Package org.robwork.sdurw_trajectory
Class TrajectorySequenceTransform3D_fPtr
- java.lang.Object
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- org.robwork.sdurw_trajectory.TrajectorySequenceTransform3D_fPtr
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public class TrajectorySequenceTransform3D_fPtr extends java.lang.Object
Ptr stores a pointer and optionally takes ownership of the value.
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Constructor Summary
Constructors Constructor Description TrajectorySequenceTransform3D_fPtr()
Default constructor yielding a NULL-pointer.TrajectorySequenceTransform3D_fPtr(long cPtr, boolean cMemoryOwn)
TrajectorySequenceTransform3D_fPtr(TrajectorySequenceTransform3D_f ptr)
Do not take ownership of ptr.
ptr can be null.
The constructor is implicit on purpose.
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Method Summary
All Methods Static Methods Instance Methods Concrete Methods Modifier and Type Method Description TrajectorySequenceTransform3D_f
__ref__()
Dereferencing operator.TrajectorySequenceTransform3D_fCPtr
cptr()
Transform3Df
ddx(double t)
void
delete()
TrajectorySequenceTransform3D_f
deref()
The pointer stored in the object.double
duration()
Transform3Df
dx(double t)
double
endTime()
Returns the endTime of the trajectory.
The end time equals startTime() + duration().
boolean
equals(TrajectorySequenceTransform3D_f p)
static long
getCPtr(TrajectorySequenceTransform3D_fPtr obj)
TrajectorySequenceTransform3D_f
getDeref()
Member access operator.TrajectoryIteratorTransform3D_fPtr
getIterator(double dt)
SWIGTYPE_p_std__vectorT_rw__math__Transform3DT_float_t_t
getPath(double dt)
Constructs a discrete path based on the trajectory.
If uniform = true the path will be divided into the smallest number of
uniform steps for which the time stepsize <= dt.
If uniform = false the path is divided into steps of duration dt, except the
last interval which may be shorter to include the end point.
SWIGTYPE_p_std__vectorT_rw__math__Transform3DT_float_t_t
getPath(double dt, boolean uniform)
Constructs a discrete path based on the trajectory.
If uniform = true the path will be divided into the smallest number of
uniform steps for which the time stepsize <= dt.
If uniform = false the path is divided into steps of duration dt, except the
last interval which may be shorter to include the end point.
boolean
isNull()
checks if the pointer is nullboolean
isShared()
check if this Ptr has shared ownership or none
ownershipdouble
startTime()
Transform3Df
x(double t)
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Constructor Detail
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TrajectorySequenceTransform3D_fPtr
public TrajectorySequenceTransform3D_fPtr(long cPtr, boolean cMemoryOwn)
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TrajectorySequenceTransform3D_fPtr
public TrajectorySequenceTransform3D_fPtr()
Default constructor yielding a NULL-pointer.
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TrajectorySequenceTransform3D_fPtr
public TrajectorySequenceTransform3D_fPtr(TrajectorySequenceTransform3D_f ptr)
Do not take ownership of ptr.
ptr can be null.
The constructor is implicit on purpose.
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Method Detail
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getCPtr
public static long getCPtr(TrajectorySequenceTransform3D_fPtr obj)
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delete
public void delete()
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deref
public TrajectorySequenceTransform3D_f deref()
The pointer stored in the object.
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__ref__
public TrajectorySequenceTransform3D_f __ref__()
Dereferencing operator.
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getDeref
public TrajectorySequenceTransform3D_f getDeref()
Member access operator.
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equals
public boolean equals(TrajectorySequenceTransform3D_f p)
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isShared
public boolean isShared()
check if this Ptr has shared ownership or none
ownership- Returns:
- true if Ptr has shared ownership, false if it has no ownership.
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isNull
public boolean isNull()
checks if the pointer is null- Returns:
- Returns true if the pointer is null
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cptr
public TrajectorySequenceTransform3D_fCPtr cptr()
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x
public Transform3Df x(double t)
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dx
public Transform3Df dx(double t)
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ddx
public Transform3Df ddx(double t)
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duration
public double duration()
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startTime
public double startTime()
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getIterator
public TrajectoryIteratorTransform3D_fPtr getIterator(double dt)
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endTime
public double endTime()
Returns the endTime of the trajectory.
The end time equals startTime() + duration().
- Returns:
- The end time
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getPath
public SWIGTYPE_p_std__vectorT_rw__math__Transform3DT_float_t_t getPath(double dt, boolean uniform)
Constructs a discrete path based on the trajectory.
If uniform = true the path will be divided into the smallest number of
uniform steps for which the time stepsize <= dt.
If uniform = false the path is divided into steps of duration dt, except the
last interval which may be shorter to include the end point.
- Parameters:
dt
- [in] Step sizeuniform
- [in] Whether to sample the path uniformly- Returns:
- The discrete path.
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getPath
public SWIGTYPE_p_std__vectorT_rw__math__Transform3DT_float_t_t getPath(double dt)
Constructs a discrete path based on the trajectory.
If uniform = true the path will be divided into the smallest number of
uniform steps for which the time stepsize <= dt.
If uniform = false the path is divided into steps of duration dt, except the
last interval which may be shorter to include the end point.
- Parameters:
dt
- [in] Step size
- Returns:
- The discrete path.
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