Remove unused code and generic comment
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@ -43,8 +43,6 @@ class Robot: public IterativeRobot
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RobotDrive drive;
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Shooter shooter;
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Joystick driver_stick, operator_stick;
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//DriverStation DriverStation::GetInstance();
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//float power;
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public:
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Robot():
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left_drive(0), // Left DriveTrain Talons plug into PWM channel 1 with a Y-splitter
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@ -79,20 +77,6 @@ private:
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const std::string autoNameCustom = "My Auto";
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std::string autoSelected;
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/*void LogData()
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{
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static PowerDistributionPanel pdp;
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static DriverStation DriverStation::GetInstance() = DriverStation::GetInstance();
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static std::vector<CANTalon*> motors;
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static std::ofstream logA, logB, logC;
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timeval tm;
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SmartDashboard::PutBoolean("log A", logA.is_open());
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SmartDashboard::PutBoolean("log B", logB.is_open());
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SmartDashboard::PutBoolean("log C", logC.is_open());
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}*/
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void RobotInit()
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{
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chooser = new SendableChooser();
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@ -115,16 +99,6 @@ private:
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}
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/**
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* This autonomous (along with the chooser code above) shows how to select between different autonomous modes
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* using the dashboard. The sendable chooser code works with the Java SmartDashboard. If you prefer the LabVIEW
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* Dashboard, remove all of the chooser code and uncomment the GetString line to get the auto name from the text box
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* below the Gyro
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*
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* You can add additional auto modes by adding additional comparisons to the if-else structure below with additional strings.
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* If using the SendableChooser make sure to add them to the chooser code above as well.
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*/
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void AutonomousInit()
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{
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autoSelected = *((std::string*)chooser->GetSelected());
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@ -402,27 +376,6 @@ private:
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LOG(std::endl);
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}
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void SimpleDrive()
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{
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float x = -driver_stick.GetX();
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float y = -driver_stick.GetY();
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float left = 0;
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float right = 0;
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if (x > 0)
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{
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right = y;
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left = (1- x*TURN_FACTOR)*y ;
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}
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else
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{
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left = y;
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right = (1+x*TURN_FACTOR)*y;
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}
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drive.TankDrive(left, right);
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}
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void UpdateDrive()
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{
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float x = -driver_stick.GetX();
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