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3846 | mejdrech | 1 | /* |
3912 | mejdrech | 2 | * Copyright (c) 2009 Lukas Mejdrech |
3846 | mejdrech | 3 | * All rights reserved. |
4 | * |
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5 | * Redistribution and use in source and binary forms, with or without |
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6 | * modification, are permitted provided that the following conditions |
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7 | * are met: |
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8 | * |
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9 | * - Redistributions of source code must retain the above copyright |
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10 | * notice, this list of conditions and the following disclaimer. |
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11 | * - Redistributions in binary form must reproduce the above copyright |
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12 | * notice, this list of conditions and the following disclaimer in the |
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13 | * documentation and/or other materials provided with the distribution. |
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14 | * - The name of the author may not be used to endorse or promote products |
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15 | * derived from this software without specific prior written permission. |
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16 | * |
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17 | * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR |
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18 | * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES |
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19 | * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. |
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20 | * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, |
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21 | * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT |
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22 | * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, |
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23 | * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY |
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24 | * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT |
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25 | * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF |
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26 | * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. |
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27 | */ |
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28 | |||
29 | /** @addtogroup arp |
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30 | * @{ |
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31 | */ |
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32 | |||
33 | /** @file |
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3912 | mejdrech | 34 | * ARP module implementation. |
35 | * @see arp.h |
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3846 | mejdrech | 36 | */ |
37 | |||
38 | #include <as.h> |
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39 | #include <async.h> |
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40 | #include <malloc.h> |
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41 | #include <stdio.h> |
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42 | #include <string.h> |
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43 | |||
44 | #include <ipc/ipc.h> |
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45 | #include <ipc/services.h> |
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46 | |||
3886 | mejdrech | 47 | #include "../../err.h" |
48 | #include "../../messages.h" |
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49 | #include "../../modules.h" |
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3846 | mejdrech | 50 | |
3886 | mejdrech | 51 | #include "../../include/protocol_map.h" |
52 | #include "../../netif/device.h" |
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3846 | mejdrech | 53 | |
3886 | mejdrech | 54 | #include "../../structures/measured_strings.h" |
55 | #include "../../structures/packet/packet.h" |
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3901 | mejdrech | 56 | #include "../../structures/packet/packet_client.h" |
3886 | mejdrech | 57 | |
3846 | mejdrech | 58 | #include "arp.h" |
59 | #include "arp_header.h" |
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60 | #include "arp_oc.h" |
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61 | //#include "arp_messages.h" |
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62 | #include "arp_module.h" |
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63 | |||
3912 | mejdrech | 64 | /** Returns the device identifier message parameter. |
65 | */ |
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3846 | mejdrech | 66 | #define IPC_GET_DEVICE( call ) ( device_id_t ) IPC_GET_ARG1( * call ) |
3912 | mejdrech | 67 | |
68 | /** Returns the packet identifier message parameter. |
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69 | */ |
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3901 | mejdrech | 70 | #define IPC_GET_PACKET( call ) ( packet_id_t ) IPC_GET_ARG2( * call ) |
3912 | mejdrech | 71 | |
72 | /** Returns the protocol service message parameter. |
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73 | */ |
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3846 | mejdrech | 74 | #define IPC_GET_PROTO( call ) ( services_t ) IPC_GET_ARG2( * call ) |
3912 | mejdrech | 75 | |
76 | /** Returns the device driver service message parameter. |
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77 | */ |
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3846 | mejdrech | 78 | #define IPC_GET_SERVICE( call ) ( services_t ) IPC_GET_ARG3( * call ) |
79 | |||
3912 | mejdrech | 80 | /** ARP global data. |
81 | */ |
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3846 | mejdrech | 82 | arp_globals_t arp_globals; |
83 | |||
3912 | mejdrech | 84 | /** Creates new protocol specific data. |
85 | * @param proto Protocol specific data. Output parameter. |
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86 | * @param service Protocol module service. Input parameter. |
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87 | * @param address Actual protocol device address. Input parameter. |
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88 | * @returns EOK on success. |
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89 | * @returns ENOMEM if there is not enough memory left. |
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90 | */ |
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91 | int arp_proto_create( arp_proto_ref * proto, services_t service, measured_string_ref address ); |
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92 | |||
93 | /** Registers the device. |
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94 | * Creates new device entry in the cache or updates the protocol address if the device with the device identifier and the driver service exists. |
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95 | * @param device_id The device identifier. Input parameter. |
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96 | * @param service The device driver service. Input parameter. |
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97 | * @param protocol The protocol service. Input parameter. |
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98 | * @param address The actual device protocol address. |
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99 | * @returns EOK on success. |
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100 | * @returns EEXIST if another device with the same device identifier and different driver service exists. |
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101 | * @returns ENOMEM if there is not enough memory left. |
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102 | * @returns Other error codes as defined for the measured_strings_return() function. |
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103 | */ |
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104 | int arp_device_message( device_id_t device_id, services_t service, services_t protocol, measured_string_ref address ); |
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105 | |||
106 | /** Returns the hardware address for the given protocol address. |
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107 | * Sends the ARP request packet if the hardware address is not found in the cache. |
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108 | * @param device_id The device identifier. Input parameter. |
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109 | * @param protocol The protocol service. Input parameter. |
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110 | * @param target The target protocol address. Input parameter. |
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111 | * @returns The hardware address of the target. |
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112 | * @returns NULL if the target parameter is NULL. |
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113 | * @returns NULL if the device is not found. |
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114 | * @returns NULL if the device packet is too small to send a request. |
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115 | * @returns NULL if the hardware address is not found in the cache. |
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116 | */ |
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117 | measured_string_ref arp_translate_message( device_id_t device_id, services_t protocol, measured_string_ref target ); |
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118 | |||
119 | /** Processes the received ARP packet. |
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120 | * Updates the source hardware address if the source entry exists or the packet is targeted to my protocol address. |
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121 | * Responses to the ARP request if the packet is the ARP request and is targeted to my address. |
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122 | * @param device_id The source device identifier. Input parameter. |
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123 | * @param packet The received packet. Input/output parameter. |
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124 | * @returns EOK on success. |
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125 | * @returns EINVAL if the packet is too small to carry the ARP packet. |
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126 | * @returns EINVAL if the received address lengths differs from the registered values. |
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127 | * @returns ENOENT if the device is not found in the cache. |
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128 | * @returns ENOENT if the protocol for the device is not found in the cache. |
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129 | * @returns ENOMEM if there is not enough memory left. |
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130 | */ |
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131 | int arp_receive_message( device_id_t device_id, packet_t packet ); |
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132 | |||
133 | /** Clears the device specific data from the cache. |
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134 | * @param device_id The device identifier. Input parameter. |
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135 | * @returns EOK on success. |
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136 | * @returns ENOENT if the device is not found in the cache. |
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137 | */ |
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138 | int arp_clear_device_message( device_id_t device_id ); |
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139 | |||
140 | /** Clears the device specific data. |
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141 | * @param device The device specific data. |
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142 | */ |
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143 | void clear_device( arp_device_ref device ); |
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144 | |||
145 | /** Clears the whole cache. |
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146 | * @returns EOK on success. |
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147 | */ |
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148 | int arp_clean_cache_message( void ); |
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149 | |||
150 | /** Processes IPC messages from the registered device driver modules in an infinite loop. |
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151 | * @param iid The message identifier. Input parameter. |
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152 | * @param icall The message parameters. Input/output parameter. |
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153 | */ |
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154 | void arp_receiver( ipc_callid_t iid, ipc_call_t * icall ); |
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155 | |||
3846 | mejdrech | 156 | DEVICE_MAP_IMPLEMENT( arp_cache, arp_device_t ) |
157 | |||
158 | INT_MAP_IMPLEMENT( arp_protos, arp_proto_t ) |
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159 | |||
160 | GENERIC_CHAR_MAP_IMPLEMENT( arp_addr, measured_string_t ) |
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161 | |||
162 | int arp_initialize( void ){ |
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3912 | mejdrech | 163 | return arp_cache_initialize( & arp_globals.cache ); |
3846 | mejdrech | 164 | } |
165 | |||
166 | int arp_proto_create( arp_proto_ref * proto, services_t service, measured_string_ref address ){ |
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167 | ERROR_DECLARE; |
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168 | |||
169 | * proto = ( arp_proto_ref ) malloc( sizeof( arp_proto_t )); |
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170 | if( !( * proto )) return ENOMEM; |
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171 | ( ** proto ).service = service; |
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172 | ( ** proto ).addr = address; |
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173 | ( ** proto ).addr_data = address->value; |
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3912 | mejdrech | 174 | if( ERROR_OCCURRED( arp_addr_initialize( &( ** proto).addresses ))){ |
3846 | mejdrech | 175 | free( * proto ); |
176 | return ERROR_CODE; |
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177 | } |
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178 | return EOK; |
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179 | } |
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180 | |||
181 | int arp_device_message( device_id_t device_id, services_t service, services_t protocol, measured_string_ref address ){ |
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182 | ERROR_DECLARE; |
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183 | |||
184 | arp_device_ref device; |
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185 | aid_t message; |
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186 | ipc_call_t answer; |
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187 | ipcarg_t result; |
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188 | arp_proto_ref proto; |
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189 | |||
190 | // an existing device? |
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191 | device = arp_cache_find( & arp_globals.cache, device_id ); |
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192 | if( device ){ |
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193 | if( device->service != service ) return EEXIST; |
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194 | proto = arp_protos_find( & device->protos, protocol ); |
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195 | if( proto ){ |
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196 | free( proto->addr ); |
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197 | free( proto->addr_data ); |
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198 | proto->addr = address; |
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199 | proto->addr_data = address->value; |
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200 | }else{ |
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201 | ERROR_PROPAGATE( arp_proto_create( & proto, protocol, address )); |
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3912 | mejdrech | 202 | if( ERROR_OCCURRED( arp_protos_add( & device->protos, proto->service, proto ))){ |
3846 | mejdrech | 203 | free( proto ); |
204 | return ERROR_CODE; |
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205 | } |
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206 | } |
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207 | return EOK; |
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208 | }else{ |
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209 | // create a new device |
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210 | device = ( arp_device_ref ) malloc( sizeof( arp_device_t )); |
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211 | if( ! device ) return ENOMEM; |
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212 | device->device_id = device_id; |
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3912 | mejdrech | 213 | if( ERROR_OCCURRED( arp_protos_initialize( & device->protos )) |
214 | || ERROR_OCCURRED( arp_proto_create( & proto, protocol, address ))){ |
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3846 | mejdrech | 215 | free( device ); |
216 | return ERROR_CODE; |
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217 | } |
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3912 | mejdrech | 218 | if( ERROR_OCCURRED( arp_protos_add( & device->protos, proto->service, proto ))){ |
3846 | mejdrech | 219 | arp_protos_destroy( & device->protos ); |
220 | free( device ); |
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221 | return ERROR_CODE; |
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222 | } |
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223 | device->service = service; |
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224 | // bind the new one |
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225 | device->phone = bind_service( device->service, device->device_id, SERVICE_ARP, 0, arp_receiver ); |
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226 | // get packet dimensions |
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3912 | mejdrech | 227 | if( ERROR_OCCURRED( async_req_1_4( device->phone, NET_NIL_PACKET_SPACE, device_id, & device->addr_len, & device->prefix, & device->content, & device->suffix ))){ |
3846 | mejdrech | 228 | arp_protos_destroy( & device->protos ); |
229 | free( device ); |
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230 | return ERROR_CODE; |
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231 | } |
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232 | // get hardware address |
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233 | message = async_send_1( device->phone, NET_NIL_ADDR, device->device_id, & answer ); |
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3912 | mejdrech | 234 | if( ERROR_OCCURRED( measured_strings_return( device->phone, & device->addr, & device->addr_data, 1 ))){ |
3846 | mejdrech | 235 | arp_protos_destroy( & device->protos ); |
236 | free( device ); |
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237 | async_wait_for( message, NULL ); |
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238 | return ERROR_CODE; |
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239 | } |
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240 | async_wait_for( message, & result ); |
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3912 | mejdrech | 241 | if( ERROR_OCCURRED( result )){ |
3846 | mejdrech | 242 | free( device->addr ); |
243 | free( device->addr_data ); |
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244 | arp_protos_destroy( & device->protos ); |
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245 | free( device ); |
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246 | return ERROR_CODE; |
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247 | } |
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248 | // get broadcast address |
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249 | message = async_send_1( device->phone, NET_NIL_BROADCAST_ADDR, device->device_id, & answer ); |
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3912 | mejdrech | 250 | if( ERROR_OCCURRED( measured_strings_return( device->phone, & device->broadcast_addr, & device->broadcast_data, 1 ))){ |
3846 | mejdrech | 251 | free( device->addr ); |
252 | free( device->addr_data ); |
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253 | arp_protos_destroy( & device->protos ); |
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254 | free( device ); |
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255 | async_wait_for( message, NULL ); |
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256 | return ERROR_CODE; |
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257 | } |
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258 | async_wait_for( message, & result ); |
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259 | // add to the cache |
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3912 | mejdrech | 260 | if( ERROR_OCCURRED( result ) |
261 | || ERROR_OCCURRED( arp_cache_add( & arp_globals.cache, device->device_id, device ))){ |
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3846 | mejdrech | 262 | free( device->addr ); |
263 | free( device->addr_data ); |
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264 | free( device->broadcast_addr ); |
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265 | free( device->broadcast_data ); |
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266 | arp_protos_destroy( & device->protos ); |
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267 | free( device ); |
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268 | return ERROR_CODE; |
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269 | } |
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270 | } |
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271 | return EOK; |
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272 | } |
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273 | |||
274 | measured_string_ref arp_translate_message( device_id_t device_id, services_t protocol, measured_string_ref target ){ |
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275 | arp_device_ref device; |
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276 | arp_proto_ref proto; |
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277 | measured_string_ref addr; |
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278 | size_t length; |
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279 | packet_t packet; |
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280 | arp_header_ref header; |
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281 | |||
282 | if( ! target ) return NULL; |
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283 | device = arp_cache_find( & arp_globals.cache, device_id ); |
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284 | if( ! device ) return NULL; |
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285 | proto = arp_protos_find( & device->protos, protocol ); |
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286 | if(( ! proto ) || ( proto->addr->length != target->length )) return NULL; |
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287 | addr = arp_addr_find( & proto->addresses, target->value, target->length ); |
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288 | if( addr ) return addr; |
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289 | // ARP packet content size = header + ( address + translation ) * 2 |
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290 | length = 8 + ( CONVERT_SIZE( char, uint8_t, proto->addr->length ) + CONVERT_SIZE( char, uint8_t, device->addr->length )) * 2; |
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291 | if( length > device->content ){ |
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292 | return NULL; |
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293 | } |
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3912 | mejdrech | 294 | packet = packet_get_5( arp_globals.networking_phone, SERVICE_ARP, device->addr_len, device->prefix, length, device->suffix ); |
3846 | mejdrech | 295 | if( ! packet ) return NULL; |
3912 | mejdrech | 296 | header = ( arp_header_ref ) packet_suffix( packet, length ); |
3846 | mejdrech | 297 | header->hardware = device->hardware; |
298 | header->hardware_length = device->addr->length; |
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299 | header->protocol = protocol_map( device->service, protocol ); |
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300 | header->protocol_length = proto->addr->length; |
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301 | header->operation = ARPOP_REQUEST; |
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302 | length = sizeof( arp_header_t ); |
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303 | memcpy((( uint8_t * ) header ) + length, device->addr->value, device->addr->length ); |
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304 | length += device->addr->length; |
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305 | memcpy((( uint8_t * ) header ) + length, proto->addr->value, proto->addr->length ); |
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306 | length += proto->addr->length; |
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307 | memset((( uint8_t * ) header ) + length, 0, device->addr->length ); |
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308 | length += device->addr->length; |
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309 | memcpy((( uint8_t * ) header ) + length, target->value, target->length ); |
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3912 | mejdrech | 310 | packet_set_addr( packet, ( uint8_t * ) device->addr->value, ( uint8_t * ) device->broadcast_addr->value, CONVERT_SIZE( char, uint8_t, device->addr->length )); |
3901 | mejdrech | 311 | async_msg_3( device->phone, NET_NETIF_SEND, device_id, SERVICE_ARP, packet_get_id( packet )); |
3846 | mejdrech | 312 | return NULL; |
313 | } |
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314 | |||
315 | int arp_receive_message( device_id_t device_id, packet_t packet ){ |
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316 | ERROR_DECLARE; |
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317 | |||
318 | size_t length; |
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319 | arp_header_ref header; |
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320 | arp_device_ref device; |
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321 | arp_proto_ref proto; |
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322 | // arp_addr_ref addr; |
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323 | measured_string_ref hw_source; |
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324 | /* measured_string_t proto_target; |
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325 | aid_t message; |
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326 | ipcarg_t result; |
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327 | int index; |
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328 | ipc_call_t answer; |
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3912 | mejdrech | 329 | */ uint8_t * src_hw; |
330 | uint8_t * src_proto; |
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331 | uint8_t * des_hw; |
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332 | uint8_t * des_proto; |
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3846 | mejdrech | 333 | |
334 | length = packet_get_data_length( packet ); |
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335 | if( length <= sizeof( arp_header_t )) return EINVAL; |
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336 | device = arp_cache_find( & arp_globals.cache, device_id ); |
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337 | if( ! device ) return ENOENT; |
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338 | header = ( arp_header_ref ) packet_get_data( packet ); |
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339 | if( header->hardware != device->hardware ) return EINVAL; |
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340 | if( length < sizeof( arp_header_t ) + ( header->hardware_length + header->protocol_length ) * 2 ) return EINVAL; |
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341 | proto = arp_protos_find( & device->protos, protocol_unmap( device->service, header->protocol )); |
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342 | if( ! proto ) return ENOENT; |
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3912 | mejdrech | 343 | src_hw = (( uint8_t * ) header ) + sizeof( arp_header_t ); |
3846 | mejdrech | 344 | src_proto = src_hw + header->hardware_length; |
345 | des_hw = src_proto + header->protocol_length; |
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346 | des_proto = des_hw + header->hardware_length; |
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3912 | mejdrech | 347 | hw_source = arp_addr_find( & proto->addresses, ( char * ) src_proto, CONVERT_SIZE( uint8_t, char, header->protocol_length )); |
3846 | mejdrech | 348 | // exists? |
349 | if( hw_source ){ |
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3912 | mejdrech | 350 | if( hw_source->length != CONVERT_SIZE( uint8_t, char, header->hardware_length )) return EINVAL; |
351 | memcpy( hw_source->value, src_hw, hw_source->length ); |
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3846 | mejdrech | 352 | } |
353 | // is my protocol address? |
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3912 | mejdrech | 354 | // TODO query protocol module? |
3846 | mejdrech | 355 | /* proto_target.value = des_proto; |
356 | proto_target.length = header->protocol_length; |
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357 | // TODO send necessary? |
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358 | message = async_send_0( proto->phone, NET_IL_MY_ADDR, & answer ); |
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3912 | mejdrech | 359 | if( ERROR_OCCURRED( measured_strings_send( device->phone, & proto_target, 1 ))){ |
3846 | mejdrech | 360 | async_wait_for( message, NULL ); |
361 | return ERROR_CODE; |
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362 | } |
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363 | async_wait_for( message, & result ); |
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364 | if( result == EOK ){ |
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3912 | mejdrech | 365 | */ if( proto->addr->length != CONVERT_SIZE( uint8_t, char, header->hardware_length )) return EINVAL; |
366 | if( ! strncmp( proto->addr->value, ( char * ) des_proto, proto->addr->length )){ |
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3846 | mejdrech | 367 | // not already upadted? |
368 | if( ! hw_source ){ |
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3912 | mejdrech | 369 | hw_source = measured_string_create_bulk(( char * ) src_hw, CONVERT_SIZE( uint8_t, char, header->hardware_length )); |
3846 | mejdrech | 370 | if( ! hw_source ) return ENOMEM; |
3912 | mejdrech | 371 | ERROR_PROPAGATE( arp_addr_add( & proto->addresses, ( char * ) src_proto, CONVERT_SIZE( uint8_t, char, header->protocol_length ), hw_source )); |
3846 | mejdrech | 372 | } |
373 | if( header->operation == ARPOP_REQUEST ){ |
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374 | header->operation = ARPOP_REPLY; |
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375 | /* for( index = 0; index + header->hardware_length < header->protocol_length; index += header->hardware_length ){ |
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376 | memcpy( src_hw, src_proto + index, header->hardware_length ); |
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377 | memcpy( src_proto + index, des_proto + index, header->hardware_length ); |
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378 | memcpy( des_proto + index, src_hw, header->hardware_length ); |
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379 | } |
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380 | memcpy( src_hw, src_proto + index, header->hardware_length - header->protocol_length ); |
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381 | memcpy( src_proto + index, des_proto + index, header->hardware_length - header->protocol_length ); |
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382 | memcpy( des_proto + index, src_hw, header->hardware_length - header->protocol_length ); |
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383 | memcpy( src_hw, des_hw, header->hardware_length ); |
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384 | memcpy( des_hw, hw_source->value, hw_source->length ); |
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385 | */ memcpy( des_proto, src_proto, header->protocol_length ); |
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386 | memcpy( src_proto, proto->addr->value, header->protocol_length ); |
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387 | memcpy( src_hw, des_hw, header->hardware_length ); |
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3912 | mejdrech | 388 | memcpy( des_hw, hw_source->value, header->hardware_length ); |
389 | packet_set_addr( packet, src_hw, des_hw, header->hardware_length ); |
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3901 | mejdrech | 390 | async_msg_3( device->phone, NET_NETIF_SEND, device_id, SERVICE_ARP, packet_get_id( packet )); |
391 | }else{ |
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392 | packet_release( arp_globals.networking_phone, packet_get_id( packet )); |
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3846 | mejdrech | 393 | } |
394 | } |
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395 | return EOK; |
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396 | } |
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397 | |||
398 | int arp_clear_device_message( device_id_t device_id ){ |
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399 | arp_device_ref device; |
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400 | |||
401 | device = arp_cache_find( & arp_globals.cache, device_id ); |
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402 | if( ! device ) return ENOENT; |
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403 | clear_device( device ); |
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404 | return EOK; |
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405 | } |
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406 | |||
407 | void clear_device( arp_device_ref device ){ |
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408 | int count; |
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409 | arp_proto_ref proto; |
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410 | |||
411 | count = arp_protos_count( & device->protos ); |
||
412 | while( count > 0 ){ |
||
413 | proto = arp_protos_get_index( & device->protos, count ); |
||
414 | if( proto->addr ) free( proto->addr ); |
||
415 | if( proto->addr_data ) free( proto->addr_data ); |
||
416 | arp_addr_destroy( & proto->addresses ); |
||
417 | -- count; |
||
418 | } |
||
419 | arp_protos_clear( & device->protos ); |
||
420 | } |
||
421 | |||
422 | int arp_clean_cache_message( void ){ |
||
423 | int count; |
||
424 | arp_device_ref device; |
||
425 | |||
426 | count = arp_cache_count( & arp_globals.cache ); |
||
427 | while( count > 0 ){ |
||
428 | device = arp_cache_get_index( & arp_globals.cache, count ); |
||
429 | if( device ){ |
||
430 | clear_device( device ); |
||
3912 | mejdrech | 431 | if( device->addr_data ) free( device->addr_data ); |
3846 | mejdrech | 432 | if( device->broadcast_data ) free( device->broadcast_data ); |
433 | } |
||
434 | } |
||
435 | arp_cache_clear( & arp_globals.cache ); |
||
436 | return EOK; |
||
437 | } |
||
438 | |||
439 | int arp_message( ipc_callid_t callid, ipc_call_t * call, ipc_call_t * answer, int * answer_count ){ |
||
440 | ERROR_DECLARE; |
||
441 | |||
442 | measured_string_ref address; |
||
443 | measured_string_ref translation; |
||
444 | char * data; |
||
445 | |||
446 | * answer_count = 0; |
||
447 | switch( IPC_GET_METHOD( * call )){ |
||
448 | case IPC_M_PHONE_HUNGUP: |
||
449 | return EOK; |
||
450 | case NET_ARP_DEVICE: |
||
451 | ERROR_PROPAGATE( measured_strings_receive( & address, & data, 1 )); |
||
3912 | mejdrech | 452 | if( ERROR_OCCURRED( arp_device_message( IPC_GET_DEVICE( call ), IPC_GET_SERVICE( call ), IPC_GET_PROTO( call ), address ))){ |
3846 | mejdrech | 453 | free( address ); |
454 | free( data ); |
||
455 | } |
||
456 | return ERROR_CODE; |
||
457 | case NET_ARP_TRANSLATE: |
||
458 | ERROR_PROPAGATE( measured_strings_receive( & address, & data, 1 )); |
||
459 | translation = arp_translate_message( IPC_GET_DEVICE( call ), IPC_GET_PROTO( call ), address ); |
||
460 | free( address ); |
||
461 | free( data ); |
||
462 | if( ! translation ) return ENOENT; |
||
463 | return measured_strings_reply( translation, 1 ); |
||
464 | case NET_ARP_CLEAR_DEVICE: |
||
465 | return arp_clear_device_message( IPC_GET_DEVICE( call )); |
||
466 | case NET_ARP_CLEAN_CACHE: |
||
467 | return arp_clean_cache_message(); |
||
468 | } |
||
469 | return ENOTSUP; |
||
470 | } |
||
471 | |||
472 | void arp_receiver( ipc_callid_t iid, ipc_call_t * icall ){ |
||
473 | ERROR_DECLARE; |
||
474 | |||
475 | packet_t packet; |
||
476 | |||
477 | while( true ){ |
||
3912 | mejdrech | 478 | switch( IPC_GET_METHOD( * icall )){ |
3846 | mejdrech | 479 | case NET_IL_DEVICE_STATE: |
480 | //TODO clear device if off? |
||
481 | break; |
||
482 | case NET_IL_RECEIVED: |
||
3912 | mejdrech | 483 | if( ! ERROR_OCCURRED( packet_translate( arp_globals.networking_phone, & packet, IPC_GET_PACKET( icall )))){ |
484 | ERROR_CODE = arp_receive_message( IPC_GET_DEVICE( icall ), packet ); |
||
3846 | mejdrech | 485 | } |
3912 | mejdrech | 486 | ipc_answer_0( iid, ERROR_CODE ); |
3846 | mejdrech | 487 | break; |
488 | default: |
||
3912 | mejdrech | 489 | ipc_answer_0( iid, ENOTSUP ); |
3846 | mejdrech | 490 | } |
3912 | mejdrech | 491 | iid = async_get_call( icall ); |
3846 | mejdrech | 492 | } |
493 | } |
||
494 | |||
495 | /** @} |
||
496 | */ |