handlers"), allow(dead_code))]
1556#[derive(Debug, Clone, Default, Deserialize)]
1557#[serde(default)]
1558pub struct ExternalDatabaseConfig {
1559 /// Engine: `postgres` (aliases `postgresql`/`pg`), `mysql` (alias
1560 /// `mariadb`), or `libsql` (aliases `sqlite`/`sqlite3`) — the embedded
1561 /// SQLite-compatible engine (single-node file, or a remote sqld primary via
1562 /// `url_env`). A `libsql` entry needs neither `compute` nor an external URL for
1563 /// the single-node case: it names an on-disk file via [`path`](Self::path).
1564 pub kind: String,
1565 /// Name of the env var holding the connection URL (e.g.
1566 /// `postgres://user:pw@host/db`). Required unless `compute` is set — or, for a
1567 /// single-node `libsql` database, unless `path` is set (an embedded file needs
1568 /// no URL/secret).
1569 pub url_env: String,
1570 /// Optional env var holding a **read-replica** connection URL. When set,
1571 /// `open-read-only` transactions route there; writes stay on `url_env`.
1572 pub read_url_env: Option<String>,
1573 /// Optional env var holding a **DDL/migration** connection URL for the
1574 /// **owner-role analog** of the schema-migration surface — a login that is
1575 /// DDL-capable *and distinct from the runtime binding user* (`user` /
1576 /// `url_env`). Its whole purpose is to keep migration DDL off the runtime
1577 /// tenant identity, mirroring the Postgres owner-role split (Postgres mints a
1578 /// per-tenant non-superuser owner role automatically; MySQL has no such role
1579 /// model, so the DDL identity must be supplied explicitly).
1580 ///
1581 /// **MySQL:** required to run schema migrations. Point it at an admin/DDL
1582 /// login (e.g. `mysql://root:…@host/db` or a purpose-made `_migrate` grant
1583 /// with `CREATE, ALTER, DROP, INDEX, REFERENCES` on the schema) that is **not**
1584 /// the runtime `user`. If it is unset (or resolves to the same identity as the
1585 /// runtime binding), migrate **refuses** fail-closed rather than run owner-DDL
1586 /// as the runtime tenant user — there is no owner/runtime split to fall back
1587 /// on. Ignored by the normal handler `sql` path; read only by the migration
1588 /// runner.
1589 ///
1590 /// **Postgres:** ignored — the per-project non-superuser owner role +
1591 /// its sealed credential are minted automatically at provision, so no
1592 /// operator-supplied DDL URL is needed (a set value is harmless and unused).
1593 pub migration_url_env: Option<String>,
1594 /// The name of a **compute workload** (a Postgres/MySQL server boatramp runs)
1595 /// to source this database from, instead of `url_env`. boatramp resolves the
1596 /// workload's live endpoint and builds the connection. Mutually exclusive with
1597 /// `url_env`.
1598 ///
1599 /// **Reserved prefix (#501 Stage B LOW-2):** do NOT name a static workload with the
1600 /// `bramp-db-` prefix — it is reserved for the per-project managed-database servers
1601 /// boatramp derives for declarative `databases:` entries
1602 /// (`boatramp_storage::tenant_provision::DERIVED_MANAGED_DB_PREFIX`). A `bramp-db-…`
1603 /// value here is refused fail-closed at config load
1604 /// ([`ConfigError::InvalidDbName`](crate::config::ConfigError::InvalidDbName)).
1605 pub compute: Option<String>,
1606 /// The database name inside the compute-backed server (non-secret).
1607 pub database: Option<String>,
1608 /// The connecting user for the compute-backed server (non-secret).
1609 pub user: Option<String>,
1610 /// Env var holding the password for `user` on the compute-backed server.
1611 /// **Omit to let boatramp fully manage the credential** (PLAN-managed-compute-sql
1612 /// Phase 2): it generates a strong password once, seals it with the `[secrets]`
1613 /// envelope, injects it into the DB workload's server-init env at launch, and
1614 /// connects the handler with it — the operator sets no DB secret at all. Set it
1615 /// only to bring your own password for the compute-backed server.
1616 pub password_env: Option<String>,
1617 /// Maximum pooled connections (default 8).
1618 pub pool_max: Option<u32>,
1619 /// Open every transaction `READ ONLY` (the engine rejects writes) — for a
1620 /// database functions should only read.
1621 pub read_only: bool,
1622 /// Permit **preview** deployments to reach this database. Default `false`: a
1623 /// preview is refused, so it can never touch the operator's live external DB.
1624 pub allow_preview: bool,
1625 /// Connection/acquire timeout in seconds (default 10).
1626 pub connect_timeout_secs: Option<u64>,
1627 /// The stock OCI image for a **managed co-located** database (`compute` set, no
1628 /// `password_env`). When omitted, boatramp auto-registers the workload from the
1629 /// engine's default image (`pgvector/pgvector:pg16` for postgres, `mysql:8.0`
1630 /// for mysql). Ignored for a bring-your-own (`url_env`) database.
1631 pub image: Option<String>,
1632 /// The persistent data-volume size in MiB for a **managed co-located** database
1633 /// (default 10240 = 10 GiB). Ignored for a bring-your-own database.
1634 pub volume_size_mib: Option<u32>,
1635 /// Startup grace (seconds) for a **managed co-located** database: how long a
1636 /// freshly launched server has to finish its first `initdb` before the reconcile
1637 /// loop treats a still-unhealthy replica as a broken launch to stop + relaunch.
1638 /// When set it overrides the engine default the synthesizer picks (Postgres 60,
1639 /// MySQL 120). Omit to use that default. Ignored for a bring-your-own database.
1640 pub startup_grace_secs: Option<u32>,
1641 /// **Isolation mechanism** for a compute-backed managed database (2×2 axis 1).
1642 /// `single` (default) — a *dedicated* database server (its own container) per
1643 /// tenant; `shared` — *one* server hosting a permission-separated database + role
1644 /// per tenant. Ignored for a bring-your-own (`url_env`) database.
1645 pub tenant: TenantIsolation,
1646 /// **Tenant grain** for a compute-backed managed database (2×2 axis 2). `project`
1647 /// (default) — a tenant is a project; `site` — a tenant is a site. A tenant may
1648 /// hold several databases (one per binding that names it); it gets one login role
1649 /// and sealed credential per (tenant, server), granted on all its own databases
1650 /// and none of another tenant's. The reserved `default` project uses the plain
1651 /// configured name, so a single-tenant install is just one ordinary database.
1652 pub tenant_scope: TenantScope,
1653 /// **Opt-in** (default `false`): inject the request's `boatramp.project` /
1654 /// `boatramp.site` into the SQL session at each transaction start (Postgres
1655 /// `set_config` GUC, MySQL session var), so hand-written **native RLS** policies
1656 /// can key on them per-request. The GraphQL data connector's row-level policy is
1657 /// claim-sourced and needs nothing here; this is for hand-rolled RLS on the plain
1658 /// `sql.open` path (Postgres — the engine with native row-level security).
1659 ///
1660 /// # Trust model — read before relying on this for isolation
1661 ///
1662 /// `rls_session` **provides** the request's tenant to the SQL session for an app's
1663 /// RLS to key on. It is **not** a general hostile-guest boundary:
1664 ///
1665 /// - The reserved keys (`boatramp.*` / `@boatramp_*`) are **protected** from guest
1666 /// override — a handler statement that tries to `set_config('boatramp.…', …)` /
1667 /// `SET boatramp.… ` / `SET @boatramp_… ` (or `RESET`/`DISCARD` them) is refused,
1668 /// so a guest cannot spoof its injected tenant.
1669 /// - But the **real tenant-isolation boundary** is the **per-tenant database +
1670 /// role** (`tenant = single` / `shared`), which a compromised handler cannot
1671 /// cross regardless of what it does in-session. `rls_session` is a convenience
1672 /// for app-authored RLS *within* a tenant's own database, layered on top of that
1673 /// boundary — not a substitute for it.
1674 /// - For untrusted data, prefer **claim-sourced** enforcement (the GraphQL data
1675 /// connector's row-level policy), which derives the tenant from the verified
1676 /// request, not from anything the handler's SQL can influence.
1677 pub rls_session: bool,
1678 /// The Postgres session GUC name an app's RLS policies read for the host-resolved **tenant**
1679 /// (e.g. `app.tenant_id`), set per request/write on the `rls_session` path so RLS mirrors
1680 /// boatramp's injected predicate as a defense-in-depth backstop (v0.4.20). Only honored when
1681 /// `rls_session` is on and the backend is Postgres. `None` ⇒ not exposed (today's behavior).
1682 /// The guest can never set this GUC itself (its namespace becomes reserved).
1683 #[serde(default)]
1684 pub tenant_guc: Option<String>,
1685 /// The session GUC name for the anonymous **session** axis (e.g. `app.session_id`), the
1686 /// disjoint-column sibling of `tenant_guc` for `TenantOrSession` tables. `None` ⇒ not exposed.
1687 #[serde(default)]
1688 pub session_guc: Option<String>,
1689 /// A reserved sentinel value written to `tenant_guc` on an **`all`-scoped READ** (v0.4.21), so a
1690 /// table that opts in with `USING (… OR current_setting(tenant_guc, true) = '<marker>')` opens
1691 /// cross-tenant for the audited `all` twins. Pick a value that can **never** be a real tenant id
1692 /// (e.g. `*` or `__all__`). Only honored with `tenant_guc` set + `rls_session` on + Postgres.
1693 /// `None`/empty ⇒ `all` reads leave the GUC untouched (v0.4.20 fail-closed behavior). The guest
1694 /// can never set it — the `tenant_guc` namespace is already reserved against guest writes.
1695 #[serde(default)]
1696 pub tenant_all_marker: Option<String>,
1697 /// The on-disk file path for a single-node **`libsql`** database (`kind: "libsql"`), e.g.
1698 /// `/data/app.db`. The parent directory is created if absent. Used only by the embedded engine;
1699 /// ignored for `postgres`/`mysql` and for a remote-sqld `libsql` binding (which uses `url_env`).
1700 /// A `libsql` entry sets exactly one of `path` (single-node file) or `url_env` (remote sqld).
1701 #[serde(default)]
1702 pub path: Option<PathBuf>,
1703}
1704
1705/// How a managed compute-backed database is physically isolated per tenant (2×2 axis
1706/// 1). `Single` = a dedicated server (container) per tenant (isolation by separate
1707/// process); `Shared` = one server with a per-tenant database + login role (isolation
1708/// by grants — Postgres `REVOKE CONNECT FROM PUBLIC` + owner grant; MySQL per-schema
1709/// grant), so a tenant's role cannot connect to another tenant's database.
1710#[cfg_attr(not(feature = "handlers"), allow(dead_code))]
1711#[derive(Debug, Clone, Copy, PartialEq, Eq, Default, Deserialize)]
1712#[serde(rename_all = "lowercase")]
1713pub enum TenantIsolation {
1714 /// A dedicated database server (its own container) per tenant. The default.
1715 #[default]
1716 Single,
1717 /// One shared server hosting a per-tenant database + role (grant-isolated).
1718 Shared,
1719}
1720
1721/// The grain of a tenant for a managed compute-backed database (2×2 axis 2) —
1722/// `Project` (default) or `Site`. The two grains are parallel; the isolation
1723/// mechanism is [`TenantIsolation`].
1724#[cfg_attr(not(feature = "handlers"), allow(dead_code))]
1725#[derive(Debug, Clone, Copy, PartialEq, Eq, Default, Deserialize)]
1726#[serde(rename_all = "lowercase")]
1727pub enum TenantScope {
1728 /// A tenant is a **project** (the default).
1729 #[default]
1730 Project,
1731 /// A tenant is a **site** (finer than project).
1732 Site,
1733}
1734
1735impl ExternalDatabaseConfig {
1736 /// Validate the source is well-formed: **exactly one** of `url_env` /
1737 /// `compute`, and a `compute`-backed database has the connection details
1738 /// boatramp can't infer (`database` + `user`). `password_env` is **optional** —
1739 /// omit it to let boatramp manage the credential (Phase 2). `name` is the
1740 /// binding name, for the error message.
1741 #[cfg_attr(not(feature = "handlers"), allow(dead_code))]
1742 pub fn validate(&self, name: &str) -> Result<(), String> {
1743 let has_url = !self.url_env.is_empty();
1744 let has_compute = self.compute.as_deref().is_some_and(|c| !c.is_empty());
1745 let has_path = self
1746 .path
1747 .as_deref()
1748 .is_some_and(|p| !p.as_os_str().is_empty());
1749
1750 // A `libsql`/`sqlite` entry is the embedded engine: single-node via `path`, or remote sqld
1751 // via `url_env` — never `compute` (boatramp doesn't run a libsql server workload). Validate
1752 // it on its own axis (exactly one of `path` / `url_env`), and reject `path` on the external
1753 // engines (a Postgres/MySQL binding has no on-disk file).
1754 let is_libsql = matches!(
1755 self.kind.trim().to_ascii_lowercase().as_str(),
1756 "libsql" | "sqlite" | "sqlite3"
1757 );
1758 if is_libsql {
1759 if has_compute {
1760 return Err(format!(
1761 "sql database {name:?}: a `libsql` database is the embedded engine — set `path` \
1762 (single-node file) or `url_env` (remote sqld), not `compute`"
1763 ));
1764 }
1765 return match (has_path, has_url) {
1766 (true, true) => Err(format!(
1767 "sql database {name:?}: a `libsql` database sets exactly one of `path` \
1768 (single-node file) or `url_env` (remote sqld), not both"
1769 )),
1770 (false, false) => Err(format!(
1771 "sql database {name:?}: a `libsql` database needs a source — set `path` \
1772 (single-node file) or `url_env` (remote sqld)"
1773 )),
1774 _ => Ok(()),
1775 };
1776 }
1777 if has_path {
1778 return Err(format!(
1779 "sql database {name:?}: `path` is only valid for a `libsql` database (the embedded \
1780 engine); a {} binding uses `url_env` or `compute`",
1781 self.kind
1782 ));
1783 }
1784
1785 match (has_url, has_compute) {
1786 (true, true) => Err(format!(
1787 "sql database {name:?}: set exactly one of `url_env` or `compute`, not both"
1788 )),
1789 (false, false) => Err(format!(
1790 "sql database {name:?}: needs a source — set `url_env` (bring-your-own) or \
1791 `compute` (a database boatramp runs)"
1792 )),
1793 (false, true) => {
1794 // `database` + `user` are non-secret and can't be inferred; a missing
1795 // `password_env` is *not* an error — it selects the managed credential.
1796 for (field, val) in [("database", &self.database), ("user", &self.user)] {
1797 if val.as_deref().is_none_or(str::is_empty) {
1798 return Err(format!(
1799 "sql database {name:?}: a `compute`-backed database requires `{field}`"
1800 ));
1801 }
1802 }
1803 Ok(())
1804 }
1805 (true, false) => Ok(()),
1806 }
1807 }
1808
1809 /// Whether this compute-backed database uses a **boatramp-managed** credential
1810 /// (Phase 2): `compute` is set and no `password_env` was supplied.
1811 #[cfg_attr(not(feature = "handlers"), allow(dead_code))]
1812 pub fn is_managed_credential(&self) -> bool {
1813 self.compute.as_deref().is_some_and(|c| !c.is_empty())
1814 && self.password_env.as_deref().is_none_or(str::is_empty)
1815 }
1816}
1817
1818/// The signing algorithm for a signer that can choose one (`Local`, `Vault`,
1819/// `Pkcs11`). ES256 is the portable default; the cloud KMS backends are ES256-only
1820/// and ignore this. Written as a RON enum: `alg: Es256` / `alg: Ed25519`.
1821#[derive(Debug, Clone, Copy, Default, Deserialize)]
1822pub enum SignerAlg {
1823 /// ECDSA P-256 (COSE ES256) — the default.
1824 #[default]
1825 Es256,
1826 /// Ed25519 (COSE EdDSA).
1827 Ed25519,
1828}
1829
1830impl SignerAlg {
1831 fn to_token_alg(self) -> boatramp_core::cose::TokenAlg {
1832 match self {
1833 Self::Es256 => boatramp_core::cose::TokenAlg::Es256,
1834 Self::Ed25519 => boatramp_core::cose::TokenAlg::Ed25519,
1835 }
1836 }
1837}
1838
1839/// External token signer selector (`serve.signer`). Maps to
1840/// [`boatramp_server::signer::SignerConfig`]; secrets (tokens/PINs) are resolved
1841/// from the named env vars at startup, never stored in config. Written as a RON
1842/// enum — `signer: Vault(...)`, `signer: AwsKms(...)`, `signer: Pkcs11(...)`, ….
1843#[derive(Debug, Clone, Deserialize)]
1844#[serde(deny_unknown_fields)]
1845pub enum AuthSignerConfig {
1846 /// In-process key (`"<alg>:<hex>"`).
1847 Local {
1848 /// The private key spec, `"<alg>:<hex>"`.
1849 private_key: String,
1850 },
1851 /// HashiCorp Vault Transit key.
1852 Vault {
1853 /// Vault base address.
1854 address: String,
1855 /// The Transit key name.
1856 key: String,
1857 /// Env var holding the Vault token.
1858 token_env: String,
1859 /// The key algorithm.
1860 #[serde(default)]
1861 alg: SignerAlg,
1862 },
1863 /// AWS KMS asymmetric key (ES256).
1864 AwsKms {
1865 /// The KMS key id or ARN.
1866 key_id: String,
1867 /// Optional region override.
1868 #[serde(default)]
1869 region: Option<String>,
1870 },
1871 /// GCP Cloud KMS key version (ES256).
1872 GcpKms {
1873 /// The key-version resource name.
1874 key_version: String,
1875 /// Env var holding a GCP OAuth2 access token.
1876 access_token_env: String,
1877 },
1878 /// Azure Key Vault key (ES256).
1879 AzureKv {
1880 /// The vault base URL.
1881 vault_url: String,
1882 /// The key name.
1883 key: String,
1884 /// The key version.
1885 key_version: String,
1886 /// Env var holding an Azure AD access token.
1887 access_token_env: String,
1888 },
1889 /// PKCS#11 HSM key.
1890 Pkcs11 {
1891 /// Path to the PKCS#11 module.
1892 module: String,
1893 /// The token label.
1894 token_label: String,
1895 /// The key's `CKA_LABEL`.
1896 key_label: String,
1897 /// Env var holding the user PIN.
1898 pin_env: String,
1899 /// The key algorithm.
1900 #[serde(default)]
1901 alg: SignerAlg,
1902 },
1903}
1904
1905impl AuthSignerConfig {
1906 /// Map the config-file form to the server's runtime [`SignerConfig`].
1907 pub fn to_signer_config(&self) -> boatramp_server::signer::SignerConfig {
1908 use boatramp_server::signer::SignerConfig;
1909 match self {
1910 Self::Local { private_key } => SignerConfig::Local {
1911 private_key: private_key.clone(),
1912 },
1913 Self::Vault {
1914 address,
1915 key,
1916 token_env,
1917 alg,
1918 } => SignerConfig::Vault {
1919 address: address.clone(),
1920 key: key.clone(),
1921 token_env: token_env.clone(),
1922 alg: alg.to_token_alg(),
1923 },
1924 Self::AwsKms { key_id, region } => SignerConfig::AwsKms {
1925 key_id: key_id.clone(),
1926 region: region.clone(),
1927 },
1928 Self::GcpKms {
1929 key_version,
1930 access_token_env,
1931 } => SignerConfig::GcpKms {
1932 key_version: key_version.clone(),
1933 access_token_env: access_token_env.clone(),
1934 },
1935 Self::AzureKv {
1936 vault_url,
1937 key,
1938 key_version,
1939 access_token_env,
1940 } => SignerConfig::AzureKv {
1941 vault_url: vault_url.clone(),
1942 key: key.clone(),
1943 key_version: key_version.clone(),
1944 access_token_env: access_token_env.clone(),
1945 },
1946 Self::Pkcs11 {
1947 module,
1948 token_label,
1949 key_label,
1950 pin_env,
1951 alg,
1952 } => SignerConfig::Pkcs11 {
1953 module: module.clone(),
1954 token_label: token_label.clone(),
1955 key_label: key_label.clone(),
1956 pin_env: pin_env.clone(),
1957 alg: alg.to_token_alg(),
1958 },
1959 }
1960 }
1961}
1962
1963/// `serve` section — server defaults, overridden by flags/env.
1964#[derive(Debug, Clone, Default, Deserialize)]
1965#[serde(default)]
1966pub struct ServeConfig {
1967 /// Bind address (e.g. `0.0.0.0:8080`).
1968 pub addr: Option<SocketAddr>,
1969 /// Data directory for filesystem backends.
1970 pub data_dir: Option<PathBuf>,
1971 /// Blob object-store backend (`fs`/`s3`/`gcs`/`azure`) — the config-level analog of the
1972 /// `--blobs` flag. Absent ⇒ the flag/env decides (`--blobs`/`BOATRAMP_BLOBS`, default `fs`).
1973 /// The flag/env still wins over this (uniform `serve` precedence). Read primarily by `boatramp
1974 /// blob migrate`, which builds a source/destination backend from a config file alone; `serve`
1975 /// also honours it as the config-level fallback under the flag.
1976 pub blobs: Option<crate::backends::BlobBackend>,
1977 /// S3 bucket (`--blobs s3`). Config-level fallback for `--s3-bucket`/`BOATRAMP_S3_BUCKET`.
1978 pub s3_bucket: Option<String>,
1979 /// S3 endpoint URL (e.g. a MinIO/R2/Tigris endpoint). Fallback for `--s3-endpoint`.
1980 pub s3_endpoint: Option<String>,
1981 /// S3 region. Fallback for `--s3-region`.
1982 pub s3_region: Option<String>,
1983 /// Use S3 path-style addressing (required by MinIO). Fallback for `--s3-path-style`.
1984 pub s3_path_style: bool,
1985 /// GCS bucket (`--blobs gcs`). Fallback for `--gcs-bucket`.
1986 pub gcs_bucket: Option<String>,
1987 /// GCS storage endpoint URL (e.g. a `fake-gcs-server` emulator). Fallback for `--gcs-endpoint`.
1988 pub gcs_endpoint: Option<String>,
1989 /// Skip GCS credential resolution (anonymous — the emulator). Fallback for `--gcs-anonymous`.
1990 pub gcs_anonymous: bool,
1991 /// Azure storage account name (`--blobs azure`). Fallback for `--azure-account`.
1992 pub azure_account: Option<String>,
1993 /// Azure container name (`--blobs azure`). Fallback for `--azure-container`.
1994 pub azure_container: Option<String>,
1995 /// Azure storage account access key (shared-key auth). Fallback for `--azure-access-key`.
1996 /// Prefer the env/flag over persisting a key in the config file.
1997 pub azure_access_key: Option<String>,
1998 /// Use the Azurite emulator (well-known dev credentials + local endpoint). Fallback for
1999 /// `--azure-emulator`.
2000 pub azure_emulator: bool,
2001 /// `[serve.blob_fallback]` — a **read-only SECONDARY blob backend** for a zero-downtime
2002 /// backend switch (blob-backend migration Part 2). When set, serving reads the PRIMARY (the
2003 /// `blobs`/`s3_*`/`gcs_*`/`azure_*` fields above) first and, on a definitive miss for a
2004 /// boatramp-owned key, falls through to this secondary — so a `--blobs` switch (fs→cloud,
2005 /// provider→provider, region→region) has no serving gap while `boatramp blob migrate` drains
2006 /// the secondary into the primary. **Writes are primary-only**; the secondary is never written
2007 /// or deleted. This is a **bounded transition aid**: drain, verify, then remove this block and
2008 /// restart (the node logs a prominent startup WARNING while it is active, and GC prune is
2009 /// refused). Absent ⇒ no fallback (unchanged). See [`BlobFallbackConfig`].
2010 pub blob_fallback: Option<BlobFallbackConfig>,
2011 /// Token root **private** key (hex) — issuing node: verifies *and* mints
2012 /// tokens / OIDC exchanges.
2013 pub auth_root_private_key: Option<String>,
2014 /// Token root **public** key (hex) — verify-only node.
2015 pub auth_root_public_key: Option<String>,
2016 /// Single-use bootstrap secret enabling `POST /api/tokens/bootstrap` (mint the
2017 /// first token without an admin bearer). Prefer the `BOATRAMP_BOOTSTRAP_SECRET`
2018 /// env / `--bootstrap-secret` flag so it isn't persisted in the config file.
2019 pub bootstrap_secret: Option<String>,
2020 /// External token signer (`[serve.signer]`): mint with a
2021 /// KMS/HSM/Vault-held root key instead of an in-process `auth_root_private_key`.
2022 /// Absent ⇒ the in-process key. When set, its public half is the trust anchor.
2023 pub signer: Option<AuthSignerConfig>,
2024 /// Reject blob uploads larger than this many bytes.
2025 pub max_upload_bytes: Option<u64>,
2026 /// Abort an upload that stalls for longer than this many seconds.
2027 pub upload_idle_timeout_secs: Option<u64>,
2028 /// Cap on simultaneous blob uploads.
2029 pub max_concurrent_uploads: Option<usize>,
2030 /// In a TLS mode, bind this plain-HTTP address on a second listener that
2031 /// redirects to HTTPS (dual-listener). Only read in `tls` builds.
2032 #[cfg_attr(not(feature = "tls"), allow(dead_code))]
2033 pub http_redirect_addr: Option<SocketAddr>,
2034 /// Site to serve for a `Host` matching no domain, instead of 404.
2035 pub default_site: Option<String>,
2036 /// The fleet's canonical public origin (e.g. `https://cp.example.com`) that a
2037 /// per-request proof-of-possession must bind to (`aud`). Required for
2038 /// holder-bound (`cnf`/PoP) tokens to be usable — a proof's origin is compared
2039 /// against this value, never against a `Host`/`X-Forwarded-*` header.
2040 pub pop_origin: Option<String>,
2041 /// Require a valid control-plane token to view deployment previews.
2042 pub protect_previews: bool,
2043 /// Rate-limit cluster-wide via the control-plane KV instead of per node.
2044 pub cluster_rate_limit: bool,
2045 /// Keep the config cache coherent across processes sharing one KV via the
2046 /// changelog.
2047 pub shared_cache_coherence: bool,
2048 /// Cloud blob-change notification provisioning tier (FA-5b2): how boatramp
2049 /// obtains the native event pipeline (S3→SQS) that backs a `blob` trigger —
2050 /// `dry-run` (print the recipe), `provision` (create + retract), `verify-only`
2051 /// (operator pre-wired), or `refuse` (fail closed). Absent ⇒ no provisioning:
2052 /// `blob` triggers then work only on a self-watching backend (fs). Only wired
2053 /// for the S3 backend (`--features s3`).
2054 pub blob_notify_tier: Option<boatramp_core::blob_notify::ProvisionTier>,
2055 /// The AWS account id used to scope the provisioned SQS queue's `SendMessage`
2056 /// policy (`aws:SourceAccount`). Required when `blob_notify_tier` provisions.
2057 pub blob_notify_account_id: Option<String>,
2058 /// `[serve.console]` — the embedded web management console. Absent (or
2059 /// `enabled: false`) ⇒ not served. This is the **baseline** for the dynamic
2060 /// `console.*` daemon-config override, which can enable/move it at runtime
2061 /// (`boatramp config set console.enabled true`) without a restart.
2062 pub console: Option<ConsoleConfig>,
2063 /// Bind address for the **dedicated local S3-ingress listener** (PLAN-blob-s3-ingress,
2064 /// Architect HIGH-4). Absent ⇒ the local S3 face is NOT served (it is opt-in — a deployment that
2065 /// only mints cloud-brokered credentials never needs it). This is a SEPARATE listener from the
2066 /// control-plane `addr`: it has its own SigV4 auth surface and never reaches `serve_by_host` or
2067 /// the `/api` router.
2068 pub s3_ingress_addr: Option<SocketAddr>,
2069 /// Path to the **dedicated S3-ingress root secret** file (raw 32 bytes) — the independently-
2070 /// rotatable HKDF root for `secret_access_key` derivation (hard domain separation from the
2071 /// `[secrets]` KEK + the COSE signing key). Like `[secrets].kek_file`, this holds a *path*, never
2072 /// key material in the config text, and (in a cluster) the **same file must be present on every
2073 /// node** so every node derives the same `secret_access_key`. Absent on a single node ⇒ an
2074 /// ephemeral per-process root is auto-generated; absent on a **multi-node** deployment ⇒ the S3
2075 /// face is refused to enable (fail-closed — credentials would otherwise be un-verifiable across
2076 /// nodes). Prefer the `BOATRAMP_S3_INGRESS_SECRET_FILE` env / flag so the path stays out of the
2077 /// committed config where that matters operationally.
2078 pub s3_ingress_secret_file: Option<PathBuf>,
2079 /// The publicly-reachable base URL an external client targets for the local S3 face — what a
2080 /// **minted** upload credential (`boatramp:handlers/blob-upload` guest mint / `boatramp blob
2081 /// mint-upload` operator) embeds as its endpoint (a presigned-put URL prefix, or the SDK endpoint
2082 /// for temp-credentials). Absent ⇒ derived from `s3_ingress_addr` as `http://<addr>` (fine for a
2083 /// same-host dev/test loop; set it explicitly to the TLS-terminated public URL in production).
2084 /// Only consulted when guest/operator upload minting is wired (`blob-upload` feature + the face
2085 /// enabled).
2086 pub s3_ingress_public_url: Option<String>,
2087 /// Operator ceiling (seconds) on a minted upload credential's TTL — a guest/operator can only
2088 /// request a SHORTER lifetime (the mint clamps to this). Absent ⇒ a conservative default
2089 /// ([`DEFAULT_S3_INGRESS_MINT_MAX_TTL_SECS`]). A `0` disables minting entirely (the binding is
2090 /// never attached).
2091 pub s3_ingress_mint_max_ttl_secs: Option<u64>,
2092 /// Operator ceiling (bytes) on a minted credential's `max_bytes` constraint — a guest can only
2093 /// request a SMALLER cap (clamped to this). Absent ⇒ no host-side max-bytes clamp (the per-container
2094 /// ceiling at the face still applies).
2095 pub s3_ingress_mint_max_bytes: Option<u64>,
2096 /// **Cloud brokering** (M4): when the node's blob backend is a cloud object store (S3/GCS/Azure)
2097 /// and this is set, minting brokers a NATIVE scoped credential (STS session policy / signed URL +
2098 /// CAB / user-delegation SAS) so the client uploads DIRECTLY to the real store (bytes never transit
2099 /// the node) — INSTEAD of the local S3 face. Absent ⇒ the local face is used (an fs/in-memory
2100 /// backend, or a cloud backend that re-transits through the local face). See [`S3IngressCloud`].
2101 pub s3_ingress_cloud: Option<S3IngressCloud>,
2102 /// **Node-level base S3 credential source** (`[serve.s3_credential]`, task #505). When set, BOTH the
2103 /// S3 blob **object backend** (`--blobs s3`) and the AWS blob-upload **cloud minter**
2104 /// (`[serve.s3_ingress_cloud]`) source their base AWS credential from boatramp's `[secrets]` sealed
2105 /// store instead of the ambient `AWS_ACCESS_KEY_ID`/`AWS_SECRET_ACCESS_KEY` env chain. ONE shared
2106 /// source (both consumers read the SAME bucket key). Absent ⇒ the ambient AWS env chain (current
2107 /// behavior, non-breaking). Requires a `[secrets]` envelope when the `secret_access_key` is a sealed
2108 /// `boatramp:`/`env:` ref — a configured ref with no envelope is a **startup error** (fail-closed, no
2109 /// silent env fallback). See [`S3CredentialConfig`].
2110 pub s3_credential: Option<S3CredentialConfig>,
2111}
2112
2113/// `[serve.s3_credential]` — a **node-level base S3 credential source** (#505) sourcing the base AWS
2114/// credential from boatramp's `[secrets]` sealed store rather than the ambient env chain. Consumed by
2115/// BOTH the S3 blob object backend and the AWS blob-upload cloud minter (one shared source, since it is
2116/// the same bucket key). Additive/non-breaking: absent ⇒ the ambient AWS env chain (unchanged).
2117///
2118/// The `access_key_id` is a public identifier (plain config). The `secret_access_key` is a **secret
2119/// reference** in the same scheme the guest `secrets` map uses: `boatramp:<name>` (the project-scoped
2120/// sealed store, resolved under the reserved default project — multi-tenant-safe, never the host env),
2121/// `env:<VAR>` / a bare `<VAR>` (the operator's own environment — honored only when the posture's
2122/// `allow_env_secret_refs` is set), unsealed at serve startup via the `[secrets]` [`KeyEnvelope`]. The
2123/// resolved plaintext is held **in memory only** (never env/argv/git/logs); see the redacted
2124/// `SealedS3Credential` the resolver produces.
2125#[derive(Debug, Clone, Default, serde::Serialize, serde::Deserialize)]
2126#[serde(deny_unknown_fields)]
2127pub struct S3CredentialConfig {
2128 /// The AWS **access key id** — a public identifier, not a secret, so it is plain config (mirrors
2129 /// how an `access_key_id` is a public value in the S3-ingress credential model). Empty is refused
2130 /// at resolution.
2131 pub access_key_id: String,
2132 /// The **secret access key**, expressed as a secret **reference** (never the raw secret in the
2133 /// config text): `boatramp:<name>` (the project-scoped sealed store), `env:<VAR>` or a bare `<VAR>`
2134 /// (the operator env, posture-gated by `allow_env_secret_refs`). Unsealed at startup via the
2135 /// `[secrets]` envelope; the resolved value is redacted from `Debug`/logs. A `boatramp:`/`env:`
2136 /// ref configured with NO `[secrets]` envelope is a fail-closed startup error.
2137 pub secret_access_key: String,
2138}
2139
2140/// `[serve.blob_fallback]` — a **read-only SECONDARY blob backend** for a zero-downtime backend switch
2141/// (blob-backend migration Part 2). Same backend-descriptor shape as the PRIMARY (`[serve]`'s
2142/// `blobs`/`s3_*`/`gcs_*`/`azure_*` fields) so a source/dest is fully described by config, plus its OWN
2143/// optional `s3_credential` (the secondary can source its base S3 credential from the sealed `[secrets]`
2144/// store via its own `boatramp:`/`env:` ref, #505). Constructed exactly like the primary but with NO
2145/// watcher provisioning (a read-only drain source never watches). Serving wraps
2146/// `FallbackStorage::new(primary, secondary, …)` so a primary miss on a boatramp-owned key falls through
2147/// to this secondary; writes/deletes are primary-only.
2148///
2149/// The secondary is **never** handed to the blob-upload/STS minter — external ingress mints against the
2150/// PRIMARY only (the new backend the client should upload to), so this credential never reaches the
2151/// minter path.
2152#[derive(Debug, Clone, Default, Deserialize)]
2153#[serde(deny_unknown_fields)]
2154pub struct BlobFallbackConfig {
2155 /// The secondary blob backend (`fs`/`s3`/`gcs`/`azure`) — the OLD backend to fall back to on a
2156 /// primary miss. Absent ⇒ `fs` (the default, matching the primary's `blobs` default).
2157 pub blobs: Option<crate::backends::BlobBackend>,
2158 /// S3 bucket (secondary `blobs = s3`).
2159 pub s3_bucket: Option<String>,
2160 /// S3 endpoint URL (a MinIO/R2/Tigris endpoint) for the secondary.
2161 pub s3_endpoint: Option<String>,
2162 /// S3 region for the secondary.
2163 pub s3_region: Option<String>,
2164 /// Use S3 path-style addressing (MinIO) for the secondary.
2165 #[serde(default)]
2166 pub s3_path_style: bool,
2167 /// The secondary's OWN node-level sealed base S3 credential source (#505) — resolved through the
2168 /// SAME `resolve_s3_credential` path as the primary (same fail-closed posture, no second parser).
2169 /// Absent ⇒ the ambient AWS env chain (unchanged).
2170 pub s3_credential: Option<S3CredentialConfig>,
2171 /// GCS bucket (secondary `blobs = gcs`).
2172 pub gcs_bucket: Option<String>,
2173 /// GCS storage endpoint URL (a `fake-gcs-server` emulator) for the secondary.
2174 pub gcs_endpoint: Option<String>,
2175 /// Skip GCS credential resolution (anonymous — the emulator) for the secondary.
2176 #[serde(default)]
2177 pub gcs_anonymous: bool,
2178 /// Azure storage account name (secondary `blobs = azure`).
2179 pub azure_account: Option<String>,
2180 /// Azure container name for the secondary.
2181 pub azure_container: Option<String>,
2182 /// Azure storage account access key (shared-key auth) for the secondary.
2183 pub azure_access_key: Option<String>,
2184 /// Use the Azurite emulator for the secondary.
2185 #[serde(default)]
2186 pub azure_emulator: bool,
2187 /// Bound (seconds) on each secondary read so a wedged secondary degrades a primary miss to
2188 /// `NotFound` instead of hanging the serve path. Absent ⇒ [`DEFAULT_BLOB_FALLBACK_TIMEOUT_SECS`].
2189 pub secondary_timeout_secs: Option<u64>,
2190}
2191
2192/// Default bound (seconds) on a `[serve.blob_fallback]` secondary read when
2193/// `secondary_timeout_secs` is unset: 5s — long enough for a cloud round-trip, short enough that a
2194/// wedged secondary degrades a primary miss to `NotFound` promptly rather than hanging serving.
2195pub const DEFAULT_BLOB_FALLBACK_TIMEOUT_SECS: u64 = 5;
2196
2197/// `[serve.s3_ingress_cloud]` — the cloud-brokering knobs for the M4 blob-upload minter (which native
2198/// credential the mint brokers when the node's blob backend is a cloud object store). Only the fields
2199/// for the active blob backend are consulted; a `None` here ⇒ the local S3 face mints.
2200#[derive(Debug, Clone, Default, serde::Serialize, serde::Deserialize)]
2201pub struct S3IngressCloud {
2202 /// **AWS**: the IAM role ARN the base credential assumes to broker the scoped session-policy
2203 /// credential (`sts:AssumeRole`, the default). Absent AND `aws_use_federation_token = true` ⇒
2204 /// `sts:GetFederationToken` is used instead (for an IAM-user base credential).
2205 pub aws_role_arn: Option<String>,
2206 /// **AWS**: use `sts:GetFederationToken` instead of `AssumeRole` (IAM-user deployments). Requires
2207 /// the base credential to be a real IAM user, not itself a session.
2208 #[serde(default)]
2209 pub aws_use_federation_token: bool,
2210 /// **GCS**: the service-account client email whose V4 signed URLs / IAM-signed uploads the minter
2211 /// produces (used in the signing scope). Absent ⇒ resolved from ADC.
2212 pub gcs_client_email: Option<String>,
2213 /// **Azure**: the storage account name (for the SAS signature + the blob URL). Absent ⇒ taken from
2214 /// the `azure_account` blob-backend arg.
2215 pub azure_account: Option<String>,
2216 /// **Azure**: the blob service URL (`https://{account}.blob.core.windows.net/`). Absent ⇒ derived
2217 /// from the account name.
2218 pub azure_service_url: Option<String>,
2219 /// **Azure**: declare the storage account has a **hierarchical namespace** (HNS/ADLS-Gen2). A
2220 /// directory-scoped SAS only actually confines to a sub-prefix on an HNS account; on a flat account
2221 /// it silently degrades to container-wide (Security LOW-1). So a PREFIX mint is refused unless this
2222 /// is `true`. Default `false` (fail-closed). A single-key mint is unaffected.
2223 #[serde(default)]
2224 pub azure_hns: bool,
2225}
2226
2227/// The default operator ceiling on a minted S3 upload credential's TTL when
2228/// `[serve].s3_ingress_mint_max_ttl_secs` is unset: 1 hour — long enough for a browser UGC upload or a
2229/// bulk-agent burst, short enough to bound a leaked short-lived credential.
2230pub const DEFAULT_S3_INGRESS_MINT_MAX_TTL_SECS: u64 = 3600;
2231
2232/// `[serve.console]` — the embedded web console (a Wasm SPA baked into the
2233/// binary with the `console` build feature). Opt-in: the static shell holds no
2234/// secrets and the `/api` it drives is token-gated, so it is served
2235/// **unauthenticated** at a deliberately obscure path (a bearer token can't gate
2236/// a top-level browser navigation anyway — the path is the obscurity, the token
2237/// is the real gate).
2238#[cfg_attr(not(feature = "console"), allow(dead_code))]
2239#[derive(Debug, Clone, Default, Deserialize)]
2240#[serde(default, deny_unknown_fields)]
2241pub struct ConsoleConfig {
2242 /// Serve the embedded console (default `false`). Requires the `console` build
2243 /// feature; enabling it in a build without that feature is a logged no-op.
2244 pub enabled: bool,
2245 /// Host(s) the console answers on: `*` (any host, the default), an exact host
2246 /// (`console.example.com`), or a leading-wildcard (`*.example.com`).
2247 pub host: Option<String>,
2248 /// URL path prefix the console mounts at (default `/_console`). Kept under the
2249 /// reserved `/_` namespace so it never collides with a published site path.
2250 pub path: Option<String>,
2251}
2252
2253/// `publish` section — where and what to deploy (the `sync` target).
2254#[derive(Debug, Default, Deserialize)]
2255#[serde(default)]
2256pub struct PublishConfig {
2257 /// Base URL of the boatramp server (e.g. `https://pad.example.com`).
2258 pub server: Option<String>,
2259 /// Site name to publish to.
2260 pub site: Option<String>,
2261 /// API token for the control plane (or set `BOATRAMP_TOKEN`).
2262 pub token: Option<String>,
2263 /// Project this site belongs to (overrides with `--project` / `BOATRAMP_PROJECT`).
2264 pub project: Option<String>,
2265}
2266
2267/// `build` section.
2268#[derive(Debug, Clone, Deserialize, serde::Serialize)]
2269pub struct BuildConfig {
2270 /// Shell command to run (e.g. `npm run build`).
2271 pub command: String,
2272 /// Directory the build emits, published by `sync` (e.g. `dist`).
2273 #[serde(default, skip_serializing_if = "Option::is_none")]
2274 pub output: Option<String>,
2275}
2276
2277/// `bundle` section — the in-process Rust bundler (`bundler` feature).
2278#[derive(Debug, Clone, Default, Deserialize)]
2279#[serde(default)]
2280pub struct BundleConfig {
2281 /// Output directory for bundled assets (e.g. `dist`).
2282 #[serde(default = "default_bundle_outdir")]
2283 pub outdir: String,
2284 /// JS/TS entry points bundled by Rolldown (tree-shaken, code-split).
2285 pub js: Vec<String>,
2286 /// CSS entry points bundled by lightningcss (`@import` inlined).
2287 pub css: Vec<String>,
2288 /// Minify output (default true).
2289 #[serde(default = "default_true")]
2290 pub minify: bool,
2291}
2292
2293fn default_bundle_outdir() -> String {
2294 "dist".to_string()
2295}
2296
2297fn default_true() -> bool {
2298 true
2299}
2300
2301#[cfg(test)]
2302mod tests {
2303 use super::*;
2304
2305 fn project(text: &str) -> ProjectConfig {
2306 ron_options().from_str(text).unwrap()
2307 }
2308
2309 fn server(text: &str) -> ServerConfig {
2310 ron_options().from_str(text).unwrap()
2311 }
2312
2313 /// Build an [`EnvSource::Map`] from `(name, value)` pairs for deterministic
2314 /// override tests (no process-global `std::env` mutation).
2315 fn env(pairs: &[(&str, &str)]) -> EnvSource {
2316 EnvSource::Map(
2317 pairs
2318 .iter()
2319 .map(|(k, v)| (k.to_string(), v.to_string()))
2320 .collect(),
2321 )
2322 }
2323
2324 #[test]
2325 fn env_overrides_configure_all_three_sections_with_no_file() {
2326 // The crux of the ask: with NO `boatramp.cfg` at all (the default config),
2327 // env vars alone materialise + populate the compute, security, and handler
2328 // `sql` sections. `ServerConfig::default()` has all three absent.
2329 let mut cfg = ServerConfig::default();
2330 assert!(cfg.compute.is_none() && cfg.security.is_none() && cfg.handlers.is_none());
2331
2332 cfg.apply_env_overrides(&env(&[
2333 ("BOATRAMP_COMPUTE_VCPUS", "8"),
2334 ("BOATRAMP_COMPUTE_MEM_MIB", "4096"),
2335 ("BOATRAMP_COMPUTE_REGION", "eu-central"),
2336 ("BOATRAMP_SECURITY_PROFILE", "single-tenant"),
2337 ("BOATRAMP_SECURITY_ALLOW_SITE_PRIVATE_UPSTREAMS", "true"),
2338 ("BOATRAMP_SECURITY_MAX_UPLOAD_BYTES", "1048576"),
2339 ("BOATRAMP_HANDLERS_SQL_URL", "http://sqld:8080"),
2340 ("BOATRAMP_HANDLERS_SQL_ADMIN_URL", "http://sqld:9090"),
2341 ]))
2342 .expect("valid env overrides apply");
2343
2344 // compute: the section now exists with the env values (and defaults elsewhere).
2345 let compute = cfg.compute.expect("compute materialised from env");
2346 assert_eq!(compute.vcpus, 8);
2347 assert_eq!(compute.mem_mib, 4096);
2348 assert_eq!(compute.region.as_deref(), Some("eu-central"));
2349 assert_eq!(compute.bridge, "br-boatramp"); // untouched default
2350
2351 // security: profile + an override both took, and the posture resolves.
2352 let security = cfg.security.expect("security materialised from env");
2353 assert_eq!(security.profile.as_deref(), Some("single-tenant"));
2354 let posture = security.resolve().expect("resolves");
2355 assert!(posture.allow_site_private_upstreams);
2356 assert_eq!(posture.max_upload_bytes, 1_048_576);
2357
2358 // handler sql: the nested handlers.bindings.sql chain was created.
2359 let sql = cfg
2360 .handlers
2361 .expect("handlers materialised from env")
2362 .bindings
2363 .sql
2364 .expect("sql binding materialised from env");
2365 assert_eq!(sql.url.as_deref(), Some("http://sqld:8080"));
2366 assert_eq!(sql.admin_url.as_deref(), Some("http://sqld:9090"));
2367 }
2368
2369 #[test]
2370 fn internal_dns_defaults_on_with_the_standard_upstream_and_domain() {
2371 // The `[compute]` defaults: internal DNS on, forwarding to 1.1.1.1:53, names
2372 // under `boatramp.internal`.
2373 let compute = ComputeConfig::default();
2374 assert!(compute.internal_dns, "internal DNS is on by default");
2375 assert_eq!(compute.dns_upstream, "1.1.1.1:53");
2376 assert_eq!(compute.dns_domain, "boatramp.internal");
2377 }
2378
2379 #[test]
2380 fn internal_dns_knobs_parse_from_a_file() {
2381 // A file can turn it off and override the upstream + domain.
2382 let cfg = server(
2383 r#"(
2384 compute: ( internal_dns: false, dns_upstream: "10.0.0.53:53", dns_domain: "svc.internal" ),
2385 )"#,
2386 );
2387 let compute = cfg.compute.expect("compute section");
2388 assert!(!compute.internal_dns);
2389 assert_eq!(compute.dns_upstream, "10.0.0.53:53");
2390 assert_eq!(compute.dns_domain, "svc.internal");
2391 }
2392
2393 #[test]
2394 fn internal_dns_knobs_are_env_settable() {
2395 // Env alone materialises `[compute]` and sets each internal-DNS knob (and an
2396 // unrecognised bool spelling is a clear error, exercised by parse_bool).
2397 let mut cfg = ServerConfig::default();
2398 cfg.apply_env_overrides(&env(&[
2399 ("BOATRAMP_COMPUTE_INTERNAL_DNS", "off"),
2400 ("BOATRAMP_COMPUTE_DNS_UPSTREAM", "9.9.9.9:53"),
2401 ("BOATRAMP_COMPUTE_DNS_DOMAIN", "corp.internal"),
2402 ]))
2403 .expect("valid env overrides apply");
2404 let compute = cfg.compute.expect("compute materialised from env");
2405 assert!(!compute.internal_dns, "env `off` disables internal DNS");
2406 assert_eq!(compute.dns_upstream, "9.9.9.9:53");
2407 assert_eq!(compute.dns_domain, "corp.internal");
2408 }
2409
2410 #[test]
2411 fn env_override_wins_over_file_value_but_unset_defers() {
2412 // A file that set each section; env then overrides one field per section
2413 // and leaves the rest of the file value in place (precedence: env > file).
2414 let mut cfg = server(
2415 r#"(
2416 compute: ( vcpus: 2, mem_mib: 512, region: "us-east" ),
2417 security: ( profile: "multi-tenant" ),
2418 handlers: ( bindings: ( sql: ( url: "http://file:8080", admin_url: "http://file:9090" ) ) ),
2419 )"#,
2420 );
2421
2422 cfg.apply_env_overrides(&env(&[
2423 ("BOATRAMP_COMPUTE_VCPUS", "16"),
2424 ("BOATRAMP_SECURITY_PROFILE", "dev"),
2425 ("BOATRAMP_HANDLERS_SQL_URL", "http://env:8080"),
2426 ]))
2427 .expect("valid env overrides apply");
2428
2429 let compute = cfg.compute.unwrap();
2430 assert_eq!(compute.vcpus, 16, "env wins over the file vcpus");
2431 assert_eq!(compute.mem_mib, 512, "unset env defers to the file mem_mib");
2432 assert_eq!(
2433 compute.region.as_deref(),
2434 Some("us-east"),
2435 "unset env defers to the file region"
2436 );
2437
2438 assert_eq!(
2439 cfg.security.unwrap().profile.as_deref(),
2440 Some("dev"),
2441 "env profile wins over the file profile"
2442 );
2443
2444 let sql = cfg.handlers.unwrap().bindings.sql.unwrap();
2445 assert_eq!(
2446 sql.url.as_deref(),
2447 Some("http://env:8080"),
2448 "env wins over the file sql url"
2449 );
2450 assert_eq!(
2451 sql.admin_url.as_deref(),
2452 Some("http://file:9090"),
2453 "unset env defers to the file sql admin_url"
2454 );
2455 }
2456
2457 #[test]
2458 fn env_overrides_leave_unmentioned_sections_absent() {
2459 // With no relevant env vars set, an empty config stays empty — the sections
2460 // are materialised only on demand, so an unset environment adds nothing.
2461 let mut cfg = ServerConfig::default();
2462 cfg.apply_env_overrides(&env(&[("SOME_UNRELATED_VAR", "x")]))
2463 .expect("no-op env applies");
2464 assert!(cfg.compute.is_none());
2465 assert!(cfg.security.is_none());
2466 assert!(cfg.handlers.is_none());
2467 assert!(cfg.secrets.is_none());
2468 assert!(cfg.cluster.is_none());
2469 }
2470
2471 #[test]
2472 fn env_bool_accepts_common_spellings_and_rejects_garbage() {
2473 // Truthy/falsey spellings all parse.
2474 for (raw, want) in [
2475 ("true", true),
2476 ("1", true),
2477 ("YES", true),
2478 ("On", true),
2479 ("false", false),
2480 ("0", false),
2481 ("no", false),
2482 ("OFF", false),
2483 ] {
2484 let mut cfg = ServerConfig::default();
2485 cfg.apply_env_overrides(&env(&[("BOATRAMP_SECURITY_REQUIRE_POP", raw)]))
2486 .expect("boolean parses");
2487 assert_eq!(
2488 cfg.security.unwrap().overrides.require_pop,
2489 Some(want),
2490 "{raw:?} ⇒ {want}"
2491 );
2492 }
2493 // A non-boolean value is a clear error, not a silent default.
2494 let mut cfg = ServerConfig::default();
2495 let err = cfg
2496 .apply_env_overrides(&env(&[("BOATRAMP_SECURITY_REQUIRE_POP", "maybe")]))
2497 .expect_err("garbage boolean is rejected");
2498 match err {
2499 ConfigError::Env { var, .. } => assert_eq!(var, "BOATRAMP_SECURITY_REQUIRE_POP"),
2500 other => panic!("expected ConfigError::Env, got {other:?}"),
2501 }
2502 }
2503
2504 #[test]
2505 fn env_number_parse_error_names_the_variable() {
2506 // A non-numeric numeric var is rejected with the variable named.
2507 let mut cfg = ServerConfig::default();
2508 let err = cfg
2509 .apply_env_overrides(&env(&[("BOATRAMP_COMPUTE_VCPUS", "lots")]))
2510 .expect_err("garbage number is rejected");
2511 match err {
2512 ConfigError::Env { var, .. } => assert_eq!(var, "BOATRAMP_COMPUTE_VCPUS"),
2513 other => panic!("expected ConfigError::Env, got {other:?}"),
2514 }
2515 }
2516
2517 #[test]
2518 fn empty_env_value_is_treated_as_unset() {
2519 // `VAR=` (empty) must not clobber a file value with an empty string.
2520 let mut cfg = server(r#"( compute: ( region: "us-east" ) )"#);
2521 cfg.apply_env_overrides(&env(&[("BOATRAMP_COMPUTE_REGION", "")]))
2522 .expect("empty env applies as a no-op");
2523 assert_eq!(
2524 cfg.compute.unwrap().region.as_deref(),
2525 Some("us-east"),
2526 "an empty env value leaves the file value in place"
2527 );
2528 }
2529
2530 #[test]
2531 fn env_configures_managed_postgres_secrets_and_privilege_with_no_file() {
2532 // The construens acceptance case: with NO `boatramp.cfg` at all, the
2533 // environment alone stands up a managed co-located Postgres. It configures
2534 // the default (`"default"`-named, v0.5.0) database in
2535 // `handlers.bindings.sql.databases` (kind=postgres, compute=pg, database+user
2536 // set), the `[secrets]` envelope (local + a kek path so the managed credential
2537 // can be sealed), and `compute.managed_db_privilege = rootless`. All three
2538 // sections start absent.
2539 let mut cfg = ServerConfig::default();
2540 assert!(cfg.handlers.is_none() && cfg.secrets.is_none() && cfg.compute.is_none());
2541
2542 cfg.apply_env_overrides(&env(&[
2543 // The default database is addressed by the reserved `DEFAULT` token,
2544 // which maps to the reserved real name `"default"` (v0.5.0).
2545 ("BOATRAMP_HANDLERS_SQL_DB_DEFAULT_KIND", "postgres"),
2546 ("BOATRAMP_HANDLERS_SQL_DB_DEFAULT_COMPUTE", "pg"),
2547 ("BOATRAMP_HANDLERS_SQL_DB_DEFAULT_DATABASE", "appdb"),
2548 ("BOATRAMP_HANDLERS_SQL_DB_DEFAULT_USER", "app"),
2549 // Secrets: the local envelope + a KEK path (never key material).
2550 ("BOATRAMP_SECRETS_ENVELOPE", "local"),
2551 ("BOATRAMP_SECRETS_KEK_FILE", "/var/lib/boatramp/secrets/kek"),
2552 // The shared-kernel DB privilege strategy.
2553 ("BOATRAMP_COMPUTE_MANAGED_DB_PRIVILEGE", "rootless"),
2554 ]))
2555 .expect("valid env overrides apply");
2556
2557 // The default (`"default"`-keyed) managed database exists with the right source.
2558 let sql = cfg
2559 .handlers
2560 .expect("handlers materialised from env")
2561 .bindings
2562 .sql
2563 .expect("sql binding materialised from env");
2564 let db = sql
2565 .databases
2566 .get(boatramp_core::project::DEFAULT_DB_NAME)
2567 .expect("the default `default`-named database was created from DEFAULT");
2568 assert!(
2569 !sql.databases.contains_key(""),
2570 "the empty-string key is never produced (v0.5.0)"
2571 );
2572 assert_eq!(db.kind, "postgres");
2573 assert_eq!(db.compute.as_deref(), Some("pg"));
2574 assert_eq!(db.database.as_deref(), Some("appdb"));
2575 assert_eq!(db.user.as_deref(), Some("app"));
2576 // No `password_env` ⇒ boatramp manages the credential (Phase 2), and the
2577 // compute-backed source validates.
2578 assert!(db.password_env.is_none());
2579 assert!(db.is_managed_credential());
2580 assert!(db.validate("").is_ok());
2581
2582 // The secrets envelope + KEK path took (the path is a location, not a key).
2583 let secrets = cfg.secrets.expect("secrets materialised from env");
2584 assert_eq!(secrets.envelope, "local");
2585 assert_eq!(
2586 secrets.kek_file.as_deref(),
2587 Some(Path::new("/var/lib/boatramp/secrets/kek"))
2588 );
2589 assert!(
2590 secrets.vault.is_none(),
2591 "no vault vars ⇒ no vault sub-config"
2592 );
2593
2594 // The managed-DB privilege strategy resolved from its lowercase variant.
2595 let compute = cfg.compute.expect("compute materialised from env");
2596 assert_eq!(compute.managed_db_privilege, ManagedDbPrivilege::Rootless);
2597 }
2598
2599 #[test]
2600 fn env_declares_named_databases_and_merges_over_the_file() {
2601 // A file declares one database; the env overrides one of its fields and
2602 // ADDS a second, discovering both member names from the environment.
2603 let mut cfg = server(
2604 r#"(
2605 handlers: ( bindings: ( sql: (
2606 databases: {
2607 "analytics": ( kind: "postgres", url_env: "FILE_PG_URL", pool_max: 4 ),
2608 },
2609 ) ) ),
2610 )"#,
2611 );
2612 cfg.apply_env_overrides(&env(&[
2613 // Override the file database's pool size (merge by key, per field).
2614 ("BOATRAMP_HANDLERS_SQL_DB_analytics_POOL_MAX", "32"),
2615 // Add a brand-new database whose name has an underscore, exercising the
2616 // longest-suffix name isolation (`_READ_URL_ENV`, not `_URL_ENV`).
2617 ("BOATRAMP_HANDLERS_SQL_DB_events_log_KIND", "mysql"),
2618 ("BOATRAMP_HANDLERS_SQL_DB_events_log_URL_ENV", "EVENTS_URL"),
2619 (
2620 "BOATRAMP_HANDLERS_SQL_DB_events_log_READ_URL_ENV",
2621 "EVENTS_RO_URL",
2622 ),
2623 ("BOATRAMP_HANDLERS_SQL_DB_events_log_READ_ONLY", "true"),
2624 ]))
2625 .expect("valid env overrides apply");
2626
2627 let sql = cfg.handlers.unwrap().bindings.sql.unwrap();
2628 assert_eq!(sql.databases.len(), 2);
2629
2630 let analytics = &sql.databases["analytics"];
2631 assert_eq!(
2632 analytics.pool_max,
2633 Some(32),
2634 "env pool_max wins over the file"
2635 );
2636 assert_eq!(
2637 analytics.url_env, "FILE_PG_URL",
2638 "the file's url_env survives (env didn't touch it)"
2639 );
2640
2641 let events = &sql.databases["events_log"];
2642 assert_eq!(events.kind, "mysql");
2643 assert_eq!(events.url_env, "EVENTS_URL");
2644 assert_eq!(events.read_url_env.as_deref(), Some("EVENTS_RO_URL"));
2645 assert!(events.read_only);
2646 }
2647
2648 #[test]
2649 fn default_token_maps_to_the_reserved_default_name_not_empty() {
2650 // v0.5.0 breaking change: the reserved `DEFAULT` env token maps to the real
2651 // name `"default"` (a valid URL path segment), never the empty string. This is
2652 // what makes the default binding addressable as `--db default` and keeps every
2653 // db-name ingress path-segment-safe.
2654 let mut cfg = ServerConfig::default();
2655 cfg.apply_env_overrides(&env(&[
2656 ("BOATRAMP_HANDLERS_SQL_DB_DEFAULT_KIND", "postgres"),
2657 ("BOATRAMP_HANDLERS_SQL_DB_DEFAULT_URL_ENV", "PG_URL"),
2658 ]))
2659 .expect("valid env overrides apply");
2660 let databases = cfg.handlers.unwrap().bindings.sql.unwrap().databases;
2661 assert!(
2662 databases.contains_key(boatramp_core::project::DEFAULT_DB_NAME),
2663 "DEFAULT → the reserved `default` key"
2664 );
2665 assert!(
2666 !databases.contains_key(""),
2667 "the empty-string key is never produced"
2668 );
2669 }
2670
2671 #[test]
2672 fn empty_string_db_binding_name_is_rejected_with_a_cure() {
2673 // A `boatramp.cfg` that literally writes the legacy empty-string default key
2674 // fails closed on load (it would emit a `//` control-plane path), and the
2675 // error points at the cure (`default`).
2676 let err = ServerConfig::parse(
2677 r#"(
2678 handlers: ( bindings: ( sql: (
2679 databases: {
2680 "": ( kind: "postgres", url_env: "PG_URL" ),
2681 },
2682 ) ) ),
2683 )"#,
2684 )
2685 .expect_err("an empty-string db binding name is refused");
2686 match err {
2687 ConfigError::InvalidDbName { name, reason, cure } => {
2688 assert_eq!(name, "");
2689 assert!(reason.contains("empty"), "reason names the emptiness");
2690 assert!(
2691 cure.contains("default") && cure.contains("CHANGELOG"),
2692 "the cure points at `default` + the CHANGELOG"
2693 );
2694 }
2695 other => panic!("expected ConfigError::InvalidDbName, got {other:?}"),
2696 }
2697 }
2698
2699 #[test]
2700 fn path_separator_db_binding_name_is_rejected() {
2701 // A non-path-segment name (contains `/`) is refused with no default-cure (the
2702 // fix is to rename it, not adopt `default`).
2703 let err = ServerConfig::parse(
2704 r#"(
2705 handlers: ( bindings: ( sql: (
2706 databases: {
2707 "a/b": ( kind: "postgres", url_env: "PG_URL" ),
2708 },
2709 ) ) ),
2710 )"#,
2711 )
2712 .expect_err("a `/`-bearing db binding name is refused");
2713 match err {
2714 ConfigError::InvalidDbName { name, reason, cure } => {
2715 assert_eq!(name, "a/b");
2716 assert!(reason.contains("path separator"));
2717 assert!(cure.is_empty(), "no default-cure for a non-default name");
2718 }
2719 other => panic!("expected ConfigError::InvalidDbName, got {other:?}"),
2720 }
2721 }
2722
2723 #[test]
2724 fn reserved_bramp_db_compute_prefix_is_rejected() {
2725 // #501 Stage B LOW-2: a static BYO binding may not point `compute` at a
2726 // `bramp-db-…` workload (reserved for derived managed-DB servers) — refused
2727 // fail-closed at config load.
2728 let err = ServerConfig::parse(
2729 r#"(
2730 handlers: ( bindings: ( sql: (
2731 databases: {
2732 "byo": ( kind: "postgres", compute: "bramp-db-acme-app", database: "d", user: "u" ),
2733 },
2734 ) ) ),
2735 )"#,
2736 )
2737 .expect_err("a `bramp-db-` compute workload is refused");
2738 match err {
2739 ConfigError::InvalidDbName { name, reason, cure } => {
2740 assert_eq!(name, "bramp-db-acme-app");
2741 assert!(reason.contains("reserved"), "reason names the reservation");
2742 assert!(cure.contains("bramp-db-"), "the cure names the prefix");
2743 }
2744 other => panic!("expected ConfigError::InvalidDbName, got {other:?}"),
2745 }
2746 // A NON-reserved compute workload for a BYO binding still loads fine.
2747 ServerConfig::parse(
2748 r#"(
2749 handlers: ( bindings: ( sql: (
2750 databases: {
2751 "byo": ( kind: "postgres", compute: "my-pg", database: "d", user: "u" ),
2752 },
2753 ) ) ),
2754 )"#,
2755 )
2756 .expect("a non-reserved compute workload loads");
2757 }
2758
2759 #[test]
2760 fn env_sets_managed_db_startup_grace() {
2761 // The per-binding startup-grace override is env-settable like the other
2762 // managed scalars, discovered by the `_STARTUP_GRACE_SECS` suffix.
2763 let mut cfg = ServerConfig::default();
2764 cfg.apply_env_overrides(&env(&[
2765 ("BOATRAMP_HANDLERS_SQL_DB_DEFAULT_KIND", "postgres"),
2766 ("BOATRAMP_HANDLERS_SQL_DB_DEFAULT_COMPUTE", "pg"),
2767 ("BOATRAMP_HANDLERS_SQL_DB_DEFAULT_DATABASE", "appdb"),
2768 ("BOATRAMP_HANDLERS_SQL_DB_DEFAULT_USER", "app"),
2769 ("BOATRAMP_HANDLERS_SQL_DB_DEFAULT_STARTUP_GRACE_SECS", "90"),
2770 ]))
2771 .expect("valid env overrides apply");
2772 let db = &cfg.handlers.unwrap().bindings.sql.unwrap().databases
2773 [boatramp_core::project::DEFAULT_DB_NAME];
2774 assert_eq!(db.startup_grace_secs, Some(90));
2775 }
2776
2777 #[test]
2778 fn env_sets_rls_gucs_and_all_marker_without_suffix_collision() {
2779 // The RLS GUC names + the v0.4.21 all-read marker are env-settable. `_TENANT_ALL_MARKER`
2780 // and `_TENANT_GUC` must NOT be shadowed by the shorter `_TENANT` suffix (longest-first
2781 // isolation) — a `_TENANT` value would otherwise swallow the DB-name split.
2782 let mut cfg = ServerConfig::default();
2783 cfg.apply_env_overrides(&env(&[
2784 ("BOATRAMP_HANDLERS_SQL_DB_DEFAULT_KIND", "postgres"),
2785 ("BOATRAMP_HANDLERS_SQL_DB_DEFAULT_DATABASE", "appdb"),
2786 (
2787 "BOATRAMP_HANDLERS_SQL_DB_DEFAULT_TENANT_GUC",
2788 "app.tenant_id",
2789 ),
2790 (
2791 "BOATRAMP_HANDLERS_SQL_DB_DEFAULT_SESSION_GUC",
2792 "app.session_id",
2793 ),
2794 ("BOATRAMP_HANDLERS_SQL_DB_DEFAULT_TENANT_ALL_MARKER", "*"),
2795 ]))
2796 .expect("valid env overrides apply");
2797 let db = &cfg.handlers.unwrap().bindings.sql.unwrap().databases
2798 [boatramp_core::project::DEFAULT_DB_NAME];
2799 assert_eq!(db.tenant_guc.as_deref(), Some("app.tenant_id"));
2800 assert_eq!(db.session_guc.as_deref(), Some("app.session_id"));
2801 assert_eq!(db.tenant_all_marker.as_deref(), Some("*"));
2802 }
2803
2804 #[test]
2805 fn env_enum_parse_error_names_the_variable_and_variants() {
2806 // An unknown enum value is a clear error that names the offending variable.
2807 let mut cfg = ServerConfig::default();
2808 let err = cfg
2809 .apply_env_overrides(&env(&[(
2810 "BOATRAMP_COMPUTE_MANAGED_DB_PRIVILEGE",
2811 "superuser",
2812 )]))
2813 .expect_err("unknown enum variant is rejected");
2814 match err {
2815 ConfigError::Env { var, reason } => {
2816 assert_eq!(var, "BOATRAMP_COMPUTE_MANAGED_DB_PRIVILEGE");
2817 assert!(reason.contains("rootless") && reason.contains("caps"));
2818 }
2819 other => panic!("expected ConfigError::Env, got {other:?}"),
2820 }
2821 // The docker enums map their lowercase serde variants too.
2822 let mut cfg = ServerConfig::default();
2823 cfg.apply_env_overrides(&env(&[
2824 ("BOATRAMP_COMPUTE_DOCKER_ENDPOINT", "bridge"),
2825 ("BOATRAMP_COMPUTE_DOCKER_VOLUME_MODE", "bind"),
2826 ]))
2827 .expect("known enum variants parse");
2828 let compute = cfg.compute.unwrap();
2829 assert_eq!(
2830 compute.docker_endpoint,
2831 boatramp_docker::DockerEndpoint::Bridge
2832 );
2833 assert_eq!(
2834 compute.docker_volume_mode,
2835 boatramp_docker::DockerVolumeMode::Bind
2836 );
2837 }
2838
2839 #[test]
2840 fn env_trust_anchors_parse_as_a_comma_separated_list() {
2841 // The kernel trust anchors are comma-separated (whitespace trimmed, empty
2842 // items dropped so a trailing comma is tolerated). A file default is
2843 // fully replaced, not appended to.
2844 let mut cfg = ServerConfig::default();
2845 cfg.apply_env_overrides(&env(&[
2846 (
2847 "BOATRAMP_COMPUTE_KERNEL_SIGNING_PUBKEYS",
2848 " es256:aa , es256:bb ,",
2849 ),
2850 ("BOATRAMP_COMPUTE_KERNEL_ALLOWED_HASHES", "deadbeef"),
2851 ]))
2852 .expect("valid list env applies");
2853 let compute = cfg.compute.unwrap();
2854 assert_eq!(
2855 compute.kernel_signing_pubkeys,
2856 vec!["es256:aa".to_string(), "es256:bb".to_string()],
2857 "trimmed, comma-split, trailing-empty dropped, defaults replaced"
2858 );
2859 assert_eq!(
2860 compute.kernel_allowed_hashes,
2861 vec!["deadbeef".to_string()],
2862 "a single value is a one-element list"
2863 );
2864 }
2865
2866 #[test]
2867 fn env_configures_secrets_vault_subconfig() {
2868 // The vault sub-config materialises only when a vault var is set, and the
2869 // token stays indirected via a variable NAME (`token_env`), never inline.
2870 let mut cfg = ServerConfig::default();
2871 cfg.apply_env_overrides(&env(&[
2872 ("BOATRAMP_SECRETS_ENVELOPE", "vault"),
2873 ("BOATRAMP_SECRETS_VAULT_ADDR", "https://vault:8200"),
2874 ("BOATRAMP_SECRETS_VAULT_KEY", "certs"),
2875 ]))
2876 .expect("valid env overrides apply");
2877 let secrets = cfg.secrets.unwrap();
2878 assert_eq!(secrets.envelope, "vault");
2879 let vault = secrets.vault.expect("vault sub-config materialised");
2880 assert_eq!(vault.addr, "https://vault:8200");
2881 assert_eq!(vault.key, "certs");
2882 // token_env defaults to VAULT_TOKEN when not overridden.
2883 assert_eq!(vault.token_env, "VAULT_TOKEN");
2884 }
2885
2886 #[test]
2887 fn env_materialises_and_overrides_the_cluster_section() {
2888 // With no file, a `BOATRAMP_CLUSTER_LISTEN` materialises the section; the
2889 // remaining fields (lists, join token, mesh) layer on. The founding/joining
2890 // action flags (`BOATRAMP_CLUSTER_INIT`/`_JOIN`) are separate `serve` args
2891 // and are not part of this section.
2892 let mut cfg = ServerConfig::default();
2893 cfg.apply_env_overrides(&env(&[
2894 ("BOATRAMP_CLUSTER_LISTEN", "10.0.0.2:7000"),
2895 ("BOATRAMP_CLUSTER_ROOT_PUBKEYS", "es256:aa,es256:bb"),
2896 ("BOATRAMP_CLUSTER_SEEDS", "https://10.0.0.1:8080"),
2897 ("BOATRAMP_CLUSTER_JOIN_TOKEN", "env:BOATRAMP_JOIN_TOKEN"),
2898 ("BOATRAMP_CLUSTER_STORE_DIR", "/var/lib/boatramp/raft"),
2899 ("BOATRAMP_CLUSTER_MESH_GATE_CLIENT_WRITES", "true"),
2900 ]))
2901 .expect("valid env overrides apply");
2902 let cluster = cfg.cluster.expect("cluster materialised from env");
2903 assert_eq!(
2904 cluster.listen,
2905 "10.0.0.2:7000".parse::<std::net::SocketAddr>().unwrap()
2906 );
2907 assert_eq!(
2908 cluster.root_pubkeys,
2909 vec!["es256:aa".to_string(), "es256:bb".to_string()]
2910 );
2911 assert_eq!(cluster.seeds, vec!["https://10.0.0.1:8080".to_string()]);
2912 assert_eq!(
2913 cluster.join_token.as_deref(),
2914 Some("env:BOATRAMP_JOIN_TOKEN")
2915 );
2916 assert_eq!(
2917 cluster.store_dir.as_deref(),
2918 Some(Path::new("/var/lib/boatramp/raft"))
2919 );
2920 assert_eq!(
2921 cluster.mesh.expect("mesh sub-config").gate_client_writes,
2922 Some(true)
2923 );
2924
2925 // Without a listen (and no file section) there is nothing to materialise:
2926 // a non-listen cluster var alone leaves the section absent.
2927 let mut cfg = ServerConfig::default();
2928 cfg.apply_env_overrides(&env(&[("BOATRAMP_CLUSTER_SEEDS", "https://10.0.0.1:8080")]))
2929 .expect("applies");
2930 assert!(
2931 cfg.cluster.is_none(),
2932 "no listen + no file section ⇒ no cluster"
2933 );
2934 }
2935
2936 #[test]
2937 fn env_cluster_listen_overrides_a_file_section() {
2938 // A file `[cluster]` section: env overrides `listen` and adds seeds.
2939 let mut cfg = server(r#"( cluster: ( listen: "0.0.0.0:7000" ) )"#);
2940 cfg.apply_env_overrides(&env(&[
2941 ("BOATRAMP_CLUSTER_LISTEN", "10.0.0.9:7000"),
2942 ("BOATRAMP_CLUSTER_SEEDS", "https://seed:8080"),
2943 ]))
2944 .expect("applies");
2945 let cluster = cfg.cluster.unwrap();
2946 assert_eq!(
2947 cluster.listen,
2948 "10.0.0.9:7000".parse::<std::net::SocketAddr>().unwrap(),
2949 "env listen wins over the file"
2950 );
2951 assert_eq!(cluster.seeds, vec!["https://seed:8080".to_string()]);
2952 }
2953
2954 #[test]
2955 fn empty_project_config_is_default() {
2956 let cfg = project("()");
2957 assert!(cfg.publish.server.is_none());
2958 assert!(cfg.publish.site.is_none());
2959 assert!(cfg.build.is_none());
2960 assert!(cfg.bundle.is_none());
2961 // Routing defaults: schema v1, the single default index candidate.
2962 assert_eq!(cfg.routing.version, 1);
2963 assert_eq!(cfg.routing.index, vec!["index.html".to_string()]);
2964 }
2965
2966 #[test]
2967 fn serve_signer_config_parses_and_maps_each_backend() {
2968 use boatramp_core::cose::TokenAlg;
2969 use boatramp_server::signer::SignerConfig;
2970
2971 // RON-native enum tagging (`Vault(...)`); `IMPLICIT_SOME` lets the optional
2972 // fields (region) take a bare value or be omitted (→ None). This is the
2973 // exact RON documented in the Authentication guide.
2974 let vault = server(
2975 r#"( serve: ( signer: Vault(
2976 address: "https://vault.example:8200",
2977 key: "boatramp-root",
2978 token_env: "VAULT_TOKEN",
2979 alg: Ed25519,
2980 ) ) )"#,
2981 );
2982 match vault.serve.unwrap().signer.unwrap().to_signer_config() {
2983 SignerConfig::Vault {
2984 address,
2985 key,
2986 token_env,
2987 alg,
2988 } => {
2989 assert_eq!(address, "https://vault.example:8200");
2990 assert_eq!(key, "boatramp-root");
2991 assert_eq!(token_env, "VAULT_TOKEN");
2992 assert_eq!(alg, TokenAlg::Ed25519);
2993 }
2994 other => panic!("expected Vault, got {other:?}"),
2995 }
2996
2997 // AWS KMS: region omitted → None; PKCS#11: alg omitted → the ES256 default.
2998 let aws =
2999 server(r#"( serve: ( signer: AwsKms(key_id: "arn:aws:kms:eu-west-1:1:key/abc") ) )"#);
3000 assert!(matches!(
3001 aws.serve.unwrap().signer.unwrap().to_signer_config(),
3002 SignerConfig::AwsKms { region: None, .. }
3003 ));
3004
3005 let hsm = server(
3006 r#"( serve: ( signer: Pkcs11(
3007 module: "/usr/lib/softhsm/libsofthsm2.so",
3008 token_label: "boatramp",
3009 key_label: "root",
3010 pin_env: "HSM_PIN",
3011 ) ) )"#,
3012 );
3013 match hsm.serve.unwrap().signer.unwrap().to_signer_config() {
3014 SignerConfig::Pkcs11 { alg, .. } => assert_eq!(alg, TokenAlg::Es256),
3015 other => panic!("expected Pkcs11, got {other:?}"),
3016 }
3017 }
3018
3019 #[test]
3020 fn project_config_parses_publish_build_and_routing() {
3021 let cfg = project(
3022 r#"(
3023 publish: ( server: "http://127.0.0.1:8080", site: "demo" ),
3024 build: ( command: "npm run build", output: "dist" ),
3025 routing: (
3026 clean_urls: true,
3027 redirects: [ (from: "/old/:slug", to: "/new/:slug", status: 301) ],
3028 ),
3029 )"#,
3030 );
3031 assert_eq!(cfg.publish.server.as_deref(), Some("http://127.0.0.1:8080"));
3032 assert_eq!(cfg.publish.site.as_deref(), Some("demo"));
3033 let build = cfg.build.unwrap();
3034 assert_eq!(build.command, "npm run build");
3035 assert_eq!(build.output.as_deref(), Some("dist"));
3036 assert!(cfg.routing.clean_urls);
3037 assert_eq!(cfg.routing.redirects.len(), 1);
3038 assert_eq!(cfg.routing.redirects[0].status, 301);
3039 }
3040
3041 #[test]
3042 fn project_config_rejects_bad_routing_pattern() {
3043 // The same compile-check `load` runs: a bad route pattern is an error.
3044 let cfg = project(r#"( routing: ( redirects: [ (from: "/a/**/b/**", to: "/x") ] ) )"#);
3045 assert!(cfg.routing.compile_check().is_err());
3046 }
3047
3048 #[test]
3049 fn empty_server_config_has_no_sections() {
3050 let cfg = server("()");
3051 assert!(cfg.serve.is_none());
3052 assert!(cfg.handlers.is_none());
3053 assert!(cfg.cluster.is_none());
3054 assert!(cfg.security.is_none());
3055 }
3056
3057 #[test]
3058 fn security_section_parses_and_resolves() {
3059 // A profile plus an override that wins over it.
3060 let cfg = server(
3061 r#"(
3062 security: (
3063 profile: "dev",
3064 overrides: (
3065 oidc_require_audience: true,
3066 max_upload_bytes: 0,
3067 ),
3068 )
3069 )"#,
3070 );
3071 let posture = cfg.security.unwrap().resolve().expect("resolves");
3072 // `dev` is loose...
3073 assert!(posture.allow_unauthenticated_public_bind);
3074 // ...but the explicit override wins over the profile.
3075 assert!(posture.oidc_require_audience);
3076 assert_eq!(posture.max_upload_bytes, 0); // unlimited
3077 }
3078
3079 #[test]
3080 fn env_wires_allow_env_secret_refs_over_the_multi_tenant_default() {
3081 // With no file, the multi-tenant default leaves host-env secret refs off;
3082 // the env knob re-enables them (env > default), same as the other posture bools.
3083 let mut cfg = ServerConfig::default();
3084 cfg.apply_env_overrides(&env(&[("BOATRAMP_SECURITY_ALLOW_ENV_SECRET_REFS", "true")]))
3085 .expect("valid env override applies");
3086 let posture = cfg
3087 .security
3088 .expect("security materialised from env")
3089 .resolve()
3090 .expect("resolves");
3091 assert!(posture.allow_env_secret_refs);
3092 }
3093
3094 #[test]
3095 fn env_wires_the_multi_tenant_subknobs_over_the_default() {
3096 // Gap 4b: the four multi-tenant sub-knobs were file-only; env now sets them (env > the
3097 // multi-tenant preset default), so a 12-factor deploy can tune tenancy isolation + guest
3098 // capability minting with no `boatramp.cfg`. Verified: strict declaration stays on while
3099 // cross-tenant `all` twins + guest cap-mint are permitted (they compose — Gap 4.3).
3100 let mut cfg = ServerConfig::default();
3101 cfg.apply_env_overrides(&env(&[
3102 ("BOATRAMP_SECURITY_PROFILE", "multi-tenant"),
3103 ("BOATRAMP_SECURITY_REQUIRE_TENANCY_DECLARATION", "true"),
3104 ("BOATRAMP_SECURITY_ALLOW_CROSS_TENANT_DB", "true"),
3105 ("BOATRAMP_SECURITY_ALLOW_GUEST_MINT_CAPABILITY", "true"),
3106 ("BOATRAMP_SECURITY_MAX_GUEST_CAPABILITY_TTL_SECS", "1800"),
3107 ]))
3108 .expect("valid env overrides apply");
3109 let posture = cfg
3110 .security
3111 .expect("security materialised from env")
3112 .resolve()
3113 .expect("resolves");
3114 assert!(posture.require_tenancy_declaration);
3115 assert!(posture.allow_cross_tenant_db);
3116 assert!(posture.allow_guest_mint_capability);
3117 assert_eq!(posture.max_guest_capability_ttl_secs, 1800);
3118 }
3119
3120 #[test]
3121 fn env_wires_the_remaining_guest_feature_knobs_over_the_multi_tenant_default() {
3122 // v0.4.18 env parity: `allow_guest_email` (which regressed prod SMTP on the P48 cutover —
3123 // multi-tenant defaults it OFF and there was no env lever), its egress sibling
3124 // `allow_guest_egress_extra_ca` (shipped config-only in v0.4.17), and the four
3125 // `allow_guest_admin_*` self-config knobs were all missing from the env map. Each preset
3126 // defaults them OFF under `multi-tenant`; the env knob must now flip each back on for a
3127 // 12-factor env-only fleet, exactly like `allow_guest_mint_capability`.
3128 let mut cfg = ServerConfig::default();
3129 cfg.apply_env_overrides(&env(&[
3130 ("BOATRAMP_SECURITY_PROFILE", "multi-tenant"),
3131 ("BOATRAMP_SECURITY_ALLOW_GUEST_EMAIL", "true"),
3132 ("BOATRAMP_SECURITY_ALLOW_GUEST_EGRESS_EXTRA_CA", "true"),
3133 ("BOATRAMP_SECURITY_ALLOW_GUEST_ADMIN_DOMAINS", "true"),
3134 ("BOATRAMP_SECURITY_ALLOW_GUEST_ADMIN_EMAIL", "true"),
3135 ("BOATRAMP_SECURITY_ALLOW_GUEST_ADMIN_SITE", "true"),
3136 ("BOATRAMP_SECURITY_ALLOW_GUEST_ADMIN_SECRETS", "true"),
3137 ]))
3138 .expect("valid env overrides apply");
3139 let security = cfg.security.expect("security materialised from env");
3140 let posture = security.resolve().expect("resolves");
3141 // Every one flips on over the multi-tenant preset default (which is `false` for all six).
3142 assert!(posture.allow_guest_email, "guest email re-enabled via env");
3143 assert!(posture.allow_guest_egress_extra_ca);
3144 assert!(posture.allow_guest_admin_domains);
3145 assert!(posture.allow_guest_admin_email);
3146 assert!(posture.allow_guest_admin_site);
3147 assert!(posture.allow_guest_admin_secrets);
3148 // `security explain` attributes each to the override/env source (not the profile preset).
3149 let explained = security.explain().expect("explains");
3150 for knob in [
3151 "allow_guest_email",
3152 "allow_guest_egress_extra_ca",
3153 "allow_guest_admin_domains",
3154 "allow_guest_admin_email",
3155 "allow_guest_admin_site",
3156 "allow_guest_admin_secrets",
3157 ] {
3158 assert!(
3159 explained
3160 .lines()
3161 .any(|l| l.contains(knob) && l.contains("true") && l.contains("(override)")),
3162 "explain shows {knob} = true (override): \n{explained}"
3163 );
3164 }
3165 }
3166
3167 #[test]
3168 fn each_guest_feature_env_var_moves_its_own_posture_field() {
3169 // Cross-wiring guard: set each of the six guest-feature vars ALONE over the multi-tenant
3170 // default and assert THAT var's own resolved field flips — so a copy-paste arm mapping a var
3171 // to the wrong field (or an unregistered var that never materialises the section) fails here.
3172 // Complements `every_posture_override_field_has_an_env_mapping` below (which proves coverage
3173 // by field name but not that each arm targets the right field).
3174 for (var, check) in [
3175 (
3176 "BOATRAMP_SECURITY_ALLOW_GUEST_EMAIL",
3177 (|p: &boatramp_core::security::SecurityPosture| p.allow_guest_email)
3178 as fn(&boatramp_core::security::SecurityPosture) -> bool,
3179 ),
3180 ("BOATRAMP_SECURITY_ALLOW_GUEST_EGRESS_EXTRA_CA", |p| {
3181 p.allow_guest_egress_extra_ca
3182 }),
3183 ("BOATRAMP_SECURITY_ALLOW_GUEST_ADMIN_DOMAINS", |p| {
3184 p.allow_guest_admin_domains
3185 }),
3186 ("BOATRAMP_SECURITY_ALLOW_GUEST_ADMIN_EMAIL", |p| {
3187 p.allow_guest_admin_email
3188 }),
3189 ("BOATRAMP_SECURITY_ALLOW_GUEST_ADMIN_SITE", |p| {
3190 p.allow_guest_admin_site
3191 }),
3192 ("BOATRAMP_SECURITY_ALLOW_GUEST_ADMIN_SECRETS", |p| {
3193 p.allow_guest_admin_secrets
3194 }),
3195 ] {
3196 let mut cfg = ServerConfig::default();
3197 cfg.apply_env_overrides(&env(&[
3198 ("BOATRAMP_SECURITY_PROFILE", "multi-tenant"),
3199 (var, "true"),
3200 ]))
3201 .unwrap_or_else(|e| panic!("{var} applies: {e}"));
3202 let posture = cfg
3203 .security
3204 .unwrap_or_else(|| panic!("{var} materialises the security section"))
3205 .resolve()
3206 .expect("resolves");
3207 assert!(check(&posture), "{var} did not flip the resolved posture");
3208 }
3209 }
3210
3211 #[test]
3212 fn every_posture_override_field_has_an_env_mapping() {
3213 // Exhaustive guard against the EXACT class of gap v0.4.18 closes — a `PostureOverrides`
3214 // field a 12-factor fleet can set in `[security.overrides]` but NOT via env — for EVERY
3215 // field, now and in the future. Enumerate the struct's fields structurally (serialize a
3216 // default instance; every field renders as a key) and assert each maps to a registered
3217 // `BOATRAMP_SECURITY_<UPPER(field)>` in `SECURITY_ENV_VARS`. A new override field added
3218 // without an env var (or a var left out of the registry) fails here — so the omission that
3219 // regressed `allow_guest_email` can't silently recur. The registry entry is load-bearing:
3220 // `apply_env_overrides` only materialises the section when `source.any(SECURITY_ENV_VARS)`.
3221 let all = serde_json::to_value(boatramp_core::security::PostureOverrides::default())
3222 .expect("PostureOverrides serializes");
3223 let fields = all.as_object().expect("a struct is a JSON object");
3224 assert!(!fields.is_empty(), "expected some override fields");
3225 for field in fields.keys() {
3226 let var = format!("BOATRAMP_SECURITY_{}", field.to_uppercase());
3227 assert!(
3228 SECURITY_ENV_VARS.contains(&var.as_str()),
3229 "PostureOverrides field `{field}` has no env mapping — add `{var}` to \
3230 SECURITY_ENV_VARS + an arm in apply_env_overrides (the v0.4.18 forgot-a-knob guard)"
3231 );
3232 }
3233 }
3234
3235 #[test]
3236 fn cluster_section_parses_the_dynamic_join_shape() {
3237 let cfg = server(
3238 r#"(
3239 cluster: (
3240 listen: "10.0.0.2:7000",
3241 root_pubkeys: ["es256:03a1"],
3242 seeds: ["https://10.0.0.1:8080"],
3243 join_token: "env:BOATRAMP_JOIN_TOKEN",
3244 ),
3245 )"#,
3246 );
3247 let cluster = cfg.cluster.unwrap();
3248 assert_eq!(
3249 cluster.listen,
3250 "10.0.0.2:7000".parse::<std::net::SocketAddr>().unwrap()
3251 );
3252 assert_eq!(cluster.root_pubkeys, vec!["es256:03a1".to_string()]);
3253 assert_eq!(cluster.seeds, vec!["https://10.0.0.1:8080".to_string()]);
3254 assert_eq!(
3255 cluster.join_token.as_deref(),
3256 Some("env:BOATRAMP_JOIN_TOKEN")
3257 );
3258 // store_dir defaults to None (→ <data-dir>/raft at serve time).
3259 assert!(cluster.store_dir.is_none());
3260 }
3261
3262 #[test]
3263 fn cluster_section_founds_with_just_a_listen_addr() {
3264 // A founder needs no seeds/token — just where to bind the mesh.
3265 let cfg = server(r#"( cluster: ( listen: "0.0.0.0:7000" ) )"#);
3266 let cluster = cfg.cluster.unwrap();
3267 assert!(cluster.seeds.is_empty());
3268 assert!(cluster.root_pubkeys.is_empty());
3269 assert!(cluster.join_token.is_none());
3270 }
3271
3272 #[test]
3273 fn sql_binding_single_node_defaults() {
3274 // A bare section (or none) means single-node: no url, default dir.
3275 let cfg = server(r#"( handlers: ( bindings: ( sql: () ) ) )"#);
3276 let sql = cfg.handlers.unwrap().bindings.sql.unwrap();
3277 assert!(sql.url.is_none());
3278 assert!(sql.dir.is_none());
3279 }
3280
3281 #[test]
3282 fn sql_binding_single_node_custom_dir() {
3283 let cfg =
3284 server(r#"( handlers: ( bindings: ( sql: ( dir: "/var/lib/boatramp/sql" ) ) ) )"#);
3285 let sql = cfg.handlers.unwrap().bindings.sql.unwrap();
3286 assert_eq!(sql.dir.as_deref(), Some(Path::new("/var/lib/boatramp/sql")));
3287 assert!(sql.url.is_none());
3288 }
3289
3290 #[test]
3291 fn sql_binding_cluster() {
3292 let cfg = server(
3293 r#"(
3294 handlers: ( bindings: ( sql: (
3295 url: "http://sqld:8080",
3296 admin_url: "http://sqld:9090",
3297 token_env: "BOATRAMP_SQL_TOKEN",
3298 ) ) ),
3299 )"#,
3300 );
3301 let sql = cfg.handlers.unwrap().bindings.sql.unwrap();
3302 assert_eq!(sql.url.as_deref(), Some("http://sqld:8080"));
3303 assert_eq!(sql.admin_url.as_deref(), Some("http://sqld:9090"));
3304 assert_eq!(sql.token_env.as_deref(), Some("BOATRAMP_SQL_TOKEN"));
3305 assert_eq!(sql.admin_token_env, None);
3306 }
3307
3308 #[test]
3309 fn sql_binding_preview_policy() {
3310 let cfg = server(
3311 r#"(
3312 handlers: ( bindings: ( sql: (
3313 preview_mode: "branch",
3314 preview_init: "/etc/boatramp/seed.sql",
3315 ) ) ),
3316 )"#,
3317 );
3318 let sql = cfg.handlers.unwrap().bindings.sql.unwrap();
3319 assert_eq!(sql.preview_mode.as_deref(), Some("branch"));
3320 assert_eq!(
3321 sql.preview_init.as_deref(),
3322 Some(Path::new("/etc/boatramp/seed.sql"))
3323 );
3324 }
3325
3326 #[test]
3327 fn sql_binding_external_databases() {
3328 let cfg = server(
3329 r#"(
3330 handlers: ( bindings: ( sql: (
3331 databases: {
3332 "analytics": (
3333 kind: "postgres",
3334 url_env: "ANALYTICS_PG_URL",
3335 pool_max: 16,
3336 read_only: true,
3337 ),
3338 "events": (
3339 kind: "mysql",
3340 url_env: "EVENTS_MYSQL_URL",
3341 read_url_env: "EVENTS_MYSQL_REPLICA_URL",
3342 allow_preview: true,
3343 ),
3344 },
3345 ) ) ),
3346 )"#,
3347 );
3348 let sql = cfg.handlers.unwrap().bindings.sql.unwrap();
3349 assert_eq!(sql.databases.len(), 2);
3350
3351 let analytics = &sql.databases["analytics"];
3352 assert_eq!(analytics.kind, "postgres");
3353 assert_eq!(analytics.url_env, "ANALYTICS_PG_URL");
3354 assert_eq!(analytics.pool_max, Some(16));
3355 assert!(analytics.read_only);
3356 assert!(!analytics.allow_preview);
3357 assert!(analytics.read_url_env.is_none());
3358
3359 let events = &sql.databases["events"];
3360 assert_eq!(events.kind, "mysql");
3361 assert_eq!(
3362 events.read_url_env.as_deref(),
3363 Some("EVENTS_MYSQL_REPLICA_URL")
3364 );
3365 assert!(events.allow_preview);
3366 assert!(!events.read_only);
3367 }
3368
3369 #[test]
3370 fn sql_binding_compute_backed_database() {
3371 let cfg = server(
3372 r#"(
3373 handlers: ( bindings: ( sql: (
3374 databases: {
3375 "analytics": (
3376 kind: "postgres",
3377 compute: "pg",
3378 database: "analytics",
3379 user: "app",
3380 password_env: "PG_APP_PW",
3381 ),
3382 },
3383 ) ) ),
3384 )"#,
3385 );
3386 let db = &cfg.handlers.unwrap().bindings.sql.unwrap().databases["analytics"];
3387 assert_eq!(db.kind, "postgres");
3388 assert_eq!(db.compute.as_deref(), Some("pg"));
3389 assert_eq!(db.database.as_deref(), Some("analytics"));
3390 assert_eq!(db.user.as_deref(), Some("app"));
3391 assert_eq!(db.password_env.as_deref(), Some("PG_APP_PW"));
3392 assert!(db.url_env.is_empty(), "compute-backed has no url_env");
3393 assert!(db.validate("analytics").is_ok());
3394 }
3395
3396 #[test]
3397 fn sql_binding_source_is_exactly_one_of_url_or_compute() {
3398 // Neither source → error.
3399 assert!(ExternalDatabaseConfig::default().validate("db").is_err());
3400 // Both sources → error.
3401 let both = ExternalDatabaseConfig {
3402 kind: "postgres".into(),
3403 url_env: "PG_URL".into(),
3404 compute: Some("pg".into()),
3405 ..Default::default()
3406 };
3407 assert!(both.validate("db").is_err());
3408 // `url_env` only → ok.
3409 let url = ExternalDatabaseConfig {
3410 kind: "postgres".into(),
3411 url_env: "PG_URL".into(),
3412 ..Default::default()
3413 };
3414 assert!(url.validate("db").is_ok());
3415 // `compute` without the connection details boatramp can't infer → error.
3416 let bare = ExternalDatabaseConfig {
3417 kind: "postgres".into(),
3418 compute: Some("pg".into()),
3419 ..Default::default()
3420 };
3421 assert!(bare.validate("db").is_err());
3422 // `compute` with database/user + a bring-your-own `password_env` → ok, and
3423 // is *not* a managed credential.
3424 let byo = ExternalDatabaseConfig {
3425 kind: "postgres".into(),
3426 compute: Some("pg".into()),
3427 database: Some("analytics".into()),
3428 user: Some("app".into()),
3429 password_env: Some("PG_APP_PW".into()),
3430 ..Default::default()
3431 };
3432 assert!(byo.validate("db").is_ok());
3433 assert!(!byo.is_managed_credential());
3434 // `compute` with database/user but NO `password_env` → ok, and boatramp
3435 // manages the credential (Phase 2).
3436 let managed = ExternalDatabaseConfig {
3437 kind: "postgres".into(),
3438 compute: Some("pg".into()),
3439 database: Some("analytics".into()),
3440 user: Some("app".into()),
3441 ..Default::default()
3442 };
3443 assert!(managed.validate("db").is_ok());
3444 assert!(managed.is_managed_credential());
3445 }
3446
3447 #[test]
3448 fn libsql_source_is_exactly_one_of_path_or_url() {
3449 // A single-node `libsql` file (path only) → ok.
3450 let file = ExternalDatabaseConfig {
3451 kind: "libsql".into(),
3452 path: Some("/data/app.db".into()),
3453 ..Default::default()
3454 };
3455 assert!(file.validate("app").is_ok());
3456 // `sqlite` alias works the same.
3457 let sqlite = ExternalDatabaseConfig {
3458 kind: "sqlite".into(),
3459 path: Some("/data/app.db".into()),
3460 ..Default::default()
3461 };
3462 assert!(sqlite.validate("app").is_ok());
3463 // A remote-sqld `libsql` (url_env only) → ok.
3464 let remote = ExternalDatabaseConfig {
3465 kind: "libsql".into(),
3466 url_env: "LIBSQL_URL".into(),
3467 ..Default::default()
3468 };
3469 assert!(remote.validate("app").is_ok());
3470 // Neither `path` nor `url_env` → error.
3471 let neither = ExternalDatabaseConfig {
3472 kind: "libsql".into(),
3473 ..Default::default()
3474 };
3475 assert!(neither.validate("app").is_err());
3476 // Both `path` and `url_env` → error (exactly one).
3477 let both = ExternalDatabaseConfig {
3478 kind: "libsql".into(),
3479 path: Some("/data/app.db".into()),
3480 url_env: "LIBSQL_URL".into(),
3481 ..Default::default()
3482 };
3483 assert!(both.validate("app").is_err());
3484 // `compute` on a `libsql` binding → error (boatramp doesn't run a libsql server workload).
3485 let compute = ExternalDatabaseConfig {
3486 kind: "libsql".into(),
3487 compute: Some("x".into()),
3488 path: Some("/data/app.db".into()),
3489 ..Default::default()
3490 };
3491 assert!(compute.validate("app").is_err());
3492 // `path` on a NON-libsql (postgres) binding → error (only libsql has an on-disk file).
3493 let pg_path = ExternalDatabaseConfig {
3494 kind: "postgres".into(),
3495 url_env: "PG_URL".into(),
3496 path: Some("/data/app.db".into()),
3497 ..Default::default()
3498 };
3499 assert!(pg_path.validate("db").is_err());
3500 }
3501
3502 /// Path to a file at the repo root (two levels up from this crate).
3503 fn repo_root_file(name: &str) -> PathBuf {
3504 Path::new(env!("CARGO_MANIFEST_DIR"))
3505 .join("../..")
3506 .join(name)
3507 }
3508
3509 #[test]
3510 fn shipped_project_example_parses() {
3511 // The example we ship must always parse + compile-check, so it can't drift
3512 // from the schema.
3513 let text = std::fs::read_to_string(repo_root_file("examples/site/project.cfg.example"))
3514 .expect("example project config is present");
3515 let cfg = ProjectConfig::parse(&text).expect("example project config parses");
3516 assert_eq!(cfg.publish.server.as_deref(), Some("http://127.0.0.1:8080"));
3517 assert_eq!(cfg.build.as_ref().unwrap().command, "npm run build");
3518 assert_eq!(
3519 cfg.routing.error_documents.get(&404).map(String::as_str),
3520 Some("/404.html")
3521 );
3522 }
3523
3524 #[test]
3525 fn shipped_server_example_parses() {
3526 let text = std::fs::read_to_string(repo_root_file("boatramp.cfg.example"))
3527 .expect("example server config is present");
3528 let cfg = ServerConfig::parse(&text).expect("example server config parses");
3529 let serve = cfg.serve.expect("example sets a serve section");
3530 assert_eq!(
3531 serve.addr,
3532 Some("0.0.0.0:8080".parse::<std::net::SocketAddr>().unwrap())
3533 );
3534 }
3535
3536 #[test]
3537 fn secrets_section_parses_local_and_vault() {
3538 let local = server(r#"( secrets: ( envelope: "local", kek_file: "/k/kek" ) )"#)
3539 .secrets
3540 .expect("secrets section");
3541 assert_eq!(local.envelope, "local");
3542 assert_eq!(
3543 local.kek_file.as_deref(),
3544 Some(std::path::Path::new("/k/kek"))
3545 );
3546
3547 let vault = server(
3548 r#"( secrets: ( envelope: "vault", vault: ( addr: "https://vault:8200", key: "certs" ) ) )"#,
3549 )
3550 .secrets
3551 .expect("secrets section");
3552 let v = vault.vault.expect("vault subsection");
3553 assert_eq!(v.addr, "https://vault:8200");
3554 assert_eq!(v.key, "certs");
3555 // The token env defaults to VAULT_TOKEN and is never in the file.
3556 assert_eq!(v.token_env, "VAULT_TOKEN");
3557 }
3558
3559 #[test]
3560 fn serve_section_partial_parses() {
3561 // A partial `serve` section parses — unset fields take their defaults.
3562 let cfg = server(r#"( serve: ( addr: "0.0.0.0:8080", protect_previews: true ) )"#);
3563 let serve = cfg.serve.unwrap();
3564 assert_eq!(
3565 serve.addr,
3566 Some("0.0.0.0:8080".parse::<std::net::SocketAddr>().unwrap())
3567 );
3568 assert!(serve.protect_previews);
3569 assert!(!serve.cluster_rate_limit);
3570 assert!(serve.data_dir.is_none());
3571 }
3572
3573 #[test]
3574 fn serve_console_config_parses() {
3575 // Absent ⇒ no console.
3576 let cfg = server(r#"( serve: ( addr: "0.0.0.0:8080" ) )"#);
3577 assert!(cfg.serve.unwrap().console.is_none());
3578 // Explicit console block with host + path.
3579 let cfg = server(
3580 r#"( serve: ( console: (
3581 enabled: true,
3582 host: "console.example.com",
3583 path: "/_console",
3584 ) ) )"#,
3585 );
3586 let console = cfg.serve.unwrap().console.unwrap();
3587 assert!(console.enabled);
3588 assert_eq!(console.host.as_deref(), Some("console.example.com"));
3589 assert_eq!(console.path.as_deref(), Some("/_console"));
3590 // Bare `enabled` ⇒ host/path take their (server-side) defaults.
3591 let cfg = server(r#"( serve: ( console: ( enabled: true ) ) )"#);
3592 let console = cfg.serve.unwrap().console.unwrap();
3593 assert!(console.enabled);
3594 assert!(console.host.is_none() && console.path.is_none());
3595 }
3596
3597 #[test]
3598 fn serve_s3_credential_config_parses() {
3599 // #505: absent ⇒ no sealed source (the ambient AWS env chain).
3600 let cfg = server(r#"( serve: ( addr: "0.0.0.0:8080" ) )"#);
3601 assert!(cfg.serve.unwrap().s3_credential.is_none());
3602 // An explicit `[serve.s3_credential]`: a plain `access_key_id` + a `boatramp:` sealed
3603 // `secret_access_key` ref (the config text carries only the REFERENCE, never the secret).
3604 let cfg = server(
3605 r#"( serve: ( s3_credential: (
3606 access_key_id: "tid_public_akid",
3607 secret_access_key: "boatramp:tigris-secret",
3608 ) ) )"#,
3609 );
3610 let cred = cfg.serve.unwrap().s3_credential.unwrap();
3611 assert_eq!(cred.access_key_id, "tid_public_akid");
3612 assert_eq!(cred.secret_access_key, "boatramp:tigris-secret");
3613 // An unknown field is rejected (`deny_unknown_fields`) — a fat-fingered key fails fast.
3614 let err: Result<ServerConfig, _> = ron_options().from_str(
3615 r#"( serve: ( s3_credential: ( access_key_id: "x", secret_access_key: "boatramp:y", bogus: 1 ) ) )"#,
3616 );
3617 assert!(
3618 err.is_err(),
3619 "unknown [serve.s3_credential] field must be rejected"
3620 );
3621 }
3622
3623 #[test]
3624 fn serve_blob_fallback_config_parses() {
3625 // Blob-backend migration Part 2: absent ⇒ no fallback (the read-through composite is not wired).
3626 let cfg = server(r#"( serve: ( addr: "0.0.0.0:8080" ) )"#);
3627 assert!(cfg.serve.unwrap().blob_fallback.is_none());
3628 // A `[serve.blob_fallback]` secondary: the OLD fs backend to drain while the primary is s3,
3629 // with its own sealed S3 credential ref and a custom secondary timeout.
3630 let cfg = server(
3631 r#"( serve: (
3632 blobs: s3,
3633 s3_bucket: "new-bucket",
3634 blob_fallback: (
3635 blobs: fs,
3636 secondary_timeout_secs: 3,
3637 s3_credential: (
3638 access_key_id: "old_akid",
3639 secret_access_key: "boatramp:old-secret",
3640 ),
3641 ),
3642 ) )"#,
3643 );
3644 let serve = cfg.serve.unwrap();
3645 let fb = serve.blob_fallback.unwrap();
3646 assert_eq!(fb.blobs, Some(crate::backends::BlobBackend::Fs));
3647 assert_eq!(fb.secondary_timeout_secs, Some(3));
3648 let cred = fb.s3_credential.unwrap();
3649 assert_eq!(cred.access_key_id, "old_akid");
3650 assert_eq!(cred.secret_access_key, "boatramp:old-secret");
3651 // An unknown field is rejected (`deny_unknown_fields`).
3652 let err: Result<ServerConfig, _> =
3653 ron_options().from_str(r#"( serve: ( blob_fallback: ( blobs: fs, bogus: 1 ) ) )"#);
3654 assert!(
3655 err.is_err(),
3656 "unknown [serve.blob_fallback] field must be rejected"
3657 );
3658 }
3659
3660 // =======================================================================
3661 // JSON config input gate (v0.6.5) — serve/project config + detection half.
3662 //
3663 // ROBUST-successor gate (continuing the v0.6.4 blob-purge style): a `#[test]`
3664 // battery whose sole CI contract is the ordinary `cargo test` exit code — NO
3665 // grepped uppercase marker, NO bash env-var mutation loop. Every test is prefixed
3666 // `config_json_gate_` so the CI lane filters with `cargo test … config_json`. The
3667 // apply-manifest half (version current-schema-only, bad-route compile-check) lives
3668 // in `boatramp::apply`'s test module under the same prefix.
3669 // =======================================================================
3670
3671 /// Detection: `resolve_format` follows the explicit-override-wins, else
3672 /// `.json`⇒Json / everything-else⇒Ron rule (no content-sniffing).
3673 #[test]
3674 fn config_json_gate_resolve_format_table() {
3675 use std::path::Path;
3676 // Auto by extension.
3677 assert_eq!(
3678 resolve_format(Path::new("boatramp.json"), None),
3679 ConfigFormat::Json
3680 );
3681 assert_eq!(
3682 resolve_format(Path::new("apply.cfg"), None),
3683 ConfigFormat::Ron
3684 );
3685 assert_eq!(
3686 resolve_format(Path::new("apply.ron"), None),
3687 ConfigFormat::Ron
3688 );
3689 // No extension ⇒ Ron.
3690 assert_eq!(resolve_format(Path::new("apply"), None), ConfigFormat::Ron);
3691 // Case-insensitive `.json`.
3692 assert_eq!(
3693 resolve_format(Path::new("x.JSON"), None),
3694 ConfigFormat::Json
3695 );
3696 // Explicit override wins BOTH ways.
3697 assert_eq!(
3698 resolve_format(Path::new("x.json"), Some(ConfigFormat::Ron)),
3699 ConfigFormat::Ron
3700 );
3701 assert_eq!(
3702 resolve_format(Path::new("x.cfg"), Some(ConfigFormat::Json)),
3703 ConfigFormat::Json
3704 );
3705 }
3706
3707 /// Equivalence: a representative serve config authored in RON and in equivalent
3708 /// JSON parses to the SAME field values — including the externally-tagged
3709 /// enum-variant field `[serve].blobs` (`BlobBackend::S3`; RON `s3` ≡ JSON `"s3"`),
3710 /// proving variant-name fidelity through the JSON decoder.
3711 #[test]
3712 fn config_json_gate_serve_ron_and_json_are_equivalent() {
3713 let ron = r#"( serve: ( addr: "0.0.0.0:8080", blobs: s3, s3_bucket: "b" ) )"#;
3714 let json = r#"{ "serve": { "addr": "0.0.0.0:8080", "blobs": "s3", "s3_bucket": "b" } }"#;
3715 let from_ron = ServerConfig::parse_with_format(ron, ConfigFormat::Ron).unwrap();
3716 let from_json = ServerConfig::parse_with_format(json, ConfigFormat::Json).unwrap();
3717 let s_ron = from_ron.serve.unwrap();
3718 let s_json = from_json.serve.unwrap();
3719 assert_eq!(s_ron.blobs, Some(crate::backends::BlobBackend::S3));
3720 assert_eq!(s_json.blobs, Some(crate::backends::BlobBackend::S3));
3721 assert_eq!(s_ron.blobs, s_json.blobs, "the enum variant survives JSON");
3722 assert_eq!(s_ron.addr, s_json.addr);
3723 assert_eq!(s_ron.s3_bucket, s_json.s3_bucket);
3724 assert_eq!(s_json.s3_bucket.as_deref(), Some("b"));
3725 }
3726
3727 /// Equivalence (project): a `project.cfg` authored in RON and in equivalent JSON
3728 /// parses to the same publish target.
3729 #[test]
3730 fn config_json_gate_project_ron_and_json_are_equivalent() {
3731 let ron = r#"( publish: ( project: "team-x" ) )"#;
3732 let json = r#"{ "publish": { "project": "team-x" } }"#;
3733 let from_ron = ProjectConfig::parse_with_format(ron, ConfigFormat::Ron).unwrap();
3734 let from_json = ProjectConfig::parse_with_format(json, ConfigFormat::Json).unwrap();
3735 assert_eq!(from_ron.publish.project.as_deref(), Some("team-x"));
3736 assert_eq!(from_ron.publish.project, from_json.publish.project);
3737 }
3738
3739 /// `deny_unknown_fields` parity: a JSON serve config with an extra/typo'd field is
3740 /// a hard parse error, not a silent drop (the `[serve.blob_fallback]`
3741 /// `deny_unknown_fields` struct is the RON parity partner tested above).
3742 #[test]
3743 fn config_json_gate_serve_json_denies_unknown_fields() {
3744 let json = r#"{ "serve": { "blob_fallback": { "blobs": "fs", "bogus": 1 } } }"#;
3745 assert!(
3746 ServerConfig::parse_with_format(json, ConfigFormat::Json).is_err(),
3747 "an unknown JSON field must be rejected (deny_unknown_fields), same as RON"
3748 );
3749 }
3750
3751 /// No-bypass: post-parse validation runs regardless of format. A JSON serve config
3752 /// with an invalid `handlers.bindings.sql.databases` db-name (a `/`-bearing,
3753 /// non-URL-path-safe name) is rejected identically to RON — the SAME
3754 /// `ConfigError::InvalidDbName`, from the SAME `validate_sql_db_names` choke point.
3755 #[test]
3756 fn config_json_gate_json_bad_db_name_is_rejected_like_ron() {
3757 // The invalid binding name `a/b` (a path separator) fails the canonical
3758 // resource-name validator that `validate_sql_db_names` runs after the parse.
3759 let json = r#"{ "handlers": { "bindings": { "sql": {
3760 "databases": { "a/b": { "kind": "postgres", "url_env": "DB_URL" } }
3761 } } } }"#;
3762 let ron = r#"( handlers: ( bindings: ( sql: (
3763 databases: { "a/b": ( kind: "postgres", url_env: "DB_URL" ) }
3764 ) ) ) )"#;
3765 let json_err = ServerConfig::parse_with_format(json, ConfigFormat::Json)
3766 .expect_err("a bad db-name in a JSON config must be rejected");
3767 let ron_err = ServerConfig::parse_with_format(ron, ConfigFormat::Ron)
3768 .expect_err("a bad db-name in a RON config must be rejected");
3769 assert!(
3770 matches!(json_err, ConfigError::InvalidDbName { .. }),
3771 "JSON bad db-name is InvalidDbName, got {json_err:?}"
3772 );
3773 assert!(
3774 matches!(ron_err, ConfigError::InvalidDbName { .. }),
3775 "RON bad db-name is InvalidDbName, got {ron_err:?}"
3776 );
3777 }
3778
3779 /// Anti-hollow (typed, in-process): a document valid as JSON but NOT as RON MUST
3780 /// parse under `Json` and FAIL under `Ron`. If `parse_with_format` ignored `fmt`
3781 /// and always decoded RON, the JSON leg would fail — so the format selection is
3782 /// proven load-bearing, with no env var and no marker.
3783 #[test]
3784 fn config_json_gate_serve_format_selection_is_load_bearing() {
3785 // A bare JSON object is valid JSON for `ServerConfig`, not valid RON for it
3786 // (RON structs use `( … )`, not a brace map).
3787 let doc = r#"{ "serve": { "s3_bucket": "only-json" } }"#;
3788 let as_json = ServerConfig::parse_with_format(doc, ConfigFormat::Json).unwrap();
3789 assert_eq!(
3790 as_json.serve.unwrap().s3_bucket.as_deref(),
3791 Some("only-json")
3792 );
3793 assert!(
3794 ServerConfig::parse_with_format(doc, ConfigFormat::Ron).is_err(),
3795 "the same document must FAIL under Ron — else the fmt selection is hollow"
3796 );
3797 }
3798}