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b17a282b4b
These just use hash the underlying bytes that make up the integer words
131 lines
4.0 KiB
C++
131 lines
4.0 KiB
C++
/*
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* Copyright (c) 2020, the SerenityOS developers.
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#pragma once
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#include <AK/Span.h>
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#include <LibCrypto/BigInt/UnsignedBigInteger.h>
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namespace Crypto {
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struct SignedDivisionResult;
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class SignedBigInteger {
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public:
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SignedBigInteger(i32 x)
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: m_sign(x < 0)
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, m_unsigned_data(abs(x))
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{
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}
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SignedBigInteger(UnsignedBigInteger&& unsigned_data, bool sign)
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: m_sign(sign)
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, m_unsigned_data(move(unsigned_data))
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{
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}
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explicit SignedBigInteger(UnsignedBigInteger unsigned_data)
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: m_sign(false)
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, m_unsigned_data(move(unsigned_data))
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{
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}
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SignedBigInteger()
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: m_sign(false)
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, m_unsigned_data()
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{
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}
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static SignedBigInteger create_invalid()
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{
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return { UnsignedBigInteger::create_invalid(), false };
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}
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static SignedBigInteger import_data(const StringView& data) { return import_data((const u8*)data.characters_without_null_termination(), data.length()); }
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static SignedBigInteger import_data(const u8* ptr, size_t length);
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size_t export_data(Bytes, bool remove_leading_zeros = false) const;
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static SignedBigInteger from_base10(StringView str);
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String to_base10() const;
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const UnsignedBigInteger& unsigned_value() const { return m_unsigned_data; }
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const Vector<u32, STARTING_WORD_SIZE> words() const { return m_unsigned_data.words(); }
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bool is_negative() const { return m_sign; }
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void negate() { m_sign = !m_sign; }
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void set_to_0() { m_unsigned_data.set_to_0(); }
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void set_to(i32 other)
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{
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m_unsigned_data.set_to((u32)other);
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m_sign = other < 0;
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}
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void set_to(const SignedBigInteger& other)
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{
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m_unsigned_data.set_to(other.m_unsigned_data);
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m_sign = other.m_sign;
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}
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void invalidate()
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{
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m_unsigned_data.invalidate();
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}
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bool is_invalid() const { return m_unsigned_data.is_invalid(); }
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// These get + 1 byte for the sign.
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size_t length() const { return m_unsigned_data.length() + 1; }
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size_t trimmed_length() const { return m_unsigned_data.trimmed_length() + 1; };
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SignedBigInteger plus(const SignedBigInteger& other) const;
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SignedBigInteger minus(const SignedBigInteger& other) const;
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SignedBigInteger bitwise_or(const SignedBigInteger& other) const;
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SignedBigInteger bitwise_and(const SignedBigInteger& other) const;
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SignedBigInteger bitwise_xor(const SignedBigInteger& other) const;
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SignedBigInteger bitwise_not() const;
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SignedBigInteger shift_left(size_t num_bits) const;
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SignedBigInteger multiplied_by(const SignedBigInteger& other) const;
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SignedDivisionResult divided_by(const SignedBigInteger& divisor) const;
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SignedBigInteger plus(const UnsignedBigInteger& other) const;
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SignedBigInteger minus(const UnsignedBigInteger& other) const;
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SignedBigInteger bitwise_or(const UnsignedBigInteger& other) const;
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SignedBigInteger bitwise_and(const UnsignedBigInteger& other) const;
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SignedBigInteger bitwise_xor(const UnsignedBigInteger& other) const;
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SignedBigInteger multiplied_by(const UnsignedBigInteger& other) const;
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SignedDivisionResult divided_by(const UnsignedBigInteger& divisor) const;
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u32 hash() const;
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void set_bit_inplace(size_t bit_index);
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bool operator==(const SignedBigInteger& other) const;
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bool operator!=(const SignedBigInteger& other) const;
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bool operator<(const SignedBigInteger& other) const;
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bool operator==(const UnsignedBigInteger& other) const;
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bool operator!=(const UnsignedBigInteger& other) const;
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bool operator<(const UnsignedBigInteger& other) const;
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private:
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bool m_sign { false };
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UnsignedBigInteger m_unsigned_data;
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};
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struct SignedDivisionResult {
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Crypto::SignedBigInteger quotient;
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Crypto::SignedBigInteger remainder;
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};
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}
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inline Crypto::SignedBigInteger
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operator""_sbigint(const char* string, size_t length)
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{
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return Crypto::SignedBigInteger::from_base10({ string, length });
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}
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