1 | /*
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2 | This module is an adaption of code from the tcpd-1.4 package written
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3 | by Wietse Venema, Eindhoven University of Technology, The Netherlands.
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4 |
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5 | The code is used here with permission.
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6 |
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7 | The code has been considerably changed from the original. Bug reports
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8 | should be sent to samba@samba.org
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9 |
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10 | Updated for IPv6 by Jeremy Allison (C) 2007.
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11 | */
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12 |
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13 | #include "includes.h"
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14 |
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15 | #define NAME_INDEX 0
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16 | #define ADDR_INDEX 1
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17 |
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18 | /* masked_match - match address against netnumber/netmask */
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19 | static bool masked_match(const char *tok, const char *slash, const char *s)
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20 | {
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21 | struct sockaddr_storage ss_mask;
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22 | struct sockaddr_storage ss_tok;
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23 | struct sockaddr_storage ss_host;
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24 | char *tok_copy = NULL;
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25 |
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26 | if (!interpret_string_addr(&ss_host, s, 0)) {
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27 | return false;
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28 | }
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29 |
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30 | if (*tok == '[') {
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31 | /* IPv6 address - remove braces. */
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32 | tok_copy = SMB_STRDUP(tok+1);
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33 | if (!tok_copy) {
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34 | return false;
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35 | }
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36 | /* Remove the terminating ']' */
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37 | tok_copy[PTR_DIFF(slash,tok)-1] = '\0';
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38 | } else {
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39 | tok_copy = SMB_STRDUP(tok);
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40 | if (!tok_copy) {
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41 | return false;
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42 | }
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43 | /* Remove the terminating '/' */
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44 | tok_copy[PTR_DIFF(slash,tok)] = '\0';
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45 | }
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46 |
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47 | if (!interpret_string_addr(&ss_tok, tok_copy, 0)) {
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48 | SAFE_FREE(tok_copy);
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49 | return false;
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50 | }
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51 |
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52 | SAFE_FREE(tok_copy);
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53 |
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54 | if (strlen(slash + 1) > 2) {
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55 | if (!interpret_string_addr(&ss_mask, slash+1, 0)) {
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56 | return false;
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57 | }
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58 | } else {
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59 | char *endp = NULL;
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60 | unsigned long val = strtoul(slash+1, &endp, 0);
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61 | if (slash+1 == endp || (endp && *endp != '\0')) {
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62 | return false;
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63 | }
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64 | if (!make_netmask(&ss_mask, &ss_tok, val)) {
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65 | return false;
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66 | }
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67 | }
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68 |
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69 | return same_net(&ss_host, &ss_tok, &ss_mask);
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70 | }
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71 |
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72 | /* string_match - match string s against token tok */
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73 | static bool string_match(const char *tok,const char *s)
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74 | {
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75 | size_t tok_len;
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76 | size_t str_len;
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77 | const char *cut;
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78 |
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79 | /* Return true if a token has the magic value "ALL". Return
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80 | * true if the token is "FAIL". If the token starts with a "."
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81 | * (domain name), return true if it matches the last fields of
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82 | * the string. If the token has the magic value "LOCAL",
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83 | * return true if the string does not contain a "."
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84 | * character. If the token ends on a "." (network number),
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85 | * return true if it matches the first fields of the
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86 | * string. If the token begins with a "@" (netgroup name),
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87 | * return true if the string is a (host) member of the
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88 | * netgroup. Return true if the token fully matches the
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89 | * string. If the token is a netnumber/netmask pair, return
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90 | * true if the address is a member of the specified subnet.
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91 | */
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92 |
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93 | if (tok[0] == '.') { /* domain: match last fields */
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94 | if ((str_len = strlen(s)) > (tok_len = strlen(tok))
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95 | && strequal(tok, s + str_len - tok_len)) {
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96 | return true;
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97 | }
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98 | } else if (tok[0] == '@') { /* netgroup: look it up */
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99 | #ifdef HAVE_NETGROUP
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100 | DATA_BLOB tmp;
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101 | char *mydomain = NULL;
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102 | char *hostname = NULL;
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103 | bool netgroup_ok = false;
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104 |
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105 | if (memcache_lookup(
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106 | NULL, SINGLETON_CACHE,
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107 | data_blob_string_const("yp_default_domain"),
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108 | &tmp)) {
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109 |
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110 | SMB_ASSERT(tmp.length > 0);
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111 | mydomain = (tmp.data[0] == '\0')
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112 | ? NULL : (char *)tmp.data;
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113 | }
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114 | else {
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115 | yp_get_default_domain(&mydomain);
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116 |
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117 | memcache_add(
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118 | NULL, SINGLETON_CACHE,
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119 | data_blob_string_const("yp_default_domain"),
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120 | data_blob_string_const(mydomain?mydomain:""));
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121 | }
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122 |
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123 | if (!mydomain) {
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124 | DEBUG(0,("Unable to get default yp domain. "
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125 | "Try without it.\n"));
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126 | }
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127 | if (!(hostname = SMB_STRDUP(s))) {
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128 | DEBUG(1,("out of memory for strdup!\n"));
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129 | return false;
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130 | }
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131 |
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132 | netgroup_ok = innetgr(tok + 1, hostname, (char *) 0, mydomain);
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133 |
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134 | DEBUG(5,("looking for %s of domain %s in netgroup %s gave %s\n",
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135 | hostname,
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136 | mydomain?mydomain:"(ANY)",
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137 | tok+1,
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138 | BOOLSTR(netgroup_ok)));
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139 |
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140 | SAFE_FREE(hostname);
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141 |
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142 | if (netgroup_ok)
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143 | return true;
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144 | #else
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145 | DEBUG(0,("access: netgroup support is not configured\n"));
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146 | return false;
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147 | #endif
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148 | } else if (strequal(tok, "ALL")) { /* all: match any */
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149 | return true;
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150 | } else if (strequal(tok, "FAIL")) { /* fail: match any */
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151 | return true;
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152 | } else if (strequal(tok, "LOCAL")) { /* local: no dots */
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153 | if (strchr_m(s, '.') == 0 && !strequal(s, "unknown")) {
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154 | return true;
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155 | }
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156 | } else if (strequal(tok, s)) { /* match host name or address */
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157 | return true;
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158 | } else if (tok[(tok_len = strlen(tok)) - 1] == '.') { /* network */
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159 | if (strncmp(tok, s, tok_len) == 0) {
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160 | return true;
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161 | }
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162 | } else if ((cut = strchr_m(tok, '/')) != 0) { /* netnumber/netmask */
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163 | if ((isdigit(s[0]) && strchr_m(tok, '.') != NULL) ||
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164 | (tok[0] == '[' && cut > tok && cut[-1] == ']') ||
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165 | ((isxdigit(s[0]) || s[0] == ':') &&
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166 | strchr_m(tok, ':') != NULL)) {
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167 | /* IPv4/netmask or
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168 | * [IPv6:addr]/netmask or IPv6:addr/netmask */
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169 | return masked_match(tok, cut, s);
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170 | }
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171 | } else if (strchr_m(tok, '*') != 0 || strchr_m(tok, '?')) {
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172 | return unix_wild_match(tok, s);
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173 | }
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174 | return false;
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175 | }
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176 |
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177 | /* client_match - match host name and address against token */
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178 | static bool client_match(const char *tok, const void *item)
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179 | {
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180 | const char **client = (const char **)item;
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181 |
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182 | /*
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183 | * Try to match the address first. If that fails, try to match the host
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184 | * name if available.
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185 | */
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186 |
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187 | if (string_match(tok, client[ADDR_INDEX])) {
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188 | return true;
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189 | }
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190 |
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191 | if (strnequal(client[ADDR_INDEX],"::ffff:",7) &&
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192 | !strnequal(tok, "::ffff:",7)) {
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193 | /* client[ADDR_INDEX] is an IPv4 mapped to IPv6, but
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194 | * the list item is not. Try and match the IPv4 part of
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195 | * address only. This will happen a lot on IPv6 enabled
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196 | * systems with IPv4 allow/deny lists in smb.conf.
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197 | * Bug #5311. JRA.
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198 | */
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199 | if (string_match(tok, (client[ADDR_INDEX])+7)) {
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200 | return true;
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201 | }
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202 | }
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203 |
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204 | if (client[NAME_INDEX][0] != 0) {
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205 | if (string_match(tok, client[NAME_INDEX])) {
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206 | return true;
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207 | }
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208 | }
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209 |
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210 | return false;
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211 | }
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212 |
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213 | /* list_match - match an item against a list of tokens with exceptions */
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214 | static bool list_match(const char **list,const void *item,
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215 | bool (*match_fn)(const char *, const void *))
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216 | {
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217 | bool match = false;
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218 |
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219 | if (!list) {
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220 | return false;
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221 | }
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222 |
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223 | /*
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224 | * Process tokens one at a time. We have exhausted all possible matches
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225 | * when we reach an "EXCEPT" token or the end of the list. If we do find
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226 | * a match, look for an "EXCEPT" list and recurse to determine whether
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227 | * the match is affected by any exceptions.
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228 | */
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229 |
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230 | for (; *list ; list++) {
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231 | if (strequal(*list, "EXCEPT")) {
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232 | /* EXCEPT: give up */
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233 | break;
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234 | }
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235 | if ((match = (*match_fn) (*list, item))) {
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236 | /* true or FAIL */
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237 | break;
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238 | }
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239 | }
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240 | /* Process exceptions to true or FAIL matches. */
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241 |
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242 | if (match != false) {
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243 | while (*list && !strequal(*list, "EXCEPT")) {
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244 | list++;
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245 | }
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246 |
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247 | for (; *list; list++) {
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248 | if ((*match_fn) (*list, item)) {
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249 | /* Exception Found */
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250 | return false;
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251 | }
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252 | }
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253 | }
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254 |
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255 | return match;
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256 | }
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257 |
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258 | /* return true if access should be allowed */
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259 | static bool allow_access_internal(const char **deny_list,
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260 | const char **allow_list,
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261 | const char *cname,
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262 | const char *caddr)
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263 | {
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264 | const char *client[2];
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265 |
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266 | client[NAME_INDEX] = cname;
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267 | client[ADDR_INDEX] = caddr;
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268 |
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269 | /* if it is loopback then always allow unless specifically denied */
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270 | if (strcmp(caddr, "127.0.0.1") == 0 || strcmp(caddr, "::1") == 0) {
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271 | /*
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272 | * If 127.0.0.1 matches both allow and deny then allow.
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273 | * Patch from Steve Langasek vorlon@netexpress.net.
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274 | */
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275 | if (deny_list &&
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276 | list_match(deny_list,client,client_match) &&
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277 | (!allow_list ||
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278 | !list_match(allow_list,client, client_match))) {
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279 | return false;
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280 | }
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281 | return true;
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282 | }
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283 |
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284 | /* if theres no deny list and no allow list then allow access */
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285 | if ((!deny_list || *deny_list == 0) &&
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286 | (!allow_list || *allow_list == 0)) {
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287 | return true;
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288 | }
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289 |
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290 | /* if there is an allow list but no deny list then allow only hosts
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291 | on the allow list */
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292 | if (!deny_list || *deny_list == 0) {
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293 | return(list_match(allow_list,client,client_match));
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294 | }
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295 |
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296 | /* if theres a deny list but no allow list then allow
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297 | all hosts not on the deny list */
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298 | if (!allow_list || *allow_list == 0) {
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299 | return(!list_match(deny_list,client,client_match));
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300 | }
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301 |
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302 | /* if there are both types of list then allow all hosts on the
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303 | allow list */
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304 | if (list_match(allow_list,(const char *)client,client_match)) {
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305 | return true;
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306 | }
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307 |
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308 | /* if there are both types of list and it's not on the allow then
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309 | allow it if its not on the deny */
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310 | if (list_match(deny_list,(const char *)client,client_match)) {
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311 | return false;
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312 | }
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313 |
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314 | return true;
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315 | }
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316 |
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317 | /* return true if access should be allowed */
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318 | bool allow_access(const char **deny_list,
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319 | const char **allow_list,
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320 | const char *cname,
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321 | const char *caddr)
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322 | {
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323 | bool ret;
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324 | char *nc_cname = smb_xstrdup(cname);
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325 | char *nc_caddr = smb_xstrdup(caddr);
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326 |
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327 | ret = allow_access_internal(deny_list, allow_list, nc_cname, nc_caddr);
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328 |
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329 | SAFE_FREE(nc_cname);
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330 | SAFE_FREE(nc_caddr);
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331 | return ret;
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332 | }
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333 |
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334 | /* return true if the char* contains ip addrs only. Used to avoid
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335 | name lookup calls */
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336 |
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337 | static bool only_ipaddrs_in_list(const char **list)
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338 | {
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339 | bool only_ip = true;
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340 |
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341 | if (!list) {
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342 | return true;
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343 | }
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344 |
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345 | for (; *list ; list++) {
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346 | /* factor out the special strings */
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347 | if (strequal(*list, "ALL") || strequal(*list, "FAIL") ||
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348 | strequal(*list, "EXCEPT")) {
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349 | continue;
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350 | }
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351 |
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352 | if (!is_ipaddress(*list)) {
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353 | /*
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354 | * If we failed, make sure that it was not because
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355 | * the token was a network/netmask pair. Only
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356 | * network/netmask pairs have a '/' in them.
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357 | */
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358 | if ((strchr_m(*list, '/')) == NULL) {
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359 | only_ip = false;
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360 | DEBUG(3,("only_ipaddrs_in_list: list has "
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361 | "non-ip address (%s)\n",
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362 | *list));
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363 | break;
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364 | }
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365 | }
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366 | }
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367 |
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368 | return only_ip;
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369 | }
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370 |
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371 | /* return true if access should be allowed to a service for a socket */
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372 | bool check_access(int sock, const char **allow_list, const char **deny_list)
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373 | {
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374 | bool ret = false;
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375 | bool only_ip = false;
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376 |
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377 | if ((!deny_list || *deny_list==0) && (!allow_list || *allow_list==0))
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378 | ret = true;
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379 |
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380 | if (!ret) {
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381 | char addr[INET6_ADDRSTRLEN];
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382 |
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383 | /* Bypass name resolution calls if the lists
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384 | * only contain IP addrs */
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385 | if (only_ipaddrs_in_list(allow_list) &&
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386 | only_ipaddrs_in_list(deny_list)) {
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387 | only_ip = true;
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388 | DEBUG (3, ("check_access: no hostnames "
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389 | "in host allow/deny list.\n"));
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390 | ret = allow_access(deny_list,
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391 | allow_list,
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392 | "",
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393 | get_peer_addr(sock,addr,sizeof(addr)));
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394 | } else {
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395 | DEBUG (3, ("check_access: hostnames in "
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396 | "host allow/deny list.\n"));
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397 | ret = allow_access(deny_list,
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398 | allow_list,
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399 | get_peer_name(sock,true),
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400 | get_peer_addr(sock,addr,sizeof(addr)));
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401 | }
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402 |
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403 | if (ret) {
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404 | DEBUG(2,("Allowed connection from %s (%s)\n",
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405 | only_ip ? "" : get_peer_name(sock,true),
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406 | get_peer_addr(sock,addr,sizeof(addr))));
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407 | } else {
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408 | DEBUG(0,("Denied connection from %s (%s)\n",
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409 | only_ip ? "" : get_peer_name(sock,true),
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410 | get_peer_addr(sock,addr,sizeof(addr))));
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411 | }
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412 | }
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413 |
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414 | return(ret);
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415 | }
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