mirror of
https://github.com/librespot-org/librespot.git
synced 2024-12-18 17:11:53 +00:00
2a2f227bef
Use less threads, makes it much simpler to reason about.
190 lines
6.6 KiB
Rust
190 lines
6.6 KiB
Rust
use crypto::digest::Digest;
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use crypto::sha1::Sha1;
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use protobuf::{self, Message};
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use rand::thread_rng;
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use std::sync::{Mutex, Arc, Future, mpsc};
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use connection::{self, PlainConnection, CipherConnection};
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use keys::PrivateKeys;
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use librespot_protocol as protocol;
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use util::{SpotifyId, FileId};
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use mercury::{MercuryManager, MercuryRequest, MercuryResponse};
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use metadata::{MetadataManager, MetadataRef, MetadataTrait};
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use stream::{StreamManager, StreamEvent};
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use audio_key::{AudioKeyManager, AudioKey};
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use connection::PacketHandler;
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use util;
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pub struct Config {
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pub application_key: Vec<u8>,
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pub user_agent: String,
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pub device_id: String,
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}
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pub struct Session {
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pub config: Config,
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mercury: Mutex<MercuryManager>,
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metadata: Mutex<MetadataManager>,
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stream: Mutex<StreamManager>,
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audio_key: Mutex<AudioKeyManager>,
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rx_connection: Mutex<CipherConnection>,
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tx_connection: Mutex<CipherConnection>,
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}
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type SessionRef = Arc<Session>;
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impl Session {
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pub fn new(mut config: Config) -> Session {
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config.device_id = {
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let mut h = Sha1::new();
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h.input_str(&config.device_id);
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h.result_str()
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};
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let keys = PrivateKeys::new();
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let mut connection = PlainConnection::connect().unwrap();
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let request = protobuf_init!(protocol::keyexchange::ClientHello::new(), {
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build_info => {
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product: protocol::keyexchange::Product::PRODUCT_LIBSPOTIFY_EMBEDDED,
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platform: protocol::keyexchange::Platform::PLATFORM_LINUX_X86,
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version: 0x10800000000,
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},
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/*
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fingerprints_supported => [
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protocol::keyexchange::Fingerprint::FINGERPRINT_GRAIN
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],
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*/
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cryptosuites_supported => [
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protocol::keyexchange::Cryptosuite::CRYPTO_SUITE_SHANNON,
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//protocol::keyexchange::Cryptosuite::CRYPTO_SUITE_RC4_SHA1_HMAC
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],
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/*
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powschemes_supported => [
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protocol::keyexchange::Powscheme::POW_HASH_CASH
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],
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*/
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login_crypto_hello.diffie_hellman => {
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gc: keys.public_key(),
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server_keys_known: 1,
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},
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client_nonce: util::rand_vec(&mut thread_rng(), 0x10),
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padding: vec![0x1e],
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feature_set => {
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autoupdate2: true,
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}
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});
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let init_client_packet =
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connection.send_packet_prefix(&[0,4], &request.write_to_bytes().unwrap()).unwrap();
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let init_server_packet =
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connection.recv_packet().unwrap();
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let response : protocol::keyexchange::APResponseMessage =
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protobuf::parse_from_bytes(&init_server_packet[4..]).unwrap();
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protobuf_bind!(response, {
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challenge => {
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login_crypto_challenge.diffie_hellman => {
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gs: remote_key,
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}
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}
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});
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let shared_keys = keys.add_remote_key(remote_key, &init_client_packet, &init_server_packet);
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let packet = protobuf_init!(protocol::keyexchange::ClientResponsePlaintext::new(), {
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login_crypto_response.diffie_hellman => {
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hmac: shared_keys.challenge().to_vec()
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},
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pow_response => {},
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crypto_response => {},
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});
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connection.send_packet(&packet.write_to_bytes().unwrap()).unwrap();
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let cipher_connection = connection.setup_cipher(shared_keys);
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Session {
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config: config,
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rx_connection: Mutex::new(cipher_connection.clone()),
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tx_connection: Mutex::new(cipher_connection),
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mercury: Mutex::new(MercuryManager::new()),
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metadata: Mutex::new(MetadataManager::new()),
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stream: Mutex::new(StreamManager::new()),
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audio_key: Mutex::new(AudioKeyManager::new()),
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}
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}
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pub fn login(&self, username: String, password: String) {
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let packet = protobuf_init!(protocol::authentication::ClientResponseEncrypted::new(), {
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login_credentials => {
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username: username,
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typ: protocol::authentication::AuthenticationType::AUTHENTICATION_USER_PASS,
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auth_data: password.into_bytes(),
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},
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system_info => {
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cpu_family: protocol::authentication::CpuFamily::CPU_UNKNOWN,
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os: protocol::authentication::Os::OS_UNKNOWN,
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system_information_string: "librespot".to_string(),
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device_id: self.config.device_id.clone()
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},
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version_string: util::version::version_string(),
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appkey => {
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version: self.config.application_key[0] as u32,
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devkey: self.config.application_key[0x1..0x81].to_vec(),
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signature: self.config.application_key[0x81..0x141].to_vec(),
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useragent: self.config.user_agent.clone(),
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callback_hash: vec![0; 20],
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}
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});
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self.send_packet(0xab, &packet.write_to_bytes().unwrap()).unwrap();
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}
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pub fn poll(&self) {
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let (cmd, data) =
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self.rx_connection.lock().unwrap().recv_packet().unwrap();
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match cmd {
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0x4 => self.send_packet(0x49, &data).unwrap(),
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0x4a => (),
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0x9 => self.stream.lock().unwrap().handle(cmd, data),
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0xd | 0xe => self.audio_key.lock().unwrap().handle(cmd, data),
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0xb2...0xb6 => self.mercury.lock().unwrap().handle(cmd, data),
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0xac => eprintln!("Authentication succeedded"),
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0xad => eprintln!("Authentication failed"),
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_ => ()
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}
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}
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pub fn send_packet(&self, cmd: u8, data: &[u8]) -> connection::Result<()> {
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self.tx_connection.lock().unwrap().send_packet(cmd, data)
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}
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pub fn audio_key(&self, track: SpotifyId, file: FileId) -> Future<AudioKey> {
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self.audio_key.lock().unwrap().request(self, track, file)
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}
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pub fn stream(&self, file: FileId, offset: u32, size: u32) -> mpsc::Receiver<StreamEvent> {
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self.stream.lock().unwrap().request(self, file, offset, size)
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}
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pub fn metadata<T: MetadataTrait>(&self, id: SpotifyId) -> MetadataRef<T> {
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self.metadata.lock().unwrap().get(self, id)
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}
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pub fn mercury(&self, req: MercuryRequest) -> Future<MercuryResponse> {
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self.mercury.lock().unwrap().request(self, req)
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}
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pub fn mercury_sub(&self, uri: String) -> mpsc::Receiver<MercuryResponse> {
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self.mercury.lock().unwrap().subscribe(self, uri)
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}
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}
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