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strbuf: release memory on read error in strbuf_read_once()
[thirdparty/git.git] / strbuf.c
1 #include "cache.h"
2 #include "refs.h"
3 #include "utf8.h"
4
5 int starts_with(const char *str, const char *prefix)
6 {
7 for (; ; str++, prefix++)
8 if (!*prefix)
9 return 1;
10 else if (*str != *prefix)
11 return 0;
12 }
13
14 /*
15 * Used as the default ->buf value, so that people can always assume
16 * buf is non NULL and ->buf is NUL terminated even for a freshly
17 * initialized strbuf.
18 */
19 char strbuf_slopbuf[1];
20
21 void strbuf_init(struct strbuf *sb, size_t hint)
22 {
23 sb->alloc = sb->len = 0;
24 sb->buf = strbuf_slopbuf;
25 if (hint)
26 strbuf_grow(sb, hint);
27 }
28
29 void strbuf_release(struct strbuf *sb)
30 {
31 if (sb->alloc) {
32 free(sb->buf);
33 strbuf_init(sb, 0);
34 }
35 }
36
37 char *strbuf_detach(struct strbuf *sb, size_t *sz)
38 {
39 char *res;
40 strbuf_grow(sb, 0);
41 res = sb->buf;
42 if (sz)
43 *sz = sb->len;
44 strbuf_init(sb, 0);
45 return res;
46 }
47
48 void strbuf_attach(struct strbuf *sb, void *buf, size_t len, size_t alloc)
49 {
50 strbuf_release(sb);
51 sb->buf = buf;
52 sb->len = len;
53 sb->alloc = alloc;
54 strbuf_grow(sb, 0);
55 sb->buf[sb->len] = '\0';
56 }
57
58 void strbuf_grow(struct strbuf *sb, size_t extra)
59 {
60 int new_buf = !sb->alloc;
61 if (unsigned_add_overflows(extra, 1) ||
62 unsigned_add_overflows(sb->len, extra + 1))
63 die("you want to use way too much memory");
64 if (new_buf)
65 sb->buf = NULL;
66 ALLOC_GROW(sb->buf, sb->len + extra + 1, sb->alloc);
67 if (new_buf)
68 sb->buf[0] = '\0';
69 }
70
71 void strbuf_trim(struct strbuf *sb)
72 {
73 strbuf_rtrim(sb);
74 strbuf_ltrim(sb);
75 }
76 void strbuf_rtrim(struct strbuf *sb)
77 {
78 while (sb->len > 0 && isspace((unsigned char)sb->buf[sb->len - 1]))
79 sb->len--;
80 sb->buf[sb->len] = '\0';
81 }
82
83 void strbuf_ltrim(struct strbuf *sb)
84 {
85 char *b = sb->buf;
86 while (sb->len > 0 && isspace(*b)) {
87 b++;
88 sb->len--;
89 }
90 memmove(sb->buf, b, sb->len);
91 sb->buf[sb->len] = '\0';
92 }
93
94 int strbuf_reencode(struct strbuf *sb, const char *from, const char *to)
95 {
96 char *out;
97 int len;
98
99 if (same_encoding(from, to))
100 return 0;
101
102 out = reencode_string_len(sb->buf, sb->len, to, from, &len);
103 if (!out)
104 return -1;
105
106 strbuf_attach(sb, out, len, len);
107 return 0;
108 }
109
110 void strbuf_tolower(struct strbuf *sb)
111 {
112 char *p = sb->buf, *end = sb->buf + sb->len;
113 for (; p < end; p++)
114 *p = tolower(*p);
115 }
116
117 struct strbuf **strbuf_split_buf(const char *str, size_t slen,
118 int terminator, int max)
119 {
120 struct strbuf **ret = NULL;
121 size_t nr = 0, alloc = 0;
122 struct strbuf *t;
123
124 while (slen) {
125 int len = slen;
126 if (max <= 0 || nr + 1 < max) {
127 const char *end = memchr(str, terminator, slen);
128 if (end)
129 len = end - str + 1;
130 }
131 t = xmalloc(sizeof(struct strbuf));
132 strbuf_init(t, len);
133 strbuf_add(t, str, len);
134 ALLOC_GROW(ret, nr + 2, alloc);
135 ret[nr++] = t;
136 str += len;
137 slen -= len;
138 }
139 ALLOC_GROW(ret, nr + 1, alloc); /* In case string was empty */
140 ret[nr] = NULL;
141 return ret;
142 }
143
144 void strbuf_list_free(struct strbuf **sbs)
145 {
146 struct strbuf **s = sbs;
147
148 while (*s) {
149 strbuf_release(*s);
150 free(*s++);
151 }
152 free(sbs);
153 }
154
155 int strbuf_cmp(const struct strbuf *a, const struct strbuf *b)
156 {
157 int len = a->len < b->len ? a->len: b->len;
158 int cmp = memcmp(a->buf, b->buf, len);
159 if (cmp)
160 return cmp;
161 return a->len < b->len ? -1: a->len != b->len;
162 }
163
164 void strbuf_splice(struct strbuf *sb, size_t pos, size_t len,
165 const void *data, size_t dlen)
166 {
167 if (unsigned_add_overflows(pos, len))
168 die("you want to use way too much memory");
169 if (pos > sb->len)
170 die("`pos' is too far after the end of the buffer");
171 if (pos + len > sb->len)
172 die("`pos + len' is too far after the end of the buffer");
173
174 if (dlen >= len)
175 strbuf_grow(sb, dlen - len);
176 memmove(sb->buf + pos + dlen,
177 sb->buf + pos + len,
178 sb->len - pos - len);
179 memcpy(sb->buf + pos, data, dlen);
180 strbuf_setlen(sb, sb->len + dlen - len);
181 }
182
183 void strbuf_insert(struct strbuf *sb, size_t pos, const void *data, size_t len)
184 {
185 strbuf_splice(sb, pos, 0, data, len);
186 }
187
188 void strbuf_remove(struct strbuf *sb, size_t pos, size_t len)
189 {
190 strbuf_splice(sb, pos, len, "", 0);
191 }
192
193 void strbuf_add(struct strbuf *sb, const void *data, size_t len)
194 {
195 strbuf_grow(sb, len);
196 memcpy(sb->buf + sb->len, data, len);
197 strbuf_setlen(sb, sb->len + len);
198 }
199
200 void strbuf_addbuf(struct strbuf *sb, const struct strbuf *sb2)
201 {
202 strbuf_grow(sb, sb2->len);
203 memcpy(sb->buf + sb->len, sb2->buf, sb2->len);
204 strbuf_setlen(sb, sb->len + sb2->len);
205 }
206
207 void strbuf_adddup(struct strbuf *sb, size_t pos, size_t len)
208 {
209 strbuf_grow(sb, len);
210 memcpy(sb->buf + sb->len, sb->buf + pos, len);
211 strbuf_setlen(sb, sb->len + len);
212 }
213
214 void strbuf_addchars(struct strbuf *sb, int c, size_t n)
215 {
216 strbuf_grow(sb, n);
217 memset(sb->buf + sb->len, c, n);
218 strbuf_setlen(sb, sb->len + n);
219 }
220
221 void strbuf_addf(struct strbuf *sb, const char *fmt, ...)
222 {
223 va_list ap;
224 va_start(ap, fmt);
225 strbuf_vaddf(sb, fmt, ap);
226 va_end(ap);
227 }
228
229 static void add_lines(struct strbuf *out,
230 const char *prefix1,
231 const char *prefix2,
232 const char *buf, size_t size)
233 {
234 while (size) {
235 const char *prefix;
236 const char *next = memchr(buf, '\n', size);
237 next = next ? (next + 1) : (buf + size);
238
239 prefix = ((prefix2 && (buf[0] == '\n' || buf[0] == '\t'))
240 ? prefix2 : prefix1);
241 strbuf_addstr(out, prefix);
242 strbuf_add(out, buf, next - buf);
243 size -= next - buf;
244 buf = next;
245 }
246 strbuf_complete_line(out);
247 }
248
249 void strbuf_add_commented_lines(struct strbuf *out, const char *buf, size_t size)
250 {
251 static char prefix1[3];
252 static char prefix2[2];
253
254 if (prefix1[0] != comment_line_char) {
255 xsnprintf(prefix1, sizeof(prefix1), "%c ", comment_line_char);
256 xsnprintf(prefix2, sizeof(prefix2), "%c", comment_line_char);
257 }
258 add_lines(out, prefix1, prefix2, buf, size);
259 }
260
261 void strbuf_commented_addf(struct strbuf *sb, const char *fmt, ...)
262 {
263 va_list params;
264 struct strbuf buf = STRBUF_INIT;
265 int incomplete_line = sb->len && sb->buf[sb->len - 1] != '\n';
266
267 va_start(params, fmt);
268 strbuf_vaddf(&buf, fmt, params);
269 va_end(params);
270
271 strbuf_add_commented_lines(sb, buf.buf, buf.len);
272 if (incomplete_line)
273 sb->buf[--sb->len] = '\0';
274
275 strbuf_release(&buf);
276 }
277
278 void strbuf_vaddf(struct strbuf *sb, const char *fmt, va_list ap)
279 {
280 int len;
281 va_list cp;
282
283 if (!strbuf_avail(sb))
284 strbuf_grow(sb, 64);
285 va_copy(cp, ap);
286 len = vsnprintf(sb->buf + sb->len, sb->alloc - sb->len, fmt, cp);
287 va_end(cp);
288 if (len < 0)
289 die("BUG: your vsnprintf is broken (returned %d)", len);
290 if (len > strbuf_avail(sb)) {
291 strbuf_grow(sb, len);
292 len = vsnprintf(sb->buf + sb->len, sb->alloc - sb->len, fmt, ap);
293 if (len > strbuf_avail(sb))
294 die("BUG: your vsnprintf is broken (insatiable)");
295 }
296 strbuf_setlen(sb, sb->len + len);
297 }
298
299 void strbuf_expand(struct strbuf *sb, const char *format, expand_fn_t fn,
300 void *context)
301 {
302 for (;;) {
303 const char *percent;
304 size_t consumed;
305
306 percent = strchrnul(format, '%');
307 strbuf_add(sb, format, percent - format);
308 if (!*percent)
309 break;
310 format = percent + 1;
311
312 if (*format == '%') {
313 strbuf_addch(sb, '%');
314 format++;
315 continue;
316 }
317
318 consumed = fn(sb, format, context);
319 if (consumed)
320 format += consumed;
321 else
322 strbuf_addch(sb, '%');
323 }
324 }
325
326 size_t strbuf_expand_dict_cb(struct strbuf *sb, const char *placeholder,
327 void *context)
328 {
329 struct strbuf_expand_dict_entry *e = context;
330 size_t len;
331
332 for (; e->placeholder && (len = strlen(e->placeholder)); e++) {
333 if (!strncmp(placeholder, e->placeholder, len)) {
334 if (e->value)
335 strbuf_addstr(sb, e->value);
336 return len;
337 }
338 }
339 return 0;
340 }
341
342 void strbuf_addbuf_percentquote(struct strbuf *dst, const struct strbuf *src)
343 {
344 int i, len = src->len;
345
346 for (i = 0; i < len; i++) {
347 if (src->buf[i] == '%')
348 strbuf_addch(dst, '%');
349 strbuf_addch(dst, src->buf[i]);
350 }
351 }
352
353 size_t strbuf_fread(struct strbuf *sb, size_t size, FILE *f)
354 {
355 size_t res;
356 size_t oldalloc = sb->alloc;
357
358 strbuf_grow(sb, size);
359 res = fread(sb->buf + sb->len, 1, size, f);
360 if (res > 0)
361 strbuf_setlen(sb, sb->len + res);
362 else if (oldalloc == 0)
363 strbuf_release(sb);
364 return res;
365 }
366
367 ssize_t strbuf_read(struct strbuf *sb, int fd, size_t hint)
368 {
369 size_t oldlen = sb->len;
370 size_t oldalloc = sb->alloc;
371
372 strbuf_grow(sb, hint ? hint : 8192);
373 for (;;) {
374 ssize_t want = sb->alloc - sb->len - 1;
375 ssize_t got = read_in_full(fd, sb->buf + sb->len, want);
376
377 if (got < 0) {
378 if (oldalloc == 0)
379 strbuf_release(sb);
380 else
381 strbuf_setlen(sb, oldlen);
382 return -1;
383 }
384 sb->len += got;
385 if (got < want)
386 break;
387 strbuf_grow(sb, 8192);
388 }
389
390 sb->buf[sb->len] = '\0';
391 return sb->len - oldlen;
392 }
393
394 ssize_t strbuf_read_once(struct strbuf *sb, int fd, size_t hint)
395 {
396 size_t oldalloc = sb->alloc;
397 ssize_t cnt;
398
399 strbuf_grow(sb, hint ? hint : 8192);
400 cnt = xread(fd, sb->buf + sb->len, sb->alloc - sb->len - 1);
401 if (cnt > 0)
402 strbuf_setlen(sb, sb->len + cnt);
403 else if (oldalloc == 0)
404 strbuf_release(sb);
405 return cnt;
406 }
407
408 ssize_t strbuf_write(struct strbuf *sb, FILE *f)
409 {
410 return sb->len ? fwrite(sb->buf, 1, sb->len, f) : 0;
411 }
412
413
414 #define STRBUF_MAXLINK (2*PATH_MAX)
415
416 int strbuf_readlink(struct strbuf *sb, const char *path, size_t hint)
417 {
418 size_t oldalloc = sb->alloc;
419
420 if (hint < 32)
421 hint = 32;
422
423 while (hint < STRBUF_MAXLINK) {
424 int len;
425
426 strbuf_grow(sb, hint);
427 len = readlink(path, sb->buf, hint);
428 if (len < 0) {
429 if (errno != ERANGE)
430 break;
431 } else if (len < hint) {
432 strbuf_setlen(sb, len);
433 return 0;
434 }
435
436 /* .. the buffer was too small - try again */
437 hint *= 2;
438 }
439 if (oldalloc == 0)
440 strbuf_release(sb);
441 return -1;
442 }
443
444 int strbuf_getcwd(struct strbuf *sb)
445 {
446 size_t oldalloc = sb->alloc;
447 size_t guessed_len = 128;
448
449 for (;; guessed_len *= 2) {
450 strbuf_grow(sb, guessed_len);
451 if (getcwd(sb->buf, sb->alloc)) {
452 strbuf_setlen(sb, strlen(sb->buf));
453 return 0;
454 }
455 if (errno != ERANGE)
456 break;
457 }
458 if (oldalloc == 0)
459 strbuf_release(sb);
460 else
461 strbuf_reset(sb);
462 return -1;
463 }
464
465 #ifdef HAVE_GETDELIM
466 int strbuf_getwholeline(struct strbuf *sb, FILE *fp, int term)
467 {
468 ssize_t r;
469
470 if (feof(fp))
471 return EOF;
472
473 strbuf_reset(sb);
474
475 /* Translate slopbuf to NULL, as we cannot call realloc on it */
476 if (!sb->alloc)
477 sb->buf = NULL;
478 r = getdelim(&sb->buf, &sb->alloc, term, fp);
479
480 if (r > 0) {
481 sb->len = r;
482 return 0;
483 }
484 assert(r == -1);
485
486 /*
487 * Normally we would have called xrealloc, which will try to free
488 * memory and recover. But we have no way to tell getdelim() to do so.
489 * Worse, we cannot try to recover ENOMEM ourselves, because we have
490 * no idea how many bytes were read by getdelim.
491 *
492 * Dying here is reasonable. It mirrors what xrealloc would do on
493 * catastrophic memory failure. We skip the opportunity to free pack
494 * memory and retry, but that's unlikely to help for a malloc small
495 * enough to hold a single line of input, anyway.
496 */
497 if (errno == ENOMEM)
498 die("Out of memory, getdelim failed");
499
500 /*
501 * Restore strbuf invariants; if getdelim left us with a NULL pointer,
502 * we can just re-init, but otherwise we should make sure that our
503 * length is empty, and that the result is NUL-terminated.
504 */
505 if (!sb->buf)
506 strbuf_init(sb, 0);
507 else
508 strbuf_reset(sb);
509 return EOF;
510 }
511 #else
512 int strbuf_getwholeline(struct strbuf *sb, FILE *fp, int term)
513 {
514 int ch;
515
516 if (feof(fp))
517 return EOF;
518
519 strbuf_reset(sb);
520 flockfile(fp);
521 while ((ch = getc_unlocked(fp)) != EOF) {
522 if (!strbuf_avail(sb))
523 strbuf_grow(sb, 1);
524 sb->buf[sb->len++] = ch;
525 if (ch == term)
526 break;
527 }
528 funlockfile(fp);
529 if (ch == EOF && sb->len == 0)
530 return EOF;
531
532 sb->buf[sb->len] = '\0';
533 return 0;
534 }
535 #endif
536
537 static int strbuf_getdelim(struct strbuf *sb, FILE *fp, int term)
538 {
539 if (strbuf_getwholeline(sb, fp, term))
540 return EOF;
541 if (sb->buf[sb->len - 1] == term)
542 strbuf_setlen(sb, sb->len - 1);
543 return 0;
544 }
545
546 int strbuf_getline(struct strbuf *sb, FILE *fp)
547 {
548 if (strbuf_getwholeline(sb, fp, '\n'))
549 return EOF;
550 if (sb->buf[sb->len - 1] == '\n') {
551 strbuf_setlen(sb, sb->len - 1);
552 if (sb->len && sb->buf[sb->len - 1] == '\r')
553 strbuf_setlen(sb, sb->len - 1);
554 }
555 return 0;
556 }
557
558 int strbuf_getline_lf(struct strbuf *sb, FILE *fp)
559 {
560 return strbuf_getdelim(sb, fp, '\n');
561 }
562
563 int strbuf_getline_nul(struct strbuf *sb, FILE *fp)
564 {
565 return strbuf_getdelim(sb, fp, '\0');
566 }
567
568 int strbuf_getwholeline_fd(struct strbuf *sb, int fd, int term)
569 {
570 strbuf_reset(sb);
571
572 while (1) {
573 char ch;
574 ssize_t len = xread(fd, &ch, 1);
575 if (len <= 0)
576 return EOF;
577 strbuf_addch(sb, ch);
578 if (ch == term)
579 break;
580 }
581 return 0;
582 }
583
584 ssize_t strbuf_read_file(struct strbuf *sb, const char *path, size_t hint)
585 {
586 int fd;
587 ssize_t len;
588
589 fd = open(path, O_RDONLY);
590 if (fd < 0)
591 return -1;
592 len = strbuf_read(sb, fd, hint);
593 close(fd);
594 if (len < 0)
595 return -1;
596
597 return len;
598 }
599
600 void strbuf_add_lines(struct strbuf *out, const char *prefix,
601 const char *buf, size_t size)
602 {
603 add_lines(out, prefix, NULL, buf, size);
604 }
605
606 void strbuf_addstr_xml_quoted(struct strbuf *buf, const char *s)
607 {
608 while (*s) {
609 size_t len = strcspn(s, "\"<>&");
610 strbuf_add(buf, s, len);
611 s += len;
612 switch (*s) {
613 case '"':
614 strbuf_addstr(buf, "&quot;");
615 break;
616 case '<':
617 strbuf_addstr(buf, "&lt;");
618 break;
619 case '>':
620 strbuf_addstr(buf, "&gt;");
621 break;
622 case '&':
623 strbuf_addstr(buf, "&amp;");
624 break;
625 case 0:
626 return;
627 }
628 s++;
629 }
630 }
631
632 static int is_rfc3986_reserved(char ch)
633 {
634 switch (ch) {
635 case '!': case '*': case '\'': case '(': case ')': case ';':
636 case ':': case '@': case '&': case '=': case '+': case '$':
637 case ',': case '/': case '?': case '#': case '[': case ']':
638 return 1;
639 }
640 return 0;
641 }
642
643 static int is_rfc3986_unreserved(char ch)
644 {
645 return isalnum(ch) ||
646 ch == '-' || ch == '_' || ch == '.' || ch == '~';
647 }
648
649 static void strbuf_add_urlencode(struct strbuf *sb, const char *s, size_t len,
650 int reserved)
651 {
652 strbuf_grow(sb, len);
653 while (len--) {
654 char ch = *s++;
655 if (is_rfc3986_unreserved(ch) ||
656 (!reserved && is_rfc3986_reserved(ch)))
657 strbuf_addch(sb, ch);
658 else
659 strbuf_addf(sb, "%%%02x", ch);
660 }
661 }
662
663 void strbuf_addstr_urlencode(struct strbuf *sb, const char *s,
664 int reserved)
665 {
666 strbuf_add_urlencode(sb, s, strlen(s), reserved);
667 }
668
669 void strbuf_humanise_bytes(struct strbuf *buf, off_t bytes)
670 {
671 if (bytes > 1 << 30) {
672 strbuf_addf(buf, "%u.%2.2u GiB",
673 (int)(bytes >> 30),
674 (int)(bytes & ((1 << 30) - 1)) / 10737419);
675 } else if (bytes > 1 << 20) {
676 int x = bytes + 5243; /* for rounding */
677 strbuf_addf(buf, "%u.%2.2u MiB",
678 x >> 20, ((x & ((1 << 20) - 1)) * 100) >> 20);
679 } else if (bytes > 1 << 10) {
680 int x = bytes + 5; /* for rounding */
681 strbuf_addf(buf, "%u.%2.2u KiB",
682 x >> 10, ((x & ((1 << 10) - 1)) * 100) >> 10);
683 } else {
684 strbuf_addf(buf, "%u bytes", (int)bytes);
685 }
686 }
687
688 void strbuf_add_absolute_path(struct strbuf *sb, const char *path)
689 {
690 if (!*path)
691 die("The empty string is not a valid path");
692 if (!is_absolute_path(path)) {
693 struct stat cwd_stat, pwd_stat;
694 size_t orig_len = sb->len;
695 char *cwd = xgetcwd();
696 char *pwd = getenv("PWD");
697 if (pwd && strcmp(pwd, cwd) &&
698 !stat(cwd, &cwd_stat) &&
699 (cwd_stat.st_dev || cwd_stat.st_ino) &&
700 !stat(pwd, &pwd_stat) &&
701 pwd_stat.st_dev == cwd_stat.st_dev &&
702 pwd_stat.st_ino == cwd_stat.st_ino)
703 strbuf_addstr(sb, pwd);
704 else
705 strbuf_addstr(sb, cwd);
706 if (sb->len > orig_len && !is_dir_sep(sb->buf[sb->len - 1]))
707 strbuf_addch(sb, '/');
708 free(cwd);
709 }
710 strbuf_addstr(sb, path);
711 }
712
713 void strbuf_add_real_path(struct strbuf *sb, const char *path)
714 {
715 if (sb->len) {
716 struct strbuf resolved = STRBUF_INIT;
717 strbuf_realpath(&resolved, path, 1);
718 strbuf_addbuf(sb, &resolved);
719 strbuf_release(&resolved);
720 } else
721 strbuf_realpath(sb, path, 1);
722 }
723
724 int printf_ln(const char *fmt, ...)
725 {
726 int ret;
727 va_list ap;
728 va_start(ap, fmt);
729 ret = vprintf(fmt, ap);
730 va_end(ap);
731 if (ret < 0 || putchar('\n') == EOF)
732 return -1;
733 return ret + 1;
734 }
735
736 int fprintf_ln(FILE *fp, const char *fmt, ...)
737 {
738 int ret;
739 va_list ap;
740 va_start(ap, fmt);
741 ret = vfprintf(fp, fmt, ap);
742 va_end(ap);
743 if (ret < 0 || putc('\n', fp) == EOF)
744 return -1;
745 return ret + 1;
746 }
747
748 char *xstrdup_tolower(const char *string)
749 {
750 char *result;
751 size_t len, i;
752
753 len = strlen(string);
754 result = xmallocz(len);
755 for (i = 0; i < len; i++)
756 result[i] = tolower(string[i]);
757 result[i] = '\0';
758 return result;
759 }
760
761 char *xstrvfmt(const char *fmt, va_list ap)
762 {
763 struct strbuf buf = STRBUF_INIT;
764 strbuf_vaddf(&buf, fmt, ap);
765 return strbuf_detach(&buf, NULL);
766 }
767
768 char *xstrfmt(const char *fmt, ...)
769 {
770 va_list ap;
771 char *ret;
772
773 va_start(ap, fmt);
774 ret = xstrvfmt(fmt, ap);
775 va_end(ap);
776
777 return ret;
778 }
779
780 void strbuf_addftime(struct strbuf *sb, const char *fmt, const struct tm *tm)
781 {
782 size_t hint = 128;
783 size_t len;
784
785 if (!*fmt)
786 return;
787
788 strbuf_grow(sb, hint);
789 len = strftime(sb->buf + sb->len, sb->alloc - sb->len, fmt, tm);
790
791 if (!len) {
792 /*
793 * strftime reports "0" if it could not fit the result in the buffer.
794 * Unfortunately, it also reports "0" if the requested time string
795 * takes 0 bytes. So our strategy is to munge the format so that the
796 * output contains at least one character, and then drop the extra
797 * character before returning.
798 */
799 struct strbuf munged_fmt = STRBUF_INIT;
800 strbuf_addf(&munged_fmt, "%s ", fmt);
801 while (!len) {
802 hint *= 2;
803 strbuf_grow(sb, hint);
804 len = strftime(sb->buf + sb->len, sb->alloc - sb->len,
805 munged_fmt.buf, tm);
806 }
807 strbuf_release(&munged_fmt);
808 len--; /* drop munged space */
809 }
810 strbuf_setlen(sb, sb->len + len);
811 }
812
813 void strbuf_add_unique_abbrev(struct strbuf *sb, const unsigned char *sha1,
814 int abbrev_len)
815 {
816 int r;
817 strbuf_grow(sb, GIT_SHA1_HEXSZ + 1);
818 r = find_unique_abbrev_r(sb->buf + sb->len, sha1, abbrev_len);
819 strbuf_setlen(sb, sb->len + r);
820 }
821
822 /*
823 * Returns the length of a line, without trailing spaces.
824 *
825 * If the line ends with newline, it will be removed too.
826 */
827 static size_t cleanup(char *line, size_t len)
828 {
829 while (len) {
830 unsigned char c = line[len - 1];
831 if (!isspace(c))
832 break;
833 len--;
834 }
835
836 return len;
837 }
838
839 /*
840 * Remove empty lines from the beginning and end
841 * and also trailing spaces from every line.
842 *
843 * Turn multiple consecutive empty lines between paragraphs
844 * into just one empty line.
845 *
846 * If the input has only empty lines and spaces,
847 * no output will be produced.
848 *
849 * If last line does not have a newline at the end, one is added.
850 *
851 * Enable skip_comments to skip every line starting with comment
852 * character.
853 */
854 void strbuf_stripspace(struct strbuf *sb, int skip_comments)
855 {
856 int empties = 0;
857 size_t i, j, len, newlen;
858 char *eol;
859
860 /* We may have to add a newline. */
861 strbuf_grow(sb, 1);
862
863 for (i = j = 0; i < sb->len; i += len, j += newlen) {
864 eol = memchr(sb->buf + i, '\n', sb->len - i);
865 len = eol ? eol - (sb->buf + i) + 1 : sb->len - i;
866
867 if (skip_comments && len && sb->buf[i] == comment_line_char) {
868 newlen = 0;
869 continue;
870 }
871 newlen = cleanup(sb->buf + i, len);
872
873 /* Not just an empty line? */
874 if (newlen) {
875 if (empties > 0 && j > 0)
876 sb->buf[j++] = '\n';
877 empties = 0;
878 memmove(sb->buf + j, sb->buf + i, newlen);
879 sb->buf[newlen + j++] = '\n';
880 } else {
881 empties++;
882 }
883 }
884
885 strbuf_setlen(sb, j);
886 }
887
888 int strbuf_normalize_path(struct strbuf *src)
889 {
890 struct strbuf dst = STRBUF_INIT;
891
892 strbuf_grow(&dst, src->len);
893 if (normalize_path_copy(dst.buf, src->buf) < 0) {
894 strbuf_release(&dst);
895 return -1;
896 }
897
898 /*
899 * normalize_path does not tell us the new length, so we have to
900 * compute it by looking for the new NUL it placed
901 */
902 strbuf_setlen(&dst, strlen(dst.buf));
903 strbuf_swap(src, &dst);
904 strbuf_release(&dst);
905 return 0;
906 }