1 | #include <stdint.h> |
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2 | #include <string.h> |
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3 | #include <byteswap.h> |
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4 | #include <errno.h> |
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5 | #include <gpxe/if_ether.h> |
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6 | #include <gpxe/iobuf.h> |
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7 | #include <gpxe/ndp.h> |
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8 | #include <gpxe/icmp6.h> |
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9 | #include <gpxe/ip6.h> |
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10 | #include <gpxe/netdevice.h> |
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11 | |
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12 | /** @file |
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13 | * |
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14 | * Neighbour Discovery Protocol |
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15 | * |
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16 | * This file implements address resolution as specified by the neighbour |
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17 | * discovery protocol in RFC2461. This protocol is part of the IPv6 protocol |
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18 | * family. |
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19 | */ |
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20 | |
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21 | /* A neighbour entry */ |
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22 | struct ndp_entry { |
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23 | /** Target IP6 address */ |
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24 | struct in6_addr in6; |
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25 | /** Link layer protocol */ |
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26 | struct ll_protocol *ll_protocol; |
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27 | /** Link-layer address */ |
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28 | uint8_t ll_addr[MAX_LL_ADDR_LEN]; |
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29 | /** State of the neighbour entry */ |
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30 | int state; |
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31 | }; |
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32 | |
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33 | /** Number of entries in the neighbour cache table */ |
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34 | #define NUM_NDP_ENTRIES 4 |
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35 | |
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36 | /** The neighbour cache table */ |
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37 | static struct ndp_entry ndp_table[NUM_NDP_ENTRIES]; |
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38 | #define ndp_table_end &ndp_table[NUM_NDP_ENTRIES] |
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39 | |
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40 | static unsigned int next_new_ndp_entry = 0; |
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41 | |
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42 | /** |
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43 | * Find entry in the neighbour cache |
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44 | * |
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45 | * @v in6 IP6 address |
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46 | */ |
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47 | static struct ndp_entry * |
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48 | ndp_find_entry ( struct in6_addr *in6 ) { |
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49 | struct ndp_entry *ndp; |
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50 | |
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51 | for ( ndp = ndp_table ; ndp < ndp_table_end ; ndp++ ) { |
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52 | if ( IP6_EQUAL ( ( *in6 ), ndp->in6 ) && |
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53 | ( ndp->state != NDP_STATE_INVALID ) ) { |
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54 | return ndp; |
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55 | } |
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56 | } |
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57 | return NULL; |
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58 | } |
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59 | |
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60 | /** |
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61 | * Add NDP entry |
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62 | * |
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63 | * @v netdev Network device |
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64 | * @v in6 IP6 address |
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65 | * @v ll_addr Link-layer address |
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66 | * @v state State of the entry - one of the NDP_STATE_XXX values |
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67 | */ |
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68 | static void |
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69 | add_ndp_entry ( struct net_device *netdev, struct in6_addr *in6, |
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70 | void *ll_addr, int state ) { |
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71 | struct ndp_entry *ndp; |
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72 | ndp = &ndp_table[next_new_ndp_entry++ % NUM_NDP_ENTRIES]; |
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73 | |
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74 | /* Fill up entry */ |
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75 | ndp->ll_protocol = netdev->ll_protocol; |
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76 | memcpy ( &ndp->in6, &( *in6 ), sizeof ( *in6 ) ); |
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77 | if ( ll_addr ) { |
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78 | memcpy ( ndp->ll_addr, ll_addr, netdev->ll_protocol->ll_addr_len ); |
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79 | } else { |
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80 | memset ( ndp->ll_addr, 0, netdev->ll_protocol->ll_addr_len ); |
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81 | } |
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82 | ndp->state = state; |
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83 | DBG ( "New neighbour cache entry: IP6 %s => %s %s\n", |
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84 | inet6_ntoa ( ndp->in6 ), netdev->ll_protocol->name, |
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85 | netdev->ll_protocol->ntoa ( ndp->ll_addr ) ); |
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86 | } |
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87 | |
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88 | /** |
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89 | * Resolve the link-layer address |
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90 | * |
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91 | * @v netdev Network device |
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92 | * @v dest Destination address |
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93 | * @v src Source address |
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94 | * @ret dest_ll_addr Destination link-layer address or NULL |
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95 | * @ret rc Status |
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96 | * |
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97 | * This function looks up the neighbour cache for an entry corresponding to the |
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98 | * destination address. If it finds a valid entry, it fills up dest_ll_addr and |
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99 | * returns 0. Otherwise it sends a neighbour solicitation to the solicited |
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100 | * multicast address. |
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101 | */ |
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102 | int ndp_resolve ( struct net_device *netdev, struct in6_addr *dest, |
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103 | struct in6_addr *src, void *dest_ll_addr ) { |
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104 | struct ll_protocol *ll_protocol = netdev->ll_protocol; |
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105 | struct ndp_entry *ndp; |
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106 | int rc; |
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107 | |
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108 | ndp = ndp_find_entry ( dest ); |
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109 | /* Check if the entry is valid */ |
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110 | if ( ndp && ndp->state == NDP_STATE_REACHABLE ) { |
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111 | DBG ( "Neighbour cache hit: IP6 %s => %s %s\n", |
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112 | inet6_ntoa ( *dest ), ll_protocol->name, |
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113 | ll_protocol->ntoa ( ndp->ll_addr ) ); |
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114 | memcpy ( dest_ll_addr, ndp->ll_addr, ll_protocol->ll_addr_len ); |
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115 | return 0; |
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116 | } |
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117 | |
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118 | /* Check if the entry was already created */ |
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119 | if ( ndp ) { |
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120 | DBG ( "Awaiting neighbour advertisement\n" ); |
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121 | /* For test */ |
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122 | // ndp->state = NDP_STATE_REACHABLE; |
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123 | // memcpy ( ndp->ll_addr, netdev->ll_addr, 6 ); |
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124 | // assert ( ndp->ll_protocol->ll_addr_len == 6 ); |
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125 | // icmp6_test_nadvert ( netdev, dest, ndp->ll_addr ); |
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126 | // assert ( ndp->state == NDP_STATE_REACHABLE ); |
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127 | /* Take it out till here */ |
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128 | return -ENOENT; |
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129 | } |
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130 | DBG ( "Neighbour cache miss: IP6 %s\n", inet6_ntoa ( *dest ) ); |
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131 | |
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132 | /* Add entry in the neighbour cache */ |
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133 | add_ndp_entry ( netdev, dest, NULL, NDP_STATE_INCOMPLETE ); |
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134 | |
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135 | /* Send neighbour solicitation */ |
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136 | if ( ( rc = icmp6_send_solicit ( netdev, src, dest ) ) != 0 ) { |
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137 | return rc; |
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138 | } |
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139 | return -ENOENT; |
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140 | } |
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141 | |
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142 | /** |
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143 | * Process neighbour advertisement |
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144 | * |
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145 | * @v iobuf I/O buffer |
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146 | * @v st_src Source address |
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147 | * @v st_dest Destination address |
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148 | */ |
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149 | int ndp_process_advert ( struct io_buffer *iobuf, struct sockaddr_tcpip *st_src __unused, |
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150 | struct sockaddr_tcpip *st_dest __unused ) { |
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151 | struct neighbour_advert *nadvert = iobuf->data; |
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152 | struct ndp_entry *ndp; |
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153 | |
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154 | /* Sanity check */ |
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155 | if ( iob_len ( iobuf ) < sizeof ( *nadvert ) ) { |
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156 | DBG ( "Packet too short (%zd bytes)\n", iob_len ( iobuf ) ); |
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157 | return -EINVAL; |
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158 | } |
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159 | |
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160 | assert ( nadvert->code == 0 ); |
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161 | assert ( nadvert->flags & ICMP6_FLAGS_SOLICITED ); |
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162 | assert ( nadvert->opt_type == 2 ); |
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163 | |
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164 | /* Update the neighbour cache, if entry is present */ |
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165 | ndp = ndp_find_entry ( &nadvert->target ); |
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166 | if ( ndp ) { |
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167 | |
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168 | assert ( nadvert->opt_len == |
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169 | ( ( 2 + ndp->ll_protocol->ll_addr_len ) / 8 ) ); |
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170 | |
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171 | if ( IP6_EQUAL ( ndp->in6, nadvert->target ) ) { |
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172 | memcpy ( ndp->ll_addr, nadvert->opt_ll_addr, |
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173 | ndp->ll_protocol->ll_addr_len ); |
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174 | ndp->state = NDP_STATE_REACHABLE; |
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175 | return 0; |
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176 | } |
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177 | } |
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178 | DBG ( "Unsolicited advertisement (dropping packet)\n" ); |
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179 | return 0; |
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180 | } |
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