
This adds two methods, handle_dhe_rsa_server_key_exchange and build_dhe_rsa_pre_master_secret, to TLSv12 and a struct, server_diffie_hellman_params, to Context, which are used to implement the DHE_RSA key exchange algorithm. This grants us the benefits of forward secrecy and access to sites which support DHE_RSA. It is worth noting that the signature of the server provided Diffie-Hellman parameters is not currently validated. This will need to be addressed to prevent man-in-the-middle attacks.
264 lines
11 KiB
C++
264 lines
11 KiB
C++
/*
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* Copyright (c) 2020, Ali Mohammad Pur <mpfard@serenityos.org>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <AK/Debug.h>
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#include <AK/Endian.h>
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#include <AK/Random.h>
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#include <LibCore/Timer.h>
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#include <LibCrypto/ASN1/DER.h>
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#include <LibCrypto/PK/Code/EMSA_PSS.h>
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#include <LibTLS/TLSv12.h>
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namespace TLS {
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ssize_t TLSv12::handle_server_hello(ReadonlyBytes buffer, WritePacketStage& write_packets)
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{
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write_packets = WritePacketStage::Initial;
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if (m_context.connection_status != ConnectionStatus::Disconnected && m_context.connection_status != ConnectionStatus::Renegotiating) {
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dbgln("unexpected hello message");
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return (i8)Error::UnexpectedMessage;
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}
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ssize_t res = 0;
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size_t min_hello_size = 41;
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if (min_hello_size > buffer.size()) {
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dbgln("need more data");
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return (i8)Error::NeedMoreData;
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}
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size_t following_bytes = buffer[0] * 0x10000 + buffer[1] * 0x100 + buffer[2];
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res += 3;
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if (buffer.size() - res < following_bytes) {
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dbgln("not enough data after header: {} < {}", buffer.size() - res, following_bytes);
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return (i8)Error::NeedMoreData;
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}
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if (buffer.size() - res < 2) {
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dbgln("not enough data for version");
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return (i8)Error::NeedMoreData;
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}
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auto version = static_cast<Version>(AK::convert_between_host_and_network_endian(ByteReader::load16(buffer.offset_pointer(res))));
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res += 2;
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if (!supports_version(version))
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return (i8)Error::NotSafe;
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memcpy(m_context.remote_random, buffer.offset_pointer(res), sizeof(m_context.remote_random));
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res += sizeof(m_context.remote_random);
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u8 session_length = buffer[res++];
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if (buffer.size() - res < session_length) {
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dbgln("not enough data for session id");
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return (i8)Error::NeedMoreData;
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}
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if (session_length && session_length <= 32) {
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memcpy(m_context.session_id, buffer.offset_pointer(res), session_length);
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m_context.session_id_size = session_length;
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if constexpr (TLS_DEBUG) {
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dbgln("Remote session ID:");
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print_buffer(ReadonlyBytes { m_context.session_id, session_length });
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}
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} else {
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m_context.session_id_size = 0;
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}
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res += session_length;
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if (buffer.size() - res < 2) {
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dbgln("not enough data for cipher suite listing");
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return (i8)Error::NeedMoreData;
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}
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auto cipher = static_cast<CipherSuite>(AK::convert_between_host_and_network_endian(ByteReader::load16(buffer.offset_pointer(res))));
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res += 2;
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if (!supports_cipher(cipher)) {
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m_context.cipher = CipherSuite::Invalid;
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dbgln("No supported cipher could be agreed upon");
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return (i8)Error::NoCommonCipher;
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}
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m_context.cipher = cipher;
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dbgln_if(TLS_DEBUG, "Cipher: {}", (u16)cipher);
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// Simplification: We only support handshake hash functions via HMAC
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m_context.handshake_hash.initialize(hmac_hash());
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// Compression method
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if (buffer.size() - res < 1)
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return (i8)Error::NeedMoreData;
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u8 compression = buffer[res++];
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if (compression != 0)
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return (i8)Error::CompressionNotSupported;
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if (m_context.connection_status != ConnectionStatus::Renegotiating)
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m_context.connection_status = ConnectionStatus::Negotiating;
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if (m_context.is_server) {
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dbgln("unsupported: server mode");
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write_packets = WritePacketStage::ServerHandshake;
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}
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// Presence of extensions is determined by availability of bytes after compression_method
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if (buffer.size() - res >= 2) {
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auto extensions_bytes_total = AK::convert_between_host_and_network_endian(ByteReader::load16(buffer.offset_pointer(res += 2)));
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dbgln_if(TLS_DEBUG, "Extensions bytes total: {}", extensions_bytes_total);
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}
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while (buffer.size() - res >= 4) {
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auto extension_type = (HandshakeExtension)AK::convert_between_host_and_network_endian(ByteReader::load16(buffer.offset_pointer(res)));
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res += 2;
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u16 extension_length = AK::convert_between_host_and_network_endian(ByteReader::load16(buffer.offset_pointer(res)));
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res += 2;
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dbgln_if(TLS_DEBUG, "Extension {} with length {}", (u16)extension_type, extension_length);
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if (buffer.size() - res < extension_length)
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return (i8)Error::NeedMoreData;
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if (extension_type == HandshakeExtension::ServerName) {
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// RFC6066 section 3: SNI extension_data can be empty in the server hello
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if (extension_length > 0) {
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// ServerNameList total size
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if (buffer.size() - res < 2)
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return (i8)Error::NeedMoreData;
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auto sni_name_list_bytes = AK::convert_between_host_and_network_endian(ByteReader::load16(buffer.offset_pointer(res += 2)));
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dbgln_if(TLS_DEBUG, "SNI: expecting ServerNameList of {} bytes", sni_name_list_bytes);
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// Exactly one ServerName should be present
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if (buffer.size() - res < 3)
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return (i8)Error::NeedMoreData;
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auto sni_name_type = (NameType)(*(const u8*)buffer.offset_pointer(res++));
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auto sni_name_length = AK::convert_between_host_and_network_endian(ByteReader::load16(buffer.offset_pointer(res += 2)));
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if (sni_name_type != NameType::HostName)
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return (i8)Error::NotUnderstood;
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if (sizeof(sni_name_type) + sizeof(sni_name_length) + sni_name_length != sni_name_list_bytes)
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return (i8)Error::BrokenPacket;
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// Read out the host_name
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if (buffer.size() - res < sni_name_length)
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return (i8)Error::NeedMoreData;
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m_context.extensions.SNI = String { (const char*)buffer.offset_pointer(res), sni_name_length };
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res += sni_name_length;
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dbgln("SNI host_name: {}", m_context.extensions.SNI);
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}
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} else if (extension_type == HandshakeExtension::ApplicationLayerProtocolNegotiation && m_context.alpn.size()) {
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if (buffer.size() - res > 2) {
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auto alpn_length = AK::convert_between_host_and_network_endian(ByteReader::load16(buffer.offset_pointer(res)));
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if (alpn_length && alpn_length <= extension_length - 2) {
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const u8* alpn = buffer.offset_pointer(res + 2);
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size_t alpn_position = 0;
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while (alpn_position < alpn_length) {
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u8 alpn_size = alpn[alpn_position++];
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if (alpn_size + alpn_position >= extension_length)
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break;
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String alpn_str { (const char*)alpn + alpn_position, alpn_length };
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if (alpn_size && m_context.alpn.contains_slow(alpn_str)) {
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m_context.negotiated_alpn = alpn_str;
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dbgln("negotiated alpn: {}", alpn_str);
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break;
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}
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alpn_position += alpn_length;
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if (!m_context.is_server) // server hello must contain one ALPN
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break;
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}
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}
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}
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res += extension_length;
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} else if (extension_type == HandshakeExtension::SignatureAlgorithms) {
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dbgln("supported signatures: ");
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print_buffer(buffer.slice(res, extension_length));
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res += extension_length;
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// FIXME: what are we supposed to do here?
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} else {
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dbgln("Encountered unknown extension {} with length {}", (u16)extension_type, extension_length);
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res += extension_length;
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}
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}
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return res;
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}
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ssize_t TLSv12::handle_server_hello_done(ReadonlyBytes buffer)
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{
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if (buffer.size() < 3)
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return (i8)Error::NeedMoreData;
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size_t size = buffer[0] * 0x10000 + buffer[1] * 0x100 + buffer[2];
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if (buffer.size() - 3 < size)
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return (i8)Error::NeedMoreData;
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return size + 3;
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}
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ByteBuffer TLSv12::build_server_key_exchange()
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{
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dbgln("FIXME: build_server_key_exchange");
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return {};
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}
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ssize_t TLSv12::handle_server_key_exchange(ReadonlyBytes buffer)
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{
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switch (get_key_exchange_algorithm(m_context.cipher)) {
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case KeyExchangeAlgorithm::RSA:
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case KeyExchangeAlgorithm::DH_DSS:
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case KeyExchangeAlgorithm::DH_RSA:
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// RFC 5246 section 7.4.3. Server Key Exchange Message
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// It is not legal to send the server key exchange message for RSA, DH_DSS, DH_RSA
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dbgln("Server key exchange received for RSA, DH_DSS or DH_RSA is not legal");
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return (i8)Error::UnexpectedMessage;
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case KeyExchangeAlgorithm::DHE_DSS:
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dbgln("Server key exchange for DHE_DSS is not implemented");
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TODO();
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break;
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case KeyExchangeAlgorithm::DHE_RSA:
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handle_dhe_rsa_server_key_exchange(buffer);
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break;
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case KeyExchangeAlgorithm::DH_anon:
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dbgln("Server key exchange for DH_anon is not implemented");
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TODO();
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break;
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case KeyExchangeAlgorithm::ECDHE_RSA:
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case KeyExchangeAlgorithm::ECDH_ECDSA:
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case KeyExchangeAlgorithm::ECDH_RSA:
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case KeyExchangeAlgorithm::ECDHE_ECDSA:
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case KeyExchangeAlgorithm::ECDH_anon:
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dbgln("Server key exchange for ECDHE algorithms is not implemented");
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TODO();
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break;
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default:
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dbgln("Unknonwn server key exchange algorithm");
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VERIFY_NOT_REACHED();
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break;
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}
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return 0;
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}
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ssize_t TLSv12::handle_dhe_rsa_server_key_exchange(ReadonlyBytes buffer)
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{
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auto dh_p_length = AK::convert_between_host_and_network_endian(ByteReader::load16(buffer.offset_pointer(3)));
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auto dh_p = buffer.slice(5, dh_p_length);
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m_context.server_diffie_hellman_params.p = ByteBuffer::copy(dh_p.data(), dh_p.size());
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auto dh_g_length = AK::convert_between_host_and_network_endian(ByteReader::load16(buffer.offset_pointer(5 + dh_p_length)));
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auto dh_g = buffer.slice(7 + dh_p_length, dh_g_length);
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m_context.server_diffie_hellman_params.g = ByteBuffer::copy(dh_g.data(), dh_g.size());
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auto dh_Ys_length = AK::convert_between_host_and_network_endian(ByteReader::load16(buffer.offset_pointer(7 + dh_p_length + dh_g_length)));
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auto dh_Ys = buffer.slice(9 + dh_p_length + dh_g_length, dh_Ys_length);
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m_context.server_diffie_hellman_params.Ys = ByteBuffer::copy(dh_Ys.data(), dh_Ys.size());
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if constexpr (TLS_DEBUG) {
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dbgln("dh_p: {:hex-dump}", dh_p);
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dbgln("dh_g: {:hex-dump}", dh_g);
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dbgln("dh_Ys: {:hex-dump}", dh_Ys);
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}
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// FIXME: Validate signature of Diffie-Hellman parameters as defined in RFC 5246 section 7.4.3.
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return 0;
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}
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}
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