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Comparing deliantra/server/common/map.C (file contents):
Revision 1.45 by root, Wed Dec 20 09:14:21 2006 UTC vs.
Revision 1.70 by root, Thu Jan 4 20:29:45 2007 UTC

19 Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. 19 Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
20 20
21 The authors can be reached via e-mail at <crossfire@schmorp.de> 21 The authors can be reached via e-mail at <crossfire@schmorp.de>
22*/ 22*/
23 23
24
25#include <global.h> 24#include <global.h>
26#include <funcpoint.h> 25#include <funcpoint.h>
27 26
28#include <loader.h> 27#include <loader.h>
29#include <unistd.h> 28#include <unistd.h>
30 29
31#include "path.h" 30#include "path.h"
32
33/*
34 * Returns the maptile which has a name matching the given argument.
35 * return NULL if no match is found.
36 */
37
38maptile *
39has_been_loaded (const char *name)
40{
41 maptile *map;
42
43 if (!name || !*name)
44 return 0;
45 for (map = first_map; map; map = map->next)
46 if (!strcmp (name, map->path))
47 break;
48 return (map);
49}
50 31
51/* 32/*
52 * This makes a path absolute outside the world of Crossfire. 33 * This makes a path absolute outside the world of Crossfire.
53 * In other words, it prepends LIBDIR/MAPDIR/ to the given path 34 * In other words, it prepends LIBDIR/MAPDIR/ to the given path
54 * and returns the pointer to a static array containing the result. 35 * and returns the pointer to a static array containing the result.
55 * it really should be called create_mapname 36 * it really should be called create_mapname
56 */ 37 */
57
58const char * 38const char *
59create_pathname (const char *name) 39create_pathname (const char *name)
60{ 40{
61 static char buf[MAX_BUF]; 41 static char buf[8192];
62
63 /* Why? having extra / doesn't confuse unix anyplace? Dependancies
64 * someplace else in the code? msw 2-17-97
65 */
66 if (*name == '/')
67 sprintf (buf, "%s/%s%s", settings.datadir, settings.mapdir, name);
68 else
69 sprintf (buf, "%s/%s/%s", settings.datadir, settings.mapdir, name); 42 snprintf (buf, sizeof (buf), "%s/%s/%s", settings.datadir, settings.mapdir, name);
70 return (buf); 43 return buf;
71} 44}
72
73/*
74 * same as create_pathname, but for the overlay maps.
75 */
76
77const char *
78create_overlay_pathname (const char *name)
79{
80 static char buf[MAX_BUF];
81
82 /* Why? having extra / doesn't confuse unix anyplace? Dependancies
83 * someplace else in the code? msw 2-17-97
84 */
85 if (*name == '/')
86 sprintf (buf, "%s/%s%s", settings.localdir, settings.mapdir, name);
87 else
88 sprintf (buf, "%s/%s/%s", settings.localdir, settings.mapdir, name);
89 return (buf);
90}
91
92/*
93 * same as create_pathname, but for the template maps.
94 */
95
96const char *
97create_template_pathname (const char *name)
98{
99 static char buf[MAX_BUF];
100
101 /* Why? having extra / doesn't confuse unix anyplace? Dependancies
102 * someplace else in the code? msw 2-17-97
103 */
104 if (*name == '/')
105 sprintf (buf, "%s/%s%s", settings.localdir, settings.templatedir, name);
106 else
107 sprintf (buf, "%s/%s/%s", settings.localdir, settings.templatedir, name);
108 return (buf);
109}
110
111/*
112 * This makes absolute path to the itemfile where unique objects
113 * will be saved. Converts '/' to '@'. I think it's essier maintain
114 * files than full directory structure, but if this is problem it can
115 * be changed.
116 */
117static const char *
118create_items_path (const char *s)
119{
120 static char buf[MAX_BUF];
121 char *t;
122
123 if (*s == '/')
124 s++;
125
126 sprintf (buf, "%s/%s/", settings.localdir, settings.uniquedir);
127
128 for (t = buf + strlen (buf); *s; s++, t++)
129 if (*s == '/')
130 *t = '@';
131 else
132 *t = *s;
133 *t = 0;
134 return (buf);
135}
136
137 45
138/* 46/*
139 * This function checks if a file with the given path exists. 47 * This function checks if a file with the given path exists.
140 * -1 is returned if it fails, otherwise the mode of the file 48 * -1 is returned if it fails, otherwise the mode of the file
141 * is returned. 49 * is returned.
148 * the rest of the code only cares that the file is readable. 56 * the rest of the code only cares that the file is readable.
149 * when the editor goes away, the call to stat should probably be 57 * when the editor goes away, the call to stat should probably be
150 * replaced by an access instead (similar to the windows one, but 58 * replaced by an access instead (similar to the windows one, but
151 * that seems to be missing the prepend_dir processing 59 * that seems to be missing the prepend_dir processing
152 */ 60 */
153
154int 61int
155check_path (const char *name, int prepend_dir) 62check_path (const char *name, int prepend_dir)
156{ 63{
157 char buf[MAX_BUF]; 64 char buf[MAX_BUF];
158 65
184 if ((statbuf.st_mode & S_IWGRP && getegid () == statbuf.st_gid) || 91 if ((statbuf.st_mode & S_IWGRP && getegid () == statbuf.st_gid) ||
185 (statbuf.st_mode & S_IWUSR && geteuid () == statbuf.st_uid) || (statbuf.st_mode & S_IWOTH)) 92 (statbuf.st_mode & S_IWUSR && geteuid () == statbuf.st_uid) || (statbuf.st_mode & S_IWOTH))
186 mode |= 2; 93 mode |= 2;
187 94
188 return (mode); 95 return (mode);
189}
190
191/*
192 * Prints out debug-information about a map.
193 * Dumping these at llevError doesn't seem right, but is
194 * necessary to make sure the information is in fact logged.
195 */
196
197void
198dump_map (const maptile *m)
199{
200 LOG (llevError, "Map %s status: %d.\n", m->path, m->in_memory);
201 LOG (llevError, "Size: %dx%d Start: %d,%d\n", MAP_WIDTH (m), MAP_HEIGHT (m), MAP_ENTER_X (m), MAP_ENTER_Y (m));
202
203 if (m->msg != NULL)
204 LOG (llevError, "Message:\n%s", m->msg);
205
206 if (m->maplore != NULL)
207 LOG (llevError, "Lore:\n%s", m->maplore);
208
209 if (m->tmpname != NULL)
210 LOG (llevError, "Tmpname: %s\n", m->tmpname);
211
212 LOG (llevError, "Difficulty: %d\n", m->difficulty);
213 LOG (llevError, "Darkness: %d\n", m->darkness);
214}
215
216/*
217 * Prints out debug-information about all maps.
218 * This basically just goes through all the maps and calls
219 * dump_map on each one.
220 */
221
222void
223dump_all_maps (void)
224{
225 maptile *m;
226
227 for (m = first_map; m != NULL; m = m->next)
228 {
229 dump_map (m);
230 }
231} 96}
232 97
233/* This rolls up wall, blocks_magic, blocks_view, etc, all into 98/* This rolls up wall, blocks_magic, blocks_view, etc, all into
234 * one function that just returns a P_.. value (see map.h) 99 * one function that just returns a P_.. value (see map.h)
235 * it will also do map translation for tiled maps, returning 100 * it will also do map translation for tiled maps, returning
239 * is needed. The case of not passing values is if we're just 104 * is needed. The case of not passing values is if we're just
240 * checking for the existence of something on those spaces, but 105 * checking for the existence of something on those spaces, but
241 * don't expect to insert/remove anything from those spaces. 106 * don't expect to insert/remove anything from those spaces.
242 */ 107 */
243int 108int
244get_map_flags (maptile *oldmap, maptile **newmap, sint16 x, sint16 y, sint16 * nx, sint16 * ny) 109get_map_flags (maptile *oldmap, maptile **newmap, sint16 x, sint16 y, sint16 *nx, sint16 *ny)
245{ 110{
246 sint16 newx, newy; 111 sint16 newx = x;
247 int retval = 0; 112 sint16 newy = y;
248 maptile *mp;
249 113
250 if (out_of_map (oldmap, x, y)) 114 maptile *mp = get_map_from_coord (oldmap, &newx, &newy);
115
116 if (!mp)
251 return P_OUT_OF_MAP; 117 return P_OUT_OF_MAP;
252 newx = x;
253 newy = y;
254 mp = get_map_from_coord (oldmap, &newx, &newy);
255 if (mp != oldmap)
256 retval |= P_NEW_MAP;
257 if (newmap)
258 *newmap = mp;
259 if (nx)
260 *nx = newx;
261 if (ny)
262 *ny = newy;
263 118
264 retval |= mp->spaces[newx + mp->width * newy].flags; 119 if (newmap) *newmap = mp;
120 if (nx) *nx = newx;
121 if (ny) *ny = newy;
265 122
266 return retval; 123 return mp->at (newx, newy).flags () | (mp != oldmap ? P_NEW_MAP : 0);
267} 124}
268 125
269/* 126/*
270 * Returns true if the given coordinate is blocked except by the 127 * Returns true if the given coordinate is blocked except by the
271 * object passed is not blocking. This is used with 128 * object passed is not blocking. This is used with
294 } 151 }
295 152
296 /* Save some cycles - instead of calling get_map_flags(), just get the value 153 /* Save some cycles - instead of calling get_map_flags(), just get the value
297 * directly. 154 * directly.
298 */ 155 */
299 mflags = m->spaces[sx + m->width * sy].flags; 156 mflags = m->at (sx, sy).flags ();
300 157
301 blocked = GET_MAP_MOVE_BLOCK (m, sx, sy); 158 blocked = GET_MAP_MOVE_BLOCK (m, sx, sy);
302 159
303 /* If space is currently not blocked by anything, no need to 160 /* If space is currently not blocked by anything, no need to
304 * go further. Not true for players - all sorts of special 161 * go further. Not true for players - all sorts of special
405 archetype *tmp; 262 archetype *tmp;
406 int flag; 263 int flag;
407 maptile *m1; 264 maptile *m1;
408 sint16 sx, sy; 265 sint16 sx, sy;
409 266
410 if (ob == NULL) 267 if (!ob)
411 { 268 {
412 flag = get_map_flags (m, &m1, x, y, &sx, &sy); 269 flag = get_map_flags (m, &m1, x, y, &sx, &sy);
413 if (flag & P_OUT_OF_MAP) 270 if (flag & P_OUT_OF_MAP)
414 return P_OUT_OF_MAP; 271 return P_OUT_OF_MAP;
415 272
416 /* don't have object, so don't know what types would block */ 273 /* don't have object, so don't know what types would block */
417 return (GET_MAP_MOVE_BLOCK (m1, sx, sy)); 274 return m1->at (sx, sy).move_block;
418 } 275 }
419 276
420 for (tmp = ob->arch; tmp != NULL; tmp = tmp->more) 277 for (tmp = ob->arch; tmp; tmp = tmp->more)
421 { 278 {
422 flag = get_map_flags (m, &m1, x + tmp->clone.x, y + tmp->clone.y, &sx, &sy); 279 flag = get_map_flags (m, &m1, x + tmp->clone.x, y + tmp->clone.y, &sx, &sy);
423 280
424 if (flag & P_OUT_OF_MAP) 281 if (flag & P_OUT_OF_MAP)
425 return P_OUT_OF_MAP; 282 return P_OUT_OF_MAP;
426 if (flag & P_IS_ALIVE) 283 if (flag & P_IS_ALIVE)
427 return P_IS_ALIVE; 284 return P_IS_ALIVE;
428 285
286 mapspace &ms = m1->at (sx, sy);
287
429 /* find_first_free_spot() calls this function. However, often 288 /* find_first_free_spot() calls this function. However, often
430 * ob doesn't have any move type (when used to place exits) 289 * ob doesn't have any move type (when used to place exits)
431 * so the AND operation in OB_TYPE_MOVE_BLOCK doesn't work. 290 * so the AND operation in OB_TYPE_MOVE_BLOCK doesn't work.
432 */ 291 */
433 292
434 if (ob->move_type == 0 && GET_MAP_MOVE_BLOCK (m1, sx, sy) != MOVE_ALL) 293 if (ob->move_type == 0 && ms.move_block != MOVE_ALL)
435 continue; 294 continue;
436 295
437 /* Note it is intentional that we check ob - the movement type of the 296 /* Note it is intentional that we check ob - the movement type of the
438 * head of the object should correspond for the entire object. 297 * head of the object should correspond for the entire object.
439 */ 298 */
440 if (OB_TYPE_MOVE_BLOCK (ob, GET_MAP_MOVE_BLOCK (m1, sx, sy))) 299 if (OB_TYPE_MOVE_BLOCK (ob, ms.move_block))
441 return P_NO_PASS; 300 return P_NO_PASS;
442 } 301 }
443 302
444 return 0; 303 return 0;
445} 304}
448 * into inventory, but just links them. What this does is go through 307 * into inventory, but just links them. What this does is go through
449 * and insert them properly. 308 * and insert them properly.
450 * The object 'container' is the object that contains the inventory. 309 * The object 'container' is the object that contains the inventory.
451 * This is needed so that we can update the containers weight. 310 * This is needed so that we can update the containers weight.
452 */ 311 */
453
454void 312void
455fix_container (object *container) 313fix_container (object *container)
456{ 314{
457 object *tmp = container->inv, *next; 315 object *tmp = container->inv, *next;
458 316
459 container->inv = NULL; 317 container->inv = 0;
460 while (tmp != NULL) 318 while (tmp)
461 { 319 {
462 next = tmp->below; 320 next = tmp->below;
463 if (tmp->inv) 321 if (tmp->inv)
464 fix_container (tmp); 322 fix_container (tmp);
323
465 (void) insert_ob_in_ob (tmp, container); 324 insert_ob_in_ob (tmp, container);
466 tmp = next; 325 tmp = next;
467 } 326 }
327
468 /* sum_weight will go through and calculate what all the containers are 328 /* sum_weight will go through and calculate what all the containers are
469 * carrying. 329 * carrying.
470 */ 330 */
471 sum_weight (container); 331 sum_weight (container);
332}
333
334void
335maptile::set_object_flag (int flag, int value)
336{
337 if (!spaces)
338 return;
339
340 for (mapspace *ms = spaces + size (); ms-- > spaces; )
341 for (object *tmp = ms->bot; tmp; tmp = tmp->above)
342 tmp->flag [flag] = value;
472} 343}
473 344
474/* link_multipart_objects go through all the objects on the map looking 345/* link_multipart_objects go through all the objects on the map looking
475 * for objects whose arch says they are multipart yet according to the 346 * for objects whose arch says they are multipart yet according to the
476 * info we have, they only have the head (as would be expected when 347 * info we have, they only have the head (as would be expected when
477 * they are saved). We do have to look for the old maps that did save 348 * they are saved). We do have to look for the old maps that did save
478 * the more sections and not re-add sections for them. 349 * the more sections and not re-add sections for them.
479 */ 350 */
480 351void
481static void 352maptile::link_multipart_objects ()
482link_multipart_objects (maptile *m)
483{ 353{
484 int x, y; 354 if (!spaces)
485 object *tmp, *op, *last, *above; 355 return;
486 archetype *at;
487 356
488 for (x = 0; x < MAP_WIDTH (m); x++) 357 for (mapspace *ms = spaces + size (); ms-- > spaces; )
489 for (y = 0; y < MAP_HEIGHT (m); y++) 358 for (object *tmp = ms->bot; tmp; )
490 for (tmp = GET_MAP_OB (m, x, y); tmp != NULL; tmp = above)
491 { 359 {
492 above = tmp->above; 360 object *above = tmp->above;
493 361
494 /* already multipart - don't do anything more */ 362 /* already multipart - don't do anything more */
495 if (tmp->head || tmp->more) 363 if (!tmp->head && !tmp->more)
496 continue; 364 {
497
498 /* If there is nothing more to this object, this for loop 365 /* If there is nothing more to this object, this for loop
499 * won't do anything. 366 * won't do anything.
500 */ 367 */
501 for (at = tmp->arch->more, last = tmp; at != NULL; at = at->more, last = op) 368 archetype *at;
369 object *last, *op;
370 for (at = tmp->arch->more, last = tmp;
371 at;
372 at = at->more, last = op)
502 { 373 {
503 op = arch_to_object (at); 374 op = arch_to_object (at);
504 375
505 /* update x,y coordinates */ 376 /* update x,y coordinates */
506 op->x += tmp->x; 377 op->x += tmp->x;
507 op->y += tmp->y; 378 op->y += tmp->y;
508 op->head = tmp; 379 op->head = tmp;
509 op->map = m; 380 op->map = this;
510 last->more = op; 381 last->more = op;
511 op->name = tmp->name; 382 op->name = tmp->name;
512 op->title = tmp->title; 383 op->title = tmp->title;
384
513 /* we could link all the parts onto tmp, and then just 385 /* we could link all the parts onto tmp, and then just
514 * call insert_ob_in_map once, but the effect is the same, 386 * call insert_ob_in_map once, but the effect is the same,
515 * as insert_ob_in_map will call itself with each part, and 387 * as insert_ob_in_map will call itself with each part, and
516 * the coding is simpler to just to it here with each part. 388 * the coding is simpler to just to it here with each part.
517 */ 389 */
518 insert_ob_in_map (op, op->map, tmp, INS_NO_MERGE | INS_ABOVE_FLOOR_ONLY | INS_NO_WALK_ON); 390 insert_ob_in_map (op, op->map, tmp, INS_NO_MERGE | INS_ABOVE_FLOOR_ONLY | INS_NO_WALK_ON);
519 } /* for at = tmp->arch->more */ 391 }
520 } /* for objects on this space */ 392 }
393
394 tmp = above;
395 }
521} 396}
522 397
523/* 398/*
524 * Loads (ands parses) the objects into a given map from the specified 399 * Loads (ands parses) the objects into a given map from the specified
525 * file pointer. 400 * file pointer.
526 * mapflags is the same as we get with load_original_map 401 * mapflags is the same as we get with load_original_map
527 */ 402 */
528void 403bool
529load_objects (maptile *m, object_thawer & fp, int mapflags) 404maptile::load_objects (object_thawer &thawer)
530{ 405{
531 int i, j;
532 int unique; 406 int unique;
533 object *op, *prev = NULL, *last_more = NULL, *otmp; 407 object *op, *prev = NULL, *last_more = NULL, *otmp;
534 408
535 op = object::create (); 409 op = object::create ();
536 op->map = m; /* To handle buttons correctly */ 410 op->map = this; /* To handle buttons correctly */
537 411
538 while ((i = load_object (fp, op, mapflags))) 412 while (int i = load_object (thawer, op, 0))
539 { 413 {
540 /* if the archetype for the object is null, means that we 414 /* if the archetype for the object is null, means that we
541 * got an invalid object. Don't do anything with it - the game 415 * got an invalid object. Don't do anything with it - the game
542 * or editor will not be able to do anything with it either. 416 * or editor will not be able to do anything with it either.
543 */ 417 */
545 { 419 {
546 LOG (llevDebug, "Discarding object without arch: %s\n", op->name ? (const char *) op->name : "(null)"); 420 LOG (llevDebug, "Discarding object without arch: %s\n", op->name ? (const char *) op->name : "(null)");
547 continue; 421 continue;
548 } 422 }
549 423
550
551 switch (i) 424 switch (i)
552 { 425 {
553 case LL_NORMAL: 426 case LL_NORMAL:
554 /* if we are loading an overlay, put the floors on the bottom */
555 if ((QUERY_FLAG (op, FLAG_IS_FLOOR) || QUERY_FLAG (op, FLAG_OVERLAY_FLOOR)) && mapflags & MAP_OVERLAY)
556 insert_ob_in_map (op, m, op, INS_NO_MERGE | INS_NO_WALK_ON | INS_ABOVE_FLOOR_ONLY | INS_MAP_LOAD);
557 else
558 insert_ob_in_map (op, m, op, INS_NO_MERGE | INS_NO_WALK_ON | INS_ON_TOP | INS_MAP_LOAD); 427 insert_ob_in_map (op, this, op, INS_NO_MERGE | INS_NO_WALK_ON | INS_ON_TOP | INS_MAP_LOAD);
559 428
560 if (op->inv) 429 if (op->inv)
561 sum_weight (op); 430 sum_weight (op);
562 431
563 prev = op, last_more = op; 432 prev = op, last_more = op;
564 break; 433 break;
565 434
566 case LL_MORE: 435 case LL_MORE:
567 insert_ob_in_map (op, m, op, INS_NO_MERGE | INS_NO_WALK_ON | INS_ABOVE_FLOOR_ONLY); 436 insert_ob_in_map (op, this, op, INS_NO_MERGE | INS_NO_WALK_ON | INS_ABOVE_FLOOR_ONLY);
568 op->head = prev, last_more->more = op, last_more = op; 437 op->head = prev, last_more->more = op, last_more = op;
569 break; 438 break;
570 } 439 }
571 440
572 if (mapflags & MAP_STYLE)
573 remove_from_active_list (op);
574
575 op = object::create (); 441 op = object::create ();
576 op->map = m; 442 op->map = this;
577 }
578
579 for (i = 0; i < m->width; i++)
580 {
581 for (j = 0; j < m->height; j++)
582 {
583 unique = 0;
584 /* check for unique items, or unique squares */
585 for (otmp = GET_MAP_OB (m, i, j); otmp; otmp = otmp->above)
586 {
587 if (QUERY_FLAG (otmp, FLAG_UNIQUE) || QUERY_FLAG (otmp, FLAG_OBJ_SAVE_ON_OVL))
588 unique = 1;
589
590 if (!(mapflags & (MAP_OVERLAY | MAP_PLAYER_UNIQUE) || unique))
591 SET_FLAG (otmp, FLAG_OBJ_ORIGINAL);
592 }
593 }
594 } 443 }
595 444
596 op->destroy (); 445 op->destroy ();
597 link_multipart_objects (m);
598}
599 446
600/* This saves all the objects on the map in a non destructive fashion. 447#if 0
601 * Modified by MSW 2001-07-01 to do in a single pass - reduces code, 448 for (i = 0; i < width; i++)
602 * and we only save the head of multi part objects - this is needed 449 for (j = 0; j < height; j++)
603 * in order to do map tiling properly.
604 */
605void
606save_objects (maptile *m, object_freezer & fp, object_freezer & fp2, int flag)
607{
608 int i, j = 0, unique = 0;
609 object *op;
610
611 /* first pass - save one-part objects */
612 for (i = 0; i < MAP_WIDTH (m); i++)
613 for (j = 0; j < MAP_HEIGHT (m); j++)
614 { 450 {
615 unique = 0; 451 unique = 0;
452 /* check for unique items, or unique squares */
616 for (op = GET_MAP_OB (m, i, j); op; op = op->above) 453 for (otmp = GET_MAP_OB (m, i, j); otmp; otmp = otmp->above)
617 { 454 {
618 if (QUERY_FLAG (op, FLAG_IS_FLOOR) && QUERY_FLAG (op, FLAG_UNIQUE)) 455 if (QUERY_FLAG (otmp, FLAG_UNIQUE) || QUERY_FLAG (otmp, FLAG_OBJ_SAVE_ON_OVL))
619 unique = 1; 456 unique = 1;
620 457
621 if (op->type == PLAYER) 458 if (!(mapflags & (MAP_OVERLAY | MAP_PLAYER_UNIQUE) || unique))
622 continue; 459 SET_FLAG (otmp, FLAG_OBJ_ORIGINAL);
623
624 if (op->head || op->owner)
625 continue;
626
627 if (unique || QUERY_FLAG (op, FLAG_UNIQUE))
628 save_object (fp2, op, 3);
629 else if (flag == 0 || (flag == 2 && (!QUERY_FLAG (op, FLAG_OBJ_ORIGINAL) && !QUERY_FLAG (op, FLAG_UNPAID))))
630 save_object (fp, op, 3);
631 } 460 }
632 } 461 }
462#endif
463
464 return true;
465}
466
467void
468maptile::activate ()
469{
470 if (!spaces)
471 return;
472
473 for (mapspace *ms = spaces + size (); ms-- > spaces; )
474 for (object *op = ms->bot; op; op = op->above)
475 op->activate_recursive ();
476}
477
478void
479maptile::deactivate ()
480{
481 if (!spaces)
482 return;
483
484 for (mapspace *ms = spaces + size (); ms-- > spaces; )
485 for (object *op = ms->bot; op; op = op->above)
486 op->deactivate_recursive ();
487}
488
489bool
490maptile::save_objects (object_freezer &freezer, int flags)
491{
492 static int cede_count = 0;
493
494 if (flags & IO_HEADER)
495 save_header (freezer);
496
497 if (!spaces)
498 return false;
499
500 for (int i = 0; i < size (); ++i)
501 {
502 if (cede_count >= 500)
503 {
504 cede_count = 0;
505 coroapi::cede ();
506 }
507
508 int unique = 0;
509 for (object *op = spaces [i].bot; op; op = op->above)
510 {
511 // count per-object, but cede only when modification-safe
512 cede_count++;
513
514 if (op->flag [FLAG_UNIQUE] && op->flag [FLAG_IS_FLOOR])
515 unique = 1;
516
517 if (!op->can_map_save ())
518 continue;
519
520 if (unique || op->flag [FLAG_UNIQUE])
521 {
522 if (flags & IO_UNIQUES)
523 save_object (freezer, op, 1);
524 }
525 else if (flags & IO_OBJECTS)
526 save_object (freezer, op, 1);
527 }
528 }
529
530 return true;
531}
532
533bool
534maptile::load_objects (const char *path, bool skip_header)
535{
536 object_thawer thawer (path);
537
538 if (!thawer)
539 return false;
540
541 if (skip_header)
542 for (;;)
543 {
544 keyword kw = thawer.get_kv ();
545
546 if (kw == KW_end)
547 break;
548
549 thawer.skip_kv (kw);
550 }
551
552 return load_objects (thawer);
553}
554
555bool
556maptile::save_objects (const char *path, int flags)
557{
558 object_freezer freezer;
559
560 if (!save_objects (freezer, flags))
561 return false;
562
563 return freezer.save (path);
633} 564}
634 565
635maptile::maptile () 566maptile::maptile ()
636{ 567{
637 in_memory = MAP_SWAPPED; 568 in_memory = MAP_SWAPPED;
569
638 /* The maps used to pick up default x and y values from the 570 /* The maps used to pick up default x and y values from the
639 * map archetype. Mimic that behaviour. 571 * map archetype. Mimic that behaviour.
640 */ 572 */
641 MAP_WIDTH (this) = 16; 573 width = 16;
642 MAP_HEIGHT (this) = 16; 574 height = 16;
643 MAP_RESET_TIMEOUT (this) = 0; 575 reset_timeout = 0;
644 MAP_TIMEOUT (this) = 300; 576 timeout = 300;
645 MAP_ENTER_X (this) = 0; 577 enter_x = 0;
646 MAP_ENTER_Y (this) = 0; 578 enter_y = 0;
647 /*set part to -1 indicating conversion to weather map not yet done */
648 MAP_WORLDPARTX (this) = -1;
649 MAP_WORLDPARTY (this) = -1;
650} 579}
651 580
652/* 581maptile::maptile (int w, int h)
653 * Allocates, initialises, and returns a pointer to a maptile.
654 * Modified to no longer take a path option which was not being
655 * used anyways. MSW 2001-07-01
656 */
657maptile *
658get_linked_map (void)
659{ 582{
660 maptile *mp, *map = new maptile; 583 in_memory = MAP_SWAPPED;
661 584
662 for (mp = first_map; mp && mp->next; mp = mp->next); 585 width = w;
586 height = h;
587 reset_timeout = 0;
588 timeout = 300;
589 enter_x = 0;
590 enter_y = 0;
663 591
664 if (mp == NULL) 592 alloc ();
665 first_map = map;
666 else
667 mp->next = map;
668
669 return map;
670} 593}
671 594
672/* 595/*
673 * Allocates the arrays contained in a maptile. 596 * Allocates the arrays contained in a maptile.
674 * This basically allocates the dynamic array of spaces for the 597 * This basically allocates the dynamic array of spaces for the
675 * map. 598 * map.
676 */ 599 */
677void 600void
678maptile::allocate () 601maptile::alloc ()
679{ 602{
680 in_memory = MAP_IN_MEMORY;
681
682 /* Log this condition and free the storage. We could I suppose
683 * realloc, but if the caller is presuming the data will be intact,
684 * that is their poor assumption.
685 */
686 if (spaces) 603 if (spaces)
687 {
688 LOG (llevError, "allocate_map called with already allocated map (%s)\n", path);
689 free (spaces);
690 }
691
692 spaces = (mapspace *)
693 calloc (1, width * height * sizeof (mapspace));
694
695 if (!spaces)
696 fatal (OUT_OF_MEMORY);
697}
698
699/* Create and returns a map of the specific size. Used
700 * in random map code and the editor.
701 */
702maptile *
703get_empty_map (int sizex, int sizey)
704{
705 maptile *m = get_linked_map ();
706
707 m->width = sizex;
708 m->height = sizey;
709 m->in_memory = MAP_SWAPPED;
710 m->allocate ();
711
712 return m; 604 return;
605
606 spaces = salloc0<mapspace> (size ());
713} 607}
714 608
715/* Takes a string from a map definition and outputs a pointer to the array of shopitems 609/* Takes a string from a map definition and outputs a pointer to the array of shopitems
716 * corresponding to that string. Memory is allocated for this, it must be freed 610 * corresponding to that string. Memory is allocated for this, it must be freed
717 * at a later date. 611 * at a later date.
718 * Called by parse_map_headers below. 612 * Called by parse_map_headers below.
719 */ 613 */
720
721static shopitems * 614static shopitems *
722parse_shop_string (const char *input_string) 615parse_shop_string (const char *input_string)
723{ 616{
724 char *shop_string, *p, *q, *next_semicolon, *next_colon; 617 char *shop_string, *p, *q, *next_semicolon, *next_colon;
725 shopitems *items = NULL; 618 shopitems *items = NULL;
734 p = strchr (p, ';'); 627 p = strchr (p, ';');
735 number_of_entries++; 628 number_of_entries++;
736 if (p) 629 if (p)
737 p++; 630 p++;
738 } 631 }
632
739 p = shop_string; 633 p = shop_string;
740 strip_endline (p); 634 strip_endline (p);
741 items = new shopitems[number_of_entries + 1]; 635 items = new shopitems[number_of_entries + 1];
742 for (i = 0; i < number_of_entries; i++) 636 for (i = 0; i < number_of_entries; i++)
743 { 637 {
744 if (!p) 638 if (!p)
745 { 639 {
746 LOG (llevError, "parse_shop_string: I seem to have run out of string, that shouldn't happen.\n"); 640 LOG (llevError, "parse_shop_string: I seem to have run out of string, that shouldn't happen.\n");
747 break; 641 break;
748 } 642 }
643
749 next_semicolon = strchr (p, ';'); 644 next_semicolon = strchr (p, ';');
750 next_colon = strchr (p, ':'); 645 next_colon = strchr (p, ':');
751 /* if there is a stregth specified, figure out what it is, we'll need it soon. */ 646 /* if there is a stregth specified, figure out what it is, we'll need it soon. */
752 if (next_colon && (!next_semicolon || next_colon < next_semicolon)) 647 if (next_colon && (!next_semicolon || next_colon < next_semicolon))
753 items[i].strength = atoi (strchr (p, ':') + 1); 648 items[i].strength = atoi (strchr (p, ':') + 1);
780 * the next entry while we're at it, better print a warning 675 * the next entry while we're at it, better print a warning
781 */ 676 */
782 LOG (llevError, "invalid type %s defined in shopitems in string %s\n", p, input_string); 677 LOG (llevError, "invalid type %s defined in shopitems in string %s\n", p, input_string);
783 } 678 }
784 } 679 }
680
785 items[i].index = number_of_entries; 681 items[i].index = number_of_entries;
786 if (next_semicolon) 682 if (next_semicolon)
787 p = ++next_semicolon; 683 p = ++next_semicolon;
788 else 684 else
789 p = NULL; 685 p = NULL;
790 } 686 }
687
791 free (shop_string); 688 free (shop_string);
792 return items; 689 return items;
793} 690}
794 691
795/* opposite of parse string, this puts the string that was originally fed in to 692/* opposite of parse string, this puts the string that was originally fed in to
804 for (i = 0; i < m->shopitems[0].index; i++) 701 for (i = 0; i < m->shopitems[0].index; i++)
805 { 702 {
806 if (m->shopitems[i].typenum) 703 if (m->shopitems[i].typenum)
807 { 704 {
808 if (m->shopitems[i].strength) 705 if (m->shopitems[i].strength)
809 {
810 sprintf (tmp, "%s:%d;", m->shopitems[i].name, m->shopitems[i].strength); 706 sprintf (tmp, "%s:%d;", m->shopitems[i].name, m->shopitems[i].strength);
811 }
812 else 707 else
813 sprintf (tmp, "%s;", m->shopitems[i].name); 708 sprintf (tmp, "%s;", m->shopitems[i].name);
814 } 709 }
815 else 710 else
816 { 711 {
817 if (m->shopitems[i].strength) 712 if (m->shopitems[i].strength)
818 {
819 sprintf (tmp, "*:%d;", m->shopitems[i].strength); 713 sprintf (tmp, "*:%d;", m->shopitems[i].strength);
820 }
821 else 714 else
822 sprintf (tmp, "*"); 715 sprintf (tmp, "*");
823 } 716 }
717
824 strcat (output_string, tmp); 718 strcat (output_string, tmp);
825 } 719 }
826} 720}
827 721
828/* This loads the header information of the map. The header 722/* This loads the header information of the map. The header
833 * put all the stuff in the map object so that names actually make 727 * put all the stuff in the map object so that names actually make
834 * sense. 728 * sense.
835 * This could be done in lex (like the object loader), but I think 729 * This could be done in lex (like the object loader), but I think
836 * currently, there are few enough fields this is not a big deal. 730 * currently, there are few enough fields this is not a big deal.
837 * MSW 2001-07-01 731 * MSW 2001-07-01
838 * return 0 on success, 1 on failure.
839 */ 732 */
840 733bool
841static int 734maptile::load_header (object_thawer &thawer)
842load_map_header (object_thawer & fp, maptile *m)
843{ 735{
844 char buf[HUGE_BUF], msgbuf[HUGE_BUF], maplorebuf[HUGE_BUF], *key = NULL, *value, *end; 736 for (;;)
845 int msgpos = 0;
846 int maplorepos = 0;
847
848 while (fgets (buf, HUGE_BUF, fp) != NULL)
849 { 737 {
850 buf[HUGE_BUF - 1] = 0; 738 keyword kw = thawer.get_kv ();
851 key = buf;
852 739
853 while (isspace (*key)) 740 switch (kw)
854 key++;
855
856 if (*key == 0)
857 continue; /* empty line */
858
859 value = strchr (key, ' ');
860
861 if (!value)
862 { 741 {
863 if ((end = strchr (key, '\n'))) 742 case KW_EOF:
864 *end = 0; 743 LOG (llevError, "%s: end of file while reading map header, aborting header load.\n", &path);
744 return false;
745
746 case KW_end:
747 return true;
748
749 default:
750 case KW_ERROR:
751 LOG (llevError, "%s: skipping errornous line (%s) while reading map header.\n", &path, thawer.last_keyword);
752 break;
753
754 case KW_msg:
755 thawer.get_ml (KW_endmsg, msg);
756 break;
757
758 case KW_lore: // CF+ extension
759 thawer.get_ml (KW_endlore, maplore);
760 break;
761
762 case KW_maplore:
763 thawer.get_ml (KW_endmaplore, maplore);
764 break;
765
766 case KW_arch:
767 if (strcmp (thawer.get_str (), "map"))
768 LOG (llevError, "%s: loading map and got a non 'arch map' line (arch %s), skipping.\n", &path, thawer.get_str ());
769 break;
770
771 case KW_oid:
772 thawer.get (this, thawer.get_sint32 ());
773 break;
774
775 case KW_file_format_version: break; // nop
776
777 case KW_name: thawer.get (name); break;
778 case KW_attach: thawer.get (attach); break;
779 case KW_reset_time: thawer.get (reset_time); break;
780 case KW_shopgreed: thawer.get (shopgreed); break;
781 case KW_shopmin: thawer.get (shopmin); break;
782 case KW_shopmax: thawer.get (shopmax); break;
783 case KW_shoprace: thawer.get (shoprace); break;
784 case KW_outdoor: thawer.get (outdoor); break;
785 case KW_temp: thawer.get (temp); break;
786 case KW_pressure: thawer.get (pressure); break;
787 case KW_humid: thawer.get (humid); break;
788 case KW_windspeed: thawer.get (windspeed); break;
789 case KW_winddir: thawer.get (winddir); break;
790 case KW_sky: thawer.get (sky); break;
791
792 case KW_per_player: thawer.get (per_player); break;
793 case KW_per_party: thawer.get (per_party); break;
794
795 case KW_region: get_region_by_name (thawer.get_str ()); break;
796 case KW_shopitems: shopitems = parse_shop_string (thawer.get_str ()); break;
797
798 // old names new names
799 case KW_hp: case KW_enter_x: thawer.get (enter_x); break;
800 case KW_sp: case KW_enter_y: thawer.get (enter_y); break;
801 case KW_x: case KW_width: thawer.get (width); break;
802 case KW_y: case KW_height: thawer.get (height); break;
803 case KW_weight: case KW_reset_timeout: thawer.get (reset_timeout); break;
804 case KW_value: case KW_swap_time: thawer.get (timeout); break;
805 case KW_level: case KW_difficulty: thawer.get (difficulty); difficulty = clamp (difficulty, 1, settings.max_level); break;
806 case KW_invisible: case KW_darkness: thawer.get (darkness); break;
807 case KW_stand_still: case KW_fixed_resettime: thawer.get (fixed_resettime); break;
808
809 case KW_tile_path_1: thawer.get (tile_path [0]); break;
810 case KW_tile_path_2: thawer.get (tile_path [1]); break;
811 case KW_tile_path_3: thawer.get (tile_path [2]); break;
812 case KW_tile_path_4: thawer.get (tile_path [3]); break;
865 } 813 }
866 else
867 {
868 *value = 0;
869 value++;
870 end = strchr (value, '\n');
871
872 while (isspace (*value))
873 {
874 value++;
875
876 if (*value == '\0' || value == end)
877 {
878 /* Nothing but spaces. */
879 value = NULL;
880 break;
881 }
882 }
883 }
884
885 if (!end)
886 {
887 LOG (llevError, "Error loading map header - did not find a newline - perhaps file is truncated? Buf=%s\n", buf);
888 return 1;
889 }
890
891 /* key is the field name, value is what it should be set
892 * to. We've already done the work to null terminate key,
893 * and strip off any leading spaces for both of these.
894 * We have not touched the newline at the end of the line -
895 * these are needed for some values. the end pointer
896 * points to the first of the newlines.
897 * value could be NULL! It would be easy enough to just point
898 * this to "" to prevent cores, but that would let more errors slide
899 * through.
900 *
901 * First check for entries that do not use the value parameter, then
902 * validate that value is given and check for the remaining entries
903 * that use the parameter.
904 */
905
906 if (!strcmp (key, "msg"))
907 {
908 while (fgets (buf, HUGE_BUF, fp) != NULL)
909 {
910 if (!strcmp (buf, "endmsg\n"))
911 break;
912 else
913 {
914 /* slightly more efficient than strcat */
915 strcpy (msgbuf + msgpos, buf);
916 msgpos += strlen (buf);
917 }
918 }
919 /* There are lots of maps that have empty messages (eg, msg/endmsg
920 * with nothing between). There is no reason in those cases to
921 * keep the empty message. Also, msgbuf contains garbage data
922 * when msgpos is zero, so copying it results in crashes
923 */
924 if (msgpos != 0)
925 m->msg = strdup (msgbuf);
926 }
927 else if (!strcmp (key, "maplore"))
928 {
929 while (fgets (buf, HUGE_BUF, fp) != NULL)
930 {
931 if (!strcmp (buf, "endmaplore\n"))
932 break;
933 else
934 {
935 /* slightly more efficient than strcat */
936 strcpy (maplorebuf + maplorepos, buf);
937 maplorepos += strlen (buf);
938 }
939 }
940 if (maplorepos != 0)
941 m->maplore = strdup (maplorebuf);
942 }
943 else if (!strcmp (key, "end"))
944 {
945 break;
946 }
947 else if (value == NULL)
948 {
949 LOG (llevError, "Got '%s' line without parameter in map header\n", key);
950 }
951 else if (!strcmp (key, "arch"))
952 {
953 /* This is an oddity, but not something we care about much. */
954 if (strcmp (value, "map\n"))
955 LOG (llevError, "loading map and got a non 'arch map' line(%s %s)?\n", key, value);
956 }
957 else if (!strcmp (key, "name"))
958 {
959 *end = 0;
960 m->name = strdup (value);
961 }
962 /* first strcmp value on these are old names supported
963 * for compatibility reasons. The new values (second) are
964 * what really should be used.
965 */
966 else if (!strcmp (key, "oid"))
967 fp.get (m, atoi (value));
968 else if (!strcmp (key, "attach"))
969 m->attach = value;
970 else if (!strcmp (key, "hp") || !strcmp (key, "enter_x"))
971 m->enter_x = atoi (value);
972 else if (!strcmp (key, "sp") || !strcmp (key, "enter_y"))
973 m->enter_y = atoi (value);
974 else if (!strcmp (key, "x") || !strcmp (key, "width"))
975 m->width = atoi (value);
976 else if (!strcmp (key, "y") || !strcmp (key, "height"))
977 m->height = atoi (value);
978 else if (!strcmp (key, "weight") || !strcmp (key, "reset_timeout"))
979 m->reset_timeout = atoi (value);
980 else if (!strcmp (key, "value") || !strcmp (key, "swap_time"))
981 m->timeout = atoi (value);
982 else if (!strcmp (key, "level") || !strcmp (key, "difficulty"))
983 m->difficulty = clamp (atoi (value), 1, settings.max_level);
984 else if (!strcmp (key, "invisible") || !strcmp (key, "darkness"))
985 m->darkness = atoi (value);
986 else if (!strcmp (key, "stand_still") || !strcmp (key, "fixed_resettime"))
987 m->fixed_resettime = atoi (value);
988 else if (!strcmp (key, "unique"))
989 m->unique = atoi (value);
990 else if (!strcmp (key, "template"))
991 m->templatemap = atoi (value);
992 else if (!strcmp (key, "region"))
993 m->region = get_region_by_name (value);
994 else if (!strcmp (key, "shopitems"))
995 {
996 *end = 0;
997 m->shopitems = parse_shop_string (value);
998 }
999 else if (!strcmp (key, "shopgreed"))
1000 m->shopgreed = atof (value);
1001 else if (!strcmp (key, "shopmin"))
1002 m->shopmin = atol (value);
1003 else if (!strcmp (key, "shopmax"))
1004 m->shopmax = atol (value);
1005 else if (!strcmp (key, "shoprace"))
1006 {
1007 *end = 0;
1008 m->shoprace = strdup (value);
1009 }
1010 else if (!strcmp (key, "outdoor"))
1011 m->outdoor = atoi (value);
1012 else if (!strcmp (key, "temp"))
1013 m->temp = atoi (value);
1014 else if (!strcmp (key, "pressure"))
1015 m->pressure = atoi (value);
1016 else if (!strcmp (key, "humid"))
1017 m->humid = atoi (value);
1018 else if (!strcmp (key, "windspeed"))
1019 m->windspeed = atoi (value);
1020 else if (!strcmp (key, "winddir"))
1021 m->winddir = atoi (value);
1022 else if (!strcmp (key, "sky"))
1023 m->sky = atoi (value);
1024 else if (!strcmp (key, "nosmooth"))
1025 m->nosmooth = atoi (value);
1026 else if (!strncmp (key, "tile_path_", 10))
1027 {
1028 int tile = atoi (key + 10);
1029
1030 if (tile < 1 || tile > 4)
1031 {
1032 LOG (llevError, "load_map_header: tile location %d out of bounds (%s)\n", tile, m->path);
1033 }
1034 else
1035 {
1036 char *path;
1037
1038 *end = 0;
1039
1040 if (m->tile_path[tile - 1])
1041 {
1042 LOG (llevError, "load_map_header: tile location %d duplicated (%s)\n", tile, m->path);
1043 free (m->tile_path[tile - 1]);
1044 m->tile_path[tile - 1] = NULL;
1045 }
1046
1047 if (check_path (value, 1) != -1)
1048 {
1049 /* The unadorned path works. */
1050 path = value;
1051 }
1052 else
1053 {
1054 /* Try again; it could be a relative exit. */
1055
1056 path = path_combine_and_normalize (m->path, value);
1057
1058 if (check_path (path, 1) == -1)
1059 {
1060 LOG (llevError, "get_map_header: Bad tile path %s %s\n", m->path, value);
1061 path = NULL;
1062 }
1063 }
1064
1065 if (editor)
1066 {
1067 /* Use the value as in the file. */
1068 m->tile_path[tile - 1] = strdup (value);
1069 }
1070 else if (path != NULL)
1071 {
1072 /* Use the normalized value. */
1073 m->tile_path[tile - 1] = strdup (path);
1074 }
1075 } /* end if tile direction (in)valid */
1076 }
1077 else
1078 LOG (llevError, "Got unknown value in map header: %s %s\n", key, value);
1079 }
1080
1081 if (!key || strcmp (key, "end"))
1082 { 814 }
1083 LOG (llevError, "Got premature eof on map header!\n");
1084 return 1;
1085 }
1086 815
1087 return 0; 816 abort ();
1088} 817}
1089 818
1090/* 819bool
1091 * Opens the file "filename" and reads information about the map 820maptile::load_header (const char *path)
1092 * from the given file, and stores it in a newly allocated
1093 * maptile. A pointer to this structure is returned, or NULL on failure.
1094 * flags correspond to those in map.h. Main ones used are
1095 * MAP_PLAYER_UNIQUE, in which case we don't do any name changes, and
1096 * MAP_BLOCK, in which case we block on this load. This happens in all
1097 * cases, no matter if this flag is set or not.
1098 * MAP_STYLE: style map - don't add active objects, don't add to server
1099 * managed map list.
1100 */
1101
1102maptile *
1103load_original_map (const char *filename, int flags)
1104{ 821{
1105 maptile *m;
1106 char pathname[MAX_BUF];
1107
1108 if (flags & MAP_PLAYER_UNIQUE)
1109 strcpy (pathname, filename);
1110 else if (flags & MAP_OVERLAY)
1111 strcpy (pathname, create_overlay_pathname (filename));
1112 else
1113 strcpy (pathname, create_pathname (filename));
1114
1115 LOG (llevDebug, "load_original_map(%x): %s (%s)\n", flags, filename, pathname);
1116
1117 object_thawer thawer (pathname); 822 object_thawer thawer (path);
1118 823
1119 if (!thawer) 824 if (!thawer)
1120 return 0; 825 return false;
1121 826
1122 m = get_linked_map (); 827 return load_header (thawer);
1123
1124 strcpy (m->path, filename);
1125 if (load_map_header (thawer, m))
1126 {
1127 LOG (llevError, "Error loading map header for %s, flags=%d\n", filename, flags);
1128 delete_map (m);
1129 return NULL;
1130 }
1131
1132 m->allocate ();
1133
1134 m->in_memory = MAP_LOADING;
1135 load_objects (m, thawer, flags & (MAP_BLOCK | MAP_STYLE));
1136
1137 m->in_memory = MAP_IN_MEMORY;
1138 if (!MAP_DIFFICULTY (m))
1139 MAP_DIFFICULTY (m) = calculate_difficulty (m);
1140 set_map_reset_time (m);
1141 m->instantiate ();
1142 return (m);
1143}
1144
1145/*
1146 * Loads a map, which has been loaded earlier, from file.
1147 * Return the map object we load into (this can change from the passed
1148 * option if we can't find the original map)
1149 */
1150
1151static maptile *
1152load_temporary_map (maptile *m)
1153{
1154 char buf[MAX_BUF];
1155
1156 if (!m->tmpname)
1157 {
1158 LOG (llevError, "No temporary filename for map %s\n", m->path);
1159 strcpy (buf, m->path);
1160 delete_map (m);
1161 m = load_original_map (buf, 0);
1162 if (m == NULL)
1163 return NULL;
1164 fix_auto_apply (m); /* Chests which open as default */
1165 return m;
1166 }
1167
1168 object_thawer thawer (m->tmpname);
1169
1170 if (!thawer)
1171 {
1172 strcpy (buf, m->path);
1173 delete_map (m);
1174 m = load_original_map (buf, 0);
1175 if (!m)
1176 return NULL;
1177 fix_auto_apply (m); /* Chests which open as default */
1178 return m;
1179 }
1180
1181 if (load_map_header (thawer, m))
1182 {
1183 LOG (llevError, "Error loading map header for %s (%s)\n", m->path, m->tmpname);
1184 delete_map (m);
1185 m = load_original_map (m->path, 0);
1186 return NULL;
1187 }
1188
1189 m->allocate ();
1190
1191 m->in_memory = MAP_LOADING;
1192 load_objects (m, thawer, 0);
1193
1194 m->in_memory = MAP_IN_MEMORY;
1195 INVOKE_MAP (SWAPIN, m);
1196 return m;
1197}
1198
1199/*
1200 * Loads a map, which has been loaded earlier, from file.
1201 * Return the map object we load into (this can change from the passed
1202 * option if we can't find the original map)
1203 */
1204
1205maptile *
1206load_overlay_map (const char *filename, maptile *m)
1207{
1208 char pathname[MAX_BUF];
1209
1210 strcpy (pathname, create_overlay_pathname (filename));
1211
1212 object_thawer thawer (pathname);
1213
1214 if (!thawer)
1215 return m;
1216
1217 if (load_map_header (thawer, m))
1218 {
1219 LOG (llevError, "Error loading map header for overlay %s (%s)\n", m->path, pathname);
1220 delete_map (m);
1221 m = load_original_map (m->path, 0);
1222 return NULL;
1223 }
1224 /*m->allocate ();*/
1225
1226 m->in_memory = MAP_LOADING;
1227 load_objects (m, thawer, MAP_OVERLAY);
1228
1229 m->in_memory = MAP_IN_MEMORY;
1230 return m;
1231} 828}
1232 829
1233/****************************************************************************** 830/******************************************************************************
1234 * This is the start of unique map handling code 831 * This is the start of unique map handling code
1235 *****************************************************************************/ 832 *****************************************************************************/
1236 833
1237/* This goes through map 'm' and removed any unique items on the map. */ 834/* This goes through the maptile and removed any unique items on the map. */
1238static void 835void
1239delete_unique_items (maptile *m) 836maptile::clear_unique_items ()
1240{ 837{
1241 int i, j, unique; 838 for (int i = 0; i < size (); ++i)
1242 object *op, *next; 839 {
840 int unique = 0;
841 for (object *op = spaces [i].bot; op; )
842 {
843 object *above = op->above;
1243 844
1244 for (i = 0; i < MAP_WIDTH (m); i++) 845 if (QUERY_FLAG (op, FLAG_IS_FLOOR) && QUERY_FLAG (op, FLAG_UNIQUE))
1245 for (j = 0; j < MAP_HEIGHT (m); j++) 846 unique = 1;
847
848 if (op->head == NULL && (QUERY_FLAG (op, FLAG_UNIQUE) || unique))
849 {
850 op->destroy_inv (false);
851 op->destroy ();
852 }
853
854 op = above;
855 }
856 }
857}
858
859bool
860maptile::save_header (object_freezer &freezer)
861{
862#define MAP_OUT(k) freezer.put (KW_ ## k, k)
863#define MAP_OUT2(k,v) freezer.put (KW_ ## k, v)
864
865 MAP_OUT2 (arch, "map");
866
867 if (name) MAP_OUT (name);
868 MAP_OUT (swap_time);
869 MAP_OUT (reset_time);
870 MAP_OUT (reset_timeout);
871 MAP_OUT (fixed_resettime);
872 MAP_OUT (difficulty);
873
874 if (region) MAP_OUT2 (region, region->name);
875
876 if (shopitems)
877 {
878 char shop[MAX_BUF];
879 print_shop_string (this, shop);
880 MAP_OUT2 (shopitems, shop);
881 }
882
883 MAP_OUT (shopgreed);
884 MAP_OUT (shopmin);
885 MAP_OUT (shopmax);
886 if (shoprace) MAP_OUT (shoprace);
887 MAP_OUT (darkness);
888 MAP_OUT (width);
889 MAP_OUT (height);
890 MAP_OUT (enter_x);
891 MAP_OUT (enter_y);
892
893 if (msg) freezer.put (KW_msg , KW_endmsg , msg);
894 if (maplore) freezer.put (KW_maplore, KW_endmaplore, maplore);
895
896 MAP_OUT (outdoor);
897 MAP_OUT (temp);
898 MAP_OUT (pressure);
899 MAP_OUT (humid);
900 MAP_OUT (windspeed);
901 MAP_OUT (winddir);
902 MAP_OUT (sky);
903
904 MAP_OUT (per_player);
905 MAP_OUT (per_party);
906
907 if (tile_path [0]) MAP_OUT2 (tile_path_1, tile_path [0]);
908 if (tile_path [1]) MAP_OUT2 (tile_path_2, tile_path [1]);
909 if (tile_path [2]) MAP_OUT2 (tile_path_3, tile_path [2]);
910 if (tile_path [3]) MAP_OUT2 (tile_path_4, tile_path [3]);
911
912 freezer.put (this);
913 freezer.put (KW_end);
914
915 return true;
916}
917
918bool
919maptile::save_header (const char *path)
920{
921 object_freezer freezer;
922
923 if (!save_header (freezer))
924 return false;
925
926 return freezer.save (path);
927}
928
929/*
930 * Remove and free all objects in the given map.
931 */
932void
933maptile::clear ()
934{
935 if (!spaces)
936 return;
937
938 for (mapspace *ms = spaces + size (); ms-- > spaces; )
939 while (object *op = ms->bot)
1246 { 940 {
1247 unique = 0; 941 if (op->head)
942 op = op->head;
1248 943
1249 for (op = GET_MAP_OB (m, i, j); op; op = next) 944 op->destroy_inv (false);
945 op->destroy ();
946 }
947
948 sfree (spaces, size ()), spaces = 0;
949
950 if (buttons)
951 free_objectlinkpt (buttons), buttons = 0;
952}
953
954void
955maptile::clear_header ()
956{
957 name = 0;
958 msg = 0;
959 maplore = 0;
960 shoprace = 0;
961 delete [] shopitems, shopitems = 0;
962
963 for (int i = 0; i < 4; i++)
964 tile_path [i] = 0;
965}
966
967maptile::~maptile ()
968{
969 assert (destroyed ());
970}
971
972void
973maptile::clear_links_to (maptile *m)
974{
975 /* We need to look through all the maps and see if any maps
976 * are pointing at this one for tiling information. Since
977 * tiling can be asymetric, we just can not look to see which
978 * maps this map tiles with and clears those.
979 */
980 for (int i = 0; i < 4; i++)
981 if (tile_map[i] == m)
982 tile_map[i] = 0;
983}
984
985void
986maptile::do_destroy ()
987{
988 attachable::do_destroy ();
989
990 clear ();
991}
992
993/*
994 * Updates every button on the map (by calling update_button() for them).
995 */
996void
997maptile::update_buttons ()
998{
999 for (oblinkpt *obp = buttons; obp; obp = obp->next)
1000 for (objectlink *ol = obp->link; ol; ol = ol->next)
1001 {
1002 if (!ol->ob)
1250 { 1003 {
1251 next = op->above; 1004 LOG (llevError, "Internal error in update_button (%s (%dx%d), connected %ld).\n",
1252 1005 ol->ob ? (const char *) ol->ob->name : "null", ol->ob ? ol->ob->x : -1, ol->ob ? ol->ob->y : -1, obp->value);
1253 if (QUERY_FLAG (op, FLAG_IS_FLOOR) && QUERY_FLAG (op, FLAG_UNIQUE)) 1006 continue;
1254 unique = 1;
1255
1256 if (op->head == NULL && (QUERY_FLAG (op, FLAG_UNIQUE) || unique))
1257 {
1258 clean_object (op);
1259
1260 if (QUERY_FLAG (op, FLAG_IS_LINKED))
1261 remove_button_link (op);
1262
1263 op->destroy ();
1264 } 1007 }
1008
1009 if (ol->ob->type == BUTTON || ol->ob->type == PEDESTAL)
1010 {
1011 update_button (ol->ob);
1012 break;
1265 } 1013 }
1266 } 1014 }
1267} 1015}
1268
1269
1270/*
1271 * Loads unique objects from file(s) into the map which is in memory
1272 * m is the map to load unique items into.
1273 */
1274static void
1275load_unique_objects (maptile *m)
1276{
1277 int count;
1278 char firstname[MAX_BUF];
1279
1280 for (count = 0; count < 10; count++)
1281 {
1282 sprintf (firstname, "%s.v%02d", create_items_path (m->path), count);
1283 if (!access (firstname, R_OK))
1284 break;
1285 }
1286 /* If we get here, we did not find any map */
1287 if (count == 10)
1288 return;
1289
1290 object_thawer thawer (firstname);
1291
1292 if (!thawer)
1293 return;
1294
1295 m->in_memory = MAP_LOADING;
1296 if (m->tmpname == NULL) /* if we have loaded unique items from */
1297 delete_unique_items (m); /* original map before, don't duplicate them */
1298 load_objects (m, thawer, 0);
1299
1300 m->in_memory = MAP_IN_MEMORY;
1301}
1302
1303
1304/*
1305 * Saves a map to file. If flag is set, it is saved into the same
1306 * file it was (originally) loaded from. Otherwise a temporary
1307 * filename will be genarated, and the file will be stored there.
1308 * The temporary filename will be stored in the maptileure.
1309 * If the map is unique, we also save to the filename in the map
1310 * (this should have been updated when first loaded)
1311 */
1312
1313int
1314new_save_map (maptile *m, int flag)
1315{
1316 char filename[MAX_BUF], buf[MAX_BUF], shop[MAX_BUF];
1317 int i;
1318
1319 if (flag && !*m->path)
1320 {
1321 LOG (llevError, "Tried to save map without path.\n");
1322 return -1;
1323 }
1324
1325 if (flag || (m->unique) || (m->templatemap))
1326 {
1327 if (!m->unique && !m->templatemap)
1328 { /* flag is set */
1329 if (flag == 2)
1330 strcpy (filename, create_overlay_pathname (m->path));
1331 else
1332 strcpy (filename, create_pathname (m->path));
1333 }
1334 else
1335 strcpy (filename, m->path);
1336
1337 make_path_to_file (filename);
1338 }
1339 else
1340 {
1341 if (!m->tmpname)
1342 m->tmpname = tempnam (settings.tmpdir, NULL);
1343
1344 strcpy (filename, m->tmpname);
1345 }
1346
1347 LOG (llevDebug, "Saving map %s to %s\n", m->path, filename);
1348 m->in_memory = MAP_SAVING;
1349
1350 object_freezer freezer;
1351
1352 /* legacy */
1353 fprintf (freezer, "arch map\n");
1354 if (m->name)
1355 fprintf (freezer, "name %s\n", m->name);
1356 if (!flag)
1357 fprintf (freezer, "swap_time %d\n", m->swap_time);
1358 if (m->reset_timeout)
1359 fprintf (freezer, "reset_timeout %d\n", m->reset_timeout);
1360 if (m->fixed_resettime)
1361 fprintf (freezer, "fixed_resettime %d\n", m->fixed_resettime);
1362 /* we unfortunately have no idea if this is a value the creator set
1363 * or a difficulty value we generated when the map was first loaded
1364 */
1365 if (m->difficulty)
1366 fprintf (freezer, "difficulty %d\n", m->difficulty);
1367 if (m->region)
1368 fprintf (freezer, "region %s\n", m->region->name);
1369 if (m->shopitems)
1370 {
1371 print_shop_string (m, shop);
1372 fprintf (freezer, "shopitems %s\n", shop);
1373 }
1374 if (m->shopgreed)
1375 fprintf (freezer, "shopgreed %f\n", m->shopgreed);
1376 if (m->shopmin)
1377 fprintf (freezer, "shopmin %llu\n", m->shopmin);
1378 if (m->shopmax)
1379 fprintf (freezer, "shopmax %llu\n", m->shopmax);
1380 if (m->shoprace)
1381 fprintf (freezer, "shoprace %s\n", m->shoprace);
1382 if (m->darkness)
1383 fprintf (freezer, "darkness %d\n", m->darkness);
1384 if (m->width)
1385 fprintf (freezer, "width %d\n", m->width);
1386 if (m->height)
1387 fprintf (freezer, "height %d\n", m->height);
1388 if (m->enter_x)
1389 fprintf (freezer, "enter_x %d\n", m->enter_x);
1390 if (m->enter_y)
1391 fprintf (freezer, "enter_y %d\n", m->enter_y);
1392 if (m->msg)
1393 fprintf (freezer, "msg\n%sendmsg\n", m->msg);
1394 if (m->maplore)
1395 fprintf (freezer, "maplore\n%sendmaplore\n", m->maplore);
1396 if (m->unique)
1397 fprintf (freezer, "unique %d\n", m->unique);
1398 if (m->templatemap)
1399 fprintf (freezer, "template %d\n", m->templatemap);
1400 if (m->outdoor)
1401 fprintf (freezer, "outdoor %d\n", m->outdoor);
1402 if (m->temp)
1403 fprintf (freezer, "temp %d\n", m->temp);
1404 if (m->pressure)
1405 fprintf (freezer, "pressure %d\n", m->pressure);
1406 if (m->humid)
1407 fprintf (freezer, "humid %d\n", m->humid);
1408 if (m->windspeed)
1409 fprintf (freezer, "windspeed %d\n", m->windspeed);
1410 if (m->winddir)
1411 fprintf (freezer, "winddir %d\n", m->winddir);
1412 if (m->sky)
1413 fprintf (freezer, "sky %d\n", m->sky);
1414 if (m->nosmooth)
1415 fprintf (freezer, "nosmooth %d\n", m->nosmooth);
1416
1417 /* Save any tiling information, except on overlays */
1418 if (flag != 2)
1419 for (i = 0; i < 4; i++)
1420 if (m->tile_path[i])
1421 fprintf (freezer, "tile_path_%d %s\n", i + 1, m->tile_path[i]);
1422
1423 freezer.put (m);
1424 fprintf (freezer, "end\n");
1425
1426 /* In the game save unique items in the different file, but
1427 * in the editor save them to the normal map file.
1428 * If unique map, save files in the proper destination (set by
1429 * player)
1430 */
1431 if ((flag == 0 || flag == 2) && !m->unique && !m->templatemap)
1432 {
1433 object_freezer unique;
1434
1435 if (flag == 2)
1436 save_objects (m, freezer, unique, 2);
1437 else
1438 save_objects (m, freezer, unique, 0);
1439
1440 sprintf (buf, "%s.v00", create_items_path (m->path));
1441
1442 unique.save (buf);
1443 }
1444 else
1445 { /* save same file when not playing, like in editor */
1446 save_objects (m, freezer, freezer, 0);
1447 }
1448
1449 freezer.save (filename);
1450
1451 return 0;
1452}
1453
1454
1455/*
1456 * Remove and free all objects in the inventory of the given object.
1457 * object.c ?
1458 */
1459
1460void
1461clean_object (object *op)
1462{
1463 object *tmp, *next;
1464
1465 for (tmp = op->inv; tmp; tmp = next)
1466 {
1467 next = tmp->below;
1468
1469 clean_object (tmp);
1470 if (QUERY_FLAG (tmp, FLAG_IS_LINKED))
1471 remove_button_link (tmp);
1472
1473 tmp->destroy ();
1474 }
1475}
1476
1477/*
1478 * Remove and free all objects in the given map.
1479 */
1480
1481void
1482free_all_objects (maptile *m)
1483{
1484 int i, j;
1485 object *op;
1486
1487 for (i = 0; i < MAP_WIDTH (m); i++)
1488 for (j = 0; j < MAP_HEIGHT (m); j++)
1489 {
1490 object *previous_obj = NULL;
1491
1492 while ((op = GET_MAP_OB (m, i, j)) != NULL)
1493 {
1494 if (op == previous_obj)
1495 {
1496 LOG (llevDebug, "free_all_objects: Link error, bailing out.\n");
1497 break;
1498 }
1499
1500 previous_obj = op;
1501
1502 if (op->head != NULL)
1503 op = op->head;
1504
1505 /* If the map isn't in memory, free_object will remove and
1506 * free objects in op's inventory. So let it do the job.
1507 */
1508 if (m->in_memory == MAP_IN_MEMORY)
1509 clean_object (op);
1510
1511 op->destroy ();
1512 }
1513 }
1514}
1515
1516/*
1517 * Frees everything allocated by the given maptileure.
1518 * don't free tmpname - our caller is left to do that
1519 */
1520
1521void
1522free_map (maptile *m, int flag)
1523{
1524 int i;
1525
1526 if (!m->in_memory)
1527 {
1528 LOG (llevError, "Trying to free freed map.\n");
1529 return;
1530 }
1531
1532 // TODO: use new/delete
1533#define FREE_AND_CLEAR(p) { free (p); p = NULL; }
1534
1535 if (flag && m->spaces)
1536 free_all_objects (m);
1537 if (m->name)
1538 FREE_AND_CLEAR (m->name);
1539 if (m->spaces)
1540 FREE_AND_CLEAR (m->spaces);
1541 if (m->msg)
1542 FREE_AND_CLEAR (m->msg);
1543 if (m->maplore)
1544 FREE_AND_CLEAR (m->maplore);
1545
1546 delete [] m->shopitems;
1547 m->shopitems = 0;
1548
1549 if (m->shoprace)
1550 FREE_AND_CLEAR (m->shoprace);
1551
1552 if (m->buttons)
1553 free_objectlinkpt (m->buttons);
1554
1555 m->buttons = NULL;
1556
1557 for (i = 0; i < 4; i++)
1558 {
1559 if (m->tile_path[i])
1560 FREE_AND_CLEAR (m->tile_path[i]);
1561 m->tile_map[i] = NULL;
1562 }
1563
1564 m->in_memory = MAP_SWAPPED;
1565
1566#undef FREE_AND_CLEAR
1567
1568}
1569
1570/*
1571 * function: vanish maptile
1572 * m : pointer to maptile, if NULL no action
1573 * this deletes all the data on the map (freeing pointers)
1574 * and then removes this map from the global linked list of maps.
1575 */
1576
1577void
1578delete_map (maptile *m)
1579{
1580 maptile *tmp, *last;
1581 int i;
1582
1583 if (!m)
1584 return;
1585
1586 m->clear ();
1587
1588 if (m->in_memory == MAP_IN_MEMORY)
1589 {
1590 /* change to MAP_SAVING, even though we are not,
1591 * so that remove_ob doesn't do as much work.
1592 */
1593 m->in_memory = MAP_SAVING;
1594 free_map (m, 1);
1595 }
1596 /* move this out of free_map, since tmpname can still be needed if
1597 * the map is swapped out.
1598 */
1599 if (m->tmpname)
1600 {
1601 free (m->tmpname);
1602 m->tmpname = NULL;
1603 }
1604 last = NULL;
1605 /* We need to look through all the maps and see if any maps
1606 * are pointing at this one for tiling information. Since
1607 * tiling can be assymetric, we just can not look to see which
1608 * maps this map tiles with and clears those.
1609 */
1610 for (tmp = first_map; tmp != NULL; tmp = tmp->next)
1611 {
1612 if (tmp->next == m)
1613 last = tmp;
1614
1615 /* This should hopefully get unrolled on a decent compiler */
1616 for (i = 0; i < 4; i++)
1617 if (tmp->tile_map[i] == m)
1618 tmp->tile_map[i] = NULL;
1619 }
1620
1621 /* If last is null, then this should be the first map in the list */
1622 if (!last)
1623 {
1624 if (m == first_map)
1625 first_map = m->next;
1626 else
1627 /* m->path is a static char, so should hopefully still have
1628 * some useful data in it.
1629 */
1630 LOG (llevError, "delete_map: Unable to find map %s in list\n", m->path);
1631 }
1632 else
1633 last->next = m->next;
1634
1635 delete m;
1636}
1637
1638/*
1639 * Makes sure the given map is loaded and swapped in.
1640 * name is path name of the map.
1641 * flags meaning:
1642 * 0x1 (MAP_FLUSH): flush the map - always load from the map directory,
1643 * and don't do unique items or the like.
1644 * 0x2 (MAP_PLAYER_UNIQUE) - this is a unique map for each player.
1645 * dont do any more name translation on it.
1646 *
1647 * Returns a pointer to the given map.
1648 */
1649maptile *
1650ready_map_name (const char *name, int flags)
1651{
1652 maptile *m;
1653
1654 if (!name)
1655 return (NULL);
1656
1657 /* Have we been at this level before? */
1658 m = has_been_loaded (name);
1659
1660 /* Map is good to go, so just return it */
1661 if (m && (m->in_memory == MAP_LOADING || m->in_memory == MAP_IN_MEMORY))
1662 {
1663 return m;
1664 }
1665
1666 /* unique maps always get loaded from their original location, and never
1667 * a temp location. Likewise, if map_flush is set, or we have never loaded
1668 * this map, load it now. I removed the reset checking from here -
1669 * it seems the probability of a player trying to enter a map that should
1670 * reset but hasn't yet is quite low, and removing that makes this function
1671 * a bit cleaner (and players probably shouldn't rely on exact timing for
1672 * resets in any case - if they really care, they should use the 'maps command.
1673 */
1674 if ((flags & (MAP_FLUSH | MAP_PLAYER_UNIQUE)) || !m)
1675 {
1676
1677 /* first visit or time to reset */
1678 if (m)
1679 {
1680 clean_tmp_map (m); /* Doesn't make much difference */
1681 delete_map (m);
1682 }
1683
1684 /* create and load a map */
1685 if (flags & MAP_PLAYER_UNIQUE)
1686 LOG (llevDebug, "Trying to load map %s.\n", name);
1687 else
1688 LOG (llevDebug, "Trying to load map %s.\n", create_pathname (name));
1689
1690 //eval_pv ("$x = Event::time", 1);//D
1691 if (!(m = load_original_map (name, (flags & MAP_PLAYER_UNIQUE))))
1692 return (NULL);
1693 //eval_pv ("warn \"LOAD \", Event::time - $x", 1);//D
1694
1695 fix_auto_apply (m); /* Chests which open as default */
1696
1697 /* If a player unique map, no extra unique object file to load.
1698 * if from the editor, likewise.
1699 */
1700 if (!(flags & (MAP_FLUSH | MAP_PLAYER_UNIQUE)))
1701 load_unique_objects (m);
1702
1703 if (!(flags & (MAP_FLUSH | MAP_PLAYER_UNIQUE | MAP_OVERLAY)))
1704 {
1705 m = load_overlay_map (name, m);
1706 if (m == NULL)
1707 return NULL;
1708 }
1709
1710 if (flags & MAP_PLAYER_UNIQUE)
1711 INVOKE_MAP (SWAPIN, m);
1712
1713 }
1714 else
1715 {
1716 /* If in this loop, we found a temporary map, so load it up. */
1717
1718 m = load_temporary_map (m);
1719 if (m == NULL)
1720 return NULL;
1721 load_unique_objects (m);
1722
1723 clean_tmp_map (m);
1724 m->in_memory = MAP_IN_MEMORY;
1725 /* tempnam() on sun systems (probably others) uses malloc
1726 * to allocated space for the string. Free it here.
1727 * In some cases, load_temporary_map above won't find the
1728 * temporary map, and so has reloaded a new map. If that
1729 * is the case, tmpname is now null
1730 */
1731 if (m->tmpname)
1732 free (m->tmpname);
1733 m->tmpname = NULL;
1734 /* It's going to be saved anew anyway */
1735 }
1736
1737 /* Below here is stuff common to both first time loaded maps and
1738 * temp maps.
1739 */
1740
1741 decay_objects (m); /* start the decay */
1742 /* In case other objects press some buttons down */
1743 update_buttons (m);
1744 if (m->outdoor)
1745 set_darkness_map (m);
1746 /* run the weather over this map */
1747 weather_effect (name);
1748 return m;
1749}
1750
1751 1016
1752/* 1017/*
1753 * This routine is supposed to find out the difficulty of the map. 1018 * This routine is supposed to find out the difficulty of the map.
1754 * difficulty does not have a lot to do with character level, 1019 * difficulty does not have a lot to do with character level,
1755 * but does have a lot to do with treasure on the map. 1020 * but does have a lot to do with treasure on the map.
1757 * Difficulty can now be set by the map creature. If the value stored 1022 * Difficulty can now be set by the map creature. If the value stored
1758 * in the map is zero, then use this routine. Maps should really 1023 * in the map is zero, then use this routine. Maps should really
1759 * have a difficulty set than using this function - human calculation 1024 * have a difficulty set than using this function - human calculation
1760 * is much better than this functions guesswork. 1025 * is much better than this functions guesswork.
1761 */ 1026 */
1762
1763int 1027int
1764calculate_difficulty (maptile *m) 1028maptile::estimate_difficulty () const
1765{ 1029{
1766 object *op;
1767 archetype *at;
1768 int x, y, i;
1769 long monster_cnt = 0; 1030 long monster_cnt = 0;
1770 double avgexp = 0; 1031 double avgexp = 0;
1771 sint64 total_exp = 0; 1032 sint64 total_exp = 0;
1772 1033
1773 if (MAP_DIFFICULTY (m)) 1034 for (mapspace *ms = spaces + size (); ms-- > spaces; )
1774 { 1035 for (object *op = ms->bot; op; op = op->above)
1775 LOG (llevDebug, "Using stored map difficulty: %d\n", MAP_DIFFICULTY (m));
1776 return MAP_DIFFICULTY (m);
1777 }
1778
1779 for (x = 0; x < MAP_WIDTH (m); x++)
1780 for (y = 0; y < MAP_HEIGHT (m); y++)
1781 for (op = GET_MAP_OB (m, x, y); op != NULL; op = op->above)
1782 { 1036 {
1783 if (QUERY_FLAG (op, FLAG_MONSTER)) 1037 if (QUERY_FLAG (op, FLAG_MONSTER))
1784 { 1038 {
1785 total_exp += op->stats.exp; 1039 total_exp += op->stats.exp;
1786 monster_cnt++; 1040 monster_cnt++;
1787 } 1041 }
1788 1042
1789 if (QUERY_FLAG (op, FLAG_GENERATOR)) 1043 if (QUERY_FLAG (op, FLAG_GENERATOR))
1790 { 1044 {
1791 total_exp += op->stats.exp; 1045 total_exp += op->stats.exp;
1046
1792 at = type_to_archetype (GENERATE_TYPE (op)); 1047 if (archetype *at = type_to_archetype (GENERATE_TYPE (op)))
1793
1794 if (at != NULL)
1795 total_exp += at->clone.stats.exp * 8; 1048 total_exp += at->clone.stats.exp * 8;
1796 1049
1797 monster_cnt++; 1050 monster_cnt++;
1798 } 1051 }
1799 } 1052 }
1800 1053
1801 avgexp = (double) total_exp / monster_cnt; 1054 avgexp = (double) total_exp / monster_cnt;
1802 1055
1803 for (i = 1; i <= settings.max_level; i++) 1056 for (int i = 1; i <= settings.max_level; i++)
1804 {
1805 if ((level_exp (i, 1) - level_exp (i - 1, 1)) > (100 * avgexp)) 1057 if ((level_exp (i, 1) - level_exp (i - 1, 1)) > (100 * avgexp))
1806 {
1807 /* LOG(llevDebug, "Calculated difficulty for map: %s: %d\n", m->name, i); */
1808 return i; 1058 return i;
1809 }
1810 }
1811 1059
1812 return 1; 1060 return 1;
1813}
1814
1815void
1816clean_tmp_map (maptile *m)
1817{
1818 if (m->tmpname == NULL)
1819 return;
1820 INVOKE_MAP (CLEAN, m);
1821 (void) unlink (m->tmpname);
1822}
1823
1824void
1825free_all_maps (void)
1826{
1827 int real_maps = 0;
1828
1829 while (first_map)
1830 {
1831 /* I think some of the callers above before it gets here set this to be
1832 * saving, but we still want to free this data
1833 */
1834 if (first_map->in_memory == MAP_SAVING)
1835 first_map->in_memory = MAP_IN_MEMORY;
1836 delete_map (first_map);
1837 real_maps++;
1838 }
1839 LOG (llevDebug, "free_all_maps: Freed %d maps\n", real_maps);
1840} 1061}
1841 1062
1842/* change_map_light() - used to change map light level (darkness) 1063/* change_map_light() - used to change map light level (darkness)
1843 * up or down. Returns true if successful. It should now be 1064 * up or down. Returns true if successful. It should now be
1844 * possible to change a value by more than 1. 1065 * possible to change a value by more than 1.
1845 * Move this from los.c to map.c since this is more related 1066 * Move this from los.c to map.c since this is more related
1846 * to maps than los. 1067 * to maps than los.
1847 * postive values make it darker, negative make it brighter 1068 * postive values make it darker, negative make it brighter
1848 */ 1069 */
1849
1850int 1070int
1851change_map_light (maptile *m, int change) 1071maptile::change_map_light (int change)
1852{ 1072{
1853 int new_level = m->darkness + change; 1073 int new_level = darkness + change;
1854 1074
1855 /* Nothing to do */ 1075 /* Nothing to do */
1856 if (!change || (new_level <= 0 && m->darkness == 0) || (new_level >= MAX_DARKNESS && m->darkness >= MAX_DARKNESS)) 1076 if (!change || (new_level <= 0 && darkness == 0) || (new_level >= MAX_DARKNESS && darkness >= MAX_DARKNESS))
1857 {
1858 return 0; 1077 return 0;
1859 }
1860 1078
1861 /* inform all players on the map */ 1079 /* inform all players on the map */
1862 if (change > 0) 1080 if (change > 0)
1863 new_info_map (NDI_BLACK | NDI_UNIQUE, m, "It becomes darker."); 1081 new_info_map (NDI_BLACK | NDI_UNIQUE, this, "It becomes darker.");
1864 else 1082 else
1865 new_info_map (NDI_BLACK | NDI_UNIQUE, m, "It becomes brighter."); 1083 new_info_map (NDI_BLACK | NDI_UNIQUE, this, "It becomes brighter.");
1866 1084
1867 /* Do extra checking. since m->darkness is a unsigned value, 1085 /* Do extra checking. since darkness is a unsigned value,
1868 * we need to be extra careful about negative values. 1086 * we need to be extra careful about negative values.
1869 * In general, the checks below are only needed if change 1087 * In general, the checks below are only needed if change
1870 * is not +/-1 1088 * is not +/-1
1871 */ 1089 */
1872 if (new_level < 0) 1090 if (new_level < 0)
1873 m->darkness = 0; 1091 darkness = 0;
1874 else if (new_level >= MAX_DARKNESS) 1092 else if (new_level >= MAX_DARKNESS)
1875 m->darkness = MAX_DARKNESS; 1093 darkness = MAX_DARKNESS;
1876 else 1094 else
1877 m->darkness = new_level; 1095 darkness = new_level;
1878 1096
1879 /* All clients need to get re-updated for the change */ 1097 /* All clients need to get re-updated for the change */
1880 update_all_map_los (m); 1098 update_all_map_los (this);
1881 return 1; 1099 return 1;
1882} 1100}
1883 1101
1884/* 1102/*
1885 * This function updates various attributes about a specific space 1103 * This function updates various attributes about a specific space
1886 * on the map (what it looks like, whether it blocks magic, 1104 * on the map (what it looks like, whether it blocks magic,
1887 * has a living creatures, prevents people from passing 1105 * has a living creatures, prevents people from passing
1888 * through, etc) 1106 * through, etc)
1889 */ 1107 */
1890void 1108void
1891update_position (maptile *m, int x, int y) 1109mapspace::update_ ()
1892{ 1110{
1893 object *tmp, *last = 0; 1111 object *tmp, *last = 0;
1894 uint8 flags = 0, oldflags, light = 0, anywhere = 0; 1112 uint8 flags = 0, light = 0, anywhere = 0;
1895 New_Face *top, *floor, *middle; 1113 New_Face *top, *floor, *middle;
1896 object *top_obj, *floor_obj, *middle_obj; 1114 object *top_obj, *floor_obj, *middle_obj;
1897 MoveType move_block = 0, move_slow = 0, move_on = 0, move_off = 0, move_allow = 0; 1115 MoveType move_block = 0, move_slow = 0, move_on = 0, move_off = 0, move_allow = 0;
1898 1116
1899 oldflags = GET_MAP_FLAGS (m, x, y);
1900 if (!(oldflags & P_NEED_UPDATE))
1901 {
1902 LOG (llevDebug, "update_position called with P_NEED_UPDATE not set: %s (%d, %d)\n", m->path, x, y);
1903 return;
1904 }
1905
1906 middle = blank_face; 1117 middle = blank_face;
1907 top = blank_face; 1118 top = blank_face;
1908 floor = blank_face; 1119 floor = blank_face;
1909 1120
1910 middle_obj = 0; 1121 middle_obj = 0;
1911 top_obj = 0; 1122 top_obj = 0;
1912 floor_obj = 0; 1123 floor_obj = 0;
1913 1124
1914 for (tmp = GET_MAP_OB (m, x, y); tmp; last = tmp, tmp = tmp->above) 1125 for (tmp = bot; tmp; last = tmp, tmp = tmp->above)
1915 { 1126 {
1916 /* This could be made additive I guess (two lights better than 1127 /* This could be made additive I guess (two lights better than
1917 * one). But if so, it shouldn't be a simple additive - 2 1128 * one). But if so, it shouldn't be a simple additive - 2
1918 * light bulbs do not illuminate twice as far as once since 1129 * light bulbs do not illuminate twice as far as once since
1919 * it is a dissapation factor that is cubed. 1130 * it is a dissapation factor that is cubed.
1983 if (tmp->type == SAFE_GROUND) flags |= P_SAFE; 1194 if (tmp->type == SAFE_GROUND) flags |= P_SAFE;
1984 if (QUERY_FLAG (tmp, FLAG_ALIVE)) flags |= P_IS_ALIVE; 1195 if (QUERY_FLAG (tmp, FLAG_ALIVE)) flags |= P_IS_ALIVE;
1985 if (QUERY_FLAG (tmp, FLAG_DAMNED)) flags |= P_NO_CLERIC; 1196 if (QUERY_FLAG (tmp, FLAG_DAMNED)) flags |= P_NO_CLERIC;
1986 } 1197 }
1987 1198
1988 /* we don't want to rely on this function to have accurate flags, but 1199 this->light = light;
1989 * since we're already doing the work, we calculate them here.
1990 * if they don't match, logic is broken someplace.
1991 */
1992 if (((oldflags & ~(P_NEED_UPDATE | P_NO_ERROR)) != flags) && (!(oldflags & P_NO_ERROR)))
1993 LOG (llevDebug, "update_position: updated flags do not match old flags: %s (old=%d,new=%d) %x != %x\n",
1994 m->path, x, y, (oldflags & ~P_NEED_UPDATE), flags);
1995
1996 mapspace &s = m->at (x, y);
1997
1998 s.flags = flags; 1200 this->flags_ = flags;
1999 s.move_block = move_block & ~move_allow; 1201 this->move_block = move_block & ~move_allow;
2000 s.move_on = move_on; 1202 this->move_on = move_on;
2001 s.move_off = move_off; 1203 this->move_off = move_off;
2002 s.move_slow = move_slow; 1204 this->move_slow = move_slow;
2003 1205
2004 /* At this point, we have a floor face (if there is a floor), 1206 /* At this point, we have a floor face (if there is a floor),
2005 * and the floor is set - we are not going to touch it at 1207 * and the floor is set - we are not going to touch it at
2006 * this point. 1208 * this point.
2007 * middle contains the highest visibility face. 1209 * middle contains the highest visibility face.
2032 1234
2033 /* If two top faces are already set, quit processing */ 1235 /* If two top faces are already set, quit processing */
2034 if ((top != blank_face) && (middle != blank_face)) 1236 if ((top != blank_face) && (middle != blank_face))
2035 break; 1237 break;
2036 1238
2037 /* Only show visible faces, unless its the editor - show all */ 1239 /* Only show visible faces */
2038 if (!tmp->invisible || editor) 1240 if (!tmp->invisible)
2039 { 1241 {
2040 /* Fill in top if needed */ 1242 /* Fill in top if needed */
2041 if (top == blank_face) 1243 if (top == blank_face)
2042 { 1244 {
2043 top = tmp->face; 1245 top = tmp->face;
2068 middle = blank_face; 1270 middle = blank_face;
2069 1271
2070 if (top == middle) 1272 if (top == middle)
2071 middle = blank_face; 1273 middle = blank_face;
2072 1274
2073 SET_MAP_FACE (m, x, y, top, 0); 1275 faces [0] = top; faces_obj [0] = top != blank_face ? top_obj : 0;
2074 if (top != blank_face) 1276 faces [1] = middle; faces_obj [1] = middle != blank_face ? middle_obj : 0;
2075 SET_MAP_FACE_OBJ (m, x, y, top_obj, 0); 1277 faces [2] = floor; faces_obj [2] = floor != blank_face ? floor_obj : 0;
2076 else
2077 SET_MAP_FACE_OBJ (m, x, y, NULL, 0);
2078
2079 SET_MAP_FACE (m, x, y, middle, 1);
2080 if (middle != blank_face)
2081 SET_MAP_FACE_OBJ (m, x, y, middle_obj, 1);
2082 else
2083 SET_MAP_FACE_OBJ (m, x, y, NULL, 1);
2084
2085 SET_MAP_FACE (m, x, y, floor, 2);
2086 if (floor != blank_face)
2087 SET_MAP_FACE_OBJ (m, x, y, floor_obj, 2);
2088 else
2089 SET_MAP_FACE_OBJ (m, x, y, NULL, 2);
2090
2091 SET_MAP_LIGHT (m, x, y, light);
2092} 1278}
2093 1279
2094
2095void
2096set_map_reset_time (maptile *map)
2097{
2098 int timeout;
2099
2100 timeout = MAP_RESET_TIMEOUT (map);
2101 if (timeout <= 0)
2102 timeout = MAP_DEFAULTRESET;
2103 if (timeout >= MAP_MAXRESET)
2104 timeout = MAP_MAXRESET;
2105 MAP_WHEN_RESET (map) = time (0) + timeout;
2106}
2107
2108/* this updates the orig_map->tile_map[tile_num] value after loading 1280/* this updates the orig_map->tile_map[tile_num] value after finding
2109 * the map. It also takes care of linking back the freshly loaded 1281 * the map. It also takes care of linking back the freshly found
2110 * maps tile_map values if it tiles back to this one. It returns 1282 * maps tile_map values if it tiles back to this one. It returns
2111 * the value of orig_map->tile_map[tile_num]. It really only does this 1283 * the value of orig_map->tile_map[tile_num].
2112 * so that it is easier for calling functions to verify success.
2113 */ 1284 */
2114
2115static maptile * 1285static inline maptile *
2116load_and_link_tiled_map (maptile *orig_map, int tile_num) 1286find_and_link (maptile *orig_map, int tile_num)
2117{ 1287{
1288 maptile *mp = orig_map->tile_map [tile_num];
1289
1290 if (!mp)
1291 {
1292 mp = orig_map->find_sync (orig_map->tile_path [tile_num], orig_map);
1293
1294 if (!mp)
1295 {
1296 // emergency mode, manufacture a dummy map, this creates a memleak, but thats fine
1297 LOG (llevError, "FATAL: cannot load tiled map %s from %s, leaking memory and worse!\n",
1298 &orig_map->tile_path[tile_num], &orig_map->path);
1299 mp = new maptile (1, 1);
1300 mp->alloc ();
1301 mp->in_memory = MAP_IN_MEMORY;
1302 }
1303 }
1304
2118 int dest_tile = (tile_num + 2) % 4; 1305 int dest_tile = (tile_num + 2) % 4;
2119 char *path = path_combine_and_normalize (orig_map->path, orig_map->tile_path[tile_num]);
2120 1306
2121 orig_map->tile_map[tile_num] = ready_map_name (path, 0); 1307 orig_map->tile_map [tile_num] = mp;
2122 1308
2123 /* need to do a strcmp here as the orig_map->path is not a shared string */ 1309 // optimisation: back-link map to origin map if euclidean
2124 if (orig_map->tile_map[tile_num]->tile_path[dest_tile] && !strcmp (orig_map->tile_map[tile_num]->tile_path[dest_tile], orig_map->path)) 1310 //TODO: non-euclidean maps MUST GO
1311 if (orig_map->tile_map[tile_num]->tile_path[dest_tile] == orig_map->path)
2125 orig_map->tile_map[tile_num]->tile_map[dest_tile] = orig_map; 1312 orig_map->tile_map[tile_num]->tile_map[dest_tile] = orig_map;
2126 1313
2127 return orig_map->tile_map[tile_num]; 1314 return mp;
1315}
1316
1317static inline void
1318load_and_link (maptile *orig_map, int tile_num)
1319{
1320 find_and_link (orig_map, tile_num)->load_sync ();
2128} 1321}
2129 1322
2130/* this returns TRUE if the coordinates (x,y) are out of 1323/* this returns TRUE if the coordinates (x,y) are out of
2131 * map m. This function also takes into account any 1324 * map m. This function also takes into account any
2132 * tiling considerations, loading adjacant maps as needed. 1325 * tiling considerations, loading adjacant maps as needed.
2133 * This is the function should always be used when it 1326 * This is the function should always be used when it
2134 * necessary to check for valid coordinates. 1327 * necessary to check for valid coordinates.
2135 * This function will recursively call itself for the 1328 * This function will recursively call itself for the
2136 * tiled maps. 1329 * tiled maps.
2137 *
2138 *
2139 */ 1330 */
2140int 1331int
2141out_of_map (maptile *m, int x, int y) 1332out_of_map (maptile *m, int x, int y)
2142{ 1333{
2143
2144 /* If we get passed a null map, this is obviously the 1334 /* If we get passed a null map, this is obviously the
2145 * case. This generally shouldn't happen, but if the 1335 * case. This generally shouldn't happen, but if the
2146 * map loads fail below, it could happen. 1336 * map loads fail below, it could happen.
2147 */ 1337 */
2148 if (!m) 1338 if (!m)
2150 1340
2151 if (x < 0) 1341 if (x < 0)
2152 { 1342 {
2153 if (!m->tile_path[3]) 1343 if (!m->tile_path[3])
2154 return 1; 1344 return 1;
1345
2155 if (!m->tile_map[3] || m->tile_map[3]->in_memory != MAP_IN_MEMORY) 1346 if (!m->tile_map[3] || m->tile_map[3]->in_memory != MAP_IN_MEMORY)
2156 { 1347 find_and_link (m, 3);
2157 load_and_link_tiled_map (m, 3); 1348
2158 }
2159 return (out_of_map (m->tile_map[3], x + MAP_WIDTH (m->tile_map[3]), y)); 1349 return out_of_map (m->tile_map[3], x + m->tile_map[3]->width, y);
2160 } 1350 }
2161 if (x >= MAP_WIDTH (m)) 1351
1352 if (x >= m->width)
2162 { 1353 {
2163 if (!m->tile_path[1]) 1354 if (!m->tile_path[1])
2164 return 1; 1355 return 1;
1356
2165 if (!m->tile_map[1] || m->tile_map[1]->in_memory != MAP_IN_MEMORY) 1357 if (!m->tile_map[1] || m->tile_map[1]->in_memory != MAP_IN_MEMORY)
2166 { 1358 find_and_link (m, 1);
2167 load_and_link_tiled_map (m, 1); 1359
2168 }
2169 return (out_of_map (m->tile_map[1], x - MAP_WIDTH (m), y)); 1360 return out_of_map (m->tile_map[1], x - m->width, y);
2170 } 1361 }
1362
2171 if (y < 0) 1363 if (y < 0)
2172 { 1364 {
2173 if (!m->tile_path[0]) 1365 if (!m->tile_path[0])
2174 return 1; 1366 return 1;
1367
2175 if (!m->tile_map[0] || m->tile_map[0]->in_memory != MAP_IN_MEMORY) 1368 if (!m->tile_map[0] || m->tile_map[0]->in_memory != MAP_IN_MEMORY)
2176 { 1369 find_and_link (m, 0);
2177 load_and_link_tiled_map (m, 0); 1370
2178 }
2179 return (out_of_map (m->tile_map[0], x, y + MAP_HEIGHT (m->tile_map[0]))); 1371 return out_of_map (m->tile_map[0], x, y + m->tile_map[0]->height);
2180 } 1372 }
2181 if (y >= MAP_HEIGHT (m)) 1373
1374 if (y >= m->height)
2182 { 1375 {
2183 if (!m->tile_path[2]) 1376 if (!m->tile_path[2])
2184 return 1; 1377 return 1;
1378
2185 if (!m->tile_map[2] || m->tile_map[2]->in_memory != MAP_IN_MEMORY) 1379 if (!m->tile_map[2] || m->tile_map[2]->in_memory != MAP_IN_MEMORY)
2186 { 1380 find_and_link (m, 2);
2187 load_and_link_tiled_map (m, 2); 1381
2188 }
2189 return (out_of_map (m->tile_map[2], x, y - MAP_HEIGHT (m))); 1382 return out_of_map (m->tile_map[2], x, y - m->height);
2190 } 1383 }
2191 1384
2192 /* Simple case - coordinates are within this local 1385 /* Simple case - coordinates are within this local
2193 * map. 1386 * map.
2194 */ 1387 */
2197 1390
2198/* This is basically the same as out_of_map above, but 1391/* This is basically the same as out_of_map above, but
2199 * instead we return NULL if no map is valid (coordinates 1392 * instead we return NULL if no map is valid (coordinates
2200 * out of bounds and no tiled map), otherwise it returns 1393 * out of bounds and no tiled map), otherwise it returns
2201 * the map as that the coordinates are really on, and 1394 * the map as that the coordinates are really on, and
2202 * updates x and y to be the localized coordinates. 1395 * updates x and y to be the localised coordinates.
2203 * Using this is more efficient of calling out_of_map 1396 * Using this is more efficient of calling out_of_map
2204 * and then figuring out what the real map is 1397 * and then figuring out what the real map is
2205 */ 1398 */
2206maptile * 1399maptile *
2207get_map_from_coord (maptile *m, sint16 * x, sint16 * y) 1400maptile::xy_find (sint16 &x, sint16 &y)
2208{ 1401{
2209
2210 if (*x < 0) 1402 if (x < 0)
2211 { 1403 {
2212 if (!m->tile_path[3]) 1404 if (!tile_path[3])
2213 return NULL; 1405 return 0;
2214 if (!m->tile_map[3] || m->tile_map[3]->in_memory != MAP_IN_MEMORY)
2215 load_and_link_tiled_map (m, 3);
2216 1406
2217 *x += MAP_WIDTH (m->tile_map[3]); 1407 find_and_link (this, 3);
2218 return (get_map_from_coord (m->tile_map[3], x, y)); 1408 x += tile_map[3]->width;
2219 } 1409 return tile_map[3]->xy_find (x, y);
2220 if (*x >= MAP_WIDTH (m))
2221 { 1410 }
1411
1412 if (x >= width)
1413 {
2222 if (!m->tile_path[1]) 1414 if (!tile_path[1])
2223 return NULL; 1415 return 0;
2224 if (!m->tile_map[1] || m->tile_map[1]->in_memory != MAP_IN_MEMORY)
2225 load_and_link_tiled_map (m, 1);
2226 1416
2227 *x -= MAP_WIDTH (m); 1417 find_and_link (this, 1);
2228 return (get_map_from_coord (m->tile_map[1], x, y)); 1418 x -= width;
1419 return tile_map[1]->xy_find (x, y);
2229 } 1420 }
1421
2230 if (*y < 0) 1422 if (y < 0)
2231 { 1423 {
2232 if (!m->tile_path[0]) 1424 if (!tile_path[0])
2233 return NULL; 1425 return 0;
2234 if (!m->tile_map[0] || m->tile_map[0]->in_memory != MAP_IN_MEMORY)
2235 load_and_link_tiled_map (m, 0);
2236 1426
2237 *y += MAP_HEIGHT (m->tile_map[0]); 1427 find_and_link (this, 0);
2238 return (get_map_from_coord (m->tile_map[0], x, y)); 1428 y += tile_map[0]->height;
2239 } 1429 return tile_map[0]->xy_find (x, y);
2240 if (*y >= MAP_HEIGHT (m))
2241 { 1430 }
1431
1432 if (y >= height)
1433 {
2242 if (!m->tile_path[2]) 1434 if (!tile_path[2])
2243 return NULL; 1435 return 0;
2244 if (!m->tile_map[2] || m->tile_map[2]->in_memory != MAP_IN_MEMORY)
2245 load_and_link_tiled_map (m, 2);
2246 1436
2247 *y -= MAP_HEIGHT (m); 1437 find_and_link (this, 2);
2248 return (get_map_from_coord (m->tile_map[2], x, y)); 1438 y -= height;
1439 return tile_map[2]->xy_find (x, y);
2249 } 1440 }
2250 1441
2251 /* Simple case - coordinates are within this local 1442 /* Simple case - coordinates are within this local
2252 * map. 1443 * map.
2253 */ 1444 */
2254
2255 return m; 1445 return this;
2256} 1446}
2257 1447
2258/** 1448/**
2259 * Return whether map2 is adjacent to map1. If so, store the distance from 1449 * Return whether map2 is adjacent to map1. If so, store the distance from
2260 * map1 to map2 in dx/dy. 1450 * map1 to map2 in dx/dy.
2263adjacent_map (const maptile *map1, const maptile *map2, int *dx, int *dy) 1453adjacent_map (const maptile *map1, const maptile *map2, int *dx, int *dy)
2264{ 1454{
2265 if (!map1 || !map2) 1455 if (!map1 || !map2)
2266 return 0; 1456 return 0;
2267 1457
1458 //TODO: this doesn't actually check corretcly when intermediate maps are not loaded
1459 //fix: compare paths instead (this is likely faster, too!)
2268 if (map1 == map2) 1460 if (map1 == map2)
2269 { 1461 {
2270 *dx = 0; 1462 *dx = 0;
2271 *dy = 0; 1463 *dy = 0;
2272
2273 } 1464 }
2274 else if (map1->tile_map[0] == map2) 1465 else if (map1->tile_map[0] == map2)
2275 { /* up */ 1466 { /* up */
2276 *dx = 0; 1467 *dx = 0;
2277 *dy = -MAP_HEIGHT (map2); 1468 *dy = -map2->height;
2278 } 1469 }
2279 else if (map1->tile_map[1] == map2) 1470 else if (map1->tile_map[1] == map2)
2280 { /* right */ 1471 { /* right */
2281 *dx = MAP_WIDTH (map1); 1472 *dx = map1->width;
2282 *dy = 0; 1473 *dy = 0;
2283 } 1474 }
2284 else if (map1->tile_map[2] == map2) 1475 else if (map1->tile_map[2] == map2)
2285 { /* down */ 1476 { /* down */
2286 *dx = 0; 1477 *dx = 0;
2287 *dy = MAP_HEIGHT (map1); 1478 *dy = map1->height;
2288 } 1479 }
2289 else if (map1->tile_map[3] == map2) 1480 else if (map1->tile_map[3] == map2)
2290 { /* left */ 1481 { /* left */
2291 *dx = -MAP_WIDTH (map2); 1482 *dx = -map2->width;
2292 *dy = 0; 1483 *dy = 0;
2293
2294 } 1484 }
2295 else if (map1->tile_map[0] && map1->tile_map[0]->tile_map[1] == map2) 1485 else if (map1->tile_map[0] && map1->tile_map[0]->tile_map[1] == map2)
2296 { /* up right */ 1486 { /* up right */
2297 *dx = MAP_WIDTH (map1->tile_map[0]); 1487 *dx = map1->tile_map[0]->width;
2298 *dy = -MAP_HEIGHT (map1->tile_map[0]); 1488 *dy = -map1->tile_map[0]->height;
2299 } 1489 }
2300 else if (map1->tile_map[0] && map1->tile_map[0]->tile_map[3] == map2) 1490 else if (map1->tile_map[0] && map1->tile_map[0]->tile_map[3] == map2)
2301 { /* up left */ 1491 { /* up left */
2302 *dx = -MAP_WIDTH (map2); 1492 *dx = -map2->width;
2303 *dy = -MAP_HEIGHT (map1->tile_map[0]); 1493 *dy = -map1->tile_map[0]->height;
2304 } 1494 }
2305 else if (map1->tile_map[1] && map1->tile_map[1]->tile_map[0] == map2) 1495 else if (map1->tile_map[1] && map1->tile_map[1]->tile_map[0] == map2)
2306 { /* right up */ 1496 { /* right up */
2307 *dx = MAP_WIDTH (map1); 1497 *dx = map1->width;
2308 *dy = -MAP_HEIGHT (map2); 1498 *dy = -map2->height;
2309 } 1499 }
2310 else if (map1->tile_map[1] && map1->tile_map[1]->tile_map[2] == map2) 1500 else if (map1->tile_map[1] && map1->tile_map[1]->tile_map[2] == map2)
2311 { /* right down */ 1501 { /* right down */
2312 *dx = MAP_WIDTH (map1); 1502 *dx = map1->width;
2313 *dy = MAP_HEIGHT (map1->tile_map[1]); 1503 *dy = map1->tile_map[1]->height;
2314 } 1504 }
2315 else if (map1->tile_map[2] && map1->tile_map[2]->tile_map[1] == map2) 1505 else if (map1->tile_map[2] && map1->tile_map[2]->tile_map[1] == map2)
2316 { /* down right */ 1506 { /* down right */
2317 *dx = MAP_WIDTH (map1->tile_map[2]); 1507 *dx = map1->tile_map[2]->width;
2318 *dy = MAP_HEIGHT (map1); 1508 *dy = map1->height;
2319 } 1509 }
2320 else if (map1->tile_map[2] && map1->tile_map[2]->tile_map[3] == map2) 1510 else if (map1->tile_map[2] && map1->tile_map[2]->tile_map[3] == map2)
2321 { /* down left */ 1511 { /* down left */
2322 *dx = -MAP_WIDTH (map2); 1512 *dx = -map2->width;
2323 *dy = MAP_HEIGHT (map1); 1513 *dy = map1->height;
2324 } 1514 }
2325 else if (map1->tile_map[3] && map1->tile_map[3]->tile_map[0] == map2) 1515 else if (map1->tile_map[3] && map1->tile_map[3]->tile_map[0] == map2)
2326 { /* left up */ 1516 { /* left up */
2327 *dx = -MAP_WIDTH (map1->tile_map[3]); 1517 *dx = -map1->tile_map[3]->width;
2328 *dy = -MAP_HEIGHT (map2); 1518 *dy = -map2->height;
2329 } 1519 }
2330 else if (map1->tile_map[3] && map1->tile_map[3]->tile_map[2] == map2) 1520 else if (map1->tile_map[3] && map1->tile_map[3]->tile_map[2] == map2)
2331 { /* left down */ 1521 { /* left down */
2332 *dx = -MAP_WIDTH (map1->tile_map[3]); 1522 *dx = -map1->tile_map[3]->width;
2333 *dy = MAP_HEIGHT (map1->tile_map[3]); 1523 *dy = map1->tile_map[3]->height;
2334
2335 } 1524 }
2336 else 1525 else
2337 { /* not "adjacent" enough */
2338 return 0; 1526 return 0;
2339 }
2340 1527
2341 return 1; 1528 return 1;
1529}
1530
1531maptile *
1532maptile::xy_load (sint16 &x, sint16 &y)
1533{
1534 maptile *map = xy_find (x, y);
1535
1536 if (map)
1537 map->load_sync ();
1538
1539 return map;
1540}
1541
1542maptile *
1543get_map_from_coord (maptile *m, sint16 *x, sint16 *y)
1544{
1545 return m->xy_load (*x, *y);
2342} 1546}
2343 1547
2344/* From map.c 1548/* From map.c
2345 * This is used by get_player to determine where the other 1549 * This is used by get_player to determine where the other
2346 * creature is. get_rangevector takes into account map tiling, 1550 * creature is. get_rangevector takes into account map tiling,
2359 * be unexpected 1563 * be unexpected
2360 * 1564 *
2361 * currently, the only flag supported (0x1) is don't translate for 1565 * currently, the only flag supported (0x1) is don't translate for
2362 * closest body part of 'op1' 1566 * closest body part of 'op1'
2363 */ 1567 */
2364
2365void 1568void
2366get_rangevector (object *op1, object *op2, rv_vector * retval, int flags) 1569get_rangevector (object *op1, object *op2, rv_vector * retval, int flags)
2367{ 1570{
2368 if (!adjacent_map (op1->map, op2->map, &retval->distance_x, &retval->distance_y)) 1571 if (!adjacent_map (op1->map, op2->map, &retval->distance_x, &retval->distance_y))
2369 { 1572 {
2450 } 1653 }
2451} 1654}
2452 1655
2453/* Returns true of op1 and op2 are effectively on the same map 1656/* Returns true of op1 and op2 are effectively on the same map
2454 * (as related to map tiling). Note that this looks for a path from 1657 * (as related to map tiling). Note that this looks for a path from
2455 * op1 to op2, so if the tiled maps are assymetric and op2 has a path 1658 * op1 to op2, so if the tiled maps are asymetric and op2 has a path
2456 * to op1, this will still return false. 1659 * to op1, this will still return false.
2457 * Note we only look one map out to keep the processing simple 1660 * Note we only look one map out to keep the processing simple
2458 * and efficient. This could probably be a macro. 1661 * and efficient. This could probably be a macro.
2459 * MSW 2001-08-05 1662 * MSW 2001-08-05
2460 */ 1663 */
2463{ 1666{
2464 int dx, dy; 1667 int dx, dy;
2465 1668
2466 return adjacent_map (op1->map, op2->map, &dx, &dy); 1669 return adjacent_map (op1->map, op2->map, &dx, &dy);
2467} 1670}
1671
1672object *
1673maptile::insert (object *op, int x, int y, object *originator, int flags)
1674{
1675 if (!op->flag [FLAG_REMOVED])
1676 op->remove ();
1677
1678 return insert_ob_in_map_at (op, this, originator, flags, x, y);
1679}
1680

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