/*
* orbit-imodule-libidl-utils.c: cut and paste code from libIDL
*
* Copyright (C) 1998 - 2002, Andrew T. Veliath
*
* This library is free software; you can redistribute it and/or
* modify it under the terms of the GNU Library General Public
* License as published by the Free Software Foundation; either
* version 2 of the License, or (at your option) any later version.
*
* This library is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Library General Public License for more details.
*
* You should have received a copy of the GNU Library General Public
* License along with this library; if not, write to the Free
* Software Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
*/
#include "orbit-imodule-libidl-utils.h"
static IDL_tree
IDL_binop_eval_integer (enum IDL_binop op, IDL_tree a, IDL_tree b)
{
IDL_tree p = NULL;
g_assert (IDL_NODE_TYPE (a) == IDLN_INTEGER);
switch (op) {
case IDL_BINOP_MULT:
p = IDL_integer_new (IDL_INTEGER (a).value * IDL_INTEGER (b).value);
break;
case IDL_BINOP_DIV:
if (IDL_INTEGER (b).value == 0) {
g_error ("Divide by zero in constant expression");
return NULL;
}
p = IDL_integer_new (IDL_INTEGER (a).value / IDL_INTEGER (b).value);
break;
case IDL_BINOP_ADD:
p = IDL_integer_new (IDL_INTEGER (a).value + IDL_INTEGER (b).value);
break;
case IDL_BINOP_SUB:
p = IDL_integer_new (IDL_INTEGER (a).value - IDL_INTEGER (b).value);
break;
case IDL_BINOP_MOD:
if (IDL_INTEGER (b).value == 0) {
g_error ("Modulo by zero in constant expression");
return NULL;
}
p = IDL_integer_new (IDL_INTEGER (a).value % IDL_INTEGER (b).value);
break;
case IDL_BINOP_SHR:
p = IDL_integer_new (IDL_INTEGER (a).value >> IDL_INTEGER (b).value);
break;
case IDL_BINOP_SHL:
p = IDL_integer_new (IDL_INTEGER (a).value << IDL_INTEGER (b).value);
break;
case IDL_BINOP_AND:
p = IDL_integer_new (IDL_INTEGER (a).value & IDL_INTEGER (b).value);
break;
case IDL_BINOP_OR:
p = IDL_integer_new (IDL_INTEGER (a).value | IDL_INTEGER (b).value);
break;
case IDL_BINOP_XOR:
p = IDL_integer_new (IDL_INTEGER (a).value ^ IDL_INTEGER (b).value);
break;
}
return p;
}
static IDL_tree
IDL_binop_eval_float (enum IDL_binop op, IDL_tree a, IDL_tree b)
{
IDL_tree p = NULL;
g_assert (IDL_NODE_TYPE (a) == IDLN_FLOAT);
switch (op) {
case IDL_BINOP_MULT:
p = IDL_float_new (IDL_FLOAT (a).value * IDL_FLOAT (b).value);
break;
case IDL_BINOP_DIV:
if (IDL_FLOAT (b).value == 0.0) {
g_error ("Divide by zero in constant expression");
return NULL;
}
p = IDL_float_new (IDL_FLOAT (a).value / IDL_FLOAT (b).value);
break;
case IDL_BINOP_ADD:
p = IDL_float_new (IDL_FLOAT (a).value + IDL_FLOAT (b).value);
break;
case IDL_BINOP_SUB:
p = IDL_float_new (IDL_FLOAT (a).value - IDL_FLOAT (b).value);
break;
default:
break;
}
return p;
}
IDL_tree
_IDL_binop_eval (enum IDL_binop op, IDL_tree a, IDL_tree b)
{
g_assert (IDL_NODE_TYPE (a) == IDL_NODE_TYPE (b));
switch (IDL_NODE_TYPE (a)) {
case IDLN_INTEGER:
return IDL_binop_eval_integer (op, a, b);
case IDLN_FLOAT:
return IDL_binop_eval_float (op, a, b);
default:
return NULL;
}
}
static IDL_tree
IDL_unaryop_eval_integer (enum IDL_unaryop op, IDL_tree a)
{
IDL_tree p = NULL;
g_assert (IDL_NODE_TYPE (a) == IDLN_INTEGER);
switch (op) {
case IDL_UNARYOP_PLUS:
p = IDL_integer_new (IDL_INTEGER (a).value);
break;
case IDL_UNARYOP_MINUS:
p = IDL_integer_new (-IDL_INTEGER (a).value);
break;
case IDL_UNARYOP_COMPLEMENT:
p = IDL_integer_new (~IDL_INTEGER (a).value);
break;
}
return p;
}
static IDL_tree
IDL_unaryop_eval_fixed (enum IDL_unaryop op, IDL_tree a)
{
IDL_tree p = NULL;
g_assert (IDL_NODE_TYPE (a) == IDLN_FIXED);
switch (op) {
case IDL_UNARYOP_PLUS:
p = IDL_fixed_new (IDL_FIXED (a).value);
break;
default:
break;
}
return p;
}
static IDL_tree
IDL_unaryop_eval_float (enum IDL_unaryop op, IDL_tree a)
{
IDL_tree p = NULL;
g_assert (IDL_NODE_TYPE (a) == IDLN_FLOAT);
switch (op) {
case IDL_UNARYOP_PLUS:
p = IDL_float_new (IDL_FLOAT (a).value);
break;
case IDL_UNARYOP_MINUS:
p = IDL_float_new (-IDL_FLOAT (a).value);
break;
default:
break;
}
return p;
}
IDL_tree
_IDL_unaryop_eval (enum IDL_unaryop op, IDL_tree a)
{
switch (IDL_NODE_TYPE (a)) {
case IDLN_INTEGER:
return IDL_unaryop_eval_integer (op, a);
case IDLN_FIXED:
return IDL_unaryop_eval_fixed (op, a);
case IDLN_FLOAT:
return IDL_unaryop_eval_float (op, a);
default:
return NULL;
}
}
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