real_path: convert real_path_internal to strbuf_realpath

Change the name of real_path_internal to strbuf_realpath.  In addition
push the static strbuf up to its callers and instead take as a
parameter a pointer to a strbuf to use for the final result.

This change makes strbuf_realpath reentrant.

Signed-off-by: Brandon Williams <bmwill@google.com>
Signed-off-by: Junio C Hamano <gitster@pobox.com>
This commit is contained in:
Brandon Williams 2016-12-12 10:16:53 -08:00 коммит произвёл Junio C Hamano
Родитель 05b458c104
Коммит a1ae48410d
2 изменённых файлов: 27 добавлений и 28 удалений

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@ -55,21 +55,17 @@ static void get_next_component(struct strbuf *next, struct strbuf *remaining)
* Return the real path (i.e., absolute path, with symlinks resolved * Return the real path (i.e., absolute path, with symlinks resolved
* and extra slashes removed) equivalent to the specified path. (If * and extra slashes removed) equivalent to the specified path. (If
* you want an absolute path but don't mind links, use * you want an absolute path but don't mind links, use
* absolute_path().) The return value is a pointer to a static * absolute_path().) Places the resolved realpath in the provided strbuf.
* buffer.
* *
* The directory part of path (i.e., everything up to the last * The directory part of path (i.e., everything up to the last
* dir_sep) must denote a valid, existing directory, but the last * dir_sep) must denote a valid, existing directory, but the last
* component need not exist. If die_on_error is set, then die with an * component need not exist. If die_on_error is set, then die with an
* informative error message if there is a problem. Otherwise, return * informative error message if there is a problem. Otherwise, return
* NULL on errors (without generating any output). * NULL on errors (without generating any output).
*
* If path is our buffer, then return path, as it's already what the
* user wants.
*/ */
static const char *real_path_internal(const char *path, int die_on_error) char *strbuf_realpath(struct strbuf *resolved, const char *path,
int die_on_error)
{ {
static struct strbuf resolved = STRBUF_INIT;
struct strbuf remaining = STRBUF_INIT; struct strbuf remaining = STRBUF_INIT;
struct strbuf next = STRBUF_INIT; struct strbuf next = STRBUF_INIT;
struct strbuf symlink = STRBUF_INIT; struct strbuf symlink = STRBUF_INIT;
@ -77,10 +73,6 @@ static const char *real_path_internal(const char *path, int die_on_error)
int num_symlinks = 0; int num_symlinks = 0;
struct stat st; struct stat st;
/* We've already done it */
if (path == resolved.buf)
return path;
if (!*path) { if (!*path) {
if (die_on_error) if (die_on_error)
die("The empty string is not a valid path"); die("The empty string is not a valid path");
@ -88,16 +80,16 @@ static const char *real_path_internal(const char *path, int die_on_error)
goto error_out; goto error_out;
} }
strbuf_reset(&resolved); strbuf_reset(resolved);
if (is_absolute_path(path)) { if (is_absolute_path(path)) {
/* absolute path; start with only root as being resolved */ /* absolute path; start with only root as being resolved */
int offset = offset_1st_component(path); int offset = offset_1st_component(path);
strbuf_add(&resolved, path, offset); strbuf_add(resolved, path, offset);
strbuf_addstr(&remaining, path + offset); strbuf_addstr(&remaining, path + offset);
} else { } else {
/* relative path; can use CWD as the initial resolved path */ /* relative path; can use CWD as the initial resolved path */
if (strbuf_getcwd(&resolved)) { if (strbuf_getcwd(resolved)) {
if (die_on_error) if (die_on_error)
die_errno("unable to get current working directory"); die_errno("unable to get current working directory");
else else
@ -116,21 +108,21 @@ static const char *real_path_internal(const char *path, int die_on_error)
continue; /* '.' component */ continue; /* '.' component */
} else if (next.len == 2 && !strcmp(next.buf, "..")) { } else if (next.len == 2 && !strcmp(next.buf, "..")) {
/* '..' component; strip the last path component */ /* '..' component; strip the last path component */
strip_last_component(&resolved); strip_last_component(resolved);
continue; continue;
} }
/* append the next component and resolve resultant path */ /* append the next component and resolve resultant path */
if (!is_dir_sep(resolved.buf[resolved.len - 1])) if (!is_dir_sep(resolved->buf[resolved->len - 1]))
strbuf_addch(&resolved, '/'); strbuf_addch(resolved, '/');
strbuf_addbuf(&resolved, &next); strbuf_addbuf(resolved, &next);
if (lstat(resolved.buf, &st)) { if (lstat(resolved->buf, &st)) {
/* error out unless this was the last component */ /* error out unless this was the last component */
if (errno != ENOENT || remaining.len) { if (errno != ENOENT || remaining.len) {
if (die_on_error) if (die_on_error)
die_errno("Invalid path '%s'", die_errno("Invalid path '%s'",
resolved.buf); resolved->buf);
else else
goto error_out; goto error_out;
} }
@ -146,12 +138,12 @@ static const char *real_path_internal(const char *path, int die_on_error)
goto error_out; goto error_out;
} }
len = strbuf_readlink(&symlink, resolved.buf, len = strbuf_readlink(&symlink, resolved->buf,
st.st_size); st.st_size);
if (len < 0) { if (len < 0) {
if (die_on_error) if (die_on_error)
die_errno("Invalid symlink '%s'", die_errno("Invalid symlink '%s'",
resolved.buf); resolved->buf);
else else
goto error_out; goto error_out;
} }
@ -159,8 +151,8 @@ static const char *real_path_internal(const char *path, int die_on_error)
if (is_absolute_path(symlink.buf)) { if (is_absolute_path(symlink.buf)) {
/* absolute symlink; set resolved to root */ /* absolute symlink; set resolved to root */
int offset = offset_1st_component(symlink.buf); int offset = offset_1st_component(symlink.buf);
strbuf_reset(&resolved); strbuf_reset(resolved);
strbuf_add(&resolved, symlink.buf, offset); strbuf_add(resolved, symlink.buf, offset);
strbuf_remove(&symlink, 0, offset); strbuf_remove(&symlink, 0, offset);
} else { } else {
/* /*
@ -168,7 +160,7 @@ static const char *real_path_internal(const char *path, int die_on_error)
* strip off the last component since it will * strip off the last component since it will
* be replaced with the contents of the symlink * be replaced with the contents of the symlink
*/ */
strip_last_component(&resolved); strip_last_component(resolved);
} }
/* /*
@ -188,24 +180,29 @@ static const char *real_path_internal(const char *path, int die_on_error)
} }
} }
retval = resolved.buf; retval = resolved->buf;
error_out: error_out:
strbuf_release(&remaining); strbuf_release(&remaining);
strbuf_release(&next); strbuf_release(&next);
strbuf_release(&symlink); strbuf_release(&symlink);
if (!retval)
strbuf_reset(resolved);
return retval; return retval;
} }
const char *real_path(const char *path) const char *real_path(const char *path)
{ {
return real_path_internal(path, 1); static struct strbuf realpath = STRBUF_INIT;
return strbuf_realpath(&realpath, path, 1);
} }
const char *real_path_if_valid(const char *path) const char *real_path_if_valid(const char *path)
{ {
return real_path_internal(path, 0); static struct strbuf realpath = STRBUF_INIT;
return strbuf_realpath(&realpath, path, 0);
} }
/* /*

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@ -1064,6 +1064,8 @@ static inline int is_absolute_path(const char *path)
return is_dir_sep(path[0]) || has_dos_drive_prefix(path); return is_dir_sep(path[0]) || has_dos_drive_prefix(path);
} }
int is_directory(const char *); int is_directory(const char *);
char *strbuf_realpath(struct strbuf *resolved, const char *path,
int die_on_error);
const char *real_path(const char *path); const char *real_path(const char *path);
const char *real_path_if_valid(const char *path); const char *real_path_if_valid(const char *path);
const char *absolute_path(const char *path); const char *absolute_path(const char *path);