2 Copyright (C) Andrew Tridgell 1996
3 Copyright (C) Paul Mackerras 1996
5 This program is free software; you can redistribute it and/or modify
6 it under the terms of the GNU General Public License as published by
7 the Free Software Foundation; either version 2 of the License, or
8 (at your option) any later version.
10 This program is distributed in the hope that it will be useful,
11 but WITHOUT ANY WARRANTY; without even the implied warranty of
12 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 GNU General Public License for more details.
15 You should have received a copy of the GNU General Public License
16 along with this program; if not, write to the Free Software
17 Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
22 extern int csum_length
;
27 extern int remote_version
;
29 typedef unsigned short tag
;
31 #define TABLESIZE (1<<16)
34 static int false_alarms
;
37 static int64 data_transfer
;
39 static int total_false_alarms
;
40 static int total_tag_hits
;
41 static int total_matches
;
43 extern struct stats stats
;
50 static struct target
*targets
;
52 static int *tag_table
;
54 #define gettag2(s1,s2) (((s1) + (s2)) & 0xFFFF)
55 #define gettag(sum) gettag2((sum)&0xFFFF,(sum)>>16)
57 static int compare_targets(struct target
*t1
,struct target
*t2
)
59 return((int)t1
->t
- (int)t2
->t
);
63 static void build_hash_table(struct sum_struct
*s
)
68 tag_table
= (int *)malloc(sizeof(tag_table
[0])*TABLESIZE
);
70 targets
= (struct target
*)malloc(sizeof(targets
[0])*s
->count
);
71 if (!tag_table
|| !targets
)
72 out_of_memory("build_hash_table");
74 for (i
=0;i
<(int) s
->count
;i
++) {
76 targets
[i
].t
= gettag(s
->sums
[i
].sum1
);
79 qsort(targets
,s
->count
,sizeof(targets
[0]),(int (*)())compare_targets
);
81 for (i
=0;i
<TABLESIZE
;i
++)
82 tag_table
[i
] = NULL_TAG
;
84 for (i
=s
->count
-1;i
>=0;i
--) {
85 tag_table
[targets
[i
].t
] = i
;
90 static OFF_T last_match
;
94 * Transmit a literal and/or match token.
96 * This delightfully-named function is called either when we find a
97 * match and need to transmit all the unmatched data leading up to it,
98 * or when we get bored of accumulating literal data and just need to
99 * transmit it. As a result of this second case, it is called even if
100 * we have not matched at all!
102 * @param i If >0, the number of a matched token. If 0, indicates we
103 * have only literal data.
105 static void matched(int f
,struct sum_struct
*s
,struct map_struct
*buf
,
108 OFF_T n
= offset
- last_match
;
111 if (verbose
> 2 && i
>= 0)
112 rprintf(FINFO
,"match at %.0f last_match=%.0f j=%d len=%d n=%.0f\n",
113 (double)offset
,(double)last_match
,i
,s
->sums
[i
].len
,(double)n
);
115 send_token(f
,i
,buf
,last_match
,n
,i
<0?0:s
->sums
[i
].len
);
119 stats
.matched_data
+= s
->sums
[i
].len
;
123 for (j
=0;j
<n
;j
+=CHUNK_SIZE
) {
124 int n1
= MIN(CHUNK_SIZE
,n
-j
);
125 sum_update(map_ptr(buf
,last_match
+j
,n1
),n1
);
130 last_match
= offset
+ s
->sums
[i
].len
;
135 show_progress(last_match
, buf
->file_size
);
137 if (i
== -1) end_progress(buf
->file_size
);
142 static void hash_search(int f
,struct sum_struct
*s
,
143 struct map_struct
*buf
,OFF_T len
)
147 char sum2
[SUM_LENGTH
];
151 /* last_i is used to encourage adjacent matches, allowing the RLL coding of the
152 output to work more efficiently */
156 rprintf(FINFO
,"hash search b=%ld len=%.0f\n",
157 (long) s
->n
, (double)len
);
159 /* cast is to make s->n signed; it should always be reasonably
161 k
= MIN(len
, (OFF_T
) s
->n
);
163 map
= (schar
*)map_ptr(buf
,0,k
);
165 sum
= get_checksum1((char *)map
, k
);
169 rprintf(FINFO
, "sum=%.8x k=%d\n", sum
, k
);
173 end
= len
+ 1 - s
->sums
[s
->count
-1].len
;
176 rprintf(FINFO
, "hash search s->n=%ld len=%.0f count=%ld\n",
177 (long) s
->n
, (double) len
, (long) s
->count
);
180 tag t
= gettag2(s1
,s2
);
185 rprintf(FINFO
,"offset=%.0f sum=%08x\n",(double)offset
,sum
);
191 sum
= (s1
& 0xffff) | (s2
<< 16);
193 for (; j
< (int) s
->count
&& targets
[j
].t
== t
; j
++) {
194 int l
, i
= targets
[j
].i
;
196 if (sum
!= s
->sums
[i
].sum1
) continue;
198 /* also make sure the two blocks are the same length */
199 l
= MIN(s
->n
,len
-offset
);
200 if (l
!= s
->sums
[i
].len
) continue;
203 rprintf(FINFO
,"potential match at %.0f target=%d %d sum=%08x\n",
204 (double)offset
,j
,i
,sum
);
207 map
= (schar
*)map_ptr(buf
,offset
,l
);
208 get_checksum2((char *)map
,l
,sum2
);
212 if (memcmp(sum2
,s
->sums
[i
].sum2
,csum_length
) != 0) {
217 /* we've found a match, but now check to see
218 if last_i can hint at a better match */
219 for (j
++; j
< (int) s
->count
&& targets
[j
].t
== t
; j
++) {
220 int i2
= targets
[j
].i
;
221 if (i2
== last_i
+ 1) {
222 if (sum
!= s
->sums
[i2
].sum1
) break;
223 if (memcmp(sum2
,s
->sums
[i2
].sum2
,csum_length
) != 0) break;
224 /* we've found an adjacent match - the RLL coder
233 matched(f
,s
,buf
,offset
,i
);
234 offset
+= s
->sums
[i
].len
- 1;
235 k
= MIN((len
-offset
), s
->n
);
236 map
= (schar
*)map_ptr(buf
,offset
,k
);
237 sum
= get_checksum1((char *)map
, k
);
245 /* Trim off the first byte from the checksum */
246 map
= (schar
*)map_ptr(buf
,offset
,k
+1);
247 s1
-= map
[0] + CHAR_OFFSET
;
248 s2
-= k
* (map
[0]+CHAR_OFFSET
);
250 /* Add on the next byte (if there is one) to the checksum */
251 if (k
< (len
-offset
)) {
252 s1
+= (map
[k
]+CHAR_OFFSET
);
258 /* By matching early we avoid re-reading the
259 data 3 times in the case where a token
260 match comes a long way after last
261 match. The 3 reads are caused by the
262 running match, the checksum update and the
264 if (offset
> last_match
&&
265 offset
-last_match
>= CHUNK_SIZE
+s
->n
&&
266 (end
-offset
> CHUNK_SIZE
)) {
267 matched(f
,s
,buf
,offset
- s
->n
, -2);
269 } while (++offset
< end
);
271 matched(f
,s
,buf
,len
,-1);
272 map_ptr(buf
,len
-1,1);
277 * Scan through a origin file, looking for sections that match
278 * checksums from the generator, and transmit either literal or token
281 * Also calculates the MD4 checksum of the whole file, using the md
282 * accumulator. This is transmitted with the file as protection
283 * against corruption on the wire.
285 * @param s Checksums received from the generator. If <tt>s->count ==
286 * 0</tt>, then there are actually no checksums for this file.
288 * @param len Length of the file to send.
290 void match_sums(int f
, struct sum_struct
*s
, struct map_struct
*buf
, OFF_T len
)
292 char file_sum
[MD4_SUM_LENGTH
];
293 extern int write_batch
; /* dw */
303 if (len
> 0 && s
->count
>0) {
307 rprintf(FINFO
,"built hash table\n");
309 hash_search(f
,s
,buf
,len
);
312 rprintf(FINFO
,"done hash search\n");
315 /* by doing this in pieces we avoid too many seeks */
316 for (j
=0;j
<(len
-CHUNK_SIZE
);j
+=CHUNK_SIZE
) {
317 int n1
= MIN(CHUNK_SIZE
,(len
-CHUNK_SIZE
)-j
);
318 matched(f
,s
,buf
,j
+n1
,-2);
320 matched(f
,s
,buf
,len
,-1);
325 if (remote_version
>= 14) {
327 rprintf(FINFO
,"sending file_sum\n");
328 write_buf(f
,file_sum
,MD4_SUM_LENGTH
);
329 if (write_batch
) /* dw */
330 write_batch_delta_file(file_sum
, MD4_SUM_LENGTH
);
339 rprintf(FINFO
, "false_alarms=%d tag_hits=%d matches=%d\n",
340 false_alarms
, tag_hits
, matches
);
342 total_tag_hits
+= tag_hits
;
343 total_false_alarms
+= false_alarms
;
344 total_matches
+= matches
;
345 stats
.literal_data
+= data_transfer
;
348 void match_report(void)
354 "total: matches=%d tag_hits=%d false_alarms=%d data=%.0f\n",
355 total_matches
,total_tag_hits
,
357 (double)stats
.literal_data
);