199 lines
5.3 KiB
C++
199 lines
5.3 KiB
C++
/*
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This file is part of Telegram Desktop,
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the official desktop application for the Telegram messaging service.
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For license and copyright information please follow this link:
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https://github.com/telegramdesktop/tdesktop/blob/master/LEGAL
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*/
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#include "mtproto/connection_abstract.h"
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#include "mtproto/connection_tcp.h"
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#include "mtproto/connection_http.h"
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#include "mtproto/connection_resolving.h"
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#include "mtproto/session.h"
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#include "base/unixtime.h"
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#include "base/openssl_help.h"
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namespace MTP {
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namespace details {
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ConnectionPointer::ConnectionPointer() = default;
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ConnectionPointer::ConnectionPointer(std::nullptr_t) {
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}
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ConnectionPointer::ConnectionPointer(AbstractConnection *value)
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: _value(value) {
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}
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ConnectionPointer::ConnectionPointer(ConnectionPointer &&other)
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: _value(base::take(other._value)) {
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}
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ConnectionPointer &ConnectionPointer::operator=(ConnectionPointer &&other) {
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reset(base::take(other._value));
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return *this;
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}
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AbstractConnection *ConnectionPointer::get() const {
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return _value;
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}
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void ConnectionPointer::reset(AbstractConnection *value) {
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if (_value == value) {
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return;
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} else if (const auto old = base::take(_value)) {
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const auto disconnect = [&](auto signal) {
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old->disconnect(old, signal, nullptr, nullptr);
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};
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disconnect(&AbstractConnection::receivedData);
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disconnect(&AbstractConnection::receivedSome);
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disconnect(&AbstractConnection::error);
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disconnect(&AbstractConnection::connected);
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disconnect(&AbstractConnection::disconnected);
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old->disconnectFromServer();
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old->deleteLater();
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}
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_value = value;
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}
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ConnectionPointer::operator AbstractConnection*() const {
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return get();
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}
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AbstractConnection *ConnectionPointer::operator->() const {
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return get();
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}
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AbstractConnection &ConnectionPointer::operator*() const {
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return *get();
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}
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ConnectionPointer::operator bool() const {
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return get() != nullptr;
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}
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ConnectionPointer::~ConnectionPointer() {
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reset();
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}
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mtpBuffer AbstractConnection::prepareSecurePacket(
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uint64 keyId,
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MTPint128 msgKey,
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uint32 size) const {
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auto result = mtpBuffer();
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constexpr auto kTcpPrefixInts = 2;
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constexpr auto kAuthKeyIdPosition = kTcpPrefixInts;
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constexpr auto kAuthKeyIdInts = 2;
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constexpr auto kMessageKeyPosition = kAuthKeyIdPosition
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+ kAuthKeyIdInts;
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constexpr auto kMessageKeyInts = 4;
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constexpr auto kPrefixInts = kTcpPrefixInts
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+ kAuthKeyIdInts
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+ kMessageKeyInts;
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constexpr auto kTcpPostfixInts = 4;
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result.reserve(kPrefixInts + size + kTcpPostfixInts);
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result.resize(kPrefixInts);
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*reinterpret_cast<uint64*>(&result[kAuthKeyIdPosition]) = keyId;
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*reinterpret_cast<MTPint128*>(&result[kMessageKeyPosition]) = msgKey;
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return result;
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}
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gsl::span<const mtpPrime> AbstractConnection::parseNotSecureResponse(
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const mtpBuffer &buffer) const {
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const auto answer = buffer.data();
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const auto len = buffer.size();
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if (len < 6) {
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LOG(("Not Secure Error: bad request answer, len = %1"
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).arg(len * sizeof(mtpPrime)));
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DEBUG_LOG(("Not Secure Error: answer bytes %1"
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).arg(Logs::mb(answer, len * sizeof(mtpPrime)).str()));
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return {};
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}
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if (answer[0] != 0
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|| answer[1] != 0
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|| (((uint32)answer[2]) & 0x03) != 1
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//|| (base::unixtime::now() - answer[3] > 300) // We didn't sync time yet.
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//|| (answer[3] - base::unixtime::now() > 60)
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|| false) {
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LOG(("Not Secure Error: bad request answer start (%1 %2 %3)"
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).arg(answer[0]
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).arg(answer[1]
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).arg(answer[2]));
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DEBUG_LOG(("Not Secure Error: answer bytes %1"
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).arg(Logs::mb(answer, len * sizeof(mtpPrime)).str()));
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return {};
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}
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const auto answerLen = (uint32)answer[4];
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if (answerLen < 1 || answerLen > (len - 5) * sizeof(mtpPrime)) {
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LOG(("Not Secure Error: bad request answer 1 <= %1 <= %2"
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).arg(answerLen
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).arg((len - 5) * sizeof(mtpPrime)));
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DEBUG_LOG(("Not Secure Error: answer bytes %1"
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).arg(Logs::mb(answer, len * sizeof(mtpPrime)).str()));
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return {};
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}
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return gsl::make_span(answer + 5, answerLen);
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}
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mtpBuffer AbstractConnection::preparePQFake(const MTPint128 &nonce) const {
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return prepareNotSecurePacket(
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MTPReq_pq(nonce),
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base::unixtime::mtproto_msg_id());
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}
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std::optional<MTPResPQ> AbstractConnection::readPQFakeReply(
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const mtpBuffer &buffer) const {
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const auto answer = parseNotSecureResponse(buffer);
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if (answer.empty()) {
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return std::nullopt;
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}
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auto from = answer.data();
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MTPResPQ response;
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return response.read(from, from + answer.size())
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? std::make_optional(response)
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: std::nullopt;
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}
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AbstractConnection::AbstractConnection(
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QThread *thread,
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const ProxyData &proxy)
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: _proxy(proxy) {
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moveToThread(thread);
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}
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ConnectionPointer AbstractConnection::Create(
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not_null<Instance*> instance,
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DcOptions::Variants::Protocol protocol,
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QThread *thread,
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const bytes::vector &secret,
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const ProxyData &proxy) {
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auto result = [&] {
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if (protocol == DcOptions::Variants::Tcp) {
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return ConnectionPointer::New<TcpConnection>(
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instance,
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thread,
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proxy);
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} else {
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return ConnectionPointer::New<HttpConnection>(thread, proxy);
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}
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}();
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if (proxy.tryCustomResolve()) {
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return ConnectionPointer::New<ResolvingConnection>(
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instance,
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thread,
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proxy,
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std::move(result));
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}
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return result;
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}
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uint32 AbstractConnection::extendedNotSecurePadding() const {
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return requiresExtendedPadding()
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? uint32(openssl::RandomValue<uchar>() & 0x3F)
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: 0;
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}
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} // namespace details
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} // namespace MTP
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