Coverage Report

Created: 2026-08-14 17:52

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/root/bitcoin/src/uint256.h
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// Copyright (c) 2009-2010 Satoshi Nakamoto
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// Copyright (c) 2009-present 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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#ifndef BITCOIN_UINT256_H
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#define BITCOIN_UINT256_H
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#include <crypto/common.h>
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#include <crypto/hex_base.h>
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#include <span.h>
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#include <util/strencodings.h>
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#include <util/string.h>
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#include <algorithm>
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#include <array>
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#include <cassert>
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#include <compare>
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#include <cstdint>
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#include <cstring>
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#include <optional>
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#include <string>
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#include <string_view>
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/** Template base class for fixed-sized opaque blobs. */
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template<unsigned int BITS>
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class base_blob
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{
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protected:
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    static constexpr int WIDTH = BITS / 8;
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    static_assert(BITS % 8 == 0, "base_blob currently only supports whole bytes.");
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    std::array<uint8_t, WIDTH> m_data;
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    static_assert(WIDTH == sizeof(m_data), "Sanity check");
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public:
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    /* construct 0 value by default */
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166k
    constexpr base_blob() : m_data() {}
_ZN9base_blobILj256EEC2Ev
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166k
    constexpr base_blob() : m_data() {}
Unexecuted instantiation: _ZN9base_blobILj160EEC2Ev
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    /* constructor for constants between 1 and 255 */
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0
    constexpr explicit base_blob(uint8_t v) : m_data{v} {}
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    constexpr explicit base_blob(std::span<const unsigned char> vch)
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3.23k
    {
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3.23k
        assert(vch.size() == WIDTH);
  Branch (44:9): [True: 3.23k, False: 0]
  Branch (44:9): [True: 0, False: 0]
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3.23k
        std::copy(vch.begin(), vch.end(), m_data.begin());
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3.23k
    }
_ZN9base_blobILj256EEC2ESt4spanIKhLm18446744073709551615EE
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3.23k
    {
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3.23k
        assert(vch.size() == WIDTH);
  Branch (44:9): [True: 3.23k, False: 0]
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3.23k
        std::copy(vch.begin(), vch.end(), m_data.begin());
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    }
Unexecuted instantiation: _ZN9base_blobILj160EEC2ESt4spanIKhLm18446744073709551615EE
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    consteval explicit base_blob(std::string_view hex_str);
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    constexpr bool IsNull() const
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51.9k
    {
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864k
        return std::all_of(m_data.begin(), m_data.end(), [](uint8_t val) {
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864k
            return val == 0;
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864k
        });
_ZZNK9base_blobILj256EE6IsNullEvENKUlhE_clEh
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52
864k
        return std::all_of(m_data.begin(), m_data.end(), [](uint8_t val) {
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864k
            return val == 0;
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        });
Unexecuted instantiation: _ZZNK9base_blobILj160EE6IsNullEvENKUlhE_clEh
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51.9k
    }
_ZNK9base_blobILj256EE6IsNullEv
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51.9k
    {
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51.9k
        return std::all_of(m_data.begin(), m_data.end(), [](uint8_t val) {
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51.9k
            return val == 0;
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        });
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    }
Unexecuted instantiation: _ZNK9base_blobILj160EE6IsNullEv
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    constexpr void SetNull()
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19.1k
    {
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        std::fill(m_data.begin(), m_data.end(), 0);
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    }
_ZN9base_blobILj256EE7SetNullEv
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19.1k
    {
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19.1k
        std::fill(m_data.begin(), m_data.end(), 0);
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    }
Unexecuted instantiation: _ZN9base_blobILj160EE7SetNullEv
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87.7k
    constexpr bool operator==(const base_blob&) const = default;
_ZNK9base_blobILj256EEeqERKS0_
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87.7k
    constexpr bool operator==(const base_blob&) const = default;
Unexecuted instantiation: _ZNK9base_blobILj160EEeqERKS0_
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    /** Lexicographic ordering
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     * @note Does NOT match the ordering on the corresponding \ref
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     *       base_uint::CompareTo, which starts comparing from the end.
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     */
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29.4k
    constexpr std::strong_ordering operator<=>(const base_blob& other) const = default;
_ZNK9base_blobILj256EEssERKS0_
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29.4k
    constexpr std::strong_ordering operator<=>(const base_blob& other) const = default;
Unexecuted instantiation: _ZNK9base_blobILj160EEssERKS0_
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    /** @name Hex representation
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     *
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     * The hex representation used by GetHex(), ToString(), and FromHex()
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     * is unusual, since it shows bytes of the base_blob in reverse order.
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     * For example, a 4-byte blob {0x12, 0x34, 0x56, 0x78} is represented
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     * as "78563412" instead of the more typical "12345678" representation
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     * that would be shown in a hex editor or used by typical
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     * byte-array / hex conversion functions like python's bytes.hex() and
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     * bytes.fromhex().
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     *
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     * The nice thing about the reverse-byte representation, even though it is
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     * unusual, is that if a blob contains an arithmetic number in little endian
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     * format (with least significant bytes first, and most significant bytes
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     * last), the GetHex() output will match the way the number would normally
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     * be written in base-16 (with most significant digits first and least
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     * significant digits last).
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     *
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     * This means, for example, that ArithToUint256(num).GetHex() can be used to
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     * display an arith_uint256 num value as a number, because
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     * ArithToUint256() converts the number to a blob in little-endian format,
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     * so the arith_uint256 class doesn't need to have its own number parsing
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     * and formatting functions.
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     *
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     * @{*/
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    std::string GetHex() const;
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    std::string ToString() const;
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    /**@}*/
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    constexpr const unsigned char* data() const { return m_data.data(); }
Unexecuted instantiation: _ZNK9base_blobILj160EE4dataEv
_ZNK9base_blobILj256EE4dataEv
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11.5k
    constexpr const unsigned char* data() const { return m_data.data(); }
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9.85k
    constexpr unsigned char* data() { return m_data.data(); }
Unexecuted instantiation: _ZN9base_blobILj160EE4dataEv
_ZN9base_blobILj256EE4dataEv
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9.85k
    constexpr unsigned char* data() { return m_data.data(); }
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    constexpr unsigned char* begin() { return m_data.data(); }
Unexecuted instantiation: _ZN9base_blobILj160EE5beginEv
_ZN9base_blobILj256EE5beginEv
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128k
    constexpr unsigned char* begin() { return m_data.data(); }
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    constexpr unsigned char* end() { return m_data.data() + WIDTH; }
Unexecuted instantiation: _ZN9base_blobILj160EE3endEv
Unexecuted instantiation: _ZN9base_blobILj256EE3endEv
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    constexpr const unsigned char* begin() const { return m_data.data(); }
Unexecuted instantiation: _ZNK9base_blobILj160EE5beginEv
_ZNK9base_blobILj256EE5beginEv
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    constexpr const unsigned char* begin() const { return m_data.data(); }
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    constexpr const unsigned char* end() const { return m_data.data() + WIDTH; }
Unexecuted instantiation: _ZNK9base_blobILj160EE3endEv
Unexecuted instantiation: _ZNK9base_blobILj256EE3endEv
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    static constexpr unsigned int size() { return WIDTH; }
Unexecuted instantiation: _ZN9base_blobILj160EE4sizeEv
_ZN9base_blobILj256EE4sizeEv
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    static constexpr unsigned int size() { return WIDTH; }
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    constexpr uint64_t GetUint64(int pos) const { return ReadLE64(m_data.data() + pos * 8); }
_ZNK9base_blobILj256EE9GetUint64Ei
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    constexpr uint64_t GetUint64(int pos) const { return ReadLE64(m_data.data() + pos * 8); }
Unexecuted instantiation: _ZNK9base_blobILj160EE9GetUint64Ei
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    template<typename Stream>
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    void Serialize(Stream& s) const
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    {
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        s << std::span(m_data);
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    }
_ZNK9base_blobILj256EE9SerializeI12ParamsStreamIR12SizeComputer20TransactionSerParamsEEEvRT_
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38.2k
    {
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        s << std::span(m_data);
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    }
Unexecuted instantiation: _ZNK9base_blobILj256EE9SerializeI12VectorWriterEEvRT_
Unexecuted instantiation: _ZNK9base_blobILj256EE9SerializeI12ParamsStreamIR12VectorWriter20TransactionSerParamsEEEvRT_
_ZNK9base_blobILj256EE9SerializeI10DataStreamEEvRT_
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13.5k
    {
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        s << std::span(m_data);
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    }
Unexecuted instantiation: _ZNK9base_blobILj256EE9SerializeI12ParamsStreamIR10DataStream20TransactionSerParamsEEEvRT_
Unexecuted instantiation: _ZNK9base_blobILj256EE9SerializeI12SizeComputerEEvRT_
Unexecuted instantiation: _ZNK9base_blobILj160EE9SerializeI10DataStreamEEvRT_
Unexecuted instantiation: _ZNK9base_blobILj256EE9SerializeI12ParamsStreamIRS2_IR12VectorWriter20TransactionSerParamsES5_EEEvRT_
Unexecuted instantiation: _ZNK9base_blobILj256EE9SerializeI8AutoFileEEvRT_
_ZNK9base_blobILj256EE9SerializeI10HashWriterEEvRT_
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34.8k
    {
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        s << std::span(m_data);
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    }
Unexecuted instantiation: _ZNK9base_blobILj256EE9SerializeI12ParamsStreamIR18HashedSourceWriterI8AutoFileEN8CAddress9SerParamsEEEEvRT_
Unexecuted instantiation: _ZNK9base_blobILj256EE9SerializeI12ParamsStreamIR10DataStreamN8CAddress9SerParamsEEEEvRT_
Unexecuted instantiation: _ZNK9base_blobILj256EE9SerializeI14BufferedWriterI8AutoFileEEEvRT_
Unexecuted instantiation: _ZNK9base_blobILj256EE9SerializeI12ParamsStreamIR14BufferedWriterI8AutoFileE20TransactionSerParamsEEEvRT_
Unexecuted instantiation: _ZNK9base_blobILj256EE9SerializeI12ParamsStreamIR8AutoFile20TransactionSerParamsEEEvRT_
_ZNK9base_blobILj256EE9SerializeI12ParamsStreamIR10HashWriter20TransactionSerParamsEEEvRT_
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113
31.8k
    {
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        s << std::span(m_data);
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    }
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    template<typename Stream>
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    void Unserialize(Stream& s)
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0
    {
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0
        s.read(MakeWritableByteSpan(m_data));
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0
    }
Unexecuted instantiation: _ZN9base_blobILj256EE11UnserializeI12ParamsStreamIR10SpanReader20TransactionSerParamsEEEvRT_
Unexecuted instantiation: _ZN9base_blobILj256EE11UnserializeI10SpanReaderEEvRT_
Unexecuted instantiation: _ZN9base_blobILj256EE11UnserializeI10DataStreamEEvRT_
Unexecuted instantiation: _ZN9base_blobILj160EE11UnserializeI10SpanReaderEEvRT_
Unexecuted instantiation: _ZN9base_blobILj160EE11UnserializeI10DataStreamEEvRT_
Unexecuted instantiation: _ZN9base_blobILj256EE11UnserializeI8AutoFileEEvRT_
Unexecuted instantiation: _ZN9base_blobILj256EE11UnserializeI12ParamsStreamIR10DataStream20TransactionSerParamsEEEvRT_
Unexecuted instantiation: _ZN9base_blobILj256EE11UnserializeI12ParamsStreamIR8AutoFileN8CAddress9SerParamsEEEEvRT_
Unexecuted instantiation: _ZN9base_blobILj256EE11UnserializeI12ParamsStreamIR12HashVerifierI8AutoFileEN8CAddress9SerParamsEEEEvRT_
Unexecuted instantiation: _ZN9base_blobILj256EE11UnserializeI12ParamsStreamIR10DataStreamN8CAddress9SerParamsEEEEvRT_
Unexecuted instantiation: _ZN9base_blobILj256EE11UnserializeI12ParamsStreamIR12HashVerifierI10DataStreamEN8CAddress9SerParamsEEEEvRT_
Unexecuted instantiation: _ZN9base_blobILj256EE11UnserializeI14BufferedReaderI8AutoFileEEEvRT_
Unexecuted instantiation: _ZN9base_blobILj256EE11UnserializeI12ParamsStreamIR8AutoFile20TransactionSerParamsEEEvRT_
Unexecuted instantiation: _ZN9base_blobILj256EE11UnserializeI12BufferedFileEEvRT_
Unexecuted instantiation: _ZN9base_blobILj256EE11UnserializeI12ParamsStreamIR12BufferedFile20TransactionSerParamsEEEvRT_
122
};
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template <unsigned int BITS>
125
consteval base_blob<BITS>::base_blob(std::string_view hex_str)
126
{
127
    if (hex_str.length() != m_data.size() * 2) throw "Hex string must fit exactly";
128
    auto str_it = hex_str.rbegin();
129
    for (auto& elem : m_data) {
130
        auto lo = util::ConstevalHexDigit(*(str_it++));
131
        elem = (util::ConstevalHexDigit(*(str_it++)) << 4) | lo;
132
    }
133
}
134
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namespace detail {
136
/**
137
 * Writes the hex string (in reverse byte order) into a new uintN_t object
138
 * and only returns a value iff all of the checks pass:
139
 *   - Input length is uintN_t::size()*2
140
 *   - All characters are hex
141
 */
142
template <class uintN_t>
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std::optional<uintN_t> FromHex(std::string_view str)
144
0
{
145
0
    if (uintN_t::size() * 2 != str.size() || !IsHex(str)) return std::nullopt;
  Branch (145:9): [True: 0, False: 0]
  Branch (145:46): [True: 0, False: 0]
146
0
    uintN_t rv;
147
0
    unsigned char* p1 = rv.begin();
148
0
    unsigned char* pend = rv.end();
149
0
    size_t digits = str.size();
150
0
    while (digits > 0 && p1 < pend) {
  Branch (150:12): [True: 0, False: 0]
  Branch (150:26): [True: 0, False: 0]
151
0
        *p1 = ::HexDigit(str[--digits]);
152
0
        if (digits > 0) {
  Branch (152:13): [True: 0, False: 0]
153
0
            *p1 |= ((unsigned char)::HexDigit(str[--digits]) << 4);
154
0
            p1++;
155
0
        }
156
0
    }
157
0
    return rv;
158
0
}
Unexecuted instantiation: _ZN6detail7FromHexI7uint160EESt8optionalIT_ESt17basic_string_viewIcSt11char_traitsIcEE
Unexecuted instantiation: _ZN6detail7FromHexI7uint256EESt8optionalIT_ESt17basic_string_viewIcSt11char_traitsIcEE
159
/**
160
 * @brief Like FromHex(std::string_view str), but allows an "0x" prefix
161
 *        and pads the input with leading zeroes if it is shorter than
162
 *        the expected length of uintN_t::size()*2.
163
 *
164
 *        Designed to be used when dealing with user input.
165
 */
166
template <class uintN_t>
167
std::optional<uintN_t> FromUserHex(std::string_view input)
168
0
{
169
0
    input = util::RemovePrefixView(input, "0x");
170
0
    constexpr auto expected_size{uintN_t::size() * 2};
171
0
    if (input.size() < expected_size) {
  Branch (171:9): [True: 0, False: 0]
172
0
        auto padded = std::string(expected_size, '0');
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0
        std::copy(input.begin(), input.end(), padded.begin() + expected_size - input.size());
174
0
        return FromHex<uintN_t>(padded);
175
0
    }
176
0
    return FromHex<uintN_t>(input);
177
0
}
178
} // namespace detail
179
180
/** 160-bit opaque blob.
181
 * @note This type is called uint160 for historical reasons only. It is an opaque
182
 * blob of 160 bits and has no integer operations.
183
 */
184
class uint160 : public base_blob<160> {
185
public:
186
0
    static std::optional<uint160> FromHex(std::string_view str) { return detail::FromHex<uint160>(str); }
187
0
    constexpr uint160() = default;
188
0
    constexpr explicit uint160(std::span<const unsigned char> vch) : base_blob<160>(vch) {}
189
};
190
191
/** 256-bit opaque blob.
192
 * @note This type is called uint256 for historical reasons only. It is an
193
 * opaque blob of 256 bits and has no integer operations. Use arith_uint256 if
194
 * those are required.
195
 */
196
class uint256 : public base_blob<256> {
197
public:
198
0
    static std::optional<uint256> FromHex(std::string_view str) { return detail::FromHex<uint256>(str); }
199
0
    static std::optional<uint256> FromUserHex(std::string_view str) { return detail::FromUserHex<uint256>(str); }
200
166k
    constexpr uint256() = default;
201
0
    consteval explicit uint256(std::string_view hex_str) : base_blob<256>(hex_str) {}
202
0
    constexpr explicit uint256(uint8_t v) : base_blob<256>(v) {}
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3.23k
    constexpr explicit uint256(std::span<const unsigned char> vch) : base_blob<256>(vch) {}
204
    static const uint256 ZERO;
205
    static const uint256 ONE;
206
};
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#endif // BITCOIN_UINT256_H