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Harald Welte70767382018-02-21 12:16:40 +01001module BTS_Tests {
2
3import from General_Types all;
4import from GSM_Types all;
5import from GSM_RR_Types all;
6import from Osmocom_Types all;
7import from GSM_Types all;
8import from GSM_RR_Types all;
Harald Welte82ccef72018-02-25 16:17:33 +01009import from GSM_SystemInformation all;
Harald Welte70767382018-02-21 12:16:40 +010010import from L1CTL_PortType all;
11import from L1CTL_Types all;
12import from LAPDm_Types all;
13import from Osmocom_CTRL_Adapter all;
14
15import from RSL_Types all;
Harald Welte7484fc42018-02-24 14:09:45 +010016import from IPA_Types all;
Harald Welte70767382018-02-21 12:16:40 +010017import from IPA_Emulation all;
18import from RSL_Emulation all;
19
20import from IPL4asp_Types all;
21import from TRXC_Types all;
22import from TRXC_CodecPort all;
23import from TRXC_CodecPort_CtrlFunct all;
24
Harald Welte7484fc42018-02-24 14:09:45 +010025import from MobileL3_CommonIE_Types all;
Harald Welte68e495b2018-02-25 00:05:57 +010026import from MobileL3_RRM_Types all;
27import from MobileL3_Types all;
28import from L3_Templates all;
Harald Welte7484fc42018-02-24 14:09:45 +010029
Harald Welte8da48242018-02-27 20:41:32 +010030import from Osmocom_VTY_Functions all;
31import from TELNETasp_PortType all;
32
Harald Welte70767382018-02-21 12:16:40 +010033/* The tests assume a BTS with the following timeslot configuration:
34 * TS0 : Combined CCCH + SDCCH/4
35 * TS1 .. TS 4: TCH/F
36 * TS5 : TCH/H
37 * TS6 : SDCCH/8
38 * TS7 : PDCH
39 */
40
41modulepar {
42 charstring mp_rsl_ip := "127.0.0.2";
43 integer mp_rsl_port := 3003;
44 integer mp_trx0_arfcn := 871;
45 integer mp_bb_trxc_port := 5704;
46}
47
48type component test_CT extends CTRL_Adapter_CT {
Harald Welte68e495b2018-02-25 00:05:57 +010049 /* IPA Emulation component underneath RSL */
Harald Welte70767382018-02-21 12:16:40 +010050 var IPA_Emulation_CT vc_IPA;
Harald Welte68e495b2018-02-25 00:05:57 +010051 /* RSL Emulation component (for ConnHdlr tests) */
Harald Welte70767382018-02-21 12:16:40 +010052 var RSL_Emulation_CT vc_RSL;
Harald Welte68e495b2018-02-25 00:05:57 +010053 /* Direct RSL_CCHAN_PT */
Harald Welte70767382018-02-21 12:16:40 +010054 port RSL_CCHAN_PT RSL_CCHAN;
Harald Welte68e495b2018-02-25 00:05:57 +010055
56 /* L1CTL port (for classic tests) */
57 port L1CTL_PT L1CTL;
Harald Welte48494ca2018-02-25 16:59:50 +010058
Harald Welte54a2a2d2018-02-26 09:14:05 +010059 /* TRXC port (for classic tests) */
60 port TRXC_CODEC_PT BB_TRXC;
61 var integer g_bb_trxc_conn_id;
62
Harald Welte8da48242018-02-27 20:41:32 +010063 port TELNETasp_PT BTSVTY;
64
Harald Welte48494ca2018-02-25 16:59:50 +010065 /* SI configuration */
66 var SystemInformationConfig si_cfg := {
67 bcch_extended := false,
68 si1_present := false,
69 si2bis_present := false,
70 si2ter_present := false,
71 si2quater_present := false,
72 si7_present := false,
73 si8_present := false,
74 si9_present := false,
75 si13_present := false,
76 si13alt_present := false,
77 si15_present := false,
78 si16_present := false,
79 si17_present := false,
80 si2n_present := false,
81 si21_present := false,
82 si22_present := false
83 };
Harald Welte70767382018-02-21 12:16:40 +010084}
85
86/* an individual call / channel */
87type component ConnHdlr extends RSL_DchanHdlr {
88 port L1CTL_PT L1CTL;
89
90 port TRXC_CODEC_PT BB_TRXC;
91 var integer g_bb_trxc_conn_id;
92
93 timer g_Tguard;
94 timer g_Tmeas_exp := 2.0; /* >= 103 SACCH multiframe ~ 500ms */
95
96 var ConnHdlrPars g_pars;
97 var uint8_t g_next_meas_res_nr := 0;
98}
99
100function f_init_rsl(charstring id) runs on test_CT {
101 vc_IPA := IPA_Emulation_CT.create(id & "-RSL-IPA");
102 vc_RSL := RSL_Emulation_CT.create(id & "-RSL");
103
104 map(vc_IPA:IPA_PORT, system:IPA_CODEC_PT);
105 connect(vc_IPA:IPA_RSL_PORT, vc_RSL:IPA_PT);
106 connect(self:RSL_CCHAN, vc_RSL:CCHAN_PT);
107
108 vc_IPA.start(IPA_Emulation.main_server(mp_rsl_ip, mp_rsl_port));
109 vc_RSL.start(RSL_Emulation.main(false));
110}
111
112type record ConnHdlrPars {
113 RslChannelNr chan_nr,
114 RSL_IE_ChannelMode chan_mode,
115 float t_guard,
116 ConnL1Pars l1_pars
117}
118
Harald Welte82ccef72018-02-25 16:17:33 +0100119template (value) RachControlParameters ts_RachCtrl_default := {
120 max_retrans := RACH_MAX_RETRANS_1,
121 tx_integer := '0000'B, /* 3 slots */
122 cell_barr_access := false,
123 re_not_allowed := true,
124 acc := '1111111111111111'B
125};
126
Harald Weltef10153f2018-02-25 16:34:05 +0100127template (value) CellSelectionParameters ts_CellSelPar_default := {
128 cell_resel_hyst_2dB := 0,
129 ms_txpwr_max_cch := 0,
130 acs := '0'B,
131 neci := true,
132 rxlev_access_min := 0
133}
134
135template (value) LocationAreaIdentification ts_LAI_default := {
136 mcc_mnc := '262F42'H,
137 lac := 42
138}
139
Harald Welte7484fc42018-02-24 14:09:45 +0100140/* Default SYSTEM INFORMATION 3 */
Harald Welte82ccef72018-02-25 16:17:33 +0100141template (value) SystemInformation ts_SI3_default := {
Harald Welte7484fc42018-02-24 14:09:45 +0100142 header := t_RrHeader(SYSTEM_INFORMATION_TYPE_3, 0),
143 payload := {
144 si3 := {
145 cell_id := 23,
Harald Weltef10153f2018-02-25 16:34:05 +0100146 lai := ts_LAI_default,
Harald Welte7484fc42018-02-24 14:09:45 +0100147 ctrl_chan_desc := {
148 msc_r99 := true,
149 att := true,
150 bs_ag_blks_res := 1,
151 ccch_conf := CCHAN_DESC_1CCCH_COMBINED,
Harald Welte82ccef72018-02-25 16:17:33 +0100152 si22ind := false,
Harald Welte7484fc42018-02-24 14:09:45 +0100153 cbq3 := CBQ3_IU_MODE_NOT_SUPPORTED,
154 spare := '00'B,
155 bs_pa_mfrms := 0, /* 2 multiframes */
156 t3212 := 1 /* 6 minutes */
157 },
Harald Welte82ccef72018-02-25 16:17:33 +0100158 cell_options := {
Harald Welte7484fc42018-02-24 14:09:45 +0100159 dn_ind := false,
160 pwrc := false,
161 dtx := MS_MAY_USE_UL_DTX,
162 radio_link_tout_div4 := 4/4
163 },
Harald Weltef10153f2018-02-25 16:34:05 +0100164 cell_sel_par := ts_CellSelPar_default,
Harald Welte82ccef72018-02-25 16:17:33 +0100165 rach_control := ts_RachCtrl_default,
Harald Welte7484fc42018-02-24 14:09:45 +0100166 rest_octets := ''O
167 }
168 }
169}
Harald Welte70767382018-02-21 12:16:40 +0100170
Harald Weltef10153f2018-02-25 16:34:05 +0100171template (value) SystemInformation ts_SI2_default := {
172 header := t_RrHeader(SYSTEM_INFORMATION_TYPE_2, 0),
173 payload := {
174 si2 := {
175 bcch_freq_list := '00000000000000000000000000000000'O,
176 ncc_permitted := '11111111'B,
177 rach_control := ts_RachCtrl_default
178 }
179 }
180}
181
182template (value) SystemInformation ts_SI4_default := {
183 header := t_RrHeader(SYSTEM_INFORMATION_TYPE_4, 0),
184 payload := {
185 si4 := {
186 lai := ts_LAI_default,
187 cell_sel_par := ts_CellSelPar_default,
188 rach_control := ts_RachCtrl_default,
189 cbch_chan_desc := omit,
190 cbch_mobile_alloc := omit,
191 rest_octets := ''O
192 }
193 }
194}
195
196function f_rsl_bcch_fill_raw(RSL_IE_SysinfoType rsl_si_type, octetstring si_enc)
197runs on test_CT {
198 log("Setting ", rsl_si_type, ": ", si_enc);
199 RSL_CCHAN.send(ts_RSL_UD(ts_RSL_BCCH_INFO(rsl_si_type, si_enc)));
200}
201
202function f_rsl_bcch_fill(RSL_IE_SysinfoType rsl_si_type, template (value) SystemInformation si_dec)
203runs on test_CT {
204 var octetstring si_enc := enc_SystemInformation(valueof(si_dec));
205 log("Setting ", rsl_si_type, ": ", si_dec);
206 f_rsl_bcch_fill_raw(rsl_si_type, si_enc);
207}
208
Harald Welte8da48242018-02-27 20:41:32 +0100209private function f_init_vty(charstring id) runs on test_CT {
210 map(self:BTSVTY, system:BTSVTY);
211 f_vty_set_prompts(BTSVTY);
212 f_vty_transceive(BTSVTY, "enable");
213}
214
Harald Welte70767382018-02-21 12:16:40 +0100215/* global init function */
Harald Welte68e495b2018-02-25 00:05:57 +0100216function f_init(charstring id := "BTS-Test") runs on test_CT {
Harald Welte70767382018-02-21 12:16:40 +0100217 f_init_rsl(id);
218 RSL_CCHAN.receive(ASP_IPA_Event:{up_down := ASP_IPA_EVENT_UP});
Harald Welte2d142592018-02-25 13:19:44 +0100219 f_sleep(0.5); /* workaround for OS#3000 */
Harald Welte8da48242018-02-27 20:41:32 +0100220 f_init_vty(id);
Harald Welte7484fc42018-02-24 14:09:45 +0100221
222 /* Send SI3 to the BTS, it is needed for various computations */
Harald Weltef10153f2018-02-25 16:34:05 +0100223 f_rsl_bcch_fill(RSL_SYSTEM_INFO_3, ts_SI3_default);
224 /* SI2 + SI4 are required for SI testing as they are mandatory defaults */
225 f_rsl_bcch_fill(RSL_SYSTEM_INFO_2, ts_SI2_default);
226 f_rsl_bcch_fill(RSL_SYSTEM_INFO_4, ts_SI4_default);
Harald Welte57fe8232018-02-26 17:52:50 +0100227
228 /* start with a default moderate timing offset equalling TA=2 */
229 f_main_trxc_connect();
230 BB_TRXC.send(ts_TRXC_Send(g_bb_trxc_conn_id, ts_TRXC_FAKE_TIMING(2*256)));
Harald Welte70767382018-02-21 12:16:40 +0100231}
232
Harald Welte68e495b2018-02-25 00:05:57 +0100233/* Attach L1CTL to master test_CT (classic tests, non-handler mode) */
234function f_init_l1ctl() runs on test_CT {
235 map(self:L1CTL, system:L1CTL);
236 f_connect_reset(L1CTL);
237}
238
Harald Welte70767382018-02-21 12:16:40 +0100239type function void_fn(charstring id) runs on ConnHdlr;
240
241/* create a new test component */
242function f_start_handler(void_fn fn, ConnHdlrPars pars)
243runs on test_CT return ConnHdlr {
244 var charstring id := testcasename();
245 var ConnHdlr vc_conn;
246
247 vc_conn := ConnHdlr.create(id);
248 /* connect to RSL Emulation main component */
249 connect(vc_conn:RSL, vc_RSL:CLIENT_PT);
250 connect(vc_conn:RSL_PROC, vc_RSL:RSL_PROC);
251
252 vc_conn.start(f_handler_init(fn, id, pars));
253 return vc_conn;
254}
255
Harald Welte7484fc42018-02-24 14:09:45 +0100256template ASP_RSL_Unitdata ts_RSL_UD(template RSL_Message rsl, IpaStreamId sid := IPAC_PROTO_RSL_TRX0) := {
257 streamId := sid,
258 rsl := rsl
259}
260
261template ASP_RSL_Unitdata tr_RSL_UD(template RSL_Message rsl,
262 template IpaStreamId sid := IPAC_PROTO_RSL_TRX0) := {
263 streamId := sid,
264 rsl := rsl
265}
266
Harald Welte70767382018-02-21 12:16:40 +0100267private altstep as_Tguard() runs on ConnHdlr {
268 [] g_Tguard.timeout {
269 setverdict(fail, "Tguard timeout");
270 self.stop;
271 }
272}
273
Harald Welte68e495b2018-02-25 00:05:57 +0100274private function f_l1_tune(L1CTL_PT L1CTL) {
Harald Welte70767382018-02-21 12:16:40 +0100275 f_L1CTL_FBSB(L1CTL, { false, mp_trx0_arfcn }, CCCH_MODE_COMBINED);
276}
277
278private function f_trxc_connect() runs on ConnHdlr {
279 map(self:BB_TRXC, system:BB_TRXC);
280 var Result res;
281 res := TRXC_CodecPort_CtrlFunct.f_IPL4_connect(BB_TRXC, "127.0.0.1", mp_bb_trxc_port,
282 "127.0.0.1", 0, -1, {udp:={}}, {});
283 g_bb_trxc_conn_id := res.connId;
284}
285
286private function f_trxc_fake_rssi(uint8_t rssi) runs on ConnHdlr {
287 BB_TRXC.send(ts_TRXC_Send(g_bb_trxc_conn_id, ts_TRXC_FAKE_RSSI(rssi)));
288}
289
290private function f_trx_fake_toffs256(int16_t toffs256) runs on ConnHdlr {
291 BB_TRXC.send(ts_TRXC_Send(g_bb_trxc_conn_id, ts_TRXC_FAKE_TIMING(toffs256)));
292}
293
294/* first function started in ConnHdlr component */
295private function f_handler_init(void_fn fn, charstring id, ConnHdlrPars pars)
296runs on ConnHdlr {
297 g_pars := pars;
298 g_chan_nr := pars.chan_nr;
299
300 map(self:L1CTL, system:L1CTL);
301 f_connect_reset(L1CTL);
302
303 f_trxc_connect();
304
305 g_Tguard.start(pars.t_guard);
306 activate(as_Tguard());
307
308 f_rslem_register(0, pars.chan_nr);
309
310 /* call the user-supplied test case function */
311 fn.apply(id);
312}
313
Harald Welte1eba3742018-02-25 12:48:14 +0100314function f_rsl_transceive(template RSL_Message tx, template RSL_Message exp_rx, charstring id)
315runs on ConnHdlr {
316 timer T := 3.0;
317 RSL.send(tx);
318 T.start;
Harald Welte70767382018-02-21 12:16:40 +0100319 alt {
Harald Welte1eba3742018-02-25 12:48:14 +0100320 [] RSL.receive(exp_rx) {
321 T.stop;
322 setverdict(pass);
Harald Welte70767382018-02-21 12:16:40 +0100323 }
Harald Welte1eba3742018-02-25 12:48:14 +0100324 [] T.timeout {
325 setverdict(fail, "Timeout expecting " & id);
326 self.stop;
327 }
328 [] RSL.receive {
329 setverdict(fail, "Unexpected RSL message received");
Harald Welte70767382018-02-21 12:16:40 +0100330 }
331 }
332}
333
Harald Welte1eba3742018-02-25 12:48:14 +0100334function f_rsl_chan_act(RSL_IE_ChannelMode mode) runs on ConnHdlr {
335 f_rsl_transceive(ts_RSL_CHAN_ACT(g_chan_nr, mode), tr_RSL_CHAN_ACT_ACK(g_chan_nr),
336 "RSL CHAN ACT");
337}
338
Harald Welte70767382018-02-21 12:16:40 +0100339function f_rsl_chan_deact() runs on ConnHdlr {
Harald Welte1eba3742018-02-25 12:48:14 +0100340 f_rsl_transceive(ts_RSL_RF_CHAN_REL(g_chan_nr), tr_RSL_RF_CHAN_REL_ACK(g_chan_nr),
341 "RF CHAN REL");
Harald Welte70767382018-02-21 12:16:40 +0100342}
343
Harald Welte70767382018-02-21 12:16:40 +0100344private template ConnHdlrPars t_Pars(template RslChannelNr chan_nr,
345 template RSL_IE_ChannelMode chan_mode,
346 float t_guard := 20.0) := {
347 chan_nr := valueof(chan_nr),
348 chan_mode := valueof(chan_mode),
349 t_guard := t_guard,
350 l1_pars := {
351 dtx_enabled := false,
352 meas_ul := {
353 full := {
354 rxlev := dbm2rxlev(-53),
355 rxqual := 0
356 },
357 sub := {
358 rxlev := dbm2rxlev(-53),
359 rxqual := 0
360 }
361 },
362 timing_offset_256syms := 0,
363 bs_power_level := 0,
364 ms_power_level := 0,
365 ms_actual_ta := 0
366 }
367}
368
Harald Welte93640c62018-02-25 16:59:33 +0100369/***********************************************************************
370 * Channel Activation / Deactivation
371 ***********************************************************************/
372
Harald Welte70767382018-02-21 12:16:40 +0100373/* Stress test: Do 500 channel activations/deactivations in rapid succession */
374function f_TC_chan_act_stress(charstring id) runs on ConnHdlr {
375 for (var integer i := 0; i < 500; i := i+1) {
376 f_rsl_chan_act(g_pars.chan_mode);
377 f_rsl_chan_deact();
378 }
379 setverdict(pass);
380}
381testcase TC_chan_act_stress() runs on test_CT {
382 var ConnHdlr vc_conn;
383 var ConnHdlrPars pars := valueof(t_Pars(t_RslChanNr_Bm(1), ts_RSL_ChanMode_SIGN));
384 f_init(testcasename());
385 vc_conn := f_start_handler(refers(f_TC_chan_act_stress), pars);
386 vc_conn.done;
387}
388
389/* Test if re-activation of an already active channel fails as expected */
390function f_TC_chan_act_react(charstring id) runs on ConnHdlr {
391 f_rsl_chan_act(g_pars.chan_mode);
392 /* attempt to activate the same lchan again -> expect reject */
393 RSL.send(ts_RSL_CHAN_ACT(g_chan_nr, g_pars.chan_mode));
394 alt {
395 [] RSL.receive(tr_RSL_CHAN_ACT_ACK(g_chan_nr)) {
396 setverdict(fail, "Unexpected CHAN ACT ACK on double activation");
397 }
398 [] RSL.receive(tr_RSL_CHAN_ACT_NACK(g_chan_nr)) {
399 setverdict(pass);
400 }
401 }
402 f_rsl_chan_deact();
403}
404testcase TC_chan_act_react() runs on test_CT {
405 var ConnHdlr vc_conn;
406 var ConnHdlrPars pars := valueof(t_Pars(t_RslChanNr_Bm(1), ts_RSL_ChanMode_SIGN));
407 f_init(testcasename());
408 vc_conn := f_start_handler(refers(f_TC_chan_act_react), pars);
409 vc_conn.done;
410}
411
412/* Attempt to de-activate a channel that's not active */
413function f_TC_chan_deact_not_active(charstring id) runs on ConnHdlr {
414 timer T := 3.0;
415 RSL.send(ts_RSL_RF_CHAN_REL(g_chan_nr));
416 T.start;
417 alt {
418 [] RSL.receive(tr_RSL_RF_CHAN_REL_ACK(g_chan_nr)) {
419 setverdict(pass);
420 }
421 [] T.timeout {
422 setverdict(fail, "Timeout expecting RF_CHAN_REL_ACK");
423 }
424 }
425}
426testcase TC_chan_deact_not_active() runs on test_CT {
427 var ConnHdlrPars pars := valueof(t_Pars(t_RslChanNr_Bm(1), ts_RSL_ChanMode_SIGN));
428 f_init(testcasename());
429 var ConnHdlr vc_conn := f_start_handler(refers(f_TC_chan_deact_not_active), pars);
430 vc_conn.done;
431}
432
433/* attempt to activate channel with wrong RSL Channel Nr IE; expect NACK */
434function f_TC_chan_act_wrong_nr(charstring id) runs on ConnHdlr {
435 RSL.send(ts_RSL_CHAN_ACT(g_chan_nr, g_pars.chan_mode));
436 alt {
437 [] RSL.receive(tr_RSL_CHAN_ACT_ACK(g_chan_nr)) {
438 setverdict(fail, "Unexpected CHAN ACT ACK");
439 }
440 [] RSL.receive(tr_RSL_CHAN_ACT_NACK(g_chan_nr)) {
441 setverdict(pass);
442 }
443 }
444}
445private type record WrongChanNrCase {
446 RslChannelNr chan_nr,
447 charstring description
448}
449private type record of WrongChanNrCase WrongChanNrCases;
450private template WrongChanNrCase t_WCN(template RslChannelNr chan_nr, charstring desc) := {
451 chan_nr := chan_nr,
452 description := desc
453}
454
455testcase TC_chan_act_wrong_nr() runs on test_CT {
456 var ConnHdlr vc_conn;
457 var ConnHdlrPars pars;
458
459 f_init(testcasename());
460
461 var WrongChanNrCases wrong := {
462 valueof(t_WCN(t_RslChanNr_RACH(0), "RACH is not a dedicated channel")),
463 valueof(t_WCN(t_RslChanNr_RACH(1), "RACH doesn't exist on timeslot")),
464 valueof(t_WCN(t_RslChanNr_BCCH(0), "BCCH is not a dedicated channel")),
465 valueof(t_WCN(t_RslChanNr_PCH_AGCH(0), "PCH/AGCH is not a dedicated channel")),
466 valueof(t_WCN(t_RslChanNr_Bm(0), "TS0 cannot be TCH/F")),
467 valueof(t_WCN(t_RslChanNr_Lm(0, 0), "TS0 cannot be TCH/H")),
468 valueof(t_WCN(t_RslChanNr_Lm(0, 1), "TS0 cannot be TCH/H")),
469 valueof(t_WCN(t_RslChanNr_PDCH(0), "TS0 cannot be PDCH")),
470 valueof(t_WCN(t_RslChanNr_SDCCH8(0, 0), "TS0 cannot be SDCCH/8")),
471 valueof(t_WCN(t_RslChanNr_SDCCH8(0, 7), "TS0 cannot be SDCCH/8")),
472 valueof(t_WCN(t_RslChanNr_SDCCH4(7, 0), "TS7 cannot be SDCCH/4")),
473 valueof(t_WCN(t_RslChanNr_SDCCH4(7, 3), "TS7 cannot be SDCCH/4")),
474 valueof(t_WCN(t_RslChanNr_Lm(1, 0), "TS1 cannot be TCH/H"))
475 };
476
477 for (var integer i := 0; i < sizeof(wrong); i := i+1) {
478 pars := valueof(t_Pars(wrong[i].chan_nr, ts_RSL_ChanMode_SIGN));
479 vc_conn := f_start_handler(refers(f_TC_chan_act_wrong_nr), pars);
480 vc_conn.done;
481 }
482}
483
Harald Welte93640c62018-02-25 16:59:33 +0100484/***********************************************************************
485 * RACH Handling
486 ***********************************************************************/
487
Harald Welte8c24c2b2018-02-26 08:31:31 +0100488/* like L1SAP_IS_PACKET_RACH */
489private function ra_is_ps(OCT1 ra) return boolean {
490 if (ra and4b 'F0'O == '70'O) {
491 return true;
492 } else if (ra and4b '0F'O == '0F'O) {
493 return true;
494 }
495 return false;
496}
497
498/* generate a random RACH for circuit-switched */
499private function f_rnd_ra_cs() return OCT1 {
500 var OCT1 ra;
501 do {
502 ra := f_rnd_octstring(1);
503 } while (ra_is_ps(ra));
504 return ra;
505}
506
507/* Send 1000 RACH requests and check their RA+FN on the RSL side */
508testcase TC_rach_content() runs on test_CT {
509 f_init(testcasename());
510 f_init_l1ctl();
Harald Welte68e495b2018-02-25 00:05:57 +0100511 f_l1_tune(L1CTL);
Harald Welte70767382018-02-21 12:16:40 +0100512
Harald Welte8c24c2b2018-02-26 08:31:31 +0100513 var GsmFrameNumber fn_last := 0;
514 for (var integer i := 0; i < 1000; i := i+1) {
515 var OCT1 ra := f_rnd_ra_cs();
516 var GsmFrameNumber fn := f_L1CTL_RACH(L1CTL, oct2int(ra));
517 if (fn == fn_last) {
518 setverdict(fail, "Two RACH in same FN?!?");
519 self.stop;
520 }
521 fn_last := fn;
522
523 timer T := 5.0;
524 alt {
525 [] RSL_CCHAN.receive(tr_RSL_UD(tr_RSL_CHAN_RQD(ra, fn, ?))) {
526 T.stop;
527 }
528 [] RSL_CCHAN.receive(tr_RSL_UD(tr_RSL_CHAN_RQD(?, ?, ?))) {
529 setverdict(fail, "Unexpected CHAN RQD");
530 self.stop;
531 }
532 [] RSL_CCHAN.receive { repeat; }
533 [] T.timeout {
534 setverdict(fail, "Timeout waiting for CHAN RQD");
535 self.stop;
536 }
537 }
538 }
539 setverdict(pass);
Harald Welte70767382018-02-21 12:16:40 +0100540}
Harald Welte8c24c2b2018-02-26 08:31:31 +0100541
542/* Send 1000 RACH Requests (flood ~ 89/s) and count if count(Abis) == count(Um) */
543testcase TC_rach_count() runs on test_CT {
Harald Welte70767382018-02-21 12:16:40 +0100544 f_init(testcasename());
Harald Welte8c24c2b2018-02-26 08:31:31 +0100545 f_init_l1ctl();
546 f_l1_tune(L1CTL);
547
548 var GsmFrameNumber fn_last := 0;
549 for (var integer i := 0; i < 1000; i := i+1) {
550 var OCT1 ra := f_rnd_ra_cs();
551 var GsmFrameNumber fn := f_L1CTL_RACH(L1CTL, oct2int(ra));
552 if (fn == fn_last) {
553 setverdict(fail, "Two RACH in same FN?!?");
554 self.stop;
555 }
556 fn_last := fn;
557 }
558 var integer rsl_chrqd := 0;
559 timer T := 3.0;
560 alt {
561 [] RSL_CCHAN.receive(tr_RSL_UD(tr_RSL_CHAN_RQD(?,?))) {
562 rsl_chrqd := rsl_chrqd + 1;
Harald Weltec3a3f452018-02-26 17:37:47 +0100563 f_timer_safe_restart(T);
Harald Welte8c24c2b2018-02-26 08:31:31 +0100564 repeat;
565 }
566 [] RSL_CCHAN.receive { repeat; }
567 [] T.timeout { }
568 }
569 if (rsl_chrqd == 1000) {
570 setverdict(pass);
571 } else {
572 setverdict(fail, "Received only ", rsl_chrqd, " out of 1000 RACH");
573 }
Harald Welte70767382018-02-21 12:16:40 +0100574}
575
Harald Welte54a2a2d2018-02-26 09:14:05 +0100576private function f_main_trxc_connect() runs on test_CT {
577 map(self:BB_TRXC, system:BB_TRXC);
578 var Result res;
579 res := TRXC_CodecPort_CtrlFunct.f_IPL4_connect(BB_TRXC, "127.0.0.1", mp_bb_trxc_port,
580 "127.0.0.1", 0, -1, {udp:={}}, {});
581 g_bb_trxc_conn_id := res.connId;
582}
583
584private function f_rach_toffs(int16_t toffs256, boolean expect_pass) runs on test_CT {
585 /* tell fake_trx to use a given timing offset for all bursts */
586 BB_TRXC.send(ts_TRXC_Send(g_bb_trxc_conn_id, ts_TRXC_FAKE_TIMING(toffs256)));
587 f_sleep(0.5);
588
589 /* Transmit RACH request + wait for confirmation */
590 var OCT1 ra := f_rnd_ra_cs();
591 var GsmFrameNumber fn := f_L1CTL_RACH(L1CTL, oct2int(ra));
592
593 /* Check for expected result */
594 timer T := 1.5;
595 T.start;
596 alt {
597 [expect_pass] RSL_CCHAN.receive(tr_RSL_UD(tr_RSL_CHAN_RQD(ra, fn))) {
598 setverdict(pass);
599 }
600 [not expect_pass] RSL_CCHAN.receive(tr_RSL_UD(tr_RSL_CHAN_RQD(ra, fn))) {
601 setverdict(fail, "RACH passed but was expected to be dropped");
602 }
603 [] RSL_CCHAN.receive { repeat; }
604 [not expect_pass] T.timeout {
605 setverdict(pass);
606 }
607 [expect_pass] T.timeout {
608 setverdict(fail, "Timeout waiting for CHAN RQD");
609 }
610 }
611}
612
613/* Test if dropping of RACH Based on NM_ATT_MAX_TA works */
614testcase TC_rach_max_ta() runs on test_CT {
615 f_init(testcasename());
616 f_init_l1ctl();
617 f_l1_tune(L1CTL);
Harald Welte54a2a2d2018-02-26 09:14:05 +0100618 f_sleep(1.0);
619
620 /* default max-ta is 63 (full range of GSM timing advance */
621
622 /* negative TA must not happen */
623 f_rach_toffs(-10*256, false);
624
625 /* 0 / 32 / 63 bits is legal / permitted */
626 f_rach_toffs(0, true);
627 f_rach_toffs(32*256, true);
628 f_rach_toffs(63*256, true);
629
630 /* more than 63 bits is not legal / permitted */
631 f_rach_toffs(64*256, false);
632 f_rach_toffs(127*256, false);
633}
Harald Welte8c24c2b2018-02-26 08:31:31 +0100634
Harald Welte93640c62018-02-25 16:59:33 +0100635/***********************************************************************
636 * Measurement Processing / Reporting
637 ***********************************************************************/
638
Harald Welte70767382018-02-21 12:16:40 +0100639template LapdmAddressField ts_LapdmAddr(LapdmSapi sapi, boolean c_r) := {
640 spare := '0'B,
641 lpd := 0,
642 sapi := sapi,
643 c_r := c_r,
644 ea := true
645}
646
647template LapdmFrameB ts_LAPDm_B(LapdmSapi sapi, boolean c_r, boolean p, octetstring pl) := {
648 addr := ts_LapdmAddr(sapi, c_r),
649 ctrl := t_LapdmCtrlUI(p),
650 len := 0, /* overwritten */
651 m := false,
652 el := 1,
653 payload := pl
654}
655
656/* handle incoming downlink SACCH and respond with uplink SACCH (meas res) */
657altstep as_l1_sacch() runs on ConnHdlr {
658 var L1ctlDlMessage l1_dl;
659 [] L1CTL.receive(t_L1CTL_DATA_IND(g_chan_nr, tr_RslLinkID_SACCH(?))) -> value l1_dl {
660 log("SACCH received: ", l1_dl.payload.data_ind.payload);
661 var GsmRrL3Message meas_rep := valueof(ts_MEAS_REP(true, 23, 23, 0, 0, omit));
662 var LapdmFrameB lb := valueof(ts_LAPDm_B(0, false, false, enc_GsmRrL3Message(meas_rep)));
663 log("LAPDm: ", lb);
664 var octetstring pl := '0000'O & enc_LapdmFrameB(lb);
665 L1CTL.send(t_L1CTL_DATA_REQ(g_chan_nr, ts_RslLinkID_SACCH(0), pl));
666 repeat;
667 }
668}
669
670altstep as_l1_dcch() runs on ConnHdlr {
671 var L1ctlDlMessage l1_dl;
672 [] L1CTL.receive(t_L1CTL_DATA_IND(g_chan_nr, tr_RslLinkID_DCCH(?))) -> value l1_dl {
673 log("DCCH received: ", l1_dl.payload.data_ind.payload);
674 var octetstring pl := '010301'O;
675 L1CTL.send(t_L1CTL_DATA_REQ(g_chan_nr, ts_RslLinkID_DCCH(0), pl));
676 repeat;
677 }
678}
679
680type record MeasElem {
681 uint6_t rxlev,
682 uint3_t rxqual
683}
684
685type record MeasElemFS {
686 MeasElem full,
687 MeasElem sub
688}
689
690type record ConnL1Pars {
691 boolean dtx_enabled,
692 MeasElemFS meas_ul,
693 int16_t timing_offset_256syms,
694 uint5_t bs_power_level,
695 uint5_t ms_power_level,
696 uint8_t ms_actual_ta
697}
698
699/* Convert tiing offset from 1/256th symbol to RSL Timing Offset */
700private function toffs256s_to_rsl(int16_t toffs256s) return uint8_t {
701 return 63 + (toffs256s/256);
702}
703
704/* build a template for matching measurement results against */
705private function f_build_meas_res_tmpl() runs on ConnHdlr return template RSL_Message {
706 var ConnL1Pars l1p := g_pars.l1_pars;
707 var template RSL_IE_UplinkMeas ul_meas := {
708 len := 3,
709 rfu := '0'B,
710 dtx_d := l1p.dtx_enabled,
711 rxlev_f_u := l1p.meas_ul.full.rxlev,
712 reserved1 := '00'B,
713 rxlev_s_u := l1p.meas_ul.sub.rxlev,
714 reserved2 := '00'B,
715 rxq_f_u := l1p.meas_ul.full.rxqual,
716 rxq_s_u := l1p.meas_ul.sub.rxqual,
717 supp_meas_info := omit
718 };
719 /* HACK HACK HACK FIXME HACK HACK HACK see https://osmocom.org/issues/2988 */
720 ul_meas.rxlev_f_u := ?;
721 ul_meas.rxlev_s_u := ?;
722 ul_meas.rxq_f_u := ?;
723 ul_meas.rxq_s_u := ?;
724 var template RSL_IE_BS_Power bs_power := {
725 reserved := 0,
726 epc := false,
727 fpc := false,
728 power_level := l1p.bs_power_level
729 };
730 var template RSL_IE_L1Info l1_info := {
731 ms_power_lvl := l1p.ms_power_level,
732 fpc := false,
733 reserved := 0,
734 actual_ta := l1p.ms_actual_ta
735 };
736 var uint8_t offs := toffs256s_to_rsl(l1p.timing_offset_256syms);
737 var template uint8_t t_toffs := (offs-1 .. offs+1); /* some tolerance */
738 return tr_RSL_MEAS_RES_OSMO(g_chan_nr, g_next_meas_res_nr, ul_meas, bs_power, l1_info,
739 ?, t_toffs);
740}
741
742/* verify we regularly receive measurement reports with incrementing numbers */
743altstep as_meas_res() runs on ConnHdlr {
744 var RSL_Message rsl;
745 [] RSL.receive(f_build_meas_res_tmpl()) -> value rsl {
746 /* increment counter of next to-be-expected meas rep */
747 g_next_meas_res_nr := (g_next_meas_res_nr + 1) mod 256;
748 /* Re-start the timer expecting the next MEAS RES */
Harald Weltec3a3f452018-02-26 17:37:47 +0100749 f_timer_safe_restart(g_Tmeas_exp);
Harald Welte70767382018-02-21 12:16:40 +0100750 repeat;
751 }
752 [] RSL.receive(tr_RSL_MEAS_RES(g_chan_nr, g_next_meas_res_nr)) -> value rsl {
753 setverdict(fail, "Received unspecific MEAS RES ", rsl);
754 self.stop;
755 }
756 [] RSL.receive(tr_RSL_MEAS_RES(?)) -> value rsl {
757 setverdict(fail, "Received unexpected MEAS RES ", rsl);
758 self.stop;
759 }
760 [] g_Tmeas_exp.timeout {
761 setverdict(fail, "Didn't receive expected measurement result")
762 self.stop;
763 }
764}
765
766/* Establish dedicated channel: L1CTL + RSL side */
767private function f_est_dchan() runs on ConnHdlr {
768 var GsmFrameNumber fn;
769 var ImmediateAssignment imm_ass;
770 var integer ra := 23;
771
772 fn := f_L1CTL_RACH(L1CTL, ra);
773 /* This arrives on CCHAN, so we cannot test for receiving CHAN RQDhere */
774 //RSL.receive(tr_RSL_CHAN_RQD(int2oct(23,1)));
775
776 /* Activate channel on BTS side */
777 f_rsl_chan_act(g_pars.chan_mode);
778
779 /* Send IMM.ASS via CCHAN */
780 var ChannelDescription ch_desc := {
781 chan_nr := g_pars.chan_nr,
782 tsc := 7,
783 h := false,
784 arfcn := mp_trx0_arfcn,
785 maio_hsn := omit
786 };
787 var MobileAllocation ma := {
788 len := 0,
789 ma := ''B
790 };
791 var GsmRrMessage rr_msg := valueof(ts_IMM_ASS(ra, fn, 0, ch_desc, ma));
792 RSL.send(ts_RSL_IMM_ASSIGN(enc_GsmRrMessage(rr_msg)));
793
794 /* receive IMM.ASS on MS side */
795 var ImmediateAssignment ia_um;
796 ia_um := f_L1CTL_WAIT_IMM_ASS(L1CTL, ra, fn);
797 /* enable dedicated mode */
798 f_L1CTL_DM_EST_REQ_IA(L1CTL, ia_um);
799}
800
801/* establish DChan, verify existance + contents of measurement reports */
802function f_TC_meas_res_periodic(charstring id) runs on ConnHdlr {
Harald Welte68e495b2018-02-25 00:05:57 +0100803 f_l1_tune(L1CTL);
Harald Welte70767382018-02-21 12:16:40 +0100804 RSL.clear;
805
806 g_pars.l1_pars.meas_ul.full.rxlev := dbm2rxlev(-100);
807 g_pars.l1_pars.meas_ul.sub.rxlev := g_pars.l1_pars.meas_ul.full.rxlev;
808 f_trxc_fake_rssi(100);
809
810 g_pars.l1_pars.timing_offset_256syms := 512; /* 2 symbols */
811 f_trx_fake_toffs256(g_pars.l1_pars.timing_offset_256syms);
812
813 f_est_dchan();
814
815 /* run for a number of seconds, send SACCH + FACCH from MS side and verify
816 * RSL measurement reports on Abis side */
817 timer T := 8.0;
818 T.start;
819 alt {
820 [] as_l1_sacch();
821 [] as_meas_res();
822 [] as_l1_dcch();
823 [] L1CTL.receive { repeat; }
824 [g_Tmeas_exp.running] T.timeout {
825 /* as_meas_res() would have done setverdict(fail) / self.stop in case
826 * of any earlier errors, so if we reach this timeout, we're good */
827 setverdict(pass);
828 }
829 [] T.timeout {
830 setverdict(fail, "No MEAS RES received at all");
831 }
832 }
833 f_rsl_chan_deact();
834}
835testcase TC_meas_res_sign_tchf() runs on test_CT {
836 var ConnHdlr vc_conn;
837 var ConnHdlrPars pars;
838 f_init(testcasename());
839 for (var integer tn := 1; tn <= 4; tn := tn+1) {
840 pars := valueof(t_Pars(t_RslChanNr_Bm(tn), ts_RSL_ChanMode_SIGN));
841 vc_conn := f_start_handler(refers(f_TC_meas_res_periodic), pars);
842 vc_conn.done;
843 }
844}
845testcase TC_meas_res_sign_tchh() runs on test_CT {
846 var ConnHdlr vc_conn;
847 var ConnHdlrPars pars;
848 f_init(testcasename());
849 for (var integer ss := 0; ss <= 1; ss := ss+1) {
850 pars := valueof(t_Pars(t_RslChanNr_Lm(5, ss), ts_RSL_ChanMode_SIGN));
851 vc_conn := f_start_handler(refers(f_TC_meas_res_periodic), pars);
852 vc_conn.done;
853 }
854}
855testcase TC_meas_res_sign_sdcch4() runs on test_CT {
856 var ConnHdlr vc_conn;
857 var ConnHdlrPars pars;
858 f_init(testcasename());
859 for (var integer ss := 0; ss <= 3; ss := ss+1) {
860 pars := valueof(t_Pars(t_RslChanNr_SDCCH4(0, ss), ts_RSL_ChanMode_SIGN));
861 vc_conn := f_start_handler(refers(f_TC_meas_res_periodic), pars);
862 vc_conn.done;
863 }
864}
865testcase TC_meas_res_sign_sdcch8() runs on test_CT {
866 var ConnHdlr vc_conn;
867 var ConnHdlrPars pars;
868 f_init(testcasename());
869 for (var integer ss := 0; ss <= 7; ss := ss+1) {
870 pars := valueof(t_Pars(t_RslChanNr_SDCCH8(6, ss), ts_RSL_ChanMode_SIGN));
871 vc_conn := f_start_handler(refers(f_TC_meas_res_periodic), pars);
872 vc_conn.done;
873 }
874}
875
876/* Test if a channel without valid uplink bursts generates RSL CONN FAIL IND */
877private function f_TC_conn_fail_crit(charstring id) runs on ConnHdlr {
Harald Welte68e495b2018-02-25 00:05:57 +0100878 f_l1_tune(L1CTL);
Harald Welte70767382018-02-21 12:16:40 +0100879 RSL.clear;
880
881 f_est_dchan();
882 f_sleep(2.0);
883 L1CTL.send(t_L1CTL_DM_REL_REQ(g_chan_nr));
884
885 timer T := 40.0;
886 T.start;
887 alt {
888 [] RSL.receive(tr_RSL_CONN_FAIL_IND(g_chan_nr, ?)) {
889 setverdict(pass)
890 }
891 [] RSL.receive { repeat };
892 [] T.timeout {
893 setverdict(fail, "No CONN FAIL IND received");
894 }
895 }
896 f_rsl_chan_deact();
897}
898testcase TC_conn_fail_crit() runs on test_CT {
899 var ConnHdlr vc_conn;
900 var ConnHdlrPars pars;
901 f_init(testcasename());
902 pars := valueof(t_Pars(t_RslChanNr_SDCCH8(6, 3), ts_RSL_ChanMode_SIGN));
903 pars.t_guard := 60.0;
904 vc_conn := f_start_handler(refers(f_TC_conn_fail_crit), pars);
905 vc_conn.done;
906}
907
Harald Welte93640c62018-02-25 16:59:33 +0100908/***********************************************************************
909 * Paging
910 ***********************************************************************/
911
Harald Welte68e495b2018-02-25 00:05:57 +0100912function tmsi_is_dummy(TMSIP_TMSI_V tmsi) return boolean {
913 if (tmsi == 'FFFFFFFF'O) {
914 return true;
915 } else {
916 return false;
917 }
918}
Harald Welte70767382018-02-21 12:16:40 +0100919
Harald Welte68e495b2018-02-25 00:05:57 +0100920altstep as_l1_count_paging(inout integer num_paging_rcv_msgs, inout integer num_paging_rcv_ids)
921runs on test_CT {
922 var L1ctlDlMessage dl;
923 [] L1CTL.receive(t_L1CTL_DATA_IND(t_RslChanNr_PCH_AGCH(0), ?, c_DummyUI)) {
924 repeat;
925 }
926 [] L1CTL.receive(t_L1CTL_DATA_IND(t_RslChanNr_PCH_AGCH(0))) -> value dl {
927 var octetstring without_plen :=
928 substr(dl.payload.data_ind.payload, 1, lengthof(dl.payload.data_ind.payload)-1);
929 var PDU_ML3_NW_MS rr := dec_PDU_ML3_NW_MS(without_plen);
930 if (match(rr, tr_PAGING_REQ1)) {
931 num_paging_rcv_msgs := num_paging_rcv_msgs + 1;
932 num_paging_rcv_ids := num_paging_rcv_ids + 1;
933 if (isvalue(rr.msgs.rrm.pagingReq_Type1.mobileIdentity2)) {
934 num_paging_rcv_ids := num_paging_rcv_ids + 1;
935 }
936 } else if (match(rr, tr_PAGING_REQ2)) {
937 num_paging_rcv_msgs := num_paging_rcv_msgs + 1;
938 if (not tmsi_is_dummy(rr.msgs.rrm.pagingReq_Type2.mobileIdentity1)) {
939 num_paging_rcv_ids := num_paging_rcv_ids + 1;
940 }
941 if (not tmsi_is_dummy(rr.msgs.rrm.pagingReq_Type2.mobileIdentity2)) {
942 num_paging_rcv_ids := num_paging_rcv_ids + 1;
943 }
944 if (isvalue(rr.msgs.rrm.pagingReq_Type2.mobileIdentity3)) {
945 num_paging_rcv_ids := num_paging_rcv_ids + 1;
946 }
947 } else if (match(rr, tr_PAGING_REQ3)) {
948 num_paging_rcv_msgs := num_paging_rcv_msgs + 1;
949 if (not tmsi_is_dummy(rr.msgs.rrm.pagingReq_Type3.mobileIdentity1)) {
950 num_paging_rcv_ids := num_paging_rcv_ids + 1;
951 }
952 if (not tmsi_is_dummy(rr.msgs.rrm.pagingReq_Type3.mobileIdentity2)) {
953 num_paging_rcv_ids := num_paging_rcv_ids + 1;
954 }
955 if (not tmsi_is_dummy(rr.msgs.rrm.pagingReq_Type3.mobileIdentity3)) {
956 num_paging_rcv_ids := num_paging_rcv_ids + 1;
957 }
958 if (not tmsi_is_dummy(rr.msgs.rrm.pagingReq_Type3.mobileIdentity4)) {
959 num_paging_rcv_ids := num_paging_rcv_ids + 1;
960 }
961 }
962 repeat;
963 }
964}
965
966type record PagingTestCfg {
967 boolean combined_ccch,
968 integer bs_ag_blks_res,
969 float load_factor,
970 boolean exp_load_ind,
971 boolean exp_overload,
972 boolean use_tmsi
973}
974
975type record PagingTestState {
976 integer num_paging_sent,
977 integer num_paging_rcv_msgs,
978 integer num_paging_rcv_ids,
979 integer num_overload
980}
981
982/* receive + ignore RSL RF RES IND */
983altstep as_rsl_res_ind() runs on test_CT {
984 [] RSL_CCHAN.receive(tr_RSL_UD(tr_RSL_RF_RES_IND)) {
985 repeat;
986 }
987}
988
989/* Helper function for paging related testing */
990private function f_TC_paging(PagingTestCfg cfg) runs on test_CT return PagingTestState {
991 f_init(testcasename());
992 f_init_l1ctl();
993 f_l1_tune(L1CTL);
994
995 var PagingTestState st := {
996 num_paging_sent := 0,
997 num_paging_rcv_msgs := 0,
998 num_paging_rcv_ids := 0,
999 num_overload := 0
1000 };
1001
1002 var float max_pch_blocks_per_sec := f_pch_block_rate_est(cfg.combined_ccch, cfg.bs_ag_blks_res);
1003 var float max_pch_imsi_per_sec;
1004 if (cfg.use_tmsi) {
1005 max_pch_imsi_per_sec := max_pch_blocks_per_sec * 4.0; /* Type 3 */
1006 } else {
1007 max_pch_imsi_per_sec := max_pch_blocks_per_sec * 2.0; /* Type 1 */
1008 }
1009 var float pch_blocks_per_sec := max_pch_imsi_per_sec * cfg.load_factor;
1010 var float interval := 1.0 / pch_blocks_per_sec;
1011 log("pch_blocks_per_sec=", pch_blocks_per_sec, " interval=", interval);
1012
1013 for (var integer i := 0; i < float2int(20.0/interval); i := i+1) {
1014 /* build mobile Identity */
1015 var MobileL3_CommonIE_Types.MobileIdentityLV mi;
1016 if (cfg.use_tmsi) {
1017 mi := valueof(ts_MI_TMSI_LV(f_rnd_octstring(4)));
1018 } else {
1019 mi := valueof(ts_MI_IMSI_LV(f_gen_imsi(i)));
1020 }
1021 var octetstring mi_enc_lv := enc_MobileIdentityLV(mi);
1022 var octetstring mi_enc := substr(mi_enc_lv, 1, lengthof(mi_enc_lv)-1);
1023
1024 /* Send RSL PAGING COMMAND */
1025 RSL_CCHAN.send(ts_RSL_UD(ts_RSL_PAGING_CMD(mi_enc, i mod 4)));
1026 st.num_paging_sent := st.num_paging_sent + 1;
1027
1028 /* Wait for interval to next PAGING COMMAND */
1029 timer T_itv := interval;
1030 T_itv.start;
1031 alt {
1032 /* check for presence of CCCH LOAD IND (paging load) */
1033 [cfg.exp_overload] RSL_CCHAN.receive(tr_RSL_UD(tr_RSL_PAGING_LOAD_IND(0))) {
1034 st.num_overload := st.num_overload + 1;
1035 repeat;
1036 }
1037 [not cfg.exp_overload] RSL_CCHAN.receive(tr_RSL_UD(tr_RSL_PAGING_LOAD_IND(0))) {
1038 setverdict(fail, "Unexpected PCH Overload");
1039 }
1040 [cfg.exp_load_ind] RSL_CCHAN.receive(tr_RSL_UD(tr_RSL_PAGING_LOAD_IND)) {
1041 log("Rx LOAD_IND");
1042 /* FIXME: analyze/verify interval + contents */
1043 repeat;
1044 }
1045 /* check if paging requests arrive on Um side */
1046 [] as_l1_count_paging(st.num_paging_rcv_msgs, st.num_paging_rcv_ids);
1047 [] L1CTL.receive { repeat; }
1048 [] T_itv.timeout { }
1049 [] as_rsl_res_ind();
1050 }
1051 }
1052
1053 /* wait for max 18s for paging queue to drain (size: 200, ~ 13 per s -> 15s) */
1054 timer T_wait := 18.0;
1055 T_wait.start;
1056 alt {
1057 [] as_l1_count_paging(st.num_paging_rcv_msgs, st.num_paging_rcv_ids);
1058 [] L1CTL.receive { repeat; }
1059 /* 65535 == empty paging queue, we can terminate*/
1060 [] RSL_CCHAN.receive(tr_RSL_UD(tr_RSL_PAGING_LOAD_IND(65535))) { }
1061 [] RSL_CCHAN.receive(tr_RSL_UD(tr_RSL_PAGING_LOAD_IND)) { repeat; }
1062 [] T_wait.timeout {
1063 setverdict(fail, "Waiting for empty paging queue");
1064 }
1065 [] as_rsl_res_ind();
1066 }
1067
1068 log("num_paging_sent=", st.num_paging_sent, " rcvd_msgs=", st.num_paging_rcv_msgs,
1069 " rcvd_ids=", st.num_paging_rcv_ids);
1070 return st;
1071}
1072
1073/* Create ~ 80% paging load (IMSI only) sustained for about 20s, verifying that
1074 * - the number of Mobile Identities on Um PCH match the number of pages on RSL
1075 * - that CCCH LOAD IND (PCH) are being generated
1076 * - that CCCH LOAD IND (PCH) [no load] is received after paging flood is over */
1077testcase TC_paging_imsi_80percent() runs on test_CT {
1078 var PagingTestCfg cfg := {
1079 combined_ccch := true,
1080 bs_ag_blks_res := 1,
1081 load_factor := 0.8,
1082 exp_load_ind := true,
1083 exp_overload := false,
1084 use_tmsi := false
1085 };
1086 var PagingTestState st := f_TC_paging(cfg);
1087 if (st.num_paging_sent != st.num_paging_rcv_ids) {
1088 setverdict(fail, "Expected ", st.num_paging_sent, " pagings but have ",
1089 st.num_paging_rcv_ids);
1090 } else {
1091 setverdict(pass);
1092 }
1093}
1094
1095/* Create ~ 80% paging load (TMSI only) sustained for about 20s, verifying that
1096 * - the number of Mobile Identities on Um PCH match the number of pages on RSL
1097 * - that CCCH LOAD IND (PCH) are being generated
1098 * - that CCCH LOAD IND (PCH) [no load] is received after paging flood is over */
1099testcase TC_paging_tmsi_80percent() runs on test_CT {
1100 var PagingTestCfg cfg := {
1101 combined_ccch := true,
1102 bs_ag_blks_res := 1,
1103 load_factor := 0.8,
1104 exp_load_ind := true,
1105 exp_overload := false,
1106 use_tmsi := true
1107 };
1108 var PagingTestState st := f_TC_paging(cfg);
1109 if (st.num_paging_sent != st.num_paging_rcv_ids) {
1110 setverdict(fail, "Expected ", st.num_paging_sent, " pagings but have ",
1111 st.num_paging_rcv_ids);
1112 } else {
1113 setverdict(pass);
1114 }
1115}
1116
1117/* Create ~ 200% paging load (IMSI only) sustained for about 20s, verifying that
1118 * - the number of Mobile Identities on Um PCH are ~ 82% of the number of pages on RSL
1119 * - that CCCH LOAD IND (PCH) are being generated and reach 0 at some point
1120 * - that CCCH LOAD IND (PCH) [no load] is received after paging flood is over */
1121testcase TC_paging_imsi_200percent() runs on test_CT {
1122 var PagingTestCfg cfg := {
1123 combined_ccch := true,
1124 bs_ag_blks_res := 1,
1125 load_factor := 2.0,
1126 exp_load_ind := true,
1127 exp_overload := true,
1128 use_tmsi := false
1129 };
1130 var PagingTestState st := f_TC_paging(cfg);
1131 /* We expect about 80-85% to pass, given that we can fill the paging buffer of 200
1132 * slots and will fully drain that buffer before returning */
1133 var template integer tpl := (st.num_paging_sent*80/100 .. st.num_paging_sent *85/100);
1134 if (not match(st.num_paging_rcv_ids, tpl)) {
1135 setverdict(fail, "Expected ", tpl, " pagings but have ", st.num_paging_rcv_ids);
1136 } else {
1137 setverdict(pass);
1138 }
1139}
1140
1141/* Create ~ 200% paging load (TMSI only) sustained for about 20s, verifying that
1142 * - the number of Mobile Identities on Um PCH are ~ 82% of the number of pages on RSL
1143 * - that CCCH LOAD IND (PCH) are being generated and reach 0 at some point
1144 * - that CCCH LOAD IND (PCH) [no load] is received after paging flood is over */
1145testcase TC_paging_tmsi_200percent() runs on test_CT {
1146 var PagingTestCfg cfg := {
1147 combined_ccch := true,
1148 bs_ag_blks_res := 1,
1149 load_factor := 2.0,
1150 exp_load_ind := true,
1151 exp_overload := true,
1152 use_tmsi := true
1153 };
1154 var PagingTestState st := f_TC_paging(cfg);
1155 /* We expect about 70% to pass, given that we can fill the paging buffer of 200
1156 * slots and will fully drain that buffer before returning */
1157 var template integer tpl := (st.num_paging_sent*68/100 .. st.num_paging_sent *72/100);
1158 if (not match(st.num_paging_rcv_ids, tpl)) {
1159 setverdict(fail, "Expected ", tpl, " pagings but have ", st.num_paging_rcv_ids);
1160 } else {
1161 setverdict(pass);
1162 }
1163}
1164
1165
Harald Welte93640c62018-02-25 16:59:33 +01001166/***********************************************************************
1167 * Immediate Assignment / AGCH
1168 ***********************************************************************/
1169
Harald Welte68e495b2018-02-25 00:05:57 +01001170testcase TC_imm_ass() runs on test_CT {
1171 f_init(testcasename());
1172 for (var integer i := 0; i < 1000; i := i+1) {
1173 var octetstring ia_enc := f_rnd_octstring(8);
1174 RSL_CCHAN.send(ts_RSL_UD(ts_RSL_IMM_ASSIGN(ia_enc, 0)));
1175 f_sleep(0.02);
1176 }
1177 /* FIXME: check if imm.ass arrive on Um side */
1178 /* FIXME: check for DELETE INDICATION */
1179 f_sleep(100.0);
1180}
1181
Harald Welte48494ca2018-02-25 16:59:50 +01001182/***********************************************************************
1183 * BCCH
1184 ***********************************************************************/
1185
1186/* tuple of Frame Number + decoded SI */
1187type record SystemInformationFn {
1188 GsmFrameNumber frame_number,
1189 SystemInformation si
1190}
1191
1192/* an arbitrary-length vector of decoded SI + gsmtap header */
1193type record of SystemInformationFn SystemInformationVector;
1194
1195/* an array of SI-vectors indexed by TC value */
1196type SystemInformationVector SystemInformationVectorPerTc[8];
1197
1198/* determine if a given SI vector contains given SI type at least once */
1199function f_si_vecslot_contains(SystemInformationVector arr, RrMessageType key, boolean bcch_ext := false) return boolean {
1200 for (var integer i:= 0; i< sizeof(arr); i := i + 1) {
1201 var integer fn_mod51 := arr[i].frame_number mod 51;
1202 if (not bcch_ext and fn_mod51 == 2 or
1203 bcch_ext and fn_mod51 == 6) {
1204 if (arr[i].si.header.message_type == key) {
1205 return true;
1206 }
1207 }
1208 }
1209 return false;
1210}
1211
1212/* ensure a given TC slot of the SI vector contains given SI type at least once at TC */
1213function f_ensure_si_vec_contains(SystemInformationVectorPerTc arr, integer tc, RrMessageType key, boolean ext_bcch := false) {
1214 if (not f_si_vecslot_contains(arr[tc], key, ext_bcch)) {
1215 setverdict(fail, "No ", key, " in TC=", tc, "!");
1216 }
1217}
1218
1219/* check if a given SI vector contains given SI type at least once on any TC */
1220function f_si_vec_contains(SystemInformationVectorPerTc arr, RrMessageType key) return boolean {
1221 for (var integer tc:= 0; tc < sizeof(arr); tc := tc + 1) {
1222 if (f_si_vecslot_contains(arr[tc], key) or
1223 f_si_vecslot_contains(arr[tc], key, true)) {
1224 return true;
1225 }
1226 }
1227 return false;
1228}
1229
1230/* determine if a given SI vector contains given SI type at least N of M times */
1231function f_si_vecslot_contains_n_of_m(SystemInformationVector arr, RrMessageType key, boolean bcch_ext := false, integer n := 1, integer m := 4) return boolean {
1232 var integer count := 0;
1233 if (sizeof(arr) < m) {
1234 setverdict(fail, "Error: Insufficient SI in array");
1235 self.stop;
1236 }
1237 for (var integer i:= 0; i < m; i := i + 1) {
1238 var integer fn_mod51 := arr[i].frame_number mod 51;
1239 if (not bcch_ext and fn_mod51 == 2 or
1240 bcch_ext and fn_mod51 == 6) {
1241 if (arr[i].si.header.message_type == key) {
1242 count := count + 1;
1243 }
1244 }
1245 }
1246 if (count >= n) {
1247 return true;
1248 } else {
1249 return false;
1250 }
1251}
1252
1253/* ensure a given TC slot of the SI vector contains given SI type at least N out of M times at TC */
1254function f_ensure_si_vec_contains_n_of_m(SystemInformationVectorPerTc arr, integer tc, RrMessageType key, boolean ext_bcch := false, integer n, integer m) {
1255 if (not f_si_vecslot_contains_n_of_m(arr[tc], key, ext_bcch, n, m)) {
1256 setverdict(fail, "Not ", n, "/", m, " of ", key, " in TC=", tc, "!");
1257 }
1258}
1259
1260/* determine if a given SI vector contains given SI type at least once */
1261function f_si_vecslot_contains_only(SystemInformationVector arr, RrMessageType key, boolean bcch_ext := false) return boolean {
1262 for (var integer i:= 0; i< sizeof(arr); i := i + 1) {
1263 var integer fn_mod51 := arr[i].frame_number mod 51;
1264 if (not bcch_ext and fn_mod51 == 2 or
1265 bcch_ext and fn_mod51 == 6) {
1266 if (arr[i].si.header.message_type != key) {
1267 return false;
1268 }
1269 }
1270 }
1271 return true;
1272}
1273
1274/* ensure a given TC slot of the SI vector contains only given SI type */
1275function f_ensure_si_vec_contains_only(SystemInformationVectorPerTc arr, integer tc, RrMessageType key, boolean ext_bcch := false) {
1276 if (not f_si_vecslot_contains_only(arr[tc], key, ext_bcch)) {
1277 setverdict(fail, "Not all ", key, " in TC=", tc, "!");
1278 }
1279}
1280
1281/* SI configuration of cell, against which we validate actual SI messages */
1282type set SystemInformationConfig {
1283 boolean bcch_extended,
1284 boolean si1_present,
1285 boolean si2bis_present,
1286 boolean si2ter_present,
1287 boolean si2quater_present,
1288 boolean si7_present,
1289 boolean si8_present,
1290 boolean si9_present,
1291 boolean si13_present,
1292 boolean si13alt_present,
1293 boolean si15_present,
1294 boolean si16_present,
1295 boolean si17_present,
1296 boolean si2n_present,
1297 boolean si21_present,
1298 boolean si22_present
1299}
1300
1301/* validate the SI scheduling according to TS 45.002 version 14.1.0 Release 14, Section 6.3.1.3 */
1302function f_validate_si_scheduling(SystemInformationConfig cfg, SystemInformationVectorPerTc si_per_tc) {
1303 var integer i;
1304 for (i := 0; i < sizeof(si_per_tc); i := i + 1) {
1305 if (sizeof(si_per_tc[i]) == 0) {
1306 setverdict(fail, "No SI messages for TC=0!");
1307 }
1308 }
1309 if (cfg.si1_present) {
1310 /* ii) System Information Type 1 needs to be sent if frequency hopping is in use or
1311 * when the NCH is present in a cell. If the MS finds another message on BCCH Norm
1312 * when TC = 0, it can assume that System Information Type 1 is not in use. */
1313 f_ensure_si_vec_contains(si_per_tc, 0, SYSTEM_INFORMATION_TYPE_1);
1314 /* make sure *ALL* contain SI1 */
1315 f_ensure_si_vec_contains_only(si_per_tc, 0, SYSTEM_INFORMATION_TYPE_1);
1316 }
1317 f_ensure_si_vec_contains(si_per_tc, 1, SYSTEM_INFORMATION_TYPE_2);
1318 /* iii) A SI 2 message will be sent at least every time TC = 1 */
1319 f_ensure_si_vec_contains(si_per_tc, 2, SYSTEM_INFORMATION_TYPE_3);
1320 f_ensure_si_vec_contains(si_per_tc, 6, SYSTEM_INFORMATION_TYPE_3);
1321 f_ensure_si_vec_contains(si_per_tc, 3, SYSTEM_INFORMATION_TYPE_4);
1322 f_ensure_si_vec_contains(si_per_tc, 7, SYSTEM_INFORMATION_TYPE_4);
1323
1324 /* iii) System information type 2 bis or 2 ter messages are sent if needed, as determined by the
1325 * system operator. If only one of them is needed, it is sent when TC = 5. If both are
1326 * needed, 2bis is sent when TC = 5 and 2ter is sent at least once within any of 4
1327 * consecutive occurrences of TC = 4. */
1328 if (cfg.si2bis_present and not cfg.si2ter_present) {
1329 f_ensure_si_vec_contains(si_per_tc, 5, SYSTEM_INFORMATION_TYPE_2bis);
1330 } else if (cfg.si2ter_present and not cfg.si2bis_present) {
1331 f_ensure_si_vec_contains(si_per_tc, 5, SYSTEM_INFORMATION_TYPE_2ter);
1332 } else if (cfg.si2ter_present and cfg.si2bis_present) {
1333 f_ensure_si_vec_contains(si_per_tc, 5, SYSTEM_INFORMATION_TYPE_2bis);
1334 f_ensure_si_vec_contains_n_of_m(si_per_tc, 4, SYSTEM_INFORMATION_TYPE_2ter, false, 1, 4);
1335 }
1336
1337 if (cfg.si7_present or cfg.si8_present) {
1338 /* vi) Use of System Information type 7 and 8 is not always necessary. It is necessary
1339 * if System Information type 4 does not contain all information needed for cell
1340 * selection and reselection. */
1341 if (not cfg.bcch_extended) {
1342 testcase.stop("Error: SI7/SI8 require BCCH Extd.");
1343 }
1344 if (cfg.si7_present) {
1345 f_ensure_si_vec_contains(si_per_tc, 7, SYSTEM_INFORMATION_TYPE_7, true);
1346 }
1347 if (cfg.si8_present) {
1348 f_ensure_si_vec_contains(si_per_tc, 3, SYSTEM_INFORMATION_TYPE_8, true);
1349 }
1350 }
1351
1352 if (cfg.si2quater_present) {
1353 /* iii) System information type 2 quater is sent if needed, as determined by the system
1354 * operator. If sent on BCCH Norm, it shall be sent when TC = 5 if neither of 2bis
1355 * and 2ter are used, otherwise it shall be sent at least once within any of 4
1356 * consecutive occurrences of TC = 4. If sent on BCCH Ext, it is sent at least once
1357 * within any of 4 consecutive occurrences of TC = 5. */
1358 if (not (cfg.bcch_extended)) {
1359 if (not (cfg.si2bis_present or cfg.si2ter_present)) {
1360 f_ensure_si_vec_contains(si_per_tc, 5, SYSTEM_INFORMATION_TYPE_2quater);
1361 } else {
1362 f_ensure_si_vec_contains_n_of_m(si_per_tc, 4, SYSTEM_INFORMATION_TYPE_2quater, false, 1, 4);
1363 }
1364 } else {
1365 f_ensure_si_vec_contains_n_of_m(si_per_tc, 5, SYSTEM_INFORMATION_TYPE_2quater, true, 1, 4);
1366 }
1367 }
1368 if (cfg.si9_present) {
1369 /* vi) System Information type 9 is sent in those blocks with TC = 4 which are specified
1370 * in system information type 3 as defined in 3GPP TS 44.018. */
1371 f_ensure_si_vec_contains(si_per_tc, 4, SYSTEM_INFORMATION_TYPE_9); // FIXME SI3
1372 }
1373 if (cfg.si13_present) {
1374 /* vii) System Information type 13 is only related to the GPRS service. System Information
1375 * Type 13 need only be sent if GPRS support is indicated in one or more of System
1376 * Information Type 3 or 4 or 7 or 8 messages. These messages also indicate if the
1377 * message is sent on the BCCH Norm or if the message is transmitted on the BCCH Ext.
1378 * In the case that the message is sent on the BCCH Norm, it is sent at least once
1379 * within any of 4 consecutive occurrences of TC=4. */
1380 if (not cfg.bcch_extended) {
1381 log("not-bccch-extended");
1382 f_ensure_si_vec_contains_n_of_m(si_per_tc, 4, SYSTEM_INFORMATION_TYPE_13, false, 1, 4);
1383 } else {
1384 log("bccch-extended");
1385 f_ensure_si_vec_contains(si_per_tc, 0, SYSTEM_INFORMATION_TYPE_13, true);
1386 }
1387 if (f_si_vec_contains(si_per_tc, SYSTEM_INFORMATION_TYPE_13alt)) {
1388 setverdict(fail, "Cannot have SI13alt and SI13");
1389 }
1390 }
1391 if (cfg.si16_present or cfg.si17_present) {
1392 /* viii) System Information type 16 and 17 are only related to the SoLSA service. They
1393 * should not be sent in a cell where network sharing is used (see rule xv). */
1394 if (cfg.si22_present) {
1395 testcase.stop("Error: Cannot have SI16/SI17 and SI22!");
1396 }
1397 if (f_si_vec_contains(si_per_tc, SYSTEM_INFORMATION_TYPE_22)) {
1398 setverdict(fail, "Cannot have SI16/SI17 and SI22!");
1399 }
1400 if (not cfg.bcch_extended) {
1401 testcase.stop("Error: SI16/SI17 requires BCCH Extd!");
1402 }
1403 if (cfg.si16_present) {
1404 f_ensure_si_vec_contains(si_per_tc, 6, SYSTEM_INFORMATION_TYPE_16, true);
1405 }
1406 if (cfg.si17_present) {
1407 f_ensure_si_vec_contains(si_per_tc, 2, SYSTEM_INFORMATION_TYPE_17, true);
1408 }
1409 }
1410
1411 /* ix) System Information type 18 and 20 are sent in order to transmit non-GSM
1412 * broadcast information. The frequency with which they are sent is determined by the
1413 * system operator. System Information type 9 identifies the scheduling of System
1414 * Information type 18 and 20 messages. */
1415
1416 /* x) System Information Type 19 is sent if COMPACT neighbours exist. If System
1417 * Information Type 19 is present, then its scheduling shall be indicated in System
1418 * Information Type 9. */
1419
1420 if (cfg.si15_present) {
1421 /* xi) System Information Type 15 is broadcast if dynamic ARFCN mapping is used in the
1422 * PLMN. If sent on BCCH Norm, it is sent at least once within any of 4 consecutive
1423 * occurrences of TC = 4. If sent on BCCH Ext, it is sent at least once within any of
1424 * 4 consecutive occurrences of TC = 1. */
1425 if (not cfg.bcch_extended) {
1426 f_ensure_si_vec_contains_n_of_m(si_per_tc, 4, SYSTEM_INFORMATION_TYPE_15, false, 1, 4);
1427 } else {
1428 f_ensure_si_vec_contains_n_of_m(si_per_tc, 1, SYSTEM_INFORMATION_TYPE_15, true, 1, 4);
1429 }
1430 }
1431 if (cfg.si13alt_present) {
1432 /* xii) System Information type 13 alt is only related to the GERAN Iu mode. System
1433 * Information Type 13 alt need only be sent if GERAN Iu mode support is indicated in
1434 * one or more of System Information Type 3 or 4 or 7 or 8 messages and SI 13 is not
1435 * broadcast. These messages also indicate if the message is sent on the BCCH Norm or
1436 * if the message is transmitted on the BCCH Ext. In the case that the message is sent
1437 * on the BCCH Norm, it is sent at least once within any of 4 consecutive occurrences
1438 * of TC = 4. */
1439 if (cfg.si13_present) {
1440 testcase.stop("Error: Cannot have SI13alt and SI13");
1441 }
1442 if (f_si_vec_contains(si_per_tc, SYSTEM_INFORMATION_TYPE_13)) {
1443 setverdict(fail, "Cannot have SI13alt and SI13");
1444 }
1445 if (not cfg.bcch_extended) {
1446 f_ensure_si_vec_contains_n_of_m(si_per_tc, 4, SYSTEM_INFORMATION_TYPE_13alt, false, 1, 4);
1447 } else {
1448 f_ensure_si_vec_contains(si_per_tc, 0, SYSTEM_INFORMATION_TYPE_13alt, true);
1449 }
1450 }
1451 if (cfg.si2n_present) {
1452 /* xiii) System Information Type 2n is optionally sent on BCCH Norm or BCCH Ext if needed,
1453 * as determined by the system operator. In the case that the message is sent on the
1454 * BCCH Norm, it is sent at least once within any of 4 consecutive occurrences of TC =
1455 * 4. If the message is sent on BCCH Ext, it is sent at least once within any of 2
1456 * consecutive occurrences of TC = 4. */
1457 if (not cfg.bcch_extended) {
1458 f_ensure_si_vec_contains_n_of_m(si_per_tc, 4, SYSTEM_INFORMATION_TYPE_2n, false, 1, 4);
1459 } else {
1460 f_ensure_si_vec_contains_n_of_m(si_per_tc, 4, SYSTEM_INFORMATION_TYPE_2n, true, 2, 4);
1461 }
1462 }
1463 if (cfg.si21_present) {
1464 /* xiv) System Information Type 21 is optionally sent on BCCH Norm or BCCH Ext, as
1465 * determined by the system operator. If Extended Access Barring is in use in the cell
1466 * then this message is sent at least once within any of 4 consecutive occurrences of
1467 * TC = 4 regardless if it is sent on BCCH Norm or BCCH Ext. If BCCH Ext is used in a
1468 * cell then this message shall only be sent on BCCH Ext. */
1469 if (not cfg.bcch_extended) {
1470 f_ensure_si_vec_contains_n_of_m(si_per_tc, 4, SYSTEM_INFORMATION_TYPE_21, false, 1, 4);
1471 } else {
1472 f_ensure_si_vec_contains_n_of_m(si_per_tc, 4, SYSTEM_INFORMATION_TYPE_21, true, 1, 4);
1473 if (f_si_vecslot_contains(si_per_tc[4], SYSTEM_INFORMATION_TYPE_21)) {
1474 setverdict(fail, "Cannot have SI21 on BCCH Norm if BCCH Extd enabled!");
1475 }
1476 }
1477 }
1478 if (cfg.si22_present) {
1479 /* xv) System Information Type 22 is sent if network sharing is in use in the cell. It
1480 * should not be sent in a cell where SoLSA is used (see rule viii). System
1481 * Information Type 22 instances shall be sent on BCCH Ext within any occurrence of TC
1482 * =2 and TC=6. */
1483 if (cfg.si16_present or cfg.si17_present) {
1484 testcase.stop("Error: Cannot have SI16/SI17 and SI22!");
1485 }
1486 if (f_si_vec_contains(si_per_tc, SYSTEM_INFORMATION_TYPE_16) or
1487 f_si_vec_contains(si_per_tc, SYSTEM_INFORMATION_TYPE_17)) {
1488 setverdict(fail, "Cannot have SI16/SI17 and SI22!");
1489 }
1490 if (not cfg.bcch_extended) {
1491 testcase.stop("Error: SI22 requires BCCH Extd!");
1492 } else {
1493 f_ensure_si_vec_contains_only(si_per_tc, 2, SYSTEM_INFORMATION_TYPE_22, true);
1494 f_ensure_si_vec_contains_only(si_per_tc, 6, SYSTEM_INFORMATION_TYPE_22, true);
1495 }
1496 }
1497}
1498
1499/* sample Systme Information for specified duration via L1CTL */
1500function f_l1_sample_si(L1CTL_PT pt, float duration := 8.0) return SystemInformationVectorPerTc {
1501 timer T := duration;
1502 var SystemInformationVectorPerTc si_per_tc;
1503 var L1ctlDlMessage l1_dl;
1504
1505 /* initialize all per-TC vectors empty */
1506 for (var integer i:= 0; i < sizeof(si_per_tc); i := i+1) {
1507 si_per_tc[i] := {};
1508 }
1509
1510 /* flush all previous L1 queued msgs */
1511 pt.clear;
1512
1513 T.start;
1514 alt {
1515 [] pt.receive(t_L1CTL_DATA_IND(t_RslChanNr_BCCH(0), ?)) -> value l1_dl {
1516 /* somehow dec_SystemInformation will try to decode even non-RR as SI */
1517 if (not (l1_dl.payload.data_ind.payload[1] == '06'O)) {
1518 log("Ignoring non-RR SI ", l1_dl);
1519 repeat;
1520 }
1521 var SystemInformationFn sig := {
1522 frame_number := l1_dl.dl_info.frame_nr,
1523 si := dec_SystemInformation(l1_dl.payload.data_ind.payload)
1524 }
1525 var integer tc := f_gsm_compute_tc(sig.frame_number);
1526 log("SI received at TC=", tc, ": ", sig.si);
1527 /* append to the per-TC bucket */
1528 si_per_tc[tc] := si_per_tc[tc] & { sig };
1529 repeat;
1530 }
1531 [] pt.receive { repeat; }
1532 [] T.timeout { }
1533 }
1534
1535 for (var integer i:= 0; i < sizeof(si_per_tc); i := i+1) {
1536 log(testcasename(), ": TC=", i, " has #of SI=", sizeof(si_per_tc[i]));
1537 }
1538 log("si_per_tc=", si_per_tc);
1539 return si_per_tc;
1540}
1541
1542/* helper function: Set given SI via RSL + validate scheduling.
1543 * CALLER MUST MAKE SURE TO CHANGE GLOBAL si_cfg! */
1544function f_TC_si_sched() runs on test_CT {
1545 var SystemInformationVectorPerTc si_per_tc;
1546 f_init_l1ctl();
1547 f_l1_tune(L1CTL);
1548
1549 /* Sample + Validate Scheduling */
1550 si_per_tc := f_l1_sample_si(L1CTL);
1551 f_validate_si_scheduling(si_cfg, si_per_tc);
1552
1553 setverdict(pass);
1554}
1555
1556testcase TC_si_sched_default() runs on test_CT {
1557 f_init();
1558 f_rsl_bcch_fill(RSL_SYSTEM_INFO_2, ts_SI2_default);
1559 f_rsl_bcch_fill(RSL_SYSTEM_INFO_4, ts_SI4_default);
1560 f_TC_si_sched();
1561}
1562
1563testcase TC_si_sched_2bis() runs on test_CT {
1564 f_init();
1565 si_cfg.si2bis_present := true;
1566 f_rsl_bcch_fill_raw(RSL_SYSTEM_INFO_2bis, '550602bfe809b3ff00000000000000000000007900002b'O);
1567 f_TC_si_sched();
1568}
1569
1570testcase TC_si_sched_2ter() runs on test_CT {
1571 f_init();
1572 si_cfg.si2ter_present := true;
1573 f_rsl_bcch_fill_raw(RSL_SYSTEM_INFO_2ter, '010603bf66b0aa0a00000002000000000000002b2b2b2b'O);
1574 f_TC_si_sched();
1575}
1576
1577testcase TC_si_sched_2ter_2bis() runs on test_CT {
1578 f_init();
1579 si_cfg.si2bis_present := true;
1580 f_rsl_bcch_fill_raw(RSL_SYSTEM_INFO_2bis, '550602bfe809b3ff00000000000000000000007900002b'O);
1581 si_cfg.si2ter_present := true;
1582 f_rsl_bcch_fill_raw(RSL_SYSTEM_INFO_2ter, '010603bf66b0aa0a00000002000000000000002b2b2b2b'O);
1583 f_TC_si_sched();
1584}
1585
1586testcase TC_si_sched_2quater() runs on test_CT {
1587 f_init();
1588 si_cfg.si2quater_present := true;
1589 f_rsl_bcch_fill_raw(RSL_SYSTEM_INFO_2quater, '050607a8a0364aa698d72ff424feee0506d5e7fff02043'O);
1590 f_TC_si_sched();
1591}
1592
1593testcase TC_si_sched_13() runs on test_CT {
1594 f_init();
1595 si_cfg.si13_present := true;
1596 //f_rsl_bcch_fill_raw(RSL_SYSTEM_INFO_13, fixme);
1597 f_TC_si_sched();
1598}
1599
1600testcase TC_si_sched_13_2bis_2ter_2quater() runs on test_CT {
1601 f_init();
1602 si_cfg.si2bis_present := true;
1603 f_rsl_bcch_fill_raw(RSL_SYSTEM_INFO_2bis, '550602bfe809b3ff00000000000000000000007900002b'O);
1604 si_cfg.si2ter_present := true;
1605 f_rsl_bcch_fill_raw(RSL_SYSTEM_INFO_2ter, '010603bf66b0aa0a00000002000000000000002b2b2b2b'O);
1606 si_cfg.si2quater_present := true;
1607 f_rsl_bcch_fill_raw(RSL_SYSTEM_INFO_2quater, '050607a8a0364aa698d72ff424feee0506d5e7fff02043'O);
1608 si_cfg.si13_present := true;
1609 //f_rsl_bcch_fill_raw(RSL_SYSTEM_INFO_13, fixme);
1610 f_TC_si_sched();
1611}
1612
1613
Harald Welte68e495b2018-02-25 00:05:57 +01001614testcase TC_bcch_info() runs on test_CT {
1615 f_init(testcasename());
1616 /* FIXME: enable / disable individual BCCH info */
1617 //ts_RSL_BCCH_INFO(si_type, info);
1618 /* expect no ERROR REPORT after either of them *
1619 /* negative test: ensure ERROR REPORT on unsupported types */
1620}
1621
Harald Welte93640c62018-02-25 16:59:33 +01001622/***********************************************************************
1623 * Low-Level Protocol Errors / ERROR REPORT
1624 ***********************************************************************/
1625
Harald Welte01d982c2018-02-25 01:31:40 +01001626private function f_exp_err_rep(template RSL_Cause cause) runs on test_CT {
1627 timer T := 5.0;
1628 T.start;
1629 alt {
1630 [] RSL_CCHAN.receive(tr_RSL_UD(tr_RSL_ERROR_REPORT(cause))) {
1631 setverdict(pass);
1632 }
1633 [] RSL_CCHAN.receive(tr_RSL_UD(tr_RSL_ERROR_REPORT(?))) {
1634 setverdict(fail, "Wrong cause in RSL ERR REP");
1635 }
1636 [] RSL_CCHAN.receive {
1637 repeat;
1638 }
1639 [] T.timeout {
1640 setverdict(fail, "Timeout waiting for RSL ERR REP");
1641 }
1642 }
1643}
1644
1645/* Provoke a protocol error (message too short) and match on ERROR REPORT */
1646testcase TC_rsl_protocol_error() runs on test_CT {
1647 f_init(testcasename());
1648 var RSL_Message rsl := valueof(ts_RSL_BCCH_INFO(RSL_SYSTEM_INFO_1, ''O));
1649 rsl.ies := omit;
1650 RSL_CCHAN.send(ts_RSL_UD(rsl));
1651
1652 f_exp_err_rep(RSL_ERR_PROTO);
1653}
1654
1655/* Provoke a mandatory IE error and match on ERROR REPORT */
1656testcase TC_rsl_mand_ie_error() runs on test_CT {
1657 f_init(testcasename());
1658
1659 var RSL_Message rsl := valueof(ts_RSL_BCCH_INFO(RSL_SYSTEM_INFO_1, ''O));
1660 rsl.ies := { rsl.ies[0] };
1661 RSL_CCHAN.send(ts_RSL_UD(rsl));
1662
1663 f_exp_err_rep(RSL_ERR_MAND_IE_ERROR);
1664}
1665
1666/* Provoke an IE content error and match on ERROR REPORT */
1667testcase TC_rsl_ie_content_error() runs on test_CT {
1668 f_init(testcasename());
1669 var RSL_Message rsl := valueof(ts_RSL_BCCH_INFO(RSL_SYSTEM_INFO_1, ''O));
1670 rsl.ies[1].body.sysinfo_type := RSL_SYSTEM_INFO_5;
1671 RSL_CCHAN.send(ts_RSL_UD(rsl));
1672
1673 f_exp_err_rep(RSL_ERR_IE_CONTENT);
1674}
1675
Harald Welte93640c62018-02-25 16:59:33 +01001676/***********************************************************************
1677 * IPA CRCX/MDCX/DLCS media stream handling
1678 ***********************************************************************/
1679
Harald Weltea871a382018-02-25 02:03:14 +01001680/* Send IPA DLCX to inactive lchan */
1681function f_TC_ipa_dlcx_not_active(charstring id) runs on ConnHdlr {
Harald Welte1eba3742018-02-25 12:48:14 +01001682 f_rsl_transceive(ts_RSL_IPA_DLCX(g_chan_nr, 0), tr_RSL_IPA_DLCX_ACK(g_chan_nr, ?, ?),
1683 "IPA DLCX ACK");
Harald Weltea871a382018-02-25 02:03:14 +01001684}
1685testcase TC_ipa_dlcx_not_active() runs on test_CT {
1686 var ConnHdlrPars pars := valueof(t_Pars(t_RslChanNr_Bm(1), ts_RSL_ChanMode_SIGN));
1687 f_init(testcasename());
1688 var ConnHdlr vc_conn := f_start_handler(refers(f_TC_ipa_dlcx_not_active), pars);
1689 vc_conn.done;
1690}
Harald Welte68e495b2018-02-25 00:05:57 +01001691
Harald Weltea3f1df92018-02-25 12:49:55 +01001692/* Send IPA CRCX twice to inactive lchan */
1693function f_TC_ipa_crcx_twice_not_active(charstring id) runs on ConnHdlr {
1694 f_rsl_transceive(ts_RSL_IPA_CRCX(g_chan_nr), tr_RSL_IPA_CRCX_ACK(g_chan_nr, ?, ?, ?),
1695 "IPA CRCX ACK");
1696 f_rsl_transceive(ts_RSL_IPA_CRCX(g_chan_nr), tr_RSL_IPA_CRCX_NACK(g_chan_nr, RSL_ERR_RES_UNAVAIL),
1697 "IPA CRCX NACK");
1698}
1699testcase TC_ipa_crcx_twice_not_active() runs on test_CT {
1700 var ConnHdlrPars pars := valueof(t_Pars(t_RslChanNr_Bm(1), ts_RSL_ChanMode_SIGN));
1701 f_init(testcasename());
1702 var ConnHdlr vc_conn := f_start_handler(refers(f_TC_ipa_crcx_twice_not_active), pars);
1703 vc_conn.done;
1704}
1705
1706/* Regular sequence of CRCX/MDCX/DLCX */
1707function f_TC_ipa_crcx_mdcx_dlcx_not_active(charstring id) runs on ConnHdlr {
1708 f_rsl_transceive(ts_RSL_IPA_CRCX(g_chan_nr), tr_RSL_IPA_CRCX_ACK(g_chan_nr, ?, ?, ?),
1709 "IPA CRCX ACK");
1710 var uint32_t remote_ip := f_rnd_int(c_UINT32_MAX);
1711 var uint16_t remote_port := f_rnd_int(c_UINT16_MAX);
1712 var uint7_t rtp_pt2 := f_rnd_int(127);
1713 var uint16_t fake_conn_id := 23; /* we're too lazy to read it out from the CRCX ACK above */
1714 f_rsl_transceive(ts_RSL_IPA_MDCX(g_chan_nr, fake_conn_id, remote_ip, remote_port, rtp_pt2),
1715 tr_RSL_IPA_MDCX_ACK(g_chan_nr, ?, ?, ?, rtp_pt2),
1716 "IPA MDCX ACK");
1717 f_rsl_transceive(ts_RSL_IPA_DLCX(g_chan_nr, fake_conn_id), tr_RSL_IPA_DLCX_ACK(g_chan_nr, ?, ?),
1718 "IPA DLCX ACK");
1719}
1720testcase TC_ipa_crcx_mdcx_dlcx_not_active() runs on test_CT {
1721 var ConnHdlrPars pars := valueof(t_Pars(t_RslChanNr_Bm(1), ts_RSL_ChanMode_SIGN));
1722 f_init(testcasename());
1723 var ConnHdlr vc_conn := f_start_handler(refers(f_TC_ipa_crcx_mdcx_dlcx_not_active), pars);
1724 vc_conn.done;
1725}
1726
Harald Welte3ae11da2018-02-25 13:36:06 +01001727/* Sequence of CRCX, 2x MDCX, DLCX */
1728function f_TC_ipa_crcx_mdcx_mdcx_dlcx_not_active(charstring id) runs on ConnHdlr {
1729 f_rsl_transceive(ts_RSL_IPA_CRCX(g_chan_nr), tr_RSL_IPA_CRCX_ACK(g_chan_nr, ?, ?, ?),
1730 "IPA CRCX ACK");
1731 var uint32_t remote_ip := f_rnd_int(c_UINT32_MAX);
1732 var uint16_t remote_port := f_rnd_int(c_UINT16_MAX);
1733 var uint7_t rtp_pt2 := f_rnd_int(127);
1734 var uint16_t fake_conn_id := 23; /* we're too lazy to read it out from the CRCX ACK above */
1735 f_rsl_transceive(ts_RSL_IPA_MDCX(g_chan_nr, fake_conn_id, remote_ip, remote_port, rtp_pt2),
1736 tr_RSL_IPA_MDCX_ACK(g_chan_nr, ?, ?, ?, rtp_pt2),
1737 "IPA MDCX ACK");
1738 /* Second MDCX */
1739 remote_ip := f_rnd_int(c_UINT32_MAX);
1740 remote_port := f_rnd_int(c_UINT16_MAX);
1741 f_rsl_transceive(ts_RSL_IPA_MDCX(g_chan_nr, fake_conn_id, remote_ip, remote_port, rtp_pt2),
1742 tr_RSL_IPA_MDCX_ACK(g_chan_nr, ?, ?, ?, rtp_pt2),
1743 "IPA MDCX ACK");
1744 f_rsl_transceive(ts_RSL_IPA_DLCX(g_chan_nr, fake_conn_id), tr_RSL_IPA_DLCX_ACK(g_chan_nr, ?, ?),
1745 "IPA DLCX ACK");
1746}
1747testcase TC_ipa_crcx_mdcx_mdcx_dlcx_not_active() runs on test_CT {
1748 var ConnHdlrPars pars := valueof(t_Pars(t_RslChanNr_Bm(1), ts_RSL_ChanMode_SIGN));
1749 f_init(testcasename());
1750 var ConnHdlr vc_conn := f_start_handler(refers(f_TC_ipa_crcx_mdcx_mdcx_dlcx_not_active), pars);
1751 vc_conn.done;
1752}
1753
Harald Welte9912eb52018-02-25 13:30:15 +01001754/* IPA CRCX on SDCCH/4 and SDCCH/8 (doesn't make sense) */
1755function f_TC_ipa_crcx_sdcch_not_active(charstring id) runs on ConnHdlr {
1756 f_rsl_transceive(ts_RSL_IPA_CRCX(g_chan_nr), tr_RSL_IPA_CRCX_NACK(g_chan_nr, ?),
1757 "IPA CRCX NACK");
1758}
1759testcase TC_ipa_crcx_sdcch_not_active() runs on test_CT {
1760 var ConnHdlrPars pars;
1761 var ConnHdlr vc_conn;
1762 f_init(testcasename());
1763
1764 pars := valueof(t_Pars(t_RslChanNr_SDCCH4(0,1), ts_RSL_ChanMode_SIGN));
1765 vc_conn := f_start_handler(refers(f_TC_ipa_crcx_sdcch_not_active), pars);
1766 vc_conn.done;
1767
1768 pars := valueof(t_Pars(t_RslChanNr_SDCCH8(6,5), ts_RSL_ChanMode_SIGN));
1769 vc_conn := f_start_handler(refers(f_TC_ipa_crcx_sdcch_not_active), pars);
1770 vc_conn.done;
1771}
1772
Harald Weltea3f1df92018-02-25 12:49:55 +01001773
Harald Welte68e495b2018-02-25 00:05:57 +01001774/* TODO Areas:
1775
1776* channel activation
1777** with BS_Power / MS_Power, bypassing power control loop
1778** on primary vs. secondary TRX
1779** with encryption from initial activation on
1780** with timing advance from initial activation on
1781* mode modify
1782** encryption
1783** multirate
1784* check DEACTIVATE SACCH
1785* encryption command / intricate logic about tx-only/tx+rx/...
1786** unsupported algorithm
1787* handover detection
1788* MS Power Control
1789* BS Power Control
1790* Physical Context
1791* SACCH info modify
Harald Welte68e495b2018-02-25 00:05:57 +01001792* CCCH Load Indication for PCH and RACH
1793* Delete Indication on AGCH overflow
1794* SMS Broadcast Req / Cmd / CBCH LOad Ind
1795* RF resource ind
Harald Welte68e495b2018-02-25 00:05:57 +01001796* error handling
1797* discriminator error
1798** type error
1799** sequence error
1800** IE duplicated?
Harald Welte68e495b2018-02-25 00:05:57 +01001801
1802*/
Harald Welte70767382018-02-21 12:16:40 +01001803
1804control {
1805 execute( TC_chan_act_stress() );
1806 execute( TC_chan_act_react() );
1807 execute( TC_chan_deact_not_active() );
1808 execute( TC_chan_act_wrong_nr() );
Harald Welte8c24c2b2018-02-26 08:31:31 +01001809 execute( TC_rach_content() );
1810 execute( TC_rach_count() );
Harald Welte54a2a2d2018-02-26 09:14:05 +01001811 execute( TC_rach_max_ta() );
Harald Welte70767382018-02-21 12:16:40 +01001812 execute( TC_meas_res_sign_tchf() );
1813 execute( TC_meas_res_sign_tchh() );
1814 execute( TC_meas_res_sign_sdcch4() );
1815 execute( TC_meas_res_sign_sdcch8() );
1816 execute( TC_conn_fail_crit() );
Harald Welte68e495b2018-02-25 00:05:57 +01001817 execute( TC_paging_imsi_80percent() );
1818 execute( TC_paging_tmsi_80percent() );
1819 execute( TC_paging_imsi_200percent() );
1820 execute( TC_paging_tmsi_200percent() );
Harald Welte01d982c2018-02-25 01:31:40 +01001821 execute( TC_rsl_protocol_error() );
1822 execute( TC_rsl_mand_ie_error() );
1823 execute( TC_rsl_ie_content_error() );
Harald Welte48494ca2018-02-25 16:59:50 +01001824 execute( TC_si_sched_default() );
1825 execute( TC_si_sched_2bis() );
1826 execute( TC_si_sched_2ter() );
1827 execute( TC_si_sched_2ter_2bis() );
1828 execute( TC_si_sched_2quater() );
1829 execute( TC_si_sched_13() );
1830 execute( TC_si_sched_13_2bis_2ter_2quater() );
Harald Weltea871a382018-02-25 02:03:14 +01001831 execute( TC_ipa_dlcx_not_active() );
Harald Weltea3f1df92018-02-25 12:49:55 +01001832 execute( TC_ipa_crcx_twice_not_active() );
1833 execute( TC_ipa_crcx_mdcx_dlcx_not_active() );
Harald Welte3ae11da2018-02-25 13:36:06 +01001834 execute( TC_ipa_crcx_mdcx_mdcx_dlcx_not_active() );
Harald Welte9912eb52018-02-25 13:30:15 +01001835 execute( TC_ipa_crcx_sdcch_not_active() );
Harald Welte70767382018-02-21 12:16:40 +01001836}
1837
1838
1839}