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https://github.com/ZDoom/qzdoom.git
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Consolidate constant expression nodes into a single type
- Instead of having ZCC_ExprString, ZCC_ExprInt, and ZCC_ExprFloat, just use a single ZCC_ExprConstant. It should simplify type promotion and constant folding in the future.
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f9f8d1e79b
commit
61666e1515
3 changed files with 41 additions and 63 deletions
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@ -442,10 +442,7 @@ static void OpenExprType(FLispString &out, EZCCExprType type)
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"id",
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"id",
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"super",
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"super",
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"self",
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"self",
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"string-const",
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"const",
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"int-const",
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"uint-const",
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"float-const",
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"func-call",
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"func-call",
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"array-access",
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"array-access",
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"member-access",
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"member-access",
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@ -518,30 +515,23 @@ static void PrintExprID(FLispString &out, ZCC_TreeNode *node)
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out.Close();
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out.Close();
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}
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}
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static void PrintExprString(FLispString &out, ZCC_TreeNode *node)
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static void PrintExprConstant(FLispString &out, ZCC_TreeNode *node)
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{
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{
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ZCC_ExprString *enode = (ZCC_ExprString *)node;
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ZCC_ExprConstant *enode = (ZCC_ExprConstant *)node;
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assert(enode->Operation == PEX_StringConst);
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assert(enode->Operation == PEX_ConstValue);
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out.Open("expr-string-const");
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out.Open("expr-const");
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PrintStringConst(out, *enode->Value);
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if (enode->Type == TypeString)
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out.Close();
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{
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}
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PrintStringConst(out, *enode->StringVal);
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}
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static void PrintExprInt(FLispString &out, ZCC_TreeNode *node)
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else if (enode->Type == TypeFloat64)
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{
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{
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ZCC_ExprInt *enode = (ZCC_ExprInt *)node;
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out.AddFloat(enode->DoubleVal);
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assert(enode->Operation == PEX_IntConst || enode->Operation == PEX_UIntConst);
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}
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OpenExprType(out, enode->Operation);
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else
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out.AddInt(enode->Value);
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{
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out.Close();
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out.AddInt(enode->IntVal);
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}
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}
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static void PrintExprFloat(FLispString &out, ZCC_TreeNode *node)
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{
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ZCC_ExprFloat *enode = (ZCC_ExprFloat *)node;
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assert(enode->Operation == PEX_FloatConst);
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out.Open("expr-float-const");
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out.AddFloat(enode->Value);
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out.Close();
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out.Close();
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}
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}
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@ -817,9 +807,7 @@ void (* const TreeNodePrinter[NUM_AST_NODE_TYPES])(FLispString &, ZCC_TreeNode *
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PrintClassType,
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PrintClassType,
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PrintExpression,
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PrintExpression,
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PrintExprID,
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PrintExprID,
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PrintExprString,
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PrintExprConstant,
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PrintExprInt,
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PrintExprFloat,
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PrintExprFuncCall,
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PrintExprFuncCall,
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PrintExprMemberAccess,
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PrintExprMemberAccess,
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PrintExprUnary,
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PrintExprUnary,
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@ -726,7 +726,7 @@ const_def(X) ::= CONST(T) IDENTIFIER(A) EQ expr(B) SEMICOLON.
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%type expr{ZCC_Expression *}
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%type expr{ZCC_Expression *}
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%type primary{ZCC_Expression *}
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%type primary{ZCC_Expression *}
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%type unary_expr{ZCC_Expression *}
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%type unary_expr{ZCC_Expression *}
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%type constant{ZCC_Expression *}
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%type constant{ZCC_ExprConstant *}
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%include {
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%include {
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#define UNARY_EXPR(X,T) NEW_AST_NODE(ExprUnary, expr, X); expr->Operation = T; expr->Operand = X; expr->Type = NULL
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#define UNARY_EXPR(X,T) NEW_AST_NODE(ExprUnary, expr, X); expr->Operation = T; expr->Operand = X; expr->Type = NULL
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@ -1091,22 +1091,22 @@ named_expr(X) ::= expr(B).
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/************ Constants ************/
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/************ Constants ************/
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/* Allow C-like concatenation of adjacent string constants. */
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/* Allow C-like concatenation of adjacent string constants. */
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%type string_constant{ZCC_ExprString *}
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%type string_constant{ZCC_ExprConstant *}
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string_constant(X) ::= STRCONST(A).
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string_constant(X) ::= STRCONST(A).
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{
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{
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NEW_AST_NODE(ExprString, strconst, A);
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NEW_AST_NODE(ExprConstant, strconst, A);
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strconst->Operation = PEX_StringConst;
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strconst->Operation = PEX_ConstValue;
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strconst->Type = TypeString;
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strconst->Type = TypeString;
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strconst->Value = A.String;
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strconst->StringVal = A.String;
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X = strconst;
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X = strconst;
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}
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}
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string_constant(X) ::= string_constant(A) STRCONST(B).
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string_constant(X) ::= string_constant(A) STRCONST(B).
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{
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{
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NEW_AST_NODE(ExprString, strconst, A);
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NEW_AST_NODE(ExprConstant, strconst, A);
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strconst->Operation = PEX_StringConst;
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strconst->Operation = PEX_ConstValue;
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strconst->Type = TypeString;
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strconst->Type = TypeString;
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strconst->Value = stat->Strings.Alloc(*(A->Value) + *(B.String));
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strconst->StringVal = stat->Strings.Alloc(*(A->StringVal) + *(B.String));
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X = strconst;
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X = strconst;
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}
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}
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@ -1116,18 +1116,18 @@ constant(X) ::= string_constant(A).
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}
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}
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constant(X) ::= INTCONST(A).
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constant(X) ::= INTCONST(A).
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{
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{
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NEW_AST_NODE(ExprInt, intconst, A);
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NEW_AST_NODE(ExprConstant, intconst, A);
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intconst->Operation = PEX_IntConst;
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intconst->Operation = PEX_ConstValue;
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intconst->Type = TypeSInt32;
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intconst->Type = TypeSInt32;
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intconst->Value = A.Int;
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intconst->IntVal = A.Int;
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X = intconst;
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X = intconst;
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}
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}
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constant(X) ::= FLOATCONST(A).
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constant(X) ::= FLOATCONST(A).
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{
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{
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NEW_AST_NODE(ExprFloat, floatconst, A);
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NEW_AST_NODE(ExprConstant, floatconst, A);
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floatconst->Operation = PEX_FloatConst;
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floatconst->Operation = PEX_ConstValue;
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floatconst->Type = TypeFloat64;
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floatconst->Type = TypeFloat64;
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floatconst->Value = A.Float;
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floatconst->DoubleVal = A.Float;
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X = floatconst;
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X = floatconst;
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}
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}
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@ -75,9 +75,7 @@ enum EZCCTreeNodeType
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AST_ClassType,
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AST_ClassType,
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AST_Expression,
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AST_Expression,
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AST_ExprID,
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AST_ExprID,
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AST_ExprString,
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AST_ExprConstant,
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AST_ExprInt,
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AST_ExprFloat,
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AST_ExprFuncCall,
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AST_ExprFuncCall,
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AST_ExprMemberAccess,
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AST_ExprMemberAccess,
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AST_ExprUnary,
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AST_ExprUnary,
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@ -136,10 +134,7 @@ enum EZCCExprType
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PEX_ID,
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PEX_ID,
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PEX_Super,
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PEX_Super,
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PEX_Self,
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PEX_Self,
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PEX_StringConst,
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PEX_ConstValue,
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PEX_IntConst,
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PEX_UIntConst,
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PEX_FloatConst,
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PEX_FuncCall,
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PEX_FuncCall,
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PEX_ArrayAccess,
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PEX_ArrayAccess,
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PEX_MemberAccess,
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PEX_MemberAccess,
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@ -352,19 +347,14 @@ struct ZCC_ExprID : ZCC_Expression
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ENamedName Identifier;
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ENamedName Identifier;
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};
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};
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struct ZCC_ExprString : ZCC_Expression
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struct ZCC_ExprConstant : ZCC_Expression
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{
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{
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FString *Value;
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union
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};
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{
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FString *StringVal;
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struct ZCC_ExprInt : ZCC_Expression
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int IntVal;
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{
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double DoubleVal;
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int Value;
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};
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};
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struct ZCC_ExprFloat : ZCC_Expression
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{
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double Value;
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};
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};
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struct ZCC_FuncParm : ZCC_TreeNode
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struct ZCC_FuncParm : ZCC_TreeNode
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