rcorder.c revision 1.11 1 1.11 lukem /* $NetBSD: rcorder.c,v 1.11 2002/11/30 03:10:54 lukem Exp $ */
2 1.1 mrg
3 1.1 mrg /*
4 1.1 mrg * Copyright (c) 1998, 1999 Matthew R. Green
5 1.1 mrg * All rights reserved.
6 1.1 mrg * Copyright (c) 1998
7 1.1 mrg * Perry E. Metzger. All rights reserved.
8 1.1 mrg *
9 1.1 mrg * Redistribution and use in source and binary forms, with or without
10 1.1 mrg * modification, are permitted provided that the following conditions
11 1.1 mrg * are met:
12 1.1 mrg * 1. Redistributions of source code must retain the above copyright
13 1.1 mrg * notice, this list of conditions and the following disclaimer.
14 1.1 mrg * 2. Redistributions in binary form must reproduce the above copyright
15 1.1 mrg * notice, this list of conditions and the following disclaimer in the
16 1.1 mrg * documentation and/or other materials provided with the distribution.
17 1.1 mrg * 3. All advertising materials mentioning features or use of this software
18 1.1 mrg * must display the following acknowledgement:
19 1.1 mrg * This product includes software developed for the NetBSD Project
20 1.1 mrg * by Perry E. Metzger.
21 1.1 mrg * 4. The name of the author may not be used to endorse or promote products
22 1.1 mrg * derived from this software without specific prior written permission.
23 1.1 mrg *
24 1.1 mrg * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
25 1.1 mrg * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
26 1.1 mrg * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
27 1.1 mrg * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
28 1.1 mrg * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
29 1.1 mrg * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
30 1.1 mrg * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
31 1.1 mrg * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
32 1.1 mrg * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
33 1.1 mrg * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
34 1.1 mrg */
35 1.1 mrg
36 1.1 mrg #include <sys/types.h>
37 1.3 enami #include <sys/stat.h>
38 1.1 mrg
39 1.1 mrg #include <err.h>
40 1.1 mrg #include <stdio.h>
41 1.1 mrg #include <stdlib.h>
42 1.1 mrg #include <string.h>
43 1.1 mrg #include <unistd.h>
44 1.1 mrg
45 1.1 mrg #include "ealloc.h"
46 1.1 mrg #include "hash.h"
47 1.1 mrg
48 1.1 mrg #ifdef DEBUG
49 1.1 mrg int debug = 0;
50 1.1 mrg # define DPRINTF(args) if (debug) { fflush(stdout); fprintf args; }
51 1.1 mrg #else
52 1.1 mrg # define DPRINTF(args)
53 1.1 mrg #endif
54 1.1 mrg
55 1.1 mrg #define REQUIRE_STR "# REQUIRE:"
56 1.1 mrg #define REQUIRE_LEN (sizeof(REQUIRE_STR) - 1)
57 1.1 mrg #define REQUIRES_STR "# REQUIRES:"
58 1.1 mrg #define REQUIRES_LEN (sizeof(REQUIRES_STR) - 1)
59 1.1 mrg #define PROVIDE_STR "# PROVIDE:"
60 1.1 mrg #define PROVIDE_LEN (sizeof(PROVIDE_STR) - 1)
61 1.1 mrg #define PROVIDES_STR "# PROVIDES:"
62 1.1 mrg #define PROVIDES_LEN (sizeof(PROVIDES_STR) - 1)
63 1.1 mrg #define BEFORE_STR "# BEFORE:"
64 1.1 mrg #define BEFORE_LEN (sizeof(BEFORE_STR) - 1)
65 1.5 mrg #define KEYWORD_STR "# KEYWORD:"
66 1.5 mrg #define KEYWORD_LEN (sizeof(KEYWORD_STR) - 1)
67 1.5 mrg #define KEYWORDS_STR "# KEYWORDS:"
68 1.5 mrg #define KEYWORDS_LEN (sizeof(KEYWORDS_STR) - 1)
69 1.1 mrg
70 1.1 mrg int exit_code;
71 1.1 mrg int file_count;
72 1.1 mrg char **file_list;
73 1.1 mrg
74 1.10 lukem enum {
75 1.10 lukem RESET = 0,
76 1.10 lukem SET = 1,
77 1.10 lukem };
78 1.1 mrg
79 1.1 mrg Hash_Table provide_hash_s, *provide_hash;
80 1.1 mrg
81 1.1 mrg typedef struct provnode provnode;
82 1.1 mrg typedef struct filenode filenode;
83 1.1 mrg typedef struct f_provnode f_provnode;
84 1.1 mrg typedef struct f_reqnode f_reqnode;
85 1.5 mrg typedef struct strnodelist strnodelist;
86 1.1 mrg
87 1.1 mrg struct provnode {
88 1.10 lukem int head;
89 1.10 lukem int in_progress;
90 1.1 mrg filenode *fnode;
91 1.1 mrg provnode *next, *last;
92 1.1 mrg };
93 1.1 mrg
94 1.1 mrg struct f_provnode {
95 1.1 mrg provnode *pnode;
96 1.1 mrg f_provnode *next;
97 1.1 mrg };
98 1.1 mrg
99 1.1 mrg struct f_reqnode {
100 1.1 mrg Hash_Entry *entry;
101 1.1 mrg f_reqnode *next;
102 1.1 mrg };
103 1.1 mrg
104 1.5 mrg struct strnodelist {
105 1.5 mrg filenode *node;
106 1.5 mrg strnodelist *next;
107 1.6 enami char s[1];
108 1.5 mrg };
109 1.5 mrg
110 1.1 mrg struct filenode {
111 1.1 mrg char *filename;
112 1.10 lukem int in_progress;
113 1.1 mrg filenode *next, *last;
114 1.1 mrg f_reqnode *req_list;
115 1.1 mrg f_provnode *prov_list;
116 1.5 mrg strnodelist *keyword_list;
117 1.1 mrg };
118 1.1 mrg
119 1.5 mrg filenode fn_head_s, *fn_head;
120 1.1 mrg
121 1.5 mrg strnodelist *bl_list;
122 1.5 mrg strnodelist *keep_list;
123 1.5 mrg strnodelist *skip_list;
124 1.1 mrg
125 1.10 lukem void do_file(filenode *fnode);
126 1.10 lukem void strnode_add(strnodelist **, char *, filenode *);
127 1.10 lukem int skip_ok(filenode *fnode);
128 1.10 lukem int keep_ok(filenode *fnode);
129 1.10 lukem void satisfy_req(f_reqnode *rnode, char *);
130 1.10 lukem void crunch_file(char *);
131 1.10 lukem void parse_line(filenode *, char *, void (*)(filenode *, char *));
132 1.10 lukem filenode *filenode_new(char *);
133 1.10 lukem void add_require(filenode *, char *);
134 1.10 lukem void add_provide(filenode *, char *);
135 1.10 lukem void add_before(filenode *, char *);
136 1.10 lukem void add_keyword(filenode *, char *);
137 1.10 lukem void insert_before(void);
138 1.10 lukem Hash_Entry *make_fake_provision(filenode *);
139 1.10 lukem void crunch_all_files(void);
140 1.10 lukem void initialize(void);
141 1.10 lukem void generate_ordering(void);
142 1.10 lukem int main(int, char *[]);
143 1.1 mrg
144 1.1 mrg int
145 1.10 lukem main(int argc, char *argv[])
146 1.1 mrg {
147 1.1 mrg int ch;
148 1.1 mrg
149 1.5 mrg while ((ch = getopt(argc, argv, "dk:s:")) != -1)
150 1.1 mrg switch (ch) {
151 1.1 mrg case 'd':
152 1.1 mrg #ifdef DEBUG
153 1.1 mrg debug = 1;
154 1.1 mrg #else
155 1.1 mrg warnx("debugging not compiled in, -d ignored");
156 1.1 mrg #endif
157 1.1 mrg break;
158 1.5 mrg case 'k':
159 1.5 mrg strnode_add(&keep_list, optarg, 0);
160 1.5 mrg break;
161 1.5 mrg case 's':
162 1.5 mrg strnode_add(&skip_list, optarg, 0);
163 1.5 mrg break;
164 1.1 mrg default:
165 1.1 mrg /* XXX should crunch it? */
166 1.1 mrg break;
167 1.1 mrg }
168 1.1 mrg argc -= optind;
169 1.1 mrg argv += optind;
170 1.1 mrg
171 1.1 mrg file_count = argc;
172 1.1 mrg file_list = argv;
173 1.1 mrg
174 1.1 mrg DPRINTF((stderr, "parse_args\n"));
175 1.1 mrg initialize();
176 1.1 mrg DPRINTF((stderr, "initialize\n"));
177 1.1 mrg crunch_all_files();
178 1.1 mrg DPRINTF((stderr, "crunch_all_files\n"));
179 1.1 mrg generate_ordering();
180 1.1 mrg DPRINTF((stderr, "generate_ordering\n"));
181 1.1 mrg
182 1.1 mrg exit(exit_code);
183 1.1 mrg }
184 1.1 mrg
185 1.1 mrg /*
186 1.1 mrg * initialise various variables.
187 1.1 mrg */
188 1.1 mrg void
189 1.10 lukem initialize(void)
190 1.1 mrg {
191 1.1 mrg
192 1.1 mrg fn_head = &fn_head_s;
193 1.1 mrg
194 1.1 mrg provide_hash = &provide_hash_s;
195 1.1 mrg Hash_InitTable(provide_hash, file_count);
196 1.1 mrg }
197 1.1 mrg
198 1.5 mrg /* generic function to insert a new strnodelist element */
199 1.5 mrg void
200 1.10 lukem strnode_add(strnodelist **listp, char *s, filenode *fnode)
201 1.5 mrg {
202 1.5 mrg strnodelist *ent;
203 1.5 mrg
204 1.6 enami ent = emalloc(sizeof *ent + strlen(s));
205 1.5 mrg ent->node = fnode;
206 1.6 enami strcpy(ent->s, s);
207 1.5 mrg ent->next = *listp;
208 1.5 mrg *listp = ent;
209 1.5 mrg }
210 1.5 mrg
211 1.1 mrg /*
212 1.1 mrg * below are the functions that deal with creating the lists
213 1.1 mrg * from the filename's given and the dependancies and provisions
214 1.1 mrg * in each of these files. no ordering or checking is done here.
215 1.1 mrg */
216 1.1 mrg
217 1.1 mrg /*
218 1.1 mrg * we have a new filename, create a new filenode structure.
219 1.1 mrg * fill in the bits, and put it in the filenode linked list
220 1.1 mrg */
221 1.1 mrg filenode *
222 1.10 lukem filenode_new(char *filename)
223 1.1 mrg {
224 1.1 mrg filenode *temp;
225 1.1 mrg
226 1.1 mrg temp = emalloc(sizeof(*temp));
227 1.1 mrg memset(temp, 0, sizeof(*temp));
228 1.1 mrg temp->filename = estrdup(filename);
229 1.1 mrg temp->req_list = NULL;
230 1.1 mrg temp->prov_list = NULL;
231 1.5 mrg temp->keyword_list = NULL;
232 1.1 mrg temp->in_progress = RESET;
233 1.1 mrg /*
234 1.1 mrg * link the filenode into the list of filenodes.
235 1.1 mrg * note that the double linking means we can delete a
236 1.1 mrg * filenode without searching for where it belongs.
237 1.1 mrg */
238 1.1 mrg temp->next = fn_head->next;
239 1.1 mrg if (temp->next != NULL)
240 1.1 mrg temp->next->last = temp;
241 1.1 mrg temp->last = fn_head;
242 1.1 mrg fn_head->next = temp;
243 1.1 mrg return (temp);
244 1.1 mrg }
245 1.1 mrg
246 1.1 mrg /*
247 1.5 mrg * add a requirement to a filenode.
248 1.1 mrg */
249 1.1 mrg void
250 1.10 lukem add_require(filenode *fnode, char *s)
251 1.1 mrg {
252 1.1 mrg Hash_Entry *entry;
253 1.1 mrg f_reqnode *rnode;
254 1.1 mrg int new;
255 1.1 mrg
256 1.1 mrg entry = Hash_CreateEntry(provide_hash, s, &new);
257 1.1 mrg if (new)
258 1.1 mrg Hash_SetValue(entry, NULL);
259 1.1 mrg rnode = emalloc(sizeof(*rnode));
260 1.1 mrg rnode->entry = entry;
261 1.1 mrg rnode->next = fnode->req_list;
262 1.1 mrg fnode->req_list = rnode;
263 1.1 mrg }
264 1.1 mrg
265 1.1 mrg /*
266 1.1 mrg * add a provision to a filenode. if this provision doesn't
267 1.1 mrg * have a head node, create one here.
268 1.1 mrg */
269 1.1 mrg void
270 1.10 lukem add_provide(filenode *fnode, char *s)
271 1.1 mrg {
272 1.1 mrg Hash_Entry *entry;
273 1.1 mrg f_provnode *f_pnode;
274 1.1 mrg provnode *pnode, *head;
275 1.1 mrg int new;
276 1.1 mrg
277 1.1 mrg entry = Hash_CreateEntry(provide_hash, s, &new);
278 1.1 mrg head = Hash_GetValue(entry);
279 1.1 mrg
280 1.1 mrg /* create a head node if necessary. */
281 1.1 mrg if (head == NULL) {
282 1.1 mrg head = emalloc(sizeof(*head));
283 1.1 mrg head->head = SET;
284 1.1 mrg head->in_progress = RESET;
285 1.1 mrg head->fnode = NULL;
286 1.1 mrg head->last = head->next = NULL;
287 1.1 mrg Hash_SetValue(entry, head);
288 1.2 thorpej }
289 1.2 thorpej #if 0
290 1.2 thorpej /*
291 1.2 thorpej * Don't warn about this. We want to be able to support
292 1.2 thorpej * scripts that do two complex things:
293 1.2 thorpej *
294 1.2 thorpej * - Two independent scripts which both provide the
295 1.2 thorpej * same thing. Both scripts must be executed in
296 1.2 thorpej * any order to meet the barrier. An example:
297 1.2 thorpej *
298 1.2 thorpej * Script 1:
299 1.2 thorpej *
300 1.2 thorpej * PROVIDE: mail
301 1.2 thorpej * REQUIRE: LOGIN
302 1.2 thorpej *
303 1.2 thorpej * Script 2:
304 1.2 thorpej *
305 1.2 thorpej * PROVIDE: mail
306 1.2 thorpej * REQUIRE: LOGIN
307 1.2 thorpej *
308 1.2 thorpej * - Two interdependent scripts which both provide the
309 1.2 thorpej * same thing. Both scripts must be executed in
310 1.2 thorpej * graph order to meet the barrier. An example:
311 1.2 thorpej *
312 1.2 thorpej * Script 1:
313 1.2 thorpej *
314 1.2 thorpej * PROVIDE: nameservice dnscache
315 1.2 thorpej * REQUIRE: SERVERS
316 1.2 thorpej *
317 1.2 thorpej * Script 2:
318 1.2 thorpej *
319 1.2 thorpej * PROVIDE: nameservice nscd
320 1.2 thorpej * REQUIRE: dnscache
321 1.2 thorpej */
322 1.2 thorpej else if (new == 0) {
323 1.1 mrg warnx("file `%s' provides `%s'.", fnode->filename, s);
324 1.2 thorpej warnx("\tpreviously seen in `%s'.",
325 1.2 thorpej head->next->fnode->filename);
326 1.1 mrg }
327 1.2 thorpej #endif
328 1.1 mrg
329 1.1 mrg pnode = emalloc(sizeof(*pnode));
330 1.1 mrg pnode->head = RESET;
331 1.1 mrg pnode->in_progress = RESET;
332 1.1 mrg pnode->fnode = fnode;
333 1.1 mrg pnode->next = head->next;
334 1.1 mrg pnode->last = head;
335 1.1 mrg head->next = pnode;
336 1.1 mrg if (pnode->next != NULL)
337 1.1 mrg pnode->next->last = pnode;
338 1.1 mrg
339 1.1 mrg f_pnode = emalloc(sizeof(*f_pnode));
340 1.1 mrg f_pnode->pnode = pnode;
341 1.1 mrg f_pnode->next = fnode->prov_list;
342 1.1 mrg fnode->prov_list = f_pnode;
343 1.1 mrg }
344 1.1 mrg
345 1.1 mrg /*
346 1.1 mrg * put the BEFORE: lines to a list and handle them later.
347 1.1 mrg */
348 1.1 mrg void
349 1.10 lukem add_before(filenode *fnode, char *s)
350 1.1 mrg {
351 1.1 mrg
352 1.9 lukem strnode_add(&bl_list, s, fnode);
353 1.1 mrg }
354 1.1 mrg
355 1.1 mrg /*
356 1.5 mrg * add a key to a filenode.
357 1.5 mrg */
358 1.5 mrg void
359 1.10 lukem add_keyword(filenode *fnode, char *s)
360 1.5 mrg {
361 1.5 mrg
362 1.5 mrg strnode_add(&fnode->keyword_list, s, fnode);
363 1.5 mrg }
364 1.5 mrg
365 1.5 mrg /*
366 1.10 lukem * loop over the rest of a line, giving each word to
367 1.10 lukem * add_func() to do the real work.
368 1.1 mrg */
369 1.1 mrg void
370 1.10 lukem parse_line(filenode *node, char *buffer, void (*add_func)(filenode *, char *))
371 1.1 mrg {
372 1.1 mrg char *s;
373 1.1 mrg
374 1.1 mrg while ((s = strsep(&buffer, " \t\n")) != NULL)
375 1.1 mrg if (*s != '\0')
376 1.10 lukem (*add_func)(node, s);
377 1.5 mrg }
378 1.5 mrg
379 1.5 mrg /*
380 1.1 mrg * given a file name, create a filenode for it, read in lines looking
381 1.1 mrg * for provision and requirement lines, building the graphs as needed.
382 1.1 mrg */
383 1.1 mrg void
384 1.10 lukem crunch_file(char *filename)
385 1.1 mrg {
386 1.1 mrg FILE *fp;
387 1.1 mrg char *buf;
388 1.10 lukem int require_flag, provide_flag, before_flag, keyword_flag;
389 1.7 enami enum { BEFORE_PARSING, PARSING, PARSING_DONE } state;
390 1.1 mrg filenode *node;
391 1.1 mrg char delims[3] = { '\\', '\\', '\0' };
392 1.3 enami struct stat st;
393 1.1 mrg
394 1.1 mrg if ((fp = fopen(filename, "r")) == NULL) {
395 1.1 mrg warn("could not open %s", filename);
396 1.3 enami return;
397 1.3 enami }
398 1.3 enami
399 1.3 enami if (fstat(fileno(fp), &st) == -1) {
400 1.3 enami warn("could not stat %s", filename);
401 1.4 enami fclose(fp);
402 1.3 enami return;
403 1.3 enami }
404 1.3 enami
405 1.3 enami if (!S_ISREG(st.st_mode)) {
406 1.8 christos #if 0
407 1.3 enami warnx("%s is not a file", filename);
408 1.8 christos #endif
409 1.4 enami fclose(fp);
410 1.1 mrg return;
411 1.1 mrg }
412 1.1 mrg
413 1.1 mrg node = filenode_new(filename);
414 1.1 mrg
415 1.1 mrg /*
416 1.1 mrg * we don't care about length, line number, don't want # for comments,
417 1.1 mrg * and have no flags.
418 1.1 mrg */
419 1.7 enami for (state = BEFORE_PARSING; state != PARSING_DONE &&
420 1.7 enami (buf = fparseln(fp, NULL, NULL, delims, 0)) != NULL; free(buf)) {
421 1.10 lukem require_flag = provide_flag = before_flag = keyword_flag = 0;
422 1.1 mrg if (strncmp(REQUIRE_STR, buf, REQUIRE_LEN) == 0)
423 1.1 mrg require_flag = REQUIRE_LEN;
424 1.1 mrg else if (strncmp(REQUIRES_STR, buf, REQUIRES_LEN) == 0)
425 1.1 mrg require_flag = REQUIRES_LEN;
426 1.1 mrg else if (strncmp(PROVIDE_STR, buf, PROVIDE_LEN) == 0)
427 1.1 mrg provide_flag = PROVIDE_LEN;
428 1.1 mrg else if (strncmp(PROVIDES_STR, buf, PROVIDES_LEN) == 0)
429 1.1 mrg provide_flag = PROVIDES_LEN;
430 1.1 mrg else if (strncmp(BEFORE_STR, buf, BEFORE_LEN) == 0)
431 1.1 mrg before_flag = BEFORE_LEN;
432 1.5 mrg else if (strncmp(KEYWORD_STR, buf, KEYWORD_LEN) == 0)
433 1.10 lukem keyword_flag = KEYWORD_LEN;
434 1.5 mrg else if (strncmp(KEYWORDS_STR, buf, KEYWORDS_LEN) == 0)
435 1.10 lukem keyword_flag = KEYWORDS_LEN;
436 1.7 enami else {
437 1.7 enami if (state == PARSING)
438 1.7 enami state = PARSING_DONE;
439 1.7 enami continue;
440 1.7 enami }
441 1.1 mrg
442 1.7 enami state = PARSING;
443 1.1 mrg if (require_flag)
444 1.10 lukem parse_line(node, buf + require_flag, add_require);
445 1.6 enami else if (provide_flag)
446 1.10 lukem parse_line(node, buf + provide_flag, add_provide);
447 1.6 enami else if (before_flag)
448 1.10 lukem parse_line(node, buf + before_flag, add_before);
449 1.10 lukem else if (keyword_flag)
450 1.10 lukem parse_line(node, buf + keyword_flag, add_keyword);
451 1.1 mrg }
452 1.1 mrg fclose(fp);
453 1.1 mrg }
454 1.1 mrg
455 1.1 mrg Hash_Entry *
456 1.10 lukem make_fake_provision(filenode *node)
457 1.1 mrg {
458 1.1 mrg Hash_Entry *entry;
459 1.1 mrg f_provnode *f_pnode;
460 1.1 mrg provnode *head, *pnode;
461 1.1 mrg static int i = 0;
462 1.1 mrg int new;
463 1.1 mrg char buffer[30];
464 1.1 mrg
465 1.1 mrg do {
466 1.1 mrg snprintf(buffer, sizeof buffer, "fake_prov_%08d", i++);
467 1.1 mrg entry = Hash_CreateEntry(provide_hash, buffer, &new);
468 1.1 mrg } while (new == 0);
469 1.1 mrg head = emalloc(sizeof(*head));
470 1.1 mrg head->head = SET;
471 1.1 mrg head->in_progress = RESET;
472 1.1 mrg head->fnode = NULL;
473 1.1 mrg head->last = head->next = NULL;
474 1.1 mrg Hash_SetValue(entry, head);
475 1.1 mrg
476 1.1 mrg pnode = emalloc(sizeof(*pnode));
477 1.1 mrg pnode->head = RESET;
478 1.1 mrg pnode->in_progress = RESET;
479 1.1 mrg pnode->fnode = node;
480 1.1 mrg pnode->next = head->next;
481 1.1 mrg pnode->last = head;
482 1.1 mrg head->next = pnode;
483 1.1 mrg if (pnode->next != NULL)
484 1.1 mrg pnode->next->last = pnode;
485 1.1 mrg
486 1.1 mrg f_pnode = emalloc(sizeof(*f_pnode));
487 1.1 mrg f_pnode->pnode = pnode;
488 1.1 mrg f_pnode->next = node->prov_list;
489 1.1 mrg node->prov_list = f_pnode;
490 1.1 mrg
491 1.1 mrg return (entry);
492 1.1 mrg }
493 1.1 mrg
494 1.1 mrg /*
495 1.1 mrg * go through the BEFORE list, inserting requirements into the graph(s)
496 1.1 mrg * as required. in the before list, for each entry B, we have a file F
497 1.1 mrg * and a string S. we create a "fake" provision (P) that F provides.
498 1.1 mrg * for each entry in the provision list for S, add a requirement to
499 1.1 mrg * that provisions filenode for P.
500 1.1 mrg */
501 1.1 mrg void
502 1.10 lukem insert_before(void)
503 1.1 mrg {
504 1.1 mrg Hash_Entry *entry, *fake_prov_entry;
505 1.1 mrg provnode *pnode;
506 1.1 mrg f_reqnode *rnode;
507 1.5 mrg strnodelist *bl;
508 1.1 mrg int new;
509 1.1 mrg
510 1.1 mrg while (bl_list != NULL) {
511 1.1 mrg bl = bl_list->next;
512 1.1 mrg
513 1.1 mrg fake_prov_entry = make_fake_provision(bl_list->node);
514 1.1 mrg
515 1.1 mrg entry = Hash_CreateEntry(provide_hash, bl_list->s, &new);
516 1.1 mrg if (new == 1)
517 1.1 mrg warnx("file `%s' is before unknown provision `%s'", bl_list->node->filename, bl_list->s);
518 1.1 mrg
519 1.1 mrg for (pnode = Hash_GetValue(entry); pnode; pnode = pnode->next) {
520 1.1 mrg if (pnode->head)
521 1.1 mrg continue;
522 1.1 mrg
523 1.1 mrg rnode = emalloc(sizeof(*rnode));
524 1.1 mrg rnode->entry = fake_prov_entry;
525 1.1 mrg rnode->next = pnode->fnode->req_list;
526 1.1 mrg pnode->fnode->req_list = rnode;
527 1.1 mrg }
528 1.1 mrg
529 1.1 mrg free(bl_list);
530 1.1 mrg bl_list = bl;
531 1.1 mrg }
532 1.1 mrg }
533 1.1 mrg
534 1.1 mrg /*
535 1.1 mrg * loop over all the files calling crunch_file() on them to do the
536 1.1 mrg * real work. after we have built all the nodes, insert the BEFORE:
537 1.1 mrg * lines into graph(s).
538 1.1 mrg */
539 1.1 mrg void
540 1.10 lukem crunch_all_files(void)
541 1.1 mrg {
542 1.1 mrg int i;
543 1.1 mrg
544 1.1 mrg for (i = 0; i < file_count; i++)
545 1.1 mrg crunch_file(file_list[i]);
546 1.1 mrg insert_before();
547 1.1 mrg }
548 1.1 mrg
549 1.1 mrg /*
550 1.1 mrg * below are the functions that traverse the graphs we have built
551 1.1 mrg * finding out the desired ordering, printing each file in turn.
552 1.1 mrg * if missing requirements, or cyclic graphs are detected, a
553 1.1 mrg * warning will be issued, and we will continue on..
554 1.1 mrg */
555 1.1 mrg
556 1.1 mrg /*
557 1.1 mrg * given a requirement node (in a filename) we attempt to satisfy it.
558 1.1 mrg * we do some sanity checking first, to ensure that we have providers,
559 1.1 mrg * aren't already satisfied and aren't already being satisfied (ie,
560 1.1 mrg * cyclic). if we pass all this, we loop over the provision list
561 1.1 mrg * calling do_file() (enter recursion) for each filenode in this
562 1.1 mrg * provision.
563 1.1 mrg */
564 1.1 mrg void
565 1.10 lukem satisfy_req(f_reqnode *rnode, char *filename)
566 1.1 mrg {
567 1.1 mrg Hash_Entry *entry;
568 1.1 mrg provnode *head;
569 1.1 mrg
570 1.1 mrg entry = rnode->entry;
571 1.1 mrg head = Hash_GetValue(entry);
572 1.1 mrg
573 1.1 mrg if (head == NULL) {
574 1.1 mrg warnx("requirement `%s' in file `%s' has no providers.",
575 1.1 mrg Hash_GetKey(entry), filename);
576 1.1 mrg exit_code = 1;
577 1.1 mrg return;
578 1.1 mrg }
579 1.1 mrg
580 1.1 mrg /* return if the requirement is already satisfied. */
581 1.1 mrg if (head->next == NULL)
582 1.1 mrg return;
583 1.1 mrg
584 1.1 mrg /*
585 1.1 mrg * if list is marked as in progress,
586 1.1 mrg * print that there is a circular dependency on it and abort
587 1.1 mrg */
588 1.1 mrg if (head->in_progress == SET) {
589 1.1 mrg warnx("Circular dependency on provision `%s' in file `%s'.",
590 1.1 mrg Hash_GetKey(entry), filename);
591 1.1 mrg exit_code = 1;
592 1.1 mrg return;
593 1.1 mrg }
594 1.1 mrg
595 1.1 mrg head->in_progress = SET;
596 1.1 mrg
597 1.1 mrg /*
598 1.1 mrg * while provision_list is not empty
599 1.1 mrg * do_file(first_member_of(provision_list));
600 1.1 mrg */
601 1.1 mrg while (head->next != NULL)
602 1.1 mrg do_file(head->next->fnode);
603 1.1 mrg }
604 1.1 mrg
605 1.5 mrg int
606 1.10 lukem skip_ok(filenode *fnode)
607 1.5 mrg {
608 1.5 mrg strnodelist *s;
609 1.5 mrg strnodelist *k;
610 1.5 mrg
611 1.5 mrg for (s = skip_list; s; s = s->next)
612 1.5 mrg for (k = fnode->keyword_list; k; k = k->next)
613 1.5 mrg if (strcmp(k->s, s->s) == 0)
614 1.5 mrg return (0);
615 1.5 mrg
616 1.5 mrg return (1);
617 1.5 mrg }
618 1.5 mrg
619 1.5 mrg int
620 1.10 lukem keep_ok(filenode *fnode)
621 1.5 mrg {
622 1.5 mrg strnodelist *s;
623 1.5 mrg strnodelist *k;
624 1.5 mrg
625 1.5 mrg for (s = keep_list; s; s = s->next)
626 1.5 mrg for (k = fnode->keyword_list; k; k = k->next)
627 1.5 mrg if (strcmp(k->s, s->s) == 0)
628 1.5 mrg return (1);
629 1.5 mrg
630 1.5 mrg /* an empty keep_list means every one */
631 1.5 mrg return (!keep_list);
632 1.5 mrg }
633 1.5 mrg
634 1.1 mrg /*
635 1.1 mrg * given a filenode, we ensure we are not a cyclic graph. if this
636 1.1 mrg * is ok, we loop over the filenodes requirements, calling satisfy_req()
637 1.1 mrg * for each of them.. once we have done this, remove this filenode
638 1.1 mrg * from each provision table, as we are now done.
639 1.1 mrg */
640 1.1 mrg void
641 1.10 lukem do_file(filenode *fnode)
642 1.1 mrg {
643 1.1 mrg f_reqnode *r, *r_tmp;
644 1.1 mrg f_provnode *p, *p_tmp;
645 1.1 mrg provnode *pnode;
646 1.1 mrg int was_set;
647 1.1 mrg
648 1.1 mrg DPRINTF((stderr, "do_file on %s.\n", fnode->filename));
649 1.1 mrg
650 1.1 mrg /*
651 1.1 mrg * if fnode is marked as in progress,
652 1.1 mrg * print that fnode; is circularly depended upon and abort.
653 1.1 mrg */
654 1.1 mrg if (fnode->in_progress == SET) {
655 1.1 mrg warnx("Circular dependency on file `%s'.",
656 1.1 mrg fnode->filename);
657 1.1 mrg was_set = exit_code = 1;
658 1.1 mrg } else
659 1.1 mrg was_set = 0;
660 1.1 mrg
661 1.1 mrg /* mark fnode */
662 1.1 mrg fnode->in_progress = SET;
663 1.1 mrg
664 1.1 mrg /*
665 1.1 mrg * for each requirement of fnode -> r
666 1.1 mrg * satisfy_req(r, filename)
667 1.1 mrg */
668 1.1 mrg r = fnode->req_list;
669 1.1 mrg while (r != NULL) {
670 1.1 mrg r_tmp = r;
671 1.1 mrg satisfy_req(r, fnode->filename);
672 1.1 mrg r = r->next;
673 1.1 mrg free(r_tmp);
674 1.1 mrg }
675 1.1 mrg fnode->req_list = NULL;
676 1.1 mrg
677 1.1 mrg /*
678 1.1 mrg * for each provision of fnode -> p
679 1.1 mrg * remove fnode from provision list for p in hash table
680 1.1 mrg */
681 1.1 mrg p = fnode->prov_list;
682 1.1 mrg while (p != NULL) {
683 1.1 mrg p_tmp = p;
684 1.1 mrg pnode = p->pnode;
685 1.1 mrg if (pnode->next != NULL) {
686 1.1 mrg pnode->next->last = pnode->last;
687 1.1 mrg }
688 1.1 mrg if (pnode->last != NULL) {
689 1.1 mrg pnode->last->next = pnode->next;
690 1.1 mrg }
691 1.1 mrg free(pnode);
692 1.1 mrg p = p->next;
693 1.1 mrg free(p_tmp);
694 1.1 mrg }
695 1.1 mrg fnode->prov_list = NULL;
696 1.1 mrg
697 1.1 mrg /* do_it(fnode) */
698 1.1 mrg DPRINTF((stderr, "next do: "));
699 1.1 mrg
700 1.1 mrg /* if we were already in progress, don't print again */
701 1.5 mrg if (was_set == 0 && skip_ok(fnode) && keep_ok(fnode))
702 1.1 mrg printf("%s\n", fnode->filename);
703 1.1 mrg
704 1.1 mrg if (fnode->next != NULL) {
705 1.1 mrg fnode->next->last = fnode->last;
706 1.1 mrg }
707 1.1 mrg if (fnode->last != NULL) {
708 1.1 mrg fnode->last->next = fnode->next;
709 1.1 mrg }
710 1.1 mrg
711 1.1 mrg DPRINTF((stderr, "nuking %s\n", fnode->filename));
712 1.1 mrg free(fnode->filename);
713 1.1 mrg free(fnode);
714 1.1 mrg }
715 1.1 mrg
716 1.1 mrg void
717 1.10 lukem generate_ordering(void)
718 1.1 mrg {
719 1.1 mrg
720 1.1 mrg /*
721 1.1 mrg * while there remain undone files{f},
722 1.1 mrg * pick an arbitrary f, and do_file(f)
723 1.1 mrg * Note that the first file in the file list is perfectly
724 1.1 mrg * arbitrary, and easy to find, so we use that.
725 1.1 mrg */
726 1.1 mrg
727 1.1 mrg /*
728 1.1 mrg * N.B.: the file nodes "self delete" after they execute, so
729 1.1 mrg * after each iteration of the loop, the head will be pointing
730 1.1 mrg * to something totally different. The loop ends up being
731 1.1 mrg * executed only once for every strongly connected set of
732 1.1 mrg * nodes.
733 1.1 mrg */
734 1.1 mrg while (fn_head->next != NULL) {
735 1.1 mrg DPRINTF((stderr, "generate on %s\n", fn_head->next->filename));
736 1.1 mrg do_file(fn_head->next);
737 1.1 mrg }
738 1.1 mrg }
739