// Copyright (c) 2014-2019 The Bitcoin Core developers // Distributed under the MIT software license, see the accompanying // file COPYING or http://www.opensource.org/licenses/mit-license.php. #include #include #include #include #include #include #include #include #include #include #include namespace { class DestinationEncoder : public boost::static_visitor { private: const CChainParams& m_params; // ELEMENTS: const bool for_parent; public: explicit DestinationEncoder(const CChainParams& params, const bool for_parent) : m_params(params), for_parent(for_parent) {} std::string operator()(const PKHash& id) const { if (id.blinding_pubkey.IsFullyValid()) { std::vector data = m_params.Base58Prefix(CChainParams::BLINDED_ADDRESS); // Blinded addresses have the actual address type prefix inside the payload. std::vector prefix = m_params.Base58Prefix(CChainParams::PUBKEY_ADDRESS); data.insert(data.end(), prefix.begin(), prefix.end()); data.insert(data.end(), id.blinding_pubkey.begin(), id.blinding_pubkey.end()); data.insert(data.end(), id.begin(), id.end()); return EncodeBase58Check(data); } CChainParams::Base58Type type = for_parent ? CChainParams::PARENT_PUBKEY_ADDRESS : CChainParams::PUBKEY_ADDRESS; std::vector data = m_params.Base58Prefix(type); data.insert(data.end(), id.begin(), id.end()); return EncodeBase58Check(data); } std::string operator()(const ScriptHash& id) const { if (id.blinding_pubkey.IsFullyValid()) { std::vector data = m_params.Base58Prefix(CChainParams::BLINDED_ADDRESS); // Blinded addresses have the actual address type prefix inside the payload. std::vector prefix = m_params.Base58Prefix(CChainParams::SCRIPT_ADDRESS); data.insert(data.end(), prefix.begin(), prefix.end()); data.insert(data.end(), id.blinding_pubkey.begin(), id.blinding_pubkey.end()); data.insert(data.end(), id.begin(), id.end()); return EncodeBase58Check(data); } CChainParams::Base58Type type = for_parent ? CChainParams::PARENT_SCRIPT_ADDRESS : CChainParams::SCRIPT_ADDRESS; std::vector data = m_params.Base58Prefix(type); data.insert(data.end(), id.begin(), id.end()); return EncodeBase58Check(data); } std::string operator()(const WitnessV0KeyHash& id) const { std::vector data = {0}; data.reserve(53); if (id.blinding_pubkey.IsFullyValid()) { std::vector bytes(id.blinding_pubkey.begin(), id.blinding_pubkey.end()); bytes.insert(bytes.end(), id.begin(), id.end()); ConvertBits<8, 5, true>([&](unsigned char c) { data.push_back(c); }, bytes.begin(), bytes.end()); const std::string& hrp = for_parent ? m_params.ParentBlech32HRP() : m_params.Blech32HRP(); return blech32::Encode(hrp, data); } ConvertBits<8, 5, true>([&](unsigned char c) { data.push_back(c); }, id.begin(), id.end()); const std::string& hrp = for_parent ? m_params.ParentBech32HRP() : m_params.Bech32HRP(); return bech32::Encode(hrp, data); } std::string operator()(const WitnessV0ScriptHash& id) const { std::vector data = {0}; data.reserve(53); if (id.blinding_pubkey.IsFullyValid()) { std::vector bytes(id.blinding_pubkey.begin(), id.blinding_pubkey.end()); bytes.insert(bytes.end(), id.begin(), id.end()); ConvertBits<8, 5, true>([&](unsigned char c) { data.push_back(c); }, bytes.begin(), bytes.end()); const std::string& hrp = for_parent ? m_params.ParentBlech32HRP() : m_params.Blech32HRP(); return blech32::Encode(hrp, data); } ConvertBits<8, 5, true>([&](unsigned char c) { data.push_back(c); }, id.begin(), id.end()); const std::string& hrp = for_parent ? m_params.ParentBech32HRP() : m_params.Bech32HRP(); return bech32::Encode(hrp, data); } std::string operator()(const WitnessUnknown& id) const { if (id.version < 1 || id.version > 16 || id.length < 2 || id.length > 40) { return {}; } std::vector data = {(unsigned char)id.version}; data.reserve(1 + (id.length * 8 + 4) / 5); if (id.blinding_pubkey.IsFullyValid()) { std::vector bytes(id.blinding_pubkey.begin(), id.blinding_pubkey.end()); bytes.insert(bytes.end(), id.program, id.program + id.length); ConvertBits<8, 5, true>([&](unsigned char c) { data.push_back(c); }, bytes.begin(), bytes.end()); const std::string& hrp = for_parent ? m_params.ParentBlech32HRP() : m_params.Blech32HRP(); return blech32::Encode(hrp, data); } ConvertBits<8, 5, true>([&](unsigned char c) { data.push_back(c); }, id.program, id.program + id.length); const std::string& hrp = for_parent ? m_params.ParentBech32HRP() : m_params.Bech32HRP(); return bech32::Encode(hrp, data); } std::string operator()(const CNoDestination& no) const { return {}; } std::string operator()(const NullData& null) const { return {}; } }; CTxDestination DecodeDestination(const std::string& str, const CChainParams& params, const bool for_parent) { std::vector data; size_t pk_size = CPubKey::COMPRESSED_SIZE; uint160 hash; if (DecodeBase58Check(str, data, 55)) { // base58-encoded Bitcoin addresses. // Public-key-hash-addresses have version 0 (or 111 testnet). // The data vector contains RIPEMD160(SHA256(pubkey)), where pubkey is the serialized public key. // Blinded addresses have two prefixes: first the blinded one, then the traditional one. const std::vector& blinded_prefix = params.Base58Prefix(CChainParams::BLINDED_ADDRESS); CChainParams::Base58Type type_pkh = for_parent ? CChainParams::PARENT_PUBKEY_ADDRESS : CChainParams::PUBKEY_ADDRESS; const std::vector& pubkey_prefix = params.Base58Prefix(type_pkh); if (data.size() == hash.size() + pubkey_prefix.size() && std::equal(pubkey_prefix.begin(), pubkey_prefix.end(), data.begin())) { std::copy(data.begin() + pubkey_prefix.size(), data.end(), hash.begin()); return PKHash(CKeyID(hash)); } else if (data.size() == hash.size() + blinded_prefix.size() + pubkey_prefix.size() + pk_size && std::equal(blinded_prefix.begin(), blinded_prefix.end(), data.begin()) && std::equal(pubkey_prefix.begin(), pubkey_prefix.end(), data.begin() + blinded_prefix.size())) { auto payload_start = data.begin() + blinded_prefix.size() + pubkey_prefix.size(); CPubKey pubkey; pubkey.Set(payload_start, payload_start + pk_size); std::copy(payload_start + pk_size, data.end(), hash.begin()); return PKHash(CKeyID(hash), pubkey); } // Script-hash-addresses have version 5 (or 196 testnet). // The data vector contains RIPEMD160(SHA256(cscript)), where cscript is the serialized redemption script. CChainParams::Base58Type type_sh = for_parent ? CChainParams::PARENT_SCRIPT_ADDRESS : CChainParams::SCRIPT_ADDRESS; const std::vector& script_prefix = params.Base58Prefix(type_sh); if (data.size() == hash.size() + script_prefix.size() && std::equal(script_prefix.begin(), script_prefix.end(), data.begin())) { std::copy(data.begin() + script_prefix.size(), data.end(), hash.begin()); return ScriptHash(CScriptID(hash)); } else if (data.size() == hash.size() + blinded_prefix.size() + pubkey_prefix.size() + pk_size && std::equal(blinded_prefix.begin(), blinded_prefix.end(), data.begin()) && std::equal(script_prefix.begin(), script_prefix.end(), data.begin() + blinded_prefix.size())) { auto payload_start = data.begin() + blinded_prefix.size() + script_prefix.size(); CPubKey pubkey; pubkey.Set(payload_start, payload_start + pk_size); std::copy(payload_start + pk_size, data.end(), hash.begin()); return ScriptHash(CScriptID(hash), pubkey); } } data.clear(); auto bech = bech32::Decode(str); const std::string& hrp = for_parent ? params.ParentBech32HRP() : params.Bech32HRP(); if (bech.second.size() > 0 && bech.first == hrp) { // Bech32 decoding int version = bech.second[0]; // The first 5 bit symbol is the witness version (0-16) // The rest of the symbols are converted witness program bytes. data.reserve(((bech.second.size() - 1) * 5) / 8); if (ConvertBits<5, 8, false>([&](unsigned char c) { data.push_back(c); }, bech.second.begin() + 1, bech.second.end())) { if (version == 0) { { WitnessV0KeyHash keyid; if (data.size() == keyid.size()) { std::copy(data.begin(), data.end(), keyid.begin()); return keyid; } } { WitnessV0ScriptHash scriptid; if (data.size() == scriptid.size()) { std::copy(data.begin(), data.end(), scriptid.begin()); return scriptid; } } return CNoDestination(); } if (version > 16 || data.size() < 2 || data.size() > 40) { return CNoDestination(); } WitnessUnknown unk; unk.version = version; std::copy(data.begin(), data.end(), unk.program); unk.length = data.size(); return unk; } } // ELEMENTS confidential addresses: version + 8to5(ecdhkey || witness program) data.clear(); auto blech = blech32::Decode(str); const std::string& bl_hrp = for_parent ? params.ParentBlech32HRP() : params.Blech32HRP(); if (blech.second.size() > 0 && blech.first == bl_hrp) { // Blech32 decoding int version = blech.second[0]; // The first 5 bit symbol is the witness version (0-16) data.reserve(((blech.second.size() - 1) * 5) / 8); // The rest of the symbols are converted blinding pubkey and witness program bytes. if (ConvertBits<5, 8, false>([&](unsigned char c) { data.push_back(c); }, blech.second.begin() + 1, blech.second.end())) { // Must be long enough for blinding key and other data taken below if (data.size() < 34) { return CNoDestination(); } std::vector pubkey_bytes(data.begin(), data.begin()+33); data = std::vector(data.begin()+33, data.end()); CPubKey blinding_pubkey(pubkey_bytes); if (version == 0) { { WitnessV0KeyHash keyid; if (data.size() == keyid.size()) { std::copy(data.begin(), data.end(), keyid.begin()); keyid.blinding_pubkey = blinding_pubkey; return keyid; } } { WitnessV0ScriptHash scriptid; if (data.size() == scriptid.size()) { std::copy(data.begin(), data.end(), scriptid.begin()); scriptid.blinding_pubkey = blinding_pubkey; return scriptid; } } return CNoDestination(); } if (version > 16 || data.size() < 2 || data.size() > 40) { return CNoDestination(); } WitnessUnknown unk; unk.version = version; std::copy(data.begin(), data.end(), unk.program); unk.blinding_pubkey = blinding_pubkey; unk.length = data.size(); return unk; } } return CNoDestination(); } } // namespace CKey DecodeSecret(const std::string& str) { CKey key; std::vector data; if (DecodeBase58Check(str, data, 34)) { const std::vector& privkey_prefix = Params().Base58Prefix(CChainParams::SECRET_KEY); if ((data.size() == 32 + privkey_prefix.size() || (data.size() == 33 + privkey_prefix.size() && data.back() == 1)) && std::equal(privkey_prefix.begin(), privkey_prefix.end(), data.begin())) { bool compressed = data.size() == 33 + privkey_prefix.size(); key.Set(data.begin() + privkey_prefix.size(), data.begin() + privkey_prefix.size() + 32, compressed); } } if (!data.empty()) { memory_cleanse(data.data(), data.size()); } return key; } std::string EncodeSecret(const CKey& key) { assert(key.IsValid()); std::vector data = Params().Base58Prefix(CChainParams::SECRET_KEY); data.insert(data.end(), key.begin(), key.end()); if (key.IsCompressed()) { data.push_back(1); } std::string ret = EncodeBase58Check(data); memory_cleanse(data.data(), data.size()); return ret; } CExtPubKey DecodeExtPubKey(const std::string& str) { CExtPubKey key; std::vector data; if (DecodeBase58Check(str, data, 78)) { const std::vector& prefix = Params().Base58Prefix(CChainParams::EXT_PUBLIC_KEY); if (data.size() == BIP32_EXTKEY_SIZE + prefix.size() && std::equal(prefix.begin(), prefix.end(), data.begin())) { key.Decode(data.data() + prefix.size()); } } return key; } std::string EncodeExtPubKey(const CExtPubKey& key) { std::vector data = Params().Base58Prefix(CChainParams::EXT_PUBLIC_KEY); size_t size = data.size(); data.resize(size + BIP32_EXTKEY_SIZE); key.Encode(data.data() + size); std::string ret = EncodeBase58Check(data); return ret; } CExtKey DecodeExtKey(const std::string& str) { CExtKey key; std::vector data; if (DecodeBase58Check(str, data, 78)) { const std::vector& prefix = Params().Base58Prefix(CChainParams::EXT_SECRET_KEY); if (data.size() == BIP32_EXTKEY_SIZE + prefix.size() && std::equal(prefix.begin(), prefix.end(), data.begin())) { key.Decode(data.data() + prefix.size()); } } return key; } std::string EncodeExtKey(const CExtKey& key) { std::vector data = Params().Base58Prefix(CChainParams::EXT_SECRET_KEY); size_t size = data.size(); data.resize(size + BIP32_EXTKEY_SIZE); key.Encode(data.data() + size); std::string ret = EncodeBase58Check(data); memory_cleanse(data.data(), data.size()); return ret; } std::string EncodeDestination(const CTxDestination& dest) { return boost::apply_visitor(DestinationEncoder(Params(), false), dest); } CTxDestination DecodeDestination(const std::string& str) { return DecodeDestination(str, Params(), false); } bool IsValidDestinationString(const std::string& str, const CChainParams& params) { return IsValidDestination(DecodeDestination(str, params, false)); } bool IsValidDestinationString(const std::string& str) { return IsValidDestination(DecodeDestination(str, Params(), false)); } // // ELEMENTS std::string EncodeParentDestination(const CTxDestination& dest) { return boost::apply_visitor(DestinationEncoder(Params(), true), dest); } CTxDestination DecodeParentDestination(const std::string& str) { return DecodeDestination(str, Params(), true); } // ELEMENTS //