import processing.serial.*;
Serial port; // Создание объекта класса Serial
int val; // Данные, получаемые из сом-порта
int[] values;
float zoom;
char flag = 0;
char first_m = 1;
String inputString = "";
String portValue = ""; //значення, яке ми отримуємо з СОМ-порту
String buffer = "";
int Ipoint = 0;
int Upoint = 0;
int Tpoint = 0;
//int Xpoint_1 = 0;
//int Ypoint_1 = 0;
int x0, y0, x1, y1;
int x0_1, y0_1, x1_1, y1_1;
int z = 0;
float R_float;
String R_out;
void setup()
{
size(640, 640);
// Открываем порт, к которому подключена плата
//контроллера используя скорость (9600 bps)
port = new Serial(this, Serial.list()[0], 9600);
values = new int[3];
zoom = 1.0f;
smooth();
background(0);
}
//Функція, яка викликається, коли з СОМ-порту приходять нові дані
void serialEvent(Serial port)
{
//Зчитуємо дані з СОМ-порту і записуємо у відповідну змінну
portValue = port.readStringUntil('\n');
if (portValue != null) {
flag = 1;
inputString = portValue;
}
}
void pushValue(int value) {
for (int i=0; i<width-1; i++)
values[i] = values[i+1];
values[width-1] = value;
}
void drawLines2() {
stroke(255);
int displayWidth = (int) (width / zoom);
line(x0, y0, x1, y1);
line(x0_1, y0_1, x1_1, y1_1);
//text(x0_1 + " " + y0_1 + " " + x1_1 + " " +Upoint/Ipoint, width-145, 50);
x0 = x1;
y0 = y1;
x0_1 = x1_1;
y0_1 = y1_1;
// text(y1, 30, 30);
}
/*void drawLines3() {
stroke(255);
int displayWidth = (int) (width / zoom);
line(x01, y01, x11, y11);
x01 = x11;
y01 = y11;
// text(y1, 30, 30);
}
*/
void drawGrid() {
stroke(255, 0, 0);
line(15, height-350, width-15, height-350);
line(15, height-350, 15, 15);
line(width-15, height-350, width-30, height-360); //>x
line(width-15, height-350, width-30, height-340); //>x
line(15, 15, 25, 30);//>y
line(15, 15, 5, 30);//>y
//second
line(15, height-15, width-15, height-15);
line(15, height-15, 15, height-300);
line(width-15, height-15, width-30, height-25); //>x
line(width-15, height-15, width-30, height-5); //>x
line(15, height-300, 25, height-285);
line(15, height-300, 5, height-285);
}
void keyReleased() {
switch (key) {
case '+':
zoom *= 2.0f;
println(zoom);
if ( (int) (width / zoom) <= 1 )
zoom /= 2.0f;
break;
case '-':
zoom /= 2.0f;
if (zoom < 1.0f)
zoom *= 2.0f;
break;
}
}
void draw()
{
//
if (flag == 1) {
drawGrid();
//=====================================
values = int(split(inputString, ","));
Upoint=values[0];
Tpoint=values[1];
Ipoint=values[2];
fill(0);
stroke(0);
rect( width-146, 19, width, 81);
fill(255);
textSize(18);
text("U = " + Upoint + " mV", width-145, 50);
text("I = " + Ipoint + " mA", width-145, 80);
text("I", 35, 35);
text("U", width-35, height- 370);
//=====================================
//for float R
//rect( width-30, height-150, width, 81);
/*Xpoint_1=values[2];
Ypoint_1=values[0];
*/
fill(0);
stroke(0);
rect( width-146, height-330, width, height-550);
fill(255);
text("T = " + Tpoint + " °C", width-145, height-300);
//text(x1_1, width-145, height-300);
text("R = " + R_out + " Om", width-145, height-270);
//text(x1_1, width-145, height-240);
text("T", 35, height-285);
text("R", width-35, height- 35);
R_out = String.format("%.2f", R_float);
x1 = int(Upoint / 1023.0f / 30 * (width-30) + 15);
if(Ipoint > 0){
y1 = int(height - 350 - Ipoint * 1000 / 1023.0f / 75 * (height-30));
}
else{
}
//z=Xpoint/Ypoint;
//if(Ipoint!=0){
R_float = float(Upoint) / float(Ipoint*1000);
//R_float = 1 / 2;
if(R_float > 0){
x1_1 = int(R_float *500 / 1023.0f * (width-30) + 15);
}
else{
R_float = 0;
}
//text(x1_1, width-35, height- 105);
//}
//else{
//x1_1=0;
//}
y1_1 = int(height - 15 - Tpoint *2 / 1023.0f * (height-30)); //graphik 2
//y1_1 = int(height-Tpoint*2);
//text(y1_1, width-145, height-240);
//==================================================================
if (first_m == 1)
{
x0 = x1;
y0 = y1;
x0_1 = x1_1;
y0_1 = y1_1;
first_m = 0;
} else
drawLines2();
flag = 0;
};
// val = getValue();
/*
if (val != -1) {
pushValue(val);
}
drawLines();
*/
}
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