module FR_Tests { import from General_Types all; import from Osmocom_Types all; import from Osmocom_Gb_Types all; import from NS_Emulation all; import from BSSGP_Emulation all; import from LLC_Templates all; modulepar { integer mp_num_bvc := 10; integer mp_num_ue_in_bvc := 10; NSConfigurations mp_nsconfig := { { nsei := 123, role_sgsn := false, handle_sns := false, nsvc := { { provider := { fr := { netdev := "hdlc1", dlci := 123 } }, nsvci := 123 } } } }; } type record GbInstance { NS_CT vc_NS, BSSGP_CT vc_BSSGP, BssgpConfig cfg }; type record of GbInstance GbInstances; type record of NSConfiguration NSConfigurations; type record of BssgpCellId BssgpCellIds; type component test_CT { var GbInstances g_gb; port BSSGP_CT_PROC_PT BSSGP_PROC[16]; }; private function f_init_gb(inout GbInstance gb, charstring id, integer offset) runs on test_CT { var charstring id_idx := id & int2str(offset); gb.vc_NS := NS_CT.create(id_idx & "-NSemu"); gb.vc_BSSGP := BSSGP_CT.create(id_idx & "-BSSGPemu"); connect(gb.vc_BSSGP:BSCP, gb.vc_NS:NS_SP); gb.vc_NS.start(NSStart(mp_nsconfig[offset], id_idx)); connect(self:BSSGP_PROC[offset], gb.vc_BSSGP:PROC); gb.vc_BSSGP.start(BssgpStart(gb.cfg, testcasename())); } function f_gen_bvc(integer base, integer idx) return BssgpBvcConfig { var BssgpBvcConfig bvc := { bvci := base + 100 + idx, cell_id := { ra_id := { lai := { mcc_mnc := '262F42'H, lac := base + 300 + idx }, rac := 1 }, cell_id := base + 600 + idx }, depth := BSSGP_DECODE_DEPTH_LLC, create_cb := refers(BSSGP_Emulation.DefaultCreateCallback) }; return bvc; } /*********************************************************************** * UE simulation component ***********************************************************************/ type component UE_CT extends BSSGP_Client_CT { var UE_Pars g_pars; timer g_Tguard; var LLC_Entities llc; } type record UE_Pars { hexstring imsi, OCT4 tlli }; type function void_fn(charstring id) runs on UE_CT; function f_handler_init(void_fn fn, charstring id, UE_Pars pars) runs on UE_CT { g_pars := pars; llc := f_llc_create(false); f_bssgp_client_register(g_pars.imsi, g_pars.tlli); fn.apply(id); f_bssgp_client_unregister(g_pars.imsi); } function f_ul_ud(charstring id) runs on UE_CT { log("Waiting for BVC-UNBLOCK"); alt { [] BSSGP[0].receive(BssgpStatusIndication:{*,?,BVC_S_UNBLOCKED}) { } [] BSSGP[0].receive { repeat; } } log ("Entering main loop"); while (true) { var integer ran_index := 0; //BSSGP[ran_index].send(ts_BSSGP_UL_UD(g_pars.tlli, g_pars.bssgp_cell_id[ran_index], llc_enc)); BSSGP[ran_index].send(ts_LLC_UI(f_rnd_octstring(512), '0000'B, '1'B, 0)) f_sleep(0.5); } } function f_start_ue(void_fn fn, charstring id, GbInstance gb, integer imsi_suffix, BSSGP_BVC_CT bvc_comp, float t_guard := 30.0) runs on test_CT { var UE_CT ue_comp; var UE_Pars ue_pars := { imsi := f_gen_imsi(imsi_suffix), tlli := f_gprs_tlli_random() }; ue_comp := UE_CT.create(id); connect(ue_comp:BSSGP[0], bvc_comp:BSSGP_SP); connect(ue_comp:BSSGP_SIG[0], bvc_comp:BSSGP_SP_SIG); connect(ue_comp:BSSGP_PROC[0], bvc_comp:BSSGP_PROC); ue_comp.start(f_handler_init(fn, id, ue_pars)); } testcase TC_foo() runs on test_CT { for (var integer i := 0; i < lengthof(mp_nsconfig); i := i+1) { g_gb[i].cfg := { nsei := mp_nsconfig[i].nsei, sgsn_role := false, bvc := { } }; /* create 'mp_num_bvc' number of BVCs */ for (var integer j := 0; j < mp_num_bvc; j := j+1) { g_gb[i].cfg.bvc := g_gb[i].cfg.bvc & { f_gen_bvc(i * 1000, j) }; } log("Initializing Gb interface ", i, ": NSEI=", g_gb[i].cfg.nsei); f_init_gb(g_gb[i], "gb", i); } for (var integer i := 0; i < lengthof(mp_nsconfig); i := i+1) { for (var integer j := 0; j < mp_num_bvc; j := j+1) { var BSSGP_BVC_CT bvc_comp := f_bssgp_get_bvci_ct(g_gb[i].cfg.bvc[j].bvci, BSSGP_PROC[i]); for (var integer k := 0; k < mp_num_ue_in_bvc; k := k+1) { var charstring id := "gb" & int2str(i) & "-bvc" & int2str(g_gb[i].cfg.bvc[j].bvci) & "-UEsim" & int2str(k); f_start_ue(refers(f_ul_ud), id, g_gb[i], i*10000+j*100+k, bvc_comp); /* a bit of staggering to ensure the timers above don't run all at the same time */ f_sleep(0.05); } } } while (true) { f_sleep(100.0); } } control { execute( TC_foo() ); } }