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9 Commits
3db888e530
...
prettify
Author | SHA1 | Date | |
---|---|---|---|
269cbfdd22 | |||
c48c624f71 | |||
dccd3d27f4 | |||
2618d82e12 | |||
08b1bdf3fd | |||
d973bbf19a | |||
f4287eba7b | |||
3474d8ba17 | |||
ffb4163980 |
@ -27,7 +27,8 @@
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AsyncWebServer server(80);
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// Assign output variables to GPIO pins
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const int keyer = 32; //LED_BUILTIN for on-board (dev);//26 for LED; //32 for transmitter keyer
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//LED_BUILTIN for ESP32 onboard LED, 32 for transmitter keyer
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const int keyer = 32;
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const int blinker = LED_BUILTIN;
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RTC_DS3231 rtc; // set up RTC
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@ -37,10 +38,10 @@ const int alarmPin = 4; // pin to monitor for RTC alarms
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const char* ssid = WIFI_SSID;
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const char* password = WIFI_PASSWORD;
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const char* PARAM_STRING = "inputString";
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const char* PARAM_SEND = "inputSend";
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const char* PARAM_WPM = "inputWPM";
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const char* PARAM_MSG = "inputMsg";
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const char* PARAM_CMSG = "inputCustomMsg";
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const char* PARAM_FLOAT = "inputFloat";
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const char* PARAM_TIME = "inputTimeUnix";
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const char* PARAM_START = "inputStartTimeUnix";
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@ -50,11 +51,11 @@ const char* PARAM_CYCLEID = "inputCycleID";
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const char* PARAM_NTRANS = "inputNtransmitters";
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// Global variables
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String yourInputString;
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int yourInputSend;
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int yourInputWPM;
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int yourInputMsg;
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int yourInputMsg_old; // to save previous state and check changes
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String yourInputCustomMsg;
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float yourInputFloat;
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uint32_t yourInputTime; //to keep time
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uint32_t yourInputStartTimeUnix;
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@ -63,18 +64,23 @@ bool programRunning;
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int yourInputStepLength;
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int yourInputCycleID;
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int yourInputNtransmitters;
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//int step_length = 10000; // 10 secs
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//int cycle_id = 1; // number of this transmitter in cycle
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//int n_transmitters = 2; //number of transmitters total
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long start_millis = 0;
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long stop_millis = 0;
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long pause_until_millis = 0;
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// HTML web page to handle 3 input fields (inputString, inputSend, inputFloat)
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// HTML web page to handle input fields
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const char index_html[] PROGMEM = R"rawliteral(
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<!DOCTYPE HTML><html><head>
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<link rel="icon" href="data:,">
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<title>ESP Input Form</title>
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<title>Vulpes Radio Orienteering Controller</title>
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<style>
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.inv_message {
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display: none;
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}
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.inv_program {
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display: none;
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}
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</style>
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<meta name="viewport" content="width=device-width, initial-scale=1">
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<script type="text/javascript">
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// Utility from https://webreflection.medium.com/using-the-input-datetime-local-9503e7efdce
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@ -125,49 +131,89 @@ const char index_html[] PROGMEM = R"rawliteral(
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<h2>General Settings</h2>
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<p>Sending program:
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<select name="inputSend" id="send-program">
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<option value="0" >0 - Off</option>
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<option value="0">0 - Off</option>
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<option value="1">1 - Continuous</option>
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<option value="2">2 - Cycle</option>
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</select><br>
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Message:
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<select name="inputMsg" id="message">
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<option value="0">0 - TEST TEST TEST DE W1CDN</option>
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<option value="0">0 - Custom Message</option>
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<option value="1">1 - MOE</option>
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<option value="2">2 - MOI</option>
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<option value="3">3 - MOS</option>
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<option value="4">4 - MOH</option>
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<option value="5">5 - MO5</option>
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</select></p>
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</select><br>
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<h2>Cycle Settings</h2>
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<p>Only applies when <em>Sending Program</em> is set to "2 - Cycle". You cannot set a cycle start date more than a month in advance.</p>
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<p>Cycle start time <input type="datetime-local" id="js_start_time_unix_entry" /><br>
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Current value: <b><span id=current-start></span></b>
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<!-- Hidden unless "0 - Custom Message" is selected -->
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<span id="message0" class="inv_message">
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Custom message: <input type="text" name="inputCustomMsg" value = "%inputCustomMsg%"><br>
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</span>
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<!-- JS converts the entered start time to a unix timestamp, and copies that value
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to this hidden field so the user doesn't have to see it. -->
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<input type="hidden" name="inputStartTimeUnix" id="js_start_time_unix" /></p>
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<p>
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Step length: <input type="number" name="inputStepLength" min=1000 step=1000 value = %inputStepLength%> milliseconds <br>
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Cycle ID: <input type="number" name="inputCycleID" min=1 value = %inputCycleID%><br>
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Number of transmitters: <input type="number" name="inputNtransmitters" min=1 value = %inputNtransmitters%><br>
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Speed: <input type="number" name="inputWPM" value = %inputWPM%> WPM
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</p>
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<!-- Hidden unless "2 - Cycle" is selected -->
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<span id="program2" class="inv_program">
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<h2>Cycle Settings</h2>
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<p>Only applies when <em>Sending Program</em> is set to "2 - Cycle". You cannot set a cycle start date more than a month in advance.<br>
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Cycle start time <input type="datetime-local" id="js_start_time_unix_entry" /><br>
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Current value: <b><span id=current-start></span></b><br>
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<!-- JS converts the entered start time to a unix timestamp, and copies that value
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to this hidden field so the user doesn't have to see it. -->
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<input type="hidden" name="inputStartTimeUnix" id="js_start_time_unix" /></p>
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Step length: <input type="number" name="inputStepLength" min=1000 step=1000 value = %inputStepLength%> milliseconds <br>
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Cycle ID: <input type="number" name="inputCycleID" min=1 value = %inputCycleID%><br>
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Number of transmitters: <input type="number" name="inputNtransmitters" min=1 value = %inputNtransmitters%><br>
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</p>
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</span>
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<!-- This field is hidden so people don't change the submit time (it will be wrong).
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The value is automatically filled in with JS. -->
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<input type="hidden" name="inputTimeUnix" id="js_time_unix">
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<!-- Extra fields just in case I need them -->
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<input type="hidden" name="inputWPM" value = %inputWPM%>
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<input type="hidden" name="inputString" value = %inputString%>
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<input type="hidden" name="inputFloat" value = %inputFloat%>
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<input type="submit" value="Submit"">
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</form>
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<iframe style="display:none" name="hidden-form" id="hidden-form"></iframe>
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<script type="text/javascript">
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// Show more stuff depending on selected values
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// https://stackoverflow.com/a/24849350
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show_message = function () {
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'use strict';
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var vis_message = document.querySelector('.vis_message'),
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target = document.getElementById("message"+this.value);
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if (vis_message !== null) {
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vis_message.className = 'inv_message';
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}
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if (target !== null ) {
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target.className = 'vis_message';
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}
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}
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show_program = function () {
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'use strict';
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var vis_program = document.querySelector('.vis_program'),
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target = document.getElementById("program"+this.value);
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if (vis_program !== null) {
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vis_program.className = 'inv_program';
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}
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if (target !== null ) {
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target.className = 'vis_program';
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}
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}
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document
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.getElementById('message')
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.addEventListener('change', show_message);
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document
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.getElementById('send-program')
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.addEventListener('change', show_program);
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</script>
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</body></html>)rawliteral";
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@ -211,8 +257,8 @@ void writeFile(fs::FS &fs, const char * path, const char * message){
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// Replaces placeholder in web UI with stored values
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String processor(const String& var){
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//Serial.println(var);
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if(var == "inputString"){
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return readFile(SPIFFS, "/inputString.txt");
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if(var == "inputCustomMsg"){
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return readFile(SPIFFS, "/inputCustomMsg.txt");
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}
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else if(var == "inputSend"){
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return readFile(SPIFFS, "/inputSend.txt");
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@ -247,15 +293,8 @@ String processor(const String& var){
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// Set up arduinomorse pin and default WPM
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LEDMorseSender sender(blinker, 10.0f) ; // the 'f' makes sure this is a float
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// TODO also for keyer once blinker works
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// Speed is milliseconds per dit, which is 1000 * (60 / (50 * WPM))
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// 60 is 20 wpm, 120 is 10 wpm, 90 is 15 wpm, etc.
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// https://morsecode.world/international/timing.html
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float wpm = 10;
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float ms_per_dit = 1000 * (60 / (50 * wpm));
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int word_space_ms = ms_per_dit * 7;
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LEDMorseSender sender_blink(blinker, 10.0f); //f makes it a float
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LEDMorseSender sender_key(keyer, 10.0f);
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//================================================================================
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// setup(): stuff that only gets done once, after power up (KB1OIQ's description)
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@ -264,7 +303,8 @@ void setup() {
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Serial.begin(115200);
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// Get arduinomorse ready to go
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sender.setup();
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sender_blink.setup();
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sender_key.setup();
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pinMode(alarmPin, INPUT_PULLUP); // Set alarm pin as pullup
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@ -297,10 +337,10 @@ void setup() {
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// Initialize the output variables as outputs
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pinMode(keyer, OUTPUT);
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//pinMode(blinker, OUTPUT);
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pinMode(blinker, OUTPUT);
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// Set outputs to LOW
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digitalWrite(keyer, LOW);
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//digitalWrite(blinker, LOW);
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digitalWrite(blinker, LOW);
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// Initialize SPIFFS
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SPIFFS.begin(true);
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@ -314,30 +354,39 @@ void setup() {
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}
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// Read in existing data
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yourInputString = readFile(SPIFFS, "/inputString.txt");
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yourInputCustomMsg = readFile(SPIFFS, "/inputCustomMsg.txt");
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yourInputSend = readFile(SPIFFS, "/inputSend.txt").toInt();
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yourInputWPM = readFile(SPIFFS, "/inputWPM.txt").toInt();
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yourInputWPM = readFile(SPIFFS, "/inputWPM.txt").toFloat();
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yourInputMsg = readFile(SPIFFS, "/inputMsg.txt").toInt();
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yourInputFloat = readFile(SPIFFS, "/inputFloat.txt").toFloat();
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yourInputStartTimeUnix = readFile(SPIFFS, "/inputStartTimeUnix.txt").toInt();
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yourInputStepLength = readFile(SPIFFS, "/inputStepLength.txt").toInt();
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yourInputCycleID = readFile(SPIFFS, "/inputCycleID.txt").toInt();
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yourInputNtransmitters = readFile(SPIFFS, "/inputNtransmitters.txt").toInt();
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// Set WPM from saved value
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sender_blink.setWPM(yourInputWPM);
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sender_key.setWPM(yourInputWPM);
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// On restart, keep doing what you were doing before
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yourInputMsg_old = yourInputMsg;
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if(yourInputMsg == 0){
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sender.setMessage(String("test test test de w1cdn "));
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sender_blink.setMessage(yourInputCustomMsg);
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sender_key.setMessage(yourInputCustomMsg);
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} else if(yourInputMsg == 1){
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sender.setMessage(String("moe "));
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sender_blink.setMessage(String("moe "));
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sender_key.setMessage(String("moe "));
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} else if(yourInputMsg == 2){
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sender.setMessage(String("moi "));
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sender_blink.setMessage(String("moi "));
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sender_key.setMessage(String("moi "));
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} else if(yourInputMsg == 3){
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sender.setMessage(String("mos "));
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sender_blink.setMessage(String("mos "));
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sender_key.setMessage(String("mos "));
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} else if(yourInputMsg == 4){
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sender.setMessage(String("moh "));
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sender_blink.setMessage(String("moh "));
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sender_key.setMessage(String("moh "));
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} else if(yourInputMsg == 5){
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sender.setMessage(String("mo5 "));
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sender_blink.setMessage(String("mo5 "));
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sender_key.setMessage(String("mo5 "));
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}
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WiFi.mode(WIFI_STA);
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@ -355,14 +404,17 @@ void setup() {
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request->send_P(200, "text/html", index_html, processor);
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});
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// Send a GET request to <ESP_IP>/get?inputString=<inputMessage>
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// Send a GET request to <ESP_IP>/get?inputCustomMsg=<inputMessage>
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server.on("/get", HTTP_GET, [] (AsyncWebServerRequest *request) {
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String inputMessage;
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// GET inputString value on <ESP_IP>/get?inputString=<inputMessage>
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if (request->hasParam(PARAM_STRING)) {
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inputMessage = request->getParam(PARAM_STRING)->value();
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writeFile(SPIFFS, "/inputString.txt", inputMessage.c_str());
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yourInputString = inputMessage;
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// GET inputCustomMsg value on <ESP_IP>/get?inputCustomMsg=<inputMessage>
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if (request->hasParam(PARAM_CMSG)) {
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inputMessage = request->getParam(PARAM_CMSG)->value();
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// arduinomorse needs lowercase characters
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std::transform(inputMessage.begin(), inputMessage.end(), inputMessage.begin(), ::tolower);
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writeFile(SPIFFS, "/inputCustomMsg.txt", inputMessage.c_str());
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yourInputCustomMsg = inputMessage;
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}
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// GET inputSend value on <ESP_IP>/get?inputSend=<inputMessage>
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if (request->hasParam(PARAM_SEND)) {
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@ -380,7 +432,9 @@ void setup() {
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if (request->hasParam(PARAM_WPM)) {
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inputMessage = request->getParam(PARAM_WPM)->value();
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writeFile(SPIFFS, "/inputWPM.txt", inputMessage.c_str());
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yourInputWPM = inputMessage.toInt();
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yourInputWPM = inputMessage.toFloat();
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sender_blink.setWPM(yourInputWPM);
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sender_key.setWPM(yourInputWPM);
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}
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// GET inputMsg value on <ESP_IP>/get?inputMsg=<inputMessage>
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if (request->hasParam(PARAM_MSG)) {
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@ -392,17 +446,23 @@ void setup() {
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// Check the message every time the form is submitted.
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if(yourInputMsg == 0){
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sender.setMessage(String("test test test de w1cdn "));
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sender_blink.setMessage(yourInputCustomMsg);
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sender_key.setMessage(yourInputCustomMsg);
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} else if(yourInputMsg == 1){
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sender.setMessage(String("moe "));
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sender_blink.setMessage(String("moe "));
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sender_key.setMessage(String("moe "));
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} else if(yourInputMsg == 2){
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sender.setMessage(String("moi "));
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sender_blink.setMessage(String("moi "));
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sender_key.setMessage(String("moi "));
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} else if(yourInputMsg == 3){
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sender.setMessage(String("mos "));
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sender_blink.setMessage(String("mos "));
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sender_key.setMessage(String("mos "));
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} else if(yourInputMsg == 4){
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sender.setMessage(String("moh "));
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sender_blink.setMessage(String("moh "));
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sender_key.setMessage(String("moh "));
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} else if(yourInputMsg == 5){
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sender.setMessage(String("mo5 "));
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sender_blink.setMessage(String("mo5 "));
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sender_key.setMessage(String("mo5 "));
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}
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}
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// GET inputStepLength value on <ESP_IP>/get?inputStepLength=<inputMessage>
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@ -497,26 +557,6 @@ void setup() {
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void loop() {
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// See which message we are sending
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// Only do this when the message has been updated.
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// if(yourInputMsg != yourInputMsg_old){
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// if(yourInputMsg == 0){
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// sender.setMessage(String("test test test de w1cdn "));
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// } else if(yourInputMsg == 1){
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// sender.setMessage(String("moe "));
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// } else if(yourInputMsg == 2){
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// sender.setMessage(String("moi "));
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// } else if(yourInputMsg == 3){
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// sender.setMessage(String("mos "));
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// } else if(yourInputMsg == 4){
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// sender.setMessage(String("moh "));
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// } else if(yourInputMsg == 5){
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// sender.setMessage(String("mo5 "));
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// }
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// // Keeps the key/led from locking up
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// yourInputMsg_old = yourInputMsg;
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// }
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|
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// This statement from https://github.com/garrysblog/DS3231-Alarm-With-Adafruit-RTClib-Library/blob/master/DS3231-RTClib-Adafruit-Alarm-Poll-alarmFired/DS3231-RTClib-Adafruit-Alarm-Poll-alarmFired.ino
|
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// Check if alarm by polling SQW alarm pin
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if((yourInputSend == 2) & (digitalRead(alarmPin) == LOW)) {
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@ -542,33 +582,39 @@ void loop() {
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// Subtract 2 rather than 1 here to account for start_millis duration at beginning of repeat.
|
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pause_until_millis = stop_millis + (yourInputStepLength * (yourInputNtransmitters - 2));
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}
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//sender.startSending();
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programRunning = true;
|
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startProgram = false;
|
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}
|
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// if you want to send continuous code, and it's not sending, then start it up
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if((yourInputSend == 1)){
|
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if (!sender.continueSending()){
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// Set the internal counters to the message's beginning.
|
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// Here, this results in repeating the message indefinitely.
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sender.startSending();
|
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}
|
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// If not sending, start sending. Yes, these need to be separate statements.
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if (!sender_blink.continueSending()){
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sender_blink.startSending();
|
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}
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if (!sender_key.continueSending()){
|
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sender_key.startSending();
|
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}
|
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// if you want to send cycle code and it's not sending, then start it up
|
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} else if((yourInputSend == 2) & (programRunning == true)){
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if((millis() < start_millis)){
|
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// Shut the pin off manually
|
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digitalWrite(blinker, LOW);
|
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digitalWrite(keyer, LOW);
|
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} else if((millis() >= start_millis) & (millis() <= stop_millis)){
|
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if (!sender.continueSending()){
|
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// Set the internal counters to the message's beginning.
|
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// Here, this results in repeating the message indefinitely.
|
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sender.startSending();
|
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// If not sending, start sending. Yes, these need to be separate statements
|
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// for the blinker and keyer.
|
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if (!sender_blink.continueSending()){
|
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sender_blink.startSending();
|
||||
}
|
||||
if (!sender_key.continueSending()){
|
||||
sender_key.startSending();
|
||||
}
|
||||
} else if((millis() >= stop_millis) & (millis() <= pause_until_millis)){
|
||||
// do nothing in this case -- in between cycles
|
||||
// Shut the pin off manually
|
||||
digitalWrite(blinker, LOW);
|
||||
digitalWrite(keyer, LOW);
|
||||
} else if((millis() >= pause_until_millis)){
|
||||
startProgram = true;
|
||||
}
|
||||
@ -577,9 +623,9 @@ void loop() {
|
||||
// do we need something here?
|
||||
// if you don't want to send code
|
||||
} else if(yourInputSend == 0){
|
||||
//sender.setMessage(String("")) ; // Not sure this is the right way to stop things.
|
||||
// Shut the pin off manually
|
||||
digitalWrite(blinker, LOW);
|
||||
digitalWrite(keyer, LOW);
|
||||
}
|
||||
|
||||
}
|
Reference in New Issue
Block a user