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Comparing deliantra/server/include/object.h (file contents):
Revision 1.76 by root, Sat Dec 30 21:18:29 2006 UTC vs.
Revision 1.81 by root, Sun Jan 7 02:39:14 2007 UTC

1/* 1/*
2 CrossFire, A Multiplayer game for X-windows 2 CrossFire, A Multiplayer game for X-windows
3 3
4 Copyright (C) 2005, 2006, 2007 Marc Lehmann & Crossfire+ Development Team
4 Copyright (C) 2001 Mark Wedel & Crossfire Development Team 5 Copyright (C) 2001 Mark Wedel & Crossfire Development Team
5 Copyright (C) 1992 Frank Tore Johansen 6 Copyright (C) 1992 Frank Tore Johansen
6 7
7 This program is free software; you can redistribute it and/or modify 8 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by 9 it under the terms of the GNU General Public License as published by
27#include <bitset> 28#include <bitset>
28 29
29#include "cfperl.h" 30#include "cfperl.h"
30#include "shstr.h" 31#include "shstr.h"
31 32
32typedef uint32 tag_t; 33typedef int tag_t;
33#define NUM_BODY_LOCATIONS 12 34#define NUM_BODY_LOCATIONS 12
34#define BODY_ARMS 1 35#define BODY_ARMS 1
35 36
36/* See common/item.c */ 37/* See common/item.c */
37 38
211 uint8 ACC (RW, will_apply); /* See crossfire.doc */ 212 uint8 ACC (RW, will_apply); /* See crossfire.doc */
212}; 213};
213 214
214struct object : zero_initialised, object_copy 215struct object : zero_initialised, object_copy
215{ 216{
216 typedef unordered_vector<object *> vector;
217
218 // These variables are not changed by ->copy_to 217 // These variables are not changed by ->copy_to
219 maptile_ptr ACC (RW, map); /* Pointer to the map in which this object is present */ 218 maptile_ptr ACC (RW, map); /* Pointer to the map in which this object is present */
220 219
221 tag_t ACC (RW, count); /* Generation count for this object */
222 UUID ACC (RW, uuid); // Unique Identifier, survives saves etc. 220 UUID ACC (RW, uuid); // Unique Identifier, survives saves etc.
221 int ACC (RO, count); // index into objects
222 int ACC (RO, active); // index into actives
223 223
224 player_ptr ACC (RW, contr); /* Pointer to the player which control this object */ 224 player_ptr ACC (RW, contr); /* Pointer to the player which control this object */
225 object *ACC (RW, next); /* Pointer to the next object in the free/used list */ 225
226 object *ACC (RW, prev); /* Pointer to the previous object in the free/used list */
227 object *ACC (RW, active_next);/* Next & previous object in the 'active' */
228 object *ACC (RW, active_prev);/* List. This is used in process_events */
229 /* so that the entire object list does not */
230 /* need to be gone through. */
231 object *ACC (RW, below); /* Pointer to the object stacked below this one */ 226 object *ACC (RW, below); /* Pointer to the object stacked below this one */
232 object *ACC (RW, above); /* Pointer to the object stacked above this one */ 227 object *ACC (RW, above); /* Pointer to the object stacked above this one */
233 /* Note: stacked in the *same* environment */ 228 /* Note: stacked in the *same* environment */
234 object *inv; /* Pointer to the first object in the inventory */ 229 object *inv; /* Pointer to the first object in the inventory */
235 object *ACC (RW, container); /* Current container being used. I think this 230 object *ACC (RW, container); /* Current container being used. I think this
240 */ 235 */
241 object *ACC (RW, more); /* Pointer to the rest of a large body of objects */ 236 object *ACC (RW, more); /* Pointer to the rest of a large body of objects */
242 object *head; /* Points to the main object of a large body */ // NO ACC, perl semantics are different 237 object *head; /* Points to the main object of a large body */ // NO ACC, perl semantics are different
243 client_container *seen_by; // seen by which player/container currently? 238 client_container *seen_by; // seen by which player/container currently?
244 239
245 static vector active; // active objects, not yet used 240 //static vector active_list; // active objects, not yet used
246 static vector objects; // not used yet, use first->next->... 241 //static vector object_list; // not used yet, use first->next->...
247 static object *first; // will be replaced by "objects" 242 static object *first; // will be replaced by "objects"
248 243
249 MTH static object *create (); 244 MTH static object *create ();
250 MTH void copy_to (object *dst); 245 MTH void copy_to (object *dst);
251 MTH object *clone (); // create + copy_to 246 MTH object *clone (); // create + copy_to
337 332
338 // insert object at same map position as 'where' 333 // insert object at same map position as 'where'
339 // handles both inventory and map "positions" 334 // handles both inventory and map "positions"
340 MTH object *insert_at (object *where, object *originator = 0, int flags = 0); 335 MTH object *insert_at (object *where, object *originator = 0, int flags = 0);
341 336
337 MTH void activate ();
338 MTH void deactivate ();
342 MTH void activate (bool recursive = true); 339 MTH void activate_recursive ();
343 MTH void deactivate (bool recursive = true); 340 MTH void deactivate_recursive ();
341
342 // set the givne flag on all objects in the inventory recursively
343 MTH void set_flag_inv (int flag, int value = 1);
344 344
345 void enter_exit (object *exit);//PERL 345 void enter_exit (object *exit);//PERL
346 MTH void enter_map (maptile *newmap, int x, int y); 346 MTH void enter_map (maptile *newmap, int x, int y);
347 347
348 // returns the mapspace this object is in 348 // returns the mapspace this object is in
361 operator object *() const { return item; } 361 operator object *() const { return item; }
362 362
363 object *operator ->() const { return item; } 363 object *operator ->() const { return item; }
364 object &operator * () const { return *item; } 364 object &operator * () const { return *item; }
365 }; 365 };
366
367 MTH unsigned int random_seed () const
368 {
369 return (unsigned int)uuid.seq;
370 }
366 371
367 // depth-first recursive iterator 372 // depth-first recursive iterator
368 struct depth_iterator : iterator_base 373 struct depth_iterator : iterator_base
369 { 374 {
370 depth_iterator (object *container); 375 depth_iterator (object *container);
390 void unlink (); 395 void unlink ();
391 396
392 object (); 397 object ();
393 ~object (); 398 ~object ();
394}; 399};
400
401typedef object_vector<object, &object::count > objectvec;
402typedef object_vector<object, &object::active> activevec;
403
404extern objectvec objects;
405extern activevec actives;
406
407#define for_all_objects(var) \
408 for (int _i = 0; _i < objects.size (); ++_i) \
409 declvar (object *, var, objects [_i])
410
411#define for_all_actives(var) \
412 for (int _i = 0; _i < actives.size (); ++_i) \
413 declvar (object *, var, actives [_i])
395 414
396typedef struct oblnk 415typedef struct oblnk
397{ /* Used to link together several objects */ 416{ /* Used to link together several objects */
398 object_ptr ob; 417 object_ptr ob;
399 struct oblnk *next; 418 struct oblnk *next;
436 sint8 ACC (RW, tail_x), ACC (RW, tail_y); /* Where the lower right most portion of the object is 455 sint8 ACC (RW, tail_x), ACC (RW, tail_y); /* Where the lower right most portion of the object is
437 * in comparison to the head. 456 * in comparison to the head.
438 */ 457 */
439}; 458};
440 459
441extern object *objects;
442extern object *active_objects;
443
444extern int nrofallocobjects;
445
446/* This returns TRUE if the object is something that 460/* This returns TRUE if the object is something that
447 * should be displayed in the look window 461 * should be displayed in the floorbox window
448 */ 462 */
449#define LOOK_OBJ(ob) (!ob->invisible && ob->type != PLAYER && ob->type != EVENT_CONNECTOR) 463#define LOOK_OBJ(ob) (!ob->invisible && ob->type != PLAYER && ob->type != EVENT_CONNECTOR)
450 464
451/* Used by update_object to know if the object being passed is 465/* Used by update_object to know if the object being passed is
452 * being added or removed. 466 * being added or removed.

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