2 * Various trivial helper wrappers around standard functions
6 char *xstrdup(const char *str
)
8 char *ret
= strdup(str
);
10 release_pack_memory(strlen(str
) + 1, -1);
13 die("Out of memory, strdup failed");
18 void *xmalloc(size_t size
)
20 void *ret
= malloc(size
);
24 release_pack_memory(size
, -1);
29 die("Out of memory, malloc failed");
32 memset(ret
, 0xA5, size
);
37 void *xmallocz(size_t size
)
41 die("Data too large to fit into virtual memory space.");
42 ret
= xmalloc(size
+ 1);
43 ((char*)ret
)[size
] = 0;
48 * xmemdupz() allocates (len + 1) bytes of memory, duplicates "len" bytes of
49 * "data" to the allocated memory, zero terminates the allocated memory,
50 * and returns a pointer to the allocated memory. If the allocation fails,
53 void *xmemdupz(const void *data
, size_t len
)
55 return memcpy(xmallocz(len
), data
, len
);
58 char *xstrndup(const char *str
, size_t len
)
60 char *p
= memchr(str
, '\0', len
);
61 return xmemdupz(str
, p
? p
- str
: len
);
64 void *xrealloc(void *ptr
, size_t size
)
66 void *ret
= realloc(ptr
, size
);
68 ret
= realloc(ptr
, 1);
70 release_pack_memory(size
, -1);
71 ret
= realloc(ptr
, size
);
73 ret
= realloc(ptr
, 1);
75 die("Out of memory, realloc failed");
80 void *xcalloc(size_t nmemb
, size_t size
)
82 void *ret
= calloc(nmemb
, size
);
83 if (!ret
&& (!nmemb
|| !size
))
86 release_pack_memory(nmemb
* size
, -1);
87 ret
= calloc(nmemb
, size
);
88 if (!ret
&& (!nmemb
|| !size
))
91 die("Out of memory, calloc failed");
96 void *xmmap(void *start
, size_t length
,
97 int prot
, int flags
, int fd
, off_t offset
)
99 void *ret
= mmap(start
, length
, prot
, flags
, fd
, offset
);
100 if (ret
== MAP_FAILED
) {
103 release_pack_memory(length
, fd
);
104 ret
= mmap(start
, length
, prot
, flags
, fd
, offset
);
105 if (ret
== MAP_FAILED
)
106 die_errno("Out of memory? mmap failed");
112 * xread() is the same a read(), but it automatically restarts read()
113 * operations with a recoverable error (EAGAIN and EINTR). xread()
114 * DOES NOT GUARANTEE that "len" bytes is read even if the data is available.
116 ssize_t
xread(int fd
, void *buf
, size_t len
)
120 nr
= read(fd
, buf
, len
);
121 if ((nr
< 0) && (errno
== EAGAIN
|| errno
== EINTR
))
128 * xwrite() is the same a write(), but it automatically restarts write()
129 * operations with a recoverable error (EAGAIN and EINTR). xwrite() DOES NOT
130 * GUARANTEE that "len" bytes is written even if the operation is successful.
132 ssize_t
xwrite(int fd
, const void *buf
, size_t len
)
136 nr
= write(fd
, buf
, len
);
137 if ((nr
< 0) && (errno
== EAGAIN
|| errno
== EINTR
))
143 ssize_t
read_in_full(int fd
, void *buf
, size_t count
)
149 ssize_t loaded
= xread(fd
, p
, count
);
151 return total
? total
: loaded
;
160 ssize_t
write_in_full(int fd
, const void *buf
, size_t count
)
166 ssize_t written
= xwrite(fd
, p
, count
);
185 die_errno("dup failed");
189 FILE *xfdopen(int fd
, const char *mode
)
191 FILE *stream
= fdopen(fd
, mode
);
193 die_errno("Out of memory? fdopen failed");
197 int xmkstemp(char *template)
201 fd
= mkstemp(template);
203 die_errno("Unable to create temporary file");
208 * zlib wrappers to make sure we don't silently miss errors
211 void git_inflate_init(z_streamp strm
)
215 switch (inflateInit(strm
)) {
220 err
= "out of memory";
222 case Z_VERSION_ERROR
:
223 err
= "wrong version";
228 die("inflateInit: %s (%s)", err
, strm
->msg
? strm
->msg
: "no message");
231 void git_inflate_end(z_streamp strm
)
233 if (inflateEnd(strm
) != Z_OK
)
234 error("inflateEnd: %s", strm
->msg
? strm
->msg
: "failed");
237 int git_inflate(z_streamp strm
, int flush
)
239 int ret
= inflate(strm
, flush
);
243 /* Out of memory is fatal. */
245 die("inflate: out of memory");
247 /* Data corruption errors: we may want to recover from them (fsck) */
249 err
= "needs dictionary"; break;
251 err
= "data stream error"; break;
253 err
= "stream consistency error"; break;
255 err
= "unknown error"; break;
257 /* Z_BUF_ERROR: normal, needs more space in the output buffer */
263 error("inflate: %s (%s)", err
, strm
->msg
? strm
->msg
: "no message");
267 int odb_mkstemp(char *template, size_t limit
, const char *pattern
)
271 snprintf(template, limit
, "%s/%s",
272 get_object_directory(), pattern
);
273 fd
= mkstemp(template);
278 /* some mkstemp implementations erase template on failure */
279 snprintf(template, limit
, "%s/%s",
280 get_object_directory(), pattern
);
281 safe_create_leading_directories(template);
282 return xmkstemp(template);
285 int odb_pack_keep(char *name
, size_t namesz
, unsigned char *sha1
)
289 snprintf(name
, namesz
, "%s/pack/pack-%s.keep",
290 get_object_directory(), sha1_to_hex(sha1
));
291 fd
= open(name
, O_RDWR
|O_CREAT
|O_EXCL
, 0600);
296 safe_create_leading_directories(name
);
297 return open(name
, O_RDWR
|O_CREAT
|O_EXCL
, 0600);
300 int unlink_or_warn(const char *file
)
302 int rc
= unlink(file
);
307 warning("unable to unlink %s: %s",
308 file
, strerror(errno
));