181 lines
4.1 KiB
Rust
181 lines
4.1 KiB
Rust
use failure::*;
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use lazy_static::lazy_static;
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use openssl::rsa::{Rsa};
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use openssl::pkey::{PKey, Public, Private};
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use openssl::sha;
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use std::path::PathBuf;
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use proxmox::tools::{
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try_block,
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fs::{file_get_contents, file_set_contents, file_set_contents_full},
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};
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fn compute_csrf_secret_digest(
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timestamp: i64,
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secret: &[u8],
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username: &str,
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) -> String {
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let mut hasher = sha::Sha256::new();
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let data = format!("{:08X}:{}:", timestamp, username);
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hasher.update(data.as_bytes());
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hasher.update(secret);
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base64::encode_config(&hasher.finish(), base64::STANDARD_NO_PAD)
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}
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pub fn assemble_csrf_prevention_token(
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secret: &[u8],
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username: &str,
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) -> String {
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let epoch = std::time::SystemTime::now().duration_since(
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std::time::SystemTime::UNIX_EPOCH).unwrap().as_secs() as i64;
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let digest = compute_csrf_secret_digest(epoch, secret, username);
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format!("{:08X}:{}", epoch, digest)
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}
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pub fn verify_csrf_prevention_token(
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secret: &[u8],
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username: &str,
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token: &str,
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min_age: i64,
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max_age: i64,
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) -> Result<i64, Error> {
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use std::collections::VecDeque;
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let mut parts: VecDeque<&str> = token.split(':').collect();
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try_block!({
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if parts.len() != 2 {
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bail!("format error - wrong number of parts.");
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}
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let timestamp = parts.pop_front().unwrap();
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let sig = parts.pop_front().unwrap();
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let ttime = i64::from_str_radix(timestamp, 16).
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map_err(|err| format_err!("timestamp format error - {}", err))?;
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let digest = compute_csrf_secret_digest(ttime, secret, username);
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if digest != sig {
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bail!("invalid signature.");
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}
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let now = std::time::SystemTime::now().duration_since(
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std::time::SystemTime::UNIX_EPOCH)?.as_secs() as i64;
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let age = now - ttime;
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if age < min_age {
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bail!("timestamp newer than expected.");
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}
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if age > max_age {
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bail!("timestamp too old.");
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}
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Ok(age)
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}).map_err(|err| format_err!("invalid csrf token - {}", err))
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}
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pub fn generate_csrf_key() -> Result<(), Error> {
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let path = PathBuf::from(configdir!("/csrf.key"));
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if path.exists() { return Ok(()); }
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let rsa = Rsa::generate(2048).unwrap();
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let pem = rsa.private_key_to_pem()?;
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use nix::sys::stat::Mode;
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let (_, backup_gid) = crate::tools::getpwnam_ugid("backup")?;
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let uid = Some(nix::unistd::ROOT);
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let gid = Some(nix::unistd::Gid::from_raw(backup_gid));
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file_set_contents_full(
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&path, &pem, Some(Mode::from_bits_truncate(0o0640)), uid, gid)?;
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Ok(())
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}
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pub fn generate_auth_key() -> Result<(), Error> {
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let priv_path = PathBuf::from(configdir!("/authkey.key"));
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let mut public_path = priv_path.clone();
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public_path.set_extension("pub");
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if priv_path.exists() && public_path.exists() { return Ok(()); }
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let rsa = Rsa::generate(4096).unwrap();
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let priv_pem = rsa.private_key_to_pem()?;
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use nix::sys::stat::Mode;
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file_set_contents(
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&priv_path, &priv_pem, Some(Mode::from_bits_truncate(0o0600)))?;
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let public_pem = rsa.public_key_to_pem()?;
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file_set_contents(&public_path, &public_pem, None)?;
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Ok(())
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}
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pub fn csrf_secret() -> &'static [u8] {
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lazy_static! {
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static ref SECRET: Vec<u8> =
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file_get_contents(configdir!("/csrf.key")).unwrap();
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}
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&SECRET
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}
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fn load_private_auth_key() -> Result<PKey<Private>, Error> {
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let pem = file_get_contents(configdir!("/authkey.key"))?;
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let rsa = Rsa::private_key_from_pem(&pem)?;
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let key = PKey::from_rsa(rsa)?;
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Ok(key)
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}
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pub fn private_auth_key() -> &'static PKey<Private> {
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lazy_static! {
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static ref KEY: PKey<Private> = load_private_auth_key().unwrap();
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}
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&KEY
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}
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fn load_public_auth_key() -> Result<PKey<Public>, Error> {
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let pem = file_get_contents(configdir!("/authkey.pub"))?;
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let rsa = Rsa::public_key_from_pem(&pem)?;
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let key = PKey::from_rsa(rsa)?;
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Ok(key)
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}
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pub fn public_auth_key() -> &'static PKey<Public> {
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lazy_static! {
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static ref KEY: PKey<Public> = load_public_auth_key().unwrap();
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}
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&KEY
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}
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