2024-04-13 21:22:19 +02:00
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use std::collections::BTreeMap;
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2024-04-13 05:26:50 +02:00
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use axum::{extract::{FromRef, FromRequestParts}, http::{header, request::Parts}};
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2024-04-13 01:49:23 +02:00
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use base64::Engine;
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use openssl::{hash::MessageDigest, pkey::PKey, sign::Verifier};
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2024-03-25 01:58:30 +01:00
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use sea_orm::{ColumnTrait, Condition, EntityTrait, QueryFilter};
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2024-04-13 01:49:23 +02:00
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use crate::{errors::UpubError, model, server::Context};
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2024-03-25 01:58:30 +01:00
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#[derive(Debug, Clone)]
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pub enum Identity {
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Anonymous,
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2024-03-25 05:12:49 +01:00
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Local(String),
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Remote(String),
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2024-03-25 01:58:30 +01:00
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}
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2024-04-12 19:36:00 +02:00
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impl Identity {
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pub fn filter_condition(&self) -> Condition {
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2024-04-12 21:18:01 +02:00
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let base_cond = Condition::any().add(model::addressing::Column::Actor.eq(apb::target::PUBLIC));
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2024-04-12 19:36:00 +02:00
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match self {
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Identity::Anonymous => base_cond,
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Identity::Local(uid) => base_cond.add(model::addressing::Column::Actor.eq(uid)),
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Identity::Remote(server) => base_cond.add(model::addressing::Column::Server.eq(server)),
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// TODO should we allow all users on same server to see? or just specific user??
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}
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}
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}
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2024-03-25 01:58:30 +01:00
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pub struct AuthIdentity(pub Identity);
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#[axum::async_trait]
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impl<S> FromRequestParts<S> for AuthIdentity
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where
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Context: FromRef<S>,
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S: Send + Sync,
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{
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2024-04-13 01:49:23 +02:00
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type Rejection = UpubError;
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2024-03-25 01:58:30 +01:00
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async fn from_request_parts(parts: &mut Parts, state: &S) -> Result<Self, Self::Rejection> {
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let ctx = Context::from_ref(state);
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let mut identity = Identity::Anonymous;
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let auth_header = parts
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.headers
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.get(header::AUTHORIZATION)
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.map(|v| v.to_str().unwrap_or(""))
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.unwrap_or("");
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if auth_header.starts_with("Bearer ") {
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match model::session::Entity::find_by_id(auth_header.replace("Bearer ", ""))
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.filter(Condition::all().add(model::session::Column::Expires.gt(chrono::Utc::now())))
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.one(ctx.db())
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.await
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{
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2024-03-25 05:12:49 +01:00
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Ok(Some(x)) => identity = Identity::Local(x.actor),
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2024-04-13 01:49:23 +02:00
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Ok(None) => return Err(UpubError::unauthorized()),
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2024-03-25 01:58:30 +01:00
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Err(e) => {
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tracing::error!("failed querying user session: {e}");
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2024-04-13 01:49:23 +02:00
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return Err(UpubError::internal_server_error())
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2024-03-25 01:58:30 +01:00
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},
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}
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}
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2024-04-13 01:49:23 +02:00
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if let Some(sig) = parts
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.headers
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.get("Signature")
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.map(|v| v.to_str().unwrap_or(""))
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{
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2024-04-13 21:22:19 +02:00
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let mut http_signature = HttpSignature::parse(sig);
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2024-04-13 05:26:50 +02:00
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2024-04-13 21:22:19 +02:00
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// TODO assert payload's digest is equal to signature's
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2024-04-13 05:26:50 +02:00
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let user_id = http_signature.key_id.replace("#main-key", "");
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2024-04-13 21:22:19 +02:00
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2024-04-13 05:26:50 +02:00
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match ctx.fetch().user(&user_id).await {
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2024-04-13 21:22:19 +02:00
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Ok(user) => match http_signature
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.build_from_parts(parts)
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.verify(&user.public_key)
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{
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2024-04-13 05:26:50 +02:00
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Ok(true) => identity = Identity::Remote(Context::server(&user_id)),
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Ok(false) => tracing::warn!("invalid signature"),
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Err(e) => tracing::error!("error verifying signature: {e}"),
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2024-04-13 21:22:19 +02:00
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},
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2024-04-13 05:26:50 +02:00
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Err(e) => tracing::warn!("could not fetch user (won't verify): {e}"),
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2024-04-13 03:31:37 +02:00
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}
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2024-04-13 01:49:23 +02:00
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}
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2024-03-25 05:12:49 +01:00
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2024-03-25 01:58:30 +01:00
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Ok(AuthIdentity(identity))
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}
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}
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2024-03-25 21:19:25 +01:00
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2024-04-13 05:26:50 +02:00
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#[derive(Debug, Clone, Default)]
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2024-03-25 21:19:25 +01:00
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pub struct HttpSignature {
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2024-04-13 21:22:19 +02:00
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pub key_id: String,
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pub algorithm: String,
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pub headers: Vec<String>,
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pub signature: String,
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pub control: String,
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2024-03-25 21:19:25 +01:00
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}
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2024-03-26 00:49:27 +01:00
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impl HttpSignature {
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2024-04-13 21:22:19 +02:00
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pub fn new(key_id: String, algorithm: String, headers: &[&str]) -> Self {
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HttpSignature {
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key_id, algorithm,
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headers: headers.iter().map(|x| x.to_string()).collect(),
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signature: String::new(),
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control: String::new(),
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}
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}
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2024-04-13 05:26:50 +02:00
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pub fn parse(header: &str) -> Self {
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let mut sig = HttpSignature::default();
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header.split(',')
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.filter_map(|x| x.split_once('='))
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.map(|(k, v)| (k, v.trim_end_matches('"').trim_matches('"')))
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.for_each(|(k, v)| match k {
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"keyId" => sig.key_id = v.to_string(),
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"algorithm" => sig.algorithm = v.to_string(),
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"signature" => sig.signature = v.to_string(),
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"headers" => sig.headers = v.split(' ').map(|x| x.to_string()).collect(),
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_ => tracing::warn!("unexpected field in http signature: '{k}=\"{v}\"'"),
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});
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sig
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}
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2024-04-13 21:22:19 +02:00
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pub fn header(&self) -> String {
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format!(
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"keyId=\"{}\",algorithm=\"{}\",headers=\"{}\",signature=\"{}\"",
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self.key_id, self.algorithm, self.headers.join(" "), self.signature,
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)
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}
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pub fn build_manually(&mut self, method: &str, target: &str, mut headers: BTreeMap<String, String>) -> &mut Self {
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let mut out = Vec::new();
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for header in &self.headers {
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2024-04-13 21:35:53 +02:00
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match header.as_str() {
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"(request-target)" => out.push(format!("(request-target): {method} {target}")),
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// TODO other pseudo-headers
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_ => out.push(
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format!("{header}: {}", headers.remove(header).unwrap_or_default())
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),
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}
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2024-04-13 21:22:19 +02:00
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}
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self.control = out.join("\n");
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self
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}
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pub fn build_from_parts(&mut self, parts: &Parts) -> &mut Self {
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2024-04-13 05:26:50 +02:00
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let mut out = Vec::new();
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for header in self.headers.iter() {
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match header.as_str() {
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"(request-target)" => out.push(
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2024-04-13 05:36:29 +02:00
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format!(
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"(request-target): {} {}",
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parts.method.to_string().to_lowercase(),
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parts.uri.path_and_query().map(|x| x.as_str()).unwrap_or("/")
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)
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2024-04-13 05:26:50 +02:00
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),
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// TODO other pseudo-headers,
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_ => out.push(format!("{}: {}",
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header.to_lowercase(),
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parts.headers.get(header).map(|x| x.to_str().unwrap_or("")).unwrap_or("")
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)),
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}
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}
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2024-04-13 21:22:19 +02:00
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self.control = out.join("\n");
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self
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2024-04-13 05:26:50 +02:00
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}
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2024-04-13 21:22:19 +02:00
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pub fn verify(&self, key: &str) -> crate::Result<bool> {
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let pubkey = PKey::public_key_from_pem(key.as_bytes())?;
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let mut verifier = Verifier::new(MessageDigest::sha256(), &pubkey)?;
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let signature = base64::prelude::BASE64_STANDARD.decode(&self.signature)?;
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Ok(verifier.verify_oneshot(&signature, self.control.as_bytes())?)
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}
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pub fn sign(&mut self, key: &str) -> crate::Result<&str> {
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let privkey = PKey::private_key_from_pem(key.as_bytes())?;
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let mut signer = openssl::sign::Signer::new(MessageDigest::sha256(), &privkey)?;
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signer.update(self.control.as_bytes())?;
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self.signature = base64::prelude::BASE64_STANDARD.encode(signer.sign_to_vec()?);
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Ok(&self.signature)
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}
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}
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#[cfg(test)]
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mod test {
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#[test]
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fn http_signature_signs_and_verifies() {
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let key = openssl::rsa::Rsa::generate(2048).unwrap();
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let private_key = std::str::from_utf8(&key.private_key_to_pem().unwrap()).unwrap().to_string();
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let public_key = std::str::from_utf8(&key.public_key_to_pem().unwrap()).unwrap().to_string();
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let mut signer = super::HttpSignature {
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key_id: "test".to_string(),
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algorithm: "rsa-sha256".to_string(),
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headers: vec![
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"(request-target)".to_string(),
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"host".to_string(),
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"date".to_string(),
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],
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signature: String::new(),
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control: String::new(),
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};
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signer
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.build_manually("get", "/actor/inbox", [("host".into(), "example.net".into()), ("date".into(), "Sat, 13 Apr 2024 13:36:23 GMT".into())].into())
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.sign(&private_key)
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.unwrap();
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let mut verifier = super::HttpSignature::parse(&signer.header());
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verifier.build_manually("get", "/actor/inbox", [("host".into(), "example.net".into()), ("date".into(), "Sat, 13 Apr 2024 13:36:23 GMT".into())].into());
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assert!(verifier.verify(&public_key).unwrap());
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2024-03-26 00:49:27 +01:00
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}
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}
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