2 * Various trivial helper wrappers around standard functions
7 static int memory_limit_check(size_t size
, int gentle
)
9 static size_t limit
= 0;
11 limit
= git_env_ulong("GIT_ALLOC_LIMIT", 0);
17 error("attempting to allocate %"PRIuMAX
" over limit %"PRIuMAX
,
18 (uintmax_t)size
, (uintmax_t)limit
);
21 die("attempting to allocate %"PRIuMAX
" over limit %"PRIuMAX
,
22 (uintmax_t)size
, (uintmax_t)limit
);
27 char *xstrdup(const char *str
)
29 char *ret
= strdup(str
);
31 die("Out of memory, strdup failed");
35 static void *do_xmalloc(size_t size
, int gentle
)
39 if (memory_limit_check(size
, gentle
))
46 die("Out of memory, malloc failed (tried to allocate %lu bytes)",
49 error("Out of memory, malloc failed (tried to allocate %lu bytes)",
55 memset(ret
, 0xA5, size
);
60 void *xmalloc(size_t size
)
62 return do_xmalloc(size
, 0);
65 static void *do_xmallocz(size_t size
, int gentle
)
68 if (unsigned_add_overflows(size
, 1)) {
70 error("Data too large to fit into virtual memory space.");
73 die("Data too large to fit into virtual memory space.");
75 ret
= do_xmalloc(size
+ 1, gentle
);
77 ((char*)ret
)[size
] = 0;
81 void *xmallocz(size_t size
)
83 return do_xmallocz(size
, 0);
86 void *xmallocz_gently(size_t size
)
88 return do_xmallocz(size
, 1);
92 * xmemdupz() allocates (len + 1) bytes of memory, duplicates "len" bytes of
93 * "data" to the allocated memory, zero terminates the allocated memory,
94 * and returns a pointer to the allocated memory. If the allocation fails,
97 void *xmemdupz(const void *data
, size_t len
)
99 return memcpy(xmallocz(len
), data
, len
);
102 char *xstrndup(const char *str
, size_t len
)
104 char *p
= memchr(str
, '\0', len
);
105 return xmemdupz(str
, p
? p
- str
: len
);
108 void *xrealloc(void *ptr
, size_t size
)
112 memory_limit_check(size
, 0);
113 ret
= realloc(ptr
, size
);
115 ret
= realloc(ptr
, 1);
117 die("Out of memory, realloc failed");
121 void *xcalloc(size_t nmemb
, size_t size
)
125 if (unsigned_mult_overflows(nmemb
, size
))
126 die("data too large to fit into virtual memory space");
128 memory_limit_check(size
* nmemb
, 0);
129 ret
= calloc(nmemb
, size
);
130 if (!ret
&& (!nmemb
|| !size
))
133 die("Out of memory, calloc failed");
138 * Limit size of IO chunks, because huge chunks only cause pain. OS X
139 * 64-bit is buggy, returning EINVAL if len >= INT_MAX; and even in
140 * the absence of bugs, large chunks can result in bad latencies when
141 * you decide to kill the process.
143 * We pick 8 MiB as our default, but if the platform defines SSIZE_MAX
144 * that is smaller than that, clip it to SSIZE_MAX, as a call to
145 * read(2) or write(2) larger than that is allowed to fail. As the last
146 * resort, we allow a port to pass via CFLAGS e.g. "-DMAX_IO_SIZE=value"
147 * to override this, if the definition of SSIZE_MAX given by the platform
151 # define MAX_IO_SIZE_DEFAULT (8*1024*1024)
152 # if defined(SSIZE_MAX) && (SSIZE_MAX < MAX_IO_SIZE_DEFAULT)
153 # define MAX_IO_SIZE SSIZE_MAX
155 # define MAX_IO_SIZE MAX_IO_SIZE_DEFAULT
160 * xopen() is the same as open(), but it die()s if the open() fails.
162 int xopen(const char *path
, int oflag
, ...)
168 * va_arg() will have undefined behavior if the specified type is not
169 * compatible with the argument type. Since integers are promoted to
170 * ints, we fetch the next argument as an int, and then cast it to a
171 * mode_t to avoid undefined behavior.
175 mode
= va_arg(ap
, int);
179 int fd
= open(path
, oflag
, mode
);
185 if ((oflag
& O_RDWR
) == O_RDWR
)
186 die_errno(_("could not open '%s' for reading and writing"), path
);
187 else if ((oflag
& O_WRONLY
) == O_WRONLY
)
188 die_errno(_("could not open '%s' for writing"), path
);
190 die_errno(_("could not open '%s' for reading"), path
);
194 static int handle_nonblock(int fd
, short poll_events
, int err
)
198 if (err
!= EAGAIN
&& err
!= EWOULDBLOCK
)
202 pfd
.events
= poll_events
;
205 * no need to check for errors, here;
206 * a subsequent read/write will detect unrecoverable errors
213 * xread() is the same a read(), but it automatically restarts read()
214 * operations with a recoverable error (EAGAIN and EINTR). xread()
215 * DOES NOT GUARANTEE that "len" bytes is read even if the data is available.
217 ssize_t
xread(int fd
, void *buf
, size_t len
)
220 if (len
> MAX_IO_SIZE
)
223 nr
= read(fd
, buf
, len
);
227 if (handle_nonblock(fd
, POLLIN
, errno
))
235 * xwrite() is the same a write(), but it automatically restarts write()
236 * operations with a recoverable error (EAGAIN and EINTR). xwrite() DOES NOT
237 * GUARANTEE that "len" bytes is written even if the operation is successful.
239 ssize_t
xwrite(int fd
, const void *buf
, size_t len
)
242 if (len
> MAX_IO_SIZE
)
245 nr
= write(fd
, buf
, len
);
249 if (handle_nonblock(fd
, POLLOUT
, errno
))
258 * xpread() is the same as pread(), but it automatically restarts pread()
259 * operations with a recoverable error (EAGAIN and EINTR). xpread() DOES
260 * NOT GUARANTEE that "len" bytes is read even if the data is available.
262 ssize_t
xpread(int fd
, void *buf
, size_t len
, off_t offset
)
265 if (len
> MAX_IO_SIZE
)
268 nr
= pread(fd
, buf
, len
, offset
);
269 if ((nr
< 0) && (errno
== EAGAIN
|| errno
== EINTR
))
275 ssize_t
read_in_full(int fd
, void *buf
, size_t count
)
281 ssize_t loaded
= xread(fd
, p
, count
);
294 ssize_t
write_in_full(int fd
, const void *buf
, size_t count
)
300 ssize_t written
= xwrite(fd
, p
, count
);
315 ssize_t
pread_in_full(int fd
, void *buf
, size_t count
, off_t offset
)
321 ssize_t loaded
= xpread(fd
, p
, count
, offset
);
339 die_errno("dup failed");
344 * xfopen() is the same as fopen(), but it die()s if the fopen() fails.
346 FILE *xfopen(const char *path
, const char *mode
)
349 FILE *fp
= fopen(path
, mode
);
355 if (*mode
&& mode
[1] == '+')
356 die_errno(_("could not open '%s' for reading and writing"), path
);
357 else if (*mode
== 'w' || *mode
== 'a')
358 die_errno(_("could not open '%s' for writing"), path
);
360 die_errno(_("could not open '%s' for reading"), path
);
364 FILE *xfdopen(int fd
, const char *mode
)
366 FILE *stream
= fdopen(fd
, mode
);
368 die_errno("Out of memory? fdopen failed");
372 FILE *fopen_for_writing(const char *path
)
374 FILE *ret
= fopen(path
, "w");
376 if (!ret
&& errno
== EPERM
) {
378 ret
= fopen(path
, "w");
385 static void warn_on_inaccessible(const char *path
)
387 warning_errno(_("unable to access '%s'"), path
);
390 int warn_on_fopen_errors(const char *path
)
392 if (errno
!= ENOENT
&& errno
!= ENOTDIR
) {
393 warn_on_inaccessible(path
);
400 FILE *fopen_or_warn(const char *path
, const char *mode
)
402 FILE *fp
= fopen(path
, mode
);
407 warn_on_fopen_errors(path
);
411 int xmkstemp(char *filename_template
)
414 char origtemplate
[PATH_MAX
];
415 strlcpy(origtemplate
, filename_template
, sizeof(origtemplate
));
417 fd
= mkstemp(filename_template
);
419 int saved_errno
= errno
;
420 const char *nonrelative_template
;
422 if (strlen(filename_template
) != strlen(origtemplate
))
423 filename_template
= origtemplate
;
425 nonrelative_template
= absolute_path(filename_template
);
427 die_errno("Unable to create temporary file '%s'",
428 nonrelative_template
);
433 /* Adapted from libiberty's mkstemp.c. */
436 #define TMP_MAX 16384
438 int git_mkstemps_mode(char *pattern
, int suffix_len
, int mode
)
440 static const char letters
[] =
441 "abcdefghijklmnopqrstuvwxyz"
442 "ABCDEFGHIJKLMNOPQRSTUVWXYZ"
444 static const int num_letters
= 62;
447 char *filename_template
;
451 len
= strlen(pattern
);
453 if (len
< 6 + suffix_len
) {
458 if (strncmp(&pattern
[len
- 6 - suffix_len
], "XXXXXX", 6)) {
464 * Replace pattern's XXXXXX characters with randomness.
465 * Try TMP_MAX different filenames.
467 gettimeofday(&tv
, NULL
);
468 value
= ((uint64_t)tv
.tv_usec
<< 16) ^ tv
.tv_sec
^ getpid();
469 filename_template
= &pattern
[len
- 6 - suffix_len
];
470 for (count
= 0; count
< TMP_MAX
; ++count
) {
472 /* Fill in the random bits. */
473 filename_template
[0] = letters
[v
% num_letters
]; v
/= num_letters
;
474 filename_template
[1] = letters
[v
% num_letters
]; v
/= num_letters
;
475 filename_template
[2] = letters
[v
% num_letters
]; v
/= num_letters
;
476 filename_template
[3] = letters
[v
% num_letters
]; v
/= num_letters
;
477 filename_template
[4] = letters
[v
% num_letters
]; v
/= num_letters
;
478 filename_template
[5] = letters
[v
% num_letters
]; v
/= num_letters
;
480 fd
= open(pattern
, O_CREAT
| O_EXCL
| O_RDWR
, mode
);
484 * Fatal error (EPERM, ENOSPC etc).
485 * It doesn't make sense to loop.
490 * This is a random value. It is only necessary that
491 * the next TMP_MAX values generated by adding 7777 to
492 * VALUE are different with (module 2^32).
496 /* We return the null string if we can't find a unique file name. */
501 int git_mkstemp_mode(char *pattern
, int mode
)
503 /* mkstemp is just mkstemps with no suffix */
504 return git_mkstemps_mode(pattern
, 0, mode
);
507 int xmkstemp_mode(char *filename_template
, int mode
)
510 char origtemplate
[PATH_MAX
];
511 strlcpy(origtemplate
, filename_template
, sizeof(origtemplate
));
513 fd
= git_mkstemp_mode(filename_template
, mode
);
515 int saved_errno
= errno
;
516 const char *nonrelative_template
;
518 if (!filename_template
[0])
519 filename_template
= origtemplate
;
521 nonrelative_template
= absolute_path(filename_template
);
523 die_errno("Unable to create temporary file '%s'",
524 nonrelative_template
);
529 static int warn_if_unremovable(const char *op
, const char *file
, int rc
)
532 if (!rc
|| errno
== ENOENT
)
535 warning_errno("unable to %s '%s'", op
, file
);
540 int unlink_or_msg(const char *file
, struct strbuf
*err
)
542 int rc
= unlink(file
);
546 if (!rc
|| errno
== ENOENT
)
549 strbuf_addf(err
, "unable to unlink '%s': %s",
550 file
, strerror(errno
));
554 int unlink_or_warn(const char *file
)
556 return warn_if_unremovable("unlink", file
, unlink(file
));
559 int rmdir_or_warn(const char *file
)
561 return warn_if_unremovable("rmdir", file
, rmdir(file
));
564 int remove_or_warn(unsigned int mode
, const char *file
)
566 return S_ISGITLINK(mode
) ? rmdir_or_warn(file
) : unlink_or_warn(file
);
569 static int access_error_is_ok(int err
, unsigned flag
)
571 return (is_missing_file_error(err
) ||
572 ((flag
& ACCESS_EACCES_OK
) && err
== EACCES
));
575 int access_or_warn(const char *path
, int mode
, unsigned flag
)
577 int ret
= access(path
, mode
);
578 if (ret
&& !access_error_is_ok(errno
, flag
))
579 warn_on_inaccessible(path
);
583 int access_or_die(const char *path
, int mode
, unsigned flag
)
585 int ret
= access(path
, mode
);
586 if (ret
&& !access_error_is_ok(errno
, flag
))
587 die_errno(_("unable to access '%s'"), path
);
593 struct strbuf sb
= STRBUF_INIT
;
594 if (strbuf_getcwd(&sb
))
595 die_errno(_("unable to get current working directory"));
596 return strbuf_detach(&sb
, NULL
);
599 int xsnprintf(char *dst
, size_t max
, const char *fmt
, ...)
605 len
= vsnprintf(dst
, max
, fmt
, ap
);
609 BUG("your snprintf is broken");
611 BUG("attempt to snprintf into too-small buffer");
615 void write_file_buf(const char *path
, const char *buf
, size_t len
)
617 int fd
= xopen(path
, O_WRONLY
| O_CREAT
| O_TRUNC
, 0666);
618 if (write_in_full(fd
, buf
, len
) < 0)
619 die_errno(_("could not write to '%s'"), path
);
621 die_errno(_("could not close '%s'"), path
);
624 void write_file(const char *path
, const char *fmt
, ...)
627 struct strbuf sb
= STRBUF_INIT
;
629 va_start(params
, fmt
);
630 strbuf_vaddf(&sb
, fmt
, params
);
633 strbuf_complete_line(&sb
);
635 write_file_buf(path
, sb
.buf
, sb
.len
);
639 void sleep_millisec(int millisec
)
641 poll(NULL
, 0, millisec
);
644 int xgethostname(char *buf
, size_t len
)
647 * If the full hostname doesn't fit in buf, POSIX does not
648 * specify whether the buffer will be null-terminated, so to
649 * be safe, do it ourselves.
651 int ret
= gethostname(buf
, len
);
657 int is_empty_or_missing_file(const char *filename
)
661 if (stat(filename
, &st
) < 0) {
664 die_errno(_("could not stat %s"), filename
);