[12c6f2d] | 1 | /*
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| 2 | * Copyright (C) 2005 Josef Cejka
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| 3 | * All rights reserved.
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| 4 | *
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| 5 | * Redistribution and use in source and binary forms, with or without
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| 6 | * modification, are permitted provided that the following conditions
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| 7 | * are met:
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| 8 | *
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| 9 | * - Redistributions of source code must retain the above copyright
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| 10 | * notice, this list of conditions and the following disclaimer.
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| 11 | * - Redistributions in binary form must reproduce the above copyright
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| 12 | * notice, this list of conditions and the following disclaimer in the
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| 13 | * documentation and/or other materials provided with the distribution.
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| 14 | * - The name of the author may not be used to endorse or promote products
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| 15 | * derived from this software without specific prior written permission.
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| 16 | *
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| 17 | * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
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| 18 | * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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| 19 | * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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| 20 | * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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| 21 | * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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| 22 | * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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| 23 | * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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| 24 | * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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| 25 | * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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| 26 | * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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| 27 | */
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| 28 |
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[a96c570] | 29 | #include<sftypes.h>
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| 30 | #include<sub.h>
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| 31 | #include<comparison.h>
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[12c6f2d] | 32 |
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| 33 | /** Subtract two float32 numbers with same signs
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| 34 | */
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| 35 | float32 subFloat32(float32 a, float32 b)
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| 36 | {
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| 37 | int expdiff;
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[aa59fa0] | 38 | uint32_t exp1, exp2, frac1, frac2;
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[12c6f2d] | 39 | float32 result;
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| 40 |
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| 41 | result.f = 0;
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| 42 |
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[a96c570] | 43 | expdiff = a.parts.exp - b.parts.exp;
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[1266543] | 44 | if ((expdiff < 0 ) || ((expdiff == 0) && (a.parts.fraction < b.parts.fraction))) {
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[12c6f2d] | 45 | if (isFloat32NaN(b)) {
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[1266543] | 46 | /* TODO: fix SigNaN */
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[12c6f2d] | 47 | if (isFloat32SigNaN(b)) {
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| 48 | };
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| 49 | return b;
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| 50 | };
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| 51 |
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[a96c570] | 52 | if (b.parts.exp == FLOAT32_MAX_EXPONENT) {
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| 53 | b.parts.sign = !b.parts.sign; /* num -(+-inf) = -+inf */
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[12c6f2d] | 54 | return b;
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| 55 | }
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| 56 |
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| 57 | result.parts.sign = !a.parts.sign;
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| 58 |
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[1266543] | 59 | frac1 = b.parts.fraction;
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[a96c570] | 60 | exp1 = b.parts.exp;
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[1266543] | 61 | frac2 = a.parts.fraction;
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[a96c570] | 62 | exp2 = a.parts.exp;
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| 63 | expdiff *= -1;
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[12c6f2d] | 64 | } else {
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| 65 | if (isFloat32NaN(a)) {
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[1266543] | 66 | /* TODO: fix SigNaN */
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[a96c570] | 67 | if (isFloat32SigNaN(a) || isFloat32SigNaN(b)) {
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[12c6f2d] | 68 | };
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| 69 | return a;
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| 70 | };
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| 71 |
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[a96c570] | 72 | if (a.parts.exp == FLOAT32_MAX_EXPONENT) {
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| 73 | if (b.parts.exp == FLOAT32_MAX_EXPONENT) {
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[12c6f2d] | 74 | /* inf - inf => nan */
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[1266543] | 75 | /* TODO: fix exception */
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[12c6f2d] | 76 | result.binary = FLOAT32_NAN;
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| 77 | return result;
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| 78 | };
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| 79 | return a;
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| 80 | }
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| 81 |
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| 82 | result.parts.sign = a.parts.sign;
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| 83 |
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[1266543] | 84 | frac1 = a.parts.fraction;
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[a96c570] | 85 | exp1 = a.parts.exp;
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[1266543] | 86 | frac2 = b.parts.fraction;
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[a96c570] | 87 | exp2 = b.parts.exp;
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[12c6f2d] | 88 | };
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| 89 |
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[a96c570] | 90 | if (exp1 == 0) {
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[1266543] | 91 | /* both are denormalized */
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| 92 | result.parts.fraction = frac1-frac2;
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| 93 | if (result.parts.fraction > frac1) {
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| 94 | /* TODO: underflow exception */
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[12c6f2d] | 95 | return result;
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| 96 | };
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[a96c570] | 97 | result.parts.exp = 0;
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[12c6f2d] | 98 | return result;
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| 99 | };
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[a96c570] | 100 |
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| 101 | /* add hidden bit */
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[1266543] | 102 | frac1 |= FLOAT32_HIDDEN_BIT_MASK;
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[a96c570] | 103 |
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| 104 | if (exp2 == 0) {
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| 105 | /* denormalized */
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| 106 | --expdiff;
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| 107 | } else {
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| 108 | /* normalized */
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[1266543] | 109 | frac2 |= FLOAT32_HIDDEN_BIT_MASK;
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[a96c570] | 110 | };
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| 111 |
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| 112 | /* create some space for rounding */
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[1266543] | 113 | frac1 <<= 6;
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| 114 | frac2 <<= 6;
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[a96c570] | 115 |
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[1266543] | 116 | if (expdiff > FLOAT32_FRACTION_SIZE + 1) {
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[a96c570] | 117 | goto done;
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| 118 | };
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[12c6f2d] | 119 |
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[1266543] | 120 | frac1 = frac1 - (frac2 >> expdiff);
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[a96c570] | 121 | done:
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[1266543] | 122 | /* TODO: find first nonzero digit and shift result and detect possibly underflow */
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| 123 | while ((exp1 > 0) && (!(frac1 & (FLOAT32_HIDDEN_BIT_MASK << 6 )))) {
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[a96c570] | 124 | --exp1;
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[1266543] | 125 | frac1 <<= 1;
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| 126 | /* TODO: fix underflow - frac1 == 0 does not necessary means underflow... */
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[a96c570] | 127 | };
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[12c6f2d] | 128 |
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[1266543] | 129 | /* rounding - if first bit after fraction is set then round up */
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| 130 | frac1 += 0x20;
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[a96c570] | 131 |
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[1266543] | 132 | if (frac1 & (FLOAT32_HIDDEN_BIT_MASK << 7)) {
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[a96c570] | 133 | ++exp1;
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[1266543] | 134 | frac1 >>= 1;
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[a96c570] | 135 | };
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| 136 |
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| 137 | /*Clear hidden bit and shift */
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[1266543] | 138 | result.parts.fraction = ((frac1 >> 6) & (~FLOAT32_HIDDEN_BIT_MASK));
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[a96c570] | 139 | result.parts.exp = exp1;
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| 140 |
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| 141 | return result;
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| 142 | }
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| 143 |
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| 144 | /** Subtract two float64 numbers with same signs
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| 145 | */
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| 146 | float64 subFloat64(float64 a, float64 b)
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| 147 | {
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| 148 | int expdiff;
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[aa59fa0] | 149 | uint32_t exp1, exp2;
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| 150 | uint64_t frac1, frac2;
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[a96c570] | 151 | float64 result;
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| 152 |
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| 153 | result.d = 0;
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| 154 |
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| 155 | expdiff = a.parts.exp - b.parts.exp;
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[1266543] | 156 | if ((expdiff < 0 ) || ((expdiff == 0) && (a.parts.fraction < b.parts.fraction))) {
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[a96c570] | 157 | if (isFloat64NaN(b)) {
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[1266543] | 158 | /* TODO: fix SigNaN */
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[a96c570] | 159 | if (isFloat64SigNaN(b)) {
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| 160 | };
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| 161 | return b;
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| 162 | };
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| 163 |
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| 164 | if (b.parts.exp == FLOAT64_MAX_EXPONENT) {
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| 165 | b.parts.sign = !b.parts.sign; /* num -(+-inf) = -+inf */
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| 166 | return b;
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| 167 | }
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| 168 |
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| 169 | result.parts.sign = !a.parts.sign;
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| 170 |
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[1266543] | 171 | frac1 = b.parts.fraction;
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[a96c570] | 172 | exp1 = b.parts.exp;
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[1266543] | 173 | frac2 = a.parts.fraction;
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[a96c570] | 174 | exp2 = a.parts.exp;
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| 175 | expdiff *= -1;
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| 176 | } else {
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| 177 | if (isFloat64NaN(a)) {
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[1266543] | 178 | /* TODO: fix SigNaN */
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[a96c570] | 179 | if (isFloat64SigNaN(a) || isFloat64SigNaN(b)) {
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| 180 | };
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| 181 | return a;
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| 182 | };
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| 183 |
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| 184 | if (a.parts.exp == FLOAT64_MAX_EXPONENT) {
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| 185 | if (b.parts.exp == FLOAT64_MAX_EXPONENT) {
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| 186 | /* inf - inf => nan */
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[1266543] | 187 | /* TODO: fix exception */
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[a96c570] | 188 | result.binary = FLOAT64_NAN;
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| 189 | return result;
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| 190 | };
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| 191 | return a;
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| 192 | }
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| 193 |
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| 194 | result.parts.sign = a.parts.sign;
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| 195 |
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[1266543] | 196 | frac1 = a.parts.fraction;
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[a96c570] | 197 | exp1 = a.parts.exp;
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[1266543] | 198 | frac2 = b.parts.fraction;
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[a96c570] | 199 | exp2 = b.parts.exp;
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| 200 | };
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[12c6f2d] | 201 |
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[a96c570] | 202 | if (exp1 == 0) {
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[1266543] | 203 | /* both are denormalized */
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| 204 | result.parts.fraction = frac1 - frac2;
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| 205 | if (result.parts.fraction > frac1) {
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| 206 | /* TODO: underflow exception */
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[a96c570] | 207 | return result;
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| 208 | };
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| 209 | result.parts.exp = 0;
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| 210 | return result;
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| 211 | };
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| 212 |
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| 213 | /* add hidden bit */
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[1266543] | 214 | frac1 |= FLOAT64_HIDDEN_BIT_MASK;
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[12c6f2d] | 215 |
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[a96c570] | 216 | if (exp2 == 0) {
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| 217 | /* denormalized */
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[12c6f2d] | 218 | --expdiff;
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| 219 | } else {
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[a96c570] | 220 | /* normalized */
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[1266543] | 221 | frac2 |= FLOAT64_HIDDEN_BIT_MASK;
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[12c6f2d] | 222 | };
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| 223 |
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[a96c570] | 224 | /* create some space for rounding */
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[1266543] | 225 | frac1 <<= 6;
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| 226 | frac2 <<= 6;
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[a96c570] | 227 |
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[1266543] | 228 | if (expdiff > FLOAT64_FRACTION_SIZE + 1) {
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[12c6f2d] | 229 | goto done;
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| 230 | };
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| 231 |
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[1266543] | 232 | frac1 = frac1 - (frac2 >> expdiff);
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[12c6f2d] | 233 | done:
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[1266543] | 234 | /* TODO: find first nonzero digit and shift result and detect possibly underflow */
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| 235 | while ((exp1 > 0) && (!(frac1 & (FLOAT64_HIDDEN_BIT_MASK << 6 )))) {
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[a96c570] | 236 | --exp1;
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[1266543] | 237 | frac1 <<= 1;
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| 238 | /* TODO: fix underflow - frac1 == 0 does not necessary means underflow... */
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[12c6f2d] | 239 | };
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| 240 |
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[1266543] | 241 | /* rounding - if first bit after fraction is set then round up */
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| 242 | frac1 += 0x20;
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[12c6f2d] | 243 |
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[1266543] | 244 | if (frac1 & (FLOAT64_HIDDEN_BIT_MASK << 7)) {
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[12c6f2d] | 245 | ++exp1;
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[1266543] | 246 | frac1 >>= 1;
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[12c6f2d] | 247 | };
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| 248 |
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[a96c570] | 249 | /*Clear hidden bit and shift */
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[1266543] | 250 | result.parts.fraction = ((frac1 >> 6) & (~FLOAT64_HIDDEN_BIT_MASK));
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[12c6f2d] | 251 | result.parts.exp = exp1;
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| 252 |
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| 253 | return result;
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[a96c570] | 254 | }
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[12c6f2d] | 255 |
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