File size: 13,585 Bytes
f0f4f2b |
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256 257 258 259 260 261 262 263 264 265 266 267 268 269 270 271 272 273 274 275 276 277 278 279 280 281 282 283 284 285 286 287 288 289 290 291 292 293 294 295 296 297 298 299 300 301 302 303 304 305 306 307 308 309 310 311 312 313 314 315 316 317 318 319 320 321 322 323 324 325 326 327 328 329 330 331 332 333 334 335 336 337 338 339 340 341 342 343 344 345 346 347 348 349 |
//! End-to-end encryption support.
use anyhow::{format_err, Context as _, Result};
use num_traits::FromPrimitive;
use crate::aheader::{Aheader, EncryptPreference};
use crate::config::Config;
use crate::context::Context;
use crate::key::{load_self_public_key, load_self_secret_key, SignedPublicKey};
use crate::peerstate::Peerstate;
use crate::pgp;
#[derive(Debug)]
pub struct EncryptHelper {
pub prefer_encrypt: EncryptPreference,
pub addr: String,
pub public_key: SignedPublicKey,
}
impl EncryptHelper {
pub async fn new(context: &Context) -> Result<EncryptHelper> {
let prefer_encrypt =
EncryptPreference::from_i32(context.get_config_int(Config::E2eeEnabled).await?)
.unwrap_or_default();
let addr = context.get_primary_self_addr().await?;
let public_key = load_self_public_key(context).await?;
Ok(EncryptHelper {
prefer_encrypt,
addr,
public_key,
})
}
pub fn get_aheader(&self) -> Aheader {
let pk = self.public_key.clone();
let addr = self.addr.to_string();
Aheader::new(addr, pk, self.prefer_encrypt)
}
/// Determines if we can and should encrypt.
///
/// For encryption to be enabled, `e2ee_guaranteed` should be true, or strictly more than a half
/// of peerstates should prefer encryption. Own preference is counted equally to peer
/// preferences, even if message copy is not sent to self.
///
/// `e2ee_guaranteed` should be set to true for replies to encrypted messages (as required by
/// Autocrypt Level 1, version 1.1) and for messages sent in protected groups.
///
/// Returns an error if `e2ee_guaranteed` is true, but one or more keys are missing.
pub fn should_encrypt(
&self,
context: &Context,
e2ee_guaranteed: bool,
peerstates: &[(Option<Peerstate>, String)],
) -> Result<bool> {
let mut prefer_encrypt_count = if self.prefer_encrypt == EncryptPreference::Mutual {
1
} else {
0
};
for (peerstate, addr) in peerstates {
match peerstate {
Some(peerstate) => {
let prefer_encrypt = peerstate.prefer_encrypt;
info!(context, "Peerstate for {addr:?} is {prefer_encrypt}.");
match peerstate.prefer_encrypt {
EncryptPreference::NoPreference | EncryptPreference::Reset => {}
EncryptPreference::Mutual => prefer_encrypt_count += 1,
};
}
None => {
let msg = format!("Peerstate for {addr:?} missing, cannot encrypt");
if e2ee_guaranteed {
return Err(format_err!("{msg}"));
} else {
info!(context, "{msg}.");
return Ok(false);
}
}
}
}
// Count number of recipients, including self.
// This does not depend on whether we send a copy to self or not.
let recipients_count = peerstates.len() + 1;
Ok(e2ee_guaranteed || 2 * prefer_encrypt_count > recipients_count)
}
/// Tries to encrypt the passed in `mail`.
pub async fn encrypt(
self,
context: &Context,
verified: bool,
mail_to_encrypt: lettre_email::PartBuilder,
peerstates: Vec<(Option<Peerstate>, String)>,
compress: bool,
) -> Result<String> {
let mut keyring: Vec<SignedPublicKey> = Vec::new();
let mut verifier_addresses: Vec<&str> = Vec::new();
for (peerstate, addr) in peerstates
.iter()
.filter_map(|(state, addr)| state.clone().map(|s| (s, addr)))
{
let key = peerstate
.take_key(verified)
.with_context(|| format!("proper enc-key for {addr} missing, cannot encrypt"))?;
keyring.push(key);
verifier_addresses.push(addr);
}
// Encrypt to self.
keyring.push(self.public_key.clone());
// Encrypt to secondary verified keys
// if we also encrypt to the introducer ("verifier") of the key.
if verified {
for (peerstate, _addr) in &peerstates {
if let Some(peerstate) = peerstate {
if let (Some(key), Some(verifier)) = (
peerstate.secondary_verified_key.as_ref(),
peerstate.secondary_verifier.as_deref(),
) {
if verifier_addresses.contains(&verifier) {
keyring.push(key.clone());
}
}
}
}
}
let sign_key = load_self_secret_key(context).await?;
let raw_message = mail_to_encrypt.build().as_string().into_bytes();
let ctext = pgp::pk_encrypt(&raw_message, keyring, Some(sign_key), compress).await?;
Ok(ctext)
}
/// Signs the passed-in `mail` using the private key from `context`.
/// Returns the payload and the signature.
pub async fn sign(
self,
context: &Context,
mail: lettre_email::PartBuilder,
) -> Result<(lettre_email::MimeMessage, String)> {
let sign_key = load_self_secret_key(context).await?;
let mime_message = mail.build();
let signature = pgp::pk_calc_signature(mime_message.as_string().as_bytes(), &sign_key)?;
Ok((mime_message, signature))
}
}
/// Ensures a private key exists for the configured user.
///
/// Normally the private key is generated when the first message is
/// sent but in a few locations there are no such guarantees,
/// e.g. when exporting keys, and calling this function ensures a
/// private key will be present.
// TODO, remove this once deltachat::key::Key no longer exists.
pub async fn ensure_secret_key_exists(context: &Context) -> Result<()> {
load_self_public_key(context).await?;
Ok(())
}
#[cfg(test)]
mod tests {
use super::*;
use crate::key::DcKey;
use crate::message::{Message, Viewtype};
use crate::param::Param;
use crate::test_utils::{bob_keypair, TestContext, TestContextManager};
mod ensure_secret_key_exists {
use super::*;
#[tokio::test(flavor = "multi_thread", worker_threads = 2)]
async fn test_prexisting() {
let t = TestContext::new_alice().await;
assert!(ensure_secret_key_exists(&t).await.is_ok());
}
#[tokio::test(flavor = "multi_thread", worker_threads = 2)]
async fn test_not_configured() {
let t = TestContext::new().await;
assert!(ensure_secret_key_exists(&t).await.is_err());
}
}
#[test]
fn test_mailmime_parse() {
let plain = b"Chat-Disposition-Notification-To: hello@world.de
Chat-Group-ID: CovhGgau8M-
Chat-Group-Name: Delta Chat Dev
Subject: =?utf-8?Q?Chat=3A?= Delta Chat =?utf-8?Q?Dev=3A?= sidenote for
=?utf-8?Q?all=3A?= rust core master ...
Content-Type: text/plain; charset=\"utf-8\"; protected-headers=\"v1\"
Content-Transfer-Encoding: quoted-printable
sidenote for all: things are trick atm recomm=
end not to try to run with desktop or ios unless you are ready to hunt bugs
-- =20
Sent with my Delta Chat Messenger: https://delta.chat";
let mail = mailparse::parse_mail(plain).expect("failed to parse valid message");
assert_eq!(mail.headers.len(), 6);
assert!(
mail.get_body().unwrap().starts_with(
"sidenote for all: things are trick atm recommend not to try to run with desktop or ios unless you are ready to hunt bugs")
);
}
#[tokio::test(flavor = "multi_thread", worker_threads = 2)]
async fn test_encrypted_no_autocrypt() -> anyhow::Result<()> {
let mut tcm = TestContextManager::new();
let alice = tcm.alice().await;
let bob = tcm.bob().await;
let chat_alice = alice.create_chat(&bob).await.id;
let chat_bob = bob.create_chat(&alice).await.id;
// Alice sends unencrypted message to Bob
let mut msg = Message::new(Viewtype::Text);
let sent = alice.send_msg(chat_alice, &mut msg).await;
// Bob receives unencrypted message from Alice
let msg = bob.recv_msg(&sent).await;
assert!(!msg.get_showpadlock());
let peerstate_alice = Peerstate::from_addr(&bob.ctx, "alice@example.org")
.await?
.expect("no peerstate found in the database");
assert_eq!(peerstate_alice.prefer_encrypt, EncryptPreference::Mutual);
// Bob sends empty encrypted message to Alice
let mut msg = Message::new(Viewtype::Text);
let sent = bob.send_msg(chat_bob, &mut msg).await;
// Alice receives an empty encrypted message from Bob.
// This is also a regression test for previously existing bug
// that resulted in no padlock on encrypted empty messages.
let msg = alice.recv_msg(&sent).await;
assert!(msg.get_showpadlock());
let peerstate_bob = Peerstate::from_addr(&alice.ctx, "bob@example.net")
.await?
.expect("no peerstate found in the database");
assert_eq!(peerstate_bob.prefer_encrypt, EncryptPreference::Mutual);
// Now Alice and Bob have established keys.
// Alice sends encrypted message without Autocrypt header.
let mut msg = Message::new(Viewtype::Text);
msg.param.set_int(Param::SkipAutocrypt, 1);
let sent = alice.send_msg(chat_alice, &mut msg).await;
let msg = bob.recv_msg(&sent).await;
assert!(msg.get_showpadlock());
let peerstate_alice = Peerstate::from_addr(&bob.ctx, "alice@example.org")
.await?
.expect("no peerstate found in the database");
assert_eq!(peerstate_alice.prefer_encrypt, EncryptPreference::Mutual);
// Alice sends plaintext message with Autocrypt header.
let mut msg = Message::new(Viewtype::Text);
msg.force_plaintext();
let sent = alice.send_msg(chat_alice, &mut msg).await;
let msg = bob.recv_msg(&sent).await;
assert!(!msg.get_showpadlock());
let peerstate_alice = Peerstate::from_addr(&bob.ctx, "alice@example.org")
.await?
.expect("no peerstate found in the database");
assert_eq!(peerstate_alice.prefer_encrypt, EncryptPreference::Mutual);
// Alice sends plaintext message without Autocrypt header.
let mut msg = Message::new(Viewtype::Text);
msg.force_plaintext();
msg.param.set_int(Param::SkipAutocrypt, 1);
let sent = alice.send_msg(chat_alice, &mut msg).await;
let msg = bob.recv_msg(&sent).await;
assert!(!msg.get_showpadlock());
let peerstate_alice = Peerstate::from_addr(&bob.ctx, "alice@example.org")
.await?
.expect("no peerstate found in the database");
assert_eq!(peerstate_alice.prefer_encrypt, EncryptPreference::Reset);
Ok(())
}
fn new_peerstates(prefer_encrypt: EncryptPreference) -> Vec<(Option<Peerstate>, String)> {
let addr = "bob@foo.bar";
let pub_key = bob_keypair().public;
let peerstate = Peerstate {
addr: addr.into(),
last_seen: 13,
last_seen_autocrypt: 14,
prefer_encrypt,
public_key: Some(pub_key.clone()),
public_key_fingerprint: Some(pub_key.fingerprint()),
gossip_key: Some(pub_key.clone()),
gossip_timestamp: 15,
gossip_key_fingerprint: Some(pub_key.fingerprint()),
verified_key: Some(pub_key.clone()),
verified_key_fingerprint: Some(pub_key.fingerprint()),
verifier: None,
secondary_verified_key: None,
secondary_verified_key_fingerprint: None,
secondary_verifier: None,
backward_verified_key_id: None,
fingerprint_changed: false,
};
vec![(Some(peerstate), addr.to_string())]
}
#[tokio::test(flavor = "multi_thread", worker_threads = 2)]
async fn test_should_encrypt() {
let t = TestContext::new_alice().await;
let encrypt_helper = EncryptHelper::new(&t).await.unwrap();
// test with EncryptPreference::NoPreference:
// if e2ee_eguaranteed is unset, there is no encryption as not more than half of peers want encryption
let ps = new_peerstates(EncryptPreference::NoPreference);
assert!(encrypt_helper.should_encrypt(&t, true, &ps).unwrap());
assert!(!encrypt_helper.should_encrypt(&t, false, &ps).unwrap());
// test with EncryptPreference::Reset
let ps = new_peerstates(EncryptPreference::Reset);
assert!(encrypt_helper.should_encrypt(&t, true, &ps).unwrap());
assert!(!encrypt_helper.should_encrypt(&t, false, &ps).unwrap());
// test with EncryptPreference::Mutual (self is also Mutual)
let ps = new_peerstates(EncryptPreference::Mutual);
assert!(encrypt_helper.should_encrypt(&t, true, &ps).unwrap());
assert!(encrypt_helper.should_encrypt(&t, false, &ps).unwrap());
// test with missing peerstate
let ps = vec![(None, "bob@foo.bar".to_string())];
assert!(encrypt_helper.should_encrypt(&t, true, &ps).is_err());
assert!(!encrypt_helper.should_encrypt(&t, false, &ps).unwrap());
}
}
|