Structures Class

List of structures.

Definition

Namespace: DHI.Mike1D.StructureModule
Assembly: DHI.Mike1D.StructureModule (in DHI.Mike1D.StructureModule.dll) Version: 24.0.0.0 (11.1.1.1111)
C#
public class Structures : IStructures, IList<IStructure>, 
	ICollection<IStructure>, IEnumerable<IStructure>, IEnumerable
Inheritance
Object    Structures
Implements
IStructures, ICollectionIStructure, IEnumerableIStructure, IListIStructure, IEnumerable

Constructors

Structures Default constructor

Properties

Count 
IsReadOnlyGets a value indicating whether the ICollectionT is read-only.
Item 

Methods

Add 
ClearRemoves all items from the ICollectionT.
ContainsDetermines whether the ICollectionT contains a specific value.
CopyToCopies the elements of the ICollectionT to an Array, starting at a particular Array index.
EqualsDetermines whether the specified object is equal to the current object.
(Inherited from Object)
FinalizeAllows an object to try to free resources and perform other cleanup operations before it is reclaimed by garbage collection.
(Inherited from Object)
GetEnumerator 
GetHashCodeServes as the default hash function.
(Inherited from Object)
GetTypeGets the Type of the current instance.
(Inherited from Object)
IndexOfDetermines the index of a specific item in the IListT.
InsertInserts an item to the IListT at the specified index.
MemberwiseCloneCreates a shallow copy of the current Object.
(Inherited from Object)
RemoveRemoves the first occurrence of a specific object from the ICollectionT.
RemoveAtRemoves the IListT item at the specified index.
Sort Sort the structures using the specified comparison.
ToStringReturns a string that represents the current object.
(Inherited from Object)

Extension Methods

BinarySearchIStructure Searches the entire sorted IListT for an element using the provided comparer and returns the zero-based index of the element.

This differs from the "ordinary" binary search in allowing a comparer delegate that defines whether an item is found (returning 0), whether the item in the list is before (<0) or after (>0) that knows how to compare a class with its key. Example, if the list contains classes of type T having an id number and the class is sorted on that id, then the keySelector returns the id number for that class.

Example

If having a list of doubles, to find 4.5 in the list, use: int index = list.BinarySearch(d => d.CompareTo(4.5))

(Defined by GenericExtensions)
BinarySearchIStructure Searches the entire sorted IListT for an element and returns the zero-based index of the element.

If the key is not found, a negative number is returned, which can be intepreted as the bitwise complement of the interval of indices that the key is in between, i.e. list[interval-1] < key < list[interval]


(Defined by GenericExtensions)
BinarySearchIStructure Searches the entire sorted IListT for an element using the provided comparer and returns the zero-based index of the element.

If the key is not found, a negative number is returned, which can be intepreted as the bitwise complement of the interval of indices that the key is in between, i.e. list[interval-1] < key < list[interval]


(Defined by GenericExtensions)
BinarySearchIStructure, TKey Searches the entire sorted IListT for an element and returns the zero-based index of the element.

If the key is not found, a negative number is returned, which can be intepreted as the bitwise complement of the interval of indices that the key is in between, i.e. list[interval-1] < key < list[interval]

This differs from the "ordinary" binary search in allowing a keySelectorcomparer that knows how to compare a class with its key. Example, if the list contains classes of type T having an id number and the class is sorted on that id, then the keySelector returns the id number for that class.


(Defined by GenericExtensions)
BinarySearchIStructure, TKey Searches the entire sorted IListT for an element using the provided comparer and returns the zero-based index of the element.

If the key is not found, a negative number is returned, which can be intepreted as the bitwise complement of the interval of indices that the key is in between, i.e. list[interval-1] < key < list[interval]

This differs from the "ordinary" binary search in allowing a keySelectorcomparer that knows how to compare a class with its key. Example, if the list contains classes of type T having an id number and the class is sorted on that id, then the keySelector returns the id number for that class.


(Defined by GenericExtensions)
FindIndexIStructureSearches for an element that matches the conditions defined by the specified predicate, and returns the zero-based index of the first occurrence within the range of elements in the list.
(Defined by GenericExtensions)
FindIndexIStructureSearches for an element that matches the conditions defined by the specified predicate, and returns the zero-based index of the first occurrence within the range of elements in the ListT that extends from the specified index to the last element.
(Defined by GenericExtensions)
SortIStructure Sorts the elements in the entire List{T} using the default comparer.

A quick sort algorithm is used. Quick sort is a un-stable sort algorithm i.e. if two elements are equal their order may not be preserved.

If the provided IList is either an array or a list, the build in sorting method is used (also quick sort).


(Defined by GenericExtensions)
SortIStructure Sorts the elements in the entire List{T} using the provided comparer.

A quick sort algorithm is used. Quick sort is a un-stable sort algorithm i.e. if two elements are equal their order may not be preserved.

If the provided IList is either an array or a list, the build in sorting method is used (also quick sort).


(Defined by GenericExtensions)
SortStableIStructure Sorts the elements in the entire List{T} using the default comparer.

A merge sort algorithm is used. merge sort is a stable sort algorithm i.e. if two elements are equal their order are preserved.


(Defined by GenericExtensions)
SortStableIStructure Sorts the elements in the entire List{T} using the provided comparer.

A merge sort algorithm is used. merge sort is a stable sort algorithm i.e. if two elements are equal their order are preserved.


(Defined by GenericExtensions)
SortStableIStructure Sorts the elements in the entire List{T} using the provided comparer.

A merge sort algorithm is used. merge sort is a stable sort algorithm i.e. if two elements are equal their order are preserved.


(Defined by GenericExtensions)

See Also