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2d13a4b190
78e407ad0c26190a22de1bc8ed900164a44a36c3 GetKeyBirthTimes should return key ids, not destinations (Gregory Sanders)
70946e7fee54323ce6a5ea8aeb377e2c7c790bc6 Replace CScriptID and CKeyID in CTxDestination with dedicated types (Gregory Sanders)
Pull request description:
The current usage seems to be an overloading of meanings. `CScriptID` is used in the wallet as a lookup key, as well as a destination, and `CKeyID` likewise. Instead, have all destinations be dedicated types.
New types:
`CScriptID`->`ScriptHash`
`CKeyID`->`PKHash`
ACKs for commit 78e407:
ryanofsky:
utACK 78e407ad0c26190a22de1bc8ed900164a44a36c3. Only changes are removing extra CScriptID()s and fixing the test case.
Sjors:
utACK 78e407a
meshcollider:
utACK 78e407ad0c
Tree-SHA512: 437f59fc3afb83a40540da3351507aef5aed44e3a7f15b01ddad6226854edeee762ff0b0ef336fe3654c4cd99a205cef175211de8b639abe1130c8a6313337b9
165 lines
5.6 KiB
C++
165 lines
5.6 KiB
C++
// Copyright (c) 2014-2016 The Bitcoin Core developers
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// Distributed under the MIT software license, see the accompanying
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// file COPYING or http://www.opensource.org/licenses/mit-license.php.
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#include <key_io.h>
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#include <base58.h>
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#include <bech32.h>
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#include <chainparams.h>
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#include <algorithm>
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#include <assert.h>
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#include <string.h>
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namespace {
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class DestinationEncoder
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{
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private:
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const CChainParams& m_params;
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public:
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explicit DestinationEncoder(const CChainParams& params) : m_params(params) {}
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std::string operator()(const PKHash& id) const
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{
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std::vector<unsigned char> data = m_params.Base58Prefix(CChainParams::PUBKEY_ADDRESS);
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data.insert(data.end(), id.begin(), id.end());
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return EncodeBase58Check(data);
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}
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std::string operator()(const ScriptHash& id) const
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{
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std::vector<unsigned char> data = m_params.Base58Prefix(CChainParams::SCRIPT_ADDRESS);
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data.insert(data.end(), id.begin(), id.end());
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return EncodeBase58Check(data);
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}
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std::string operator()(const CNoDestination& no) const { return {}; }
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};
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CTxDestination DecodeDestination(const std::string& str, const CChainParams& params)
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{
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std::vector<unsigned char> data;
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uint160 hash;
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if (DecodeBase58Check(str, data, 21)) {
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// base58-encoded Dash addresses.
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// Public-key-hash-addresses have version 76 (or 140 testnet).
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// The data vector contains RIPEMD160(SHA256(pubkey)), where pubkey is the serialized public key.
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const std::vector<unsigned char>& pubkey_prefix = params.Base58Prefix(CChainParams::PUBKEY_ADDRESS);
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if (data.size() == hash.size() + pubkey_prefix.size() && std::equal(pubkey_prefix.begin(), pubkey_prefix.end(), data.begin())) {
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std::copy(data.begin() + pubkey_prefix.size(), data.end(), hash.begin());
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return PKHash(hash);
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}
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// Script-hash-addresses have version 16 (or 19 testnet).
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// The data vector contains RIPEMD160(SHA256(cscript)), where cscript is the serialized redemption script.
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const std::vector<unsigned char>& script_prefix = params.Base58Prefix(CChainParams::SCRIPT_ADDRESS);
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if (data.size() == hash.size() + script_prefix.size() && std::equal(script_prefix.begin(), script_prefix.end(), data.begin())) {
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std::copy(data.begin() + script_prefix.size(), data.end(), hash.begin());
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return ScriptHash(hash);
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}
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}
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return CNoDestination();
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}
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} // namespace
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CKey DecodeSecret(const std::string& str)
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{
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CKey key;
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std::vector<unsigned char> data;
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if (DecodeBase58Check(str, data, 34)) {
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const std::vector<unsigned char>& privkey_prefix = Params().Base58Prefix(CChainParams::SECRET_KEY);
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if ((data.size() == 32 + privkey_prefix.size() || (data.size() == 33 + privkey_prefix.size() && data.back() == 1)) &&
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std::equal(privkey_prefix.begin(), privkey_prefix.end(), data.begin())) {
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bool compressed = data.size() == 33 + privkey_prefix.size();
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key.Set(data.begin() + privkey_prefix.size(), data.begin() + privkey_prefix.size() + 32, compressed);
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}
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}
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if (!data.empty()) {
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memory_cleanse(data.data(), data.size());
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}
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return key;
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}
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std::string EncodeSecret(const CKey& key)
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{
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assert(key.IsValid());
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std::vector<unsigned char> data = Params().Base58Prefix(CChainParams::SECRET_KEY);
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data.insert(data.end(), key.begin(), key.end());
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if (key.IsCompressed()) {
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data.push_back(1);
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}
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std::string ret = EncodeBase58Check(data);
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memory_cleanse(data.data(), data.size());
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return ret;
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}
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CExtPubKey DecodeExtPubKey(const std::string& str)
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{
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CExtPubKey key;
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std::vector<unsigned char> data;
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if (DecodeBase58Check(str, data, 78)) {
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const std::vector<unsigned char>& prefix = Params().Base58Prefix(CChainParams::EXT_PUBLIC_KEY);
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if (data.size() == BIP32_EXTKEY_SIZE + prefix.size() && std::equal(prefix.begin(), prefix.end(), data.begin())) {
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key.Decode(data.data() + prefix.size());
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}
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}
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return key;
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}
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std::string EncodeExtPubKey(const CExtPubKey& key)
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{
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std::vector<unsigned char> data = Params().Base58Prefix(CChainParams::EXT_PUBLIC_KEY);
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size_t size = data.size();
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data.resize(size + BIP32_EXTKEY_SIZE);
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key.Encode(data.data() + size);
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std::string ret = EncodeBase58Check(data);
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return ret;
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}
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CExtKey DecodeExtKey(const std::string& str)
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{
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CExtKey key;
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std::vector<unsigned char> data;
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if (DecodeBase58Check(str, data, 78)) {
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const std::vector<unsigned char>& prefix = Params().Base58Prefix(CChainParams::EXT_SECRET_KEY);
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if (data.size() == BIP32_EXTKEY_SIZE + prefix.size() && std::equal(prefix.begin(), prefix.end(), data.begin())) {
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key.Decode(data.data() + prefix.size());
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}
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}
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return key;
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}
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std::string EncodeExtKey(const CExtKey& key)
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{
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std::vector<unsigned char> data = Params().Base58Prefix(CChainParams::EXT_SECRET_KEY);
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size_t size = data.size();
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data.resize(size + BIP32_EXTKEY_SIZE);
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key.Encode(data.data() + size);
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std::string ret = EncodeBase58Check(data);
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if (!data.empty()) {
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memory_cleanse(data.data(), data.size());
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}
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return ret;
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}
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std::string EncodeDestination(const CTxDestination& dest)
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{
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return std::visit(DestinationEncoder(Params()), dest);
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}
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CTxDestination DecodeDestination(const std::string& str)
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{
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return DecodeDestination(str, Params());
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}
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bool IsValidDestinationString(const std::string& str, const CChainParams& params)
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{
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return IsValidDestination(DecodeDestination(str, params));
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}
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bool IsValidDestinationString(const std::string& str)
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{
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return IsValidDestinationString(str, Params());
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}
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