Application module: Functional decomposition to design ISO/TS 10303-1676:2018-11(E)
© ISO

Cover page
Table of contents
Copyright
Foreword
Introduction
1 Scope
2 Normative references
3 Terms, definitions and abbreviated terms
    3.1 Terms and definitions
    3.2 Abbreviated terms

4 Information requirements
   4.1 Required AM ARMs
   4.2 ARM type definition
   4.3 ARM entity definitions
   4.4 ARM subtype constraint definition
5 Module interpreted model
   5.1 Mapping specification
   5.2 MIM EXPRESS short listing
     5.2.1 MIM type definitions
     5.2.2 MIM entity definitions

A MIM short names
B Information object registration
C ARM EXPRESS-G   EXPRESS-G
D MIM EXPRESS-G   EXPRESS-G
E Computer interpretable listings
F Change history
Bibliography
Index

5.1 Mapping specification

In the following, "Application element" designates any entity data type defined in Clause 4, any of its explicit attributes and any subtype constraint. "MIM element" designates any entity data type defined in Clause 5.2 or imported with a USE FROM statement, from another EXPRESS schema, any of its attributes and any subtype constraint defined in Clause 5.2 or imported with a USE FROM statement.

This clause contains the mapping specification that defines how each application element of this part of ISO 10303 (see Clause 4) maps to one or more MIM elements (see Clause 5.2).

The mapping for each application element is specified in a separate subclause below. The mapping specification of an attribute of an ARM entity is a subclause of the clause that contains the mapping specification of this entity. Each mapping specification subclause contains up to five elements.

Title: The clause title contains:

MIM element: This section contains, depending on the considered application element:

When the mapping of an application element involves more than one MIM element, each of these MIM elements is presented on a separate line in the mapping specification, enclosed between parentheses or brackets.

Source: This section contains:

This section is omitted when the keywords PATH or IDENTICAL MAPPING or NO MAPPING EXTENSION PROVIDED are used in the MIM element section.

Rules: This section contains the name of one or more global rules that apply to the population of the MIM entity data types listed in the MIM element section or in the reference path. When no rule applies, this section is omitted.

A reference to a global rule may be followed by a reference to the subclause in which the rule is defined.

Constraint: This section contains the name of one or more subtype constraints that apply to the population of the MIM entity data types listed in the MIM element section or in the reference path. When no subtype constraint applies, this section is omitted.

A reference to a subtype constraint may be followed by a reference to the subclause in which the subtype constraint is defined.

Reference path: This section contains:

For the expression of reference paths and of the constraints between MIM elements, the following notational conventions apply:

[] enclosed section constrains multiple MIM elements or sections of the reference path are required to satisfy an information requirement;
() enclosed section constrains multiple MIM elements or sections of the reference path are identified as alternatives within the mapping to satisfy an information requirement;
{} enclosed section constrains the reference path to satisfy an information requirement;
<> enclosed section constrains at one or more required reference path;
|| enclosed section constrains the supertype entity;
-> the attribute, whose name precedes the -> symbol, references the entity or select type whose name follows the -> symbol;
<- the entity or select type, whose name precedes the <- symbol, is referenced by the entity attribute whose name follows the <- symbol;
[i] the attribute, whose name precedes the [i] symbol, is an aggregate; any element of that aggregate is referred to;
[n] the attribute, whose name precedes the [n] symbol, is an ordered aggregate; member n of that aggregate is referred to;
=> the entity, whose name precedes the => symbol, is a supertype of the entity whose name follows the => symbol;
<= the entity, whose name precedes the <= symbol, is a subtype of the entity whose name follows the <= symbol;
= the string, select, or enumeration type is constrained to a choice or value;
\ the reference path expression continues on the next line;
* one or more instances of the relationship entity data type may be assembled in a relationship tree structure. The path between the relationship entity and the related entities, is enclosed with braces;
-- the text following is a comment or introduces a clause reference;
*> the select or enumeration type, whose name precedes the *> symbol, is extended into the select or enumeration type whose name follows the *> symbol;
<* the select or enumeration type, whose name precedes the <* symbol, is an extension of the select or enumeration type whose name follows the <* symbol;
!{} section enclosed by {} indicates a negative constraint placed on the mapping.
The definition and use of mapping templates is not supported in the present version of the application modules. However, use of predefined templates /SUBTYPE/ and /SUPERTYPE/ is supported.

5.1.1 Add_element

This application object, Add_element, is defined in the module change_management. This mapping section extends the mapping of Add_element, to include assertions defined in this module.

5.1.1.1 Add_element to * (as current_design_object)

Reference path:   add_element <=
change_element <=
group <-
group_assignment.assigned_group
group_assignment =>
current_change_element_assignment
current_change_element_assignment.items[i] ->
change_management_object
change_management_object *>
fdtd_change_management_object =
(/MAPPING_OF(Design_functional_unit_allocation_to_assembly_component)/)
(/MAPPING_OF(Design_functional_unit_allocation_to_reference_functional_unit)/)

5.1.2 Component_swap_specification

MIM element: modify_element
Source: ISO 10303-1661

5.1.2.1 Component_swap_specification to Design_functional_unit_allocation_to_assembly_component (as current_design_object)

MIM element: PATH
Reference path:   modify_element <=
change_element <=
group <-
group_assignment.assigned_group
group_assignment =>
current_change_element_assignment
current_change_element_assignment.items[i] ->
change_management_object =
product_definition_relationship
{product_definition_relationship
product_definition_relationship.name = 'design functional unit allocation to assembly component'}

5.1.2.2 Component_swap_specification to Design_functional_unit_allocation_to_assembly_component (as previous_design_object)

MIM element: PATH
Reference path:   modify_element <=
change_element <=
group <-
group_assignment.assigned_group
group_assignment =>
previous_change_element_assignment
previous_change_element_assignment.items[i] ->
change_management_object =
product_definition_relationship
{product_definition_relationship
product_definition_relationship.name = 'design functional unit allocation to assembly component'}

5.1.3 Delete_element

This application object, Delete_element, is defined in the module change_management. This mapping section extends the mapping of Delete_element, to include assertions defined in this module.

5.1.3.1 Delete_element to * (as previous_design_object)

Reference path:   delete_element <=
change_element <=
group <-
group_assignment.assigned_group
group_assignment =>
previous_change_element_assignment
previous_change_element_assignment.items[i] ->
change_management_object
change_management_object *>
fdtd_change_management_object =
(/MAPPING_OF(Design_functional_unit_allocation_to_assembly_component)/)
(/MAPPING_OF(Design_functional_unit_allocation_to_reference_functional_unit)/)

5.1.4 Design_composition_path

MIM element: design_composition_path
Source: ISO 10303-1676
Reference path:   [design_composition_path <=
product_definition]
[design_composition_path <=
applied_group_assignment]

5.1.4.1 Design_composition_path to Functional_unit (as design_functional_unit)

MIM element: PATH
Reference path:   design_composition_path <=
product_definition
product_definition <-
product_definition_relationship.relating_product_definition
product_definition_relationship
{product_definition_relationship.name = 'design functional unit'}
product_definition_relationship.related_product_definition ->
product_definition
{product_definition <-
product_definition_relationship.related_product_definition
product_definition_relationship
[product_definition_relationship.name = 'instantiated functional unit']
[product_definition_relationship.relating_product_definition ->
product_definition
[product_definition <-
product_definition_context_association.definition
product_definition_context_association
{product_definition_context_association.role ->
product_definition_context_role
product_definition_context_role.name = 'part definition type'}
product_definition_context_association.frame_of_reference ->
product_definition_context <=
application_context_element
(application_context_element.name = 'functional network design')
(application_context_element.name = 'functional design usage')]
[product_definition =>
functional_unit]]}
product_definition =>
component_functional_unit

5.1.4.2 Design_composition_path to Functional_unit (as path_element)

MIM element: PATH
Reference path:   design_composition_path <=
applied_group_assignment
applied_group_assignment.items ->
groupable_item = component_functional_unit
component_functional_unit

5.1.5 Design_functional_unit_allocation_to_assembly_component

MIM element: product_definition_relationship
Source: ISO 10303-41
Reference path:   {product_definition_relationship
product_definition_relationship.name = 'design functional unit allocation to assembly component'}

5.1.5.1 global_swappable

MIM element: descriptive_representation_item
Source: ISO 10303-43
Reference path:   product_definition_relationship
characterized_product_definition = product_definition_relationship
characterized_definition = characterized_product_definition
characterized_definition <-
property_definition.definition
property_definition <-
property_definition_representation.definition
property_definition_representation
property_definition_representation.used_representation ->
representation
representation.items[i] ->
{representation_item
representation_item.name = 'global swappable'}
representation_item =>
{descriptive_representation_item
(descriptive_representation_item.description = 'false')
(descriptive_representation_item.description = 'true')}
descriptive_representation_item

5.1.5.2 local_swappable

MIM element: descriptive_representation_item
Source: ISO 10303-43
Reference path:   product_definition_relationship
characterized_product_definition = product_definition_relationship
characterized_definition = characterized_product_definition
characterized_definition <-
property_definition.definition
property_definition <-
property_definition_representation.definition
property_definition_representation
property_definition_representation.used_representation ->
representation
representation.items[i] ->
{representation_item
representation_item.name = 'local swappable'}
representation_item =>
{descriptive_representation_item
(descriptive_representation_item.description = 'false')
(descriptive_representation_item.description = 'true')}
descriptive_representation_item

5.1.5.3 path_alias

MIM element: product_definition_relationship.id

5.1.5.4 swap_code

MIM element: product_definition_relationship.description

5.1.5.5 Design_functional_unit_allocation_to_assembly_component to Assembly_component (as implementation)

MIM element: PATH
Reference path:   product_definition_relationship
product_definition_relationship.related_product_definition ->
product_definition =>
component_definition =>
assembly_component

5.1.5.6 Design_functional_unit_allocation_to_assembly_component to Design_composition_path (as functional_design_definition_path)

MIM element: PATH
Reference path:   product_definition_relationship
{product_definition_relationship
product_definition_relationship.description = 'design definition path'}
product_definition_relationship.relating_product_definition ->
product_definition =>
design_composition_path

5.1.5.7 Design_functional_unit_allocation_to_assembly_component to Property_value_representation (as of_property)

MIM element: PATH
Reference path:   product_definition_relationship
characterized_product_definition = product_definition_relationship
characterized_definition = characterized_product_definition
characterized_definition <-
property_definition.definition
property_definition <-
property_definition_representation.definition
property_definition_representation
property_definition_representation.used_representation ->
representation

5.1.6 Design_functional_unit_allocation_to_reference_functional_unit

MIM element: product_definition_relationship
Source: ISO 10303-41
Reference path:   {product_definition_relationship
product_definition_relationship.name = 'design functional unit allocation to reference functional unit'}

5.1.6.1 Design_functional_unit_allocation_to_reference_functional_unit to Design_composition_path (as design_definition_path)

MIM element: PATH
Reference path:   product_definition_relationship
product_definition_relationship.relating_product_definition ->
product_definition =>
design_composition_path

5.1.6.2 Design_functional_unit_allocation_to_reference_functional_unit to Reference_composition_path (as reference_definition_path)

MIM element: PATH
Reference path:   product_definition_relationship
product_definition_relationship.related_product_definition ->
product_definition =>
reference_composition_path

5.1.7 Frozen_assignment

This application object, Frozen_assignment, is defined in the module change_management. This mapping section extends the mapping of Frozen_assignment, to include assertions defined in this module.

5.1.7.1 Frozen_assignment to * (as frozen_item)

MIM element: PATH
Reference path:   frozen_assignment.items ->
change_management_object
frozen_assignment.items ->
change_management_object *>
fdtd_change_management_object =
(/MAPPING_OF(Design_functional_unit_allocation_to_assembly_component)/)
(/MAPPING_OF(Design_functional_unit_allocation_to_reference_functional_unit)/)

5.1.8 Gate_path_swap_specification

MIM element: modify_element
Source: ISO 10303-1661

5.1.8.1 Gate_path_swap_specification to Design_functional_unit_allocation_to_reference_functional_unit (as current_design_object)

MIM element: PATH
Reference path:   modify_element <=
change_element <=
group <-
group_assignment.assigned_group
group_assignment =>
current_change_element_assignment
current_change_element_assignment.items[i] ->
change_management_object =
product_definition_relationship
{product_definition_relationship
product_definition_relationship.name = 'design functional unit allocation to reference functional unit'}

5.1.8.2 Gate_path_swap_specification to Design_functional_unit_allocation_to_reference_functional_unit (as previous_design_object)

MIM element: PATH
Reference path:   modify_element <=
change_element <=
group <-
group_assignment.assigned_group
group_assignment =>
previous_change_element_assignment
previous_change_element_assignment.items[i] ->
change_management_object =
product_definition_relationship
{product_definition_relationship
product_definition_relationship.name = 'design functional unit allocation to reference functional unit'}

5.1.9 Modify_element

This application object, Modify_element, is defined in the module change_management. This mapping section extends the mapping of Modify_element, to include assertions defined in this module.

5.1.9.1 Modify_element to * (as current_design_object)

Reference path:   modify_element <=
change_element <=
group <-
group_assignment.assigned_group
group_assignment =>
current_change_element_assignment
current_change_element_assignment.items[i] ->
change_management_object
change_management_object *>
fdtd_change_management_object =
(/MAPPING_OF(Design_functional_unit_allocation_to_assembly_component)/)
(/MAPPING_OF(Design_functional_unit_allocation_to_reference_functional_unit)/)

5.1.10 Modify_single_element

This application object, Modify_single_element, is defined in the module change_management. This mapping section extends the mapping of Modify_single_element, to include assertions defined in this module.

5.1.10.1 Modify_single_element to * (as current_design_object)

Reference path:   modify_element <=
change_element <=
group <-
group_assignment.assigned_group
group_assignment =>
current_change_element_assignment
current_change_element_assignment.items[i] ->
change_management_object
change_management_object *>
fdtd_change_management_object =
(/MAPPING_OF(Design_functional_unit_allocation_to_assembly_component)/)
(/MAPPING_OF(Design_functional_unit_allocation_to_reference_functional_unit)/)

5.1.10.2 Modify_single_element to * (as previous_design_object)

Reference path:   modify_element <=
change_element <=
group <-
group_assignment.assigned_group
group_assignment =>
previous_change_element_assignment
previous_change_element_assignment.items[i] ->
change_management_object
change_management_object *>
fdtd_change_management_object =
(/MAPPING_OF(Design_functional_unit_allocation_to_assembly_component)/)
(/MAPPING_OF(Design_functional_unit_allocation_to_reference_functional_unit)/)

5.1.11 Reference_composition_path

MIM element: reference_composition_path
Source: ISO 10303-1676
Reference path:   [reference_composition_path <=
product_definition]
[reference_composition_path <=
applied_group_assignment]

5.1.11.1 Reference_composition_path to Functional_unit (as path_element)

MIM element: PATH
Reference path:   reference_composition_path <=
applied_group_assignment
applied_group_assignment.items ->
groupable_item = component_functional_unit
component_functional_unit

5.1.11.2 Reference_composition_path to Functional_unit (as reference_functional_unit)

MIM element: PATH
Reference path:   reference_composition_path <=
product_definition
product_definition <-
product_definition_relationship.relating_product_definition
product_definition_relationship
{product_definition_relationship.name = 'reference functional unit'}
product_definition_relationship.related_product_definition ->
product_definition
{product_definition <-
product_definition_relationship.related_product_definition
product_definition_relationship
[product_definition_relationship.name = 'instantiated functional unit']
[product_definition_relationship.relating_product_definition ->
product_definition
[product_definition <-
product_definition_context_association.definition
product_definition_context_association
{product_definition_context_association.role ->
product_definition_context_role
product_definition_context_role.name = 'part definition type'}
product_definition_context_association.frame_of_reference ->
product_definition_context <=
application_context_element
(application_context_element.name = 'functional network design')
(application_context_element.name = 'functional design usage')]
[product_definition =>
functional_unit
]]}
product_definition =>
component_functional_unit

5.1.12 Reference_functional_unit_assignment_to_part

MIM element: product_definition_relationship
Source: ISO 10303-41
Reference path:   {product_definition_relationship
product_definition_relationship.name = 'reference functional unit assignment to part'}

5.1.12.1 path_alias

MIM element: product_definition_relationship.description
Source: ISO 10303-41

5.1.12.2 swap_code

MIM element: PATH
Reference path:   product_definition_relationship
characterized_product_definition = product_definition_relationship
characterized_definition = characterized_product_definition
characterized_definition <-
property_definition.definition
property_definition
{property_definition
property_definition.name = 'swap code'}
property_definition.description

5.1.12.3 Reference_functional_unit_assignment_to_part to Part_view_definition (as implementation)

MIM element: PATH
Reference path:   product_definition_relationship
product_definition_relationship.related_product_definition ->
product_definition =>
physical_unit

5.1.12.4 Reference_functional_unit_assignment_to_part to Property_value_representation (as of_property)

MIM element: PATH
Reference path:   product_definition_relationship
characterized_product_definition = product_definition_relationship
characterized_definition = characterized_product_definition
characterized_definition <-
property_definition.definition
property_definition <-
property_definition_representation.definition
property_definition_representation
property_definition_representation.used_representation ->
representation

5.1.12.5 Reference_functional_unit_assignment_to_part to Reference_composition_path (as functional_design_definition_path)

MIM element: PATH
Reference path:   product_definition_relationship
{product_definition_relationship
product_definition_relationship.description = 'design definition path'}
product_definition_relationship.relating_product_definition ->
product_definition =>
reference_composition_path

5.1.12.6 Reference_functional_unit_assignment_to_part to Template_definition (as implementation)

MIM element: PATH
Reference path:   product_definition_relationship
product_definition_relationship.related_product_definition ->
product_definition
product_definition =>
part_template_definition

5.1.13 Reference_functional_unit_assignment_to_template

MIM element: product_definition_relationship
Source: ISO 10303-41
Reference path:   {product_definition_relationship
product_definition_relationship.name = 'reference functional unit assignment to template'}

5.1.13.1 path_alias

MIM element: product_definition_relationship.description
Source: ISO 10303-41

5.1.13.2 swap_code

MIM element: PATH
Reference path:   product_definition_relationship
characterized_product_definition = product_definition_relationship
characterized_definition = characterized_product_definition
characterized_definition <-
property_definition.definition
property_definition
{property_definition
property_definition.name = 'swap code'}
property_definition.description

5.1.13.3 Reference_functional_unit_assignment_to_template to Property_value_representation (as of_property)

MIM element: PATH
Reference path:   product_definition_relationship
characterized_product_definition = product_definition_relationship
characterized_definition = characterized_product_definition
characterized_definition <-
property_definition.definition
property_definition <-
property_definition_representation.definition
property_definition_representation
property_definition_representation.used_representation ->
representation

5.1.13.4 Reference_functional_unit_assignment_to_template to Reference_composition_path (as functional_design_definition_path)

MIM element: PATH
Reference path:   product_definition_relationship
{product_definition_relationship
product_definition_relationship.description = 'design definition path'}
product_definition_relationship.relating_product_definition ->
product_definition =>
reference_composition_path

5.1.13.5 Reference_functional_unit_assignment_to_template to Template_definition (as implementation)

MIM element: PATH
Reference path:   product_definition_relationship
product_definition_relationship.related_product_definition ->
product_definition =>
part_template_definition

5.1.14 Terminal_swap_specification

MIM element: modify_element
Source: ISO 10303-1661

5.1.14.1 Terminal_swap_specification to Functional_unit_terminal_node_assignment (as current_design_object)

MIM element: PATH
Reference path:   modify_element <=
change_element <=
group <-
group_assignment.assigned_group
group_assignment =>
current_change_element_assignment
current_change_element_assignment.items[i] ->
change_management_object =
property_definition_relationship
{property_definition_relationship
property_definition_relationship.name = 'functional unit terminal node assignment'}

5.1.14.2 Terminal_swap_specification to Functional_unit_terminal_node_assignment (as previous_design_object)

MIM element: PATH
Reference path:   modify_element <=
change_element <=
group <-
group_assignment.assigned_group
group_assignment =>
previous_change_element_assignment
previous_change_element_assignment.items[i] ->
change_management_object =
property_definition_relationship
{property_definition_relationship
property_definition_relationship.name = 'functional unit terminal node assignment'}


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