2 * diff-delta.c: generate a delta between two buffers
4 * Many parts of this file have been lifted from LibXDiff version 0.10.
5 * http://www.xmailserver.org/xdiff-lib.html
7 * LibXDiff was written by Davide Libenzi <davidel@xmailserver.org>
8 * Copyright (C) 2003 Davide Libenzi
10 * Many mods for GIT usage by Nicolas Pitre <nico@cam.org>, (C) 2005.
12 * This file is free software; you can redistribute it and/or
13 * modify it under the terms of the GNU Lesser General Public
14 * License as published by the Free Software Foundation; either
15 * version 2.1 of the License, or (at your option) any later version.
17 * Use of this within git automatically means that the LGPL
18 * licensing gets turned into GPLv2 within this project.
25 /* block size: min = 16, max = 64k, power of 2 */
28 #define MIN(a, b) ((a) < (b) ? (a) : (b))
30 #define GR_PRIME 0x9e370001
31 #define HASH(v, b) (((unsigned int)(v) * GR_PRIME) >> (32 - (b)))
33 /* largest prime smaller than 65536 */
36 /* NMAX is the largest n such that 255n(n+1)/2 + (n+1)(BASE-1) <= 2^32-1 */
39 #define DO1(buf, i) { s1 += buf[i]; s2 += s1; }
40 #define DO2(buf, i) DO1(buf, i); DO1(buf, i + 1);
41 #define DO4(buf, i) DO2(buf, i); DO2(buf, i + 2);
42 #define DO8(buf, i) DO4(buf, i); DO4(buf, i + 4);
43 #define DO16(buf) DO8(buf, 0); DO8(buf, 8);
45 static unsigned int adler32(unsigned int adler, const unsigned char *buf, int len)
48 unsigned int s1 = adler & 0xffff;
49 unsigned int s2 = adler >> 16;
68 return (s2 << 16) | s1;
71 static unsigned int hashbits(unsigned int size)
73 unsigned int val = 1, bits = 0;
74 while (val < size && bits < 32) {
78 return bits ? bits: 1;
81 typedef struct s_chanode {
82 struct s_chanode *next;
86 typedef struct s_chastore {
91 static void cha_init(chastore_t *cha, int isize, int icount)
94 cha->nsize = icount * isize;
98 static void *cha_alloc(chastore_t *cha)
104 if (!ancur || ancur->icurr == cha->nsize) {
105 ancur = malloc(sizeof(chanode_t) + cha->nsize);
109 ancur->next = cha->ancur;
113 data = (void *)ancur + sizeof(chanode_t) + ancur->icurr;
114 ancur->icurr += cha->isize;
118 static void cha_free(chastore_t *cha)
120 chanode_t *cur = cha->ancur;
122 chanode_t *tmp = cur;
128 typedef struct s_bdrecord {
129 struct s_bdrecord *next;
131 const unsigned char *ptr;
134 typedef struct s_bdfile {
136 unsigned int fphbits;
140 static int delta_prepare(const unsigned char *buf, int bufsize, bdfile_t *bdf)
142 unsigned int fphbits;
144 const unsigned char *data, *top;
148 fphbits = hashbits(bufsize / BLK_SIZE + 1);
149 hsize = 1 << fphbits;
150 fphash = malloc(hsize * sizeof(bdrecord_t *));
153 for (i = 0; i < hsize; i++)
155 cha_init(&bdf->cha, sizeof(bdrecord_t), hsize / 4 + 1);
158 data = buf + (bufsize / BLK_SIZE) * BLK_SIZE;
162 for ( ; data >= buf; data -= BLK_SIZE) {
163 brec = cha_alloc(&bdf->cha);
169 brec->fp = adler32(0, data, MIN(BLK_SIZE, top - data));
171 i = HASH(brec->fp, fphbits);
172 brec->next = fphash[i];
176 bdf->fphbits = fphbits;
177 bdf->fphash = fphash;
182 static void delta_cleanup(bdfile_t *bdf)
188 #define COPYOP_SIZE(o, s) \
189 (!!(o & 0xff) + !!(o & 0xff00) + !!(o & 0xff0000) + !!(o & 0xff000000) + \
190 !!(s & 0xff) + !!(s & 0xff00) + 1)
192 void *diff_delta(void *from_buf, unsigned long from_size,
193 void *to_buf, unsigned long to_size,
194 unsigned long *delta_size,
195 unsigned long max_size)
197 int i, outpos, outsize, inscnt, csize, msize, moff;
199 const unsigned char *ref_data, *ref_top, *data, *top, *ptr1, *ptr2;
200 unsigned char *out, *orig;
204 if (!from_size || !to_size || delta_prepare(from_buf, from_size, &bdf))
209 out = malloc(outsize);
216 ref_top = from_buf + from_size;
218 top = to_buf + to_size;
220 /* store reference buffer size */
221 out[outpos++] = from_size;
224 out[outpos - 1] |= 0x80;
225 out[outpos++] = from_size;
229 /* store target buffer size */
230 out[outpos++] = to_size;
233 out[outpos - 1] |= 0x80;
234 out[outpos++] = to_size;
242 fp = adler32(0, data, MIN(top - data, BLK_SIZE));
243 i = HASH(fp, bdf.fphbits);
244 for (brec = bdf.fphash[i]; brec; brec = brec->next) {
245 if (brec->fp == fp) {
246 csize = ref_top - brec->ptr;
247 if (csize > top - data)
249 for (ptr1 = brec->ptr, ptr2 = data;
250 csize && *ptr1 == *ptr2;
251 csize--, ptr1++, ptr2++);
253 csize = ptr1 - brec->ptr;
255 moff = brec->ptr - ref_data;
257 if (msize >= 0x10000) {
265 if (!msize || msize < COPYOP_SIZE(moff, msize)) {
268 out[outpos++] = *data++;
270 if (inscnt == 0x7f) {
271 out[outpos - inscnt - 1] = inscnt;
276 out[outpos - inscnt - 1] = inscnt;
281 orig = out + outpos++;
284 if (moff & 0xff) { out[outpos++] = moff; i |= 0x01; }
286 if (moff & 0xff) { out[outpos++] = moff; i |= 0x02; }
288 if (moff & 0xff) { out[outpos++] = moff; i |= 0x04; }
290 if (moff & 0xff) { out[outpos++] = moff; i |= 0x08; }
292 if (msize & 0xff) { out[outpos++] = msize; i |= 0x10; }
294 if (msize & 0xff) { out[outpos++] = msize; i |= 0x20; }
299 if (max_size && outpos > max_size) {
305 /* next time around the largest possible output is 1 + 4 + 3 */
306 if (outpos > outsize - 8) {
308 outsize = outsize * 3 / 2;
309 out = realloc(out, outsize);
319 out[outpos - inscnt - 1] = inscnt;
322 *delta_size = outpos;