1 | /* e_fmodf.c -- float version of e_fmod.c.
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2 | * Conversion to float by Ian Lance Taylor, Cygnus Support, ian@cygnus.com.
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3 | */
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4 |
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5 | /*
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6 | * ====================================================
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7 | * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved.
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8 | *
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9 | * Developed at SunPro, a Sun Microsystems, Inc. business.
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10 | * Permission to use, copy, modify, and distribute this
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11 | * software is freely granted, provided that this notice
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12 | * is preserved.
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13 | * ====================================================
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14 | */
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15 |
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16 | #ifndef lint
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17 | static char rcsid[] = "$FreeBSD: src/lib/msun/src/e_fmodf.c,v 1.6 2002/05/28 17:03:12 alfred Exp $";
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18 | #endif
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19 |
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20 | /*
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21 | * __ieee754_fmodf(x,y)
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22 | * Return x mod y in exact arithmetic
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23 | * Method: shift and subtract
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24 | */
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25 |
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26 | #include "math.h"
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27 | #include "math_private.h"
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28 |
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29 | static const float one = 1.0, Zero[] = {0.0, -0.0,};
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30 |
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31 | float
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32 | __ieee754_fmodf(float x, float y)
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33 | {
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34 | int32_t n,hx,hy,hz,ix,iy,sx,i;
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35 |
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36 | GET_FLOAT_WORD(hx,x);
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37 | GET_FLOAT_WORD(hy,y);
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38 | sx = hx&0x80000000; /* sign of x */
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39 | hx ^=sx; /* |x| */
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40 | hy &= 0x7fffffff; /* |y| */
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41 |
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42 | /* purge off exception values */
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43 | if(hy==0||(hx>=0x7f800000)|| /* y=0,or x not finite */
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44 | (hy>0x7f800000)) /* or y is NaN */
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45 | return (x*y)/(x*y);
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46 | if(hx<hy) return x; /* |x|<|y| return x */
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47 | if(hx==hy)
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48 | return Zero[(u_int32_t)sx>>31]; /* |x|=|y| return x*0*/
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49 |
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50 | /* determine ix = ilogb(x) */
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51 | if(hx<0x00800000) { /* subnormal x */
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52 | for (ix = -126,i=(hx<<8); i>0; i<<=1) ix -=1;
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53 | } else ix = (hx>>23)-127;
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54 |
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55 | /* determine iy = ilogb(y) */
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56 | if(hy<0x00800000) { /* subnormal y */
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57 | for (iy = -126,i=(hy<<8); i>=0; i<<=1) iy -=1;
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58 | } else iy = (hy>>23)-127;
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59 |
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60 | /* set up {hx,lx}, {hy,ly} and align y to x */
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61 | if(ix >= -126)
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62 | hx = 0x00800000|(0x007fffff&hx);
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63 | else { /* subnormal x, shift x to normal */
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64 | n = -126-ix;
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65 | hx = hx<<n;
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66 | }
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67 | if(iy >= -126)
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68 | hy = 0x00800000|(0x007fffff&hy);
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69 | else { /* subnormal y, shift y to normal */
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70 | n = -126-iy;
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71 | hy = hy<<n;
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72 | }
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73 |
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74 | /* fix point fmod */
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75 | n = ix - iy;
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76 | while(n--) {
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77 | hz=hx-hy;
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78 | if(hz<0){hx = hx+hx;}
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79 | else {
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80 | if(hz==0) /* return sign(x)*0 */
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81 | return Zero[(u_int32_t)sx>>31];
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82 | hx = hz+hz;
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83 | }
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84 | }
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85 | hz=hx-hy;
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86 | if(hz>=0) {hx=hz;}
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87 |
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88 | /* convert back to floating value and restore the sign */
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89 | if(hx==0) /* return sign(x)*0 */
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90 | return Zero[(u_int32_t)sx>>31];
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91 | while(hx<0x00800000) { /* normalize x */
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92 | hx = hx+hx;
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93 | iy -= 1;
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94 | }
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95 | if(iy>= -126) { /* normalize output */
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96 | hx = ((hx-0x00800000)|((iy+127)<<23));
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97 | SET_FLOAT_WORD(x,hx|sx);
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98 | } else { /* subnormal output */
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99 | n = -126 - iy;
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100 | hx >>= n;
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101 | SET_FLOAT_WORD(x,hx|sx);
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102 | x *= one; /* create necessary signal */
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103 | }
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104 | return x; /* exact output */
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105 | }
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