Implement 'introducer remove'
- Implement the subcommand `remove` for `introducer`. - Remove the introducer by adding a certification with trust level 1 and trust depth 0. - Move `crypt.rs` into `common/` and add a generic authenticaton function to be used by `introducer add` and `... remove`.
This commit is contained in:
@@ -1,6 +1,7 @@
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use anyhow::Result;
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use sequoia_openpgp::{Fingerprint, KeyHandle};
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use sequoia_openpgp::cert::ValidCert;
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use sequoia_cert_store::Store;
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use crate::cli::cli_args::IntroducerRemoveCommand;
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@@ -23,6 +24,19 @@ pub async fn dispatch(cmd: IntroducerRemoveCommand, config: HuskConfigContainer)
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let certs = cert_store.lookup_by_cert(&KeyHandle::try_from(&fpr)?)
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.map_err(|_| CommandError::CertNotFound(fpr.clone()))?;
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// Filter out valid certificates. If the certificate is not
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// valid according to the policy, it is already no introducer.
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let certs: Vec<ValidCert> = certs.iter()
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.filter_map(|c|
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c.with_policy(policy, None).ok()
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)
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.collect();
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if let Some(cert) = certs.first() {
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Introducer::remove(&context, cert, cmd.demote)?;
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} else {
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return Err(CommandError::CertNotFound(fpr).into());
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}
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Ok(())
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@@ -7,15 +7,19 @@ use std::collections::HashMap;
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use std::collections::hash_map::Entry::{Occupied, Vacant};
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use anyhow;
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use sequoia_openpgp::cert::ValidCert;
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use tokio::task::JoinSet;
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use bytes::Bytes;
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use sequoia_net::{KeyServer, wkd, dane};
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use sequoia_openpgp::packet::prelude::SignatureBuilder;
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use sequoia_openpgp::parse::{PacketParser, PacketParserResult, Parse};
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use sequoia_openpgp::policy::StandardPolicy;
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use sequoia_openpgp::serialize::stream::{Message, Armorer, Encryptor, LiteralWriter};
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use sequoia_openpgp::{Fingerprint, Cert, Packet};
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use sequoia_openpgp::cert::raw::RawCertParser;
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use sequoia_openpgp::types::SignatureType;
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use sequoia_cert_store::{Store, CertStore, LazyCert, StoreUpdate};
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use sequoia_cert_store::store::MergePublicCollectStats;
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use sequoia_wot::{self as wot};
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use wot::store::Store as _;
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use wot::{Depth, Path};
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@@ -24,6 +28,8 @@ use crate::types::errors::HuskError;
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use crate::types::husk_context::HuskContext;
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use crate::types::introducer::Introducer;
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use crate::types::recipient::Recipient;
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use crate::mail;
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use crate::common::escape;
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/// Returns the local trust root from the cert_store. If the trust root
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/// cannot be found, it returns an error.
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@@ -368,6 +374,104 @@ pub fn encrypt(context: &HuskContext<'_>, body: &Bytes, recipients: &Vec<Recipie
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}
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}
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/// Authenticate a certificate.
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///
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/// If `activate` is true, the certificate becomes an introducer for
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/// `domains`. Passing `None` or an empty list in this case is an error.
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/// If `activate` is false, create a certifiaction with minimal trust_roots
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/// amount and no depth. In this case `domains` is ignored.
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pub fn authenticate(context: &HuskContext, cert: &ValidCert, activate: bool, domains: Option<Vec<String>>)
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-> anyhow::Result<()> {
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let policy = &context.policy;
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let root_signing_key = match context.local_trust_root.with_policy(policy, None)?
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.keys()
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.supported()
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.alive()
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.revoked(false)
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.for_certification()
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.next() {
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Some(k) => k.key(),
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None => {
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return Err(HuskError::DamangedLocalTrustRoot(
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"missing certification capability".to_string())
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.into());
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}
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};
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let mut root_signer = root_signing_key
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.clone()
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.parts_into_secret()?
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.into_keypair()?;
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// Create the SignatureBuilder with a default preconfiguration.
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let mut builder =
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SignatureBuilder::new(SignatureType::GenericCertification)
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.set_signature_creation_time(std::time::SystemTime::now())?
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.set_exportable_certification(false)?
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.set_revocable(true)?;
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// set no expiration date
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// Add domains
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if activate {
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// set the trust level and depth for an active introducer.
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builder = builder.set_trust_signature(1, 120)?;
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if let Some(domains) = domains {
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for domain in domains {
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if !mail::is_domain(domain.as_str()) {
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return Err(HuskError::InvalidDomainName(domain).into());
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}
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builder = builder.add_regular_expression(format!("<[^>]+[@.]{}>$",
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escape::regex_ctrl_escape(domain.as_str())?
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))?;
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}
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} else {
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// An introducer without domains would be unlimited.
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return Err(HuskError::UnlimitedIntroducer.into());
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}
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} else {
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// deactive the introducer
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builder = builder.set_trust_signature(0, 1)?;
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}
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// For a certification, user ids are needed. Build a list of
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// valid (non self revoked) user ids.
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let user_ids: Vec<_> = cert.userids()
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.filter(|u| {
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u.self_revocations().count() == 0
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})
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.collect();
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if user_ids.is_empty() {
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return Err(HuskError::NoUserIDs(cert.fingerprint().to_hex()).into());
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}
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// now certify
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let signatures: Vec<_> = user_ids.into_iter()
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.filter_map(|u| {
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let b = builder.clone();
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b.sign_userid_binding(
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&mut root_signer,
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cert.primary_key().key(),
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u.userid()).ok()
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})
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.collect();
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let (new_cert, _) = cert.cert().clone().insert_packets(signatures)?;
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// and (re)import
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let new_cert = Arc::new(new_cert.into());
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let stats = MergePublicCollectStats::new();
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let cert_store = &context.cert_store;
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cert_store.update_by(new_cert, &stats)?;
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log::debug!("{:?}", stats);
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// XXX: do something with the created stats
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Ok(())
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}
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#[cfg(test)]
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pub mod tests {
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+9
-1
@@ -8,12 +8,20 @@ pub enum HuskError {
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ConfigFileOpenError(String),
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#[error("Error while parsing config file: {0}")]
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ConfigFileParseError(String),
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#[error("Cannot find local trust root")]
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#[error("Cannot find the local trust root")]
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NoLocalTrustRoot,
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#[error("The local trust root is damaged - {0}")]
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DamangedLocalTrustRoot(String),
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#[error("Cannot access cert store")]
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NoCertStore,
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#[error("No encryption keys found")]
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NoEncryptionKeys,
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#[error("Error while looking up email {0}: {1}")]
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KeyLookupError(String, String),
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#[error("Unlimited introducer")]
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UnlimitedIntroducer,
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#[error("Invalid domain name '{0}'")]
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InvalidDomainName(String),
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#[error("Certificate has no user ids - {0}")]
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NoUserIDs(String),
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}
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+10
-84
@@ -1,22 +1,15 @@
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//! introducers
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use std::sync::Arc;
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use anyhow::Result;
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use sequoia_cert_store::StoreUpdate;
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use sequoia_cert_store::store::MergePublicCollectStats;
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use sequoia_openpgp::packet::prelude::SignatureBuilder;
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use sequoia_wot as wot;
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use wot::{CertSynopsis, Certification};
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use sequoia_openpgp::{cert::ValidCert, policy::StandardPolicy};
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use sequoia_openpgp::Cert;
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use sequoia_openpgp::Fingerprint;
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use sequoia_openpgp::types::SignatureType;
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use crate::mail;
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use crate::types::husk_context::HuskContext;
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use crate::common::escape;
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use crate::common::crypto;
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#[derive(thiserror::Error, Debug)]
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pub enum IntroducerError {
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@@ -87,86 +80,19 @@ impl Introducer {
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return Err(IntroducerError::UnsuitableCertificate.into());
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}
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let policy = &context.policy;
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let root_signing_key = match context.local_trust_root.with_policy(policy, None)?
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.keys()
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.supported()
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.alive()
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.revoked(false)
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.for_certification()
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.next() {
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Some(k) => k.key(),
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None => {
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return Err(IntroducerError::RootDamaged.into());
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}
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};
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let mut root_signer = root_signing_key
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.clone()
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.parts_into_secret()?
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.into_keypair()?;
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crypto::authenticate(context, cert, true, Some(domains))
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}
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pub fn remove(context: &HuskContext, cert: &ValidCert, _demote: bool)
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-> Result<()> {
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// Check if domain list is not empty.
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// An empty list would create an unlimited introducer.
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if domains.is_empty() {
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return Err(IntroducerError::UnlimitedIntroducer.into());
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// Check if the local trust root certificate should be made an
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// introducer, which would be an error.
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if cert.fingerprint() == context.local_trust_root.fingerprint() {
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return Err(IntroducerError::UnsuitableCertificate.into());
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}
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// Create the SignatureBuilder with a default preconfiguration.
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let mut builder =
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SignatureBuilder::new(SignatureType::GenericCertification)
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.set_signature_creation_time(std::time::SystemTime::now())?
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.set_trust_signature(1, 120)?
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.set_exportable_certification(false)?
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.set_revocable(true)?;
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// set no expiration date
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// Add domains
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for domain in domains {
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if !mail::is_domain(domain.as_str()) {
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return Err(IntroducerError::InvalidDomainName(domain).into());
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}
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builder = builder.add_regular_expression(format!("<[^>]+[@.]{}>$",
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escape::regex_ctrl_escape(domain.as_str())?
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))?;
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}
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// For a certification, user ids are needed. Build a list of
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// valid (non self revoked) user ids.
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let user_ids: Vec<_> = cert.userids()
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.filter(|u| {
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u.self_revocations().count() == 0
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})
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.collect();
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if user_ids.is_empty() {
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return Err(IntroducerError::NoUserIDs(cert.fingerprint()).into());
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}
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// now certify
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let signatures: Vec<_> = user_ids.into_iter()
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.filter_map(|u| {
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let b = builder.clone();
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b.sign_userid_binding(
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&mut root_signer,
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cert.primary_key().key(),
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u.userid()).ok()
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})
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.collect();
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let (new_cert, _) = cert.cert().clone().insert_packets(signatures)?;
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// and (re)import
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let new_cert = Arc::new(new_cert.into());
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let stats = MergePublicCollectStats::new();
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let cert_store = &context.cert_store;
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cert_store.update_by(new_cert, &stats)?;
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log::debug!("{:?}", stats);
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// XXX: do something with the created stats
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Ok(())
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crypto::authenticate(context, cert, false, None)
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}
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}
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