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//! SubstanceNucleicAcid
//!
//! URL: http://hl7.org/fhir/StructureDefinition/SubstanceNucleicAcid
//!
//! Version: 4.0.1
//!
//! Nucleic acids are defined by three distinct elements: the base, sugar and
//! linkage. Individual substance/moiety IDs will be created for each of these
//! elements. The nucleotide sequence will be always entered in the 5’-3’
//! direction
//!
//! FHIR R4: <https://hl7.org/fhir/R4/>
// The `types` import is unused by a handful of types that have only primitive fields.
#![allow(unused_imports)]
use crate::r4::types;
use ::serde::{Deserialize, Serialize};
use fhir_derive_macros::{Builder, Validate};
/// Nucleic acids are defined by three distinct elements: the base, sugar and
/// linkage. Individual substance/moiety IDs will be created for each of these
/// elements. The nucleotide sequence will be always entered in the 5’-3’
/// direction.
///
/// # Examples
///
/// ```
/// use fhir::r4::resources::substance_nucleic_acid::SubstanceNucleicAcid;
///
/// let value = SubstanceNucleicAcid::default();
/// let json = ::serde_json::to_value(&value).unwrap();
/// let back: SubstanceNucleicAcid = ::serde_json::from_value(json).unwrap();
/// assert_eq!(value, back);
/// ```
#[serde_with::skip_serializing_none]
#[derive(Debug, Default, Clone, Serialize, Deserialize, PartialEq, Eq, Validate, Builder)]
#[serde(rename_all = "camelCase")]
#[fhir_version("r4")]
pub struct SubstanceNucleicAcid {
/// Logical id of this artifact
pub id: Option<types::String>,
/// Metadata about the resource
pub meta: Option<types::Meta>,
/// A set of rules under which this content was created
pub implicit_rules: Option<types::Uri>,
/// Primitive extension sibling for [`implicit_rules`](Self::implicit_rules) (FHIR `_implicitRules`):
/// carries `id` and/or `extension` for the primitive value.
#[serde(rename = "_implicitRules")]
pub implicit_rules_ext: Option<types::Element>,
/// Language of the resource content
pub language: Option<types::Code>,
/// Primitive extension sibling for [`language`](Self::language) (FHIR `_language`):
/// carries `id` and/or `extension` for the primitive value.
#[serde(rename = "_language")]
pub language_ext: Option<types::Element>,
/// Text summary of the resource, for human interpretation
pub text: Option<types::Narrative>,
/// Contained, inline Resources
#[serde(default, skip_serializing_if = "Vec::is_empty")]
pub contained: Vec<::serde_json::Value>,
/// Additional content defined by implementations
#[serde(default, skip_serializing_if = "Vec::is_empty")]
pub extension: Vec<types::Extension>,
/// Extensions that cannot be ignored
#[serde(default, skip_serializing_if = "Vec::is_empty")]
pub modifier_extension: Vec<types::Extension>,
/// The type of the sequence shall be specified based on a controlled
/// vocabulary
pub sequence_type: Option<types::CodeableConcept>,
/// The number of linear sequences of nucleotides linked through
/// phosphodiester bonds shall be described. Subunits would be strands of
/// nucleic acids that are tightly associated typically through
/// Watson-Crick base pairing. NOTE: If not specified in the reference
/// source, the assumption is that there is 1 subunit
pub number_of_subunits: Option<types::Integer>,
/// Primitive extension sibling for [`number_of_subunits`](Self::number_of_subunits) (FHIR `_numberOfSubunits`):
/// carries `id` and/or `extension` for the primitive value.
#[serde(rename = "_numberOfSubunits")]
pub number_of_subunits_ext: Option<types::Element>,
/// The area of hybridisation shall be described if applicable for double
/// stranded RNA or DNA. The number associated with the subunit followed by
/// the number associated to the residue shall be specified in increasing
/// order. The underscore “” shall be used as separator as follows:
/// “Subunitnumber Residue”
pub area_of_hybridisation: Option<types::String>,
/// Primitive extension sibling for [`area_of_hybridisation`](Self::area_of_hybridisation) (FHIR `_areaOfHybridisation`):
/// carries `id` and/or `extension` for the primitive value.
#[serde(rename = "_areaOfHybridisation")]
pub area_of_hybridisation_ext: Option<types::Element>,
/// (TBC)
pub oligo_nucleotide_type: Option<types::CodeableConcept>,
/// Subunits are listed in order of decreasing length; sequences of the
/// same length will be ordered by molecular weight; subunits that have
/// identical sequences will be repeated multiple times
#[serde(default, skip_serializing_if = "Vec::is_empty")]
pub subunit: Vec<SubstanceNucleicAcidSubunit>,
}
/// Subunits are listed in order of decreasing length; sequences of the same
/// length will be ordered by molecular weight; subunits that have identical
/// sequences will be repeated multiple times.
///
/// # Examples
///
/// ```
/// use fhir::r4::resources::substance_nucleic_acid::SubstanceNucleicAcidSubunit;
///
/// let value = SubstanceNucleicAcidSubunit::default();
/// let json = ::serde_json::to_value(&value).unwrap();
/// let back: SubstanceNucleicAcidSubunit = ::serde_json::from_value(json).unwrap();
/// assert_eq!(value, back);
/// ```
#[serde_with::skip_serializing_none]
#[derive(Debug, Default, Clone, Serialize, Deserialize, PartialEq, Eq, Validate)]
#[serde(rename_all = "camelCase")]
#[fhir_version("r4")]
pub struct SubstanceNucleicAcidSubunit {
/// Unique id for inter-element referencing
pub id: Option<types::String>,
/// Additional content defined by implementations
#[serde(default, skip_serializing_if = "Vec::is_empty")]
pub extension: Vec<types::Extension>,
/// Extensions that cannot be ignored even if unrecognized
#[serde(default, skip_serializing_if = "Vec::is_empty")]
pub modifier_extension: Vec<types::Extension>,
/// Index of linear sequences of nucleic acids in order of decreasing
/// length. Sequences of the same length will be ordered by molecular
/// weight. Subunits that have identical sequences will be repeated and
/// have sequential subscripts
pub subunit: Option<types::Integer>,
/// Primitive extension sibling for [`subunit`](Self::subunit) (FHIR `_subunit`):
/// carries `id` and/or `extension` for the primitive value.
#[serde(rename = "_subunit")]
pub subunit_ext: Option<types::Element>,
/// Actual nucleotide sequence notation from 5' to 3' end using standard
/// single letter codes. In addition to the base sequence, sugar and type
/// of phosphate or non-phosphate linkage should also be captured
pub sequence: Option<types::String>,
/// Primitive extension sibling for [`sequence`](Self::sequence) (FHIR `_sequence`):
/// carries `id` and/or `extension` for the primitive value.
#[serde(rename = "_sequence")]
pub sequence_ext: Option<types::Element>,
/// The length of the sequence shall be captured
pub length: Option<types::Integer>,
/// Primitive extension sibling for [`length`](Self::length) (FHIR `_length`):
/// carries `id` and/or `extension` for the primitive value.
#[serde(rename = "_length")]
pub length_ext: Option<types::Element>,
/// (TBC)
pub sequence_attachment: Option<types::Attachment>,
/// The nucleotide present at the 5’ terminal shall be specified based on a
/// controlled vocabulary. Since the sequence is represented from the 5' to
/// the 3' end, the 5’ prime nucleotide is the letter at the first position
/// in the sequence. A separate representation would be redundant
pub five_prime: Option<types::CodeableConcept>,
/// The nucleotide present at the 3’ terminal shall be specified based on a
/// controlled vocabulary. Since the sequence is represented from the 5' to
/// the 3' end, the 5’ prime nucleotide is the letter at the last position
/// in the sequence. A separate representation would be redundant
pub three_prime: Option<types::CodeableConcept>,
/// The linkages between sugar residues will also be captured
#[serde(default, skip_serializing_if = "Vec::is_empty")]
pub linkage: Vec<SubstanceNucleicAcidSubunitLinkage>,
/// 5.3.6.8.1 Sugar ID (Mandatory)
#[serde(default, skip_serializing_if = "Vec::is_empty")]
pub sugar: Vec<SubstanceNucleicAcidSubunitSugar>,
}
/// The linkages between sugar residues will also be captured.
///
/// # Examples
///
/// ```
/// use fhir::r4::resources::substance_nucleic_acid::SubstanceNucleicAcidSubunitLinkage;
///
/// let value = SubstanceNucleicAcidSubunitLinkage::default();
/// let json = ::serde_json::to_value(&value).unwrap();
/// let back: SubstanceNucleicAcidSubunitLinkage = ::serde_json::from_value(json).unwrap();
/// assert_eq!(value, back);
/// ```
#[serde_with::skip_serializing_none]
#[derive(Debug, Default, Clone, Serialize, Deserialize, PartialEq, Eq, Validate)]
#[serde(rename_all = "camelCase")]
#[fhir_version("r4")]
pub struct SubstanceNucleicAcidSubunitLinkage {
/// Unique id for inter-element referencing
pub id: Option<types::String>,
/// Additional content defined by implementations
#[serde(default, skip_serializing_if = "Vec::is_empty")]
pub extension: Vec<types::Extension>,
/// Extensions that cannot be ignored even if unrecognized
#[serde(default, skip_serializing_if = "Vec::is_empty")]
pub modifier_extension: Vec<types::Extension>,
/// The entity that links the sugar residues together should also be
/// captured for nearly all naturally occurring nucleic acid the linkage is
/// a phosphate group. For many synthetic oligonucleotides phosphorothioate
/// linkages are often seen. Linkage connectivity is assumed to be 3’-5’.
/// If the linkage is either 3’-3’ or 5’-5’ this should be specified
pub connectivity: Option<types::String>,
/// Primitive extension sibling for [`connectivity`](Self::connectivity) (FHIR `_connectivity`):
/// carries `id` and/or `extension` for the primitive value.
#[serde(rename = "_connectivity")]
pub connectivity_ext: Option<types::Element>,
/// Each linkage will be registered as a fragment and have an ID
pub identifier: Option<types::Identifier>,
/// Each linkage will be registered as a fragment and have at least one
/// name. A single name shall be assigned to each linkage
pub name: Option<types::String>,
/// Primitive extension sibling for [`name`](Self::name) (FHIR `_name`):
/// carries `id` and/or `extension` for the primitive value.
#[serde(rename = "_name")]
pub name_ext: Option<types::Element>,
/// Residues shall be captured as described in 5.3.6.8.3
pub residue_site: Option<types::String>,
/// Primitive extension sibling for [`residue_site`](Self::residue_site) (FHIR `_residueSite`):
/// carries `id` and/or `extension` for the primitive value.
#[serde(rename = "_residueSite")]
pub residue_site_ext: Option<types::Element>,
}
/// 5.3.6.8.1 Sugar ID (Mandatory).
///
/// # Examples
///
/// ```
/// use fhir::r4::resources::substance_nucleic_acid::SubstanceNucleicAcidSubunitSugar;
///
/// let value = SubstanceNucleicAcidSubunitSugar::default();
/// let json = ::serde_json::to_value(&value).unwrap();
/// let back: SubstanceNucleicAcidSubunitSugar = ::serde_json::from_value(json).unwrap();
/// assert_eq!(value, back);
/// ```
#[serde_with::skip_serializing_none]
#[derive(Debug, Default, Clone, Serialize, Deserialize, PartialEq, Eq, Validate)]
#[serde(rename_all = "camelCase")]
#[fhir_version("r4")]
pub struct SubstanceNucleicAcidSubunitSugar {
/// Unique id for inter-element referencing
pub id: Option<types::String>,
/// Additional content defined by implementations
#[serde(default, skip_serializing_if = "Vec::is_empty")]
pub extension: Vec<types::Extension>,
/// Extensions that cannot be ignored even if unrecognized
#[serde(default, skip_serializing_if = "Vec::is_empty")]
pub modifier_extension: Vec<types::Extension>,
/// The Substance ID of the sugar or sugar-like component that make up the
/// nucleotide
pub identifier: Option<types::Identifier>,
/// The name of the sugar or sugar-like component that make up the
/// nucleotide
pub name: Option<types::String>,
/// Primitive extension sibling for [`name`](Self::name) (FHIR `_name`):
/// carries `id` and/or `extension` for the primitive value.
#[serde(rename = "_name")]
pub name_ext: Option<types::Element>,
/// The residues that contain a given sugar will be captured. The order of
/// given residues will be captured in the 5‘-3‘direction consistent with
/// the base sequences listed above
pub residue_site: Option<types::String>,
/// Primitive extension sibling for [`residue_site`](Self::residue_site) (FHIR `_residueSite`):
/// carries `id` and/or `extension` for the primitive value.
#[serde(rename = "_residueSite")]
pub residue_site_ext: Option<types::Element>,
}
#[cfg(test)]
mod tests {
use super::*;
type T = SubstanceNucleicAcid;
#[test]
fn test_default() {
let _ = T::default();
}
#[test]
fn test_serde_round_trip() {
let value = T::default();
let json = ::serde_json::to_value(&value).expect("to_value");
let back: T = ::serde_json::from_value(json).expect("from_value");
assert_eq!(value, back);
}
}