XYZLocationSpan Methods |
The XYZLocationSpan type exposes the following members.
Name | Description | |
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Clone |
Clone the properties of the XYZLocationSpan.
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CompareTo |
Compares the current instance with another object of the same type.
(Inherited from AbstractLocationSpan.) | |
Contains(ILocation) |
Decides wheather location is contained inside the location span or on the edge of the span.
Location comparisons are case insensitive, and uses the Constants.LOCATION_EQUAL_TOLERANCE,
i.e., the location can be tolerance outside the span and still be contained.
(Inherited from AbstractLocationSpan.) | |
Contains(ILocation, Double) |
Decides wheather location is contained inside the location span or on the edge of the span.
Location comparisons are case insensitive, and uses the tolerance,
i.e., the location can be tolerance outside the span and still be contained. tolerance may
be negative.
(Inherited from AbstractLocationSpan.) | |
ContainsChainage(Double) |
Decides wheather a chainage value is contained inside the location span chainage values
or on the edge of the span.
Comparison uses the Constants.LOCATION_EQUAL_TOLERANCE,
i.e., the chainage can be tolerance outside the span and still be contained.
(Inherited from AbstractLocationSpan.) | |
ContainsChainage(Double, Double) |
Decides whether a chainage value is contained inside the location span chainage values
or on the edge of the span.
Comparison uses the tolerance,
i.e., the chainage can be tolerance outside the span and still be contained.
Negative values for tolerance are allowed ("shortening" the span)
(Inherited from AbstractLocationSpan.) | |
CreateLocation |
Creates a location at the specified chainage of the span. Derived
data is automatically calculated at the location.
The chainage must lay within the span.
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CreateSubLocationSpan |
Creates a sub-locationSpan defined within chainage interval. Derived
data is automatically adjusted to match locationspan
The chainages must lay within the span.
If an existing coordinate is inside but very close to one of the new locationspan end points, that coordinate will not be part of the new span, hence you may not find all points of the existing span in the new span. It uses LOCATION_EQUAL_TOLERANCE on the M value. | |
Equals(Object) | Determines whether the specified object is equal to the current object. (Inherited from Object.) | |
Equals(ILocationSpan) |
Indicates whether the current object is equal to another object of the same type.
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Finalize | Allows an object to try to free resources and perform other cleanup operations before it is reclaimed by garbage collection. (Inherited from Object.) | |
GetEndLocation |
Gets the end location of the span. The span can not be edited by editing
this location.
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GetHashCode | Serves as the default hash function. (Inherited from Object.) | |
GetStartLocation |
Gets the start location of the span. The span can not be edited by editing
this location.
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GetType | Gets the Type of the current instance. (Inherited from Object.) | |
IDEquals |
Check if the ID equals the others ID, case ignored (culture invariant)
(Inherited from AbstractLocationSpan.) | |
Intersection(ILocationSpan) |
Returns the intersection of this and other.
There must be a strict overlap, i.e., the intersection must be larger than
LOCATION_EQUAL_TOLERANCE.
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Intersection(ILocationSpan, Double) |
Returns the intersection of this and other.
There must be a strict overlap, i.e., the intersection must be larger than
minOverlap. Set to zero if very small overlaps is allowed.
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Intersection(Double, Double, Double) |
Returns the intersection of this and chainages of another locationspan.
There must be a strict overlap, i.e., the intersection must be larger than
minOverlap. Set to zero if very small overlaps is allowed.
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Length |
Length of the location span.
(Inherited from AbstractLocationSpan.) | |
MemberwiseClone | Creates a shallow copy of the current Object. (Inherited from Object.) | |
MidPoint |
Returns location midway in the location span
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OverLaps(ILocationSpan) |
Decides whether a location span overlaps the current locationSpan.
There must be a strict overlap, i.e., the intersection must be larger than
LOCATION_EQUAL_TOLERANCE.
(Inherited from AbstractLocationSpan.) | |
OverLaps(ILocationSpan, Double) |
Decides whether a location span overlaps the current locationSpan. If overlap is less than
minOverlap, false is returned.
(Inherited from AbstractLocationSpan.) | |
OverLaps(Double, Double, Double) |
Decides whether a location span overlaps the chainages of another locationSpan. If overlap is less than
minOverlap, false is returned.
(Inherited from AbstractLocationSpan.) | |
StrictContains(ILocation) | Decides whether location is contained inside the location span. Inside is understood as startChainage > location.Chainage and location.Chainage > endLocation Location comparisons are case insensitive, and uses the Constants.LOCATION_EQUAL_TOLERANCE, i.e., location.Chainage must be tolerance inside the span to evaluate to true. | |
StrictContains(ILocationSpan) |
Decides whether a location span is contained inside this location span. This is the case when both the start
and end location is contained inside the location span
(Inherited from AbstractLocationSpan.) | |
StrictContainsChainage |
Decides whether a chainage value is strictly contained inside the location span
chainage values.
Comparison uses the Constants.LOCATION_EQUAL_TOLERANCE,
i.e., the chainage must be tolerance inside the span before it is contained.
(Inherited from AbstractLocationSpan.) | |
ToString |
Return string representation of XYZLocationSpan
(Overrides ObjectToString.) |
Name | Description | |
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OverLap(ILocationSpan) | Overloaded.
Calculate overlap of location span and another locationSpan.
If the result is positive, the value is the actual overlap.
If the result is negative, there is no overlap, and the value is the negative distance between the two spans.
(Defined by GenericExtensions.) | |
OverLap(Double, Double) | Overloaded.
Calculate overlap of location span and the chainages of another locationSpan.
If the result is positive, the value is the actual overlap.
If the result is negative, there is no overlap, and the value is the negative distance between the two spans.
(Defined by GenericExtensions.) |