kopia lustrzana https://github.com/Hamlib/Hamlib
380 wiersze
14 KiB
C
380 wiersze
14 KiB
C
/*
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* hamlib - (C) Frank Singleton 2000 (javabear at users.sourceforge.net)
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*
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* ft991.c - (C) Nate Bargmann 2007 (n0nb at arrl.net)
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* (C) Stephane Fillod 2008
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* (C) Terry Embry 2008-2009
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* (C) Michael Black W9MDB 2015 -- taken from ft950.c
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*
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* The FT991 is very much like the FT950 except freq max increases for 440MHz
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* So most of this code is a duplicate of the FT950
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*
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* This shared library provides an API for communicating
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* via serial interface to an FT-991 using the "CAT" interface
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*
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library 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 GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 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 <string.h>
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#include "hamlib/rig.h"
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#include "bandplan.h"
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#include "serial.h"
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#include "misc.h"
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#include "yaesu.h"
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#include "newcat.h"
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#include "ft991.h"
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#include "idx_builtin.h"
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/*
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* ft991 rigs capabilities.
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* Also this struct is READONLY!
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*
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*/
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const struct rig_caps ft991_caps =
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{
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.rig_model = RIG_MODEL_FT991,
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.model_name = "FT-991",
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.mfg_name = "Yaesu",
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.version = NEWCAT_VER ".6",
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.copyright = "LGPL",
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.status = RIG_STATUS_STABLE,
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.rig_type = RIG_TYPE_TRANSCEIVER,
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.ptt_type = RIG_PTT_RIG,
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.dcd_type = RIG_DCD_NONE,
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.port_type = RIG_PORT_SERIAL,
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.serial_rate_min = 4800, /* Default rate per manual */
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.serial_rate_max = 38400,
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.serial_data_bits = 8,
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.serial_stop_bits = 1, /* Assumed since manual makes no mention */
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.serial_parity = RIG_PARITY_NONE,
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.serial_handshake = RIG_HANDSHAKE_HARDWARE,
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.write_delay = FT991_WRITE_DELAY,
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.post_write_delay = FT991_POST_WRITE_DELAY,
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.timeout = 2000,
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.retry = 3,
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.has_get_func = FT991_FUNCS,
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.has_set_func = FT991_FUNCS,
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.has_get_level = FT991_LEVELS,
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.has_set_level = RIG_LEVEL_SET(FT991_LEVELS),
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.has_get_parm = RIG_PARM_NONE,
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.has_set_parm = RIG_PARM_NONE,
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.level_gran = {
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[LVL_RAWSTR] = { .min = { .i = 0 }, .max = { .i = 255 } },
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[LVL_CWPITCH] = { .min = { .i = 300 }, .max = { .i = 1050 }, .step = { .i = 50 } },
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},
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.ctcss_list = common_ctcss_list,
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.dcs_list = NULL,
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.preamp = { 10, 20, RIG_DBLST_END, }, /* TBC */
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.attenuator = { 6, 12, 18, RIG_DBLST_END, },
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.max_rit = Hz(9999),
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.max_xit = Hz(9999),
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.max_ifshift = Hz(1000),
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.vfo_ops = FT991_VFO_OPS,
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.targetable_vfo = RIG_TARGETABLE_FREQ,
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.transceive = RIG_TRN_OFF, /* May enable later as the 950 has an Auto Info command */
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.bank_qty = 0,
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.chan_desc_sz = 0,
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.str_cal = FT991_STR_CAL,
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.chan_list = {
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{ 1, 99, RIG_MTYPE_MEM, NEWCAT_MEM_CAP },
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{ 100, 117, RIG_MTYPE_EDGE, NEWCAT_MEM_CAP }, /* two by two */
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RIG_CHAN_END,
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},
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.rx_range_list1 = {
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{kHz(30), MHz(470), FT991_ALL_RX_MODES, -1, -1, FT991_VFO_ALL, FT991_ANTS}, /* General coverage + ham */
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RIG_FRNG_END,
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}, /* FIXME: Are these the correct Region 1 values? */
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.tx_range_list1 = {
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FRQ_RNG_HF(1, FT991_OTHER_TX_MODES, W(5), W(100), FT991_VFO_ALL, FT991_ANTS),
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FRQ_RNG_HF(1, FT991_AM_TX_MODES, W(2), W(25), FT991_VFO_ALL, FT991_ANTS), /* AM class */
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FRQ_RNG_6m(1, FT991_OTHER_TX_MODES, W(5), W(100), FT991_VFO_ALL, FT991_ANTS),
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FRQ_RNG_6m(1, FT991_AM_TX_MODES, W(2), W(25), FT991_VFO_ALL, FT991_ANTS), /* AM class */
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RIG_FRNG_END,
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},
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.rx_range_list2 = {
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{kHz(30), MHz(470), FT991_ALL_RX_MODES, -1, -1, FT991_VFO_ALL, FT991_ANTS},
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RIG_FRNG_END,
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},
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.tx_range_list2 = {
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FRQ_RNG_HF(2, FT991_OTHER_TX_MODES, W(5), W(100), FT991_VFO_ALL, FT991_ANTS),
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FRQ_RNG_HF(2, FT991_AM_TX_MODES, W(2), W(25), FT991_VFO_ALL, FT991_ANTS), /* AM class */
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FRQ_RNG_6m(2, FT991_OTHER_TX_MODES, W(5), W(100), FT991_VFO_ALL, FT991_ANTS),
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FRQ_RNG_6m(2, FT991_AM_TX_MODES, W(2), W(25), FT991_VFO_ALL, FT991_ANTS), /* AM class */
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RIG_FRNG_END,
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},
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.tuning_steps = {
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{FT991_SSB_CW_RX_MODES, Hz(10)}, /* Normal */
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{FT991_SSB_CW_RX_MODES, Hz(100)}, /* Fast */
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{FT991_AM_RX_MODES, Hz(100)}, /* Normal */
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{FT991_AM_RX_MODES, kHz(1)}, /* Fast */
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{FT991_FM_RX_MODES, Hz(100)}, /* Normal */
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{FT991_FM_RX_MODES, kHz(1)}, /* Fast */
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RIG_TS_END,
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},
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/* mode/filter list, .remember = order matters! */
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.filters = {
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{FT991_CW_RTTY_PKT_RX_MODES, Hz(1700)}, /* Normal CW, RTTY, PKT */
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{FT991_CW_RTTY_PKT_RX_MODES, Hz(500)}, /* Narrow CW, RTTY, PKT */
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{FT991_CW_RTTY_PKT_RX_MODES, Hz(2400)}, /* Wide CW, RTTY, PKT */
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{FT991_CW_RTTY_PKT_RX_MODES, Hz(2000)}, /* CW, RTTY, PKT */
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{FT991_CW_RTTY_PKT_RX_MODES, Hz(1400)}, /* CW, RTTY, PKT */
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{FT991_CW_RTTY_PKT_RX_MODES, Hz(1200)}, /* CW, RTTY, PKT */
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{FT991_CW_RTTY_PKT_RX_MODES, Hz(800)}, /* CW, RTTY, PKT */
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{FT991_CW_RTTY_PKT_RX_MODES, Hz(400)}, /* CW, RTTY, PKT */
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{FT991_CW_RTTY_PKT_RX_MODES, Hz(300)}, /* CW, RTTY, PKT */
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{FT991_CW_RTTY_PKT_RX_MODES, Hz(200)}, /* CW, RTTY, PKT */
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{FT991_CW_RTTY_PKT_RX_MODES, Hz(100)}, /* CW, RTTY, PKT */
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{RIG_MODE_SSB, Hz(2400)}, /* Normal SSB */
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{RIG_MODE_SSB, Hz(1800)}, /* Narrow SSB */
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{RIG_MODE_SSB, Hz(3000)}, /* Wide SSB */
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{RIG_MODE_SSB, Hz(2900)}, /* SSB */
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{RIG_MODE_SSB, Hz(2800)}, /* SSB */
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{RIG_MODE_SSB, Hz(2700)}, /* SSB */
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{RIG_MODE_SSB, Hz(2600)}, /* SSB */
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{RIG_MODE_SSB, Hz(2500)}, /* SSB */
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{RIG_MODE_SSB, Hz(2250)}, /* SSB */
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{RIG_MODE_SSB, Hz(2100)}, /* SSB */
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{RIG_MODE_SSB, Hz(1950)}, /* SSB */
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{RIG_MODE_SSB, Hz(1650)}, /* SSB */
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{RIG_MODE_SSB, Hz(1500)}, /* SSB */
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{RIG_MODE_SSB, Hz(1350)}, /* SSB */
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{RIG_MODE_SSB, Hz(1100)}, /* SSB */
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{RIG_MODE_SSB, Hz(850)}, /* SSB */
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{RIG_MODE_SSB, Hz(600)}, /* SSB */
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{RIG_MODE_SSB, Hz(400)}, /* SSB */
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{RIG_MODE_SSB, Hz(200)}, /* SSB */
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{RIG_MODE_AM, Hz(9000)}, /* Normal AM */
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{RIG_MODE_AM, Hz(6000)}, /* Narrow AM */
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{FT991_FM_RX_MODES, Hz(16000)}, /* Normal FM */
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{FT991_FM_RX_MODES, Hz(9000)}, /* Narrow FM */
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RIG_FLT_END,
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},
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.priv = NULL, /* private data FIXME: */
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.rig_init = ft991_init,
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.rig_cleanup = newcat_cleanup,
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.rig_open = newcat_open, /* port opened */
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.rig_close = newcat_close, /* port closed */
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.set_freq = newcat_set_freq,
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.get_freq = newcat_get_freq,
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.set_mode = newcat_set_mode,
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.get_mode = newcat_get_mode,
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.set_ptt = newcat_set_ptt,
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.get_ptt = newcat_get_ptt,
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.set_split_vfo = newcat_set_split_vfo,
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.get_split_vfo = newcat_get_split_vfo,
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.get_split_mode = ft991_get_split_mode,
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.set_split_mode = ft991_set_split_mode,
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.set_rit = newcat_set_rit,
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.get_rit = newcat_get_rit,
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.set_xit = newcat_set_xit,
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.get_xit = newcat_get_xit,
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.set_ant = newcat_set_ant,
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.get_ant = newcat_get_ant,
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.get_func = newcat_get_func,
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.set_func = newcat_set_func,
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.get_level = newcat_get_level,
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.set_level = newcat_set_level,
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.get_mem = newcat_get_mem,
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.set_mem = newcat_set_mem,
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.vfo_op = newcat_vfo_op,
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.get_info = newcat_get_info,
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.power2mW = newcat_power2mW,
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.mW2power = newcat_mW2power,
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.set_rptr_shift = newcat_set_rptr_shift,
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.get_rptr_shift = newcat_get_rptr_shift,
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.set_ctcss_tone = newcat_set_ctcss_tone,
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.get_ctcss_tone = newcat_get_ctcss_tone,
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.set_ctcss_sql = newcat_set_ctcss_sql,
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.get_ctcss_sql = newcat_get_ctcss_sql,
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.set_powerstat = newcat_set_powerstat,
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.get_powerstat = newcat_get_powerstat,
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.set_ts = newcat_set_ts,
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.get_ts = newcat_get_ts,
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.set_trn = newcat_set_trn,
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.get_trn = newcat_get_trn,
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.set_channel = newcat_set_channel,
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.get_channel = newcat_get_channel,
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};
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/*
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* rig_get_split_mode*
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*
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* Get the '991 split TX mode
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*
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* Parameter | Type | Accepted/expected values
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* ------------------------------------------------------------------
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* *rig | input | pointer to private data
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* vfo | input | currVFO, VFOA, VFOB, MEM
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* *tx_mode | output | supported modes
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* *tx_width | output | supported widths
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* ------------------------------------------------------------------
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* Returns RIG_OK on success or an error code on failure
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*
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* Comments: Checks to see if the 991 is in split mode, if so it
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* checks which VFO is set for TX and then gets the
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* mode and passband of that VFO and stores it into *tx_mode
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* and tx_width respectively. If not in split mode returns
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* RIG_MODE_NONE and 0 Hz.
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*
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*/
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int ft991_get_split_mode(RIG *rig, vfo_t vfo, rmode_t *tx_mode,
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pbwidth_t *tx_width)
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{
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struct newcat_priv_data *priv;
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int err;
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rig_debug(RIG_DEBUG_VERBOSE, "%s called\n", __func__);
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if (!rig || !tx_mode || !tx_width)
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{
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return -RIG_EINVAL;
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}
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priv = (struct newcat_priv_data *)rig->state.priv;
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snprintf(priv->cmd_str, sizeof(priv->cmd_str), "OI;");
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if (RIG_OK != (err = newcat_get_cmd(rig)))
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{
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return err;
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}
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*tx_mode = priv->ret_data[22];
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*tx_width = RIG_PASSBAND_NORMAL;
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return RIG_OK;
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}
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/*
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* rig_set_split_mode
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*
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* Set the '991 split TX mode
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*
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* Parameter | Type | Accepted/expected values
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* ------------------------------------------------------------------
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* *rig | input | pointer to private data
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* vfo | input | currVFO, VFOA, VFOB, MEM
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* tx_mode | input | supported modes
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* tx_width | input | supported widths
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* ------------------------------------------------------------------
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* Returns RIG_OK on success or an error code on failure
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*
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* Comments: Pass band is not set here nor does it make sense as the
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* FT991 cannot receive on VFO B. The FT991 cannot set
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* VFO B mode directly so we'll just set A and swap A
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* into B but we must preserve the VFO A mode and VFO B
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* frequency.
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*
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*/
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int ft991_set_split_mode(RIG *rig, vfo_t vfo, rmode_t tx_mode,
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pbwidth_t tx_width)
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{
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struct newcat_priv_data *priv;
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struct rig_state *state;
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int err;
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char restore_commands[NEWCAT_DATA_LEN];
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rig_debug(RIG_DEBUG_VERBOSE, "%s called\n", __func__);
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if (!rig)
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{
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return -RIG_EINVAL;
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}
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state = &rig->state;
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rig_debug(RIG_DEBUG_TRACE, "%s: passed vfo = %s\n", __func__, rig_strvfo(vfo));
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rig_debug(RIG_DEBUG_TRACE, "%s: passed mode = %s\n", __func__,
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rig_strrmode(tx_mode));
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rig_debug(RIG_DEBUG_TRACE, "%s: passed width = %d Hz\n", __func__,
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(int)tx_width);
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priv = (struct newcat_priv_data *)state->priv;
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/* append VFO A mode restore command first as we want to minimize
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any Rx glitches */
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snprintf(priv->cmd_str, sizeof(priv->cmd_str), "MD0;");
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rig_debug(RIG_DEBUG_TRACE, "cmd_str = %s\n", priv->cmd_str);
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if (RIG_OK != (err = newcat_get_cmd(rig)))
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{
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return err;
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}
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snprintf(restore_commands, sizeof(restore_commands), "AB;%.*s",
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(int)sizeof(restore_commands) - 4, priv->ret_data);
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/* append VFO B frequency restore command */
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snprintf(priv->cmd_str, sizeof(priv->cmd_str), "FB;");
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rig_debug(RIG_DEBUG_TRACE, "cmd_str = %s\n", priv->cmd_str);
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if (RIG_OK != (err = newcat_get_cmd(rig)))
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{
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return err;
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}
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strncpy(restore_commands, priv->ret_data, NEWCAT_DATA_LEN);
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/* Change mode on VFOA */
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if (RIG_OK != (err = newcat_set_mode(rig, RIG_VFO_A, tx_mode,
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RIG_PASSBAND_NOCHANGE)))
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{
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return err;
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}
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/* Send the copy VFO A to VFO B and restore commands */
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snprintf(priv->cmd_str, sizeof(priv->cmd_str), "%s", restore_commands);
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return newcat_set_cmd(rig);
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}
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int ft991_init(RIG *rig)
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{
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rig_debug(RIG_DEBUG_VERBOSE, "%s called, version %s\n", __func__,
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rig->caps->version);
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int ret = newcat_init(rig);
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if (ret != RIG_OK) { return ret; }
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rig->state.current_vfo = RIG_VFO_A;
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return RIG_OK;
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}
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