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230 lines
5.6 KiB
C++
Executable File
230 lines
5.6 KiB
C++
Executable File
// Crypto/Sha1.cpp
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// This file is based on public domain
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// Steve Reid and Wei Dai's code from Crypto++
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#include "StdAfx.h"
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#include "../../../C/RotateDefs.h"
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#include "Sha1.h"
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namespace NCrypto {
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namespace NSha1 {
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// define it for speed optimization
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// #define _SHA1_UNROLL
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static const unsigned kNumW =
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#ifdef _SHA1_UNROLL
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16;
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#else
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80;
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#endif
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#define w0(i) (W[(i)] = data[(i)])
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#ifdef _SHA1_UNROLL
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#define w1(i) (W[(i)&15] = rotlFixed(W[((i)-3)&15] ^ W[((i)-8)&15] ^ W[((i)-14)&15] ^ W[((i)-16)&15], 1))
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#else
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#define w1(i) (W[(i)] = rotlFixed(W[(i)-3] ^ W[(i)-8] ^ W[(i)-14] ^ W[(i)-16], 1))
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#endif
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#define f1(x,y,z) (z^(x&(y^z)))
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#define f2(x,y,z) (x^y^z)
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#define f3(x,y,z) ((x&y)|(z&(x|y)))
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#define f4(x,y,z) (x^y^z)
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#define RK1(a,b,c,d,e,i, f, w, k) e += f(b,c,d) + w(i) + k + rotlFixed(a,5); b = rotlFixed(b,30);
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#define R0(a,b,c,d,e,i) RK1(a,b,c,d,e,i, f1, w0, 0x5A827999)
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#define R1(a,b,c,d,e,i) RK1(a,b,c,d,e,i, f1, w1, 0x5A827999)
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#define R2(a,b,c,d,e,i) RK1(a,b,c,d,e,i, f2, w1, 0x6ED9EBA1)
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#define R3(a,b,c,d,e,i) RK1(a,b,c,d,e,i, f3, w1, 0x8F1BBCDC)
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#define R4(a,b,c,d,e,i) RK1(a,b,c,d,e,i, f4, w1, 0xCA62C1D6)
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#define RX_1_4(rx1, rx4, i) rx1(a,b,c,d,e,i); rx4(e,a,b,c,d,i+1); rx4(d,e,a,b,c,i+2); rx4(c,d,e,a,b,i+3); rx4(b,c,d,e,a,i+4);
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#define RX_5(rx, i) RX_1_4(rx, rx, i);
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void CContextBase::Init()
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{
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_state[0] = 0x67452301;
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_state[1] = 0xEFCDAB89;
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_state[2] = 0x98BADCFE;
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_state[3] = 0x10325476;
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_state[4] = 0xC3D2E1F0;
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_count = 0;
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}
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void CContextBase::GetBlockDigest(UInt32 *data, UInt32 *destDigest, bool returnRes)
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{
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UInt32 a, b, c, d, e;
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UInt32 W[kNumW];
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a = _state[0];
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b = _state[1];
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c = _state[2];
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d = _state[3];
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e = _state[4];
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#ifdef _SHA1_UNROLL
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RX_5(R0, 0); RX_5(R0, 5); RX_5(R0, 10);
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#else
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int i;
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for (i = 0; i < 15; i += 5) { RX_5(R0, i); }
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#endif
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RX_1_4(R0, R1, 15);
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#ifdef _SHA1_UNROLL
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RX_5(R2, 20); RX_5(R2, 25); RX_5(R2, 30); RX_5(R2, 35);
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RX_5(R3, 40); RX_5(R3, 45); RX_5(R3, 50); RX_5(R3, 55);
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RX_5(R4, 60); RX_5(R4, 65); RX_5(R4, 70); RX_5(R4, 75);
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#else
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i = 20;
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for (; i < 40; i += 5) { RX_5(R2, i); }
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for (; i < 60; i += 5) { RX_5(R3, i); }
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for (; i < 80; i += 5) { RX_5(R4, i); }
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#endif
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destDigest[0] = _state[0] + a;
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destDigest[1] = _state[1] + b;
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destDigest[2] = _state[2] + c;
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destDigest[3] = _state[3] + d;
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destDigest[4] = _state[4] + e;
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if (returnRes)
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for (int i = 0 ; i < 16; i++)
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data[i] = W[kNumW - 16 + i];
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// Wipe variables
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// a = b = c = d = e = 0;
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}
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void CContextBase::PrepareBlock(UInt32 *block, unsigned size) const
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{
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unsigned curBufferPos = size & 0xF;
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block[curBufferPos++] = 0x80000000;
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while (curBufferPos != (16 - 2))
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block[curBufferPos++] = 0;
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const UInt64 lenInBits = (_count << 9) + ((UInt64)size << 5);
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block[curBufferPos++] = (UInt32)(lenInBits >> 32);
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block[curBufferPos++] = (UInt32)(lenInBits);
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}
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void CContext::Update(const Byte *data, size_t size)
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{
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unsigned curBufferPos = _count2;
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while (size--)
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{
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int pos = (int)(curBufferPos & 3);
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if (pos == 0)
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_buffer[curBufferPos >> 2] = 0;
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_buffer[curBufferPos >> 2] |= ((UInt32)*data++) << (8 * (3 - pos));
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if (++curBufferPos == kBlockSize)
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{
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curBufferPos = 0;
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CContextBase::UpdateBlock(_buffer, false);
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}
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}
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_count2 = curBufferPos;
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}
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void CContext::UpdateRar(Byte *data, size_t size, bool rar350Mode)
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{
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bool returnRes = false;
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unsigned curBufferPos = _count2;
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while (size--)
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{
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int pos = (int)(curBufferPos & 3);
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if (pos == 0)
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_buffer[curBufferPos >> 2] = 0;
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_buffer[curBufferPos >> 2] |= ((UInt32)*data++) << (8 * (3 - pos));
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if (++curBufferPos == kBlockSize)
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{
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curBufferPos = 0;
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CContextBase::UpdateBlock(_buffer, returnRes);
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if (returnRes)
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for (int i = 0; i < kBlockSizeInWords; i++)
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{
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UInt32 d = _buffer[i];
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data[i * 4 + 0 - kBlockSize] = (Byte)(d);
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data[i * 4 + 1 - kBlockSize] = (Byte)(d >> 8);
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data[i * 4 + 2 - kBlockSize] = (Byte)(d >> 16);
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data[i * 4 + 3 - kBlockSize] = (Byte)(d >> 24);
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}
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returnRes = rar350Mode;
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}
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}
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_count2 = curBufferPos;
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}
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void CContext::Final(Byte *digest)
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{
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const UInt64 lenInBits = (_count << 9) + ((UInt64)_count2 << 3);
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unsigned curBufferPos = _count2;
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int pos = (int)(curBufferPos & 3);
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curBufferPos >>= 2;
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if (pos == 0)
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_buffer[curBufferPos] = 0;
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_buffer[curBufferPos++] |= ((UInt32)0x80) << (8 * (3 - pos));
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while (curBufferPos != (16 - 2))
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{
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curBufferPos &= 0xF;
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if (curBufferPos == 0)
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UpdateBlock();
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_buffer[curBufferPos++] = 0;
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}
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_buffer[curBufferPos++] = (UInt32)(lenInBits >> 32);
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_buffer[curBufferPos++] = (UInt32)(lenInBits);
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UpdateBlock();
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int i;
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for (i = 0; i < kDigestSizeInWords; i++)
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{
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UInt32 state = _state[i] & 0xFFFFFFFF;
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*digest++ = (Byte)(state >> 24);
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*digest++ = (Byte)(state >> 16);
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*digest++ = (Byte)(state >> 8);
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*digest++ = (Byte)(state);
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}
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Init();
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}
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///////////////////////////
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// Words version
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void CContext32::Update(const UInt32 *data, size_t size)
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{
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while (size--)
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{
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_buffer[_count2++] = *data++;
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if (_count2 == kBlockSizeInWords)
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{
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_count2 = 0;
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UpdateBlock();
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}
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}
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}
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void CContext32::Final(UInt32 *digest)
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{
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const UInt64 lenInBits = (_count << 9) + ((UInt64)_count2 << 5);
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unsigned curBufferPos = _count2;
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_buffer[curBufferPos++] = 0x80000000;
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while (curBufferPos != (16 - 2))
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{
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curBufferPos &= 0xF;
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if (curBufferPos == 0)
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UpdateBlock();
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_buffer[curBufferPos++] = 0;
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}
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_buffer[curBufferPos++] = (UInt32)(lenInBits >> 32);
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_buffer[curBufferPos++] = (UInt32)(lenInBits);
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GetBlockDigest(_buffer, digest);
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Init();
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}
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}}
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