2024-02-12 12:07:01 +00:00
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use std::collections::HashMap;
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2024-02-19 01:38:55 +00:00
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use crate::{
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2024-03-21 09:42:57 +00:00
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outform::{self, Flag, Parameter, PropertyType},
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typespec::{FnParam, Function, Property, Signal, TypeSpec},
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};
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pub fn resolve_types(
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module: &str,
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typespec: TypeSpec,
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) -> anyhow::Result<HashMap<String, outform::TypeInfo>> {
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let mut outtypes = HashMap::new();
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let types = typespec
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.typemap
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.iter()
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.filter(|type_| type_.module.as_ref().map(|v| v as &str) == Some(module));
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let findqmltype = |cname: &str| typespec.typemap.iter().find(|type_| type_.cname == cname);
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for mapping in types {
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let Some(class) = typespec
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.classes
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.iter()
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.find(|class| class.name == mapping.cname)
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else {
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continue
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};
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let mut properties = Vec::<&Property>::new();
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let mut functions = Vec::<&Function>::new();
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let mut signals = Vec::<&Signal>::new();
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// the first superclass availible from QML
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let mut superclass = &class.superclass;
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let superclass = loop {
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let type_ = findqmltype(superclass);
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if let Some(type_) = type_ {
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break outform::Type::resolve(type_.module.as_ref().map(|v| v as &str), &type_.name)
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}
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let superctype = typespec
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.classes
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.iter()
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.find(|class| &class.name == superclass);
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match superctype {
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Some(superctype) => {
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properties.extend(superctype.properties.iter());
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functions.extend(superctype.functions.iter());
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signals.extend(superctype.signals.iter());
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superclass = &superctype.superclass;
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},
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None => break outform::Type::unknown(),
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}
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};
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fn qmlparamtype(ctype: &str, typespec: &TypeSpec) -> outform::Type {
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let qtype = typespec
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.typemap
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.iter()
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.find(|type_| &type_.cname == ctype)
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.map(|type_| (&type_.module, &type_.name))
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.or_else(|| {
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typespec
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.enums
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.iter()
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.find(|type_| type_.cname.as_ref().map(|v| v as &str) == Some(ctype))
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.map(|type_| (&type_.module, &type_.name))
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});
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match qtype {
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Some((module, name)) => {
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outform::Type::resolve(module.as_ref().map(|v| v as &str), &name)
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},
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None => outform::Type::unknown(),
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}
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}
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fn solveprop(prop: &Property, typespec: &TypeSpec) -> outform::Property {
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let mut ctype = &prop.type_[..];
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let flags = {
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let mut flags = Vec::new();
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if prop.default {
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flags.push(Flag::Default);
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}
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if !prop.readable {
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flags.push(Flag::Writeonly);
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} else if !prop.writable {
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flags.push(Flag::Readonly);
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}
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flags
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};
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let gadget = typespec.gadgets.iter().find(|gadget| gadget.cname == ctype);
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match gadget {
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Some(gadget) => outform::Property {
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type_: PropertyType::Gadget(
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gadget
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.properties
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.iter()
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.map(|prop| (prop.name.clone(), solveprop(prop, typespec).type_))
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.collect(),
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),
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details: prop.details.clone(),
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flags,
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},
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None => {
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let mut list = false;
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if ctype.starts_with("QQmlListProperty<") {
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ctype = &ctype[17..ctype.len() - 1];
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list = true;
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} else if ctype.starts_with("QList<") {
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ctype = &ctype[6..ctype.len() - 1];
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list = true;
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}
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let mut type_ = qmlparamtype(ctype, typespec);
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if list {
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type_ = outform::Type {
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type_: outform::TypeSource::Qt,
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module: "qml".to_string(),
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name: "list".to_string(),
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of: Some(Box::new(type_)),
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};
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}
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outform::Property {
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type_: PropertyType::Type(type_),
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details: prop.details.clone(),
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flags,
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}
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},
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}
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}
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fn solvefunc(func: &Function, typespec: &TypeSpec) -> outform::Function {
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outform::Function {
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ret: qmlparamtype(&func.ret, typespec),
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name: func.name.clone(),
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id: {
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let params = func
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.params
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.iter()
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.map(|FnParam { type_, .. }| qmlparamtype(type_, typespec).name);
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let mut id = func.name.clone();
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id.push('(');
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for param in params {
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id.push_str(¶m);
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id.push('_')
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}
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id.truncate(id.len() - 1);
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id.push(')');
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id
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},
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details: func.details.clone(),
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params: func
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.params
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.iter()
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.map(|FnParam { type_, name }| Parameter {
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name: name.clone(),
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type_: qmlparamtype(type_, typespec),
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})
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.collect(),
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}
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}
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fn solvesignal(func: &Signal, typespec: &TypeSpec) -> outform::Signal {
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outform::Signal {
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name: func.name.clone(),
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details: func.details.clone(),
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params: func
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.params
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.iter()
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.map(|FnParam { type_, name }| Parameter {
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name: name.clone(),
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type_: qmlparamtype(type_, typespec),
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})
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.collect(),
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}
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}
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properties.extend(class.properties.iter());
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properties.sort_by(|a, b| Ord::cmp(&a.name, &b.name));
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functions.extend(class.functions.iter());
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functions.sort_by(|a, b| Ord::cmp(&a.name, &b.name));
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signals.extend(class.signals.iter());
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signals.sort_by(|a, b| Ord::cmp(&a.name, &b.name));
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let properties = properties
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.iter()
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.map(|prop| (prop.name.clone(), solveprop(prop, &typespec)))
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.collect::<HashMap<_, _>>();
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let functions = functions
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.iter()
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.map(|func| solvefunc(func, &typespec))
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.collect::<Vec<_>>();
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let signals = signals
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.iter()
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.map(|signal| (signal.name.clone(), solvesignal(signal, &typespec)))
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.collect::<HashMap<_, _>>();
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let type_ = outform::ClassInfo {
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superclass,
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description: class.description.clone(),
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details: class.details.clone(),
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flags: {
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let mut flags = Vec::new();
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if class.singleton {
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flags.push(Flag::Singleton);
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} else if class.uncreatable {
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flags.push(Flag::Uncreatable);
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}
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flags
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},
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properties,
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functions,
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signals,
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};
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outtypes.insert(mapping.name.clone(), outform::TypeInfo::Class(type_));
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}
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for enum_ in typespec.enums {
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if enum_.module.as_ref().map(|v| v as &str) == Some(module) {
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outtypes.insert(
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enum_.name,
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outform::TypeInfo::Enum(outform::EnumInfo {
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description: enum_.description,
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details: enum_.details,
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variants: enum_
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.varaints
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.into_iter()
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.map(|variant| {
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(variant.name, outform::Variant {
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details: variant.details,
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})
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})
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.collect(),
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}),
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);
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}
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}
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Ok(outtypes)
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}
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