// @generated by jacquard-lexicon. DO NOT EDIT. // // Lexicon: space.polymodel.library.publishThing // // 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; use jacquard_common::{CowStr, BosStr, DefaultStr, FromStaticStr}; #[allow(unused_imports)] use jacquard_common::deps::codegen::unicode_segmentation::UnicodeSegmentation; use jacquard_common::deps::smol_str::SmolStr; use jacquard_common::types::string::{AtUri, Cid}; use jacquard_common::types::value::Data; use jacquard_derive::IntoStatic; use jacquard_lexicon::lexicon::LexiconDoc; use jacquard_lexicon::schema::LexiconSchema; #[allow(unused_imports)] use jacquard_lexicon::validation::{ConstraintError, ValidationPath}; use serde::{Serialize, Deserialize}; use crate::com_atproto::repo::strong_ref::StrongRef; use crate::space_polymodel::library::Bbox; use crate::space_polymodel::library::File; use crate::space_polymodel::library::Image; use crate::space_polymodel::library::publish_thing; #[derive(Serialize, Deserialize, Debug, Clone, PartialEq, Eq, IntoStatic)] #[serde(rename_all = "camelCase", bound(deserialize = "S: Deserialize<'de> + BosStr"))] pub struct PublishThing { pub thing: publish_thing::ThingInput, #[serde(flatten, default, skip_serializing_if = "Option::is_none")] pub extra_data: Option>>, } #[derive(Serialize, Deserialize, Debug, Clone, PartialEq, Eq, IntoStatic)] #[serde(rename_all = "camelCase", bound(deserialize = "S: Deserialize<'de> + BosStr"))] pub struct PublishThingOutput { pub models: Vec>, pub thing: publish_thing::RecordRef, #[serde(flatten, default, skip_serializing_if = "Option::is_none")] pub extra_data: Option>>, } #[derive(Serialize, Deserialize, Debug, Clone, PartialEq, Eq, IntoStatic)] #[serde(rename_all = "camelCase", bound(deserialize = "S: Deserialize<'de> + BosStr"))] pub struct ModelInput { #[serde(skip_serializing_if = "Option::is_none")] pub cover: Option>>, #[serde(skip_serializing_if = "Option::is_none")] pub derived_from: Option>, #[serde(skip_serializing_if = "Option::is_none")] pub instructions: Option>, #[serde(skip_serializing_if = "Option::is_none")] pub intended_to_work_with: Option>>, #[serde(skip_serializing_if = "Option::is_none")] pub license: Option, pub name: S, pub parts: Vec>, #[serde(skip_serializing_if = "Option::is_none")] pub previews: Option>>, #[serde(skip_serializing_if = "Option::is_none")] pub summary: Option, #[serde(skip_serializing_if = "Option::is_none")] pub tags: Option>, #[serde(flatten, default, skip_serializing_if = "Option::is_none")] pub extra_data: Option>>, } #[derive(Serialize, Deserialize, Debug, Clone, PartialEq, Eq, IntoStatic)] #[serde(rename_all = "camelCase", bound(deserialize = "S: Deserialize<'de> + BosStr"))] pub struct ModelPublishResult { pub model: publish_thing::RecordRef, pub parts: Vec>, #[serde(flatten, default, skip_serializing_if = "Option::is_none")] pub extra_data: Option>>, } #[derive(Serialize, Deserialize, Debug, Clone, PartialEq, Eq, IntoStatic, Default)] #[serde(rename_all = "camelCase", bound(deserialize = "S: Deserialize<'de> + BosStr"))] pub struct PartInput { #[serde(skip_serializing_if = "Option::is_none")] pub derived_from: Option>, #[serde(skip_serializing_if = "Option::is_none")] pub dimensions: Option>, #[serde(skip_serializing_if = "Option::is_none")] pub file: Option>, #[serde(skip_serializing_if = "Option::is_none")] pub format: Option, #[serde(skip_serializing_if = "Option::is_none")] pub intended_to_work_with: Option>>, pub name: S, #[serde(skip_serializing_if = "Option::is_none")] pub notes: Option, #[serde(skip_serializing_if = "Option::is_none")] pub previews: Option>>, #[serde(skip_serializing_if = "Option::is_none")] pub print_settings: Option>, #[serde(skip_serializing_if = "Option::is_none")] pub units: Option, #[serde(skip_serializing_if = "Option::is_none")] pub upload_id: Option, #[serde(flatten, default, skip_serializing_if = "Option::is_none")] pub extra_data: Option>>, } #[derive(Serialize, Deserialize, Debug, Clone, PartialEq, Eq, IntoStatic)] #[serde(rename_all = "camelCase", bound(deserialize = "S: Deserialize<'de> + BosStr"))] pub struct RecordRef { pub cid: Cid, pub uri: AtUri, #[serde(flatten, default, skip_serializing_if = "Option::is_none")] pub extra_data: Option>>, } #[derive(Serialize, Deserialize, Debug, Clone, PartialEq, Eq, IntoStatic)] #[serde(rename_all = "camelCase", bound(deserialize = "S: Deserialize<'de> + BosStr"))] pub struct ThingInput { #[serde(skip_serializing_if = "Option::is_none")] pub cover: Option>>, #[serde(skip_serializing_if = "Option::is_none")] pub derived_from: Option>, #[serde(skip_serializing_if = "Option::is_none")] pub instructions: Option>, #[serde(skip_serializing_if = "Option::is_none")] pub intended_to_work_with: Option>>, pub license: S, pub models: Vec>, pub name: S, #[serde(skip_serializing_if = "Option::is_none")] pub previews: Option>>, #[serde(skip_serializing_if = "Option::is_none")] pub summary: Option, #[serde(skip_serializing_if = "Option::is_none")] pub tags: Option>, #[serde(flatten, default, skip_serializing_if = "Option::is_none")] pub extra_data: Option>>, } /** Response marker for the `space.polymodel.library.publishThing` procedure. Implements `jacquard_common::xrpc::XrpcResp`; successful bodies decode as `Self::Output`, which is `PublishThingOutput` for this endpoint.*/ pub struct PublishThingResponse; impl jacquard_common::xrpc::XrpcResp for PublishThingResponse { const NSID: &'static str = "space.polymodel.library.publishThing"; const ENCODING: &'static str = "application/json"; type Output = PublishThingOutput; type Err = jacquard_common::xrpc::GenericError; } impl jacquard_common::xrpc::XrpcRequest for PublishThing { const NSID: &'static str = "space.polymodel.library.publishThing"; const METHOD: jacquard_common::xrpc::XrpcMethod = jacquard_common::xrpc::XrpcMethod::Procedure( "application/json", ); type Response = PublishThingResponse; } /** Endpoint marker for the `space.polymodel.library.publishThing` procedure. Path: `/xrpc/space.polymodel.library.publishThing`. The request payload type is `PublishThing`; send that request with `jacquard::Client` or use this marker through lower-level `XrpcEndpoint` APIs.*/ pub struct PublishThingRequest; impl jacquard_common::xrpc::XrpcEndpoint for PublishThingRequest { const PATH: &'static str = "/xrpc/space.polymodel.library.publishThing"; const METHOD: jacquard_common::xrpc::XrpcMethod = jacquard_common::xrpc::XrpcMethod::Procedure( "application/json", ); type Request = PublishThing; type Response = PublishThingResponse; } impl LexiconSchema for ModelInput { fn nsid() -> &'static str { "space.polymodel.library.publishThing" } fn def_name() -> &'static str { "modelInput" } fn lexicon_doc() -> LexiconDoc<'static> { lexicon_doc_space_polymodel_library_publishThing() } fn validate(&self) -> Result<(), ConstraintError> { if let Some(ref value) = self.cover { #[allow(unused_comparisons)] if value.len() > 8usize { return Err(ConstraintError::MaxLength { path: ValidationPath::from_field("cover"), max: 8usize, actual: value.len(), }); } } if let Some(ref value) = self.instructions { #[allow(unused_comparisons)] if value.len() > 100usize { return Err(ConstraintError::MaxLength { path: ValidationPath::from_field("instructions"), max: 100usize, actual: value.len(), }); } } if let Some(ref value) = self.intended_to_work_with { #[allow(unused_comparisons)] if value.len() > 32usize { return Err(ConstraintError::MaxLength { path: ValidationPath::from_field("intended_to_work_with"), max: 32usize, actual: value.len(), }); } } { let value = &self.name; #[allow(unused_comparisons)] if ::len(value.as_ref()) > 256usize { return Err(ConstraintError::MaxLength { path: ValidationPath::from_field("name"), max: 256usize, actual: ::len(value.as_ref()), }); } } { let value = &self.name; { let count = UnicodeSegmentation::graphemes(value.as_ref(), true).count(); if count > 64usize { return Err(ConstraintError::MaxGraphemes { path: ValidationPath::from_field("name"), max: 64usize, actual: count, }); } } } { let value = &self.parts; #[allow(unused_comparisons)] if value.len() > 1024usize { return Err(ConstraintError::MaxLength { path: ValidationPath::from_field("parts"), max: 1024usize, actual: value.len(), }); } } if let Some(ref value) = self.previews { #[allow(unused_comparisons)] if value.len() > 12usize { return Err(ConstraintError::MaxLength { path: ValidationPath::from_field("previews"), max: 12usize, actual: value.len(), }); } } if let Some(ref value) = self.summary { #[allow(unused_comparisons)] if ::len(value.as_ref()) > 2000usize { return Err(ConstraintError::MaxLength { path: ValidationPath::from_field("summary"), max: 2000usize, actual: ::len(value.as_ref()), }); } } if let Some(ref value) = self.summary { { let count = UnicodeSegmentation::graphemes(value.as_ref(), true).count(); if count > 300usize { return Err(ConstraintError::MaxGraphemes { path: ValidationPath::from_field("summary"), max: 300usize, actual: count, }); } } } if let Some(ref value) = self.tags { #[allow(unused_comparisons)] if value.len() > 16usize { return Err(ConstraintError::MaxLength { path: ValidationPath::from_field("tags"), max: 16usize, actual: value.len(), }); } } Ok(()) } } impl LexiconSchema for ModelPublishResult { fn nsid() -> &'static str { "space.polymodel.library.publishThing" } fn def_name() -> &'static str { "modelPublishResult" } fn lexicon_doc() -> LexiconDoc<'static> { lexicon_doc_space_polymodel_library_publishThing() } fn validate(&self) -> Result<(), ConstraintError> { Ok(()) } } impl LexiconSchema for PartInput { fn nsid() -> &'static str { "space.polymodel.library.publishThing" } fn def_name() -> &'static str { "partInput" } fn lexicon_doc() -> LexiconDoc<'static> { lexicon_doc_space_polymodel_library_publishThing() } fn validate(&self) -> Result<(), ConstraintError> { if let Some(ref value) = self.intended_to_work_with { #[allow(unused_comparisons)] if value.len() > 32usize { return Err(ConstraintError::MaxLength { path: ValidationPath::from_field("intended_to_work_with"), max: 32usize, actual: value.len(), }); } } { let value = &self.name; #[allow(unused_comparisons)] if ::len(value.as_ref()) > 256usize { return Err(ConstraintError::MaxLength { path: ValidationPath::from_field("name"), max: 256usize, actual: ::len(value.as_ref()), }); } } { let value = &self.name; { let count = UnicodeSegmentation::graphemes(value.as_ref(), true).count(); if count > 64usize { return Err(ConstraintError::MaxGraphemes { path: ValidationPath::from_field("name"), max: 64usize, actual: count, }); } } } if let Some(ref value) = self.notes { #[allow(unused_comparisons)] if ::len(value.as_ref()) > 2000usize { return Err(ConstraintError::MaxLength { path: ValidationPath::from_field("notes"), max: 2000usize, actual: ::len(value.as_ref()), }); } } if let Some(ref value) = self.notes { { let count = UnicodeSegmentation::graphemes(value.as_ref(), true).count(); if count > 300usize { return Err(ConstraintError::MaxGraphemes { path: ValidationPath::from_field("notes"), max: 300usize, actual: count, }); } } } if let Some(ref value) = self.previews { #[allow(unused_comparisons)] if value.len() > 12usize { return Err(ConstraintError::MaxLength { path: ValidationPath::from_field("previews"), max: 12usize, actual: value.len(), }); } } if let Some(ref value) = self.print_settings { #[allow(unused_comparisons)] if value.len() > 50usize { return Err(ConstraintError::MaxLength { path: ValidationPath::from_field("print_settings"), max: 50usize, actual: value.len(), }); } } Ok(()) } } impl LexiconSchema for RecordRef { fn nsid() -> &'static str { "space.polymodel.library.publishThing" } fn def_name() -> &'static str { "recordRef" } fn lexicon_doc() -> LexiconDoc<'static> { lexicon_doc_space_polymodel_library_publishThing() } fn validate(&self) -> Result<(), ConstraintError> { Ok(()) } } impl LexiconSchema for ThingInput { fn nsid() -> &'static str { "space.polymodel.library.publishThing" } fn def_name() -> &'static str { "thingInput" } fn lexicon_doc() -> LexiconDoc<'static> { lexicon_doc_space_polymodel_library_publishThing() } fn validate(&self) -> Result<(), ConstraintError> { if let Some(ref value) = self.cover { #[allow(unused_comparisons)] if value.len() > 8usize { return Err(ConstraintError::MaxLength { path: ValidationPath::from_field("cover"), max: 8usize, actual: value.len(), }); } } if let Some(ref value) = self.instructions { #[allow(unused_comparisons)] if value.len() > 100usize { return Err(ConstraintError::MaxLength { path: ValidationPath::from_field("instructions"), max: 100usize, actual: value.len(), }); } } if let Some(ref value) = self.intended_to_work_with { #[allow(unused_comparisons)] if value.len() > 32usize { return Err(ConstraintError::MaxLength { path: ValidationPath::from_field("intended_to_work_with"), max: 32usize, actual: value.len(), }); } } { let value = &self.models; #[allow(unused_comparisons)] if value.len() > 256usize { return Err(ConstraintError::MaxLength { path: ValidationPath::from_field("models"), max: 256usize, actual: value.len(), }); } } { let value = &self.name; #[allow(unused_comparisons)] if ::len(value.as_ref()) > 256usize { return Err(ConstraintError::MaxLength { path: ValidationPath::from_field("name"), max: 256usize, actual: ::len(value.as_ref()), }); } } { let value = &self.name; { let count = UnicodeSegmentation::graphemes(value.as_ref(), true).count(); if count > 64usize { return Err(ConstraintError::MaxGraphemes { path: ValidationPath::from_field("name"), max: 64usize, actual: count, }); } } } if let Some(ref value) = self.previews { #[allow(unused_comparisons)] if value.len() > 12usize { return Err(ConstraintError::MaxLength { path: ValidationPath::from_field("previews"), max: 12usize, actual: value.len(), }); } } if let Some(ref value) = self.summary { #[allow(unused_comparisons)] if ::len(value.as_ref()) > 2000usize { return Err(ConstraintError::MaxLength { path: ValidationPath::from_field("summary"), max: 2000usize, actual: ::len(value.as_ref()), }); } } if let Some(ref value) = self.summary { { let count = UnicodeSegmentation::graphemes(value.as_ref(), true).count(); if count > 300usize { return Err(ConstraintError::MaxGraphemes { path: ValidationPath::from_field("summary"), max: 300usize, actual: count, }); } } } if let Some(ref value) = self.tags { #[allow(unused_comparisons)] if value.len() > 16usize { return Err(ConstraintError::MaxLength { path: ValidationPath::from_field("tags"), max: 16usize, actual: value.len(), }); } } Ok(()) } } pub mod publish_thing_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 Thing; } /// Empty state - all required fields are unset pub struct Empty(()); impl sealed::Sealed for Empty {} impl State for Empty { type Thing = Unset; } ///State transition - sets the `thing` field to Set pub struct SetThing(PhantomData St>); impl sealed::Sealed for SetThing {} impl State for SetThing { type Thing = Set; } /// Marker types for field names #[allow(non_camel_case_types)] pub mod members { ///Marker type for the `thing` field pub struct thing(()); } } /// Builder for constructing an instance of this type. pub struct PublishThingBuilder { _state: PhantomData St>, _fields: (Option>,), _type: PhantomData S>, } impl PublishThing { /// Create a new builder for this type, using the default string type (DefaultStr = SmolStr) if needed pub fn new() -> PublishThingBuilder { PublishThingBuilder::new() } } impl PublishThing { /// Create a new builder for this type pub fn builder() -> PublishThingBuilder { PublishThingBuilder::builder() } } impl PublishThingBuilder { /// Create a new builder with all fields unset, using the default string type, if needed pub fn new() -> Self { PublishThingBuilder { _state: PhantomData, _fields: (None,), _type: PhantomData, } } } impl PublishThingBuilder { /// Create a new builder with all fields unset pub fn builder() -> Self { PublishThingBuilder { _state: PhantomData, _fields: (None,), _type: PhantomData, } } } impl PublishThingBuilder where St: publish_thing_state::State, St::Thing: publish_thing_state::IsUnset, { /// Set the `thing` field (required) pub fn thing( mut self, value: impl Into>, ) -> PublishThingBuilder, S> { self._fields.0 = Option::Some(value.into()); PublishThingBuilder { _state: PhantomData, _fields: self._fields, _type: PhantomData, } } } impl PublishThingBuilder where St: publish_thing_state::State, St::Thing: publish_thing_state::IsSet, { /// Build the final struct. pub fn build(self) -> PublishThing { PublishThing { thing: self._fields.0.unwrap(), extra_data: Default::default(), } } /// Build the final struct with custom extra_data. pub fn build_with_data( self, extra_data: BTreeMap>, ) -> PublishThing { PublishThing { thing: self._fields.0.unwrap(), extra_data: Some(extra_data), } } } pub mod model_input_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 Name; type Parts; } /// Empty state - all required fields are unset pub struct Empty(()); impl sealed::Sealed for Empty {} impl State for Empty { type Name = Unset; type Parts = Unset; } ///State transition - sets the `name` field to Set pub struct SetName(PhantomData St>); impl sealed::Sealed for SetName {} impl State for SetName { type Name = Set; type Parts = St::Parts; } ///State transition - sets the `parts` field to Set pub struct SetParts(PhantomData St>); impl sealed::Sealed for SetParts {} impl State for SetParts { type Name = St::Name; type Parts = Set; } /// Marker types for field names #[allow(non_camel_case_types)] pub mod members { ///Marker type for the `name` field pub struct name(()); ///Marker type for the `parts` field pub struct parts(()); } } /// Builder for constructing an instance of this type. pub struct ModelInputBuilder { _state: PhantomData St>, _fields: ( Option>>, Option>, Option>, Option>>, Option, Option, Option>>, Option>>, Option, Option>, ), _type: PhantomData S>, } impl ModelInput { /// Create a new builder for this type, using the default string type (DefaultStr = SmolStr) if needed pub fn new() -> ModelInputBuilder { ModelInputBuilder::new() } } impl ModelInput { /// Create a new builder for this type pub fn builder() -> ModelInputBuilder { ModelInputBuilder::builder() } } impl ModelInputBuilder { /// Create a new builder with all fields unset, using the default string type, if needed pub fn new() -> Self { ModelInputBuilder { _state: PhantomData, _fields: (None, None, None, None, None, None, None, None, None, None), _type: PhantomData, } } } impl ModelInputBuilder { /// Create a new builder with all fields unset pub fn builder() -> Self { ModelInputBuilder { _state: PhantomData, _fields: (None, None, None, None, None, None, None, None, None, None), _type: PhantomData, } } } impl ModelInputBuilder { /// Set the `cover` field (optional) pub fn cover(mut self, value: impl Into>>>) -> Self { self._fields.0 = value.into(); self } /// Set the `cover` field to an Option value (optional) pub fn maybe_cover(mut self, value: Option>>) -> Self { self._fields.0 = value; self } } impl ModelInputBuilder { /// Set the `derivedFrom` field (optional) pub fn derived_from(mut self, value: impl Into>>) -> Self { self._fields.1 = value.into(); self } /// Set the `derivedFrom` field to an Option value (optional) pub fn maybe_derived_from(mut self, value: Option>) -> Self { self._fields.1 = value; self } } impl ModelInputBuilder { /// Set the `instructions` field (optional) pub fn instructions(mut self, value: impl Into>>) -> Self { self._fields.2 = value.into(); self } /// Set the `instructions` field to an Option value (optional) pub fn maybe_instructions(mut self, value: Option>) -> Self { self._fields.2 = value; self } } impl ModelInputBuilder { /// Set the `intendedToWorkWith` field (optional) pub fn intended_to_work_with( mut self, value: impl Into>>>, ) -> Self { self._fields.3 = value.into(); self } /// Set the `intendedToWorkWith` field to an Option value (optional) pub fn maybe_intended_to_work_with( mut self, value: Option>>, ) -> Self { self._fields.3 = value; self } } impl ModelInputBuilder { /// Set the `license` field (optional) pub fn license(mut self, value: impl Into>) -> Self { self._fields.4 = value.into(); self } /// Set the `license` field to an Option value (optional) pub fn maybe_license(mut self, value: Option) -> Self { self._fields.4 = value; self } } impl ModelInputBuilder where St: model_input_state::State, St::Name: model_input_state::IsUnset, { /// Set the `name` field (required) pub fn name( mut self, value: impl Into, ) -> ModelInputBuilder, S> { self._fields.5 = Option::Some(value.into()); ModelInputBuilder { _state: PhantomData, _fields: self._fields, _type: PhantomData, } } } impl ModelInputBuilder where St: model_input_state::State, St::Parts: model_input_state::IsUnset, { /// Set the `parts` field (required) pub fn parts( mut self, value: impl Into>>, ) -> ModelInputBuilder, S> { self._fields.6 = Option::Some(value.into()); ModelInputBuilder { _state: PhantomData, _fields: self._fields, _type: PhantomData, } } } impl ModelInputBuilder { /// Set the `previews` field (optional) pub fn previews(mut self, value: impl Into>>>) -> Self { self._fields.7 = value.into(); self } /// Set the `previews` field to an Option value (optional) pub fn maybe_previews(mut self, value: Option>>) -> Self { self._fields.7 = value; self } } impl ModelInputBuilder { /// Set the `summary` field (optional) pub fn summary(mut self, value: impl Into>) -> Self { self._fields.8 = value.into(); self } /// Set the `summary` field to an Option value (optional) pub fn maybe_summary(mut self, value: Option) -> Self { self._fields.8 = value; self } } impl ModelInputBuilder { /// Set the `tags` field (optional) pub fn tags(mut self, value: impl Into>>) -> Self { self._fields.9 = value.into(); self } /// Set the `tags` field to an Option value (optional) pub fn maybe_tags(mut self, value: Option>) -> Self { self._fields.9 = value; self } } impl ModelInputBuilder where St: model_input_state::State, St::Name: model_input_state::IsSet, St::Parts: model_input_state::IsSet, { /// Build the final struct. pub fn build(self) -> ModelInput { ModelInput { cover: self._fields.0, derived_from: self._fields.1, instructions: self._fields.2, intended_to_work_with: self._fields.3, license: self._fields.4, name: self._fields.5.unwrap(), parts: self._fields.6.unwrap(), previews: self._fields.7, summary: self._fields.8, tags: self._fields.9, extra_data: Default::default(), } } /// Build the final struct with custom extra_data. pub fn build_with_data( self, extra_data: BTreeMap>, ) -> ModelInput { ModelInput { cover: self._fields.0, derived_from: self._fields.1, instructions: self._fields.2, intended_to_work_with: self._fields.3, license: self._fields.4, name: self._fields.5.unwrap(), parts: self._fields.6.unwrap(), previews: self._fields.7, summary: self._fields.8, tags: self._fields.9, extra_data: Some(extra_data), } } } fn lexicon_doc_space_polymodel_library_publishThing() -> 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("space.polymodel.library.publishThing"), defs: { let mut map = BTreeMap::new(); map.insert( SmolStr::new_static("main"), LexUserType::XrpcProcedure(LexXrpcProcedure { input: Some(LexXrpcBody { encoding: CowStr::new_static("application/json"), schema: Some( LexXrpcBodySchema::Object(LexObject { required: Some(vec![SmolStr::new_static("thing")]), properties: { #[allow(unused_mut)] let mut map = BTreeMap::new(); map.insert( SmolStr::new_static("thing"), LexObjectProperty::Ref(LexRef { r#ref: CowStr::new_static("#thingInput"), ..Default::default() }), ); map }, ..Default::default() }), ), ..Default::default() }), ..Default::default() }), ); map.insert( SmolStr::new_static("modelInput"), LexUserType::Object(LexObject { required: Some( vec![SmolStr::new_static("name"), SmolStr::new_static("parts")], ), properties: { #[allow(unused_mut)] let mut map = BTreeMap::new(); map.insert( SmolStr::new_static("cover"), LexObjectProperty::Array(LexArray { items: LexArrayItem::Ref(LexRef { r#ref: CowStr::new_static( "space.polymodel.library.defs#image", ), ..Default::default() }), max_length: Some(8usize), ..Default::default() }), ); map.insert( SmolStr::new_static("derivedFrom"), LexObjectProperty::Ref(LexRef { r#ref: CowStr::new_static("com.atproto.repo.strongRef"), ..Default::default() }), ); map.insert( SmolStr::new_static("instructions"), LexObjectProperty::Array(LexArray { items: LexArrayItem::String(LexString { ..Default::default() }), max_length: Some(100usize), ..Default::default() }), ); map.insert( SmolStr::new_static("intendedToWorkWith"), LexObjectProperty::Array(LexArray { items: LexArrayItem::Ref(LexRef { r#ref: CowStr::new_static("com.atproto.repo.strongRef"), ..Default::default() }), max_length: Some(32usize), ..Default::default() }), ); map.insert( SmolStr::new_static("license"), LexObjectProperty::String(LexString { ..Default::default() }), ); map.insert( SmolStr::new_static("name"), LexObjectProperty::String(LexString { max_length: Some(256usize), max_graphemes: Some(64usize), ..Default::default() }), ); map.insert( SmolStr::new_static("parts"), LexObjectProperty::Array(LexArray { items: LexArrayItem::Ref(LexRef { r#ref: CowStr::new_static("#partInput"), ..Default::default() }), max_length: Some(1024usize), ..Default::default() }), ); map.insert( SmolStr::new_static("previews"), LexObjectProperty::Array(LexArray { items: LexArrayItem::Ref(LexRef { r#ref: CowStr::new_static( "space.polymodel.library.defs#image", ), ..Default::default() }), max_length: Some(12usize), ..Default::default() }), ); map.insert( SmolStr::new_static("summary"), LexObjectProperty::String(LexString { max_length: Some(2000usize), max_graphemes: Some(300usize), ..Default::default() }), ); map.insert( SmolStr::new_static("tags"), LexObjectProperty::Array(LexArray { items: LexArrayItem::String(LexString { max_length: Some(64usize), max_graphemes: Some(32usize), ..Default::default() }), max_length: Some(16usize), ..Default::default() }), ); map }, ..Default::default() }), ); map.insert( SmolStr::new_static("modelPublishResult"), LexUserType::Object(LexObject { required: Some( vec![SmolStr::new_static("model"), SmolStr::new_static("parts")], ), properties: { #[allow(unused_mut)] let mut map = BTreeMap::new(); map.insert( SmolStr::new_static("model"), LexObjectProperty::Ref(LexRef { r#ref: CowStr::new_static("#recordRef"), ..Default::default() }), ); map.insert( SmolStr::new_static("parts"), LexObjectProperty::Array(LexArray { items: LexArrayItem::Ref(LexRef { r#ref: CowStr::new_static("#recordRef"), ..Default::default() }), ..Default::default() }), ); map }, ..Default::default() }), ); map.insert( SmolStr::new_static("partInput"), LexUserType::Object(LexObject { required: Some(vec![SmolStr::new_static("name")]), properties: { #[allow(unused_mut)] let mut map = BTreeMap::new(); map.insert( SmolStr::new_static("derivedFrom"), LexObjectProperty::Ref(LexRef { r#ref: CowStr::new_static("com.atproto.repo.strongRef"), ..Default::default() }), ); map.insert( SmolStr::new_static("dimensions"), LexObjectProperty::Ref(LexRef { r#ref: CowStr::new_static( "space.polymodel.library.defs#bbox", ), ..Default::default() }), ); map.insert( SmolStr::new_static("file"), LexObjectProperty::Ref(LexRef { r#ref: CowStr::new_static( "space.polymodel.library.defs#file", ), ..Default::default() }), ); map.insert( SmolStr::new_static("format"), LexObjectProperty::String(LexString { ..Default::default() }), ); map.insert( SmolStr::new_static("intendedToWorkWith"), LexObjectProperty::Array(LexArray { items: LexArrayItem::Ref(LexRef { r#ref: CowStr::new_static("com.atproto.repo.strongRef"), ..Default::default() }), max_length: Some(32usize), ..Default::default() }), ); map.insert( SmolStr::new_static("name"), LexObjectProperty::String(LexString { max_length: Some(256usize), max_graphemes: Some(64usize), ..Default::default() }), ); map.insert( SmolStr::new_static("notes"), LexObjectProperty::String(LexString { max_length: Some(2000usize), max_graphemes: Some(300usize), ..Default::default() }), ); map.insert( SmolStr::new_static("previews"), LexObjectProperty::Array(LexArray { items: LexArrayItem::Ref(LexRef { r#ref: CowStr::new_static( "space.polymodel.library.defs#image", ), ..Default::default() }), max_length: Some(12usize), ..Default::default() }), ); map.insert( SmolStr::new_static("printSettings"), LexObjectProperty::Array(LexArray { items: LexArrayItem::String(LexString { ..Default::default() }), max_length: Some(50usize), ..Default::default() }), ); map.insert( SmolStr::new_static("units"), LexObjectProperty::String(LexString { ..Default::default() }), ); map.insert( SmolStr::new_static("uploadId"), LexObjectProperty::String(LexString { ..Default::default() }), ); map }, ..Default::default() }), ); map.insert( SmolStr::new_static("recordRef"), LexUserType::Object(LexObject { required: Some( vec![SmolStr::new_static("uri"), SmolStr::new_static("cid")], ), properties: { #[allow(unused_mut)] let mut map = BTreeMap::new(); map.insert( SmolStr::new_static("cid"), LexObjectProperty::String(LexString { format: Some(LexStringFormat::Cid), ..Default::default() }), ); map.insert( SmolStr::new_static("uri"), LexObjectProperty::String(LexString { format: Some(LexStringFormat::AtUri), ..Default::default() }), ); map }, ..Default::default() }), ); map.insert( SmolStr::new_static("thingInput"), LexUserType::Object(LexObject { required: Some( vec![ SmolStr::new_static("name"), SmolStr::new_static("license"), SmolStr::new_static("models") ], ), properties: { #[allow(unused_mut)] let mut map = BTreeMap::new(); map.insert( SmolStr::new_static("cover"), LexObjectProperty::Array(LexArray { items: LexArrayItem::Ref(LexRef { r#ref: CowStr::new_static( "space.polymodel.library.defs#image", ), ..Default::default() }), max_length: Some(8usize), ..Default::default() }), ); map.insert( SmolStr::new_static("derivedFrom"), LexObjectProperty::Ref(LexRef { r#ref: CowStr::new_static("com.atproto.repo.strongRef"), ..Default::default() }), ); map.insert( SmolStr::new_static("instructions"), LexObjectProperty::Array(LexArray { items: LexArrayItem::String(LexString { ..Default::default() }), max_length: Some(100usize), ..Default::default() }), ); map.insert( SmolStr::new_static("intendedToWorkWith"), LexObjectProperty::Array(LexArray { items: LexArrayItem::Ref(LexRef { r#ref: CowStr::new_static("com.atproto.repo.strongRef"), ..Default::default() }), max_length: Some(32usize), ..Default::default() }), ); map.insert( SmolStr::new_static("license"), LexObjectProperty::String(LexString { ..Default::default() }), ); map.insert( SmolStr::new_static("models"), LexObjectProperty::Array(LexArray { items: LexArrayItem::Ref(LexRef { r#ref: CowStr::new_static("#modelInput"), ..Default::default() }), max_length: Some(256usize), ..Default::default() }), ); map.insert( SmolStr::new_static("name"), LexObjectProperty::String(LexString { max_length: Some(256usize), max_graphemes: Some(64usize), ..Default::default() }), ); map.insert( SmolStr::new_static("previews"), LexObjectProperty::Array(LexArray { items: LexArrayItem::Ref(LexRef { r#ref: CowStr::new_static( "space.polymodel.library.defs#image", ), ..Default::default() }), max_length: Some(12usize), ..Default::default() }), ); map.insert( SmolStr::new_static("summary"), LexObjectProperty::String(LexString { max_length: Some(2000usize), max_graphemes: Some(300usize), ..Default::default() }), ); map.insert( SmolStr::new_static("tags"), LexObjectProperty::Array(LexArray { items: LexArrayItem::String(LexString { max_length: Some(64usize), max_graphemes: Some(32usize), ..Default::default() }), max_length: Some(16usize), ..Default::default() }), ); map }, ..Default::default() }), ); map }, ..Default::default() } } pub mod model_publish_result_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 Model; type Parts; } /// Empty state - all required fields are unset pub struct Empty(()); impl sealed::Sealed for Empty {} impl State for Empty { type Model = Unset; type Parts = Unset; } ///State transition - sets the `model` field to Set pub struct SetModel(PhantomData St>); impl sealed::Sealed for SetModel {} impl State for SetModel { type Model = Set; type Parts = St::Parts; } ///State transition - sets the `parts` field to Set pub struct SetParts(PhantomData St>); impl sealed::Sealed for SetParts {} impl State for SetParts { type Model = St::Model; type Parts = Set; } /// Marker types for field names #[allow(non_camel_case_types)] pub mod members { ///Marker type for the `model` field pub struct model(()); ///Marker type for the `parts` field pub struct parts(()); } } /// Builder for constructing an instance of this type. pub struct ModelPublishResultBuilder< St: model_publish_result_state::State, S: BosStr = DefaultStr, > { _state: PhantomData St>, _fields: ( Option>, Option>>, ), _type: PhantomData S>, } impl ModelPublishResult { /// Create a new builder for this type, using the default string type (DefaultStr = SmolStr) if needed pub fn new() -> ModelPublishResultBuilder< model_publish_result_state::Empty, DefaultStr, > { ModelPublishResultBuilder::new() } } impl ModelPublishResult { /// Create a new builder for this type pub fn builder() -> ModelPublishResultBuilder { ModelPublishResultBuilder::builder() } } impl ModelPublishResultBuilder { /// Create a new builder with all fields unset, using the default string type, if needed pub fn new() -> Self { ModelPublishResultBuilder { _state: PhantomData, _fields: (None, None), _type: PhantomData, } } } impl ModelPublishResultBuilder { /// Create a new builder with all fields unset pub fn builder() -> Self { ModelPublishResultBuilder { _state: PhantomData, _fields: (None, None), _type: PhantomData, } } } impl ModelPublishResultBuilder where St: model_publish_result_state::State, St::Model: model_publish_result_state::IsUnset, { /// Set the `model` field (required) pub fn model( mut self, value: impl Into>, ) -> ModelPublishResultBuilder, S> { self._fields.0 = Option::Some(value.into()); ModelPublishResultBuilder { _state: PhantomData, _fields: self._fields, _type: PhantomData, } } } impl ModelPublishResultBuilder where St: model_publish_result_state::State, St::Parts: model_publish_result_state::IsUnset, { /// Set the `parts` field (required) pub fn parts( mut self, value: impl Into>>, ) -> ModelPublishResultBuilder, S> { self._fields.1 = Option::Some(value.into()); ModelPublishResultBuilder { _state: PhantomData, _fields: self._fields, _type: PhantomData, } } } impl ModelPublishResultBuilder where St: model_publish_result_state::State, St::Model: model_publish_result_state::IsSet, St::Parts: model_publish_result_state::IsSet, { /// Build the final struct. pub fn build(self) -> ModelPublishResult { ModelPublishResult { model: self._fields.0.unwrap(), parts: 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>, ) -> ModelPublishResult { ModelPublishResult { model: self._fields.0.unwrap(), parts: self._fields.1.unwrap(), extra_data: Some(extra_data), } } } pub mod record_ref_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 Cid; type Uri; } /// Empty state - all required fields are unset pub struct Empty(()); impl sealed::Sealed for Empty {} impl State for Empty { type Cid = Unset; type Uri = Unset; } ///State transition - sets the `cid` field to Set pub struct SetCid(PhantomData St>); impl sealed::Sealed for SetCid {} impl State for SetCid { type Cid = Set; type Uri = St::Uri; } ///State transition - sets the `uri` field to Set pub struct SetUri(PhantomData St>); impl sealed::Sealed for SetUri {} impl State for SetUri { type Cid = St::Cid; type Uri = Set; } /// Marker types for field names #[allow(non_camel_case_types)] pub mod members { ///Marker type for the `cid` field pub struct cid(()); ///Marker type for the `uri` field pub struct uri(()); } } /// Builder for constructing an instance of this type. pub struct RecordRefBuilder { _state: PhantomData St>, _fields: (Option>, Option>), _type: PhantomData S>, } impl RecordRef { /// Create a new builder for this type, using the default string type (DefaultStr = SmolStr) if needed pub fn new() -> RecordRefBuilder { RecordRefBuilder::new() } } impl RecordRef { /// Create a new builder for this type pub fn builder() -> RecordRefBuilder { RecordRefBuilder::builder() } } impl RecordRefBuilder { /// Create a new builder with all fields unset, using the default string type, if needed pub fn new() -> Self { RecordRefBuilder { _state: PhantomData, _fields: (None, None), _type: PhantomData, } } } impl RecordRefBuilder { /// Create a new builder with all fields unset pub fn builder() -> Self { RecordRefBuilder { _state: PhantomData, _fields: (None, None), _type: PhantomData, } } } impl RecordRefBuilder where St: record_ref_state::State, St::Cid: record_ref_state::IsUnset, { /// Set the `cid` field (required) pub fn cid( mut self, value: impl Into>, ) -> RecordRefBuilder, S> { self._fields.0 = Option::Some(value.into()); RecordRefBuilder { _state: PhantomData, _fields: self._fields, _type: PhantomData, } } } impl RecordRefBuilder where St: record_ref_state::State, St::Uri: record_ref_state::IsUnset, { /// Set the `uri` field (required) pub fn uri( mut self, value: impl Into>, ) -> RecordRefBuilder, S> { self._fields.1 = Option::Some(value.into()); RecordRefBuilder { _state: PhantomData, _fields: self._fields, _type: PhantomData, } } } impl RecordRefBuilder where St: record_ref_state::State, St::Cid: record_ref_state::IsSet, St::Uri: record_ref_state::IsSet, { /// Build the final struct. pub fn build(self) -> RecordRef { RecordRef { cid: self._fields.0.unwrap(), uri: 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>, ) -> RecordRef { RecordRef { cid: self._fields.0.unwrap(), uri: self._fields.1.unwrap(), extra_data: Some(extra_data), } } } pub mod thing_input_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 License; type Models; type Name; } /// Empty state - all required fields are unset pub struct Empty(()); impl sealed::Sealed for Empty {} impl State for Empty { type License = Unset; type Models = Unset; type Name = Unset; } ///State transition - sets the `license` field to Set pub struct SetLicense(PhantomData St>); impl sealed::Sealed for SetLicense {} impl State for SetLicense { type License = Set; type Models = St::Models; type Name = St::Name; } ///State transition - sets the `models` field to Set pub struct SetModels(PhantomData St>); impl sealed::Sealed for SetModels {} impl State for SetModels { type License = St::License; type Models = Set; type Name = St::Name; } ///State transition - sets the `name` field to Set pub struct SetName(PhantomData St>); impl sealed::Sealed for SetName {} impl State for SetName { type License = St::License; type Models = St::Models; type Name = Set; } /// Marker types for field names #[allow(non_camel_case_types)] pub mod members { ///Marker type for the `license` field pub struct license(()); ///Marker type for the `models` field pub struct models(()); ///Marker type for the `name` field pub struct name(()); } } /// Builder for constructing an instance of this type. pub struct ThingInputBuilder { _state: PhantomData St>, _fields: ( Option>>, Option>, Option>, Option>>, Option, Option>>, Option, Option>>, Option, Option>, ), _type: PhantomData S>, } impl ThingInput { /// Create a new builder for this type, using the default string type (DefaultStr = SmolStr) if needed pub fn new() -> ThingInputBuilder { ThingInputBuilder::new() } } impl ThingInput { /// Create a new builder for this type pub fn builder() -> ThingInputBuilder { ThingInputBuilder::builder() } } impl ThingInputBuilder { /// Create a new builder with all fields unset, using the default string type, if needed pub fn new() -> Self { ThingInputBuilder { _state: PhantomData, _fields: (None, None, None, None, None, None, None, None, None, None), _type: PhantomData, } } } impl ThingInputBuilder { /// Create a new builder with all fields unset pub fn builder() -> Self { ThingInputBuilder { _state: PhantomData, _fields: (None, None, None, None, None, None, None, None, None, None), _type: PhantomData, } } } impl ThingInputBuilder { /// Set the `cover` field (optional) pub fn cover(mut self, value: impl Into>>>) -> Self { self._fields.0 = value.into(); self } /// Set the `cover` field to an Option value (optional) pub fn maybe_cover(mut self, value: Option>>) -> Self { self._fields.0 = value; self } } impl ThingInputBuilder { /// Set the `derivedFrom` field (optional) pub fn derived_from(mut self, value: impl Into>>) -> Self { self._fields.1 = value.into(); self } /// Set the `derivedFrom` field to an Option value (optional) pub fn maybe_derived_from(mut self, value: Option>) -> Self { self._fields.1 = value; self } } impl ThingInputBuilder { /// Set the `instructions` field (optional) pub fn instructions(mut self, value: impl Into>>) -> Self { self._fields.2 = value.into(); self } /// Set the `instructions` field to an Option value (optional) pub fn maybe_instructions(mut self, value: Option>) -> Self { self._fields.2 = value; self } } impl ThingInputBuilder { /// Set the `intendedToWorkWith` field (optional) pub fn intended_to_work_with( mut self, value: impl Into>>>, ) -> Self { self._fields.3 = value.into(); self } /// Set the `intendedToWorkWith` field to an Option value (optional) pub fn maybe_intended_to_work_with( mut self, value: Option>>, ) -> Self { self._fields.3 = value; self } } impl ThingInputBuilder where St: thing_input_state::State, St::License: thing_input_state::IsUnset, { /// Set the `license` field (required) pub fn license( mut self, value: impl Into, ) -> ThingInputBuilder, S> { self._fields.4 = Option::Some(value.into()); ThingInputBuilder { _state: PhantomData, _fields: self._fields, _type: PhantomData, } } } impl ThingInputBuilder where St: thing_input_state::State, St::Models: thing_input_state::IsUnset, { /// Set the `models` field (required) pub fn models( mut self, value: impl Into>>, ) -> ThingInputBuilder, S> { self._fields.5 = Option::Some(value.into()); ThingInputBuilder { _state: PhantomData, _fields: self._fields, _type: PhantomData, } } } impl ThingInputBuilder where St: thing_input_state::State, St::Name: thing_input_state::IsUnset, { /// Set the `name` field (required) pub fn name( mut self, value: impl Into, ) -> ThingInputBuilder, S> { self._fields.6 = Option::Some(value.into()); ThingInputBuilder { _state: PhantomData, _fields: self._fields, _type: PhantomData, } } } impl ThingInputBuilder { /// Set the `previews` field (optional) pub fn previews(mut self, value: impl Into>>>) -> Self { self._fields.7 = value.into(); self } /// Set the `previews` field to an Option value (optional) pub fn maybe_previews(mut self, value: Option>>) -> Self { self._fields.7 = value; self } } impl ThingInputBuilder { /// Set the `summary` field (optional) pub fn summary(mut self, value: impl Into>) -> Self { self._fields.8 = value.into(); self } /// Set the `summary` field to an Option value (optional) pub fn maybe_summary(mut self, value: Option) -> Self { self._fields.8 = value; self } } impl ThingInputBuilder { /// Set the `tags` field (optional) pub fn tags(mut self, value: impl Into>>) -> Self { self._fields.9 = value.into(); self } /// Set the `tags` field to an Option value (optional) pub fn maybe_tags(mut self, value: Option>) -> Self { self._fields.9 = value; self } } impl ThingInputBuilder where St: thing_input_state::State, St::License: thing_input_state::IsSet, St::Models: thing_input_state::IsSet, St::Name: thing_input_state::IsSet, { /// Build the final struct. pub fn build(self) -> ThingInput { ThingInput { cover: self._fields.0, derived_from: self._fields.1, instructions: self._fields.2, intended_to_work_with: self._fields.3, license: self._fields.4.unwrap(), models: self._fields.5.unwrap(), name: self._fields.6.unwrap(), previews: self._fields.7, summary: self._fields.8, tags: self._fields.9, extra_data: Default::default(), } } /// Build the final struct with custom extra_data. pub fn build_with_data( self, extra_data: BTreeMap>, ) -> ThingInput { ThingInput { cover: self._fields.0, derived_from: self._fields.1, instructions: self._fields.2, intended_to_work_with: self._fields.3, license: self._fields.4.unwrap(), models: self._fields.5.unwrap(), name: self._fields.6.unwrap(), previews: self._fields.7, summary: self._fields.8, tags: self._fields.9, extra_data: Some(extra_data), } } }