Files
allwpilib/wpilibc/src/main/native/cpp/Drive/RobotDriveBase.cpp
Tyler Veness 19addb04cf Split RobotDrive class into a class for each drive type (#552)
DiffDrive.CurvatureDrive (aka CheesyDrive) and KilloughDrive were also added.
This reorganization paves the way for SwerveDrive.
2017-09-28 23:30:00 -07:00

101 lines
2.8 KiB
C++

/*----------------------------------------------------------------------------*/
/* Copyright (c) 2017 FIRST. All Rights Reserved. */
/* Open Source Software - may be modified and shared by FRC teams. The code */
/* must be accompanied by the FIRST BSD license file in the root directory of */
/* the project. */
/*----------------------------------------------------------------------------*/
#include "Drive/RobotDriveBase.h"
#include <algorithm>
#include <cmath>
#include <cstddef>
#include <HAL/HAL.h>
#include "Base.h"
#include "SpeedController.h"
using namespace frc;
RobotDriveBase::RobotDriveBase() { m_safetyHelper.SetSafetyEnabled(true); }
void RobotDriveBase::SetDeadband(double deadband) { m_deadband = deadband; }
/**
* Configure the scaling factor for using RobotDrive with motor controllers in a
* mode other than PercentVbus.
*
* @param maxOutput Multiplied with the output percentage computed by the drive
* functions.
*/
void RobotDriveBase::SetMaxOutput(double maxOutput) { m_maxOutput = maxOutput; }
void RobotDriveBase::SetExpiration(double timeout) {
m_safetyHelper.SetExpiration(timeout);
}
double RobotDriveBase::GetExpiration() const {
return m_safetyHelper.GetExpiration();
}
bool RobotDriveBase::IsAlive() const { return m_safetyHelper.IsAlive(); }
bool RobotDriveBase::IsSafetyEnabled() const {
return m_safetyHelper.IsSafetyEnabled();
}
void RobotDriveBase::SetSafetyEnabled(bool enabled) {
m_safetyHelper.SetSafetyEnabled(enabled);
}
/**
* Limit motor values to the -1.0 to +1.0 range.
*/
double RobotDriveBase::Limit(double value) {
if (value > 1.0) {
return 1.0;
}
if (value < -1.0) {
return -1.0;
}
return value;
}
/**
* Returns 0.0 if the given value is within the specified range around zero. The
* remaining range between the deadband and 1.0 is scaled from 0.0 to 1.0.
*
* @param value value to clip
* @param deadband range around zero
*/
double RobotDriveBase::ApplyDeadband(double value, double deadband) {
if (std::abs(value) > deadband) {
if (value > 0.0) {
return (value - deadband) / (1.0 - deadband);
} else {
return (value + deadband) / (1.0 - deadband);
}
} else {
return 0.0;
}
}
/**
* Normalize all wheel speeds if the magnitude of any wheel is greater than 1.0.
*/
void RobotDriveBase::Normalize(llvm::MutableArrayRef<double> wheelSpeeds) {
double maxMagnitude = std::abs(wheelSpeeds[0]);
for (size_t i = 1; i < wheelSpeeds.size(); i++) {
double temp = std::abs(wheelSpeeds[i]);
if (maxMagnitude < temp) {
maxMagnitude = temp;
}
}
if (maxMagnitude > 1.0) {
for (size_t i = 0; i < wheelSpeeds.size(); i++) {
wheelSpeeds[i] = wheelSpeeds[i] / maxMagnitude;
}
}
}