// 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. #include "amount.h" #include "tinyformat.h" const std::string CURRENCY_UNIT = "BTC"; CFeeRate::CFeeRate(const CAmount& nFeePaid, size_t nBytes_) { assert(nBytes_ <= uint64_t(std::numeric_limits::max())); int64_t nSize = int64_t(nBytes_); if (nSize > 0) nSatoshisPerK = nFeePaid * 1000 / nSize; else nSatoshisPerK = 0; } CAmount CFeeRate::GetFee(size_t nBytes_) const { assert(nBytes_ <= uint64_t(std::numeric_limits::max())); int64_t nSize = int64_t(nBytes_); CAmount nFee = nSatoshisPerK * nSize / 1000; if (nFee == 0 && nSize != 0) { if (nSatoshisPerK > 0) nFee = CAmount(1); if (nSatoshisPerK < 0) nFee = CAmount(-1); } return nFee; } std::string CFeeRate::ToString() const { return strprintf("%d.%08d %s/kB", nSatoshisPerK / COIN, nSatoshisPerK % COIN, CURRENCY_UNIT); } CAmountMap& operator+=(CAmountMap& a, const CAmountMap& b) { for(std::map::const_iterator it = b.begin(); it != b.end(); ++it) a[it->first] += it->second; return a; } CAmountMap& operator-=(CAmountMap& a, const CAmountMap& b) { for(std::map::const_iterator it = b.begin(); it != b.end(); ++it) a[it->first] -= it->second; return a; } CAmountMap operator+(const CAmountMap& a, const CAmountMap& b) { CAmountMap c; for(std::map::const_iterator it = a.begin(); it != a.end(); ++it) c[it->first] += it->second; for(std::map::const_iterator it = b.begin(); it != b.end(); ++it) c[it->first] += it->second; return c; } CAmountMap operator-(const CAmountMap& a, const CAmountMap& b) { CAmountMap c; for(std::map::const_iterator it = a.begin(); it != a.end(); ++it) c[it->first] += it->second; for(std::map::const_iterator it = b.begin(); it != b.end(); ++it) c[it->first] -= it->second; return c; } bool operator<(const CAmountMap& a, const CAmountMap& b) { bool smallerElement = false; for(std::map::const_iterator it = b.begin(); it != b.end(); ++it) { CAmount aValue = a.count(it->first) ? a.find(it->first)->second : 0; if (aValue > it->second) return false; if (aValue < it->second) smallerElement = true; } for(std::map::const_iterator it = a.begin(); it != a.end(); ++it) { CAmount bValue = b.count(it->first) ? b.find(it->first)->second : 0; if (it->second > bValue) return false; if (it->second < bValue) smallerElement = true; } return smallerElement; } bool operator<=(const CAmountMap& a, const CAmountMap& b) { for(std::map::const_iterator it = b.begin(); it != b.end(); ++it) { CAmount aValue = a.count(it->first) ? a.find(it->first)->second : 0; if (aValue > it->second) return false; } for(std::map::const_iterator it = a.begin(); it != a.end(); ++it) { CAmount bValue = b.count(it->first) ? b.find(it->first)->second : 0; if (it->second > bValue) return false; } return true; } bool operator>(const CAmountMap& a, const CAmountMap& b) { bool largerElement = false; for(std::map::const_iterator it = b.begin(); it != b.end(); ++it) { CAmount aValue = a.count(it->first) ? a.find(it->first)->second : 0; if (aValue < it->second) return false; if (aValue > it->second) largerElement = true; } for(std::map::const_iterator it = a.begin(); it != a.end(); ++it) { CAmount bValue = b.count(it->first) ? b.find(it->first)->second : 0; if (it->second < bValue) return false; if (it->second > bValue) largerElement = true; } return largerElement; } bool operator>=(const CAmountMap& a, const CAmountMap& b) { for(std::map::const_iterator it = b.begin(); it != b.end(); ++it) { if ((a.count(it->first) ? a.find(it->first)->second : 0) < it->second) return false; } for(std::map::const_iterator it = a.begin(); it != a.end(); ++it) { if (it->second < (b.count(it->first) ? b.find(it->first)->second : 0)) return false; } return true; } bool operator==(const CAmountMap& a, const CAmountMap& b) { for(std::map::const_iterator it = a.begin(); it != a.end(); ++it) { if ((b.count(it->first) ? b.find(it->first)->second : 0) != it->second) return false; } for(std::map::const_iterator it = b.begin(); it != b.end(); ++it) { if ((a.count(it->first) ? a.find(it->first)->second : 0) != it->second) return false; } return true; } bool operator!=(const CAmountMap& a, const CAmountMap& b) { return !(a == b); } bool hasNegativeValue(const CAmountMap& amount) { for(std::map::const_iterator it = amount.begin(); it != amount.end(); ++it) { if (it->second < 0) return true; } return false; } bool hasNonPostiveValue(const CAmountMap& amount) { for(std::map::const_iterator it = amount.begin(); it != amount.end(); ++it) { if (it->second <= 0) return true; } return false; }