output progress % every 1k instead of every 1%, this is better for
[rsync/rsync.git] / match.c
... / ...
CommitLineData
1/*
2 Copyright (C) Andrew Tridgell 1996
3 Copyright (C) Paul Mackerras 1996
4
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.
9
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.
14
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.
18*/
19
20#include "rsync.h"
21
22extern int csum_length;
23
24extern int verbose;
25extern int am_server;
26
27extern int remote_version;
28
29typedef unsigned short tag;
30
31#define TABLESIZE (1<<16)
32#define NULL_TAG (-1)
33
34static int false_alarms;
35static int tag_hits;
36static int matches;
37static int64 data_transfer;
38
39static int total_false_alarms;
40static int total_tag_hits;
41static int total_matches;
42
43extern struct stats stats;
44
45struct target {
46 tag t;
47 int i;
48};
49
50static struct target *targets;
51
52static int *tag_table;
53
54#define gettag2(s1,s2) (((s1) + (s2)) & 0xFFFF)
55#define gettag(sum) gettag2((sum)&0xFFFF,(sum)>>16)
56
57static int compare_targets(struct target *t1,struct target *t2)
58{
59 return((int)t1->t - (int)t2->t);
60}
61
62
63static void build_hash_table(struct sum_struct *s)
64{
65 int i;
66
67 if (!tag_table)
68 tag_table = (int *)malloc(sizeof(tag_table[0])*TABLESIZE);
69
70 targets = (struct target *)malloc(sizeof(targets[0])*s->count);
71 if (!tag_table || !targets)
72 out_of_memory("build_hash_table");
73
74 for (i=0;i<s->count;i++) {
75 targets[i].i = i;
76 targets[i].t = gettag(s->sums[i].sum1);
77 }
78
79 qsort(targets,s->count,sizeof(targets[0]),(int (*)())compare_targets);
80
81 for (i=0;i<TABLESIZE;i++)
82 tag_table[i] = NULL_TAG;
83
84 for (i=s->count-1;i>=0;i--) {
85 tag_table[targets[i].t] = i;
86 }
87}
88
89
90static OFF_T last_match;
91
92
93static void matched(int f,struct sum_struct *s,struct map_struct *buf,
94 OFF_T offset,int i)
95{
96 OFF_T n = offset - last_match;
97 int j;
98
99 if (verbose > 2 && i >= 0)
100 rprintf(FINFO,"match at %d last_match=%d j=%d len=%d n=%d\n",
101 (int)offset,(int)last_match,i,(int)s->sums[i].len,(int)n);
102
103 send_token(f,i,buf,last_match,n,i<0?0:s->sums[i].len);
104 data_transfer += n;
105
106 if (i >= 0) {
107 stats.matched_data += s->sums[i].len;
108 n += s->sums[i].len;
109 }
110
111 for (j=0;j<n;j+=CHUNK_SIZE) {
112 int n1 = MIN(CHUNK_SIZE,n-j);
113 sum_update(map_ptr(buf,last_match+j,n1),n1);
114 }
115
116
117 if (i >= 0)
118 last_match = offset + s->sums[i].len;
119 else
120 last_match = offset;
121
122 show_progress(last_match, buf->size);
123
124 if (i == -1) end_progress();
125}
126
127
128static void hash_search(int f,struct sum_struct *s,
129 struct map_struct *buf,OFF_T len)
130{
131 OFF_T offset;
132 int j,k;
133 int end;
134 char sum2[SUM_LENGTH];
135 uint32 s1, s2, sum;
136 schar *map;
137
138 if (verbose > 2)
139 rprintf(FINFO,"hash search b=%d len=%d\n",s->n,(int)len);
140
141 k = MIN(len, s->n);
142
143 map = (schar *)map_ptr(buf,0,k);
144
145 sum = get_checksum1((char *)map, k);
146 s1 = sum & 0xFFFF;
147 s2 = sum >> 16;
148 if (verbose > 3)
149 rprintf(FINFO, "sum=%.8x k=%d\n", sum, k);
150
151 offset = 0;
152
153 end = len + 1 - s->sums[s->count-1].len;
154
155 if (verbose > 3)
156 rprintf(FINFO,"hash search s->n=%d len=%d count=%d\n",
157 s->n,(int)len,s->count);
158
159 do {
160 tag t = gettag2(s1,s2);
161 int done_csum2 = 0;
162
163 j = tag_table[t];
164 if (verbose > 4)
165 rprintf(FINFO,"offset=%d sum=%08x\n",(int)offset,sum);
166
167 if (j == NULL_TAG) {
168 goto null_tag;
169 }
170
171 sum = (s1 & 0xffff) | (s2 << 16);
172 tag_hits++;
173 for (; j<s->count && targets[j].t == t; j++) {
174 int i = targets[j].i;
175
176 if (sum != s->sums[i].sum1) continue;
177
178 if (verbose > 3)
179 rprintf(FINFO,"potential match at %d target=%d %d sum=%08x\n",
180 (int)offset,j,i,sum);
181
182 if (!done_csum2) {
183 int l = MIN(s->n,len-offset);
184 map = (schar *)map_ptr(buf,offset,l);
185 get_checksum2((char *)map,l,sum2);
186 done_csum2 = 1;
187 }
188
189 if (memcmp(sum2,s->sums[i].sum2,csum_length) != 0) {
190 false_alarms++;
191 continue;
192 }
193
194 matched(f,s,buf,offset,i);
195 offset += s->sums[i].len - 1;
196 k = MIN((len-offset), s->n);
197 map = (schar *)map_ptr(buf,offset,k);
198 sum = get_checksum1((char *)map, k);
199 s1 = sum & 0xFFFF;
200 s2 = sum >> 16;
201 matches++;
202 break;
203 }
204
205 null_tag:
206 /* Trim off the first byte from the checksum */
207 map = (schar *)map_ptr(buf,offset,k+1);
208 s1 -= map[0] + CHAR_OFFSET;
209 s2 -= k * (map[0]+CHAR_OFFSET);
210
211 /* Add on the next byte (if there is one) to the checksum */
212 if (k < (len-offset)) {
213 s1 += (map[k]+CHAR_OFFSET);
214 s2 += s1;
215 } else {
216 --k;
217 }
218
219 /* By matching early we avoid re-reading the
220 data 3 times in the case where a token
221 match comes a long way after last
222 match. The 3 reads are caused by the
223 running match, the checksum update and the
224 literal send. */
225 if (offset-last_match >= CHUNK_SIZE+s->n &&
226 (end-offset > CHUNK_SIZE)) {
227 matched(f,s,buf,offset - s->n, -2);
228 }
229 } while (++offset < end);
230
231 matched(f,s,buf,len,-1);
232 map_ptr(buf,len-1,1);
233}
234
235
236void match_sums(int f,struct sum_struct *s,struct map_struct *buf,OFF_T len)
237{
238 char file_sum[MD4_SUM_LENGTH];
239
240 last_match = 0;
241 false_alarms = 0;
242 tag_hits = 0;
243 matches=0;
244 data_transfer=0;
245
246 sum_init();
247
248 if (len > 0 && s->count>0) {
249 build_hash_table(s);
250
251 if (verbose > 2)
252 rprintf(FINFO,"built hash table\n");
253
254 hash_search(f,s,buf,len);
255
256 if (verbose > 2)
257 rprintf(FINFO,"done hash search\n");
258 } else {
259 OFF_T j;
260 /* by doing this in pieces we avoid too many seeks */
261 for (j=0;j<(len-CHUNK_SIZE);j+=CHUNK_SIZE) {
262 int n1 = MIN(CHUNK_SIZE,(len-CHUNK_SIZE)-j);
263 matched(f,s,buf,j+n1,-2);
264 }
265 matched(f,s,buf,len,-1);
266 }
267
268 sum_end(file_sum);
269
270 if (remote_version >= 14) {
271 if (verbose > 2)
272 rprintf(FINFO,"sending file_sum\n");
273 write_buf(f,file_sum,MD4_SUM_LENGTH);
274 }
275
276 if (targets) {
277 free(targets);
278 targets=NULL;
279 }
280
281 if (verbose > 2)
282 rprintf(FINFO, "false_alarms=%d tag_hits=%d matches=%d\n",
283 false_alarms, tag_hits, matches);
284
285 total_tag_hits += tag_hits;
286 total_false_alarms += false_alarms;
287 total_matches += matches;
288 stats.literal_data += data_transfer;
289}
290
291void match_report(void)
292{
293 if (verbose <= 1)
294 return;
295
296 rprintf(FINFO,
297 "total: matches=%d tag_hits=%d false_alarms=%d data=%.0f\n",
298 total_matches,total_tag_hits,
299 total_false_alarms,
300 (double)stats.literal_data);
301}