#[allow(unused_imports)]
use alloc::collections::BTreeMap;
#[allow(unused_imports)]
use core::marker::PhantomData;
use jacquard_common::{BosStr, CowStr, DefaultStr, FromStaticStr};
#[allow(unused_imports)]
use jacquard_common::deps::codegen::unicode_segmentation::UnicodeSegmentation;
use jacquard_common::deps::smol_str::SmolStr;
use jacquard_common::types::collection::{Collection, RecordError};
use jacquard_common::types::string::{AtUri, Cid, Datetime, UriValue};
use jacquard_common::types::uri::{RecordUri, UriError};
use jacquard_common::types::value::Data;
use jacquard_common::xrpc::XrpcResp;
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::{Deserialize, Serialize};
#[derive(Serialize, Deserialize, Debug, Clone, PartialEq, Eq, IntoStatic)]
#[serde(
rename_all = "camelCase",
rename = "dev.sensorthings.observedProperty",
tag = "$type",
bound(deserialize = "S: Deserialize<'de> + BosStr")
)]
pub struct ObservedProperty<S: BosStr = DefaultStr> {
pub created_at: Datetime,
pub definition: UriValue<S>,
#[serde(skip_serializing_if = "Option::is_none")]
pub description: Option<S>,
pub name: S,
#[serde(flatten, default, skip_serializing_if = "Option::is_none")]
pub extra_data: Option<BTreeMap<SmolStr, Data<S>>>,
}
#[derive(Serialize, Deserialize, Debug, Clone, PartialEq, Eq, IntoStatic)]
#[serde(rename_all = "camelCase")]
pub struct ObservedPropertyGetRecordOutput<S: BosStr = DefaultStr> {
#[serde(skip_serializing_if = "Option::is_none")]
pub cid: Option<Cid<S>>,
pub uri: AtUri<S>,
pub value: ObservedProperty<S>,
}
impl<S: BosStr> ObservedProperty<S> {
pub fn uri(uri: S) -> Result<RecordUri<S, ObservedPropertyRecord>, UriError> {
RecordUri::try_from_uri(AtUri::new(uri)?)
}
}
#[derive(Debug, Serialize, Deserialize)]
pub struct ObservedPropertyRecord;
impl XrpcResp for ObservedPropertyRecord {
const NSID: &'static str = "dev.sensorthings.observedProperty";
const ENCODING: &'static str = "application/json";
type Output<S: BosStr> = ObservedPropertyGetRecordOutput<S>;
type Err = RecordError;
}
impl<S: BosStr> From<ObservedPropertyGetRecordOutput<S>> for ObservedProperty<S> {
fn from(output: ObservedPropertyGetRecordOutput<S>) -> Self {
output.value
}
}
impl<S: BosStr> Collection for ObservedProperty<S> {
const NSID: &'static str = "dev.sensorthings.observedProperty";
type Record = ObservedPropertyRecord;
}
impl Collection for ObservedPropertyRecord {
const NSID: &'static str = "dev.sensorthings.observedProperty";
type Record = ObservedPropertyRecord;
}
impl<S: BosStr> LexiconSchema for ObservedProperty<S> {
fn nsid() -> &'static str {
"dev.sensorthings.observedProperty"
}
fn def_name() -> &'static str {
"main"
}
fn lexicon_doc() -> LexiconDoc<'static> {
lexicon_doc_dev_sensorthings_observedProperty()
}
fn validate(&self) -> Result<(), ConstraintError> {
if let Some(ref value) = self.description {
#[allow(unused_comparisons)]
if <str>::len(value.as_ref()) > 2048usize {
return Err(ConstraintError::MaxLength {
path: ValidationPath::from_field("description"),
max: 2048usize,
actual: <str>::len(value.as_ref()),
});
}
}
{
let value = &self.name;
#[allow(unused_comparisons)]
if <str>::len(value.as_ref()) > 256usize {
return Err(ConstraintError::MaxLength {
path: ValidationPath::from_field("name"),
max: 256usize,
actual: <str>::len(value.as_ref()),
});
}
}
Ok(())
}
}
pub mod observed_property_state {
pub use crate::builder_types::{IsSet, IsUnset, Set, Unset};
#[allow(unused)]
use ::core::marker::PhantomData;
mod sealed {
pub trait Sealed {}
}
pub trait State: sealed::Sealed {
type CreatedAt;
type Name;
type Definition;
}
pub struct Empty(());
impl sealed::Sealed for Empty {}
impl State for Empty {
type CreatedAt = Unset;
type Name = Unset;
type Definition = Unset;
}
pub struct SetCreatedAt<St: State = Empty>(PhantomData<fn() -> St>);
impl<St: State> sealed::Sealed for SetCreatedAt<St> {}
impl<St: State> State for SetCreatedAt<St> {
type CreatedAt = Set<members::created_at>;
type Name = St::Name;
type Definition = St::Definition;
}
pub struct SetName<St: State = Empty>(PhantomData<fn() -> St>);
impl<St: State> sealed::Sealed for SetName<St> {}
impl<St: State> State for SetName<St> {
type CreatedAt = St::CreatedAt;
type Name = Set<members::name>;
type Definition = St::Definition;
}
pub struct SetDefinition<St: State = Empty>(PhantomData<fn() -> St>);
impl<St: State> sealed::Sealed for SetDefinition<St> {}
impl<St: State> State for SetDefinition<St> {
type CreatedAt = St::CreatedAt;
type Name = St::Name;
type Definition = Set<members::definition>;
}
#[allow(non_camel_case_types)]
pub mod members {
pub struct created_at(());
pub struct name(());
pub struct definition(());
}
}
pub struct ObservedPropertyBuilder<S: BosStr, St: observed_property_state::State> {
_state: PhantomData<fn() -> St>,
_fields: (Option<Datetime>, Option<UriValue<S>>, Option<S>, Option<S>),
_type: PhantomData<fn() -> S>,
}
impl<S: BosStr> ObservedProperty<S> {
pub fn new() -> ObservedPropertyBuilder<S, observed_property_state::Empty> {
ObservedPropertyBuilder::new()
}
}
impl<S: BosStr> ObservedPropertyBuilder<S, observed_property_state::Empty> {
pub fn new() -> Self {
ObservedPropertyBuilder {
_state: PhantomData,
_fields: (None, None, None, None),
_type: PhantomData,
}
}
}
impl<S: BosStr, St> ObservedPropertyBuilder<S, St>
where
St: observed_property_state::State,
St::CreatedAt: observed_property_state::IsUnset,
{
pub fn created_at(
mut self,
value: impl Into<Datetime>,
) -> ObservedPropertyBuilder<S, observed_property_state::SetCreatedAt<St>> {
self._fields.0 = Option::Some(value.into());
ObservedPropertyBuilder {
_state: PhantomData,
_fields: self._fields,
_type: PhantomData,
}
}
}
impl<S: BosStr, St> ObservedPropertyBuilder<S, St>
where
St: observed_property_state::State,
St::Definition: observed_property_state::IsUnset,
{
pub fn definition(
mut self,
value: impl Into<UriValue<S>>,
) -> ObservedPropertyBuilder<S, observed_property_state::SetDefinition<St>> {
self._fields.1 = Option::Some(value.into());
ObservedPropertyBuilder {
_state: PhantomData,
_fields: self._fields,
_type: PhantomData,
}
}
}
impl<S: BosStr, St: observed_property_state::State> ObservedPropertyBuilder<S, St> {
pub fn description(mut self, value: impl Into<Option<S>>) -> Self {
self._fields.2 = value.into();
self
}
pub fn maybe_description(mut self, value: Option<S>) -> Self {
self._fields.2 = value;
self
}
}
impl<S: BosStr, St> ObservedPropertyBuilder<S, St>
where
St: observed_property_state::State,
St::Name: observed_property_state::IsUnset,
{
pub fn name(
mut self,
value: impl Into<S>,
) -> ObservedPropertyBuilder<S, observed_property_state::SetName<St>> {
self._fields.3 = Option::Some(value.into());
ObservedPropertyBuilder {
_state: PhantomData,
_fields: self._fields,
_type: PhantomData,
}
}
}
impl<S: BosStr, St> ObservedPropertyBuilder<S, St>
where
St: observed_property_state::State,
St::CreatedAt: observed_property_state::IsSet,
St::Name: observed_property_state::IsSet,
St::Definition: observed_property_state::IsSet,
{
pub fn build(self) -> ObservedProperty<S> {
ObservedProperty {
created_at: self._fields.0.unwrap(),
definition: self._fields.1.unwrap(),
description: self._fields.2,
name: self._fields.3.unwrap(),
extra_data: Default::default(),
}
}
pub fn build_with_data(self, extra_data: BTreeMap<SmolStr, Data<S>>) -> ObservedProperty<S> {
ObservedProperty {
created_at: self._fields.0.unwrap(),
definition: self._fields.1.unwrap(),
description: self._fields.2,
name: self._fields.3.unwrap(),
extra_data: Some(extra_data),
}
}
}
fn lexicon_doc_dev_sensorthings_observedProperty() -> LexiconDoc<'static> {
use alloc::collections::BTreeMap;
#[allow(unused_imports)]
use jacquard_common::{CowStr, deps::smol_str::SmolStr, types::blob::MimeType};
use jacquard_lexicon::lexicon::*;
LexiconDoc {
lexicon: Lexicon::Lexicon1,
id: CowStr::new_static("dev.sensorthings.observedProperty"),
defs: {
let mut map = BTreeMap::new();
map.insert(
SmolStr::new_static("main"),
LexUserType::Record(LexRecord {
description: Some(
CowStr::new_static(
"The phenomenon being observed (e.g. air temperature, PM2.5 concentration).",
),
),
key: Some(CowStr::new_static("any")),
record: LexRecordRecord::Object(LexObject {
required: Some(
vec![
SmolStr::new_static("name"),
SmolStr::new_static("definition"),
SmolStr::new_static("createdAt")
],
),
properties: {
#[allow(unused_mut)]
let mut map = BTreeMap::new();
map.insert(
SmolStr::new_static("createdAt"),
LexObjectProperty::String(LexString {
format: Some(LexStringFormat::Datetime),
..Default::default()
}),
);
map.insert(
SmolStr::new_static("definition"),
LexObjectProperty::String(LexString {
description: Some(
CowStr::new_static(
"URI identifying the property from a controlled vocabulary (CF Standard Names, QUDT quantity kinds, etc.)",
),
),
format: Some(LexStringFormat::Uri),
..Default::default()
}),
);
map.insert(
SmolStr::new_static("description"),
LexObjectProperty::String(LexString {
max_length: Some(2048usize),
..Default::default()
}),
);
map.insert(
SmolStr::new_static("name"),
LexObjectProperty::String(LexString {
max_length: Some(256usize),
..Default::default()
}),
);
map
},
..Default::default()
}),
..Default::default()
}),
);
map
},
..Default::default()
}
}