#![allow(clippy::await_holding_refcell_ref, clippy::await_holding_lock)] use std::any::TypeId; use std::cell::RefCell; use std::marker::PhantomData; use std::os::raw::c_int; use std::string::String as StdString; use std::sync::{Arc, Mutex, RwLock}; use crate::error::{Error, Result}; use crate::lua::Lua; use crate::types::{Callback, MaybeSend}; use crate::userdata::{AnyUserData, MetaMethod, UserData, UserDataFields, UserDataMethods}; use crate::userdata_cell::{UserDataBorrowMut, UserDataBorrowRef, UserDataVariant}; use crate::util::{get_userdata, short_type_name}; use crate::value::{FromLua, FromLuaMulti, IntoLua, IntoLuaMulti, Value}; #[cfg(not(feature = "send"))] use std::rc::Rc; #[cfg(feature = "async")] use {crate::types::AsyncCallback, futures_util::future, std::future::Future}; /// Handle to registry for userdata methods and metamethods. pub struct UserDataRegistry<'a, T: 'static> { // Fields pub(crate) fields: Vec<(String, Callback<'a>)>, pub(crate) field_getters: Vec<(String, Callback<'a>)>, pub(crate) field_setters: Vec<(String, Callback<'a>)>, pub(crate) meta_fields: Vec<(String, Callback<'a>)>, // Methods pub(crate) methods: Vec<(String, Callback<'a>)>, #[cfg(feature = "async")] pub(crate) async_methods: Vec<(String, AsyncCallback<'a>)>, pub(crate) meta_methods: Vec<(String, Callback<'a>)>, #[cfg(feature = "async")] pub(crate) async_meta_methods: Vec<(String, AsyncCallback<'a>)>, _type: PhantomData, } impl<'a, T: 'static> UserDataRegistry<'a, T> { pub(crate) const fn new() -> Self { UserDataRegistry { fields: Vec::new(), field_getters: Vec::new(), field_setters: Vec::new(), meta_fields: Vec::new(), methods: Vec::new(), #[cfg(feature = "async")] async_methods: Vec::new(), meta_methods: Vec::new(), #[cfg(feature = "async")] async_meta_methods: Vec::new(), _type: PhantomData, } } fn box_method(name: &str, method: M) -> Callback<'a> where M: Fn(&'a Lua, &T, A) -> Result + MaybeSend + 'static, A: FromLuaMulti, R: IntoLuaMulti, { let name = get_function_name::(name); macro_rules! try_self_arg { ($res:expr) => { $res.map_err(|err| Error::bad_self_argument(&name, err))? }; ($res:expr, $err:expr) => { $res.map_err(|_| Error::bad_self_argument(&name, $err))? }; } Box::new(move |lua, nargs| unsafe { if nargs == 0 { let err = Error::from_lua_conversion("missing argument", "userdata", None); try_self_arg!(Err(err)); } let state = lua.state(); // Find absolute "self" index before processing args let index = ffi::lua_absindex(state, -nargs); // Self was at position 1, so we pass 2 here let args = A::from_stack_args(nargs - 1, 2, Some(&name), lua); match try_self_arg!(lua.get_userdata_type_id(index)) { Some(id) if id == TypeId::of::() => { let ud = try_self_arg!(borrow_userdata_ref::(state, index)); method(lua.lua(), &ud, args?)?.push_into_stack_multi(lua) } // #[cfg(not(feature = "send"))] // Some(id) if id == TypeId::of::>() => { // let ud = try_self_arg!(get_userdata_ref::>(state, index)); // method(lua.lua(), ud, args?)?.push_into_stack_multi(lua) // } // #[cfg(not(feature = "send"))] // Some(id) if id == TypeId::of::>>() => { // let ud = try_self_arg!(get_userdata_ref::>>(state, index)); // let ud = try_self_arg!(ud.try_borrow(), Error::UserDataBorrowError); // method(lua.lua(), &ud, args?)?.push_into_stack_multi(lua) // } // Some(id) if id == TypeId::of::>() => { // let ud = try_self_arg!(get_userdata_ref::>(state, index)); // method(lua.lua(), &ud, args?)?.push_into_stack_multi(lua) // } // Some(id) if id == TypeId::of::>>() => { // let ud = try_self_arg!(get_userdata_ref::>>(state, index)); // let ud = try_self_arg!(ud.try_lock(), Error::UserDataBorrowError); // method(lua.lua(), &ud, args?)?.push_into_stack_multi(lua) // } // #[cfg(feature = "parking_lot")] // Some(id) if id == TypeId::of::>>() => { // let ud = get_userdata_ref::>>(state, index); // let ud = try_self_arg!(ud); // let ud = try_self_arg!(ud.try_lock().ok_or(Error::UserDataBorrowError)); // method(lua.lua(), &ud, args?)?.push_into_stack_multi(lua) // } // Some(id) if id == TypeId::of::>>() => { // let ud = try_self_arg!(get_userdata_ref::>>(state, index)); // let ud = try_self_arg!(ud.try_read(), Error::UserDataBorrowError); // method(lua.lua(), &ud, args?)?.push_into_stack_multi(lua) // } // #[cfg(feature = "parking_lot")] // Some(id) if id == TypeId::of::>>() => { // let ud = get_userdata_ref::>>(state, index); // let ud = try_self_arg!(ud); // let ud = try_self_arg!(ud.try_read().ok_or(Error::UserDataBorrowError)); // method(lua.lua(), &ud, args?)?.push_into_stack_multi(lua) // } _ => Err(Error::bad_self_argument(&name, Error::UserDataTypeMismatch)), } }) } fn box_method_mut(name: &str, method: M) -> Callback<'a> where M: FnMut(&'a Lua, &mut T, A) -> Result + MaybeSend + 'static, A: FromLuaMulti, R: IntoLuaMulti, { let name = get_function_name::(name); macro_rules! try_self_arg { ($res:expr) => { $res.map_err(|err| Error::bad_self_argument(&name, err))? }; ($res:expr, $err:expr) => { $res.map_err(|_| Error::bad_self_argument(&name, $err))? }; } let method = RefCell::new(method); Box::new(move |lua, nargs| unsafe { let mut method = method .try_borrow_mut() .map_err(|_| Error::RecursiveMutCallback)?; if nargs == 0 { let err = Error::from_lua_conversion("missing argument", "userdata", None); try_self_arg!(Err(err)); } let state = lua.state(); // Find absolute "self" index before processing args let index = ffi::lua_absindex(state, -nargs); // Self was at position 1, so we pass 2 here let args = A::from_stack_args(nargs - 1, 2, Some(&name), lua); match try_self_arg!(lua.get_userdata_type_id(index)) { Some(id) if id == TypeId::of::() => { let mut ud = try_self_arg!(borrow_userdata_mut::(state, index)); method(lua.lua(), &mut ud, args?)?.push_into_stack_multi(lua) } // #[cfg(not(feature = "send"))] // Some(id) if id == TypeId::of::>() => Err(Error::UserDataBorrowMutError), // #[cfg(not(feature = "send"))] // Some(id) if id == TypeId::of::>>() => { // let ud = try_self_arg!(get_userdata_mut::>>(state, index)); // let mut ud = try_self_arg!(ud.try_borrow_mut(), Error::UserDataBorrowMutError); // method(lua.lua(), &mut ud, args?)?.push_into_stack_multi(lua) // } // Some(id) if id == TypeId::of::>() => Err(Error::UserDataBorrowMutError), // Some(id) if id == TypeId::of::>>() => { // let ud = try_self_arg!(get_userdata_mut::>>(state, index)); // let mut ud = try_self_arg!(ud.try_lock(), Error::UserDataBorrowMutError); // method(lua.lua(), &mut ud, args?)?.push_into_stack_multi(lua) // } // #[cfg(feature = "parking_lot")] // Some(id) if id == TypeId::of::>>() => { // let ud = get_userdata_mut::>>(state, index); // let ud = try_self_arg!(ud); // let mut ud = try_self_arg!(ud.try_lock().ok_or(Error::UserDataBorrowMutError)); // method(lua.lua(), &mut ud, args?)?.push_into_stack_multi(lua) // } // Some(id) if id == TypeId::of::>>() => { // let ud = try_self_arg!(get_userdata_mut::>>(state, index)); // let mut ud = try_self_arg!(ud.try_write(), Error::UserDataBorrowMutError); // method(lua.lua(), &mut ud, args?)?.push_into_stack_multi(lua) // } // #[cfg(feature = "parking_lot")] // Some(id) if id == TypeId::of::>>() => { // let ud = get_userdata_mut::>>(state, index); // let ud = try_self_arg!(ud); // let mut ud = try_self_arg!(ud.try_write().ok_or(Error::UserDataBorrowMutError)); // method(lua.lua(), &mut ud, args?)?.push_into_stack_multi(lua) // } _ => Err(Error::bad_self_argument(&name, Error::UserDataTypeMismatch)), } }) } #[cfg(feature = "async")] fn box_async_method(name: String, method: M) -> AsyncCallback<'a> where M: Fn(&'a Lua, &'a T, A) -> MR + MaybeSend + 'static, A: FromLuaMulti, MR: Future> + 'a, R: IntoLuaMulti, { let name = Arc::new(get_function_name::(&name)); let method = Arc::new(method); Box::new(move |rawlua, mut args| unsafe { let name = name.clone(); let method = method.clone(); macro_rules! try_self_arg { ($res:expr) => { $res.map_err(|err| Error::bad_self_argument(&name, err))? }; ($res:expr, $err:expr) => { $res.map_err(|_| Error::bad_self_argument(&name, $err))? }; } Box::pin(async move { let this = args.pop_front().ok_or_else(|| { Error::from_lua_conversion("missing argument", "userdata", None) }); let lua = rawlua.lua(); let this = try_self_arg!(AnyUserData::from_lua(try_self_arg!(this), lua)); let args = A::from_lua_args(args, 2, Some(&name), lua); let (ref_thread, index) = (rawlua.ref_thread(), this.0.index); match try_self_arg!(this.type_id()) { Some(id) if id == TypeId::of::() => { let ud = try_self_arg!(borrow_userdata_ref::(ref_thread, index)); let ud = std::mem::transmute::<&T, &T>(&ud); method(lua, ud, args?).await?.push_into_stack_multi(&rawlua) } // #[cfg(not(feature = "send"))] // Some(id) if id == TypeId::of::>() => { // let ud = try_self_arg!(rawlua.get_userdata_ref::>(&this)); // let ud = std::mem::transmute::<&T, &T>(&ud); // method(lua, ud, args?).await?.push_into_stack_multi(&rawlua) // } // #[cfg(not(feature = "send"))] // Some(id) if id == TypeId::of::>>() => { // let ud = try_self_arg!(rawlua.get_userdata_ref::>>(&this)); // let ud = try_self_arg!(ud.try_borrow(), Error::UserDataBorrowError); // let ud = std::mem::transmute::<&T, &T>(&ud); // method(lua, ud, args?).await?.push_into_stack_multi(&rawlua) // } // Some(id) if id == TypeId::of::>() => { // let ud = try_self_arg!(rawlua.get_userdata_ref::>(&this)); // let ud = std::mem::transmute::<&T, &T>(&ud); // method(lua, ud, args?).await?.push_into_stack_multi(&rawlua) // } // Some(id) if id == TypeId::of::>>() => { // let ud = try_self_arg!(rawlua.get_userdata_ref::>>(&this)); // let ud = try_self_arg!(ud.try_lock(), Error::UserDataBorrowError); // let ud = std::mem::transmute::<&T, &T>(&ud); // method(lua, ud, args?).await?.push_into_stack_multi(&rawlua) // } // #[cfg(feature = "parking_lot")] // Some(id) if id == TypeId::of::>>() => { // let ud = rawlua.get_userdata_ref::>>(&this); // let ud = try_self_arg!(ud); // let ud = try_self_arg!(ud.try_lock().ok_or(Error::UserDataBorrowError)); // let ud = std::mem::transmute::<&T, &T>(&ud); // method(lua, ud, args?).await?.push_into_stack_multi(lua) // } // Some(id) if id == TypeId::of::>>() => { // let ud = try_self_arg!(rawlua.get_userdata_ref::>>(&this)); // let ud = try_self_arg!(ud.try_read(), Error::UserDataBorrowError); // let ud = std::mem::transmute::<&T, &T>(&ud); // method(lua, ud, args?).await?.push_into_stack_multi(&rawlua) // } // #[cfg(feature = "parking_lot")] // Some(id) if id == TypeId::of::>>() => { // let ud = get_userdata_ref::>>(ref_thread, index); // let ud = try_self_arg!(ud); // let ud = try_self_arg!(ud.try_read().ok_or(Error::UserDataBorrowError)); // let ud = std::mem::transmute::<&T, &T>(&ud); // method(lua, ud, args?).await?.push_into_stack_multi(lua) // } _ => Err(Error::bad_self_argument(&name, Error::UserDataTypeMismatch)), } }) }) } #[cfg(feature = "async")] fn box_async_method_mut(name: String, method: M) -> AsyncCallback<'a> where M: Fn(&'a Lua, &'a mut T, A) -> MR + MaybeSend + 'static, A: FromLuaMulti, MR: Future> + 'a, R: IntoLuaMulti, { let name = Arc::new(get_function_name::(&name)); let method = Arc::new(method); Box::new(move |rawlua, mut args| unsafe { let name = name.clone(); let method = method.clone(); macro_rules! try_self_arg { ($res:expr) => { $res.map_err(|err| Error::bad_self_argument(&name, err))? }; ($res:expr, $err:expr) => { $res.map_err(|_| Error::bad_self_argument(&name, $err))? }; } Box::pin(async move { let this = args.pop_front().ok_or_else(|| { Error::from_lua_conversion("missing argument", "userdata", None) }); let lua = rawlua.lua(); let this = try_self_arg!(AnyUserData::from_lua(try_self_arg!(this), lua)); let args = A::from_lua_args(args, 2, Some(&name), lua); let (ref_thread, index) = (rawlua.ref_thread(), this.0.index); match try_self_arg!(this.type_id()) { Some(id) if id == TypeId::of::() => { let mut ud = try_self_arg!(borrow_userdata_mut::(ref_thread, index)); let ud = std::mem::transmute::<&mut T, &mut T>(&mut ud); method(lua, ud, args?).await?.push_into_stack_multi(&rawlua) } // #[cfg(not(feature = "send"))] // Some(id) if id == TypeId::of::>>() => { // Err(Error::UserDataBorrowMutError) // } // #[cfg(not(feature = "send"))] // Some(id) if id == TypeId::of::>>() => { // let ud = // try_self_arg!(get_userdata_mut::>>(ref_thread, index)); // let mut ud = // try_self_arg!(ud.try_borrow_mut(), Error::UserDataBorrowMutError); // let ud = std::mem::transmute::<&mut T, &mut T>(&mut ud); // method(lua, ud, args?).await?.push_into_stack_multi(&rawlua) // } // #[cfg(not(feature = "send"))] // Some(id) if id == TypeId::of::>() => Err(Error::UserDataBorrowMutError), // Some(id) if id == TypeId::of::>>() => { // let ud = // try_self_arg!(get_userdata_mut::>>(ref_thread, index)); // let mut ud = try_self_arg!(ud.try_lock(), Error::UserDataBorrowMutError); // let ud = std::mem::transmute::<&mut T, &mut T>(&mut ud); // method(lua, ud, args?).await?.push_into_stack_multi(&rawlua) // } // #[cfg(feature = "parking_lot")] // Some(id) if id == TypeId::of::>>() => { // let ud = get_userdata_mut::>>(ref_thread, index); // let ud = try_self_arg!(ud); // let mut ud = // try_self_arg!(ud.try_lock().ok_or(Error::UserDataBorrowMutError)); // let ud = std::mem::transmute::<&mut T, &mut T>(&mut ud); // method(lua, ud, args?).await?.push_into_stack_multi(&rawlua) // } // Some(id) if id == TypeId::of::>>() => { // let ud = // try_self_arg!(get_userdata_mut::>>(ref_thread, index)); // let mut ud = try_self_arg!(ud.try_write(), Error::UserDataBorrowMutError); // let ud = std::mem::transmute::<&mut T, &mut T>(&mut ud); // method(lua, ud, args?).await?.push_into_stack_multi(&rawlua) // } // #[cfg(feature = "parking_lot")] // Some(id) if id == TypeId::of::>>() => { // let ud = get_userdata_mut::>>(ref_thread, index); // let ud = try_self_arg!(ud); // let mut ud = // try_self_arg!(ud.try_write().ok_or(Error::UserDataBorrowMutError)); // let ud = std::mem::transmute::<&mut T, &mut T>(&mut ud); // method(lua, ud, args?).await?.push_into_stack_multi(lua) // } _ => Err(Error::bad_self_argument(&name, Error::UserDataTypeMismatch)), } }) }) } fn box_function(name: &str, function: F) -> Callback<'a> where F: Fn(&'a Lua, A) -> Result + MaybeSend + 'static, A: FromLuaMulti, R: IntoLuaMulti, { let name = get_function_name::(name); Box::new(move |lua, nargs| unsafe { let args = A::from_stack_args(nargs, 1, Some(&name), lua)?; function(lua.lua(), args)?.push_into_stack_multi(lua) }) } fn box_function_mut(name: &str, function: F) -> Callback<'a> where F: FnMut(&'a Lua, A) -> Result + MaybeSend + 'static, A: FromLuaMulti, R: IntoLuaMulti, { let name = get_function_name::(name); let function = RefCell::new(function); Box::new(move |lua, nargs| unsafe { let function = &mut *function .try_borrow_mut() .map_err(|_| Error::RecursiveMutCallback)?; let args = A::from_stack_args(nargs, 1, Some(&name), lua)?; function(lua.lua(), args)?.push_into_stack_multi(lua) }) } #[cfg(feature = "async")] fn box_async_function(name: String, function: F) -> AsyncCallback<'a> where F: Fn(&'a Lua, A) -> FR + MaybeSend + 'static, A: FromLuaMulti, FR: Future> + 'a, R: IntoLuaMulti, { let name = get_function_name::(&name); Box::new(move |rawlua, args| unsafe { let lua = rawlua.lua(); let args = match A::from_lua_args(args, 1, Some(&name), lua) { Ok(args) => args, Err(e) => return Box::pin(future::err(e)), }; let fut = function(lua, args); let weak = rawlua.weak().clone(); Box::pin(async move { fut.await?.push_into_stack_multi(&weak.lock()) }) }) } pub(crate) fn check_meta_field(lua: &Lua, name: &str, value: V) -> Result where V: IntoLua, { let value = value.into_lua(lua)?; if name == MetaMethod::Index || name == MetaMethod::NewIndex { match value { Value::Nil | Value::Table(_) | Value::Function(_) => {} _ => { return Err(Error::MetaMethodTypeError { method: name.to_string(), type_name: value.type_name(), message: Some("expected nil, table or function".to_string()), }) } } } value.into_lua(lua) } } // Returns function name for the type `T`, without the module path fn get_function_name(name: &str) -> StdString { format!("{}.{name}", short_type_name::()) } impl<'a, T: 'static> UserDataFields<'a, T> for UserDataRegistry<'a, T> { fn add_field(&mut self, name: impl ToString, value: V) where V: IntoLua + Clone + 'static, { let name = name.to_string(); let callback = Box::new(move |lua, _| unsafe { value.clone().push_into_stack_multi(lua) }); self.fields.push((name, callback)); } fn add_field_method_get(&mut self, name: impl ToString, method: M) where M: Fn(&'a Lua, &T) -> Result + MaybeSend + 'static, R: IntoLua, { let name = name.to_string(); let callback = Self::box_method(&name, move |lua, data, ()| method(lua, &data)); self.field_getters.push((name.into(), callback)); } fn add_field_method_set(&mut self, name: impl ToString, method: M) where M: FnMut(&'a Lua, &mut T, A) -> Result<()> + MaybeSend + 'static, A: FromLua, { let name = name.to_string(); let callback = Self::box_method_mut(&name, method); self.field_setters.push((name, callback)); } fn add_field_function_get(&mut self, name: impl ToString, function: F) where F: Fn(&'a Lua, AnyUserData) -> Result + MaybeSend + 'static, R: IntoLua, { let name = name.to_string(); let callback = Self::box_function(&name, function); self.field_getters.push((name, callback)); } fn add_field_function_set(&mut self, name: impl ToString, mut function: F) where F: FnMut(&'a Lua, AnyUserData, A) -> Result<()> + MaybeSend + 'static, A: FromLua, { let name = name.to_string(); let callback = Self::box_function_mut(&name, move |lua, (data, val)| function(lua, data, val)); self.field_setters.push((name, callback)); } fn add_meta_field(&mut self, name: impl ToString, value: V) where V: IntoLua + Clone + 'static, { let name = name.to_string(); let name2 = name.clone(); self.meta_fields.push(( name, Box::new(move |lua, _| unsafe { Self::check_meta_field(lua.lua(), &name2, value.clone())?.push_into_stack_multi(lua) }), )); } fn add_meta_field_with(&mut self, name: impl ToString, f: F) where F: Fn(&'a Lua) -> Result + MaybeSend + 'static, R: IntoLua, { let name = name.to_string(); let name2 = name.clone(); self.meta_fields.push(( name, Box::new(move |rawlua, _| unsafe { let lua = rawlua.lua(); Self::check_meta_field(lua, &name2, f(lua)?)?.push_into_stack_multi(rawlua) }), )); } } impl<'a, T: 'static> UserDataMethods<'a, T> for UserDataRegistry<'a, T> { fn add_method(&mut self, name: impl ToString, method: M) where M: Fn(&'a Lua, &T, A) -> Result + MaybeSend + 'static, A: FromLuaMulti, R: IntoLuaMulti, { let name = name.to_string(); let callback = Self::box_method(&name, method); self.methods.push((name, callback)); } fn add_method_mut(&mut self, name: impl ToString, method: M) where M: FnMut(&'a Lua, &mut T, A) -> Result + MaybeSend + 'static, A: FromLuaMulti, R: IntoLuaMulti, { let name = name.to_string(); let callback = Self::box_method_mut(&name, method); self.methods.push((name, callback)); } #[cfg(feature = "async")] fn add_async_method(&mut self, name: impl ToString, method: M) where M: Fn(&'a Lua, &'a T, A) -> MR + MaybeSend + 'static, A: FromLuaMulti, MR: Future> + 'a, R: IntoLuaMulti, { let name = name.to_string(); let callback = Self::box_async_method(name.clone(), method); self.async_methods.push((name, callback)); } #[cfg(feature = "async")] fn add_async_method_mut(&mut self, name: impl ToString, method: M) where M: Fn(&'a Lua, &'a mut T, A) -> MR + MaybeSend + 'static, A: FromLuaMulti, MR: Future> + 'a, R: IntoLuaMulti, { let name = name.to_string(); let callback = Self::box_async_method_mut(name.clone(), method); self.async_methods.push((name, callback)); } fn add_function(&mut self, name: impl ToString, function: F) where F: Fn(&'a Lua, A) -> Result + MaybeSend + 'static, A: FromLuaMulti, R: IntoLuaMulti, { let name = name.to_string(); let callback = Self::box_function(&name, function); self.methods.push((name, callback)); } fn add_function_mut(&mut self, name: impl ToString, function: F) where F: FnMut(&'a Lua, A) -> Result + MaybeSend + 'static, A: FromLuaMulti, R: IntoLuaMulti, { let name = name.to_string(); let callback = Self::box_function_mut(&name, function); self.methods.push((name, callback)); } #[cfg(feature = "async")] fn add_async_function(&mut self, name: impl ToString, function: F) where F: Fn(&'a Lua, A) -> FR + MaybeSend + 'static, A: FromLuaMulti, FR: Future> + 'a, R: IntoLuaMulti, { let name = name.to_string(); let callback = Self::box_async_function(name.clone(), function); self.async_methods.push((name, callback)); } fn add_meta_method(&mut self, name: impl ToString, method: M) where M: Fn(&'a Lua, &T, A) -> Result + MaybeSend + 'static, A: FromLuaMulti, R: IntoLuaMulti, { let name = name.to_string(); let callback = Self::box_method(&name, method); self.meta_methods.push((name, callback)); } fn add_meta_method_mut(&mut self, name: impl ToString, method: M) where M: FnMut(&'a Lua, &mut T, A) -> Result + MaybeSend + 'static, A: FromLuaMulti, R: IntoLuaMulti, { let name = name.to_string(); let callback = Self::box_method_mut(&name, method); self.meta_methods.push((name, callback)); } #[cfg(all(feature = "async", not(any(feature = "lua51", feature = "luau"))))] fn add_async_meta_method(&mut self, name: impl ToString, method: M) where M: Fn(&'a Lua, &'a T, A) -> MR + MaybeSend + 'static, A: FromLuaMulti, MR: Future> + 'a, R: IntoLuaMulti, { let name = name.to_string(); let callback = Self::box_async_method(name.clone(), method); self.async_meta_methods.push((name, callback)); } #[cfg(all(feature = "async", not(any(feature = "lua51", feature = "luau"))))] fn add_async_meta_method_mut(&mut self, name: impl ToString, method: M) where M: Fn(&'a Lua, &'a mut T, A) -> MR + MaybeSend + 'static, A: FromLuaMulti, MR: Future> + 'a, R: IntoLuaMulti, { let name = name.to_string(); let callback = Self::box_async_method_mut(name.clone(), method); self.async_meta_methods.push((name, callback)); } fn add_meta_function(&mut self, name: impl ToString, function: F) where F: Fn(&'a Lua, A) -> Result + MaybeSend + 'static, A: FromLuaMulti, R: IntoLuaMulti, { let name = name.to_string(); let callback = Self::box_function(&name, function); self.meta_methods.push((name, callback)); } fn add_meta_function_mut(&mut self, name: impl ToString, function: F) where F: FnMut(&'a Lua, A) -> Result + MaybeSend + 'static, A: FromLuaMulti, R: IntoLuaMulti, { let name = name.to_string(); let callback = Self::box_function_mut(&name, function); self.meta_methods.push((name, callback)); } #[cfg(all(feature = "async", not(any(feature = "lua51", feature = "luau"))))] fn add_async_meta_function(&mut self, name: impl ToString, function: F) where F: Fn(&'a Lua, A) -> FR + MaybeSend + 'static, A: FromLuaMulti, FR: Future> + 'a, R: IntoLuaMulti, { let name = name.to_string(); let callback = Self::box_async_function(name.clone(), function); self.async_meta_methods.push((name, callback)); } } // Borrow the userdata in-place from the Lua stack #[inline] unsafe fn borrow_userdata_ref<'a, T>( state: *mut ffi::lua_State, index: c_int, ) -> Result> { let ud = get_userdata::>(state, index); (*ud).try_borrow() } // Borrow the userdata mutably in-place from the Lua stack #[inline] unsafe fn borrow_userdata_mut<'a, T>( state: *mut ffi::lua_State, index: c_int, ) -> Result> { let ud = get_userdata::>(state, index); (*ud).try_borrow_mut() } macro_rules! lua_userdata_impl { ($type:ty) => { impl UserData for $type { fn register(registry: &mut UserDataRegistry) { let mut orig_registry = UserDataRegistry::new(); T::register(&mut orig_registry); // Copy all fields, methods, etc. from the original registry registry.fields.extend(orig_registry.fields); registry.field_getters.extend(orig_registry.field_getters); registry.field_setters.extend(orig_registry.field_setters); registry.meta_fields.extend(orig_registry.meta_fields); registry.methods.extend(orig_registry.methods); #[cfg(feature = "async")] registry.async_methods.extend(orig_registry.async_methods); registry.meta_methods.extend(orig_registry.meta_methods); #[cfg(feature = "async")] registry .async_meta_methods .extend(orig_registry.async_meta_methods); } } }; } #[cfg(not(feature = "send"))] lua_userdata_impl!(Rc); #[cfg(not(feature = "send"))] lua_userdata_impl!(Rc>); lua_userdata_impl!(Arc); lua_userdata_impl!(Arc>); lua_userdata_impl!(Arc>); #[cfg(feature = "parking_lot")] lua_userdata_impl!(Arc>); #[cfg(feature = "parking_lot")] lua_userdata_impl!(Arc>); // A special proxy object for UserData pub(crate) struct UserDataProxy(pub(crate) PhantomData); lua_userdata_impl!(UserDataProxy);