1 | /*
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2 | * Copyright 1995-2018 The OpenSSL Project Authors. All Rights Reserved.
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3 | *
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4 | * Licensed under the OpenSSL license (the "License"). You may not use
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5 | * this file except in compliance with the License. You can obtain a copy
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6 | * in the file LICENSE in the source distribution or at
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7 | * https://www.openssl.org/source/license.html
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8 | */
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9 |
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10 | #include <stdio.h>
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11 | #include <limits.h>
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12 | #include "crypto/ctype.h"
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13 | #include "internal/cryptlib.h"
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14 | #include <openssl/buffer.h>
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15 | #include <openssl/asn1.h>
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16 | #include <openssl/objects.h>
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17 | #include <openssl/bn.h>
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18 | #include "crypto/asn1.h"
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19 | #include "asn1_local.h"
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20 |
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21 | int i2d_ASN1_OBJECT(const ASN1_OBJECT *a, unsigned char **pp)
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22 | {
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23 | unsigned char *p, *allocated = NULL;
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24 | int objsize;
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25 |
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26 | if ((a == NULL) || (a->data == NULL))
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27 | return 0;
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28 |
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29 | objsize = ASN1_object_size(0, a->length, V_ASN1_OBJECT);
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30 | if (pp == NULL || objsize == -1)
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31 | return objsize;
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32 |
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33 | if (*pp == NULL) {
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34 | if ((p = allocated = OPENSSL_malloc(objsize)) == NULL) {
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35 | ASN1err(ASN1_F_I2D_ASN1_OBJECT, ERR_R_MALLOC_FAILURE);
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36 | return 0;
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37 | }
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38 | } else {
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39 | p = *pp;
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40 | }
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41 |
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42 | ASN1_put_object(&p, 0, a->length, V_ASN1_OBJECT, V_ASN1_UNIVERSAL);
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43 | memcpy(p, a->data, a->length);
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44 |
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45 | /*
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46 | * If a new buffer was allocated, just return it back.
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47 | * If not, return the incremented buffer pointer.
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48 | */
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49 | *pp = allocated != NULL ? allocated : p + a->length;
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50 | return objsize;
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51 | }
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52 |
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53 | int a2d_ASN1_OBJECT(unsigned char *out, int olen, const char *buf, int num)
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54 | {
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55 | int i, first, len = 0, c, use_bn;
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56 | char ftmp[24], *tmp = ftmp;
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57 | int tmpsize = sizeof(ftmp);
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58 | const char *p;
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59 | unsigned long l;
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60 | BIGNUM *bl = NULL;
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61 |
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62 | if (num == 0)
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63 | return 0;
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64 | else if (num == -1)
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65 | num = strlen(buf);
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66 |
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67 | p = buf;
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68 | c = *(p++);
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69 | num--;
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70 | if ((c >= '0') && (c <= '2')) {
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71 | first = c - '0';
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72 | } else {
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73 | ASN1err(ASN1_F_A2D_ASN1_OBJECT, ASN1_R_FIRST_NUM_TOO_LARGE);
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74 | goto err;
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75 | }
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76 |
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77 | if (num <= 0) {
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78 | ASN1err(ASN1_F_A2D_ASN1_OBJECT, ASN1_R_MISSING_SECOND_NUMBER);
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79 | goto err;
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80 | }
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81 | c = *(p++);
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82 | num--;
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83 | for (;;) {
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84 | if (num <= 0)
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85 | break;
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86 | if ((c != '.') && (c != ' ')) {
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87 | ASN1err(ASN1_F_A2D_ASN1_OBJECT, ASN1_R_INVALID_SEPARATOR);
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88 | goto err;
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89 | }
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90 | l = 0;
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91 | use_bn = 0;
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92 | for (;;) {
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93 | if (num <= 0)
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94 | break;
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95 | num--;
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96 | c = *(p++);
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97 | if ((c == ' ') || (c == '.'))
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98 | break;
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99 | if (!ossl_isdigit(c)) {
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100 | ASN1err(ASN1_F_A2D_ASN1_OBJECT, ASN1_R_INVALID_DIGIT);
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101 | goto err;
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102 | }
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103 | if (!use_bn && l >= ((ULONG_MAX - 80) / 10L)) {
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104 | use_bn = 1;
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105 | if (bl == NULL)
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106 | bl = BN_new();
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107 | if (bl == NULL || !BN_set_word(bl, l))
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108 | goto err;
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109 | }
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110 | if (use_bn) {
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111 | if (!BN_mul_word(bl, 10L)
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112 | || !BN_add_word(bl, c - '0'))
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113 | goto err;
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114 | } else
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115 | l = l * 10L + (long)(c - '0');
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116 | }
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117 | if (len == 0) {
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118 | if ((first < 2) && (l >= 40)) {
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119 | ASN1err(ASN1_F_A2D_ASN1_OBJECT,
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120 | ASN1_R_SECOND_NUMBER_TOO_LARGE);
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121 | goto err;
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122 | }
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123 | if (use_bn) {
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124 | if (!BN_add_word(bl, first * 40))
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125 | goto err;
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126 | } else
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127 | l += (long)first *40;
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128 | }
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129 | i = 0;
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130 | if (use_bn) {
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131 | int blsize;
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132 | blsize = BN_num_bits(bl);
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133 | blsize = (blsize + 6) / 7;
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134 | if (blsize > tmpsize) {
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135 | if (tmp != ftmp)
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136 | OPENSSL_free(tmp);
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137 | tmpsize = blsize + 32;
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138 | tmp = OPENSSL_malloc(tmpsize);
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139 | if (tmp == NULL)
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140 | goto err;
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141 | }
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142 | while (blsize--) {
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143 | BN_ULONG t = BN_div_word(bl, 0x80L);
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144 | if (t == (BN_ULONG)-1)
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145 | goto err;
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146 | tmp[i++] = (unsigned char)t;
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147 | }
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148 | } else {
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149 |
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150 | for (;;) {
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151 | tmp[i++] = (unsigned char)l & 0x7f;
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152 | l >>= 7L;
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153 | if (l == 0L)
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154 | break;
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155 | }
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156 |
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157 | }
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158 | if (out != NULL) {
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159 | if (len + i > olen) {
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160 | ASN1err(ASN1_F_A2D_ASN1_OBJECT, ASN1_R_BUFFER_TOO_SMALL);
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161 | goto err;
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162 | }
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163 | while (--i > 0)
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164 | out[len++] = tmp[i] | 0x80;
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165 | out[len++] = tmp[0];
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166 | } else
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167 | len += i;
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168 | }
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169 | if (tmp != ftmp)
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170 | OPENSSL_free(tmp);
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171 | BN_free(bl);
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172 | return len;
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173 | err:
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174 | if (tmp != ftmp)
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175 | OPENSSL_free(tmp);
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176 | BN_free(bl);
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177 | return 0;
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178 | }
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179 |
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180 | int i2t_ASN1_OBJECT(char *buf, int buf_len, const ASN1_OBJECT *a)
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181 | {
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182 | return OBJ_obj2txt(buf, buf_len, a, 0);
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183 | }
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184 |
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185 | int i2a_ASN1_OBJECT(BIO *bp, const ASN1_OBJECT *a)
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186 | {
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187 | char buf[80], *p = buf;
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188 | int i;
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189 |
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190 | if ((a == NULL) || (a->data == NULL))
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191 | return BIO_write(bp, "NULL", 4);
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192 | i = i2t_ASN1_OBJECT(buf, sizeof(buf), a);
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193 | if (i > (int)(sizeof(buf) - 1)) {
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194 | if ((p = OPENSSL_malloc(i + 1)) == NULL) {
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195 | ASN1err(ASN1_F_I2A_ASN1_OBJECT, ERR_R_MALLOC_FAILURE);
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196 | return -1;
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197 | }
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198 | i2t_ASN1_OBJECT(p, i + 1, a);
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199 | }
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200 | if (i <= 0) {
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201 | i = BIO_write(bp, "<INVALID>", 9);
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202 | i += BIO_dump(bp, (const char *)a->data, a->length);
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203 | return i;
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204 | }
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205 | BIO_write(bp, p, i);
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206 | if (p != buf)
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207 | OPENSSL_free(p);
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208 | return i;
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209 | }
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210 |
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211 | ASN1_OBJECT *d2i_ASN1_OBJECT(ASN1_OBJECT **a, const unsigned char **pp,
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212 | long length)
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213 | {
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214 | const unsigned char *p;
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215 | long len;
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216 | int tag, xclass;
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217 | int inf, i;
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218 | ASN1_OBJECT *ret = NULL;
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219 | p = *pp;
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220 | inf = ASN1_get_object(&p, &len, &tag, &xclass, length);
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221 | if (inf & 0x80) {
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222 | i = ASN1_R_BAD_OBJECT_HEADER;
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223 | goto err;
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224 | }
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225 |
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226 | if (tag != V_ASN1_OBJECT) {
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227 | i = ASN1_R_EXPECTING_AN_OBJECT;
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228 | goto err;
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229 | }
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230 | ret = c2i_ASN1_OBJECT(a, &p, len);
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231 | if (ret)
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232 | *pp = p;
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233 | return ret;
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234 | err:
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235 | ASN1err(ASN1_F_D2I_ASN1_OBJECT, i);
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236 | return NULL;
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237 | }
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238 |
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239 | ASN1_OBJECT *c2i_ASN1_OBJECT(ASN1_OBJECT **a, const unsigned char **pp,
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240 | long len)
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241 | {
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242 | ASN1_OBJECT *ret = NULL, tobj;
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243 | const unsigned char *p;
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244 | unsigned char *data;
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245 | int i, length;
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246 |
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247 | /*
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248 | * Sanity check OID encoding. Need at least one content octet. MSB must
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249 | * be clear in the last octet. can't have leading 0x80 in subidentifiers,
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250 | * see: X.690 8.19.2
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251 | */
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252 | if (len <= 0 || len > INT_MAX || pp == NULL || (p = *pp) == NULL ||
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253 | p[len - 1] & 0x80) {
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254 | ASN1err(ASN1_F_C2I_ASN1_OBJECT, ASN1_R_INVALID_OBJECT_ENCODING);
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255 | return NULL;
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256 | }
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257 | /* Now 0 < len <= INT_MAX, so the cast is safe. */
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258 | length = (int)len;
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259 | /*
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260 | * Try to lookup OID in table: these are all valid encodings so if we get
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261 | * a match we know the OID is valid.
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262 | */
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263 | tobj.nid = NID_undef;
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264 | tobj.data = p;
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265 | tobj.length = length;
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266 | tobj.flags = 0;
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267 | i = OBJ_obj2nid(&tobj);
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268 | if (i != NID_undef) {
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269 | /*
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270 | * Return shared registered OID object: this improves efficiency
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271 | * because we don't have to return a dynamically allocated OID
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272 | * and NID lookups can use the cached value.
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273 | */
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274 | ret = OBJ_nid2obj(i);
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275 | if (a) {
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276 | ASN1_OBJECT_free(*a);
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277 | *a = ret;
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278 | }
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279 | *pp += len;
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280 | return ret;
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281 | }
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282 | for (i = 0; i < length; i++, p++) {
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283 | if (*p == 0x80 && (!i || !(p[-1] & 0x80))) {
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284 | ASN1err(ASN1_F_C2I_ASN1_OBJECT, ASN1_R_INVALID_OBJECT_ENCODING);
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285 | return NULL;
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286 | }
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287 | }
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288 |
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289 | /*
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290 | * only the ASN1_OBJECTs from the 'table' will have values for ->sn or
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291 | * ->ln
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292 | */
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293 | if ((a == NULL) || ((*a) == NULL) ||
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294 | !((*a)->flags & ASN1_OBJECT_FLAG_DYNAMIC)) {
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295 | if ((ret = ASN1_OBJECT_new()) == NULL)
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296 | return NULL;
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297 | } else
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298 | ret = (*a);
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299 |
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300 | p = *pp;
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301 | /* detach data from object */
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302 | data = (unsigned char *)ret->data;
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303 | ret->data = NULL;
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304 | /* once detached we can change it */
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305 | if ((data == NULL) || (ret->length < length)) {
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306 | ret->length = 0;
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307 | OPENSSL_free(data);
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308 | data = OPENSSL_malloc(length);
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309 | if (data == NULL) {
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310 | i = ERR_R_MALLOC_FAILURE;
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311 | goto err;
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312 | }
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313 | ret->flags |= ASN1_OBJECT_FLAG_DYNAMIC_DATA;
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314 | }
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315 | memcpy(data, p, length);
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316 | /* reattach data to object, after which it remains const */
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317 | ret->data = data;
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318 | ret->length = length;
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319 | ret->sn = NULL;
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320 | ret->ln = NULL;
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321 | /* ret->flags=ASN1_OBJECT_FLAG_DYNAMIC; we know it is dynamic */
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322 | p += length;
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323 |
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324 | if (a != NULL)
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325 | (*a) = ret;
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326 | *pp = p;
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327 | return ret;
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328 | err:
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329 | ASN1err(ASN1_F_C2I_ASN1_OBJECT, i);
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330 | if ((a == NULL) || (*a != ret))
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331 | ASN1_OBJECT_free(ret);
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332 | return NULL;
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333 | }
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334 |
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335 | ASN1_OBJECT *ASN1_OBJECT_new(void)
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336 | {
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337 | ASN1_OBJECT *ret;
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338 |
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339 | ret = OPENSSL_zalloc(sizeof(*ret));
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340 | if (ret == NULL) {
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341 | ASN1err(ASN1_F_ASN1_OBJECT_NEW, ERR_R_MALLOC_FAILURE);
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342 | return NULL;
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343 | }
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344 | ret->flags = ASN1_OBJECT_FLAG_DYNAMIC;
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345 | return ret;
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346 | }
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347 |
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348 | void ASN1_OBJECT_free(ASN1_OBJECT *a)
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349 | {
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350 | if (a == NULL)
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351 | return;
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352 | if (a->flags & ASN1_OBJECT_FLAG_DYNAMIC_STRINGS) {
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353 | #ifndef CONST_STRICT /* disable purely for compile-time strict
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354 | * const checking. Doing this on a "real"
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355 | * compile will cause memory leaks */
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356 | OPENSSL_free((void*)a->sn);
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357 | OPENSSL_free((void*)a->ln);
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358 | #endif
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359 | a->sn = a->ln = NULL;
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360 | }
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361 | if (a->flags & ASN1_OBJECT_FLAG_DYNAMIC_DATA) {
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362 | OPENSSL_free((void*)a->data);
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363 | a->data = NULL;
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364 | a->length = 0;
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365 | }
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366 | if (a->flags & ASN1_OBJECT_FLAG_DYNAMIC)
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367 | OPENSSL_free(a);
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368 | }
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369 |
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370 | ASN1_OBJECT *ASN1_OBJECT_create(int nid, unsigned char *data, int len,
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371 | const char *sn, const char *ln)
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372 | {
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373 | ASN1_OBJECT o;
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374 |
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375 | o.sn = sn;
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376 | o.ln = ln;
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377 | o.data = data;
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378 | o.nid = nid;
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379 | o.length = len;
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380 | o.flags = ASN1_OBJECT_FLAG_DYNAMIC | ASN1_OBJECT_FLAG_DYNAMIC_STRINGS |
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381 | ASN1_OBJECT_FLAG_DYNAMIC_DATA;
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382 | return OBJ_dup(&o);
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383 | }
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