DocumentManifest

@POJOBoilerplate
class DocumentManifest(val id: Option[String], val meta: Option[Meta], val text: Option[Narrative], `type`: Option[CodeableConcept], val status: DOCUMENT_REFERENCE_STATUS, val author: LitSeq[Reference], val source: Option[UriStr], val subject: Option[Reference], val created: Option[FHIRDateTime], val content: NonEmptyLitSeq[Reference], val language: Option[LANGUAGES], val contained: LitSeq[Resource], val extension: LitSeq[Extension], val recipient: LitSeq[Reference], val identifier: LitSeq[Identifier], val description: Option[String], val implicitRules: Option[UriStr], val masterIdentifier: Option[Identifier], val modifierExtension: LitSeq[Extension], val related: LitSeq[Related], val primitiveAttributes: TreeMap[FHIRComponentFieldMeta[_], PrimitiveElementInfo]) extends DomainResource

A collection of documents compiled for a purpose together with metadata that applies to the collection.

Subclass of hl7.model.DomainResource (A resource that includes narrative, extensions, and contained resources.)

Value parameters:
`type`
  • The code specifying the type of clinical activity that resulted in placing the associated content into the DocumentManifest.
author
  • Identifies who is the author of the manifest. Manifest author is not necessarly the author of the references included.
contained
  • These resources do not have an independent existence apart from the resource that contains them - they cannot be identified independently, and nor can they have their own independent transaction scope.
content
  • The list of Resources that consist of the parts of this manifest.
created
  • When the document manifest was created for submission to the server (not necessarily the same thing as the actual resource last modified time, since it may be modified, replicated, etc.).
description
  • Human-readable description of the source document. This is sometimes known as the "title".
extension
  • May be used to represent additional information that is not part of the basic definition of the resource. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension.
id
  • The logical id of the resource, as used in the URL for the resource. Once assigned, this value never changes.
identifier
  • Other identifiers associated with the document manifest, including version independent identifiers.
implicitRules
  • A reference to a set of rules that were followed when the resource was constructed, and which must be understood when processing the content. Often, this is a reference to an implementation guide that defines the special rules along with other profiles etc.
language
  • The base language in which the resource is written.
masterIdentifier
  • A single identifier that uniquely identifies this manifest. Principally used to refer to the manifest in non-FHIR contexts.
meta
  • The metadata about the resource. This is content that is maintained by the infrastructure. Changes to the content might not always be associated with version changes to the resource.
modifierExtension
  • May be used to represent additional information that is not part of the basic definition of the resource and that modifies the understanding of the element that contains it and/or the understanding of the containing element's descendants. Usually modifier elements provide negation or qualification. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer is allowed to define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. Applications processing a resource are required to check for modifier extensions. Modifier extensions SHALL NOT change the meaning of any elements on Resource or DomainResource (including cannot change the meaning of modifierExtension itself).
recipient
  • A patient, practitioner, or organization for which this set of documents is intended.
related
  • Related identifiers or resources associated with the DocumentManifest.
source
  • Identifies the source system, application, or software that produced the document manifest.
status
  • The status of this document manifest.
subject
  • Who or what the set of documents is about. The documents can be about a person, (patient or healthcare practitioner), a device (i.e. machine) or even a group of subjects (such as a document about a herd of farm animals, or a set of patients that share a common exposure). If the documents cross more than one subject, then more than one subject is allowed here (unusual use case).
text
  • A human-readable narrative that contains a summary of the resource and can be used to represent the content of the resource to a human. The narrative need not encode all the structured data, but is required to contain sufficient detail to make it "clinically safe" for a human to just read the narrative. Resource definitions may define what content should be represented in the narrative to ensure clinical safety.
Constructor:

Introduces the fields type, status, author, source, subject, created, content, recipient, identifier, description, masterIdentifier, related.

Companion:
object
class Resource
class FHIRObject
trait FHIRComponent
trait Utils
class Object
trait Matchable
class Any

Type members

Inherited classlikes

object extensions
Inherited from:
FHIRObject
object ids
Inherited from:
FHIRObject

Inherited types

type FieldToElementLookup = TreeMap[FHIRComponentFieldMeta[_], PrimitiveElementInfo]
Inherited from:
FHIRObject

Value members

Inherited methods

final def >>[T](fn: T => T)(implicit tt: LTag[T]): DocumentManifest

Slower than nodalMap, but should work with subtypes (e.g. PositiveInt). If you must use it, then:

Slower than nodalMap, but should work with subtypes (e.g. PositiveInt). If you must use it, then:

  • T should not be a Choice[_], a LitSeq[_] or an Option[_]
  • It may require a type parameter sometimes (e.g. sampleResource >>[BUNDLE_TYPE] { (_: BUNDLE_TYPE) => BUNDLE_TYPE.SEARCHSET } )
Inherited from:
FHIRObject
final def >>=[T, F[_] : Monad](fn: T => F[T])(implicit evidence$7: Monad[F], tt: LTag[T]): F[DocumentManifest]
Inherited from:
FHIRObject
final def ^^[From, To](fn: From => To)(implicit tt: LTag[From]): LitSeq[To]

Extract values of type From, and map to LitSeq[To] using fn: From => To. Unlike >>, this is safe even if From is a Choice[], a LitSeq[] or an Option[_] Quite slow, slower than nodalExtract

Extract values of type From, and map to LitSeq[To] using fn: From => To. Unlike >>, this is safe even if From is a Choice[], a LitSeq[] or an Option[_] Quite slow, slower than nodalExtract

Inherited from:
FHIRObject
final def ^^^[T](implicit tt: LTag[T]): LitSeq[T]
Inherited from:
FHIRObject
def companionClassName[T](tag: LTag[T]): String
Inherited from:
Utils
def companionOf[T <: FHIRObject : ClassTag](implicit evidence$1: ClassTag[T], tag: LTag[T]): CompanionFor[T]
Inherited from:
Utils
def constructor: Constructor[_]
Inherited from:
FHIRComponent
def decodeMethodFor[T <: FHIRObject : ClassTag](implicit evidence$2: ClassTag[T], tag: LTag[T], params: DecoderParams): HCursor => Try[T]
Inherited from:
Utils
override def equals(obj: Any): Boolean
Definition Classes
FHIRObject -> Any
Inherited from:
FHIRObject
def fields: Seq[FHIRComponentField[_]]
Inherited from:
FHIRObject
def getFieldByClass[T](name: String, clazz: Class[T]): LitSeq[T]
Inherited from:
FHIRComponent
def getFieldByType[T : LTag](name: String): LitSeq[T]
Inherited from:
FHIRComponent
def getIdentifier: Option[String]
Inherited from:
Resource
def getMostSpecificIdentifier: Option[String]
Inherited from:
Resource
def getVersionedIdentifier: Option[String]
Inherited from:
Resource
override def hashCode(): Int
Definition Classes
FHIRObject -> Any
Inherited from:
FHIRObject
def modifyField[T : LTag, Up >: DocumentManifest <: FHIRObject](fieldName: String, modify: T => T)(implicit evidence$5: LTag[T], ct: ClassTag[Up], tt: LTag[Up]): Up
Inherited from:
FHIRObject
def modifyFieldUnsafe[T, Up >: DocumentManifest <: FHIRObject](fieldName: String, modify: T => T)(implicit ct: ClassTag[Up], tt: LTag[Up]): Up
Inherited from:
FHIRObject
final def nodalExtract[From, To](klass: Class[From], fn: From => To): LitSeq[To]

Convenience alias for nodalGetByClass andThen map to LitSeq[To] using fn: From => To.

Convenience alias for nodalGetByClass andThen map to LitSeq[To] using fn: From => To.

Inherited from:
FHIRObject
final def nodalGetByClass[Target](klass: Class[Target]): LitSeq[Target]

Extract values of type From Unlike nodalMap, this is safe even if From is a Choice[_], a LitSeq[_] or an Option[_], however there remains a caveat with 'subtyped' types (eg PositiveInt), in that we can't differentiate them from the parent class Quite slow but faster than ^^

Extract values of type From Unlike nodalMap, this is safe even if From is a Choice[_], a LitSeq[_] or an Option[_], however there remains a caveat with 'subtyped' types (eg PositiveInt), in that we can't differentiate them from the parent class Quite slow but faster than ^^

Inherited from:
FHIRObject
final def nodalMap[T](klass: Class[T], fn: T => T): DocumentManifest

Bit faster than >>, but still much slower than using update$foo when possible. If you must use it, then:

Bit faster than >>, but still much slower than using update$foo when possible. If you must use it, then:

  • T should not be a Choice[_], a LitSeq[_], an Option[_], or any 'subtyped' type (eg PositiveInt). You should ensure, if T is a supertype of multiple valid choice values (e.g. T =:= Object), that the return value of fn retains the same type as the input value.
Inherited from:
FHIRObject
def setFromField[T, UpType >: DocumentManifest <: FHIRObject : LTag](field: FHIRComponentFieldMeta[T])(newVal: T): UpType
Inherited from:
FHIRObject
def thisClassName: String
Inherited from:
FHIRObject
def toClass[T](klass: Class[T]): Option[T]
Inherited from:
FHIRObject
override def toString: String
Definition Classes
FHIRObject -> Any
Inherited from:
FHIRObject
def toType[T](implicit ct: ClassTag[T]): Option[T]
Inherited from:
FHIRObject
def updateFromField[T, UpType >: DocumentManifest <: FHIRObject : LTag](field: FHIRComponentFieldMeta[T])(fn: T => T): UpType
Inherited from:
FHIRObject
def updatePrimitiveAttributes(fn: FieldToElementLookup => FieldToElementLookup): DocumentManifest
Inherited from:
FHIRObject
def withField[T : LTag, Up >: DocumentManifest <: FHIRObject](fieldName: String, value: T)(implicit evidence$6: LTag[T], ct: ClassTag[Up], tt: LTag[Up]): Up
Inherited from:
FHIRObject
def withFieldUnsafe[T, Up >: DocumentManifest <: FHIRObject](fieldName: String, value: T)(implicit ct: ClassTag[Up], tt: LTag[Up]): Up
Inherited from:
FHIRObject
def withFields[Up >: DocumentManifest <: FHIRObject](replacementFields: (String, Any)*)(implicit ct: ClassTag[Up], tt: LTag[Up]): Up
Inherited from:
FHIRObject
def withPrimitiveAttributes(a: FieldToElementLookup): DocumentManifest
Inherited from:
FHIRObject

Concrete fields

val `type`: Option[CodeableConcept]
val author: LitSeq[Reference]
override val contained: LitSeq[Resource]
val content: NonEmptyLitSeq[Reference]
val created: Option[FHIRDateTime]
val description: Option[String]
override val extension: LitSeq[Extension]
override val id: Option[String]
val identifier: LitSeq[Identifier]
override val implicitRules: Option[UriStr]
override val language: Option[LANGUAGES]
val masterIdentifier: Option[Identifier]
override val meta: Option[Meta]
override val modifierExtension: LitSeq[Extension]
override val primitiveAttributes: TreeMap[FHIRComponentFieldMeta[_], PrimitiveElementInfo]
val recipient: LitSeq[Reference]
val source: Option[UriStr]
val subject: Option[Reference]
override val text: Option[Narrative]
override val thisTypeName: String

Inherited fields

val companion: CompanionFor[DocumentManifest]
Inherited from:
FHIRObject