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b0f6955740
With Icom rigs that use MAIN?SUB VFOs there is a trade off when setting the mode or frequency of the "other" VFO. Untill now Hamlib uses the XCHG VFO command to address the "other" VFO. This has some advantages, particularly it preserves the selected VFO and it preserves memory mode of either VFO. The disadvantage is that any split command causes the Rx to glitch when the VFO/MEMs are exchanged. I have added a config parameter for Icom rigs called "no_xchg" which forces the direct addressing of VFOs to set split mode/frequency. It is a boolean option with a default of "0" (false) which equates to prior behaviour. Setting it to "1" (true) will make the backend use change VFO commands to set the "other" VFO. This means that TX on "SUB" in split is assumed, that both are in VFO mode (not MEM), and set/get split functions will leave the MAIN VFO selected.
203 lines
5.1 KiB
C
203 lines
5.1 KiB
C
/*
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* Hamlib CI-V backend - IC-R9000 descriptions
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* Copyright (c) 2000-2011 by Stephane Fillod
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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 <stdlib.h>
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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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#include "idx_builtin.h"
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#include "icom.h"
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#include "icom_defs.h"
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#include "frame.h"
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#define ICR9000_MODES (RIG_MODE_AM|RIG_MODE_SSB|RIG_MODE_FM|RIG_MODE_RTTY|RIG_MODE_CW|RIG_MODE_WFM)
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#define ICR9000_OPS (RIG_OP_FROM_VFO|RIG_OP_MCL)
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#define ICR9000_FUNCS (RIG_FUNC_VSC)
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#define ICR9000_LEVELS (RIG_LEVEL_ATT|RIG_LEVEL_AF|RIG_LEVEL_RF|RIG_LEVEL_SQL|RIG_LEVEL_RAWSTR)
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#define ICR9000_PARMS (RIG_PARM_ANN)
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#define ICR9000_SCAN_OPS (RIG_SCAN_MEM) /* TBC */
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#define ICR9000_ANTS (RIG_ANT_1|RIG_ANT_2) /* selectable by CI-V ? */
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#define ICR9000_MEM_CAP { \
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.freq = 1, \
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.mode = 1, \
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.width = 1, \
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.levels = RIG_LEVEL_ATT, \
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}
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/* TODO: S-Meter measurements */
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#define ICR9000_STR_CAL UNKNOWN_IC_STR_CAL
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static const struct icom_priv_caps icr9000_priv_caps = {
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0x2a, /* default address */
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0, /* 731 mode */
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0, /* no XCHG */
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r9000_ts_sc_list
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};
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static int icr9000_open(RIG *rig);
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/*
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* ICR9000A rig capabilities.
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*/
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const struct rig_caps icr9000_caps = {
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.rig_model = RIG_MODEL_ICR9000,
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.model_name = "IC-R9000",
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.mfg_name = "Icom",
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.version = BACKEND_VER ".1",
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.copyright = "LGPL",
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.status = RIG_STATUS_ALPHA,
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.rig_type = RIG_TYPE_RECEIVER,
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.ptt_type = RIG_PTT_NONE,
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.dcd_type = RIG_DCD_RIG,
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.port_type = RIG_PORT_SERIAL,
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.serial_rate_min = 300,
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.serial_rate_max = 1200,
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.serial_data_bits = 8,
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.serial_stop_bits = 1,
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.serial_parity = RIG_PARITY_NONE,
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.serial_handshake = RIG_HANDSHAKE_NONE,
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.write_delay = 0,
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.post_write_delay = 0,
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.timeout = 1000,
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.retry = 3,
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.has_get_func = ICR9000_FUNCS,
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.has_set_func = ICR9000_FUNCS,
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.has_get_level = ICR9000_LEVELS,
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.has_set_level = RIG_LEVEL_SET(ICR9000_LEVELS),
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.has_get_parm = ICR9000_PARMS,
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.has_set_parm = RIG_PARM_SET(ICR9000_PARMS),
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.level_gran = {
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[LVL_RAWSTR] = { .min = { .i = 0 }, .max = { .i = 255 } },
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},
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.parm_gran = {},
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.ctcss_list = NULL,
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.dcs_list = NULL,
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.preamp = { RIG_DBLST_END },
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.attenuator = { 10, 20, 30, RIG_DBLST_END },
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.max_rit = Hz(0),
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.max_xit = Hz(0),
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.max_ifshift = Hz(0),
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.targetable_vfo = 0,
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.vfo_ops = ICR9000_OPS,
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.scan_ops = ICR9000_SCAN_OPS,
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.transceive = RIG_TRN_RIG,
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.bank_qty = 0,
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.chan_desc_sz = 0,
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.chan_list = {
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{ 0, 999, RIG_MTYPE_MEM, ICR9000_MEM_CAP }, /* TBC */
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{ 1000, 1009, RIG_MTYPE_EDGE, IC_MIN_MEM_CAP }, /* 2 by 2 */
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{ 1010, 1019, RIG_MTYPE_EDGE, IC_MIN_MEM_CAP }, /* 2 by 2 */
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RIG_CHAN_END, },
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.rx_range_list1 = {
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{kHz(100),MHz(1999.8),ICR9000_MODES,-1,-1, RIG_VFO_A, ICR9000_ANTS},
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RIG_FRNG_END, },
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.tx_range_list1 = { RIG_FRNG_END, },
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.rx_range_list2 = {
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{kHz(100),MHz(1999.8),ICR9000_MODES,-1,-1, RIG_VFO_A, ICR9000_ANTS},
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RIG_FRNG_END, },
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.tx_range_list2 = { RIG_FRNG_END, }, /* no TX ranges, this is a receiver */
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.tuning_steps = {
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{ICR9000_MODES,10}, /* resolution */
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{ICR9000_MODES,100},
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{ICR9000_MODES,kHz(1)},
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{ICR9000_MODES,kHz(5)},
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{ICR9000_MODES,kHz(9)},
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{ICR9000_MODES,kHz(10)},
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{ICR9000_MODES,12500},
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{ICR9000_MODES,kHz(20)},
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{ICR9000_MODES,kHz(25)},
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{ICR9000_MODES,kHz(100)},
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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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{RIG_MODE_SSB|RIG_MODE_CW|RIG_MODE_RTTY, kHz(2.4)},
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{RIG_MODE_AM, kHz(6)},
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{RIG_MODE_FM, kHz(15)},
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{RIG_MODE_WFM, kHz(150)},
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RIG_FLT_END,
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},
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.str_cal = ICR9000_STR_CAL,
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.cfgparams = icom_cfg_params,
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.set_conf = icom_set_conf,
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.get_conf = icom_get_conf,
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.priv = (void*)&icr9000_priv_caps,
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.rig_init = icom_init,
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.rig_cleanup = icom_cleanup,
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.rig_open = icr9000_open,
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.rig_close = NULL,
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.set_freq = icom_set_freq,
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.get_freq = icom_get_freq,
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.set_mode = icom_set_mode,
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.get_mode = icom_get_mode,
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.set_vfo = icom_set_vfo,
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.set_ant = icom_set_ant,
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.get_ant = icom_get_ant,
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.set_ts = icom_set_ts,
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.get_ts = icom_get_ts,
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.set_func = icom_set_func,
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.get_func = icom_get_func,
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.set_level = icom_set_level,
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.get_level = icom_get_level,
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#if 0
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.set_parm = icom_set_parm,
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.get_parm = icom_get_parm,
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#endif
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.decode_event = icom_decode_event,
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.set_mem = icom_set_mem,
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.vfo_op = icom_vfo_op,
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.scan = icom_scan,
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.get_dcd = icom_get_dcd,
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};
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/*
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* Function definitions below
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*/
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int icr9000_open(RIG *rig)
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{
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return icom_scan(rig, RIG_VFO_CURR, RIG_SCAN_STOP, 0);
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}
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