2014-01-27 10:15:39 +01:00
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#include "Packing.h"
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/***************************
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Packing
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***************************/
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#include <stdint.h>
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namespace Oyster
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{
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namespace Packing
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{
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//bool (1-bit)
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void Pack(unsigned char buffer[], bool i)
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{
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*buffer++ = i;
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}
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//char (8-bit)
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void Pack(unsigned char buffer[], char i)
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{
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*buffer++ = i;
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}
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void Pack(unsigned char buffer[], unsigned char i)
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{
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*buffer++ = i;
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}
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//short (16-bit)
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void Pack(unsigned char buffer[], short i)
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{
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*buffer++ = i >> 8;
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*buffer++ = (char)i;
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}
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void Pack(unsigned char buffer[], unsigned short i)
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{
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*buffer++ = i >> 8;
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*buffer++ = (char)i;
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}
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//int (32-bit)
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void Pack(unsigned char buffer[], int i)
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{
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*buffer++ = i >> 24;
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*buffer++ = i >> 16;
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*buffer++ = i >> 8;
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*buffer++ = i;
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}
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void Pack(unsigned char buffer[], unsigned int i)
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{
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*buffer++ = i >> 24;
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*buffer++ = i >> 16;
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*buffer++ = i >> 8;
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*buffer++ = i;
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}
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//__int64 (64-bit)
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void Pack(unsigned char buffer[], __int64 i)
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{
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*buffer++ = (char)(i >> 56);
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*buffer++ = (char)(i >> 48);
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*buffer++ = (char)(i >> 40);
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*buffer++ = (char)(i >> 32);
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*buffer++ = (char)(i >> 24);
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*buffer++ = (char)(i >> 16);
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*buffer++ = (char)(i >> 8);
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*buffer++ = (char)i;
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}
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void Pack(unsigned char buffer[], unsigned __int64 i)
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{
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*buffer++ = (char)(i >> 56);
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*buffer++ = (char)(i >> 48);
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*buffer++ = (char)(i >> 40);
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*buffer++ = (char)(i >> 32);
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*buffer++ = (char)(i >> 24);
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*buffer++ = (char)(i >> 16);
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*buffer++ = (char)(i >> 8);
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*buffer++ = (char)i;
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}
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//floating point (32, 64-bit)
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void Pack(unsigned char buffer[], float i)
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{
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int tempFloat = (int)Pack754(i, 32, 8);
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Pack(buffer, tempFloat);
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}
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void Pack(unsigned char buffer[], double i)
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{
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__int64 tempDouble = Pack754(i, 64, 11);
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Pack(buffer, tempDouble);
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}
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//string
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void Pack(unsigned char buffer[], char str[])
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{
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short len = (short)strlen(str);
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Pack(buffer, len);
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buffer += 2;
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memcpy(buffer, str, len);
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}
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void Pack(unsigned char buffer[], std::string& str)
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{
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short len = (short)str.length();
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Pack(buffer, len);
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buffer += 2;
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memcpy(buffer, str.c_str(), len);
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}
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unsigned __int64 Pack754(long double f, unsigned bits, unsigned expbits)
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{
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long double fnorm;
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int shift;
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long long sign, exp, significand;
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unsigned significandbits = bits - expbits - 1; // -1 for sign bit
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if (f == 0.0)
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return 0; // get this special case out of the way
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// check sign and begin normalization
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if (f < 0)
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{
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sign = 1;
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fnorm = -f;
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}
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else
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{
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sign = 0;
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fnorm = f;
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}
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// get the normalized form of f and track the exponent
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shift = 0;
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while(fnorm >= 2.0)
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{
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fnorm /= 2.0;
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shift++;
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}
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while(fnorm < 1.0)
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{
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fnorm *= 2.0;
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shift--;
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}
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fnorm = fnorm - 1.0;
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// calculate the binary form (non-float) of the significand data
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significand = (long long)(fnorm * ((1LL << significandbits) + 0.5f));
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// get the biased exponent
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exp = shift + ((1 << (expbits - 1)) - 1); // shift + bias
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// return the final answer
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return (sign << (bits - 1)) | (exp << (bits - expbits - 1)) | significand;
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}
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/******************************
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Unpacking
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******************************/
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//bool (1-bit)
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bool Unpackb(unsigned char buffer[])
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{
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2014-02-15 09:29:54 +01:00
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return (bool)(*buffer);
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2014-01-27 10:15:39 +01:00
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}
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//char (8-bit)
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char Unpackc(unsigned char buffer[])
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{
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if(*buffer <= 0x7f)
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{
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return *buffer;
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}
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else
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{
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return (-1 - (unsigned char)(0xffu - *buffer));
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}
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}
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unsigned char UnpackC(unsigned char buffer[])
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{
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return *buffer;
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}
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//short (16-bit)
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short Unpacks(unsigned char buffer[])
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{
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short i = ((short)buffer[0] << 8) | buffer[1];
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if(i > 0x7fffu)
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{
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i = -1 - (unsigned short)(0xffffu - i);
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}
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return i;
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}
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unsigned short UnpackS(unsigned char buffer[])
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{
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return ((unsigned int)buffer[0] << 8) | buffer[1];
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}
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//int (32-bit)
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int Unpacki(unsigned char buffer[])
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{
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int i = ((int)buffer[0] << 24) |
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((int)buffer[1] << 16) |
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((int)buffer[2] << 8) |
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((int)buffer[3]);
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if(i > 0x7fffffffu)
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{
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i = -1 - (int)(0xffffffffu - i);
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}
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return i;
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}
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unsigned int UnpackI(unsigned char buffer[])
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{
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return ((unsigned int)buffer[0] << 24) |
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((unsigned int)buffer[1] << 16) |
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((unsigned int)buffer[2] << 8) |
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((unsigned int)buffer[3]);
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}
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//__int64 (64-bit)
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__int64 Unpacki64(unsigned char buffer[])
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{
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__int64 i = ((__int64)buffer[0] << 56) |
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((__int64)buffer[1] << 48) |
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((__int64)buffer[2] << 40) |
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((__int64)buffer[3] << 32) |
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((__int64)buffer[4] << 24) |
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((__int64)buffer[5] << 16) |
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((__int64)buffer[6] << 8) |
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(buffer[7]);
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if(i > 0x7fffffffffffffffu)
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{
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i = -1 - (__int64)(0xffffffffffffffffu - i);
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}
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return i;
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}
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unsigned __int64 UnpackI64(unsigned char buffer[])
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{
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return ((__int64)buffer[0] << 56) |
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((__int64)buffer[1] << 48) |
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((__int64)buffer[2] << 40) |
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((__int64)buffer[3] << 32) |
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((__int64)buffer[4] << 24) |
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((__int64)buffer[5] << 16) |
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((__int64)buffer[6] << 8) |
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((__int64)buffer[7]);
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}
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//floating point (32, 64-bit)
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float Unpackf(unsigned char buffer[])
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{
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int tempFloat = Unpacki(buffer);
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return (float)Unpack754(tempFloat, 32, 8);
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}
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double Unpackd(unsigned char buffer[])
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{
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__int64 tempDouble = Unpacki64(buffer);
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return Unpack754(tempDouble, 64, 11);
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}
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//string
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char* UnpackCStr(unsigned char buffer[])
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{
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short len = UnpackS(buffer);
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char* str = new char[len+1];
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buffer += 2;
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for(int i = 0; i < len; i++)
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{
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str[i] = buffer[i];
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}
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str[len] = '\0';
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return str;
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}
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std::string UnpackStr(unsigned char buffer[])
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{
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short len = UnpackS(buffer);
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std::string temp;
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temp.resize(len);
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buffer += 2;
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for(int i = 0; i < len; i++)
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{
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temp[i] = buffer[i];
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}
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return temp;
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}
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long double Unpack754(unsigned __int64 i, unsigned bits, unsigned expbits)
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{
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long double result;
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long long shift;
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unsigned bias;
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unsigned significandbits = bits - expbits - 1; // -1 for sign bit
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if (i == 0)
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return 0.0;
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// pull the significand
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result = (long double)(i&((1LL << significandbits) - 1)); // mask
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result /= (1LL << significandbits); // convert back to float
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result += 1.0f; // add the one back on
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// deal with the exponent
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bias = (1 << (expbits - 1)) - 1;
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shift = ((i >> significandbits) & ((1LL << expbits) - 1)) - bias;
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while(shift > 0)
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{
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result *= 2.0;
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shift--;
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}
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while(shift < 0)
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{
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result /= 2.0;
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shift++;
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}
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// sign it
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result *= (i >> (bits - 1)) & 1 ? -1.0 : 1.0;
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return result;
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}
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}
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}
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