mirror of
https://github.com/librespot-org/librespot.git
synced 2025-01-07 17:24:04 +00:00
206 lines
6.4 KiB
Rust
206 lines
6.4 KiB
Rust
use byteorder::{BigEndian, ByteOrder, WriteBytesExt};
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use crypto::hmac::Hmac;
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use crypto::mac::Mac;
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use crypto::sha1::Sha1;
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use futures::{Async, Future, Poll};
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use protobuf::{self, Message, MessageStatic};
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use rand::thread_rng;
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use std::io::{self, Read};
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use std::marker::PhantomData;
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use tokio_io::{AsyncRead, AsyncWrite};
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use tokio_io::codec::Framed;
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use tokio_io::io::{read_exact, write_all, ReadExact, Window, WriteAll};
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use super::codec::APCodec;
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use diffie_hellman::DHLocalKeys;
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use protocol;
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use protocol::keyexchange::{APResponseMessage, ClientHello, ClientResponsePlaintext};
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use util;
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pub struct Handshake<T> {
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keys: DHLocalKeys,
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state: HandshakeState<T>,
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}
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enum HandshakeState<T> {
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ClientHello(WriteAll<T, Vec<u8>>),
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APResponse(RecvPacket<T, APResponseMessage>),
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ClientResponse(Option<APCodec>, WriteAll<T, Vec<u8>>),
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}
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pub fn handshake<T: AsyncRead + AsyncWrite>(connection: T) -> Handshake<T> {
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let local_keys = DHLocalKeys::random(&mut thread_rng());
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let client_hello = client_hello(connection, local_keys.public_key());
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Handshake {
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keys: local_keys,
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state: HandshakeState::ClientHello(client_hello),
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}
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}
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impl<T: AsyncRead + AsyncWrite> Future for Handshake<T> {
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type Item = Framed<T, APCodec>;
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type Error = io::Error;
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fn poll(&mut self) -> Poll<Self::Item, io::Error> {
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use self::HandshakeState::*;
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loop {
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self.state = match self.state {
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ClientHello(ref mut write) => {
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let (connection, accumulator) = try_ready!(write.poll());
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let read = recv_packet(connection, accumulator);
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APResponse(read)
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}
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APResponse(ref mut read) => {
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let (connection, message, accumulator) = try_ready!(read.poll());
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let remote_key = message
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.get_challenge()
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.get_login_crypto_challenge()
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.get_diffie_hellman()
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.get_gs()
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.to_owned();
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let shared_secret = self.keys.shared_secret(&remote_key);
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let (challenge, send_key, recv_key) = compute_keys(&shared_secret, &accumulator);
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let codec = APCodec::new(&send_key, &recv_key);
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let write = client_response(connection, challenge);
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ClientResponse(Some(codec), write)
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}
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ClientResponse(ref mut codec, ref mut write) => {
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let (connection, _) = try_ready!(write.poll());
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let codec = codec.take().unwrap();
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let framed = connection.framed(codec);
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return Ok(Async::Ready(framed));
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}
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}
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}
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}
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}
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fn client_hello<T: AsyncWrite>(connection: T, gc: Vec<u8>) -> WriteAll<T, Vec<u8>> {
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let packet = protobuf_init!(ClientHello::new(), {
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build_info => {
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product: protocol::keyexchange::Product::PRODUCT_PARTNER,
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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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cryptosuites_supported => [
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protocol::keyexchange::Cryptosuite::CRYPTO_SUITE_SHANNON,
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],
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login_crypto_hello.diffie_hellman => {
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gc: gc,
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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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});
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let mut buffer = vec![0, 4];
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let size = 2 + 4 + packet.compute_size();
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buffer.write_u32::<BigEndian>(size).unwrap();
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packet.write_to_vec(&mut buffer).unwrap();
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write_all(connection, buffer)
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}
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fn client_response<T: AsyncWrite>(connection: T, challenge: Vec<u8>) -> WriteAll<T, Vec<u8>> {
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let packet = protobuf_init!(ClientResponsePlaintext::new(), {
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login_crypto_response.diffie_hellman => {
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hmac: challenge
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},
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pow_response => {},
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crypto_response => {},
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});
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let mut buffer = vec![];
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let size = 4 + packet.compute_size();
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buffer.write_u32::<BigEndian>(size).unwrap();
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packet.write_to_vec(&mut buffer).unwrap();
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write_all(connection, buffer)
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}
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enum RecvPacket<T, M: MessageStatic> {
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Header(ReadExact<T, Window<Vec<u8>>>, PhantomData<M>),
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Body(ReadExact<T, Window<Vec<u8>>>, PhantomData<M>),
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}
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fn recv_packet<T: AsyncRead, M>(connection: T, acc: Vec<u8>) -> RecvPacket<T, M>
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where
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T: Read,
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M: MessageStatic,
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{
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RecvPacket::Header(read_into_accumulator(connection, 4, acc), PhantomData)
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}
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impl<T: AsyncRead, M> Future for RecvPacket<T, M>
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where
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T: Read,
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M: MessageStatic,
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{
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type Item = (T, M, Vec<u8>);
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type Error = io::Error;
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fn poll(&mut self) -> Poll<Self::Item, io::Error> {
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use self::RecvPacket::*;
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loop {
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*self = match *self {
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Header(ref mut read, _) => {
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let (connection, header) = try_ready!(read.poll());
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let size = BigEndian::read_u32(header.as_ref()) as usize;
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let acc = header.into_inner();
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let read = read_into_accumulator(connection, size - 4, acc);
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RecvPacket::Body(read, PhantomData)
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}
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Body(ref mut read, _) => {
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let (connection, data) = try_ready!(read.poll());
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let message = protobuf::parse_from_bytes(data.as_ref()).unwrap();
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let acc = data.into_inner();
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return Ok(Async::Ready((connection, message, acc)));
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}
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}
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}
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}
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}
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fn read_into_accumulator<T: AsyncRead>(
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connection: T,
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size: usize,
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mut acc: Vec<u8>,
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) -> ReadExact<T, Window<Vec<u8>>> {
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let offset = acc.len();
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acc.resize(offset + size, 0);
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let mut window = Window::new(acc);
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window.set_start(offset);
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read_exact(connection, window)
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}
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fn compute_keys(shared_secret: &[u8], packets: &[u8]) -> (Vec<u8>, Vec<u8>, Vec<u8>) {
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let mut data = Vec::with_capacity(0x64);
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let mut mac = Hmac::new(Sha1::new(), &shared_secret);
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for i in 1..6 {
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mac.input(packets);
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mac.input(&[i]);
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data.extend_from_slice(&mac.result().code());
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mac.reset();
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}
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mac = Hmac::new(Sha1::new(), &data[..0x14]);
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mac.input(packets);
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(
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mac.result().code().to_vec(),
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data[0x14..0x34].to_vec(),
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data[0x34..0x54].to_vec(),
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)
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}
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