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Comparing deliantra/server/common/map.C (file contents):
Revision 1.35 by root, Sun Dec 10 01:16:27 2006 UTC vs.
Revision 1.130 by root, Sun Sep 30 20:22:14 2007 UTC

1/* 1/*
2 CrossFire, A Multiplayer game for X-windows 2 * This file is part of Crossfire TRT, the Roguelike Realtime MORPG.
3 3 *
4 * Copyright (©) 2005,2006,2007 Marc Alexander Lehmann / Robin Redeker / the Crossfire TRT team
4 Copyright (C) 2001-2003 Mark Wedel & Crossfire Development Team 5 * Copyright (©) 2001-2003,2007 Mark Wedel & Crossfire Development Team
5 Copyright (C) 1992 Frank Tore Johansen 6 * Copyright (©) 1992,2007 Frank Tore Johansen
6 7 *
7 This program is free software; you can redistribute it and/or modify 8 * Crossfire TRT 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
9 the Free Software Foundation; either version 2 of the License, or 10 * the Free Software Foundation, either version 3 of the License, or
10 (at your option) any later version. 11 * (at your option) any later version.
11 12 *
12 This program is distributed in the hope that it will be useful, 13 * This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of 14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details. 16 * GNU General Public License for more details.
16 17 *
17 You should have received a copy of the GNU General Public License 18 * You should have received a copy of the GNU General Public License
18 along with this program; if not, write to the Free Software 19 * along with this program. If not, see <http://www.gnu.org/licenses/>.
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 to <crossfire@schmorp.de>
22*/ 22 */
23 23
24
25#include <global.h>
26#include <funcpoint.h>
27
28#include <loader.h>
29#ifndef WIN32 /* ---win32 exclude header */
30# include <unistd.h> 24#include <unistd.h>
31#endif /* win32 */ 25
26#include "global.h"
27#include "funcpoint.h"
28
29#include "loader.h"
32 30
33#include "path.h" 31#include "path.h"
34
35
36/*
37 * Returns the maptile which has a name matching the given argument.
38 * return NULL if no match is found.
39 */
40
41maptile *
42has_been_loaded (const char *name)
43{
44 maptile *map;
45
46 if (!name || !*name)
47 return 0;
48 for (map = first_map; map; map = map->next)
49 if (!strcmp (name, map->path))
50 break;
51 return (map);
52}
53
54/*
55 * This makes a path absolute outside the world of Crossfire.
56 * In other words, it prepends LIBDIR/MAPDIR/ to the given path
57 * and returns the pointer to a static array containing the result.
58 * it really should be called create_mapname
59 */
60
61const char *
62create_pathname (const char *name)
63{
64 static char buf[MAX_BUF];
65
66 /* Why? having extra / doesn't confuse unix anyplace? Dependancies
67 * someplace else in the code? msw 2-17-97
68 */
69 if (*name == '/')
70 sprintf (buf, "%s/%s%s", settings.datadir, settings.mapdir, name);
71 else
72 sprintf (buf, "%s/%s/%s", settings.datadir, settings.mapdir, name);
73 return (buf);
74}
75
76/*
77 * same as create_pathname, but for the overlay maps.
78 */
79
80const char *
81create_overlay_pathname (const char *name)
82{
83 static char buf[MAX_BUF];
84
85 /* Why? having extra / doesn't confuse unix anyplace? Dependancies
86 * someplace else in the code? msw 2-17-97
87 */
88 if (*name == '/')
89 sprintf (buf, "%s/%s%s", settings.localdir, settings.mapdir, name);
90 else
91 sprintf (buf, "%s/%s/%s", settings.localdir, settings.mapdir, name);
92 return (buf);
93}
94
95/*
96 * same as create_pathname, but for the template maps.
97 */
98
99const char *
100create_template_pathname (const char *name)
101{
102 static char buf[MAX_BUF];
103
104 /* Why? having extra / doesn't confuse unix anyplace? Dependancies
105 * someplace else in the code? msw 2-17-97
106 */
107 if (*name == '/')
108 sprintf (buf, "%s/%s%s", settings.localdir, settings.templatedir, name);
109 else
110 sprintf (buf, "%s/%s/%s", settings.localdir, settings.templatedir, name);
111 return (buf);
112}
113
114/*
115 * This makes absolute path to the itemfile where unique objects
116 * will be saved. Converts '/' to '@'. I think it's essier maintain
117 * files than full directory structure, but if this is problem it can
118 * be changed.
119 */
120static const char *
121create_items_path (const char *s)
122{
123 static char buf[MAX_BUF];
124 char *t;
125
126 if (*s == '/')
127 s++;
128
129 sprintf (buf, "%s/%s/", settings.localdir, settings.uniquedir);
130
131 for (t = buf + strlen (buf); *s; s++, t++)
132 if (*s == '/')
133 *t = '@';
134 else
135 *t = *s;
136 *t = 0;
137 return (buf);
138}
139
140
141/*
142 * This function checks if a file with the given path exists.
143 * -1 is returned if it fails, otherwise the mode of the file
144 * is returned.
145 * It tries out all the compression suffixes listed in the uncomp[] array.
146 *
147 * If prepend_dir is set, then we call create_pathname (which prepends
148 * libdir & mapdir). Otherwise, we assume the name given is fully
149 * complete.
150 * Only the editor actually cares about the writablity of this -
151 * the rest of the code only cares that the file is readable.
152 * when the editor goes away, the call to stat should probably be
153 * replaced by an access instead (similar to the windows one, but
154 * that seems to be missing the prepend_dir processing
155 */
156
157int
158check_path (const char *name, int prepend_dir)
159{
160 char buf[MAX_BUF];
161
162#ifndef WIN32
163 char *endbuf;
164 struct stat statbuf;
165 int mode = 0;
166#endif
167
168 if (prepend_dir)
169 strcpy (buf, create_pathname (name));
170 else
171 strcpy (buf, name);
172#ifdef WIN32 /* ***win32: check this sucker in windows style. */
173 return (_access (buf, 0));
174#else
175
176 /* old method (strchr(buf, '\0')) seemd very odd to me -
177 * this method should be equivalant and is clearer.
178 * Can not use strcat because we need to cycle through
179 * all the names.
180 */
181 endbuf = buf + strlen (buf);
182
183 if (stat (buf, &statbuf))
184 return -1;
185 if (!S_ISREG (statbuf.st_mode))
186 return (-1);
187
188 if (((statbuf.st_mode & S_IRGRP) && getegid () == statbuf.st_gid) ||
189 ((statbuf.st_mode & S_IRUSR) && geteuid () == statbuf.st_uid) || (statbuf.st_mode & S_IROTH))
190 mode |= 4;
191
192 if ((statbuf.st_mode & S_IWGRP && getegid () == statbuf.st_gid) ||
193 (statbuf.st_mode & S_IWUSR && geteuid () == statbuf.st_uid) || (statbuf.st_mode & S_IWOTH))
194 mode |= 2;
195
196 return (mode);
197#endif
198}
199
200/*
201 * Prints out debug-information about a map.
202 * Dumping these at llevError doesn't seem right, but is
203 * necessary to make sure the information is in fact logged.
204 */
205
206void
207dump_map (const maptile *m)
208{
209 LOG (llevError, "Map %s status: %d.\n", m->path, m->in_memory);
210 LOG (llevError, "Size: %dx%d Start: %d,%d\n", MAP_WIDTH (m), MAP_HEIGHT (m), MAP_ENTER_X (m), MAP_ENTER_Y (m));
211
212 if (m->msg != NULL)
213 LOG (llevError, "Message:\n%s", m->msg);
214
215 if (m->maplore != NULL)
216 LOG (llevError, "Lore:\n%s", m->maplore);
217
218 if (m->tmpname != NULL)
219 LOG (llevError, "Tmpname: %s\n", m->tmpname);
220
221 LOG (llevError, "Difficulty: %d\n", m->difficulty);
222 LOG (llevError, "Darkness: %d\n", m->darkness);
223}
224
225/*
226 * Prints out debug-information about all maps.
227 * This basically just goes through all the maps and calls
228 * dump_map on each one.
229 */
230
231void
232dump_all_maps (void)
233{
234 maptile *m;
235
236 for (m = first_map; m != NULL; m = m->next)
237 {
238 dump_map (m);
239 }
240}
241 32
242/* This rolls up wall, blocks_magic, blocks_view, etc, all into 33/* This rolls up wall, blocks_magic, blocks_view, etc, all into
243 * one function that just returns a P_.. value (see map.h) 34 * one function that just returns a P_.. value (see map.h)
244 * it will also do map translation for tiled maps, returning 35 * it will also do map translation for tiled maps, returning
245 * new values into newmap, nx, and ny. Any and all of those 36 * new values into newmap, nx, and ny. Any and all of those
248 * is needed. The case of not passing values is if we're just 39 * is needed. The case of not passing values is if we're just
249 * checking for the existence of something on those spaces, but 40 * checking for the existence of something on those spaces, but
250 * don't expect to insert/remove anything from those spaces. 41 * don't expect to insert/remove anything from those spaces.
251 */ 42 */
252int 43int
253get_map_flags (maptile *oldmap, maptile **newmap, sint16 x, sint16 y, sint16 * nx, sint16 * ny) 44get_map_flags (maptile *oldmap, maptile **newmap, sint16 x, sint16 y, sint16 *nx, sint16 *ny)
254{ 45{
255 sint16 newx, newy; 46 sint16 newx = x;
256 int retval = 0; 47 sint16 newy = y;
257 maptile *mp;
258 48
259 if (out_of_map (oldmap, x, y)) 49 maptile *mp = get_map_from_coord (oldmap, &newx, &newy);
50
51 if (!mp)
260 return P_OUT_OF_MAP; 52 return P_OUT_OF_MAP;
261 newx = x;
262 newy = y;
263 mp = get_map_from_coord (oldmap, &newx, &newy);
264 if (mp != oldmap)
265 retval |= P_NEW_MAP;
266 if (newmap)
267 *newmap = mp;
268 if (nx)
269 *nx = newx;
270 if (ny)
271 *ny = newy;
272 53
273 retval |= mp->spaces[newx + mp->width * newy].flags; 54 if (newmap) *newmap = mp;
55 if (nx) *nx = newx;
56 if (ny) *ny = newy;
274 57
275 return retval; 58 return mp->at (newx, newy).flags () | (mp != oldmap ? P_NEW_MAP : 0);
276} 59}
277 60
278/* 61/*
279 * Returns true if the given coordinate is blocked except by the 62 * Returns true if the given coordinate is blocked except by the
280 * object passed is not blocking. This is used with 63 * object passed is not blocking. This is used with
303 } 86 }
304 87
305 /* Save some cycles - instead of calling get_map_flags(), just get the value 88 /* Save some cycles - instead of calling get_map_flags(), just get the value
306 * directly. 89 * directly.
307 */ 90 */
308 mflags = m->spaces[sx + m->width * sy].flags; 91 mflags = m->at (sx, sy).flags ();
309 92
310 blocked = GET_MAP_MOVE_BLOCK (m, sx, sy); 93 blocked = GET_MAP_MOVE_BLOCK (m, sx, sy);
311 94
312 /* If space is currently not blocked by anything, no need to 95 /* If space is currently not blocked by anything, no need to
313 * go further. Not true for players - all sorts of special 96 * go further. Not true for players - all sorts of special
324 * let the player through (inventory checkers for example) 107 * let the player through (inventory checkers for example)
325 */ 108 */
326 if (!(mflags & P_IS_ALIVE) && !OB_TYPE_MOVE_BLOCK (ob, blocked)) 109 if (!(mflags & P_IS_ALIVE) && !OB_TYPE_MOVE_BLOCK (ob, blocked))
327 return 0; 110 return 0;
328 111
329 if (ob->head != NULL)
330 ob = ob->head; 112 ob = ob->head_ ();
331 113
332 /* We basically go through the stack of objects, and if there is 114 /* We basically go through the stack of objects, and if there is
333 * some other object that has NO_PASS or FLAG_ALIVE set, return 115 * some other object that has NO_PASS or FLAG_ALIVE set, return
334 * true. If we get through the entire stack, that must mean 116 * true. If we get through the entire stack, that must mean
335 * ob is blocking it, so return 0. 117 * ob is blocking it, so return 0.
336 */ 118 */
337 for (tmp = GET_MAP_OB (m, sx, sy); tmp != NULL; tmp = tmp->above) 119 for (tmp = GET_MAP_OB (m, sx, sy); tmp; tmp = tmp->above)
338 { 120 {
339 121
340 /* This must be before the checks below. Code for inventory checkers. */ 122 /* This must be before the checks below. Code for inventory checkers. */
341 if (tmp->type == CHECK_INV && OB_MOVE_BLOCK (ob, tmp)) 123 if (tmp->type == CHECK_INV && OB_MOVE_BLOCK (ob, tmp))
342 { 124 {
365 else 147 else
366 { 148 {
367 /* Broke apart a big nasty if into several here to make 149 /* Broke apart a big nasty if into several here to make
368 * this more readable. first check - if the space blocks 150 * this more readable. first check - if the space blocks
369 * movement, can't move here. 151 * movement, can't move here.
370 * second - if a monster, can't move there, unles it is a 152 * second - if a monster, can't move there, unless it is a
371 * hidden dm 153 * hidden dm
372 */ 154 */
373 if (OB_MOVE_BLOCK (ob, tmp)) 155 if (OB_MOVE_BLOCK (ob, tmp))
374 return 1; 156 return 1;
375 if (QUERY_FLAG (tmp, FLAG_ALIVE) && tmp->head != ob && tmp != ob && 157
376 tmp->type != DOOR && !(QUERY_FLAG (tmp, FLAG_WIZ) && tmp->contr->hidden)) 158 if (tmp->flag [FLAG_ALIVE]
159 && tmp->head_ () != ob
160 && tmp != ob
161 && tmp->type != DOOR
162 && !(tmp->flag [FLAG_WIZ] && tmp->contr->hidden))
377 return 1; 163 return 1;
378 } 164 }
379 165
380 } 166 }
381 return 0; 167 return 0;
382} 168}
383 169
384
385/* 170/*
386 * Returns true if the given object can't fit in the given spot. 171 * Returns qthe blocking object if the given object can't fit in the given
387 * This is meant for multi space objects - for single space objecs, 172 * spot. This is meant for multi space objects - for single space objecs,
388 * just calling get_map_blocked and checking that against movement type 173 * just calling get_map_blocked and checking that against movement type
389 * of object. This function goes through all the parts of the 174 * of object. This function goes through all the parts of the multipart
390 * multipart object and makes sure they can be inserted. 175 * object and makes sure they can be inserted.
391 * 176 *
392 * While this doesn't call out of map, the get_map_flags does. 177 * While this doesn't call out of map, the get_map_flags does.
393 * 178 *
394 * This function has been used to deprecate arch_out_of_map - 179 * This function has been used to deprecate arch_out_of_map -
395 * this function also does that check, and since in most cases, 180 * this function also does that check, and since in most cases,
406 * 191 *
407 * Note this used to be arch_blocked, but with new movement 192 * Note this used to be arch_blocked, but with new movement
408 * code, we need to have actual object to check its move_type 193 * code, we need to have actual object to check its move_type
409 * against the move_block values. 194 * against the move_block values.
410 */ 195 */
411 196bool
412int 197object::blocked (maptile *m, int x, int y) const
413ob_blocked (const object *ob, maptile *m, sint16 x, sint16 y)
414{ 198{
415 archetype *tmp; 199 for (archetype *tmp = arch; tmp; tmp = (archetype *)tmp->more)
416 int flag;
417 maptile *m1;
418 sint16 sx, sy;
419
420 if (ob == NULL)
421 {
422 flag = get_map_flags (m, &m1, x, y, &sx, &sy);
423 if (flag & P_OUT_OF_MAP)
424 return P_OUT_OF_MAP;
425
426 /* don't have object, so don't know what types would block */
427 return (GET_MAP_MOVE_BLOCK (m1, sx, sy));
428 } 200 {
201 mapxy pos (m, x + tmp->x, y + tmp->y);
429 202
430 for (tmp = ob->arch; tmp != NULL; tmp = tmp->more) 203 if (!pos.normalise ())
431 { 204 return 1;
432 flag = get_map_flags (m, &m1, x + tmp->clone.x, y + tmp->clone.y, &sx, &sy);
433 205
434 if (flag & P_OUT_OF_MAP) 206 mapspace &ms = *pos;
435 return P_OUT_OF_MAP; 207
436 if (flag & P_IS_ALIVE) 208 if (ms.flags () & P_IS_ALIVE)
437 return P_IS_ALIVE; 209 return 1;
438 210
439 /* find_first_free_spot() calls this function. However, often 211 /* However, often ob doesn't have any move type
440 * ob doesn't have any move type (when used to place exits) 212 * (signifying non-moving objects)
441 * so the AND operation in OB_TYPE_MOVE_BLOCK doesn't work. 213 * so the AND operation in OB_TYPE_MOVE_BLOCK doesn't work.
442 */ 214 */
443 215 if (!move_type && ms.move_block != MOVE_ALL)
444 if (ob->move_type == 0 && GET_MAP_MOVE_BLOCK (m1, sx, sy) != MOVE_ALL)
445 continue; 216 continue;
446 217
447 /* Note it is intentional that we check ob - the movement type of the 218 /* Note it is intentional that we check ob - the movement type of the
448 * head of the object should correspond for the entire object. 219 * head of the object should correspond for the entire object.
449 */ 220 */
450 if (OB_TYPE_MOVE_BLOCK (ob, GET_MAP_MOVE_BLOCK (m1, sx, sy))) 221 if (ms.blocks (move_type))
451 return AB_NO_PASS; 222 return 1;
452
453 } 223 }
224
454 return 0; 225 return 0;
455} 226}
456 227
457/* When the map is loaded, load_object does not actually insert objects 228/* When the map is loaded, load_object does not actually insert objects
458 * into inventory, but just links them. What this does is go through 229 * into inventory, but just links them. What this does is go through
459 * and insert them properly. 230 * and insert them properly.
460 * The object 'container' is the object that contains the inventory. 231 * The object 'container' is the object that contains the inventory.
461 * This is needed so that we can update the containers weight. 232 * This is needed so that we can update the containers weight.
462 */ 233 */
463
464void 234void
465fix_container (object *container) 235fix_container (object *container)
466{ 236{
467 object *tmp = container->inv, *next; 237 object *tmp = container->inv, *next;
468 238
469 container->inv = NULL; 239 container->inv = 0;
470 while (tmp != NULL) 240 while (tmp)
471 { 241 {
472 next = tmp->below; 242 next = tmp->below;
473 if (tmp->inv) 243 if (tmp->inv)
474 fix_container (tmp); 244 fix_container (tmp);
245
475 (void) insert_ob_in_ob (tmp, container); 246 insert_ob_in_ob (tmp, container);
476 tmp = next; 247 tmp = next;
477 } 248 }
249
478 /* sum_weight will go through and calculate what all the containers are 250 /* sum_weight will go through and calculate what all the containers are
479 * carrying. 251 * carrying.
480 */ 252 */
481 sum_weight (container); 253 sum_weight (container);
482} 254}
483 255
256void
257maptile::set_object_flag (int flag, int value)
258{
259 if (!spaces)
260 return;
261
262 for (mapspace *ms = spaces + size (); ms-- > spaces; )
263 for (object *tmp = ms->bot; tmp; tmp = tmp->above)
264 tmp->flag [flag] = value;
265}
266
484/* link_multipart_objects go through all the objects on the map looking 267/* link_multipart_objects go through all the objects on the map looking
485 * for objects whose arch says they are multipart yet according to the 268 * for objects whose arch says they are multipart yet according to the
486 * info we have, they only have the head (as would be expected when 269 * info we have, they only have the head (as would be expected when
487 * they are saved). We do have to look for the old maps that did save 270 * they are saved).
488 * the more sections and not re-add sections for them.
489 */ 271 */
490 272void
491static void 273maptile::link_multipart_objects ()
492link_multipart_objects (maptile *m)
493{ 274{
494 int x, y; 275 if (!spaces)
495 object *tmp, *op, *last, *above; 276 return;
496 archetype *at;
497 277
498 for (x = 0; x < MAP_WIDTH (m); x++) 278 for (mapspace *ms = spaces + size (); ms-- > spaces; )
499 for (y = 0; y < MAP_HEIGHT (m); y++) 279 {
500 for (tmp = get_map_ob (m, x, y); tmp != NULL; tmp = above) 280 object *op = ms->bot;
281 while (op)
501 { 282 {
502 above = tmp->above;
503
504 /* already multipart - don't do anything more */ 283 /* already multipart - don't do anything more */
505 if (tmp->head || tmp->more) 284 if (op->head_ () == op && !op->more && op->arch->more)
506 continue;
507
508 /* If there is nothing more to this object, this for loop
509 * won't do anything.
510 */
511 for (at = tmp->arch->more, last = tmp; at != NULL; at = at->more, last = op)
512 { 285 {
513 op = arch_to_object (at); 286 op->remove ();
287 op->expand_tail ();
514 288
515 /* update x,y coordinates */ 289 // FIXME: INS_ON_TOP is just a workaround for the pentagram vs.
516 op->x += tmp->x; 290 // multi-tile monster bug, where INS_ABOVE_FLOOR_ONLY put the monsters
517 op->y += tmp->y; 291 // below the pentagrams... hopefully INS_ON_TOP doesn't break anything
518 op->head = tmp; 292 insert (op, op->x, op->y, 0, INS_NO_MERGE | INS_ON_TOP | INS_NO_WALK_ON);
519 op->map = m; 293
520 last->more = op; 294 op = ms->bot; // we are mutating the mapspace too much with INS_ON_TOP
521 op->name = tmp->name; 295 // so we have to reset the iteration through the mapspace
522 op->title = tmp->title;
523 /* we could link all the parts onto tmp, and then just
524 * call insert_ob_in_map once, but the effect is the same,
525 * as insert_ob_in_map will call itself with each part, and
526 * the coding is simpler to just to it here with each part.
527 */ 296 }
528 insert_ob_in_map (op, op->map, tmp, INS_NO_MERGE | INS_ABOVE_FLOOR_ONLY | INS_NO_WALK_ON); 297 else
529 } /* for at = tmp->arch->more */ 298 op = op->above;
530 } /* for objects on this space */ 299 }
300 }
531} 301}
532 302
533/* 303/*
534 * Loads (ands parses) the objects into a given map from the specified 304 * Loads (ands parses) the objects into a given map from the specified
535 * file pointer. 305 * file pointer.
536 * mapflags is the same as we get with load_original_map
537 */ 306 */
307bool
308maptile::_load_objects (object_thawer &f)
309{
310 for (;;)
311 {
312 coroapi::cede_to_tick_every (100); // cede once in a while
313
314 switch (f.kw)
315 {
316 case KW_arch:
317 if (object *op = object::read (f, this))
318 {
319 if (op->inv)
320 sum_weight (op);
321
322 if (IN_RANGE_EXC (op->x, 0, width) && IN_RANGE_EXC (op->y, 0, height))
323 {
324 // we insert manually because
325 // a) its way faster
326 // b) we remove manually, too, and there are good reasons for that
327 // c) its correct
328 mapspace &ms = at (op->x, op->y);
329
330 op->flag [FLAG_REMOVED] = false;
331
332 op->above = 0;
333 op->below = ms.top;
334
335 if (ms.top)
336 ms.top->above = op;
337 else
338 ms.bot = op;
339
340 ms.top = op;
341 ms.flags_ = 0;
342 }
343 else
344 {
345 f.parse_warn (format ("object %s out of range", op->debug_desc ()));
346 op->destroy ();
347 }
348 }
349
350 continue;
351
352 case KW_EOF:
353 return true;
354
355 default:
356 if (!f.parse_error ("map file"))
357 return false;
358 break;
359 }
360
361 f.next ();
362 }
363
364 return true;
365}
366
538void 367void
539load_objects (maptile *m, object_thawer & fp, int mapflags) 368maptile::activate ()
540{ 369{
541 int i, j; 370 if (spaces)
542 int unique; 371 for (mapspace *ms = spaces + size (); ms-- > spaces; )
543 object *op, *prev = NULL, *last_more = NULL, *otmp; 372 for (object *op = ms->bot; op; op = op->above)
373 op->activate_recursive ();
374}
544 375
545 op = get_object (); 376void
546 op->map = m; /* To handle buttons correctly */ 377maptile::deactivate ()
378{
379 if (spaces)
380 for (mapspace *ms = spaces + size (); ms-- > spaces; )
381 for (object *op = ms->bot; op; op = op->above)
382 op->deactivate_recursive ();
383}
547 384
548 while ((i = load_object (fp, op, mapflags))) 385bool
386maptile::_save_objects (object_freezer &f, int flags)
387{
388 coroapi::cede_to_tick ();
389
390 if (flags & IO_HEADER)
391 _save_header (f);
392
393 if (!spaces)
394 return false;
395
396 for (int i = 0; i < size (); ++i)
549 { 397 {
550 /* if the archetype for the object is null, means that we 398 bool unique = 0;
551 * got an invalid object. Don't do anything with it - the game 399
552 * or editor will not be able to do anything with it either. 400 for (object *op = spaces [i].bot; op; op = op->above)
553 */
554 if (op->arch == NULL)
555 { 401 {
556 LOG (llevDebug, "Discarding object without arch: %s\n", op->name ? (const char *) op->name : "(null)"); 402 unique |= op->flag [FLAG_UNIQUE] && op->flag [FLAG_IS_FLOOR];
403
404 if (expect_false (!op->can_map_save ()))
557 continue; 405 continue;
406
407 if (expect_false (unique || op->flag [FLAG_UNIQUE]))
408 {
409 if (flags & IO_UNIQUES)
410 op->write (f);
411 }
412 else if (expect_true (flags & IO_OBJECTS))
413 op->write (f);
558 } 414 }
559
560
561 switch (i)
562 {
563 case LL_NORMAL:
564 /* if we are loading an overlay, put the floors on the bottom */
565 if ((QUERY_FLAG (op, FLAG_IS_FLOOR) || QUERY_FLAG (op, FLAG_OVERLAY_FLOOR)) && mapflags & MAP_OVERLAY)
566 insert_ob_in_map (op, m, op, INS_NO_MERGE | INS_NO_WALK_ON | INS_ABOVE_FLOOR_ONLY | INS_MAP_LOAD);
567 else
568 insert_ob_in_map (op, m, op, INS_NO_MERGE | INS_NO_WALK_ON | INS_ON_TOP | INS_MAP_LOAD);
569
570 if (op->inv)
571 sum_weight (op);
572
573 prev = op, last_more = op;
574 break;
575
576 case LL_MORE:
577 insert_ob_in_map (op, m, op, INS_NO_MERGE | INS_NO_WALK_ON | INS_ABOVE_FLOOR_ONLY);
578 op->head = prev, last_more->more = op, last_more = op;
579 break;
580 }
581
582 if (mapflags & MAP_STYLE)
583 remove_from_active_list (op);
584
585 op = get_object ();
586 op->map = m;
587 }
588
589 for (i = 0; i < m->width; i++)
590 { 415 }
591 for (j = 0; j < m->height; j++)
592 {
593 unique = 0;
594 /* check for unique items, or unique squares */
595 for (otmp = get_map_ob (m, i, j); otmp; otmp = otmp->above)
596 {
597 if (QUERY_FLAG (otmp, FLAG_UNIQUE) || QUERY_FLAG (otmp, FLAG_OBJ_SAVE_ON_OVL))
598 unique = 1;
599 if (!(mapflags & (MAP_OVERLAY | MAP_PLAYER_UNIQUE) || unique))
600 SET_FLAG (otmp, FLAG_OBJ_ORIGINAL);
601 }
602 }
603 }
604 416
605 free_object (op); 417 coroapi::cede_to_tick ();
606 link_multipart_objects (m);
607}
608 418
609/* This saves all the objects on the map in a non destructive fashion. 419 return true;
610 * Modified by MSW 2001-07-01 to do in a single pass - reduces code, 420}
611 * and we only save the head of multi part objects - this is needed
612 * in order to do map tiling properly.
613 */
614void
615save_objects (maptile *m, object_freezer & fp, object_freezer & fp2, int flag)
616{
617 int i, j = 0, unique = 0;
618 object *op;
619 421
620 /* first pass - save one-part objects */ 422bool
621 for (i = 0; i < MAP_WIDTH (m); i++) 423maptile::_save_objects (const char *path, int flags)
622 for (j = 0; j < MAP_HEIGHT (m); j++) 424{
623 { 425 object_freezer freezer;
624 unique = 0;
625 for (op = get_map_ob (m, i, j); op; op = op->above)
626 {
627 if (QUERY_FLAG (op, FLAG_IS_FLOOR) && QUERY_FLAG (op, FLAG_UNIQUE))
628 unique = 1;
629 426
630 if (op->type == PLAYER) 427 if (!_save_objects (freezer, flags))
631 { 428 return false;
632 LOG (llevDebug, "Player on map that is being saved\n");
633 continue;
634 }
635 429
636 if (op->head || op->owner) 430 return freezer.save (path);
637 continue;
638
639 if (unique || QUERY_FLAG (op, FLAG_UNIQUE))
640 save_object (fp2, op, 3);
641 else if (flag == 0 || (flag == 2 && (!QUERY_FLAG (op, FLAG_OBJ_ORIGINAL) && !QUERY_FLAG (op, FLAG_UNPAID))))
642 save_object (fp, op, 3);
643
644 } /* for this space */
645 } /* for this j */
646} 431}
647 432
648maptile::maptile () 433maptile::maptile ()
649{ 434{
650 in_memory = MAP_SWAPPED; 435 in_memory = MAP_SWAPPED;
436
651 /* The maps used to pick up default x and y values from the 437 /* The maps used to pick up default x and y values from the
652 * map archetype. Mimic that behaviour. 438 * map archetype. Mimic that behaviour.
653 */ 439 */
654 MAP_WIDTH (this) = 16; 440 width = 16;
655 MAP_HEIGHT (this) = 16; 441 height = 16;
656 MAP_RESET_TIMEOUT (this) = 0; 442 timeout = 300;
657 MAP_TIMEOUT (this) = 300; 443 max_nrof = 1000; // 1000 items of anything
658 MAP_ENTER_X (this) = 0; 444 max_volume = 2000000; // 2m³
659 MAP_ENTER_Y (this) = 0;
660 /*set part to -1 indicating conversion to weather map not yet done */
661 MAP_WORLDPARTX (this) = -1;
662 MAP_WORLDPARTY (this) = -1;
663} 445}
664 446
665/* 447maptile::maptile (int w, int h)
666 * Allocates, initialises, and returns a pointer to a maptile.
667 * Modified to no longer take a path option which was not being
668 * used anyways. MSW 2001-07-01
669 */
670maptile *
671get_linked_map (void)
672{ 448{
673 maptile *mp, *map = new maptile; 449 in_memory = MAP_SWAPPED;
674 450
675 for (mp = first_map; mp && mp->next; mp = mp->next); 451 width = w;
452 height = h;
453 reset_timeout = 0;
454 timeout = 300;
455 enter_x = 0;
456 enter_y = 0;
676 457
677 if (mp == NULL) 458 alloc ();
678 first_map = map;
679 else
680 mp->next = map;
681
682 return map;
683} 459}
684 460
685/* 461/*
686 * Allocates the arrays contained in a maptile. 462 * Allocates the arrays contained in a maptile.
687 * This basically allocates the dynamic array of spaces for the 463 * This basically allocates the dynamic array of spaces for the
688 * map. 464 * map.
689 */ 465 */
690void 466void
691maptile::allocate () 467maptile::alloc ()
692{ 468{
693 in_memory = MAP_IN_MEMORY;
694
695 /* Log this condition and free the storage. We could I suppose
696 * realloc, but if the caller is presuming the data will be intact,
697 * that is their poor assumption.
698 */
699 if (spaces) 469 if (spaces)
700 {
701 LOG (llevError, "allocate_map called with already allocated map (%s)\n", path);
702 free (spaces);
703 }
704
705 spaces = (MapSpace *)
706 calloc (1, width * height * sizeof (MapSpace));
707
708 if (!spaces)
709 fatal (OUT_OF_MEMORY);
710}
711
712/* Create and returns a map of the specific size. Used
713 * in random map code and the editor.
714 */
715maptile *
716get_empty_map (int sizex, int sizey)
717{
718 maptile *m = get_linked_map ();
719
720 m->width = sizex;
721 m->height = sizey;
722 m->in_memory = MAP_SWAPPED;
723 m->allocate ();
724
725 return m; 470 return;
471
472 spaces = salloc0<mapspace> (size ());
726} 473}
727 474
728/* Takes a string from a map definition and outputs a pointer to the array of shopitems 475/* Takes a string from a map definition and outputs a pointer to the array of shopitems
729 * corresponding to that string. Memory is allocated for this, it must be freed 476 * corresponding to that string. Memory is allocated for this, it must be freed
730 * at a later date. 477 * at a later date.
731 * Called by parse_map_headers below. 478 * Called by parse_map_headers below.
732 */ 479 */
733
734static shopitems * 480static shopitems *
735parse_shop_string (const char *input_string) 481parse_shop_string (const char *input_string)
736{ 482{
737 char *shop_string, *p, *q, *next_semicolon, *next_colon; 483 char *shop_string, *p, *q, *next_semicolon, *next_colon;
738 shopitems *items = NULL; 484 shopitems *items = NULL;
739 int i = 0, number_of_entries = 0; 485 int i = 0, number_of_entries = 0;
740 const typedata *current_type; 486 const typedata *current_type;
741 487
742 shop_string = strdup_local (input_string); 488 shop_string = strdup (input_string);
743 p = shop_string; 489 p = shop_string;
744 /* first we'll count the entries, we'll need that for allocating the array shortly */ 490 /* first we'll count the entries, we'll need that for allocating the array shortly */
745 while (p) 491 while (p)
746 { 492 {
747 p = strchr (p, ';'); 493 p = strchr (p, ';');
748 number_of_entries++; 494 number_of_entries++;
749 if (p) 495 if (p)
750 p++; 496 p++;
751 } 497 }
498
752 p = shop_string; 499 p = shop_string;
753 strip_endline (p); 500 strip_endline (p);
754 items = new shopitems[number_of_entries + 1]; 501 items = new shopitems[number_of_entries + 1];
755 for (i = 0; i < number_of_entries; i++) 502 for (i = 0; i < number_of_entries; i++)
756 { 503 {
757 if (!p) 504 if (!p)
758 { 505 {
759 LOG (llevError, "parse_shop_string: I seem to have run out of string, that shouldn't happen.\n"); 506 LOG (llevError, "parse_shop_string: I seem to have run out of string, that shouldn't happen.\n");
760 break; 507 break;
761 } 508 }
509
762 next_semicolon = strchr (p, ';'); 510 next_semicolon = strchr (p, ';');
763 next_colon = strchr (p, ':'); 511 next_colon = strchr (p, ':');
764 /* if there is a stregth specified, figure out what it is, we'll need it soon. */ 512 /* if there is a stregth specified, figure out what it is, we'll need it soon. */
765 if (next_colon && (!next_semicolon || next_colon < next_semicolon)) 513 if (next_colon && (!next_semicolon || next_colon < next_semicolon))
766 items[i].strength = atoi (strchr (p, ':') + 1); 514 items[i].strength = atoi (strchr (p, ':') + 1);
793 * the next entry while we're at it, better print a warning 541 * the next entry while we're at it, better print a warning
794 */ 542 */
795 LOG (llevError, "invalid type %s defined in shopitems in string %s\n", p, input_string); 543 LOG (llevError, "invalid type %s defined in shopitems in string %s\n", p, input_string);
796 } 544 }
797 } 545 }
546
798 items[i].index = number_of_entries; 547 items[i].index = number_of_entries;
799 if (next_semicolon) 548 if (next_semicolon)
800 p = ++next_semicolon; 549 p = ++next_semicolon;
801 else 550 else
802 p = NULL; 551 p = NULL;
803 } 552 }
553
804 free (shop_string); 554 free (shop_string);
805 return items; 555 return items;
806} 556}
807 557
808/* opposite of parse string, this puts the string that was originally fed in to 558/* opposite of parse string, this puts the string that was originally fed in to
817 for (i = 0; i < m->shopitems[0].index; i++) 567 for (i = 0; i < m->shopitems[0].index; i++)
818 { 568 {
819 if (m->shopitems[i].typenum) 569 if (m->shopitems[i].typenum)
820 { 570 {
821 if (m->shopitems[i].strength) 571 if (m->shopitems[i].strength)
822 {
823 sprintf (tmp, "%s:%d;", m->shopitems[i].name, m->shopitems[i].strength); 572 sprintf (tmp, "%s:%d;", m->shopitems[i].name, m->shopitems[i].strength);
824 }
825 else 573 else
826 sprintf (tmp, "%s;", m->shopitems[i].name); 574 sprintf (tmp, "%s;", m->shopitems[i].name);
827 } 575 }
828 else 576 else
829 { 577 {
830 if (m->shopitems[i].strength) 578 if (m->shopitems[i].strength)
831 {
832 sprintf (tmp, "*:%d;", m->shopitems[i].strength); 579 sprintf (tmp, "*:%d;", m->shopitems[i].strength);
833 }
834 else 580 else
835 sprintf (tmp, "*"); 581 sprintf (tmp, "*");
836 } 582 }
583
837 strcat (output_string, tmp); 584 strcat (output_string, tmp);
838 } 585 }
839} 586}
840 587
841/* This loads the header information of the map. The header 588/* This loads the header information of the map. The header
846 * put all the stuff in the map object so that names actually make 593 * put all the stuff in the map object so that names actually make
847 * sense. 594 * sense.
848 * This could be done in lex (like the object loader), but I think 595 * This could be done in lex (like the object loader), but I think
849 * currently, there are few enough fields this is not a big deal. 596 * currently, there are few enough fields this is not a big deal.
850 * MSW 2001-07-01 597 * MSW 2001-07-01
851 * return 0 on success, 1 on failure.
852 */ 598 */
853 599bool
854static int 600maptile::_load_header (object_thawer &thawer)
855load_map_header (object_thawer & fp, maptile *m)
856{ 601{
857 char buf[HUGE_BUF], msgbuf[HUGE_BUF], maplorebuf[HUGE_BUF], *key = NULL, *value, *end; 602 for (;;)
858 int msgpos = 0;
859 int maplorepos = 0;
860
861 while (fgets (buf, HUGE_BUF, fp) != NULL)
862 { 603 {
863 buf[HUGE_BUF - 1] = 0; 604 switch (thawer.kw)
864 key = buf;
865 while (isspace (*key))
866 key++;
867 if (*key == 0)
868 continue; /* empty line */
869 value = strchr (key, ' ');
870 if (!value)
871 { 605 {
872 end = strchr (key, '\n'); 606 case KW_msg:
873 if (end != NULL) 607 thawer.get_ml (KW_endmsg, msg);
874 { 608 break;
875 *end = 0; 609
610 case KW_lore: // CF+ extension
611 thawer.get_ml (KW_endlore, maplore);
876 } 612 break;
613
614 case KW_maplore:
615 thawer.get_ml (KW_endmaplore, maplore);
616 break;
617
618 case KW_arch:
619 if (strcmp (thawer.get_str (), "map"))
620 LOG (llevError, "%s: loading map and got a non 'arch map' line (arch %s), skipping.\n", &path, thawer.get_str ());
621 break;
622
623 case KW_oid:
624 thawer.get (this, thawer.get_sint32 ());
625 break;
626
627 case KW_file_format_version: break; // nop
628
629 case KW_name: thawer.get (name); break;
630 case KW_attach: thawer.get (attach); break;
631 case KW_reset_time: thawer.get (reset_time); break;
632 case KW_shopgreed: thawer.get (shopgreed); break;
633 case KW_shopmin: thawer.get (shopmin); break;
634 case KW_shopmax: thawer.get (shopmax); break;
635 case KW_shoprace: thawer.get (shoprace); break;
636 case KW_outdoor: thawer.get (outdoor); break;
637 case KW_temp: thawer.get (temp); break;
638 case KW_pressure: thawer.get (pressure); break;
639 case KW_humid: thawer.get (humid); break;
640 case KW_windspeed: thawer.get (windspeed); break;
641 case KW_winddir: thawer.get (winddir); break;
642 case KW_sky: thawer.get (sky); break;
643
644 case KW_per_player: thawer.get (per_player); break;
645 case KW_per_party: thawer.get (per_party); break;
646 case KW_no_reset: thawer.get (no_reset); break;
647
648 case KW_region: default_region = region::find (thawer.get_str ()); break;
649 case KW_shopitems: shopitems = parse_shop_string (thawer.get_str ()); break;
650
651 // old names new names
652 case KW_hp: case KW_enter_x: thawer.get (enter_x); break;
653 case KW_sp: case KW_enter_y: thawer.get (enter_y); break;
654 case KW_x: case KW_width: thawer.get (width); break;
655 case KW_y: case KW_height: thawer.get (height); break;
656 case KW_weight: case KW_reset_timeout: thawer.get (reset_timeout); break;
657 case KW_value: case KW_swap_time: thawer.get (timeout); break;
658 case KW_level: case KW_difficulty: thawer.get (difficulty); difficulty = clamp (difficulty, 1, settings.max_level); break;
659 case KW_invisible: case KW_darkness: thawer.get (darkness); break;
660 case KW_stand_still: case KW_fixed_resettime: thawer.get (fixed_resettime); break;
661
662 case KW_tile_path_1: thawer.get (tile_path [0]); break;
663 case KW_tile_path_2: thawer.get (tile_path [1]); break;
664 case KW_tile_path_3: thawer.get (tile_path [2]); break;
665 case KW_tile_path_4: thawer.get (tile_path [3]); break;
666
667 case KW_ERROR:
668 set_key_text (thawer.kw_str, thawer.value);
669 break;
670
671 case KW_end:
672 thawer.next ();
673 return true;
674
675 default:
676 if (!thawer.parse_error ("map", 0))
677 return false;
678 break;
877 } 679 }
878 else
879 {
880 *value = 0;
881 value++;
882 end = strchr (value, '\n');
883 while (isspace (*value))
884 {
885 value++;
886 if (*value == '\0' || value == end)
887 {
888 /* Nothing but spaces. */
889 value = NULL;
890 break;
891 }
892 }
893 }
894 680
895 if (!end) 681 thawer.next ();
896 {
897 LOG (llevError, "Error loading map header - did not find a newline - perhaps file is truncated? Buf=%s\n", buf);
898 return 1;
899 }
900
901 /* key is the field name, value is what it should be set
902 * to. We've already done the work to null terminate key,
903 * and strip off any leading spaces for both of these.
904 * We have not touched the newline at the end of the line -
905 * these are needed for some values. the end pointer
906 * points to the first of the newlines.
907 * value could be NULL! It would be easy enough to just point
908 * this to "" to prevent cores, but that would let more errors slide
909 * through.
910 *
911 * First check for entries that do not use the value parameter, then
912 * validate that value is given and check for the remaining entries
913 * that use the parameter.
914 */
915
916 if (!strcmp (key, "msg"))
917 {
918 while (fgets (buf, HUGE_BUF, fp) != NULL)
919 {
920 if (!strcmp (buf, "endmsg\n"))
921 break;
922 else
923 {
924 /* slightly more efficient than strcat */
925 strcpy (msgbuf + msgpos, buf);
926 msgpos += strlen (buf);
927 }
928 }
929 /* There are lots of maps that have empty messages (eg, msg/endmsg
930 * with nothing between). There is no reason in those cases to
931 * keep the empty message. Also, msgbuf contains garbage data
932 * when msgpos is zero, so copying it results in crashes
933 */
934 if (msgpos != 0)
935 m->msg = strdup_local (msgbuf);
936 }
937 else if (!strcmp (key, "maplore"))
938 {
939 while (fgets (buf, HUGE_BUF, fp) != NULL)
940 {
941 if (!strcmp (buf, "endmaplore\n"))
942 break;
943 else
944 {
945 /* slightly more efficient than strcat */
946 strcpy (maplorebuf + maplorepos, buf);
947 maplorepos += strlen (buf);
948 }
949 }
950 if (maplorepos != 0)
951 m->maplore = strdup_local (maplorebuf);
952 }
953 else if (!strcmp (key, "end"))
954 {
955 break;
956 }
957 else if (value == NULL)
958 {
959 LOG (llevError, "Got '%s' line without parameter in map header\n", key);
960 }
961 else if (!strcmp (key, "arch"))
962 {
963 /* This is an oddity, but not something we care about much. */
964 if (strcmp (value, "map\n"))
965 LOG (llevError, "loading map and got a non 'arch map' line(%s %s)?\n", key, value);
966 }
967 else if (!strcmp (key, "name"))
968 {
969 *end = 0;
970 m->name = strdup_local (value);
971 }
972 /* first strcmp value on these are old names supported
973 * for compatibility reasons. The new values (second) are
974 * what really should be used.
975 */
976 else if (!strcmp (key, "oid"))
977 {
978 fp.get (m, atoi (value));
979 }
980 else if (!strcmp (key, "attach"))
981 {
982 m->attach = value;
983 }
984 else if (!strcmp (key, "hp") || !strcmp (key, "enter_x"))
985 {
986 m->enter_x = atoi (value);
987 }
988 else if (!strcmp (key, "sp") || !strcmp (key, "enter_y"))
989 {
990 m->enter_y = atoi (value);
991 }
992 else if (!strcmp (key, "x") || !strcmp (key, "width"))
993 {
994 m->width = atoi (value);
995 }
996 else if (!strcmp (key, "y") || !strcmp (key, "height"))
997 {
998 m->height = atoi (value);
999 }
1000 else if (!strcmp (key, "weight") || !strcmp (key, "reset_timeout"))
1001 {
1002 m->reset_timeout = atoi (value);
1003 }
1004 else if (!strcmp (key, "value") || !strcmp (key, "swap_time"))
1005 {
1006 m->timeout = atoi (value);
1007 }
1008 else if (!strcmp (key, "level") || !strcmp (key, "difficulty"))
1009 {
1010 m->difficulty = atoi (value);
1011 }
1012 else if (!strcmp (key, "invisible") || !strcmp (key, "darkness"))
1013 {
1014 m->darkness = atoi (value);
1015 }
1016 else if (!strcmp (key, "stand_still") || !strcmp (key, "fixed_resettime"))
1017 {
1018 m->fixed_resettime = atoi (value);
1019 }
1020 else if (!strcmp (key, "unique"))
1021 {
1022 m->unique = atoi (value);
1023 }
1024 else if (!strcmp (key, "template"))
1025 {
1026 m->templatemap = atoi (value);
1027 }
1028 else if (!strcmp (key, "region"))
1029 {
1030 m->region = get_region_by_name (value);
1031 }
1032 else if (!strcmp (key, "shopitems"))
1033 {
1034 *end = 0;
1035 m->shopitems = parse_shop_string (value);
1036 }
1037 else if (!strcmp (key, "shopgreed"))
1038 {
1039 m->shopgreed = atof (value);
1040 }
1041 else if (!strcmp (key, "shopmin"))
1042 {
1043 m->shopmin = atol (value);
1044 }
1045 else if (!strcmp (key, "shopmax"))
1046 {
1047 m->shopmax = atol (value);
1048 }
1049 else if (!strcmp (key, "shoprace"))
1050 {
1051 *end = 0;
1052 m->shoprace = strdup_local (value);
1053 }
1054 else if (!strcmp (key, "outdoor"))
1055 {
1056 m->outdoor = atoi (value);
1057 }
1058 else if (!strcmp (key, "temp"))
1059 {
1060 m->temp = atoi (value);
1061 }
1062 else if (!strcmp (key, "pressure"))
1063 {
1064 m->pressure = atoi (value);
1065 }
1066 else if (!strcmp (key, "humid"))
1067 {
1068 m->humid = atoi (value);
1069 }
1070 else if (!strcmp (key, "windspeed"))
1071 {
1072 m->windspeed = atoi (value);
1073 }
1074 else if (!strcmp (key, "winddir"))
1075 {
1076 m->winddir = atoi (value);
1077 }
1078 else if (!strcmp (key, "sky"))
1079 {
1080 m->sky = atoi (value);
1081 }
1082 else if (!strcmp (key, "nosmooth"))
1083 {
1084 m->nosmooth = atoi (value);
1085 }
1086 else if (!strncmp (key, "tile_path_", 10))
1087 {
1088 int tile = atoi (key + 10);
1089
1090 if (tile < 1 || tile > 4)
1091 {
1092 LOG (llevError, "load_map_header: tile location %d out of bounds (%s)\n", tile, m->path);
1093 }
1094 else
1095 {
1096 char *path;
1097
1098 *end = 0;
1099
1100 if (m->tile_path[tile - 1])
1101 {
1102 LOG (llevError, "load_map_header: tile location %d duplicated (%s)\n", tile, m->path);
1103 free (m->tile_path[tile - 1]);
1104 m->tile_path[tile - 1] = NULL;
1105 }
1106
1107 if (check_path (value, 1) != -1)
1108 {
1109 /* The unadorned path works. */
1110 path = value;
1111 }
1112 else
1113 {
1114 /* Try again; it could be a relative exit. */
1115
1116 path = path_combine_and_normalize (m->path, value);
1117
1118 if (check_path (path, 1) == -1)
1119 {
1120 LOG (llevError, "get_map_header: Bad tile path %s %s\n", m->path, value);
1121 path = NULL;
1122 }
1123 }
1124
1125 if (editor)
1126 {
1127 /* Use the value as in the file. */
1128 m->tile_path[tile - 1] = strdup_local (value);
1129 }
1130 else if (path != NULL)
1131 {
1132 /* Use the normalized value. */
1133 m->tile_path[tile - 1] = strdup_local (path);
1134 }
1135 } /* end if tile direction (in)valid */
1136 }
1137 else
1138 {
1139 LOG (llevError, "Got unknown value in map header: %s %s\n", key, value);
1140 }
1141 }
1142 if (!key || strcmp (key, "end"))
1143 { 682 }
1144 LOG (llevError, "Got premature eof on map header!\n");
1145 return 1;
1146 }
1147 return 0;
1148}
1149 683
1150/* 684 abort ();
1151 * Opens the file "filename" and reads information about the map
1152 * from the given file, and stores it in a newly allocated
1153 * maptile. A pointer to this structure is returned, or NULL on failure.
1154 * flags correspond to those in map.h. Main ones used are
1155 * MAP_PLAYER_UNIQUE, in which case we don't do any name changes, and
1156 * MAP_BLOCK, in which case we block on this load. This happens in all
1157 * cases, no matter if this flag is set or not.
1158 * MAP_STYLE: style map - don't add active objects, don't add to server
1159 * managed map list.
1160 */
1161
1162maptile *
1163load_original_map (const char *filename, int flags)
1164{
1165 maptile *m;
1166 char pathname[MAX_BUF];
1167
1168 if (flags & MAP_PLAYER_UNIQUE)
1169 strcpy (pathname, filename);
1170 else if (flags & MAP_OVERLAY)
1171 strcpy (pathname, create_overlay_pathname (filename));
1172 else
1173 strcpy (pathname, create_pathname (filename));
1174
1175 LOG (llevDebug, "load_original_map(%x): %s (%s)\n", flags, filename, pathname);
1176
1177 object_thawer thawer (pathname);
1178
1179 if (!thawer)
1180 return 0;
1181
1182 m = get_linked_map ();
1183
1184 strcpy (m->path, filename);
1185 if (load_map_header (thawer, m))
1186 {
1187 LOG (llevError, "Error loading map header for %s, flags=%d\n", filename, flags);
1188 delete_map (m);
1189 return NULL;
1190 }
1191
1192 m->allocate ();
1193
1194 m->in_memory = MAP_LOADING;
1195 load_objects (m, thawer, flags & (MAP_BLOCK | MAP_STYLE));
1196
1197 m->in_memory = MAP_IN_MEMORY;
1198 if (!MAP_DIFFICULTY (m))
1199 MAP_DIFFICULTY (m) = calculate_difficulty (m);
1200 set_map_reset_time (m);
1201 m->instantiate ();
1202 return (m);
1203}
1204
1205/*
1206 * Loads a map, which has been loaded earlier, from file.
1207 * Return the map object we load into (this can change from the passed
1208 * option if we can't find the original map)
1209 */
1210
1211static maptile *
1212load_temporary_map (maptile *m)
1213{
1214 char buf[MAX_BUF];
1215
1216 if (!m->tmpname)
1217 {
1218 LOG (llevError, "No temporary filename for map %s\n", m->path);
1219 strcpy (buf, m->path);
1220 delete_map (m);
1221 m = load_original_map (buf, 0);
1222 if (m == NULL)
1223 return NULL;
1224 fix_auto_apply (m); /* Chests which open as default */
1225 return m;
1226 }
1227
1228 object_thawer thawer (m->tmpname);
1229
1230 if (!thawer)
1231 {
1232 strcpy (buf, m->path);
1233 delete_map (m);
1234 m = load_original_map (buf, 0);
1235 if (!m)
1236 return NULL;
1237 fix_auto_apply (m); /* Chests which open as default */
1238 return m;
1239 }
1240
1241 if (load_map_header (thawer, m))
1242 {
1243 LOG (llevError, "Error loading map header for %s (%s)\n", m->path, m->tmpname);
1244 delete_map (m);
1245 m = load_original_map (m->path, 0);
1246 return NULL;
1247 }
1248
1249 m->allocate ();
1250
1251 m->in_memory = MAP_LOADING;
1252 load_objects (m, thawer, 0);
1253
1254 m->in_memory = MAP_IN_MEMORY;
1255 INVOKE_MAP (SWAPIN, m);
1256 return m;
1257}
1258
1259/*
1260 * Loads a map, which has been loaded earlier, from file.
1261 * Return the map object we load into (this can change from the passed
1262 * option if we can't find the original map)
1263 */
1264
1265maptile *
1266load_overlay_map (const char *filename, maptile *m)
1267{
1268 char pathname[MAX_BUF];
1269
1270 strcpy (pathname, create_overlay_pathname (filename));
1271
1272 object_thawer thawer (pathname);
1273
1274 if (!thawer)
1275 return m;
1276
1277 if (load_map_header (thawer, m))
1278 {
1279 LOG (llevError, "Error loading map header for overlay %s (%s)\n", m->path, pathname);
1280 delete_map (m);
1281 m = load_original_map (m->path, 0);
1282 return NULL;
1283 }
1284 /*m->allocate ();*/
1285
1286 m->in_memory = MAP_LOADING;
1287 load_objects (m, thawer, MAP_OVERLAY);
1288
1289 m->in_memory = MAP_IN_MEMORY;
1290 return m;
1291} 685}
1292 686
1293/****************************************************************************** 687/******************************************************************************
1294 * This is the start of unique map handling code 688 * This is the start of unique map handling code
1295 *****************************************************************************/ 689 *****************************************************************************/
1296 690
1297/* This goes through map 'm' and removed any unique items on the map. */ 691/* This goes through the maptile and removed any unique items on the map. */
1298static void 692void
1299delete_unique_items (maptile *m) 693maptile::clear_unique_items ()
1300{ 694{
1301 int i, j, unique; 695 for (int i = 0; i < size (); ++i)
1302 object *op, *next;
1303
1304 for (i = 0; i < MAP_WIDTH (m); i++)
1305 for (j = 0; j < MAP_HEIGHT (m); j++)
1306 { 696 {
1307 unique = 0; 697 int unique = 0;
1308 for (op = get_map_ob (m, i, j); op; op = next) 698 for (object *op = spaces [i].bot; op; )
699 {
700 object *above = op->above;
701
702 if (QUERY_FLAG (op, FLAG_IS_FLOOR) && QUERY_FLAG (op, FLAG_UNIQUE))
703 unique = 1;
704
705 if (op->head_ () == op && (QUERY_FLAG (op, FLAG_UNIQUE) || unique))
706 {
707 op->destroy_inv (false);
708 op->destroy ();
709 }
710
711 op = above;
712 }
713 }
714}
715
716bool
717maptile::_save_header (object_freezer &freezer)
718{
719#define MAP_OUT(k) freezer.put (KW_ ## k, k)
720#define MAP_OUT2(k,v) freezer.put (KW_ ## k, v)
721
722 MAP_OUT2 (arch, "map");
723
724 if (name) MAP_OUT (name);
725 MAP_OUT (swap_time);
726 MAP_OUT (reset_time);
727 MAP_OUT (reset_timeout);
728 MAP_OUT (fixed_resettime);
729 MAP_OUT (no_reset);
730 MAP_OUT (difficulty);
731
732 if (default_region) MAP_OUT2 (region, default_region->name);
733
734 if (shopitems)
735 {
736 char shop[MAX_BUF];
737 print_shop_string (this, shop);
738 MAP_OUT2 (shopitems, shop);
739 }
740
741 MAP_OUT (shopgreed);
742 MAP_OUT (shopmin);
743 MAP_OUT (shopmax);
744 if (shoprace) MAP_OUT (shoprace);
745 MAP_OUT (darkness);
746 MAP_OUT (width);
747 MAP_OUT (height);
748 MAP_OUT (enter_x);
749 MAP_OUT (enter_y);
750
751 if (msg) freezer.put (KW_msg , KW_endmsg , msg);
752 if (maplore) freezer.put (KW_maplore, KW_endmaplore, maplore);
753
754 MAP_OUT (outdoor);
755 MAP_OUT (temp);
756 MAP_OUT (pressure);
757 MAP_OUT (humid);
758 MAP_OUT (windspeed);
759 MAP_OUT (winddir);
760 MAP_OUT (sky);
761
762 MAP_OUT (per_player);
763 MAP_OUT (per_party);
764
765 if (tile_path [0]) MAP_OUT2 (tile_path_1, tile_path [0]);
766 if (tile_path [1]) MAP_OUT2 (tile_path_2, tile_path [1]);
767 if (tile_path [2]) MAP_OUT2 (tile_path_3, tile_path [2]);
768 if (tile_path [3]) MAP_OUT2 (tile_path_4, tile_path [3]);
769
770 freezer.put (this);
771 freezer.put (KW_end);
772
773 return true;
774}
775
776bool
777maptile::_save_header (const char *path)
778{
779 object_freezer freezer;
780
781 if (!_save_header (freezer))
782 return false;
783
784 return freezer.save (path);
785}
786
787/*
788 * Remove and free all objects in the given map.
789 */
790void
791maptile::clear ()
792{
793 if (spaces)
794 {
795 for (mapspace *ms = spaces + size (); ms-- > spaces; )
796 while (object *op = ms->bot)
1309 { 797 {
798 // manually remove, as to not trigger anything
1310 next = op->above; 799 if (ms->bot = op->above)
1311 if (QUERY_FLAG (op, FLAG_IS_FLOOR) && QUERY_FLAG (op, FLAG_UNIQUE)) 800 ms->bot->below = 0;
1312 unique = 1; 801
1313 if (op->head == NULL && (QUERY_FLAG (op, FLAG_UNIQUE) || unique)) 802 op->flag [FLAG_REMOVED] = true;
803
804 object *head = op->head_ ();
805 if (op == head)
1314 { 806 {
1315 clean_object (op); 807 op->destroy_inv (false);
1316 if (QUERY_FLAG (op, FLAG_IS_LINKED)) 808 op->destroy ();
1317 remove_button_link (op); 809 }
1318 remove_ob (op); 810 else if (head->map != op->map)
1319 free_object (op); 811 {
812 LOG (llevDebug, "bad luck for object crossing map borders: %s", head->debug_desc ());
813 head->destroy ();
1320 } 814 }
1321 } 815 }
816
817 sfree (spaces, size ()), spaces = 0;
818 }
819
820 if (buttons)
821 free_objectlinkpt (buttons), buttons = 0;
822
823 sfree (regions, size ()); regions = 0;
824 delete [] regionmap; regionmap = 0;
825}
826
827void
828maptile::clear_header ()
829{
830 name = 0;
831 msg = 0;
832 maplore = 0;
833 shoprace = 0;
834 delete [] shopitems, shopitems = 0;
835
836 for (int i = 0; i < 4; i++)
837 tile_path [i] = 0;
838}
839
840maptile::~maptile ()
841{
842 assert (destroyed ());
843}
844
845void
846maptile::clear_links_to (maptile *m)
847{
848 /* We need to look through all the maps and see if any maps
849 * are pointing at this one for tiling information. Since
850 * tiling can be asymetric, we just can not look to see which
851 * maps this map tiles with and clears those.
852 */
853 for (int i = 0; i < 4; i++)
854 if (tile_map[i] == m)
855 tile_map[i] = 0;
856}
857
858void
859maptile::do_destroy ()
860{
861 attachable::do_destroy ();
862
863 clear ();
864}
865
866/* decay and destroy perishable items in a map */
867void
868maptile::do_decay_objects ()
869{
870 if (!spaces)
871 return;
872
873 for (mapspace *ms = spaces + size (); ms-- > spaces; )
874 for (object *above, *op = ms->bot; op; op = above)
875 {
876 above = op->above;
877
878 bool destroy = 0;
879
880 // do not decay anything above unique floor tiles (yet :)
881 if (QUERY_FLAG (op, FLAG_IS_FLOOR) && QUERY_FLAG (op, FLAG_UNIQUE))
882 break;
883
884 if (QUERY_FLAG (op, FLAG_IS_FLOOR)
885 || QUERY_FLAG (op, FLAG_OBJ_ORIGINAL)
886 || QUERY_FLAG (op, FLAG_UNIQUE)
887 || QUERY_FLAG (op, FLAG_OVERLAY_FLOOR)
888 || QUERY_FLAG (op, FLAG_UNPAID)
889 || op->is_alive ())
890 ; // do not decay
891 else if (op->is_weapon ())
892 {
893 op->stats.dam--;
894 if (op->stats.dam < 0)
895 destroy = 1;
896 }
897 else if (op->is_armor ())
898 {
899 op->stats.ac--;
900 if (op->stats.ac < 0)
901 destroy = 1;
902 }
903 else if (op->type == FOOD)
904 {
905 op->stats.food -= rndm (5, 20);
906 if (op->stats.food < 0)
907 destroy = 1;
908 }
909 else
910 {
911 int mat = op->materials;
912
913 if (mat & M_PAPER
914 || mat & M_LEATHER
915 || mat & M_WOOD
916 || mat & M_ORGANIC
917 || mat & M_CLOTH
918 || mat & M_LIQUID
919 || (mat & M_IRON && rndm (1, 5) == 1)
920 || (mat & M_GLASS && rndm (1, 2) == 1)
921 || ((mat & M_STONE || mat & M_ADAMANT) && rndm (1, 10) == 1)
922 || ((mat & M_SOFT_METAL || mat & M_BONE) && rndm (1, 3) == 1)
923 || (mat & M_ICE && temp > 32))
924 destroy = 1;
925 }
926
927 /* adjust overall chance below */
928 if (destroy && rndm (0, 1))
929 op->destroy ();
1322 } 930 }
1323} 931}
1324 932
1325
1326/* 933/*
1327 * Loads unique objects from file(s) into the map which is in memory 934 * Updates every button on the map (by calling update_button() for them).
1328 * m is the map to load unique items into.
1329 */
1330static void
1331load_unique_objects (maptile *m)
1332{
1333 int count;
1334 char firstname[MAX_BUF];
1335
1336 for (count = 0; count < 10; count++)
1337 {
1338 sprintf (firstname, "%s.v%02d", create_items_path (m->path), count);
1339 if (!access (firstname, R_OK))
1340 break;
1341 }
1342 /* If we get here, we did not find any map */
1343 if (count == 10)
1344 return;
1345
1346 object_thawer thawer (firstname);
1347
1348 if (!thawer)
1349 return;
1350
1351 m->in_memory = MAP_LOADING;
1352 if (m->tmpname == NULL) /* if we have loaded unique items from */
1353 delete_unique_items (m); /* original map before, don't duplicate them */
1354 load_objects (m, thawer, 0);
1355
1356 m->in_memory = MAP_IN_MEMORY;
1357}
1358
1359
1360/*
1361 * Saves a map to file. If flag is set, it is saved into the same
1362 * file it was (originally) loaded from. Otherwise a temporary
1363 * filename will be genarated, and the file will be stored there.
1364 * The temporary filename will be stored in the maptileure.
1365 * If the map is unique, we also save to the filename in the map
1366 * (this should have been updated when first loaded)
1367 */
1368
1369int
1370new_save_map (maptile *m, int flag)
1371{
1372 char filename[MAX_BUF], buf[MAX_BUF], shop[MAX_BUF];
1373 int i;
1374
1375 if (flag && !*m->path)
1376 {
1377 LOG (llevError, "Tried to save map without path.\n");
1378 return -1;
1379 }
1380
1381 if (flag || (m->unique) || (m->templatemap))
1382 {
1383 if (!m->unique && !m->templatemap)
1384 { /* flag is set */
1385 if (flag == 2)
1386 strcpy (filename, create_overlay_pathname (m->path));
1387 else
1388 strcpy (filename, create_pathname (m->path));
1389 }
1390 else
1391 strcpy (filename, m->path);
1392
1393 make_path_to_file (filename);
1394 }
1395 else
1396 {
1397 if (!m->tmpname)
1398 m->tmpname = tempnam_local (settings.tmpdir, NULL);
1399
1400 strcpy (filename, m->tmpname);
1401 }
1402
1403 LOG (llevDebug, "Saving map %s to %s\n", m->path, filename);
1404 m->in_memory = MAP_SAVING;
1405
1406 object_freezer freezer;
1407
1408 /* legacy */
1409 fprintf (freezer, "arch map\n");
1410 if (m->name)
1411 fprintf (freezer, "name %s\n", m->name);
1412 if (!flag)
1413 fprintf (freezer, "swap_time %d\n", m->swap_time);
1414 if (m->reset_timeout)
1415 fprintf (freezer, "reset_timeout %d\n", m->reset_timeout);
1416 if (m->fixed_resettime)
1417 fprintf (freezer, "fixed_resettime %d\n", m->fixed_resettime);
1418 /* we unfortunately have no idea if this is a value the creator set
1419 * or a difficulty value we generated when the map was first loaded
1420 */ 935 */
1421 if (m->difficulty)
1422 fprintf (freezer, "difficulty %d\n", m->difficulty);
1423 if (m->region)
1424 fprintf (freezer, "region %s\n", m->region->name);
1425 if (m->shopitems)
1426 {
1427 print_shop_string (m, shop);
1428 fprintf (freezer, "shopitems %s\n", shop);
1429 }
1430 if (m->shopgreed)
1431 fprintf (freezer, "shopgreed %f\n", m->shopgreed);
1432#ifndef WIN32
1433 if (m->shopmin)
1434 fprintf (freezer, "shopmin %llu\n", m->shopmin);
1435 if (m->shopmax)
1436 fprintf (freezer, "shopmax %llu\n", m->shopmax);
1437#else
1438 if (m->shopmin)
1439 fprintf (freezer, "shopmin %I64u\n", m->shopmin);
1440 if (m->shopmax)
1441 fprintf (freezer, "shopmax %I64u\n", m->shopmax);
1442#endif
1443 if (m->shoprace)
1444 fprintf (freezer, "shoprace %s\n", m->shoprace);
1445 if (m->darkness)
1446 fprintf (freezer, "darkness %d\n", m->darkness);
1447 if (m->width)
1448 fprintf (freezer, "width %d\n", m->width);
1449 if (m->height)
1450 fprintf (freezer, "height %d\n", m->height);
1451 if (m->enter_x)
1452 fprintf (freezer, "enter_x %d\n", m->enter_x);
1453 if (m->enter_y)
1454 fprintf (freezer, "enter_y %d\n", m->enter_y);
1455 if (m->msg)
1456 fprintf (freezer, "msg\n%sendmsg\n", m->msg);
1457 if (m->maplore)
1458 fprintf (freezer, "maplore\n%sendmaplore\n", m->maplore);
1459 if (m->unique)
1460 fprintf (freezer, "unique %d\n", m->unique);
1461 if (m->templatemap)
1462 fprintf (freezer, "template %d\n", m->templatemap);
1463 if (m->outdoor)
1464 fprintf (freezer, "outdoor %d\n", m->outdoor);
1465 if (m->temp)
1466 fprintf (freezer, "temp %d\n", m->temp);
1467 if (m->pressure)
1468 fprintf (freezer, "pressure %d\n", m->pressure);
1469 if (m->humid)
1470 fprintf (freezer, "humid %d\n", m->humid);
1471 if (m->windspeed)
1472 fprintf (freezer, "windspeed %d\n", m->windspeed);
1473 if (m->winddir)
1474 fprintf (freezer, "winddir %d\n", m->winddir);
1475 if (m->sky)
1476 fprintf (freezer, "sky %d\n", m->sky);
1477 if (m->nosmooth)
1478 fprintf (freezer, "nosmooth %d\n", m->nosmooth);
1479
1480 /* Save any tiling information, except on overlays */
1481 if (flag != 2)
1482 for (i = 0; i < 4; i++)
1483 if (m->tile_path[i])
1484 fprintf (freezer, "tile_path_%d %s\n", i + 1, m->tile_path[i]);
1485
1486 freezer.put (m);
1487 fprintf (freezer, "end\n");
1488
1489 /* In the game save unique items in the different file, but
1490 * in the editor save them to the normal map file.
1491 * If unique map, save files in the proper destination (set by
1492 * player)
1493 */
1494 if ((flag == 0 || flag == 2) && !m->unique && !m->templatemap)
1495 {
1496 object_freezer unique;
1497
1498 if (flag == 2)
1499 save_objects (m, freezer, unique, 2);
1500 else
1501 save_objects (m, freezer, unique, 0);
1502
1503 sprintf (buf, "%s.v00", create_items_path (m->path));
1504
1505 unique.save (buf);
1506 }
1507 else
1508 { /* save same file when not playing, like in editor */
1509 save_objects (m, freezer, freezer, 0);
1510 }
1511
1512 freezer.save (filename);
1513
1514 return 0;
1515}
1516
1517
1518/*
1519 * Remove and free all objects in the inventory of the given object.
1520 * object.c ?
1521 */
1522
1523void 936void
1524clean_object (object *op) 937maptile::update_buttons ()
1525{ 938{
1526 object *tmp, *next; 939 for (oblinkpt *obp = buttons; obp; obp = obp->next)
1527 940 for (objectlink *ol = obp->link; ol; ol = ol->next)
1528 for (tmp = op->inv; tmp; tmp = next)
1529 {
1530 next = tmp->below;
1531 clean_object (tmp);
1532 if (QUERY_FLAG (tmp, FLAG_IS_LINKED))
1533 remove_button_link (tmp);
1534 remove_ob (tmp);
1535 free_object (tmp);
1536 }
1537}
1538
1539/*
1540 * Remove and free all objects in the given map.
1541 */
1542
1543void
1544free_all_objects (maptile *m)
1545{
1546 int i, j;
1547 object *op;
1548
1549 for (i = 0; i < MAP_WIDTH (m); i++)
1550 for (j = 0; j < MAP_HEIGHT (m); j++)
1551 { 941 {
1552 object *previous_obj = NULL; 942 if (!ol->ob)
1553
1554 while ((op = GET_MAP_OB (m, i, j)) != NULL)
1555 { 943 {
1556 if (op == previous_obj) 944 LOG (llevError, "Internal error in update_button (%s (%dx%d), connected %ld).\n",
945 ol->ob ? (const char *) ol->ob->name : "null", ol->ob ? ol->ob->x : -1, ol->ob ? ol->ob->y : -1, obp->value);
946 continue;
947 }
948
949 if (ol->ob->type == BUTTON || ol->ob->type == PEDESTAL)
1557 { 950 {
1558 LOG (llevDebug, "free_all_objects: Link error, bailing out.\n"); 951 update_button (ol->ob);
1559 break; 952 break;
1560 }
1561 previous_obj = op;
1562 if (op->head != NULL)
1563 op = op->head;
1564
1565 /* If the map isn't in memory, free_object will remove and
1566 * free objects in op's inventory. So let it do the job.
1567 */
1568 if (m->in_memory == MAP_IN_MEMORY)
1569 clean_object (op);
1570 remove_ob (op);
1571 free_object (op);
1572 } 953 }
1573 } 954 }
1574} 955}
1575
1576/*
1577 * Frees everything allocated by the given maptileure.
1578 * don't free tmpname - our caller is left to do that
1579 */
1580
1581void
1582free_map (maptile *m, int flag)
1583{
1584 int i;
1585
1586 if (!m->in_memory)
1587 {
1588 LOG (llevError, "Trying to free freed map.\n");
1589 return;
1590 }
1591 if (flag && m->spaces)
1592 free_all_objects (m);
1593 if (m->name)
1594 FREE_AND_CLEAR (m->name);
1595 if (m->spaces)
1596 FREE_AND_CLEAR (m->spaces);
1597 if (m->msg)
1598 FREE_AND_CLEAR (m->msg);
1599 if (m->maplore)
1600 FREE_AND_CLEAR (m->maplore);
1601 if (m->shopitems)
1602 delete[]m->shopitems;
1603 m->shopitems = 0;
1604 if (m->shoprace)
1605 FREE_AND_CLEAR (m->shoprace);
1606 if (m->buttons)
1607 free_objectlinkpt (m->buttons);
1608 m->buttons = NULL;
1609 for (i = 0; i < 4; i++)
1610 {
1611 if (m->tile_path[i])
1612 FREE_AND_CLEAR (m->tile_path[i]);
1613 m->tile_map[i] = NULL;
1614 }
1615 m->in_memory = MAP_SWAPPED;
1616}
1617
1618/*
1619 * function: vanish maptile
1620 * m : pointer to maptile, if NULL no action
1621 * this deletes all the data on the map (freeing pointers)
1622 * and then removes this map from the global linked list of maps.
1623 */
1624
1625void
1626delete_map (maptile *m)
1627{
1628 maptile *tmp, *last;
1629 int i;
1630
1631 if (!m)
1632 return;
1633
1634 m->clear ();
1635
1636 if (m->in_memory == MAP_IN_MEMORY)
1637 {
1638 /* change to MAP_SAVING, even though we are not,
1639 * so that remove_ob doesn't do as much work.
1640 */
1641 m->in_memory = MAP_SAVING;
1642 free_map (m, 1);
1643 }
1644 /* move this out of free_map, since tmpname can still be needed if
1645 * the map is swapped out.
1646 */
1647 if (m->tmpname)
1648 {
1649 free (m->tmpname);
1650 m->tmpname = NULL;
1651 }
1652 last = NULL;
1653 /* We need to look through all the maps and see if any maps
1654 * are pointing at this one for tiling information. Since
1655 * tiling can be assymetric, we just can not look to see which
1656 * maps this map tiles with and clears those.
1657 */
1658 for (tmp = first_map; tmp != NULL; tmp = tmp->next)
1659 {
1660 if (tmp->next == m)
1661 last = tmp;
1662
1663 /* This should hopefully get unrolled on a decent compiler */
1664 for (i = 0; i < 4; i++)
1665 if (tmp->tile_map[i] == m)
1666 tmp->tile_map[i] = NULL;
1667 }
1668
1669 /* If last is null, then this should be the first map in the list */
1670 if (!last)
1671 {
1672 if (m == first_map)
1673 first_map = m->next;
1674 else
1675 /* m->path is a static char, so should hopefully still have
1676 * some useful data in it.
1677 */
1678 LOG (llevError, "delete_map: Unable to find map %s in list\n", m->path);
1679 }
1680 else
1681 last->next = m->next;
1682
1683 delete m;
1684}
1685
1686
1687
1688/*
1689 * Makes sure the given map is loaded and swapped in.
1690 * name is path name of the map.
1691 * flags meaning:
1692 * 0x1 (MAP_FLUSH): flush the map - always load from the map directory,
1693 * and don't do unique items or the like.
1694 * 0x2 (MAP_PLAYER_UNIQUE) - this is a unique map for each player.
1695 * dont do any more name translation on it.
1696 *
1697 * Returns a pointer to the given map.
1698 */
1699
1700maptile *
1701ready_map_name (const char *name, int flags)
1702{
1703 maptile *m;
1704
1705 if (!name)
1706 return (NULL);
1707
1708 /* Have we been at this level before? */
1709 m = has_been_loaded (name);
1710
1711 /* Map is good to go, so just return it */
1712 if (m && (m->in_memory == MAP_LOADING || m->in_memory == MAP_IN_MEMORY))
1713 {
1714 return m;
1715 }
1716
1717 /* unique maps always get loaded from their original location, and never
1718 * a temp location. Likewise, if map_flush is set, or we have never loaded
1719 * this map, load it now. I removed the reset checking from here -
1720 * it seems the probability of a player trying to enter a map that should
1721 * reset but hasn't yet is quite low, and removing that makes this function
1722 * a bit cleaner (and players probably shouldn't rely on exact timing for
1723 * resets in any case - if they really care, they should use the 'maps command.
1724 */
1725 if ((flags & (MAP_FLUSH | MAP_PLAYER_UNIQUE)) || !m)
1726 {
1727
1728 /* first visit or time to reset */
1729 if (m)
1730 {
1731 clean_tmp_map (m); /* Doesn't make much difference */
1732 delete_map (m);
1733 }
1734
1735 /* create and load a map */
1736 if (flags & MAP_PLAYER_UNIQUE)
1737 LOG (llevDebug, "Trying to load map %s.\n", name);
1738 else
1739 LOG (llevDebug, "Trying to load map %s.\n", create_pathname (name));
1740
1741 //eval_pv ("$x = Event::time", 1);//D
1742 if (!(m = load_original_map (name, (flags & MAP_PLAYER_UNIQUE))))
1743 return (NULL);
1744 //eval_pv ("warn \"LOAD \", Event::time - $x", 1);//D
1745
1746 fix_auto_apply (m); /* Chests which open as default */
1747
1748 /* If a player unique map, no extra unique object file to load.
1749 * if from the editor, likewise.
1750 */
1751 if (!(flags & (MAP_FLUSH | MAP_PLAYER_UNIQUE)))
1752 load_unique_objects (m);
1753
1754 if (!(flags & (MAP_FLUSH | MAP_PLAYER_UNIQUE | MAP_OVERLAY)))
1755 {
1756 m = load_overlay_map (name, m);
1757 if (m == NULL)
1758 return NULL;
1759 }
1760
1761 if (flags & MAP_PLAYER_UNIQUE)
1762 INVOKE_MAP (SWAPIN, m);
1763
1764 }
1765 else
1766 {
1767 /* If in this loop, we found a temporary map, so load it up. */
1768
1769 m = load_temporary_map (m);
1770 if (m == NULL)
1771 return NULL;
1772 load_unique_objects (m);
1773
1774 clean_tmp_map (m);
1775 m->in_memory = MAP_IN_MEMORY;
1776 /* tempnam() on sun systems (probably others) uses malloc
1777 * to allocated space for the string. Free it here.
1778 * In some cases, load_temporary_map above won't find the
1779 * temporary map, and so has reloaded a new map. If that
1780 * is the case, tmpname is now null
1781 */
1782 if (m->tmpname)
1783 free (m->tmpname);
1784 m->tmpname = NULL;
1785 /* It's going to be saved anew anyway */
1786 }
1787
1788 /* Below here is stuff common to both first time loaded maps and
1789 * temp maps.
1790 */
1791
1792 decay_objects (m); /* start the decay */
1793 /* In case other objects press some buttons down */
1794 update_buttons (m);
1795 if (m->outdoor)
1796 set_darkness_map (m);
1797 /* run the weather over this map */
1798 weather_effect (name);
1799 return m;
1800}
1801
1802 956
1803/* 957/*
1804 * This routine is supposed to find out the difficulty of the map. 958 * This routine is supposed to find out the difficulty of the map.
1805 * difficulty does not have a lot to do with character level, 959 * difficulty does not have a lot to do with character level,
1806 * but does have a lot to do with treasure on the map. 960 * but does have a lot to do with treasure on the map.
1808 * Difficulty can now be set by the map creature. If the value stored 962 * Difficulty can now be set by the map creature. If the value stored
1809 * in the map is zero, then use this routine. Maps should really 963 * in the map is zero, then use this routine. Maps should really
1810 * have a difficulty set than using this function - human calculation 964 * have a difficulty set than using this function - human calculation
1811 * is much better than this functions guesswork. 965 * is much better than this functions guesswork.
1812 */ 966 */
1813
1814int 967int
1815calculate_difficulty (maptile *m) 968maptile::estimate_difficulty () const
1816{ 969{
1817 object *op;
1818 archetype *at;
1819 int x, y, i;
1820 long monster_cnt = 0; 970 long monster_cnt = 0;
1821 double avgexp = 0; 971 double avgexp = 0;
1822 sint64 total_exp = 0; 972 sint64 total_exp = 0;
1823 973
1824 if (MAP_DIFFICULTY (m)) 974 for (mapspace *ms = spaces + size (); ms-- > spaces; )
1825 { 975 for (object *op = ms->bot; op; op = op->above)
1826 LOG (llevDebug, "Using stored map difficulty: %d\n", MAP_DIFFICULTY (m));
1827 return MAP_DIFFICULTY (m);
1828 }
1829
1830 for (x = 0; x < MAP_WIDTH (m); x++)
1831 for (y = 0; y < MAP_HEIGHT (m); y++)
1832 for (op = get_map_ob (m, x, y); op != NULL; op = op->above)
1833 { 976 {
1834 if (QUERY_FLAG (op, FLAG_MONSTER)) 977 if (QUERY_FLAG (op, FLAG_MONSTER))
1835 { 978 {
1836 total_exp += op->stats.exp; 979 total_exp += op->stats.exp;
1837 monster_cnt++; 980 monster_cnt++;
1838 } 981 }
1839 982
1840 if (QUERY_FLAG (op, FLAG_GENERATOR)) 983 if (QUERY_FLAG (op, FLAG_GENERATOR))
1841 { 984 {
1842 total_exp += op->stats.exp; 985 total_exp += op->stats.exp;
986
1843 at = type_to_archetype (GENERATE_TYPE (op)); 987 if (archetype *at = type_to_archetype (GENERATE_TYPE (op)))
1844
1845 if (at != NULL)
1846 total_exp += at->clone.stats.exp * 8; 988 total_exp += at->stats.exp * 8;
1847 989
1848 monster_cnt++; 990 monster_cnt++;
1849 } 991 }
1850 } 992 }
1851 993
1852 avgexp = (double) total_exp / monster_cnt; 994 avgexp = (double) total_exp / monster_cnt;
1853 995
1854 for (i = 1; i <= settings.max_level; i++) 996 for (int i = 1; i <= settings.max_level; i++)
1855 {
1856 if ((level_exp (i, 1) - level_exp (i - 1, 1)) > (100 * avgexp)) 997 if ((level_exp (i, 1) - level_exp (i - 1, 1)) > (100 * avgexp))
1857 {
1858 /* LOG(llevDebug, "Calculated difficulty for map: %s: %d\n", m->name, i); */
1859 return i; 998 return i;
1860 }
1861 }
1862 999
1863 return 1; 1000 return 1;
1864}
1865
1866void
1867clean_tmp_map (maptile *m)
1868{
1869 if (m->tmpname == NULL)
1870 return;
1871 INVOKE_MAP (CLEAN, m);
1872 (void) unlink (m->tmpname);
1873}
1874
1875void
1876free_all_maps (void)
1877{
1878 int real_maps = 0;
1879
1880 while (first_map)
1881 {
1882 /* I think some of the callers above before it gets here set this to be
1883 * saving, but we still want to free this data
1884 */
1885 if (first_map->in_memory == MAP_SAVING)
1886 first_map->in_memory = MAP_IN_MEMORY;
1887 delete_map (first_map);
1888 real_maps++;
1889 }
1890 LOG (llevDebug, "free_all_maps: Freed %d maps\n", real_maps);
1891} 1001}
1892 1002
1893/* change_map_light() - used to change map light level (darkness) 1003/* change_map_light() - used to change map light level (darkness)
1894 * up or down. Returns true if successful. It should now be 1004 * up or down. Returns true if successful. It should now be
1895 * possible to change a value by more than 1. 1005 * possible to change a value by more than 1.
1896 * Move this from los.c to map.c since this is more related 1006 * Move this from los.c to map.c since this is more related
1897 * to maps than los. 1007 * to maps than los.
1898 * postive values make it darker, negative make it brighter 1008 * postive values make it darker, negative make it brighter
1899 */ 1009 */
1900
1901int 1010int
1902change_map_light (maptile *m, int change) 1011maptile::change_map_light (int change)
1903{ 1012{
1904 int new_level = m->darkness + change; 1013 int new_level = darkness + change;
1905 1014
1906 /* Nothing to do */ 1015 /* Nothing to do */
1907 if (!change || (new_level <= 0 && m->darkness == 0) || (new_level >= MAX_DARKNESS && m->darkness >= MAX_DARKNESS)) 1016 if (!change || (new_level <= 0 && darkness == 0) || (new_level >= MAX_DARKNESS && darkness >= MAX_DARKNESS))
1908 {
1909 return 0; 1017 return 0;
1910 }
1911 1018
1912 /* inform all players on the map */ 1019 /* inform all players on the map */
1913 if (change > 0) 1020 if (change > 0)
1914 new_info_map (NDI_BLACK | NDI_UNIQUE, m, "It becomes darker."); 1021 new_info_map (NDI_BLACK | NDI_UNIQUE, this, "It becomes darker.");
1915 else 1022 else
1916 new_info_map (NDI_BLACK | NDI_UNIQUE, m, "It becomes brighter."); 1023 new_info_map (NDI_BLACK | NDI_UNIQUE, this, "It becomes brighter.");
1917 1024
1918 /* Do extra checking. since m->darkness is a unsigned value, 1025 /* Do extra checking. since darkness is a unsigned value,
1919 * we need to be extra careful about negative values. 1026 * we need to be extra careful about negative values.
1920 * In general, the checks below are only needed if change 1027 * In general, the checks below are only needed if change
1921 * is not +/-1 1028 * is not +/-1
1922 */ 1029 */
1923 if (new_level < 0) 1030 if (new_level < 0)
1924 m->darkness = 0; 1031 darkness = 0;
1925 else if (new_level >= MAX_DARKNESS) 1032 else if (new_level >= MAX_DARKNESS)
1926 m->darkness = MAX_DARKNESS; 1033 darkness = MAX_DARKNESS;
1927 else 1034 else
1928 m->darkness = new_level; 1035 darkness = new_level;
1929 1036
1930 /* All clients need to get re-updated for the change */ 1037 /* All clients need to get re-updated for the change */
1931 update_all_map_los (m); 1038 update_all_map_los (this);
1932 return 1; 1039 return 1;
1933} 1040}
1934
1935 1041
1936/* 1042/*
1937 * This function updates various attributes about a specific space 1043 * This function updates various attributes about a specific space
1938 * on the map (what it looks like, whether it blocks magic, 1044 * on the map (what it looks like, whether it blocks magic,
1939 * has a living creatures, prevents people from passing 1045 * has a living creatures, prevents people from passing
1940 * through, etc) 1046 * through, etc)
1941 */ 1047 */
1942void 1048void
1943update_position (maptile *m, int x, int y) 1049mapspace::update_ ()
1944{ 1050{
1945 object *tmp, *last = NULL; 1051 object *tmp, *last = 0;
1946 uint8 flags = 0, oldflags, light = 0, anywhere = 0; 1052 uint8 flags = P_UPTODATE, light = 0, anywhere = 0;
1947 New_Face *top, *floor, *middle;
1948 object *top_obj, *floor_obj, *middle_obj;
1949 MoveType move_block = 0, move_slow = 0, move_on = 0, move_off = 0, move_allow = 0; 1053 MoveType move_block = 0, move_slow = 0, move_on = 0, move_off = 0, move_allow = 0;
1950 1054
1951 oldflags = GET_MAP_FLAGS (m, x, y); 1055 //object *middle = 0;
1952 if (!(oldflags & P_NEED_UPDATE)) 1056 //object *top = 0;
1953 { 1057 //object *floor = 0;
1954 LOG (llevDebug, "update_position called with P_NEED_UPDATE not set: %s (%d, %d)\n", m->path, x, y); 1058 // this seems to generate better code than using locals, above
1955 return; 1059 object *&top = faces_obj[0] = 0;
1956 } 1060 object *&middle = faces_obj[1] = 0;
1061 object *&floor = faces_obj[2] = 0;
1957 1062
1958 middle = blank_face;
1959 top = blank_face;
1960 floor = blank_face;
1961
1962 middle_obj = NULL;
1963 top_obj = NULL;
1964 floor_obj = NULL;
1965
1966 for (tmp = get_map_ob (m, x, y); tmp; last = tmp, tmp = tmp->above) 1063 for (tmp = bot; tmp; last = tmp, tmp = tmp->above)
1967 { 1064 {
1968
1969 /* This could be made additive I guess (two lights better than 1065 /* This could be made additive I guess (two lights better than
1970 * one). But if so, it shouldn't be a simple additive - 2 1066 * one). But if so, it shouldn't be a simple additive - 2
1971 * light bulbs do not illuminate twice as far as once since 1067 * light bulbs do not illuminate twice as far as once since
1972 * it is a disapation factor that is squared (or is it cubed?) 1068 * it is a dissapation factor that is cubed.
1973 */ 1069 */
1974 if (tmp->glow_radius > light) 1070 if (tmp->glow_radius > light)
1975 light = tmp->glow_radius; 1071 light = tmp->glow_radius;
1976 1072
1977 /* This call is needed in order to update objects the player 1073 /* This call is needed in order to update objects the player
1983 * Always put the player down for drawing. 1079 * Always put the player down for drawing.
1984 */ 1080 */
1985 if (!tmp->invisible) 1081 if (!tmp->invisible)
1986 { 1082 {
1987 if ((tmp->type == PLAYER || QUERY_FLAG (tmp, FLAG_MONSTER))) 1083 if ((tmp->type == PLAYER || QUERY_FLAG (tmp, FLAG_MONSTER)))
1988 {
1989 top = tmp->face;
1990 top_obj = tmp; 1084 top = tmp;
1991 }
1992 else if (QUERY_FLAG (tmp, FLAG_IS_FLOOR)) 1085 else if (QUERY_FLAG (tmp, FLAG_IS_FLOOR))
1993 { 1086 {
1994 /* If we got a floor, that means middle and top were below it, 1087 /* If we got a floor, that means middle and top were below it,
1995 * so should not be visible, so we clear them. 1088 * so should not be visible, so we clear them.
1996 */ 1089 */
1997 middle = blank_face; 1090 middle = 0;
1998 top = blank_face; 1091 top = 0;
1999 floor = tmp->face;
2000 floor_obj = tmp; 1092 floor = tmp;
2001 } 1093 }
2002 /* Flag anywhere have high priority */ 1094 /* Flag anywhere have high priority */
2003 else if (QUERY_FLAG (tmp, FLAG_SEE_ANYWHERE)) 1095 else if (QUERY_FLAG (tmp, FLAG_SEE_ANYWHERE))
2004 { 1096 {
2005 middle = tmp->face;
2006
2007 middle_obj = tmp; 1097 middle = tmp;
2008 anywhere = 1; 1098 anywhere = 1;
2009 } 1099 }
2010 /* Find the highest visible face around. If equal 1100 /* Find the highest visible face around. If equal
2011 * visibilities, we still want the one nearer to the 1101 * visibilities, we still want the one nearer to the
2012 * top 1102 * top
2013 */ 1103 */
2014 else if (middle == blank_face || (tmp->face->visibility > middle->visibility && !anywhere)) 1104 else if (!middle || (::faces [tmp->face].visibility > ::faces [middle->face].visibility && !anywhere))
2015 {
2016 middle = tmp->face;
2017 middle_obj = tmp; 1105 middle = tmp;
2018 }
2019 } 1106 }
1107
2020 if (tmp == tmp->above) 1108 if (tmp == tmp->above)
2021 { 1109 {
2022 LOG (llevError, "Error in structure of map\n"); 1110 LOG (llevError, "Error in structure of map\n");
2023 exit (-1); 1111 exit (-1);
2024 } 1112 }
2025 1113
2026 move_slow |= tmp->move_slow; 1114 move_slow |= tmp->move_slow;
2027 move_block |= tmp->move_block; 1115 move_block |= tmp->move_block;
2028 move_on |= tmp->move_on; 1116 move_on |= tmp->move_on;
2029 move_off |= tmp->move_off; 1117 move_off |= tmp->move_off;
2030 move_allow |= tmp->move_allow; 1118 move_allow |= tmp->move_allow;
2031 1119
2032 if (QUERY_FLAG (tmp, FLAG_ALIVE))
2033 flags |= P_IS_ALIVE;
2034 if (QUERY_FLAG (tmp, FLAG_NO_MAGIC))
2035 flags |= P_NO_MAGIC;
2036 if (QUERY_FLAG (tmp, FLAG_DAMNED))
2037 flags |= P_NO_CLERIC;
2038 if (tmp->type == SAFE_GROUND)
2039 flags |= P_SAFE;
2040
2041 if (QUERY_FLAG (tmp, FLAG_BLOCKSVIEW)) 1120 if (QUERY_FLAG (tmp, FLAG_BLOCKSVIEW)) flags |= P_BLOCKSVIEW;
2042 flags |= P_BLOCKSVIEW; 1121 if (QUERY_FLAG (tmp, FLAG_NO_MAGIC)) flags |= P_NO_MAGIC;
2043 } /* for stack of objects */ 1122 if (tmp->type == PLAYER) flags |= P_PLAYER;
2044 1123 if (tmp->type == SAFE_GROUND) flags |= P_SAFE;
2045 /* we don't want to rely on this function to have accurate flags, but 1124 if (QUERY_FLAG (tmp, FLAG_ALIVE)) flags |= P_IS_ALIVE;
2046 * since we're already doing the work, we calculate them here. 1125 if (QUERY_FLAG (tmp, FLAG_DAMNED)) flags |= P_NO_CLERIC;
2047 * if they don't match, logic is broken someplace.
2048 */
2049 if (((oldflags & ~(P_NEED_UPDATE | P_NO_ERROR)) != flags) && (!(oldflags & P_NO_ERROR)))
2050 { 1126 }
2051 LOG (llevDebug, "update_position: updated flags do not match old flags: %s (old=%d,new=%d) %x != %x\n", 1127
2052 m->path, x, y, (oldflags & ~P_NEED_UPDATE), flags); 1128 this->light = light;
2053 } 1129 this->flags_ = flags;
2054 SET_MAP_FLAGS (m, x, y, flags); 1130 this->move_block = move_block & ~move_allow;
2055 SET_MAP_MOVE_BLOCK (m, x, y, move_block & ~move_allow); 1131 this->move_on = move_on;
2056 SET_MAP_MOVE_ON (m, x, y, move_on); 1132 this->move_off = move_off;
2057 SET_MAP_MOVE_OFF (m, x, y, move_off); 1133 this->move_slow = move_slow;
2058 SET_MAP_MOVE_SLOW (m, x, y, move_slow);
2059 1134
2060 /* At this point, we have a floor face (if there is a floor), 1135 /* At this point, we have a floor face (if there is a floor),
2061 * and the floor is set - we are not going to touch it at 1136 * and the floor is set - we are not going to touch it at
2062 * this point. 1137 * this point.
2063 * middle contains the highest visibility face. 1138 * middle contains the highest visibility face.
2070 * middle face. This should not happen, as we already have the 1145 * middle face. This should not happen, as we already have the
2071 * else statement above so middle should not get set. OTOH, it 1146 * else statement above so middle should not get set. OTOH, it
2072 * may be possible for the faces to match but be different objects. 1147 * may be possible for the faces to match but be different objects.
2073 */ 1148 */
2074 if (top == middle) 1149 if (top == middle)
2075 middle = blank_face; 1150 middle = 0;
2076 1151
2077 /* There are three posibilities at this point: 1152 /* There are three posibilities at this point:
2078 * 1) top face is set, need middle to be set. 1153 * 1) top face is set, need middle to be set.
2079 * 2) middle is set, need to set top. 1154 * 2) middle is set, need to set top.
2080 * 3) neither middle or top is set - need to set both. 1155 * 3) neither middle or top is set - need to set both.
2085 /* Once we get to a floor, stop, since we already have a floor object */ 1160 /* Once we get to a floor, stop, since we already have a floor object */
2086 if (QUERY_FLAG (tmp, FLAG_IS_FLOOR)) 1161 if (QUERY_FLAG (tmp, FLAG_IS_FLOOR))
2087 break; 1162 break;
2088 1163
2089 /* If two top faces are already set, quit processing */ 1164 /* If two top faces are already set, quit processing */
2090 if ((top != blank_face) && (middle != blank_face)) 1165 if (top && middle)
2091 break; 1166 break;
2092 1167
2093 /* Only show visible faces, unless its the editor - show all */ 1168 /* Only show visible faces */
2094 if (!tmp->invisible || editor) 1169 if (!tmp->invisible)
2095 { 1170 {
2096 /* Fill in top if needed */ 1171 /* Fill in top if needed */
2097 if (top == blank_face) 1172 if (!top)
2098 { 1173 {
2099 top = tmp->face;
2100 top_obj = tmp; 1174 top = tmp;
2101 if (top == middle) 1175 if (top == middle)
2102 middle = blank_face; 1176 middle = 0;
2103 } 1177 }
2104 else 1178 else
2105 { 1179 {
2106 /* top is already set - we should only get here if 1180 /* top is already set - we should only get here if
2107 * middle is not set 1181 * middle is not set
2108 * 1182 *
2109 * Set the middle face and break out, since there is nothing 1183 * Set the middle face and break out, since there is nothing
2110 * more to fill in. We don't check visiblity here, since 1184 * more to fill in. We don't check visiblity here, since
2111 * 1185 *
2112 */ 1186 */
2113 if (tmp->face != top) 1187 if (tmp != top)
2114 { 1188 {
2115 middle = tmp->face;
2116 middle_obj = tmp; 1189 middle = tmp;
2117 break; 1190 break;
2118 } 1191 }
2119 } 1192 }
2120 } 1193 }
2121 } 1194 }
1195
2122 if (middle == floor) 1196 if (middle == floor)
2123 middle = blank_face; 1197 middle = 0;
1198
2124 if (top == middle) 1199 if (top == middle)
2125 middle = blank_face; 1200 middle = 0;
2126 SET_MAP_FACE (m, x, y, top, 0);
2127 if (top != blank_face)
2128 SET_MAP_FACE_OBJ (m, x, y, top_obj, 0);
2129 else
2130 SET_MAP_FACE_OBJ (m, x, y, NULL, 0);
2131 SET_MAP_FACE (m, x, y, middle, 1);
2132 if (middle != blank_face)
2133 SET_MAP_FACE_OBJ (m, x, y, middle_obj, 1);
2134 else
2135 SET_MAP_FACE_OBJ (m, x, y, NULL, 1);
2136 SET_MAP_FACE (m, x, y, floor, 2);
2137 if (floor != blank_face)
2138 SET_MAP_FACE_OBJ (m, x, y, floor_obj, 2);
2139 else
2140 SET_MAP_FACE_OBJ (m, x, y, NULL, 2);
2141 SET_MAP_LIGHT (m, x, y, light);
2142}
2143 1201
2144 1202#if 0
2145void 1203 faces_obj [0] = top;
2146set_map_reset_time (maptile *map) 1204 faces_obj [1] = middle;
2147{ 1205 faces_obj [2] = floor;
2148 int timeout; 1206#endif
2149
2150 timeout = MAP_RESET_TIMEOUT (map);
2151 if (timeout <= 0)
2152 timeout = MAP_DEFAULTRESET;
2153 if (timeout >= MAP_MAXRESET)
2154 timeout = MAP_MAXRESET;
2155 MAP_WHEN_RESET (map) = seconds () + timeout;
2156} 1207}
2157 1208
2158/* this updates the orig_map->tile_map[tile_num] value after loading 1209uint64
2159 * the map. It also takes care of linking back the freshly loaded 1210mapspace::volume () const
2160 * maps tile_map values if it tiles back to this one. It returns
2161 * the value of orig_map->tile_map[tile_num]. It really only does this
2162 * so that it is easier for calling functions to verify success.
2163 */
2164
2165static maptile *
2166load_and_link_tiled_map (maptile *orig_map, int tile_num)
2167{ 1211{
2168 int dest_tile = (tile_num + 2) % 4; 1212 uint64 vol = 0;
2169 char *path = path_combine_and_normalize (orig_map->path, orig_map->tile_path[tile_num]);
2170 1213
2171 orig_map->tile_map[tile_num] = ready_map_name (path, 0); 1214 for (object *op = top; op && !op->flag [FLAG_NO_PICK]; op = op->below)
1215 vol += op->volume ();
2172 1216
2173 /* need to do a strcmp here as the orig_map->path is not a shared string */ 1217 return vol;
2174 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)) 1218}
2175 orig_map->tile_map[tile_num]->tile_map[dest_tile] = orig_map;
2176 1219
2177 return orig_map->tile_map[tile_num]; 1220bool
1221maptile::tile_available (int dir, bool load)
1222{
1223 if (!tile_path[dir])
1224 return 0;
1225
1226 if (tile_map[dir] && (!load || tile_map[dir]->in_memory == MAP_IN_MEMORY))
1227 return 1;
1228
1229 if ((tile_map[dir] = find_async (tile_path[dir], this, load)))
1230 return 1;
1231
1232 return 0;
2178} 1233}
2179 1234
2180/* this returns TRUE if the coordinates (x,y) are out of 1235/* this returns TRUE if the coordinates (x,y) are out of
2181 * map m. This function also takes into account any 1236 * map m. This function also takes into account any
2182 * tiling considerations, loading adjacant maps as needed. 1237 * tiling considerations, loading adjacant maps as needed.
2183 * This is the function should always be used when it 1238 * This is the function should always be used when it
2184 * necessary to check for valid coordinates. 1239 * necessary to check for valid coordinates.
2185 * This function will recursively call itself for the 1240 * This function will recursively call itself for the
2186 * tiled maps. 1241 * tiled maps.
2187 *
2188 *
2189 */ 1242 */
2190int 1243int
2191out_of_map (maptile *m, int x, int y) 1244out_of_map (maptile *m, int x, int y)
2192{ 1245{
2193
2194 /* If we get passed a null map, this is obviously the 1246 /* If we get passed a null map, this is obviously the
2195 * case. This generally shouldn't happen, but if the 1247 * case. This generally shouldn't happen, but if the
2196 * map loads fail below, it could happen. 1248 * map loads fail below, it could happen.
2197 */ 1249 */
2198 if (!m) 1250 if (!m)
2199 return 0; 1251 return 0;
2200 1252
2201 if (x < 0) 1253 if (x < 0)
2202 { 1254 {
2203 if (!m->tile_path[3]) 1255 if (!m->tile_available (3))
2204 return 1; 1256 return 1;
2205 if (!m->tile_map[3] || m->tile_map[3]->in_memory != MAP_IN_MEMORY) 1257
2206 {
2207 load_and_link_tiled_map (m, 3);
2208 }
2209 return (out_of_map (m->tile_map[3], x + MAP_WIDTH (m->tile_map[3]), y)); 1258 return out_of_map (m->tile_map[3], x + m->tile_map[3]->width, y);
2210 }
2211 if (x >= MAP_WIDTH (m))
2212 { 1259 }
2213 if (!m->tile_path[1]) 1260
1261 if (x >= m->width)
1262 {
1263 if (!m->tile_available (1))
2214 return 1; 1264 return 1;
2215 if (!m->tile_map[1] || m->tile_map[1]->in_memory != MAP_IN_MEMORY) 1265
2216 {
2217 load_and_link_tiled_map (m, 1);
2218 }
2219 return (out_of_map (m->tile_map[1], x - MAP_WIDTH (m), y)); 1266 return out_of_map (m->tile_map[1], x - m->width, y);
2220 } 1267 }
1268
2221 if (y < 0) 1269 if (y < 0)
2222 { 1270 {
2223 if (!m->tile_path[0]) 1271 if (!m->tile_available (0))
2224 return 1; 1272 return 1;
2225 if (!m->tile_map[0] || m->tile_map[0]->in_memory != MAP_IN_MEMORY) 1273
2226 {
2227 load_and_link_tiled_map (m, 0);
2228 }
2229 return (out_of_map (m->tile_map[0], x, y + MAP_HEIGHT (m->tile_map[0]))); 1274 return out_of_map (m->tile_map[0], x, y + m->tile_map[0]->height);
2230 }
2231 if (y >= MAP_HEIGHT (m))
2232 { 1275 }
2233 if (!m->tile_path[2]) 1276
1277 if (y >= m->height)
1278 {
1279 if (!m->tile_available (2))
2234 return 1; 1280 return 1;
2235 if (!m->tile_map[2] || m->tile_map[2]->in_memory != MAP_IN_MEMORY) 1281
2236 {
2237 load_and_link_tiled_map (m, 2);
2238 }
2239 return (out_of_map (m->tile_map[2], x, y - MAP_HEIGHT (m))); 1282 return out_of_map (m->tile_map[2], x, y - m->height);
2240 } 1283 }
2241 1284
2242 /* Simple case - coordinates are within this local 1285 /* Simple case - coordinates are within this local
2243 * map. 1286 * map.
2244 */ 1287 */
2247 1290
2248/* This is basically the same as out_of_map above, but 1291/* This is basically the same as out_of_map above, but
2249 * instead we return NULL if no map is valid (coordinates 1292 * instead we return NULL if no map is valid (coordinates
2250 * out of bounds and no tiled map), otherwise it returns 1293 * out of bounds and no tiled map), otherwise it returns
2251 * the map as that the coordinates are really on, and 1294 * the map as that the coordinates are really on, and
2252 * updates x and y to be the localized coordinates. 1295 * updates x and y to be the localised coordinates.
2253 * Using this is more efficient of calling out_of_map 1296 * Using this is more efficient of calling out_of_map
2254 * and then figuring out what the real map is 1297 * and then figuring out what the real map is
2255 */ 1298 */
2256maptile * 1299maptile *
2257get_map_from_coord (maptile *m, sint16 * x, sint16 * y) 1300maptile::xy_find (sint16 &x, sint16 &y)
2258{ 1301{
2259
2260 if (*x < 0) 1302 if (x < 0)
2261 { 1303 {
2262 if (!m->tile_path[3]) 1304 if (!tile_available (3))
2263 return NULL; 1305 return 0;
2264 if (!m->tile_map[3] || m->tile_map[3]->in_memory != MAP_IN_MEMORY)
2265 load_and_link_tiled_map (m, 3);
2266 1306
2267 *x += MAP_WIDTH (m->tile_map[3]); 1307 x += tile_map[3]->width;
2268 return (get_map_from_coord (m->tile_map[3], x, y)); 1308 return tile_map[3]->xy_find (x, y);
2269 }
2270 if (*x >= MAP_WIDTH (m))
2271 { 1309 }
2272 if (!m->tile_path[1]) 1310
1311 if (x >= width)
1312 {
1313 if (!tile_available (1))
2273 return NULL; 1314 return 0;
2274 if (!m->tile_map[1] || m->tile_map[1]->in_memory != MAP_IN_MEMORY)
2275 load_and_link_tiled_map (m, 1);
2276 1315
2277 *x -= MAP_WIDTH (m); 1316 x -= width;
2278 return (get_map_from_coord (m->tile_map[1], x, y)); 1317 return tile_map[1]->xy_find (x, y);
2279 } 1318 }
1319
2280 if (*y < 0) 1320 if (y < 0)
2281 { 1321 {
2282 if (!m->tile_path[0]) 1322 if (!tile_available (0))
2283 return NULL; 1323 return 0;
2284 if (!m->tile_map[0] || m->tile_map[0]->in_memory != MAP_IN_MEMORY)
2285 load_and_link_tiled_map (m, 0);
2286 1324
2287 *y += MAP_HEIGHT (m->tile_map[0]); 1325 y += tile_map[0]->height;
2288 return (get_map_from_coord (m->tile_map[0], x, y)); 1326 return tile_map[0]->xy_find (x, y);
2289 }
2290 if (*y >= MAP_HEIGHT (m))
2291 { 1327 }
2292 if (!m->tile_path[2]) 1328
1329 if (y >= height)
1330 {
1331 if (!tile_available (2))
2293 return NULL; 1332 return 0;
2294 if (!m->tile_map[2] || m->tile_map[2]->in_memory != MAP_IN_MEMORY)
2295 load_and_link_tiled_map (m, 2);
2296 1333
2297 *y -= MAP_HEIGHT (m); 1334 y -= height;
2298 return (get_map_from_coord (m->tile_map[2], x, y)); 1335 return tile_map[2]->xy_find (x, y);
2299 } 1336 }
2300 1337
2301 /* Simple case - coordinates are within this local 1338 /* Simple case - coordinates are within this local
2302 * map. 1339 * map.
2303 */ 1340 */
2304
2305 return m; 1341 return this;
2306} 1342}
2307 1343
2308/** 1344/**
2309 * Return whether map2 is adjacent to map1. If so, store the distance from 1345 * Return whether map2 is adjacent to map1. If so, store the distance from
2310 * map1 to map2 in dx/dy. 1346 * map1 to map2 in dx/dy.
2311 */ 1347 */
2312static int 1348int
2313adjacent_map (const maptile *map1, const maptile *map2, int *dx, int *dy) 1349adjacent_map (const maptile *map1, const maptile *map2, int *dx, int *dy)
2314{ 1350{
2315 if (!map1 || !map2) 1351 if (!map1 || !map2)
2316 return 0; 1352 return 0;
2317 1353
1354 //TODO: this doesn't actually check correctly when intermediate maps are not loaded
1355 //fix: compare paths instead (this is likely faster, too!)
2318 if (map1 == map2) 1356 if (map1 == map2)
2319 { 1357 {
2320 *dx = 0; 1358 *dx = 0;
2321 *dy = 0; 1359 *dy = 0;
2322
2323 } 1360 }
2324 else if (map1->tile_map[0] == map2) 1361 else if (map1->tile_map[0] == map2)
2325 { /* up */ 1362 { /* up */
2326 *dx = 0; 1363 *dx = 0;
2327 *dy = -MAP_HEIGHT (map2); 1364 *dy = -map2->height;
2328 } 1365 }
2329 else if (map1->tile_map[1] == map2) 1366 else if (map1->tile_map[1] == map2)
2330 { /* right */ 1367 { /* right */
2331 *dx = MAP_WIDTH (map1); 1368 *dx = map1->width;
2332 *dy = 0; 1369 *dy = 0;
2333 } 1370 }
2334 else if (map1->tile_map[2] == map2) 1371 else if (map1->tile_map[2] == map2)
2335 { /* down */ 1372 { /* down */
2336 *dx = 0; 1373 *dx = 0;
2337 *dy = MAP_HEIGHT (map1); 1374 *dy = map1->height;
2338 } 1375 }
2339 else if (map1->tile_map[3] == map2) 1376 else if (map1->tile_map[3] == map2)
2340 { /* left */ 1377 { /* left */
2341 *dx = -MAP_WIDTH (map2); 1378 *dx = -map2->width;
2342 *dy = 0; 1379 *dy = 0;
2343
2344 } 1380 }
2345 else if (map1->tile_map[0] && map1->tile_map[0]->tile_map[1] == map2) 1381 else if (map1->tile_map[0] && map1->tile_map[0]->tile_map[1] == map2)
2346 { /* up right */ 1382 { /* up right */
2347 *dx = MAP_WIDTH (map1->tile_map[0]); 1383 *dx = map1->tile_map[0]->width;
2348 *dy = -MAP_HEIGHT (map1->tile_map[0]); 1384 *dy = -map1->tile_map[0]->height;
2349 } 1385 }
2350 else if (map1->tile_map[0] && map1->tile_map[0]->tile_map[3] == map2) 1386 else if (map1->tile_map[0] && map1->tile_map[0]->tile_map[3] == map2)
2351 { /* up left */ 1387 { /* up left */
2352 *dx = -MAP_WIDTH (map2); 1388 *dx = -map2->width;
2353 *dy = -MAP_HEIGHT (map1->tile_map[0]); 1389 *dy = -map1->tile_map[0]->height;
2354 } 1390 }
2355 else if (map1->tile_map[1] && map1->tile_map[1]->tile_map[0] == map2) 1391 else if (map1->tile_map[1] && map1->tile_map[1]->tile_map[0] == map2)
2356 { /* right up */ 1392 { /* right up */
2357 *dx = MAP_WIDTH (map1); 1393 *dx = map1->width;
2358 *dy = -MAP_HEIGHT (map2); 1394 *dy = -map2->height;
2359 } 1395 }
2360 else if (map1->tile_map[1] && map1->tile_map[1]->tile_map[2] == map2) 1396 else if (map1->tile_map[1] && map1->tile_map[1]->tile_map[2] == map2)
2361 { /* right down */ 1397 { /* right down */
2362 *dx = MAP_WIDTH (map1); 1398 *dx = map1->width;
2363 *dy = MAP_HEIGHT (map1->tile_map[1]); 1399 *dy = map1->tile_map[1]->height;
2364 } 1400 }
2365 else if (map1->tile_map[2] && map1->tile_map[2]->tile_map[1] == map2) 1401 else if (map1->tile_map[2] && map1->tile_map[2]->tile_map[1] == map2)
2366 { /* down right */ 1402 { /* down right */
2367 *dx = MAP_WIDTH (map1->tile_map[2]); 1403 *dx = map1->tile_map[2]->width;
2368 *dy = MAP_HEIGHT (map1); 1404 *dy = map1->height;
2369 } 1405 }
2370 else if (map1->tile_map[2] && map1->tile_map[2]->tile_map[3] == map2) 1406 else if (map1->tile_map[2] && map1->tile_map[2]->tile_map[3] == map2)
2371 { /* down left */ 1407 { /* down left */
2372 *dx = -MAP_WIDTH (map2); 1408 *dx = -map2->width;
2373 *dy = MAP_HEIGHT (map1); 1409 *dy = map1->height;
2374 } 1410 }
2375 else if (map1->tile_map[3] && map1->tile_map[3]->tile_map[0] == map2) 1411 else if (map1->tile_map[3] && map1->tile_map[3]->tile_map[0] == map2)
2376 { /* left up */ 1412 { /* left up */
2377 *dx = -MAP_WIDTH (map1->tile_map[3]); 1413 *dx = -map1->tile_map[3]->width;
2378 *dy = -MAP_HEIGHT (map2); 1414 *dy = -map2->height;
2379 } 1415 }
2380 else if (map1->tile_map[3] && map1->tile_map[3]->tile_map[2] == map2) 1416 else if (map1->tile_map[3] && map1->tile_map[3]->tile_map[2] == map2)
2381 { /* left down */ 1417 { /* left down */
2382 *dx = -MAP_WIDTH (map1->tile_map[3]); 1418 *dx = -map1->tile_map[3]->width;
2383 *dy = MAP_HEIGHT (map1->tile_map[3]); 1419 *dy = map1->tile_map[3]->height;
2384
2385 } 1420 }
2386 else 1421 else
2387 { /* not "adjacent" enough */
2388 return 0; 1422 return 0;
2389 }
2390 1423
2391 return 1; 1424 return 1;
1425}
1426
1427maptile *
1428maptile::xy_load (sint16 &x, sint16 &y)
1429{
1430 maptile *map = xy_find (x, y);
1431
1432 if (map)
1433 map->load_sync ();
1434
1435 return map;
1436}
1437
1438maptile *
1439get_map_from_coord (maptile *m, sint16 *x, sint16 *y)
1440{
1441 return m->xy_load (*x, *y);
2392} 1442}
2393 1443
2394/* From map.c 1444/* From map.c
2395 * This is used by get_player to determine where the other 1445 * This is used by get_player to determine where the other
2396 * creature is. get_rangevector takes into account map tiling, 1446 * creature is. get_rangevector takes into account map tiling,
2397 * so you just can not look the the map coordinates and get the 1447 * so you just can not look the the map coordinates and get the
2398 * righte value. distance_x/y are distance away, which 1448 * righte value. distance_x/y are distance away, which
2399 * can be negativbe. direction is the crossfire direction scheme 1449 * can be negative. direction is the crossfire direction scheme
2400 * that the creature should head. part is the part of the 1450 * that the creature should head. part is the part of the
2401 * monster that is closest. 1451 * monster that is closest.
2402 * 1452 *
2403 * get_rangevector looks at op1 and op2, and fills in the 1453 * get_rangevector looks at op1 and op2, and fills in the
2404 * structure for op1 to get to op2. 1454 * structure for op1 to get to op2.
2409 * be unexpected 1459 * be unexpected
2410 * 1460 *
2411 * currently, the only flag supported (0x1) is don't translate for 1461 * currently, the only flag supported (0x1) is don't translate for
2412 * closest body part of 'op1' 1462 * closest body part of 'op1'
2413 */ 1463 */
2414
2415void 1464void
2416get_rangevector (object *op1, object *op2, rv_vector * retval, int flags) 1465get_rangevector (object *op1, object *op2, rv_vector * retval, int flags)
2417{ 1466{
2418 if (!adjacent_map (op1->map, op2->map, &retval->distance_x, &retval->distance_y)) 1467 if (!adjacent_map (op1->map, op2->map, &retval->distance_x, &retval->distance_y))
2419 { 1468 {
2420 /* be conservative and fill in _some_ data */ 1469 /* be conservative and fill in _some_ data */
2421 retval->distance = 100000; 1470 retval->distance = 10000;
2422 retval->distance_x = 32767; 1471 retval->distance_x = 10000;
2423 retval->distance_y = 32767; 1472 retval->distance_y = 10000;
2424 retval->direction = 0; 1473 retval->direction = 0;
2425 retval->part = 0; 1474 retval->part = 0;
2426 } 1475 }
2427 else 1476 else
2428 { 1477 {
2433 1482
2434 best = op1; 1483 best = op1;
2435 /* If this is multipart, find the closest part now */ 1484 /* If this is multipart, find the closest part now */
2436 if (!(flags & 0x1) && op1->more) 1485 if (!(flags & 0x1) && op1->more)
2437 { 1486 {
2438 object *tmp;
2439 int best_distance = retval->distance_x * retval->distance_x + retval->distance_y * retval->distance_y, tmpi; 1487 int best_distance = retval->distance_x * retval->distance_x + retval->distance_y * retval->distance_y, tmpi;
2440 1488
2441 /* we just take the offset of the piece to head to figure 1489 /* we just take the offset of the piece to head to figure
2442 * distance instead of doing all that work above again 1490 * distance instead of doing all that work above again
2443 * since the distance fields we set above are positive in the 1491 * since the distance fields we set above are positive in the
2444 * same axis as is used for multipart objects, the simply arithmetic 1492 * same axis as is used for multipart objects, the simply arithmetic
2445 * below works. 1493 * below works.
2446 */ 1494 */
2447 for (tmp = op1->more; tmp != NULL; tmp = tmp->more) 1495 for (object *tmp = op1->more; tmp; tmp = tmp->more)
2448 { 1496 {
2449 tmpi = (op1->x - tmp->x + retval->distance_x) * (op1->x - tmp->x + retval->distance_x) + 1497 tmpi = (op1->x - tmp->x + retval->distance_x) * (op1->x - tmp->x + retval->distance_x) +
2450 (op1->y - tmp->y + retval->distance_y) * (op1->y - tmp->y + retval->distance_y); 1498 (op1->y - tmp->y + retval->distance_y) * (op1->y - tmp->y + retval->distance_y);
2451 if (tmpi < best_distance) 1499 if (tmpi < best_distance)
2452 { 1500 {
2453 best_distance = tmpi; 1501 best_distance = tmpi;
2454 best = tmp; 1502 best = tmp;
2455 } 1503 }
2456 } 1504 }
1505
2457 if (best != op1) 1506 if (best != op1)
2458 { 1507 {
2459 retval->distance_x += op1->x - best->x; 1508 retval->distance_x += op1->x - best->x;
2460 retval->distance_y += op1->y - best->y; 1509 retval->distance_y += op1->y - best->y;
2461 } 1510 }
2462 } 1511 }
1512
2463 retval->part = best; 1513 retval->part = best;
2464 retval->distance = isqrt (retval->distance_x * retval->distance_x + retval->distance_y * retval->distance_y); 1514 retval->distance = upos_max (abs (retval->distance_x), abs (retval->distance_y));
2465 retval->direction = find_dir_2 (-retval->distance_x, -retval->distance_y); 1515 retval->direction = find_dir_2 (-retval->distance_x, -retval->distance_y);
2466 } 1516 }
2467} 1517}
2468 1518
2469/* this is basically the same as get_rangevector above, but instead of 1519/* this is basically the same as get_rangevector above, but instead of
2474 * flags has no meaning for this function at this time - I kept it in to 1524 * flags has no meaning for this function at this time - I kept it in to
2475 * be more consistant with the above function and also in case they are needed 1525 * be more consistant with the above function and also in case they are needed
2476 * for something in the future. Also, since no object is pasted, the best 1526 * for something in the future. Also, since no object is pasted, the best
2477 * field of the rv_vector is set to NULL. 1527 * field of the rv_vector is set to NULL.
2478 */ 1528 */
2479
2480void 1529void
2481get_rangevector_from_mapcoord (const maptile *m, int x, int y, const object *op2, rv_vector * retval, int flags) 1530get_rangevector_from_mapcoord (const maptile *m, int x, int y, const object *op2, rv_vector *retval, int flags)
2482{ 1531{
2483 if (!adjacent_map (m, op2->map, &retval->distance_x, &retval->distance_y)) 1532 if (!adjacent_map (m, op2->map, &retval->distance_x, &retval->distance_y))
2484 { 1533 {
2485 /* be conservative and fill in _some_ data */ 1534 /* be conservative and fill in _some_ data */
2486 retval->distance = 100000; 1535 retval->distance = 100000;
2493 { 1542 {
2494 retval->distance_x += op2->x - x; 1543 retval->distance_x += op2->x - x;
2495 retval->distance_y += op2->y - y; 1544 retval->distance_y += op2->y - y;
2496 1545
2497 retval->part = NULL; 1546 retval->part = NULL;
2498 retval->distance = isqrt (retval->distance_x * retval->distance_x + retval->distance_y * retval->distance_y); 1547 retval->distance = idistance (retval->distance_x, retval->distance_y);
2499 retval->direction = find_dir_2 (-retval->distance_x, -retval->distance_y); 1548 retval->direction = find_dir_2 (-retval->distance_x, -retval->distance_y);
2500 } 1549 }
2501} 1550}
2502 1551
2503/* Returns true of op1 and op2 are effectively on the same map 1552/* Returns true of op1 and op2 are effectively on the same map
2504 * (as related to map tiling). Note that this looks for a path from 1553 * (as related to map tiling). Note that this looks for a path from
2505 * op1 to op2, so if the tiled maps are assymetric and op2 has a path 1554 * op1 to op2, so if the tiled maps are asymetric and op2 has a path
2506 * to op1, this will still return false. 1555 * to op1, this will still return false.
2507 * Note we only look one map out to keep the processing simple 1556 * Note we only look one map out to keep the processing simple
2508 * and efficient. This could probably be a macro. 1557 * and efficient. This could probably be a macro.
2509 * MSW 2001-08-05 1558 * MSW 2001-08-05
2510 */ 1559 */
2513{ 1562{
2514 int dx, dy; 1563 int dx, dy;
2515 1564
2516 return adjacent_map (op1->map, op2->map, &dx, &dy); 1565 return adjacent_map (op1->map, op2->map, &dx, &dy);
2517} 1566}
1567
1568object *
1569maptile::insert (object *op, int x, int y, object *originator, int flags)
1570{
1571 if (!op->flag [FLAG_REMOVED])
1572 op->remove ();
1573
1574 return insert_ob_in_map_at (op, this, originator, flags, x, y);
1575}
1576
1577region *
1578maptile::region (int x, int y) const
1579{
1580 if (regions
1581 && regionmap
1582 && !OUT_OF_REAL_MAP (this, x, y))
1583 if (struct region *reg = regionmap [regions [y * width + x]])
1584 return reg;
1585
1586 if (default_region)
1587 return default_region;
1588
1589 return ::region::default_region ();
1590}
1591
1592/* picks a random object from a style map.
1593 * Redone by MSW so it should be faster and not use static
1594 * variables to generate tables.
1595 */
1596object *
1597maptile::pick_random_object () const
1598{
1599 /* while returning a null object will result in a crash, that
1600 * is actually preferable to an infinite loop. That is because
1601 * most servers will automatically restart in case of crash.
1602 * Change the logic on getting the random space - shouldn't make
1603 * any difference, but this seems clearer to me.
1604 */
1605 for (int i = 1000; --i;)
1606 {
1607 object *pick = at (rndm (width), rndm (height)).bot;
1608
1609 // do not prefer big monsters just because they are big.
1610 if (pick && pick->head_ () == pick)
1611 return pick->head_ ();
1612 }
1613
1614 // instead of crashing in the unlikely(?) case, try to return *something*
1615 return get_archetype ("blocked");
1616}
1617
1618void
1619maptile::play_sound (faceidx sound, int x, int y) const
1620{
1621 if (!sound)
1622 return;
1623
1624 for_all_players (pl)
1625 if (pl->observe->map == this)
1626 if (client *ns = pl->ns)
1627 {
1628 int dx = x - pl->observe->x;
1629 int dy = y - pl->observe->y;
1630
1631 int distance = idistance (dx, dy);
1632
1633 if (distance <= MAX_SOUND_DISTANCE)
1634 ns->play_sound (sound, dx, dy);
1635 }
1636}
1637

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