mirror of
https://github.com/egzumer/uv-k5-firmware-custom
synced 2024-11-22 01:32:43 +00:00
459 lines
10 KiB
C
459 lines
10 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 <stdio.h> // NULL
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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 "app/scanner.h"
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#include "bsp/dp32g030/gpio.h"
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#include "audio.h"
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#include "driver/bk4819.h"
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#include "driver/eeprom.h"
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#include "driver/gpio.h"
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#include "driver/system.h"
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#include "dtmf.h"
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#include "external/printf/printf.h"
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#include "misc.h"
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#include "settings.h"
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#include "ui/ui.h"
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char gDTMF_String[15];
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char gDTMF_InputBox[15];
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uint8_t gDTMF_InputBox_Index = 0;
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bool gDTMF_InputMode = false;
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uint8_t gDTMF_PreviousIndex = 0;
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char gDTMF_RX[17];
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uint8_t gDTMF_RX_index = 0;
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uint8_t gDTMF_RX_timeout = 0;
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bool gDTMF_RX_pending = false;
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char gDTMF_RX_live[20];
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uint8_t gDTMF_RX_live_timeout = 0;
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bool gIsDtmfContactValid;
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char gDTMF_ID[4];
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char gDTMF_Caller[4];
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char gDTMF_Callee[4];
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DTMF_State_t gDTMF_State;
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uint8_t gDTMF_DecodeRingCountdown_500ms;
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uint8_t gDTMF_chosen_contact;
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uint8_t gDTMF_auto_reset_time_500ms;
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DTMF_CallState_t gDTMF_CallState;
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DTMF_ReplyState_t gDTMF_ReplyState;
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DTMF_CallMode_t gDTMF_CallMode;
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bool gDTMF_IsTx;
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uint8_t gDTMF_TxStopCountdown_500ms;
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bool gDTMF_IsGroupCall;
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void DTMF_clear_RX(void)
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{
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gDTMF_RX_timeout = 0;
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gDTMF_RX_index = 0;
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gDTMF_RX_pending = false;
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memset(gDTMF_RX, 0, sizeof(gDTMF_RX));
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}
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bool DTMF_ValidateCodes(char *pCode, const unsigned int size)
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{
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unsigned int i;
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if (pCode[0] == 0xFF || pCode[0] == 0)
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return false;
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for (i = 0; i < size; i++)
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{
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if (pCode[i] == 0xFF || pCode[i] == 0)
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{
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pCode[i] = 0;
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break;
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}
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if ((pCode[i] < '0' || pCode[i] > '9') && (pCode[i] < 'A' || pCode[i] > 'D') && pCode[i] != '*' && pCode[i] != '#')
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return false;
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}
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return true;
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}
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bool DTMF_GetContact(const int Index, char *pContact)
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{
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int i = -1;
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if (Index >= 0 && Index < MAX_DTMF_CONTACTS && pContact != NULL)
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{
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EEPROM_ReadBuffer(0x1C00 + (Index * 16), pContact, 16);
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i = (int)pContact[0] - ' ';
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}
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return (i < 0 || i >= 95) ? false : true;
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}
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bool DTMF_FindContact(const char *pContact, char *pResult)
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{
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char Contact[16];
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unsigned int i;
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for (i = 0; i < MAX_DTMF_CONTACTS; i++)
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{
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unsigned int j;
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if (!DTMF_GetContact(i, Contact))
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return false;
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for (j = 0; j < 3; j++)
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if (pContact[j] != Contact[j + 8])
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break;
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if (j == 3)
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{
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memmove(pResult, Contact, 8);
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pResult[8] = 0;
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return true;
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}
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}
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return false;
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}
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char DTMF_GetCharacter(const unsigned int code)
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{
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switch (code)
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{
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case KEY_0: return '0';
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case KEY_1: return '1';
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case KEY_2: return '2';
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case KEY_3: return '3';
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case KEY_4: return '4';
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case KEY_5: return '5';
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case KEY_6: return '6';
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case KEY_7: return '7';
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case KEY_8: return '8';
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case KEY_9: return '9';
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case KEY_MENU: return 'A';
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case KEY_UP: return 'B';
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case KEY_DOWN: return 'C';
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case KEY_EXIT: return 'D';
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case KEY_STAR: return '*';
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case KEY_F: return '#';
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default: return 0xff;
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}
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}
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bool DTMF_CompareMessage(const char *pMsg, const char *pTemplate, const unsigned int size, const bool bCheckGroup)
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{
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unsigned int i;
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for (i = 0; i < size; i++)
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{
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if (pMsg[i] != pTemplate[i])
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{
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if (!bCheckGroup || pMsg[i] != gEeprom.DTMF_GROUP_CALL_CODE)
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return false;
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gDTMF_IsGroupCall = true;
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}
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}
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return true;
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}
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DTMF_CallMode_t DTMF_CheckGroupCall(const char *pMsg, const unsigned int size)
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{
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unsigned int i;
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for (i = 0; i < size; i++)
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if (pMsg[i] == gEeprom.DTMF_GROUP_CALL_CODE)
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break;
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return (i < size) ? DTMF_CALL_MODE_GROUP : DTMF_CALL_MODE_NOT_GROUP;
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}
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void DTMF_clear_input_box(void)
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{
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memset(gDTMF_InputBox, 0, sizeof(gDTMF_InputBox));
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gDTMF_InputBox_Index = 0;
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gDTMF_InputMode = false;
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}
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void DTMF_Append(const char code)
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{
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if (gDTMF_InputBox_Index == 0)
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{
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memset(gDTMF_InputBox, '-', sizeof(gDTMF_InputBox) - 1);
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gDTMF_InputBox[sizeof(gDTMF_InputBox) - 1] = 0;
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}
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if (gDTMF_InputBox_Index < (sizeof(gDTMF_InputBox) - 1))
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gDTMF_InputBox[gDTMF_InputBox_Index++] = code;
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}
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void DTMF_HandleRequest(void)
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{ // proccess the RX'ed DTMF characters
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char String[21];
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unsigned int Offset;
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if (!gDTMF_RX_pending)
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return; // nothing new received
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if (gScanStateDir != SCAN_OFF || gCssScanMode != CSS_SCAN_MODE_OFF)
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{ // we're busy scanning
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DTMF_clear_RX();
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return;
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}
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if (!gRxVfo->DTMF_DECODING_ENABLE && !gSetting_KILLED)
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{ // D-DCD is disabled or we're alive
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DTMF_clear_RX();
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return;
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}
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gDTMF_RX_pending = false;
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if (gDTMF_RX_index >= 9)
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{ // look for the KILL code
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sprintf(String, "%s%c%s", gEeprom.ANI_DTMF_ID, gEeprom.DTMF_SEPARATE_CODE, gEeprom.KILL_CODE);
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Offset = gDTMF_RX_index - strlen(String);
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if (DTMF_CompareMessage(gDTMF_RX + Offset, String, strlen(String), true))
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{ // bugger
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if (gEeprom.PERMIT_REMOTE_KILL)
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{
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gSetting_KILLED = true; // oooerr !
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DTMF_clear_RX();
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SETTINGS_SaveSettings();
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gDTMF_ReplyState = DTMF_REPLY_AB;
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#ifdef ENABLE_FMRADIO
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if (gFmRadioMode)
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{
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FM_TurnOff();
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GUI_SelectNextDisplay(DISPLAY_MAIN);
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}
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#endif
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}
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else
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{
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gDTMF_ReplyState = DTMF_REPLY_NONE;
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}
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gDTMF_CallState = DTMF_CALL_STATE_NONE;
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gUpdateDisplay = true;
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gUpdateStatus = true;
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return;
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}
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}
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if (gDTMF_RX_index >= 9)
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{ // look for the REVIVE code
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sprintf(String, "%s%c%s", gEeprom.ANI_DTMF_ID, gEeprom.DTMF_SEPARATE_CODE, gEeprom.REVIVE_CODE);
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Offset = gDTMF_RX_index - strlen(String);
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if (DTMF_CompareMessage(gDTMF_RX + Offset, String, strlen(String), true))
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{ // shit, we're back !
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gSetting_KILLED = false;
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DTMF_clear_RX();
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SETTINGS_SaveSettings();
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gDTMF_ReplyState = DTMF_REPLY_AB;
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gDTMF_CallState = DTMF_CALL_STATE_NONE;
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gUpdateDisplay = true;
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gUpdateStatus = true;
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return;
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}
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}
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if (gDTMF_RX_index >= 2)
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{ // look for ACK reply
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strcpy(String, "AB");
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Offset = gDTMF_RX_index - strlen(String);
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if (DTMF_CompareMessage(gDTMF_RX + Offset, String, strlen(String), true))
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{ // ends with "AB"
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if (gDTMF_ReplyState != DTMF_REPLY_NONE) // 1of11
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// if (gDTMF_CallState != DTMF_CALL_STATE_NONE) // 1of11
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// if (gDTMF_CallState == DTMF_CALL_STATE_CALL_OUT) // 1of11
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{
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gDTMF_State = DTMF_STATE_TX_SUCC;
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DTMF_clear_RX();
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gUpdateDisplay = true;
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return;
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}
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}
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}
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if (gDTMF_CallState == DTMF_CALL_STATE_CALL_OUT &&
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gDTMF_CallMode == DTMF_CALL_MODE_NOT_GROUP &&
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gDTMF_RX_index >= 9)
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{ // waiting for a reply
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sprintf(String, "%s%c%s", gDTMF_String, gEeprom.DTMF_SEPARATE_CODE, "AAAAA");
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Offset = gDTMF_RX_index - strlen(String);
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if (DTMF_CompareMessage(gDTMF_RX + Offset, String, strlen(String), false))
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{ // we got a response
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gDTMF_State = DTMF_STATE_CALL_OUT_RSP;
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DTMF_clear_RX();
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gUpdateDisplay = true;
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}
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}
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if (gSetting_KILLED || gDTMF_CallState != DTMF_CALL_STATE_NONE)
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{ // we've been killed or expecting a reply
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return;
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}
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if (gDTMF_RX_index >= 7)
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{ // see if we're being called
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gDTMF_IsGroupCall = false;
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sprintf(String, "%s%c", gEeprom.ANI_DTMF_ID, gEeprom.DTMF_SEPARATE_CODE);
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Offset = gDTMF_RX_index - strlen(String) - 3;
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if (DTMF_CompareMessage(gDTMF_RX + Offset, String, strlen(String), true))
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{ // it's for us !
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gDTMF_CallState = DTMF_CALL_STATE_RECEIVED;
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memset(gDTMF_Callee, 0, sizeof(gDTMF_Callee));
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memset(gDTMF_Caller, 0, sizeof(gDTMF_Caller));
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memmove(gDTMF_Callee, gDTMF_RX + Offset + 0, 3);
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memmove(gDTMF_Caller, gDTMF_RX + Offset + 4, 3);
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DTMF_clear_RX();
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gUpdateDisplay = true;
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switch (gEeprom.DTMF_DECODE_RESPONSE)
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{
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case DTMF_DEC_RESPONSE_BOTH:
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gDTMF_DecodeRingCountdown_500ms = DTMF_decode_ring_countdown_500ms;
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[[fallthrough]];
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case DTMF_DEC_RESPONSE_REPLY:
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gDTMF_ReplyState = DTMF_REPLY_AAAAA;
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break;
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case DTMF_DEC_RESPONSE_RING:
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gDTMF_DecodeRingCountdown_500ms = DTMF_decode_ring_countdown_500ms;
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break;
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default:
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case DTMF_DEC_RESPONSE_NONE:
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gDTMF_DecodeRingCountdown_500ms = 0;
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gDTMF_ReplyState = DTMF_REPLY_NONE;
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break;
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}
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if (gDTMF_IsGroupCall)
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gDTMF_ReplyState = DTMF_REPLY_NONE;
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}
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}
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}
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void DTMF_Reply(void)
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{
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uint16_t Delay;
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char String[23];
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const char *pString = NULL;
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switch (gDTMF_ReplyState)
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{
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case DTMF_REPLY_ANI:
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if (gDTMF_CallMode == DTMF_CALL_MODE_DTMF)
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{
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pString = gDTMF_String;
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}
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else
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{ // append our ID code onto the end of the DTMF code to send
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sprintf(String, "%s%c%s", gDTMF_String, gEeprom.DTMF_SEPARATE_CODE, gEeprom.ANI_DTMF_ID);
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pString = String;
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}
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break;
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case DTMF_REPLY_AB:
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pString = "AB";
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break;
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case DTMF_REPLY_AAAAA:
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sprintf(String, "%s%c%s", gEeprom.ANI_DTMF_ID, gEeprom.DTMF_SEPARATE_CODE, "AAAAA");
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pString = String;
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break;
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default:
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case DTMF_REPLY_NONE:
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if (gDTMF_CallState != DTMF_CALL_STATE_NONE ||
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gCurrentVfo->DTMF_PTT_ID_TX_MODE == PTT_ID_APOLLO ||
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gCurrentVfo->DTMF_PTT_ID_TX_MODE == PTT_ID_OFF ||
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gCurrentVfo->DTMF_PTT_ID_TX_MODE == PTT_ID_TX_DOWN)
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{
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gDTMF_ReplyState = DTMF_REPLY_NONE;
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return;
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}
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// send TX-UP DTMF
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pString = gEeprom.DTMF_UP_CODE;
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break;
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}
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gDTMF_ReplyState = DTMF_REPLY_NONE;
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if (pString == NULL)
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return;
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Delay = (gEeprom.DTMF_PRELOAD_TIME < 200) ? 200 : gEeprom.DTMF_PRELOAD_TIME;
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if (gEeprom.DTMF_SIDE_TONE)
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{ // the user will also hear the transmitted tones
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AUDIO_AudioPathOn();
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gEnableSpeaker = true;
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}
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SYSTEM_DelayMs(Delay);
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BK4819_EnterDTMF_TX(gEeprom.DTMF_SIDE_TONE);
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BK4819_PlayDTMFString(
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pString,
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1,
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gEeprom.DTMF_FIRST_CODE_PERSIST_TIME,
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gEeprom.DTMF_HASH_CODE_PERSIST_TIME,
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gEeprom.DTMF_CODE_PERSIST_TIME,
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gEeprom.DTMF_CODE_INTERVAL_TIME);
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AUDIO_AudioPathOff();
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gEnableSpeaker = false;
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BK4819_ExitDTMF_TX(false);
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}
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