fabaccess-bffh/bffhd/authentication/mod.rs

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use crate::users::Users;
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use rsasl::error::SessionError;
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use rsasl::mechname::Mechname;
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use rsasl::property::{AuthId, Password};
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use rsasl::session::{Session, SessionData};
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use rsasl::validate::{validations, Validation};
use rsasl::{Property, SASL};
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use std::sync::Arc;
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use crate::authentication::fabfire::FabFireCardKey;
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mod fabfire;
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struct Callback {
users: Users,
span: tracing::Span,
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}
impl Callback {
pub fn new(users: Users) -> Self {
let span = tracing::info_span!("SASL callback");
Self { users, span }
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}
}
impl rsasl::callback::Callback for Callback {
fn provide_prop(
&self,
session: &mut rsasl::session::SessionData,
property: Property,
) -> Result<(), SessionError> {
match property {
fabfire::FABFIRECARDKEY => {
let authcid = session.get_property_or_callback::<AuthId>()?;
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let user = self
.users
.get_user(authcid.unwrap().as_ref())
.ok_or(SessionError::AuthenticationFailure)?;
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let kv = user
.userdata
.kv
.get("cardkey")
.ok_or(SessionError::AuthenticationFailure)?;
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let card_key = <[u8; 16]>::try_from(
hex::decode(kv).map_err(|_| SessionError::AuthenticationFailure)?,
)
.map_err(|_| SessionError::AuthenticationFailure)?;
session.set_property::<FabFireCardKey>(Arc::new(card_key));
Ok(())
}
_ => Err(SessionError::NoProperty { property }),
}
}
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fn validate(
&self,
session: &mut SessionData,
validation: Validation,
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_mechanism: &Mechname,
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) -> Result<(), SessionError> {
let span = tracing::info_span!(parent: &self.span, "validate");
let _guard = span.enter();
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match validation {
validations::SIMPLE => {
let authnid = session
.get_property::<AuthId>()
.ok_or(SessionError::no_property::<AuthId>())?;
tracing::debug!(authid=%authnid, "SIMPLE validation requested");
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if let Some(user) = self.users.get_user(authnid.as_str()) {
let passwd = session
.get_property::<Password>()
.ok_or(SessionError::no_property::<Password>())?;
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if user
.check_password(passwd.as_bytes())
.map_err(|_e| SessionError::AuthenticationFailure)?
{
return Ok(());
} else {
tracing::warn!(authid=%authnid, "AUTH FAILED: bad password");
}
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} else {
tracing::warn!(authid=%authnid, "AUTH FAILED: no such user '{}'", authnid);
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}
Err(SessionError::AuthenticationFailure)
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}
_ => {
tracing::error!(?validation, "Unimplemented validation requested");
Err(SessionError::no_validate(validation))
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}
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}
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}
}
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struct Inner {
rsasl: SASL,
}
impl Inner {
pub fn new(rsasl: SASL) -> Self {
Self { rsasl }
}
}
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#[derive(Clone)]
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pub struct AuthenticationHandle {
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inner: Arc<Inner>,
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}
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impl AuthenticationHandle {
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pub fn new(userdb: Users) -> Self {
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let span = tracing::debug_span!("authentication");
let _guard = span.enter();
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let mut rsasl = SASL::new();
rsasl.install_callback(Arc::new(Callback::new(userdb)));
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let mechs: Vec<&'static str> = rsasl
.server_mech_list()
.into_iter()
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.map(|m| m.mechanism.as_str())
.collect();
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tracing::info!(available_mechs = mechs.len(), "initialized sasl backend");
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tracing::debug!(?mechs, "available mechs");
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Self {
inner: Arc::new(Inner::new(rsasl)),
}
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}
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pub fn start(&self, mechanism: &Mechname) -> anyhow::Result<Session> {
Ok(self.inner.rsasl.server_start(mechanism)?)
}
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pub fn list_available_mechs(&self) -> impl IntoIterator<Item = &Mechname> {
self.inner
.rsasl
.server_mech_list()
.into_iter()
.map(|m| m.mechanism)
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}
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}