First init.

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2025-10-12 09:13:56 +02:00
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/*
* This is a demo for a Feather ESP32-S2 TFT connected to a Quad
* Rotary Encoder board
* https://www.adafruit.com/product/5300
* https://www.adafruit.com/product/5752
*
*/
#include "Adafruit_seesaw.h"
#include <seesaw_neopixel.h>
#include <Adafruit_ST7789.h>
#include <Fonts/FreeSans12pt7b.h>
// we hvae loooots of PSRAM so lets use a GFX canvas for flicker-free graphics!
GFXcanvas16 canvas(240, 135);
Adafruit_ST7789 display = Adafruit_ST7789(TFT_CS, TFT_DC, TFT_RST);
#define SS_NEO_PIN 18
#define SS_ENC0_SWITCH 12
#define SS_ENC1_SWITCH 14
#define SS_ENC2_SWITCH 17
#define SS_ENC3_SWITCH 9
#define SEESAW_ADDR 0x49
Adafruit_seesaw ss = Adafruit_seesaw(&Wire);
seesaw_NeoPixel pixels = seesaw_NeoPixel(4, SS_NEO_PIN, NEO_GRB + NEO_KHZ800);
int32_t enc_positions[4] = {0, 0, 0, 0};
void setup() {
Serial.begin(115200);
//while (!Serial) delay(10);
pinMode(TFT_BACKLITE, OUTPUT);
digitalWrite(TFT_BACKLITE, LOW);
// turn on the TFT / I2C power supply
pinMode(TFT_I2C_POWER, OUTPUT);
digitalWrite(TFT_I2C_POWER, HIGH);
delay(10);
Serial.println("Looking for seesaw!");
if (! ss.begin(SEESAW_ADDR) || !pixels.begin(SEESAW_ADDR)) {
Serial.println("Couldn't find seesaw on default address");
while(1) delay(10);
}
Serial.println("seesaw started");
uint32_t version = ((ss.getVersion() >> 16) & 0xFFFF);
if (version != 5752){
Serial.print("Wrong firmware loaded? ");
Serial.println(version);
while(1) delay(10);
}
Serial.println("Found Product 5752");
ss.pinMode(SS_ENC0_SWITCH, INPUT_PULLUP);
ss.pinMode(SS_ENC1_SWITCH, INPUT_PULLUP);
ss.pinMode(SS_ENC2_SWITCH, INPUT_PULLUP);
ss.pinMode(SS_ENC3_SWITCH, INPUT_PULLUP);
ss.setGPIOInterrupts(1UL << SS_ENC0_SWITCH | 1UL << SS_ENC1_SWITCH |
1UL << SS_ENC2_SWITCH | 1UL << SS_ENC3_SWITCH, 1);
// get starting positions
for (int e=0; e<4; e++) {
enc_positions[e] = ss.getEncoderPosition(e);
ss.enableEncoderInterrupt(e);
}
Serial.println("Turning on interrupts");
pixels.setBrightness(255);
pixels.show(); // Initialize all pixels to 'off'
display.init(135, 240); // Init ST7789 240x135
display.setRotation(3);
display.fillScreen(ST77XX_BLUE);
digitalWrite(TFT_BACKLITE, HIGH);
canvas.setFont(&FreeSans12pt7b);
canvas.setTextColor(ST77XX_WHITE);
}
uint8_t switch_pins[] = {SS_ENC0_SWITCH, SS_ENC1_SWITCH, SS_ENC2_SWITCH, SS_ENC3_SWITCH};
void loop() {
bool changed = false;
canvas.fillScreen(ST77XX_BLACK);
canvas.setCursor(0, 25);
canvas.setTextColor(ST77XX_WHITE);
//canvas.println("Quad Encoder QT Demo");
for (int e=0; e<4; e++) {
int32_t new_enc_position = ss.getEncoderPosition(e);
// did we move around?
if (enc_positions[e] != new_enc_position) {
Serial.print("Rot. #");
Serial.print(e);
Serial.print(" -> ");
Serial.println(new_enc_position); // display new position
enc_positions[e] = new_enc_position; // and save for next round
// change the neopixel color, mulitply the new positiion by 4 to speed it up
pixels.setPixelColor(e, Wheel((new_enc_position*4) & 0xFF));
pixels.show();
changed = true;
}
canvas.setTextColor(ST77XX_WHITE);
canvas.print("Rotary #");
canvas.print(e);
canvas.print(": ");
canvas.print(enc_positions[e]);
if (! ss.digitalRead(switch_pins[e])) {
Serial.print("ENC");
Serial.print("e");
Serial.println("pressed!");
canvas.setTextColor(ST77XX_RED);
canvas.print(" DOWN");
changed = true;
}
canvas.println();
}
if (changed) {
display.drawRGBBitmap(0, 0, canvas.getBuffer(), 240, 135);
}
}
uint32_t Wheel(byte WheelPos) {
WheelPos = 255 - WheelPos;
if (WheelPos < 85) {
return seesaw_NeoPixel::Color(255 - WheelPos * 3, 0, WheelPos * 3);
}
if (WheelPos < 170) {
WheelPos -= 85;
return seesaw_NeoPixel::Color(0, WheelPos * 3, 255 - WheelPos * 3);
}
WheelPos -= 170;
return seesaw_NeoPixel::Color(WheelPos * 3, 255 - WheelPos * 3, 0);
}