4 * Copyright (C) 2005 Linus Torvalds
6 * Simple file write infrastructure for writing SHA1-summed
7 * files. Useful when you write a file that you want to be
8 * able to verify hasn't been messed with afterwards.
12 #include "csum-file.h"
14 static void verify_buffer_or_die(struct hashfile
*f
,
18 ssize_t ret
= read_in_full(f
->check_fd
, f
->check_buffer
, count
);
21 die_errno("%s: sha1 file read error", f
->name
);
23 die("%s: sha1 file truncated", f
->name
);
24 if (memcmp(buf
, f
->check_buffer
, count
))
25 die("sha1 file '%s' validation error", f
->name
);
28 static void flush(struct hashfile
*f
, const void *buf
, unsigned int count
)
30 if (0 <= f
->check_fd
&& count
)
31 verify_buffer_or_die(f
, buf
, count
);
33 if (write_in_full(f
->fd
, buf
, count
) < 0) {
35 die("sha1 file '%s' write error. Out of diskspace", f
->name
);
36 die_errno("sha1 file '%s' write error", f
->name
);
40 display_throughput(f
->tp
, f
->total
);
43 void hashflush(struct hashfile
*f
)
45 unsigned offset
= f
->offset
;
49 the_hash_algo
->update_fn(&f
->ctx
, f
->buffer
, offset
);
50 flush(f
, f
->buffer
, offset
);
55 static void free_hashfile(struct hashfile
*f
)
58 free(f
->check_buffer
);
62 int finalize_hashfile(struct hashfile
*f
, unsigned char *result
,
63 enum fsync_component component
, unsigned int flags
)
72 the_hash_algo
->final_fn(f
->buffer
, &f
->ctx
);
75 hashcpy(result
, f
->buffer
);
76 if (flags
& CSUM_HASH_IN_STREAM
)
77 flush(f
, f
->buffer
, the_hash_algo
->rawsz
);
78 if (flags
& CSUM_FSYNC
)
79 fsync_component_or_die(component
, f
->fd
, f
->name
);
80 if (flags
& CSUM_CLOSE
) {
82 die_errno("%s: sha1 file error on close", f
->name
);
86 if (0 <= f
->check_fd
) {
88 int cnt
= read_in_full(f
->check_fd
, &discard
, 1);
90 die_errno("%s: error when reading the tail of sha1 file",
93 die("%s: sha1 file has trailing garbage", f
->name
);
94 if (close(f
->check_fd
))
95 die_errno("%s: sha1 file error on close", f
->name
);
101 void hashwrite(struct hashfile
*f
, const void *buf
, unsigned int count
)
104 unsigned left
= f
->buffer_len
- f
->offset
;
105 unsigned nr
= count
> left
? left
: count
;
108 f
->crc32
= crc32(f
->crc32
, buf
, nr
);
110 if (nr
== f
->buffer_len
) {
112 * Flush a full batch worth of data directly
113 * from the input, skipping the memcpy() to
114 * the hashfile's buffer. In this block,
115 * f->offset is necessarily zero.
118 the_hash_algo
->update_fn(&f
->ctx
, buf
, nr
);
122 * Copy to the hashfile's buffer, flushing only
125 memcpy(f
->buffer
+ f
->offset
, buf
, nr
);
133 buf
= (char *) buf
+ nr
;
137 struct hashfile
*hashfd_check(const char *name
)
142 sink
= xopen("/dev/null", O_WRONLY
);
143 check
= xopen(name
, O_RDONLY
);
144 f
= hashfd(sink
, name
);
146 f
->check_buffer
= xmalloc(f
->buffer_len
);
151 static struct hashfile
*hashfd_internal(int fd
, const char *name
,
155 struct hashfile
*f
= xmalloc(sizeof(*f
));
164 the_hash_algo
->init_fn(&f
->ctx
);
166 f
->buffer_len
= buffer_len
;
167 f
->buffer
= xmalloc(buffer_len
);
168 f
->check_buffer
= NULL
;
173 struct hashfile
*hashfd(int fd
, const char *name
)
176 * Since we are not going to use a progress meter to
177 * measure the rate of data passing through this hashfile,
178 * use a larger buffer size to reduce fsync() calls.
180 return hashfd_internal(fd
, name
, NULL
, 128 * 1024);
183 struct hashfile
*hashfd_throughput(int fd
, const char *name
, struct progress
*tp
)
186 * Since we are expecting to report progress of the
187 * write into this hashfile, use a smaller buffer
188 * size so the progress indicators arrive at a more
191 return hashfd_internal(fd
, name
, tp
, 8 * 1024);
194 void hashfile_checkpoint(struct hashfile
*f
, struct hashfile_checkpoint
*checkpoint
)
197 checkpoint
->offset
= f
->total
;
198 the_hash_algo
->clone_fn(&checkpoint
->ctx
, &f
->ctx
);
201 int hashfile_truncate(struct hashfile
*f
, struct hashfile_checkpoint
*checkpoint
)
203 off_t offset
= checkpoint
->offset
;
205 if (ftruncate(f
->fd
, offset
) ||
206 lseek(f
->fd
, offset
, SEEK_SET
) != offset
)
209 f
->ctx
= checkpoint
->ctx
;
210 f
->offset
= 0; /* hashflush() was called in checkpoint */
214 void crc32_begin(struct hashfile
*f
)
216 f
->crc32
= crc32(0, NULL
, 0);
220 uint32_t crc32_end(struct hashfile
*f
)
226 int hashfile_checksum_valid(const unsigned char *data
, size_t total_len
)
228 unsigned char got
[GIT_MAX_RAWSZ
];
230 size_t data_len
= total_len
- the_hash_algo
->rawsz
;
232 if (total_len
< the_hash_algo
->rawsz
)
233 return 0; /* say "too short"? */
235 the_hash_algo
->init_fn(&ctx
);
236 the_hash_algo
->update_fn(&ctx
, data
, data_len
);
237 the_hash_algo
->final_fn(got
, &ctx
);
239 return hasheq(got
, data
+ data_len
);