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/*==LICENSE==*
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CyanWorlds.com Engine - MMOG client, server and tools
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Copyright (C) 2011 Cyan Worlds, Inc.
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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Additional permissions under GNU GPL version 3 section 7
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If you modify this Program, or any covered work, by linking or
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combining it with any of RAD Game Tools Bink SDK, Autodesk 3ds Max SDK,
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NVIDIA PhysX SDK, Microsoft DirectX SDK, OpenSSL library, Independent
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JPEG Group JPEG library, Microsoft Windows Media SDK, or Apple QuickTime SDK
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(or a modified version of those libraries),
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containing parts covered by the terms of the Bink SDK EULA, 3ds Max EULA,
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PhysX SDK EULA, DirectX SDK EULA, OpenSSL and SSLeay licenses, IJG
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JPEG Library README, Windows Media SDK EULA, or QuickTime SDK EULA, the
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licensors of this Program grant you additional
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permission to convey the resulting work. Corresponding Source for a
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non-source form of such a combination shall include the source code for
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the parts of OpenSSL and IJG JPEG Library used as well as that of the covered
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work.
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You can contact Cyan Worlds, Inc. by email legal@cyan.com
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or by snail mail at:
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Cyan Worlds, Inc.
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14617 N Newport Hwy
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Mead, WA 99021
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*==LICENSE==*/
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/*****************************************************************************
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*
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* $/Plasma20/Sources/Plasma/NucleusLib/pnUtils/Private/pnUtBigNum.h
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*
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***/
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#ifdef PLASMA20_SOURCES_PLASMA_NUCLEUSLIB_PNUTILS_PRIVATE_PNUTBIGNUM_H
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#error "Header $/Plasma20/Sources/Plasma/NucleusLib/pnUtils/Private/pnUtBigNum.h included more than once"
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#endif
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#define PLASMA20_SOURCES_PLASMA_NUCLEUSLIB_PNUTILS_PRIVATE_PNUTBIGNUM_H
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/*****************************************************************************
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*
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* BigNum class
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*
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***/
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#include <openssl/bn.h>
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class BigNum {
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private:
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BIGNUM m_number;
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mutable BN_CTX * m_context;
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BN_CTX * GetContext () const
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{
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if (!m_context)
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m_context = BN_CTX_new();
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return m_context;
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}
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public:
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BigNum ();
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BigNum (const BigNum & a);
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BigNum (unsigned a);
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BigNum (unsigned bytess, const void * data, bool le=false);
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~BigNum ();
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BigNum & operator= (const BigNum & a)
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{
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BN_copy(&m_number, &a.m_number);
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return *this;
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}
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// Constant parameters need not be distinct from the destination or from
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// each other
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void Add (const BigNum & a, uint32_t b)
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{
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// this = a + b
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BN_copy(&m_number, &a.m_number);
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BN_add_word(&m_number, b);
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}
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void Add (const BigNum & a, const BigNum & b)
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{
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// this = a + b
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BN_add(&m_number, &a.m_number, &b.m_number);
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}
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int Compare (uint32_t a) const;
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int Compare (const BigNum & a) const
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{
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return BN_cmp(&m_number, &a.m_number);
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}
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bool isZero() const
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{
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return BN_is_zero(&m_number);
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}
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void Div (const BigNum & a, uint32_t b, uint32_t * remainder)
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{
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// this = a / b, remainder = a % b
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BN_copy(&m_number, &a.m_number);
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*remainder = (uint32_t)BN_div_word(&m_number, b);
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}
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void Div (const BigNum & a, const BigNum & b, BigNum * remainder)
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{
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// this = a / b, remainder = a % b
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// either this or remainder may be nil
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BN_div(this ? &m_number : nil, remainder ? &remainder->m_number : nil,
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&a.m_number, &b.m_number, GetContext());
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}
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void FromData_BE (unsigned bytess, const void * data)
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{
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BN_bin2bn((const unsigned char *)data, bytess, &m_number);
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}
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void FromData_LE (unsigned bytess, const void * data);
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unsigned char * GetData_BE (unsigned * bytess) const;
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unsigned char * GetData_LE (unsigned * bytess) const;
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bool IsPrime () const
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{
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// Cyan's code uses 3 checks, so we'll follow suit.
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// This provides an accurate answer to p < 0.015625
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return BN_is_prime_fasttest(&m_number, 3, nil, GetContext(), nil, 1) > 0;
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}
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void Mod (const BigNum & a, const BigNum & b)
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{
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// this = a % b
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BN_div(nil, &m_number, &a.m_number, &b.m_number, GetContext());
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}
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void Mul (const BigNum & a, uint32_t b)
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{
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// this = a * b
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BN_copy(&m_number, &a.m_number);
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BN_mul_word(&m_number, b);
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}
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void Mul (const BigNum & a, const BigNum & b)
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{
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// this = a * b
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BN_mul(&m_number, &a.m_number, &b.m_number, GetContext());
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}
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void PowMod (uint32_t a, const BigNum & b, const BigNum & c)
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{
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// this = a ^ b % c
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PowMod(BigNum(a), b, c);
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}
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void PowMod (const BigNum & a, const BigNum & b, const BigNum & c)
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{
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// this = a ^ b % c
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BN_mod_exp(&m_number, &a.m_number, &b.m_number, &c.m_number, GetContext());
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}
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void Rand (const BigNum & a, BigNum * seed)
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{
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// this = random number less than a
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int bits = BN_num_bits(&a.m_number);
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do
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Rand(bits, seed);
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while (Compare(a) >= 0);
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}
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void Rand (unsigned bits, BigNum * seed);
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void RandPrime (unsigned bits, BigNum * seed)
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{
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BN_generate_prime(&m_number, bits, 1, nil, nil, nil, nil);
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}
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void Set (const BigNum & a)
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{
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BN_copy(&m_number, &a.m_number);
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}
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void Set (unsigned a)
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{
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BN_set_word(&m_number, a);
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}
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void SetOne () { Set(1); }
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void SetZero () { Set(0); }
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void Shl (const BigNum & a, unsigned b)
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{
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// this = a << b
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BN_lshift(&m_number, &a.m_number, b);
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}
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void Shr (const BigNum & a, unsigned b)
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{
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// this = a >> b
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BN_rshift(&m_number, &a.m_number, b);
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}
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void Sub (const BigNum & a, uint32_t b)
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{
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// this = a - b
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BN_copy(&m_number, &a.m_number);
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BN_sub_word(&m_number, b);
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}
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void Sub (const BigNum & a, const BigNum & b)
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{
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// this = a - b
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BN_sub(&m_number, &a.m_number, &b.m_number);
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}
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};
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