private static void F_Load(ref LoadParameter param) { var L = param.L; LuaProto proto; var c = param.LoadInfo.PeekByte(); if (c == LuaConf.LUA_SIGNATURE[0]) { L.CheckMode(param.Mode, "binary"); proto = Undump.LoadBinary(L, param.LoadInfo, param.Name); } else { L.CheckMode(param.Mode, "text"); proto = Parser.Parse(L, param.LoadInfo, param.Name); } var cl = new LuaLClosureValue(proto); Utl.Assert(cl.Upvals.Length == cl.Proto.Upvalues.Count); L.Top.V.SetClLValue(cl); L.IncrTop(); }
private void G_TypeError(StkId o, string op) { CallInfo ci = CI; string name = null; string kind = null; string t = ObjTypeName(ref o.V); if (ci.IsLua) { kind = GetUpvalueName(ci, o, out name); if (kind != null && IsInStack(ci, o)) { LuaLClosureValue lcl = Stack[ci.FuncIndex].V.ClLValue(); kind = GetObjName(lcl.Proto, ci.CurrentPc, (o.Index - ci.BaseIndex), out name); } } if (kind != null) { G_RunError("attempt to {0} {1} '{2}' (a {3} value)", op, kind, name, t); } else { G_RunError("attempt to {0} a {1} value", op, t); } }
internal int GetCurrentLine(CallInfo ci) { Utl.Assert(ci.IsLua); LuaLClosureValue cl = Stack[ci.FuncIndex].V.ClLValue(); return(cl.Proto.GetFuncLine(ci.CurrentPc)); }
private void FuncInfo(LuaDebug ar, StkId func) { Utl.Assert(func.V.TtIsFunction()); if (func.V.ClIsLuaClosure()) { LuaLClosureValue lcl = func.V.ClLValue(); LuaProto p = lcl.Proto; ar.Source = string.IsNullOrEmpty(p.Source) ? "=?" : p.Source; ar.LineDefined = p.LineDefined; ar.LastLineDefined = p.LastLineDefined; ar.What = (ar.LineDefined == 0) ? "main" : "Lua"; } else if (func.V.ClIsCsClosure()) { ar.Source = "=[C#]"; ar.LineDefined = -1; ar.LastLineDefined = -1; ar.What = "C#"; } else { throw new System.NotImplementedException(); } if (ar.Source.Length > LuaDef.LUA_IDSIZE) { ar.ShortSrc = ar.Source.Substring(0, LuaDef.LUA_IDSIZE); } else { ar.ShortSrc = ar.Source; } }
private void CollectValidLines(StkId func) { Utl.Assert(func.V.TtIsFunction()); if (func.V.ClIsLuaClosure()) { LuaLClosureValue lcl = func.V.ClLValue(); LuaProto p = lcl.Proto; List <int> lineinfo = p.LineInfo; LuaTable t = new LuaTable(this); Top.V.SetHValue(t); IncrTop(); TValue v = new TValue(); v.SetBValue(true); for (int i = 0; i < lineinfo.Count; ++i) { t.SetInt(lineinfo[i], ref v); } } else if (func.V.ClIsCsClosure()) { Top.V.SetNilValue(); IncrTop(); } else { throw new System.NotImplementedException(); } }
internal void SetClLValue(LuaLClosureValue v) { #if DEBUG_DUMMY_TVALUE_MODIFY CheckLock(); #endif Tt = (int)LuaType.LUA_TFUNCTION; OValue = v; }
private string GetUpvalueName(CallInfo ci, StkId o, out string name) { StkId func = Stack[ci.FuncIndex]; Utl.Assert(func.V.TtIsFunction() && func.V.ClIsLuaClosure()); LuaLClosureValue lcl = func.V.ClLValue(); for (int i = 0; i < lcl.Upvals.Length; ++i) { if (lcl.Upvals[i].V == o) { name = UpvalName(lcl.Proto, i); return("upvalue"); } } name = default(string); return(null); }
private void V_PushClosure(LuaProto p, LuaUpvalue[] encup, int stackBase, StkId ra) { var ncl = new LuaLClosureValue(p); ra.V.SetClLValue(ncl); for (int i = 0; i < p.Upvalues.Count; ++i) { // ULDebug.Log( "~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ V_PushClosure i:" + i ); // ULDebug.Log( "~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ V_PushClosure InStack:" + p.Upvalues[i].InStack ); // ULDebug.Log( "~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ V_PushClosure Index:" + p.Upvalues[i].Index ); if (p.Upvalues[i].InStack) // upvalue refers to local variable { ncl.Upvals[i] = F_FindUpval( Stack[stackBase + p.Upvalues[i].Index]); } else // get upvalue from enclosing function { ncl.Upvals[i] = encup[p.Upvalues[i].Index]; } } }
internal void SetClLValue(LuaLClosureValue v) { #if DEBUG_DUMMY_TVALUE_MODIFY CheckLock(); #endif Tt = (int)LuaType.LUA_TFUNCTION; NValue = 0.0; UInt64Value = CLOSURE_LUA; OValue = v; }
private static void F_Load(ref LoadParameter param) { var L = param.L; LuaProto proto; var c = param.LoadInfo.PeekByte(); if( c == LuaConf.LUA_SIGNATURE[0] ) { L.CheckMode( param.Mode, "binary" ); proto = Undump.LoadBinary(L, param.LoadInfo, param.Name); } else { L.CheckMode( param.Mode, "text" ); proto = Parser.Parse(L, param.LoadInfo, param.Name); } var cl = new LuaLClosureValue( proto ); Utl.Assert(cl.Upvals.Length == cl.Proto.Upvalues.Count); L.Top.V.SetClLValue(cl); L.IncrTop(); }
private void V_Execute() { ExecuteEnvironment env; CallInfo ci = CI; newframe: Utl.Assert(ci == CI); LuaLClosureValue cl = Stack[ci.FuncIndex].V.ClLValue(); env.Stack = Stack; env.K = cl.Proto.K; env.Base = ci.BaseIndex; #if DEBUG_NEW_FRAME ULDebug.Log("#### NEW FRAME #########################################################################"); ULDebug.Log("## cl:" + cl); ULDebug.Log("## Base:" + env.Base); ULDebug.Log("########################################################################################"); #endif while (true) { Instruction i = ci.SavedPc.ValueInc; env.I = i; #if DEBUG_SRC_INFO int line = 0; string src = ""; if (ci.IsLua) { line = GetCurrentLine(ci); src = GetCurrentLuaFunc(ci).Proto.Source; } #endif StkId ra = env.RA; #if DEBUG_DUMP_INS_STACK #if DEBUG_DUMP_INS_STACK_EX DumpStack(env.Base, i.ToString()); #else DumpStack(env.Base); #endif #endif #if DEBUG_INSTRUCTION ULDebug.Log(System.DateTime.Now + " [VM] ======================================================================== Instruction: " + i #if DEBUG_INSTRUCTION_WITH_STACK + "\n" + DumpStackToString(env.Base.Index) #endif ); #endif #if DEBUG_RECORD_INS InstructionHistory.Enqueue(i); if (InstructionHistory.Count > 100) { InstructionHistory.Dequeue(); } #endif switch (i.GET_OPCODE()) { case OpCode.OP_MOVE: { StkId rb = env.RB; #if DEBUG_OP_MOVE ULDebug.Log("[VM] ==== OP_MOVE rb:" + rb); ULDebug.Log("[VM] ==== OP_MOVE ra:" + ra); #endif ra.V.SetObj(ref rb.V); break; } case OpCode.OP_LOADK: { StkId rb = env.K[i.GETARG_Bx()]; ra.V.SetObj(ref rb.V); break; } case OpCode.OP_LOADKX: { Utl.Assert(ci.SavedPc.Value.GET_OPCODE() == OpCode.OP_EXTRAARG); StkId rb = env.K[ci.SavedPc.ValueInc.GETARG_Ax()]; ra.V.SetObj(ref rb.V); break; } case OpCode.OP_LOADBOOL: { ra.V.SetBValue(i.GETARG_B() != 0); if (i.GETARG_C() != 0) { ci.SavedPc.Index += 1; // skip next instruction (if C) } break; } case OpCode.OP_LOADNIL: { int b = i.GETARG_B(); int index = ra.Index; do { Stack[index++].V.SetNilValue(); } while (b-- > 0); break; } case OpCode.OP_GETUPVAL: { int b = i.GETARG_B(); ra.V.SetObj(ref cl.Upvals[b].V.V); #if DEBUG_OP_GETUPVAL // for( var j=0; j<cl.Upvals.Length; ++j) // { // ULDebug.Log("[VM] ==== GETUPVAL upval:" + cl.Upvals[j] ); // } ULDebug.Log("[VM] ==== GETUPVAL b:" + b); ULDebug.Log("[VM] ==== GETUPVAL ra:" + ra); #endif break; } case OpCode.OP_GETTABUP: { int b = i.GETARG_B(); StkId key = env.RKC; V_GetTable(cl.Upvals[b].V, key, ra); #if DEBUG_OP_GETTABUP ULDebug.Log("[VM] ==== OP_GETTABUP key:" + key); ULDebug.Log("[VM] ==== OP_GETTABUP val:" + ra); #endif env.Base = ci.BaseIndex; break; } case OpCode.OP_GETTABLE: { StkId tbl = env.RB; StkId key = env.RKC; StkId val = ra; V_GetTable(tbl, key, val); #if DEBUG_OP_GETTABLE ULDebug.Log("[VM] ==== OP_GETTABLE key:" + key.ToString()); ULDebug.Log("[VM] ==== OP_GETTABLE val:" + val.ToString()); #endif break; } case OpCode.OP_SETTABUP: { int a = i.GETARG_A(); StkId key = env.RKB; StkId val = env.RKC; V_SetTable(cl.Upvals[a].V, key, val); #if DEBUG_OP_SETTABUP ULDebug.Log("[VM] ==== OP_SETTABUP key:" + key.Value); ULDebug.Log("[VM] ==== OP_SETTABUP val:" + val.Value); #endif env.Base = ci.BaseIndex; break; } case OpCode.OP_SETUPVAL: { int b = i.GETARG_B(); LuaUpvalue uv = cl.Upvals[b]; uv.V.V.SetObj(ref ra.V); #if DEBUG_OP_SETUPVAL ULDebug.Log("[VM] ==== SETUPVAL b:" + b); ULDebug.Log("[VM] ==== SETUPVAL ra:" + ra); #endif break; } case OpCode.OP_SETTABLE: { StkId key = env.RKB; StkId val = env.RKC; #if DEBUG_OP_SETTABLE ULDebug.Log("[VM] ==== OP_SETTABLE key:" + key.ToString()); ULDebug.Log("[VM] ==== OP_SETTABLE val:" + val.ToString()); #endif V_SetTable(ra, key, val); break; } case OpCode.OP_NEWTABLE: { int b = i.GETARG_B(); int c = i.GETARG_C(); LuaTable tbl = new LuaTable(this); ra.V.SetHValue(tbl); if (b > 0 || c > 0) { tbl.Resize(b, c); } break; } case OpCode.OP_SELF: { // OP_SELF put function referenced by a table on ra // and the table on ra+1 // // RB: table // RKC: key StkId ra1 = Stack[ra.Index + 1]; StkId rb = env.RB; ra1.V.SetObj(ref rb.V); V_GetTable(rb, env.RKC, ra); env.Base = ci.BaseIndex; break; } case OpCode.OP_ADD: { StkId rkb = env.RKB; StkId rkc = env.RKC; if (rkb.V.TtIsNumber() && rkc.V.TtIsNumber()) { ra.V.SetNValue(rkb.V.NValue + rkc.V.NValue); } else { V_Arith(ra, rkb, rkc, TMS.TM_ADD); } env.Base = ci.BaseIndex; break; } case OpCode.OP_SUB: { StkId rkb = env.RKB; StkId rkc = env.RKC; if (rkb.V.TtIsNumber() && rkc.V.TtIsNumber()) { ra.V.SetNValue(rkb.V.NValue - rkc.V.NValue); } else { V_Arith(ra, rkb, rkc, TMS.TM_SUB); } env.Base = ci.BaseIndex; break; } case OpCode.OP_MUL: { StkId rkb = env.RKB; StkId rkc = env.RKC; if (rkb.V.TtIsNumber() && rkc.V.TtIsNumber()) { ra.V.SetNValue(rkb.V.NValue * rkc.V.NValue); } else { V_Arith(ra, rkb, rkc, TMS.TM_MUL); } env.Base = ci.BaseIndex; break; } case OpCode.OP_DIV: { StkId rkb = env.RKB; StkId rkc = env.RKC; if (rkb.V.TtIsNumber() && rkc.V.TtIsNumber()) { ra.V.SetNValue(rkb.V.NValue / rkc.V.NValue); } else { V_Arith(ra, rkb, rkc, TMS.TM_DIV); } env.Base = ci.BaseIndex; break; } case OpCode.OP_MOD: { StkId rkb = env.RKB; StkId rkc = env.RKC; if (rkb.V.TtIsNumber() && rkc.V.TtIsNumber()) { ra.V.SetNValue(rkb.V.NValue % rkc.V.NValue); } else { V_Arith(ra, rkb, rkc, TMS.TM_MOD); } env.Base = ci.BaseIndex; break; } case OpCode.OP_POW: { StkId rkb = env.RKB; StkId rkc = env.RKC; if (rkb.V.TtIsNumber() && rkc.V.TtIsNumber()) { ra.V.SetNValue(Math.Pow(rkb.V.NValue, rkc.V.NValue)); } else { V_Arith(ra, rkb, rkc, TMS.TM_POW); } env.Base = ci.BaseIndex; break; } case OpCode.OP_UNM: { StkId rb = env.RB; if (rb.V.TtIsNumber()) { ra.V.SetNValue(-rb.V.NValue); } else { V_Arith(ra, rb, rb, TMS.TM_UNM); env.Base = ci.BaseIndex; } break; } case OpCode.OP_NOT: { StkId rb = env.RB; ra.V.SetBValue(IsFalse(ref rb.V)); break; } case OpCode.OP_LEN: { V_ObjLen(ra, env.RB); env.Base = ci.BaseIndex; break; } case OpCode.OP_CONCAT: { int b = i.GETARG_B(); int c = i.GETARG_C(); Top = Stack[env.Base + c + 1]; V_Concat(c - b + 1); env.Base = ci.BaseIndex; ra = env.RA; // 'V_Concat' may invoke TMs and move the stack StkId rb = env.RB; ra.V.SetObj(ref rb.V); Top = Stack[ci.TopIndex]; // restore top break; } case OpCode.OP_JMP: { V_DoJump(ci, i, 0); break; } case OpCode.OP_EQ: { StkId lhs = env.RKB; StkId rhs = env.RKC; bool expectEq = i.GETARG_A() != 0; #if DEBUG_OP_EQ ULDebug.Log("[VM] ==== OP_EQ lhs:" + lhs); ULDebug.Log("[VM] ==== OP_EQ rhs:" + rhs); ULDebug.Log("[VM] ==== OP_EQ expectEq:" + expectEq); ULDebug.Log("[VM] ==== OP_EQ (lhs.V == rhs.V):" + (lhs.V == rhs.V)); #endif if ((lhs.V == rhs.V) != expectEq) { ci.SavedPc.Index += 1; // skip next jump instruction } else { V_DoNextJump(ci); } env.Base = ci.BaseIndex; break; } case OpCode.OP_LT: { bool expectCmpResult = i.GETARG_A() != 0; if (V_LessThan(env.RKB, env.RKC) != expectCmpResult) { ci.SavedPc.Index += 1; } else { V_DoNextJump(ci); } env.Base = ci.BaseIndex; break; } case OpCode.OP_LE: { bool expectCmpResult = i.GETARG_A() != 0; if (V_LessEqual(env.RKB, env.RKC) != expectCmpResult) { ci.SavedPc.Index += 1; } else { V_DoNextJump(ci); } env.Base = ci.BaseIndex; break; } case OpCode.OP_TEST: { if ((i.GETARG_C() != 0) ? IsFalse(ref ra.V) : !IsFalse(ref ra.V)) { ci.SavedPc.Index += 1; } else { V_DoNextJump(ci); } env.Base = ci.BaseIndex; break; } case OpCode.OP_TESTSET: { StkId rb = env.RB; if ((i.GETARG_C() != 0) ? IsFalse(ref rb.V) : !IsFalse(ref rb.V)) { ci.SavedPc.Index += 1; } else { ra.V.SetObj(ref rb.V); V_DoNextJump(ci); } env.Base = ci.BaseIndex; break; } case OpCode.OP_CALL: { int b = i.GETARG_B(); int nresults = i.GETARG_C() - 1; if (b != 0) { Top = Stack[ra.Index + b]; } // else previous instruction set top if (D_PreCall(ra, nresults)) // C# function? { if (nresults >= 0) { Top = Stack[ci.TopIndex]; } env.Base = ci.BaseIndex; } else // Lua function { ci = CI; ci.CallStatus |= CallStatus.CIST_REENTRY; goto newframe; } break; } case OpCode.OP_TAILCALL: { int b = i.GETARG_B(); if (b != 0) { Top = Stack[ra.Index + b]; } // else previous instruction set top Utl.Assert(i.GETARG_C() - 1 == LuaDef.LUA_MULTRET); bool called = D_PreCall(ra, LuaDef.LUA_MULTRET); // C# function ? if (called) { env.Base = ci.BaseIndex; } // LuaFunciton else { CallInfo nci = CI; // called frame CallInfo oci = BaseCI[CI.Index - 1]; // caller frame StkId nfunc = Stack[nci.FuncIndex]; // called function StkId ofunc = Stack[oci.FuncIndex]; // caller function LuaLClosureValue ncl = nfunc.V.ClLValue(); LuaLClosureValue ocl = ofunc.V.ClLValue(); // last stack slot filled by 'precall' int lim = nci.BaseIndex + ncl.Proto.NumParams; if (cl.Proto.P.Count > 0) { F_Close(Stack[env.Base]); } // move new frame into old one int nindex = nfunc.Index; int oindex = ofunc.Index; while (nindex < lim) { Stack[oindex++].V.SetObj(ref Stack[nindex++].V); } oci.BaseIndex = ofunc.Index + (nci.BaseIndex - nfunc.Index); oci.TopIndex = ofunc.Index + (Top.Index - nfunc.Index); Top = Stack[oci.TopIndex]; oci.SavedPc = nci.SavedPc; oci.CallStatus |= CallStatus.CIST_TAIL; ci = CI = oci; ocl = ofunc.V.ClLValue(); Utl.Assert(Top.Index == oci.BaseIndex + ocl.Proto.MaxStackSize); goto newframe; } break; } case OpCode.OP_RETURN: { int b = i.GETARG_B(); if (b != 0) { Top = Stack[ra.Index + b - 1]; } if (cl.Proto.P.Count > 0) { F_Close(Stack[env.Base]); } b = D_PosCall(ra.Index); if ((ci.CallStatus & CallStatus.CIST_REENTRY) == 0) { return; } else { ci = CI; if (b != 0) { Top = Stack[ci.TopIndex]; } goto newframe; } } case OpCode.OP_FORLOOP: { StkId ra1 = Stack[ra.Index + 1]; StkId ra2 = Stack[ra.Index + 2]; StkId ra3 = Stack[ra.Index + 3]; double step = ra2.V.NValue; double idx = ra.V.NValue + step; // increment index double limit = ra1.V.NValue; if ((0 < step) ? idx <= limit : limit <= idx) { ci.SavedPc.Index += i.GETARG_sBx(); // jump back ra.V.SetNValue(idx); // updateinternal index... ra3.V.SetNValue(idx); // ... and external index } break; } case OpCode.OP_FORPREP: { TValue init = new TValue(); TValue limit = new TValue(); TValue step = new TValue(); StkId ra1 = Stack[ra.Index + 1]; StkId ra2 = Stack[ra.Index + 2]; // WHY: why limit is not used ? if (!V_ToNumber(ra, ref init)) { G_RunError("'for' initial value must be a number"); } if (!V_ToNumber(ra1, ref limit)) { G_RunError("'for' limit must be a number"); } if (!V_ToNumber(ra2, ref step)) { G_RunError("'for' step must be a number"); } ra.V.SetNValue(init.NValue - step.NValue); ci.SavedPc.Index += i.GETARG_sBx(); break; } case OpCode.OP_TFORCALL: { int rai = ra.Index; int cbi = ra.Index + 3; Stack[cbi + 2].V.SetObj(ref Stack[rai + 2].V); Stack[cbi + 1].V.SetObj(ref Stack[rai + 1].V); Stack[cbi].V.SetObj(ref Stack[rai].V); StkId callBase = Stack[cbi]; Top = Stack[cbi + 3]; // func. +2 args (state and index) D_Call(callBase, i.GETARG_C(), true); env.Base = ci.BaseIndex; Top = Stack[ci.TopIndex]; i = ci.SavedPc.ValueInc; // go to next instruction env.I = i; ra = env.RA; DumpStack(env.Base); #if DEBUG_INSTRUCTION ULDebug.Log("[VM] ============================================================ OP_TFORCALL Instruction: " + i); #endif Utl.Assert(i.GET_OPCODE() == OpCode.OP_TFORLOOP); goto l_tforloop; } case OpCode.OP_TFORLOOP: l_tforloop: { StkId ra1 = Stack[ra.Index + 1]; if (!ra1.V.TtIsNil()) // continue loop? { ra.V.SetObj(ref ra1.V); ci.SavedPc += i.GETARG_sBx(); } break; } // sets the values for a range of array elements in a table(RA) // RA -> table // RB -> number of elements to set // C -> encodes the block number of the table to be initialized // the values used to initialize the table are located in // R(A+1), R(A+2) ... case OpCode.OP_SETLIST: { int n = i.GETARG_B(); int c = i.GETARG_C(); if (n == 0) { n = (Top.Index - ra.Index) - 1; } if (c == 0) { Utl.Assert(ci.SavedPc.Value.GET_OPCODE() == OpCode.OP_EXTRAARG); c = ci.SavedPc.ValueInc.GETARG_Ax(); } LuaTable tbl = ra.V.HValue(); Utl.Assert(tbl != null); int last = ((c - 1) * LuaDef.LFIELDS_PER_FLUSH) + n; int rai = ra.Index; for (; n > 0; --n) { tbl.SetInt(last--, ref Stack[rai + n].V); } #if DEBUG_OP_SETLIST ULDebug.Log("[VM] ==== OP_SETLIST ci.Top:" + ci.Top.Index); ULDebug.Log("[VM] ==== OP_SETLIST Top:" + Top.Index); #endif Top = Stack[ci.TopIndex]; // correct top (in case of previous open call) break; } case OpCode.OP_CLOSURE: { LuaProto p = cl.Proto.P[i.GETARG_Bx()]; V_PushClosure(p, cl.Upvals, env.Base, ra); #if DEBUG_OP_CLOSURE ULDebug.Log("OP_CLOSURE:" + ra.Value); var racl = ra.Value as LuaLClosure; if (racl != null) { for (int ii = 0; ii < racl.Upvals.Count; ++ii) { ULDebug.Log(ii + " ) " + racl.Upvals[ii]); } } #endif break; } /// <summary> /// VARARG implements the vararg operator `...' in expressions. /// VARARG copies B-1 parameters into a number of registers /// starting from R(A), padding with nils if there aren't enough values. /// If B is 0, VARARG copies as many values as it can based on /// the number of parameters passed. /// If a fixed number of values is required, B is a value greater than 1. /// If any number of values is required, B is 0. /// </summary> case OpCode.OP_VARARG: { int b = i.GETARG_B() - 1; int n = (env.Base - ci.FuncIndex) - cl.Proto.NumParams - 1; if (b < 0) // B == 0? { b = n; D_CheckStack(n); ra = env.RA; // previous call may change the stack Top = Stack[ra.Index + n]; } int p = ra.Index; int q = env.Base - n; for (int j = 0; j < b; ++j) { if (j < n) { Stack[p++].V.SetObj(ref Stack[q++].V); } else { Stack[p++].V.SetNilValue(); } } break; } case OpCode.OP_EXTRAARG: { Utl.Assert(false); V_NotImplemented(i); break; } default: V_NotImplemented(i); break; } } }
private void V_PushClosure( LuaProto p, LuaUpvalue[] encup, int stackBase, StkId ra ) { var ncl = new LuaLClosureValue( p ); ra.V.SetClLValue(ncl); for( int i=0; i<p.Upvalues.Count; ++i ) { // ULDebug.Log( "~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ V_PushClosure i:" + i ); // ULDebug.Log( "~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ V_PushClosure InStack:" + p.Upvalues[i].InStack ); // ULDebug.Log( "~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ V_PushClosure Index:" + p.Upvalues[i].Index ); if( p.Upvalues[i].InStack ) // upvalue refers to local variable ncl.Upvals[i] = F_FindUpval( Stack[stackBase + p.Upvalues[i].Index] ); else // get upvalue from enclosing function ncl.Upvals[i] = encup[ p.Upvalues[i].Index ]; } }
/// <summary> /// return true if function has been executed /// </summary> private bool D_PreCall(StkId func, int nResults) { // prepare for Lua call #if DEBUG_D_PRE_CALL ULDebug.Log("============================ D_PreCall func:" + func); #endif int funcIndex = func.Index; if (!func.V.TtIsFunction()) { // not a function // retry with `function' tag method func = tryFuncTM(func); // now it must be a function return(D_PreCall(func, nResults)); } if (func.V.ClIsLuaClosure()) { LuaLClosureValue cl = func.V.ClLValue(); Utl.Assert(cl != null); LuaProto p = cl.Proto; D_CheckStack(p.MaxStackSize + p.NumParams); func = Stack[funcIndex]; // 补全参数 int n = (Top.Index - func.Index) - 1; for ( ; n < p.NumParams; ++n) { StkId.inc(ref Top).V.SetNilValue(); } int stackBase = (!p.IsVarArg) ? (func.Index + 1) : AdjustVarargs(p, n); CI = ExtendCI(); CI.NumResults = nResults; CI.FuncIndex = func.Index; CI.BaseIndex = stackBase; CI.TopIndex = stackBase + p.MaxStackSize; Utl.Assert(CI.TopIndex <= StackLast); CI.SavedPc = new InstructionPtr(p.Code, 0); CI.CallStatus = CallStatus.CIST_LUA; Top = Stack[CI.TopIndex]; return(false); } if (func.V.ClIsCsClosure()) { LuaCsClosureValue cscl = func.V.ClCsValue(); Utl.Assert(cscl != null); D_CheckStack(LuaDef.LUA_MINSTACK); func = Stack[funcIndex]; CI = ExtendCI(); CI.NumResults = nResults; CI.FuncIndex = func.Index; CI.TopIndex = Top.Index + LuaDef.LUA_MINSTACK; CI.CallStatus = CallStatus.CIST_NONE; // do the actual call int n = cscl.F(this); // poscall D_PosCall(Top.Index - n); return(true); } throw new System.NotImplementedException(); }
private int AuxGetInfo(string what, LuaDebug ar, StkId func, CallInfo ci) { int status = 1; for (int i = 0; i < what.Length; ++i) { char c = what[i]; switch (c) { case 'S': { FuncInfo(ar, func); break; } case 'l': { ar.CurrentLine = (ci != null && ci.IsLua) ? GetCurrentLine(ci) : -1; break; } case 'u': { Utl.Assert(func.V.TtIsFunction()); if (func.V.ClIsLuaClosure()) { LuaLClosureValue lcl = func.V.ClLValue(); ar.NumUps = lcl.Upvals.Length; ar.IsVarArg = lcl.Proto.IsVarArg; ar.NumParams = lcl.Proto.NumParams; } else if (func.V.ClIsCsClosure()) { LuaCsClosureValue ccl = func.V.ClCsValue(); ar.NumUps = ccl.Upvals.Length; ar.IsVarArg = true; ar.NumParams = 0; } else { throw new System.NotImplementedException(); } break; } case 't': { ar.IsTailCall = (ci != null) ? ((ci.CallStatus & CallStatus.CIST_TAIL) != 0) : false; break; } case 'n': { CallInfo prevCI = BaseCI[ci.Index - 1]; if (ci != null && ((ci.CallStatus & CallStatus.CIST_TAIL) == 0) && prevCI.IsLua) { ar.NameWhat = GetFuncName(prevCI, out ar.Name); } else { ar.NameWhat = null; } if (ar.NameWhat == null) { ar.NameWhat = ""; // not found ar.Name = null; } break; } case 'L': case 'f': // handled by GetInfo break; default: status = 0; // invalid option break; } } return(status); }