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📄 radio_bs.c

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💻 C
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/***************************************************************************               radio_bs.c  -  SRadio simple bs                            -------------------    begin                :  02/10/30    authors              :  Linus Gasser    emails               :  linus.gasser@epfl.ch ***************************************************************************//***************************************************************************                                 Changes                                 ------- date - name - description 02/10/30 - ineiti - begin 02/11/04 - ineiti - no msgqs... 03/02/27 - ineiti - simplified to only two slots: BCH and RACH 03/03/19 - ineiti - added SCH and gain-control 03/11/11 - selvan - added MIMO capability 04/03/27 - ineiti - adjusted chest_rcv configuration to make things work 04/04/08 - ineiti - changed from stfa_complex to stfa_ics  **************************************************************************//*************************************************************************** *                                                                         * *   This program is free software; you can redistribute it and/or modify  * *   it under the terms of the GNU General Public License as published by  * *   the Free Software Foundation; either version 2 of the License, or     * *   (at your option) any later version.                                   * *                                                                         * ***************************************************************************//** * Make a simple BS * * Function: * - emit sync * - listen to RACh */#include "system.h"#include "sdb.h"#include "stfa.h"#include "antenna.h"#include "std.h"#include "debugging.h"#include "../mimo_radio.h"#include "chain.h"#define ANTENNA 0#define DBG_LVL 4#define TARGET_MOBILE_HERE 1000*1000swr_sdb_id stfa[2], sch, join;struct chain_t *ch_bch, *ch_rach, *ch_up_rcv_1, *ch_up_rcv_2;struct bch_struct bch_data;double gain;int looping, delay;/** * Once a frame this function is called. Do here whatever seems accurate... */int do_send_down( int msg, void *data, swr_sdb_id ret_id ) {#ifdef USER_SPACE// Have some fun - move the BS. This is done 'automatically' in real-mode//  swr_sdb_set_config_int( stfa[0], "offset_chips_rcv", delay++ );#endif  return 0;}void *start_it( void *arg ) {  swr_sdb_id mod, despread[2], chest_rcv[2];  int ch;  looping = 1;  gain = 0.;  usleep( 100000 );  PR( "Init STFA[0]\n" );  stfa[0] = swr_sdb_instantiate_name( "stfa_ics" );  stfa[1] = swr_sdb_instantiate_name( "stfa_ics" );  PR( "Initialized STFA[0]\n" );  swr_sdb_set_config_int( stfa[0], "slots_per_frame", SLOTS );  swr_sdb_set_config_int( stfa[0], "blocks_per_slot", SLOT_LEN );  swr_sdb_set_config_int( stfa[0], "slot_send_offset", SLOT_OFFSET );  swr_sdb_set_config_int( stfa[0], "stfa_id", stfa[1] );    PR( "Setting up BCh on slot 0\n" );  ch_bch = swr_chain_create(             NEW_SPC_VAR( "sch_send", sch ),             NEW_SPC_VAR( "mapper", mod ),             NEW_SPC( "spread" ),             NEW_SPC( "chest_send" ),             NEW_SPC( "synch_send" ),             NEW_SPC( "rrc_complex_send" ),             OLD_SPC_IN( stfa[0], 0 ),             CHAIN_END );  swr_stfa_notice_sdb( stfa[0], 0, sch );  swr_sdb_set_config_int( sch, "id0", 0x1234 );  swr_sdb_set_config_int( sch, "uplinks0", 2 );  ch_up_rcv_1 = swr_chain_create(              OLD_SPC_OUT( stfa[0], 1 ),	      NEW_SPC( "rrc_complex_ics_rcv" ),              NEW_SPC_VAR( "chest_rcv_mimo", chest_rcv[0] ),              NEW_SPC_VAR( "despread", despread[0] ),	      NEW_SPC_VAR( "join", join),              NEW_SPC( "slicer" ),              NEW_SPC( "sink" ),              CHAIN_END );  ch_up_rcv_2 = swr_chain_create(				 OLD_SPC_OUT( stfa[1], 1 ),				 NEW_SPC( "rrc_complex_ics_rcv" ),				 NEW_SPC_VAR_OUT( "chest_rcv_mimo", 						  chest_rcv[1], 1 ),				 NEW_SPC_VAR( "despread", despread[1] ),				 OLD_SPC_IN( join, 1 ),				 CHAIN_END );  // Chose two orthogonally sequences  swr_sdb_set_config_int( despread[0], "sequence00", 0x0f );  swr_sdb_set_config_int( despread[1], "sequence00", 0xff );  for ( ch=0; ch<2; ch++ ){    swr_sdb_set_config_int( chest_rcv[ch], "align", 1 );    swr_sdb_set_config_int( chest_rcv[ch], "calc_taps", 4 );    swr_sdb_set_config_int( chest_rcv[ch], "num_of_antennas", 2 );  }  swr_stfa_notice_func( stfa[0], 2, do_send_down );  swr_stfa_go( stfa[0] );  while ( looping ) {    usleep( 1000000 );  }  swr_stfa_stop( stfa[0] );  return 0;}struct thread start;/** * This function is called upon "insmod" and is used to register the * different parts of the module to the SPM. */int um_module_init(void) {  MOD_INC_USE_COUNT;  looping = 1;  delay = 0;  ch_bch = NULL;  ch_rach = NULL;  if ( swr_thread_init( &start, start_it, NULL ) ) {    goto rrc_no_thread;  }  MOD_DEC_USE_COUNT;  return 0;rrc_no_thread:  PR_DBG( 0, "Couldn't init thread\n" );  MOD_DEC_USE_COUNT;  return -1;}void um_module_exit( void ) {  looping = 0;  swr_thread_free( &start, NULL );  PR_DBG( 0, "deleting everything\n" );  swr_chain_destroy( ch_bch );  swr_chain_destroy( ch_up_rcv_2 );  swr_chain_destroy( ch_up_rcv_1 );  swr_sdb_destroy( stfa[0] );  swr_sdb_destroy( stfa[1] );}module_init( um_module_init );module_exit( um_module_exit );

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