355 lines
12 KiB
Rust
355 lines
12 KiB
Rust
use crate::{utils, Error, Result};
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use js_int::UInt;
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use ruma_client_api::r0::keys::{AlgorithmAndDeviceId, DeviceKeys, KeyAlgorithm, OneTimeKey};
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use ruma_events::{to_device::AnyToDeviceEvent, EventJson, EventType};
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use ruma_identifiers::{DeviceId, UserId};
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use std::{collections::BTreeMap, convert::TryFrom};
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pub struct Users {
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pub(super) userid_password: sled::Tree,
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pub(super) userid_displayname: sled::Tree,
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pub(super) userid_avatarurl: sled::Tree,
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pub(super) userdeviceids: sled::Tree,
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pub(super) userdeviceid_token: sled::Tree,
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pub(super) token_userdeviceid: sled::Tree,
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pub(super) onetimekeyid_onetimekeys: sled::Tree, // OneTimeKeyId = UserId + AlgorithmAndDeviceId
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pub(super) userdeviceid_devicekeys: sled::Tree,
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pub(super) todeviceid_events: sled::Tree, // ToDeviceId = UserId + DeviceId + Count
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}
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impl Users {
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/// Check if a user has an account on this homeserver.
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pub fn exists(&self, user_id: &UserId) -> Result<bool> {
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Ok(self.userid_password.contains_key(user_id.to_string())?)
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}
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/// Create a new user account on this homeserver.
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pub fn create(&self, user_id: &UserId, hash: &str) -> Result<()> {
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self.userid_password.insert(user_id.to_string(), hash)?;
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Ok(())
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}
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/// Find out which user an access token belongs to.
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pub fn find_from_token(&self, token: &str) -> Result<Option<(UserId, String)>> {
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self.token_userdeviceid
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.get(token)?
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.map_or(Ok(None), |bytes| {
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let mut parts = bytes.split(|&b| b == 0xff);
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let user_bytes = parts
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.next()
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.ok_or(Error::BadDatabase("token_userdeviceid value invalid"))?;
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let device_bytes = parts
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.next()
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.ok_or(Error::BadDatabase("token_userdeviceid value invalid"))?;
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Ok(Some((
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UserId::try_from(utils::string_from_bytes(&user_bytes)?)?,
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utils::string_from_bytes(&device_bytes)?,
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)))
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})
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}
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/// Returns an iterator over all users on this homeserver.
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pub fn iter(&self) -> impl Iterator<Item = Result<UserId>> {
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self.userid_password.iter().keys().map(|r| {
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utils::string_from_bytes(&r?).and_then(|string| Ok(UserId::try_from(&*string)?))
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})
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}
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/// Returns the password hash for the given user.
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pub fn password_hash(&self, user_id: &UserId) -> Result<Option<String>> {
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self.userid_password
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.get(user_id.to_string())?
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.map_or(Ok(None), |bytes| utils::string_from_bytes(&bytes).map(Some))
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}
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/// Returns the displayname of a user on this homeserver.
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pub fn displayname(&self, user_id: &UserId) -> Result<Option<String>> {
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self.userid_displayname
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.get(user_id.to_string())?
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.map_or(Ok(None), |bytes| utils::string_from_bytes(&bytes).map(Some))
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}
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/// Sets a new displayname or removes it if displayname is None. You still need to nofify all rooms of this change.
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pub fn set_displayname(&self, user_id: &UserId, displayname: Option<String>) -> Result<()> {
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if let Some(displayname) = displayname {
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self.userid_displayname
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.insert(user_id.to_string(), &*displayname)?;
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} else {
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self.userid_displayname.remove(user_id.to_string())?;
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}
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Ok(())
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}
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/// Get a the avatar_url of a user.
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pub fn avatar_url(&self, user_id: &UserId) -> Result<Option<String>> {
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self.userid_avatarurl
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.get(user_id.to_string())?
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.map_or(Ok(None), |bytes| utils::string_from_bytes(&bytes).map(Some))
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}
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/// Sets a new avatar_url or removes it if avatar_url is None.
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pub fn set_avatar_url(&self, user_id: &UserId, avatar_url: Option<String>) -> Result<()> {
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if let Some(avatar_url) = avatar_url {
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self.userid_avatarurl
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.insert(user_id.to_string(), &*avatar_url)?;
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} else {
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self.userid_avatarurl.remove(user_id.to_string())?;
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}
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Ok(())
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}
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/// Adds a new device to a user.
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pub fn create_device(&self, user_id: &UserId, device_id: &DeviceId, token: &str) -> Result<()> {
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if !self.exists(user_id)? {
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return Err(Error::BadRequest(
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"tried to create device for nonexistent user",
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));
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}
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let mut key = user_id.to_string().as_bytes().to_vec();
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key.push(0xff);
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key.extend_from_slice(device_id.as_bytes());
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self.userdeviceids.insert(key, &[])?;
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self.set_token(user_id, device_id, token)?;
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Ok(())
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}
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/// Returns an iterator over all device ids of this user.
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pub fn all_device_ids(&self, user_id: &UserId) -> impl Iterator<Item = Result<DeviceId>> {
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let mut prefix = user_id.to_string().as_bytes().to_vec();
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prefix.push(0xff);
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self.userdeviceids.scan_prefix(prefix).keys().map(|bytes| {
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Ok(utils::string_from_bytes(
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&*bytes?
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.rsplit(|&b| b == 0xff)
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.next()
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.ok_or(Error::BadDatabase("userdeviceid is invalid"))?,
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)?)
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})
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}
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/// Replaces the access token of one device.
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pub fn set_token(&self, user_id: &UserId, device_id: &DeviceId, token: &str) -> Result<()> {
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let mut userdeviceid = user_id.to_string().as_bytes().to_vec();
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userdeviceid.push(0xff);
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userdeviceid.extend_from_slice(device_id.as_bytes());
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if self.userdeviceids.get(&userdeviceid)?.is_none() {
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return Err(Error::BadRequest(
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"Tried to set token for nonexistent device",
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));
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}
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// Remove old token
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if let Some(old_token) = self.userdeviceid_token.get(&userdeviceid)? {
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self.token_userdeviceid.remove(old_token)?;
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// It will be removed from userdeviceid_token by the insert later
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}
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// Assign token to user device combination
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self.userdeviceid_token.insert(&userdeviceid, &*token)?;
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self.token_userdeviceid.insert(token, userdeviceid)?;
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Ok(())
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}
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pub fn add_one_time_key(
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&self,
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user_id: &UserId,
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device_id: &DeviceId,
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one_time_key_key: &AlgorithmAndDeviceId,
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one_time_key_value: &OneTimeKey,
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) -> Result<()> {
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let mut key = user_id.to_string().as_bytes().to_vec();
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key.push(0xff);
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key.extend_from_slice(device_id.as_bytes());
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if self.userdeviceids.get(&key)?.is_none() {
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return Err(Error::BadRequest(
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"Tried to set token for nonexistent device",
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));
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}
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key.push(0xff);
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// TODO: Use AlgorithmAndDeviceId::to_string when it's available (and update everything,
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// because there are no wrapping quotation marks anymore)
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key.extend_from_slice(&serde_json::to_string(one_time_key_key)?.as_bytes());
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self.onetimekeyid_onetimekeys
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.insert(&key, &*serde_json::to_string(&one_time_key_value)?)?;
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Ok(())
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}
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pub fn take_one_time_key(
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&self,
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user_id: &UserId,
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device_id: &DeviceId,
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key_algorithm: &KeyAlgorithm,
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) -> Result<Option<(AlgorithmAndDeviceId, OneTimeKey)>> {
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let mut prefix = user_id.to_string().as_bytes().to_vec();
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prefix.push(0xff);
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prefix.extend_from_slice(device_id.as_bytes());
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prefix.push(0xff);
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prefix.push(b'"'); // Annoying quotation mark
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prefix.extend_from_slice(key_algorithm.to_string().as_bytes());
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prefix.push(b':');
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self.onetimekeyid_onetimekeys
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.scan_prefix(&prefix)
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.next()
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.map(|r| {
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let (key, value) = r?;
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Ok((
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serde_json::from_slice(
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&*key
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.rsplit(|&b| b == 0xff)
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.next()
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.ok_or(Error::BadDatabase("onetimekeyid is invalid"))?,
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)?,
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serde_json::from_slice(&*value)?,
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))
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})
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.transpose()
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}
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pub fn count_one_time_keys(
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&self,
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user_id: &UserId,
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device_id: &DeviceId,
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) -> Result<BTreeMap<KeyAlgorithm, UInt>> {
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let mut userdeviceid = user_id.to_string().as_bytes().to_vec();
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userdeviceid.push(0xff);
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userdeviceid.extend_from_slice(device_id.as_bytes());
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let mut counts = BTreeMap::new();
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for algorithm in self
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.onetimekeyid_onetimekeys
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.scan_prefix(&userdeviceid)
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.keys()
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.map(|bytes| {
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Ok::<_, Error>(
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serde_json::from_slice::<AlgorithmAndDeviceId>(
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&*bytes?
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.rsplit(|&b| b == 0xff)
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.next()
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.ok_or(Error::BadDatabase("onetimekeyid is invalid"))?,
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)?
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.0,
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)
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})
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{
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*counts.entry(algorithm?).or_default() += UInt::from(1_u32);
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}
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Ok(counts)
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}
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pub fn add_device_keys(
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&self,
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user_id: &UserId,
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device_id: &DeviceId,
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device_keys: &DeviceKeys,
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) -> Result<()> {
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let mut userdeviceid = user_id.to_string().as_bytes().to_vec();
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userdeviceid.push(0xff);
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userdeviceid.extend_from_slice(device_id.as_bytes());
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self.userdeviceid_devicekeys
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.insert(&userdeviceid, &*serde_json::to_string(&device_keys)?)?;
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Ok(())
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}
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pub fn get_device_keys(
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&self,
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user_id: &UserId,
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device_id: &DeviceId,
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) -> impl Iterator<Item = Result<DeviceKeys>> {
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let mut key = user_id.to_string().as_bytes().to_vec();
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key.push(0xff);
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key.extend_from_slice(device_id.as_bytes());
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self.userdeviceid_devicekeys
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.scan_prefix(key)
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.values()
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.map(|bytes| Ok(serde_json::from_slice(&bytes?)?))
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}
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pub fn all_device_keys(
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&self,
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user_id: &UserId,
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) -> impl Iterator<Item = Result<(String, DeviceKeys)>> {
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let mut key = user_id.to_string().as_bytes().to_vec();
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key.push(0xff);
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self.userdeviceid_devicekeys.scan_prefix(key).map(|r| {
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let (key, value) = r?;
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Ok((
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utils::string_from_bytes(
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key.rsplit(|&b| b == 0xff)
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.next()
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.ok_or(Error::BadDatabase("userdeviceid is invalid"))?,
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)?,
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serde_json::from_slice(&*value)?,
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))
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})
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}
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pub fn add_to_device_event(
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&self,
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sender: &UserId,
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target_user_id: &UserId,
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target_device_id: &DeviceId,
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event_type: &EventType,
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content: serde_json::Value,
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globals: &super::globals::Globals,
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) -> Result<()> {
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let mut key = target_user_id.to_string().as_bytes().to_vec();
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key.push(0xff);
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key.extend_from_slice(target_device_id.as_bytes());
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key.push(0xff);
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key.extend_from_slice(&globals.next_count()?.to_be_bytes());
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let mut json = serde_json::Map::new();
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json.insert("type".to_owned(), event_type.to_string().into());
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json.insert("sender".to_owned(), sender.to_string().into());
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json.insert("content".to_owned(), content);
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self.todeviceid_events
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.insert(&key, &*serde_json::to_string(&json)?)?;
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Ok(())
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}
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pub fn take_to_device_events(
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&self,
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user_id: &UserId,
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device_id: &DeviceId,
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max: usize,
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) -> Result<Vec<EventJson<AnyToDeviceEvent>>> {
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let mut events = Vec::new();
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let mut prefix = user_id.to_string().as_bytes().to_vec();
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prefix.push(0xff);
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prefix.extend_from_slice(device_id.as_bytes());
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prefix.push(0xff);
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for result in self.todeviceid_events.scan_prefix(&prefix).take(max) {
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let (key, value) = result?;
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events.push(serde_json::from_slice(&*value)?);
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self.todeviceid_events.remove(key)?;
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}
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Ok(events)
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}
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}
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