| 1 | /* A Fibonacci heap datatype. | 
|---|
| 2 | Copyright 1998, 1999, 2000, 2001 Free Software Foundation, Inc. | 
|---|
| 3 | Contributed by Daniel Berlin (dan@cgsoftware.com). | 
|---|
| 4 |  | 
|---|
| 5 | This file is part of GNU CC. | 
|---|
| 6 |  | 
|---|
| 7 | GNU CC is free software; you can redistribute it and/or modify it | 
|---|
| 8 | under the terms of the GNU General Public License as published by | 
|---|
| 9 | the Free Software Foundation; either version 2, or (at your option) | 
|---|
| 10 | any later version. | 
|---|
| 11 |  | 
|---|
| 12 | GNU CC is distributed in the hope that it will be useful, but | 
|---|
| 13 | WITHOUT ANY WARRANTY; without even the implied warranty of | 
|---|
| 14 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU | 
|---|
| 15 | General Public License for more details. | 
|---|
| 16 |  | 
|---|
| 17 | You should have received a copy of the GNU General Public License | 
|---|
| 18 | along with GNU CC; see the file COPYING.  If not, write to | 
|---|
| 19 | the Free Software Foundation, 59 Temple Place - Suite 330, | 
|---|
| 20 | Boston, MA 02111-1307, USA.  */ | 
|---|
| 21 |  | 
|---|
| 22 | #ifdef HAVE_CONFIG_H | 
|---|
| 23 | #include "config.h" | 
|---|
| 24 | #endif | 
|---|
| 25 | #ifdef HAVE_LIMITS_H | 
|---|
| 26 | #include <limits.h> | 
|---|
| 27 | #endif | 
|---|
| 28 | #ifdef HAVE_STDLIB_H | 
|---|
| 29 | #include <stdlib.h> | 
|---|
| 30 | #endif | 
|---|
| 31 | #ifdef HAVE_STRING_H | 
|---|
| 32 | #include <string.h> | 
|---|
| 33 | #endif | 
|---|
| 34 | #include "libiberty.h" | 
|---|
| 35 | #include "fibheap.h" | 
|---|
| 36 |  | 
|---|
| 37 |  | 
|---|
| 38 | #define FIBHEAPKEY_MIN  LONG_MIN | 
|---|
| 39 |  | 
|---|
| 40 | static void fibheap_ins_root PARAMS ((fibheap_t, fibnode_t)); | 
|---|
| 41 | static void fibheap_rem_root PARAMS ((fibheap_t, fibnode_t)); | 
|---|
| 42 | static void fibheap_consolidate PARAMS ((fibheap_t)); | 
|---|
| 43 | static void fibheap_link PARAMS ((fibheap_t, fibnode_t, fibnode_t)); | 
|---|
| 44 | static void fibheap_cut PARAMS ((fibheap_t, fibnode_t, fibnode_t)); | 
|---|
| 45 | static void fibheap_cascading_cut PARAMS ((fibheap_t, fibnode_t)); | 
|---|
| 46 | static fibnode_t fibheap_extr_min_node PARAMS ((fibheap_t)); | 
|---|
| 47 | static int fibheap_compare PARAMS ((fibheap_t, fibnode_t, fibnode_t)); | 
|---|
| 48 | static int fibheap_comp_data PARAMS ((fibheap_t, fibheapkey_t, void *, | 
|---|
| 49 | fibnode_t)); | 
|---|
| 50 | static fibnode_t fibnode_new PARAMS ((void)); | 
|---|
| 51 | static void fibnode_insert_after PARAMS ((fibnode_t, fibnode_t)); | 
|---|
| 52 | #define fibnode_insert_before(a, b) fibnode_insert_after (a->left, b) | 
|---|
| 53 | static fibnode_t fibnode_remove PARAMS ((fibnode_t)); | 
|---|
| 54 |  | 
|---|
| 55 |  | 
|---|
| 56 |  | 
|---|
| 57 | /* Create a new fibonacci heap.  */ | 
|---|
| 58 | fibheap_t | 
|---|
| 59 | fibheap_new () | 
|---|
| 60 | { | 
|---|
| 61 | return (fibheap_t) xcalloc (1, sizeof (struct fibheap)); | 
|---|
| 62 | } | 
|---|
| 63 |  | 
|---|
| 64 | /* Create a new fibonacci heap node.  */ | 
|---|
| 65 | static fibnode_t | 
|---|
| 66 | fibnode_new () | 
|---|
| 67 | { | 
|---|
| 68 | fibnode_t node; | 
|---|
| 69 |  | 
|---|
| 70 | node = xcalloc (1, sizeof *node); | 
|---|
| 71 | node->left = node; | 
|---|
| 72 | node->right = node; | 
|---|
| 73 |  | 
|---|
| 74 | return node; | 
|---|
| 75 | } | 
|---|
| 76 |  | 
|---|
| 77 | static inline int | 
|---|
| 78 | fibheap_compare (heap, a, b) | 
|---|
| 79 | fibheap_t heap ATTRIBUTE_UNUSED; | 
|---|
| 80 | fibnode_t a; | 
|---|
| 81 | fibnode_t b; | 
|---|
| 82 | { | 
|---|
| 83 | if (a->key < b->key) | 
|---|
| 84 | return -1; | 
|---|
| 85 | if (a->key > b->key) | 
|---|
| 86 | return 1; | 
|---|
| 87 | return 0; | 
|---|
| 88 | } | 
|---|
| 89 |  | 
|---|
| 90 | static inline int | 
|---|
| 91 | fibheap_comp_data (heap, key, data, b) | 
|---|
| 92 | fibheap_t heap; | 
|---|
| 93 | fibheapkey_t key; | 
|---|
| 94 | void *data; | 
|---|
| 95 | fibnode_t b; | 
|---|
| 96 | { | 
|---|
| 97 | struct fibnode a; | 
|---|
| 98 |  | 
|---|
| 99 | a.key = key; | 
|---|
| 100 | a.data = data; | 
|---|
| 101 |  | 
|---|
| 102 | return fibheap_compare (heap, &a, b); | 
|---|
| 103 | } | 
|---|
| 104 |  | 
|---|
| 105 | /* Insert DATA, with priority KEY, into HEAP.  */ | 
|---|
| 106 | fibnode_t | 
|---|
| 107 | fibheap_insert (heap, key, data) | 
|---|
| 108 | fibheap_t heap; | 
|---|
| 109 | fibheapkey_t key; | 
|---|
| 110 | void *data; | 
|---|
| 111 | { | 
|---|
| 112 | fibnode_t node; | 
|---|
| 113 |  | 
|---|
| 114 | /* Create the new node.  */ | 
|---|
| 115 | node = fibnode_new (); | 
|---|
| 116 |  | 
|---|
| 117 | /* Set the node's data.  */ | 
|---|
| 118 | node->data = data; | 
|---|
| 119 | node->key = key; | 
|---|
| 120 |  | 
|---|
| 121 | /* Insert it into the root list.  */ | 
|---|
| 122 | fibheap_ins_root (heap, node); | 
|---|
| 123 |  | 
|---|
| 124 | /* If their was no minimum, or this key is less than the min, | 
|---|
| 125 | it's the new min.  */ | 
|---|
| 126 | if (heap->min == NULL || node->key < heap->min->key) | 
|---|
| 127 | heap->min = node; | 
|---|
| 128 |  | 
|---|
| 129 | heap->nodes++; | 
|---|
| 130 |  | 
|---|
| 131 | return node; | 
|---|
| 132 | } | 
|---|
| 133 |  | 
|---|
| 134 | /* Return the data of the minimum node (if we know it).  */ | 
|---|
| 135 | void * | 
|---|
| 136 | fibheap_min (heap) | 
|---|
| 137 | fibheap_t heap; | 
|---|
| 138 | { | 
|---|
| 139 | /* If there is no min, we can't easily return it.  */ | 
|---|
| 140 | if (heap->min == NULL) | 
|---|
| 141 | return NULL; | 
|---|
| 142 | return heap->min->data; | 
|---|
| 143 | } | 
|---|
| 144 |  | 
|---|
| 145 | /* Return the key of the minimum node (if we know it).  */ | 
|---|
| 146 | fibheapkey_t | 
|---|
| 147 | fibheap_min_key (heap) | 
|---|
| 148 | fibheap_t heap; | 
|---|
| 149 | { | 
|---|
| 150 | /* If there is no min, we can't easily return it.  */ | 
|---|
| 151 | if (heap->min == NULL) | 
|---|
| 152 | return 0; | 
|---|
| 153 | return heap->min->key; | 
|---|
| 154 | } | 
|---|
| 155 |  | 
|---|
| 156 | /* Union HEAPA and HEAPB into a new heap.  */ | 
|---|
| 157 | fibheap_t | 
|---|
| 158 | fibheap_union (heapa, heapb) | 
|---|
| 159 | fibheap_t heapa; | 
|---|
| 160 | fibheap_t heapb; | 
|---|
| 161 | { | 
|---|
| 162 | fibnode_t a_root, b_root, temp; | 
|---|
| 163 |  | 
|---|
| 164 | /* If one of the heaps is empty, the union is just the other heap.  */ | 
|---|
| 165 | if ((a_root = heapa->root) == NULL) | 
|---|
| 166 | { | 
|---|
| 167 | free (heapa); | 
|---|
| 168 | return heapb; | 
|---|
| 169 | } | 
|---|
| 170 | if ((b_root = heapb->root) == NULL) | 
|---|
| 171 | { | 
|---|
| 172 | free (heapb); | 
|---|
| 173 | return heapa; | 
|---|
| 174 | } | 
|---|
| 175 |  | 
|---|
| 176 | /* Merge them to the next nodes on the opposite chain.  */ | 
|---|
| 177 | a_root->left->right = b_root; | 
|---|
| 178 | b_root->left->right = a_root; | 
|---|
| 179 | temp = a_root->left; | 
|---|
| 180 | a_root->left = b_root->left; | 
|---|
| 181 | b_root->left = temp; | 
|---|
| 182 | heapa->nodes += heapb->nodes; | 
|---|
| 183 |  | 
|---|
| 184 | /* And set the new minimum, if it's changed.  */ | 
|---|
| 185 | if (fibheap_compare (heapa, heapb->min, heapa->min) < 0) | 
|---|
| 186 | heapa->min = heapb->min; | 
|---|
| 187 |  | 
|---|
| 188 | free (heapb); | 
|---|
| 189 | return heapa; | 
|---|
| 190 | } | 
|---|
| 191 |  | 
|---|
| 192 | /* Extract the data of the minimum node from HEAP.  */ | 
|---|
| 193 | void * | 
|---|
| 194 | fibheap_extract_min (heap) | 
|---|
| 195 | fibheap_t heap; | 
|---|
| 196 | { | 
|---|
| 197 | fibnode_t z; | 
|---|
| 198 | void *ret = NULL; | 
|---|
| 199 |  | 
|---|
| 200 | /* If we don't have a min set, it means we have no nodes.  */ | 
|---|
| 201 | if (heap->min != NULL) | 
|---|
| 202 | { | 
|---|
| 203 | /* Otherwise, extract the min node, free the node, and return the | 
|---|
| 204 | node's data.  */ | 
|---|
| 205 | z = fibheap_extr_min_node (heap); | 
|---|
| 206 | ret = z->data; | 
|---|
| 207 | free (z); | 
|---|
| 208 | } | 
|---|
| 209 |  | 
|---|
| 210 | return ret; | 
|---|
| 211 | } | 
|---|
| 212 |  | 
|---|
| 213 | /* Replace both the KEY and the DATA associated with NODE.  */ | 
|---|
| 214 | void * | 
|---|
| 215 | fibheap_replace_key_data (heap, node, key, data) | 
|---|
| 216 | fibheap_t heap; | 
|---|
| 217 | fibnode_t node; | 
|---|
| 218 | fibheapkey_t key; | 
|---|
| 219 | void *data; | 
|---|
| 220 | { | 
|---|
| 221 | void *odata; | 
|---|
| 222 | int okey; | 
|---|
| 223 | fibnode_t y; | 
|---|
| 224 |  | 
|---|
| 225 | /* If we wanted to, we could actually do a real increase by redeleting and | 
|---|
| 226 | inserting. However, this would require O (log n) time. So just bail out | 
|---|
| 227 | for now.  */ | 
|---|
| 228 | if (fibheap_comp_data (heap, key, data, node) > 0) | 
|---|
| 229 | return NULL; | 
|---|
| 230 |  | 
|---|
| 231 | odata = node->data; | 
|---|
| 232 | okey = node->key; | 
|---|
| 233 | node->data = data; | 
|---|
| 234 | node->key = key; | 
|---|
| 235 | y = node->parent; | 
|---|
| 236 |  | 
|---|
| 237 | if (okey == key) | 
|---|
| 238 | return odata; | 
|---|
| 239 |  | 
|---|
| 240 | /* These two compares are specifically <= 0 to make sure that in the case | 
|---|
| 241 | of equality, a node we replaced the data on, becomes the new min.  This | 
|---|
| 242 | is needed so that delete's call to extractmin gets the right node.  */ | 
|---|
| 243 | if (y != NULL && fibheap_compare (heap, node, y) <= 0) | 
|---|
| 244 | { | 
|---|
| 245 | fibheap_cut (heap, node, y); | 
|---|
| 246 | fibheap_cascading_cut (heap, y); | 
|---|
| 247 | } | 
|---|
| 248 |  | 
|---|
| 249 | if (fibheap_compare (heap, node, heap->min) <= 0) | 
|---|
| 250 | heap->min = node; | 
|---|
| 251 |  | 
|---|
| 252 | return odata; | 
|---|
| 253 | } | 
|---|
| 254 |  | 
|---|
| 255 | /* Replace the DATA associated with NODE.  */ | 
|---|
| 256 | void * | 
|---|
| 257 | fibheap_replace_data (heap, node, data) | 
|---|
| 258 | fibheap_t heap; | 
|---|
| 259 | fibnode_t node; | 
|---|
| 260 | void *data; | 
|---|
| 261 | { | 
|---|
| 262 | return fibheap_replace_key_data (heap, node, node->key, data); | 
|---|
| 263 | } | 
|---|
| 264 |  | 
|---|
| 265 | /* Replace the KEY associated with NODE.  */ | 
|---|
| 266 | fibheapkey_t | 
|---|
| 267 | fibheap_replace_key (heap, node, key) | 
|---|
| 268 | fibheap_t heap; | 
|---|
| 269 | fibnode_t node; | 
|---|
| 270 | fibheapkey_t key; | 
|---|
| 271 | { | 
|---|
| 272 | int okey = node->key; | 
|---|
| 273 | fibheap_replace_key_data (heap, node, key, node->data); | 
|---|
| 274 | return okey; | 
|---|
| 275 | } | 
|---|
| 276 |  | 
|---|
| 277 | /* Delete NODE from HEAP.  */ | 
|---|
| 278 | void * | 
|---|
| 279 | fibheap_delete_node (heap, node) | 
|---|
| 280 | fibheap_t heap; | 
|---|
| 281 | fibnode_t node; | 
|---|
| 282 | { | 
|---|
| 283 | void *ret = node->data; | 
|---|
| 284 |  | 
|---|
| 285 | /* To perform delete, we just make it the min key, and extract.  */ | 
|---|
| 286 | fibheap_replace_key (heap, node, FIBHEAPKEY_MIN); | 
|---|
| 287 | fibheap_extract_min (heap); | 
|---|
| 288 |  | 
|---|
| 289 | return ret; | 
|---|
| 290 | } | 
|---|
| 291 |  | 
|---|
| 292 | /* Delete HEAP.  */ | 
|---|
| 293 | void | 
|---|
| 294 | fibheap_delete (heap) | 
|---|
| 295 | fibheap_t heap; | 
|---|
| 296 | { | 
|---|
| 297 | while (heap->min != NULL) | 
|---|
| 298 | free (fibheap_extr_min_node (heap)); | 
|---|
| 299 |  | 
|---|
| 300 | free (heap); | 
|---|
| 301 | } | 
|---|
| 302 |  | 
|---|
| 303 | /* Determine if HEAP is empty.  */ | 
|---|
| 304 | int | 
|---|
| 305 | fibheap_empty (heap) | 
|---|
| 306 | fibheap_t heap; | 
|---|
| 307 | { | 
|---|
| 308 | return heap->nodes == 0; | 
|---|
| 309 | } | 
|---|
| 310 |  | 
|---|
| 311 | /* Extract the minimum node of the heap.  */ | 
|---|
| 312 | static fibnode_t | 
|---|
| 313 | fibheap_extr_min_node (heap) | 
|---|
| 314 | fibheap_t heap; | 
|---|
| 315 | { | 
|---|
| 316 | fibnode_t ret = heap->min; | 
|---|
| 317 | fibnode_t x, y, orig; | 
|---|
| 318 |  | 
|---|
| 319 | /* Attach the child list of the minimum node to the root list of the heap. | 
|---|
| 320 | If there is no child list, we don't do squat.  */ | 
|---|
| 321 | for (x = ret->child, orig = NULL; x != orig && x != NULL; x = y) | 
|---|
| 322 | { | 
|---|
| 323 | if (orig == NULL) | 
|---|
| 324 | orig = x; | 
|---|
| 325 | y = x->right; | 
|---|
| 326 | x->parent = NULL; | 
|---|
| 327 | fibheap_ins_root (heap, x); | 
|---|
| 328 | } | 
|---|
| 329 |  | 
|---|
| 330 | /* Remove the old root.  */ | 
|---|
| 331 | fibheap_rem_root (heap, ret); | 
|---|
| 332 | heap->nodes--; | 
|---|
| 333 |  | 
|---|
| 334 | /* If we are left with no nodes, then the min is NULL.  */ | 
|---|
| 335 | if (heap->nodes == 0) | 
|---|
| 336 | heap->min = NULL; | 
|---|
| 337 | else | 
|---|
| 338 | { | 
|---|
| 339 | /* Otherwise, consolidate to find new minimum, as well as do the reorg | 
|---|
| 340 | work that needs to be done.  */ | 
|---|
| 341 | heap->min = ret->right; | 
|---|
| 342 | fibheap_consolidate (heap); | 
|---|
| 343 | } | 
|---|
| 344 |  | 
|---|
| 345 | return ret; | 
|---|
| 346 | } | 
|---|
| 347 |  | 
|---|
| 348 | /* Insert NODE into the root list of HEAP.  */ | 
|---|
| 349 | static void | 
|---|
| 350 | fibheap_ins_root (heap, node) | 
|---|
| 351 | fibheap_t heap; | 
|---|
| 352 | fibnode_t node; | 
|---|
| 353 | { | 
|---|
| 354 | /* If the heap is currently empty, the new node becomes the singleton | 
|---|
| 355 | circular root list.  */ | 
|---|
| 356 | if (heap->root == NULL) | 
|---|
| 357 | { | 
|---|
| 358 | heap->root = node; | 
|---|
| 359 | node->left = node; | 
|---|
| 360 | node->right = node; | 
|---|
| 361 | return; | 
|---|
| 362 | } | 
|---|
| 363 |  | 
|---|
| 364 | /* Otherwise, insert it in the circular root list between the root | 
|---|
| 365 | and it's right node.  */ | 
|---|
| 366 | fibnode_insert_after (heap->root, node); | 
|---|
| 367 | } | 
|---|
| 368 |  | 
|---|
| 369 | /* Remove NODE from the rootlist of HEAP.  */ | 
|---|
| 370 | static void | 
|---|
| 371 | fibheap_rem_root (heap, node) | 
|---|
| 372 | fibheap_t heap; | 
|---|
| 373 | fibnode_t node; | 
|---|
| 374 | { | 
|---|
| 375 | if (node->left == node) | 
|---|
| 376 | heap->root = NULL; | 
|---|
| 377 | else | 
|---|
| 378 | heap->root = fibnode_remove (node); | 
|---|
| 379 | } | 
|---|
| 380 |  | 
|---|
| 381 | /* Consolidate the heap.  */ | 
|---|
| 382 | static void | 
|---|
| 383 | fibheap_consolidate (heap) | 
|---|
| 384 | fibheap_t heap; | 
|---|
| 385 | { | 
|---|
| 386 | fibnode_t a[1 + 8 * sizeof (long)]; | 
|---|
| 387 | fibnode_t w; | 
|---|
| 388 | fibnode_t y; | 
|---|
| 389 | fibnode_t x; | 
|---|
| 390 | int i; | 
|---|
| 391 | int d; | 
|---|
| 392 | int D; | 
|---|
| 393 |  | 
|---|
| 394 | D = 1 + 8 * sizeof (long); | 
|---|
| 395 |  | 
|---|
| 396 | memset (a, 0, sizeof (fibnode_t) * D); | 
|---|
| 397 |  | 
|---|
| 398 | while ((w = heap->root) != NULL) | 
|---|
| 399 | { | 
|---|
| 400 | x = w; | 
|---|
| 401 | fibheap_rem_root (heap, w); | 
|---|
| 402 | d = x->degree; | 
|---|
| 403 | while (a[d] != NULL) | 
|---|
| 404 | { | 
|---|
| 405 | y = a[d]; | 
|---|
| 406 | if (fibheap_compare (heap, x, y) > 0) | 
|---|
| 407 | { | 
|---|
| 408 | fibnode_t temp; | 
|---|
| 409 | temp = x; | 
|---|
| 410 | x = y; | 
|---|
| 411 | y = temp; | 
|---|
| 412 | } | 
|---|
| 413 | fibheap_link (heap, y, x); | 
|---|
| 414 | a[d] = NULL; | 
|---|
| 415 | d++; | 
|---|
| 416 | } | 
|---|
| 417 | a[d] = x; | 
|---|
| 418 | } | 
|---|
| 419 | heap->min = NULL; | 
|---|
| 420 | for (i = 0; i < D; i++) | 
|---|
| 421 | if (a[i] != NULL) | 
|---|
| 422 | { | 
|---|
| 423 | fibheap_ins_root (heap, a[i]); | 
|---|
| 424 | if (heap->min == NULL || fibheap_compare (heap, a[i], heap->min) < 0) | 
|---|
| 425 | heap->min = a[i]; | 
|---|
| 426 | } | 
|---|
| 427 | } | 
|---|
| 428 |  | 
|---|
| 429 | /* Make NODE a child of PARENT.  */ | 
|---|
| 430 | static void | 
|---|
| 431 | fibheap_link (heap, node, parent) | 
|---|
| 432 | fibheap_t heap ATTRIBUTE_UNUSED; | 
|---|
| 433 | fibnode_t node; | 
|---|
| 434 | fibnode_t parent; | 
|---|
| 435 | { | 
|---|
| 436 | if (parent->child == NULL) | 
|---|
| 437 | parent->child = node; | 
|---|
| 438 | else | 
|---|
| 439 | fibnode_insert_before (parent->child, node); | 
|---|
| 440 | node->parent = parent; | 
|---|
| 441 | parent->degree++; | 
|---|
| 442 | node->mark = 0; | 
|---|
| 443 | } | 
|---|
| 444 |  | 
|---|
| 445 | /* Remove NODE from PARENT's child list.  */ | 
|---|
| 446 | static void | 
|---|
| 447 | fibheap_cut (heap, node, parent) | 
|---|
| 448 | fibheap_t heap; | 
|---|
| 449 | fibnode_t node; | 
|---|
| 450 | fibnode_t parent; | 
|---|
| 451 | { | 
|---|
| 452 | fibnode_remove (node); | 
|---|
| 453 | parent->degree--; | 
|---|
| 454 | fibheap_ins_root (heap, node); | 
|---|
| 455 | node->parent = NULL; | 
|---|
| 456 | node->mark = 0; | 
|---|
| 457 | } | 
|---|
| 458 |  | 
|---|
| 459 | static void | 
|---|
| 460 | fibheap_cascading_cut (heap, y) | 
|---|
| 461 | fibheap_t heap; | 
|---|
| 462 | fibnode_t y; | 
|---|
| 463 | { | 
|---|
| 464 | fibnode_t z; | 
|---|
| 465 |  | 
|---|
| 466 | while ((z = y->parent) != NULL) | 
|---|
| 467 | { | 
|---|
| 468 | if (y->mark == 0) | 
|---|
| 469 | { | 
|---|
| 470 | y->mark = 1; | 
|---|
| 471 | return; | 
|---|
| 472 | } | 
|---|
| 473 | else | 
|---|
| 474 | { | 
|---|
| 475 | fibheap_cut (heap, y, z); | 
|---|
| 476 | y = z; | 
|---|
| 477 | } | 
|---|
| 478 | } | 
|---|
| 479 | } | 
|---|
| 480 |  | 
|---|
| 481 | static void | 
|---|
| 482 | fibnode_insert_after (a, b) | 
|---|
| 483 | fibnode_t a; | 
|---|
| 484 | fibnode_t b; | 
|---|
| 485 | { | 
|---|
| 486 | if (a == a->right) | 
|---|
| 487 | { | 
|---|
| 488 | a->right = b; | 
|---|
| 489 | a->left = b; | 
|---|
| 490 | b->right = a; | 
|---|
| 491 | b->left = a; | 
|---|
| 492 | } | 
|---|
| 493 | else | 
|---|
| 494 | { | 
|---|
| 495 | b->right = a->right; | 
|---|
| 496 | a->right->left = b; | 
|---|
| 497 | a->right = b; | 
|---|
| 498 | b->left = a; | 
|---|
| 499 | } | 
|---|
| 500 | } | 
|---|
| 501 |  | 
|---|
| 502 | static fibnode_t | 
|---|
| 503 | fibnode_remove (node) | 
|---|
| 504 | fibnode_t node; | 
|---|
| 505 | { | 
|---|
| 506 | fibnode_t ret; | 
|---|
| 507 |  | 
|---|
| 508 | if (node == node->left) | 
|---|
| 509 | ret = NULL; | 
|---|
| 510 | else | 
|---|
| 511 | ret = node->left; | 
|---|
| 512 |  | 
|---|
| 513 | if (node->parent != NULL && node->parent->child == node) | 
|---|
| 514 | node->parent->child = ret; | 
|---|
| 515 |  | 
|---|
| 516 | node->right->left = node->left; | 
|---|
| 517 | node->left->right = node->right; | 
|---|
| 518 |  | 
|---|
| 519 | node->parent = NULL; | 
|---|
| 520 | node->left = node; | 
|---|
| 521 | node->right = node; | 
|---|
| 522 |  | 
|---|
| 523 | return ret; | 
|---|
| 524 | } | 
|---|