kopia lustrzana https://github.com/Hamlib/Hamlib
325 wiersze
7.4 KiB
C
325 wiersze
7.4 KiB
C
/*
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* hamlib - (C) Frank Singleton 2000 (vk3fcs@ix.netcom.com)
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*
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* aor.c - Copyright (C) 2000,2001 Stephane Fillod
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* This shared library provides an API for communicating
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* via serial interface to an AOR scanner.
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*
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*
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* $Id: aor.c,v 1.10 2001-06-15 07:08:37 f4cfe Exp $
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*
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*
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of 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 General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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*
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*/
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#include <stdlib.h>
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#include <stdio.h> /* Standard input/output definitions */
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#include <string.h> /* String function definitions */
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#include <unistd.h> /* UNIX standard function definitions */
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#include <fcntl.h> /* File control definitions */
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#include <errno.h> /* Error number definitions */
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#include <termios.h> /* POSIX terminal control definitions */
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#include <sys/ioctl.h>
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#include <math.h>
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#if defined(__CYGWIN__) && defined(HAMLIB_DLL)
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# undef HAMLIB_DLL
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# include <hamlib/rig.h>
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# include <serial.h>
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# include <misc.h>
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# define HAMLIB_DLL
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# include <hamlib/rig_dll.h>
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#else
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# include <hamlib/rig.h>
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# include <serial.h>
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# include <misc.h>
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#endif
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#include "aor.h"
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/*
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* acknowledge is CR
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* Is \r portable enough?
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*/
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#define CR '\r'
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/*
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* modes in use by the "MD" command
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*/
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#define MD_WFM '0'
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#define MD_NFM '1'
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#define MD_AM '2'
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#define MD_USB '3'
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#define MD_LSB '4'
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#define MD_CW '5'
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#define MD_SFM '6'
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#define MD_WAM '7'
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#define MD_NAM '8'
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/*
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* aor_transaction
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* We assume that rig!=NULL, rig->state!= NULL, data!=NULL, data_len!=NULL
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* Otherwise, you'll get a nice seg fault. You've been warned!
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* return value: RIG_OK if everything's fine, negative value otherwise
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* TODO: error case handling
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*/
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int aor_transaction(RIG *rig, const char *cmd, int cmd_len, char *data, int *data_len)
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{
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int i, retval;
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struct rig_state *rs;
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rs = &rig->state;
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retval = write_block(&rs->rigport, cmd, cmd_len);
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if (retval != RIG_OK)
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return retval;
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retval = write_block(&rs->rigport, "\n", 1);
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if (retval != RIG_OK)
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return retval;
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/*
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* buffered read are quite helpful here!
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* However, an automate with a state model would be more efficient..
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*/
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i = 0;
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do {
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retval = fread_block(&rs->rigport, data+i, 1);
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if (retval == 0)
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continue; /* huh!? */
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if (retval != RIG_OK)
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return retval;
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} while (data[i++] != CR);
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*data_len = i;
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return RIG_OK;
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}
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/*
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* aor_close
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* Assumes rig!=NULL
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*/
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int aor_close(RIG *rig)
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{
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unsigned char ackbuf[16];
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int ack_len;
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/* terminate remote operation via the RS-232 */
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return aor_transaction (rig, "EX", 2, ackbuf, &ack_len);
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}
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/*
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* aor_set_freq
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* Assumes rig!=NULL
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*/
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int aor_set_freq(RIG *rig, vfo_t vfo, freq_t freq)
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{
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unsigned char freqbuf[16], ackbuf[16];
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int freq_len, ack_len, retval;
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/*
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* actually, frequency must be like nnnnnnnnm0,
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* where m must be 0 or 5 (for 50Hz).
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*/
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freq_len = sprintf(freqbuf,"RF%010Ld", freq);
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retval = aor_transaction (rig, freqbuf, freq_len, ackbuf, &ack_len);
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if (retval != RIG_OK)
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return retval;
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return RIG_OK;
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}
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/*
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* aor_get_freq
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* Assumes rig!=NULL, freq!=NULL
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*/
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int aor_get_freq(RIG *rig, vfo_t vfo, freq_t *freq)
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{
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unsigned char freqbuf[16];
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char *rfp;
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int freq_len, retval;
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retval = aor_transaction (rig, "RX", 2, freqbuf, &freq_len);
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if (retval != RIG_OK)
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return retval;
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rfp = strstr(freqbuf, "RF");
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sscanf(rfp+2,"%Ld", freq);
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return RIG_OK;
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}
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/*
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* aor_set_mode
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* Assumes rig!=NULL
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*/
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int aor_set_mode(RIG *rig, vfo_t vfo, rmode_t mode, pbwidth_t width)
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{
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unsigned char mdbuf[16],ackbuf[16];
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int mdbuf_len, ack_len, aormode, retval;
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switch (mode) {
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case RIG_MODE_AM:
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switch(width) {
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case RIG_PASSBAND_NORMAL:
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case kHz(9): aormode = MD_AM; break;
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case kHz(12): aormode = MD_WAM; break;
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case kHz(3): aormode = MD_NAM; break;
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default:
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rig_debug(RIG_DEBUG_ERR,
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"aor_set_mode: unsupported passband %d %d\n",
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mode, width);
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return -RIG_EINVAL;
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}
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break;
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case RIG_MODE_CW: aormode = MD_CW; break;
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case RIG_MODE_USB: aormode = MD_USB; break;
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case RIG_MODE_LSB: aormode = MD_LSB; break;
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case RIG_MODE_WFM: aormode = MD_WFM; break;
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case RIG_MODE_FM:
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switch(width) {
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case RIG_PASSBAND_NORMAL:
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case kHz(12): aormode = MD_NFM; break;
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case kHz(9): aormode = MD_SFM; break;
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default:
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rig_debug(RIG_DEBUG_ERR,
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"aor_set_mode: unsupported passband %d %d\n",
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mode, width);
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return -RIG_EINVAL;
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}
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break;
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default:
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rig_debug(RIG_DEBUG_ERR,"aor_set_mode: unsupported mode %d\n",
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mode);
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return -RIG_EINVAL;
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}
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mdbuf_len = sprintf(mdbuf, "MD%c", aormode);
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retval = aor_transaction (rig, mdbuf, mdbuf_len, ackbuf, &ack_len);
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return retval;
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}
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/*
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* aor_get_mode
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* Assumes rig!=NULL, mode!=NULL
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*/
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int aor_get_mode(RIG *rig, vfo_t vfo, rmode_t *mode, pbwidth_t *width)
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{
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unsigned char ackbuf[16];
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int ack_len, retval;
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retval = aor_transaction (rig, "MD", 2, ackbuf, &ack_len);
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if (retval != RIG_OK)
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return retval;
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if (ack_len != 2 || ackbuf[1] != CR) {
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rig_debug(RIG_DEBUG_ERR,"aor_get_mode: ack NG, len=%d\n",
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ack_len);
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return -RIG_ERJCTED;
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}
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*width = RIG_PASSBAND_NORMAL;
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switch (ackbuf[0]) {
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case MD_AM: *mode = RIG_MODE_AM; break;
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case MD_NAM:
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*mode = RIG_MODE_AM;
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*width = rig_passband_narrow(rig, *mode);
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break;
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case MD_WAM:
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*mode = RIG_MODE_AM;
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*width = rig_passband_wide(rig, *mode);
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break;
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case MD_CW: *mode = RIG_MODE_CW; break;
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case MD_USB: *mode = RIG_MODE_USB; break;
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case MD_LSB: *mode = RIG_MODE_LSB; break;
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case MD_WFM: *mode = RIG_MODE_WFM; break;
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case MD_NFM: *mode = RIG_MODE_FM; break;
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case MD_SFM:
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*mode = RIG_MODE_FM;
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*width = rig_passband_narrow(rig, *mode);
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break;
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default:
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rig_debug(RIG_DEBUG_ERR,"aor_get_mode: unsupported mode %d\n",
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ackbuf[0]);
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return -RIG_EINVAL;
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}
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if (*width != RIG_PASSBAND_NORMAL)
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*width = rig_passband_normal(rig, *mode);
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return RIG_OK;
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}
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/*
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* aor_set_ts
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* Assumes rig!=NULL
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*/
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int aor_set_ts(RIG *rig, vfo_t vfo, shortfreq_t ts)
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{
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unsigned char tsbuf[16],ackbuf[16];
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int ts_len, ack_len;
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/*
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* actually, tuning step must be like nnnnm0,
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* where m must be 0 or 5 (for 50Hz).
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*/
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ts_len = sprintf(tsbuf,"ST%06ld", ts);
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return aor_transaction (rig, tsbuf, ts_len, ackbuf, &ack_len);
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}
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/*
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* aor_set_powerstat
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* Assumes rig!=NULL, rig->state.priv!=NULL
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*/
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int aor_set_powerstat(RIG *rig, powerstat_t status)
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{
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unsigned char ackbuf[16];
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int ack_len;
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if (status != RIG_POWER_OFF)
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return -RIG_EINVAL;
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/* turn off power */
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return aor_transaction (rig, "QP", 2, ackbuf, &ack_len);
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}
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/*
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* init_aor is called by rig_backend_load
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*/
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int init_aor(void *be_handle)
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{
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rig_debug(RIG_DEBUG_VERBOSE, "aor: _init called\n");
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rig_register(&ar8200_caps);
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return RIG_OK;
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}
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