// @generated by jacquard-lexicon. DO NOT EDIT. // // Lexicon: org.farmapps.temp.ecrop.defs // // This file was automatically generated from Lexicon schemas. // Any manual changes will be overwritten on the next regeneration. #[allow(unused_imports)] use alloc::collections::BTreeMap; #[allow(unused_imports)] use core::marker::PhantomData; #[allow(unused_imports)] use jacquard_common::deps::codegen::unicode_segmentation::UnicodeSegmentation; use jacquard_common::types::string::{Nsid, RecordKey, Rkey}; use jacquard_derive::{IntoStatic, lexicon}; use jacquard_lexicon::lexicon::LexiconDoc; use jacquard_lexicon::schema::LexiconSchema; #[allow(unused_imports)] use jacquard_lexicon::validation::{ConstraintError, ValidationPath}; use serde::{Serialize, Deserialize}; /// Generic class to represent the code list and code that is used #[lexicon] #[derive(Serialize, Deserialize, Debug, Clone, PartialEq, Eq, IntoStatic)] #[serde(rename_all = "camelCase")] pub struct CodeType<'a> { #[serde(borrow)] pub code: RecordKey>, ///Identifier of the standard code list that contains the allowed codes. #[serde(borrow)] pub list_id: Nsid<'a>, } impl<'a> LexiconSchema for CodeType<'a> { fn nsid() -> &'static str { "org.farmapps.temp.ecrop.defs" } fn def_name() -> &'static str { "codeType" } fn lexicon_doc() -> LexiconDoc<'static> { lexicon_doc_org_farmapps_temp_ecrop_defs() } fn validate(&self) -> Result<(), ConstraintError> { Ok(()) } } pub mod code_type_state { pub use crate::builder_types::{Set, Unset, IsSet, IsUnset}; #[allow(unused)] use ::core::marker::PhantomData; mod sealed { pub trait Sealed {} } /// State trait tracking which required fields have been set pub trait State: sealed::Sealed { type ListId; type Code; } /// Empty state - all required fields are unset pub struct Empty(()); impl sealed::Sealed for Empty {} impl State for Empty { type ListId = Unset; type Code = Unset; } ///State transition - sets the `list_id` field to Set pub struct SetListId(PhantomData S>); impl sealed::Sealed for SetListId {} impl State for SetListId { type ListId = Set; type Code = S::Code; } ///State transition - sets the `code` field to Set pub struct SetCode(PhantomData S>); impl sealed::Sealed for SetCode {} impl State for SetCode { type ListId = S::ListId; type Code = Set; } /// Marker types for field names #[allow(non_camel_case_types)] pub mod members { ///Marker type for the `list_id` field pub struct list_id(()); ///Marker type for the `code` field pub struct code(()); } } /// Builder for constructing an instance of this type pub struct CodeTypeBuilder<'a, S: code_type_state::State> { _state: PhantomData S>, _fields: (Option>>, Option>), _lifetime: PhantomData<&'a ()>, } impl<'a> CodeType<'a> { /// Create a new builder for this type pub fn new() -> CodeTypeBuilder<'a, code_type_state::Empty> { CodeTypeBuilder::new() } } impl<'a> CodeTypeBuilder<'a, code_type_state::Empty> { /// Create a new builder with all fields unset pub fn new() -> Self { CodeTypeBuilder { _state: PhantomData, _fields: (None, None), _lifetime: PhantomData, } } } impl<'a, S> CodeTypeBuilder<'a, S> where S: code_type_state::State, S::Code: code_type_state::IsUnset, { /// Set the `code` field (required) pub fn code( mut self, value: impl Into>>, ) -> CodeTypeBuilder<'a, code_type_state::SetCode> { self._fields.0 = Option::Some(value.into()); CodeTypeBuilder { _state: PhantomData, _fields: self._fields, _lifetime: PhantomData, } } } impl<'a, S> CodeTypeBuilder<'a, S> where S: code_type_state::State, S::ListId: code_type_state::IsUnset, { /// Set the `listId` field (required) pub fn list_id( mut self, value: impl Into>, ) -> CodeTypeBuilder<'a, code_type_state::SetListId> { self._fields.1 = Option::Some(value.into()); CodeTypeBuilder { _state: PhantomData, _fields: self._fields, _lifetime: PhantomData, } } } impl<'a, S> CodeTypeBuilder<'a, S> where S: code_type_state::State, S::ListId: code_type_state::IsSet, S::Code: code_type_state::IsSet, { /// Build the final struct pub fn build(self) -> CodeType<'a> { CodeType { code: self._fields.0.unwrap(), list_id: self._fields.1.unwrap(), extra_data: Default::default(), } } /// Build the final struct with custom extra_data pub fn build_with_data( self, extra_data: BTreeMap< jacquard_common::deps::smol_str::SmolStr, jacquard_common::types::value::Data<'a>, >, ) -> CodeType<'a> { CodeType { code: self._fields.0.unwrap(), list_id: self._fields.1.unwrap(), extra_data: Some(extra_data), } } } fn lexicon_doc_org_farmapps_temp_ecrop_defs() -> LexiconDoc<'static> { #[allow(unused_imports)] use jacquard_common::{CowStr, deps::smol_str::SmolStr, types::blob::MimeType}; use jacquard_lexicon::lexicon::*; use alloc::collections::BTreeMap; LexiconDoc { lexicon: Lexicon::Lexicon1, id: CowStr::new_static("org.farmapps.temp.ecrop.defs"), defs: { let mut map = BTreeMap::new(); map.insert( SmolStr::new_static("codeType"), LexUserType::Object(LexObject { description: Some( CowStr::new_static( "Generic class to represent the code list and code that is used", ), ), required: Some( vec![SmolStr::new_static("listId"), SmolStr::new_static("code")], ), properties: { #[allow(unused_mut)] let mut map = BTreeMap::new(); map.insert( SmolStr::new_static("code"), LexObjectProperty::String(LexString { format: Some(LexStringFormat::RecordKey), ..Default::default() }), ); map.insert( SmolStr::new_static("listId"), LexObjectProperty::String(LexString { description: Some( CowStr::new_static( "Identifier of the standard code list that contains the allowed codes.", ), ), format: Some(LexStringFormat::Nsid), ..Default::default() }), ); map }, ..Default::default() }), ); map }, ..Default::default() } }