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Konstantin Pavlov (pt) 40533743d7 Added altera cookbook
2015-12-15 22:44:58 +03:00

97 lines
2.6 KiB
C++

// Copyright 2007 Altera Corporation. All rights reserved.
// Altera products are protected under numerous U.S. and foreign patents,
// maskwork rights, copyrights and other intellectual property laws.
//
// This reference design file, and your use thereof, is subject to and governed
// by the terms and conditions of the applicable Altera Reference Design
// License Agreement (either as signed by you or found at www.altera.com). By
// using this reference design file, you indicate your acceptance of such terms
// and conditions between you and Altera Corporation. In the event that you do
// not agree with such terms and conditions, you may not use the reference
// design file and please promptly destroy any copies you have made.
//
// This reference design file is being provided on an "as-is" basis and as an
// accommodation and therefore all warranties, representations or guarantees of
// any kind (whether express, implied or statutory) including, without
// limitation, warranties of merchantability, non-infringement, or fitness for
// a particular purpose, are specifically disclaimed. By making this reference
// design file available, Altera expressly does not recommend, suggest or
// require that this reference design file be used in combination with any
// other product not provided by Altera.
/////////////////////////////////////////////////////////////////////////////
#include <stdio.h>
#include <math.h>
#include <stdlib.h>
int main (void)
{
float f = 0.0;
void * ptr = &f;
unsigned int i = 0;
float tmp_x,tmp_y,sq,orig;
int n = 0;
int max = 100000;
srand (123);
for (n=0; n<max; n++)
{
// select random float val
tmp_x = rand();
tmp_y = rand();
if (tmp_y == 0.0) tmp_y = 1;
f = tmp_x / tmp_y;
i = *((unsigned int *)ptr);
fprintf (stdout,"32'h%08x,",i);
// inverse square root
orig = f;
sq = 1/sqrt(orig);
// Error less than 2 %
tmp_x = sq * 0.98;
tmp_y = sq * 1.02;
f = tmp_x;
i = *((unsigned int *)ptr);
fprintf (stdout,"32'h%08x,",i);
f = tmp_y;
i = *((unsigned int *)ptr);
fprintf (stdout,"32'h%08x, ",i);
// Error less than 5 %
tmp_x = sq * 0.95;
tmp_y = sq * 1.05;
f = tmp_x;
i = *((unsigned int *)ptr);
fprintf (stdout,"32'h%08x,",i);
f = tmp_y;
i = *((unsigned int *)ptr);
fprintf (stdout,"32'h%08x, ",i);
// Error less than 10 %
tmp_x = sq * 0.90;
tmp_y = sq * 1.10;
f = tmp_x;
i = *((unsigned int *)ptr);
fprintf (stdout,"32'h%08x,",i);
f = tmp_y;
i = *((unsigned int *)ptr);
fprintf (stdout,"32'h%08x",i);
if (n != (max-1)) fprintf (stdout,",");
fprintf (stdout,"// invsqrt(%0.4f) = %0.4f\n",orig,sq);
}
return (0);
}