455 lines
15 KiB
Rust
455 lines
15 KiB
Rust
use std::collections::{BTreeMap, HashMap};
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use std::sync::{Arc, Weak};
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use anyhow::{anyhow, bail, Result};
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use k2v_client::{CausalityToken, K2vClient, K2vValue};
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use lazy_static::lazy_static;
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use serde::{Deserialize, Serialize};
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use tokio::sync::watch;
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use crate::cryptoblob::{open_deserialize, seal_serialize};
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use crate::login::{Credentials, StorageCredentials};
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use crate::mail::incoming::incoming_mail_watch_process;
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use crate::mail::mailbox::Mailbox;
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use crate::mail::uidindex::ImapUidvalidity;
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use crate::mail::unique_ident::{gen_ident, UniqueIdent};
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use crate::time::now_msec;
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pub const MAILBOX_HIERARCHY_DELIMITER: char = '.';
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/// INBOX is the only mailbox that must always exist.
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/// It is created automatically when the account is created.
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/// IMAP allows the user to rename INBOX to something else,
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/// in this case all messages from INBOX are moved to a mailbox
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/// with the new name and the INBOX mailbox still exists and is empty.
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/// In our implementation, we indeed move the underlying mailbox
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/// to the new name (i.e. the new name has the same id as the previous
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/// INBOX), and we create a new empty mailbox for INBOX.
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pub const INBOX: &str = "INBOX";
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const MAILBOX_LIST_PK: &str = "mailboxes";
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const MAILBOX_LIST_SK: &str = "list";
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pub struct User {
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pub username: String,
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pub creds: Credentials,
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pub k2v: K2vClient,
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pub mailboxes: std::sync::Mutex<HashMap<UniqueIdent, Weak<Mailbox>>>,
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tx_inbox_id: watch::Sender<Option<(UniqueIdent, ImapUidvalidity)>>,
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}
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impl User {
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pub async fn new(username: String, creds: Credentials) -> Result<Arc<Self>> {
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let cache_key = (username.clone(), creds.storage.clone());
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{
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let cache = USER_CACHE.lock().unwrap();
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if let Some(u) = cache.get(&cache_key).and_then(Weak::upgrade) {
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return Ok(u);
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}
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}
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let user = Self::open(username, creds).await?;
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let mut cache = USER_CACHE.lock().unwrap();
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if let Some(concurrent_user) = cache.get(&cache_key).and_then(Weak::upgrade) {
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drop(user);
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Ok(concurrent_user)
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} else {
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cache.insert(cache_key, Arc::downgrade(&user));
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Ok(user)
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}
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}
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/// Lists user's available mailboxes
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pub async fn list_mailboxes(&self) -> Result<Vec<String>> {
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let (list, _ct) = self.load_mailbox_list().await?;
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Ok(list.existing_mailbox_names())
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}
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/// Opens an existing mailbox given its IMAP name.
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pub async fn open_mailbox(&self, name: &str) -> Result<Option<Arc<Mailbox>>> {
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let (mut list, ct) = self.load_mailbox_list().await?;
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eprintln!("List of mailboxes:");
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for ent in list.0.iter() {
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eprintln!(" - {:?}", ent);
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}
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if let Some((uidvalidity, Some(mbid))) = list.get_mailbox(name) {
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let mb = self.open_mailbox_by_id(mbid, uidvalidity).await?;
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let mb_uidvalidity = mb.current_uid_index().await.uidvalidity;
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if mb_uidvalidity > uidvalidity {
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list.update_uidvalidity(name, mb_uidvalidity);
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self.save_mailbox_list(&list, ct).await?;
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}
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Ok(Some(mb))
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} else {
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Ok(None)
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}
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}
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/// Check whether mailbox exists
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pub async fn has_mailbox(&self, name: &str) -> Result<bool> {
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let (list, _ct) = self.load_mailbox_list().await?;
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Ok(list.has_mailbox(name))
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}
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/// Creates a new mailbox in the user's IMAP namespace.
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pub async fn create_mailbox(&self, name: &str) -> Result<()> {
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if name.ends_with(MAILBOX_HIERARCHY_DELIMITER) {
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bail!("Invalid mailbox name: {}", name);
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}
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let (mut list, ct) = self.load_mailbox_list().await?;
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match list.create_mailbox(name) {
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CreatedMailbox::Created(_, _) => {
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self.save_mailbox_list(&list, ct).await?;
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Ok(())
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}
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CreatedMailbox::Existed(_, _) => Err(anyhow!("Mailbox {} already exists", name)),
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}
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}
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/// Deletes a mailbox in the user's IMAP namespace.
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pub async fn delete_mailbox(&self, name: &str) -> Result<()> {
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if name == INBOX {
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bail!("Cannot delete INBOX");
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}
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let (mut list, ct) = self.load_mailbox_list().await?;
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if list.has_mailbox(name) {
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// TODO: actually delete mailbox contents
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list.set_mailbox(name, None);
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self.save_mailbox_list(&list, ct).await?;
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Ok(())
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} else {
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bail!("Mailbox {} does not exist", name);
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}
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}
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/// Renames a mailbox in the user's IMAP namespace.
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pub async fn rename_mailbox(&self, old_name: &str, new_name: &str) -> Result<()> {
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let (mut list, ct) = self.load_mailbox_list().await?;
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if old_name.ends_with(MAILBOX_HIERARCHY_DELIMITER) {
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bail!("Invalid mailbox name: {}", old_name);
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}
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if new_name.ends_with(MAILBOX_HIERARCHY_DELIMITER) {
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bail!("Invalid mailbox name: {}", new_name);
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}
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if old_name == INBOX {
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list.rename_mailbox(old_name, new_name)?;
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if !self.ensure_inbox_exists(&mut list, &ct).await? {
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self.save_mailbox_list(&list, ct).await?;
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}
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} else {
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let names = list.existing_mailbox_names();
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let old_name_w_delim = format!("{}{}", old_name, MAILBOX_HIERARCHY_DELIMITER);
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let new_name_w_delim = format!("{}{}", new_name, MAILBOX_HIERARCHY_DELIMITER);
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if names
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.iter()
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.any(|x| x == new_name || x.starts_with(&new_name_w_delim))
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{
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bail!("Mailbox {} already exists", new_name);
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}
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for name in names.iter() {
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if name == old_name {
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list.rename_mailbox(name, new_name)?;
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} else if let Some(tail) = name.strip_prefix(&old_name_w_delim) {
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let nnew = format!("{}{}", new_name_w_delim, tail);
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list.rename_mailbox(name, &nnew)?;
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}
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}
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self.save_mailbox_list(&list, ct).await?;
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}
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Ok(())
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}
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// ---- Internal user & mailbox management ----
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async fn open(username: String, creds: Credentials) -> Result<Arc<Self>> {
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let k2v = creds.k2v_client()?;
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let (tx_inbox_id, rx_inbox_id) = watch::channel(None);
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let user = Arc::new(Self {
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username,
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creds: creds.clone(),
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k2v,
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tx_inbox_id,
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mailboxes: std::sync::Mutex::new(HashMap::new()),
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});
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// Ensure INBOX exists (done inside load_mailbox_list)
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user.load_mailbox_list().await?;
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tokio::spawn(incoming_mail_watch_process(
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Arc::downgrade(&user),
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user.creds.clone(),
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rx_inbox_id,
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));
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Ok(user)
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}
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pub(super) async fn open_mailbox_by_id(
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&self,
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id: UniqueIdent,
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min_uidvalidity: ImapUidvalidity,
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) -> Result<Arc<Mailbox>> {
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{
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let cache = self.mailboxes.lock().unwrap();
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if let Some(mb) = cache.get(&id).and_then(Weak::upgrade) {
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return Ok(mb);
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}
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}
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let mb = Arc::new(Mailbox::open(&self.creds, id, min_uidvalidity).await?);
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let mut cache = self.mailboxes.lock().unwrap();
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if let Some(concurrent_mb) = cache.get(&id).and_then(Weak::upgrade) {
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drop(mb); // we worked for nothing but at least we didn't starve someone else
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Ok(concurrent_mb)
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} else {
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cache.insert(id, Arc::downgrade(&mb));
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Ok(mb)
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}
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}
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// ---- Mailbox list management ----
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async fn load_mailbox_list(&self) -> Result<(MailboxList, Option<CausalityToken>)> {
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let (mut list, ct) = match self.k2v.read_item(MAILBOX_LIST_PK, MAILBOX_LIST_SK).await {
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Err(k2v_client::Error::NotFound) => (MailboxList::new(), None),
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Err(e) => return Err(e.into()),
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Ok(cv) => {
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let mut list = MailboxList::new();
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for v in cv.value {
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if let K2vValue::Value(vbytes) = v {
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let list2 =
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open_deserialize::<MailboxList>(&vbytes, &self.creds.keys.master)?;
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list.merge(list2);
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}
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}
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(list, Some(cv.causality))
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}
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};
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self.ensure_inbox_exists(&mut list, &ct).await?;
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Ok((list, ct))
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}
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async fn ensure_inbox_exists(
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&self,
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list: &mut MailboxList,
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ct: &Option<CausalityToken>,
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) -> Result<bool> {
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// If INBOX doesn't exist, create a new mailbox with that name
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// and save new mailbox list.
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// Also, ensure that the mpsc::watch that keeps track of the
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// inbox id is up-to-date.
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let saved;
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let (inbox_id, inbox_uidvalidity) = match list.create_mailbox(INBOX) {
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CreatedMailbox::Created(i, v) => {
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self.save_mailbox_list(list, ct.clone()).await?;
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saved = true;
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(i, v)
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}
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CreatedMailbox::Existed(i, v) => {
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saved = false;
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(i, v)
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}
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};
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let inbox_id = Some((inbox_id, inbox_uidvalidity));
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if *self.tx_inbox_id.borrow() != inbox_id {
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self.tx_inbox_id.send(inbox_id).unwrap();
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}
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Ok(saved)
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}
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async fn save_mailbox_list(
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&self,
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list: &MailboxList,
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ct: Option<CausalityToken>,
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) -> Result<()> {
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let list_blob = seal_serialize(list, &self.creds.keys.master)?;
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self.k2v
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.insert_item(MAILBOX_LIST_PK, MAILBOX_LIST_SK, list_blob, ct)
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.await?;
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Ok(())
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}
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}
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// ---- User's mailbox list (serialized in K2V) ----
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#[derive(Serialize, Deserialize)]
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struct MailboxList(BTreeMap<String, MailboxListEntry>);
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#[derive(Serialize, Deserialize, Clone, Copy, Debug)]
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struct MailboxListEntry {
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id_lww: (u64, Option<UniqueIdent>),
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uidvalidity: ImapUidvalidity,
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}
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impl MailboxListEntry {
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fn merge(&mut self, other: &Self) {
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// Simple CRDT merge rule
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if other.id_lww.0 > self.id_lww.0
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|| (other.id_lww.0 == self.id_lww.0 && other.id_lww.1 > self.id_lww.1)
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{
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self.id_lww = other.id_lww;
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}
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self.uidvalidity = std::cmp::max(self.uidvalidity, other.uidvalidity);
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}
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}
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impl MailboxList {
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fn new() -> Self {
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Self(BTreeMap::new())
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}
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fn merge(&mut self, list2: Self) {
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for (k, v) in list2.0.into_iter() {
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if let Some(e) = self.0.get_mut(&k) {
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e.merge(&v);
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} else {
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self.0.insert(k, v);
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}
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}
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}
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fn existing_mailbox_names(&self) -> Vec<String> {
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self.0
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.iter()
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.filter(|(_, v)| v.id_lww.1.is_some())
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.map(|(k, _)| k.to_string())
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.collect()
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}
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fn has_mailbox(&self, name: &str) -> bool {
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matches!(self.0.get(name), Some(MailboxListEntry {
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id_lww: (_, Some(_)),
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..
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}))
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}
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fn get_mailbox(&self, name: &str) -> Option<(ImapUidvalidity, Option<UniqueIdent>)> {
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self.0.get(name).map(|MailboxListEntry {
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id_lww: (_, mailbox_id),
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uidvalidity,
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}| (*uidvalidity, *mailbox_id))
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}
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/// Ensures mailbox `name` maps to id `id`.
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/// If it already mapped to that, returns None.
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/// If a change had to be done, returns Some(new uidvalidity in mailbox).
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fn set_mailbox(&mut self, name: &str, id: Option<UniqueIdent>) -> Option<ImapUidvalidity> {
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let (ts, id, uidvalidity) = match self.0.get_mut(name) {
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None => {
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if id.is_none() {
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return None;
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} else {
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(now_msec(), id, ImapUidvalidity::new(1).unwrap())
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}
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}
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Some(MailboxListEntry {
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id_lww,
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uidvalidity,
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}) => {
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if id_lww.1 == id {
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return None;
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} else {
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(
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std::cmp::max(id_lww.0 + 1, now_msec()),
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id,
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ImapUidvalidity::new(uidvalidity.get() + 1).unwrap(),
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)
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}
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}
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};
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self.0.insert(
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name.into(),
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MailboxListEntry {
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id_lww: (ts, id),
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uidvalidity,
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},
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);
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Some(uidvalidity)
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}
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fn update_uidvalidity(&mut self, name: &str, new_uidvalidity: ImapUidvalidity) {
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match self.0.get_mut(name) {
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None => {
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self.0.insert(
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name.into(),
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MailboxListEntry {
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id_lww: (now_msec(), None),
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uidvalidity: new_uidvalidity,
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},
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);
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}
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Some(MailboxListEntry { uidvalidity, .. }) => {
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*uidvalidity = std::cmp::max(*uidvalidity, new_uidvalidity);
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}
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}
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}
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fn create_mailbox(&mut self, name: &str) -> CreatedMailbox {
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if let Some(MailboxListEntry {
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id_lww: (_, Some(id)),
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uidvalidity,
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}) = self.0.get(name)
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{
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return CreatedMailbox::Existed(*id, *uidvalidity);
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}
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let id = gen_ident();
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let uidvalidity = self.set_mailbox(name, Some(id)).unwrap();
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CreatedMailbox::Created(id, uidvalidity)
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}
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fn rename_mailbox(&mut self, old_name: &str, new_name: &str) -> Result<()> {
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if let Some((uidvalidity, Some(mbid))) = self.get_mailbox(old_name) {
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if self.has_mailbox(new_name) {
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bail!(
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"Cannot rename {} into {}: {} already exists",
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old_name,
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new_name,
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new_name
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);
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}
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self.set_mailbox(old_name, None);
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self.set_mailbox(new_name, Some(mbid));
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self.update_uidvalidity(new_name, uidvalidity);
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Ok(())
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} else {
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bail!(
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"Cannot rename {} into {}: {} doesn't exist",
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old_name,
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new_name,
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old_name
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);
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}
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}
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}
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enum CreatedMailbox {
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Created(UniqueIdent, ImapUidvalidity),
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Existed(UniqueIdent, ImapUidvalidity),
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}
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// ---- User cache ----
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lazy_static! {
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static ref USER_CACHE: std::sync::Mutex<HashMap<(String, StorageCredentials), Weak<User>>> =
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std::sync::Mutex::new(HashMap::new());
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}
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