mirror of
https://github.com/OneOfEleven/uv-k5-firmware-custom.git
synced 2025-04-27 22:01:26 +03:00
614 lines
17 KiB
C
614 lines
17 KiB
C
/* Copyright 2023 Dual Tachyon
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* https://github.com/DualTachyon
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#ifndef SETTINGS_H
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#define SETTINGS_H
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#include <stdbool.h>
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#include <stdint.h>
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#include "misc.h"
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#include "dcs.h"
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#include "frequencies.h"
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enum mod_mode_e {
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MOD_MODE_FM = 0,
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MOD_MODE_AM,
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MOD_MODE_DSB,
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MOD_MODE_LEN
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};
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typedef enum mod_mode_e mod_mode_t;
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enum pwr_on_display_mode_e {
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PWR_ON_DISPLAY_MODE_FULL_SCREEN = 0,
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PWR_ON_DISPLAY_MODE_MESSAGE,
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PWR_ON_DISPLAY_MODE_VOLTAGE,
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PWR_ON_DISPLAY_MODE_NONE
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};
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typedef enum pwr_on_display_mode_e pwr_on_display_mode_t;
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enum {
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FREQ_LOCK_NORMAL = 0,
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FREQ_LOCK_FCC,
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FREQ_LOCK_CE,
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FREQ_LOCK_GB,
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FREQ_LOCK_430,
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FREQ_LOCK_438,
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FREQ_LOCK_446,
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#ifdef ENABLE_TX_UNLOCK_MENU
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FREQ_LOCK_TX_UNLOCK,
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#endif
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FREQ_LOCK_LAST
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};
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enum {
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SCAN_RESUME_TIME = 0,
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SCAN_RESUME_CARRIER,
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SCAN_RESUME_STOP
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};
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enum {
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CROSS_BAND_OFF = 0,
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CROSS_BAND_CHAN_A,
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CROSS_BAND_CHAN_B
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};
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enum {
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DUAL_WATCH_OFF = 0,
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DUAL_WATCH_CHAN_A,
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DUAL_WATCH_CHAN_B
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};
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#define MAX_TX_OFFSET 100000000
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enum {
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TX_OFFSET_FREQ_DIR_OFF = 0,
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TX_OFFSET_FREQ_DIR_ADD,
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TX_OFFSET_FREQ_DIR_SUB,
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TX_OFFSET_FREQ_DIR_LAST
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};
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enum {
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OUTPUT_POWER_LOW = 0,
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OUTPUT_POWER_MID,
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OUTPUT_POWER_HIGH
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};
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enum {
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ACTION_OPT_NONE = 0,
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ACTION_OPT_FLASHLIGHT,
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ACTION_OPT_POWER,
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ACTION_OPT_MONITOR,
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ACTION_OPT_SCAN,
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ACTION_OPT_VOX,
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ACTION_OPT_ALARM,
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ACTION_OPT_FM,
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ACTION_OPT_1750,
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ACTION_OPT_LEN
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};
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#ifdef ENABLE_VOICE
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enum voice_prompt_e
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{
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VOICE_PROMPT_OFF = 0,
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VOICE_PROMPT_CHINESE,
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VOICE_PROMPT_ENGLISH
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};
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typedef enum voice_prompt_e voice_prompt_t;
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#endif
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enum alarm_mode_e {
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ALARM_MODE_SITE = 0, // TX
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ALARM_MODE_TONE // don't TX
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};
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typedef enum alarm_mode_e alarm_mode_t;
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enum roger_mode_e {
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ROGER_MODE_OFF = 0,
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ROGER_MODE_ROGER1,
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ROGER_MODE_ROGER2
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};
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typedef enum roger_mode_e roger_mode_t;
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enum mdf_display_mode_e {
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MDF_FREQUENCY = 0,
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MDF_CHANNEL,
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MDF_NAME,
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MDF_NAME_FREQ
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};
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typedef enum mdf_display_mode_e mdf_display_mode_t;
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/*
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enum {
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RADIO_CHANNEL_UP = 0x01u,
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RADIO_CHANNEL_DOWN = 0xFFu,
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};
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*/
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enum {
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BANDWIDTH_WIDE = 0,
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BANDWIDTH_NARROW
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};
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enum compand_e {
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COMPAND_OFF = 0,
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COMPAND_TX,
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COMPAND_RX,
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COMPAND_TX_RX
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};
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enum ptt_id_e {
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PTT_ID_OFF = 0, // OFF
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PTT_ID_TX_UP, // BEGIN OF TX
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PTT_ID_TX_DOWN, // END OF TX
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PTT_ID_BOTH, // BOTH
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PTT_ID_APOLLO // Apolo quindar tones
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};
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typedef enum ptt_id_e ptt_id_t;
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enum mdc1200_mode_e {
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MDC1200_MODE_OFF = 0, // OFF
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MDC1200_MODE_BOT, // BEGIN OF TX
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MDC1200_MODE_EOT, // END OF TX
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MDC1200_MODE_BOTH // BOTH
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};
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typedef enum mdc1200_mode_e mdc1200_mode_t;
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enum vfo_state_e
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{
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VFO_STATE_NORMAL = 0,
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VFO_STATE_BUSY,
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VFO_STATE_BAT_LOW,
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VFO_STATE_TX_DISABLE,
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VFO_STATE_TIMEOUT,
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VFO_STATE_ALARM,
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VFO_STATE_VOLTAGE_HIGH
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};
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typedef enum vfo_state_e vfo_state_t;
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// ************************************************
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// this is the full eeprom structure, both config and calibration areas
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// if channel is used, all unused bits are '0's
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// if channel not used, all bytes are 0xff
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//
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// 16 bytes
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typedef struct {
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// [0]
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uint32_t frequency; //
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// [4]
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uint32_t tx_offset; //
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// [8]
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uint8_t rx_ctcss_cdcss_code; //
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// [9]
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uint8_t tx_ctcss_cdcss_code; //
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// [10]
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struct {
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uint8_t rx_ctcss_cdcss_type:2; //
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uint8_t unused1:2; //
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uint8_t tx_ctcss_cdcss_type:2; //
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uint8_t unused2:2; //
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};
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// [11]
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struct {
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uint8_t tx_offset_dir:2; // 0=none 1=neg 2=pos
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uint8_t mdc1200_mode:2; // 1of11
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uint8_t mod_mode:2; // 0=FM 1=AM 2=DSB
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uint8_t unused4:2; //
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};
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// [12]
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struct {
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uint8_t frequency_reverse:1; // reverse repeater
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uint8_t channel_bandwidth:1; // wide/narrow
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uint8_t tx_power:2; // 0=Low 1=Medium 2=High
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uint8_t busy_channel_lock:1; //
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uint8_t unused5:1; //
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uint8_t compand:2; // 0=off 1=TX 2=RX 3=TX/RX
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};
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// [13]
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struct {
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uint8_t dtmf_decoding_enable:1; //
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uint8_t dtmf_ptt_id_tx_mode:3; //
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uint8_t squelch_level:4; // 1of11 0 ~ 9 per channel squelch, 0 = use main squelch level
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};
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// [14]
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struct {
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uint8_t step_setting:4; // step size index 0 ~ 15
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uint8_t tx_pwr_user:4; // 1of11
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};
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// [15]
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struct {
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uint8_t scrambler:5; // voice inversion scrambler frequency index
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uint8_t unused7:3; //
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};
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} __attribute__((packed)) t_channel;
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typedef union {
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struct {
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uint8_t band:4; // 0~6 otherwise channel unused
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uint8_t unused:2; //
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uint8_t scanlist2:1; // set if in scan list 2
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uint8_t scanlist1:1; // set if in scan list 1
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};
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uint8_t attributes; //
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} __attribute__((packed)) t_channel_attrib;
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typedef struct {
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char name[10];
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uint8_t unused[6];
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} __attribute__((packed)) t_channel_name;
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// user configuration
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typedef struct {
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union {
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struct {
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// 0x0000
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t_channel user_channel[200]; // unused channels are set to all '0xff'
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// 0x0C80
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t_channel vfo_channel[14];
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};
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// 0x0000
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t_channel channel[214];
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} __attribute__((packed));
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// 0x0D60
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t_channel_attrib channel_attributes[200 + 7 + 1]; // last byte = 0x00
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struct {
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// 0x0E30
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uint8_t unused2[16]; // 0xff's
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// 0x0E40
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uint16_t fm_channel[20]; //
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uint8_t unused3[8]; // 0xff's
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// 0x0E70
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uint8_t call1; //
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uint8_t squelch_level; //
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uint8_t tx_timeout; //
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uint8_t noaa_auto_scan; //
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uint8_t key_lock; //
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uint8_t vox_enabled; //
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uint8_t vox_level; //
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uint8_t mic_sensitivity; //
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// 0x0E78
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#ifdef ENABLE_CONTRAST
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uint8_t lcd_contrast; // 1of11
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#else
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uint8_t unused4; // 0xff's
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#endif
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uint8_t channel_display_mode; //
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uint8_t cross_vfo; //
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uint8_t battery_save_ratio; //
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uint8_t dual_watch; //
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uint8_t backlight_time; //
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uint8_t tail_tone_elimination; //
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uint8_t vfo_open; //
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// 0x0E80
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struct {
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struct {
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uint8_t screen; //
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uint8_t user; //
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uint8_t frequency; //
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} __attribute__((packed)) vfo[2];
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uint8_t noaa_channel[2]; //
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} __attribute__((packed)) indices;
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// 0x0E88
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struct {
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uint16_t selected_frequency; //
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uint8_t selected_channel; //
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uint8_t channel_mode; //
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uint8_t unused[4]; // 0xff's
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} __attribute__((packed)) fm_radio;
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// 0x0E90
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uint8_t beep_control; //
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uint8_t key1_short; //
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uint8_t key1_long; //
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uint8_t key2_short; //
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uint8_t key2_long; //
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uint8_t carrier_search_mode; // sc_rev
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uint8_t auto_key_lock; //
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uint8_t power_on_display_mode; //
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uint32_t power_on_password; //
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#ifdef ENABLE_MDC1200
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uint16_t mdc1200_id; // 1of11
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uint8_t unused6[1]; // 0xff's
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#else
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uint8_t unused6[3]; // 0xff's
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#endif
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#ifdef ENABLE_PANADAPTER
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struct {
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uint8_t panadapter:1; // 1 = enable panadapter
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uint8_t unused6a:7; // 0xff
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};
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#else
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uint8_t unused6a; // 0xff
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#endif
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// 0x0EA0
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uint8_t voice_prompt; //
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uint8_t unused7[7]; // 0xff's
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uint8_t alarm_mode; //
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uint8_t roger_mode; //
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uint8_t repeater_tail_tone_elimination; // rp_ste
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uint8_t tx_vfo_num; //
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#ifdef ENABLE_AIRCOPY
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uint32_t air_copy_freq; // 1of11
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#else
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uint8_t unused8[4]; // 0xff's
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#endif
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// 0x0EB0
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char welcome_line[2][16]; //
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struct {
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// 0x0ED0
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uint8_t side_tone; //
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uint8_t separate_code; //
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uint8_t group_call_code; //
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uint8_t decode_response; //
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uint8_t auto_reset_time; //
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uint8_t preload_time; //
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uint8_t first_code_persist_time; //
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uint8_t hash_code_persist_time; //
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uint8_t code_persist_time; //
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uint8_t code_interval_time; //
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uint8_t permit_remote_kill; //
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uint8_t unused[5]; // 0xff's
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// 0x0EE0
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char ani_id[8]; //
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char kill_code[8]; //
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char revive_code[8]; //
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char key_up_code[16]; //
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char key_down_code[16]; //
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} __attribute__((packed)) dtmf;
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// 0x0F18
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uint8_t scan_list_default; //
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struct {
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uint8_t enabled; //
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uint8_t channel[2]; //
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} __attribute__((packed)) priority_scan_list[2];
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uint8_t unused10; // 0xff's
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// 0x0F20
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uint8_t unused11[16]; // 0xff's
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// 0x0F30
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uint32_t aes_key[4]; // disabled = all 0xff
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// 0x0F40
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uint8_t freq_lock; //
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struct {
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uint8_t enable_tx_350:1; // 1 = 350MHz ~ 400MHz TX is enabled
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uint8_t unused11a:7; //
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};
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struct {
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uint8_t radio_disabled:1; // 1 = radio is disabled
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uint8_t unused11b:7; //
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};
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struct {
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uint8_t enable_tx_200:1; // 1 = 174MHz ~ 350MHz TX enabled
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uint8_t unused11c:7; //
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};
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struct {
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uint8_t enable_tx_470:1; // 1 = >= 470MHz TX enabled
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uint8_t unused11d:7; //
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};
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struct {
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uint8_t enable_350:1; // 1 = 350HMz ~ 400MHz enabled
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uint8_t unused11e:7; //
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};
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struct {
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uint8_t enable_scrambler:1; //
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uint8_t enable_rssi_bar:1; // 1of11
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uint8_t unused11f:6; //
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};
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#if 0
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// QS
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uint8_t unused12[9]; // 0xff's
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#else
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// 1of11
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struct {
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uint8_t tx_enable:1; // 0 = completely disable TX, 1 = allow TX
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uint8_t dtmf_live_decoder:1; // 1 = enable on-screen live DTMF decoder
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uint8_t battery_text:2; // 0 = no battery text, 1 = voltage, 2 = percent .. on the status bar
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uint8_t mic_bar:1; // 1 = on-screen TX audio level
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uint8_t am_fix:1; // 1 = enable RX AM fix
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uint8_t backlight_on_tx_rx:2; // 0 = no backlight when TX/RX, 1 = when TX, 2 = when RX, 3 = both RX/TX
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};
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uint8_t scan_hold_time; // ticks we stay paused for on an RX'ed signal when scanning
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struct {
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uint8_t scan_ranges_enable:1; // enable/disable auto scan ranges
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uint8_t unused11g:7; // 0xff's
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};
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uint8_t unused12[6]; // 0xff's
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#endif
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} __attribute__((packed)) setting;
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// 0x0F50
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t_channel_name channel_name[USER_CHANNEL_LAST - USER_CHANNEL_FIRST + 1];
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// 0x1BD0
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uint8_t unused13[16 * 3]; // 0xff's .. free to use
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// 0x1C00
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struct {
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char name[8];
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uint8_t number[8];
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} __attribute__((packed)) dtmf_contact[16];
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} __attribute__((packed)) t_config;
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// 512 bytes
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typedef struct {
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// 0x1E00
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struct {
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uint8_t open_rssi_thresh[10]; //
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uint8_t unused1[6]; // 0xff's
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uint8_t close_rssi_thresh[10]; //
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uint8_t unused2[6]; // 0xff's
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uint8_t open_noise_thresh[10]; //
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uint8_t unused3[6]; // 0xff's
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uint8_t close_noise_thresh[10]; //
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uint8_t unused4[6]; // 0xff's
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uint8_t open_glitch_thresh[10]; //
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uint8_t unused5[6]; // 0xff's
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uint8_t close_glitch_thresh[10]; //
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uint8_t unused6[6]; // 0xff's
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} __attribute__((packed)) squelch_band[2]; // 0 = bands 4567, 1 = bands 123
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// 0x1EC0 .. mine = 006E 0078 0082 008C 0086 00AA 00CE 00F2
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struct { // RSSI bargraph thresholds .. (dBm + 160) * 2
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uint16_t band_4567[4]; //
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uint16_t band_123[4]; //
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} __attribute__((packed)) rssi_cal;
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// 0x1ED0
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struct
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{
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union {
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struct {
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uint8_t low[3]; //
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uint8_t mid[3]; //
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uint8_t high[3]; //
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};
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uint8_t level[3][3]; //
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};
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uint8_t unused[7]; // 0xff's
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} __attribute__((packed)) tx_band_power[7];
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// 0x1F40
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uint16_t battery[6]; //
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uint8_t unused1[4]; // 0xff's
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// 0x1F50
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struct
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{
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uint16_t threshold[10]; //
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uint8_t unused[4]; // 0xff's
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} __attribute__((packed)) vox[2];
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// 0x1F80
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uint8_t mic_gain_dB2[5]; //
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uint8_t unused2[3]; //
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// 0x1F88
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int16_t bk4819_xtal_freq_low; //
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uint16_t unknown2; //
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uint16_t unknown3; //
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uint8_t volume_gain; //
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uint8_t dac_gain; //
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|
|
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// 0x1F90
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|
uint8_t unused3[16 * 7]; // 0xff's
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|
|
|
// 0x2000
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|
|
|
} __attribute__((packed)) t_calibration;
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|
|
|
// entire eeprom
|
|
typedef struct {
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|
|
|
// 0x0000
|
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t_config config; // radios user config
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|
|
|
// 0x1D00
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uint8_t unused[16 * 16]; // does this belong to the config, or the calibration, or neither ?
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|
|
|
// 0x1E00
|
|
t_calibration calib; // calibration settings .. we DO NOT pass this through aircopy, it's radio specific
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|
|
|
} __attribute__((packed)) t_eeprom; // 8192 (0x2000) bytes of eeprom
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|
|
|
// ************************************************
|
|
|
|
typedef struct
|
|
{
|
|
uint32_t frequency;
|
|
dcs_code_type_t code_type;
|
|
uint8_t code;
|
|
} freq_config_t;
|
|
|
|
typedef struct vfo_info_t
|
|
{
|
|
t_channel channel;
|
|
t_channel_attrib channel_attributes;
|
|
t_channel_name channel_name;
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|
|
|
uint8_t channel_save;
|
|
|
|
freq_config_t freq_config_rx;
|
|
freq_config_t freq_config_tx;
|
|
freq_config_t *p_rx;
|
|
freq_config_t *p_tx;
|
|
|
|
uint16_t step_freq;
|
|
|
|
uint8_t freq_in_channel; // first channel number we found this VFO's frequency in
|
|
|
|
uint8_t squelch_open_rssi_thresh;
|
|
uint8_t squelch_close_rssi_thresh;
|
|
|
|
uint8_t squelch_open_noise_thresh;
|
|
uint8_t squelch_close_noise_thresh;
|
|
|
|
uint8_t squelch_open_glitch_thresh;
|
|
uint8_t squelch_close_glitch_thresh;
|
|
|
|
uint8_t txp_reg_value;
|
|
|
|
} vfo_info_t;
|
|
|
|
// ************************************************
|
|
|
|
extern t_eeprom g_eeprom;
|
|
|
|
void SETTINGS_read_eeprom(void);
|
|
void SETTINGS_write_eeprom_config(void);
|
|
void SETTINGS_write_eeprom_calib(void);
|
|
|
|
#ifdef ENABLE_FMRADIO
|
|
void SETTINGS_save_fm(void);
|
|
#endif
|
|
void SETTINGS_save_vfo_indices(void);
|
|
void SETTINGS_save(void);
|
|
void SETTINGS_save_channel(const unsigned int channel, const unsigned int vfo, vfo_info_t *p_vfo, const unsigned int mode);
|
|
void SETTINGS_save_chan_name(const unsigned int channel);
|
|
void SETTINGS_save_chan_attribs_name(const unsigned int channel, const vfo_info_t *p_vfo);
|
|
|
|
unsigned int SETTINGS_find_channel(const uint32_t frequency);
|
|
uint32_t SETTINGS_fetch_channel_frequency(const int channel);
|
|
unsigned int SETTINGS_fetch_channel_step_setting(const int channel);
|
|
void SETTINGS_fetch_channel_name(char *s, const int channel);
|
|
unsigned int SETTINGS_fetch_frequency_step_setting(const int channel, const int vfo);
|
|
void SETTINGS_factory_reset(bool bIsAll);
|
|
|
|
#endif
|