lst.c revision 1.60 1 1.60 rillig /* $NetBSD: lst.c,v 1.60 2020/08/31 05:56:02 rillig Exp $ */
2 1.1 rillig
3 1.1 rillig /*
4 1.1 rillig * Copyright (c) 1988, 1989, 1990, 1993
5 1.1 rillig * The Regents of the University of California. All rights reserved.
6 1.1 rillig *
7 1.1 rillig * This code is derived from software contributed to Berkeley by
8 1.1 rillig * Adam de Boor.
9 1.1 rillig *
10 1.1 rillig * Redistribution and use in source and binary forms, with or without
11 1.1 rillig * modification, are permitted provided that the following conditions
12 1.1 rillig * are met:
13 1.1 rillig * 1. Redistributions of source code must retain the above copyright
14 1.1 rillig * notice, this list of conditions and the following disclaimer.
15 1.1 rillig * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 rillig * notice, this list of conditions and the following disclaimer in the
17 1.1 rillig * documentation and/or other materials provided with the distribution.
18 1.1 rillig * 3. Neither the name of the University nor the names of its contributors
19 1.1 rillig * may be used to endorse or promote products derived from this software
20 1.1 rillig * without specific prior written permission.
21 1.1 rillig *
22 1.1 rillig * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
23 1.1 rillig * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24 1.1 rillig * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25 1.1 rillig * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
26 1.1 rillig * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
27 1.1 rillig * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
28 1.1 rillig * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29 1.1 rillig * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30 1.1 rillig * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
31 1.1 rillig * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32 1.1 rillig * SUCH DAMAGE.
33 1.1 rillig */
34 1.1 rillig
35 1.30 skrll #include <stdint.h>
36 1.8 rillig
37 1.19 rillig #include "make.h"
38 1.1 rillig
39 1.1 rillig #ifndef MAKE_NATIVE
40 1.60 rillig static char rcsid[] = "$NetBSD: lst.c,v 1.60 2020/08/31 05:56:02 rillig Exp $";
41 1.1 rillig #else
42 1.1 rillig #include <sys/cdefs.h>
43 1.1 rillig #ifndef lint
44 1.60 rillig __RCSID("$NetBSD: lst.c,v 1.60 2020/08/31 05:56:02 rillig Exp $");
45 1.1 rillig #endif /* not lint */
46 1.1 rillig #endif
47 1.1 rillig
48 1.13 rillig struct ListNode {
49 1.15 rillig struct ListNode *prev; /* previous element in list */
50 1.15 rillig struct ListNode *next; /* next in list */
51 1.7 rillig uint8_t useCount; /* Count of functions using the node.
52 1.4 rillig * node may not be deleted until count
53 1.4 rillig * goes to 0 */
54 1.7 rillig Boolean deleted; /* List node should be removed when done */
55 1.39 rillig union {
56 1.39 rillig void *datum; /* datum associated with this element */
57 1.39 rillig const GNode *gnode; /* alias, just for debugging */
58 1.39 rillig const char *str; /* alias, just for debugging */
59 1.39 rillig };
60 1.13 rillig };
61 1.1 rillig
62 1.1 rillig typedef enum {
63 1.1 rillig Head, Middle, Tail, Unknown
64 1.1 rillig } Where;
65 1.1 rillig
66 1.13 rillig struct List {
67 1.15 rillig LstNode first; /* first node in list */
68 1.15 rillig LstNode last; /* last node in list */
69 1.20 rillig
70 1.20 rillig /* fields for sequential access */
71 1.21 rillig Boolean isOpen; /* true if list has been Lst_Open'ed */
72 1.15 rillig Where lastAccess; /* Where in the list the last access was */
73 1.15 rillig LstNode curr; /* current node, if open. NULL if
74 1.4 rillig * *just* opened */
75 1.20 rillig LstNode prev; /* Previous node, if open. Used by Lst_Remove */
76 1.13 rillig };
77 1.1 rillig
78 1.22 rillig /* Allocate and initialize a list node.
79 1.22 rillig *
80 1.22 rillig * The fields 'prev' and 'next' must be initialized by the caller.
81 1.22 rillig */
82 1.12 rillig static LstNode
83 1.12 rillig LstNodeNew(void *datum)
84 1.12 rillig {
85 1.16 rillig LstNode node = bmake_malloc(sizeof *node);
86 1.16 rillig node->useCount = 0;
87 1.16 rillig node->deleted = FALSE;
88 1.16 rillig node->datum = datum;
89 1.16 rillig return node;
90 1.12 rillig }
91 1.12 rillig
92 1.2 rillig static Boolean
93 1.16 rillig LstIsEmpty(Lst list)
94 1.2 rillig {
95 1.16 rillig return list->first == NULL;
96 1.2 rillig }
97 1.1 rillig
98 1.5 rillig /* Create and initialize a new, empty list. */
99 1.1 rillig Lst
100 1.5 rillig Lst_Init(void)
101 1.1 rillig {
102 1.16 rillig Lst list = bmake_malloc(sizeof *list);
103 1.1 rillig
104 1.16 rillig list->first = NULL;
105 1.16 rillig list->last = NULL;
106 1.16 rillig list->isOpen = FALSE;
107 1.16 rillig list->lastAccess = Unknown;
108 1.1 rillig
109 1.16 rillig return list;
110 1.1 rillig }
111 1.1 rillig
112 1.14 rillig /* Duplicate an entire list, usually by copying the datum pointers.
113 1.14 rillig * If copyProc is given, that function is used to create the new datum from the
114 1.35 rillig * old datum, usually by creating a copy of it. */
115 1.1 rillig Lst
116 1.50 rillig Lst_Copy(Lst list, LstCopyProc copyProc)
117 1.1 rillig {
118 1.16 rillig Lst newList;
119 1.16 rillig LstNode node;
120 1.1 rillig
121 1.52 rillig assert(list != NULL);
122 1.1 rillig
123 1.16 rillig newList = Lst_Init();
124 1.1 rillig
125 1.35 rillig for (node = list->first; node != NULL; node = node->next) {
126 1.35 rillig void *datum = copyProc != NULL ? copyProc(node->datum) : node->datum;
127 1.50 rillig Lst_Append(newList, datum);
128 1.1 rillig }
129 1.1 rillig
130 1.16 rillig return newList;
131 1.1 rillig }
132 1.1 rillig
133 1.42 rillig /* Free a list and all its nodes. The list data itself are not freed though. */
134 1.42 rillig void
135 1.50 rillig Lst_Free(Lst list)
136 1.42 rillig {
137 1.42 rillig LstNode node;
138 1.42 rillig LstNode next;
139 1.42 rillig
140 1.52 rillig assert(list != NULL);
141 1.42 rillig
142 1.42 rillig for (node = list->first; node != NULL; node = next) {
143 1.42 rillig next = node->next;
144 1.42 rillig free(node);
145 1.42 rillig }
146 1.42 rillig
147 1.42 rillig free(list);
148 1.42 rillig }
149 1.42 rillig
150 1.59 rillig /* Destroy a list and free all its resources. The freeProc is called with the
151 1.59 rillig * datum from each node in turn before the node is freed. */
152 1.1 rillig void
153 1.50 rillig Lst_Destroy(Lst list, LstFreeProc freeProc)
154 1.1 rillig {
155 1.16 rillig LstNode node;
156 1.42 rillig LstNode next;
157 1.1 rillig
158 1.52 rillig assert(list != NULL);
159 1.42 rillig assert(freeProc != NULL);
160 1.1 rillig
161 1.42 rillig for (node = list->first; node != NULL; node = next) {
162 1.42 rillig next = node->next;
163 1.42 rillig freeProc(node->datum);
164 1.42 rillig free(node);
165 1.1 rillig }
166 1.1 rillig
167 1.1 rillig free(list);
168 1.1 rillig }
169 1.1 rillig
170 1.1 rillig /*
171 1.1 rillig * Functions to modify a list
172 1.1 rillig */
173 1.1 rillig
174 1.14 rillig /* Insert a new node with the given piece of data before the given node in the
175 1.14 rillig * given list. */
176 1.26 rillig void
177 1.50 rillig Lst_InsertBefore(Lst list, LstNode node, void *datum)
178 1.26 rillig {
179 1.26 rillig LstNode newNode;
180 1.26 rillig
181 1.52 rillig assert(list != NULL);
182 1.26 rillig assert(!LstIsEmpty(list));
183 1.52 rillig assert(node != NULL);
184 1.26 rillig assert(datum != NULL);
185 1.26 rillig
186 1.26 rillig newNode = LstNodeNew(datum);
187 1.26 rillig newNode->prev = node->prev;
188 1.26 rillig newNode->next = node;
189 1.26 rillig
190 1.26 rillig if (node->prev != NULL) {
191 1.26 rillig node->prev->next = newNode;
192 1.26 rillig }
193 1.26 rillig node->prev = newNode;
194 1.26 rillig
195 1.26 rillig if (node == list->first) {
196 1.26 rillig list->first = newNode;
197 1.26 rillig }
198 1.26 rillig }
199 1.26 rillig
200 1.22 rillig /* Add a piece of data at the start of the given list. */
201 1.22 rillig void
202 1.50 rillig Lst_Prepend(Lst list, void *datum)
203 1.22 rillig {
204 1.22 rillig LstNode node;
205 1.22 rillig
206 1.52 rillig assert(list != NULL);
207 1.22 rillig assert(datum != NULL);
208 1.22 rillig
209 1.22 rillig node = LstNodeNew(datum);
210 1.22 rillig node->prev = NULL;
211 1.22 rillig node->next = list->first;
212 1.22 rillig
213 1.22 rillig if (list->first == NULL) {
214 1.22 rillig list->first = node;
215 1.22 rillig list->last = node;
216 1.22 rillig } else {
217 1.22 rillig list->first->prev = node;
218 1.22 rillig list->first = node;
219 1.22 rillig }
220 1.22 rillig }
221 1.22 rillig
222 1.21 rillig /* Add a piece of data at the end of the given list. */
223 1.21 rillig void
224 1.50 rillig Lst_Append(Lst list, void *datum)
225 1.21 rillig {
226 1.21 rillig LstNode node;
227 1.21 rillig
228 1.52 rillig assert(list != NULL);
229 1.21 rillig assert(datum != NULL);
230 1.21 rillig
231 1.21 rillig node = LstNodeNew(datum);
232 1.21 rillig node->prev = list->last;
233 1.21 rillig node->next = NULL;
234 1.21 rillig
235 1.21 rillig if (list->last == NULL) {
236 1.21 rillig list->first = node;
237 1.21 rillig list->last = node;
238 1.21 rillig } else {
239 1.21 rillig list->last->next = node;
240 1.21 rillig list->last = node;
241 1.21 rillig }
242 1.21 rillig }
243 1.21 rillig
244 1.8 rillig /* Remove the given node from the given list.
245 1.8 rillig * The datum stored in the node must be freed by the caller, if necessary. */
246 1.8 rillig void
247 1.50 rillig Lst_Remove(Lst list, LstNode node)
248 1.1 rillig {
249 1.52 rillig assert(list != NULL);
250 1.52 rillig assert(node != NULL);
251 1.1 rillig
252 1.1 rillig /*
253 1.1 rillig * unlink it from the list
254 1.1 rillig */
255 1.16 rillig if (node->next != NULL) {
256 1.16 rillig node->next->prev = node->prev;
257 1.1 rillig }
258 1.16 rillig if (node->prev != NULL) {
259 1.16 rillig node->prev->next = node->next;
260 1.1 rillig }
261 1.1 rillig
262 1.1 rillig /*
263 1.15 rillig * if either the first or last of the list point to this node,
264 1.1 rillig * adjust them accordingly
265 1.1 rillig */
266 1.16 rillig if (list->first == node) {
267 1.16 rillig list->first = node->next;
268 1.1 rillig }
269 1.16 rillig if (list->last == node) {
270 1.16 rillig list->last = node->prev;
271 1.1 rillig }
272 1.1 rillig
273 1.1 rillig /*
274 1.1 rillig * Sequential access stuff. If the node we're removing is the current
275 1.1 rillig * node in the list, reset the current node to the previous one. If the
276 1.15 rillig * previous one was non-existent (prev == NULL), we set the
277 1.1 rillig * end to be Unknown, since it is.
278 1.1 rillig */
279 1.16 rillig if (list->isOpen && list->curr == node) {
280 1.15 rillig list->curr = list->prev;
281 1.15 rillig if (list->curr == NULL) {
282 1.15 rillig list->lastAccess = Unknown;
283 1.1 rillig }
284 1.1 rillig }
285 1.1 rillig
286 1.1 rillig /*
287 1.1 rillig * note that the datum is unmolested. The caller must free it as
288 1.1 rillig * necessary and as expected.
289 1.1 rillig */
290 1.16 rillig if (node->useCount == 0) {
291 1.16 rillig free(node);
292 1.1 rillig } else {
293 1.16 rillig node->deleted = TRUE;
294 1.1 rillig }
295 1.1 rillig }
296 1.1 rillig
297 1.8 rillig /* Replace the datum in the given node with the new datum. */
298 1.8 rillig void
299 1.50 rillig LstNode_Set(LstNode node, void *datum)
300 1.1 rillig {
301 1.52 rillig assert(node != NULL);
302 1.37 rillig assert(datum != NULL);
303 1.37 rillig
304 1.16 rillig node->datum = datum;
305 1.1 rillig }
306 1.1 rillig
307 1.37 rillig /* Replace the datum in the given node to NULL. */
308 1.37 rillig void
309 1.50 rillig LstNode_SetNull(LstNode node)
310 1.37 rillig {
311 1.52 rillig assert(node != NULL);
312 1.37 rillig
313 1.37 rillig node->datum = NULL;
314 1.37 rillig }
315 1.37 rillig
316 1.1 rillig
317 1.1 rillig /*
318 1.1 rillig * Node-specific functions
319 1.1 rillig */
320 1.1 rillig
321 1.42 rillig /* Return the first node from the given list, or NULL if the list is empty. */
322 1.42 rillig LstNode
323 1.50 rillig Lst_First(Lst list)
324 1.42 rillig {
325 1.52 rillig assert(list != NULL);
326 1.42 rillig
327 1.42 rillig return list->first;
328 1.42 rillig }
329 1.42 rillig
330 1.42 rillig /* Return the last node from the given list, or NULL if the list is empty. */
331 1.42 rillig LstNode
332 1.50 rillig Lst_Last(Lst list)
333 1.42 rillig {
334 1.52 rillig assert(list != NULL);
335 1.42 rillig
336 1.42 rillig return list->last;
337 1.42 rillig }
338 1.42 rillig
339 1.6 rillig /* Return the successor to the given node on its list, or NULL. */
340 1.1 rillig LstNode
341 1.56 rillig LstNode_Next(LstNode node)
342 1.42 rillig {
343 1.52 rillig assert(node != NULL);
344 1.42 rillig
345 1.42 rillig return node->next;
346 1.42 rillig }
347 1.42 rillig
348 1.6 rillig /* Return the predecessor to the given node on its list, or NULL. */
349 1.1 rillig LstNode
350 1.56 rillig LstNode_Prev(LstNode node)
351 1.1 rillig {
352 1.52 rillig assert(node != NULL);
353 1.33 rillig return node->prev;
354 1.1 rillig }
355 1.1 rillig
356 1.28 rillig /* Return the datum stored in the given node. */
357 1.1 rillig void *
358 1.58 rillig LstNode_Datum(LstNode node)
359 1.1 rillig {
360 1.52 rillig assert(node != NULL);
361 1.28 rillig return node->datum;
362 1.1 rillig }
363 1.1 rillig
364 1.1 rillig
365 1.1 rillig /*
366 1.1 rillig * Functions for entire lists
367 1.1 rillig */
368 1.1 rillig
369 1.42 rillig /* Return TRUE if the given list is empty. */
370 1.42 rillig Boolean
371 1.50 rillig Lst_IsEmpty(Lst list)
372 1.42 rillig {
373 1.52 rillig assert(list != NULL);
374 1.42 rillig
375 1.42 rillig return LstIsEmpty(list);
376 1.42 rillig }
377 1.42 rillig
378 1.53 rillig /* Return the first node from the list for which the match function returns
379 1.53 rillig * TRUE, or NULL if none of the nodes matched. */
380 1.53 rillig LstNode
381 1.55 rillig Lst_Find(Lst list, LstFindProc match, const void *matchArgs)
382 1.53 rillig {
383 1.55 rillig return Lst_FindFrom(list, Lst_First(list), match, matchArgs);
384 1.53 rillig }
385 1.53 rillig
386 1.53 rillig /* Return the first node from the list, starting at the given node, for which
387 1.53 rillig * the match function returns TRUE, or NULL if none of the nodes matches.
388 1.53 rillig *
389 1.53 rillig * The start node may be NULL, in which case nothing is found. This allows
390 1.56 rillig * for passing Lst_First or LstNode_Next as the start node. */
391 1.53 rillig LstNode
392 1.55 rillig Lst_FindFrom(Lst list, LstNode node, LstFindProc match, const void *matchArgs)
393 1.53 rillig {
394 1.53 rillig LstNode tln;
395 1.53 rillig
396 1.53 rillig assert(list != NULL);
397 1.53 rillig assert(match != NULL);
398 1.53 rillig
399 1.53 rillig for (tln = node; tln != NULL; tln = tln->next) {
400 1.53 rillig if (match(tln->datum, matchArgs))
401 1.53 rillig return tln;
402 1.53 rillig }
403 1.53 rillig
404 1.53 rillig return NULL;
405 1.53 rillig }
406 1.53 rillig
407 1.14 rillig /* Return the first node that contains the given datum, or NULL. */
408 1.1 rillig LstNode
409 1.57 rillig Lst_FindDatum(Lst list, const void *datum)
410 1.1 rillig {
411 1.16 rillig LstNode node;
412 1.1 rillig
413 1.52 rillig assert(list != NULL);
414 1.29 rillig assert(datum != NULL);
415 1.1 rillig
416 1.29 rillig for (node = list->first; node != NULL; node = node->next) {
417 1.16 rillig if (node->datum == datum) {
418 1.16 rillig return node;
419 1.1 rillig }
420 1.29 rillig }
421 1.1 rillig
422 1.1 rillig return NULL;
423 1.1 rillig }
424 1.1 rillig
425 1.14 rillig /* Apply the given function to each element of the given list. The function
426 1.14 rillig * should return 0 if traversal should continue and non-zero if it should
427 1.14 rillig * abort. */
428 1.1 rillig int
429 1.50 rillig Lst_ForEach(Lst list, LstActionProc proc, void *procData)
430 1.42 rillig {
431 1.42 rillig if (LstIsEmpty(list))
432 1.42 rillig return 0; /* XXX: Document what this value means. */
433 1.50 rillig return Lst_ForEachFrom(list, Lst_First(list), proc, procData);
434 1.42 rillig }
435 1.42 rillig
436 1.14 rillig /* Apply the given function to each element of the given list, starting from
437 1.14 rillig * the given node. The function should return 0 if traversal should continue,
438 1.14 rillig * and non-zero if it should abort. */
439 1.1 rillig int
440 1.50 rillig Lst_ForEachFrom(Lst list, LstNode node,
441 1.42 rillig LstActionProc proc, void *procData)
442 1.1 rillig {
443 1.16 rillig LstNode tln = node;
444 1.13 rillig LstNode next;
445 1.4 rillig Boolean done;
446 1.4 rillig int result;
447 1.1 rillig
448 1.52 rillig assert(list != NULL);
449 1.52 rillig assert(node != NULL);
450 1.42 rillig assert(proc != NULL);
451 1.1 rillig
452 1.1 rillig do {
453 1.1 rillig /*
454 1.1 rillig * Take care of having the current element deleted out from under
455 1.1 rillig * us.
456 1.1 rillig */
457 1.1 rillig
458 1.15 rillig next = tln->next;
459 1.1 rillig
460 1.1 rillig /*
461 1.1 rillig * We're done with the traversal if
462 1.38 rillig * - the next node to examine doesn't exist and
463 1.1 rillig * - nothing's been added after the current node (check this
464 1.1 rillig * after proc() has been called).
465 1.1 rillig */
466 1.38 rillig done = next == NULL;
467 1.1 rillig
468 1.17 rillig tln->useCount++;
469 1.16 rillig result = (*proc)(tln->datum, procData);
470 1.17 rillig tln->useCount--;
471 1.1 rillig
472 1.1 rillig /*
473 1.1 rillig * Now check whether a node has been added.
474 1.1 rillig * Note: this doesn't work if this node was deleted before
475 1.1 rillig * the new node was added.
476 1.1 rillig */
477 1.15 rillig if (next != tln->next) {
478 1.15 rillig next = tln->next;
479 1.4 rillig done = 0;
480 1.1 rillig }
481 1.1 rillig
482 1.7 rillig if (tln->deleted) {
483 1.1 rillig free((char *)tln);
484 1.1 rillig }
485 1.1 rillig tln = next;
486 1.1 rillig } while (!result && !LstIsEmpty(list) && !done);
487 1.1 rillig
488 1.1 rillig return result;
489 1.1 rillig }
490 1.1 rillig
491 1.34 rillig /* Move all nodes from list2 to the end of list1.
492 1.34 rillig * List2 is destroyed and freed. */
493 1.34 rillig void
494 1.50 rillig Lst_MoveAll(Lst list1, Lst list2)
495 1.1 rillig {
496 1.52 rillig assert(list1 != NULL);
497 1.52 rillig assert(list2 != NULL);
498 1.1 rillig
499 1.34 rillig if (list2->first != NULL) {
500 1.34 rillig list2->first->prev = list1->last;
501 1.34 rillig if (list1->last != NULL) {
502 1.34 rillig list1->last->next = list2->first;
503 1.34 rillig } else {
504 1.34 rillig list1->first = list2->first;
505 1.1 rillig }
506 1.34 rillig list1->last = list2->last;
507 1.1 rillig }
508 1.34 rillig free(list2);
509 1.1 rillig }
510 1.1 rillig
511 1.22 rillig /* Copy the element data from src to the start of dst. */
512 1.22 rillig void
513 1.50 rillig Lst_PrependAll(Lst dst, Lst src)
514 1.22 rillig {
515 1.22 rillig LstNode node;
516 1.22 rillig for (node = src->last; node != NULL; node = node->prev)
517 1.50 rillig Lst_Prepend(dst, node->datum);
518 1.22 rillig }
519 1.22 rillig
520 1.22 rillig /* Copy the element data from src to the end of dst. */
521 1.22 rillig void
522 1.50 rillig Lst_AppendAll(Lst dst, Lst src)
523 1.22 rillig {
524 1.22 rillig LstNode node;
525 1.22 rillig for (node = src->first; node != NULL; node = node->next)
526 1.50 rillig Lst_Append(dst, node->datum);
527 1.22 rillig }
528 1.1 rillig
529 1.1 rillig /*
530 1.1 rillig * these functions are for dealing with a list as a table, of sorts.
531 1.1 rillig * An idea of the "current element" is kept and used by all the functions
532 1.1 rillig * between Lst_Open() and Lst_Close().
533 1.1 rillig *
534 1.1 rillig * The sequential functions access the list in a slightly different way.
535 1.1 rillig * CurPtr points to their idea of the current node in the list and they
536 1.1 rillig * access the list based on it.
537 1.1 rillig */
538 1.1 rillig
539 1.14 rillig /* Open a list for sequential access. A list can still be searched, etc.,
540 1.14 rillig * without confusing these functions. */
541 1.10 rillig void
542 1.50 rillig Lst_Open(Lst list)
543 1.10 rillig {
544 1.52 rillig assert(list != NULL);
545 1.60 rillig assert(!list->isOpen);
546 1.10 rillig
547 1.16 rillig list->isOpen = TRUE;
548 1.16 rillig list->lastAccess = LstIsEmpty(list) ? Head : Unknown;
549 1.16 rillig list->curr = NULL;
550 1.10 rillig }
551 1.10 rillig
552 1.10 rillig /* Return the next node for the given list, or NULL if the end has been
553 1.10 rillig * reached. */
554 1.1 rillig LstNode
555 1.50 rillig Lst_Next(Lst list)
556 1.1 rillig {
557 1.16 rillig LstNode node;
558 1.1 rillig
559 1.52 rillig assert(list != NULL);
560 1.9 rillig assert(list->isOpen);
561 1.1 rillig
562 1.15 rillig list->prev = list->curr;
563 1.1 rillig
564 1.15 rillig if (list->curr == NULL) {
565 1.15 rillig if (list->lastAccess == Unknown) {
566 1.1 rillig /*
567 1.15 rillig * If we're just starting out, lastAccess will be Unknown.
568 1.1 rillig * Then we want to start this thing off in the right
569 1.15 rillig * direction -- at the start with lastAccess being Middle.
570 1.1 rillig */
571 1.16 rillig list->curr = node = list->first;
572 1.15 rillig list->lastAccess = Middle;
573 1.1 rillig } else {
574 1.16 rillig node = NULL;
575 1.15 rillig list->lastAccess = Tail;
576 1.1 rillig }
577 1.1 rillig } else {
578 1.16 rillig node = list->curr->next;
579 1.16 rillig list->curr = node;
580 1.1 rillig
581 1.16 rillig if (node == list->first || node == NULL) {
582 1.1 rillig /*
583 1.1 rillig * If back at the front, then we've hit the end...
584 1.1 rillig */
585 1.15 rillig list->lastAccess = Tail;
586 1.1 rillig } else {
587 1.1 rillig /*
588 1.1 rillig * Reset to Middle if gone past first.
589 1.1 rillig */
590 1.15 rillig list->lastAccess = Middle;
591 1.1 rillig }
592 1.1 rillig }
593 1.1 rillig
594 1.16 rillig return node;
595 1.1 rillig }
596 1.1 rillig
597 1.10 rillig /* Close a list which was opened for sequential access. */
598 1.1 rillig void
599 1.50 rillig Lst_Close(Lst list)
600 1.1 rillig {
601 1.52 rillig assert(list != NULL);
602 1.16 rillig assert(list->isOpen);
603 1.1 rillig
604 1.10 rillig list->isOpen = FALSE;
605 1.15 rillig list->lastAccess = Unknown;
606 1.1 rillig }
607 1.1 rillig
608 1.1 rillig
609 1.1 rillig /*
610 1.1 rillig * for using the list as a queue
611 1.1 rillig */
612 1.1 rillig
613 1.14 rillig /* Add the datum to the tail of the given list. */
614 1.25 rillig void
615 1.50 rillig Lst_Enqueue(Lst list, void *datum)
616 1.1 rillig {
617 1.50 rillig Lst_Append(list, datum);
618 1.1 rillig }
619 1.1 rillig
620 1.25 rillig /* Remove and return the datum at the head of the given list. */
621 1.1 rillig void *
622 1.50 rillig Lst_Dequeue(Lst list)
623 1.1 rillig {
624 1.16 rillig void *datum;
625 1.1 rillig
626 1.52 rillig assert(list != NULL);
627 1.25 rillig assert(!LstIsEmpty(list));
628 1.1 rillig
629 1.25 rillig datum = list->first->datum;
630 1.50 rillig Lst_Remove(list, list->first);
631 1.25 rillig assert(datum != NULL);
632 1.16 rillig return datum;
633 1.1 rillig }
634