mirror of
https://github.com/kamilsss655/uv-k5-firmware-custom
synced 2024-11-23 04:06:24 +00:00
248 lines
7.9 KiB
C
248 lines
7.9 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 <string.h>
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#include "misc.h"
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const uint8_t fm_resume_countdown_500ms = 2500 / 500; // 2.5 seconds
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const uint8_t fm_radio_countdown_500ms = 2000 / 500; // 2 seconds
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const uint16_t fm_play_countdown_scan_10ms = 100 / 10; // 100ms
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const uint16_t fm_play_countdown_noscan_10ms = 1200 / 10; // 1.2 seconds
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const uint8_t menu_timeout_500ms = 20000 / 500; // 20 seconds
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const uint8_t DTMF_RX_timeout_500ms = 2500 / 500; // 2.5 seconds
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const uint8_t DTMF_RX_timeout_saved_500ms = 20000 / 500; // 20 seconds
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const uint8_t DTMF_decode_ring_countdown_500ms = 15000 / 500; // 15 seconds
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const uint8_t DTMF_txstop_countdown_500ms = 3000 / 500; // 6 seconds
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const uint8_t key_input_timeout_500ms = 8000 / 500; // 8 seconds
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const uint16_t key_repeat_delay_10ms = 400 / 10; // 400ms
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const uint16_t key_repeat_10ms = 80 / 10; // 80ms .. MUST be less than 'key_repeat_delay'
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const uint16_t key_debounce_10ms = 20 / 10; // 20ms
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const uint8_t scan_delay_10ms = 210 / 10; // 210ms
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// 10ms count down resolution
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const uint16_t dual_watch_count_after_tx_10ms = 3600 / 10; // 3.6 sec after TX ends
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const uint16_t dual_watch_count_after_rx_10ms = 1000 / 10; // 1 sec after RX ends ?
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const uint16_t dual_watch_count_after_1_10ms = 5000 / 10; // 5 sec
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const uint16_t dual_watch_count_after_2_10ms = 3600 / 10; // 3.6 sec
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const uint16_t dual_watch_count_noaa_10ms = 70 / 10; // 70ms
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const uint16_t dual_watch_count_after_vox_10ms = 200 / 10; // 200ms
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const uint16_t dual_watch_count_toggle_10ms = 100 / 10; // 100ms between VFO toggles
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const uint16_t battery_save_count_10ms = 10000 / 10; // 10 seconds
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const uint16_t gMax_bat_v = 843; // 8.43V
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const uint16_t gMin_bat_v = 660; // 6.6V
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const uint32_t gDefaultAesKey[4] = {0x4AA5CC60, 0x0312CC5F, 0xFFD2DABB, 0x6BBA7F92};
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const uint8_t gMicGain_dB2[5] = {3, 8, 16, 24, 31};
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bool gSetting_350TX;
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bool gSetting_KILLED;
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bool gSetting_200TX;
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bool gSetting_500TX;
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bool gSetting_350EN;
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uint8_t gSetting_F_LOCK;
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bool gSetting_ScrambleEnable;
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uint32_t gCustomAesKey[4];
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bool bHasCustomAesKey;
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uint32_t gChallenge[4];
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uint8_t gTryCount;
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uint8_t gEEPROM_1EC0_0[8];
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uint8_t gEEPROM_1EC0_1[8];
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uint8_t gEEPROM_1EC0_2[8];
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uint8_t gEEPROM_1EC0_3[8];
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uint16_t gEEPROM_RSSI_CALIB[3][4];
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uint16_t gEEPROM_1F8A;
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uint16_t gEEPROM_1F8C;
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uint8_t gMR_ChannelAttributes[207];
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volatile uint16_t gBatterySaveCountdown_10ms = battery_save_count_10ms;
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volatile bool gBatterySaveCountdownExpired;
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volatile uint16_t gDualWatchCountdown_10ms;
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volatile bool gDualWatchCountdownExpired = true;
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bool gDualWatchActive = false;
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volatile bool gNextTimeslice500ms;
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volatile uint16_t gTxTimerCountdown;
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volatile uint16_t gTailNoteEliminationCountdown_10ms;
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#ifdef ENABLE_NOAA
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volatile uint16_t gNOAA_Countdown_10ms;
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#endif
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bool gEnableSpeaker;
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uint8_t gKeyInputCountdown = 0;
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uint8_t gKeyLockCountdown;
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uint8_t gRTTECountdown;
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bool bIsInLockScreen;
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uint8_t gUpdateStatus;
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uint8_t gFoundCTCSS;
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uint8_t gFoundCDCSS;
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bool gEndOfRxDetectedMaybe;
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uint16_t gVFO_RSSI[2];
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uint8_t gVFO_RSSI_Level[2];
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uint8_t gReducedService;
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uint8_t gBatteryVoltageIndex;
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CssScanMode_t gCssScanMode;
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bool gUpdateRSSI;
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#ifdef ENABLE_ALARM
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AlarmState_t gAlarmState;
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#endif
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uint8_t gVoltageMenuCountdown;
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bool gPttWasReleased;
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bool gPttWasPressed;
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uint8_t gKeypadLocked;
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bool gFlagReconfigureVfos;
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uint8_t gVfoConfigureMode;
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bool gFlagResetVfos;
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bool gRequestSaveVFO;
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uint8_t gRequestSaveChannel;
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bool gRequestSaveSettings;
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#ifdef ENABLE_FMRADIO
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bool gRequestSaveFM;
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#endif
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bool gFlagPrepareTX;
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bool gFlagAcceptSetting;
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bool gFlagRefreshSetting;
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bool gFlagSaveVfo;
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bool gFlagSaveSettings;
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bool gFlagSaveChannel;
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#ifdef ENABLE_FMRADIO
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bool gFlagSaveFM;
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#endif
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uint8_t gDTMF_RequestPending;
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bool g_CDCSS_Lost;
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uint8_t gCDCSSCodeType;
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bool g_CTCSS_Lost;
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bool g_CxCSS_TAIL_Found;
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bool g_VOX_Lost;
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bool g_SquelchLost;
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uint8_t gFlashLightState;
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bool gVOX_NoiseDetected;
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uint16_t gVoxResumeCountdown;
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uint16_t gVoxPauseCountdown;
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volatile uint16_t gFlashLightBlinkCounter;
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bool gFlagEndTransmission;
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uint16_t gLowBatteryCountdown;
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uint8_t gNextMrChannel;
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ReceptionMode_t gRxReceptionMode;
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uint8_t gRestoreMrChannel;
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uint8_t gCurrentScanList;
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uint8_t gPreviousMrChannel;
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uint32_t gRestoreFrequency;
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uint8_t gRxVfoIsActive;
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#ifdef ENABLE_ALARM
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uint8_t gAlarmToneCounter;
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uint16_t gAlarmRunningCounter;
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#endif
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bool gKeyBeingHeld;
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bool gPttIsPressed;
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uint8_t gPttDebounceCounter;
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uint8_t gMenuListCount;
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uint8_t gBackupCROSS_BAND_RX_TX;
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uint8_t gScanDelay_10ms;
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#ifdef ENABLE_AIRCOPY
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uint8_t gAircopySendCountdown;
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#endif
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uint8_t gFSKWriteIndex;
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uint8_t gNeverUsed;
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#ifdef ENABLE_NOAA
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bool gIsNoaaMode;
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uint8_t gNoaaChannel;
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#endif
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bool gUpdateDisplay;
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bool gF_LOCK;
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uint8_t gShowChPrefix;
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volatile bool gNextTimeslice;
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volatile uint8_t gFoundCDCSSCountdown_10ms;
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volatile uint8_t gFoundCTCSSCountdown_10ms;
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volatile uint16_t gVoxStopCountdown_10ms;
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volatile bool gTxTimeoutReached;
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volatile bool gNextTimeslice40ms;
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#ifdef ENABLE_NOAA
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volatile uint16_t gNOAACountdown_10ms = 0;
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volatile bool gScheduleNOAA = true;
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#endif
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volatile bool gFlagTailNoteEliminationComplete;
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#ifdef ENABLE_FMRADIO
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volatile bool gScheduleFM;
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#endif
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volatile uint8_t boot_counter_10ms;
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uint16_t gCurrentRSSI;
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uint8_t gIsLocked = 0xFF;
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// --------
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void NUMBER_Get(char *pDigits, uint32_t *pInteger)
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{
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unsigned int i;
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uint32_t Multiplier = 10000000;
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uint32_t Value = 0;
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for (i = 0; i < 8; i++)
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{
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if (pDigits[i] > 9)
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break;
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Value += pDigits[i] * Multiplier;
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Multiplier /= 10U;
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}
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*pInteger = Value;
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}
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void NUMBER_ToDigits(uint32_t Value, char *pDigits)
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{
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unsigned int i;
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for (i = 0; i < 8; i++)
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{
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const uint32_t Result = Value / 10U;
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pDigits[7 - i] = Value - (Result * 10U);
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Value = Result;
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}
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pDigits[8] = 0;
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}
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int32_t NUMBER_AddWithWraparound(int32_t Base, int32_t Add, int32_t LowerLimit, int32_t UpperLimit)
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{
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Base += Add;
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if (Base == 0x7fffffff || Base < LowerLimit)
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return UpperLimit;
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if (Base > UpperLimit)
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return LowerLimit;
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return Base;
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}
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