2018-03-09 08:02:10 -05:00
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/**********************************************************************************
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WSPR SENDER for uBITX by KD8CEC
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Some of the code that sends WSPR referenced the code in G3ZIL.
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Thanks to G3ZIL for sharing great code.
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Due to the limited memory of uBITX, I have implemented at least only a few of the codes in uBITX.
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Thanks for testing
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Beta Tester :
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-----------------------------------------------------------------------------
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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**********************************************************************************/
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#include <arduino.h>
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#include <EEPROM.h>
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#include "ubitx.h"
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//begin of test
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byte WsprToneCode[164];
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long lastTime=0;
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unsigned long TX_MSNB_P2; // Si5351 register MSNB_P2 PLLB for Tx
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unsigned long TX_P2; // Variable values for MSNB_P2 which defines the frequencies for the data
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extern int enc_read(void);
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byte WsprMSGCount = 0;
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#define PTT (A3)
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#define WSPR_BAND1 401
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extern uint8_t Wspr_Reg1[8]; //3, 4, 5, 6, 7
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extern uint8_t Wspr_Reg2[8]; //2, 3, 4
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void SendWSPRManage()
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{
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int knob = 0;
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byte knobPosition = 0;
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char isNeedDisplayInfo = 0;
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char nowSelectedIndex = 0;
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char nowWsprStep = 0; //0 : select Message, 1 : select band, 2 : send
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char selectedWsprMessageIndex = -1;
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char selectedWsprBandIndex = -1;
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unsigned long WsprTXFreq = 0;
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unsigned int WsprMultiChan = 0;
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unsigned long prevFreq;
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char loopIndex;
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delay_background(500, 0);
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//Readed WsprMSGCount, WsprTone
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while(1)
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{
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knob = enc_read();
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if (knobPosition > 0 && knob < 0)
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knobPosition--;
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else if (knob > 0 && (knobPosition <= (nowWsprStep == 0 ? WsprMSGCount : WSPR_BAND_COUNT) * 10 -2))
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knobPosition++;
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nowSelectedIndex = knobPosition / 10;
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if (nowWsprStep == 0) //select Message status
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{
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printLineF2(F("WSPR:"));
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if (selectedWsprMessageIndex != nowSelectedIndex)
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{
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selectedWsprMessageIndex = nowSelectedIndex;
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int wsprMessageBuffIndex = selectedWsprMessageIndex * 46;
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//Display WSPR Name tag
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printLineFromEEPRom(0, 6, wsprMessageBuffIndex, wsprMessageBuffIndex + 4, 1);
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//Load WSPR Tonecode
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//Read Tone Code
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for (int i = 0; i < 41; i++)
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{
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byte readData = EEPROM.read(WSPR_MESSAGE1 + 5 + (wsprMessageBuffIndex) + i); //NAME TAG 5, MESSAGE 41 = 46
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WsprToneCode[i * 4 + 0] = readData & 3;
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WsprToneCode[i * 4 + 1] = (readData >> 2) & 3;
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WsprToneCode[i * 4 + 2] = (readData >> 4) & 3;
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WsprToneCode[i * 4 + 3] = (readData >> 6) & 3;
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}
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}
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else if (btnDown())
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{
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nowWsprStep = 1; //Change Status to Select Band
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knobPosition = 0;
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nowSelectedIndex = 0;
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delay_background(500, 0);
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}
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}
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else if (nowWsprStep == 1)
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{
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//printLineF2(F("Select Band"));
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if (selectedWsprBandIndex != nowSelectedIndex)
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{
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selectedWsprBandIndex = nowSelectedIndex;
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int bandBuffIndex = WSPR_BAND1 + selectedWsprBandIndex * 14;
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EEPROM.get(bandBuffIndex, WsprTXFreq);
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EEPROM.get(bandBuffIndex + 4, WsprMultiChan);
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/*
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//3, 4, 5, 6, 7
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Wspr_Reg1[3] = EEPROM.read(bandBuffIndex + 6);
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Wspr_Reg1[4] = EEPROM.read(bandBuffIndex + 7);
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Wspr_Reg1[5] = EEPROM.read(bandBuffIndex + 8);
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Wspr_Reg1[6] = EEPROM.read(bandBuffIndex + 9);
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Wspr_Reg1[7] = EEPROM.read(bandBuffIndex + 10);
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*/
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for (loopIndex = 3; loopIndex < 8; loopIndex++)
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Wspr_Reg1[loopIndex] = EEPROM.read(bandBuffIndex + loopIndex + 3);
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/*
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Wspr_Reg2[2] = EEPROM.read(bandBuffIndex + 11);
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Wspr_Reg2[3] = EEPROM.read(bandBuffIndex + 12);
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Wspr_Reg2[4] = EEPROM.read(bandBuffIndex + 13);
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*/
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//2, 3, 4
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for (loopIndex = 2; loopIndex < 5; loopIndex++)
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Wspr_Reg2[loopIndex] = EEPROM.read(bandBuffIndex + loopIndex + 9);
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TX_MSNB_P2 = ((unsigned long)Wspr_Reg1[5] & 0x0F) << 16 | ((unsigned long)Wspr_Reg1[6]) << 8 | Wspr_Reg1[7];
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}
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ltoa(WsprTXFreq, b, DEC);
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if (digitalRead(PTT) == 0)
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strcpy(c, "SEND:");
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else
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strcpy(c, "PTT->");
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strcat(c, b);
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printLine1(c);
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if (digitalRead(PTT) == 0)
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{
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//printLineF1(F("Transmitting"));
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//SEND WSPR
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2018-03-12 12:17:06 -04:00
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//If you need to consider the Rit and Sprite modes, uncomment them below.
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//remark = To reduce the size of the program
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//prevFreq = frequency;
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//frequency = WsprTXFreq;
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2018-03-09 08:02:10 -05:00
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startTx(TX_CW, 0);
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2018-03-24 14:17:04 -04:00
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setTXFilters(WsprTXFreq);
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2018-03-09 08:02:10 -05:00
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//Start WSPR
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Set_WSPR_Param();
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digitalWrite(CW_KEY, 1);
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for (int i = 0; i < 162; i++)
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{ // Now this is the message loop
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lastTime = millis(); // Store away the time when the last message symbol was sent
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TX_P2 = TX_MSNB_P2 + WsprMultiChan * WsprToneCode[i]; // This represents the 1.46 Hz shift and is correct only for the bands specified in the array
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TXSubFreq(TX_P2); // TX at the appropriate channel frequency for....
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//if (btnDown())
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// break;
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while (millis() < lastTime + 683){} // .... 0,683 seconds
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}
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digitalWrite(CW_KEY, 0);
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2018-03-12 12:17:06 -04:00
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stopTx(); //call setFrequency -> recovery TX Filter
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//frequency = prevFreq;
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2018-03-09 08:02:10 -05:00
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selectedWsprBandIndex = -1;
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} //end of PTT Check
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else if (btnDown())
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{
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return;
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}
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} //end of status check
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//delay_background(50, 1);
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} //end of while
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}
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