luau-vm 0.732.0

Pure-Rust Luau virtual machine, garbage collector, and standard libraries
Documentation
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mod closure;
mod proto;
mod upvalue;

pub use self::closure::{Closure, RawClosure, RawLuaClosure, RawNativeClosure};
pub use self::proto::{
    FeedbackVectorSlot, FeedbackVectorSlotCallTarget, FeedbackVectorSlotData, LocVar, Proto,
    RawLocVar, RawProto,
};
pub use self::upvalue::{RawUpVal, RawUpValData, RawUpValOpen, UpVal, UpValOpen};

use core::ptr;

use luau_common::flags;

use crate::Table;
use crate::VmErrorResult;
use crate::gc::GcBarrier;
use crate::gc::GcObject;
use crate::handle::RawHandle;
use crate::handle::sealed::Sealed;
use crate::memory::{LuaPage, MemoryRuntime};
use crate::state::ThreadState;
use crate::thread::LUA_MIN_STACK;
use crate::thread::Thread;
use crate::types::{LUA_TFUNCTION, LUA_TPROTO, LUA_TUPVALUE};
use crate::value::TValue;

/// Unstable function-object allocation and lifetime capability.
///
/// # Safety
///
/// Function, upvalue, page, and stack handles must be live and belong to this
/// thread's VM. Counts and sizes must match their layouts, and callers must
/// preserve rooting, open-upvalue ordering, and GC barriers.
#[allow(
    clippy::missing_safety_doc,
    reason = "all methods share the capability-level safety contract"
)]
pub trait FunctionRuntime: Sealed {
    /// `luaF_findupval`
    unsafe fn find_upvalue(&self, level: TValue) -> VmErrorResult<UpVal>;

    /// `luaF_close`
    unsafe fn close(&self, level: TValue);

    /// `luaF_closeupval`
    unsafe fn close_upvalue(&self, upvalue: UpVal, dead: bool);

    /// `luaF_recordhit`
    unsafe fn record_hit(&self, caller: Closure, target: Closure, slot_id: u32) -> bool;

    /// `luaF_newproto`
    unsafe fn new_proto(&self) -> VmErrorResult<Proto>;

    /// `luaF_newLclosure`
    unsafe fn new_lua_closure(
        &self,
        element_count: i32,
        environment: Option<Table>,
        proto: Proto,
    ) -> VmErrorResult<Closure>;

    /// `luaF_newCclosure`
    unsafe fn new_native_closure(
        &self,
        element_count: i32,
        environment: Option<Table>,
    ) -> VmErrorResult<Closure>;

    /// `luaF_freeproto`
    unsafe fn free_proto(&self, proto: Proto, page: LuaPage);

    /// `luaF_freeclosure`
    unsafe fn free_closure(&self, closure: Closure, page: LuaPage);

    /// `luaF_freeupval`
    unsafe fn free_upvalue(&self, upvalue: UpVal, page: LuaPage);
}

impl FunctionRuntime for Thread {
    /// `luaF_findupval`
    unsafe fn find_upvalue(&self, level: TValue) -> VmErrorResult<UpVal> {
        unsafe {
            let global = self.global();
            let mut previous_upvalue = None;
            let mut current_upvalue = self.open_upvalue();

            while let Some(open_upvalue) = current_upvalue {
                debug_assert!(!global.is_dead(open_upvalue.into()));
                debug_assert!(open_upvalue.is_open());

                if open_upvalue.value_ptr() == level.as_ptr() {
                    return Ok(open_upvalue);
                }

                if open_upvalue.value_ptr() < level.as_ptr() {
                    break;
                }

                previous_upvalue = current_upvalue;
                current_upvalue = open_upvalue.open_data().thread_next();
            }

            debug_assert!(self.as_ptr().as_ref().unwrap_unchecked().is_active);

            let upvalue = self.new_gco::<UpVal>(
                UpVal::allocation_size(),
                self.as_ptr().as_ref().unwrap_unchecked().active_memcat,
            )?;
            GcObject::from(upvalue).init_header(self, LUA_TUPVALUE as u8);

            let uv_head = global.uv_head();
            let uv_head_next = uv_head.open_data().next();

            upvalue.as_ptr().as_mut().unwrap_unchecked().marked_open = 0;
            upvalue.set_value(level);

            let open = upvalue.open_data();
            open.set_thread_next(current_upvalue);
            if let Some(previous_upvalue) = previous_upvalue {
                previous_upvalue.open_data().set_thread_next(Some(upvalue));
            } else {
                self.set_open_upvalue(Some(upvalue));
            }
            open.set_prev(uv_head);
            open.set_next(uv_head_next);

            uv_head_next.open_data().set_prev(upvalue);
            uv_head.open_data().set_next(upvalue);

            debug_assert!(uv_head_next.open_data().prev() == upvalue);
            debug_assert!(uv_head.open_data().next() == upvalue);

            Ok(upvalue)
        }
    }

    /// `luaF_close`
    unsafe fn close(&self, level: TValue) {
        unsafe {
            let mut open_upvalue = self.open_upvalue();
            while let Some(current_upvalue) = open_upvalue {
                if current_upvalue.value_ptr() < level.as_ptr() {
                    break;
                }

                self.set_open_upvalue(current_upvalue.open_data().thread_next());
                open_upvalue = self.open_upvalue();

                self.close_upvalue(current_upvalue, false);
            }
        }
    }

    /// `luaF_closeupval`
    unsafe fn close_upvalue(&self, upvalue: UpVal, dead: bool) {
        unsafe {
            let open = upvalue.open_data();
            let next = open.next();
            let prev = open.prev();

            debug_assert!(next.open_data().prev() == upvalue);
            debug_assert!(prev.open_data().next() == upvalue);

            next.open_data().set_prev(prev);
            prev.open_data().set_next(next);

            if dead {
                return;
            }

            upvalue.close();
            debug_assert!(core::ptr::eq(
                upvalue.value_ptr().cast_const(),
                upvalue.closed_value().as_ptr().cast_const(),
            ));
            self.upvalue_closed(upvalue);
        }
    }

    /// `luaF_newproto`
    unsafe fn new_proto(&self) -> VmErrorResult<Proto> {
        unsafe {
            let proto = self.new_gco::<Proto>(
                size_of::<RawProto>(),
                self.as_ptr().as_ref().unwrap_unchecked().active_memcat,
            )?;
            GcObject::from(proto).init_header(self, LUA_TPROTO as u8);
            let proto_ref = proto.as_ptr().as_mut().unwrap_unchecked();
            proto_ref.n_ups = 0;
            proto_ref.num_params = 0;
            proto_ref.is_vararg = 0;
            proto_ref.max_stack_size = 0;
            proto_ref.flags = 0;
            proto_ref.k = ptr::null_mut();
            proto_ref.code = ptr::null_mut();
            proto_ref.p = ptr::null_mut();
            proto_ref.code_entry = ptr::null();
            proto_ref.exec_data = ptr::null_mut();
            proto_ref.exec_target = 0;
            proto_ref.line_info = ptr::null_mut();
            proto_ref.abs_line_info = ptr::null_mut();
            proto_ref.loc_vars = ptr::null_mut();
            proto_ref.upvalues = ptr::null_mut();
            proto_ref.source = ptr::null_mut();
            proto_ref.debug_name = ptr::null_mut();
            proto_ref.debug_insn = ptr::null_mut();
            proto_ref.type_info = ptr::null_mut();
            proto_ref.userdata = ptr::null_mut();
            proto_ref.gc_list = ptr::null_mut();
            proto_ref.size_code = 0;
            proto_ref.size_p = 0;
            proto_ref.size_loc_vars = 0;
            proto_ref.size_upvalues = 0;
            proto_ref.size_k = 0;
            proto_ref.size_line_info = 0;
            proto_ref.line_gap_log2 = 0;
            proto_ref.line_defined = 0;
            proto_ref.bytecode_id = 0;
            proto_ref.size_type_info = 0;
            proto_ref.feedback_vec = ptr::null_mut();
            proto_ref.feedback_vec_size = 0;
            proto_ref.fun_id = 0;
            proto_ref.cost = 0;

            Ok(proto)
        }
    }

    /// `luaF_newLclosure`
    unsafe fn new_lua_closure(
        &self,
        element_count: i32,
        environment: Option<Table>,
        proto: Proto,
    ) -> VmErrorResult<Closure> {
        unsafe {
            let closure = self.new_gco::<Closure>(
                Closure::size_lua_closure(element_count as usize),
                self.as_ptr().as_ref().unwrap_unchecked().active_memcat,
            )?;
            GcObject::from(closure).init_header(self, LUA_TFUNCTION as u8);
            let closure_ref = closure.as_ptr().as_mut().unwrap_unchecked();
            closure_ref.is_native = 0;
            closure_ref.n_upvalues = element_count as u8;
            closure_ref.stack_size = proto.as_ptr().as_ref().unwrap_unchecked().max_stack_size;
            closure_ref.preload = 0;
            closure_ref.gc_list = ptr::null_mut();
            closure_ref.env = environment.map_or(ptr::null_mut(), |table| table.as_ptr());

            closure.set_lua_proto(proto);

            for index in 0..element_count as usize {
                closure.lua_upvalue_ref(index).set_nil();
            }

            Ok(closure)
        }
    }

    /// `luaF_newCclosure`
    unsafe fn new_native_closure(
        &self,
        element_count: i32,
        environment: Option<Table>,
    ) -> VmErrorResult<Closure> {
        unsafe {
            let closure = self.new_gco::<Closure>(
                Closure::size_native_closure(element_count as usize),
                self.as_ptr().as_ref().unwrap_unchecked().active_memcat,
            )?;
            GcObject::from(closure).init_header(self, LUA_TFUNCTION as u8);
            let closure_ref = closure.as_ptr().as_mut().unwrap_unchecked();
            closure_ref.is_native = 1;
            closure_ref.n_upvalues = element_count as u8;
            closure_ref.stack_size = LUA_MIN_STACK as u8;
            closure_ref.preload = 0;
            closure_ref.gc_list = ptr::null_mut();
            closure_ref.env = environment.map_or(ptr::null_mut(), |table| table.as_ptr());

            closure.set_native_data(RawNativeClosure {
                function: None,
                continuation: None,
                debug_name_deprecated: None,
                debug_name: ptr::null_mut(),
            });

            for index in 0..element_count as usize {
                closure.native_upvalue(index).set_nil();
            }

            Ok(closure)
        }
    }

    /// `luaF_freeproto`
    unsafe fn free_proto(&self, proto: Proto, page: LuaPage) {
        unsafe {
            let proto_ref = proto.as_ptr().as_ref().unwrap_unchecked();
            let memcat = proto_ref.memcat;
            let code = proto_ref.code;
            let size_code = proto_ref.size_code as usize;
            let p = proto_ref.p;
            let size_p = proto_ref.size_p as usize;
            let k = proto_ref.k;
            let size_k = proto_ref.size_k as usize;
            let line_info = proto_ref.line_info;
            let size_line_info = proto_ref.size_line_info as usize;
            let loc_vars = proto_ref.loc_vars;
            let size_loc_vars = proto_ref.size_loc_vars as usize;
            let upvalues = proto_ref.upvalues;
            let size_upvalues = proto_ref.size_upvalues as usize;
            let debug_insn = proto_ref.debug_insn;
            let exec_data = proto_ref.exec_data;
            let type_info = proto_ref.type_info;
            let size_type_info = proto_ref.size_type_info as usize;
            let feedback_vec = proto_ref.feedback_vec;
            let feedback_vec_size = proto_ref.feedback_vec_size as usize;

            if !code.is_null() {
                self.free_array(code, size_code, memcat);
            }
            if !p.is_null() {
                self.free_array(p, size_p, memcat);
            }
            if !k.is_null() {
                self.free_array(k, size_k, memcat);
            }
            if !line_info.is_null() {
                self.free_array(line_info, size_line_info, memcat);
            }
            if !loc_vars.is_null() {
                self.free_array(loc_vars, size_loc_vars, memcat);
            }
            if !upvalues.is_null() {
                self.free_array(upvalues, size_upvalues, memcat);
            }
            if !debug_insn.is_null() {
                self.free_array(debug_insn, size_code, memcat);
            }

            if !exec_data.is_null()
                && let Some(destroy) = self.global().execution_destroy()
            {
                destroy(self, proto);
            }

            if !type_info.is_null() {
                self.free_array(type_info, size_type_info, memcat);
            }
            if !feedback_vec.is_null() {
                self.free_array(feedback_vec, feedback_vec_size, memcat);
            }

            self.free_gco(proto.into(), size_of::<RawProto>(), memcat, page);
        }
    }

    /// `luaF_freeclosure`
    unsafe fn free_closure(&self, closure: Closure, page: LuaPage) {
        unsafe {
            self.free_gco(
                closure.into(),
                closure.size(),
                closure.as_ptr().as_ref().unwrap_unchecked().memcat,
                page,
            );
        }
    }

    /// `luaF_freeupval`
    unsafe fn free_upvalue(&self, upvalue: UpVal, page: LuaPage) {
        unsafe {
            self.free_gco(
                upvalue.into(),
                UpVal::allocation_size(),
                upvalue.as_ptr().as_ref().unwrap_unchecked().memcat,
                page,
            )
        };
    }

    /// `luaF_recordhit`
    unsafe fn record_hit(&self, caller: Closure, target: Closure, slot_id: u32) -> bool {
        unsafe {
            let Some(inline_function) = self.global().execution_inline_function() else {
                return false;
            };

            debug_assert!(caller.is_lua());
            if target.is_native() {
                return false;
            }

            let caller_proto = caller.proto().unwrap_unchecked();
            let target_proto = target.proto().unwrap_unchecked();

            debug_assert!(
                slot_id
                    < caller_proto
                        .as_ptr()
                        .as_ref()
                        .unwrap_unchecked()
                        .feedback_vec_size
            );
            let slot = &mut *caller_proto
                .as_ptr()
                .as_ref()
                .unwrap_unchecked()
                .feedback_vec
                .add(slot_id as usize);
            let call_target = &mut slot.data.call_target;

            if call_target.proto == 0 {
                call_target.proto = target_proto.as_ptr().as_ref().unwrap_unchecked().fun_id;
            }

            if call_target.proto != target_proto.as_ptr().as_ref().unwrap_unchecked().fun_id {
                return false;
            }

            call_target.hits += 1;

            let inline_hits_threshold = flags::LuauInlineHitsThreshold.get();
            if call_target.hits as i32 >= inline_hits_threshold {
                let _ = inline_function(self, caller, target, call_target.pc);
                return false;
            }

            true
        }
    }
}