f7ec0691e9e8f39c577f707bb4582ceafe51fda9
[senf.git] / senf / Packets / DefaultBundle / IPv6Extensions.test.cc
1 // $Id$
2 //
3 // Copyright (C) 2007
4 // Fraunhofer Institute for Open Communication Systems (FOKUS)
5 // Competence Center NETwork research (NET), St. Augustin, GERMANY
6 //     Stefan Bund <g0dil@berlios.de>
7 //     Philipp Batroff <philipp.batroff@fokus.fraunhofer.de>
8 //
9 // This program is free software; you can redistribute it and/or modify
10 // it under the terms of the GNU General Public License as published by
11 // the Free Software Foundation; either version 2 of the License, or
12 // (at your option) any later version.
13 //
14 // This program is distributed in the hope that it will be useful,
15 // but WITHOUT ANY WARRANTY; without even the implied warranty of
16 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
17 // GNU General Public License for more details.
18 //
19 // You should have received a copy of the GNU General Public License
20 // along with this program; if not, write to the
21 // Free Software Foundation, Inc.,
22 // 59 Temple Place - Suite 330, Boston, MA  02111-1307, USA.
23
24 /** \file
25     \brief IPv6Extensions unit tests */
26
27 //#include "IPv6Extensions.test.hh"
28 //#include "IPv6Extensions.test.ih"
29
30 // Custom includes
31 #include "IPv6Extensions.hh"
32 #include "IPv6Packet.hh"
33 #include "UDPPacket.hh"
34 #include "ICMPv6Packet.hh"
35 #include "ICMPv6TypePacket.hh"
36 #include "EthernetPacket.hh"
37
38 #include <senf/Utils/auto_unit_test.hh>
39 #include <boost/test/test_tools.hpp>
40
41 #define prefix_
42 ///////////////////////////////cc.p////////////////////////////////////////
43
44 SENF_AUTO_UNIT_TEST(ipv6Extensions_fragment)
45 {
46     // Just for the fun of it, we test a nice chain: A fragment of a fragmented UDP packet
47     unsigned char Fragment_packetData[] = {
48         // IP header
49         0x60, 0x00, 0x00, 0x00,         // IP Version, class, flow label
50         0, 20,                          // payload length
51         44,                             // next header (IPv6 Fragment)
52         32,                             // hop limit
53         0x20, 0x01, 0, 0, 0, 0, 0, 0,   // source ip = 2001::1
54            0, 0, 0, 0, 0, 0, 0, 0x01,
55         0x20, 0x01, 0, 0, 0, 0, 0, 0,   // destination ip = 2001::2
56            0, 0, 0, 0, 0, 0, 0, 0x02,
57         // IPv6 Fragment header
58         17,                             // next header (UDP)
59         0,                              // reserved
60         0x05, 0x00,                     // fragment offset, last fragment
61         0x01, 0x02, 0x03, 0x04,         // id
62         // UDP header
63         0x10, 0x00,                     // source port
64         0x20, 0x00,                     // destination port
65         0, 12,                          // length
66         0x00, 0x00,                     // CRC (no, I won't calculate this one ...)
67         // Payload data
68         0x11, 0x12, 0x13, 0x14
69     };
70
71     senf::IPv6Packet pFragment_packet (senf::IPv6Packet::create(Fragment_packetData));
72
73     BOOST_CHECK_EQUAL( pFragment_packet->version(), 6u );
74     BOOST_CHECK_EQUAL( pFragment_packet->length(), 20u );
75     BOOST_CHECK_EQUAL( pFragment_packet->nextHeader(), 44u );
76     BOOST_CHECK_EQUAL( pFragment_packet->source().value(),
77             senf::INet6Address::from_string("2001::1") );
78     BOOST_CHECK_EQUAL( pFragment_packet->destination().value(),
79             senf::INet6Address::from_string("2001::2") );
80
81     std::ostringstream oss (std::ostringstream::out);
82     SENF_CHECK_NO_THROW( pFragment_packet.dump( oss));
83
84     BOOST_CHECK( pFragment_packet.next().is<senf::IPv6FragmentPacket>() );
85
86     senf::IPv6FragmentPacket fFragment_packet (pFragment_packet.next().as<senf::IPv6FragmentPacket>());
87
88     BOOST_CHECK_EQUAL( fFragment_packet->nextHeader(), 17u );
89     BOOST_CHECK_EQUAL( fFragment_packet->fragmentOffset(), 160u );
90     BOOST_CHECK_EQUAL( fFragment_packet->id(), 0x01020304u );
91     BOOST_CHECK( fFragment_packet.next().is<senf::UDPPacket>() );
92
93     senf::UDPPacket uFragment_packet (fFragment_packet.next().as<senf::UDPPacket>());
94
95     BOOST_CHECK_EQUAL( uFragment_packet->source(), 0x1000u );
96     BOOST_CHECK_EQUAL( uFragment_packet->destination(), 0x2000u );
97     BOOST_CHECK_EQUAL( uFragment_packet->length(), 12u );
98     BOOST_CHECK( uFragment_packet.next().is<senf::DataPacket>() );
99
100     senf::DataPacket dFragment_packet (uFragment_packet.next().as<senf::DataPacket>());
101     senf::PacketData::iterator i (uFragment_packet.next().data().begin());
102     BOOST_CHECK_EQUAL( dFragment_packet.size(), 4u );
103     BOOST_CHECK_EQUAL( dFragment_packet.data()[0], 0x11 );
104 }
105
106
107 SENF_AUTO_UNIT_TEST(ipv6Extensions_routing)
108 {
109     unsigned char Routing_packetData[] = {
110         // IP header
111         0x60, 0x30, 0x00, 0x00,
112         0x00, 0x10,             // payload Length
113         0x2b,                   // next Header   (43 = Routing Header)
114         0xff,                   // Hop Limit
115         0xfe, 0x80, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
116         0x02, 0x01, 0x02, 0xff, 0xfe, 0x00, 0x02, 0x00, // Src Addr
117         0x35, 0x55, 0x55, 0x55, 0x66, 0x66, 0x66, 0x66,
118         0x77, 0x77, 0x77, 0x77, 0x88, 0x88, 0x88, 0x88, // Dest. Addr
119         // Routing Header
120         0x3a,                   // nextHeader (58)
121         0x00,                   // length ( 0 )
122         0x00,                   // routing type ( 0 )
123         0x00,                   // Left Segments ( 0 )
124         0x00, 0x00, 0x00, 0x00, // reserved
125         // ICMPv6
126         0x01,                   // type: 1 (unreachable )
127         0x00,                   // code: 0 (route unreachable)
128         0xa3, 0xd3,             // checksum (incorrect in wireshark capture file, should be 0xa3c4)
129         0x00, 0x00, 0x00, 0x00
130     };
131
132     senf::IPv6Packet pRouting_packet (senf::IPv6Packet::create(Routing_packetData));
133
134     BOOST_CHECK_EQUAL( pRouting_packet->version(), 6u );
135     BOOST_CHECK_EQUAL( pRouting_packet->length(), 16u );
136     BOOST_CHECK_EQUAL( pRouting_packet->nextHeader(), 43u );
137     BOOST_CHECK_EQUAL( pRouting_packet->source().value(),
138             senf::INet6Address::from_string("fe80::201:2ff:fe00:200") );
139     BOOST_CHECK_EQUAL( pRouting_packet->destination().value(),
140             senf::INet6Address::from_string("3555:5555:6666:6666:7777:7777:8888:8888"));
141
142     std::ostringstream oss (std::ostringstream::out);
143     SENF_CHECK_NO_THROW( pRouting_packet.dump( oss));
144
145     BOOST_REQUIRE( pRouting_packet.next().is<senf::IPv6RoutingPacket>() );
146
147     senf::IPv6RoutingPacket pRouting_extension (pRouting_packet.next().as<senf::IPv6RoutingPacket>());
148
149     BOOST_CHECK_EQUAL( pRouting_extension->nextHeader(), 58u );
150     BOOST_CHECK_EQUAL( pRouting_extension->headerLength(), 0x00 );
151     BOOST_CHECK_EQUAL( pRouting_extension->routingType(), 0x00 );
152     BOOST_CHECK_EQUAL( pRouting_extension->segmentsLeft(), 0x00);
153
154     BOOST_CHECK_EQUAL( pRouting_extension->reserved(), 0u);
155
156     BOOST_REQUIRE( pRouting_extension.next().is<senf::ICMPv6Packet>() );
157     senf::ICMPv6Packet pICMPv6 (pRouting_extension.next().as<senf::ICMPv6Packet>());
158     BOOST_CHECK_EQUAL( pICMPv6->type(), 1u);
159     BOOST_CHECK_EQUAL( pICMPv6->code(), 0u);
160     BOOST_CHECK_EQUAL( pICMPv6->checksum(), 0xa3d3);
161 }
162
163
164 SENF_AUTO_UNIT_TEST(ipv6Extensions_hopByHop_parse)
165 {
166     unsigned char HopByHop_packetData[] = {
167         0x60, 0x00, 0x00, 0x00, // IP version, class, flow label
168         0x00, 0x24,             // payload length
169         0x00,                   // next header: IPv6 hop-by-hop option (0)
170         0x01,                   // hop limit (1)
171         0xfe, 0x80, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
172         0x02, 0x19, 0xb9, 0xff, 0xfe, 0xeb, 0xb2, 0x26, // IPv6 Source address
173         0xff, 0x02, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
174         0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x16, // IPv6 Destination address ff02::16
175         // HopByHop option
176         0x3a, // next Header (ICMPv6)
177         0x00, // Length (0 = 8Bytes)
178         // option Header
179         0x05, // option type
180         0x02, // option Length (= 2 byte)
181         0x00, 0x00, //data (zero data here ...)
182         0x02, //option type (2, set for testing purposes only)
183         0x00,  //option Type length (=0, no data field needed here)
184         // ICMPv6
185         0x8f, // type 143
186         0x00, // code 0, should always be 0
187         0x50, 0xcc, // checksum
188     };
189
190     senf::IPv6Packet pHop_packet (senf::IPv6Packet::create(HopByHop_packetData));
191     BOOST_CHECK_EQUAL( pHop_packet->version(), 6u );
192     BOOST_CHECK_EQUAL( pHop_packet->length(), 36u );
193     BOOST_CHECK_EQUAL( pHop_packet->nextHeader(), 0u );
194     BOOST_CHECK_EQUAL( pHop_packet->source().value(),
195             senf::INet6Address::from_string("fe80::219:b9ff:feeb:b226") );
196     BOOST_CHECK_EQUAL( pHop_packet->destination().value(), senf::INet6Address::from_string("ff02::16") );
197
198     std::ostringstream oss (std::ostringstream::out);
199     SENF_CHECK_NO_THROW( pHop_packet.dump( oss ));
200
201     BOOST_REQUIRE( pHop_packet.next().is<senf::IPv6HopByHopOptionsPacket>() );
202     senf::IPv6HopByHopOptionsPacket pHop_extension (pHop_packet.next().as<senf::IPv6HopByHopOptionsPacket>());
203     BOOST_CHECK_EQUAL( pHop_extension->nextHeader(), 58u );
204     BOOST_CHECK_EQUAL( pHop_extension->headerLength(), 0x00 );
205
206     senf::IPv6HopByHopOptionsPacket::Parser::options_t::container optC(pHop_extension->options() );
207     senf::IPv6HopByHopOptionsPacket::Parser::options_t::container::iterator listIter (optC.begin());
208
209     BOOST_CHECK_EQUAL( listIter->altAction(), 0u);
210     BOOST_CHECK_EQUAL( listIter->changeFlag(), 0u);
211     BOOST_CHECK_EQUAL( listIter->optionType(), 5u);
212     BOOST_CHECK_EQUAL( listIter->length(), 2u);
213     ++listIter;
214     BOOST_CHECK_EQUAL( listIter->altAction(), 0u);
215     BOOST_CHECK_EQUAL( listIter->changeFlag(), 0u);
216     BOOST_CHECK_EQUAL( listIter->optionType(), 2u);
217     BOOST_CHECK_EQUAL( listIter->length(), 0);
218
219     BOOST_REQUIRE( pHop_extension.next().is<senf::ICMPv6Packet>() );
220     senf::ICMPv6Packet pICMPv6  (pHop_extension.next().as<senf::ICMPv6Packet>());
221     BOOST_CHECK_EQUAL( pICMPv6->type(), 0x8f);
222     BOOST_CHECK_EQUAL( pICMPv6->code(), 0u);
223     BOOST_CHECK_EQUAL( pICMPv6->checksum(), 0x50cc);
224 }
225
226
227 SENF_AUTO_UNIT_TEST(ipv6Extensions_hopByHop_create)
228 {
229     std::ostringstream oss (std::ostringstream::out);
230     unsigned char HopByHop_packetData[] = {
231         // Ethernet
232         0x33 ,0x33 ,0x00 ,0x00 ,0x00 ,0x16 , // destination MAC
233         0x00 ,0x19 ,0xb9 ,0xeb ,0xb2 ,0x26 , // source MAC
234         0x86 ,0xdd,                          // type (IPv6)
235         // IPv6
236         0x60, 0x00, 0x00, 0x00, // IP version, class, flow label
237         0x00, 0x24,             // payload length
238         0x00,                   // next header: IPv6 hop-by-hop option (0)
239         0x01,                   // hop limit (1)
240         0xfe, 0x80, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, // IPv6 Source address
241         0x02, 0x19, 0xb9, 0xff, 0xfe, 0xeb, 0xb2, 0x26, // (fe80::219:b9ff:feeb:b226)
242         0xff, 0x02, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, // IPv6 Destination address
243         0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x16, // (ff02::16)
244         // HopByHop option
245         0x3a, // next Header (ICMPv6)
246         0x00, // Length (0 = 8Bytes)
247         // option Header
248         0x05, // option type
249         0x02, // option Length (= 2 byte)
250         0x00, 0x00, // data (zero data here ...)
251         0x01, 0x00, // padding
252         // ICMPv6
253         0x8f, // type 143
254         0x00, // code 0, should always be 0
255         0x50 ,0xcc , // checksum
256         // MLDv2
257         0x00 ,0x00 , // reserved, zero by default
258         0x00 ,0x01 , // nr of McAddressRecords
259         0x04 ,       // recordType
260         0x00 ,       // auxiliarydatalength
261         0x00 ,0x00 , // number of sources
262         0xff ,0x02 ,0x00 ,0x00, 0x00 ,0x00 ,0x00 ,0x00 ,  // ipv6McAddress ff02::1:ffeb:b226
263         0x00 ,0x00 ,0x00 ,0x01 ,0xff ,0xeb ,0xb2 ,0x26
264     };
265     senf::EthernetPacket eth (senf::EthernetPacket::create() );
266     eth->destination() = senf::MACAddress::from_string( "33:33:00:00:00:16" );
267     eth->source() = senf::MACAddress::from_string( "00:19:b9:eb:b2:26" );
268     eth->type_length() = 0x86dd;
269
270     senf::IPv6Packet ip (senf::IPv6Packet::createAfter(eth));
271     ip->version() = 6u;
272     ip->length() = 12u;
273     ip->nextHeader() = 0u;
274     ip->hopLimit() = 1u;
275     ip->source() = senf::INet6Address::from_string("fe80::219:b9ff:feeb:b226");
276     ip->destination() = senf::INet6Address::from_string("ff02::16");
277
278     senf::IPv6HopByHopOptionsPacket pext (senf::IPv6HopByHopOptionsPacket::createAfter(ip) );
279     pext->nextHeader() = 58u;
280     {
281         senf::IPv6HopByHopOptionsPacket::Parser::options_t::container optC(pext->options() );
282         {
283             senf::IPv6GenericOptionParser opt (
284                     optC.push_back_space().init<senf::IPv6GenericOptionParser>());
285             opt.altAction() = 0u;
286             opt.changeFlag() = 0u;
287             opt.optionType() = 5u;
288             unsigned char val[] = {0x00, 0x00};
289             opt.value(val);
290         }
291     }
292
293     senf::ICMPv6Packet icmp (senf::ICMPv6Packet::createAfter (pext));
294     icmp->code() = 0u;
295     senf::MLDv2ListenerReport mld ( senf::MLDv2ListenerReport::createAfter(icmp) );
296     {
297         senf::MLDv2ListenerReport::Parser::mcastAddrRecords_t::container c (mld->mcastAddrRecords() );
298         c.push_back_space();
299         c.back().recordType() = 4u;
300         senf::INet6Address addr( senf::INet6Address::from_string("ff02::1:ffeb:b226") );
301         c.back().mcAddress() = addr;
302     }
303     eth.finalizeAll();
304     SENF_CHECK_NO_THROW( eth.dump(oss) );
305     SENF_CHECK_EQUAL_COLLECTIONS(
306             HopByHop_packetData, HopByHop_packetData+sizeof(HopByHop_packetData),
307             eth.data().begin(), eth.data().end() );
308 }
309
310
311 namespace {
312     struct IPv6ChecksumOptionParser : public senf::IPv6OptionParser
313     {
314     #   include SENF_PARSER()
315         SENF_PARSER_INHERIT ( IPv6OptionParser );
316         SENF_PARSER_FIELD ( extendedType, senf::UInt8Parser );
317         SENF_PARSER_FIELD ( checksum,   senf::UInt32Parser  );
318         SENF_PARSER_FINALIZE ( IPv6ChecksumOptionParser     );
319
320         SENF_PARSER_INIT() {
321             optionType() = typeId;
322             length() = 5u;
323             extendedType() = extendedTypeId;
324         }
325
326         static const boost::uint8_t typeId = 0x0d;
327         static const boost::uint8_t extendedTypeId = 0x4d;
328     };
329 }
330
331 SENF_AUTO_UNIT_TEST(ipv6Extensions_hopByHop_create_SN)
332 {
333     senf::IPv6HopByHopOptionsPacket p ( senf::IPv6HopByHopOptionsPacket::create() );
334     p->nextHeader() = 0x3a;
335     {
336         senf::IPv6HopByHopOptionsPacket::Parser::options_t::container optC (p->options() );
337         {
338             IPv6ChecksumOptionParser opt (
339                     optC.push_back_space().init<IPv6ChecksumOptionParser>());
340             opt.checksum() = 0x01234567u;
341         }
342     }
343
344     unsigned char data[] = {
345             0x3a, 0x01,  // Hop-By-Hop Header (nextHeader, length)
346             0x0d, 0x05,  // option type, length
347             // option value: extendedType, checksum
348             0x4d, 0x01, 0x23, 0x45, 0x67,
349             // padding (PadN option: type, length, 0-padding)
350             0x01, 0x05, 0x00, 0x00, 0x00, 0x00, 0x00
351     };
352     SENF_CHECK_EQUAL_COLLECTIONS( data, data+sizeof(data),
353                                  p.data().begin(), p.data().end() );
354 }
355
356
357 SENF_AUTO_UNIT_TEST(ipv6Extensions_hopByHop_parse_SN)
358 {
359     unsigned char data[] = {
360             0x3a, 0x01,  // Hop-By-Hop Header (nextHeader, length)
361             0x0d, 0x05,  // option type, length
362             // option value: slfNetType, checksum
363             0x4d, 0x01, 0x23, 0x45, 0x67,
364             // padding (PadN option: type, length, 0-padding)
365             0x01, 0x05, 0x00, 0x00, 0x00, 0x00, 0x00
366     };
367
368     senf::IPv6HopByHopOptionsPacket p ( senf::IPv6HopByHopOptionsPacket::create(data) );
369     BOOST_CHECK_EQUAL( p->nextHeader(), 0x3a);
370
371     {
372         typedef senf::IPv6HopByHopOptionsPacket::Parser::options_t::container optContainer_t;
373         optContainer_t optC (p->options() );
374         optContainer_t::iterator listIter (optC.begin());
375
376         BOOST_CHECK_EQUAL( listIter->optionType(), 0x0d);
377         BOOST_CHECK( listIter->is<IPv6ChecksumOptionParser>());
378         IPv6ChecksumOptionParser opt ( listIter->as<IPv6ChecksumOptionParser>());
379         BOOST_CHECK_EQUAL( opt.extendedType(), 0x4d);
380         BOOST_CHECK_EQUAL( opt.checksum(), 0x01234567);
381     }
382
383     std::ostringstream oss (std::ostringstream::out);
384     SENF_CHECK_NO_THROW( p.dump( oss));
385 }
386
387 ///////////////////////////////cc.e////////////////////////////////////////
388 #undef prefix_
389
390 \f
391 // Local Variables:
392 // mode: c++
393 // fill-column: 100
394 // c-file-style: "senf"
395 // indent-tabs-mode: nil
396 // ispell-local-dictionary: "american"
397 // compile-command: "scons -u test"
398 // comment-column: 40
399 // End: