annotate tomsfastmath/src/mul/fp_mul_comba.c @ 646:f10335e5e42f dropbear-tfm

- More asm constraint fixes. Now seems to build OK on 32-bit OS X.
author Matt Johnston <matt@ucc.asn.au>
date Wed, 30 Nov 2011 23:03:47 +0800
parents 8622ee48fab5
children
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1 /* TomsFastMath, a fast ISO C bignum library.
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2 *
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3 * This project is meant to fill in where LibTomMath
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4 * falls short. That is speed ;-)
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5 *
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6 * This project is public domain and free for all purposes.
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7 *
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8 * Tom St Denis, [email protected]
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9 */
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10
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11 /* About this file...
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12
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13 */
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14
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15 #include <tfm.h>
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16
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17 #if defined(TFM_PRESCOTT) && defined(TFM_SSE2)
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18 #undef TFM_SSE2
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19 #define TFM_X86
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20 #endif
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21
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22 /* these are the combas. Worship them. */
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23 #if defined(TFM_X86)
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24 /* Generic x86 optimized code */
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25
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26 /* anything you need at the start */
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27 #define COMBA_START
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28
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29 /* clear the chaining variables */
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30 #define COMBA_CLEAR \
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31 c0 = c1 = c2 = 0;
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32
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33 /* forward the carry to the next digit */
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34 #define COMBA_FORWARD \
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35 do { c0 = c1; c1 = c2; c2 = 0; } while (0);
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36
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37 /* store the first sum */
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38 #define COMBA_STORE(x) \
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39 x = c0;
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40
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41 /* store the second sum [carry] */
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42 #define COMBA_STORE2(x) \
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43 x = c1;
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44
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45 /* anything you need at the end */
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46 #define COMBA_FINI
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47
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48 /* this should multiply i and j */
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49 #define MULADD(i, j) \
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50 do { fp_digit ti = (i); \
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51 fp_digit tj = (j); \
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52 asm( \
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53 "movl %6,%%eax \n\t" \
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54 "mull %7 \n\t" \
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55 "addl %%eax,%0 \n\t" \
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56 "adcl %%edx,%1 \n\t" \
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57 "adcl $0,%2 \n\t" \
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58 :"=r"(c0), "=r"(c1), "=r"(c2): "0"(c0), "1"(c1), "2"(c2), "m"(ti), "m"(tj) :"%eax","%edx","%cc"); } while (0);
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59
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60 #elif defined(TFM_X86_64)
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61 /* x86-64 optimized */
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62
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63 /* anything you need at the start */
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64 #define COMBA_START
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65
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66 /* clear the chaining variables */
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67 #define COMBA_CLEAR \
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68 c0 = c1 = c2 = 0;
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69
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70 /* forward the carry to the next digit */
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71 #define COMBA_FORWARD \
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72 do { c0 = c1; c1 = c2; c2 = 0; } while (0);
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73
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74 /* store the first sum */
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75 #define COMBA_STORE(x) \
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76 x = c0;
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77
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78 /* store the second sum [carry] */
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79 #define COMBA_STORE2(x) \
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80 x = c1;
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81
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82 /* anything you need at the end */
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83 #define COMBA_FINI
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84
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85 /* this should multiply i and j */
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86 #define MULADD(i, j) \
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87 asm ( \
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88 "movq %6,%%rax \n\t" \
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89 "mulq %7 \n\t" \
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90 "addq %%rax,%0 \n\t" \
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91 "adcq %%rdx,%1 \n\t" \
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92 "adcq $0,%2 \n\t" \
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93 :"=r"(c0), "=r"(c1), "=r"(c2): "0"(c0), "1"(c1), "2"(c2), "g"(i), "g"(j) :"%rax","%rdx","%cc");
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94
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95 #elif defined(TFM_SSE2)
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96 /* use SSE2 optimizations */
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97
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98 /* anything you need at the start */
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99 #define COMBA_START
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100
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101 /* clear the chaining variables */
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102 #define COMBA_CLEAR \
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103 c0 = c1 = c2 = 0;
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104
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105 /* forward the carry to the next digit */
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106 #define COMBA_FORWARD \
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107 do { c0 = c1; c1 = c2; c2 = 0; } while (0);
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108
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109 /* store the first sum */
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110 #define COMBA_STORE(x) \
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111 x = c0;
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112
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113 /* store the second sum [carry] */
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114 #define COMBA_STORE2(x) \
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115 x = c1;
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116
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117 /* anything you need at the end */
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118 #define COMBA_FINI \
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119 asm("emms");
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120
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121 /* this should multiply i and j */
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122 #define MULADD(i, j) \
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123 asm( \
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124 "movd %6,%%mm0 \n\t" \
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125 "movd %7,%%mm1 \n\t" \
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126 "pmuludq %%mm1,%%mm0\n\t" \
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127 "movd %%mm0,%%eax \n\t" \
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128 "psrlq $32,%%mm0 \n\t" \
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129 "addl %%eax,%0 \n\t" \
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130 "movd %%mm0,%%eax \n\t" \
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diff changeset
131 "adcl %%eax,%1 \n\t" \
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132 "adcl $0,%2 \n\t" \
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133 :"=r"(c0), "=r"(c1), "=r"(c2): "0"(c0), "1"(c1), "2"(c2), "m"(i), "m"(j) :"%eax","%cc");
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134
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135 #elif defined(TFM_ARM)
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136 /* ARM code */
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137
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138 #define COMBA_START
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139
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140 #define COMBA_CLEAR \
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141 c0 = c1 = c2 = 0;
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142
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143 #define COMBA_FORWARD \
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144 do { c0 = c1; c1 = c2; c2 = 0; } while (0);
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145
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146 #define COMBA_STORE(x) \
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147 x = c0;
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148
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149 #define COMBA_STORE2(x) \
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150 x = c1;
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151
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152 #define COMBA_FINI
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153
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154 #define MULADD(i, j) \
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155 asm( \
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156 " UMULL r0,r1,%6,%7 \n\t" \
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diff changeset
157 " ADDS %0,%0,r0 \n\t" \
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158 " ADCS %1,%1,r1 \n\t" \
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159 " ADC %2,%2,#0 \n\t" \
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160 :"=r"(c0), "=r"(c1), "=r"(c2) : "0"(c0), "1"(c1), "2"(c2), "r"(i), "r"(j) : "r0", "r1", "%cc");
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161
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162 #elif defined(TFM_PPC32)
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163 /* For 32-bit PPC */
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164
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165 #define COMBA_START
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166
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167 #define COMBA_CLEAR \
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168 c0 = c1 = c2 = 0;
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169
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170 #define COMBA_FORWARD \
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171 do { c0 = c1; c1 = c2; c2 = 0; } while (0);
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172
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173 #define COMBA_STORE(x) \
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174 x = c0;
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175
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176 #define COMBA_STORE2(x) \
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177 x = c1;
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178
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179 #define COMBA_FINI
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180
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181 /* untested: will mulhwu change the flags? Docs say no */
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182 #define MULADD(i, j) \
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183 asm( \
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184 " mullw 16,%6,%7 \n\t" \
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185 " addc %0,%0,16 \n\t" \
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186 " mulhwu 16,%6,%7 \n\t" \
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187 " adde %1,%1,16 \n\t" \
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188 " addze %2,%2 \n\t" \
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189 :"=r"(c0), "=r"(c1), "=r"(c2):"0"(c0), "1"(c1), "2"(c2), "r"(i), "r"(j):"16");
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190
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191 #elif defined(TFM_PPC64)
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diff changeset
192 /* For 64-bit PPC */
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193
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194 #define COMBA_START
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195
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196 #define COMBA_CLEAR \
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197 c0 = c1 = c2 = 0;
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198
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diff changeset
199 #define COMBA_FORWARD \
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200 do { c0 = c1; c1 = c2; c2 = 0; } while (0);
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diff changeset
201
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diff changeset
202 #define COMBA_STORE(x) \
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203 x = c0;
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diff changeset
204
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205 #define COMBA_STORE2(x) \
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diff changeset
206 x = c1;
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diff changeset
207
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208 #define COMBA_FINI
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diff changeset
209
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diff changeset
210 /* untested: will mulhdu change the flags? Docs say no */
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diff changeset
211 #define MULADD(i, j) \
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diff changeset
212 asm( \
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diff changeset
213 " mulld r16,%6,%7 \n\t" \
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diff changeset
214 " addc %0,%0,16 \n\t" \
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parents:
diff changeset
215 " mulhdu r16,%6,%7 \n\t" \
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parents:
diff changeset
216 " adde %1,%1,16 \n\t" \
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217 " addze %2,%2 \n\t" \
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218 :"=r"(c0), "=r"(c1), "=r"(c2):"0"(c0), "1"(c1), "2"(c2), "r"(i), "r"(j):"r16");
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219
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220 #elif defined(TFM_AVR32)
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221
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222 /* ISO C code */
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223
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224 #define COMBA_START
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225
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226 #define COMBA_CLEAR \
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227 c0 = c1 = c2 = 0;
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228
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229 #define COMBA_FORWARD \
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230 do { c0 = c1; c1 = c2; c2 = 0; } while (0);
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231
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232 #define COMBA_STORE(x) \
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233 x = c0;
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234
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235 #define COMBA_STORE2(x) \
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236 x = c1;
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237
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238 #define COMBA_FINI
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239
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240 #define MULADD(i, j) \
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241 asm( \
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242 " mulu.d r2,%6,%7 \n\t"\
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243 " add %0,r2 \n\t"\
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244 " adc %1,%1,r3 \n\t"\
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245 " acr %2 \n\t"\
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246 :"=r"(c0), "=r"(c1), "=r"(c2):"0"(c0), "1"(c1), "2"(c2), "r"(i), "r"(j):"r2","r3");
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247
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248 #elif defined(TFM_MIPS)
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249
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250 #define COMBA_START
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251
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252 #define COMBA_CLEAR \
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253 c0 = c1 = c2 = 0;
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254
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255 #define COMBA_FORWARD \
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256 do { c0 = c1; c1 = c2; c2 = 0; } while (0);
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257
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258 #define COMBA_STORE(x) \
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259 x = c0;
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260
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261 #define COMBA_STORE2(x) \
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262 x = c1;
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263
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264 #define COMBA_FINI
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265
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266 #define MULADD(i, j) \
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267 asm( \
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268 " multu %6,%7 \n\t" \
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269 " mflo $12 \n\t" \
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270 " mfhi $13 \n\t" \
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271 " addu %0,%0,$12 \n\t" \
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272 " sltu $12,%0,$12 \n\t" \
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273 " addu %1,%1,$13 \n\t" \
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274 " sltu $13,%1,$13 \n\t" \
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275 " addu %1,%1,$12 \n\t" \
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276 " sltu $12,%1,$12 \n\t" \
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277 " addu %2,%2,$13 \n\t" \
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278 " addu %2,%2,$12 \n\t" \
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279 :"=r"(c0), "=r"(c1), "=r"(c2):"0"(c0), "1"(c1), "2"(c2), "r"(i), "r"(j):"$12","$13");
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280
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281 #else
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282 /* ISO C code */
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283
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284 #define COMBA_START
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285
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286 #define COMBA_CLEAR \
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287 c0 = c1 = c2 = 0;
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288
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289 #define COMBA_FORWARD \
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290 do { c0 = c1; c1 = c2; c2 = 0; } while (0);
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291
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292 #define COMBA_STORE(x) \
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293 x = c0;
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294
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295 #define COMBA_STORE2(x) \
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296 x = c1;
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297
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298 #define COMBA_FINI
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299
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300 #define MULADD(i, j) \
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301 do { fp_word t; \
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302 t = (fp_word)c0 + ((fp_word)i) * ((fp_word)j); c0 = t; \
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303 t = (fp_word)c1 + (t >> DIGIT_BIT); c1 = t; c2 += t >> DIGIT_BIT; \
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304 } while (0);
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305
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306 #endif
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307
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308 #ifndef TFM_DEFINES
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309
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310 /* generic PxQ multiplier */
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311 void fp_mul_comba(fp_int *A, fp_int *B, fp_int *C)
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312 {
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313 int ix, iy, iz, tx, ty, pa;
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314 fp_digit c0, c1, c2, *tmpx, *tmpy;
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315 fp_int tmp, *dst;
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316
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317 COMBA_START;
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318 COMBA_CLEAR;
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319
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320 /* get size of output and trim */
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321 pa = A->used + B->used;
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322 if (pa >= FP_SIZE) {
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323 pa = FP_SIZE-1;
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324 }
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325
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326 if (A == C || B == C) {
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327 fp_zero(&tmp);
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328 dst = &tmp;
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329 } else {
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330 fp_zero(C);
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331 dst = C;
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332 }
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333
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334 for (ix = 0; ix < pa; ix++) {
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335 /* get offsets into the two bignums */
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336 ty = MIN(ix, B->used-1);
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337 tx = ix - ty;
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338
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339 /* setup temp aliases */
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340 tmpx = A->dp + tx;
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341 tmpy = B->dp + ty;
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342
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343 /* this is the number of times the loop will iterrate, essentially its
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344 while (tx++ < a->used && ty-- >= 0) { ... }
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345 */
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346 iy = MIN(A->used-tx, ty+1);
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347
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348 /* execute loop */
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349 COMBA_FORWARD;
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350 for (iz = 0; iz < iy; ++iz) {
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351 MULADD(*tmpx++, *tmpy--);
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352 }
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353
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354 /* store term */
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355 COMBA_STORE(dst->dp[ix]);
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356 }
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357 COMBA_FINI;
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358
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359 dst->used = pa;
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360 dst->sign = A->sign ^ B->sign;
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361 fp_clamp(dst);
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362 fp_copy(dst, C);
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363 }
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364
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365 #endif
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366
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367 /* $Source$ */
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368 /* $Revision$ */
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369 /* $Date$ */
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370