cyphesis/rulesets/Python_API.cpp
Al Riddoch 35d78b27a2 * Implemented beginnings of ranges code:
* modules/Location.h: Added inRange() method which can be used
	  to check whether location, including bounding box, is within
	  given range of a given location. Changed parent member
	  variable to ref to fit with Atlas spec. Changed all code
	  related to using the term ref instead of parent so
	  that there is no confusion between ref for coordinates
          and parent in the Atlas hierarchy.

        * rulesets/Thing.cpp: Added code to move operation to check
          what entities come into and out of range when entity moves.
          Appearance and Disappearance operations are sent to the
          moving entity with a list of the relevant entities as their
          argument.

        * server/WorldRouter.h/cpp: Added overloaded Look operation
          handler which applies range constraints to the contains
          attribute before returning.

        * common/BaseEntity.h, rulesets/Thing.h, rulesets/Character.h:
          Added handling of Appearance and Disappearance operations.

        * server/WorldRouter.cpp: Added primitive check to broadcast
          operations to avoid delivering broadcast operation to
          entities out of range.

        * Removed world.get_object() use from server python code, as
          its use is not required.

        * server/WorldRouter.h: Implemented fetching of floating point time
          from the OS so movement is much smoother.

Al
2001-02-19 06:13:31 +00:00

797 lines
24 KiB
C++

// This file may be redistributed and modified only under the terms of
// the GNU Lesser 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 "Thing.h"
#include <Atlas/Objects/Operation/Sight.h>
#include <Atlas/Objects/Operation/Touch.h>
#include <modules/Location.h>
#include <server/WorldTime.h>
#include <server/server.h>
#include <common/const.h>
static void Function_dealloc(FunctionObject * self)
{
PyMem_DEL(self);
}
static PyObject * log_debug(PyObject * self, PyObject * args, PyObject * kwds)
{
Py_INCREF(Py_None);
return Py_None;
}
PyTypeObject log_debug_type = {
PyObject_HEAD_INIT(&PyType_Type)
0,
"Function",
sizeof(FunctionObject),
0,
/* methods */
(destructor)Function_dealloc,
0, /* tp_print */
0, /* tp_getattr */
0, /* tp_setattr */
0, /* tp_compare */
0, /* tp_repr */
0, /* tp_as_number */
0, /* tp_as_sequence */
0, /* tp_as_mapping */
0, /* tp_hash */
log_debug, /* tp_call */
};
static PyObject * dictlist_remove_value(PyObject * self, PyObject * args, PyObject * kwds)
{
PyObject * dict;
ThingObject * item;
long remove_empty_key = 1;
if (!PyArg_ParseTuple(args, "OO|i", &dict, &item, &remove_empty_key)) {
return NULL;
}
int flag=0;
if (!PyDict_Check(dict)) {
PyErr_SetString(PyExc_TypeError, "Trying to set item in not dictlist");
return NULL;
}
PyObject * keys = PyDict_Keys(dict);
PyObject * values = PyDict_Values(dict);
if ((keys == NULL) || (values == NULL)) {
PyErr_SetString(PyExc_TypeError, "Error getting keys from dictlist");
return NULL;
}
int i, size = PyList_Size(keys);
for(i = 0; i < size; i++) {
PyObject * value = PyList_GetItem(values, i);
PyObject * key = PyList_GetItem(keys, i);
int j, lsize = PyList_Size(value);
for(j = 0; j < lsize; j++) {
ThingObject * entry = (ThingObject*)PyList_GetItem(value, j);
if (entry->m_thing == item->m_thing) {
flag = 1;
PyList_SetSlice(value, j, j+1, NULL);
j--; lsize--;
if ((remove_empty_key !=0) && (PyList_Size(value) == 0)) {
PyDict_DelItem(dict, key);
}
}
}
}
Py_DECREF(keys);
Py_DECREF(values);
return PyInt_FromLong(flag);
}
PyTypeObject dictlist_remove_value_type = {
PyObject_HEAD_INIT(&PyType_Type)
0,
"Function",
sizeof(FunctionObject),
0,
/* methods */
(destructor)Function_dealloc,
0, /* tp_print */
0, /* tp_getattr */
0, /* tp_setattr */
0, /* tp_compare */
0, /* tp_repr */
0, /* tp_as_number */
0, /* tp_as_sequence */
0, /* tp_as_mapping */
0, /* tp_hash */
dictlist_remove_value, /* tp_call */
};
static PyObject * dictlist_add_value(PyObject * self, PyObject * args, PyObject * kwds)
{
PyObject * dict;
ThingObject * item;
char * key;
if (!PyArg_ParseTuple(args, "OsO", &dict, &key, &item)) {
return NULL;
}
if (!PyDict_Check(dict)) {
PyErr_SetString(PyExc_TypeError, "Dict is not a dictionary");
return NULL;
}
PyObject * list = PyDict_GetItemString(dict, key);
if (list != NULL) {
if (!PyList_Check(list)) {
PyErr_SetString(PyExc_TypeError, "Dict does not contain a list");
return NULL;
}
int i, size = PyList_Size(list);
for(i = 0; i < size; i++) {
ThingObject * entry = (ThingObject*)PyList_GetItem(list,i);
if (entry->m_thing == item->m_thing) {
goto present;
}
}
PyList_Append(list, (PyObject*)item);
} else {
list = PyList_New(0);
//Py_INCREF(item);
PyList_Append(list, (PyObject*)item);
PyDict_SetItemString(dict, key, list);
Py_DECREF(list);
}
present:
Py_INCREF(Py_None);
return Py_None;
}
PyTypeObject dictlist_add_value_type = {
PyObject_HEAD_INIT(&PyType_Type)
0,
"Function",
sizeof(FunctionObject),
0,
/* methods */
(destructor)Function_dealloc,
0, /* tp_print */
0, /* tp_getattr */
0, /* tp_setattr */
0, /* tp_compare */
0, /* tp_repr */
0, /* tp_as_number */
0, /* tp_as_sequence */
0, /* tp_as_mapping */
0, /* tp_hash */
dictlist_add_value, /* tp_call */
};
void Create_PyThing(Thing * thing, const string & package, const string & _type)
{
string type = _type;
type[0] = toupper(type[0]);
PyObject * mod_dict;
PyObject * package_name = PyString_FromString((char *)package.c_str());
if ((mod_dict = PyImport_Import(package_name))==NULL) {
cerr << "Cld no find python module " << package << endl << flush;
PyErr_Print();
return;
}
PyObject * my_class = PyObject_GetAttrString(mod_dict, (char *)type.c_str());
if (my_class == NULL) {
cerr << "Cld not find class " << type << " in module " << package
<< endl << flush;
PyErr_Print();
return;
}
if (PyCallable_Check(my_class) == 0) {
cerr << "It does not seem to be a class at all" << endl << flush;
return;
}
ThingObject * pyThing = newThingObject(NULL);
pyThing->m_thing = thing;
if (thing->set_object(PyEval_CallFunction(my_class,"(O)", (PyObject *)pyThing)) == -1) {
if (PyErr_Occurred() == NULL) {
cerr << "Could not get python obj" << endl << flush;
} else {
cerr << "Reporting python error for " << type << endl << flush;
PyErr_Print();
}
}
Py_DECREF(my_class);
Py_DECREF(mod_dict);
}
static PyObject * is_location(PyObject * self, PyObject * args)
{
PyObject * loc;
if (!PyArg_ParseTuple(args, "O", &loc)) {
return NULL;
}
if (PyLocation_Check(loc)) {
Py_INCREF(Py_True);
return Py_True;
}
Py_INCREF(Py_False);
return Py_False;
}
static PyObject * location_new(PyObject * self, PyObject * args)
{
LocationObject *o;
// We need to deal with actual args here
PyObject * refO, * coordsO = NULL;
if (PyArg_ParseTuple(args, "O|O", &refO, &coordsO)) {
if ((!PyThing_Check(refO)) && (!PyWorld_Check(refO))) {
if (PyObject_HasAttrString(refO, "cppthing")) {
refO = PyObject_GetAttrString(refO, "cppthing");
}
if (!PyThing_Check(refO)) {
PyErr_SetString(PyExc_TypeError, "Arg ref required");
return NULL;
}
}
if ((coordsO != NULL) && (!PyVector3D_Check(coordsO))) {
PyErr_SetString(PyExc_TypeError, "Arg coords required");
return NULL;
}
BaseEntity * ref_ent;
if (PyWorld_Check(refO)) {
WorldObject * ref = (WorldObject*)refO;
if (ref->world == NULL) {
PyErr_SetString(PyExc_TypeError, "Parent world is invalid");
return NULL;
}
ref_ent = ref->world;
} else {
ThingObject * ref = (ThingObject*)refO;
if (ref->m_thing == NULL) {
PyErr_SetString(PyExc_TypeError, "Parent thing is invalid");
return NULL;
}
ref_ent = ref->m_thing;
}
Vector3DObject * coords = (Vector3DObject*)coordsO;
o = newLocationObject(NULL);
if ( o == NULL ) {
return NULL;
}
if (coords == NULL) {
o->location = new Location(ref_ent, Vector3D());
} else {
o->location = new Location(ref_ent, coords->coords);
}
o->own = 1;
} else if (PyArg_ParseTuple(args, "")) {
o = newLocationObject(NULL);
if ( o == NULL ) {
return NULL;
}
o->location = new Location;
o->own = 1;
} else {
return NULL;
}
return (PyObject *)o;
}
static PyObject * vector3d_new(PyObject * self, PyObject * args)
{
Vector3DObject *o;
Vector3D val;
// We need to deal with actual args here
PyObject * clist;
switch (PyTuple_Size(args)) {
case 0:
break;
case 1:
clist = PyTuple_GetItem(args, 0);
if ((!PyList_Check(clist)) || (PyList_Size(clist) != 3)) {
PyErr_SetString(PyExc_TypeError, "Vector3D() from single value must a list 3 long");
return NULL;
}
for(int i = 0; i < 3; i++) {
PyObject * item = PyList_GetItem(clist, i);
if (PyInt_Check(item)) {
val[i] = (double)PyInt_AsLong(item);
} else if (PyFloat_Check(item)) {
val[i] = PyFloat_AsDouble(item);
} else {
PyErr_SetString(PyExc_TypeError, "Vector3D() must take list of floats, or ints");
return NULL;
}
}
val.set();
break;
case 3:
for(int i = 0; i < 3; i++) {
PyObject * item = PyTuple_GetItem(args, i);
if (PyInt_Check(item)) {
val[i] = (double)PyInt_AsLong(item);
} else if (PyFloat_Check(item)) {
val[i] = PyFloat_AsDouble(item);
} else {
PyErr_SetString(PyExc_TypeError, "Vector3D() must take list of floats, or ints");
return NULL;
}
}
val.set();
break;
default:
PyErr_SetString(PyExc_TypeError, "Vector3D must take list of floats, or ints, 3 ints or 3 floats");
return NULL;
break;
}
o = newVector3DObject(args);
if ( o == NULL ) {
return NULL;
}
o->coords = val;
return (PyObject *)o;
}
static PyObject * worldtime_new(PyObject * self, PyObject * args)
{
WorldTimeObject *o;
int seconds;
if (!PyArg_ParseTuple(args, "i", &seconds)) {
return NULL;
}
o = newWorldTimeObject(args);
if ( o == NULL ) {
return NULL;
}
o->time = new WorldTime(seconds);
return (PyObject *)o;
}
inline void addToOplist(RootOperationObject * op, OplistObject * o)
{
if (op != NULL) {
if (PyOperation_Check(op)) {
o->ops->push_back(op->operation);
op->own = 0;
} else if ((PyObject*)op != Py_None) {
PyErr_SetString(PyExc_TypeError, "Argument must be an op");
return;
}
}
}
static PyObject * oplist_new(PyObject * self, PyObject * args)
{
OplistObject *o;
RootOperationObject *op1 = NULL, *op2 = NULL, *op3 = NULL, *op4 = NULL;
if (!PyArg_ParseTuple(args, "|OOOO", &op1, &op2, &op3, &op4)) {
return NULL;
}
o = newOplistObject(args);
if ( o == NULL ) {
return NULL;
}
o->ops = new oplist();
addToOplist(op1, o);
addToOplist(op2, o);
addToOplist(op3, o);
addToOplist(op4, o);
#if 0
if (op1 != NULL) {
if (PyOperation_Check(op1)) {
o->ops->push_back(op1->operation);
} else if ((PyObject*)op1 != Py_None) {
PyErr_SetString(PyExc_TypeError, "Argument must be an op");
return NULL;
}
}
if (op2 != NULL) {
if (PyOperation_Check(op2)) {
o->ops->push_back(op2->operation);
} else if ((PyObject*)op1 != Py_None) {
PyErr_SetString(PyExc_TypeError, "Argument must be an op");
return NULL;
}
}
#endif
return (PyObject *)o;
}
static PyObject * object_new(PyObject * self, PyObject * args)
{
AtlasObject *o;
if (!PyArg_ParseTuple(args, "")) {
return NULL;
}
o = newAtlasObject(args);
if ( o == NULL ) {
return NULL;
}
o->m_obj = new Object;
return (PyObject *)o;
}
static PyObject * entity_new(PyObject * self, PyObject * args, PyObject * kwds)
{
AtlasObject *o;
char * id = NULL;
if (!PyArg_ParseTuple(args, "|s", &id)) {
return NULL;
}
Object::MapType _omap;
Object obj(_omap);
Object::MapType & omap = obj.AsMap();
if (id != NULL) {
omap["id"] = string(id);
}
if ((kwds != NULL) && (PyDict_Check(kwds))) {
PyObject * keys = PyDict_Keys(kwds);
PyObject * vals = PyDict_Values(kwds);
if ((keys == NULL) || (vals == NULL)) {
PyErr_SetString(PyExc_TypeError, "Error in keywords");
return NULL;
}
int i, size=PyList_Size(keys);
for(i = 0; i < size; i++) {
char * key = PyString_AsString(PyList_GetItem(keys, i));
PyObject * val = PyList_GetItem(vals, i);
if ((strcmp(key, "location") == 0) && (PyLocation_Check(val))) {
LocationObject * loc = (LocationObject*)val;
loc->location->addObject(&obj);
} else {
Object val_obj = PyObject_asObject(val);
if (val_obj.GetType() == Object::TYPE_NONE) {
fprintf(stderr, "Could not handle %s value in Entity()", key);
PyErr_SetString(PyExc_TypeError, "Argument type error to Entity()");
Py_DECREF(keys);
Py_DECREF(vals);
return NULL;
}
omap[key] = val_obj;
}
}
Py_DECREF(keys);
Py_DECREF(vals);
}
o = newAtlasObject(args);
if ( o == NULL ) {
return NULL;
}
o->m_obj = new Object(obj);
return (PyObject *)o;
}
static PyObject * cppthing_new(PyObject * self, PyObject * args)
{
ThingObject *o;
if (!PyArg_ParseTuple(args, "")) {
return NULL;
}
o = newThingObject(args);
if ( o == NULL ) {
return NULL;
}
//o->m_thing = new Thing;
return (PyObject *)o;
}
inline void addToArgs(Object::ListType & args, PyObject * ent)
{
if (ent == NULL) {
return;
}
if (PyAtlasObject_Check(ent)) {
AtlasObject * obj = (AtlasObject*)ent;
if (obj->m_obj == NULL) {
fprintf(stderr, "Invalid object in Operation arguments\n");
return;
}
args.push_back(*obj->m_obj);
} else if (PyOperation_Check(ent)) {
RootOperationObject * op = (RootOperationObject*)ent;
if (op->operation == NULL) {
fprintf(stderr, "Invalid operation in Operation arguments\n");
return;
}
args.push_back(op->operation->AsObject());
} else {
fprintf(stderr, "Non-entity passed as arg to Operation()\n");
}
}
static PyObject * operation_new(PyObject * self, PyObject * args, PyObject * kwds)
{
RootOperationObject * op;
char * type;
PyObject * to = NULL;
PyObject * from = NULL;
PyObject * arg1 = NULL;
PyObject * arg2 = NULL;
PyObject * arg3 = NULL;
if (!PyArg_ParseTuple(args, "s|OOO", &type, &arg1, &arg2, &arg3)) {
return NULL;
}
op = newAtlasRootOperation(args);
if (op == NULL) {
return NULL;
}
if (strcmp(type, "tick") == 0) {
op->operation = new Tick;
*op->operation = Tick::Instantiate();
} else if (strcmp(type, "sight") == 0) {
op->operation = new Sight;
*op->operation = Sight::Instantiate();
} else if (strcmp(type, "set") == 0) {
op->operation = new Set;
*op->operation = Set::Instantiate();
} else if (strcmp(type, "fire") == 0) {
op->operation = new Fire;
*op->operation = Fire::Instantiate();
} else if (strcmp(type, "chop") == 0) {
op->operation = new Chop;
*op->operation = Chop::Instantiate();
} else if (strcmp(type, "cut") == 0) {
op->operation = new Cut;
*op->operation = Cut::Instantiate();
} else if (strcmp(type, "create") == 0) {
op->operation = new Create;
*op->operation = Create::Instantiate();
} else if (strcmp(type, "setup") == 0) {
op->operation = new Setup;
*op->operation = Setup::Instantiate();
} else if (strcmp(type, "look") == 0) {
op->operation = new Look;
*op->operation = Look::Instantiate();
} else if (strcmp(type, "move") == 0) {
op->operation = new Move;
*op->operation = Move::Instantiate();
} else if (strcmp(type, "talk") == 0) {
op->operation = new Talk;
*op->operation = Talk::Instantiate();
} else if (strcmp(type, "touch") == 0) {
op->operation = new Touch;
*op->operation = Touch::Instantiate();
} else if (strcmp(type, "eat") == 0) {
op->operation = new Eat;
*op->operation = Eat::Instantiate();
} else if (strcmp(type, "nourish") == 0) {
op->operation = new Nourish;
*op->operation = Nourish::Instantiate();
} else if ((strcmp(type,"thought")==0) || (strcmp(type,"goal_info")==0)) {
Py_DECREF(op);
Py_INCREF(Py_None);
return Py_None;
} else {
fprintf(stderr, "ERROR: PYTHON CREATING AN UNHANDLED %s OPERATION\n", type);
//*op->operation = RootOperation::Instantiate();
Py_DECREF(op);
Py_INCREF(Py_None);
return Py_None;
}
op->own = 1;
if (PyMapping_HasKeyString(kwds, "to")) {
to = PyMapping_GetItemString(kwds, "to");
PyObject * to_id;
if (PyString_Check(to)) {
to_id = to;
} else if ((to_id = PyObject_GetAttrString(to, "id")) == NULL) {
fprintf(stderr, "To was not really an entity, as it had no id\n");
return NULL;
}
if (!PyString_Check(to_id)) {
fprintf(stderr, "To id is not a string\n");
return NULL;
}
op->operation->SetTo(PyString_AsString(to_id));
}
if (PyMapping_HasKeyString(kwds, "from_")) {
from = PyMapping_GetItemString(kwds, "from_");
PyObject * from_id;
if (PyString_Check(from)) {
from_id = from;
} else if ((from_id = PyObject_GetAttrString(from, "id")) == NULL) {
fprintf(stderr, "From was not really an entity, as it had no id\n");
return NULL;
}
if (!PyString_Check(from_id)) {
fprintf(stderr, "From id is not a string\n");
return NULL;
}
op->operation->SetFrom(PyString_AsString(from_id));
// FIXME I think I need to actually do something with said value now
}
Object::ListType args_list;
addToArgs(args_list, arg1);
addToArgs(args_list, arg2);
addToArgs(args_list, arg3);
op->operation->SetArgs(args_list);
return (PyObject *)op;
}
static PyObject * set_kw(PyObject * meth_self, PyObject * args)
{
// Takes self, kw, name, default=None
PyObject * self;
PyObject * kw;
char * name;
PyObject * def = NULL;
if (!PyArg_ParseTuple(args, "OOs|O", &self, &kw, &name, &def)) {
return NULL;
}
PyObject * attr = PyObject_GetAttrString(self, "attributes");
if (attr == NULL) {
PyErr_SetString(PyExc_TypeError, "SET_KW: No attributes list");
return NULL;
}
int i = PyList_Size(attr);
char * entry;
PyObject * item;
for(i= 0; i < PyList_Size(attr); i++) {
item = PyList_GetItem(attr, i);
if (!PyString_Check(item)) {
continue;
}
entry = PyString_AsString(item);
if (strcmp(entry, name) == 0) {
goto list_contains_it;
}
// Should I free entry at this point?
}
{
PyObject * namestr = PyString_FromString(name);
PyList_Append(attr, namestr);
Py_DECREF(namestr);
}
list_contains_it:
if (!PyDict_Check(kw)) {
PyErr_SetString(PyExc_TypeError, "SET_KW: kw not a dict");
return NULL;
}
PyObject * value = NULL;
if ((value = PyDict_GetItemString(kw, name)) == NULL) {
PyObject * copy = PyDict_GetItemString(kw, "copy");
if ((copy != NULL) && (PyObject_HasAttrString(copy, name))) {
value = PyObject_GetAttrString(copy, name);
} else {
value = def;
}
}
if (value == NULL) {
Py_INCREF(Py_None);
value = Py_None;
}
PyObject_SetAttrString(self, name, value);
Py_INCREF(Py_None);
return Py_None;
}
static PyMethodDef atlas_methods[] = {
/* {"system", spam_system, METH_VARARGS}, */
{"Operation", (PyCFunction)operation_new, METH_VARARGS|METH_KEYWORDS},
{"isLocation", is_location, METH_VARARGS},
{"Location", location_new, METH_VARARGS},
{"Object", object_new, METH_VARARGS},
{"Entity", (PyCFunction)entity_new, METH_VARARGS|METH_KEYWORDS},
{"Message", oplist_new, METH_VARARGS},
{"cppThing", cppthing_new, METH_VARARGS},
{NULL, NULL} /* Sentinel */
};
static PyMethodDef Vector3D_methods[] = {
{"Vector3D", vector3d_new, METH_VARARGS},
{NULL, NULL} /* Sentinel */
};
static PyMethodDef server_methods[] = {
{"WorldTime", worldtime_new, METH_VARARGS},
{NULL, NULL} /* Sentinel */
};
static PyMethodDef common_methods[] = {
//{"null", null_new, METH_VARARGS},
{NULL, NULL} /* Sentinel */
};
static PyMethodDef misc_methods[] = {
{"set_kw", set_kw, METH_VARARGS},
{NULL, NULL} /* Sentinel */
};
void init_python_api()
{
string pypath("");
list<string>::const_iterator I;
for(I = rulesets.begin(); I != rulesets.end(); I++) {
pypath = pypath + install_directory + "/share/cyphesis/rulesets/" +
*I + ":";
}
setenv("PYTHONPATH", pypath.c_str(), 1);
Py_Initialize();
PyRun_SimpleString("from hooks import ruleset_import_hooks\n");
PyRun_SimpleString("ruleset_import_hooks.install([\"acorn\",\"basic\"])\n");
if (Py_InitModule("atlas", atlas_methods) == NULL) {
fprintf(stderr, "Failed to Create atlas module\n");
return;
}
if (Py_InitModule("Vector3D", Vector3D_methods) == NULL) {
fprintf(stderr, "Failed to Create Vector3D module\n");
return;
}
PyObject * misc;
if ((misc = Py_InitModule("misc", misc_methods)) == NULL) {
fprintf(stderr, "Failed to Create misc module\n");
return;
}
PyObject * common;
PyObject * dict;
if ((common = Py_InitModule("common", common_methods)) == NULL) {
fprintf(stderr, "Failed to Create common module\n");
return;
}
PyObject * _const = PyModule_New("const");
PyObject * log = PyModule_New("log");
dict = PyModule_GetDict(common);
PyDict_SetItemString(dict, "const", _const);
PyDict_SetItemString(dict, "log", log);
PyObject * debug = (PyObject *)PyObject_NEW(FunctionObject, &log_debug_type);
PyObject_SetAttrString(log, "debug", debug);
//PyDict_SetItemString(dict, "misc", misc);
PyObject_SetAttrString(_const, "server_python", PyInt_FromLong(0));
PyObject_SetAttrString(_const, "debug_level",
PyInt_FromLong(consts::debug_level));
PyObject_SetAttrString(_const, "debug_thinking",
PyInt_FromLong(consts::debug_thinking));
PyObject_SetAttrString(_const, "time_multiplier",
PyFloat_FromDouble(consts::time_multiplier));
PyObject_SetAttrString(_const, "base_velocity_coefficient",
PyFloat_FromDouble(consts::base_velocity_coefficient));
PyObject_SetAttrString(_const, "base_velocity",
PyFloat_FromDouble(consts::base_velocity));
PyObject_SetAttrString(_const, "basic_tick",
PyFloat_FromDouble(consts::basic_tick));
PyObject_SetAttrString(_const, "day_in_seconds",
PyInt_FromLong(consts::day_in_seconds));
PyObject_SetAttrString(_const, "sight_range",
PyFloat_FromDouble(consts::sight_range));
PyObject_SetAttrString(_const, "hearing_range",
PyFloat_FromDouble(consts::hearing_range));
PyObject_SetAttrString(_const, "collision_range",
PyFloat_FromDouble(consts::collision_range));
PyObject_SetAttrString(_const, "enable_ranges",
PyInt_FromLong(consts::enable_ranges));
PyObject * server;
if ((server = Py_InitModule("server", server_methods)) == NULL) {
fprintf(stderr, "Failed to Create server thing\n");
return;
}
dict = PyModule_GetDict(server);
PyObject * dictlist = PyModule_New("dictlist");
PyObject * add_value = (PyObject *)PyObject_NEW(FunctionObject, &dictlist_add_value_type);
PyObject_SetAttrString(dictlist, "add_value", add_value);
PyObject * remove_value = (PyObject *)PyObject_NEW(FunctionObject, &dictlist_remove_value_type);
PyObject_SetAttrString(dictlist, "remove_value", remove_value);
PyDict_SetItemString(dict, "dictlist", dictlist);
}