Merge pull request #1 from StrangeD0s/update-irremote-version

Update irremote version
This commit is contained in:
StrangeD0s
2024-07-21 19:10:17 +02:00
committed by GitHub
6 changed files with 618 additions and 872 deletions
+2
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@@ -30,3 +30,5 @@
*.exe *.exe
*.out *.out
*.app *.app
secrets.h
+30
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@@ -1,3 +1,33 @@
# Arduino Sony RM-D27M Minidisc Namer # Arduino Sony RM-D27M Minidisc Namer
This is an arduino sketch to make an IR-remote control for easier title renaming on a Sony MDS-JE510 minidisc deck. This is an arduino sketch to make an IR-remote control for easier title renaming on a Sony MDS-JE510 minidisc deck.
- Add webserver
- Add ir remote library
- Add SD-Card support to load html and css
Store WiFi secrets in a secrets.h like this:
```c
#define SSID "your-ssid"
#define PASSWORD "your-password"
```
## Circuit
Circuit:
- LED attached to pin 13 (optional)
- IR Transmitter attached to pin 4 (connect to 5v or 3v3)
- SD-Module to load HTML and CSS from SD-card
Connect the SD card to the following pins:
SD Card | ESP32
------- | -----
3v3 | 3.3V
CS | 5
MOSI | 23
CLK | 18
MISO | 19
GND | GND
+333
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@@ -0,0 +1,333 @@
/*
WebServer to use as replacement for Sony RM-D27M to control Sony MiniDisc decks.
Based on the the following sketches:
- SimpleWifiServer example
- ESP32/SD_Test
- IRremote/SendDemo
If the IP address of your shield is yourAddress:
http://yourAddress/H turns the LED on
http://yourAddress/L turns it off
Circuit:
- LED attached to pin 13 (optional)
- IR Transmitter attached to pin 4 (connect to 5v or 3v3)
- SD-Module to load HTML and CSS from SD-card
Connect the SD card to the following pins:
SD Card | ESP32
------- | -----
3v3 | 3.3V
CS | 5
MOSI | 23
CLK | 18
MISO | 19
GND | GND
developed for the ESP32vn IoT Uni board 2024
*/
#include "FS.h"
#include "SD.h"
#include "SPI.h"
#include <WiFi.h>
#include <IRremote.hpp>
#include "secrets.h"
#include "defines.h"
WiFiServer server(80);
/**** SD-Card Functions ****/
void listDir(fs::FS &fs, const char *dirname, uint8_t levels)
{
Serial.printf("Listing directory: %s\n", dirname);
File root = fs.open(dirname);
if (!root)
{
Serial.println("Failed to open directory");
return;
}
if (!root.isDirectory())
{
Serial.println("Not a directory");
return;
}
File file = root.openNextFile();
while (file)
{
if (file.isDirectory())
{
Serial.print(" DIR : ");
Serial.println(file.name());
if (levels)
{
listDir(fs, file.path(), levels - 1);
}
}
else
{
Serial.print(" FILE: ");
Serial.print(file.name());
Serial.print(" SIZE: ");
Serial.println(file.size());
}
file = root.openNextFile();
}
}
void readFile(fs::FS &fs, const char *path)
{
Serial.printf("Reading file: %s\n", path);
File file = fs.open(path);
if (!file)
{
Serial.println("Failed to open file for reading");
return;
}
Serial.print("Read from file: ");
while (file.available())
{
Serial.write(file.read());
}
file.close();
}
void testFileIO(fs::FS &fs, const char *path)
{
File file = fs.open(path);
static uint8_t buf[512];
size_t len = 0;
uint32_t start = millis();
uint32_t end = start;
if (file)
{
len = file.size();
size_t flen = len;
start = millis();
while (len)
{
size_t toRead = len;
if (toRead > 512)
{
toRead = 512;
}
file.read(buf, toRead);
len -= toRead;
}
end = millis() - start;
Serial.printf("%u bytes read for %u ms\n", flen, end);
file.close();
}
else
{
Serial.println("Failed to open file for reading");
}
file = fs.open(path, FILE_WRITE);
if (!file)
{
Serial.println("Failed to open file for writing");
return;
}
size_t i;
start = millis();
for (i = 0; i < 2048; i++)
{
file.write(buf, 512);
}
end = millis() - start;
Serial.printf("%u bytes written for %u ms\n", 2048 * 512, end);
file.close();
}
/* ============ IR Functions ============ */
void sendButton(int command)
{
Serial.println(command);
Serial.flush();
IrSender.sendSony(0xF, command, 2, 12);
}
/* ============ Setup ============ */
void setup()
{
Serial.begin(115200);
pinMode(LED_PIN, OUTPUT); // set the LED pin mode
delay(10);
/* ============ SD-Card Setup ============ */
if (!SD.begin())
{
Serial.println("Card Mount Failed");
return;
}
uint8_t cardType = SD.cardType();
if (cardType == CARD_NONE)
{
Serial.println("No SD card attached");
return;
}
Serial.print("SD Card Type: ");
if (cardType == CARD_MMC)
{
Serial.println("MMC");
}
else if (cardType == CARD_SD)
{
Serial.println("SDSC");
}
else if (cardType == CARD_SDHC)
{
Serial.println("SDHC");
}
else
{
Serial.println("UNKNOWN");
}
uint64_t cardSize = SD.cardSize() / (1024 * 1024);
Serial.printf("SD Card Size: %lluMB\n", cardSize);
listDir(SD, "/", 0);
readFile(SD, "/index.html");
Serial.printf("Total space: %lluMB\n", SD.totalBytes() / (1024 * 1024));
Serial.printf("Used space: %lluMB\n", SD.usedBytes() / (1024 * 1024));
/* ============ IR Setup ============ */
IrSender.begin(IR_SEND_PIN, ENABLE_LED_FEEDBACK, USE_DEFAULT_FEEDBACK_LED_PIN); // Specify send pin and enable feedback LED at default feedback LED pin
Serial.println();
Serial.print(F("Send IR signals at pin "));
Serial.println(IR_SEND_PIN);
/* ============ Webserver Setup ============ */
// We start by connecting to a WiFi network
Serial.println();
Serial.println();
Serial.print("Connecting to ");
Serial.println(SSID);
WiFi.begin(SSID, PASSWORD);
while (WiFi.status() != WL_CONNECTED)
{
delay(500);
Serial.print(".");
}
Serial.println();
Serial.println("WiFi connected.");
Serial.println("IP address: ");
Serial.println(WiFi.localIP());
server.begin();
}
void loop()
{
WiFiClient client = server.available(); // listen for incoming clients
if (client)
{ // if you get a client,
Serial.println("New Client."); // print a message out the serial port
String currentLine = ""; // make a String to hold incoming data from the client
while (client.connected())
{ // loop while the client's connected
if (client.available())
{ // if there's bytes to read from the client,
char c = client.read(); // read a byte, then
Serial.write(c); // print it out the serial monitor
if (c == '\n')
{ // if the byte is a newline character
// if the current line is blank, you got two newline characters in a row.
// that's the end of the client HTTP request, so send a response:
if (currentLine.length() == 0)
{
// HTTP headers always start with a response code (e.g. HTTP/1.1 200 OK)
// and a content-type so the client knows what's coming, then a blank line:
client.println("HTTP/1.1 200 OK");
client.println("Content-type:text/html");
client.println();
// the content of the HTTP response follows the header:
client.print("Click <a href=\"/H\">here</a> to turn the LED on pin 13 on.<br>Click <a href=\"/L\">here</a> to turn the LED on pin 13 off.<br><a href=\"/power\">power</a><br><a href=\"/play\">play</a><br><a href=\"/pause\">pause</a><br><a href=\"/stop\">stop</a><br><a href=\"/prev\">previous track</a><br><a href=\"/next\">next track</a><br>");
client.print("<form action=\"/api/control-deck\" method=\"post\"><button name=\"control\" type=\"submit\" value=\"play\">play</button></form><br><form action=\"/api/control-deck\" method=\"get\"><input name=\"textinput\" type=\"text\" /><button type=\"submit\">send</button></form><br>");
// The HTTP response ends with another blank line:
client.println();
// break out of the while loop:
break;
}
else
{ // if you got a newline, then clear currentLine:
currentLine = "";
}
}
else if (c != '\r')
{ // if you got anything else but a carriage return character,
currentLine += c; // add it to the end of the currentLine
}
// Check to see if the client request was "GET /H" or "GET /L":
if (currentLine.endsWith("GET /H"))
{
digitalWrite(LED_PIN, HIGH); // GET /H turns the LED on
}
if (currentLine.endsWith("GET /L"))
{
digitalWrite(LED_PIN, LOW); // GET /L turns the LED off
}
if (currentLine.endsWith("GET /power"))
{
sendButton(POWER);
}
if (currentLine.endsWith("GET /play"))
{
sendButton(PLAY);
}
if (currentLine.endsWith("GET /pause"))
{
sendButton(PAUSE);
}
if (currentLine.endsWith("GET /stop"))
{
sendButton(STOP);
}
if (currentLine.endsWith("GET /prev"))
{
sendButton(PREV);
}
if (currentLine.endsWith("GET /next"))
{
sendButton(NEXT);
}
if (currentLine.endsWith("POST /api/control-deck"))
{
Serial.println("POST");
char c = client.read();
Serial.print(c);
}
}
}
// close the connection:
client.stop();
Serial.println("Client Disconnected.");
}
}
+19 -6
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@@ -1,5 +1,18 @@
// Pin definitions
#define IR_SEND_PIN 4
#define LED_PIN 13
// IR commands (Sony 12bit)
#define POWER 0x15
#define PLAY 0x2A
#define PAUSE 0x29
#define STOP 0x28
#define PREV 0x20 //geraten
#define NEXT 0x21
//old commands
#define EJECT 0x69E #define EJECT 0x69E
#define POWER 0xA9E //#define POWER 0xA9E
#define DISPLAY 0x19E #define DISPLAY 0x19E
#define SCROLL 0x99E #define SCROLL 0x99E
#define CONTINUE 0xB9E #define CONTINUE 0xB9E
@@ -41,11 +54,11 @@
#define CHAR 0x6DE #define CHAR 0x6DE
#define NUM 0xEDE #define NUM 0xEDE
#define CLEAR 0xF1E #define CLEAR 0xF1E
#define PLAY 0x55E // #define PLAY 0x55E
#define PAUSE 0x95E // #define PAUSE 0x95E
#define STOP 0x15E // #define STOP 0x15E
#define AMSPREV 0x05E // #define AMSPREV 0x05E
#define AMSNEXT 0x85E // #define AMSNEXT 0x85E
#define RECORD 0xB5E #define RECORD 0xB5E
#define REWIND 0xD5E #define REWIND 0xD5E
#define FASTFORWARD 0x35E #define FASTFORWARD 0x35E
-866
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@@ -1,866 +0,0 @@
// modified for use with Sony RM-D27M
// based on https://hackaday.io/project/165504-sony-minidisc-namer by smartroad
#include <IRremote.h> // Muss installiert werden. Funktioniert mit v2.5.0 Siehe https://github.com/Arduino-IRremote/Arduino-IRremote
#include "defines.h"
IRsend irsend;
char inputChars[64];
byte charCount = 0;
byte mode = 0; // Capitals = 0, Lowercase = 1
byte targetMode = 0;
boolean commandMode = true; // True = control playback | False = name entry mode
int totalCount = 0;
byte blockCount = 0;
// define the IT sendPin:
uint8_t tSendPin = 4; // IO4 auf AZ D1
/* start testing code for hardware button*/
// constants won't change. They're used here to set pin numbers:
uint8_t buttonPin = 14; // the number of the pushbutton pin
uint8_t ledPin = 2; // the number of the LED pin
// variables will change:
uint8_t buttonState = 0; // variable for reading the pushbutton status
/* end testing code */
void setup()
{
pinMode(2, OUTPUT);
// Initialize serial monitor:
Serial.begin(115200);
while (!Serial)
;
// helpText();
pinMode(tSendPin, OUTPUT);
digitalWrite(tSendPin, LOW);
/* start testing code */
// initialize the LED pin as an output:
pinMode(ledPin, OUTPUT);
// initialize the pushbutton pin as an input:
pinMode(buttonPin, INPUT);
digitalWrite(ledPin, HIGH);
/* end testing code */
}
void loop()
{
// blink(); //! Der Loop wird gerade nur einmal ausgeführt und stoppt bei der serial monitor eingabe. Bei jeder Eingabe erfolgt ein neue Loop. Alle test-Funktionen laufen durch.
// simpleButtonTest();
buttonPlayTest();
// oldSerialInput();
}
void simpleButtonTest()
{
/* start testing code */
// read the state of the pushbutton value:
buttonState = digitalRead(buttonPin);
// check if the pushbutton is pressed. If it is, the buttonState is HIGH:
if (buttonState == HIGH)
{
// write to serial monitor:
Serial.println(F("button state is HIGH"));
// turn LED on:
digitalWrite(ledPin, HIGH);
}
else
{
// turn LED off:
digitalWrite(ledPin, LOW);
}
/* end testing code */
}
void buttonPlayTest()
{
/* start testing code */
// read the state of the pushbutton value:
buttonState = digitalRead(buttonPin);
// check if the pushbutton is pressed. If it is, the buttonState is HIGH:
if (buttonState == HIGH)
{
// write to serial monitor:
Serial.println(F("button state is HIGH"));
// turn LED on:
digitalWrite(ledPin, HIGH);
Serial.println(F("Play"));
sendButton(PLAY);
}
else
{
// turn LED off:
digitalWrite(ledPin, LOW);
}
/* end testing code */
}
void oldSerialInput()
{
if (commandMode)
{
if (charCount > 0)
{
Serial.println(F("\n\r\u001b[34;1mCONFIRM NAME INPUT\u001b[0m"));
Serial.println(F("Y - Yes or N - NO"));
}
else
{
Serial.print(F("\n\r\n\rEnter Command (H for help): "));
}
}
while (!Serial.available())
{
}
if (commandMode)
{
char serialChar = Serial.read();
if (charCount == 0)
{
if (serialChar == 'b')
{
Serial.println(F("Next Track"));
sendButton(AMSNEXT);
}
else if (serialChar == 'z')
{
Serial.println(F("Previous Track"));
sendButton(AMSPREV);
}
else if (serialChar == 'x')
{
Serial.println(F("Play"));
sendButton(PLAY);
}
else if (serialChar == 'c')
{
Serial.println(F("Pause"));
sendButton(PAUSE);
}
else if (serialChar == 'v')
{
Serial.println(F("Stop"));
sendButton(STOP);
}
else if (serialChar == 'l')
{
Serial.println(F("Eject"));
sendButton(EJECT);
}
else if (serialChar == 's')
{
Serial.println(F("Starting Record"));
sendButton(RECORD);
}
else if (serialChar == 'S')
{
Serial.println(F("Music Sync Recording"));
sendButton(MUSICSYNC);
}
else if (serialChar == 'd')
{
Serial.println(F("Display Mode"));
sendButton(DISPLAY);
}
else if (serialChar == 'D')
{
Serial.println(F("Scrolling Display"));
sendButton(SCROLL);
}
else if (serialChar == 'r')
{
Serial.println(F("Repeat Mode"));
sendButton(REPEATMODE);
}
else if (serialChar == 'R')
{
Serial.println(F("Section Repeat (A<>B)"));
sendButton(ATOB);
}
else if (serialChar == '1')
{
Serial.print(F("1"));
// sendButton(NUMBER1);
digitalWrite(ledPin, HIGH);
Serial.print(F("set ledPin HIGH"));
}
else if (serialChar == '2')
{
Serial.print(F("2"));
// sendButton(NUMBER2);
digitalWrite(ledPin, LOW);
Serial.print(F("set ledPin LOW"));
}
else if (serialChar == '3')
{
Serial.print(F("3"));
sendButton(NUMBER3);
}
else if (serialChar == '4')
{
Serial.print(F("4"));
sendButton(NUMBER4);
}
else if (serialChar == '5')
{
Serial.print(F("5"));
sendButton(NUMBER5);
}
else if (serialChar == '6')
{
Serial.print(F("6"));
sendButton(NUMBER6);
}
else if (serialChar == '7')
{
Serial.print(F("7"));
sendButton(NUMBER7);
}
else if (serialChar == '8')
{
Serial.print(F("8"));
sendButton(NUMBER8);
}
else if (serialChar == '9')
{
Serial.print(F("9"));
sendButton(NUMBER9);
}
else if (serialChar == '0')
{
Serial.print(F("0"));
sendButton(NUMBER10);
}
else if (serialChar == '=' || serialChar == '+')
{
Serial.print(F(">10"));
sendButton(LARGER25);
}
else if (serialChar == '#')
{
Serial.print(F("CLEARING MEMUSAGE"));
totalCount = 0;
blockCount = 0;
memUsed();
}
else if (serialChar == '`')
{ // change to naming mode
Serial.println(F("Name Mode"));
commandMode = false;
memUsed();
Serial.println(F("\n\rType name and press enter to send:\u001b[37;1m"));
}
else if (serialChar == 'H' || serialChar == 'h')
{ // stop
Serial.println(F("Help\r\n\r\n"));
helpText();
}
}
else
{
if (serialChar == 'Y' || serialChar == 'y')
{ // confirm name
totalCount += charCount;
blockCount += (charCount + 6) / 7;
memUsed();
charCount = 0;
sendButton(NAME);
}
else if (serialChar == 'N' || serialChar == 'n')
{ // cancel name
memUsed();
charCount = 0;
sendButton(STOP);
}
}
}
else
{
inputChars[charCount] = Serial.read();
if (inputChars[charCount] == 10 || inputChars[charCount] == 13)
{
Serial.print(F("\u001b[0m"));
if (nameCheck())
sendName();
else
charCount = 0;
commandMode = true;
}
else if (inputChars[charCount] == 127)
{
Serial.print(inputChars[charCount]);
charCount--;
}
else
{
Serial.print(inputChars[charCount]);
charCount++;
}
}
}
void memUsed()
{
float countPercent = (float(totalCount) / 1785) * 100;
float blockPercent = (float(blockCount) / 255) * 100;
Serial.print(F("\n\rTotal characters used: \u001b[1m"));
if (countPercent >= 75 && countPercent < 90)
Serial.print(F("\u001b[33m"));
else if (countPercent >= 90)
Serial.print(F("\u001b[31m"));
else
Serial.print(F("\u001b[32m"));
Serial.print(countPercent);
Serial.print(F("%\u001b[0m\u001b[0m\n\rTotal blocks used: \u001b[1m"));
if (blockPercent >= 75 && blockPercent < 90)
Serial.print(F("\u001b[33m"));
else if (blockPercent >= 90)
Serial.print(F("\u001b[31m"));
else
Serial.print(F("\u001b[32m"));
Serial.print(blockPercent);
Serial.print(F("%\u001b[0m\n\r"));
}
void sendName()
{
Serial.println(F("\n\r\n\rActivating Name Edit on Player - \u001b[31mPress any key when player ready\u001b[0m"));
sendButton(NAME);
mode = 0;
targetMode = 0;
// delay(2000);
while (!Serial.available())
{
}
char purge = Serial.read(); // dump the character
Serial.print(F("\n\rSending: \u001b[32;1m"));
for (byte c = 0; c < charCount; c++)
{
if (inputChars[c] >= 65 && inputChars[c] <= 90)
{ // Check if char is capital and switch to correct mode
targetMode = 0;
}
else if (inputChars[c] >= 97 && inputChars[c] <= 122)
{ // Check if char is lower and switch to correct mode
targetMode = 1;
}
while (mode != targetMode)
{
sendButton(CHAR);
delay(1000);
mode++;
if (mode > 1)
mode = 0;
}
if (inputChars[c] == 'A')
{
Serial.print(inputChars[c]);
sendCmd(CONTINUE, 1);
}
else if (inputChars[c] == 'B')
{
Serial.print(inputChars[c]);
sendCmd(SHUFFLE, 1);
}
else if (inputChars[c] == 'C')
{
Serial.print(inputChars[c]);
sendCmd(PROGRAM, 1);
}
else if (inputChars[c] == 'D')
{
Serial.print(inputChars[c]);
sendCmd(KEY_D, 1);
}
else if (inputChars[c] == 'E')
{
Serial.print(inputChars[c]);
sendCmd(KEY_E, 1);
}
else if (inputChars[c] == 'F')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER1, 1);
}
else if (inputChars[c] == 'G')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER2, 1);
}
else if (inputChars[c] == 'H')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER3, 1);
}
else if (inputChars[c] == 'I')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER4, 1);
}
else if (inputChars[c] == 'J')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER5, 1);
}
else if (inputChars[c] == 'K')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER6, 1);
}
else if (inputChars[c] == 'L')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER7, 1);
}
else if (inputChars[c] == 'M')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER8, 1);
}
else if (inputChars[c] == 'N')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER9, 1);
}
else if (inputChars[c] == 'O')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER10, 1);
}
else if (inputChars[c] == 'P')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER11, 1);
}
else if (inputChars[c] == 'Q')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER12, 1);
}
else if (inputChars[c] == 'R')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER13, 1);
}
else if (inputChars[c] == 'S')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER14, 1);
}
else if (inputChars[c] == 'T')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER15, 1);
}
else if (inputChars[c] == 'U')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER16, 1);
}
else if (inputChars[c] == 'V')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER17, 1);
}
else if (inputChars[c] == 'W')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER18, 1);
}
else if (inputChars[c] == 'X')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER19, 1);
}
else if (inputChars[c] == 'Y')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER20, 1);
}
else if (inputChars[c] == 'Z')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER21, 1);
}
else if (inputChars[c] == 'a')
{
Serial.print(inputChars[c]);
sendCmd(CONTINUE, 1);
}
else if (inputChars[c] == 'b')
{
Serial.print(inputChars[c]);
sendCmd(SHUFFLE, 1);
}
else if (inputChars[c] == 'c')
{
Serial.print(inputChars[c]);
sendCmd(PROGRAM, 1);
}
else if (inputChars[c] == 'd')
{
Serial.print(inputChars[c]);
sendCmd(KEY_D, 1);
}
else if (inputChars[c] == 'e')
{
Serial.print(inputChars[c]);
sendCmd(KEY_E, 1);
}
else if (inputChars[c] == 'f')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER1, 1);
}
else if (inputChars[c] == 'g')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER2, 1);
}
else if (inputChars[c] == 'h')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER3, 1);
}
else if (inputChars[c] == 'i')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER4, 1);
}
else if (inputChars[c] == 'j')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER5, 1);
}
else if (inputChars[c] == 'k')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER6, 1);
}
else if (inputChars[c] == 'l')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER7, 1);
}
else if (inputChars[c] == 'm')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER8, 1);
}
else if (inputChars[c] == 'n')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER9, 1);
}
else if (inputChars[c] == 'o')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER10, 1);
}
else if (inputChars[c] == 'p')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER11, 1);
}
else if (inputChars[c] == 'q')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER12, 1);
}
else if (inputChars[c] == 'r')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER13, 1);
}
else if (inputChars[c] == 's')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER14, 1);
}
else if (inputChars[c] == 't')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER15, 1);
}
else if (inputChars[c] == 'u')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER16, 1);
}
else if (inputChars[c] == 'v')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER17, 1);
}
else if (inputChars[c] == 'w')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER18, 1);
}
else if (inputChars[c] == 'x')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER19, 1);
}
else if (inputChars[c] == 'y')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER20, 1);
}
else if (inputChars[c] == 'z')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER21, 1);
}
else if (inputChars[c] == 39 || inputChars[c] == 96)
{ // ' and `
Serial.print(inputChars[c]);
sendCmd(NUMBER25, 1);
}
else if (inputChars[c] == 45 || inputChars[c] == 95)
{ // - or _
Serial.print(inputChars[c]);
sendCmd(NUMBER22, 1);
}
else if (inputChars[c] == 47 || inputChars[c] == 92)
{ // slash or backslash
Serial.print(inputChars[c]);
sendCmd(LARGER25, 1);
}
else if (inputChars[c] == 44)
{ // , not supported
Serial.print(inputChars[c]);
sendCmd(NUMBER1, 1);
}
else if (inputChars[c] == '.')
{
Serial.print(inputChars[c]);
sendCmd(NUMBER24, 1);
}
else if (inputChars[c] == '(')
{
Serial.print(inputChars[c]);
sendCmd(ASPACE, 1);
}
else if (inputChars[c] == ')')
{
Serial.print(inputChars[c]);
sendCmd(MSCAN, 1);
}
else if (inputChars[c] == ':')
{ // : not supported
Serial.print(inputChars[c]);
sendCmd(NUMBER1, 8);
}
else if (inputChars[c] == '!')
{
Serial.print(inputChars[c]);
sendCmd(ATOB, 1);
}
else if (inputChars[c] == '?')
{
Serial.print(inputChars[c]);
sendCmd(REPEATMODE, 1);
}
else if (inputChars[c] == '1')
{
Serial.print(inputChars[c]);
sendNumCmd(NUMBER1, 1);
}
else if (inputChars[c] == '2')
{
Serial.print(inputChars[c]);
sendNumCmd(NUMBER2, 1);
}
else if (inputChars[c] == '3')
{
Serial.print(inputChars[c]);
sendNumCmd(NUMBER3, 1);
}
else if (inputChars[c] == '4')
{
Serial.print(inputChars[c]);
sendNumCmd(NUMBER4, 1);
}
else if (inputChars[c] == '5')
{
Serial.print(inputChars[c]);
sendNumCmd(NUMBER5, 1);
}
else if (inputChars[c] == '6')
{
Serial.print(inputChars[c]);
sendNumCmd(NUMBER6, 1);
}
else if (inputChars[c] == '7')
{
Serial.print(inputChars[c]);
sendNumCmd(NUMBER7, 1);
}
else if (inputChars[c] == '8')
{
Serial.print(inputChars[c]);
sendNumCmd(NUMBER8, 1);
}
else if (inputChars[c] == '9')
{
Serial.print(inputChars[c]);
sendNumCmd(NUMBER9, 1);
}
else if (inputChars[c] == '0')
{
Serial.print(inputChars[c]);
sendNumCmd(NUMBER10, 1);
}
else if (inputChars[c] == ' ')
{ // space
Serial.print(inputChars[c]);
sendCmd(NUMBER23, 1);
}
}
Serial.print(F("\u001b[0m\n\r\n\rTotal characters needed: "));
Serial.print(charCount);
Serial.print(F("\n\rTotal blocks needed: "));
Serial.print((charCount + 6) / 7);
Serial.print(F("\n\r"));
}
void sendCmd(int command, byte repeats)
{
for (int i = 0; i <= repeats - 1; i++)
{
sendButton(command);
delay(100);
}
}
void sendButton(int bts)
{
digitalWrite(tSendPin, HIGH);
for (int i = 0; i < 3; i++)
{
irsend.sendSony(bts, 12); //! Hier wird das Command gesendet! Es besteht aus dem command und der bitlänge.
delay(25);
}
digitalWrite(tSendPin, LOW);
}
void sendNumCmd(int command, byte repeats)
{
for (int i = 0; i <= repeats - 1; i++)
{
sendButton(NUM);
delay(1000);
sendButton(command);
delay(100);
sendButton(NUM);
delay(1000);
}
}
void helpText()
{
Serial.print(F("\u001b[1m\u001b[7mMinidisc Namer\u001b[0m\n\r\
\n\r\
\u001b[1mCommands:\u001b[0m\n\r\
\n\r\
\u001b[32mGeneral:\n\r\
\u001b[0mz Previous Track\n\r\
x Play\n\r\
c Pause\n\r\
v Stop\n\r\
b Next Track\n\r\
l Eject\n\r\
\n\r\
\u001b[31mRecording:\n\r\
\u001b[0ms Record\n\r\
S Music Sync Recording\n\r\
i Input Selection\n\r\
q Recording Mode\n\r\
\n\r\
\u001b[33mNumbers:\n\r\
\u001b[0m0-9 Number Entry\n\r\
=/+ >10 Entry\n\r\
\n\r\
\u001b[34;1mDisplay:\n\r\
\u001b[0md Display\n\r\
D Scroll Display\n\r\
\n\r\
\u001b[36mPlaymodes/Repeating:\n\r\
\u001b[0mp Play Mode (Normal/Shuffle/Program)\n\r\
r Repeat\n\r\
R A <-> B\n\r\
\n\r\
\u001b[32;1mNaming Disc/Tracks:\n\r\
\u001b[0m` Name Entry Mode\n\r\
# Reset Memory Usage Stats\n\r\
\n\r\
\u001b[37;1mh This help list\u001b[0m\n\r\n\r"));
}
boolean nameCheck()
{
Serial.print(F("\n\r\n\r\n\rSend this to player (Y/N):\n\r\u001b[37;1m"));
for (byte c = 0; c < charCount; c++)
{
Serial.print(inputChars[c]);
}
Serial.print(F("\n\r\u001b[0m"));
while (!Serial.available())
{
}
char serialChar = Serial.read();
if (serialChar == 'Y' || serialChar == 'y')
return 1;
else
return 0;
}
void blink()
{
/* start testing code */
// read the state of the pushbutton value:
buttonState = digitalRead(buttonPin);
// check if the pushbutton is pressed. If it is, the buttonState is HIGH:
if (buttonState == HIGH)
{
// write to serial monitor:
Serial.println(F("button state is HIGH"));
// turn LED on:
digitalWrite(ledPin, HIGH);
}
else
{
// turn LED off:
digitalWrite(ledPin, LOW);
}
/* end testing code */
Serial.print(F("blink"));
// digitalWrite(ledPin, HIGH); // turn the LED on (HIGH is the voltage level)
// delay(1000); // wait for a second
// digitalWrite(ledPin, LOW); // turn the LED off by making the voltage LOW
// delay(1000);
}
+234
View File
@@ -0,0 +1,234 @@
<!DOCTYPE html>
<html lang="en">
<head>
<title>SONY RM-D20P Pico Remote</title>
<!-- Required meta tags -->
<meta charset="utf-8" />
<meta
name="viewport"
content="width=device-width, initial-scale=1, shrink-to-fit=no"
/>
<!-- <link rel="stylesheet" href="style.css" /> -->
<style>
:root {
--main-bg-color: #212121;
}
body {
background-color: var(--main-bg-color);
display: flex;
flex-direction: column;
align-items: center;
font-family: Verdana, Geneva, Tahoma, sans-serif;
}
h2 {
color: white;
}
p {
color: white;
}
textarea {
width: 100%;
height: 150px;
padding: 12px 20px;
box-sizing: border-box;
border: 2px solid #ccc;
border-radius: 4px;
background-color: #f8f8f8;
font-size: 16px;
resize: none;
}
button {
background-color: #454545;
border: none;
border-radius: 4px;
color: white;
text-align: center;
text-decoration: none;
display: inline-flex;
font-size: 16px;
cursor: pointer;
justify-content: center;
align-items: center;
box-shadow: 2px 2px black;
height: 42px;
width: 48px;
}
button:active {
-webkit-box-shadow: inset 0px 0px 2px black;
-moz-box-shadow: inset 0px 0px 2px black;
box-shadow: inset 0px 0px 2px black;
outline: none;
}
.text-white {
color: white;
}
.text-orange {
color: orange;
}
.text-with-line {
text-transform: uppercase;
display: flex;
flex-direction: row;
}
.text-with-line:before,
.text-with-line:after {
content: "";
flex: 1 1;
border-bottom: 2px solid currentColor;
margin: auto 5px;
}
.smallbutton {
height: 28px;
width: 56px;
background-color: #8a8a8a;
font-size: 12px;
}
.roundbutton {
border-radius: 50%;
width: 26px;
height: 26px;
}
.upper-buttonbox {
margin-top: 8px;
margin-bottom: 8px;
border-radius: 8px;
background-color: #4d4d4d;
padding: 8px;
display: flex;
gap: 12px;
border: 2px solid grey;
border-bottom-color: black;
border-right-color: black;
}
.lower-buttonbox {
margin-top: 8px;
margin-bottom: 8px;
border-radius: 8px;
background-color: #333333;
padding: 8px;
display: flex;
gap: 12px;
border: 2px solid grey;
border-bottom-color: black;
border-right-color: black;
}
.textinput-wrapper {
display: flex;
flex-direction: column;
gap: 12px;
margin-top: 8px;
margin-bottom: 8px;
color: white;
}
.textinput {
width: 100%;
padding: 12px 20px;
box-sizing: border-box;
border: 2px solid #ccc;
border-radius: 4px;
background-color: #f8f8f8;
font-size: 16px;
resize: none;
}
.headline {
text-align: center;
}
</style>
</head>
<body>
<main>
<h2 class="headline">SONY RM-D27M Remote</h2>
<span class="text-white text-with-line">LED Test Mode</span>
<div class="upper-buttonbox">
<form action="/api/control-led" method="post">
<button name="led" type="submit" value="1" class="smallbutton">
LED on
</button>
<button name="led" type="submit" value="0" class="smallbutton">
LED off
</button>
</form>
</div>
<span class="text-orange text-with-line">Title Editing</span>
<form action="/api/gettext" method="post" class="textinput-wrapper">
<textarea name="text_box" rows="4" cols="50"></textarea>
<button type="submit">Submit</button>
</form>
<section>
<form action="/api/gettextinput" method="get" class="textinput-wrapper">
<label for="text_input">Change Title</label>
<input type="text" name="text_input" class="textinput" />
<button type="submit">Submit</button>
</form>
</section>
<div class="upper-buttonbox">
<form action="/api/control-deck" method="post">
<button
name="control"
type="submit"
value="power"
class="smallbutton"
>
power
</button>
<button name="control" type="submit" value="play" class="smallbutton">
play
</button>
<button
name="control"
type="submit"
value="pause"
class="smallbutton"
>
pause
</button>
<button name="control" type="submit" value="stop" class="smallbutton">
stop
</button>
<button name="control" type="submit" value="next" class="smallbutton">
next
</button>
<button class="roundbutton"></button>
<button class="roundbutton"></button>
</form>
</div>
<div class="lower-buttonbox">
<button>Q</button>
<button>W</button>
<button>E</button>
<button>R</button>
<button>T</button>
<button>Z</button>
</div>
</main>
<footer>
<p>KEY BOARD REMOTE COMMANDER</p>
</footer>
/*
<script
src="https://cdn.jsdelivr.net/npm/bootstrap@5.3.2/dist/js/bootstrap.min.js"
integrity="sha384-BBtl+eGJRgqQAUMxJ7pMwbEyER4l1g+O15P+16Ep7Q9Q+zqX6gSbd85u4mG4QzX+"
crossorigin="anonymous"
></script>
*/
</body>
</html>