mirror of
https://github.com/OneOfEleven/uv-k5-firmware-custom.git
synced 2025-04-27 22:01:26 +03:00
359 lines
9.8 KiB
C
359 lines
9.8 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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#include "app/dtmf.h"
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#ifdef ENABLE_FMRADIO
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#include "app/fm.h"
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#endif
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#include "bsp/dp32g030/gpio.h"
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#include "dcs.h"
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#include "driver/backlight.h"
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#ifdef ENABLE_FMRADIO
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#include "driver/bk1080.h"
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#endif
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#include "driver/bk4819.h"
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#include "driver/gpio.h"
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#include "driver/system.h"
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#if defined(ENABLE_UART) && defined(ENABLE_UART_DEBUG)
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#include "driver/uart.h"
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#endif
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#include "frequencies.h"
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#include "functions.h"
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#include "helper/battery.h"
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#ifdef ENABLE_MDC1200
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#include "mdc1200.h"
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#endif
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#include "misc.h"
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#include "radio.h"
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#include "settings.h"
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#include "ui/menu.h"
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#include "ui/status.h"
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#include "ui/ui.h"
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function_type_t g_current_function;
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void FUNCTION_Init(void)
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{
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if (IS_NOT_NOAA_CHANNEL(g_rx_vfo->channel_save))
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{
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g_current_code_type = g_selected_code_type;
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if (g_css_scan_mode == CSS_SCAN_MODE_OFF)
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g_current_code_type = (g_rx_vfo->channel.mod_mode > 0) ? CODE_TYPE_NONE : g_rx_vfo->p_rx->code_type;
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}
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else
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g_current_code_type = CODE_TYPE_CONTINUOUS_TONE;
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#ifdef ENABLE_DTMF_CALLING
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DTMF_clear_RX();
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#endif
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g_cxcss_tail_found = false;
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g_cdcss_lost = false;
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g_ctcss_lost = false;
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#ifdef ENABLE_VOX
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g_vox_lost = false;
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#endif
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g_squelch_open = false;
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g_flag_tail_tone_elimination_complete = false;
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g_tail_tone_elimination_tick_10ms = 0;
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g_found_ctcss = false;
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g_found_cdcss = false;
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g_found_ctcss_tick_10ms = 0;
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g_found_cdcss_tick_10ms = 0;
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g_end_of_rx_detected_maybe = false;
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#ifdef ENABLE_NOAA
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g_noaa_tick_10ms = 0;
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#endif
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g_update_status = true;
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}
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void FUNCTION_Select(function_type_t Function)
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{
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const function_type_t prev_func = g_current_function;
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const bool was_power_save = (prev_func == FUNCTION_POWER_SAVE);
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g_current_function = Function;
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if (was_power_save && Function != FUNCTION_POWER_SAVE)
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{ // wake up
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BK4819_Conditional_RX_TurnOn();
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g_rx_idle_mode = false;
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UI_DisplayStatus(false);
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}
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g_update_status = true;
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switch (Function)
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{
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case FUNCTION_FOREGROUND:
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#if defined(ENABLE_UART) && defined(ENABLE_UART_DEBUG)
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UART_SendText("func forground\r\n");
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#endif
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if (g_dtmf_reply_state != DTMF_REPLY_NONE)
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RADIO_PrepareCssTX();
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if (prev_func == FUNCTION_TRANSMIT)
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{
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g_vfo_rssi_bar_level[0] = 0;
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g_vfo_rssi_bar_level[1] = 0;
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}
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else
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if (prev_func != FUNCTION_RECEIVE)
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break;
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#ifdef ENABLE_FMRADIO
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if (g_fm_radio_mode)
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g_fm_restore_tick_10ms = g_eeprom.config.setting.scan_hold_time * 50;
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#endif
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#ifdef ENABLE_DTMF_CALLING
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if (g_dtmf_call_state == DTMF_CALL_STATE_CALL_OUT ||
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g_dtmf_call_state == DTMF_CALL_STATE_RECEIVED ||
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g_dtmf_call_state == DTMF_CALL_STATE_RECEIVED_STAY)
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{
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g_dtmf_auto_reset_time_500ms = g_eeprom.config.setting.dtmf.auto_reset_time * 2;
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}
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#endif
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return;
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case FUNCTION_NEW_RECEIVE:
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#if defined(ENABLE_UART) && defined(ENABLE_UART_DEBUG)
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UART_printf("func new receive %u\r\n", g_rx_vfo->freq_config_rx.frequency);
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#endif
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break;
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case FUNCTION_RECEIVE:
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#if defined(ENABLE_UART) && defined(ENABLE_UART_DEBUG)
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UART_printf("func receive %u\r\n", g_rx_vfo->freq_config_rx.frequency);
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#endif
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break;
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case FUNCTION_POWER_SAVE:
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#if defined(ENABLE_UART) && defined(ENABLE_UART_DEBUG)
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UART_SendText("func power save\r\n");
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#endif
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if (g_flash_light_state != FLASHLIGHT_SOS)
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{
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g_monitor_enabled = false;
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GPIO_ClearBit(&GPIOC->DATA, GPIOC_PIN_SPEAKER);
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}
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g_power_save_tick_10ms = g_eeprom.config.setting.battery_save_ratio * 10;
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g_power_save_expired = false;
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g_rx_idle_mode = true;
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BK4819_DisableVox();
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BK4819_Sleep();
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BK4819_set_GPIO_pin(BK4819_GPIO0_PIN28_RX_ENABLE, false);
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if (g_current_display_screen != DISPLAY_MENU)
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GUI_SelectNextDisplay(DISPLAY_MAIN);
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return;
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case FUNCTION_TRANSMIT:
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#if defined(ENABLE_UART) && defined(ENABLE_UART_DEBUG)
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UART_printf("func transmit %u\r\n", g_tx_vfo->freq_config_tx.frequency);
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#endif
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g_tx_timer_tick_500ms = 0;
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g_tx_timeout_reached = false;
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g_flag_end_tx = false;
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g_rtte_count_down = 0;
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#if defined(ENABLE_ALARM) || defined(ENABLE_TX1750)
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if (g_alarm_state == ALARM_STATE_OFF)
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#endif
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{
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if (g_eeprom.config.setting.tx_timeout == 0)
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g_tx_timer_tick_500ms = 60; // 30 sec
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else
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if (g_eeprom.config.setting.tx_timeout < (ARRAY_SIZE(g_sub_menu_tx_timeout) - 1))
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g_tx_timer_tick_500ms = 120 * g_eeprom.config.setting.tx_timeout; // minutes
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else
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g_tx_timer_tick_500ms = 120 * 15; // 15 minutes
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}
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if (g_eeprom.config.setting.backlight_on_tx_rx == 1 || g_eeprom.config.setting.backlight_on_tx_rx == 3)
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BACKLIGHT_turn_on(backlight_tx_rx_time_secs);
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if (g_eeprom.config.setting.dual_watch != DUAL_WATCH_OFF)
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{ // dual-RX is enabled
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g_dual_watch_tick_10ms = dual_watch_delay_after_tx_10ms;
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if (g_dual_watch_tick_10ms < (g_eeprom.config.setting.scan_hold_time * 50))
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g_dual_watch_tick_10ms = g_eeprom.config.setting.scan_hold_time * 50;
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}
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#ifdef ENABLE_MDC1200
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BK4819_enable_mdc1200_rx(false);
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#endif
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// if DTMF is enabled when TX'ing, it changes the TX audio filtering ! .. 1of11
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// so MAKE SURE that DTMF is disabled - until needed
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BK4819_DisableDTMF();
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// clear the DTMF RX buffer
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#ifdef ENABLE_DTMF_CALLING
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DTMF_clear_RX();
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#endif
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#ifdef ENABLE_DTMF_LIVE_DECODER
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// clear the DTMF RX live decoder buffer
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g_dtmf_rx_live_timeout = 0;
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memset(g_dtmf_rx_live, 0, sizeof(g_dtmf_rx_live));
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#endif
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#ifdef ENABLE_FMRADIO
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// disable the FM radio
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if (g_fm_radio_mode)
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BK1080_Init(0, false);
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#endif
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g_update_status = true;
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GUI_DisplayScreen();
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BK4819_set_scrambler(0);
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RADIO_enableTX(false);
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#if defined(ENABLE_UART) && defined(ENABLE_UART_DEBUG)
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// UART_printf("function tx %u %s\r\n", g_dtmf_reply_state, g_dtmf_string);
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#endif
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#if defined(ENABLE_ALARM) || defined(ENABLE_TX1750)
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if (g_alarm_state != ALARM_STATE_OFF)
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{
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#ifdef ENABLE_TX1750
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if (g_alarm_state == ALARM_STATE_TX1750)
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BK4819_TransmitTone(true, 1750);
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#endif
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#ifdef ENABLE_ALARM
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if (g_alarm_state == ALARM_STATE_TXALARM)
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BK4819_TransmitTone(true, 500);
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#endif
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SYSTEM_DelayMs(2);
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GPIO_SetBit(&GPIOC->DATA, GPIOC_PIN_SPEAKER);
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#ifdef ENABLE_ALARM
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g_alarm_tone_counter_10ms = 0;
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#endif
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break;
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}
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else
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#endif
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#ifdef ENABLE_DTMF_CALLING
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if (!DTMF_Reply())
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#endif
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{
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#ifdef ENABLE_MDC1200
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if (g_current_vfo->channel.mdc1200_mode == MDC1200_MODE_BOT || g_current_vfo->channel.mdc1200_mode == MDC1200_MODE_BOTH)
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{
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#ifdef ENABLE_MDC1200_SIDE_BEEP
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// BK4819_start_tone(880, 10, true, true);
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// SYSTEM_DelayMs(120);
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// BK4819_stop_tones(true);
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#endif
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SYSTEM_DelayMs(30);
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BK4819_send_MDC1200(MDC1200_OP_CODE_PTT_ID, 0x80, g_eeprom.config.setting.mdc1200_id, true);
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#ifdef ENABLE_MDC1200_SIDE_BEEP
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BK4819_start_tone(880, 10, true, true);
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SYSTEM_DelayMs(120);
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BK4819_stop_tones(true);
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#endif
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}
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else
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#endif
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if (g_current_vfo->channel.dtmf_ptt_id_tx_mode == PTT_ID_APOLLO)
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{
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BK4819_start_tone(APOLLO_TONE1_HZ, 28, true, false);
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SYSTEM_DelayMs(APOLLO_TONE_MS);
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BK4819_stop_tones(true);
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}
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}
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if (g_eeprom.config.setting.enable_scrambler)
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BK4819_set_scrambler(g_current_vfo->channel.scrambler);
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// 1of11 .. TEST ONLY
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// if (g_current_vfo->p_tx->code_type == CODE_TYPE_NONE)
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// {
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// const uint16_t reg = BK4819_read_reg(0x2B);
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// #if 0
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// BK4819_write_reg(0x2B, reg | (1u << 1)); // disable TX LPF
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// BK4819_write_reg(0x2B, reg | (1u << 2)); // disable TX HPF
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// BK4819_write_reg(0x2B, reg | (1u << 2) | (1u << 1)); // disable TX LPF & HPF
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// #else
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// TX 300Hz LPF
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//BK4819_write_reg(0x44, 0x935A); // -3dB
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//BK4819_write_reg(0x45, 0x2EFF); //
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//BK4819_write_reg(0x44, 0x920B); // -2dB
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//BK4819_write_reg(0x45, 0x3010); //
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//BK4819_write_reg(0x44, 0x91c1); // -1dB
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//BK4819_write_reg(0x45, 0x3040); //
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//BK4819_write_reg(0x44, 0x9009); // 0dB default
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//BK4819_write_reg(0x45, 0x31A9); //
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//BK4819_write_reg(0x44, 0x8F90); // +1dB
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//BK4819_write_reg(0x45, 0x31F3); //
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//BK4819_write_reg(0x44, 0x8F46); // +2dB
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//BK4819_write_reg(0x45, 0x31E7); //
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//BK4819_write_reg(0x44, 0x8ED8); // +3dB
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//BK4819_write_reg(0x45, 0x3232); //
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// BK4819_write_reg(0x44, 0x8D8F); // +4dB
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// BK4819_write_reg(0x45, 0x3359); //
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// #endif
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// TX 3kHz HPF
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//BK4819_write_reg(0x74, 64002); // -1dB
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//BK4819_write_reg(0x74, 62731); // 0dB default
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//BK4819_write_reg(0x74, 58908); // +1dB
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//BK4819_write_reg(0x74, 57122); // +2dB
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//BK4819_write_reg(0x74, 54317); // +3dB
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// BK4819_write_reg(0x74, 52277); // +4dB
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// #endif
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// }
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// else
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// {
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// BK4819_write_reg(0x2B, BK4819_read_reg(0x2B) & ~(1u << 2)); // enable the 300Hz TX HPF
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// }
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// break;
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}
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g_power_save_pause_tick_10ms = power_save_pause_10ms;
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g_power_save_pause_done = false;
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#ifdef ENABLE_FMRADIO
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g_fm_restore_tick_10ms = 0;
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#endif
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g_update_status = true;
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}
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