onionwire/crates/onionwire-sdk/tests/provider_resolution.rs

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//! Regression test for the on-device failure: the APK built, installed and
//! opened, but pressing **Open** on the unlock screen died one call deep inside
//! Arti's rustls backend with
//!
//! ```text
//! Could not automatically determine the process-level CryptoProvider from
//! Rustls crate features.
//! Call CryptoProvider::install_default() before this point to select a
//! provider manually, or make sure exactly one of the 'aws-lc-rs' and 'ring'
//! features is enabled.
//! ```
//!
//! rustls 0.23 chooses its provider from its own `ring` / `aws-lc-rs` **crate
//! features**, not from which crypto crates happen to be linked. Arti reaches
//! rustls through `tor-rtcompat` with `default-features = false`, so neither
//! provider feature is on and rustls is compiled with *no* provider at all:
//! `ring` showing up in `cargo tree` (pulled in by `snow`, for Noise) proves
//! nothing. Everything compiles, the APK ships, and the process-default lookup
//! fails at runtime.
//!
//! This test is the invariant Arti relies on: the process default must be
//! resolvable **without** anyone calling `install_default()` first.
//!
//! Deliberately the only test in this file — a second test that installs a
//! provider would race with it inside the same test binary and could mask the
//! regression.
/// Building a `rustls` config the way Arti does, straight from the process
/// default, must not panic.
#[test]
fn rustls_default_provider_resolves_without_manual_install() {
assert!(
rustls::crypto::CryptoProvider::get_default().is_none(),
"this test must start with no provider installed"
);
// Pre-fix this panics with the device's exact message.
let _ = rustls::ClientConfig::builder();
assert!(
rustls::crypto::CryptoProvider::get_default().is_some(),
"rustls resolved no CryptoProvider — the crate feature that selects a \
provider is not enabled in this workspace"
);
}