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Filter: Add operators to find minimum and maximum element of sets
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4515bdba 1/*
9b0a0ba9
OZ
2 * This is unit testing configuration file for testing filters
3 *
64ba9f7b 4 * FIXME: add all examples from docs here.
4515bdba
PM
5 */
6
4515bdba
PM
7router id 62.168.0.1;
8
9b0a0ba9 9/* We have to setup any protocol */
96d757c1 10protocol device { }
4515bdba 11
b2f00837 12
04632fd7 13
9b0a0ba9
OZ
14/*
15 * Common definitions and functions
16 * --------------------------------
17 */
18
19define one = 1;
20define ten = 10;
04632fd7 21
4fc36f39
OF
22function onef(int a)
23{
24 return 1;
25}
26
132529ce
MM
27function twof(int a)
28{
29 return 2;
30}
92a72a4c 31
132529ce
MM
32function oneg(int a)
33{
34 return 1;
35}
92a72a4c 36
132529ce
MM
37bt_test_same(onef, onef, 1);
38bt_test_same(onef, oneg, 1);
39bt_test_same(onef, twof, 0);
66dbdbd9 40
9b0a0ba9 41/*
0ed1e850
PT
42 * Testing boolean expressions
43 * ---------------------------
9b0a0ba9
OZ
44 */
45
0ed1e850
PT
46function t_bool()
47bool b;
9b0a0ba9 48{
0ed1e850
PT
49 b = true;
50 bt_assert(b);
51 bt_assert(!!b);
9c400ec9 52
0ed1e850
PT
53 bt_assert(format(true) = "TRUE");
54 bt_assert(format(false) = "FALSE");
9b0a0ba9 55
0ed1e850
PT
56 if ( b = true ) then
57 bt_assert(b);
58 else
59 bt_assert(false);
9b0a0ba9 60
0ed1e850
PT
61 bt_assert(true && true);
62 bt_assert(true || false);
63 bt_assert(! false && ! false && true);
64 bt_assert(1 < 2 && 1 != 3);
65 bt_assert(true && true && ! false);
6fbcd891
OZ
66 # bt_assert(true || 1+"a");
67 # bt_assert(!(false && 1+"a"));
0ed1e850
PT
68 bt_assert(!(true && false));
69}
9b0a0ba9 70
0ed1e850 71bt_test_suite(t_bool, "Testing boolean expressions");
9b0a0ba9 72
9b0a0ba9 73
9b0a0ba9 74
0ed1e850
PT
75/*
76 * Testing integers
77 * ----------------
78 */
9b0a0ba9 79
0ed1e850
PT
80define four = 4;
81define xyzzy = (120+10);
82define '1a-a1' = (xyzzy-100);
9b0a0ba9 83
0ed1e850
PT
84function t_int()
85int i;
86{
87 bt_assert(xyzzy = 130);
88 bt_assert('1a-a1' = 30);
9b0a0ba9 89
0ed1e850
PT
90 i = four;
91 i = 12*100 + 60/2 + i;
92 i = (i + 0);
93 bt_assert(i = 1234);
9b0a0ba9 94
0ed1e850 95 bt_assert(format(i) = "1234");
9b0a0ba9 96
0ed1e850
PT
97 i = 4200000000;
98 bt_assert(i = 4200000000);
99 bt_assert(i > 4100000000);
100 bt_assert(!(i > 4250000000));
101
102 bt_assert(1 = 1);
103 bt_assert(!(1 != 1));
104
105 bt_assert(1 != 2);
106 bt_assert(1 <= 2);
107
108 bt_assert(1 != "a");
109 bt_assert(1 != (0,1));
c39a1cb1
PT
110
111 bt_assert(!(i = 4));
112 bt_assert(1 <= 1);
113 bt_assert(!(1234 < 1234));
9b0a0ba9
OZ
114}
115
0ed1e850 116bt_test_suite(t_int, "Testing integers");
9b0a0ba9
OZ
117
118
119
120
121/*
0ed1e850
PT
122 * Testing sets of integers
123 * ------------------------
124 */
9b0a0ba9 125
0ed1e850
PT
126define is1 = [ one, (2+1), (6-one), 8, 11, 15, 17, 19];
127define is2 = [(17+2), 17, 15, 11, 8, 5, 3, 2];
128define is3 = [5, 17, 2, 11, 8, 15, 3, 19];
9b0a0ba9 129
0ed1e850
PT
130function t_int_set()
131int set is;
132{
133 bt_assert(1 ~ [1,2,3]);
134 bt_assert(5 ~ [1..20]);
135 bt_assert(2 ~ [ 1, 2, 3 ]);
136 bt_assert(5 ~ [ 4 .. 7 ]);
137 bt_assert(1 !~ [ 2, 3, 4 ]);
fe503c7c 138 bt_assert(999 !~ [ 666, 333 ]);
9b0a0ba9 139
0ed1e850
PT
140 is = [ 2, 3, 4, 7..11 ];
141 bt_assert(10 ~ is);
142 bt_assert(5 !~ is);
9b0a0ba9 143
0ed1e850
PT
144 bt_assert(1 ~ is1);
145 bt_assert(3 ~ is1);
146 bt_assert(5 ~ is1);
147 bt_assert((one+2) ~ is1);
148 bt_assert(2 ~ is2);
149 bt_assert(2 ~ is3);
150 bt_assert(4 !~ is1);
151 bt_assert(4 !~ is2);
152 bt_assert(4 !~ is3);
153 bt_assert(10 !~ is1);
154 bt_assert(10 !~ is2);
155 bt_assert(10 !~ is3);
156 bt_assert(15 ~ is1);
157 bt_assert(15 ~ is2);
158 bt_assert(15 ~ is3);
159 bt_assert(18 !~ is1);
160 bt_assert(18 !~ is2);
161 bt_assert(18 !~ is3);
162 bt_assert(19 ~ is1);
163 bt_assert(19 ~ is2);
164 bt_assert(19 ~ is3);
165 bt_assert(20 !~ is1);
166 bt_assert(20 !~ is2);
167 bt_assert(20 !~ is3);
9b0a0ba9 168
0ed1e850
PT
169 bt_assert([1,2] != [1,3]);
170 bt_assert([1,4..10,20] = [1,4..10,20]);
9b0a0ba9 171
0ed1e850 172 bt_assert(format([ 1, 2, 1, 1, 1, 3, 4, 1, 1, 1, 5 ]) = "[1, 1, 1, 1, 1, 1, 1, 2, 3, 4, 5]");
94d9dfa4
PM
173}
174
0ed1e850 175bt_test_suite(t_int_set, "Testing sets of integers");
cbfd671f 176
9b0a0ba9
OZ
177
178
179
101c5a50 180/*
0ed1e850
PT
181 * Testing string matching
182 * -----------------------
101c5a50
OZ
183 */
184
0ed1e850
PT
185function t_string()
186string st;
101c5a50 187{
0ed1e850
PT
188 st = "Hello";
189 bt_assert(format(st) = "Hello");
190 bt_assert(st ~ "Hell*");
191 bt_assert(st ~ "?ello");
192 bt_assert(st ~ "Hello");
193 bt_assert(st ~ "Hell?");
194 bt_assert(st !~ "ell*");
101c5a50
OZ
195}
196
0ed1e850 197bt_test_suite(t_string, "Testing string matching");
101c5a50 198
101c5a50 199
101c5a50 200
101c5a50 201
0ed1e850
PT
202/*
203 * Testing pairs
204 * -------------
205 */
101c5a50 206
0ed1e850
PT
207function 'mkpair-a'(int a)
208{
209 return (1, a);
210}
101c5a50 211
0ed1e850
PT
212function t_pair()
213pair pp;
214{
215 pp = (1, 2);
c39a1cb1 216 bt_assert(format(pp) = "(1,2)");
0ed1e850
PT
217 bt_assert((1,2) = pp);
218 bt_assert((1,1+1) = pp);
219 bt_assert('mkpair-a'(2) = pp);
220 bt_assert((1,2) = (1,1+1));
221 bt_assert(((1,2) < (2,2)));
222 bt_assert(!((1,1) > (1,1)));
101c5a50
OZ
223}
224
0ed1e850 225bt_test_suite(t_pair, "Testing pairs");
101c5a50
OZ
226
227
228
229
9b0a0ba9 230/*
0ed1e850
PT
231 * Testing sets of pairs
232 * ---------------------
9b0a0ba9
OZ
233 */
234
0ed1e850
PT
235function t_pair_set()
236pair pp;
237pair set ps;
4bb18dd2 238{
0ed1e850
PT
239 pp = (1, 2);
240 ps = [(1,(one+one)), (3,4)..(4,8), (5,*), (6,3..6)];
241 bt_assert(format(ps) = "[(1,2), (3,4)..(4,8), (5,0)..(5,65535), (6,3)..(6,6)]");
242 bt_assert(pp ~ ps);
243 bt_assert((3,5) ~ ps);
244 bt_assert((4,1) ~ ps);
245 bt_assert((5,4) ~ ps);
246 bt_assert((5,65535) ~ ps);
247 bt_assert((6,4) ~ ps);
248 bt_assert((3, 10000) ~ ps);
249 bt_assert((3,3) !~ ps);
250 bt_assert((4,9) !~ ps);
251 bt_assert((4,65535) !~ ps);
252 bt_assert((6,2) !~ ps);
253 bt_assert((6,6+one) !~ ps);
254 bt_assert(((one+6),2) !~ ps);
255 bt_assert((1,1) !~ ps);
9b0a0ba9 256
0ed1e850
PT
257 ps = [(20..150, 200..300), (50100..50200, 1000..50000), (*, 5+5)];
258 bt_assert((100,200) ~ ps);
259 bt_assert((150,300) ~ ps);
260 bt_assert((50180,1200) ~ ps);
261 bt_assert((50110,49000) ~ ps);
262 bt_assert((0,10) ~ ps);
263 bt_assert((64000,10) ~ ps);
264 bt_assert((20,199) !~ ps);
265 bt_assert((151,250) !~ ps);
266 bt_assert((50050,2000) !~ ps);
267 bt_assert((50150,50050) !~ ps);
268 bt_assert((10,9) !~ ps);
269 bt_assert((65535,11) !~ ps);
4bb18dd2
PM
270}
271
0ed1e850 272bt_test_suite(t_pair_set, "Testing sets of pairs");
5de0e848 273
9b0a0ba9
OZ
274
275
276
277/*
278 * Testing quads
279 * -------------
280 */
281
282function t_quad()
283quad qq;
b1a597e0 284{
9b0a0ba9 285 qq = 1.2.3.4;
7dea7ccb 286 bt_assert(format(qq) = "1.2.3.4");
9b0a0ba9
OZ
287 bt_assert(qq = 1.2.3.4);
288 bt_assert(qq != 4.3.2.1);
b1a597e0
OZ
289}
290
9b0a0ba9
OZ
291bt_test_suite(t_quad, "Testing quads");
292
293
294
295
296/*
297 * Testing sets of quads
298 * ---------------------
299 */
300
301function t_quad_set()
302quad qq;
aa461248 303{
9b0a0ba9
OZ
304 qq = 1.2.3.4;
305 bt_assert(qq ~ [1.2.3.4, 5.6.7.8]);
306 bt_assert(qq !~ [1.2.1.1, 1.2.3.5]);
aa461248
OZ
307}
308
9b0a0ba9 309bt_test_suite(t_quad_set, "Testing sets of quads");
1103b32e 310
9b0a0ba9
OZ
311
312
313
314/*
0ed1e850
PT
315 * Testing ip address
316 * ------------------
9b0a0ba9
OZ
317 */
318
0ed1e850 319define onetwo = 1.2.3.4;
9b0a0ba9 320
0ed1e850
PT
321function t_ip()
322ip p;
323{
324 p = 127.1.2.3;
61e501da 325 bt_assert(p.is_v4);
0ed1e850
PT
326 bt_assert(p.mask(8) = 127.0.0.0);
327 bt_assert(1.2.3.4 = 1.2.3.4);
328 bt_assert(1.2.3.4 = onetwo);
329 bt_assert(format(p) = "127.1.2.3");
9b0a0ba9 330
0ed1e850 331 p = ::fffe:6:c0c:936d:88c7:35d3;
61e501da 332 bt_assert(!p.is_v4);
0ed1e850 333 bt_assert(format(p) = "::fffe:6:c0c:936d:88c7:35d3");
012a0d6b
PT
334
335 p = 1234:5678::;
61e501da 336 bt_assert(!p.is_v4);
012a0d6b 337 bt_assert(p.mask(24) = 1234:5600::);
9b0a0ba9
OZ
338}
339
0ed1e850 340bt_test_suite(t_ip, "Testing ip address");
9b0a0ba9
OZ
341
342
343
344
345/*
0ed1e850
PT
346 * Testing sets of ip address
347 * --------------------------
9b0a0ba9 348 */
1103b32e 349
0ed1e850 350define ip1222 = 1.2.2.2;
1103b32e 351
0ed1e850
PT
352function t_ip_set()
353ip set ips;
9b0a0ba9 354{
0ed1e850
PT
355 ips = [ 1.1.1.0 .. 1.1.1.255, ip1222];
356 bt_assert(format(ips) = "[1.1.1.0..1.1.1.255, 1.2.2.2]");
357 bt_assert(1.1.1.0 ~ ips);
358 bt_assert(1.1.1.100 ~ ips);
359 bt_assert(1.2.2.2 ~ ips);
360 bt_assert(1.1.0.255 !~ ips);
361 bt_assert(1.1.2.0 !~ ips);
362 bt_assert(1.2.2.3 !~ ips);
363 bt_assert(192.168.1.1 !~ ips);
9b0a0ba9 364
0ed1e850
PT
365 bt_assert(1.2.3.4 !~ [ 1.2.3.3, 1.2.3.5 ]);
366 bt_assert(1.2.3.4 ~ [ 1.2.3.3..1.2.3.5 ]);
9b0a0ba9
OZ
367}
368
0ed1e850 369bt_test_suite(t_ip_set, "Testing sets of ip address");
9b0a0ba9
OZ
370
371
372
373
374/*
0ed1e850
PT
375 * Testing enums
376 * -------------
9b0a0ba9
OZ
377 */
378
0ed1e850 379function t_enum()
9b0a0ba9 380{
5df4073c
PT
381 bt_assert(format(RTS_DUMMY) = "(enum 30)0");
382 bt_assert(format(RTS_STATIC) = "(enum 30)1");
c9d11e62
OZ
383 bt_assert(format(NET_IP4) = "(enum 36)1");
384 bt_assert(format(NET_VPN6) = "(enum 36)4");
385
0ed1e850
PT
386 bt_assert(RTS_STATIC ~ [RTS_STATIC, RTS_DEVICE]);
387 bt_assert(RTS_BGP !~ [RTS_STATIC, RTS_DEVICE]);
9b0a0ba9
OZ
388}
389
0ed1e850 390bt_test_suite(t_enum, "Testing enums");
9b0a0ba9
OZ
391
392
393
394
395/*
0ed1e850
PT
396 * Testing prefixes
397 * ----------------
9b0a0ba9
OZ
398 */
399
0ed1e850 400define netdoc = 2001:db8::/32;
9b0a0ba9 401
0ed1e850
PT
402function t_prefix()
403prefix px;
0efd6462 404{
0ed1e850
PT
405 px = 1.2.0.0/18;
406 bt_assert(format(px) = "1.2.0.0/18");
407 bt_assert(192.168.0.0/16 ~ 192.168.0.0/16);
408 bt_assert(192.168.0.0/17 ~ 192.168.0.0/16);
409 bt_assert(192.168.254.0/24 ~ 192.168.0.0/16);
410 bt_assert(netdoc ~ 2001::/16);
411 bt_assert(192.168.0.0/15 !~ 192.168.0.0/16);
412 bt_assert(192.160.0.0/17 !~ 192.168.0.0/16);
413 bt_assert(px !~ netdoc);
28a10f84 414
0ed1e850
PT
415 bt_assert(1.2.3.4 ~ 1.0.0.0/8);
416 bt_assert(1.0.0.0/8 ~ 1.0.0.0/8);
9b0a0ba9 417}
28a10f84 418
0ed1e850 419bt_test_suite(t_prefix, "Testing prefixes");
995e5894 420
4515bdba 421
dfd48621 422
dfd48621 423
9b0a0ba9 424/*
0ed1e850
PT
425 * Testing prefix sets
426 * -------------------
9b0a0ba9
OZ
427 */
428
0ed1e850
PT
429define net10 = 10.0.0.0/8;
430define pxs2 = [ 10.0.0.0/16{8,12}, 20.0.0.0/16{24,28} ];
92a72a4c 431
0ed1e850 432function test_pxset(prefix set pxs)
9b0a0ba9 433{
0ed1e850
PT
434 bt_assert(net10 ~ pxs);
435 bt_assert(10.0.0.0/10 ~ pxs);
436 bt_assert(10.0.0.0/12 ~ pxs);
437 bt_assert(20.0.0.0/24 ~ pxs);
438 bt_assert(20.0.40.0/24 ~ pxs);
439 bt_assert(20.0.0.0/26 ~ pxs);
440 bt_assert(20.0.100.0/26 ~ pxs);
441 bt_assert(20.0.0.0/28 ~ pxs);
442 bt_assert(20.0.255.0/28 ~ pxs);
9b0a0ba9 443
0ed1e850
PT
444 bt_assert(10.0.0.0/7 !~ pxs);
445 bt_assert(10.0.0.0/13 !~ pxs);
446 bt_assert(10.0.0.0/16 !~ pxs);
447 bt_assert(20.0.0.0/16 !~ pxs);
448 bt_assert(20.0.0.0/23 !~ pxs);
449 bt_assert(20.0.0.0/29 !~ pxs);
450 bt_assert(11.0.0.0/10 !~ pxs);
451 bt_assert(20.1.0.0/26 !~ pxs);
9b0a0ba9 452
0ed1e850
PT
453 bt_assert(1.0.0.0/8 ~ [ 1.0.0.0/8+ ]);
454 bt_assert(1.0.0.0/9 !~ [ 1.0.0.0/8- ]);
455 bt_assert(1.2.0.0/17 !~ [ 1.0.0.0/8{ 15 , 16 } ]);
9b0a0ba9 456
0ed1e850
PT
457 bt_assert([ 10.0.0.0/8{ 15 , 17 } ] = [ 10.0.0.0/8{ 15 , 17 } ]);
458}
9b0a0ba9 459
0ed1e850
PT
460function t_prefix_set()
461prefix set pxs;
462{
54334b56 463 pxs = [ 1.2.0.0/16, 1.4.0.0/16+, 44.66.88.64/30{24,28}, 12.34.56.0/24{8,16} ];
c9d11e62
OZ
464 bt_assert(format(pxs) = "[1.2.0.0/16{0.1.0.0}, 1.4.0.0/16{0.1.255.255}, 12.34.0.0/16{1.255.0.0}, 44.66.88.64/28{0.0.1.240}]");
465
0ed1e850
PT
466 bt_assert(1.2.0.0/16 ~ pxs);
467 bt_assert(1.4.0.0/16 ~ pxs);
468 bt_assert(1.4.0.0/18 ~ pxs);
469 bt_assert(1.4.0.0/32 ~ pxs);
470 bt_assert(1.1.0.0/16 !~ pxs);
471 bt_assert(1.3.0.0/16 !~ pxs);
472 bt_assert(1.2.0.0/15 !~ pxs);
473 bt_assert(1.2.0.0/17 !~ pxs);
474 bt_assert(1.2.0.0/32 !~ pxs);
475 bt_assert(1.4.0.0/15 !~ pxs);
9b0a0ba9 476
0ed1e850
PT
477 test_pxset(pxs2);
478 test_pxset([ 10.0.0.0/16{8,12}, 20.0.0.0/16{24,28} ]);
9b0a0ba9 479
0ed1e850
PT
480 bt_assert(1.2.0.0/16 ~ [ 1.0.0.0/8{ 15 , 17 } ]);
481 bt_assert([ 10.0.0.0/8{ 15 , 17 } ] != [ 11.0.0.0/8{ 15 , 17 } ]);
9b0a0ba9
OZ
482}
483
0ed1e850 484bt_test_suite(t_prefix_set, "Testing prefix sets");
9b0a0ba9
OZ
485
486
04632fd7 487
9b0a0ba9 488
012a0d6b
PT
489/*
490 * Testing Prefix IPv6
491 * -------------------
492 */
493
494function t_prefix6()
495prefix px;
496{
497 px = 1020::/18;
498 bt_assert(format(px) = "1020::/18");
499 bt_assert(1020:3040:5060:: ~ 1020:3040:5000::/40);
500 bt_assert(1020:3040::/32 ~ 1020:3040::/32);
501 bt_assert(1020:3040::/33 ~ 1020:3040::/32);
502 bt_assert(1020:3040:5060::/48 ~ 1020:3040::/32);
503 bt_assert(1020:3040::/31 !~ 1020:3040::/32);
504 bt_assert(1020:3041::/33 !~ 1020:3040::/32);
505}
506
507bt_test_suite(t_prefix6, "Testing prefix IPv6");
508
509
510
511
512/*
513 * Testing prefix IPv6 sets
514 * ------------------------
515 */
516
517function t_prefix6_set()
518prefix set pxs;
519{
520 bt_assert(1180::/16 ~ [ 1100::/8{15, 17} ]);
521 bt_assert(12::34 = 12::34);
522 bt_assert(12::34 ~ [ 12::33..12::35 ]);
523 bt_assert(1020::34 ~ 1000::/8);
524 bt_assert(1000::/8 ~ 1000::/8);
525 bt_assert(1000::/8 ~ [ 1000::/8+ ]);
526 bt_assert(12::34 !~ [ 12::33, 12::35 ]);
527 bt_assert(1000::/9 !~ [ 1000::/8- ]);
528 bt_assert(1000::/17 !~ [ 1000::/8{15, 16} ]);
529
530 pxs = [ 1102::/16, 1104::/16+];
531 bt_assert(1102::/16 ~ pxs);
532 bt_assert(1104::/16 ~ pxs);
533 bt_assert(1104::/18 ~ pxs);
534 bt_assert(1104::/32 ~ pxs);
535 bt_assert(1101::/16 !~ pxs);
536 bt_assert(1103::/16 !~ pxs);
537 bt_assert(1102::/15 !~ pxs);
538 bt_assert(1102::/17 !~ pxs);
539 bt_assert(1102::/32 !~ pxs);
540 bt_assert(1104::/15 !~ pxs);
541
542 pxs = ([ 1000::/16{8,12}, 2000::/16{24,28} ]);
543 bt_assert(format(pxs) = "[1000::/12{1f0::}, 2000::/16{0:1f0::}]");
544 bt_assert(1000::/8 ~ pxs);
545 bt_assert(1000::/10 ~ pxs);
546 bt_assert(1000::/12 ~ pxs);
547 bt_assert(2000::/24 ~ pxs);
548 bt_assert(2000:4000::/24 ~ pxs);
549 bt_assert(2000::/26 ~ pxs);
550 bt_assert(2000:8000::/26 ~ pxs);
551 bt_assert(2000::/28 ~ pxs);
552 bt_assert(2000:FFF0::/28 ~ pxs);
553 bt_assert(1000::/7 !~ pxs);
554 bt_assert(1000::/13 !~ pxs);
555 bt_assert(1000::/16 !~ pxs);
556 bt_assert(2000::/16 !~ pxs);
557 bt_assert(2000::/23 !~ pxs);
558 bt_assert(2000::/29 !~ pxs);
559 bt_assert(1100::/10 !~ pxs);
560 bt_assert(2010::/26 !~ pxs);
561}
562
563bt_test_suite(t_prefix6_set, "Testing prefix IPv6 sets");
564
565
566
567
77234bbb
OZ
568function t_flowspec()
569prefix p;
570{
571 p = flow4 { dst 10.0.0.0/8; };
572 bt_assert(p !~ [ 10.0.0.0/8 ] );
573
574 bt_assert(format(flow4 { dst 10.0.0.0/8; proto = 23; }) = "flow4 { dst 10.0.0.0/8; proto 23; }");
575 bt_assert(format(flow6 { dst ::1/128; src ::2/127; }) = "flow6 { dst ::1/128; src ::2/127; }");
576 bt_assert(format(flow6 { next header false 42; }) = "flow6 { next header false 42; }");
577 bt_assert(format(flow6 { port 80; }) = "flow6 { port 80; }");
578 bt_assert(format(flow6 { dport > 24 && < 30 || 40..50,60..70,80 && >= 90; }) = "flow6 { dport > 24 && < 30 || 40..50,60..70,80 && >= 90; }");
579 bt_assert(format(flow6 { sport 0..0x400; }) = "flow6 { sport 0..1024; }");
580 bt_assert(format(flow6 { icmp type 80; }) = "flow6 { icmp type 80; }");
581 bt_assert(format(flow6 { icmp code 90; }) = "flow6 { icmp code 90; }");
dd8481cc 582 bt_assert(format(flow6 { tcp flags 0x03/0x0f; }) = "flow6 { tcp flags 0x3/0x3 && 0x0/0xc; }");
77234bbb
OZ
583 bt_assert(format(flow6 { length 0..65535; }) = "flow6 { length 0..65535; }");
584 bt_assert(format(flow6 { dscp = 63; }) = "flow6 { dscp 63; }");
585 bt_assert(format(flow6 { fragment is_fragment || !first_fragment; }) = "flow6 { fragment is_fragment || !first_fragment; }");
abc9ccc5 586 bt_assert(format(flow6 { label 1000..2000; }) = "flow6 { label 1000..2000; }");
77234bbb
OZ
587 bt_assert(format(flow6 { }) = "flow6 { }");
588}
589
590bt_test_suite(t_flowspec, "Testing flowspec routes");
591
592
593
594
9b0a0ba9 595/*
0ed1e850
PT
596 * Testing Paths
597 * -------------
9b0a0ba9
OZ
598 */
599
0ed1e850 600function mkpath(int a; int b)
9b0a0ba9 601{
0ed1e850 602 return [= a b 3 2 1 =];
9b0a0ba9
OZ
603}
604
9f3e0983
OZ
605define set35 = [3 .. 5];
606
0ed1e850
PT
607function t_path()
608bgpmask pm1;
0ed1e850 609bgppath p2;
9f3e0983 610int set set12;
0ed1e850 611{
ed1d853e 612 pm1 = [= 4 3 2 1 =];
9f3e0983 613 set12 = [1, 2];
9b0a0ba9 614
ed1d853e 615 bt_assert(format(pm1) = "[= 4 3 2 1 =]");
c39a1cb1 616
0ed1e850
PT
617 bt_assert(+empty+ = +empty+);
618 bt_assert(10 !~ +empty+);
9b0a0ba9 619
0ed1e850
PT
620 p2 = prepend( + empty +, 1 );
621 p2 = prepend( p2, 2 );
622 p2 = prepend( p2, 3 );
623 p2 = prepend( p2, 4 );
9b0a0ba9 624
0ed1e850
PT
625 bt_assert(format(p2) = "(path 4 3 2 1)");
626 bt_assert(p2.len = 4);
627 bt_assert(p2 ~ pm1);
0ed1e850
PT
628 bt_assert(3 ~ p2);
629 bt_assert(p2 ~ [2, 10..20]);
630 bt_assert(p2 ~ [4, 10..20]);
9b0a0ba9 631
0ed1e850
PT
632 p2 = prepend(p2, 5);
633 bt_assert(p2 !~ pm1);
0ed1e850
PT
634 bt_assert(10 !~ p2);
635 bt_assert(p2 !~ [8, ten..(2*ten)]);
0ed1e850
PT
636 bt_assert(p2 ~ [= * 4 3 * 1 =]);
637 bt_assert(p2 ~ [= (3+2) (2*2) 3 2 1 =]);
ef113c6f 638 bt_assert(p2 ~ [= 5 [2, 4, 6] 3 [1..2] 1 =]);
9f3e0983 639 bt_assert(p2 ~ [= 5 set35 3 set12 set12 =]);
0ed1e850 640 bt_assert(p2 ~ mkpath(5, 4));
9b0a0ba9 641
0ed1e850
PT
642 bt_assert(p2.len = 5);
643 bt_assert(p2.first = 5);
644 bt_assert(p2.last = 1);
9b0a0ba9 645
0ed1e850
PT
646 bt_assert(p2.len = 5);
647 bt_assert(delete(p2, 3) = prepend(prepend(prepend(prepend(+empty+, 1), 2), 4), 5));
648 bt_assert(filter(p2, [1..3]) = prepend(prepend(prepend(+empty+, 1), 2), 3));
649
0ed1e850
PT
650 p2 = prepend( + empty +, 5 );
651 p2 = prepend( p2, 4 );
652 p2 = prepend( p2, 3 );
653 p2 = prepend( p2, 3 );
654 p2 = prepend( p2, 2 );
655 p2 = prepend( p2, 1 );
656
ec430a7f
OZ
657 bt_assert(p2 !~ [= 1 2 3 4 5 =]);
658 bt_assert(p2 ~ [= 1 2 * 4 5 =]);
659 bt_assert(p2 ~ [= 1 2 * 3 4 5 =]);
660 bt_assert(p2 ~ [= 1 2 3+ 4 5 =]);
661 bt_assert(p2 ~ [= 1 2 3+ 4+ 5 =]);
662 bt_assert(p2 !~ [= 1 2 3+ 5+ 4 5 =]);
663 bt_assert(p2 !~ [= 1 2 3 3 5+ 4 5 =]);
0ed1e850
PT
664 bt_assert(delete(p2, 3) = prepend(prepend(prepend(prepend(+empty+, 5), 4), 2), 1));
665 bt_assert(delete(p2, [4..5]) = prepend(prepend(prepend(prepend(+empty+, 3), 3), 2), 1));
ec430a7f
OZ
666
667 bt_assert(format([= 1 2+ 3 =]) = "[= 1 2 + 3 =]");
9b0a0ba9
OZ
668}
669
0ed1e850 670bt_test_suite(t_path, "Testing paths");
9b0a0ba9
OZ
671
672
126683fe 673
9b0a0ba9
OZ
674
675/*
0ed1e850
PT
676 * Testing Community List
677 * ----------------------
9b0a0ba9
OZ
678 */
679
0ed1e850
PT
680define p23 = (2, 3);
681
682function t_clist()
683clist l;
684clist l2;
c39a1cb1 685clist r;
9b0a0ba9 686{
a2a268da
AZ
687 bt_assert((10, 20).asn = 10);
688 bt_assert((10, 20).data = 20);
689 bt_assert(p23.asn = 2);
690 bt_assert(p23.data = 3);
691
0ed1e850
PT
692 l = - empty -;
693 bt_assert(l !~ [(*,*)]);
694 bt_assert((l ~ [(*,*)]) != (l !~ [(*,*)]));
b8cc390e 695
0ed1e850 696 bt_assert(-empty- = -empty-);
126683fe 697
0ed1e850
PT
698 l = add( l, (one,2) );
699 bt_assert(l ~ [(*,*)]);
700 l = add( l, (2,one+2) );
701 bt_assert(format(l) = "(clist (1,2) (2,3))");
126683fe 702
0ed1e850
PT
703 bt_assert((2,3) ~ l);
704 bt_assert(l ~ [(1,*)]);
705 bt_assert(l ~ [p23]);
706 bt_assert(l ~ [(2,2..3)]);
707 bt_assert(l ~ [(1,1..2)]);
708 bt_assert(l ~ [(1,1)..(1,2)]);
42a0c054 709
0ed1e850
PT
710 l = add(l, (2,5));
711 l = add(l, (5,one));
712 l = add(l, (6,one));
713 l = add(l, (one,one));
714 l = delete(l, [(5,1),(6,one),(one,1)]);
715 l = delete(l, [(5,one),(6,one)]);
716 l = filter(l, [(1,*)]);
717 bt_assert(l = add(-empty-, (1,2)));
4515bdba 718
0ed1e850
PT
719 bt_assert((2,3) !~ l);
720 bt_assert(l !~ [(2,*)]);
721 bt_assert(l !~ [(one,3..6)]);
722 bt_assert(l ~ [(*,*)]);
9b0a0ba9 723
0ed1e850
PT
724 l = add(l, (3,one));
725 l = add(l, (one+one+one,one+one));
726 l = add(l, (3,3));
727 l = add(l, (3,4));
728 l = add(l, (3,5));
729 l2 = filter(l, [(3,*)]);
730 l = delete(l, [(3,2..4)]);
731 bt_assert(l = add(add(add(-empty-, (1,2)), (3,1)), (3,5)));
732 bt_assert(l.len = 3);
9b0a0ba9 733
0ed1e850
PT
734 l = add(l, (3,2));
735 l = add(l, (4,5));
736 bt_assert(l = add(add(add(add(add(-empty-, (1,2)), (3,1)), (3,5)), (3,2)), (4,5)));
9b0a0ba9 737
0ed1e850
PT
738 bt_assert(l.len = 5);
739 bt_assert(l ~ [(*,2)]);
740 bt_assert(l ~ [(*,5)]);
741 bt_assert(l ~ [(*, one)]);
742 bt_assert(l !~ [(*,3)]);
743 bt_assert(l !~ [(*,(one+6))]);
744 bt_assert(l !~ [(*, (one+one+one))]);
9b0a0ba9 745
0ed1e850
PT
746 l = delete(l, [(*,(one+onef(3)))]);
747 l = delete(l, [(*,(4+one))]);
748 bt_assert(l = add(-empty-, (3,1)));
9b0a0ba9 749
0ed1e850
PT
750 l = delete(l, [(*,(onef(5)))]);
751 bt_assert(l = -empty-);
9b0a0ba9 752
0ed1e850
PT
753 l2 = add(l2, (3,6));
754 l = filter(l2, [(3,1..4)]);
755 l2 = filter(l2, [(3,3..6)]);
9b0a0ba9 756
c39a1cb1 757 # clist A (10,20,30)
0ed1e850 758 bt_assert(l = add(add(add(add(-empty-, (3,1)), (3,2)), (3,3)), (3,4)));
5df4073c 759 bt_assert(format(l) = "(clist (3,1) (3,2) (3,3) (3,4))");
9b0a0ba9 760
c39a1cb1 761 # clist B (30,40,50)
0ed1e850 762 bt_assert(l2 = add(add(add(add(-empty-, (3,3)), (3,4)), (3,5)), (3,6)));
5df4073c 763 bt_assert(format(l2) = "(clist (3,3) (3,4) (3,5) (3,6))");
9b0a0ba9 764
c39a1cb1
PT
765 # clist A union B
766 r = add(l, l2);
c39a1cb1 767 bt_assert(r = add(add(add(add(add(add(-empty-, (3,1)), (3,2)), (3,3)), (3,4)), (3,5)), (3,6)));
5df4073c 768 bt_assert(format(r) = "(clist (3,1) (3,2) (3,3) (3,4) (3,5) (3,6))");
9b0a0ba9 769
c39a1cb1
PT
770 # clist A isect B
771 r = filter(l, l2);
c39a1cb1 772 bt_assert(r = add(add(-empty-, (3,3)), (3,4)));
5df4073c 773 bt_assert(format(r) = "(clist (3,3) (3,4))");
0ed1e850 774
c39a1cb1
PT
775 # clist A \ B
776 r = delete(l, l2);
c39a1cb1 777 bt_assert(r = add(add(-empty-, (3,1)), (3,2)));
5df4073c 778 bt_assert(format(r) = "(clist (3,1) (3,2))");
c39a1cb1
PT
779
780 # clist in c set
781 r = filter(l, [(3,1), (*,2)]);
782 bt_assert(r = add(add(-empty-, (3,1)), (3,2)));
5df4073c 783 bt_assert(format(r) = "(clist (3,1) (3,2))");
0e1fd7ea
AZ
784
785 # minimim & maximum element
786 r = add(add(add(add(add(-empty-, (2,1)), (1,3)), (2,2)), (3,1)), (2,3));
787 bt_assert(format(r) = "(clist (2,1) (1,3) (2,2) (3,1) (2,3))");
788 bt_assert(r.min = (1,3));
789 bt_assert(r.max = (3,1));
9b0a0ba9 790}
a6c9f064 791
0ed1e850 792bt_test_suite(t_clist, "Testing lists of communities");
f8f2419d 793
9b0a0ba9
OZ
794
795
796
797/*
0ed1e850
PT
798 * Testing Extended Communities
799 * ----------------------------
9b0a0ba9
OZ
800 */
801
0ed1e850
PT
802function t_ec()
803ec cc;
9b0a0ba9 804{
0ed1e850
PT
805 cc = (rt, 12345, 200000);
806 bt_assert(format(cc) = "(rt, 12345, 200000)");
9b0a0ba9 807
0ed1e850
PT
808 bt_assert(cc = (rt, 12345, 200000));
809 bt_assert(cc < (rt, 12345, 200010));
810 bt_assert(cc != (rt, 12346, 200000));
811 bt_assert(cc != (ro, 12345, 200000));
812 bt_assert(!(cc > (rt, 12345, 200010)));
813
814 bt_assert(format((ro, 100000, 20000)) = "(ro, 100000, 20000)");
9b0a0ba9
OZ
815}
816
0ed1e850 817bt_test_suite(t_ec, "Testing extended communities");
9b0a0ba9
OZ
818
819
820
821
822/*
0ed1e850
PT
823 * Testing Extended Community List
824 * -------------------------------
9b0a0ba9
OZ
825 */
826
0ed1e850
PT
827function t_eclist()
828eclist el;
829eclist el2;
c39a1cb1 830eclist r;
9b0a0ba9 831{
0ed1e850
PT
832 el = -- empty --;
833 el = add(el, (rt, 10, 20));
834 el = add(el, (ro, 10.20.30.40, 100));
835 el = add(el, (ro, 11.21.31.41.mask(16), 200));
9b0a0ba9 836
0ed1e850
PT
837 bt_assert(--empty-- = --empty--);
838 bt_assert(((rt, 10, 20)) !~ --empty--);
9b0a0ba9 839
0ed1e850
PT
840 bt_assert(format(el) = "(eclist (rt, 10, 20) (ro, 10.20.30.40, 100) (ro, 11.21.0.0, 200))");
841 bt_assert(el.len = 3);
842 el = delete(el, (rt, 10, 20));
843 el = delete(el, (rt, 10, 30));
844 bt_assert(el = add(add(--empty--, (ro, 10.20.30.40, 100)), (ro, 11.21.0.0, 200)));
845 el = add(el, (unknown 2, ten, 1));
846 el = add(el, (unknown 5, ten, 1));
847 el = add(el, (rt, ten, one+one));
848 el = add(el, (rt, 10, 3));
849 el = add(el, (rt, 10, 4));
850 el = add(el, (rt, 10, 5));
851 el = add(el, (generic, 0x2000a, 3*ten));
852 el = delete(el, [(rt, 10, 2..ten)]);
853 bt_assert(el = add(add(add(add(add(--empty--, (ro, 10.20.30.40, 100)), (ro, 11.21.0.0, 200)), (rt, 10, 1)), (unknown 5, 10, 1)), (rt, 10, 30)));
9b0a0ba9 854
0ed1e850
PT
855 el = filter(el, [(rt, 10, *)]);
856 bt_assert(el = add(add(--empty--, (rt, 10, 1)), (rt, 10, 30)));
857 bt_assert((rt, 10, 1) ~ el);
858 bt_assert(el ~ [(rt, 10, ten..40)]);
859 bt_assert((rt, 10, 20) !~ el);
860 bt_assert((ro, 10.20.30.40, 100) !~ el);
861 bt_assert(el !~ [(rt, 10, 35..40)]);
862 bt_assert(el !~ [(ro, 10, *)]);
9b0a0ba9 863
0ed1e850
PT
864 el = add(el, (rt, 10, 40));
865 el2 = filter(el, [(rt, 10, 20..40)] );
866 el2 = add(el2, (rt, 10, 50));
b1a597e0 867
0ed1e850 868 # eclist A (1,30,40)
0ed1e850 869 bt_assert(el = add(add(add(--empty--, (rt, 10, 1)), (rt, 10, 30)), (rt, 10, 40)));
5df4073c 870 bt_assert(format(el) = "(eclist (rt, 10, 1) (rt, 10, 30) (rt, 10, 40))");
4515bdba 871
0ed1e850 872 # eclist B (30,40,50)
0ed1e850 873 bt_assert(el2 = add(add(add(--empty--, (rt, 10, 30)), (rt, 10, 40)), (rt, 10, 50)));
5df4073c 874 bt_assert(format(el2) = "(eclist (rt, 10, 30) (rt, 10, 40) (rt, 10, 50))");
0ed1e850
PT
875
876 # eclist A union B
c39a1cb1 877 r = add(el2, el);
c39a1cb1 878 bt_assert(r = add(add(add(add(--empty--, (rt, 10, 30)), (rt, 10, 40)), (rt, 10, 50)), (rt, 10, 1)));
5df4073c 879 bt_assert(format(r) = "(eclist (rt, 10, 30) (rt, 10, 40) (rt, 10, 50) (rt, 10, 1))");
0ed1e850
PT
880
881 # eclist A isect B
c39a1cb1 882 r = filter(el, el2);
c39a1cb1 883 bt_assert(r = add(add(--empty--, (rt, 10, 30)), (rt, 10, 40)));
5df4073c 884 bt_assert(format(r) = "(eclist (rt, 10, 30) (rt, 10, 40))");
0ed1e850
PT
885
886 # eclist A \ B
c39a1cb1 887 r = delete(el, el2);
c39a1cb1 888 bt_assert(r = add(--empty--, (rt, 10, 1)));
5df4073c 889 bt_assert(format(r) = "(eclist (rt, 10, 1))");
c39a1cb1
PT
890
891 # eclist in ec set
892 r = filter(el, [(rt, 10, 1), (rt, 10, 25..30), (ro, 10, 40)]);
893 bt_assert(r = add(add(--empty--, (rt, 10, 1)), (rt, 10, 30)));
5df4073c 894 bt_assert(format(r) = "(eclist (rt, 10, 1) (rt, 10, 30))");
0e1fd7ea
AZ
895
896 # minimim & maximum element
897 r = add(add(add(add(add(--empty--, (rt, 2, 1)), (rt, 1, 3)), (rt, 2, 2)), (rt, 3, 1)), (rt, 2, 3));
898 bt_assert(format(r) = "(eclist (rt, 2, 1) (rt, 1, 3) (rt, 2, 2) (rt, 3, 1) (rt, 2, 3))");
899 bt_assert(r.min = (rt, 1, 3));
900 bt_assert(r.max = (rt, 3, 1));
9b0a0ba9 901}
4515bdba 902
0ed1e850 903bt_test_suite(t_eclist, "Testing lists of extended communities");
2d496d20 904
77de6882 905
cbfd671f 906
f8f2419d 907
9b0a0ba9 908/*
0ed1e850
PT
909 * Testing sets of Extended Communities
910 * ------------------------------------
9b0a0ba9 911 */
aa461248 912
0ed1e850 913define ecs2 = [(rt, ten, (one+onef(0))*10), (ro, 100000, 100..200), (rt, 12345, *)];
48ec367a 914
0ed1e850
PT
915function t_ec_set()
916ec set ecs;
9b0a0ba9 917{
0ed1e850
PT
918 ecs = [(rt, ten, (one+onef(0))*10), (ro, 100000, 100..200), (rt, 12345, *)];
919 bt_assert(format(ecs) = "[(rt, 10, 20), (rt, 12345, 0)..(rt, 12345, 4294967295), (ro, 100000, 100)..(ro, 100000, 200)]");
920 bt_assert(format(ecs2) = "[(rt, 10, 20), (rt, 12345, 0)..(rt, 12345, 4294967295), (ro, 100000, 100)..(ro, 100000, 200)]");
921
922 bt_assert((rt, 10, 20) ~ ecs);
923 bt_assert((ro, 100000, 100) ~ ecs);
924 bt_assert((ro, 100000, 128) ~ ecs);
925 bt_assert((ro, 100000, 200) ~ ecs);
926 bt_assert((rt, 12345, 0) ~ ecs);
927 bt_assert((rt, 12345, 200000) ~ ecs);
928 bt_assert((rt, 12345, 4000000) ~ ecs);
929 bt_assert((ro, 10, 20) !~ ecs);
930 bt_assert((rt, 10, 21) !~ ecs);
931 bt_assert((ro, 100000, 99) !~ ecs);
932 bt_assert((ro, 12345, 10) !~ ecs);
933 bt_assert((rt, 12346, 0) !~ ecs);
934 bt_assert((ro, 0.1.134.160, 150) !~ ecs);
4515bdba
PM
935}
936
0ed1e850 937bt_test_suite(t_ec_set, "Testing sets of extended communities");
9b0a0ba9
OZ
938
939
940
941
942/*
c39a1cb1
PT
943 * Testing Large Communities
944 * -------------------------
9b0a0ba9
OZ
945 */
946
0ed1e850 947function mktrip(int a)
9b0a0ba9 948{
0ed1e850 949 return (a, 2*a, 3*a);
9b0a0ba9
OZ
950}
951
0ed1e850
PT
952function t_lclist()
953lclist ll;
954lclist ll2;
c39a1cb1 955lclist r;
9b0a0ba9 956{
0ed1e850
PT
957 bt_assert(---empty--- = ---empty---);
958 bt_assert((10, 20, 30) !~ ---empty---);
9b0a0ba9 959
a2a268da
AZ
960 bt_assert((10, 20, 30).asn = 10);
961 bt_assert((10, 20, 30).data1 = 20);
962 bt_assert((10, 20, 30).data2 = 30);
963
0ed1e850
PT
964 ll = --- empty ---;
965 ll = add(ll, (ten, 20, 30));
966 ll = add(ll, (1000, 2000, 3000));
967 ll = add(ll, mktrip(100000));
968 bt_assert(format(ll) = "(lclist (10, 20, 30) (1000, 2000, 3000) (100000, 200000, 300000))");
969 bt_assert(ll.len = 3);
970 bt_assert(ll = add(add(add(---empty---, (10, 20, 30)), (1000, 2000, 3000)), (100000, 200000, 300000)));
9b0a0ba9 971
0ed1e850
PT
972 bt_assert(mktrip(1000) ~ ll);
973 bt_assert(mktrip(100) !~ ll);
9b0a0ba9 974
0ed1e850
PT
975 ll = --- empty ---;
976 ll = add(ll, (10, 10, 10));
977 ll = add(ll, (20, 20, 20));
978 ll = add(ll, (30, 30, 30));
9b0a0ba9 979
0ed1e850
PT
980 ll2 = --- empty ---;
981 ll2 = add(ll2, (20, 20, 20));
982 ll2 = add(ll2, (30, 30, 30));
983 ll2 = add(ll2, (40, 40, 40));
9b0a0ba9 984
c39a1cb1 985 # lclist A (10, 20, 30)
0ed1e850 986 bt_assert(format(ll) = "(lclist (10, 10, 10) (20, 20, 20) (30, 30, 30))");
c39a1cb1
PT
987
988 # lclist B (20, 30, 40)
0ed1e850 989 bt_assert(format(ll2) = "(lclist (20, 20, 20) (30, 30, 30) (40, 40, 40))");
9b0a0ba9 990
c39a1cb1
PT
991 # lclist A union B
992 r = add(ll, ll2);
c39a1cb1 993 bt_assert(r = add(add(add(add(---empty---, (10,10,10)), (20,20,20)), (30,30,30)), (40,40,40)));
5df4073c 994 bt_assert(format(r) = "(lclist (10, 10, 10) (20, 20, 20) (30, 30, 30) (40, 40, 40))");
9b0a0ba9 995
c39a1cb1
PT
996 # lclist A isect B
997 r = filter(ll, ll2);
c39a1cb1 998 bt_assert(r = add(add(---empty---, (20, 20, 20)), (30, 30, 30)));
5df4073c 999 bt_assert(format(r) = "(lclist (20, 20, 20) (30, 30, 30))");
0ed1e850 1000
c39a1cb1
PT
1001 # lclist A \ B
1002 r = delete(ll, ll2);
c39a1cb1 1003 bt_assert(r = add(---empty---, (10, 10, 10)));
5df4073c 1004 bt_assert(format(r) = "(lclist (10, 10, 10))");
c39a1cb1
PT
1005
1006 # lclist in lc set
1007 r = filter(ll, [(5..15, *, *), (20, 15..25, *)]);
1008 bt_assert(r = add(add(---empty---, (10, 10, 10)), (20, 20, 20)));
5df4073c 1009 bt_assert(format(r) = "(lclist (10, 10, 10) (20, 20, 20))");
0e1fd7ea
AZ
1010
1011 # minimim & maximum element
1012 r = add(add(add(add(add(---empty---, (2, 3, 3)), (1, 2, 3)), (2, 3, 1)), (3, 1, 2)), (2, 1, 3));
1013 bt_assert(format(r) = "(lclist (2, 3, 3) (1, 2, 3) (2, 3, 1) (3, 1, 2) (2, 1, 3))");
1014 bt_assert(r.min = (1, 2, 3));
1015 bt_assert(r.max = (3, 1, 2));
9b0a0ba9
OZ
1016}
1017
c39a1cb1
PT
1018bt_test_suite(t_lclist, "Testing lists of large communities");
1019
1020
1021
1022
1023/*
1024 * Testing sets of Large Communities
1025 * ---------------------------------
1026 */
1027
1028function t_lclist_set()
1029lclist ll;
1030lc set lls;
1031{
1032 ll = --- empty ---;
1033 ll = add(ll, (10, 20, 30));
1034 ll = add(ll, (1000, 2000, 3000));
1035 ll = add(ll, mktrip(100000));
1036
1037 bt_assert(ll ~ [(5,10,15), (10,20,30)]);
1038 bt_assert(ll ~ [(10,15..25,*)]);
1039 bt_assert(ll ~ [(ten, *, *)]);
1040
1041 bt_assert(ll !~ [(5,10,15), (10,21,30)]);
1042 bt_assert(ll !~ [(10,21..25,*)]);
1043 bt_assert(ll !~ [(11, *, *)]);
1044
1045 lls = [(10, 10, 10), (20, 20, 15..25), (30, 30, *), (40, 35..45, *), (50, *, *), (55..65, *, *)];
5df4073c 1046 bt_assert(format(lls) = "[(10, 10, 10), (20, 20, 15)..(20, 20, 25), (30, 30, 0)..(30, 30, 4294967295), (40, 35, 0)..(40, 45, 4294967295), (50, 0, 0)..(50, 4294967295, 4294967295), (55, 0, 0)..(65, 4294967295, 4294967295)]");
c39a1cb1
PT
1047 bt_assert((10, 10, 10) ~ lls);
1048 bt_assert((20, 20, 25) ~ lls);
1049 bt_assert((20, 20, 26) !~ lls);
1050 bt_assert((30, 30, 0) ~ lls);
1051 bt_assert((40, 35, 40) ~ lls);
1052 bt_assert((40, 34, 40) !~ lls);
1053 bt_assert((50, 0, 0) ~ lls);
1054 bt_assert((60, 60, 60) ~ lls);
1055 bt_assert((70, 60, 60) !~ lls);
1056}
1057
1058bt_test_suite(t_lclist_set, "Testing sets of large communities");
1059
1060
1061
1062
83715aa8
OZ
1063/*
1064 * Testing Route Distinguishers
1065 * ----------------------------
1066 */
1067
1068function t_rd()
1069rd x;
1070{
1071 x = 12345:20000;
1072 bt_assert(format(x) = "12345:20000");
1073
1074 bt_assert(x = 12345:20000);
1075 bt_assert(x < 12345:20010);
1076 bt_assert(x != 12346:20000);
1077 bt_assert(x != 2:12345:20000);
1078 bt_assert(!(x > 12345:200010));
1079
c9d11e62 1080 bt_assert(format(0:1:2) = "1:2");
83715aa8
OZ
1081 bt_assert(format(10.0.0.1:1000) = "10.0.0.1:1000");
1082 bt_assert(format(100000:20000) = "100000:20000");
1083 bt_assert(format(2:100000:20000) = "100000:20000");
1084 bt_assert(format(2:1000:1000) = "2:1000:1000");
1085}
1086
1087bt_test_suite(t_rd, "Testing route distinguishers");
1088
1089
1090
1091
1092/*
1093 * Testing sets of Route Distinguishers
1094 * ------------------------------------
1095 */
1096
1097function t_rd_set()
1098rd set rds;
1099{
1100 rds = [10:20, 100000:100..100000:200];
1101 bt_assert(format(rds) = "[10:20, 100000:100..100000:200]");
1102
1103 bt_assert(10:20 ~ rds);
1104 bt_assert(10:21 !~ rds);
1105 bt_assert(100000:90 !~ rds);
1106 bt_assert(100000:100 ~ rds);
1107 bt_assert(100000:128 ~ rds);
1108 bt_assert(100000:200 ~ rds);
1109 bt_assert(100010:150 !~ rds);
1110}
1111
1112bt_test_suite(t_rd_set, "Testing sets of route distinguishers");
1113
1114
1115
1116
c39a1cb1
PT
1117/*
1118 * Testing defined() function
1119 * --------------------------
1120 */
0ed1e850 1121
c39a1cb1
PT
1122function test_undef(int a)
1123int b;
1124{
1125 if a = 3 then {
1126 b = 4;
1127 bt_assert(defined(b));
1128 }
1129 else {
1130 bt_assert(!defined(b));
1131 }
1132}
1133
1134function t_define()
1135int i;
1136{
1137 test_undef(2);
1138 test_undef(3);
1139 test_undef(2);
1140
1141 bt_assert(defined(1));
1142 bt_assert(defined(1.2.3.4));
1143}
1144
1145bt_test_suite(t_define, "Testing defined() function");
1146
1147
1148
1149
1150/*
1151 * Testing calling functions
1152 * -------------------------
1153 */
0ed1e850 1154
c39a1cb1
PT
1155function callme(int arg1; int arg2)
1156int i;
1157{
1158 case arg1 {
1159 1, 42: return 42;
1160 else: return arg1 * arg2;
1161 }
1162
1163 return 0;
1164}
1165
ea4f55e3
MM
1166function callmeagain(int a; int b; int c)
1167{
1168 return a + b + c;
1169}
1170
c39a1cb1
PT
1171function fifteen()
1172{
1173 return 15;
1174}
1175
1176function t_call_function()
1177{
1178 bt_assert(fifteen() = 15);
1179
1180 bt_assert(callme(1, 2) = 42);
1181 bt_assert(callme(42, 2) = 42);
1182
1183 bt_assert(callme(2, 2) = 4);
1184 bt_assert(callme(3, 2) = 6);
1185 bt_assert(callme(4, 4) = 16);
1186 bt_assert(callme(7, 2) = 14);
ea4f55e3 1187 bt_assert(callmeagain(1, 2, 3) = 6);
c39a1cb1
PT
1188}
1189
1190bt_test_suite(t_call_function, "Testing calling functions");
1191
1192
1193
1194
1195/*
1196 * Test including another config file
1197 * ----------------------------------
1198 */
1199
1200function t_include()
1201int i;
1202{
1203 i = 1;
1204 include "test.conf.inc";
1205 bt_assert(i = 42);
1206}
1207
1208bt_test_suite(t_include, "Testing including another config file");
1209
1210
1211
1212
1213/*
1214 * Test if-else statement
1215 * ----------------------
1216 */
1217
1218function t_if_else()
1219int i;
1220{
dfe63ed8
MM
1221 /* Empty blocks regression test */
1222 if true then {}
1223 else {}
1224
c39a1cb1
PT
1225 if true then
1226 bt_assert(true);
1227
1228 if false then
1229 bt_assert(false);
1230 else if true then
1231 bt_assert(true);
1232 else
1233 bt_assert(false);
dfe63ed8
MM
1234
1235 /* Empty blocks regression test */
1236 if true then {}
1237 else {}
c39a1cb1 1238}
0ed1e850 1239
c39a1cb1 1240bt_test_suite(t_if_else, "Testing if-else statement");
9b0a0ba9
OZ
1241
1242
1243
1244
1245/*
1246 * Unused functions -- testing only parsing
1247 * ----------------------------------------
1248 */
1249
1250function __test1()
1251{
1252 if source ~ [ RTS_BGP, RTS_STATIC ] then {
1253# ospf_metric1 = 65535;
1254# ospf_metric2 = 1000;
1255 ospf_tag = 0x12345678;
1256 accept;
1257 }
1258 reject;
1259}
1260
1261function __test2()
1262{
1263 if source ~ [ RTS_BGP, RTS_STATIC ] then {
1264# ospf_metric1 = 65535;
1265# ospf_metric2 = 1000;
1266 ospf_tag = 0x12345678;
1267 accept;
1268 }
1269 reject;
1270}
1271
1272filter testf
1273int j;
1274{
995e5894
PM
1275 print "Heya, filtering route to ", net.ip, " prefixlen ", net.len, " source ", source;
1276 print "This route was from ", from;
4515bdba
PM
1277 j = 7;
1278 j = 17;
2e18b87d 1279 if rip_metric > 15 then {
5de0e848 1280 reject "RIP Metric is more than infinity";
c7b43f33 1281 }
2e18b87d
PM
1282 rip_metric = 14;
1283 unset(rip_metric);
9b0a0ba9 1284
c7b43f33 1285 accept "ok I take that";
4515bdba 1286}
6be662d9 1287
54334b56
JMM
1288filter roa_filter
1289{
c9d11e62 1290 if net ~ [ 10.0.0.0/8{16,24} ] || net ~ [ 2000::/3{16,96} ] then {
54334b56
JMM
1291 accept;
1292 }
1293 reject;
1294}
1295
cd6ca9b1
PT
1296roa4 table r4;
1297roa6 table r6;
1298
1299protocol static
af582c48 1300{
54334b56 1301 roa4 { table r4; import filter roa_filter; };
751fb236
OZ
1302 route 10.110.0.0/16 max 16 as 1000;
1303 route 10.120.0.0/16 max 24 as 1000;
1304 route 10.130.0.0/16 max 24 as 2000;
1305 route 10.130.128.0/18 max 24 as 3000;
af582c48
OZ
1306}
1307
cd6ca9b1 1308protocol static
9b0a0ba9 1309{
54334b56 1310 roa6 { table r6; import filter roa_filter; };
751fb236 1311 route 2001:0db8:85a3:8a2e::/64 max 96 as 1000;
9b0a0ba9
OZ
1312}
1313
3dabf7b8 1314function t_roa_check()
cd6ca9b1
PT
1315prefix pfx;
1316{
54334b56
JMM
1317 bt_assert(roa_check(r4, 10.10.0.0/16, 1000) = ROA_UNKNOWN);
1318 bt_assert(roa_check(r4, 10.0.0.0/8, 1000) = ROA_UNKNOWN);
1319 bt_assert(roa_check(r4, 10.110.0.0/16, 1000) = ROA_VALID);
1320 bt_assert(roa_check(r4, 10.110.0.0/16, 2000) = ROA_INVALID);
1321 bt_assert(roa_check(r4, 10.110.32.0/20, 1000) = ROA_INVALID);
1322 bt_assert(roa_check(r4, 10.120.32.0/20, 1000) = ROA_VALID);
1323 bt_assert(roa_check(r4, 10.120.32.0/20, 2000) = ROA_INVALID);
1324 bt_assert(roa_check(r4, 10.120.32.32/28, 1000) = ROA_INVALID);
1325 bt_assert(roa_check(r4, 10.130.130.0/24, 1000) = ROA_INVALID);
1326 bt_assert(roa_check(r4, 10.130.130.0/24, 2000) = ROA_VALID);
1327 bt_assert(roa_check(r4, 10.130.30.0/24, 3000) = ROA_INVALID);
1328 bt_assert(roa_check(r4, 10.130.130.0/24, 3000) = ROA_VALID);
1329
1330 bt_assert(roa_check(r6, 2001:0db8:85a3:8a2e:1234::/80, 1000) = ROA_VALID);
1331 bt_assert(roa_check(r6, 2001:0db8:85a3:8a2e:1234::/97, 1000) = ROA_INVALID);
1332 bt_assert(roa_check(r6, 2001:0db8:85a3:8a2e::/64, 1000) = ROA_VALID);
1333 bt_assert(roa_check(r6, 2001:0db8:85a3::/48, 1000) = ROA_UNKNOWN);
1334
1335 bt_assert(roa_check(r4, 10.10.0.0/16, 1000) = ROA_UNKNOWN);
1336 bt_assert(roa_check(r4, 10.0.0.0/8, 1000) = ROA_UNKNOWN);
1337 bt_assert(roa_check(r4, 10.110.0.0/16, 1000) = ROA_VALID);
1338 bt_assert(roa_check(r4, 10.110.0.0/16, 2000) = ROA_INVALID);
1339 bt_assert(roa_check(r4, 10.110.32.0/20, 1000) = ROA_INVALID);
1340 bt_assert(roa_check(r4, 10.120.32.0/20, 1000) = ROA_VALID);
1341
1342 bt_assert(roa_check(r6, 2001:0db8:85a3:8a2e:1234::/80, 1000) = ROA_VALID);
1343 bt_assert(roa_check(r6, 2001:0db8:85a3:8a2e:1234::/97, 1000) = ROA_INVALID);
1344 bt_assert(roa_check(r6, 2001:0db8:85a3:8a2e::/64, 1000) = ROA_VALID);
1345 bt_assert(roa_check(r6, 2001:0db8:85a3::/48, 1000) = ROA_UNKNOWN);
1346
1347 bt_assert(roa_check(r4, 2001:0db8:85a3:8a2e:1234::/97, 1000) = ROA_UNKNOWN);
1348 bt_assert(roa_check(r6, 2001:0db8:85a3:8a2e:1234::/97, 1000) = ROA_INVALID);
1349
1350 bt_assert(roa_check(r4, 2001:0db8:85a3:8a2e:1234::/80, 1000) = ROA_UNKNOWN);
1351 bt_assert(roa_check(r6, 2001:0db8:85a3:8a2e:1234::/80, 1000) = ROA_VALID);
1352 bt_assert(roa_check(r4, 2001:0db8:85a3::/48, 1000) = ROA_UNKNOWN);
1353 bt_assert(roa_check(r6, 2001:0db8:85a3::/48, 1000) = ROA_UNKNOWN);
1354
1355 bt_assert(10.130.130.0/24 ~ 0.0.0.0/0);
1356 bt_assert(2001:0db8:85a3:8a2e::/64 ~ ::/0);
1357 bt_assert(10.130.130.0/24 !~ ::/0);
1358 bt_assert(2001:0db8:85a3:8a2e::/64 !~ 0.0.0.0/0);
cd6ca9b1
PT
1359
1360 pfx = 12.13.0.0/16 max 24 as 1234;
54334b56
JMM
1361 bt_assert(pfx.len = 16);
1362 bt_assert(pfx.maxlen = 24);
1363 bt_assert(pfx.asn = 1234);
cd6ca9b1
PT
1364
1365 pfx = 1000::/8 max 32 as 1234;
54334b56
JMM
1366 bt_assert(pfx.len = 8);
1367 bt_assert(pfx.maxlen = 32);
1368 bt_assert(pfx.asn = 1234);
1369}
1370
3dabf7b8
OZ
1371bt_test_suite(t_roa_check, "Testing ROA");
1372
1373
1374
54334b56 1375
8c9986d3
JMM
1376filter vpn_filter
1377{
c0e958e0 1378 bt_assert(format(net) = "1:2 10.1.10.0/24");
8c9986d3
JMM
1379 bt_assert(net.type = NET_VPN4);
1380 bt_assert(net.type != NET_IP4);
1381 bt_assert(net.type != NET_IP6);
1382 bt_assert(net.rd = 0:1:2);
1383
1384 case (net.type) {
1385 NET_IP4: print "IPV4";
1386 NET_IP6: print "IPV6";
1387 }
1388
c0e958e0
MM
1389 bt_check_assign(from, 10.20.30.40);
1390 bt_check_assign(gw, 55.55.55.44);
1391
1392 bgp_community.add((3,5));
1393 bgp_ext_community.add((ro, 135, 999));
1394 bgp_large_community.add((6464156, 89646354, 8675643));
1395
8c9986d3
JMM
1396 accept;
1397}
1398
1399vpn4 table v4;
1400vpn4 table v6;
1401
1402protocol static
1403{
1404 vpn4 { table v4; import filter vpn_filter; };
1405 route 0:1:2 10.1.10.0/24 unreachable;
1406}
d1039926
MM
1407
1408protocol static
1409{
1410 ipv6 { import where false; };
1411 route fd01::/48 unreachable;
1412}