kopia lustrzana https://github.com/Hamlib/Hamlib
708 wiersze
13 KiB
C++
708 wiersze
13 KiB
C++
/**
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* \file src/rigclass.cc
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* \brief Ham Radio Control Libraries C++ interface
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* \author Stephane Fillod
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* \date 2001
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*
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* Hamlib C++ interface is a frontend implementing wrapper functions.
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*/
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/*
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* Hamlib C++ bindings - main file
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* Copyright (c) 2001 by Stephane Fillod
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*
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* $Id: rigclass.cc,v 1.8 2002-02-27 23:25:42 fillods Exp $
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*
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* This library is free software; you can redistribute it and/or modify
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* it under the terms of the GNU Library General Public License as
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* published by the Free Software Foundation; either version 2 of
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* the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU Library General Public License for more details.
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*
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* You should have received a copy of the GNU Library General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*
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*/
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#ifdef HAVE_CONFIG_H
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#include "config.h"
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#endif
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#include <hamlib/rig.h>
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#include <hamlib/rigclass.h>
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#define CHECK_RIG(cmd) { int _retval = cmd; if (_retval != RIG_OK) \
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THROW(new RigException (_retval)); }
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static int hamlibpp_freq_event(RIG *rig, vfo_t vfo, freq_t freq, rig_ptr_t arg);
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static int hamlibpp_freq_event(RIG *rig, vfo_t vfo, freq_t freq, rig_ptr_t arg)
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{
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if (!rig || !rig->state.obj)
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return -RIG_EINVAL;
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/* assert rig == ((Rig*)rig->state.obj).theRig */
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return ((Rig*)rig->state.obj)->FreqEvent(vfo, freq, arg);
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}
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Rig::Rig(rig_model_t rig_model) {
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theRig = rig_init(rig_model);
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if (!theRig)
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THROW(new RigException ("Rig initialization error"));
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caps = theRig->caps;
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theRig->callbacks.freq_event = &hamlibpp_freq_event;
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theRig->state.obj = (rig_ptr_t)this;
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}
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Rig::~Rig() {
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theRig->state.obj = NULL;
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CHECK_RIG( rig_cleanup(theRig) );
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caps = NULL;
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}
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void Rig::open(void) {
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CHECK_RIG( rig_open(theRig) );
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}
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void Rig::close(void) {
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CHECK_RIG( rig_close(theRig) );
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}
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void Rig::setConf(token_t token, const char *val)
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{
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CHECK_RIG( rig_set_conf(theRig, token, val) );
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}
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void Rig::setConf(const char *name, const char *val)
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{
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CHECK_RIG( rig_set_conf(theRig, tokenLookup(name), val) );
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}
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void Rig::getConf(token_t token, char *val)
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{
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CHECK_RIG( rig_get_conf(theRig, token, val) );
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}
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void Rig::getConf(const char *name, char *val)
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{
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CHECK_RIG( rig_get_conf(theRig, tokenLookup(name), val) );
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}
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token_t Rig::tokenLookup(const char *name)
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{
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return rig_token_lookup(theRig, name);
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}
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void Rig::setFreq(freq_t freq, vfo_t vfo) {
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CHECK_RIG( rig_set_freq(theRig, vfo, freq) );
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}
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freq_t Rig::getFreq(vfo_t vfo)
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{
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freq_t freq;
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CHECK_RIG( rig_get_freq(theRig, vfo, &freq) );
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return freq;
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}
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void Rig::setMode(rmode_t mode, pbwidth_t width, vfo_t vfo) {
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CHECK_RIG(rig_set_mode(theRig, vfo, mode, width));
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}
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rmode_t Rig::getMode(pbwidth_t& width, vfo_t vfo) {
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rmode_t mode;
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CHECK_RIG( rig_get_mode(theRig, vfo, &mode, &width) );
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return mode;
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}
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void Rig::setVFO(vfo_t vfo)
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{
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CHECK_RIG( rig_set_vfo(theRig, vfo) );
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}
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vfo_t Rig::getVFO()
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{
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vfo_t vfo;
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CHECK_RIG( rig_get_vfo(theRig, &vfo) );
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return vfo;
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}
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void Rig::setPTT(ptt_t ptt, vfo_t vfo)
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{
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CHECK_RIG( rig_set_ptt(theRig, vfo, ptt) );
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}
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ptt_t Rig::getPTT(vfo_t vfo)
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{
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ptt_t ptt;
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CHECK_RIG( rig_get_ptt(theRig, vfo, &ptt) );
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return ptt;
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}
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dcd_t Rig::getDCD(vfo_t vfo)
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{
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dcd_t dcd;
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CHECK_RIG( rig_get_dcd(theRig, vfo, &dcd) );
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return dcd;
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}
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void Rig::setLevel(setting_t level, int vali, vfo_t vfo)
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{
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value_t val;
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val.i = vali;
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CHECK_RIG( rig_set_level(theRig, vfo, level, val) );
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}
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void Rig::setLevel(setting_t level, float valf, vfo_t vfo)
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{
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value_t val;
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val.f = valf;
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CHECK_RIG( rig_set_level(theRig, vfo, level, val) );
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}
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void Rig::getLevel(setting_t level, int& vali, vfo_t vfo)
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{
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value_t val;
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if (RIG_LEVEL_IS_FLOAT(level))
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THROW(new RigException (-RIG_EINVAL));
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CHECK_RIG( rig_get_level(theRig, vfo, level, &val) );
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vali = val.i;
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}
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void Rig::getLevel(setting_t level, float& valf, vfo_t vfo)
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{
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value_t val;
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if (!RIG_LEVEL_IS_FLOAT(level))
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THROW(new RigException (-RIG_EINVAL));
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CHECK_RIG( rig_get_level(theRig, vfo, level, &val) );
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valf = val.f;
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}
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int Rig::getLevelI(setting_t level, vfo_t vfo)
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{
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value_t val;
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if (RIG_LEVEL_IS_FLOAT(level))
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THROW(new RigException (-RIG_EINVAL));
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CHECK_RIG( rig_get_level(theRig, vfo, level, &val) );
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return val.i;
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}
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float Rig::getLevelF(setting_t level, vfo_t vfo)
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{
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value_t val;
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if (!RIG_LEVEL_IS_FLOAT(level))
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THROW(new RigException (-RIG_EINVAL));
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CHECK_RIG( rig_get_level(theRig, vfo, level, &val) );
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return val.f;
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}
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void Rig::setParm(setting_t parm, int vali)
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{
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value_t val;
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val.i = vali;
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CHECK_RIG( rig_set_parm(theRig, parm, val) );
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}
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void Rig::setParm(setting_t parm, float valf)
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{
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value_t val;
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val.f = valf;
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CHECK_RIG( rig_set_parm(theRig, parm, val) );
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}
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void Rig::getParm(setting_t parm, int& vali)
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{
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value_t val;
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if (RIG_LEVEL_IS_FLOAT(parm))
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THROW(new RigException (-RIG_EINVAL));
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CHECK_RIG( rig_get_parm(theRig, parm, &val) );
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vali = val.i;
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}
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void Rig::getParm(setting_t parm, float& valf)
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{
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value_t val;
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if (!RIG_LEVEL_IS_FLOAT(parm))
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THROW(new RigException (-RIG_EINVAL));
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CHECK_RIG( rig_get_parm(theRig, parm, &val) );
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valf = val.f;
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}
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int Rig::getParmI(setting_t parm)
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{
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value_t val;
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if (RIG_LEVEL_IS_FLOAT(parm))
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THROW(new RigException (-RIG_EINVAL));
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CHECK_RIG( rig_get_parm(theRig, parm, &val) );
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return val.i;
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}
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float Rig::getParmF(setting_t parm)
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{
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value_t val;
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if (!RIG_LEVEL_IS_FLOAT(parm))
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THROW(new RigException (-RIG_EINVAL));
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CHECK_RIG( rig_get_parm(theRig, parm, &val) );
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return val.f;
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}
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void Rig::setSplitFreq(freq_t tx_freq, vfo_t vfo) {
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CHECK_RIG( rig_set_split_freq(theRig, vfo, tx_freq) );
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}
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freq_t Rig::getSplitFreq(vfo_t vfo)
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{
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freq_t freq;
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CHECK_RIG( rig_get_split_freq(theRig, vfo, &freq) );
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return freq;
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}
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void Rig::setSplitMode(rmode_t mode, pbwidth_t width, vfo_t vfo) {
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CHECK_RIG(rig_set_split_mode(theRig, vfo, mode, width));
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}
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rmode_t Rig::getSplitMode(pbwidth_t& width, vfo_t vfo) {
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rmode_t mode;
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CHECK_RIG( rig_get_split_mode(theRig, vfo, &mode, &width) );
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return mode;
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}
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void Rig::setSplit(split_t split, vfo_t vfo) {
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CHECK_RIG(rig_set_split(theRig, vfo, split));
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}
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split_t Rig::getSplit(vfo_t vfo) {
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split_t split;
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CHECK_RIG( rig_get_split(theRig, vfo, &split) );
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return split;
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}
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bool Rig::hasGetLevel (setting_t level)
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{
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return rig_has_get_level(theRig, level) == level;
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}
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bool Rig::hasSetLevel (setting_t level)
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{
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return rig_has_set_level(theRig, level) == level;
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}
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bool Rig::hasGetParm (setting_t parm)
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{
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return rig_has_get_parm(theRig, parm) == parm;
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}
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bool Rig::hasSetParm (setting_t parm)
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{
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return rig_has_set_parm(theRig, parm) == parm;
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}
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const char *Rig::getInfo (void)
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{
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return rig_get_info(theRig);
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}
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pbwidth_t Rig::passbandNormal (rmode_t mode)
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{
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return rig_passband_normal(theRig, mode);
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}
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pbwidth_t Rig::passbandNarrow (rmode_t mode)
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{
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return rig_passband_narrow(theRig, mode);
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}
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pbwidth_t Rig::passbandWide (rmode_t mode)
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{
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return rig_passband_wide(theRig, mode);
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}
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void Rig::setRptrShift (rptr_shift_t rptr_shift, vfo_t vfo = RIG_VFO_CURR)
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{
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CHECK_RIG( rig_set_rptr_shift(theRig, vfo, rptr_shift) );
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}
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rptr_shift_t Rig::getRptrShift (vfo_t vfo = RIG_VFO_CURR)
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{
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rptr_shift_t rptr_shift;
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CHECK_RIG( rig_get_rptr_shift(theRig, vfo, &rptr_shift) );
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return rptr_shift;
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}
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void Rig::setRptrOffs (shortfreq_t rptr_offs, vfo_t vfo = RIG_VFO_CURR)
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{
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CHECK_RIG( rig_set_rptr_offs(theRig, vfo, rptr_offs) );
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}
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shortfreq_t Rig::getRptrOffs (vfo_t vfo = RIG_VFO_CURR)
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{
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shortfreq_t rptr_offs;
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CHECK_RIG( rig_get_rptr_offs(theRig, vfo, &rptr_offs) );
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return rptr_offs;
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}
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void Rig::setTs (shortfreq_t ts, vfo_t vfo = RIG_VFO_CURR)
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{
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CHECK_RIG( rig_set_ts(theRig, vfo, ts) );
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}
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shortfreq_t Rig::getTs (vfo_t vfo = RIG_VFO_CURR)
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{
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shortfreq_t ts;
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CHECK_RIG( rig_get_ts(theRig, vfo, &ts) );
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return ts;
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}
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void Rig::setCTCSS (tone_t tone, vfo_t vfo = RIG_VFO_CURR)
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{
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CHECK_RIG( rig_set_ctcss_tone(theRig, vfo, tone) );
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}
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tone_t Rig::getCTCSS (vfo_t vfo = RIG_VFO_CURR)
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{
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tone_t tone;
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CHECK_RIG( rig_get_ctcss_tone(theRig, vfo, &tone) );
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return tone;
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}
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void Rig::setDCS (tone_t code, vfo_t vfo = RIG_VFO_CURR)
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{
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CHECK_RIG( rig_set_dcs_code(theRig, vfo, code) );
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}
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tone_t Rig::getDCS (vfo_t vfo = RIG_VFO_CURR)
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{
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tone_t code;
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CHECK_RIG( rig_get_dcs_code(theRig, vfo, &code) );
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return code;
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}
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void Rig::setCTCSSsql (tone_t tone, vfo_t vfo = RIG_VFO_CURR)
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{
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CHECK_RIG( rig_set_ctcss_sql(theRig, vfo, tone) );
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}
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tone_t Rig::getCTCSSsql (vfo_t vfo = RIG_VFO_CURR)
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{
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tone_t tone;
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CHECK_RIG( rig_get_ctcss_sql(theRig, vfo, &tone) );
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return tone;
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}
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void Rig::setDCSsql (tone_t code, vfo_t vfo = RIG_VFO_CURR)
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{
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CHECK_RIG( rig_set_dcs_sql(theRig, vfo, code) );
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}
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tone_t Rig::getDCSsql (vfo_t vfo = RIG_VFO_CURR)
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{
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tone_t code;
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CHECK_RIG( rig_get_dcs_sql(theRig, vfo, &code) );
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return code;
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}
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void Rig::setFunc (setting_t func, bool status, vfo_t vfo = RIG_VFO_CURR)
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{
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CHECK_RIG( rig_set_func(theRig, vfo, func, status? 1:0) );
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}
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bool Rig::getFunc (setting_t func, vfo_t vfo = RIG_VFO_CURR)
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{
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int status;
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CHECK_RIG( rig_get_func(theRig, vfo, func, &status) );
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return status ? true : false;
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}
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void Rig::VFOop (vfo_op_t op, vfo_t vfo)
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{
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CHECK_RIG( rig_vfo_op(theRig, vfo, op) );
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}
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bool Rig::hasVFOop (vfo_op_t op)
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{
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return rig_has_vfo_op(theRig, op)==op;
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}
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void Rig::scan (scan_t scan, int ch, vfo_t vfo)
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{
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CHECK_RIG( rig_scan(theRig, vfo, scan, ch) );
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}
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bool Rig::hasScan (scan_t scan)
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{
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return rig_has_scan(theRig, scan)==scan;
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}
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void Rig::setRit(shortfreq_t rit, vfo_t vfo)
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{
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CHECK_RIG(rig_set_rit(theRig, vfo, rit));
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}
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shortfreq_t Rig::getRit(vfo_t vfo)
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{
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shortfreq_t rit;
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CHECK_RIG( rig_get_rit(theRig, vfo, &rit) );
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return rit;
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}
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void Rig::setXit(shortfreq_t xit, vfo_t vfo)
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{
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CHECK_RIG(rig_set_xit(theRig, vfo, xit));
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}
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shortfreq_t Rig::getXit(vfo_t vfo)
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{
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shortfreq_t xit;
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CHECK_RIG( rig_get_xit(theRig, vfo, &xit) );
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return xit;
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}
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void Rig::setAnt(ant_t ant, vfo_t vfo)
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{
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CHECK_RIG(rig_set_ant(theRig, vfo, ant));
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}
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ant_t Rig::getAnt(vfo_t vfo)
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{
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ant_t ant;
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CHECK_RIG( rig_get_ant(theRig, vfo, &ant) );
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return ant;
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}
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void Rig::sendDtmf(const char *digits, vfo_t vfo)
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{
|
|
CHECK_RIG(rig_send_dtmf(theRig, vfo, digits));
|
|
}
|
|
|
|
int Rig::recvDtmf(char *digits, vfo_t vfo)
|
|
{
|
|
int len;
|
|
|
|
CHECK_RIG( rig_recv_dtmf(theRig, vfo, digits, &len) );
|
|
|
|
return len;
|
|
}
|
|
|
|
void Rig::sendMorse(const char *msg, vfo_t vfo)
|
|
{
|
|
CHECK_RIG(rig_send_morse(theRig, vfo, msg));
|
|
}
|
|
|
|
|
|
shortfreq_t Rig::getResolution (rmode_t mode)
|
|
{
|
|
shortfreq_t res;
|
|
|
|
res = rig_get_resolution(theRig, mode);
|
|
if (res < 0)
|
|
THROW(new RigException (res));
|
|
|
|
return res;
|
|
}
|
|
|
|
void Rig::reset (reset_t reset)
|
|
{
|
|
CHECK_RIG( rig_reset(theRig, reset) );
|
|
}
|
|
|
|
bool Rig::hasGetFunc (setting_t func)
|
|
{
|
|
return rig_has_get_func(theRig, func)==func;
|
|
}
|
|
bool Rig::hasSetFunc (setting_t func)
|
|
{
|
|
return rig_has_set_func(theRig, func)==func;
|
|
}
|
|
|
|
unsigned int Rig::power2mW (float power, freq_t freq, rmode_t mode)
|
|
{
|
|
unsigned int mwpower;
|
|
|
|
CHECK_RIG( rig_power2mW(theRig, &mwpower, power, freq, mode) );
|
|
|
|
return mwpower;
|
|
}
|
|
|
|
float Rig::mW2power (unsigned int mwpower, freq_t freq, rmode_t mode)
|
|
{
|
|
float power;
|
|
|
|
CHECK_RIG( rig_mW2power(theRig, &power, mwpower, freq, mode) );
|
|
|
|
return power;
|
|
}
|
|
|
|
void Rig::setTrn (int trn)
|
|
{
|
|
CHECK_RIG( rig_set_trn(theRig, trn) );
|
|
}
|
|
|
|
int Rig::getTrn ()
|
|
{
|
|
int trn;
|
|
|
|
CHECK_RIG( rig_get_trn(theRig, &trn) );
|
|
|
|
return trn;
|
|
}
|
|
|
|
void Rig::setBank (int bank, vfo_t vfo = RIG_VFO_CURR)
|
|
{
|
|
CHECK_RIG( rig_set_ts(theRig, vfo, bank) );
|
|
}
|
|
|
|
void Rig::setMem (int ch, vfo_t vfo = RIG_VFO_CURR)
|
|
{
|
|
CHECK_RIG( rig_set_mem(theRig, vfo, ch) );
|
|
}
|
|
|
|
int Rig::getMem (vfo_t vfo = RIG_VFO_CURR)
|
|
{
|
|
int mem;
|
|
|
|
CHECK_RIG( rig_get_mem(theRig, vfo, &mem) );
|
|
|
|
return mem;
|
|
}
|
|
|
|
void Rig::saveChannel (channel_t *chan)
|
|
{
|
|
CHECK_RIG( rig_save_channel(theRig, chan) );
|
|
}
|
|
|
|
void Rig::restoreChannel (const channel_t *chan)
|
|
{
|
|
CHECK_RIG( rig_restore_channel(theRig, chan) );
|
|
}
|
|
|
|
void Rig::setChannel (const channel_t *chan)
|
|
{
|
|
CHECK_RIG( rig_set_channel(theRig, chan) );
|
|
}
|
|
|
|
void Rig::getChannel (channel_t *chan)
|
|
{
|
|
CHECK_RIG( rig_get_channel(theRig, chan) );
|
|
}
|
|
|
|
|
|
void Rig::setPowerStat (powerstat_t status)
|
|
{
|
|
CHECK_RIG( rig_set_powerstat(theRig, status) );
|
|
}
|
|
|
|
powerstat_t Rig::getPowerStat (void)
|
|
{
|
|
powerstat_t status;
|
|
|
|
CHECK_RIG( rig_get_powerstat(theRig, &status) );
|
|
|
|
return status;
|
|
}
|
|
|
|
rmode_t Rig::RngRxModes (freq_t freq)
|
|
{
|
|
rmode_t modes = RIG_MODE_NONE;
|
|
freq_range_t *rng;
|
|
int i;
|
|
|
|
for (i=0; i<FRQRANGESIZ; i++) {
|
|
rng = &theRig->state.rx_range_list[i];
|
|
if (RIG_IS_FRNG_END(*rng)) {
|
|
return modes;
|
|
}
|
|
if (freq >= rng->start && freq <= rng->end)
|
|
modes |= rng->modes;
|
|
}
|
|
|
|
return modes;
|
|
}
|
|
|
|
rmode_t Rig::RngTxModes (freq_t freq)
|
|
{
|
|
rmode_t modes = RIG_MODE_NONE;
|
|
freq_range_t *rng;
|
|
int i;
|
|
|
|
for (i=0; i<FRQRANGESIZ; i++) {
|
|
rng = &theRig->state.tx_range_list[i];
|
|
if (RIG_IS_FRNG_END(*rng)) {
|
|
return modes;
|
|
}
|
|
if (freq >= rng->start && freq <= rng->end)
|
|
modes |= rng->modes;
|
|
}
|
|
|
|
return modes;
|
|
}
|
|
|