104 lines
3.2 KiB
Plaintext
104 lines
3.2 KiB
Plaintext
module BTS_Tests_perf {
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/* Performance Tests for OsmoBTS
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* (C) 2020 by sysmocom s.f.m.c. GmbH <info@sysmocom.de>
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* All rights reserved.
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*
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* Released under the terms of GNU General Public License, Version 2 or
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* (at your option) any later version.
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*
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* SPDX-License-Identifier: GPL-2.0-or-later
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*
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* This test suite tests performance of OsmoBTS under different heavy load scenarios.
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*/
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import from Misc_Helpers all;
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import from General_Types all;
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import from Osmocom_Types all;
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import from GSM_Types all;
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import from L1CTL_PortType all;
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import from L1CTL_Types all;
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import from LAPDm_Types all;
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import from IPA_Emulation all;
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import from GSM_RR_Types all;
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import from RSL_Types all;
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import from RSL_Emulation all;
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import from PCUIF_Types all;
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import from PCUIF_CodecPort all;
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import from Osmocom_VTY_Functions all;
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import from BTS_Tests all;
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/***********************************************************************
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* Performance tests. Expect osmo-bts to be configured with all TRX as TCH/H.
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***********************************************************************/
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modulepar {
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float mp_wait_time := 10.0;
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}
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/* This test requires BTS with 1 TRX to be configured with following timeslots: TS[0]=CCCH+SDCCH4, TS[1..7]: TCH/H
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* One can simply take the osmo-bsc.cfg in the same dir and change TS1..7, that's all needed.
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* It will activate TS1..7 TCH/Hchannels (2 TCH/H per TS, that's 14 channels)
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* and wait for requested time. This test is useful to bring the BTS (+BTS-TRX)
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* into a high channel load state to check that the system it runs on can keep
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* on with full load.
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*/
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function f_TC_highchanload_tchh(charstring id) runs on ConnHdlr {
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var ChannelNrs chan_nr := { /* TS 1..7: TCH/H */
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valueof(ts_RslChanNr_Lm(1,0)), valueof(ts_RslChanNr_Lm(1,1)),
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valueof(ts_RslChanNr_Lm(2,0)), valueof(ts_RslChanNr_Lm(2,1)),
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valueof(ts_RslChanNr_Lm(3,0)), valueof(ts_RslChanNr_Lm(3,1)),
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valueof(ts_RslChanNr_Lm(4,0)), valueof(ts_RslChanNr_Lm(4,1)),
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valueof(ts_RslChanNr_Lm(5,0)), valueof(ts_RslChanNr_Lm(5,1)),
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valueof(ts_RslChanNr_Lm(6,0)), valueof(ts_RslChanNr_Lm(6,1)),
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valueof(ts_RslChanNr_Lm(7,0)), valueof(ts_RslChanNr_Lm(7,1))
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};
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log("Started");
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for (var integer i := 0; i < sizeof(chan_nr); i := i+1) {
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log("Registering ", chan_nr[i]);
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f_rslem_register(0, chan_nr[i]);
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}
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log("Registered");
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for (var integer i := 0; i < sizeof(chan_nr); i := i+1) {
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f_rsl_transceive(ts_RSL_CHAN_ACT(chan_nr[i],
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ts_RSL_ChanMode(RSL_CHRT_TCH_H, RSL_CMOD_SP_GSM3 /* AMR*/)),
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tr_RSL_CHAN_ACT_ACK(chan_nr[i]),
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log2str("RSL CHAN ACT [", i, "]"));
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}
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log("Activated, now waiting ", mp_wait_time, " seconds");
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f_sleep(mp_wait_time);
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log("sleep done, deactivating");
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for (var integer i := 0; i < sizeof(chan_nr); i := i+1) {
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f_rsl_transceive(ts_RSL_RF_CHAN_REL(chan_nr[i]),
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tr_RSL_RF_CHAN_REL_ACK(chan_nr[i]),
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log2str("RF CHAN REL [", i, "]"),
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true);
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}
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setverdict(pass);
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}
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testcase TC_highchanload_tchh() runs on test_CT {
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var ConnHdlr vc_conn; /* 1..7 * 2 */
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var ConnHdlrPars pars := valueof(t_Pars(t_RslChanNr_Bm(1), ts_RSL_ChanMode_SIGN,
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t_guard := 60.0 + mp_wait_time));
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f_init();
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vc_conn := f_start_handler(refers(f_TC_highchanload_tchh), pars);
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vc_conn.done;
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}
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control {
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execute( TC_highchanload_tchh() );
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}
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}
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