diff --git a/build/shared/examples/Control/WhileStatementConditional/applet/WhileStatementConditional.cpp b/build/shared/examples/Control/WhileStatementConditional/applet/WhileStatementConditional.cpp deleted file mode 100644 index fd7fb7a0e..000000000 --- a/build/shared/examples/Control/WhileStatementConditional/applet/WhileStatementConditional.cpp +++ /dev/null @@ -1,86 +0,0 @@ -/* - Conditionals - while statement - - This example demonstrates the use of while() statements. - - It reads the state of a potentiometer (an analog input) and blinks an LED - while the LED remains above a certain threshold level. It prints the analog value - only if it's below the threshold. - - This example uses principles explained in the BlinkWithoutDelay example as well. - - The circuit: - * potentiometer connected to analog pin 0. - Center pin of the potentiometer goes to the analog pin. - side pins of the potentiometer go to +5V and ground - * LED connected from digital pin 13 to ground - - * Note: On most Arduino boards, there is already an LED on the board - connected to pin 13, so you don't need any extra components for this example. - - created 17 Jan 2009 - by Tom Igoe - - */ - -#define ledPin 13 // the pin for the LED -#define analogPin 0 // the analog pin that the potentiometer is attached to - -#include "WProgram.h" -void setup(); -void loop(); -int threshold = 400; // an arbitrary threshold level that's in the range of the analog input -int ledState = LOW; // the state of the LED -int lastBlinkTime = 0; // last time the LED changed -int blinkDelay = 500; // how long to hold between changes of the LED - int analogValue; // variable to hold the value of the analog input -void setup() { - // initialize the LED pin as an output: - pinMode(ledPin, OUTPUT); - // initialize serial communications: - Serial.begin(9600); -} - -void loop() { - // read the value of the potentiometer: - analogValue = analogRead(analogPin); - - // if the analog value is high enough, turn on the LED: - while (analogValue > threshold) { - // if enough time has passed since the last change of the LED, - // then change it. Note you're using the technique from BlinkWithoutDelay - // here so that the while loop doesn't delay the rest of the program: - - if (millis() - lastBlinkTime > blinkDelay) { - // if the ledState is high, this makes it low, and vice versa: - ledState = !ledState; - digitalWrite(ledPin, ledState); - - // save the last time the LED changed in a variable: - lastBlinkTime = millis(); - } - // while you're in the while loop, you have to read the - // input again: - analogValue = analogRead(analogPin); - } - - // if you're below the threshold, print the analog value: - Serial.println(analogValue, DEC); - // turn the LED off: - digitalWrite(ledPin, LOW); - -} - - -int main(void) -{ - init(); - - setup(); - - for (;;) - loop(); - - return 0; -} - diff --git a/build/shared/examples/Control/WhileStatementConditional/applet/WhileStatementConditional.eep b/build/shared/examples/Control/WhileStatementConditional/applet/WhileStatementConditional.eep deleted file mode 100644 index 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a/build/shared/examples/Control/WhileStatementConditional/applet/WhileStatementConditional.pde b/build/shared/examples/Control/WhileStatementConditional/applet/WhileStatementConditional.pde deleted file mode 100644 index 0cff93acf..000000000 --- a/build/shared/examples/Control/WhileStatementConditional/applet/WhileStatementConditional.pde +++ /dev/null @@ -1,70 +0,0 @@ -/* - Conditionals - while statement - - This example demonstrates the use of while() statements. - - It reads the state of a potentiometer (an analog input) and blinks an LED - while the LED remains above a certain threshold level. It prints the analog value - only if it's below the threshold. - - This example uses principles explained in the BlinkWithoutDelay example as well. - - The circuit: - * potentiometer connected to analog pin 0. - Center pin of the potentiometer goes to the analog pin. - side pins of the potentiometer go to +5V and ground - * LED connected from digital pin 13 to ground - - * Note: On most Arduino boards, there is already an LED on the board - connected to pin 13, so you don't need any extra components for this example. - - created 17 Jan 2009 - by Tom Igoe - - */ - -#define ledPin 13 // the pin for the LED -#define analogPin 0 // the analog pin that the potentiometer is attached to - -int threshold = 400; // an arbitrary threshold level that's in the range of the analog input -int ledState = LOW; // the state of the LED -int lastBlinkTime = 0; // last time the LED changed -int blinkDelay = 500; // how long to hold between changes of the LED - int analogValue; // variable to hold the value of the analog input -void setup() { - // initialize the LED pin as an output: - pinMode(ledPin, OUTPUT); - // initialize serial communications: - Serial.begin(9600); -} - -void loop() { - // read the value of the potentiometer: - analogValue = analogRead(analogPin); - - // if the analog value is high enough, turn on the LED: - while (analogValue > threshold) { - // if enough time has passed since the last change of the LED, - // then change it. 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a/build/shared/examples/Control/switchCase/applet/switchCase.cpp b/build/shared/examples/Control/switchCase/applet/switchCase.cpp deleted file mode 100644 index 6ad53a3fa..000000000 --- a/build/shared/examples/Control/switchCase/applet/switchCase.cpp +++ /dev/null @@ -1,45 +0,0 @@ - -#include "WProgram.h" -void setup(); -void loop(); -void setup() { - Serial.begin(9600); -} -void loop() { - int distance = analogRead(0); - - int range = map(distance, 0, 600, 0, 3); - - switch (range) { - case 0: - Serial.println("dark"); - break; - case 1: - Serial.println("dim"); - break; - case 2: - Serial.println("medium"); - break; - case 3: - Serial.println("bright"); - break; - } - -} - - - - - -int main(void) -{ - init(); - - setup(); - - for (;;) - loop(); - - return 0; -} - diff --git a/build/shared/examples/Control/switchCase/applet/switchCase.cpp.eep b/build/shared/examples/Control/switchCase/applet/switchCase.cpp.eep deleted file mode 100644 index 1996e8fde..000000000 --- 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-:1007340062726967687400010000000013025D02C0 -:0207440075023C -:00000001FF diff --git a/build/shared/examples/Display/barGraph/applet/barGraph.cpp b/build/shared/examples/Display/barGraph/applet/barGraph.cpp deleted file mode 100644 index 3dc24b85d..000000000 --- a/build/shared/examples/Display/barGraph/applet/barGraph.cpp +++ /dev/null @@ -1,56 +0,0 @@ - - - -// these constants won't change: -#include "WProgram.h" -void setup(); -void loop(); -const int analogPin = 0; // the pin that the potentiometer is attached to -const int ledCount = 10; // the number of LEDs in the bar graph - -int ledPins[] = { - 2, 3, 4, 5, 6, 7,8,9,10,11 }; // an array of pin numbers to which LEDs are attached - - -void setup() { - // loop over the pin array and set them all to output: - for (int thisLed = 0; thisLed < ledCount; thisLed++) { - pinMode(ledPins[thisLed], OUTPUT); - } -} - -void loop() { - // read the potentiometer: - int sensorReading = analogRead(analogPin); - // map the result to a range from 0 to the number of LEDs: - int ledLevel = map(sensorReading, 0, 1023, 0, ledCount); - - // loop over the LED array: - for (int thisLed = 0; thisLed < ledCount; thisLed++) { - // if the array element's index is less than ledLevel, - // turn the pin for this element on: - if (thisLed < ledLevel) { - digitalWrite(ledPins[thisLed], HIGH); - } - // turn off all pins higher than the ledLevel: - else { - digitalWrite(ledPins[thisLed], LOW); - } - } -} - - - - -int main(void) -{ - init(); - - setup(); - - for (;;) - loop(); - - return 0; -} - diff --git a/build/shared/examples/Display/barGraph/applet/barGraph.cpp.eep b/build/shared/examples/Display/barGraph/applet/barGraph.cpp.eep deleted file mode 100644 index 1996e8fde..000000000 --- a/build/shared/examples/Display/barGraph/applet/barGraph.cpp.eep +++ /dev/null @@ -1 +0,0 @@ -:00000001FF diff --git a/build/shared/examples/Display/barGraph/applet/barGraph.cpp.elf b/build/shared/examples/Display/barGraph/applet/barGraph.cpp.elf deleted file 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