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@@ -0,0 +1,112 @@
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+// Copyright 2017 Citra Emulator Project
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+// Licensed under GPLv2 or any later version
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+// Refer to the license.txt file included.
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+
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+#include <cstring>
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+
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+#include "core/hle/service/nwm/nwm_uds.h"
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+#include "core/hle/service/nwm/uds_data.h"
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+#include "core/hw/aes/key.h"
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+
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+#include <cryptopp/aes.h>
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+#include <cryptopp/md5.h>
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+#include <cryptopp/modes.h>
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+
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+namespace Service {
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+namespace NWM {
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+
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+// AES Keyslot used to generate the UDS data frame CCMP key.
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+constexpr size_t UDSDataCryptoAESKeySlot = 0x2D;
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+
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+/*
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+ * Generates a SNAP-enabled 802.2 LLC header for the specified protocol.
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+ * @returns a buffer with the bytes of the generated header.
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+ */
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+static std::vector<u8> GenerateLLCHeader(EtherType protocol) {
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+ LLCHeader header{};
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+ header.protocol = static_cast<u16>(protocol);
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+
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+ std::vector<u8> buffer(sizeof(header));
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+ memcpy(buffer.data(), &header, sizeof(header));
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+
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+ return buffer;
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+}
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+
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+/*
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+ * Generates a Nintendo UDS SecureData header with the specified parameters.
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+ * @returns a buffer with the bytes of the generated header.
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+ */
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+static std::vector<u8> GenerateSecureDataHeader(u16 data_size, u8 channel, u16 dest_node_id,
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+ u16 src_node_id, u16 sequence_number) {
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+ SecureDataHeader header{};
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+ header.protocol_size = data_size + sizeof(SecureDataHeader);
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+ // TODO(Subv): It is likely that the first 4 bytes of this header are actually a decorator for another protocol.
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+ header.securedata_size = data_size + sizeof(SecureDataHeader) - 4;
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+ header.is_management = 0; // Frames sent by the emulated application are never UDS management frames
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+ header.data_channel = channel;
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+ header.sequence_number = sequence_number;
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+ header.dest_node_id = dest_node_id;
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+ header.src_node_id = src_node_id;
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+
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+ std::vector<u8> buffer(sizeof(header));
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+ memcpy(buffer.data(), &header, sizeof(header));
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+
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+ return buffer;
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+}
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+
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+/*
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+ * Calculates the CTR used for the AES-CTR process that calculates
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+ * the CCMP crypto key for data frames.
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+ * @returns The CTR used for data frames crypto key generation.
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+ */
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+static std::array<u8, CryptoPP::MD5::DIGESTSIZE> GetDataCryptoCTR(const NetworkInfo& network_info) {
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+ DataFrameCryptoCTR data{};
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+
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+ data.host_mac = network_info.host_mac_address;
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+ data.wlan_comm_id = network_info.wlan_comm_id;
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+ data.id = network_info.id;
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+ data.network_id = network_info.network_id;
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+
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+ std::array<u8, CryptoPP::MD5::DIGESTSIZE> hash;
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+ CryptoPP::MD5().CalculateDigest(hash.data(), reinterpret_cast<u8*>(&data), sizeof(data));
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+
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+ return hash;
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+}
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+
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+/*
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+ * Generates the key used for encrypting the 802.11 data frames generated by UDS.
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+ * @returns The key used for data frames crypto.
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+ */
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+static std::array<u8, CryptoPP::AES::BLOCKSIZE> GenerateDataCCMPKey(const std::vector<u8>& passphrase,
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+ const NetworkInfo& network_info) {
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+ // Calculate the MD5 hash of the input passphrase.
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+ std::array<u8, CryptoPP::MD5::DIGESTSIZE> passphrase_hash;
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+ CryptoPP::MD5().CalculateDigest(passphrase_hash.data(), passphrase.data(), passphrase.size());
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+
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+ std::array<u8, CryptoPP::AES::BLOCKSIZE> ccmp_key;
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+
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+ // The CCMP key is the result of encrypting the MD5 hash of the passphrase with AES-CTR using keyslot 0x2D.
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+ using CryptoPP::AES;
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+ std::array<u8, CryptoPP::MD5::DIGESTSIZE> counter = GetDataCryptoCTR(network_info);
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+ std::array<u8, AES::BLOCKSIZE> key = HW::AES::GetNormalKey(UDSDataCryptoAESKeySlot);
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+ CryptoPP::CTR_Mode<AES>::Encryption aes;
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+ aes.SetKeyWithIV(key.data(), AES::BLOCKSIZE, counter.data());
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+ aes.ProcessData(ccmp_key.data(), passphrase_hash.data(), passphrase_hash.size());
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+
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+ return ccmp_key;
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+}
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+
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+std::vector<u8> GenerateDataFrame(const std::vector<u8>& data, u8 channel, u16 dest_node, u16 src_node, u16 sequence_number) {
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+ std::vector<u8> buffer = GenerateLLCHeader(EtherType::SecureData);
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+ std::vector<u8> securedata_header = GenerateSecureDataHeader(data.size(), channel, dest_node, src_node, sequence_number);
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+
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+ buffer.insert(buffer.end(), securedata_header.begin(), securedata_header.end());
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+ buffer.insert(buffer.end(), data.begin(), data.end());
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+ // TODO(Subv): Encrypt the frame.
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+ // TODO(Subv): Prepend CCMP initialization vector (sequence_number).
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+ // TODO(Subv): Encapsulate the frame in an 802.11 data frame.
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+ return buffer;
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+}
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+
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+} // namespace NWM
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+} // namespace Service
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