Don't wrap ExtraData to Arc<Mutex> and use raw pointer instead.
This causes serious performance issues and given that Lua is single threaded (not Sync) it's safe to use a raw pointer instead.
This commit is contained in:
parent
adbc9ccc9b
commit
8ff610529b
167
src/lua.rs
167
src/lua.rs
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@ -6,7 +6,7 @@ use std::fmt;
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use std::marker::PhantomData;
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use std::os::raw::{c_char, c_int, c_void};
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use std::panic::{catch_unwind, resume_unwind, AssertUnwindSafe};
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use std::sync::{Arc, Mutex, MutexGuard, RwLock, Weak};
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use std::sync::{Arc, Mutex, RwLock};
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use std::{mem, ptr, str};
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use crate::error::{Error, Result};
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@ -55,7 +55,7 @@ use serde::Serialize;
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pub struct Lua {
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pub(crate) state: *mut ffi::lua_State,
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main_state: Option<*mut ffi::lua_State>,
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extra: Arc<Mutex<ExtraData>>,
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extra: *mut ExtraData,
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ephemeral: bool,
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safe: bool,
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// Lua has lots of interior mutability, should not be RefUnwindSafe
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@ -151,7 +151,6 @@ impl LuaOptions {
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static CALLBACK_MT: u8 = 0;
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static CALLBACK_UPVALUE_MT: u8 = 0;
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static EXTRA_MT: u8 = 0;
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pub(crate) static EXTRA_REGISTRY_KEY: u8 = 0;
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#[cfg(feature = "async")]
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@ -176,7 +175,7 @@ impl Drop for Lua {
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fn drop(&mut self) {
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unsafe {
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if !self.ephemeral {
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let mut extra = mlua_expect!(self.extra.lock(), "extra is poisoned");
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let extra = &mut *self.extra;
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for index in extra.prealloc_wrapped_errors.clone() {
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ffi::lua_pushnil(extra.ref_thread);
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ffi::lua_replace(extra.ref_thread, index);
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@ -187,13 +186,12 @@ impl Drop for Lua {
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&& extra.ref_stack_top as usize == extra.ref_free.len(),
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"reference leak detected"
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);
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let mut unref_list =
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mlua_expect!(extra.registry_unref_list.lock(), "unref list poisoned");
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*unref_list = None;
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*mlua_expect!(extra.registry_unref_list.lock(), "unref list poisoned") = None;
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ffi::lua_close(mlua_expect!(self.main_state, "main_state is null"));
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if !extra.mem_info.is_null() {
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Box::from_raw(extra.mem_info);
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}
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Box::from_raw(extra);
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}
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}
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}
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@ -263,7 +261,7 @@ impl Lua {
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mlua_expect!(lua.disable_c_modules(), "Error during disabling C modules");
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}
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lua.safe = true;
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mlua_expect!(lua.extra.lock(), "extra is poisoned").safe = true;
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unsafe { (*lua.extra).safe = true };
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Ok(lua)
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}
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@ -355,16 +353,18 @@ impl Lua {
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let mut lua = Lua::init_from_ptr(state);
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lua.ephemeral = false;
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#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
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{
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mlua_expect!(lua.extra.lock(), "extra is poisoned").mem_info = mem_info;
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let extra = &mut *lua.extra;
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if cfg!(any(feature = "lua54", feature = "lua53", feature = "lua52")) {
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extra.mem_info = mem_info;
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}
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mlua_expect!(
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load_from_std_lib(state, libs),
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"Error during loading standard libraries"
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);
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mlua_expect!(lua.extra.lock(), "extra is poisoned").libs |= libs;
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extra.libs |= libs;
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if !options.catch_rust_panics {
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mlua_expect!(
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@ -411,7 +411,6 @@ impl Lua {
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init_gc_metatable::<Callback>(state, &CALLBACK_MT, None)?;
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init_gc_metatable::<CallbackUpvalue>(state, &CALLBACK_UPVALUE_MT, None)?;
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init_gc_metatable::<Weak<Mutex<ExtraData>>>(state, &EXTRA_MT, None)?;
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#[cfg(feature = "async")]
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{
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init_gc_metatable::<AsyncCallback>(state, &ASYNC_CALLBACK_MT, None)?;
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@ -447,7 +446,7 @@ impl Lua {
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// Create ExtraData
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let extra = Arc::new(Mutex::new(ExtraData {
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let extra = Box::into_raw(Box::new(ExtraData {
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registered_userdata: HashMap::new(),
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registered_userdata_mt: HashSet::new(),
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registry_unref_list: Arc::new(Mutex::new(Some(Vec::new()))),
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@ -463,10 +462,7 @@ impl Lua {
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hook_callback: None,
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}));
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mlua_expect!(
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push_gc_userdata(main_state, &EXTRA_MT, Arc::downgrade(&extra)),
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"Error while storing extra data",
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);
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ffi::lua_pushlightuserdata(main_state, extra as *mut c_void);
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mlua_expect!(
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protect_lua!(main_state, 1, 0, state => {
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let extra_key = &EXTRA_REGISTRY_KEY as *const u8 as *const c_void;
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@ -515,11 +511,12 @@ impl Lua {
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let res = unsafe { load_from_std_lib(state, libs) };
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// If `package` library loaded into a safe lua state then disable C modules
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let curr_libs = mlua_expect!(self.extra.lock(), "extra is poisoned").libs;
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let extra = unsafe { &mut *self.extra };
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let curr_libs = extra.libs;
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if self.safe && (curr_libs ^ (curr_libs | libs)).contains(StdLib::PACKAGE) {
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mlua_expect!(self.disable_c_modules(), "Error during disabling C modules");
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}
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mlua_expect!(self.extra.lock(), "extra is poisoned").libs |= libs;
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extra.libs |= libs;
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res
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}
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@ -661,8 +658,7 @@ impl Lua {
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{
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let state = self.main_state.ok_or(Error::MainThreadNotAvailable)?;
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unsafe {
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let mut extra = mlua_expect!(self.extra.lock(), "extra is poisoned");
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extra.hook_callback = Some(Arc::new(RefCell::new(callback)));
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(*self.extra).hook_callback = Some(Arc::new(RefCell::new(callback)));
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ffi::lua_sethook(state, Some(hook_proc), triggers.mask(), triggers.count());
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}
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Ok(())
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@ -676,26 +672,26 @@ impl Lua {
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Some(state) => state,
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None => return,
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};
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let mut extra = mlua_expect!(self.extra.lock(), "extra is poisoned");
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unsafe {
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extra.hook_callback = None;
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(*self.extra).hook_callback = None;
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ffi::lua_sethook(state, None, 0, 0);
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}
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}
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/// Returns the amount of memory (in bytes) currently used inside this Lua state.
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pub fn used_memory(&self) -> usize {
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let extra = mlua_expect!(self.extra.lock(), "extra is poisoned");
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let state = self.main_state.unwrap_or(self.state);
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if extra.mem_info.is_null() {
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// Get data from the Lua GC
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unsafe {
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let state = self.main_state.unwrap_or(self.state);
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match (*self.extra).mem_info {
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mem_info if mem_info.is_null() => {
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// Get data from the Lua GC
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let used_kbytes = ffi::lua_gc(state, ffi::LUA_GCCOUNT, 0);
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let used_kbytes_rem = ffi::lua_gc(state, ffi::LUA_GCCOUNTB, 0);
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return (used_kbytes as usize) * 1024 + (used_kbytes_rem as usize);
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(used_kbytes as usize) * 1024 + (used_kbytes_rem as usize)
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}
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mem_info => (*mem_info).used_memory as usize,
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}
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}
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unsafe { (*extra.mem_info).used_memory as usize }
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}
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/// Sets a memory limit (in bytes) on this Lua state.
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@ -709,16 +705,17 @@ impl Lua {
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/// Requires `feature = "lua54/lua53/lua52"`
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#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52", doc))]
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pub fn set_memory_limit(&self, memory_limit: usize) -> Result<usize> {
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let mut extra = mlua_expect!(self.extra.lock(), "extra is poisoned");
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if extra.mem_info.is_null() {
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return Err(Error::MemoryLimitNotAvailable);
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}
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unsafe {
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let prev_limit = (*extra.mem_info).memory_limit as usize;
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(*extra.mem_info).memory_limit = memory_limit as isize;
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match (*self.extra).mem_info {
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mem_info if mem_info.is_null() => Err(Error::MemoryLimitNotAvailable),
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mem_info => {
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let prev_limit = (*mem_info).memory_limit as usize;
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(*mem_info).memory_limit = memory_limit as isize;
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Ok(prev_limit)
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}
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}
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}
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}
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/// Returns true if the garbage collector is currently running automatically.
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///
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@ -1448,11 +1445,9 @@ impl Lua {
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ffi::luaL_ref(state, ffi::LUA_REGISTRYINDEX)
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})?;
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let extra = mlua_expect!(self.extra.lock(), "extra is poisoned");
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Ok(RegistryKey {
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registry_id,
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unref_list: extra.registry_unref_list.clone(),
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unref_list: (*self.extra).registry_unref_list.clone(),
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})
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}
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}
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@ -1508,8 +1503,8 @@ impl Lua {
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/// `Error::MismatchedRegistryKey` if passed a `RegistryKey` that was not created with a
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/// matching `Lua` state.
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pub fn owns_registry_value(&self, key: &RegistryKey) -> bool {
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let extra = mlua_expect!(self.extra.lock(), "extra is poisoned");
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Arc::ptr_eq(&key.unref_list, &extra.registry_unref_list)
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let registry_unref_list = unsafe { &(*self.extra).registry_unref_list };
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Arc::ptr_eq(&key.unref_list, registry_unref_list)
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}
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/// Remove any registry values whose `RegistryKey`s have all been dropped.
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@ -1519,9 +1514,10 @@ impl Lua {
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/// by `Lua::remove_registry_value`.
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pub fn expire_registry_values(&self) {
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unsafe {
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let extra = mlua_expect!(self.extra.lock(), "extra is poisoned");
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let mut unref_list =
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mlua_expect!(extra.registry_unref_list.lock(), "unref list poisoned");
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let mut unref_list = mlua_expect!(
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(*self.extra).registry_unref_list.lock(),
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"unref list poisoned"
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);
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let unref_list = mem::replace(&mut *unref_list, Some(Vec::new()));
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for id in mlua_expect!(unref_list, "unref list not set") {
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ffi::luaL_unref(self.state, ffi::LUA_REGISTRYINDEX, id);
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@ -1650,12 +1646,11 @@ impl Lua {
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// Pushes a LuaRef value onto the stack, uses 1 stack space, does not call checkstack
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pub(crate) unsafe fn push_ref<'lua>(&'lua self, lref: &LuaRef<'lua>) {
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assert!(
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Arc::ptr_eq(&lref.lua.extra, &self.extra),
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lref.lua.extra == self.extra,
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"Lua instance passed Value created from a different main Lua state"
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);
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let extra = mlua_expect!(self.extra.lock(), "extra is poisoned");
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ffi::lua_pushvalue(extra.ref_thread, lref.index);
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ffi::lua_xmove(extra.ref_thread, self.state, 1);
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ffi::lua_pushvalue((*self.extra).ref_thread, lref.index);
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ffi::lua_xmove((*self.extra).ref_thread, self.state, 1);
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}
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// Pops the topmost element of the stack and stores a reference to it. This pins the object,
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@ -1668,24 +1663,24 @@ impl Lua {
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// number of short term references being created, and `RegistryKey` being used for long term
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// references.
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pub(crate) unsafe fn pop_ref(&self) -> LuaRef {
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let extra = mlua_expect!(self.extra.lock(), "extra is poisoned");
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let extra = &mut *self.extra;
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ffi::lua_xmove(self.state, extra.ref_thread, 1);
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let (index, _) = ref_stack_pop(extra);
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let index = ref_stack_pop(extra);
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LuaRef { lua: self, index }
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}
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pub(crate) fn clone_ref<'lua>(&'lua self, lref: &LuaRef<'lua>) -> LuaRef<'lua> {
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unsafe {
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let extra = mlua_expect!(self.extra.lock(), "extra is poisoned");
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let extra = &mut *self.extra;
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ffi::lua_pushvalue(extra.ref_thread, lref.index);
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let (index, _) = ref_stack_pop(extra);
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let index = ref_stack_pop(extra);
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LuaRef { lua: self, index }
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}
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}
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pub(crate) fn drop_ref<'lua>(&'lua self, lref: &mut LuaRef<'lua>) {
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unsafe {
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let mut extra = mlua_expect!(self.extra.lock(), "extra is poisoned");
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let extra = &mut *self.extra;
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ffi::lua_pushnil(extra.ref_thread);
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ffi::lua_replace(extra.ref_thread, lref.index);
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extra.ref_free.push(lref.index);
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@ -1694,10 +1689,7 @@ impl Lua {
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pub(crate) unsafe fn push_userdata_metatable<T: 'static + UserData>(&self) -> Result<()> {
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let type_id = TypeId::of::<T>();
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if let Some(&table_id) = mlua_expect!(self.extra.lock(), "extra is poisoned")
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.registered_userdata
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.get(&type_id)
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{
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if let Some(&table_id) = (*self.extra).registered_userdata.get(&type_id) {
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ffi::lua_rawgeti(self.state, ffi::LUA_REGISTRYINDEX, table_id as Integer);
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return Ok(());
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}
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@ -1792,21 +1784,19 @@ impl Lua {
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ffi::luaL_ref(state, ffi::LUA_REGISTRYINDEX)
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})?;
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let mut extra = mlua_expect!(self.extra.lock(), "extra is poisoned");
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let extra = &mut *self.extra;
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extra.registered_userdata.insert(type_id, id);
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extra.registered_userdata_mt.insert(ptr as isize);
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Ok(())
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}
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pub(crate) fn register_userdata_metatable(&self, id: isize) {
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let mut extra = mlua_expect!(self.extra.lock(), "extra is poisoned");
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extra.registered_userdata_mt.insert(id);
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pub(crate) unsafe fn register_userdata_metatable(&self, id: isize) {
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(*self.extra).registered_userdata_mt.insert(id);
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}
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pub(crate) fn deregister_userdata_metatable(&self, id: isize) {
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let mut extra = mlua_expect!(self.extra.lock(), "extra is poisoned");
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extra.registered_userdata_mt.remove(&id);
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pub(crate) unsafe fn deregister_userdata_metatable(&self, id: isize) {
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(*self.extra).registered_userdata_mt.remove(&id);
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}
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// Pushes a LuaRef value onto the stack, checking that it's a registered
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@ -1819,7 +1809,7 @@ impl Lua {
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}
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// Check that userdata is registered
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let ptr = ffi::lua_topointer(self.state, -1);
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let extra = mlua_expect!(self.extra.lock(), "extra is poisoned");
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let extra = &*self.extra;
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if extra.registered_userdata_mt.contains(&(ptr as isize)) {
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if !with_mt {
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ffi::lua_pop(self.state, 1);
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@ -1854,7 +1844,7 @@ impl Lua {
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unsafe extern "C" fn call_callback(state: *mut ffi::lua_State) -> c_int {
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let get_extra = |state| {
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let upvalue = get_userdata::<CallbackUpvalue>(state, ffi::lua_upvalueindex(1));
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(*upvalue).lua.extra.clone()
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(*upvalue).lua.extra
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};
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callback_error_ext(state, get_extra, |nargs| {
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let upvalue_idx = ffi::lua_upvalueindex(1);
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@ -1915,9 +1905,8 @@ impl Lua {
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where
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'lua: 'callback,
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{
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#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
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{
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let libs = mlua_expect!(self.extra.lock(), "extra is poisoned").libs;
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if cfg!(any(feature = "lua54", feature = "lua53", feature = "lua52")) {
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let libs = unsafe { (*self.extra).libs };
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if !libs.contains(StdLib::COROUTINE) {
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self.load_from_std_lib(StdLib::COROUTINE)?;
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}
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@ -1926,7 +1915,7 @@ impl Lua {
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unsafe extern "C" fn call_callback(state: *mut ffi::lua_State) -> c_int {
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let get_extra = |state| {
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let upvalue = get_userdata::<AsyncCallbackUpvalue>(state, ffi::lua_upvalueindex(1));
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(*upvalue).lua.extra.clone()
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(*upvalue).lua.extra
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};
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callback_error_ext(state, get_extra, |nargs| {
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let upvalue_idx = ffi::lua_upvalueindex(1);
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@ -1962,7 +1951,7 @@ impl Lua {
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unsafe extern "C" fn poll_future(state: *mut ffi::lua_State) -> c_int {
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let get_extra = |state| {
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let upvalue = get_userdata::<AsyncPollUpvalue>(state, ffi::lua_upvalueindex(1));
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(*upvalue).lua.extra.clone()
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(*upvalue).lua.extra
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};
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callback_error_ext(state, get_extra, |nargs| {
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let upvalue_idx = ffi::lua_upvalueindex(1);
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@ -2085,7 +2074,7 @@ impl Lua {
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Lua {
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state: self.state,
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main_state: self.main_state,
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extra: self.extra.clone(),
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extra: self.extra,
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ephemeral: true,
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safe: self.safe,
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_no_ref_unwind_safe: PhantomData,
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@ -2123,30 +2112,24 @@ impl Lua {
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assert_stack(state, 1);
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let extra_key = &EXTRA_REGISTRY_KEY as *const u8 as *const c_void;
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if ffi::lua_rawgetp(state, ffi::LUA_REGISTRYINDEX, extra_key) != ffi::LUA_TUSERDATA {
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if ffi::lua_rawgetp(state, ffi::LUA_REGISTRYINDEX, extra_key) != ffi::LUA_TLIGHTUSERDATA {
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return None;
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}
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let extra = mlua_expect!(
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(*get_gc_userdata::<Weak<Mutex<ExtraData>>>(state, -1, &EXTRA_MT)).upgrade(),
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"extra is destroyed"
|
||||
);
|
||||
let extra = ffi::lua_touserdata(state, -1) as *mut ExtraData;
|
||||
ffi::lua_pop(state, 1);
|
||||
|
||||
let safe = mlua_expect!(extra.lock(), "extra is poisoned").safe;
|
||||
|
||||
Some(Lua {
|
||||
state,
|
||||
main_state: get_main_state(state),
|
||||
extra,
|
||||
ephemeral: true,
|
||||
safe,
|
||||
safe: (*extra).safe,
|
||||
_no_ref_unwind_safe: PhantomData,
|
||||
})
|
||||
}
|
||||
|
||||
pub(crate) unsafe fn hook_callback(&self) -> Option<HookCallback> {
|
||||
let extra = mlua_expect!(self.extra.lock(), "extra is poisoned");
|
||||
extra.hook_callback.clone()
|
||||
(*self.extra).hook_callback.clone()
|
||||
}
|
||||
}
|
||||
|
||||
|
@ -2374,7 +2357,7 @@ impl<'lua, T: AsRef<[u8]> + ?Sized> AsChunk<'lua> for T {
|
|||
// It requires `get_extra` function to return `ExtraData` value.
|
||||
unsafe fn callback_error_ext<E, F, R>(state: *mut ffi::lua_State, get_extra: E, f: F) -> R
|
||||
where
|
||||
E: Fn(*mut ffi::lua_State) -> Arc<Mutex<ExtraData>>,
|
||||
E: Fn(*mut ffi::lua_State) -> *mut ExtraData,
|
||||
F: FnOnce(c_int) -> Result<R>,
|
||||
{
|
||||
let upvalue_idx = ffi::lua_upvalueindex(1);
|
||||
|
@ -2399,9 +2382,8 @@ where
|
|||
|
||||
// We cannot shadow Rust errors with Lua ones, so we need to obtain pre-allocated memory
|
||||
// to store a wrapped error or panic *before* we proceed.
|
||||
let extra = get_extra(state);
|
||||
let extra = &mut *get_extra(state);
|
||||
let prealloc_err = {
|
||||
let mut extra = mlua_expect!(extra.lock(), "extra is poisoned");
|
||||
match extra.prealloc_wrapped_errors.pop() {
|
||||
Some(index) => PreallocatedError::Cached(index),
|
||||
None => {
|
||||
|
@ -2413,9 +2395,7 @@ where
|
|||
}
|
||||
};
|
||||
|
||||
let get_prealloc_err = || {
|
||||
let mut extra = mlua_expect!(extra.lock(), "extra is poisoned");
|
||||
match prealloc_err {
|
||||
let mut get_prealloc_err = || match prealloc_err {
|
||||
PreallocatedError::New(ud) => {
|
||||
ffi::lua_settop(state, 1);
|
||||
ud
|
||||
|
@ -2429,18 +2409,16 @@ where
|
|||
extra.ref_free.push(index);
|
||||
ffi::lua_touserdata(state, -1)
|
||||
}
|
||||
}
|
||||
};
|
||||
|
||||
match catch_unwind(AssertUnwindSafe(|| f(nargs))) {
|
||||
Ok(Ok(r)) => {
|
||||
// Return unused WrappedError+Panic to the cache
|
||||
let mut extra = mlua_expect!(extra.lock(), "extra is poisoned");
|
||||
match prealloc_err {
|
||||
PreallocatedError::New(_) if extra.prealloc_wrapped_errors.len() < 16 => {
|
||||
ffi::lua_rotate(state, 1, -1);
|
||||
ffi::lua_xmove(state, extra.ref_thread, 1);
|
||||
let (index, mut extra) = ref_stack_pop(extra);
|
||||
let index = ref_stack_pop(extra);
|
||||
extra.prealloc_wrapped_errors.push(index);
|
||||
}
|
||||
PreallocatedError::New(_) => {
|
||||
|
@ -2609,10 +2587,10 @@ unsafe fn load_from_std_lib(state: *mut ffi::lua_State, libs: StdLib) -> Result<
|
|||
}
|
||||
|
||||
// We move `extra` (`MutexGuard`) here to correctly drop it if panic
|
||||
unsafe fn ref_stack_pop(mut extra: MutexGuard<ExtraData>) -> (c_int, MutexGuard<ExtraData>) {
|
||||
unsafe fn ref_stack_pop(extra: &mut ExtraData) -> c_int {
|
||||
if let Some(free) = extra.ref_free.pop() {
|
||||
ffi::lua_replace(extra.ref_thread, free);
|
||||
return (free, extra);
|
||||
return free;
|
||||
}
|
||||
|
||||
// Try to grow max stack size
|
||||
|
@ -2626,7 +2604,6 @@ unsafe fn ref_stack_pop(mut extra: MutexGuard<ExtraData>) -> (c_int, MutexGuard<
|
|||
// during unwinding.
|
||||
ffi::lua_pop(extra.ref_thread, 1);
|
||||
let top = extra.ref_stack_top;
|
||||
drop(extra);
|
||||
// It is a user error to create enough references to exhaust the Lua max stack size for
|
||||
// the ref thread.
|
||||
panic!(
|
||||
|
@ -2637,7 +2614,7 @@ unsafe fn ref_stack_pop(mut extra: MutexGuard<ExtraData>) -> (c_int, MutexGuard<
|
|||
extra.ref_stack_size += inc;
|
||||
}
|
||||
extra.ref_stack_top += 1;
|
||||
(extra.ref_stack_top, extra)
|
||||
extra.ref_stack_top
|
||||
}
|
||||
|
||||
struct StaticUserDataMethods<'lua, T: 'static + UserData> {
|
||||
|
|
Loading…
Reference in New Issue