void rename_index_entry_at(struct index_state *istate, int nr, const char *new_name)
{
- struct cache_entry *old = istate->cache[nr], *new;
+ struct cache_entry *old_entry = istate->cache[nr], *new_entry;
int namelen = strlen(new_name);
- new = xmalloc(cache_entry_size(namelen));
- copy_cache_entry(new, old);
- new->ce_flags &= ~CE_HASHED;
- new->ce_namelen = namelen;
- new->index = 0;
- memcpy(new->name, new_name, namelen + 1);
+ new_entry = xmalloc(cache_entry_size(namelen));
+ copy_cache_entry(new_entry, old_entry);
+ new_entry->ce_flags &= ~CE_HASHED;
+ new_entry->ce_namelen = namelen;
+ new_entry->index = 0;
+ memcpy(new_entry->name, new_name, namelen + 1);
- cache_tree_invalidate_path(istate, old->name);
- untracked_cache_remove_from_index(istate, old->name);
+ cache_tree_invalidate_path(istate, old_entry->name);
+ untracked_cache_remove_from_index(istate, old_entry->name);
remove_index_entry_at(istate, nr);
- add_index_entry(istate, new, ADD_CACHE_OK_TO_ADD|ADD_CACHE_OK_TO_REPLACE);
+ add_index_entry(istate, new_entry, ADD_CACHE_OK_TO_ADD|ADD_CACHE_OK_TO_REPLACE);
}
void fill_stat_data(struct stat_data *sd, struct stat *st)
struct cache_entry *alias)
{
int len;
- struct cache_entry *new;
+ struct cache_entry *new_entry;
if (alias->ce_flags & CE_ADDED)
die("Will not add file alias '%s' ('%s' already exists in index)", ce->name, alias->name);
/* Ok, create the new entry using the name of the existing alias */
len = ce_namelen(alias);
- new = xcalloc(1, cache_entry_size(len));
- memcpy(new->name, alias->name, len);
- copy_cache_entry(new, ce);
+ new_entry = xcalloc(1, cache_entry_size(len));
+ memcpy(new_entry->name, alias->name, len);
+ copy_cache_entry(new_entry, ce);
save_or_free_index_entry(istate, ce);
- return new;
+ return new_entry;
}
void set_object_name_for_intent_to_add_entry(struct cache_entry *ce)
added_fmt = (in_porcelain ? "A\t%s\n" : "%s needs update\n");
unmerged_fmt = (in_porcelain ? "U\t%s\n" : "%s: needs merge\n");
for (i = 0; i < istate->cache_nr; i++) {
- struct cache_entry *ce, *new;
+ struct cache_entry *ce, *new_entry;
int cache_errno = 0;
int changed = 0;
int filtered = 0;
if (filtered)
continue;
- new = refresh_cache_ent(istate, ce, options, &cache_errno, &changed);
- if (new == ce)
+ new_entry = refresh_cache_ent(istate, ce, options, &cache_errno, &changed);
+ if (new_entry == ce)
continue;
- if (!new) {
+ if (!new_entry) {
const char *fmt;
if (really && cache_errno == EINVAL) {
continue;
}
- replace_index_entry(istate, i, new);
+ replace_index_entry(istate, i, new_entry);
}
trace_performance_since(start, "refresh index");
return has_errors;
static int verify_hdr(struct cache_header *hdr, unsigned long size)
{
- git_SHA_CTX c;
- unsigned char sha1[20];
+ git_hash_ctx c;
+ unsigned char hash[GIT_MAX_RAWSZ];
int hdr_version;
if (hdr->hdr_signature != htonl(CACHE_SIGNATURE))
if (!verify_index_checksum)
return 0;
- git_SHA1_Init(&c);
- git_SHA1_Update(&c, hdr, size - 20);
- git_SHA1_Final(sha1, &c);
- if (hashcmp(sha1, (unsigned char *)hdr + size - 20))
+ the_hash_algo->init_fn(&c);
+ the_hash_algo->update_fn(&c, hdr, size - the_hash_algo->rawsz);
+ the_hash_algo->final_fn(hash, &c);
+ if (hashcmp(hash, (unsigned char *)hdr + size - the_hash_algo->rawsz))
return error("bad index file sha1 signature");
return 0;
}
die_errno("cannot stat the open index");
mmap_size = xsize_t(st.st_size);
- if (mmap_size < sizeof(struct cache_header) + 20)
+ if (mmap_size < sizeof(struct cache_header) + the_hash_algo->rawsz)
die("index file smaller than expected");
mmap = xmmap(NULL, mmap_size, PROT_READ, MAP_PRIVATE, fd, 0);
if (verify_hdr(hdr, mmap_size) < 0)
goto unmap;
- hashcpy(istate->sha1, (const unsigned char *)hdr + mmap_size - 20);
+ hashcpy(istate->sha1, (const unsigned char *)hdr + mmap_size - the_hash_algo->rawsz);
istate->version = ntohl(hdr->hdr_version);
istate->cache_nr = ntohl(hdr->hdr_entries);
istate->cache_alloc = alloc_nr(istate->cache_nr);
istate->timestamp.sec = st.st_mtime;
istate->timestamp.nsec = ST_MTIME_NSEC(st);
- while (src_offset <= mmap_size - 20 - 8) {
+ while (src_offset <= mmap_size - the_hash_algo->rawsz - 8) {
/* After an array of active_nr index entries,
* there can be arbitrary number of extended
* sections, each of which is prefixed with
static unsigned char write_buffer[WRITE_BUFFER_SIZE];
static unsigned long write_buffer_len;
-static int ce_write_flush(git_SHA_CTX *context, int fd)
+static int ce_write_flush(git_hash_ctx *context, int fd)
{
unsigned int buffered = write_buffer_len;
if (buffered) {
- git_SHA1_Update(context, write_buffer, buffered);
+ the_hash_algo->update_fn(context, write_buffer, buffered);
if (write_in_full(fd, write_buffer, buffered) < 0)
return -1;
write_buffer_len = 0;
return 0;
}
-static int ce_write(git_SHA_CTX *context, int fd, void *data, unsigned int len)
+static int ce_write(git_hash_ctx *context, int fd, void *data, unsigned int len)
{
while (len) {
unsigned int buffered = write_buffer_len;
return 0;
}
-static int write_index_ext_header(git_SHA_CTX *context, int fd,
+static int write_index_ext_header(git_hash_ctx *context, int fd,
unsigned int ext, unsigned int sz)
{
ext = htonl(ext);
(ce_write(context, fd, &sz, 4) < 0)) ? -1 : 0;
}
-static int ce_flush(git_SHA_CTX *context, int fd, unsigned char *sha1)
+static int ce_flush(git_hash_ctx *context, int fd, unsigned char *hash)
{
unsigned int left = write_buffer_len;
if (left) {
write_buffer_len = 0;
- git_SHA1_Update(context, write_buffer, left);
+ the_hash_algo->update_fn(context, write_buffer, left);
}
- /* Flush first if not enough space for SHA1 signature */
- if (left + 20 > WRITE_BUFFER_SIZE) {
+ /* Flush first if not enough space for hash signature */
+ if (left + the_hash_algo->rawsz > WRITE_BUFFER_SIZE) {
if (write_in_full(fd, write_buffer, left) < 0)
return -1;
left = 0;
}
- /* Append the SHA1 signature at the end */
- git_SHA1_Final(write_buffer + left, context);
- hashcpy(sha1, write_buffer + left);
- left += 20;
+ /* Append the hash signature at the end */
+ the_hash_algo->final_fn(write_buffer + left, context);
+ hashcpy(hash, write_buffer + left);
+ left += the_hash_algo->rawsz;
return (write_in_full(fd, write_buffer, left) < 0) ? -1 : 0;
}
}
}
-static int ce_write_entry(git_SHA_CTX *c, int fd, struct cache_entry *ce,
+static int ce_write_entry(git_hash_ctx *c, int fd, struct cache_entry *ce,
struct strbuf *previous_name, struct ondisk_cache_entry *ondisk)
{
int size;
int fd;
ssize_t n;
struct stat st;
- unsigned char sha1[20];
+ unsigned char hash[GIT_MAX_RAWSZ];
if (!istate->initialized)
return 0;
if (fstat(fd, &st))
goto out;
- if (st.st_size < sizeof(struct cache_header) + 20)
+ if (st.st_size < sizeof(struct cache_header) + the_hash_algo->rawsz)
goto out;
- n = pread_in_full(fd, sha1, 20, st.st_size - 20);
- if (n != 20)
+ n = pread_in_full(fd, hash, the_hash_algo->rawsz, st.st_size - the_hash_algo->rawsz);
+ if (n != the_hash_algo->rawsz)
goto out;
- if (hashcmp(istate->sha1, sha1))
+ if (hashcmp(istate->sha1, hash))
goto out;
close(fd);
{
uint64_t start = getnanotime();
int newfd = tempfile->fd;
- git_SHA_CTX c;
+ git_hash_ctx c;
struct cache_header hdr;
int i, err = 0, removed, extended, hdr_version;
struct cache_entry **cache = istate->cache;
hdr.hdr_version = htonl(hdr_version);
hdr.hdr_entries = htonl(entries - removed);
- git_SHA1_Init(&c);
+ the_hash_algo->init_fn(&c);
if (ce_write(&c, newfd, &hdr, sizeof(hdr)) < 0)
return -1;