cyphesis/rulesets/Py_Object.cpp
Al Riddoch 2ccfaadef3 2001-04-14 Al Riddoch <alriddoch@zepler.org>
* Substantial re-work of object model. Moved many attributes out
	  of BaseEntity class. Changed WoldRouter so it now handles
	  objects in terms of Entity, rather than BaseEntity.

	* Code cleanups, including removing reduntant includes, and
	  getting rid of C style comments.

	* Fixed the way attributes are handled in Set operations and
	  when merging from an Atlas::Message::Object. This fixed
	  problem with setting gender of characters.

	* rulesets/Pedestrian.*, rulesets/Movement.*: Re-named
	  Movement variables to make them clearer. Added in
	  separate handling for collisions from moving to
	  target position. Modified collision handling so
	  objects can slide next to each other.

	* rulesets/Thing.cpp, rulesets/Character.cpp: Cleaned up and
	  rationalised movement code. Much shorter, faster and
	  more compact than before.

	* Made better use of iterators throughout, eliminating unnecessary
	  lookups, and copying of data.

	* Moved all virtual functions out of header files, making
	  less work for the linker.

	* Made more use of const references to avoid the need to copy
	  data before being able to inspect it.

Al Riddoch <alriddoch@zepler.org>
2001-04-16 16:26:44 +00:00

293 lines
7.9 KiB
C++

// This file may be redistributed and modified only under the terms of
// the GNU General Public License (See COPYING for details).
// Copyright (C) 2000 Alistair Riddoch
#include <stdio.h>
#include <unistd.h>
#include <Python.h>
#include "Python_API.h"
#include <modules/Location.h>
/*
* Beginning of Object methods section.
*/
static PyObject* Object_get_name(AtlasObject * self, PyObject * args)
{
if (self->m_obj == NULL) {
PyErr_SetString(PyExc_TypeError,"invalid atlas object");
return NULL;
}
if (!PyArg_ParseTuple(args, "")) {
PyErr_SetString(PyExc_TypeError,"too many args");
return NULL;
}
return PyString_FromString("obj");
}
/*
* Object methods structure.
*/
static PyMethodDef Object_methods[] = {
{"get_name", (PyCFunction)Object_get_name, 1},
{NULL, NULL} /* sentinel */
};
/*
* Beginning of Object standard methods section.
*/
static void Object_dealloc(AtlasObject *self)
{
if (self->m_obj != NULL) {
delete self->m_obj;
}
Py_XDECREF(self->Object_attr);
PyMem_DEL(self);
}
static PyObject * Object_getattr(AtlasObject *self, char *name)
{
if (self->m_obj == NULL) {
PyErr_SetString(PyExc_TypeError,"invalid object");
return NULL;
}
if (self->m_obj->IsMap()) {
Object::MapType & omap = self->m_obj->AsMap();
Object::MapType::iterator I = omap.find(name);
if (I != omap.end()) {
return Object_asPyObject(I->second);
}
}
if (self->Object_attr != NULL) {
PyObject *v = PyDict_GetItemString(self->Object_attr, name);
if (v != NULL) {
Py_INCREF(v);
return v;
}
}
return Py_FindMethod(Object_methods, (PyObject *)self, name);
}
static int Object_setattr( AtlasObject *self, char *name, PyObject *v)
{
if (self->m_obj == NULL) {
PyErr_SetString(PyExc_TypeError,"invalid object");
return -1;
}
if (self->m_obj->IsMap()) {
Object::MapType & omap = self->m_obj->AsMap();
Object v_obj = PyObject_asObject(v);
if ((v_obj.GetType() != Object::TYPE_NONE) &&
(v_obj.GetType() != Object::TYPE_MAP) &&
(v_obj.GetType() != Object::TYPE_LIST)) {
omap[name] = v_obj;
return 0;
}
}
if (self->Object_attr == NULL) {
self->Object_attr = PyDict_New();
if (self->Object_attr == NULL) {
return -1;
}
}
return PyDict_SetItemString(self->Object_attr, name, v);
}
PyTypeObject Object_Type = {
PyObject_HEAD_INIT(&PyType_Type)
0, /*ob_size*/
"AtlasObject", /*tp_name*/
sizeof(AtlasObject), /*tp_basicsize*/
0, /*tp_itemsize*/
/* methods */
(destructor)Object_dealloc, /*tp_dealloc*/
0, /*tp_print*/
(getattrfunc)Object_getattr, /*tp_getattr*/
(setattrfunc)Object_setattr, /*tp_setattr*/
0, /*tp_compare*/
0, /*tp_repr*/
0, /*tp_as_number*/
0, /*tp_as_sequence*/
0, /*tp_as_mapping*/
0, /*tp_hash*/
};
/*
* Beginning of Object creation functions section.
*/
AtlasObject * newAtlasObject(PyObject *arg)
{
AtlasObject * self;
self = PyObject_NEW(AtlasObject, &Object_Type);
if (self == NULL) {
return NULL;
}
self->Object_attr = NULL;
return self;
}
/*
* Utility functions to munge between Object related types and python types
*/
static PyObject * MapType_asPyObject(const Object::MapType & map)
{
PyObject * args_pydict = PyDict_New();
Object::MapType::const_iterator I;
AtlasObject * item;
for(I=map.begin();I!=map.end();I++) {
const string & key = I->first;
item = newAtlasObject(NULL);
if (item == NULL) {
PyErr_SetString(PyExc_TypeError,"error creating map");
return NULL;
}
item->m_obj = new Object(I->second);
PyDict_SetItemString(args_pydict,(char *)key.c_str(),(PyObject *)item);
}
return(args_pydict);
}
static PyObject * ListType_asPyObject(const Object::ListType & list)
{
PyObject * args_pylist = PyList_New(list.size());
Object::ListType::const_iterator I;
int j=0;
AtlasObject * item;
for(I=list.begin();I!=list.end();I++,j++) {
item = newAtlasObject(NULL);
if (item == NULL) {
PyErr_SetString(PyExc_TypeError,"error creating list");
return NULL;
}
item->m_obj = new Object(*I);
PyList_SetItem(args_pylist, j, (PyObject *)item);
}
return(args_pylist);
}
PyObject * Object_asPyObject(const Object & obj)
{
PyObject * ret = NULL;
switch (obj.GetType()) {
case Object::TYPE_INT:
ret = PyInt_FromLong(obj.AsInt());
break;
case Object::TYPE_FLOAT:
ret = PyFloat_FromDouble(obj.AsFloat());
break;
case Object::TYPE_STRING:
ret = PyString_FromString(obj.AsString().c_str());
break;
case Object::TYPE_MAP:
ret = MapType_asPyObject(obj.AsMap());
break;
case Object::TYPE_LIST:
ret = ListType_asPyObject(obj.AsList());
break;
default:
break;
}
return(ret);
}
static Object::ListType PyListObject_asListType(PyObject * list)
{
Object::ListType argslist;
AtlasObject * item;
for(int i = 0; i < PyList_Size(list); i++) {
item = (AtlasObject *)PyList_GetItem(list, i);
if (PyAtlasObject_Check(item)) {
argslist.push_back(*(item->m_obj));
} else {
Object o = PyObject_asObject((PyObject*)item);
if (o.GetType() != Object::TYPE_NONE) {
argslist.push_back(o);
}
}
}
return(argslist);
}
static Object::MapType PyDictObject_asMapType(PyObject * dict)
{
Object::MapType argsmap;
AtlasObject * item;
PyObject * list = PyDict_Keys(dict);
PyObject * key;
for(int i = 0; i < PyDict_Size(list); i++) {
key = PyList_GetItem(list, i);
item = (AtlasObject *)PyDict_GetItem(dict, key);
if (!PyAtlasObject_Check(item)) {
PyErr_SetString(PyExc_TypeError,"dict contains non Atlas Object");
Py_DECREF(list);
return Object::MapType();
}
argsmap[PyString_AsString(key)] = *(item->m_obj);
}
Py_DECREF(list);
return(argsmap);
}
Object PyObject_asObject(PyObject * o)
{
if (PyInt_Check(o)) {
return(Object((int)PyInt_AsLong(o)));
}
if (PyFloat_Check(o)) {
return(Object(PyFloat_AsDouble(o)));
}
if (PyString_Check(o)) {
return(Object(PyString_AsString(o)));
}
if (PyList_Check(o)) {
return(Object(PyListObject_asListType(o)));
}
if (PyDict_Check(o)) {
return(Object(PyDictObject_asMapType(o)));
}
if (PyTuple_Check(o)) {
Object::ListType list;
int i, size = PyTuple_Size(o);
for(i = 0; i < size; i++) {
Object item = PyObject_asObject(PyTuple_GetItem(o, i));
if (item.GetType() != Object::TYPE_NONE) {
list.push_back(item);
}
}
return Object(list);
}
if (PyAtlasObject_Check(o)) {
AtlasObject * obj = (AtlasObject *)o;
return *(obj->m_obj);
}
if (PyOperation_Check(o)) {
RootOperationObject * op = (RootOperationObject *)o;
return op->operation->AsObject();
}
if (PyOplist_Check(o)) {
OplistObject * opl = (OplistObject *)o;
Object::ListType _list;
Object msg(_list);
Object::ListType & entlist = msg.AsList();
const oplist & ops = *opl->ops;
oplist::const_iterator I;
for(I = ops.begin(); I != ops.end(); I++) {
entlist.push_back((*I)->AsObject());
}
return msg;
}
if (PyLocation_Check(o)) {
LocationObject * loc = (LocationObject *)o;
Object::MapType _map;
Object ent(_map);
loc->location->addToObject(ent);
return ent;
}
return Object();
}