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Merge bitcoin/bitcoin#21848: refactor: Make CFeeRate constructor architecture-independent
fafd121026c4f1e25d498983e4f88c119516552b refactor: Make CFeeRate constructor architecture-independent (MarcoFalke) Pull request description: Currently the constructor is architecture dependent. This is confusing for several reasons: * It is impossible to create a transaction larger than the max value of `uint32_t`, so a 64-bit `size_t` is not needed * Policy (and consensus) code should be arch-independent * The current code will print spurious compile errors when compiled on 32-bit systems: ``` policy/feerate.cpp:23:22: warning: result of comparison of constant 9223372036854775807 with expression of type 'size_t' (aka 'unsigned int') is always true [-Wtautological-constant-out-of-range-compare] assert(nBytes_ <= uint64_t(std::numeric_limits<int64_t>::max())); ``` Fix all issues by making it arch-independent. Also, fix `{}` style according to dev notes. ACKs for top commit: theStack: re-ACK fafd121026c4f1e25d498983e4f88c119516552b promag: Code review ACK fafd121026c4f1e25d498983e4f88c119516552b. Tree-SHA512: e16f75bad9ee8088b87e873906d9b5633449417a6996a226a2f37d33a2b7d4f2fd91df68998a77e52163de20b40c57fadabe7fe3502e599cbb98494178591833
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@ -7,29 +7,26 @@
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#include <tinyformat.h>
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CFeeRate::CFeeRate(const CAmount& nFeePaid, size_t nBytes_)
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CFeeRate::CFeeRate(const CAmount& nFeePaid, uint32_t num_bytes)
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{
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assert(nBytes_ <= uint64_t(std::numeric_limits<int64_t>::max()));
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int64_t nSize = int64_t(nBytes_);
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const int64_t nSize{num_bytes};
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if (nSize > 0)
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if (nSize > 0) {
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nSatoshisPerK = nFeePaid * 1000 / nSize;
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else
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} else {
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nSatoshisPerK = 0;
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}
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}
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CAmount CFeeRate::GetFee(size_t nBytes_) const
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CAmount CFeeRate::GetFee(uint32_t num_bytes) const
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{
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assert(nBytes_ <= uint64_t(std::numeric_limits<int64_t>::max()));
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int64_t nSize = int64_t(nBytes_);
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const int64_t nSize{num_bytes};
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CAmount nFee = nSatoshisPerK * nSize / 1000;
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if (nFee == 0 && nSize != 0) {
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if (nSatoshisPerK > 0)
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nFee = CAmount(1);
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if (nSatoshisPerK < 0)
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nFee = CAmount(-1);
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if (nSatoshisPerK > 0) nFee = CAmount(1);
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if (nSatoshisPerK < 0) nFee = CAmount(-1);
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}
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return nFee;
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@ -40,11 +40,11 @@ public:
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static_assert(std::is_integral<I>::value, "CFeeRate should be used without floats");
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}
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/** Constructor for a fee rate in satoshis per kB. The size in bytes must not exceed (2^63 - 1)*/
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CFeeRate(const CAmount& nFeePaid, size_t nBytes);
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CFeeRate(const CAmount& nFeePaid, uint32_t num_bytes);
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/**
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* Return the fee in satoshis for the given size in bytes.
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*/
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CAmount GetFee(size_t nBytes) const;
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CAmount GetFee(uint32_t num_bytes) const;
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/**
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* Return the fee in satoshis for a size of 1000 bytes
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*/
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@ -84,7 +84,7 @@ BOOST_AUTO_TEST_CASE(GetFeeTest)
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BOOST_CHECK(CFeeRate(CAmount(26), 789) == CFeeRate(32));
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BOOST_CHECK(CFeeRate(CAmount(27), 789) == CFeeRate(34));
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// Maximum size in bytes, should not crash
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CFeeRate(MAX_MONEY, std::numeric_limits<size_t>::max() >> 1).GetFeePerK();
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CFeeRate(MAX_MONEY, std::numeric_limits<uint32_t>::max()).GetFeePerK();
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}
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BOOST_AUTO_TEST_CASE(BinaryOperatorTest)
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@ -20,8 +20,8 @@ FUZZ_TARGET(fee_rate)
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const CFeeRate fee_rate{satoshis_per_k};
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(void)fee_rate.GetFeePerK();
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const size_t bytes = fuzzed_data_provider.ConsumeIntegral<size_t>();
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if (!MultiplicationOverflow(static_cast<int64_t>(bytes), satoshis_per_k) && bytes <= static_cast<uint64_t>(std::numeric_limits<int64_t>::max())) {
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const auto bytes = fuzzed_data_provider.ConsumeIntegral<uint32_t>();
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if (!MultiplicationOverflow(int64_t{bytes}, satoshis_per_k)) {
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(void)fee_rate.GetFee(bytes);
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}
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(void)fee_rate.ToString();
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