/* fall through */
return text_eol_is_crlf() ? EOL_CRLF : EOL_LF;
}
- warning("Illegal crlf_action %d\n", (int)crlf_action);
+ warning(_("illegal crlf_action %d"), (int)crlf_action);
return core_eol;
}
* CRLFs would not be restored by checkout
*/
if (conv_flags & CONV_EOL_RNDTRP_DIE)
- die(_("CRLF would be replaced by LF in %s."), path);
+ die(_("CRLF would be replaced by LF in %s"), path);
else if (conv_flags & CONV_EOL_RNDTRP_WARN)
warning(_("CRLF will be replaced by LF in %s.\n"
"The file will have its original line"
- " endings in your working directory."), path);
+ " endings in your working directory"), path);
} else if (old_stats->lonelf && !new_stats->lonelf ) {
/*
* CRLFs would be added by checkout
else if (conv_flags & CONV_EOL_RNDTRP_WARN)
warning(_("LF will be replaced by CRLF in %s.\n"
"The file will have its original line"
- " endings in your working directory."), path);
+ " endings in your working directory"), path);
}
}
dst = reencode_string_len(src, src_len, enc, default_encoding,
&dst_len);
if (!dst) {
- error("failed to encode '%s' from %s to %s",
- path, default_encoding, enc);
+ error(_("failed to encode '%s' from %s to %s"),
+ path, default_encoding, enc);
return 0;
}
if (start_command(&child_process)) {
strbuf_release(&cmd);
- return error("cannot fork to run external filter '%s'", params->cmd);
+ return error(_("cannot fork to run external filter '%s'"),
+ params->cmd);
}
sigchain_push(SIGPIPE, SIG_IGN);
if (close(child_process.in))
write_err = 1;
if (write_err)
- error("cannot feed the input to external filter '%s'", params->cmd);
+ error(_("cannot feed the input to external filter '%s'"),
+ params->cmd);
sigchain_pop(SIGPIPE);
status = finish_command(&child_process);
if (status)
- error("external filter '%s' failed %d", params->cmd, status);
+ error(_("external filter '%s' failed %d"), params->cmd, status);
strbuf_release(&cmd);
return (write_err || status);
return 0; /* error was already reported */
if (strbuf_read(&nbuf, async.out, len) < 0) {
- err = error("read from external filter '%s' failed", cmd);
+ err = error(_("read from external filter '%s' failed"), cmd);
}
if (close(async.out)) {
- err = error("read from external filter '%s' failed", cmd);
+ err = error(_("read from external filter '%s' failed"), cmd);
}
if (finish_async(&async)) {
- err = error("external filter '%s' failed", cmd);
+ err = error(_("external filter '%s' failed"), cmd);
}
if (!err) {
* Something went wrong with the protocol filter.
* Force shutdown and restart if another blob requires filtering.
*/
- error("external filter '%s' failed", entry->subprocess.cmd);
+ error(_("external filter '%s' failed"), entry->subprocess.cmd);
subprocess_stop(&subprocess_map, &entry->subprocess);
free(entry);
}
else if (wanted_capability & CAP_SMUDGE)
filter_type = "smudge";
else
- die("unexpected filter type");
+ die(_("unexpected filter type"));
sigchain_push(SIGPIPE, SIG_IGN);
err = strlen(path) > LARGE_PACKET_DATA_MAX - strlen("pathname=\n");
if (err) {
- error("path name too long for external filter");
+ error(_("path name too long for external filter"));
goto done;
}
assert(subprocess_map_initialized);
entry = (struct cmd2process *)subprocess_find_entry(&subprocess_map, cmd);
if (!entry) {
- error("external filter '%s' is not available anymore although "
- "not all paths have been filtered", cmd);
+ error(_("external filter '%s' is not available anymore although "
+ "not all paths have been filtered"), cmd);
return 0;
}
process = &entry->subprocess.process;
static int ident_to_worktree(const char *path, const char *src, size_t len,
struct strbuf *buf, int ident)
{
- unsigned char sha1[20];
+ struct object_id oid;
char *to_free = NULL, *dollar, *spc;
int cnt;
/* are we "faking" in place editing ? */
if (src == buf->buf)
to_free = strbuf_detach(buf, NULL);
- hash_sha1_file(src, len, "blob", sha1);
+ hash_object_file(src, len, "blob", &oid);
- strbuf_grow(buf, len + cnt * 43);
+ strbuf_grow(buf, len + cnt * (the_hash_algo->hexsz + 3));
for (;;) {
/* step 1: run to the next '$' */
dollar = memchr(src, '$', len);
/* step 4: substitute */
strbuf_addstr(buf, "Id: ");
- strbuf_add(buf, sha1_to_hex(sha1), 40);
+ strbuf_addstr(buf, oid_to_hex(&oid));
strbuf_addstr(buf, " $");
}
strbuf_add(buf, src, len);
ret |= apply_filter(path, src, len, -1, dst, ca.drv, CAP_CLEAN, NULL);
if (!ret && ca.drv && ca.drv->required)
- die("%s: clean filter '%s' failed", path, ca.drv->name);
+ die(_("%s: clean filter '%s' failed"), path, ca.drv->name);
if (ret && dst) {
src = dst->buf;
assert(ca.drv->clean || ca.drv->process);
if (!apply_filter(path, NULL, 0, fd, dst, ca.drv, CAP_CLEAN, NULL))
- die("%s: clean filter '%s' failed", path, ca.drv->name);
+ die(_("%s: clean filter '%s' failed"), path, ca.drv->name);
encode_to_git(path, dst->buf, dst->len, dst, ca.working_tree_encoding, conv_flags);
crlf_to_git(istate, path, dst->buf, dst->len, dst, ca.crlf_action, conv_flags);
ret_filter = apply_filter(
path, src, len, -1, dst, ca.drv, CAP_SMUDGE, dco);
if (!ret_filter && ca.drv && ca.drv->required)
- die("%s: smudge filter %s failed", path, ca.drv->name);
+ die(_("%s: smudge filter %s failed"), path, ca.drv->name);
return ret | ret_filter;
}
struct stream_filter filter;
struct strbuf left;
int state;
- char ident[45]; /* ": x40 $" */
+ char ident[GIT_MAX_HEXSZ + 5]; /* ": x40 $" */
};
static int is_foreign_ident(const char *str)
ident_free_fn,
};
-static struct stream_filter *ident_filter(const unsigned char *sha1)
+static struct stream_filter *ident_filter(const struct object_id *oid)
{
struct ident_filter *ident = xmalloc(sizeof(*ident));
xsnprintf(ident->ident, sizeof(ident->ident),
- ": %s $", sha1_to_hex(sha1));
+ ": %s $", oid_to_hex(oid));
strbuf_init(&ident->left, 0);
ident->filter.vtbl = &ident_vtbl;
ident->state = 0;
* Note that you would be crazy to set CRLF, smuge/clean or ident to a
* large binary blob you would want us not to slurp into the memory!
*/
-struct stream_filter *get_stream_filter(const char *path, const unsigned char *sha1)
+struct stream_filter *get_stream_filter(const char *path, const struct object_id *oid)
{
struct conv_attrs ca;
struct stream_filter *filter = NULL;
return NULL;
if (ca.ident)
- filter = ident_filter(sha1);
+ filter = ident_filter(oid);
if (output_eol(ca.crlf_action) == EOL_CRLF)
filter = cascade_filter(filter, lf_to_crlf_filter());