strbuf.hon commit merge-recursive: ensure we write updates for directory-renamed file (c5b761f)
   1#ifndef STRBUF_H
   2#define STRBUF_H
   3
   4struct string_list;
   5
   6/**
   7 * strbuf's are meant to be used with all the usual C string and memory
   8 * APIs. Given that the length of the buffer is known, it's often better to
   9 * use the mem* functions than a str* one (memchr vs. strchr e.g.).
  10 * Though, one has to be careful about the fact that str* functions often
  11 * stop on NULs and that strbufs may have embedded NULs.
  12 *
  13 * A strbuf is NUL terminated for convenience, but no function in the
  14 * strbuf API actually relies on the string being free of NULs.
  15 *
  16 * strbufs have some invariants that are very important to keep in mind:
  17 *
  18 *  - The `buf` member is never NULL, so it can be used in any usual C
  19 *    string operations safely. strbuf's _have_ to be initialized either by
  20 *    `strbuf_init()` or by `= STRBUF_INIT` before the invariants, though.
  21 *
  22 *    Do *not* assume anything on what `buf` really is (e.g. if it is
  23 *    allocated memory or not), use `strbuf_detach()` to unwrap a memory
  24 *    buffer from its strbuf shell in a safe way. That is the sole supported
  25 *    way. This will give you a malloced buffer that you can later `free()`.
  26 *
  27 *    However, it is totally safe to modify anything in the string pointed by
  28 *    the `buf` member, between the indices `0` and `len-1` (inclusive).
  29 *
  30 *  - The `buf` member is a byte array that has at least `len + 1` bytes
  31 *    allocated. The extra byte is used to store a `'\0'`, allowing the
  32 *    `buf` member to be a valid C-string. Every strbuf function ensure this
  33 *    invariant is preserved.
  34 *
  35 *    NOTE: It is OK to "play" with the buffer directly if you work it this
  36 *    way:
  37 *
  38 *        strbuf_grow(sb, SOME_SIZE); <1>
  39 *        strbuf_setlen(sb, sb->len + SOME_OTHER_SIZE);
  40 *
  41 *    <1> Here, the memory array starting at `sb->buf`, and of length
  42 *    `strbuf_avail(sb)` is all yours, and you can be sure that
  43 *    `strbuf_avail(sb)` is at least `SOME_SIZE`.
  44 *
  45 *    NOTE: `SOME_OTHER_SIZE` must be smaller or equal to `strbuf_avail(sb)`.
  46 *
  47 *    Doing so is safe, though if it has to be done in many places, adding the
  48 *    missing API to the strbuf module is the way to go.
  49 *
  50 *    WARNING: Do _not_ assume that the area that is yours is of size `alloc
  51 *    - 1` even if it's true in the current implementation. Alloc is somehow a
  52 *    "private" member that should not be messed with. Use `strbuf_avail()`
  53 *    instead.
  54*/
  55
  56/**
  57 * Data Structures
  58 * ---------------
  59 */
  60
  61/**
  62 * This is the string buffer structure. The `len` member can be used to
  63 * determine the current length of the string, and `buf` member provides
  64 * access to the string itself.
  65 */
  66struct strbuf {
  67        size_t alloc;
  68        size_t len;
  69        char *buf;
  70};
  71
  72extern char strbuf_slopbuf[];
  73#define STRBUF_INIT  { .alloc = 0, .len = 0, .buf = strbuf_slopbuf }
  74
  75/**
  76 * Life Cycle Functions
  77 * --------------------
  78 */
  79
  80/**
  81 * Initialize the structure. The second parameter can be zero or a bigger
  82 * number to allocate memory, in case you want to prevent further reallocs.
  83 */
  84extern void strbuf_init(struct strbuf *, size_t);
  85
  86/**
  87 * Release a string buffer and the memory it used. After this call, the
  88 * strbuf points to an empty string that does not need to be free()ed, as
  89 * if it had been set to `STRBUF_INIT` and never modified.
  90 *
  91 * To clear a strbuf in preparation for further use without the overhead
  92 * of free()ing and malloc()ing again, use strbuf_reset() instead.
  93 */
  94extern void strbuf_release(struct strbuf *);
  95
  96/**
  97 * Detach the string from the strbuf and returns it; you now own the
  98 * storage the string occupies and it is your responsibility from then on
  99 * to release it with `free(3)` when you are done with it.
 100 *
 101 * The strbuf that previously held the string is reset to `STRBUF_INIT` so
 102 * it can be reused after calling this function.
 103 */
 104extern char *strbuf_detach(struct strbuf *, size_t *);
 105
 106/**
 107 * Attach a string to a buffer. You should specify the string to attach,
 108 * the current length of the string and the amount of allocated memory.
 109 * The amount must be larger than the string length, because the string you
 110 * pass is supposed to be a NUL-terminated string.  This string _must_ be
 111 * malloc()ed, and after attaching, the pointer cannot be relied upon
 112 * anymore, and neither be free()d directly.
 113 */
 114extern void strbuf_attach(struct strbuf *, void *, size_t, size_t);
 115
 116/**
 117 * Swap the contents of two string buffers.
 118 */
 119static inline void strbuf_swap(struct strbuf *a, struct strbuf *b)
 120{
 121        SWAP(*a, *b);
 122}
 123
 124
 125/**
 126 * Functions related to the size of the buffer
 127 * -------------------------------------------
 128 */
 129
 130/**
 131 * Determine the amount of allocated but unused memory.
 132 */
 133static inline size_t strbuf_avail(const struct strbuf *sb)
 134{
 135        return sb->alloc ? sb->alloc - sb->len - 1 : 0;
 136}
 137
 138/**
 139 * Ensure that at least this amount of unused memory is available after
 140 * `len`. This is used when you know a typical size for what you will add
 141 * and want to avoid repetitive automatic resizing of the underlying buffer.
 142 * This is never a needed operation, but can be critical for performance in
 143 * some cases.
 144 */
 145extern void strbuf_grow(struct strbuf *, size_t);
 146
 147/**
 148 * Set the length of the buffer to a given value. This function does *not*
 149 * allocate new memory, so you should not perform a `strbuf_setlen()` to a
 150 * length that is larger than `len + strbuf_avail()`. `strbuf_setlen()` is
 151 * just meant as a 'please fix invariants from this strbuf I just messed
 152 * with'.
 153 */
 154static inline void strbuf_setlen(struct strbuf *sb, size_t len)
 155{
 156        if (len > (sb->alloc ? sb->alloc - 1 : 0))
 157                die("BUG: strbuf_setlen() beyond buffer");
 158        sb->len = len;
 159        if (sb->buf != strbuf_slopbuf)
 160                sb->buf[len] = '\0';
 161        else
 162                assert(!strbuf_slopbuf[0]);
 163}
 164
 165/**
 166 * Empty the buffer by setting the size of it to zero.
 167 */
 168#define strbuf_reset(sb)  strbuf_setlen(sb, 0)
 169
 170
 171/**
 172 * Functions related to the contents of the buffer
 173 * -----------------------------------------------
 174 */
 175
 176/**
 177 * Strip whitespace from the beginning (`ltrim`), end (`rtrim`), or both side
 178 * (`trim`) of a string.
 179 */
 180extern void strbuf_trim(struct strbuf *);
 181extern void strbuf_rtrim(struct strbuf *);
 182extern void strbuf_ltrim(struct strbuf *);
 183
 184/**
 185 * Replace the contents of the strbuf with a reencoded form.  Returns -1
 186 * on error, 0 on success.
 187 */
 188extern int strbuf_reencode(struct strbuf *sb, const char *from, const char *to);
 189
 190/**
 191 * Lowercase each character in the buffer using `tolower`.
 192 */
 193extern void strbuf_tolower(struct strbuf *sb);
 194
 195/**
 196 * Compare two buffers. Returns an integer less than, equal to, or greater
 197 * than zero if the first buffer is found, respectively, to be less than,
 198 * to match, or be greater than the second buffer.
 199 */
 200extern int strbuf_cmp(const struct strbuf *, const struct strbuf *);
 201
 202
 203/**
 204 * Adding data to the buffer
 205 * -------------------------
 206 *
 207 * NOTE: All of the functions in this section will grow the buffer as
 208 * necessary.  If they fail for some reason other than memory shortage and the
 209 * buffer hadn't been allocated before (i.e. the `struct strbuf` was set to
 210 * `STRBUF_INIT`), then they will free() it.
 211 */
 212
 213/**
 214 * Add a single character to the buffer.
 215 */
 216static inline void strbuf_addch(struct strbuf *sb, int c)
 217{
 218        if (!strbuf_avail(sb))
 219                strbuf_grow(sb, 1);
 220        sb->buf[sb->len++] = c;
 221        sb->buf[sb->len] = '\0';
 222}
 223
 224/**
 225 * Add a character the specified number of times to the buffer.
 226 */
 227extern void strbuf_addchars(struct strbuf *sb, int c, size_t n);
 228
 229/**
 230 * Insert data to the given position of the buffer. The remaining contents
 231 * will be shifted, not overwritten.
 232 */
 233extern void strbuf_insert(struct strbuf *, size_t pos, const void *, size_t);
 234
 235/**
 236 * Remove given amount of data from a given position of the buffer.
 237 */
 238extern void strbuf_remove(struct strbuf *, size_t pos, size_t len);
 239
 240/**
 241 * Remove the bytes between `pos..pos+len` and replace it with the given
 242 * data.
 243 */
 244extern void strbuf_splice(struct strbuf *, size_t pos, size_t len,
 245                          const void *, size_t);
 246
 247/**
 248 * Add a NUL-terminated string to the buffer. Each line will be prepended
 249 * by a comment character and a blank.
 250 */
 251extern void strbuf_add_commented_lines(struct strbuf *out, const char *buf, size_t size);
 252
 253
 254/**
 255 * Add data of given length to the buffer.
 256 */
 257extern void strbuf_add(struct strbuf *, const void *, size_t);
 258
 259/**
 260 * Add a NUL-terminated string to the buffer.
 261 *
 262 * NOTE: This function will *always* be implemented as an inline or a macro
 263 * using strlen, meaning that this is efficient to write things like:
 264 *
 265 *     strbuf_addstr(sb, "immediate string");
 266 *
 267 */
 268static inline void strbuf_addstr(struct strbuf *sb, const char *s)
 269{
 270        strbuf_add(sb, s, strlen(s));
 271}
 272
 273/**
 274 * Copy the contents of another buffer at the end of the current one.
 275 */
 276extern void strbuf_addbuf(struct strbuf *sb, const struct strbuf *sb2);
 277
 278/**
 279 * This function can be used to expand a format string containing
 280 * placeholders. To that end, it parses the string and calls the specified
 281 * function for every percent sign found.
 282 *
 283 * The callback function is given a pointer to the character after the `%`
 284 * and a pointer to the struct strbuf.  It is expected to add the expanded
 285 * version of the placeholder to the strbuf, e.g. to add a newline
 286 * character if the letter `n` appears after a `%`.  The function returns
 287 * the length of the placeholder recognized and `strbuf_expand()` skips
 288 * over it.
 289 *
 290 * The format `%%` is automatically expanded to a single `%` as a quoting
 291 * mechanism; callers do not need to handle the `%` placeholder themselves,
 292 * and the callback function will not be invoked for this placeholder.
 293 *
 294 * All other characters (non-percent and not skipped ones) are copied
 295 * verbatim to the strbuf.  If the callback returned zero, meaning that the
 296 * placeholder is unknown, then the percent sign is copied, too.
 297 *
 298 * In order to facilitate caching and to make it possible to give
 299 * parameters to the callback, `strbuf_expand()` passes a context pointer,
 300 * which can be used by the programmer of the callback as she sees fit.
 301 */
 302typedef size_t (*expand_fn_t) (struct strbuf *sb, const char *placeholder, void *context);
 303extern void strbuf_expand(struct strbuf *sb, const char *format, expand_fn_t fn, void *context);
 304
 305/**
 306 * Used as callback for `strbuf_expand()`, expects an array of
 307 * struct strbuf_expand_dict_entry as context, i.e. pairs of
 308 * placeholder and replacement string.  The array needs to be
 309 * terminated by an entry with placeholder set to NULL.
 310 */
 311struct strbuf_expand_dict_entry {
 312        const char *placeholder;
 313        const char *value;
 314};
 315extern size_t strbuf_expand_dict_cb(struct strbuf *sb, const char *placeholder, void *context);
 316
 317/**
 318 * Append the contents of one strbuf to another, quoting any
 319 * percent signs ("%") into double-percents ("%%") in the
 320 * destination. This is useful for literal data to be fed to either
 321 * strbuf_expand or to the *printf family of functions.
 322 */
 323extern void strbuf_addbuf_percentquote(struct strbuf *dst, const struct strbuf *src);
 324
 325/**
 326 * Append the given byte size as a human-readable string (i.e. 12.23 KiB,
 327 * 3.50 MiB).
 328 */
 329extern void strbuf_humanise_bytes(struct strbuf *buf, off_t bytes);
 330
 331/**
 332 * Add a formatted string to the buffer.
 333 */
 334__attribute__((format (printf,2,3)))
 335extern void strbuf_addf(struct strbuf *sb, const char *fmt, ...);
 336
 337/**
 338 * Add a formatted string prepended by a comment character and a
 339 * blank to the buffer.
 340 */
 341__attribute__((format (printf, 2, 3)))
 342extern void strbuf_commented_addf(struct strbuf *sb, const char *fmt, ...);
 343
 344__attribute__((format (printf,2,0)))
 345extern void strbuf_vaddf(struct strbuf *sb, const char *fmt, va_list ap);
 346
 347/**
 348 * Add the time specified by `tm`, as formatted by `strftime`.
 349 * `tz_offset` is in decimal hhmm format, e.g. -600 means six hours west
 350 * of Greenwich, and it's used to expand %z internally.  However, tokens
 351 * with modifiers (e.g. %Ez) are passed to `strftime`.
 352 * `suppress_tz_name`, when set, expands %Z internally to the empty
 353 * string rather than passing it to `strftime`.
 354 */
 355extern void strbuf_addftime(struct strbuf *sb, const char *fmt,
 356                            const struct tm *tm, int tz_offset,
 357                            int suppress_tz_name);
 358
 359/**
 360 * Read a given size of data from a FILE* pointer to the buffer.
 361 *
 362 * NOTE: The buffer is rewound if the read fails. If -1 is returned,
 363 * `errno` must be consulted, like you would do for `read(3)`.
 364 * `strbuf_read()`, `strbuf_read_file()` and `strbuf_getline_*()`
 365 * family of functions have the same behaviour as well.
 366 */
 367extern size_t strbuf_fread(struct strbuf *, size_t, FILE *);
 368
 369/**
 370 * Read the contents of a given file descriptor. The third argument can be
 371 * used to give a hint about the file size, to avoid reallocs.  If read fails,
 372 * any partial read is undone.
 373 */
 374extern ssize_t strbuf_read(struct strbuf *, int fd, size_t hint);
 375
 376/**
 377 * Read the contents of a given file descriptor partially by using only one
 378 * attempt of xread. The third argument can be used to give a hint about the
 379 * file size, to avoid reallocs. Returns the number of new bytes appended to
 380 * the sb.
 381 */
 382extern ssize_t strbuf_read_once(struct strbuf *, int fd, size_t hint);
 383
 384/**
 385 * Read the contents of a file, specified by its path. The third argument
 386 * can be used to give a hint about the file size, to avoid reallocs.
 387 * Return the number of bytes read or a negative value if some error
 388 * occurred while opening or reading the file.
 389 */
 390extern ssize_t strbuf_read_file(struct strbuf *sb, const char *path, size_t hint);
 391
 392/**
 393 * Read the target of a symbolic link, specified by its path.  The third
 394 * argument can be used to give a hint about the size, to avoid reallocs.
 395 */
 396extern int strbuf_readlink(struct strbuf *sb, const char *path, size_t hint);
 397
 398/**
 399 * Write the whole content of the strbuf to the stream not stopping at
 400 * NUL bytes.
 401 */
 402extern ssize_t strbuf_write(struct strbuf *sb, FILE *stream);
 403
 404/**
 405 * Read a line from a FILE *, overwriting the existing contents of
 406 * the strbuf.  The strbuf_getline*() family of functions share
 407 * this signature, but have different line termination conventions.
 408 *
 409 * Reading stops after the terminator or at EOF.  The terminator
 410 * is removed from the buffer before returning.  Returns 0 unless
 411 * there was nothing left before EOF, in which case it returns `EOF`.
 412 */
 413typedef int (*strbuf_getline_fn)(struct strbuf *, FILE *);
 414
 415/* Uses LF as the line terminator */
 416extern int strbuf_getline_lf(struct strbuf *sb, FILE *fp);
 417
 418/* Uses NUL as the line terminator */
 419extern int strbuf_getline_nul(struct strbuf *sb, FILE *fp);
 420
 421/*
 422 * Similar to strbuf_getline_lf(), but additionally treats a CR that
 423 * comes immediately before the LF as part of the terminator.
 424 * This is the most friendly version to be used to read "text" files
 425 * that can come from platforms whose native text format is CRLF
 426 * terminated.
 427 */
 428extern int strbuf_getline(struct strbuf *, FILE *);
 429
 430
 431/**
 432 * Like `strbuf_getline`, but keeps the trailing terminator (if
 433 * any) in the buffer.
 434 */
 435extern int strbuf_getwholeline(struct strbuf *, FILE *, int);
 436
 437/**
 438 * Like `strbuf_getwholeline`, but operates on a file descriptor.
 439 * It reads one character at a time, so it is very slow.  Do not
 440 * use it unless you need the correct position in the file
 441 * descriptor.
 442 */
 443extern int strbuf_getwholeline_fd(struct strbuf *, int, int);
 444
 445/**
 446 * Set the buffer to the path of the current working directory.
 447 */
 448extern int strbuf_getcwd(struct strbuf *sb);
 449
 450/**
 451 * Add a path to a buffer, converting a relative path to an
 452 * absolute one in the process.  Symbolic links are not
 453 * resolved.
 454 */
 455extern void strbuf_add_absolute_path(struct strbuf *sb, const char *path);
 456
 457/**
 458 * Canonize `path` (make it absolute, resolve symlinks, remove extra
 459 * slashes) and append it to `sb`.  Die with an informative error
 460 * message if there is a problem.
 461 *
 462 * The directory part of `path` (i.e., everything up to the last
 463 * dir_sep) must denote a valid, existing directory, but the last
 464 * component need not exist.
 465 *
 466 * Callers that don't mind links should use the more lightweight
 467 * strbuf_add_absolute_path() instead.
 468 */
 469extern void strbuf_add_real_path(struct strbuf *sb, const char *path);
 470
 471
 472/**
 473 * Normalize in-place the path contained in the strbuf. See
 474 * normalize_path_copy() for details. If an error occurs, the contents of "sb"
 475 * are left untouched, and -1 is returned.
 476 */
 477extern int strbuf_normalize_path(struct strbuf *sb);
 478
 479/**
 480 * Strip whitespace from a buffer. The second parameter controls if
 481 * comments are considered contents to be removed or not.
 482 */
 483extern void strbuf_stripspace(struct strbuf *buf, int skip_comments);
 484
 485static inline int strbuf_strip_suffix(struct strbuf *sb, const char *suffix)
 486{
 487        if (strip_suffix_mem(sb->buf, &sb->len, suffix)) {
 488                strbuf_setlen(sb, sb->len);
 489                return 1;
 490        } else
 491                return 0;
 492}
 493
 494/**
 495 * Split str (of length slen) at the specified terminator character.
 496 * Return a null-terminated array of pointers to strbuf objects
 497 * holding the substrings.  The substrings include the terminator,
 498 * except for the last substring, which might be unterminated if the
 499 * original string did not end with a terminator.  If max is positive,
 500 * then split the string into at most max substrings (with the last
 501 * substring containing everything following the (max-1)th terminator
 502 * character).
 503 *
 504 * The most generic form is `strbuf_split_buf`, which takes an arbitrary
 505 * pointer/len buffer. The `_str` variant takes a NUL-terminated string,
 506 * the `_max` variant takes a strbuf, and just `strbuf_split` is a convenience
 507 * wrapper to drop the `max` parameter.
 508 *
 509 * For lighter-weight alternatives, see string_list_split() and
 510 * string_list_split_in_place().
 511 */
 512extern struct strbuf **strbuf_split_buf(const char *, size_t,
 513                                        int terminator, int max);
 514
 515static inline struct strbuf **strbuf_split_str(const char *str,
 516                                               int terminator, int max)
 517{
 518        return strbuf_split_buf(str, strlen(str), terminator, max);
 519}
 520
 521static inline struct strbuf **strbuf_split_max(const struct strbuf *sb,
 522                                                int terminator, int max)
 523{
 524        return strbuf_split_buf(sb->buf, sb->len, terminator, max);
 525}
 526
 527static inline struct strbuf **strbuf_split(const struct strbuf *sb,
 528                                           int terminator)
 529{
 530        return strbuf_split_max(sb, terminator, 0);
 531}
 532
 533/*
 534 * Adds all strings of a string list to the strbuf, separated by the given
 535 * separator.  For example, if sep is
 536 *   ', '
 537 * and slist contains
 538 *   ['element1', 'element2', ..., 'elementN'],
 539 * then write:
 540 *   'element1, element2, ..., elementN'
 541 * to str.  If only one element, just write "element1" to str.
 542 */
 543extern void strbuf_add_separated_string_list(struct strbuf *str,
 544                                             const char *sep,
 545                                             struct string_list *slist);
 546
 547/**
 548 * Free a NULL-terminated list of strbufs (for example, the return
 549 * values of the strbuf_split*() functions).
 550 */
 551extern void strbuf_list_free(struct strbuf **);
 552
 553/**
 554 * Add the abbreviation, as generated by find_unique_abbrev, of `sha1` to
 555 * the strbuf `sb`.
 556 */
 557extern void strbuf_add_unique_abbrev(struct strbuf *sb,
 558                                     const unsigned char *sha1,
 559                                     int abbrev_len);
 560
 561/**
 562 * Launch the user preferred editor to edit a file and fill the buffer
 563 * with the file's contents upon the user completing their editing. The
 564 * third argument can be used to set the environment which the editor is
 565 * run in. If the buffer is NULL the editor is launched as usual but the
 566 * file's contents are not read into the buffer upon completion.
 567 */
 568extern int launch_editor(const char *path, struct strbuf *buffer, const char *const *env);
 569
 570extern void strbuf_add_lines(struct strbuf *sb, const char *prefix, const char *buf, size_t size);
 571
 572/**
 573 * Append s to sb, with the characters '<', '>', '&' and '"' converted
 574 * into XML entities.
 575 */
 576extern void strbuf_addstr_xml_quoted(struct strbuf *sb, const char *s);
 577
 578/**
 579 * "Complete" the contents of `sb` by ensuring that either it ends with the
 580 * character `term`, or it is empty.  This can be used, for example,
 581 * to ensure that text ends with a newline, but without creating an empty
 582 * blank line if there is no content in the first place.
 583 */
 584static inline void strbuf_complete(struct strbuf *sb, char term)
 585{
 586        if (sb->len && sb->buf[sb->len - 1] != term)
 587                strbuf_addch(sb, term);
 588}
 589
 590static inline void strbuf_complete_line(struct strbuf *sb)
 591{
 592        strbuf_complete(sb, '\n');
 593}
 594
 595/*
 596 * Copy "name" to "sb", expanding any special @-marks as handled by
 597 * interpret_branch_name(). The result is a non-qualified branch name
 598 * (so "foo" or "origin/master" instead of "refs/heads/foo" or
 599 * "refs/remotes/origin/master").
 600 *
 601 * Note that the resulting name may not be a syntactically valid refname.
 602 *
 603 * If "allowed" is non-zero, restrict the set of allowed expansions. See
 604 * interpret_branch_name() for details.
 605 */
 606extern void strbuf_branchname(struct strbuf *sb, const char *name,
 607                              unsigned allowed);
 608
 609/*
 610 * Like strbuf_branchname() above, but confirm that the result is
 611 * syntactically valid to be used as a local branch name in refs/heads/.
 612 *
 613 * The return value is "0" if the result is valid, and "-1" otherwise.
 614 */
 615extern int strbuf_check_branch_ref(struct strbuf *sb, const char *name);
 616
 617extern void strbuf_addstr_urlencode(struct strbuf *, const char *,
 618                                    int reserved);
 619
 620__attribute__((format (printf,1,2)))
 621extern int printf_ln(const char *fmt, ...);
 622__attribute__((format (printf,2,3)))
 623extern int fprintf_ln(FILE *fp, const char *fmt, ...);
 624
 625char *xstrdup_tolower(const char *);
 626
 627/**
 628 * Create a newly allocated string using printf format. You can do this easily
 629 * with a strbuf, but this provides a shortcut to save a few lines.
 630 */
 631__attribute__((format (printf, 1, 0)))
 632char *xstrvfmt(const char *fmt, va_list ap);
 633__attribute__((format (printf, 1, 2)))
 634char *xstrfmt(const char *fmt, ...);
 635
 636#endif /* STRBUF_H */