Bind signature to full address and signing mode
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743608ec16
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fa06c39d97
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@ -230,7 +230,7 @@ namespace config
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const unsigned char HASH_KEY_CLSAG_ROUND[] = "CLSAG_round";
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const unsigned char HASH_KEY_CLSAG_AGG_0[] = "CLSAG_agg_0";
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const unsigned char HASH_KEY_CLSAG_AGG_1[] = "CLSAG_agg_1";
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const char HASH_KEY_MESSAGE_SIGNING[] = "MessageSignature";
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const char HASH_KEY_MESSAGE_SIGNING[] = "MoneroMessageSignature";
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namespace testnet
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{
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@ -162,7 +162,6 @@ namespace hw {
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virtual std::vector<crypto::public_key> get_subaddress_spend_public_keys(const cryptonote::account_keys &keys, uint32_t account, uint32_t begin, uint32_t end) = 0;
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virtual cryptonote::account_public_address get_subaddress(const cryptonote::account_keys& keys, const cryptonote::subaddress_index &index) = 0;
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virtual crypto::secret_key get_subaddress_secret_key(const crypto::secret_key &sec, const cryptonote::subaddress_index &index) = 0;
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virtual crypto::secret_key get_subaddress_view_secret_key(const crypto::secret_key &sec, const cryptonote::subaddress_index &index) = 0;
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/* ======================================================================= */
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/* DERIVATION & KEY */
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@ -207,12 +207,6 @@ namespace hw {
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return m;
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}
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crypto::secret_key device_default::get_subaddress_view_secret_key(const crypto::secret_key &a, const cryptonote::subaddress_index &index) {
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crypto::secret_key skey = get_subaddress_secret_key(a, index);
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sc_mul((unsigned char*)skey.data, (const unsigned char*)skey.data, (const unsigned char*)a.data);
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return skey;
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}
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/* ======================================================================= */
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/* DERIVATION & KEY */
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/* ======================================================================= */
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@ -85,7 +85,6 @@ namespace hw {
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std::vector<crypto::public_key> get_subaddress_spend_public_keys(const cryptonote::account_keys &keys, uint32_t account, uint32_t begin, uint32_t end) override;
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cryptonote::account_public_address get_subaddress(const cryptonote::account_keys& keys, const cryptonote::subaddress_index &index) override;
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crypto::secret_key get_subaddress_secret_key(const crypto::secret_key &sec, const cryptonote::subaddress_index &index) override;
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crypto::secret_key get_subaddress_view_secret_key(const crypto::secret_key &sec, const cryptonote::subaddress_index &index) override;
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/* ======================================================================= */
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/* DERIVATION & KEY */
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@ -880,12 +880,6 @@ namespace hw {
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return sub_sec;
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}
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crypto::secret_key device_ledger::get_subaddress_view_secret_key(const crypto::secret_key &sec, const cryptonote::subaddress_index &index) {
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#warning TODO
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MERROR("Not implemented yet");
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return crypto::null_skey;
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}
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/* ======================================================================= */
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/* DERIVATION & KEY */
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/* ======================================================================= */
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@ -249,7 +249,6 @@ namespace hw {
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std::vector<crypto::public_key> get_subaddress_spend_public_keys(const cryptonote::account_keys &keys, uint32_t account, uint32_t begin, uint32_t end) override;
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cryptonote::account_public_address get_subaddress(const cryptonote::account_keys& keys, const cryptonote::subaddress_index &index) override;
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crypto::secret_key get_subaddress_secret_key(const crypto::secret_key &sec, const cryptonote::subaddress_index &index) override;
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crypto::secret_key get_subaddress_view_secret_key(const crypto::secret_key &sec, const cryptonote::subaddress_index &index) override;
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/* ======================================================================= */
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/* DERIVATION & KEY */
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@ -223,7 +223,7 @@ namespace
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const char* USAGE_GET_TX_NOTE("get_tx_note <txid>");
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const char* USAGE_GET_DESCRIPTION("get_description");
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const char* USAGE_SET_DESCRIPTION("set_description [free text note]");
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const char* USAGE_SIGN("sign [<account_index>,<address_index>] [--spend|--view|--both] <filename>");
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const char* USAGE_SIGN("sign [<account_index>,<address_index>] [--spend|--view] <filename>");
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const char* USAGE_VERIFY("verify <filename> <address> <signature>");
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const char* USAGE_EXPORT_KEY_IMAGES("export_key_images [all] <filename>");
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const char* USAGE_IMPORT_KEY_IMAGES("import_key_images <filename>");
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@ -9911,10 +9911,6 @@ bool simple_wallet::sign(const std::vector<std::string> &args)
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{
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message_signature_type = tools::wallet2::sign_with_view_key;
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}
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else if (args[idx] == "--both")
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{
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message_signature_type = tools::wallet2::sign_with_both_keys;
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}
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else
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{
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fail_msg_writer() << tr("Invalid subaddress index format, and not a signature type: ") << args[idx];
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@ -9971,7 +9967,7 @@ bool simple_wallet::verify(const std::vector<std::string> &args)
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}
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else
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{
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success_msg_writer() << tr("Good signature from ") << address_string << (result.old ? " (using old signature algorithm)" : "") << " with " << (result.type == tools::wallet2::sign_with_spend_key ? "spend key" : result.type == tools::wallet2::sign_with_view_key ? "view key" : result.type == tools::wallet2::sign_with_both_keys ? "both spend and view keys" : "unknown key combination (suspicious)");
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success_msg_writer() << tr("Good signature from ") << address_string << (result.old ? " (using old signature algorithm)" : "") << " with " << (result.type == tools::wallet2::sign_with_spend_key ? "spend key" : result.type == tools::wallet2::sign_with_view_key ? "view key" : "unknown key combination (suspicious)");
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}
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return true;
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}
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@ -12207,11 +12207,16 @@ void wallet2::set_account_tag_description(const std::string& tag, const std::str
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m_account_tags.first[tag] = description;
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}
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static crypto::hash get_message_hash(const std::string &data)
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// Set up an address signature message hash
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// Hash data: domain separator, spend public key, view public key, mode identifier, payload data
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static crypto::hash get_message_hash(const std::string &data, const crypto::public_key &spend_key, const crypto::public_key &view_key, const uint8_t mode)
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{
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KECCAK_CTX ctx;
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keccak_init(&ctx);
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keccak_update(&ctx, (const uint8_t*)config::HASH_KEY_MESSAGE_SIGNING, sizeof(config::HASH_KEY_MESSAGE_SIGNING)); // includes NUL
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keccak_update(&ctx, (const uint8_t*)&spend_key, sizeof(crypto::public_key));
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keccak_update(&ctx, (const uint8_t*)&view_key, sizeof(crypto::public_key));
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keccak_update(&ctx, (const uint8_t*)&mode, sizeof(uint8_t));
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char len_buf[(sizeof(size_t) * 8 + 6) / 7];
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char *ptr = len_buf;
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tools::write_varint(ptr, data.size());
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@ -12223,13 +12228,20 @@ static crypto::hash get_message_hash(const std::string &data)
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return hash;
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}
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// Sign a message with a private key from either the base address or a subaddress
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// The signature is also bound to both keys and the signature mode (spend, view) to prevent unintended reuse
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std::string wallet2::sign(const std::string &data, message_signature_type_t signature_type, cryptonote::subaddress_index index) const
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{
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const crypto::hash hash = get_message_hash(data);
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const cryptonote::account_keys &keys = m_account.get_keys();
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crypto::signature signature;
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crypto::secret_key skey, m;
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crypto::secret_key skey_spend, skey_view;
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crypto::public_key pkey;
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crypto::public_key pkey_spend, pkey_view; // to include both in hash
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crypto::hash hash;
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uint8_t mode;
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// Use the base address
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if (index.is_zero())
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{
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switch (signature_type)
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@ -12237,38 +12249,42 @@ std::string wallet2::sign(const std::string &data, message_signature_type_t sign
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case sign_with_spend_key:
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skey = keys.m_spend_secret_key;
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pkey = keys.m_account_address.m_spend_public_key;
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mode = 0;
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break;
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case sign_with_view_key:
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skey = keys.m_view_secret_key;
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pkey = keys.m_account_address.m_view_public_key;
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mode = 1;
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break;
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#if 0
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case sign_with_both_keys:
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#endif
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default: CHECK_AND_ASSERT_THROW_MES(false, "Invalid signature type requested");
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}
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hash = get_message_hash(data,keys.m_account_address.m_spend_public_key,keys.m_account_address.m_view_public_key,mode);
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}
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// Use a subaddress
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else
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{
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skey_spend = keys.m_spend_secret_key;
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m = m_account.get_device().get_subaddress_secret_key(keys.m_view_secret_key, index);
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sc_add((unsigned char*)&skey_spend, (unsigned char*)&m, (unsigned char*)&skey_spend);
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secret_key_to_public_key(skey_spend,pkey_spend);
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sc_mul((unsigned char*)&skey_view, (unsigned char*)&keys.m_view_secret_key, (unsigned char*)&skey_spend);
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secret_key_to_public_key(skey_view,pkey_view);
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switch (signature_type)
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{
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case sign_with_spend_key:
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skey = keys.m_spend_secret_key;
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m = m_account.get_device().get_subaddress_secret_key(keys.m_view_secret_key, index);
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sc_add((unsigned char*)&skey, (unsigned char*)&m, (unsigned char*)&skey);
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skey = skey_spend;
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pkey = pkey_spend;
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mode = 0;
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break;
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case sign_with_view_key:
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skey = keys.m_spend_secret_key;
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m = m_account.get_device().get_subaddress_secret_key(keys.m_view_secret_key, index);
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sc_add((unsigned char*)&skey, (unsigned char*)&m, (unsigned char*)&skey);
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sc_mul((unsigned char*)&skey, (unsigned char*)&keys.m_view_secret_key, (unsigned char*)&skey);
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skey = skey_view;
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pkey = pkey_view;
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mode = 1;
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break;
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#if 0
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case sign_with_both_keys: skey = ...; break;
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#endif
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default: CHECK_AND_ASSERT_THROW_MES(false, "Invalid signature type requested");
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}
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secret_key_to_public_key(skey, pkey);
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hash = get_message_hash(data,pkey_spend,pkey_view,mode);
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}
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crypto::generate_signature(hash, pkey, skey, signature);
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return std::string("SigV2") + tools::base58::encode(std::string((const char *)&signature, sizeof(signature)));
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@ -12290,10 +12306,6 @@ tools::wallet2::message_signature_result_t wallet2::verify(const std::string &da
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{
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crypto::cn_fast_hash(data.data(), data.size(), hash);
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}
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else
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{
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hash = get_message_hash(data);
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}
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std::string decoded;
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if (!tools::base58::decode(signature.substr(v1 ? v1_header_len : v2_header_len), decoded)) {
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LOG_PRINT_L0("Signature decoding error");
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@ -12305,15 +12317,19 @@ tools::wallet2::message_signature_result_t wallet2::verify(const std::string &da
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return {};
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}
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memcpy(&s, decoded.data(), sizeof(s));
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// Test each mode and return which mode, if either, succeeded
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if (v2)
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hash = get_message_hash(data,address.m_spend_public_key,address.m_view_public_key,(uint8_t) 0);
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if (crypto::check_signature(hash, address.m_spend_public_key, s))
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return {true, v1 ? 1u : 2u, !v2, sign_with_spend_key };
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if (v2)
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hash = get_message_hash(data,address.m_spend_public_key,address.m_view_public_key,(uint8_t) 1);
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if (crypto::check_signature(hash, address.m_view_public_key, s))
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return {true, v1 ? 1u : 2u, !v2, sign_with_view_key };
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#if 0
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rct::key both = ...;
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if (crypto::check_signature(hash, rct::rct2pk(both), s))
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return {true, v1 ? 1u : 2u, !v2, sign_with_both_keys };
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#endif
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// Both modes failed
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return {};
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}
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@ -1341,7 +1341,7 @@ private:
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*/
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void set_account_tag_description(const std::string& tag, const std::string& description);
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enum message_signature_type_t { sign_with_spend_key, sign_with_view_key, sign_with_both_keys };
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enum message_signature_type_t { sign_with_spend_key, sign_with_view_key };
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std::string sign(const std::string &data, message_signature_type_t signature_type, cryptonote::subaddress_index index = {0, 0}) const;
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struct message_signature_result_t { bool valid; unsigned version; bool old; message_signature_type_t type; };
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message_signature_result_t verify(const std::string &data, const cryptonote::account_public_address &address, const std::string &signature) const;
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@ -2012,8 +2012,6 @@ namespace tools
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signature_type = tools::wallet2::sign_with_spend_key;
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else if (req.signature_type == "view")
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signature_type = tools::wallet2::sign_with_view_key;
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else if (req.signature_type == "both")
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signature_type = tools::wallet2::sign_with_both_keys;
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else
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{
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er.code = WALLET_RPC_ERROR_CODE_INVALID_SIGNATURE_TYPE;
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@ -2063,7 +2061,6 @@ namespace tools
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{
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case tools::wallet2::sign_with_spend_key: res.signature_type = "spend"; break;
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case tools::wallet2::sign_with_view_key: res.signature_type = "view"; break;
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case tools::wallet2::sign_with_both_keys: res.signature_type = "both"; break;
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default: res.signature_type = "invalid"; break;
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}
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return true;
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@ -47,7 +47,7 @@
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// advance which version they will stop working with
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// Don't go over 32767 for any of these
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#define WALLET_RPC_VERSION_MAJOR 1
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#define WALLET_RPC_VERSION_MINOR 19
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#define WALLET_RPC_VERSION_MINOR 20
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#define MAKE_WALLET_RPC_VERSION(major,minor) (((major)<<16)|(minor))
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#define WALLET_RPC_VERSION MAKE_WALLET_RPC_VERSION(WALLET_RPC_VERSION_MAJOR, WALLET_RPC_VERSION_MINOR)
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namespace tools
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@ -100,6 +100,8 @@ class MessageSigningTest():
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assert not res.good
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res = self.wallet[i].verify(message, address[0], signature + 'x')
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assert not res.good
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res = self.wallet[i].verify(message, address[0], signature.replace('SigV2','SigV1'))
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assert not res.good
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if __name__ == '__main__':
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MessageSigningTest().run_test()
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