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Doug Zongker512536a2010-02-17 16:11:44 -08001/*
2 * Copyright (C) 2009 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17/*
18 * This program constructs binary patches for images -- such as boot.img
19 * and recovery.img -- that consist primarily of large chunks of gzipped
20 * data interspersed with uncompressed data. Doing a naive bsdiff of
21 * these files is not useful because small changes in the data lead to
22 * large changes in the compressed bitstream; bsdiff patches of gzipped
23 * data are typically as large as the data itself.
24 *
25 * To patch these usefully, we break the source and target images up into
26 * chunks of two types: "normal" and "gzip". Normal chunks are simply
27 * patched using a plain bsdiff. Gzip chunks are first expanded, then a
28 * bsdiff is applied to the uncompressed data, then the patched data is
29 * gzipped using the same encoder parameters. Patched chunks are
30 * concatenated together to create the output file; the output image
31 * should be *exactly* the same series of bytes as the target image used
32 * originally to generate the patch.
33 *
34 * To work well with this tool, the gzipped sections of the target
35 * image must have been generated using the same deflate encoder that
36 * is available in applypatch, namely, the one in the zlib library.
37 * In practice this means that images should be compressed using the
38 * "minigzip" tool included in the zlib distribution, not the GNU gzip
39 * program.
40 *
41 * An "imgdiff" patch consists of a header describing the chunk structure
42 * of the file and any encoding parameters needed for the gzipped
43 * chunks, followed by N bsdiff patches, one per chunk.
44 *
45 * For a diff to be generated, the source and target images must have the
46 * same "chunk" structure: that is, the same number of gzipped and normal
47 * chunks in the same order. Android boot and recovery images currently
48 * consist of five chunks: a small normal header, a gzipped kernel, a
49 * small normal section, a gzipped ramdisk, and finally a small normal
50 * footer.
51 *
52 * Caveats: we locate gzipped sections within the source and target
53 * images by searching for the byte sequence 1f8b0800: 1f8b is the gzip
54 * magic number; 08 specifies the "deflate" encoding [the only encoding
55 * supported by the gzip standard]; and 00 is the flags byte. We do not
56 * currently support any extra header fields (which would be indicated by
57 * a nonzero flags byte). We also don't handle the case when that byte
58 * sequence appears spuriously in the file. (Note that it would have to
59 * occur spuriously within a normal chunk to be a problem.)
60 *
61 *
62 * The imgdiff patch header looks like this:
63 *
64 * "IMGDIFF1" (8) [magic number and version]
65 * chunk count (4)
66 * for each chunk:
67 * chunk type (4) [CHUNK_{NORMAL, GZIP, DEFLATE, RAW}]
68 * if chunk type == CHUNK_NORMAL:
69 * source start (8)
70 * source len (8)
71 * bsdiff patch offset (8) [from start of patch file]
72 * if chunk type == CHUNK_GZIP: (version 1 only)
73 * source start (8)
74 * source len (8)
75 * bsdiff patch offset (8) [from start of patch file]
76 * source expanded len (8) [size of uncompressed source]
77 * target expected len (8) [size of uncompressed target]
78 * gzip level (4)
79 * method (4)
80 * windowBits (4)
81 * memLevel (4)
82 * strategy (4)
83 * gzip header len (4)
84 * gzip header (gzip header len)
85 * gzip footer (8)
86 * if chunk type == CHUNK_DEFLATE: (version 2 only)
87 * source start (8)
88 * source len (8)
89 * bsdiff patch offset (8) [from start of patch file]
90 * source expanded len (8) [size of uncompressed source]
91 * target expected len (8) [size of uncompressed target]
92 * gzip level (4)
93 * method (4)
94 * windowBits (4)
95 * memLevel (4)
96 * strategy (4)
97 * if chunk type == RAW: (version 2 only)
98 * target len (4)
99 * data (target len)
100 *
101 * All integers are little-endian. "source start" and "source len"
102 * specify the section of the input image that comprises this chunk,
103 * including the gzip header and footer for gzip chunks. "source
104 * expanded len" is the size of the uncompressed source data. "target
105 * expected len" is the size of the uncompressed data after applying
106 * the bsdiff patch. The next five parameters specify the zlib
107 * parameters to be used when compressing the patched data, and the
108 * next three specify the header and footer to be wrapped around the
109 * compressed data to create the output chunk (so that header contents
110 * like the timestamp are recreated exactly).
111 *
112 * After the header there are 'chunk count' bsdiff patches; the offset
113 * of each from the beginning of the file is specified in the header.
Doug Zongkera3ccba62012-08-20 15:28:02 -0700114 *
115 * This tool can take an optional file of "bonus data". This is an
116 * extra file of data that is appended to chunk #1 after it is
117 * compressed (it must be a CHUNK_DEFLATE chunk). The same file must
118 * be available (and passed to applypatch with -b) when applying the
119 * patch. This is used to reduce the size of recovery-from-boot
120 * patches by combining the boot image with recovery ramdisk
121 * information that is stored on the system partition.
Doug Zongker512536a2010-02-17 16:11:44 -0800122 */
123
Tao Bao97555da2016-12-15 10:15:06 -0800124#include "applypatch/imgdiff.h"
125
Doug Zongker512536a2010-02-17 16:11:44 -0800126#include <errno.h>
127#include <stdio.h>
128#include <stdlib.h>
129#include <string.h>
130#include <sys/stat.h>
Doug Zongker512536a2010-02-17 16:11:44 -0800131#include <sys/types.h>
Tao Bao97555da2016-12-15 10:15:06 -0800132#include <unistd.h>
Doug Zongker512536a2010-02-17 16:11:44 -0800133
Sen Jiang2fffcb12016-05-03 15:49:10 -0700134#include <bsdiff.h>
Tao Bao97555da2016-12-15 10:15:06 -0800135#include <zlib.h>
Sen Jiang2fffcb12016-05-03 15:49:10 -0700136
Doug Zongker512536a2010-02-17 16:11:44 -0800137#include "utils.h"
138
139typedef struct {
140 int type; // CHUNK_NORMAL, CHUNK_DEFLATE
141 size_t start; // offset of chunk in original image file
142
143 size_t len;
144 unsigned char* data; // data to be patched (uncompressed, for deflate chunks)
145
146 size_t source_start;
147 size_t source_len;
148
Doug Zongker512536a2010-02-17 16:11:44 -0800149 // --- for CHUNK_DEFLATE chunks only: ---
150
151 // original (compressed) deflate data
152 size_t deflate_len;
153 unsigned char* deflate_data;
154
155 char* filename; // used for zip entries
156
157 // deflate encoder parameters
158 int level, method, windowBits, memLevel, strategy;
159
160 size_t source_uncompressed_len;
161} ImageChunk;
162
163typedef struct {
164 int data_offset;
165 int deflate_len;
166 int uncomp_len;
167 char* filename;
168} ZipFileEntry;
169
Tao Baoa0c40112016-06-01 13:15:44 -0700170static int fileentry_compare(const void* a, const void* b) {
171 int ao = ((ZipFileEntry*)a)->data_offset;
172 int bo = ((ZipFileEntry*)b)->data_offset;
173 if (ao < bo) {
174 return -1;
175 } else if (ao > bo) {
176 return 1;
177 } else {
178 return 0;
179 }
Doug Zongker512536a2010-02-17 16:11:44 -0800180}
181
Doug Zongker512536a2010-02-17 16:11:44 -0800182unsigned char* ReadZip(const char* filename,
183 int* num_chunks, ImageChunk** chunks,
184 int include_pseudo_chunk) {
185 struct stat st;
186 if (stat(filename, &st) != 0) {
187 printf("failed to stat \"%s\": %s\n", filename, strerror(errno));
188 return NULL;
189 }
190
Tao Baoba9a42a2015-06-23 23:23:33 -0700191 size_t sz = static_cast<size_t>(st.st_size);
Rahul Chaudhryb29f23f2016-11-09 13:17:01 -0800192 unsigned char* img = static_cast<unsigned char*>(malloc(sz));
Doug Zongker512536a2010-02-17 16:11:44 -0800193 FILE* f = fopen(filename, "rb");
Tao Baoa0c40112016-06-01 13:15:44 -0700194 if (fread(img, 1, sz, f) != sz) {
Doug Zongker512536a2010-02-17 16:11:44 -0800195 printf("failed to read \"%s\" %s\n", filename, strerror(errno));
196 fclose(f);
197 return NULL;
198 }
199 fclose(f);
200
201 // look for the end-of-central-directory record.
202
203 int i;
204 for (i = st.st_size-20; i >= 0 && i > st.st_size - 65600; --i) {
205 if (img[i] == 0x50 && img[i+1] == 0x4b &&
206 img[i+2] == 0x05 && img[i+3] == 0x06) {
207 break;
208 }
209 }
210 // double-check: this archive consists of a single "disk"
211 if (!(img[i+4] == 0 && img[i+5] == 0 && img[i+6] == 0 && img[i+7] == 0)) {
212 printf("can't process multi-disk archive\n");
213 return NULL;
214 }
215
Tao Baoa0c40112016-06-01 13:15:44 -0700216 int cdcount = Read2(img+i+8);
217 int cdoffset = Read4(img+i+16);
Doug Zongker512536a2010-02-17 16:11:44 -0800218
Rahul Chaudhryb29f23f2016-11-09 13:17:01 -0800219 ZipFileEntry* temp_entries = static_cast<ZipFileEntry*>(malloc(
Tao Baoa0c40112016-06-01 13:15:44 -0700220 cdcount * sizeof(ZipFileEntry)));
Doug Zongker512536a2010-02-17 16:11:44 -0800221 int entrycount = 0;
222
Tao Baoa0c40112016-06-01 13:15:44 -0700223 unsigned char* cd = img+cdoffset;
Doug Zongker512536a2010-02-17 16:11:44 -0800224 for (i = 0; i < cdcount; ++i) {
225 if (!(cd[0] == 0x50 && cd[1] == 0x4b && cd[2] == 0x01 && cd[3] == 0x02)) {
226 printf("bad central directory entry %d\n", i);
Rahul Chaudhry3a5177b2016-11-15 16:18:46 -0800227 free(temp_entries);
Doug Zongker512536a2010-02-17 16:11:44 -0800228 return NULL;
229 }
230
231 int clen = Read4(cd+20); // compressed len
232 int ulen = Read4(cd+24); // uncompressed len
233 int nlen = Read2(cd+28); // filename len
234 int xlen = Read2(cd+30); // extra field len
235 int mlen = Read2(cd+32); // file comment len
236 int hoffset = Read4(cd+42); // local header offset
237
Rahul Chaudhryb29f23f2016-11-09 13:17:01 -0800238 char* filename = static_cast<char*>(malloc(nlen+1));
Doug Zongker512536a2010-02-17 16:11:44 -0800239 memcpy(filename, cd+46, nlen);
240 filename[nlen] = '\0';
241
242 int method = Read2(cd+10);
243
244 cd += 46 + nlen + xlen + mlen;
245
246 if (method != 8) { // 8 == deflate
247 free(filename);
248 continue;
249 }
250
Tao Baoa0c40112016-06-01 13:15:44 -0700251 unsigned char* lh = img + hoffset;
Doug Zongker512536a2010-02-17 16:11:44 -0800252
253 if (!(lh[0] == 0x50 && lh[1] == 0x4b && lh[2] == 0x03 && lh[3] == 0x04)) {
254 printf("bad local file header entry %d\n", i);
255 return NULL;
256 }
257
258 if (Read2(lh+26) != nlen || memcmp(lh+30, filename, nlen) != 0) {
259 printf("central dir filename doesn't match local header\n");
260 return NULL;
261 }
262
263 xlen = Read2(lh+28); // extra field len; might be different from CD entry?
264
265 temp_entries[entrycount].data_offset = hoffset+30+nlen+xlen;
266 temp_entries[entrycount].deflate_len = clen;
267 temp_entries[entrycount].uncomp_len = ulen;
268 temp_entries[entrycount].filename = filename;
269 ++entrycount;
270 }
271
Tao Baoa0c40112016-06-01 13:15:44 -0700272 qsort(temp_entries, entrycount, sizeof(ZipFileEntry), fileentry_compare);
Doug Zongker512536a2010-02-17 16:11:44 -0800273
274#if 0
275 printf("found %d deflated entries\n", entrycount);
276 for (i = 0; i < entrycount; ++i) {
277 printf("off %10d len %10d unlen %10d %p %s\n",
278 temp_entries[i].data_offset,
279 temp_entries[i].deflate_len,
280 temp_entries[i].uncomp_len,
281 temp_entries[i].filename,
282 temp_entries[i].filename);
283 }
284#endif
285
286 *num_chunks = 0;
Rahul Chaudhryb29f23f2016-11-09 13:17:01 -0800287 *chunks = static_cast<ImageChunk*>(malloc((entrycount*2+2) * sizeof(ImageChunk)));
Doug Zongker512536a2010-02-17 16:11:44 -0800288 ImageChunk* curr = *chunks;
289
290 if (include_pseudo_chunk) {
291 curr->type = CHUNK_NORMAL;
292 curr->start = 0;
293 curr->len = st.st_size;
Tao Baoa0c40112016-06-01 13:15:44 -0700294 curr->data = img;
Doug Zongker512536a2010-02-17 16:11:44 -0800295 curr->filename = NULL;
Doug Zongker512536a2010-02-17 16:11:44 -0800296 ++curr;
297 ++*num_chunks;
298 }
299
300 int pos = 0;
301 int nextentry = 0;
302
303 while (pos < st.st_size) {
304 if (nextentry < entrycount && pos == temp_entries[nextentry].data_offset) {
305 curr->type = CHUNK_DEFLATE;
306 curr->start = pos;
307 curr->deflate_len = temp_entries[nextentry].deflate_len;
Tao Baoa0c40112016-06-01 13:15:44 -0700308 curr->deflate_data = img + pos;
Doug Zongker512536a2010-02-17 16:11:44 -0800309 curr->filename = temp_entries[nextentry].filename;
Doug Zongker512536a2010-02-17 16:11:44 -0800310
311 curr->len = temp_entries[nextentry].uncomp_len;
Rahul Chaudhryb29f23f2016-11-09 13:17:01 -0800312 curr->data = static_cast<unsigned char*>(malloc(curr->len));
Doug Zongker512536a2010-02-17 16:11:44 -0800313
314 z_stream strm;
315 strm.zalloc = Z_NULL;
316 strm.zfree = Z_NULL;
317 strm.opaque = Z_NULL;
318 strm.avail_in = curr->deflate_len;
319 strm.next_in = curr->deflate_data;
320
321 // -15 means we are decoding a 'raw' deflate stream; zlib will
322 // not expect zlib headers.
323 int ret = inflateInit2(&strm, -15);
Rahul Chaudhrya793c582016-11-29 17:10:14 -0800324 if (ret < 0) {
325 printf("failed to initialize inflate: %d\n", ret);
326 return NULL;
327 }
Doug Zongker512536a2010-02-17 16:11:44 -0800328
329 strm.avail_out = curr->len;
330 strm.next_out = curr->data;
331 ret = inflate(&strm, Z_NO_FLUSH);
332 if (ret != Z_STREAM_END) {
333 printf("failed to inflate \"%s\"; %d\n", curr->filename, ret);
334 return NULL;
335 }
336
337 inflateEnd(&strm);
338
339 pos += curr->deflate_len;
340 ++nextentry;
341 ++*num_chunks;
342 ++curr;
343 continue;
344 }
345
346 // use a normal chunk to take all the data up to the start of the
347 // next deflate section.
348
349 curr->type = CHUNK_NORMAL;
350 curr->start = pos;
351 if (nextentry < entrycount) {
352 curr->len = temp_entries[nextentry].data_offset - pos;
353 } else {
354 curr->len = st.st_size - pos;
355 }
Tao Baoa0c40112016-06-01 13:15:44 -0700356 curr->data = img + pos;
Doug Zongker512536a2010-02-17 16:11:44 -0800357 curr->filename = NULL;
Doug Zongker512536a2010-02-17 16:11:44 -0800358 pos += curr->len;
359
360 ++*num_chunks;
361 ++curr;
362 }
363
Tao Baoa0c40112016-06-01 13:15:44 -0700364 free(temp_entries);
365 return img;
Doug Zongker512536a2010-02-17 16:11:44 -0800366}
367
368/*
369 * Read the given file and break it up into chunks, putting the number
370 * of chunks and their info in *num_chunks and **chunks,
371 * respectively. Returns a malloc'd block of memory containing the
372 * contents of the file; various pointers in the output chunk array
373 * will point into this block of memory. The caller should free the
374 * return value when done with all the chunks. Returns NULL on
375 * failure.
376 */
Tao Bao97555da2016-12-15 10:15:06 -0800377unsigned char* ReadImage(const char* filename, int* num_chunks, ImageChunk** chunks) {
Doug Zongker512536a2010-02-17 16:11:44 -0800378 struct stat st;
379 if (stat(filename, &st) != 0) {
380 printf("failed to stat \"%s\": %s\n", filename, strerror(errno));
381 return NULL;
382 }
383
Tao Baoba9a42a2015-06-23 23:23:33 -0700384 size_t sz = static_cast<size_t>(st.st_size);
Rahul Chaudhryb29f23f2016-11-09 13:17:01 -0800385 unsigned char* img = static_cast<unsigned char*>(malloc(sz + 4));
Doug Zongker512536a2010-02-17 16:11:44 -0800386 FILE* f = fopen(filename, "rb");
Tao Baoa0c40112016-06-01 13:15:44 -0700387 if (fread(img, 1, sz, f) != sz) {
Doug Zongker512536a2010-02-17 16:11:44 -0800388 printf("failed to read \"%s\" %s\n", filename, strerror(errno));
389 fclose(f);
390 return NULL;
391 }
392 fclose(f);
393
394 // append 4 zero bytes to the data so we can always search for the
395 // four-byte string 1f8b0800 starting at any point in the actual
396 // file data, without special-casing the end of the data.
Tao Baoa0c40112016-06-01 13:15:44 -0700397 memset(img+sz, 0, 4);
Doug Zongker512536a2010-02-17 16:11:44 -0800398
399 size_t pos = 0;
400
401 *num_chunks = 0;
402 *chunks = NULL;
403
Tao Baoba9a42a2015-06-23 23:23:33 -0700404 while (pos < sz) {
Tao Bao97555da2016-12-15 10:15:06 -0800405 unsigned char* p = img + pos;
Doug Zongker512536a2010-02-17 16:11:44 -0800406
Tao Baoba9a42a2015-06-23 23:23:33 -0700407 if (sz - pos >= 4 &&
Doug Zongker512536a2010-02-17 16:11:44 -0800408 p[0] == 0x1f && p[1] == 0x8b &&
409 p[2] == 0x08 && // deflate compression
410 p[3] == 0x00) { // no header flags
411 // 'pos' is the offset of the start of a gzip chunk.
Johan Redestigc68bd342015-04-14 21:20:06 +0200412 size_t chunk_offset = pos;
Doug Zongker512536a2010-02-17 16:11:44 -0800413
414 *num_chunks += 3;
Tao Bao97555da2016-12-15 10:15:06 -0800415 *chunks = static_cast<ImageChunk*>(realloc(*chunks, *num_chunks * sizeof(ImageChunk)));
Doug Zongker512536a2010-02-17 16:11:44 -0800416 ImageChunk* curr = *chunks + (*num_chunks-3);
417
418 // create a normal chunk for the header.
419 curr->start = pos;
420 curr->type = CHUNK_NORMAL;
421 curr->len = GZIP_HEADER_LEN;
422 curr->data = p;
Doug Zongker512536a2010-02-17 16:11:44 -0800423
424 pos += curr->len;
425 p += curr->len;
426 ++curr;
427
428 curr->type = CHUNK_DEFLATE;
429 curr->filename = NULL;
Doug Zongker512536a2010-02-17 16:11:44 -0800430
431 // We must decompress this chunk in order to discover where it
432 // ends, and so we can put the uncompressed data and its length
433 // into curr->data and curr->len.
434
435 size_t allocated = 32768;
436 curr->len = 0;
Rahul Chaudhryb29f23f2016-11-09 13:17:01 -0800437 curr->data = static_cast<unsigned char*>(malloc(allocated));
Doug Zongker512536a2010-02-17 16:11:44 -0800438 curr->start = pos;
439 curr->deflate_data = p;
440
441 z_stream strm;
442 strm.zalloc = Z_NULL;
443 strm.zfree = Z_NULL;
444 strm.opaque = Z_NULL;
Tao Baoba9a42a2015-06-23 23:23:33 -0700445 strm.avail_in = sz - pos;
Doug Zongker512536a2010-02-17 16:11:44 -0800446 strm.next_in = p;
447
448 // -15 means we are decoding a 'raw' deflate stream; zlib will
449 // not expect zlib headers.
450 int ret = inflateInit2(&strm, -15);
Rahul Chaudhrya793c582016-11-29 17:10:14 -0800451 if (ret < 0) {
452 printf("failed to initialize inflate: %d\n", ret);
453 return NULL;
454 }
Doug Zongker512536a2010-02-17 16:11:44 -0800455
456 do {
457 strm.avail_out = allocated - curr->len;
458 strm.next_out = curr->data + curr->len;
459 ret = inflate(&strm, Z_NO_FLUSH);
Johan Redestigc68bd342015-04-14 21:20:06 +0200460 if (ret < 0) {
Sen Jiangfa4f1b72016-02-11 16:14:23 -0800461 printf("Warning: inflate failed [%s] at offset [%zu],"
462 " treating as a normal chunk\n",
David Riley0779fc92015-12-10 10:18:25 -0800463 strm.msg, chunk_offset);
Sen Jiangfa4f1b72016-02-11 16:14:23 -0800464 break;
Johan Redestigc68bd342015-04-14 21:20:06 +0200465 }
Doug Zongker512536a2010-02-17 16:11:44 -0800466 curr->len = allocated - strm.avail_out;
467 if (strm.avail_out == 0) {
468 allocated *= 2;
Rahul Chaudhryb29f23f2016-11-09 13:17:01 -0800469 curr->data = static_cast<unsigned char*>(realloc(curr->data, allocated));
Doug Zongker512536a2010-02-17 16:11:44 -0800470 }
471 } while (ret != Z_STREAM_END);
472
Tao Baoba9a42a2015-06-23 23:23:33 -0700473 curr->deflate_len = sz - strm.avail_in - pos;
Doug Zongker512536a2010-02-17 16:11:44 -0800474 inflateEnd(&strm);
Sen Jiangfa4f1b72016-02-11 16:14:23 -0800475
476 if (ret < 0) {
477 free(curr->data);
478 *num_chunks -= 2;
479 continue;
480 }
481
Doug Zongker512536a2010-02-17 16:11:44 -0800482 pos += curr->deflate_len;
483 p += curr->deflate_len;
484 ++curr;
485
486 // create a normal chunk for the footer
487
488 curr->type = CHUNK_NORMAL;
489 curr->start = pos;
490 curr->len = GZIP_FOOTER_LEN;
Tao Baoa0c40112016-06-01 13:15:44 -0700491 curr->data = img+pos;
Doug Zongker512536a2010-02-17 16:11:44 -0800492
493 pos += curr->len;
494 p += curr->len;
495 ++curr;
496
497 // The footer (that we just skipped over) contains the size of
498 // the uncompressed data. Double-check to make sure that it
499 // matches the size of the data we got when we actually did
500 // the decompression.
501 size_t footer_size = Read4(p-4);
502 if (footer_size != curr[-2].len) {
Tao Bao97555da2016-12-15 10:15:06 -0800503 printf("Error: footer size %zu != decompressed size %zu\n", footer_size, curr[-2].len);
Tao Baoa0c40112016-06-01 13:15:44 -0700504 free(img);
Doug Zongker512536a2010-02-17 16:11:44 -0800505 return NULL;
506 }
507 } else {
508 // Reallocate the list for every chunk; we expect the number of
509 // chunks to be small (5 for typical boot and recovery images).
510 ++*num_chunks;
Rahul Chaudhryb29f23f2016-11-09 13:17:01 -0800511 *chunks = static_cast<ImageChunk*>(realloc(*chunks, *num_chunks * sizeof(ImageChunk)));
Doug Zongker512536a2010-02-17 16:11:44 -0800512 ImageChunk* curr = *chunks + (*num_chunks-1);
513 curr->start = pos;
Doug Zongker512536a2010-02-17 16:11:44 -0800514
515 // 'pos' is not the offset of the start of a gzip chunk, so scan
516 // forward until we find a gzip header.
517 curr->type = CHUNK_NORMAL;
518 curr->data = p;
519
Tao Baoba9a42a2015-06-23 23:23:33 -0700520 for (curr->len = 0; curr->len < (sz - pos); ++curr->len) {
Doug Zongker512536a2010-02-17 16:11:44 -0800521 if (p[curr->len] == 0x1f &&
522 p[curr->len+1] == 0x8b &&
523 p[curr->len+2] == 0x08 &&
524 p[curr->len+3] == 0x00) {
525 break;
526 }
527 }
528 pos += curr->len;
529 }
530 }
531
Tao Baoa0c40112016-06-01 13:15:44 -0700532 return img;
Doug Zongker512536a2010-02-17 16:11:44 -0800533}
534
535#define BUFFER_SIZE 32768
536
537/*
538 * Takes the uncompressed data stored in the chunk, compresses it
539 * using the zlib parameters stored in the chunk, and checks that it
540 * matches exactly the compressed data we started with (also stored in
541 * the chunk). Return 0 on success.
542 */
543int TryReconstruction(ImageChunk* chunk, unsigned char* out) {
544 size_t p = 0;
545
546#if 0
547 printf("trying %d %d %d %d %d\n",
548 chunk->level, chunk->method, chunk->windowBits,
549 chunk->memLevel, chunk->strategy);
550#endif
551
552 z_stream strm;
553 strm.zalloc = Z_NULL;
554 strm.zfree = Z_NULL;
555 strm.opaque = Z_NULL;
556 strm.avail_in = chunk->len;
557 strm.next_in = chunk->data;
558 int ret;
559 ret = deflateInit2(&strm, chunk->level, chunk->method, chunk->windowBits,
560 chunk->memLevel, chunk->strategy);
Rahul Chaudhrya793c582016-11-29 17:10:14 -0800561 if (ret < 0) {
562 printf("failed to initialize deflate: %d\n", ret);
563 return -1;
564 }
Doug Zongker512536a2010-02-17 16:11:44 -0800565 do {
566 strm.avail_out = BUFFER_SIZE;
567 strm.next_out = out;
568 ret = deflate(&strm, Z_FINISH);
Rahul Chaudhrya793c582016-11-29 17:10:14 -0800569 if (ret < 0) {
570 printf("failed to deflate: %d\n", ret);
571 return -1;
572 }
Doug Zongker512536a2010-02-17 16:11:44 -0800573 size_t have = BUFFER_SIZE - strm.avail_out;
574
575 if (memcmp(out, chunk->deflate_data+p, have) != 0) {
576 // mismatch; data isn't the same.
577 deflateEnd(&strm);
578 return -1;
579 }
580 p += have;
581 } while (ret != Z_STREAM_END);
582 deflateEnd(&strm);
583 if (p != chunk->deflate_len) {
584 // mismatch; ran out of data before we should have.
585 return -1;
586 }
587 return 0;
588}
589
590/*
591 * Verify that we can reproduce exactly the same compressed data that
592 * we started with. Sets the level, method, windowBits, memLevel, and
593 * strategy fields in the chunk to the encoding parameters needed to
594 * produce the right output. Returns 0 on success.
595 */
596int ReconstructDeflateChunk(ImageChunk* chunk) {
597 if (chunk->type != CHUNK_DEFLATE) {
598 printf("attempt to reconstruct non-deflate chunk\n");
599 return -1;
600 }
601
Rahul Chaudhryb29f23f2016-11-09 13:17:01 -0800602 unsigned char* out = static_cast<unsigned char*>(malloc(BUFFER_SIZE));
Doug Zongker512536a2010-02-17 16:11:44 -0800603
604 // We only check two combinations of encoder parameters: level 6
605 // (the default) and level 9 (the maximum).
606 for (chunk->level = 6; chunk->level <= 9; chunk->level += 3) {
607 chunk->windowBits = -15; // 32kb window; negative to indicate a raw stream.
608 chunk->memLevel = 8; // the default value.
609 chunk->method = Z_DEFLATED;
610 chunk->strategy = Z_DEFAULT_STRATEGY;
611
612 if (TryReconstruction(chunk, out) == 0) {
613 free(out);
614 return 0;
615 }
616 }
617
618 free(out);
619 return -1;
620}
621
622/*
623 * Given source and target chunks, compute a bsdiff patch between them
624 * by running bsdiff in a subprocess. Return the patch data, placing
625 * its length in *size. Return NULL on failure. We expect the bsdiff
626 * program to be in the path.
627 */
628unsigned char* MakePatch(ImageChunk* src, ImageChunk* tgt, size_t* size) {
629 if (tgt->type == CHUNK_NORMAL) {
630 if (tgt->len <= 160) {
631 tgt->type = CHUNK_RAW;
632 *size = tgt->len;
633 return tgt->data;
634 }
635 }
636
Tao Bao97555da2016-12-15 10:15:06 -0800637#if defined(__ANDROID__)
638 char ptemp[] = "/data/local/tmp/imgdiff-patch-XXXXXX";
639#else
Doug Zongker512536a2010-02-17 16:11:44 -0800640 char ptemp[] = "/tmp/imgdiff-patch-XXXXXX";
Tao Bao97555da2016-12-15 10:15:06 -0800641#endif
Jeremy Compostellaa91c66d2015-09-08 19:15:09 +0200642 int fd = mkstemp(ptemp);
643
644 if (fd == -1) {
645 printf("MakePatch failed to create a temporary file: %s\n",
646 strerror(errno));
647 return NULL;
648 }
649 close(fd); // temporary file is created and we don't need its file
650 // descriptor
Doug Zongker512536a2010-02-17 16:11:44 -0800651
Sen Jiang2fffcb12016-05-03 15:49:10 -0700652 int r = bsdiff::bsdiff(src->data, src->len, tgt->data, tgt->len, ptemp);
Doug Zongker512536a2010-02-17 16:11:44 -0800653 if (r != 0) {
654 printf("bsdiff() failed: %d\n", r);
655 return NULL;
656 }
657
658 struct stat st;
659 if (stat(ptemp, &st) != 0) {
660 printf("failed to stat patch file %s: %s\n",
661 ptemp, strerror(errno));
662 return NULL;
663 }
664
Tao Baoba9a42a2015-06-23 23:23:33 -0700665 size_t sz = static_cast<size_t>(st.st_size);
Tao Baoa0c40112016-06-01 13:15:44 -0700666 // TODO: Memory leak on error return.
Rahul Chaudhryb29f23f2016-11-09 13:17:01 -0800667 unsigned char* data = static_cast<unsigned char*>(malloc(sz));
Doug Zongker512536a2010-02-17 16:11:44 -0800668
Tao Baoba9a42a2015-06-23 23:23:33 -0700669 if (tgt->type == CHUNK_NORMAL && tgt->len <= sz) {
Doug Zongker512536a2010-02-17 16:11:44 -0800670 unlink(ptemp);
671
672 tgt->type = CHUNK_RAW;
673 *size = tgt->len;
674 return tgt->data;
675 }
676
Tao Baoba9a42a2015-06-23 23:23:33 -0700677 *size = sz;
Doug Zongker512536a2010-02-17 16:11:44 -0800678
679 FILE* f = fopen(ptemp, "rb");
680 if (f == NULL) {
681 printf("failed to open patch %s: %s\n", ptemp, strerror(errno));
682 return NULL;
683 }
Tao Baoa0c40112016-06-01 13:15:44 -0700684 if (fread(data, 1, sz, f) != sz) {
Doug Zongker512536a2010-02-17 16:11:44 -0800685 printf("failed to read patch %s: %s\n", ptemp, strerror(errno));
686 return NULL;
687 }
688 fclose(f);
689
690 unlink(ptemp);
691
692 tgt->source_start = src->start;
693 switch (tgt->type) {
694 case CHUNK_NORMAL:
695 tgt->source_len = src->len;
696 break;
697 case CHUNK_DEFLATE:
698 tgt->source_len = src->deflate_len;
699 tgt->source_uncompressed_len = src->len;
700 break;
701 }
702
Tao Baoa0c40112016-06-01 13:15:44 -0700703 return data;
Doug Zongker512536a2010-02-17 16:11:44 -0800704}
705
706/*
707 * Cause a gzip chunk to be treated as a normal chunk (ie, as a blob
708 * of uninterpreted data). The resulting patch will likely be about
709 * as big as the target file, but it lets us handle the case of images
710 * where some gzip chunks are reconstructible but others aren't (by
711 * treating the ones that aren't as normal chunks).
712 */
713void ChangeDeflateChunkToNormal(ImageChunk* ch) {
714 if (ch->type != CHUNK_DEFLATE) return;
715 ch->type = CHUNK_NORMAL;
716 free(ch->data);
717 ch->data = ch->deflate_data;
718 ch->len = ch->deflate_len;
719}
720
721/*
722 * Return true if the data in the chunk is identical (including the
723 * compressed representation, for gzip chunks).
724 */
725int AreChunksEqual(ImageChunk* a, ImageChunk* b) {
726 if (a->type != b->type) return 0;
727
728 switch (a->type) {
729 case CHUNK_NORMAL:
730 return a->len == b->len && memcmp(a->data, b->data, a->len) == 0;
731
732 case CHUNK_DEFLATE:
733 return a->deflate_len == b->deflate_len &&
734 memcmp(a->deflate_data, b->deflate_data, a->deflate_len) == 0;
735
736 default:
737 printf("unknown chunk type %d\n", a->type);
738 return 0;
739 }
740}
741
742/*
743 * Look for runs of adjacent normal chunks and compress them down into
744 * a single chunk. (Such runs can be produced when deflate chunks are
745 * changed to normal chunks.)
746 */
747void MergeAdjacentNormalChunks(ImageChunk* chunks, int* num_chunks) {
748 int out = 0;
749 int in_start = 0, in_end;
750 while (in_start < *num_chunks) {
751 if (chunks[in_start].type != CHUNK_NORMAL) {
752 in_end = in_start+1;
753 } else {
754 // in_start is a normal chunk. Look for a run of normal chunks
755 // that constitute a solid block of data (ie, each chunk begins
756 // where the previous one ended).
757 for (in_end = in_start+1;
758 in_end < *num_chunks && chunks[in_end].type == CHUNK_NORMAL &&
759 (chunks[in_end].start ==
760 chunks[in_end-1].start + chunks[in_end-1].len &&
761 chunks[in_end].data ==
762 chunks[in_end-1].data + chunks[in_end-1].len);
763 ++in_end);
764 }
765
766 if (in_end == in_start+1) {
767#if 0
768 printf("chunk %d is now %d\n", in_start, out);
769#endif
770 if (out != in_start) {
771 memcpy(chunks+out, chunks+in_start, sizeof(ImageChunk));
772 }
773 } else {
774#if 0
775 printf("collapse normal chunks %d-%d into %d\n", in_start, in_end-1, out);
776#endif
777
778 // Merge chunks [in_start, in_end-1] into one chunk. Since the
779 // data member of each chunk is just a pointer into an in-memory
780 // copy of the file, this can be done without recopying (the
781 // output chunk has the first chunk's start location and data
782 // pointer, and length equal to the sum of the input chunk
783 // lengths).
784 chunks[out].type = CHUNK_NORMAL;
785 chunks[out].start = chunks[in_start].start;
786 chunks[out].data = chunks[in_start].data;
787 chunks[out].len = chunks[in_end-1].len +
788 (chunks[in_end-1].start - chunks[in_start].start);
789 }
790
791 ++out;
792 in_start = in_end;
793 }
794 *num_chunks = out;
795}
796
Tao Bao97555da2016-12-15 10:15:06 -0800797ImageChunk* FindChunkByName(const char* name, ImageChunk* chunks, int num_chunks) {
798 for (int i = 0; i < num_chunks; ++i) {
Doug Zongker512536a2010-02-17 16:11:44 -0800799 if (chunks[i].type == CHUNK_DEFLATE && chunks[i].filename &&
800 strcmp(name, chunks[i].filename) == 0) {
801 return chunks+i;
802 }
803 }
804 return NULL;
805}
806
807void DumpChunks(ImageChunk* chunks, int num_chunks) {
Tao Baoba9a42a2015-06-23 23:23:33 -0700808 for (int i = 0; i < num_chunks; ++i) {
809 printf("chunk %d: type %d start %zu len %zu\n",
Doug Zongker512536a2010-02-17 16:11:44 -0800810 i, chunks[i].type, chunks[i].start, chunks[i].len);
811 }
812}
813
Tao Bao97555da2016-12-15 10:15:06 -0800814int imgdiff(int argc, const char** argv) {
815 bool zip_mode = false;
Doug Zongker512536a2010-02-17 16:11:44 -0800816
Doug Zongkera3ccba62012-08-20 15:28:02 -0700817 if (argc >= 2 && strcmp(argv[1], "-z") == 0) {
Tao Bao97555da2016-12-15 10:15:06 -0800818 zip_mode = true;
Doug Zongker512536a2010-02-17 16:11:44 -0800819 --argc;
820 ++argv;
821 }
822
Doug Zongkera3ccba62012-08-20 15:28:02 -0700823 size_t bonus_size = 0;
Tao Baoa0c40112016-06-01 13:15:44 -0700824 unsigned char* bonus_data = NULL;
Doug Zongkera3ccba62012-08-20 15:28:02 -0700825 if (argc >= 3 && strcmp(argv[1], "-b") == 0) {
826 struct stat st;
827 if (stat(argv[2], &st) != 0) {
828 printf("failed to stat bonus file %s: %s\n", argv[2], strerror(errno));
829 return 1;
830 }
831 bonus_size = st.st_size;
Rahul Chaudhryb29f23f2016-11-09 13:17:01 -0800832 bonus_data = static_cast<unsigned char*>(malloc(bonus_size));
Doug Zongkera3ccba62012-08-20 15:28:02 -0700833 FILE* f = fopen(argv[2], "rb");
834 if (f == NULL) {
835 printf("failed to open bonus file %s: %s\n", argv[2], strerror(errno));
836 return 1;
837 }
Tao Baoa0c40112016-06-01 13:15:44 -0700838 if (fread(bonus_data, 1, bonus_size, f) != bonus_size) {
Doug Zongkera3ccba62012-08-20 15:28:02 -0700839 printf("failed to read bonus file %s: %s\n", argv[2], strerror(errno));
840 return 1;
841 }
842 fclose(f);
843
844 argc -= 2;
845 argv += 2;
846 }
847
848 if (argc != 4) {
Doug Zongkera3ccba62012-08-20 15:28:02 -0700849 printf("usage: %s [-z] [-b <bonus-file>] <src-img> <tgt-img> <patch-file>\n",
850 argv[0]);
851 return 2;
852 }
Doug Zongker512536a2010-02-17 16:11:44 -0800853
854 int num_src_chunks;
855 ImageChunk* src_chunks;
856 int num_tgt_chunks;
857 ImageChunk* tgt_chunks;
858 int i;
859
860 if (zip_mode) {
861 if (ReadZip(argv[1], &num_src_chunks, &src_chunks, 1) == NULL) {
862 printf("failed to break apart source zip file\n");
863 return 1;
864 }
865 if (ReadZip(argv[2], &num_tgt_chunks, &tgt_chunks, 0) == NULL) {
866 printf("failed to break apart target zip file\n");
867 return 1;
868 }
869 } else {
870 if (ReadImage(argv[1], &num_src_chunks, &src_chunks) == NULL) {
871 printf("failed to break apart source image\n");
872 return 1;
873 }
874 if (ReadImage(argv[2], &num_tgt_chunks, &tgt_chunks) == NULL) {
875 printf("failed to break apart target image\n");
876 return 1;
877 }
878
879 // Verify that the source and target images have the same chunk
880 // structure (ie, the same sequence of deflate and normal chunks).
881
Tao Bao97555da2016-12-15 10:15:06 -0800882 // Merge the gzip header and footer in with any adjacent
883 // normal chunks.
884 MergeAdjacentNormalChunks(tgt_chunks, &num_tgt_chunks);
885 MergeAdjacentNormalChunks(src_chunks, &num_src_chunks);
Doug Zongker512536a2010-02-17 16:11:44 -0800886
887 if (num_src_chunks != num_tgt_chunks) {
888 printf("source and target don't have same number of chunks!\n");
889 printf("source chunks:\n");
890 DumpChunks(src_chunks, num_src_chunks);
891 printf("target chunks:\n");
892 DumpChunks(tgt_chunks, num_tgt_chunks);
893 return 1;
894 }
895 for (i = 0; i < num_src_chunks; ++i) {
896 if (src_chunks[i].type != tgt_chunks[i].type) {
Tao Bao97555da2016-12-15 10:15:06 -0800897 printf("source and target don't have same chunk structure! (chunk %d)\n", i);
Doug Zongker512536a2010-02-17 16:11:44 -0800898 printf("source chunks:\n");
899 DumpChunks(src_chunks, num_src_chunks);
900 printf("target chunks:\n");
901 DumpChunks(tgt_chunks, num_tgt_chunks);
902 return 1;
903 }
904 }
905 }
906
907 for (i = 0; i < num_tgt_chunks; ++i) {
908 if (tgt_chunks[i].type == CHUNK_DEFLATE) {
909 // Confirm that given the uncompressed chunk data in the target, we
910 // can recompress it and get exactly the same bits as are in the
911 // input target image. If this fails, treat the chunk as a normal
912 // non-deflated chunk.
913 if (ReconstructDeflateChunk(tgt_chunks+i) < 0) {
914 printf("failed to reconstruct target deflate chunk %d [%s]; "
915 "treating as normal\n", i, tgt_chunks[i].filename);
916 ChangeDeflateChunkToNormal(tgt_chunks+i);
917 if (zip_mode) {
918 ImageChunk* src = FindChunkByName(tgt_chunks[i].filename, src_chunks, num_src_chunks);
919 if (src) {
920 ChangeDeflateChunkToNormal(src);
921 }
922 } else {
923 ChangeDeflateChunkToNormal(src_chunks+i);
924 }
925 continue;
926 }
927
928 // If two deflate chunks are identical (eg, the kernel has not
929 // changed between two builds), treat them as normal chunks.
930 // This makes applypatch much faster -- it can apply a trivial
931 // patch to the compressed data, rather than uncompressing and
932 // recompressing to apply the trivial patch to the uncompressed
933 // data.
934 ImageChunk* src;
935 if (zip_mode) {
936 src = FindChunkByName(tgt_chunks[i].filename, src_chunks, num_src_chunks);
937 } else {
938 src = src_chunks+i;
939 }
940
941 if (src == NULL || AreChunksEqual(tgt_chunks+i, src)) {
942 ChangeDeflateChunkToNormal(tgt_chunks+i);
943 if (src) {
944 ChangeDeflateChunkToNormal(src);
945 }
946 }
947 }
948 }
949
950 // Merging neighboring normal chunks.
951 if (zip_mode) {
952 // For zips, we only need to do this to the target: deflated
953 // chunks are matched via filename, and normal chunks are patched
954 // using the entire source file as the source.
955 MergeAdjacentNormalChunks(tgt_chunks, &num_tgt_chunks);
956 } else {
957 // For images, we need to maintain the parallel structure of the
958 // chunk lists, so do the merging in both the source and target
959 // lists.
960 MergeAdjacentNormalChunks(tgt_chunks, &num_tgt_chunks);
961 MergeAdjacentNormalChunks(src_chunks, &num_src_chunks);
962 if (num_src_chunks != num_tgt_chunks) {
963 // This shouldn't happen.
964 printf("merging normal chunks went awry\n");
965 return 1;
966 }
967 }
968
969 // Compute bsdiff patches for each chunk's data (the uncompressed
970 // data, in the case of deflate chunks).
971
Doug Zongkera3ccba62012-08-20 15:28:02 -0700972 DumpChunks(src_chunks, num_src_chunks);
973
Doug Zongker512536a2010-02-17 16:11:44 -0800974 printf("Construct patches for %d chunks...\n", num_tgt_chunks);
Rahul Chaudhryb29f23f2016-11-09 13:17:01 -0800975 unsigned char** patch_data = static_cast<unsigned char**>(malloc(
Tao Baoba9a42a2015-06-23 23:23:33 -0700976 num_tgt_chunks * sizeof(unsigned char*)));
Rahul Chaudhryb29f23f2016-11-09 13:17:01 -0800977 size_t* patch_size = static_cast<size_t*>(malloc(num_tgt_chunks * sizeof(size_t)));
Doug Zongker512536a2010-02-17 16:11:44 -0800978 for (i = 0; i < num_tgt_chunks; ++i) {
979 if (zip_mode) {
980 ImageChunk* src;
981 if (tgt_chunks[i].type == CHUNK_DEFLATE &&
Tao Bao97555da2016-12-15 10:15:06 -0800982 (src = FindChunkByName(tgt_chunks[i].filename, src_chunks, num_src_chunks))) {
Doug Zongker512536a2010-02-17 16:11:44 -0800983 patch_data[i] = MakePatch(src, tgt_chunks+i, patch_size+i);
984 } else {
985 patch_data[i] = MakePatch(src_chunks, tgt_chunks+i, patch_size+i);
986 }
987 } else {
Tao Baoa0c40112016-06-01 13:15:44 -0700988 if (i == 1 && bonus_data) {
Tao Baoba9a42a2015-06-23 23:23:33 -0700989 printf(" using %zu bytes of bonus data for chunk %d\n", bonus_size, i);
Rahul Chaudhryb29f23f2016-11-09 13:17:01 -0800990 src_chunks[i].data = static_cast<unsigned char*>(realloc(src_chunks[i].data,
Tao Baoba9a42a2015-06-23 23:23:33 -0700991 src_chunks[i].len + bonus_size));
Tao Baoa0c40112016-06-01 13:15:44 -0700992 memcpy(src_chunks[i].data+src_chunks[i].len, bonus_data, bonus_size);
Doug Zongkera3ccba62012-08-20 15:28:02 -0700993 src_chunks[i].len += bonus_size;
994 }
995
Doug Zongker512536a2010-02-17 16:11:44 -0800996 patch_data[i] = MakePatch(src_chunks+i, tgt_chunks+i, patch_size+i);
997 }
Tao Bao97555da2016-12-15 10:15:06 -0800998 printf("patch %3d is %zu bytes (of %zu)\n", i, patch_size[i], tgt_chunks[i].source_len);
Doug Zongker512536a2010-02-17 16:11:44 -0800999 }
1000
1001 // Figure out how big the imgdiff file header is going to be, so
1002 // that we can correctly compute the offset of each bsdiff patch
1003 // within the file.
1004
1005 size_t total_header_size = 12;
1006 for (i = 0; i < num_tgt_chunks; ++i) {
1007 total_header_size += 4;
1008 switch (tgt_chunks[i].type) {
1009 case CHUNK_NORMAL:
1010 total_header_size += 8*3;
1011 break;
1012 case CHUNK_DEFLATE:
1013 total_header_size += 8*5 + 4*5;
1014 break;
1015 case CHUNK_RAW:
1016 total_header_size += 4 + patch_size[i];
1017 break;
1018 }
1019 }
1020
1021 size_t offset = total_header_size;
1022
1023 FILE* f = fopen(argv[3], "wb");
1024
1025 // Write out the headers.
1026
1027 fwrite("IMGDIFF2", 1, 8, f);
1028 Write4(num_tgt_chunks, f);
1029 for (i = 0; i < num_tgt_chunks; ++i) {
1030 Write4(tgt_chunks[i].type, f);
1031
1032 switch (tgt_chunks[i].type) {
1033 case CHUNK_NORMAL:
Tao Baoba9a42a2015-06-23 23:23:33 -07001034 printf("chunk %3d: normal (%10zu, %10zu) %10zu\n", i,
Doug Zongker512536a2010-02-17 16:11:44 -08001035 tgt_chunks[i].start, tgt_chunks[i].len, patch_size[i]);
1036 Write8(tgt_chunks[i].source_start, f);
1037 Write8(tgt_chunks[i].source_len, f);
1038 Write8(offset, f);
1039 offset += patch_size[i];
1040 break;
1041
1042 case CHUNK_DEFLATE:
Tao Baoba9a42a2015-06-23 23:23:33 -07001043 printf("chunk %3d: deflate (%10zu, %10zu) %10zu %s\n", i,
Doug Zongker512536a2010-02-17 16:11:44 -08001044 tgt_chunks[i].start, tgt_chunks[i].deflate_len, patch_size[i],
1045 tgt_chunks[i].filename);
1046 Write8(tgt_chunks[i].source_start, f);
1047 Write8(tgt_chunks[i].source_len, f);
1048 Write8(offset, f);
1049 Write8(tgt_chunks[i].source_uncompressed_len, f);
1050 Write8(tgt_chunks[i].len, f);
1051 Write4(tgt_chunks[i].level, f);
1052 Write4(tgt_chunks[i].method, f);
1053 Write4(tgt_chunks[i].windowBits, f);
1054 Write4(tgt_chunks[i].memLevel, f);
1055 Write4(tgt_chunks[i].strategy, f);
1056 offset += patch_size[i];
1057 break;
1058
1059 case CHUNK_RAW:
Tao Baoba9a42a2015-06-23 23:23:33 -07001060 printf("chunk %3d: raw (%10zu, %10zu)\n", i,
Doug Zongker512536a2010-02-17 16:11:44 -08001061 tgt_chunks[i].start, tgt_chunks[i].len);
1062 Write4(patch_size[i], f);
1063 fwrite(patch_data[i], 1, patch_size[i], f);
1064 break;
1065 }
1066 }
1067
1068 // Append each chunk's bsdiff patch, in order.
1069
1070 for (i = 0; i < num_tgt_chunks; ++i) {
1071 if (tgt_chunks[i].type != CHUNK_RAW) {
1072 fwrite(patch_data[i], 1, patch_size[i], f);
1073 }
1074 }
1075
Rahul Chaudhry3a5177b2016-11-15 16:18:46 -08001076 free(patch_data);
1077 free(patch_size);
1078
Doug Zongker512536a2010-02-17 16:11:44 -08001079 fclose(f);
Doug Zongker512536a2010-02-17 16:11:44 -08001080
1081 return 0;
1082}