fdopen_lock_file(): access a lockfile using stdio
Add a new function, fdopen_lock_file(), which returns a FILE pointer open to the lockfile. If a stream is open on a lock_file object, it is closed using fclose() on commit, rollback, or close_lock_file(). This change will allow callers to use stdio to write to a lockfile without having to muck around in the internal representation of the lock_file object (callers will be rewritten in upcoming commits). Signed-off-by: Michael Haggerty <mhagger@alum.mit.edu> Signed-off-by: Junio C Hamano <gitster@pobox.com>
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@ -42,9 +42,13 @@ The caller:
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of the final destination (e.g. `$GIT_DIR/index`) to
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of the final destination (e.g. `$GIT_DIR/index`) to
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`hold_lock_file_for_update` or `hold_lock_file_for_append`.
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`hold_lock_file_for_update` or `hold_lock_file_for_append`.
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* Writes new content for the destination file by writing to the file
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* Writes new content for the destination file by either:
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descriptor returned by those functions (also available via
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`lock->fd`).
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* writing to the file descriptor returned by the `hold_lock_file_*`
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functions (also available via `lock->fd`).
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* calling `fdopen_lock_file` to get a `FILE` pointer for the open
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file and writing to the file using stdio.
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When finished writing, the caller can:
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When finished writing, the caller can:
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@ -70,10 +74,10 @@ any uncommitted changes.
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If you need to close the file descriptor you obtained from a
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If you need to close the file descriptor you obtained from a
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`hold_lock_file_*` function yourself, do so by calling
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`hold_lock_file_*` function yourself, do so by calling
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`close_lock_file`. You should never call `close(2)` yourself!
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`close_lock_file`. You should never call `close(2)` or `fclose(3)`
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Otherwise the `struct lock_file` structure would still think that the
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yourself! Otherwise the `struct lock_file` structure would still think
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file descriptor needs to be closed, and a commit or rollback would
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that the file descriptor needs to be closed, and a commit or rollback
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result in duplicate calls to `close(2)`. Worse yet, if you `close(2)`
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would result in duplicate calls to `close(2)`. Worse yet, if you close
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and then later open another file descriptor for a completely different
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and then later open another file descriptor for a completely different
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purpose, then a commit or rollback might close that unrelated file
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purpose, then a commit or rollback might close that unrelated file
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descriptor.
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descriptor.
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@ -143,6 +147,13 @@ hold_lock_file_for_append::
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the existing contents of the file (if any) to the lockfile and
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the existing contents of the file (if any) to the lockfile and
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position its write pointer at the end of the file.
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position its write pointer at the end of the file.
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fdopen_lock_file::
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Associate a stdio stream with the lockfile. Return NULL
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(*without* rolling back the lockfile) on error. The stream is
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closed automatically when `close_lock_file` is called or when
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the file is committed or rolled back.
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get_locked_file_path::
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get_locked_file_path::
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Return the path of the file that is locked by the specified
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Return the path of the file that is locked by the specified
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@ -179,10 +190,11 @@ close_lock_file::
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Take a pointer to the `struct lock_file` initialized with an
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Take a pointer to the `struct lock_file` initialized with an
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earlier call to `hold_lock_file_for_update` or
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earlier call to `hold_lock_file_for_update` or
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`hold_lock_file_for_append`, and close the file descriptor.
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`hold_lock_file_for_append`. Close the file descriptor (and
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Return 0 upon success. On failure to `close(2)`, return a
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the file pointer if it has been opened using
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negative value and roll back the lock file. Usually
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`fdopen_lock_file`). Return 0 upon success. On failure to
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`commit_lock_file`, `commit_lock_file_to`, or
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`close(2)`, return a negative value and roll back the lock
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file. Usually `commit_lock_file`, `commit_lock_file_to`, or
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`rollback_lock_file` should eventually be called if
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`rollback_lock_file` should eventually be called if
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`close_lock_file` succeeds.
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`close_lock_file` succeeds.
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46
lockfile.c
46
lockfile.c
@ -7,20 +7,29 @@
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static struct lock_file *volatile lock_file_list;
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static struct lock_file *volatile lock_file_list;
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static void remove_lock_files(void)
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static void remove_lock_files(int skip_fclose)
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{
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{
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pid_t me = getpid();
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pid_t me = getpid();
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while (lock_file_list) {
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while (lock_file_list) {
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if (lock_file_list->owner == me)
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if (lock_file_list->owner == me) {
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/* fclose() is not safe to call in a signal handler */
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if (skip_fclose)
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lock_file_list->fp = NULL;
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rollback_lock_file(lock_file_list);
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rollback_lock_file(lock_file_list);
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}
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lock_file_list = lock_file_list->next;
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lock_file_list = lock_file_list->next;
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}
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}
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}
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}
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static void remove_lock_files_on_exit(void)
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{
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remove_lock_files(0);
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}
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static void remove_lock_files_on_signal(int signo)
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static void remove_lock_files_on_signal(int signo)
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{
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{
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remove_lock_files();
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remove_lock_files(1);
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sigchain_pop(signo);
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sigchain_pop(signo);
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raise(signo);
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raise(signo);
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}
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}
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@ -97,7 +106,7 @@ static int lock_file(struct lock_file *lk, const char *path, int flags)
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if (!lock_file_list) {
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if (!lock_file_list) {
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/* One-time initialization */
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/* One-time initialization */
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sigchain_push_common(remove_lock_files_on_signal);
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sigchain_push_common(remove_lock_files_on_signal);
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atexit(remove_lock_files);
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atexit(remove_lock_files_on_exit);
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}
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}
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if (lk->active)
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if (lk->active)
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@ -106,6 +115,7 @@ static int lock_file(struct lock_file *lk, const char *path, int flags)
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if (!lk->on_list) {
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if (!lk->on_list) {
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/* Initialize *lk and add it to lock_file_list: */
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/* Initialize *lk and add it to lock_file_list: */
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lk->fd = -1;
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lk->fd = -1;
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lk->fp = NULL;
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lk->active = 0;
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lk->active = 0;
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lk->owner = 0;
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lk->owner = 0;
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strbuf_init(&lk->filename, pathlen + LOCK_SUFFIX_LEN);
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strbuf_init(&lk->filename, pathlen + LOCK_SUFFIX_LEN);
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@ -214,6 +224,17 @@ int hold_lock_file_for_append(struct lock_file *lk, const char *path, int flags)
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return fd;
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return fd;
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}
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}
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FILE *fdopen_lock_file(struct lock_file *lk, const char *mode)
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{
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if (!lk->active)
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die("BUG: fdopen_lock_file() called for unlocked object");
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if (lk->fp)
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die("BUG: fdopen_lock_file() called twice for file '%s'", lk->filename.buf);
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lk->fp = fdopen(lk->fd, mode);
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return lk->fp;
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}
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char *get_locked_file_path(struct lock_file *lk)
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char *get_locked_file_path(struct lock_file *lk)
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{
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{
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if (!lk->active)
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if (!lk->active)
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@ -226,17 +247,32 @@ char *get_locked_file_path(struct lock_file *lk)
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int close_lock_file(struct lock_file *lk)
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int close_lock_file(struct lock_file *lk)
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{
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{
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int fd = lk->fd;
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int fd = lk->fd;
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FILE *fp = lk->fp;
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int err;
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if (fd < 0)
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if (fd < 0)
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return 0;
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return 0;
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lk->fd = -1;
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lk->fd = -1;
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if (close(fd)) {
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if (fp) {
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lk->fp = NULL;
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/*
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* Note: no short-circuiting here; we want to fclose()
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* in any case!
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*/
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err = ferror(fp) | fclose(fp);
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} else {
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err = close(fd);
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}
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if (err) {
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int save_errno = errno;
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int save_errno = errno;
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rollback_lock_file(lk);
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rollback_lock_file(lk);
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errno = save_errno;
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errno = save_errno;
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return -1;
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return -1;
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}
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}
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return 0;
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return 0;
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}
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}
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@ -34,6 +34,8 @@
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* - active is set
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* - active is set
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* - filename holds the filename of the lockfile
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* - filename holds the filename of the lockfile
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* - fd holds a file descriptor open for writing to the lockfile
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* - fd holds a file descriptor open for writing to the lockfile
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* - fp holds a pointer to an open FILE object if and only if
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* fdopen_lock_file() has been called on the object
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* - owner holds the PID of the process that locked the file
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* - owner holds the PID of the process that locked the file
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*
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*
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* - Locked, lockfile closed (after successful close_lock_file()).
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* - Locked, lockfile closed (after successful close_lock_file()).
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@ -56,6 +58,7 @@ struct lock_file {
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struct lock_file *volatile next;
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struct lock_file *volatile next;
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volatile sig_atomic_t active;
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volatile sig_atomic_t active;
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volatile int fd;
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volatile int fd;
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FILE *volatile fp;
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volatile pid_t owner;
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volatile pid_t owner;
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char on_list;
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char on_list;
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struct strbuf filename;
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struct strbuf filename;
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@ -74,6 +77,7 @@ extern void unable_to_lock_message(const char *path, int err,
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extern NORETURN void unable_to_lock_die(const char *path, int err);
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extern NORETURN void unable_to_lock_die(const char *path, int err);
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extern int hold_lock_file_for_update(struct lock_file *, const char *path, int);
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extern int hold_lock_file_for_update(struct lock_file *, const char *path, int);
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extern int hold_lock_file_for_append(struct lock_file *, const char *path, int);
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extern int hold_lock_file_for_append(struct lock_file *, const char *path, int);
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extern FILE *fdopen_lock_file(struct lock_file *, const char *mode);
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extern char *get_locked_file_path(struct lock_file *);
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extern char *get_locked_file_path(struct lock_file *);
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extern int commit_lock_file_to(struct lock_file *, const char *path);
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extern int commit_lock_file_to(struct lock_file *, const char *path);
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extern int commit_lock_file(struct lock_file *);
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extern int commit_lock_file(struct lock_file *);
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