mirror of https://github.com/YosysHQ/abc.git
223 lines
7.7 KiB
C
223 lines
7.7 KiB
C
/**CFile****************************************************************
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FileName [utilDouble.h]
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SystemName [ABC: Logic synthesis and verification system.]
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PackageName []
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Synopsis [Double floating point number implementation.]
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Author [Alan Mishchenko, Bruno Schmitt]
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Affiliation [UC Berkeley / UFRGS]
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Date [Ver. 1.0. Started - February 11, 2017.]
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Revision []
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***********************************************************************/
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#ifndef ABC__sat__Xdbl__Xdbl_h
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#define ABC__sat__Xdbl__Xdbl_h
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#include "misc/util/abc_global.h"
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ABC_NAMESPACE_HEADER_START
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////////////////////////////////////////////////////////////////////////
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/// STRUCTURE DEFINITIONS ///
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////////////////////////////////////////////////////////////////////////
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/*
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The xdbl floating-point number is represented as a 64-bit unsigned int.
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The number is (2^Exp)*Mnt, where Exp is a 16-bit exponent and Mnt is a
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48-bit mantissa. The decimal point is located between the MSB of Mnt,
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which is always 1, and the remaining 15 digits of Mnt.
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Currently, only positive numbers are represented.
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The range of possible values is [1.0; 2^(2^16-1)*1.111111111111111]
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that is, the smallest possible number is 1.0 and the largest possible
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number is 2^(---16 ones---).(1.---47 ones---)
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Comparison of numbers can be done by comparing the underlying unsigned ints.
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Only addition, multiplication, and division by 2^n are currently implemented.
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*/
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typedef word xdbl;
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static inline word Xdbl_Exp( xdbl a ) { return a >> 48; }
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static inline word Xdbl_Mnt( xdbl a ) { return (a << 16) >> 16; }
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static inline xdbl Xdbl_Create( word Exp, word Mnt ) { assert(!(Exp>>16) && (Mnt>>47)==(word)1); return (Exp<<48) | Mnt; }
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static inline xdbl Xdbl_Const1() { return Xdbl_Create( (word)0, (word)1 << 47 ); }
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static inline xdbl Xdbl_Const2() { return Xdbl_Create( (word)1, (word)1 << 47 ); }
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static inline xdbl Xdbl_Const3() { return Xdbl_Create( (word)1, (word)3 << 46 ); }
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static inline xdbl Xdbl_Const12() { return Xdbl_Create( (word)3, (word)3 << 46 ); }
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static inline xdbl Xdbl_Const1point5() { return Xdbl_Create( (word)0, (word)3 << 46 ); }
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static inline xdbl Xdbl_Const2point5() { return Xdbl_Create( (word)1, (word)5 << 45 ); }
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static inline xdbl Xdbl_Maximum() { return ~(word)0; }
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static inline double Xdbl_ToDouble( xdbl a ) { assert(Xdbl_Exp(a) < 1023); return Abc_Word2Dbl(((Xdbl_Exp(a) + 1023) << 52) | (((a<<17)>>17) << 5)); }
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static inline xdbl Xdbl_FromDouble( double a ) { word A = Abc_Dbl2Word(a); assert(a >= 1.0); return Xdbl_Create((A >> 52)-1023, (((word)1) << 47) | ((A << 12) >> 17)); }
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////////////////////////////////////////////////////////////////////////
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/// FUNCTION DEFINITIONS ///
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////////////////////////////////////////////////////////////////////////
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/**Function*************************************************************
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Synopsis [Adding two floating-point numbers.]
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline xdbl Xdbl_Add( xdbl a, xdbl b )
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{
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word Exp, Mnt;
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if ( a < b ) a ^= b, b ^= a, a ^= b;
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assert( a >= b );
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Mnt = Xdbl_Mnt(a) + (Xdbl_Mnt(b) >> (Xdbl_Exp(a) - Xdbl_Exp(b)));
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Exp = Xdbl_Exp(a);
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if ( Mnt >> 48 ) // new MSB is created
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Exp++, Mnt >>= 1;
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if ( Exp >> 16 ) // overflow
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return Xdbl_Maximum();
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return Xdbl_Create( Exp, Mnt );
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}
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/**Function*************************************************************
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Synopsis [Multiplying two floating-point numbers.]
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline xdbl Xdbl_Mul( xdbl a, xdbl b )
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{
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word Exp, Mnt, MntA, MntB, MntAh, MntBh, MntAl, MntBl;
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if ( a < b ) a ^= b, b ^= a, a ^= b;
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assert( a >= b );
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MntA = Xdbl_Mnt(a);
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MntB = Xdbl_Mnt(b);
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MntAh = MntA>>32;
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MntBh = MntB>>32;
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MntAl = (MntA<<32)>>32;
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MntBl = (MntB<<32)>>32;
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Mnt = ((MntAh * MntBh) << 17) + ((MntAl * MntBl) >> 47) + ((MntAl * MntBh) >> 15) + ((MntAh * MntBl) >> 15);
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Exp = Xdbl_Exp(a) + Xdbl_Exp(b);
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if ( Mnt >> 48 ) // new MSB is created
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Exp++, Mnt >>= 1;
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if ( Exp >> 16 ) // overflow
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return Xdbl_Maximum();
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return Xdbl_Create( Exp, Mnt );
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}
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/**Function*************************************************************
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Synopsis [Dividing floating point number by a degree of 2.]
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Description []
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline xdbl Xdbl_Div( xdbl a, unsigned Deg2 )
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{
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if ( Xdbl_Exp(a) >= (word)Deg2 )
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return Xdbl_Create( Xdbl_Exp(a) - Deg2, Xdbl_Mnt(a) );
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return Xdbl_Const1(); // underflow
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}
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/**Function*************************************************************
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Synopsis [Testing procedure.]
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Description [Helpful link https://www.h-schmidt.net/FloatConverter/IEEE754.html]
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SideEffects []
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SeeAlso []
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***********************************************************************/
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static inline void Xdbl_Test()
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{
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xdbl c1 = Xdbl_Const1();
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xdbl c2 = Xdbl_Const2();
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xdbl c3 = Xdbl_Const3();
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xdbl c12 = Xdbl_Const12();
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xdbl c1p5 = Xdbl_Const1point5();
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xdbl c2p5 = Xdbl_Const2point5();
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xdbl c1_ = Xdbl_FromDouble(1.0);
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xdbl c2_ = Xdbl_FromDouble(2.0);
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xdbl c3_ = Xdbl_FromDouble(3.0);
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xdbl c12_ = Xdbl_FromDouble(12.0);
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xdbl c1p5_ = Xdbl_FromDouble(1.5);
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xdbl c2p5_ = Xdbl_FromDouble(2.5);
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xdbl sum1 = Xdbl_Add(c1, c1p5);
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xdbl mul1 = Xdbl_Mul(c2, c1p5);
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xdbl sum2 = Xdbl_Add(c1p5, c2p5);
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xdbl mul2 = Xdbl_Mul(c1p5, c2p5);
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xdbl a = Xdbl_FromDouble(1.2929725);
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xdbl b = Xdbl_FromDouble(10.28828287);
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xdbl ab = Xdbl_Mul(a, b);
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xdbl ten100 = Xdbl_FromDouble( 1e100 );
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xdbl ten100_ = ABC_CONST(0x014c924d692ca61b);
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assert( ten100 == ten100_ );
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// float f1 = Xdbl_ToDouble(c1);
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// Extra_PrintBinary( stdout, (int *)&c1, 32 ); printf( "\n" );
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// Extra_PrintBinary( stdout, (int *)&f1, 32 ); printf( "\n" );
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printf( "1 = %lf\n", Xdbl_ToDouble(c1) );
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printf( "2 = %lf\n", Xdbl_ToDouble(c2) );
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printf( "3 = %lf\n", Xdbl_ToDouble(c3) );
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printf( "12 = %lf\n", Xdbl_ToDouble(c12) );
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printf( "1.5 = %lf\n", Xdbl_ToDouble(c1p5) );
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printf( "2.5 = %lf\n", Xdbl_ToDouble(c2p5) );
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printf( "Converted 1 = %lf\n", Xdbl_ToDouble(c1_) );
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printf( "Converted 2 = %lf\n", Xdbl_ToDouble(c2_) );
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printf( "Converted 3 = %lf\n", Xdbl_ToDouble(c3_) );
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printf( "Converted 12 = %lf\n", Xdbl_ToDouble(c12_) );
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printf( "Converted 1.5 = %lf\n", Xdbl_ToDouble(c1p5_) );
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printf( "Converted 2.5 = %lf\n", Xdbl_ToDouble(c2p5_) );
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printf( "1.0 + 1.5 = %lf\n", Xdbl_ToDouble(sum1) );
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printf( "2.0 * 1.5 = %lf\n", Xdbl_ToDouble(mul1) );
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printf( "1.5 + 2.5 = %lf\n", Xdbl_ToDouble(sum2) );
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printf( "1.5 * 2.5 = %lf\n", Xdbl_ToDouble(mul2) );
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printf( "12 / 2^2 = %lf\n", Xdbl_ToDouble(Xdbl_Div(c12, 2)) );
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printf( "12 / 2^2 = %lf\n", Xdbl_ToDouble(Xdbl_Div(c12, 2)) );
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printf( "%.16lf * %.16lf = %.16lf (%.16lf)\n", Xdbl_ToDouble(a), Xdbl_ToDouble(b), Xdbl_ToDouble(ab), 1.2929725 * 10.28828287 );
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assert( sum1 == c2p5 );
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assert( mul1 == c3 );
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}
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ABC_NAMESPACE_HEADER_END
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#endif
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