//! MLua compatibility layer for Lua 5.1/JIT //! //! Based on github.com/keplerproject/lua-compat-5.3 use std::os::raw::{c_char, c_int, c_void}; use std::{mem, ptr}; use super::lauxlib::*; use super::lua::*; #[inline(always)] unsafe fn compat53_reverse(L: *mut lua_State, mut a: c_int, mut b: c_int) { while a < b { lua_pushvalue(L, a); lua_pushvalue(L, b); lua_replace(L, a); lua_replace(L, b); a += 1; b -= 1; } } const COMPAT53_LEVELS1: c_int = 12; // size of the first part of the stack const COMPAT53_LEVELS2: c_int = 10; // size of the second part of the stack unsafe fn compat53_countlevels(L: *mut lua_State) -> c_int { let mut ar: lua_Debug = mem::zeroed(); let (mut li, mut le) = (1, 1); // find an upper bound while lua_getstack(L, le, &mut ar) != 0 { li = le; le *= 2; } // do a binary search while li < le { let m = (li + le) / 2; if lua_getstack(L, m, &mut ar) != 0 { li = m + 1 } else { le = m; } } le - 1 } unsafe fn compat53_checkmode( L: *mut lua_State, mode: *const c_char, modename: *const c_char, err: c_int, ) -> c_int { unsafe fn strchr(s: *const c_char, c: c_char) -> *const c_char { let mut st = s; while *st != 0 && *st != c { st = st.offset(1); } if *st == c { st } else { ptr::null() } } if !mode.is_null() && strchr(mode, *modename).is_null() { lua_pushfstring( L, cstr!("attempt to load a %s chunk (mode is '%s')"), modename, mode, ); return err; } LUA_OK } unsafe fn compat53_findfield(L: *mut lua_State, objidx: c_int, level: c_int) -> c_int { if level == 0 || lua_istable(L, -1) == 0 { return 0; // not found } lua_pushnil(L); // start 'next' loop while lua_next(L, -2) != 0 { // for each pair in table if lua_type(L, -2) == LUA_TSTRING { // ignore non-string keys if lua_rawequal(L, objidx, -1) != 0 { // found object? lua_pop(L, 1); // remove value (but keep name) return 1; } else if compat53_findfield(L, objidx, level - 1) != 0 { // try recursively lua_remove(L, -2); // remove table (but keep name) lua_pushliteral(L, "."); lua_insert(L, -2); // place '.' between the two names lua_concat(L, 3); return 1; } } lua_pop(L, 1); // remove value } 0 // not found } unsafe fn compat53_pushglobalfuncname(L: *mut lua_State, ar: *mut lua_Debug) -> c_int { let top = lua_gettop(L); lua_getinfo(L, cstr!("f"), ar); // push function lua_pushvalue(L, LUA_GLOBALSINDEX); if compat53_findfield(L, top + 1, 2) != 0 { lua_copy(L, -1, top + 1); // move name to proper place lua_pop(L, 2); // remove pushed values 1 } else { lua_settop(L, top); // remove function and global table 0 } } unsafe fn compat53_pushfuncname(L: *mut lua_State, ar: *mut lua_Debug) { if *(*ar).namewhat != b'\0' as c_char { // is there a name? lua_pushfstring(L, cstr!("function '%s'"), (*ar).name); } else if *(*ar).what == b'm' as c_char { // main? lua_pushliteral(L, "main chunk"); } else if *(*ar).what == b'C' as c_char { if compat53_pushglobalfuncname(L, ar) != 0 { lua_pushfstring(L, cstr!("function '%s'"), lua_tostring(L, -1)); lua_remove(L, -2); // remove name } else { lua_pushliteral(L, "?"); } } else { lua_pushfstring( L, cstr!("function <%s:%d>"), (*ar).short_src.as_ptr(), (*ar).linedefined, ); } } // // lua ported functions // #[inline(always)] pub unsafe fn lua_absindex(L: *mut lua_State, mut idx: c_int) -> c_int { if idx < 0 && idx > LUA_REGISTRYINDEX { idx += lua_gettop(L) + 1; } idx } pub unsafe fn lua_rotate(L: *mut lua_State, mut idx: c_int, mut n: c_int) { idx = lua_absindex(L, idx); if n > 0 { // Faster version for _ in 0..n { lua_insert(L, idx); } return; } let n_elems = lua_gettop(L) - idx + 1; if n < 0 { n += n_elems; } if n > 0 && n < n_elems { luaL_checkstack(L, 2, cstr!("not enough stack slots available")); n = n_elems - n; compat53_reverse(L, idx, idx + n - 1); compat53_reverse(L, idx + n, idx + n_elems - 1); compat53_reverse(L, idx, idx + n_elems - 1); } } #[inline(always)] pub unsafe fn lua_copy(L: *mut lua_State, fromidx: c_int, toidx: c_int) { let abs_to = lua_absindex(L, toidx); luaL_checkstack(L, 1, cstr!("not enough stack slots available")); lua_pushvalue(L, fromidx); lua_replace(L, abs_to); } #[inline(always)] pub unsafe fn lua_isinteger(L: *mut lua_State, idx: c_int) -> c_int { if lua_type(L, idx) == LUA_TNUMBER { let n = lua_tonumber(L, idx); let i = lua_tointeger(L, idx); if (n - i as lua_Number).abs() < lua_Number::EPSILON { return 1; } } 0 } #[inline(always)] pub unsafe fn lua_tointeger(L: *mut lua_State, i: c_int) -> lua_Integer { lua_tointegerx(L, i, ptr::null_mut()) } #[inline(always)] pub unsafe fn lua_tonumberx(L: *mut lua_State, i: c_int, isnum: *mut c_int) -> lua_Number { let n = lua_tonumber(L, i); if !isnum.is_null() { *isnum = (n != 0.0 || lua_isnumber(L, i) != 0) as c_int; } n } #[inline(always)] pub unsafe fn lua_tointegerx(L: *mut lua_State, i: c_int, isnum: *mut c_int) -> lua_Integer { let mut ok = 0; let n = lua_tonumberx(L, i, &mut ok); let n_int = n as lua_Integer; if ok != 0 && (n - n_int as lua_Number).abs() < lua_Number::EPSILON { if !isnum.is_null() { *isnum = 1; } return n_int; } if !isnum.is_null() { *isnum = 0; } 0 } #[inline(always)] pub unsafe fn lua_rawlen(L: *mut lua_State, idx: c_int) -> usize { lua_objlen(L, idx) } #[inline(always)] pub unsafe fn lua_pushlstring(L: *mut lua_State, s: *const c_char, l: usize) -> *const c_char { if l == 0 { lua_pushlstring_(L, cstr!(""), 0); } else { lua_pushlstring_(L, s, l); } lua_tostring(L, -1) } #[inline(always)] pub unsafe fn lua_pushstring(L: *mut lua_State, s: *const c_char) -> *const c_char { lua_pushstring_(L, s); lua_tostring(L, -1) } #[inline(always)] pub unsafe fn lua_getglobal(L: *mut lua_State, var: *const c_char) -> c_int { lua_getglobal_(L, var); lua_type(L, -1) } #[inline(always)] pub unsafe fn lua_gettable(L: *mut lua_State, idx: c_int) -> c_int { lua_gettable_(L, idx); lua_type(L, -1) } #[inline(always)] pub unsafe fn lua_getfield(L: *mut lua_State, idx: c_int, k: *const c_char) -> c_int { lua_getfield_(L, idx, k); lua_type(L, -1) } #[inline(always)] pub unsafe fn lua_geti(L: *mut lua_State, mut idx: c_int, n: lua_Integer) -> c_int { idx = lua_absindex(L, idx); lua_pushinteger(L, n); lua_gettable(L, idx) } #[inline(always)] pub unsafe fn lua_rawget(L: *mut lua_State, idx: c_int) -> c_int { lua_rawget_(L, idx); lua_type(L, -1) } #[inline(always)] pub unsafe fn lua_rawgeti(L: *mut lua_State, idx: c_int, n: lua_Integer) -> c_int { let n = n.try_into().expect("cannot convert index to lua_Integer"); lua_rawgeti_(L, idx, n); lua_type(L, -1) } #[inline(always)] pub unsafe fn lua_rawgetp(L: *mut lua_State, idx: c_int, p: *const c_void) -> c_int { let abs_i = lua_absindex(L, idx); lua_pushlightuserdata(L, p as *mut c_void); lua_rawget(L, abs_i) } #[inline(always)] pub unsafe fn lua_getuservalue(L: *mut lua_State, idx: c_int) -> c_int { lua_getfenv(L, idx); lua_type(L, -1) } #[inline(always)] pub unsafe fn lua_seti(L: *mut lua_State, mut idx: c_int, n: lua_Integer) { luaL_checkstack(L, 1, cstr!("not enough stack slots available")); idx = lua_absindex(L, idx); lua_pushinteger(L, n); lua_insert(L, -2); lua_settable(L, idx); } #[inline(always)] pub unsafe fn lua_rawseti(L: *mut lua_State, idx: c_int, n: lua_Integer) { let n = n.try_into().expect("cannot convert index from lua_Integer"); lua_rawseti_(L, idx, n) } #[inline(always)] pub unsafe fn lua_rawsetp(L: *mut lua_State, idx: c_int, p: *const c_void) { let abs_i = lua_absindex(L, idx); luaL_checkstack(L, 1, cstr!("not enough stack slots available")); lua_pushlightuserdata(L, p as *mut c_void); lua_insert(L, -2); lua_rawset(L, abs_i); } #[inline(always)] pub unsafe fn lua_setuservalue(L: *mut lua_State, idx: c_int) { luaL_checktype(L, -1, LUA_TTABLE); lua_setfenv(L, idx); } #[inline(always)] pub unsafe fn lua_dump(L: *mut lua_State, writer: lua_Writer, data: *mut c_void, _strip: c_int) -> c_int { lua_dump_(L, writer, data) } #[inline(always)] pub unsafe fn lua_len(L: *mut lua_State, idx: c_int) { match lua_type(L, idx) { LUA_TSTRING => { lua_pushnumber(L, lua_objlen(L, idx) as lua_Number); } LUA_TTABLE => { if luaL_callmeta(L, idx, cstr!("__len")) == 0 { lua_pushnumber(L, lua_objlen(L, idx) as lua_Number); } } LUA_TUSERDATA if luaL_callmeta(L, idx, cstr!("__len")) != 0 => {} _ => { luaL_error( L, cstr!("attempt to get length of a %s value"), lua_typename(L, lua_type(L, idx)), ); } } } #[inline(always)] pub unsafe fn lua_pushglobaltable(L: *mut lua_State) { lua_pushvalue(L, LUA_GLOBALSINDEX); } #[inline(always)] pub unsafe fn lua_resume(L: *mut lua_State, _from: *mut lua_State, narg: c_int, nres: *mut c_int) -> c_int { let ret = lua_resume_(L, narg); if (ret == LUA_OK || ret == LUA_YIELD) && !(nres.is_null()) { *nres = lua_gettop(L); } ret } // // lauxlib ported functions // #[inline(always)] pub unsafe fn luaL_checkstack(L: *mut lua_State, sz: c_int, msg: *const c_char) { if lua_checkstack(L, sz + LUA_MINSTACK) == 0 { if !msg.is_null() { luaL_error(L, cstr!("stack overflow (%s)"), msg); } else { lua_pushliteral(L, "stack overflow"); lua_error(L); } } } #[inline(always)] pub unsafe fn luaL_getmetafield(L: *mut lua_State, obj: c_int, e: *const c_char) -> c_int { if luaL_getmetafield_(L, obj, e) != 0 { lua_type(L, -1) } else { LUA_TNIL } } #[inline(always)] pub unsafe fn luaL_newmetatable(L: *mut lua_State, tname: *const c_char) -> c_int { if luaL_newmetatable_(L, tname) != 0 { lua_pushstring_(L, tname); lua_setfield(L, -2, cstr!("__name")); 1 } else { 0 } } pub unsafe fn luaL_loadbufferenv( L: *mut lua_State, data: *const c_char, size: usize, name: *const c_char, mode: *const c_char, mut env: c_int, ) -> c_int { if env != 0 { env = lua_absindex(L, env); } let status = luaL_loadbufferx(L, data, size, name, mode); if status == LUA_OK && env != 0 { lua_pushvalue(L, env); lua_setfenv(L, -2); } status } #[inline(always)] pub unsafe fn luaL_loadbufferx( L: *mut lua_State, buff: *const c_char, sz: usize, name: *const c_char, mode: *const c_char, ) -> c_int { let status = if sz > 0 && *buff as u8 == LUA_SIGNATURE[0] { compat53_checkmode(L, mode, cstr!("binary"), LUA_ERRSYNTAX) } else { compat53_checkmode(L, mode, cstr!("text"), LUA_ERRSYNTAX) }; if status != LUA_OK { return status; } luaL_loadbuffer(L, buff, sz, name) } #[inline(always)] pub unsafe fn luaL_len(L: *mut lua_State, idx: c_int) -> lua_Integer { let mut isnum = 0; luaL_checkstack(L, 1, cstr!("not enough stack slots available")); lua_len(L, idx); let res = lua_tointegerx(L, -1, &mut isnum); lua_pop(L, 1); if isnum == 0 { luaL_error(L, cstr!("object length is not an integer")); } res } pub unsafe fn luaL_traceback(L: *mut lua_State, L1: *mut lua_State, msg: *const c_char, mut level: c_int) { let mut ar: lua_Debug = mem::zeroed(); let top = lua_gettop(L); let numlevels = compat53_countlevels(L1); let mark = if numlevels > COMPAT53_LEVELS1 + COMPAT53_LEVELS2 { COMPAT53_LEVELS1 } else { 0 }; if !msg.is_null() { lua_pushfstring(L, cstr!("%s\n"), msg); } lua_pushliteral(L, "stack traceback:"); while lua_getstack(L1, level, &mut ar) != 0 { level += 1; if level == mark { // too many levels? lua_pushliteral(L, "\n\t..."); // add a '...' level = numlevels - COMPAT53_LEVELS2; // and skip to last ones } else { lua_getinfo(L1, cstr!("Slnt"), &mut ar); lua_pushfstring(L, cstr!("\n\t%s:"), ar.short_src.as_ptr()); if ar.currentline > 0 { lua_pushfstring(L, cstr!("%d:"), ar.currentline); } lua_pushliteral(L, " in "); compat53_pushfuncname(L, &mut ar); lua_concat(L, lua_gettop(L) - top); } } lua_concat(L, lua_gettop(L) - top); } pub unsafe fn luaL_tolstring(L: *mut lua_State, mut idx: c_int, len: *mut usize) -> *const c_char { idx = lua_absindex(L, idx); if luaL_callmeta(L, idx, cstr!("__tostring")) == 0 { match lua_type(L, idx) { LUA_TNIL => { lua_pushliteral(L, "nil"); } LUA_TSTRING | LUA_TNUMBER => { lua_pushvalue(L, idx); } LUA_TBOOLEAN => { if lua_toboolean(L, idx) == 0 { lua_pushliteral(L, "false"); } else { lua_pushliteral(L, "true"); } } t => { let tt = luaL_getmetafield(L, idx, cstr!("__name")); let name = if tt == LUA_TSTRING { lua_tostring(L, -1) } else { lua_typename(L, t) }; lua_pushfstring(L, cstr!("%s: %p"), name, lua_topointer(L, idx)); if tt != LUA_TNIL { lua_replace(L, -2); // remove '__name' } } }; } else if lua_isstring(L, -1) == 0 { luaL_error(L, cstr!("'__tostring' must return a string")); } lua_tolstring(L, -1, len) } #[inline(always)] pub unsafe fn luaL_setmetatable(L: *mut lua_State, tname: *const c_char) { luaL_checkstack(L, 1, cstr!("not enough stack slots available")); luaL_getmetatable(L, tname); lua_setmetatable(L, -2); } pub unsafe fn luaL_getsubtable(L: *mut lua_State, idx: c_int, fname: *const c_char) -> c_int { let abs_i = lua_absindex(L, idx); luaL_checkstack(L, 3, cstr!("not enough stack slots available")); lua_pushstring_(L, fname); if lua_gettable(L, abs_i) == LUA_TTABLE { return 1; } lua_pop(L, 1); lua_newtable(L); lua_pushstring_(L, fname); lua_pushvalue(L, -2); lua_settable(L, abs_i); 0 } pub unsafe fn luaL_requiref(L: *mut lua_State, modname: *const c_char, openf: lua_CFunction, glb: c_int) { luaL_checkstack(L, 3, cstr!("not enough stack slots available")); luaL_getsubtable(L, LUA_REGISTRYINDEX, cstr!("_LOADED")); if lua_getfield(L, -1, modname) == LUA_TNIL { lua_pop(L, 1); lua_pushcfunction(L, openf); lua_pushstring(L, modname); #[cfg(feature = "lua51")] { lua_call(L, 1, 1); lua_pushvalue(L, -1); lua_setfield(L, -3, modname); } #[cfg(feature = "luajit")] { lua_call(L, 1, 0); lua_getfield(L, -1, modname); } } if glb != 0 { lua_pushvalue(L, -1); lua_setglobal(L, modname); } else { lua_pushnil(L); lua_setglobal(L, modname); } lua_replace(L, -2); }