dogecoin/src/wallet/walletdb.h
Russell Yanofsky a80f98b1c7 Use importmulti timestamp when importing watch only keys
When importing a watch-only address over importmulti with a specific timestamp,
the wallet's nTimeFirstKey is currently set to 1. After this change, the
provided timestamp will be used and stored as metadata associated with
watch-only key. This can improve wallet performance because it can avoid the
need to scan the entire blockchain for watch only addresses when timestamps are
provided.

Also adds timestamp to validateaddress return value (needed for tests).

Fixes #9034.
2017-02-10 16:11:19 -05:00

189 lines
5.7 KiB
C++

// Copyright (c) 2009-2010 Satoshi Nakamoto
// Copyright (c) 2009-2016 The Bitcoin Core developers
// Distributed under the MIT software license, see the accompanying
// file COPYING or http://www.opensource.org/licenses/mit-license.php.
#ifndef BITCOIN_WALLET_WALLETDB_H
#define BITCOIN_WALLET_WALLETDB_H
#include "amount.h"
#include "primitives/transaction.h"
#include "wallet/db.h"
#include "key.h"
#include <list>
#include <stdint.h>
#include <string>
#include <utility>
#include <vector>
static const bool DEFAULT_FLUSHWALLET = true;
class CAccount;
class CAccountingEntry;
struct CBlockLocator;
class CKeyPool;
class CMasterKey;
class CScript;
class CWallet;
class CWalletTx;
class uint160;
class uint256;
/** Error statuses for the wallet database */
enum DBErrors
{
DB_LOAD_OK,
DB_CORRUPT,
DB_NONCRITICAL_ERROR,
DB_TOO_NEW,
DB_LOAD_FAIL,
DB_NEED_REWRITE
};
/* simple HD chain data model */
class CHDChain
{
public:
uint32_t nExternalChainCounter;
CKeyID masterKeyID; //!< master key hash160
static const int CURRENT_VERSION = 1;
int nVersion;
CHDChain() { SetNull(); }
ADD_SERIALIZE_METHODS;
template <typename Stream, typename Operation>
inline void SerializationOp(Stream& s, Operation ser_action)
{
READWRITE(this->nVersion);
READWRITE(nExternalChainCounter);
READWRITE(masterKeyID);
}
void SetNull()
{
nVersion = CHDChain::CURRENT_VERSION;
nExternalChainCounter = 0;
masterKeyID.SetNull();
}
};
class CKeyMetadata
{
public:
static const int VERSION_BASIC=1;
static const int VERSION_WITH_HDDATA=10;
static const int CURRENT_VERSION=VERSION_WITH_HDDATA;
int nVersion;
int64_t nCreateTime; // 0 means unknown
std::string hdKeypath; //optional HD/bip32 keypath
CKeyID hdMasterKeyID; //id of the HD masterkey used to derive this key
CKeyMetadata()
{
SetNull();
}
CKeyMetadata(int64_t nCreateTime_)
{
SetNull();
nCreateTime = nCreateTime_;
}
ADD_SERIALIZE_METHODS;
template <typename Stream, typename Operation>
inline void SerializationOp(Stream& s, Operation ser_action) {
READWRITE(this->nVersion);
READWRITE(nCreateTime);
if (this->nVersion >= VERSION_WITH_HDDATA)
{
READWRITE(hdKeypath);
READWRITE(hdMasterKeyID);
}
}
void SetNull()
{
nVersion = CKeyMetadata::CURRENT_VERSION;
nCreateTime = 0;
hdKeypath.clear();
hdMasterKeyID.SetNull();
}
};
/** Access to the wallet database */
class CWalletDB : public CDB
{
public:
CWalletDB(const std::string& strFilename, const char* pszMode = "r+", bool fFlushOnClose = true) : CDB(strFilename, pszMode, fFlushOnClose)
{
}
bool WriteName(const std::string& strAddress, const std::string& strName);
bool EraseName(const std::string& strAddress);
bool WritePurpose(const std::string& strAddress, const std::string& purpose);
bool ErasePurpose(const std::string& strAddress);
bool WriteTx(const CWalletTx& wtx);
bool EraseTx(uint256 hash);
bool WriteKey(const CPubKey& vchPubKey, const CPrivKey& vchPrivKey, const CKeyMetadata &keyMeta);
bool WriteCryptedKey(const CPubKey& vchPubKey, const std::vector<unsigned char>& vchCryptedSecret, const CKeyMetadata &keyMeta);
bool WriteMasterKey(unsigned int nID, const CMasterKey& kMasterKey);
bool WriteCScript(const uint160& hash, const CScript& redeemScript);
bool WriteWatchOnly(const CScript &script, const CKeyMetadata &keymeta);
bool EraseWatchOnly(const CScript &script);
bool WriteBestBlock(const CBlockLocator& locator);
bool ReadBestBlock(CBlockLocator& locator);
bool WriteOrderPosNext(int64_t nOrderPosNext);
bool WriteDefaultKey(const CPubKey& vchPubKey);
bool ReadPool(int64_t nPool, CKeyPool& keypool);
bool WritePool(int64_t nPool, const CKeyPool& keypool);
bool ErasePool(int64_t nPool);
bool WriteMinVersion(int nVersion);
/// This writes directly to the database, and will not update the CWallet's cached accounting entries!
/// Use wallet.AddAccountingEntry instead, to write *and* update its caches.
bool WriteAccountingEntry(const uint64_t nAccEntryNum, const CAccountingEntry& acentry);
bool WriteAccountingEntry_Backend(const CAccountingEntry& acentry);
bool ReadAccount(const std::string& strAccount, CAccount& account);
bool WriteAccount(const std::string& strAccount, const CAccount& account);
/// Write destination data key,value tuple to database
bool WriteDestData(const std::string &address, const std::string &key, const std::string &value);
/// Erase destination data tuple from wallet database
bool EraseDestData(const std::string &address, const std::string &key);
CAmount GetAccountCreditDebit(const std::string& strAccount);
void ListAccountCreditDebit(const std::string& strAccount, std::list<CAccountingEntry>& acentries);
DBErrors LoadWallet(CWallet* pwallet);
DBErrors FindWalletTx(CWallet* pwallet, std::vector<uint256>& vTxHash, std::vector<CWalletTx>& vWtx);
DBErrors ZapWalletTx(CWallet* pwallet, std::vector<CWalletTx>& vWtx);
DBErrors ZapSelectTx(CWallet* pwallet, std::vector<uint256>& vHashIn, std::vector<uint256>& vHashOut);
static bool Recover(CDBEnv& dbenv, const std::string& filename, bool fOnlyKeys);
static bool Recover(CDBEnv& dbenv, const std::string& filename);
//! write the hdchain model (external chain child index counter)
bool WriteHDChain(const CHDChain& chain);
static void IncrementUpdateCounter();
static unsigned int GetUpdateCounter();
private:
CWalletDB(const CWalletDB&);
void operator=(const CWalletDB&);
};
void ThreadFlushWalletDB();
#endif // BITCOIN_WALLET_WALLETDB_H