| Function | Example | Description |
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abstract function # { in ref feature seq[0..*] : Anything in ref feature index[1] : Positive }
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package IndexTest { private import SequenceFunctions::*; attribute a = (4, 2, 5, 1); attribute indexTest = a#(3); }
| - Returns the element at the specified index position in the sequence. Indexing starts at 1.
- Related:
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abstract function equals { in ref feature x[0..*] : Anything in ref feature y[0..*] : Anything }
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package EqualsTest { private import SequenceFunctions::*; attribute a1 = (10, 20); attribute b1 = (20, 10); attribute c1 = (20, 10);
attribute equalsTest1 = equals(a1, b1); attribute equalsTest2 = equals(b1, c1); }
>> equalsTest1 false >> equalsTest2 true
| - Returns true if sequences x and y contain the same elements in the same order.
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abstract function same { in ref feature x[0..*] : Anything in ref feature y[0..*] : Anything }
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package SameTest { private import SequenceFunctions::*; attribute a1 = (10, 20); attribute b1 = (20, 10); attribute sameTest1 = same(a1, b1); attribute sameTest2 = same(a1, a1); }
>> sameTest1 false >> sameTest2 true
| - Returns true if sequences x and y refer to the same instance.
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abstract function size { in ref feature seq[0..*] : Anything }
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package SizeTest { private import SequenceFunctions::*; attribute a = (10, 20, 30); attribute sizeTest = size(a); }
| - Returns the number of elements in the sequence x.
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abstract function isEmpty { in ref feature seq[0..*] : Anything }
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package IsEmptyTest { private import SequenceFunctions::*; attribute a = (10, 20, 30); attribute isEmptyTest = isEmpty(a); }
| - Returns true if the sequence x has no elements.
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abstract function notEmpty { in ref feature seq[0..*] : Anything }
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package NotEmptyTest { private import SequenceFunctions::*; attribute a = (10, 20, 30); attribute notEmptyTest = notEmpty(a); }
| - Returns true if the sequence x contains one or more elements.
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abstract function includes { in ref feature seq1[0..*] : Anything in ref feature seq2[0..*] : Anything }
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package IncludesTest { private import SequenceFunctions::*; attribute a = (4, 2, 3); attribute b = (3, 2); attribute includesTest = includes(a, b); }
| - Returns true if sequence x contains elements in sequence y.
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abstract function includesOnly { in ref feature seq1[0..*] : Anything in ref feature seq2[0..*] : Anything }
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package IncludesOnlyTest { private import SequenceFunctions::*; attribute a = (4, 2, 3); attribute b = (4, 3, 2); attribute includesOnlyTest = includesOnly(a, b); }
| - Returns true if all elements of sequence x are included in sequence y.
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abstract function excludes { in ref feature seq1[0..*] : Anything in ref feature seq2[0..*] : Anything }
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package ExcludesTest { private import SequenceFunctions::*; attribute a = (4, 2, 3); attribute b = 1; attribute excludesTest = excludes(a, b); }
| - Returns true if none of the elements in sequence y are present in sequence x.
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abstract function union { in ref feature seq1[0..*] : Anything in ref feature seq2[0..*] : Anything }
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package UnionTest { private import SequenceFunctions::*; attribute a = (4, 2, 3); attribute b = 1; attribute unionTest = union(a, b); }
| - Returns a new sequence containing all elements from sequences x and y.
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abstract function intersection { in ref feature seq1[0..*] : Anything in ref feature seq2[0..*] : Anything }
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package IntersectionTest { private import SequenceFunctions::*; attribute a = (4, 2, 3); attribute b = 2; attribute intersectionTest = intersection(a, b); }
| - Returns a sequence containing elements common to both sequences x and y.
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abstract function including { in ref feature seq[0..*] : Anything in ref feature values[0..*] : Anything }
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package IncludingTest { private import SequenceFunctions::*; attribute a = (4, 2); attribute b = 2; attribute includingTest = including(a, b); }
| - Returns a new sequence with element y appended to the end of sequence x.
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abstract function includingAt { in ref feature seq[0..*] : Anything in ref feature values[0..*] : Anything in ref feature index[1] : Positive }
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package IncludingAtTest { private import SequenceFunctions::*; attribute a = (4, 2); attribute b = 5; attribute includingAtTest = includingAt(a, b, 2); }
| - Returns a new sequence with element y inserted into sequence x at position i.
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abstract function excluding { in ref feature seq[0..*] : Anything in ref feature values[0..*] : Anything }
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package ExcludingTest { private import SequenceFunctions::*; attribute a = (4, 2); attribute b = 2; attribute excludingTest = excluding(a, b); }
| - Returns a new sequence with all occurrences of element y removed from sequence x.
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abstract function excludingAt { in ref feature seq[0..*] : Anything in ref feature startIndex[1] : Positive in ref feature endIndex[1] : Positive }
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package ExcludingAtTest { private import SequenceFunctions::*; attribute a = (4, 2, 5, 1); attribute b = 2; attribute excludingAtTest = excludingAt(a, b, 2); }
| - Returns a new sequence with elements removed from sequence x between indexes y and z.
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abstract function subsequence { in ref feature seq[0..*] : Anything in ref feature startIndex[1] : Positive in ref feature endIndex[1] : Positive }
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package SubsequenceTest { private import SequenceFunctions::*; attribute a = (4, 2, 5, 1); attribute subSequenceTest = subsequence(a, 2, 3); }
| - Returns a new sequence containing elements from sequence x starting at y and ending at z.
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abstract function head { in ref feature seq[0..*] : Anything }
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package HeadTest { private import SequenceFunctions::*; attribute a = (4, 2, 5, 1); attribute headTest = head(a); }
| - Returns the first element of sequence x.
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abstract function tail { in ref feature seq[0..*] : Anything }
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package TailTest { private import SequenceFunctions::*; attribute a = (4, 2, 5, 1); attribute tailTest = tail(a); }
| - Returns a sequence containing all elements of x except the first.
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abstract function last { in ref feature seq[0..*] : Anything }
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package LastTest { private import SequenceFunctions::*; attribute a = (4, 2, 5, 1); attribute lastTest = last(a); }
| - Returns the last element of sequence x.
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