2005-09-08 09:16:50 +00:00
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(*****************************************************************************
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* su4sml - a SecureUML repository for SML
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*
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* xmi_umlcore.sig - XMI-UML-Core datatypes for the import interface for su4sml
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* Copyright (C) 2005 Achim D. Brucker <brucker@inf.ethz.ch>
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* J<EFBFBD>rgen Doser <doserj@inf.ethz.ch>
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*
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* This file is part of su4sml.
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*
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* su4sml is free software; you can redistribute it and/or modify it under
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* the terms of the GNU General Public License as published by the Free
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* Software Foundation; either version 2 of the License, or (at your option)
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* any later version.
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*
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* su4sml is distributed in the hope that it will be useful, but WITHOUT ANY
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* WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
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* FOR A PARTICULAR PURPOSE. See the GNU General Public License for more
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* details.
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*
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* You should have received a copy of the GNU General Public License along
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* with this program; if not, write to the Free Software Foundation, Inc.,
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* 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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******************************************************************************)
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structure XMI_DataTypes =
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(* from UML 1.5 Core Overview: ----------------------------------------------
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* The Data Types package is the subpackage that specifies the different data
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* types that are used to define UML.
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*
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* the following constructs are currently not represented: ArgListsExpression,
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* Boolean, BooleanExpression, CallConcurrencyKind, Expression, Geometry,
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* Integer, LocationReference, Mapping, MappingExpression, Name,
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* ProcedureExpression, PseudostateKind, ScopeKind, String, TimeExpression,
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* TypeExpression, UnlimitedInteger
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* --------------------------------------------------------------------------*)
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struct
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open XMI_OCL
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datatype AggregationKind = NoAggregation | Aggregate | Composite
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(* from UML 1.5 Core: --------------------------------------------------------
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* ChangeableKind defines an enumeration that denotes how an AttributeLink or
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* LinkEnd may be modified.
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* --------------------------------------------------------------------------*)
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datatype ChangeableKind = Changeable (* No restrictions on modification. *)
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| Frozen (* The value may not be changed from the*)
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(* source end after the creation and *)
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(* initialization of the source object. *)
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(* Operations on the other end may *)
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(* change a value. *)
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| AddOnly (* If the multiplicity is not fixed, *)
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(* values may be added at any time from *)
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(* the source object, but once created a*)
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(* value may not be removed from the *)
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(* source end. Operations on the other *)
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(* end may change a value. *)
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(* from UML 1.5 Data Types: --------------------------------------------------
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* a Multiplicity [consists of a list of MultiplicityRanges and] defines a
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* non-empty set of non-negative integers.
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* a MultiplicityRange defines a range of integers. The upper bound of the
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* range cannot be below the lower bound. The lower bound must be a
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* nonnegative integer. The upper bound must be a nonnegative integer or the
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* special value unlimited, which indicates there is no upper bound on the
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* range.
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* --------------------------------------------------------------------------*)
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(* provisionally, we denote the upper bound 'unlimited' by "-1" *)
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type Multiplicity = (int * int) list
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datatype OrderingKind = Unordered | Ordered
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datatype ParameterDirectionKind = In | Out | Inout | Return
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(* from UML 1.5 Core: --------------------------------------------------------
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* VisibilityKind defines an enumeration that denotes how the element to which
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* it refers is seen outside the enclosing name space.
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* --------------------------------------------------------------------------*)
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datatype VisibilityKind = public (* Other elements may see and use the target*)
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(* element. *)
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| private (* Only the source element may see and use *)
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(* the target element. *)
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| protected (* Descendants of the source element may see *)
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(* and use the target element. *)
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| package (* Elements declared in the same package as *)
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(* the target element may see and use the *)
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(* target *)
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end
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structure XMI_ExtensionMechanisms =
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(* from UML 1.5 Extension Mechanisms Overview:--------------------------------
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* The Extension Mechanisms package is the subpackage that specifies how
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* specific UML model elements are customized and extended with new semantics
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* by using stereotypes, constraints, tag definitions, and tagged values.
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* A coherent set of such extensions, defined for specific purposes,
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* constitutes a UML profile.
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* --------------------------------------------------------------------------*)
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struct
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open XMI_DataTypes
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(* from UML 1.5 Extension Mechanisms:-----------------------------------------
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* The stereotype concept provides a way of branding (classifying) model
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* elements so that they behave in some respects as if they were instances of
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* new virtual metamodel constructs. These model elements have the same
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* structure (attributes, associations, operations) as similar non-stereotyped
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* model elements of the same kind. The stereotype may specify additional
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* constraints and tag definitions that apply to model elements. In addition,
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* a stereotype may be used to indicate a difference in meaning or usage
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* between two model elements with identical structure.
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* --------------------------------------------------------------------------*)
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type Stereotype = {xmiid: string,
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name: string,
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(* extendedElement: string list *)
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(* definedTag: string list *)
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stereotypeConstraint: Constraint option,
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baseClass: string option}
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(* from UML 1.5 Extension Mechanisms:-----------------------------------------
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* A tag definition specifies the tagged values that can be attached to a kind
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* of model element.
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* --------------------------------------------------------------------------*)
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type TagDefinition = {xmiid: string,
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name: string,
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multiplicity: Multiplicity}
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(* from UML 1.5 Extension Mechanisms:-----------------------------------------
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* A tagged value allows information to be attached to any model element in
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* conformance with its tag definition. Although a tagged value, being an
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* instance of a kind of ModelElement, automatically inherits the name
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* attribute, the name that is actually used in the tagged value is the name
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* of the associated tag definition.
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* --------------------------------------------------------------------------*)
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type TaggedValue = {xmiid: string,
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dataValue: string, (* the value of the tag *)
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tag_type: string (* xmi.idref to TagDefinition *)
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}
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end
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structure XMI_Core =
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(* from UML 1.5 Core Overview: ----------------------------------------------
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* The Core package is the most fundamental of the subpackages that compose
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* the UML Foundation package. It defines the basic abstract and concrete
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* metamodel constructs needed for the development of object models.
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* Abstract constructs are not instantiable and are commonly used to reify
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* key constructs, share structure, and organize the UML metamodel. Concrete
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* metamodel constructs are instantiable and reflect the modeling constructs
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* used by object modelers (cf. metamodelers). Abstract constructs defined
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* in the Core include ModelElement, GeneralizableElement, and Classifier.
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* Concrete constructs specified in the Core include Class, Attribute,
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* Operation, and Association.
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* --------------------------------------------------------------------------*
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* represented constructs are: Association, AssociationClass?, AssociationEnd,
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* Attribute, Class, Classifier?, Constraint, DataType, Generalization,
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* Interface, Operation, Parameter
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*
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* the following constructs are not represented: Abstraction, Artifact,
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* BehavioralFeature, Binding, Comment, Component, Dependency, Element,
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* ElementOwnership, ElementResidence, Enumeration?, EnumerationLiteral?
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* Feature, Flow, GeneralizableElement, Method, ModelElement, Namespace,
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* Node, Permission, PresentationElement, Primitive?,
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* ProgrammingLanguageDataType, Relationship, StructuralFeature,
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* TemplateArgument, TemplateParameter, Usage
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* --------------------------------------------------------------------------*)
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struct
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open XMI_ExtensionMechanisms
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2005-09-21 14:17:47 +00:00
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(* UML distinguishes between different kinds of dependencies: *)
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(* Abstraction, Binding, Permission, and Usage. WE do not distinguish *)
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(* these at the moment *)
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type Dependency = { xmiid: string,
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client: string,
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supplier: string,
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stereotype: string}
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2005-09-08 09:16:50 +00:00
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(* from UML 1.5 Core: --------------------------------------------------------
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* A generalization is a taxonomic relationship between a more general
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* element and a more specific element. The more specific element is
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* fully consistent with the more general element (it has all of its
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* properties, members, and relationships) and may contain additional
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* information.
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* not supported : association powertype
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* stereotype <<implementation>>
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* constraints 'complete', 'disjoint',
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* 'incomplete', 'overlapping'
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* --------------------------------------------------------------------------*)
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type Generalization = { xmiid: string,
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child_id : string,
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parent_id : string }
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(* from UML 1.5 Core: --------------------------------------------------------
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* An attribute is a named slot within a classifier that describes a range
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* of values that instances of the classifier may hold.
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* not supported: association associationEnd
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* --------------------------------------------------------------------------*)
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type Attribute = { xmiid : string,
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name : string,
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type_id : string, (* xmi.idref to type *)
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(* initialValue : ..., *)
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(* inherited from StructuralFeature: *)
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multiplicity : Multiplicity,
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ordering : OrderingKind,
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(* targetScope : ScopeKind *)
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changeability : ChangeableKind,
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(* inherited from Feature: *)
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(* ownerScope : ... , *)
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visibility : VisibilityKind
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}
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(* from UML 1.5 Core: --------------------------------------------------------
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* A parameter is an unbound variable that can be changed, passed, or
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* returned. A parameter may include a name, type, and direction of
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* communication. Parameters are used in the specification of operations,
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* messages and events, templates, etc.
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* not supported: attribute defaultValue
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* --------------------------------------------------------------------------*)
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type Parameter = { xmiid : string,
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name : string,
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kind : ParameterDirectionKind,
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(* defaultValue : ..., *)
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type_id : string (* xmi.idref to type *)}
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(* fom UML 1.5 Core: ---------------------------------------------------------
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* An operation is a service that can be requested from an object to effect
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* behavior. An operation has a signature, which describes the actual
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* parameters that are possible (including possible return values).
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* not supported: taggedValue "semantics"
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* --------------------------------------------------------------------------*)
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type Operation = { xmiid : string,
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name : string,
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(* concurrency : CallConcurrencyKind, *)
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(* isRoot : bool, *)
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(* isLeaf : bool, *)
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(* isAbstract : bool, *)
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(* specification : string, *)
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(* methods: UMLMethod list, *)
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(* inherited from BehavioralFeature: *)
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isQuery : bool,
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parameter : Parameter list,
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(* inherited from Feature: *)
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(* ownerScope : ScopeKind, *)
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visibility : VisibilityKind,
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(* inherited from ModelElemt: *)
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(* xmi.idref to UMLConstraint *)
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constraints : string list }
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(* from UML 1.5 Core: --------------------------------------------------------
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* A class is a description of a set of objects that share the same
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* attributes, operations, methods, relationships, and semantics. A class
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* may use a set of interfaces to specify collections of operations it
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* provides to its environment.
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* not supported: stereotypes <<auxiliary>>, <<focus>>,
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* <<implementation>>, <<type>>
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* --------------------------------------------------------------------------*)
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type Class = { xmiid : string,
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name : string,
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isActive : bool,
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visibility : VisibilityKind,
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(* inherited from GeneralizableElement: *)
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(* isRoot : bool, *)
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(* isAbstract : bool, *)
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isLeaf : bool,
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(* xmi.idref to Generalization *)
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generalizations: string list,
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(* inherited from Classifier: *)
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attributes : Attribute list,
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operations: Operation list,
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(* inherited from ModelElement: *)
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(* xmi.idref to Constraint *)
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invariant: string list ,
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stereotype: string list,
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taggedValue: TaggedValue list,
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clientDependency: string list,
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supplierDependency: string list}
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2005-09-08 09:16:50 +00:00
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(* from UML 1.5 Core: --------------------------------------------------------
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* A data type is a type whose values have no identity (i.e., they are
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* pure values). Data types include primitive built-in types (such as
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* integer and string) as well as definable enumeration types (such as
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* the predefined enumeration type boolean whose literals are false and
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* true).
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* --------------------------------------------------------------------------*)
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(* type UMLDataType = UMLPrimitive | UMLEnumeration *)
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(* from UML 1.5 Core: --------------------------------------------------------
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* A Primitive defines a predefined DataType, without any relevant UML
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* substructure (i.e., it has no UML parts). A primitive datatype may have an
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* algebra and operations defined outside of UML, for example, mathematically.
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* Primitive datatypes used in UML itself include Integer, UnlimitedInteger,
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* and String.
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* --------------------------------------------------------------------------*)
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type Primitive = { xmiid: string,
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name: string,
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operations: Operation list,
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generalizations: string list,
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invariant: string list}
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2005-09-08 09:16:50 +00:00
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(* from UML 1.5 Core: --------------------------------------------------------
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* Enumeration defines a kind of DataType whose range is a list of predefined
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* values, called enumeration literals.
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* --------------------------------------------------------------------------*)
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(*type Enumeration = { xmiid : string,
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name: string,
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literal : string list,
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(* inherited from GeneralizableElement: *)
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(* isRoot : bool, *)
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(* isAbstract : bool, *)
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(* isLeaf : bool, *)
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(* inherited from Feature: *)
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operations: Operation list } *)
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(* from UML 1.5 Core: --------------------------------------------------------
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* An interface is a named set of operations that characterize the
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* behavior of an element.
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* --------------------------------------------------------------------------*)
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type Interface = { xmiid : string,
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name: string,
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generalizations: string list,
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operations : Operation list,
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2005-09-21 14:17:47 +00:00
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invariant: string list,
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clientDependency: string list,
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supplierDependency: string list}
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2005-09-08 09:16:50 +00:00
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type Collection = { xmiid : string,
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name : string,
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operations: Operation list,
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generalizations: string list,
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elementtype: string (* xmi.idref to classifier *)}
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type Sequence = Collection
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type Set = Collection
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type Bag = Collection
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type OrderedSet = Collection
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type Enumeration = { xmiid : string,
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name : string,
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operations: Operation list,
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generalizations: string list,
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literals: string list, (* names of literals *)
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invariant: string list}
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type Void = {xmiid: string,
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name : string }
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(* from UML 1.5 Core: --------------------------------------------------------
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* An association end is an endpoint of an association, which connects
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* the association to a classifier. Each association end is part of one
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* association. The association-ends of each association are ordered.
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* not supported: associations qualifier, specification,
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* stereotypes <<association>>, <<global>>, <<local>>,
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* <<parameter>>, <<self>>
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* --------------------------------------------------------------------------*)
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type AssociationEnd = { xmiid : string,
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2005-09-13 15:56:31 +00:00
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name : string option,
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2005-09-08 09:16:50 +00:00
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isNavigable: bool,
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ordering : OrderingKind,
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aggregation : AggregationKind,
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(* targetScope: ScopeKind, *)
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multiplicity : Multiplicity,
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changeability: ChangeableKind,
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visibility : VisibilityKind,
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participant_id : string (* xmi.idref to class *) }
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(* from UML 1.5 Core: --------------------------------------------------------
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* An association defines a semantic relationship between classifiers.
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* The instances of an association are a set of tuples relating instances
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* of the classifiers. Each tuple value may appear at most once.
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* not supported: stereotype <<implicit>>,
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* constraint "xor",
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* tagged value "persistence"
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* generalization of associations
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* --------------------------------------------------------------------------*)
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type Association = { xmiid : string,
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name : string option,
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connection: AssociationEnd list }
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(* from UML 1.5 Core: --------------------------------------------------------
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* An association class is an association that is also a class. It not
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* only connects a set of classifiers but also defines a set of features
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* that belong to the relationship itself and not any of the classifiers.
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* not supported....
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* --------------------------------------------------------------------------*)
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2005-09-26 10:23:34 +00:00
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type AssociationClass = { xmiid : string,
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name : string,
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isActive : bool,
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visibility : VisibilityKind,
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(* inherited from GeneralizableElement: *)
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(* isRoot : bool, *)
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(* isAbstract : bool, *)
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isLeaf : bool,
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(* xmi.idref to Generalization *)
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generalizations: string list,
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(* inherited from Classifier: *)
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attributes : Attribute list,
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operations: Operation list,
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(* inherited from ModelElement: *)
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(* xmi.idref to Constraint *)
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invariant: string list ,
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stereotype: string list,
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taggedValue: TaggedValue list,
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clientDependency: string list,
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supplierDependency: string list,
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connection: AssociationEnd list}
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2005-09-08 09:16:50 +00:00
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(* from UML 1.5 Core: --------------------------------------------------------
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* A classifier is an element that describes behavioral and structural
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* features; it comes in several specific forms, including class,
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* data type, interface, component, artifact, and others that are defined
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* in other metamodel packages.
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* not supported: associations powertypeRane, specifiedEnd
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* stereotypes <<metaclass>>, <<powertype>>, <<process>>,
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* <<thread>>, <<utility>>
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* taggedValues persistence, semantics
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* --------------------------------------------------------------------------*)
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datatype Classifier = Primitive of Primitive
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| Class of Class
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2005-09-26 10:23:34 +00:00
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| AssociationClass of AssociationClass
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2005-09-08 09:16:50 +00:00
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| Interface of Interface
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| Enumeration of Enumeration
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| Collection of Collection
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| Sequence of Sequence
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| Set of Set
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| Bag of Bag
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| OrderedSet of OrderedSet
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| Void of Void
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2005-09-15 13:32:21 +00:00
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fun classifier_stereotype_of (Class{stereotype,...}) = stereotype
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2005-09-26 11:02:10 +00:00
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| classifier_stereotype_of (AssociationClass{stereotype,...}) = stereotype
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2005-09-15 15:56:28 +00:00
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| classifier_stereotype_of _ = nil
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2005-09-15 13:32:21 +00:00
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2005-09-08 09:16:50 +00:00
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fun classifier_name_of (Primitive{name,...}) = name
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| classifier_name_of (Class{name,...}) = name
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2005-09-26 10:23:34 +00:00
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| classifier_name_of (AssociationClass{name,...}) = name
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2005-09-08 09:16:50 +00:00
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| classifier_name_of (Interface{name,...}) = name
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| classifier_name_of (Enumeration{name,...}) = name
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| classifier_name_of (Collection{name,...}) = name
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| classifier_name_of (Sequence{name,...}) = name
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| classifier_name_of (Set{name,...}) = name
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| classifier_name_of (Bag{name,...}) = name
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| classifier_name_of (OrderedSet{name,...}) = name
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| classifier_name_of (Void{name,...}) = name
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fun classifier_xmiid_of (Primitive{xmiid,...}) = xmiid
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| classifier_xmiid_of (Class{xmiid,...}) = xmiid
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2005-09-26 10:23:34 +00:00
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| classifier_xmiid_of (AssociationClass{xmiid,...}) = xmiid
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2005-09-08 09:16:50 +00:00
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| classifier_xmiid_of (Interface{xmiid,...}) = xmiid
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| classifier_xmiid_of (Enumeration{xmiid,...}) = xmiid
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| classifier_xmiid_of (Collection{xmiid,...}) = xmiid
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| classifier_xmiid_of (Sequence{xmiid,...}) = xmiid
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| classifier_xmiid_of (Set{xmiid,...}) = xmiid
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| classifier_xmiid_of (Bag{xmiid,...}) = xmiid
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| classifier_xmiid_of (OrderedSet{xmiid,...}) = xmiid
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| classifier_xmiid_of (Void{xmiid,...}) = xmiid
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fun classifier_generalizations_of (Primitive{generalizations,...}) = generalizations
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| classifier_generalizations_of (Class{generalizations,...}) = generalizations
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2005-09-26 10:23:34 +00:00
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| classifier_generalizations_of (AssociationClass{generalizations,...}) = generalizations
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2005-09-08 09:16:50 +00:00
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| classifier_generalizations_of (Interface{generalizations,...}) = generalizations
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| classifier_generalizations_of (Enumeration{generalizations,...}) = generalizations
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| classifier_generalizations_of (Collection{generalizations,...}) = generalizations
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| classifier_generalizations_of (Sequence{generalizations,...}) = generalizations
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| classifier_generalizations_of (Set{generalizations,...}) = generalizations
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| classifier_generalizations_of (Bag{generalizations,...}) = generalizations
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| classifier_generalizations_of (OrderedSet{generalizations,...}) = generalizations
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2005-09-26 11:02:10 +00:00
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| classifier_generalizations_of _ = nil
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2005-09-08 09:16:50 +00:00
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fun classifier_elementtype_of (Collection{elementtype,...}) = elementtype
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| classifier_elementtype_of (Sequence{elementtype,...}) = elementtype
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| classifier_elementtype_of (Set{elementtype,...}) = elementtype
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| classifier_elementtype_of (Bag{elementtype,...}) = elementtype
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| classifier_elementtype_of (OrderedSet{elementtype,...}) = elementtype
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end
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