Files
mytheclipse/crates/mytheclipse-config/src/validate.rs
T
asepharyana 1dfc6d6865 fix(ci): restore full CI green — test-matrix, clippy, rustfmt, and rustdoc gates
Root cause of the failing CI run was that examples/tests referencing
feature-gated items were auto-detected (no required-features), so
`--all-targets` compiled them under feature combinations where those
modules didn't exist. Fixes:

- mytheclipse Cargo.toml: declare the `high_level` example and
  `race_stress` integration test with required-features = ["full"];
  `cargo build --all-targets` now skips them when full is off. This
  clears the whole test-matrix (workspace default, all-features, and
  every single-feature config) which all failed on E0432/E0433.
- lib.rs: auto_metrics_service depends on service_builder, so regate it
  behind all(observability, resiliency) instead of observability alone
  (observability-only build compiled the module without resiliency).
- mytheclipse-tracing: gate `pub mod fmt` behind any
  tracing-subscriber-providing feature so --no-default-features compiles.
- mytheclipse-queue: gate `pub mod worker` behind in-memory (worker.rs
  requires tokio, only provided by in-memory).
- clippy -D warnings fixes: deprecated base64 0.22 free fns -> Engine
  (paseto), unused key field, needless mut (service_builder), unused
  import/dead var/missing is_empty (bg_join), dead is_expired (dlock),
  while-let-iterator->for (parallel_map), type_complexity (shutdown_guard),
  MutexGuard held across await (middleware, now clones Arc'd layers),
  if-let-Err->is_err (queue), unused CliBuilder fields now wired into clap.
- rustdoc -D warnings: resolve retry/MetricsBridge/CircuitBreaker/KeyRing
  intra-doc links and fix the unparseable lifecycle.rs code fence.
- cargo fmt --all to satisfy the Rustfmt gate.
2026-08-30 00:33:21 +07:00

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//! Config validation traits and built-in validators (feature `validation`).
//!
//! [`ConfigValidator`] lets application config types sanity-check themselves
//! after deserialization — e.g. ensuring a database URL parses, a port is in
//! range, or a required field is non-empty — and collect all failures into a
//! single report rather than failing one field at a time.
use std::fmt;
use crate::ConfigError;
/// A single validation failure with a human-readable path and message.
#[derive(Debug, Clone, PartialEq, Eq)]
pub struct ValidationFailure {
/// Dotted path to the offending field, e.g. `"database.url"`.
pub path: String,
/// What was wrong.
pub message: String,
}
impl fmt::Display for ValidationFailure {
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
write!(f, "{}: {}", self.path, self.message)
}
}
/// Errors produced by [`ConfigValidator::validate`].
#[derive(Debug, Clone)]
pub struct ValidationError {
/// All failures found in a single validation pass.
pub failures: Vec<ValidationFailure>,
}
impl fmt::Display for ValidationError {
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
write!(
f,
"config validation failed ({} issue(s)):",
self.failures.len()
)?;
for failure in &self.failures {
write!(f, "\n - {failure}")?;
}
Ok(())
}
}
impl std::error::Error for ValidationError {}
impl From<ValidationError> for ConfigError {
fn from(err: ValidationError) -> Self {
ConfigError::Validation(err.to_string())
}
}
/// Trait for types that can validate themselves after configuration loading.
///
/// Implementors collect field-level failures rather than returning on the
/// first error, so operators see the full problem set in one pass.
pub trait ConfigValidator {
fn validate(&self) -> Result<(), ValidationError>;
}
/// Convenience blanket for any serializable config type that implements
/// [`ConfigValidator`]. Callers typically invoke this on the output of
/// [`ConfigLoader::build`](crate::loader::ConfigLoader::build).
///
/// ```no_run
/// # use mytheclipse_config::{ConfigLoader, ConfigValidator, ConfigValidatorExt};
/// # use serde::Deserialize;
/// # #[derive(Debug, Deserialize)]
/// # struct Cfg { port: u16 }
/// # impl ConfigValidator for Cfg {
/// # fn validate(&self) -> Result<(), mytheclipse_config::ValidationError> { Ok(()) }
/// # }
/// let cfg: Cfg = ConfigLoader::new().build().unwrap();
/// cfg.validate_config().unwrap();
/// ```
pub trait ConfigValidatorExt: ConfigValidator {
/// Validates `self`, returning `Ok(())` on success.
fn validate_config(&self) -> Result<(), ConfigError> {
self.validate().map_err(ConfigError::from)
}
}
impl<T: ConfigValidator> ConfigValidatorExt for T {}
/// Validates that a string is a well-formed URL (http/https).
pub fn validate_url(path: &str, value: &str) -> Option<ValidationFailure> {
if value.is_empty() {
return Some(ValidationFailure {
path: path.to_string(),
message: "url must not be empty".into(),
});
}
// Minimal heuristic: scheme + host. We avoid pulling in a full URL crate
// to keep the dependency surface small.
let scheme_len = if value.starts_with("http://") {
7
} else if value.starts_with("https://") {
8
} else {
return Some(ValidationFailure {
path: path.to_string(),
message: format!("url must start with http:// or https:// (got {value:?})"),
});
};
let host = &value[scheme_len..];
if host.is_empty() {
return Some(ValidationFailure {
path: path.to_string(),
message: format!("url has no host portion (got {value:?})"),
});
}
None
}
/// Validates that a port number is in the valid range (1–65535).
pub fn validate_port(path: &str, port: u16) -> Option<ValidationFailure> {
// u16 already ranges 0–65535; exclude 0 (reserved/unspecified).
if port == 0 {
Some(ValidationFailure {
path: path.to_string(),
message: "port must be > 0".into(),
})
} else {
None
}
}
/// Validates that a string is non-empty.
pub fn validate_non_empty(path: &str, value: &str) -> Option<ValidationFailure> {
if value.trim().is_empty() {
Some(ValidationFailure {
path: path.to_string(),
message: "value must not be empty".into(),
})
} else {
None
}
}
/// Validates that a numeric value falls within `[lo, hi]`.
pub fn validate_range<T>(path: &str, value: T, lo: T, hi: T) -> Option<ValidationFailure>
where
T: PartialOrd + fmt::Display + Copy,
{
if value < lo || value > hi {
Some(ValidationFailure {
path: path.to_string(),
message: format!("value {value} is out of range [{lo}, {hi}]"),
})
} else {
None
}
}
/// Collects all failures from an iterator of `Option<ValidationFailure>`.
pub fn collect_failures(
opts: impl IntoIterator<Item = Option<ValidationFailure>>,
) -> Result<(), ValidationError> {
let failures: Vec<_> = opts.into_iter().flatten().collect();
if failures.is_empty() {
Ok(())
} else {
Err(ValidationError { failures })
}
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn url_validator_pass_and_fail() {
assert!(validate_url("db.url", "https://example.com").is_none());
assert!(validate_url("db.url", "").is_some());
assert!(validate_url("db.url", "ftp://bad").is_some());
assert!(validate_url("db.url", "https://").is_some());
}
#[test]
fn port_validator_rejects_zero() {
assert!(validate_port("port", 0).is_some());
assert!(validate_port("port", 1).is_none());
assert!(validate_port("port", 65535).is_none());
}
#[test]
fn range_validator_bounds() {
assert!(validate_range("x", 5, 1, 10).is_none());
assert!(validate_range("x", 10, 1, 10).is_none());
assert!(validate_range("x", 0, 1, 10).is_some());
assert!(validate_range("x", 11, 1, 10).is_some());
}
#[test]
fn collect_failures_aggregates_all() {
let opts = [
validate_non_empty("a", ""),
validate_non_empty("b", "ok"),
validate_url("c.d", "bad://x"),
];
let err = collect_failures(opts).unwrap_err();
assert_eq!(err.failures.len(), 2);
assert_eq!(err.failures[0].path, "a");
assert_eq!(err.failures[1].path, "c.d");
}
#[test]
fn collect_failures_ok_when_all_pass() {
let opts = [
validate_url("a", "https://ok.com"),
validate_port("b", 8080),
];
assert!(collect_failures(opts).is_ok());
}
#[test]
fn blanket_ext_wrappers_validator() {
struct Cfg;
impl ConfigValidator for Cfg {
fn validate(&self) -> Result<(), ValidationError> {
Err(ValidationError {
failures: vec![ValidationFailure {
path: "x".into(),
message: "bad".into(),
}],
})
}
}
let c = Cfg;
assert!(c.validate_config().is_err());
}
}