1 | /*
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2 | Unix SMB/CIFS implementation.
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3 | a async DNS handler
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4 | Copyright (C) Andrew Tridgell 1997-1998
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5 |
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6 | This program is free software; you can redistribute it and/or modify
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7 | it under the terms of the GNU General Public License as published by
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8 | the Free Software Foundation; either version 3 of the License, or
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9 | (at your option) any later version.
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10 |
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11 | This program is distributed in the hope that it will be useful,
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12 | but WITHOUT ANY WARRANTY; without even the implied warranty of
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13 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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14 | GNU General Public License for more details.
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15 |
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16 | You should have received a copy of the GNU General Public License
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17 | along with this program. If not, see <http://www.gnu.org/licenses/>.
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18 | */
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19 |
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20 | #include "includes.h"
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21 |
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22 | /***************************************************************************
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23 | Add a DNS result to the name cache.
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24 | ****************************************************************************/
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25 |
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26 | static struct name_record *add_dns_result(struct nmb_name *question, struct in_addr addr)
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27 | {
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28 | int name_type = question->name_type;
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29 | unstring qname;
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30 |
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31 | pull_ascii_nstring(qname, sizeof(qname), question->name);
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32 |
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33 | if (!addr.s_addr) {
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34 | /* add the fail to WINS cache of names. give it 1 hour in the cache */
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35 | DEBUG(3,("add_dns_result: Negative DNS answer for %s\n", qname));
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36 | add_name_to_subnet( wins_server_subnet, qname, name_type,
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37 | NB_ACTIVE, 60*60, DNSFAIL_NAME, 1, &addr );
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38 | return NULL;
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39 | }
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40 |
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41 | /* add it to our WINS cache of names. give it 2 hours in the cache */
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42 | DEBUG(3,("add_dns_result: DNS gave answer for %s of %s\n", qname, inet_ntoa(addr)));
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43 |
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44 | add_name_to_subnet( wins_server_subnet, qname, name_type,
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45 | NB_ACTIVE, 2*60*60, DNS_NAME, 1, &addr);
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46 |
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47 | return find_name_on_subnet(wins_server_subnet, question, FIND_ANY_NAME);
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48 | }
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49 |
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50 | #ifndef SYNC_DNS
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51 |
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52 | static int fd_in = -1, fd_out = -1;
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53 | static pid_t child_pid = -1;
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54 | static int in_dns;
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55 |
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56 | /* this is the structure that is passed between the parent and child */
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57 | struct query_record {
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58 | struct nmb_name name;
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59 | struct in_addr result;
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60 | };
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61 |
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62 | /* a queue of pending requests waiting to be sent to the DNS child */
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63 | static struct packet_struct *dns_queue;
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64 |
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65 | /* the packet currently being processed by the dns child */
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66 | static struct packet_struct *dns_current;
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67 |
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68 |
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69 | /***************************************************************************
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70 | return the fd used to gather async dns replies. This is added to the select
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71 | loop
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72 | ****************************************************************************/
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73 |
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74 | int asyncdns_fd(void)
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75 | {
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76 | return fd_in;
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77 | }
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78 |
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79 | /***************************************************************************
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80 | handle DNS queries arriving from the parent
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81 | ****************************************************************************/
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82 | static void asyncdns_process(void)
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83 | {
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84 | struct query_record r;
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85 | unstring qname;
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86 |
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87 | DEBUGLEVEL = -1;
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88 |
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89 | while (1) {
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90 | NTSTATUS status;
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91 |
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92 | status = read_data(fd_in, (char *)&r, sizeof(r));
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93 |
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94 | if (!NT_STATUS_IS_OK(status)) {
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95 | break;
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96 | }
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97 |
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98 | pull_ascii_nstring( qname, sizeof(qname), r.name.name);
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99 | r.result.s_addr = interpret_addr(qname);
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100 |
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101 | if (write_data(fd_out, (char *)&r, sizeof(r)) != sizeof(r))
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102 | break;
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103 | }
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104 |
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105 | _exit(0);
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106 | }
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107 |
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108 | /**************************************************************************** **
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109 | catch a sigterm (in the child process - the parent has a different handler
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110 | see nmbd.c for details).
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111 | We need a separate term handler here so we don't release any
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112 | names that our parent is going to release, or overwrite a
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113 | WINS db that our parent is going to write.
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114 | **************************************************************************** */
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115 |
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116 | static void sig_term(int sig)
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117 | {
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118 | _exit(0);
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119 | }
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120 |
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121 | /***************************************************************************
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122 | Called by the parent process when it receives a SIGTERM - also kills the
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123 | child so we don't get child async dns processes lying around, causing trouble.
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124 | ****************************************************************************/
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125 |
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126 | void kill_async_dns_child(void)
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127 | {
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128 | if (child_pid > 0) {
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129 | kill(child_pid, SIGTERM);
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130 | child_pid = -1;
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131 | }
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132 | }
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133 |
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134 | /***************************************************************************
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135 | create a child process to handle DNS lookups
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136 | ****************************************************************************/
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137 | void start_async_dns(void)
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138 | {
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139 | int fd1[2], fd2[2];
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140 |
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141 | CatchChild();
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142 | #ifdef __OS2__
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143 | // cant use pipes here, because select() from innotek lib does work only for sockets.
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144 | if (socketpair(AF_UNIX, SOCK_STREAM, 0, fd1) < 0)
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145 | {
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146 | DEBUG(0,("can't create asyncdns socketpair1 %d\n", errno));
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147 | return;
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148 | }
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149 | if (socketpair(AF_UNIX, SOCK_STREAM, 0, fd2) < 0)
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150 | {
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151 | DEBUG(0,("can't create asyncdns socketpair2 %d\n", errno));
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152 | close(fd1[0]);
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153 | close(fd1[1]);
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154 | return;
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155 | }
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156 | DEBUG(9,("!!!!!!PIPES %d %d %d %d\n", fd1[0], fd1[1], fd2[0], fd2[1]));
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157 | #else
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158 | if (pipe(fd1) || pipe(fd2)) {
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159 | DEBUG(0,("can't create asyncdns pipes\n"));
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160 | return;
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161 | }
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162 | #endif /* __OS2__ */
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163 | child_pid = sys_fork();
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164 |
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165 | if (child_pid) {
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166 | fd_in = fd1[0];
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167 | fd_out = fd2[1];
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168 | close(fd1[1]);
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169 | close(fd2[0]);
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170 | DEBUG(0,("started asyncdns process %d\n", (int)child_pid));
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171 | return;
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172 | }
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173 |
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174 | fd_in = fd2[0];
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175 | fd_out = fd1[1];
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176 |
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177 | CatchSignal(SIGUSR2, SIG_IGN);
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178 | CatchSignal(SIGUSR1, SIG_IGN);
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179 | CatchSignal(SIGHUP, SIG_IGN);
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180 | CatchSignal(SIGTERM, SIGNAL_CAST sig_term );
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181 |
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182 | if (!reinit_after_fork(nmbd_messaging_context(),
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183 | nmbd_event_context(), true)) {
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184 | DEBUG(0,("reinit_after_fork() failed\n"));
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185 | smb_panic("reinit_after_fork() failed");
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186 | }
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187 |
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188 | asyncdns_process();
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189 | }
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190 |
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191 |
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192 | /***************************************************************************
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193 | check if a particular name is already being queried
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194 | ****************************************************************************/
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195 | static bool query_current(struct query_record *r)
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196 | {
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197 | return dns_current &&
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198 | nmb_name_equal(&r->name,
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199 | &dns_current->packet.nmb.question.question_name);
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200 | }
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201 |
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202 |
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203 | /***************************************************************************
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204 | write a query to the child process
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205 | ****************************************************************************/
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206 | static bool write_child(struct packet_struct *p)
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207 | {
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208 | struct query_record r;
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209 |
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210 | r.name = p->packet.nmb.question.question_name;
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211 |
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212 | return write_data(fd_out, (char *)&r, sizeof(r)) == sizeof(r);
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213 | }
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214 |
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215 | /***************************************************************************
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216 | check the DNS queue
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217 | ****************************************************************************/
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218 | void run_dns_queue(void)
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219 | {
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220 | struct query_record r;
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221 | struct packet_struct *p, *p2;
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222 | struct name_record *namerec;
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223 | NTSTATUS status;
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224 |
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225 | if (fd_in == -1)
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226 | return;
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227 |
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228 | /* Allow SIGTERM to kill us. */
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229 | BlockSignals(False, SIGTERM);
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230 |
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231 | if (!process_exists_by_pid(child_pid)) {
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232 | close(fd_in);
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233 | close(fd_out);
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234 | start_async_dns();
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235 | }
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236 |
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237 | status = read_data(fd_in, (char *)&r, sizeof(r));
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238 |
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239 | if (!NT_STATUS_IS_OK(status)) {
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240 | DEBUG(0, ("read from child failed: %s\n", nt_errstr(status)));
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241 | fd_in = -1;
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242 | BlockSignals(True, SIGTERM);
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243 | return;
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244 | }
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245 |
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246 | BlockSignals(True, SIGTERM);
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247 |
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248 | namerec = add_dns_result(&r.name, r.result);
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249 |
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250 | if (dns_current) {
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251 | if (query_current(&r)) {
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252 | DEBUG(3,("DNS calling send_wins_name_query_response\n"));
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253 | in_dns = 1;
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254 | if(namerec == NULL)
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255 | send_wins_name_query_response(NAM_ERR, dns_current, NULL);
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256 | else
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257 | send_wins_name_query_response(0,dns_current,namerec);
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258 | in_dns = 0;
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259 | }
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260 |
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261 | dns_current->locked = False;
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262 | free_packet(dns_current);
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263 | dns_current = NULL;
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264 | }
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265 |
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266 | /* loop over the whole dns queue looking for entries that
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267 | match the result we just got */
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268 | for (p = dns_queue; p;) {
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269 | struct nmb_packet *nmb = &p->packet.nmb;
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270 | struct nmb_name *question = &nmb->question.question_name;
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271 |
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272 | if (nmb_name_equal(question, &r.name)) {
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273 | DEBUG(3,("DNS calling send_wins_name_query_response\n"));
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274 | in_dns = 1;
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275 | if(namerec == NULL)
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276 | send_wins_name_query_response(NAM_ERR, p, NULL);
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277 | else
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278 | send_wins_name_query_response(0,p,namerec);
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279 | in_dns = 0;
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280 | p->locked = False;
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281 |
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282 | if (p->prev)
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283 | p->prev->next = p->next;
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284 | else
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285 | dns_queue = p->next;
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286 | if (p->next)
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287 | p->next->prev = p->prev;
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288 | p2 = p->next;
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289 | free_packet(p);
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290 | p = p2;
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291 | } else {
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292 | p = p->next;
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293 | }
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294 | }
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295 |
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296 | if (dns_queue) {
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297 | dns_current = dns_queue;
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298 | dns_queue = dns_queue->next;
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299 | if (dns_queue)
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300 | dns_queue->prev = NULL;
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301 | dns_current->next = NULL;
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302 |
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303 | if (!write_child(dns_current)) {
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304 | DEBUG(3,("failed to send DNS query to child!\n"));
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305 | return;
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306 | }
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307 | }
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308 | }
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309 |
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310 | /***************************************************************************
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311 | queue a DNS query
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312 | ****************************************************************************/
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313 |
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314 | bool queue_dns_query(struct packet_struct *p,struct nmb_name *question)
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315 | {
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316 | if (in_dns || fd_in == -1)
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317 | return False;
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318 |
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319 | if (!dns_current) {
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320 | if (!write_child(p)) {
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321 | DEBUG(3,("failed to send DNS query to child!\n"));
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322 | return False;
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323 | }
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324 | dns_current = p;
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325 | p->locked = True;
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326 | } else {
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327 | p->locked = True;
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328 | p->next = dns_queue;
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329 | p->prev = NULL;
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330 | if (p->next)
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331 | p->next->prev = p;
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332 | dns_queue = p;
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333 | }
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334 |
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335 | DEBUG(3,("added DNS query for %s\n", nmb_namestr(question)));
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336 | return True;
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337 | }
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338 |
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339 | #else
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340 |
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341 |
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342 | /***************************************************************************
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343 | we use this when we can't do async DNS lookups
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344 | ****************************************************************************/
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345 |
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346 | bool queue_dns_query(struct packet_struct *p,struct nmb_name *question)
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347 | {
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348 | struct name_record *namerec = NULL;
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349 | struct in_addr dns_ip;
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350 | unstring qname;
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351 |
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352 | pull_ascii_nstring(qname, sizeof(qname), question->name);
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353 |
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354 | DEBUG(3,("DNS search for %s - ", nmb_namestr(question)));
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355 |
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356 | /* Unblock TERM signal so we can be killed in DNS lookup. */
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357 | BlockSignals(False, SIGTERM);
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358 |
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359 | dns_ip.s_addr = interpret_addr(qname);
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360 |
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361 | /* Re-block TERM signal. */
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362 | BlockSignals(True, SIGTERM);
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363 |
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364 | namerec = add_dns_result(question, dns_ip);
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365 | if(namerec == NULL) {
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366 | send_wins_name_query_response(NAM_ERR, p, NULL);
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367 | } else {
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368 | send_wins_name_query_response(0, p, namerec);
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369 | }
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370 | return False;
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371 | }
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372 |
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373 | /***************************************************************************
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374 | With sync dns there is no child to kill on SIGTERM.
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375 | ****************************************************************************/
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376 |
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377 | void kill_async_dns_child(void)
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378 | {
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379 | return;
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380 | }
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381 | #endif
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