1 1.9 dholland /* $NetBSD: hack.mklev.c,v 1.9 2011/08/06 20:42:43 dholland Exp $ */ 2 1.4 christos 3 1.2 mycroft /* 4 1.6 jsm * Copyright (c) 1985, Stichting Centrum voor Wiskunde en Informatica, 5 1.6 jsm * Amsterdam 6 1.6 jsm * All rights reserved. 7 1.6 jsm * 8 1.6 jsm * Redistribution and use in source and binary forms, with or without 9 1.6 jsm * modification, are permitted provided that the following conditions are 10 1.6 jsm * met: 11 1.6 jsm * 12 1.6 jsm * - Redistributions of source code must retain the above copyright notice, 13 1.6 jsm * this list of conditions and the following disclaimer. 14 1.6 jsm * 15 1.6 jsm * - Redistributions in binary form must reproduce the above copyright 16 1.6 jsm * notice, this list of conditions and the following disclaimer in the 17 1.6 jsm * documentation and/or other materials provided with the distribution. 18 1.6 jsm * 19 1.6 jsm * - Neither the name of the Stichting Centrum voor Wiskunde en 20 1.6 jsm * Informatica, nor the names of its contributors may be used to endorse or 21 1.6 jsm * promote products derived from this software without specific prior 22 1.6 jsm * written permission. 23 1.6 jsm * 24 1.6 jsm * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS 25 1.6 jsm * IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 26 1.6 jsm * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A 27 1.6 jsm * PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER 28 1.6 jsm * OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, 29 1.6 jsm * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, 30 1.6 jsm * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR 31 1.6 jsm * PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF 32 1.6 jsm * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING 33 1.6 jsm * NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS 34 1.6 jsm * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 35 1.6 jsm */ 36 1.6 jsm 37 1.6 jsm /* 38 1.6 jsm * Copyright (c) 1982 Jay Fenlason <hack (at) gnu.org> 39 1.6 jsm * All rights reserved. 40 1.6 jsm * 41 1.6 jsm * Redistribution and use in source and binary forms, with or without 42 1.6 jsm * modification, are permitted provided that the following conditions 43 1.6 jsm * are met: 44 1.6 jsm * 1. Redistributions of source code must retain the above copyright 45 1.6 jsm * notice, this list of conditions and the following disclaimer. 46 1.6 jsm * 2. Redistributions in binary form must reproduce the above copyright 47 1.6 jsm * notice, this list of conditions and the following disclaimer in the 48 1.6 jsm * documentation and/or other materials provided with the distribution. 49 1.6 jsm * 3. The name of the author may not be used to endorse or promote products 50 1.6 jsm * derived from this software without specific prior written permission. 51 1.6 jsm * 52 1.6 jsm * THIS SOFTWARE IS PROVIDED ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, 53 1.6 jsm * INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY 54 1.6 jsm * AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL 55 1.6 jsm * THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, 56 1.6 jsm * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, 57 1.6 jsm * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; 58 1.6 jsm * OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, 59 1.6 jsm * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR 60 1.6 jsm * OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF 61 1.6 jsm * ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 62 1.2 mycroft */ 63 1.2 mycroft 64 1.4 christos #include <sys/cdefs.h> 65 1.2 mycroft #ifndef lint 66 1.9 dholland __RCSID("$NetBSD: hack.mklev.c,v 1.9 2011/08/06 20:42:43 dholland Exp $"); 67 1.4 christos #endif /* not lint */ 68 1.1 cgd 69 1.4 christos #include <unistd.h> 70 1.4 christos #include <stdlib.h> 71 1.1 cgd #include "hack.h" 72 1.4 christos #include "extern.h" 73 1.1 cgd 74 1.1 cgd #define somex() ((random()%(croom->hx-croom->lx+1))+croom->lx) 75 1.1 cgd #define somey() ((random()%(croom->hy-croom->ly+1))+croom->ly) 76 1.1 cgd 77 1.1 cgd #include "def.mkroom.h" 78 1.4 christos #define XLIM 4 /* define minimum required space around a 79 1.4 christos * room */ 80 1.1 cgd #define YLIM 3 81 1.8 dholland static boolean secret; /* TRUE while making a vault: increase 82 1.4 christos * [XY]LIM */ 83 1.8 dholland static int smeq[MAXNROFROOMS + 1]; 84 1.8 dholland static const struct rm zerorm; 85 1.8 dholland static schar nxcor; 86 1.8 dholland static boolean goldseen; 87 1.8 dholland 88 1.4 christos int doorindex; 89 1.4 christos int nroom; 90 1.1 cgd 91 1.1 cgd /* Definitions used by makerooms() and addrs() */ 92 1.4 christos #define MAXRS 50 /* max lth of temp rectangle table - 93 1.4 christos * arbitrary */ 94 1.8 dholland static struct rectangle { 95 1.4 christos xchar rlx, rly, rhx, rhy; 96 1.8 dholland } rs[MAXRS + 1]; 97 1.8 dholland static int rscnt, rsmax; /* 0..rscnt-1: currently under consideration */ 98 1.4 christos /* rscnt..rsmax: discarded */ 99 1.1 cgd 100 1.8 dholland static int makerooms(void); 101 1.8 dholland static void addrs(int, int, int, int); 102 1.8 dholland static void addrsx(int, int, int, int, boolean); 103 1.8 dholland static int comp(const void *, const void *); 104 1.8 dholland static coord finddpos(int, int, int, int); 105 1.8 dholland static int okdoor(int, int); 106 1.8 dholland static void dodoor(int, int, struct mkroom *); 107 1.8 dholland static void dosdoor(int, int, struct mkroom *, int); 108 1.8 dholland static int maker(schar, schar, schar, schar); 109 1.8 dholland static void makecorridors(void); 110 1.8 dholland static void join(int, int); 111 1.8 dholland static void make_niches(void); 112 1.8 dholland static void makevtele(void); 113 1.8 dholland static void makeniche(boolean); 114 1.8 dholland 115 1.4 christos void 116 1.7 dholland makelevel(void) 117 1.1 cgd { 118 1.4 christos struct mkroom *croom, *troom; 119 1.4 christos unsigned tryct; 120 1.4 christos int x, y; 121 1.1 cgd 122 1.1 cgd nroom = 0; 123 1.1 cgd doorindex = 0; 124 1.1 cgd rooms[0].hx = -1; /* in case we are in a maze */ 125 1.1 cgd 126 1.4 christos for (x = 0; x < COLNO; x++) 127 1.4 christos for (y = 0; y < ROWNO; y++) 128 1.4 christos levl[x][y] = zerorm; 129 1.1 cgd 130 1.4 christos oinit(); /* assign level dependent obj probabilities */ 131 1.1 cgd 132 1.4 christos if (dlevel >= rn1(3, 26)) { /* there might be several mazes */ 133 1.1 cgd makemaz(); 134 1.1 cgd return; 135 1.1 cgd } 136 1.1 cgd /* construct the rooms */ 137 1.1 cgd nroom = 0; 138 1.1 cgd secret = FALSE; 139 1.1 cgd (void) makerooms(); 140 1.1 cgd 141 1.1 cgd /* construct stairs (up and down in different rooms if possible) */ 142 1.1 cgd croom = &rooms[rn2(nroom)]; 143 1.1 cgd xdnstair = somex(); 144 1.1 cgd ydnstair = somey(); 145 1.4 christos levl[xdnstair][ydnstair].scrsym = '>'; 146 1.1 cgd levl[xdnstair][ydnstair].typ = STAIRS; 147 1.4 christos if (nroom > 1) { 148 1.1 cgd troom = croom; 149 1.4 christos croom = &rooms[rn2(nroom - 1)]; 150 1.4 christos if (croom >= troom) 151 1.4 christos croom++; 152 1.1 cgd } 153 1.1 cgd xupstair = somex(); /* %% < and > might be in the same place */ 154 1.1 cgd yupstair = somey(); 155 1.4 christos levl[xupstair][yupstair].scrsym = '<'; 156 1.1 cgd levl[xupstair][yupstair].typ = STAIRS; 157 1.1 cgd 158 1.1 cgd /* for each room: put things inside */ 159 1.4 christos for (croom = rooms; croom->hx > 0; croom++) { 160 1.1 cgd 161 1.1 cgd /* put a sleeping monster inside */ 162 1.4 christos /* 163 1.4 christos * Note: monster may be on the stairs. This cannot be 164 1.4 christos * avoided: maybe the player fell through a trapdoor while a 165 1.4 christos * monster was on the stairs. Conclusion: we have to check 166 1.4 christos * for monsters on the stairs anyway. 167 1.4 christos */ 168 1.4 christos if (!rn2(3)) 169 1.4 christos (void) 170 1.4 christos makemon((struct permonst *) 0, somex(), somey()); 171 1.1 cgd 172 1.1 cgd /* put traps and mimics inside */ 173 1.1 cgd goldseen = FALSE; 174 1.4 christos while (!rn2(8 - (dlevel / 6))) 175 1.4 christos mktrap(0, 0, croom); 176 1.4 christos if (!goldseen && !rn2(3)) 177 1.4 christos mkgold(0L, somex(), somey()); 178 1.4 christos if (!rn2(3)) { 179 1.1 cgd (void) mkobj_at(0, somex(), somey()); 180 1.1 cgd tryct = 0; 181 1.4 christos while (!rn2(5)) { 182 1.4 christos if (++tryct > 100) { 183 1.1 cgd printf("tryct overflow4\n"); 184 1.1 cgd break; 185 1.1 cgd } 186 1.1 cgd (void) mkobj_at(0, somex(), somey()); 187 1.1 cgd } 188 1.1 cgd } 189 1.1 cgd } 190 1.1 cgd 191 1.9 dholland qsort(rooms, nroom, sizeof(rooms[0]), comp); 192 1.1 cgd makecorridors(); 193 1.1 cgd make_niches(); 194 1.1 cgd 195 1.1 cgd /* make a secret treasure vault, not connected to the rest */ 196 1.4 christos if (nroom <= (2 * MAXNROFROOMS / 3)) 197 1.4 christos if (rn2(3)) { 198 1.4 christos troom = &rooms[nroom]; 199 1.4 christos secret = TRUE; 200 1.4 christos if (makerooms()) { 201 1.4 christos troom->rtype = VAULT; /* treasure vault */ 202 1.4 christos for (x = troom->lx; x <= troom->hx; x++) 203 1.4 christos for (y = troom->ly; y <= troom->hy; y++) 204 1.4 christos mkgold((long) (rnd(dlevel * 100) + 50), x, y); 205 1.4 christos if (!rn2(3)) 206 1.4 christos makevtele(); 207 1.4 christos } 208 1.1 cgd } 209 1.1 cgd #ifndef QUEST 210 1.1 cgd #ifdef WIZARD 211 1.4 christos if (wizard && getenv("SHOPTYPE")) 212 1.4 christos mkshop(); 213 1.1 cgd else 214 1.4 christos #endif /* WIZARD */ 215 1.4 christos if (dlevel > 1 && dlevel < 20 && rn2(dlevel) < 3) 216 1.4 christos mkshop(); 217 1.4 christos else if (dlevel > 6 && !rn2(7)) 218 1.4 christos mkzoo(ZOO); 219 1.4 christos else if (dlevel > 9 && !rn2(5)) 220 1.4 christos mkzoo(BEEHIVE); 221 1.4 christos else if (dlevel > 11 && !rn2(6)) 222 1.4 christos mkzoo(MORGUE); 223 1.4 christos else if (dlevel > 18 && !rn2(6)) 224 1.4 christos mkswamp(); 225 1.4 christos #endif /* QUEST */ 226 1.4 christos } 227 1.4 christos 228 1.8 dholland static int 229 1.7 dholland makerooms(void) 230 1.4 christos { 231 1.4 christos struct rectangle *rsp; 232 1.4 christos int lx, ly, hx, hy, lowx, lowy, hix, hiy, dx, dy; 233 1.4 christos int tryct = 0, xlim, ylim; 234 1.1 cgd 235 1.1 cgd /* init */ 236 1.1 cgd xlim = XLIM + secret; 237 1.1 cgd ylim = YLIM + secret; 238 1.4 christos if (nroom == 0) { 239 1.1 cgd rsp = rs; 240 1.1 cgd rsp->rlx = rsp->rly = 0; 241 1.4 christos rsp->rhx = COLNO - 1; 242 1.4 christos rsp->rhy = ROWNO - 1; 243 1.1 cgd rsmax = 1; 244 1.1 cgd } 245 1.1 cgd rscnt = rsmax; 246 1.1 cgd 247 1.1 cgd /* make rooms until satisfied */ 248 1.4 christos while (rscnt > 0 && nroom < MAXNROFROOMS - 1) { 249 1.4 christos if (!secret && nroom > (MAXNROFROOMS / 3) && 250 1.4 christos !rn2((MAXNROFROOMS - nroom) * (MAXNROFROOMS - nroom))) 251 1.4 christos return (0); 252 1.1 cgd 253 1.1 cgd /* pick a rectangle */ 254 1.1 cgd rsp = &rs[rn2(rscnt)]; 255 1.1 cgd hx = rsp->rhx; 256 1.1 cgd hy = rsp->rhy; 257 1.1 cgd lx = rsp->rlx; 258 1.1 cgd ly = rsp->rly; 259 1.1 cgd 260 1.1 cgd /* find size of room */ 261 1.4 christos if (secret) 262 1.1 cgd dx = dy = 1; 263 1.1 cgd else { 264 1.4 christos dx = 2 + rn2((hx - lx - 8 > 20) ? 12 : 8); 265 1.1 cgd dy = 2 + rn2(4); 266 1.4 christos if (dx * dy > 50) 267 1.4 christos dy = 50 / dx; 268 1.1 cgd } 269 1.1 cgd 270 1.1 cgd /* look whether our room will fit */ 271 1.4 christos if (hx - lx < dx + dx / 2 + 2 * xlim || hy - ly < dy + dy / 3 + 2 * ylim) { 272 1.4 christos /* no, too small */ 273 1.4 christos /* maybe we throw this area out */ 274 1.4 christos if (secret || !rn2(MAXNROFROOMS + 1 - nroom - tryct)) { 275 1.1 cgd rscnt--; 276 1.1 cgd rs[rsmax] = *rsp; 277 1.1 cgd *rsp = rs[rscnt]; 278 1.1 cgd rs[rscnt] = rs[rsmax]; 279 1.1 cgd tryct = 0; 280 1.1 cgd } else 281 1.1 cgd tryct++; 282 1.1 cgd continue; 283 1.1 cgd } 284 1.4 christos lowx = lx + xlim + rn2(hx - lx - dx - 2 * xlim + 1); 285 1.4 christos lowy = ly + ylim + rn2(hy - ly - dy - 2 * ylim + 1); 286 1.1 cgd hix = lowx + dx; 287 1.1 cgd hiy = lowy + dy; 288 1.1 cgd 289 1.4 christos if (maker(lowx, dx, lowy, dy)) { 290 1.4 christos if (secret) 291 1.4 christos return (1); 292 1.4 christos addrs(lowx - 1, lowy - 1, hix + 1, hiy + 1); 293 1.1 cgd tryct = 0; 294 1.4 christos } else if (tryct++ > 100) 295 1.4 christos break; 296 1.1 cgd } 297 1.4 christos return (0); /* failed to make vault - very strange */ 298 1.1 cgd } 299 1.1 cgd 300 1.8 dholland static void 301 1.7 dholland addrs(int lowx, int lowy, int hix, int hiy) 302 1.1 cgd { 303 1.4 christos struct rectangle *rsp; 304 1.4 christos int lx, ly, hx, hy, xlim, ylim; 305 1.4 christos boolean discarded; 306 1.1 cgd 307 1.1 cgd xlim = XLIM + secret; 308 1.1 cgd ylim = YLIM + secret; 309 1.1 cgd 310 1.1 cgd /* walk down since rscnt and rsmax change */ 311 1.4 christos for (rsp = &rs[rsmax - 1]; rsp >= rs; rsp--) { 312 1.4 christos 313 1.4 christos if ((lx = rsp->rlx) > hix || (ly = rsp->rly) > hiy || 314 1.4 christos (hx = rsp->rhx) < lowx || (hy = rsp->rhy) < lowy) 315 1.1 cgd continue; 316 1.4 christos if ((discarded = (rsp >= &rs[rscnt]))) { 317 1.1 cgd *rsp = rs[--rsmax]; 318 1.1 cgd } else { 319 1.1 cgd rsmax--; 320 1.1 cgd rscnt--; 321 1.1 cgd *rsp = rs[rscnt]; 322 1.4 christos if (rscnt != rsmax) 323 1.1 cgd rs[rscnt] = rs[rsmax]; 324 1.1 cgd } 325 1.4 christos if (lowy - ly > 2 * ylim + 4) 326 1.4 christos addrsx(lx, ly, hx, lowy - 2, discarded); 327 1.4 christos if (lowx - lx > 2 * xlim + 4) 328 1.4 christos addrsx(lx, ly, lowx - 2, hy, discarded); 329 1.4 christos if (hy - hiy > 2 * ylim + 4) 330 1.4 christos addrsx(lx, hiy + 2, hx, hy, discarded); 331 1.4 christos if (hx - hix > 2 * xlim + 4) 332 1.4 christos addrsx(hix + 2, ly, hx, hy, discarded); 333 1.1 cgd } 334 1.1 cgd } 335 1.1 cgd 336 1.7 dholland /* discarded: piece of a discarded area */ 337 1.8 dholland static void 338 1.7 dholland addrsx(int lx, int ly, int hx, int hy, boolean discarded) 339 1.1 cgd { 340 1.4 christos struct rectangle *rsp; 341 1.1 cgd 342 1.1 cgd /* check inclusions */ 343 1.4 christos for (rsp = rs; rsp < &rs[rsmax]; rsp++) { 344 1.4 christos if (lx >= rsp->rlx && hx <= rsp->rhx && 345 1.4 christos ly >= rsp->rly && hy <= rsp->rhy) 346 1.1 cgd return; 347 1.1 cgd } 348 1.1 cgd 349 1.1 cgd /* make a new entry */ 350 1.4 christos if (rsmax >= MAXRS) { 351 1.1 cgd #ifdef WIZARD 352 1.4 christos if (wizard) 353 1.4 christos pline("MAXRS may be too small."); 354 1.4 christos #endif /* WIZARD */ 355 1.1 cgd return; 356 1.1 cgd } 357 1.1 cgd rsmax++; 358 1.4 christos if (!discarded) { 359 1.1 cgd *rsp = rs[rscnt]; 360 1.1 cgd rsp = &rs[rscnt]; 361 1.1 cgd rscnt++; 362 1.1 cgd } 363 1.1 cgd rsp->rlx = lx; 364 1.1 cgd rsp->rly = ly; 365 1.1 cgd rsp->rhx = hx; 366 1.1 cgd rsp->rhy = hy; 367 1.1 cgd } 368 1.1 cgd 369 1.8 dholland static int 370 1.7 dholland comp(const void *vx, const void *vy) 371 1.4 christos { 372 1.4 christos const struct mkroom *x = vx, *y = vy; 373 1.4 christos if (x->lx < y->lx) 374 1.4 christos return (-1); 375 1.4 christos return (x->lx > y->lx); 376 1.1 cgd } 377 1.1 cgd 378 1.8 dholland static coord 379 1.5 jsm finddpos(int xl, int yl, int xh, int yh) 380 1.4 christos { 381 1.4 christos coord ff; 382 1.4 christos int x, y; 383 1.4 christos 384 1.4 christos x = (xl == xh) ? xl : (xl + rn2(xh - xl + 1)); 385 1.4 christos y = (yl == yh) ? yl : (yl + rn2(yh - yl + 1)); 386 1.4 christos if (okdoor(x, y)) 387 1.1 cgd goto gotit; 388 1.1 cgd 389 1.4 christos for (x = xl; x <= xh; x++) 390 1.4 christos for (y = yl; y <= yh; y++) 391 1.4 christos if (okdoor(x, y)) 392 1.4 christos goto gotit; 393 1.4 christos 394 1.4 christos for (x = xl; x <= xh; x++) 395 1.4 christos for (y = yl; y <= yh; y++) 396 1.4 christos if (levl[x][y].typ == DOOR || levl[x][y].typ == SDOOR) 397 1.4 christos goto gotit; 398 1.1 cgd /* cannot find something reasonable -- strange */ 399 1.1 cgd x = xl; 400 1.1 cgd y = yh; 401 1.1 cgd gotit: 402 1.1 cgd ff.x = x; 403 1.1 cgd ff.y = y; 404 1.4 christos return (ff); 405 1.1 cgd } 406 1.1 cgd 407 1.1 cgd /* see whether it is allowable to create a door at [x,y] */ 408 1.8 dholland static int 409 1.7 dholland okdoor(int x, int y) 410 1.4 christos { 411 1.4 christos if (levl[x - 1][y].typ == DOOR || levl[x + 1][y].typ == DOOR || 412 1.4 christos levl[x][y + 1].typ == DOOR || levl[x][y - 1].typ == DOOR || 413 1.4 christos levl[x - 1][y].typ == SDOOR || levl[x + 1][y].typ == SDOOR || 414 1.4 christos levl[x][y - 1].typ == SDOOR || levl[x][y + 1].typ == SDOOR || 415 1.4 christos (levl[x][y].typ != HWALL && levl[x][y].typ != VWALL) || 416 1.4 christos doorindex >= DOORMAX) 417 1.4 christos return (0); 418 1.4 christos return (1); 419 1.4 christos } 420 1.4 christos 421 1.8 dholland static void 422 1.7 dholland dodoor(int x, int y, struct mkroom *aroom) 423 1.1 cgd { 424 1.4 christos if (doorindex >= DOORMAX) { 425 1.1 cgd impossible("DOORMAX exceeded?"); 426 1.1 cgd return; 427 1.1 cgd } 428 1.4 christos if (!okdoor(x, y) && nxcor) 429 1.1 cgd return; 430 1.4 christos dosdoor(x, y, aroom, rn2(8) ? DOOR : SDOOR); 431 1.1 cgd } 432 1.1 cgd 433 1.8 dholland static void 434 1.7 dholland dosdoor(int x, int y, struct mkroom *aroom, int type) 435 1.1 cgd { 436 1.4 christos struct mkroom *broom; 437 1.4 christos int tmp; 438 1.1 cgd 439 1.4 christos if (!IS_WALL(levl[x][y].typ)) /* avoid SDOORs with '+' as scrsym */ 440 1.1 cgd type = DOOR; 441 1.1 cgd levl[x][y].typ = type; 442 1.4 christos if (type == DOOR) 443 1.1 cgd levl[x][y].scrsym = '+'; 444 1.1 cgd aroom->doorct++; 445 1.4 christos broom = aroom + 1; 446 1.4 christos if (broom->hx < 0) 447 1.4 christos tmp = doorindex; 448 1.4 christos else 449 1.4 christos for (tmp = doorindex; tmp > broom->fdoor; tmp--) 450 1.4 christos doors[tmp] = doors[tmp - 1]; 451 1.1 cgd doorindex++; 452 1.1 cgd doors[tmp].x = x; 453 1.1 cgd doors[tmp].y = y; 454 1.4 christos for (; broom->hx >= 0; broom++) 455 1.4 christos broom->fdoor++; 456 1.1 cgd } 457 1.1 cgd 458 1.1 cgd /* Only called from makerooms() */ 459 1.8 dholland static int 460 1.7 dholland maker(schar lowx, schar ddx, schar lowy, schar ddy) 461 1.4 christos { 462 1.4 christos struct mkroom *croom; 463 1.4 christos int x, y, hix = lowx + ddx, hiy = lowy + ddy; 464 1.4 christos int xlim = XLIM + secret, ylim = YLIM + secret; 465 1.4 christos 466 1.4 christos if (nroom >= MAXNROFROOMS) 467 1.4 christos return (0); 468 1.4 christos if (lowx < XLIM) 469 1.4 christos lowx = XLIM; 470 1.4 christos if (lowy < YLIM) 471 1.4 christos lowy = YLIM; 472 1.4 christos if (hix > COLNO - XLIM - 1) 473 1.4 christos hix = COLNO - XLIM - 1; 474 1.4 christos if (hiy > ROWNO - YLIM - 1) 475 1.4 christos hiy = ROWNO - YLIM - 1; 476 1.1 cgd chk: 477 1.4 christos if (hix <= lowx || hiy <= lowy) 478 1.4 christos return (0); 479 1.1 cgd 480 1.1 cgd /* check area around room (and make room smaller if necessary) */ 481 1.4 christos for (x = lowx - xlim; x <= hix + xlim; x++) { 482 1.4 christos for (y = lowy - ylim; y <= hiy + ylim; y++) { 483 1.4 christos if (levl[x][y].typ) { 484 1.1 cgd #ifdef WIZARD 485 1.4 christos if (wizard && !secret) 486 1.4 christos pline("Strange area [%d,%d] in maker().", x, y); 487 1.4 christos #endif /* WIZARD */ 488 1.4 christos if (!rn2(3)) 489 1.4 christos return (0); 490 1.4 christos if (x < lowx) 491 1.4 christos lowx = x + xlim + 1; 492 1.1 cgd else 493 1.4 christos hix = x - xlim - 1; 494 1.4 christos if (y < lowy) 495 1.4 christos lowy = y + ylim + 1; 496 1.1 cgd else 497 1.4 christos hiy = y - ylim - 1; 498 1.1 cgd goto chk; 499 1.1 cgd } 500 1.1 cgd } 501 1.1 cgd } 502 1.1 cgd 503 1.1 cgd croom = &rooms[nroom]; 504 1.1 cgd 505 1.1 cgd /* on low levels the room is lit (usually) */ 506 1.1 cgd /* secret vaults are always lit */ 507 1.4 christos if ((rnd(dlevel) < 10 && rn2(77)) || (ddx == 1 && ddy == 1)) { 508 1.4 christos for (x = lowx - 1; x <= hix + 1; x++) 509 1.4 christos for (y = lowy - 1; y <= hiy + 1; y++) 510 1.1 cgd levl[x][y].lit = 1; 511 1.1 cgd croom->rlit = 1; 512 1.1 cgd } else 513 1.1 cgd croom->rlit = 0; 514 1.1 cgd croom->lx = lowx; 515 1.1 cgd croom->hx = hix; 516 1.1 cgd croom->ly = lowy; 517 1.1 cgd croom->hy = hiy; 518 1.1 cgd croom->rtype = croom->doorct = croom->fdoor = 0; 519 1.1 cgd 520 1.4 christos for (x = lowx - 1; x <= hix + 1; x++) 521 1.4 christos for (y = lowy - 1; y <= hiy + 1; y += (hiy - lowy + 2)) { 522 1.4 christos levl[x][y].scrsym = '-'; 523 1.4 christos levl[x][y].typ = HWALL; 524 1.4 christos } 525 1.4 christos for (x = lowx - 1; x <= hix + 1; x += (hix - lowx + 2)) 526 1.4 christos for (y = lowy; y <= hiy; y++) { 527 1.4 christos levl[x][y].scrsym = '|'; 528 1.4 christos levl[x][y].typ = VWALL; 529 1.4 christos } 530 1.4 christos for (x = lowx; x <= hix; x++) 531 1.4 christos for (y = lowy; y <= hiy; y++) { 532 1.4 christos levl[x][y].scrsym = '.'; 533 1.4 christos levl[x][y].typ = ROOM; 534 1.4 christos } 535 1.1 cgd 536 1.1 cgd smeq[nroom] = nroom; 537 1.1 cgd croom++; 538 1.1 cgd croom->hx = -1; 539 1.1 cgd nroom++; 540 1.4 christos return (1); 541 1.1 cgd } 542 1.1 cgd 543 1.8 dholland static void 544 1.7 dholland makecorridors(void) 545 1.4 christos { 546 1.4 christos int a, b; 547 1.1 cgd 548 1.1 cgd nxcor = 0; 549 1.4 christos for (a = 0; a < nroom - 1; a++) 550 1.4 christos join(a, a + 1); 551 1.4 christos for (a = 0; a < nroom - 2; a++) 552 1.4 christos if (smeq[a] != smeq[a + 2]) 553 1.4 christos join(a, a + 2); 554 1.4 christos for (a = 0; a < nroom; a++) 555 1.4 christos for (b = 0; b < nroom; b++) 556 1.4 christos if (smeq[a] != smeq[b]) 557 1.4 christos join(a, b); 558 1.4 christos if (nroom > 2) 559 1.4 christos for (nxcor = rn2(nroom) + 4; nxcor; nxcor--) { 560 1.4 christos a = rn2(nroom); 561 1.4 christos b = rn2(nroom - 2); 562 1.4 christos if (b >= a) 563 1.4 christos b += 2; 564 1.4 christos join(a, b); 565 1.4 christos } 566 1.4 christos } 567 1.4 christos 568 1.8 dholland static void 569 1.7 dholland join(int a, int b) 570 1.4 christos { 571 1.4 christos coord cc, tt; 572 1.4 christos int tx, ty, xx, yy; 573 1.4 christos struct rm *crm; 574 1.4 christos struct mkroom *croom, *troom; 575 1.4 christos int dx, dy, dix, diy, cct; 576 1.1 cgd 577 1.1 cgd croom = &rooms[a]; 578 1.1 cgd troom = &rooms[b]; 579 1.1 cgd 580 1.4 christos /* 581 1.4 christos * find positions cc and tt for doors in croom and troom and 582 1.4 christos * direction for a corridor between them 583 1.4 christos */ 584 1.1 cgd 585 1.4 christos if (troom->hx < 0 || croom->hx < 0 || doorindex >= DOORMAX) 586 1.4 christos return; 587 1.4 christos if (troom->lx > croom->hx) { 588 1.1 cgd dx = 1; 589 1.1 cgd dy = 0; 590 1.4 christos xx = croom->hx + 1; 591 1.4 christos tx = troom->lx - 1; 592 1.4 christos cc = finddpos(xx, croom->ly, xx, croom->hy); 593 1.4 christos tt = finddpos(tx, troom->ly, tx, troom->hy); 594 1.4 christos } else if (troom->hy < croom->ly) { 595 1.1 cgd dy = -1; 596 1.1 cgd dx = 0; 597 1.4 christos yy = croom->ly - 1; 598 1.4 christos cc = finddpos(croom->lx, yy, croom->hx, yy); 599 1.4 christos ty = troom->hy + 1; 600 1.4 christos tt = finddpos(troom->lx, ty, troom->hx, ty); 601 1.4 christos } else if (troom->hx < croom->lx) { 602 1.1 cgd dx = -1; 603 1.1 cgd dy = 0; 604 1.4 christos xx = croom->lx - 1; 605 1.4 christos tx = troom->hx + 1; 606 1.4 christos cc = finddpos(xx, croom->ly, xx, croom->hy); 607 1.4 christos tt = finddpos(tx, troom->ly, tx, troom->hy); 608 1.1 cgd } else { 609 1.1 cgd dy = 1; 610 1.1 cgd dx = 0; 611 1.4 christos yy = croom->hy + 1; 612 1.4 christos ty = troom->ly - 1; 613 1.4 christos cc = finddpos(croom->lx, yy, croom->hx, yy); 614 1.4 christos tt = finddpos(troom->lx, ty, troom->hx, ty); 615 1.1 cgd } 616 1.1 cgd xx = cc.x; 617 1.1 cgd yy = cc.y; 618 1.1 cgd tx = tt.x - dx; 619 1.1 cgd ty = tt.y - dy; 620 1.4 christos if (nxcor && levl[xx + dx][yy + dy].typ) 621 1.1 cgd return; 622 1.4 christos dodoor(xx, yy, croom); 623 1.1 cgd 624 1.1 cgd cct = 0; 625 1.4 christos while (xx != tx || yy != ty) { 626 1.4 christos xx += dx; 627 1.4 christos yy += dy; 628 1.1 cgd 629 1.4 christos /* loop: dig corridor at [xx,yy] and find new [xx,yy] */ 630 1.4 christos if (cct++ > 500 || (nxcor && !rn2(35))) 631 1.4 christos return; 632 1.1 cgd 633 1.4 christos if (xx == COLNO - 1 || xx == 0 || yy == 0 || yy == ROWNO - 1) 634 1.4 christos return; /* impossible */ 635 1.1 cgd 636 1.4 christos crm = &levl[xx][yy]; 637 1.4 christos if (!(crm->typ)) { 638 1.4 christos if (rn2(100)) { 639 1.4 christos crm->typ = CORR; 640 1.4 christos crm->scrsym = CORR_SYM; 641 1.4 christos if (nxcor && !rn2(50)) 642 1.4 christos (void) mkobj_at(ROCK_SYM, xx, yy); 643 1.4 christos } else { 644 1.4 christos crm->typ = SCORR; 645 1.4 christos crm->scrsym = ' '; 646 1.4 christos } 647 1.4 christos } else if (crm->typ != CORR && crm->typ != SCORR) { 648 1.4 christos /* strange ... */ 649 1.4 christos return; 650 1.1 cgd } 651 1.4 christos /* find next corridor position */ 652 1.4 christos dix = abs(xx - tx); 653 1.4 christos diy = abs(yy - ty); 654 1.4 christos 655 1.4 christos /* do we have to change direction ? */ 656 1.4 christos if (dy && dix > diy) { 657 1.4 christos int ddx = (xx > tx) ? -1 : 1; 658 1.4 christos 659 1.4 christos crm = &levl[xx + ddx][yy]; 660 1.4 christos if (!crm->typ || crm->typ == CORR || crm->typ == SCORR) { 661 1.4 christos dx = ddx; 662 1.4 christos dy = 0; 663 1.4 christos continue; 664 1.4 christos } 665 1.4 christos } else if (dx && diy > dix) { 666 1.4 christos int ddy = (yy > ty) ? -1 : 1; 667 1.1 cgd 668 1.4 christos crm = &levl[xx][yy + ddy]; 669 1.4 christos if (!crm->typ || crm->typ == CORR || crm->typ == SCORR) { 670 1.4 christos dy = ddy; 671 1.4 christos dx = 0; 672 1.4 christos continue; 673 1.4 christos } 674 1.4 christos } 675 1.4 christos /* continue straight on? */ 676 1.4 christos crm = &levl[xx + dx][yy + dy]; 677 1.4 christos if (!crm->typ || crm->typ == CORR || crm->typ == SCORR) 678 1.4 christos continue; 679 1.1 cgd 680 1.4 christos /* no, what must we do now?? */ 681 1.4 christos if (dx) { 682 1.4 christos dx = 0; 683 1.4 christos dy = (ty < yy) ? -1 : 1; 684 1.4 christos crm = &levl[xx + dx][yy + dy]; 685 1.4 christos if (!crm->typ || crm->typ == CORR || crm->typ == SCORR) 686 1.4 christos continue; 687 1.4 christos dy = -dy; 688 1.4 christos continue; 689 1.4 christos } else { 690 1.4 christos dy = 0; 691 1.4 christos dx = (tx < xx) ? -1 : 1; 692 1.4 christos crm = &levl[xx + dx][yy + dy]; 693 1.4 christos if (!crm->typ || crm->typ == CORR || crm->typ == SCORR) 694 1.4 christos continue; 695 1.4 christos dx = -dx; 696 1.4 christos continue; 697 1.4 christos } 698 1.1 cgd } 699 1.1 cgd 700 1.1 cgd /* we succeeded in digging the corridor */ 701 1.1 cgd dodoor(tt.x, tt.y, troom); 702 1.1 cgd 703 1.4 christos if (smeq[a] < smeq[b]) 704 1.1 cgd smeq[b] = smeq[a]; 705 1.1 cgd else 706 1.1 cgd smeq[a] = smeq[b]; 707 1.1 cgd } 708 1.1 cgd 709 1.8 dholland static void 710 1.7 dholland make_niches(void) 711 1.1 cgd { 712 1.4 christos int ct = rnd(nroom / 2 + 1); 713 1.4 christos while (ct--) 714 1.4 christos makeniche(FALSE); 715 1.1 cgd } 716 1.1 cgd 717 1.8 dholland static void 718 1.7 dholland makevtele(void) 719 1.1 cgd { 720 1.1 cgd makeniche(TRUE); 721 1.1 cgd } 722 1.1 cgd 723 1.8 dholland static void 724 1.7 dholland makeniche(boolean with_trap) 725 1.1 cgd { 726 1.4 christos struct mkroom *aroom; 727 1.4 christos struct rm *rm; 728 1.4 christos int vct = 8; 729 1.4 christos coord dd; 730 1.4 christos int dy, xx, yy; 731 1.4 christos struct trap *ttmp; 732 1.4 christos 733 1.4 christos if (doorindex < DOORMAX) 734 1.4 christos while (vct--) { 735 1.4 christos aroom = &rooms[rn2(nroom - 1)]; 736 1.4 christos if (aroom->rtype != 0) 737 1.4 christos continue; /* not an ordinary room */ 738 1.4 christos if (aroom->doorct == 1 && rn2(5)) 739 1.4 christos continue; 740 1.4 christos if (rn2(2)) { 741 1.4 christos dy = 1; 742 1.4 christos dd = finddpos(aroom->lx, aroom->hy + 1, aroom->hx, aroom->hy + 1); 743 1.4 christos } else { 744 1.4 christos dy = -1; 745 1.4 christos dd = finddpos(aroom->lx, aroom->ly - 1, aroom->hx, aroom->ly - 1); 746 1.4 christos } 747 1.4 christos xx = dd.x; 748 1.4 christos yy = dd.y; 749 1.4 christos if ((rm = &levl[xx][yy + dy])->typ) 750 1.4 christos continue; 751 1.4 christos if (with_trap || !rn2(4)) { 752 1.4 christos rm->typ = SCORR; 753 1.4 christos rm->scrsym = ' '; 754 1.4 christos if (with_trap) { 755 1.4 christos ttmp = maketrap(xx, yy + dy, TELEP_TRAP); 756 1.4 christos ttmp->once = 1; 757 1.4 christos make_engr_at(xx, yy - dy, "ad ae?ar um"); 758 1.4 christos } 759 1.4 christos dosdoor(xx, yy, aroom, SDOOR); 760 1.4 christos } else { 761 1.4 christos rm->typ = CORR; 762 1.4 christos rm->scrsym = CORR_SYM; 763 1.4 christos if (rn2(7)) 764 1.4 christos dosdoor(xx, yy, aroom, rn2(5) ? SDOOR : DOOR); 765 1.4 christos else { 766 1.4 christos mksobj_at(SCR_TELEPORTATION, xx, yy + dy); 767 1.4 christos if (!rn2(3)) 768 1.4 christos (void) mkobj_at(0, xx, yy + dy); 769 1.4 christos } 770 1.4 christos } 771 1.4 christos return; 772 1.1 cgd } 773 1.1 cgd } 774 1.1 cgd 775 1.1 cgd /* make a trap somewhere (in croom if mazeflag = 0) */ 776 1.4 christos void 777 1.7 dholland mktrap(int num, int mazeflag, struct mkroom *croom) 778 1.4 christos { 779 1.4 christos struct trap *ttmp; 780 1.4 christos int kind, nopierc, nomimic, fakedoor, fakegold, tryct = 0; 781 1.4 christos xchar mx, my; 782 1.1 cgd 783 1.4 christos if (!num || num >= TRAPNUM) { 784 1.1 cgd nopierc = (dlevel < 4) ? 1 : 0; 785 1.4 christos nomimic = (dlevel < 9 || goldseen) ? 1 : 0; 786 1.4 christos if (strchr(fut_geno, 'M')) 787 1.4 christos nomimic = 1; 788 1.1 cgd kind = rn2(TRAPNUM - nopierc - nomimic); 789 1.1 cgd /* note: PIERC = 7, MIMIC = 8, TRAPNUM = 9 */ 790 1.4 christos } else 791 1.4 christos kind = num; 792 1.1 cgd 793 1.4 christos if (kind == MIMIC) { 794 1.4 christos struct monst *mtmp; 795 1.1 cgd 796 1.1 cgd fakedoor = (!rn2(3) && !mazeflag); 797 1.1 cgd fakegold = (!fakedoor && !rn2(2)); 798 1.4 christos if (fakegold) 799 1.4 christos goldseen = TRUE; 800 1.1 cgd do { 801 1.4 christos if (++tryct > 200) 802 1.4 christos return; 803 1.4 christos if (fakedoor) { 804 1.1 cgd /* note: fakedoor maybe on actual door */ 805 1.4 christos if (rn2(2)) { 806 1.4 christos if (rn2(2)) 807 1.4 christos mx = croom->hx + 1; 808 1.4 christos else 809 1.4 christos mx = croom->lx - 1; 810 1.1 cgd my = somey(); 811 1.1 cgd } else { 812 1.4 christos if (rn2(2)) 813 1.4 christos my = croom->hy + 1; 814 1.4 christos else 815 1.4 christos my = croom->ly - 1; 816 1.1 cgd mx = somex(); 817 1.1 cgd } 818 1.4 christos } else if (mazeflag) { 819 1.4 christos coord mm; 820 1.1 cgd mm = mazexy(); 821 1.1 cgd mx = mm.x; 822 1.1 cgd my = mm.y; 823 1.1 cgd } else { 824 1.1 cgd mx = somex(); 825 1.1 cgd my = somey(); 826 1.1 cgd } 827 1.4 christos } while (m_at(mx, my) || levl[mx][my].typ == STAIRS); 828 1.4 christos if ((mtmp = makemon(PM_MIMIC, mx, my)) != NULL) { 829 1.4 christos mtmp->mimic = 1; 830 1.4 christos mtmp->mappearance = 831 1.4 christos fakegold ? '$' : fakedoor ? '+' : 832 1.4 christos (mazeflag && rn2(2)) ? AMULET_SYM : 833 1.4 christos "=/)%?![<>"[rn2(9)]; 834 1.1 cgd } 835 1.1 cgd return; 836 1.1 cgd } 837 1.1 cgd do { 838 1.4 christos if (++tryct > 200) 839 1.1 cgd return; 840 1.4 christos if (mazeflag) { 841 1.4 christos coord mm; 842 1.1 cgd mm = mazexy(); 843 1.1 cgd mx = mm.x; 844 1.1 cgd my = mm.y; 845 1.1 cgd } else { 846 1.1 cgd mx = somex(); 847 1.1 cgd my = somey(); 848 1.1 cgd } 849 1.4 christos } while (t_at(mx, my) || levl[mx][my].typ == STAIRS); 850 1.1 cgd ttmp = maketrap(mx, my, kind); 851 1.4 christos if (mazeflag && !rn2(10) && ttmp->ttyp < PIERC) 852 1.1 cgd ttmp->tseen = 1; 853 1.1 cgd } 854