#include #include #include "generic_st7789.hpp" using namespace pimoroni; const int WIDTH = 240; const int HEIGHT = 240; ST7789Generic lcd(WIDTH, HEIGHT, false, nullptr, BG_SPI_FRONT); int main() { //lcd.configure_display(false); lcd.set_backlight(255); // Delete the default palette and allow us to create up to 256 of our own RGB565 colours lcd.set_palette_mode(ST7789Generic::PaletteModeUSER); struct pt { float x; float y; uint8_t r; float dx; float dy; Pen pen; }; std::vector shapes; for(int i = 0; i < 100; i++) { pt shape; shape.r = (rand() % 10) + 3; shape.x = rand() % (lcd.bounds.w - (shape.r * 2)); shape.y = rand() % (lcd.bounds.h - (shape.r * 2)); shape.x += shape.r; shape.y += shape.r; shape.dx = float(rand() % 255) / 64.0f; shape.dy = float(rand() % 255) / 64.0f; shape.pen = lcd.create_pen(rand() % 255, rand() % 255, rand() % 255); shapes.push_back(shape); } Pen BG = lcd.create_pen(120, 40, 60); Pen WHITE = lcd.create_pen(255, 255, 255); while(true) { lcd.set_pen(BG); lcd.clear(); for(auto &shape : shapes) { shape.x += shape.dx; shape.y += shape.dy; if(shape.x < shape.r) shape.dx *= -1; if(shape.x >= lcd.bounds.w - shape.r) shape.dx *= -1; if(shape.y < shape.r) shape.dy *= -1; if(shape.y >= lcd.bounds.h - shape.r) shape.dy *= -1; lcd.set_pen(shape.pen); lcd.circle(Point(shape.x, shape.y), shape.r); } lcd.set_pen(WHITE); lcd.text("Hello World", Point(0, 0), 240); // update screen lcd.update(); } return 0; }