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Narayan Kamath7462f022013-11-21 13:05:04 +00001/*
2 * Copyright (C) 2008 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 * Read-only access to Zip archives, with minimal heap allocation.
19 */
Narayan Kamath7462f022013-11-21 13:05:04 +000020
21#include <assert.h>
22#include <errno.h>
Mark Salyzyn99ef9912014-03-14 14:26:22 -070023#include <fcntl.h>
24#include <inttypes.h>
Narayan Kamath7462f022013-11-21 13:05:04 +000025#include <limits.h>
26#include <log/log.h>
Narayan Kamath7462f022013-11-21 13:05:04 +000027#include <stdlib.h>
28#include <string.h>
Narayan Kamath7462f022013-11-21 13:05:04 +000029#include <unistd.h>
Mark Salyzyn51d562d2014-05-05 14:38:05 -070030#include <utils/Compat.h>
Narayan Kamatheaf98852013-12-11 14:51:51 +000031#include <utils/FileMap.h>
Mark Salyzyn99ef9912014-03-14 14:26:22 -070032#include <zlib.h>
Narayan Kamath7462f022013-11-21 13:05:04 +000033
34#include <JNIHelp.h> // TEMP_FAILURE_RETRY may or may not be in unistd
35
Mark Salyzyn99ef9912014-03-14 14:26:22 -070036#include "ziparchive/zip_archive.h"
37
Narayan Kamath926973e2014-06-09 14:18:14 +010038// This is for windows. If we don't open a file in binary mode, weird
Narayan Kamath7462f022013-11-21 13:05:04 +000039// things will happen.
40#ifndef O_BINARY
41#define O_BINARY 0
42#endif
43
Narayan Kamath926973e2014-06-09 14:18:14 +010044#define DISALLOW_IMPLICIT_CONSTRUCTORS(TypeName) \
45 TypeName(); \
46 TypeName(const TypeName&); \
47 void operator=(const TypeName&)
Narayan Kamath7462f022013-11-21 13:05:04 +000048
Narayan Kamath926973e2014-06-09 14:18:14 +010049// The "end of central directory" (EOCD) record. Each archive
50// contains exactly once such record which appears at the end of
51// the archive. It contains archive wide information like the
52// number of entries in the archive and the offset to the central
53// directory of the offset.
54struct EocdRecord {
55 static const uint32_t kSignature = 0x06054b50;
Narayan Kamath7462f022013-11-21 13:05:04 +000056
Narayan Kamath926973e2014-06-09 14:18:14 +010057 // End of central directory signature, should always be
58 // |kSignature|.
59 uint32_t eocd_signature;
60 // The number of the current "disk", i.e, the "disk" that this
61 // central directory is on.
62 //
63 // This implementation assumes that each archive spans a single
64 // disk only. i.e, that disk_num == 1.
65 uint16_t disk_num;
66 // The disk where the central directory starts.
67 //
68 // This implementation assumes that each archive spans a single
69 // disk only. i.e, that cd_start_disk == 1.
70 uint16_t cd_start_disk;
71 // The number of central directory records on this disk.
72 //
73 // This implementation assumes that each archive spans a single
74 // disk only. i.e, that num_records_on_disk == num_records.
75 uint16_t num_records_on_disk;
76 // The total number of central directory records.
77 uint16_t num_records;
78 // The size of the central directory (in bytes).
79 uint32_t cd_size;
80 // The offset of the start of the central directory, relative
81 // to the start of the file.
82 uint32_t cd_start_offset;
83 // Length of the central directory comment.
84 uint16_t comment_length;
85 private:
86 DISALLOW_IMPLICIT_CONSTRUCTORS(EocdRecord);
87} __attribute__((packed));
Narayan Kamath7462f022013-11-21 13:05:04 +000088
Narayan Kamath926973e2014-06-09 14:18:14 +010089// A structure representing the fixed length fields for a single
90// record in the central directory of the archive. In addition to
91// the fixed length fields listed here, each central directory
92// record contains a variable length "file_name" and "extra_field"
93// whose lengths are given by |file_name_length| and |extra_field_length|
94// respectively.
95struct CentralDirectoryRecord {
96 static const uint32_t kSignature = 0x02014b50;
Narayan Kamath7462f022013-11-21 13:05:04 +000097
Narayan Kamath926973e2014-06-09 14:18:14 +010098 // The start of record signature. Must be |kSignature|.
99 uint32_t record_signature;
100 // Tool version. Ignored by this implementation.
101 uint16_t version_made_by;
102 // Tool version. Ignored by this implementation.
103 uint16_t version_needed;
104 // The "general purpose bit flags" for this entry. The only
105 // flag value that we currently check for is the "data descriptor"
106 // flag.
107 uint16_t gpb_flags;
108 // The compression method for this entry, one of |kCompressStored|
109 // and |kCompressDeflated|.
110 uint16_t compression_method;
111 // The file modification time and date for this entry.
112 uint16_t last_mod_time;
113 uint16_t last_mod_date;
114 // The CRC-32 checksum for this entry.
115 uint32_t crc32;
116 // The compressed size (in bytes) of this entry.
117 uint32_t compressed_size;
118 // The uncompressed size (in bytes) of this entry.
119 uint32_t uncompressed_size;
120 // The length of the entry file name in bytes. The file name
121 // will appear immediately after this record.
122 uint16_t file_name_length;
123 // The length of the extra field info (in bytes). This data
124 // will appear immediately after the entry file name.
125 uint16_t extra_field_length;
126 // The length of the entry comment (in bytes). This data will
127 // appear immediately after the extra field.
128 uint16_t comment_length;
129 // The start disk for this entry. Ignored by this implementation).
130 uint16_t file_start_disk;
131 // File attributes. Ignored by this implementation.
132 uint16_t internal_file_attributes;
133 // File attributes. Ignored by this implementation.
134 uint32_t external_file_attributes;
135 // The offset to the local file header for this entry, from the
136 // beginning of this archive.
137 uint32_t local_file_header_offset;
138 private:
139 DISALLOW_IMPLICIT_CONSTRUCTORS(CentralDirectoryRecord);
140} __attribute__((packed));
Narayan Kamath7462f022013-11-21 13:05:04 +0000141
Narayan Kamath926973e2014-06-09 14:18:14 +0100142// The local file header for a given entry. This duplicates information
143// present in the central directory of the archive. It is an error for
144// the information here to be different from the central directory
145// information for a given entry.
146struct LocalFileHeader {
147 static const uint32_t kSignature = 0x04034b50;
Narayan Kamath7462f022013-11-21 13:05:04 +0000148
Narayan Kamath926973e2014-06-09 14:18:14 +0100149 // The local file header signature, must be |kSignature|.
150 uint32_t lfh_signature;
151 // Tool version. Ignored by this implementation.
152 uint16_t version_needed;
153 // The "general purpose bit flags" for this entry. The only
154 // flag value that we currently check for is the "data descriptor"
155 // flag.
156 uint16_t gpb_flags;
157 // The compression method for this entry, one of |kCompressStored|
158 // and |kCompressDeflated|.
159 uint16_t compression_method;
160 // The file modification time and date for this entry.
161 uint16_t last_mod_time;
162 uint16_t last_mod_date;
163 // The CRC-32 checksum for this entry.
164 uint32_t crc32;
165 // The compressed size (in bytes) of this entry.
166 uint32_t compressed_size;
167 // The uncompressed size (in bytes) of this entry.
168 uint32_t uncompressed_size;
169 // The length of the entry file name in bytes. The file name
170 // will appear immediately after this record.
171 uint16_t file_name_length;
172 // The length of the extra field info (in bytes). This data
173 // will appear immediately after the entry file name.
174 uint16_t extra_field_length;
175 private:
176 DISALLOW_IMPLICIT_CONSTRUCTORS(LocalFileHeader);
177} __attribute__((packed));
178
179struct DataDescriptor {
180 // The *optional* data descriptor start signature.
181 static const uint32_t kOptSignature = 0x08074b50;
182
183 // CRC-32 checksum of the entry.
184 uint32_t crc32;
185 // Compressed size of the entry.
186 uint32_t compressed_size;
187 // Uncompressed size of the entry.
188 uint32_t uncompressed_size;
189 private:
190 DISALLOW_IMPLICIT_CONSTRUCTORS(DataDescriptor);
191} __attribute__((packed));
192
193#undef DISALLOW_IMPLICIT_CONSTRUCTORS
194
Piotr Jastrzebskibd0a7482014-08-13 09:49:25 +0000195static const uint32_t kGPBDDFlagMask = 0x0008; // mask value that signifies that the entry has a DD
Narayan Kamath7462f022013-11-21 13:05:04 +0000196static const uint32_t kMaxErrorLen = 1024;
197
Narayan Kamath926973e2014-06-09 14:18:14 +0100198// The maximum size of a central directory or a file
199// comment in bytes.
200static const uint32_t kMaxCommentLen = 65535;
201
202// The maximum number of bytes to scan backwards for the EOCD start.
203static const uint32_t kMaxEOCDSearch = kMaxCommentLen + sizeof(EocdRecord);
204
Narayan Kamath7462f022013-11-21 13:05:04 +0000205static const char* kErrorMessages[] = {
206 "Unknown return code.",
Narayan Kamatheb41ad22013-12-09 16:26:36 +0000207 "Iteration ended",
Narayan Kamath7462f022013-11-21 13:05:04 +0000208 "Zlib error",
209 "Invalid file",
210 "Invalid handle",
211 "Duplicate entries in archive",
212 "Empty archive",
213 "Entry not found",
214 "Invalid offset",
215 "Inconsistent information",
216 "Invalid entry name",
Narayan Kamatheb41ad22013-12-09 16:26:36 +0000217 "I/O Error",
Narayan Kamatheaf98852013-12-11 14:51:51 +0000218 "File mapping failed"
Narayan Kamath7462f022013-11-21 13:05:04 +0000219};
220
221static const int32_t kErrorMessageUpperBound = 0;
222
Narayan Kamatheb41ad22013-12-09 16:26:36 +0000223static const int32_t kIterationEnd = -1;
Narayan Kamath7462f022013-11-21 13:05:04 +0000224
225// We encountered a Zlib error when inflating a stream from this file.
226// Usually indicates file corruption.
227static const int32_t kZlibError = -2;
228
229// The input file cannot be processed as a zip archive. Usually because
230// it's too small, too large or does not have a valid signature.
231static const int32_t kInvalidFile = -3;
232
233// An invalid iteration / ziparchive handle was passed in as an input
234// argument.
235static const int32_t kInvalidHandle = -4;
236
237// The zip archive contained two (or possibly more) entries with the same
238// name.
239static const int32_t kDuplicateEntry = -5;
240
241// The zip archive contains no entries.
242static const int32_t kEmptyArchive = -6;
243
244// The specified entry was not found in the archive.
245static const int32_t kEntryNotFound = -7;
246
247// The zip archive contained an invalid local file header pointer.
248static const int32_t kInvalidOffset = -8;
249
250// The zip archive contained inconsistent entry information. This could
251// be because the central directory & local file header did not agree, or
252// if the actual uncompressed length or crc32 do not match their declared
253// values.
254static const int32_t kInconsistentInformation = -9;
255
256// An invalid entry name was encountered.
257static const int32_t kInvalidEntryName = -10;
258
Narayan Kamatheb41ad22013-12-09 16:26:36 +0000259// An I/O related system call (read, lseek, ftruncate, map) failed.
260static const int32_t kIoError = -11;
Narayan Kamath7462f022013-11-21 13:05:04 +0000261
Narayan Kamatheaf98852013-12-11 14:51:51 +0000262// We were not able to mmap the central directory or entry contents.
263static const int32_t kMmapFailed = -12;
Narayan Kamath7462f022013-11-21 13:05:04 +0000264
Narayan Kamatheaf98852013-12-11 14:51:51 +0000265static const int32_t kErrorMessageLowerBound = -13;
Narayan Kamath7462f022013-11-21 13:05:04 +0000266
Narayan Kamatheaf98852013-12-11 14:51:51 +0000267static const char kTempMappingFileName[] = "zip: ExtractFileToFile";
Narayan Kamath7462f022013-11-21 13:05:04 +0000268
269/*
270 * A Read-only Zip archive.
271 *
272 * We want "open" and "find entry by name" to be fast operations, and
273 * we want to use as little memory as possible. We memory-map the zip
274 * central directory, and load a hash table with pointers to the filenames
275 * (which aren't null-terminated). The other fields are at a fixed offset
276 * from the filename, so we don't need to extract those (but we do need
277 * to byte-read and endian-swap them every time we want them).
278 *
279 * It's possible that somebody has handed us a massive (~1GB) zip archive,
280 * so we can't expect to mmap the entire file.
281 *
282 * To speed comparisons when doing a lookup by name, we could make the mapping
283 * "private" (copy-on-write) and null-terminate the filenames after verifying
284 * the record structure. However, this requires a private mapping of
285 * every page that the Central Directory touches. Easier to tuck a copy
286 * of the string length into the hash table entry.
287 */
288struct ZipArchive {
289 /* open Zip archive */
Neil Fullerb1a113f2014-07-25 14:43:04 +0100290 const int fd;
Narayan Kamath7462f022013-11-21 13:05:04 +0000291
292 /* mapped central directory area */
293 off64_t directory_offset;
Narayan Kamatheaf98852013-12-11 14:51:51 +0000294 android::FileMap* directory_map;
Narayan Kamath7462f022013-11-21 13:05:04 +0000295
296 /* number of entries in the Zip archive */
297 uint16_t num_entries;
298
299 /*
300 * We know how many entries are in the Zip archive, so we can have a
301 * fixed-size hash table. We define a load factor of 0.75 and overallocat
302 * so the maximum number entries can never be higher than
303 * ((4 * UINT16_MAX) / 3 + 1) which can safely fit into a uint32_t.
304 */
305 uint32_t hash_table_size;
306 ZipEntryName* hash_table;
Neil Fullerb1a113f2014-07-25 14:43:04 +0100307
308 ZipArchive(const int fd) :
309 fd(fd),
310 directory_offset(0),
311 directory_map(NULL),
312 num_entries(0),
313 hash_table_size(0),
314 hash_table(NULL) {}
315
316 ~ZipArchive() {
317 if (fd >= 0) {
318 close(fd);
319 }
320
321 if (directory_map != NULL) {
322 directory_map->release();
323 }
324 free(hash_table);
325 }
Narayan Kamath7462f022013-11-21 13:05:04 +0000326};
327
328// Returns 0 on success and negative values on failure.
Narayan Kamatheaf98852013-12-11 14:51:51 +0000329static android::FileMap* MapFileSegment(const int fd, const off64_t start,
330 const size_t length, const bool read_only,
331 const char* debug_file_name) {
332 android::FileMap* file_map = new android::FileMap;
333 const bool success = file_map->create(debug_file_name, fd, start, length, read_only);
334 if (!success) {
335 file_map->release();
336 return NULL;
Narayan Kamath7462f022013-11-21 13:05:04 +0000337 }
338
Narayan Kamatheaf98852013-12-11 14:51:51 +0000339 return file_map;
Narayan Kamath7462f022013-11-21 13:05:04 +0000340}
341
342static int32_t CopyFileToFile(int fd, uint8_t* begin, const uint32_t length, uint64_t *crc_out) {
343 static const uint32_t kBufSize = 32768;
344 uint8_t buf[kBufSize];
345
346 uint32_t count = 0;
347 uint64_t crc = 0;
Narayan Kamath58aaf462013-12-10 16:47:14 +0000348 while (count < length) {
Narayan Kamath7462f022013-11-21 13:05:04 +0000349 uint32_t remaining = length - count;
350
351 // Safe conversion because kBufSize is narrow enough for a 32 bit signed
352 // value.
353 ssize_t get_size = (remaining > kBufSize) ? kBufSize : remaining;
354 ssize_t actual = TEMP_FAILURE_RETRY(read(fd, buf, get_size));
355
356 if (actual != get_size) {
Mark Salyzyn51d562d2014-05-05 14:38:05 -0700357 ALOGW("CopyFileToFile: copy read failed (" ZD " vs " ZD ")", actual, get_size);
Narayan Kamath7462f022013-11-21 13:05:04 +0000358 return kIoError;
359 }
360
361 memcpy(begin + count, buf, get_size);
362 crc = crc32(crc, buf, get_size);
363 count += get_size;
364 }
365
366 *crc_out = crc;
367
368 return 0;
369}
370
371/*
372 * Round up to the next highest power of 2.
373 *
374 * Found on http://graphics.stanford.edu/~seander/bithacks.html.
375 */
376static uint32_t RoundUpPower2(uint32_t val) {
377 val--;
378 val |= val >> 1;
379 val |= val >> 2;
380 val |= val >> 4;
381 val |= val >> 8;
382 val |= val >> 16;
383 val++;
384
385 return val;
386}
387
388static uint32_t ComputeHash(const char* str, uint16_t len) {
389 uint32_t hash = 0;
390
391 while (len--) {
392 hash = hash * 31 + *str++;
393 }
394
395 return hash;
396}
397
398/*
399 * Convert a ZipEntry to a hash table index, verifying that it's in a
400 * valid range.
401 */
402static int64_t EntryToIndex(const ZipEntryName* hash_table,
403 const uint32_t hash_table_size,
404 const char* name, uint16_t length) {
405 const uint32_t hash = ComputeHash(name, length);
406
407 // NOTE: (hash_table_size - 1) is guaranteed to be non-negative.
408 uint32_t ent = hash & (hash_table_size - 1);
409 while (hash_table[ent].name != NULL) {
410 if (hash_table[ent].name_length == length &&
411 memcmp(hash_table[ent].name, name, length) == 0) {
412 return ent;
413 }
414
415 ent = (ent + 1) & (hash_table_size - 1);
416 }
417
Colin Crossf4b0b792014-02-06 20:07:15 -0800418 ALOGV("Zip: Unable to find entry %.*s", length, name);
Narayan Kamath7462f022013-11-21 13:05:04 +0000419 return kEntryNotFound;
420}
421
422/*
423 * Add a new entry to the hash table.
424 */
425static int32_t AddToHash(ZipEntryName *hash_table, const uint64_t hash_table_size,
426 const char* name, uint16_t length) {
427 const uint64_t hash = ComputeHash(name, length);
428 uint32_t ent = hash & (hash_table_size - 1);
429
430 /*
431 * We over-allocated the table, so we're guaranteed to find an empty slot.
432 * Further, we guarantee that the hashtable size is not 0.
433 */
434 while (hash_table[ent].name != NULL) {
435 if (hash_table[ent].name_length == length &&
436 memcmp(hash_table[ent].name, name, length) == 0) {
437 // We've found a duplicate entry. We don't accept it
438 ALOGW("Zip: Found duplicate entry %.*s", length, name);
439 return kDuplicateEntry;
440 }
441 ent = (ent + 1) & (hash_table_size - 1);
442 }
443
444 hash_table[ent].name = name;
445 hash_table[ent].name_length = length;
446 return 0;
447}
448
Narayan Kamath7462f022013-11-21 13:05:04 +0000449static int32_t MapCentralDirectory0(int fd, const char* debug_file_name,
450 ZipArchive* archive, off64_t file_length,
Narayan Kamath926973e2014-06-09 14:18:14 +0100451 off64_t read_amount, uint8_t* scan_buffer) {
Narayan Kamath7462f022013-11-21 13:05:04 +0000452 const off64_t search_start = file_length - read_amount;
453
454 if (lseek64(fd, search_start, SEEK_SET) != search_start) {
Narayan Kamath926973e2014-06-09 14:18:14 +0100455 ALOGW("Zip: seek %" PRId64 " failed: %s", static_cast<int64_t>(search_start),
456 strerror(errno));
Narayan Kamath7462f022013-11-21 13:05:04 +0000457 return kIoError;
458 }
Narayan Kamath926973e2014-06-09 14:18:14 +0100459 ssize_t actual = TEMP_FAILURE_RETRY(
460 read(fd, scan_buffer, static_cast<size_t>(read_amount)));
461 if (actual != static_cast<ssize_t>(read_amount)) {
462 ALOGW("Zip: read %" PRId64 " failed: %s", static_cast<int64_t>(read_amount),
463 strerror(errno));
Narayan Kamath7462f022013-11-21 13:05:04 +0000464 return kIoError;
465 }
466
467 /*
468 * Scan backward for the EOCD magic. In an archive without a trailing
469 * comment, we'll find it on the first try. (We may want to consider
470 * doing an initial minimal read; if we don't find it, retry with a
471 * second read as above.)
472 */
Narayan Kamath926973e2014-06-09 14:18:14 +0100473 int i = read_amount - sizeof(EocdRecord);
474 for (; i >= 0; i--) {
475 if (scan_buffer[i] == 0x50 &&
476 ((*reinterpret_cast<uint32_t*>(&scan_buffer[i])) == EocdRecord::kSignature)) {
Narayan Kamath7462f022013-11-21 13:05:04 +0000477 ALOGV("+++ Found EOCD at buf+%d", i);
478 break;
479 }
480 }
481 if (i < 0) {
482 ALOGD("Zip: EOCD not found, %s is not zip", debug_file_name);
483 return kInvalidFile;
484 }
485
486 const off64_t eocd_offset = search_start + i;
Narayan Kamath926973e2014-06-09 14:18:14 +0100487 const EocdRecord* eocd = reinterpret_cast<const EocdRecord*>(scan_buffer + i);
Narayan Kamath7462f022013-11-21 13:05:04 +0000488 /*
Narayan Kamath926973e2014-06-09 14:18:14 +0100489 * Verify that there's no trailing space at the end of the central directory
490 * and its comment.
Narayan Kamath7462f022013-11-21 13:05:04 +0000491 */
Narayan Kamath926973e2014-06-09 14:18:14 +0100492 const off64_t calculated_length = eocd_offset + sizeof(EocdRecord)
493 + eocd->comment_length;
494 if (calculated_length != file_length) {
Narayan Kamath4f6b4992014-06-03 13:59:23 +0100495 ALOGW("Zip: %" PRId64 " extraneous bytes at the end of the central directory",
Narayan Kamath926973e2014-06-09 14:18:14 +0100496 static_cast<int64_t>(file_length - calculated_length));
Narayan Kamath4f6b4992014-06-03 13:59:23 +0100497 return kInvalidFile;
498 }
Narayan Kamath7462f022013-11-21 13:05:04 +0000499
Narayan Kamath926973e2014-06-09 14:18:14 +0100500 /*
501 * Grab the CD offset and size, and the number of entries in the
502 * archive and verify that they look reasonable.
503 */
504 if (eocd->cd_start_offset + eocd->cd_size > eocd_offset) {
505 ALOGW("Zip: bad offsets (dir %" PRIu32 ", size %" PRIu32 ", eocd %" PRId64 ")",
506 eocd->cd_start_offset, eocd->cd_size, static_cast<int64_t>(eocd_offset));
Narayan Kamath7462f022013-11-21 13:05:04 +0000507 return kInvalidOffset;
508 }
Narayan Kamath926973e2014-06-09 14:18:14 +0100509 if (eocd->num_records == 0) {
Narayan Kamath7462f022013-11-21 13:05:04 +0000510 ALOGW("Zip: empty archive?");
511 return kEmptyArchive;
512 }
513
Narayan Kamath926973e2014-06-09 14:18:14 +0100514 ALOGV("+++ num_entries=%" PRIu32 "dir_size=%" PRIu32 " dir_offset=%" PRIu32,
515 eocd->num_records, eocd->cd_size, eocd->cd_start_offset);
Narayan Kamath7462f022013-11-21 13:05:04 +0000516
517 /*
518 * It all looks good. Create a mapping for the CD, and set the fields
519 * in archive.
520 */
Narayan Kamath926973e2014-06-09 14:18:14 +0100521 android::FileMap* map = MapFileSegment(fd,
522 static_cast<off64_t>(eocd->cd_start_offset),
523 static_cast<size_t>(eocd->cd_size),
524 true /* read only */, debug_file_name);
Narayan Kamatheaf98852013-12-11 14:51:51 +0000525 if (map == NULL) {
526 archive->directory_map = NULL;
527 return kMmapFailed;
Narayan Kamath7462f022013-11-21 13:05:04 +0000528 }
529
Narayan Kamatheaf98852013-12-11 14:51:51 +0000530 archive->directory_map = map;
Narayan Kamath926973e2014-06-09 14:18:14 +0100531 archive->num_entries = eocd->num_records;
532 archive->directory_offset = eocd->cd_start_offset;
Narayan Kamath7462f022013-11-21 13:05:04 +0000533
534 return 0;
535}
536
537/*
538 * Find the zip Central Directory and memory-map it.
539 *
540 * On success, returns 0 after populating fields from the EOCD area:
541 * directory_offset
542 * directory_map
543 * num_entries
544 */
545static int32_t MapCentralDirectory(int fd, const char* debug_file_name,
546 ZipArchive* archive) {
547
548 // Test file length. We use lseek64 to make sure the file
549 // is small enough to be a zip file (Its size must be less than
550 // 0xffffffff bytes).
551 off64_t file_length = lseek64(fd, 0, SEEK_END);
552 if (file_length == -1) {
553 ALOGV("Zip: lseek on fd %d failed", fd);
554 return kInvalidFile;
555 }
556
557 if (file_length > (off64_t) 0xffffffff) {
Narayan Kamath926973e2014-06-09 14:18:14 +0100558 ALOGV("Zip: zip file too long %" PRId64, static_cast<int64_t>(file_length));
Narayan Kamath7462f022013-11-21 13:05:04 +0000559 return kInvalidFile;
560 }
561
Narayan Kamath926973e2014-06-09 14:18:14 +0100562 if (file_length < static_cast<off64_t>(sizeof(EocdRecord))) {
563 ALOGV("Zip: length %" PRId64 " is too small to be zip", static_cast<int64_t>(file_length));
Narayan Kamath7462f022013-11-21 13:05:04 +0000564 return kInvalidFile;
565 }
566
567 /*
568 * Perform the traditional EOCD snipe hunt.
569 *
570 * We're searching for the End of Central Directory magic number,
571 * which appears at the start of the EOCD block. It's followed by
572 * 18 bytes of EOCD stuff and up to 64KB of archive comment. We
573 * need to read the last part of the file into a buffer, dig through
574 * it to find the magic number, parse some values out, and use those
575 * to determine the extent of the CD.
576 *
577 * We start by pulling in the last part of the file.
578 */
Narayan Kamath926973e2014-06-09 14:18:14 +0100579 off64_t read_amount = kMaxEOCDSearch;
580 if (file_length < read_amount) {
Narayan Kamath7462f022013-11-21 13:05:04 +0000581 read_amount = file_length;
582 }
583
Narayan Kamath926973e2014-06-09 14:18:14 +0100584 uint8_t* scan_buffer = reinterpret_cast<uint8_t*>(malloc(read_amount));
Narayan Kamath7462f022013-11-21 13:05:04 +0000585 int32_t result = MapCentralDirectory0(fd, debug_file_name, archive,
586 file_length, read_amount, scan_buffer);
587
588 free(scan_buffer);
589 return result;
590}
591
592/*
593 * Parses the Zip archive's Central Directory. Allocates and populates the
594 * hash table.
595 *
596 * Returns 0 on success.
597 */
598static int32_t ParseZipArchive(ZipArchive* archive) {
599 int32_t result = -1;
Narayan Kamath926973e2014-06-09 14:18:14 +0100600 const uint8_t* const cd_ptr = (const uint8_t*) archive->directory_map->getDataPtr();
601 const size_t cd_length = archive->directory_map->getDataLength();
602 const uint16_t num_entries = archive->num_entries;
Narayan Kamath7462f022013-11-21 13:05:04 +0000603
604 /*
605 * Create hash table. We have a minimum 75% load factor, possibly as
606 * low as 50% after we round off to a power of 2. There must be at
607 * least one unused entry to avoid an infinite loop during creation.
608 */
609 archive->hash_table_size = RoundUpPower2(1 + (num_entries * 4) / 3);
610 archive->hash_table = (ZipEntryName*) calloc(archive->hash_table_size,
611 sizeof(ZipEntryName));
612
613 /*
614 * Walk through the central directory, adding entries to the hash
615 * table and verifying values.
616 */
Narayan Kamath926973e2014-06-09 14:18:14 +0100617 const uint8_t* const cd_end = cd_ptr + cd_length;
Narayan Kamath7462f022013-11-21 13:05:04 +0000618 const uint8_t* ptr = cd_ptr;
619 for (uint16_t i = 0; i < num_entries; i++) {
Narayan Kamath926973e2014-06-09 14:18:14 +0100620 const CentralDirectoryRecord* cdr =
621 reinterpret_cast<const CentralDirectoryRecord*>(ptr);
622 if (cdr->record_signature != CentralDirectoryRecord::kSignature) {
Mark Salyzyn088bf902014-05-08 16:02:20 -0700623 ALOGW("Zip: missed a central dir sig (at %" PRIu16 ")", i);
Narayan Kamath7462f022013-11-21 13:05:04 +0000624 goto bail;
625 }
626
Narayan Kamath926973e2014-06-09 14:18:14 +0100627 if (ptr + sizeof(CentralDirectoryRecord) > cd_end) {
Mark Salyzyn088bf902014-05-08 16:02:20 -0700628 ALOGW("Zip: ran off the end (at %" PRIu16 ")", i);
Narayan Kamath7462f022013-11-21 13:05:04 +0000629 goto bail;
630 }
631
Narayan Kamath926973e2014-06-09 14:18:14 +0100632 const off64_t local_header_offset = cdr->local_file_header_offset;
Narayan Kamath7462f022013-11-21 13:05:04 +0000633 if (local_header_offset >= archive->directory_offset) {
Mark Salyzyn56a90a02014-05-08 17:20:55 -0700634 ALOGW("Zip: bad LFH offset %" PRId64 " at entry %" PRIu16, (int64_t)local_header_offset, i);
Narayan Kamath7462f022013-11-21 13:05:04 +0000635 goto bail;
636 }
637
Narayan Kamath926973e2014-06-09 14:18:14 +0100638 const uint16_t file_name_length = cdr->file_name_length;
639 const uint16_t extra_length = cdr->extra_field_length;
640 const uint16_t comment_length = cdr->comment_length;
Narayan Kamath7462f022013-11-21 13:05:04 +0000641
642 /* add the CDE filename to the hash table */
Narayan Kamath926973e2014-06-09 14:18:14 +0100643 const char* file_name = reinterpret_cast<const char *>(ptr + sizeof(CentralDirectoryRecord));
Narayan Kamath7462f022013-11-21 13:05:04 +0000644 const int add_result = AddToHash(archive->hash_table,
Narayan Kamath926973e2014-06-09 14:18:14 +0100645 archive->hash_table_size, file_name, file_name_length);
Narayan Kamath7462f022013-11-21 13:05:04 +0000646 if (add_result) {
647 ALOGW("Zip: Error adding entry to hash table %d", add_result);
648 result = add_result;
649 goto bail;
650 }
651
Narayan Kamath926973e2014-06-09 14:18:14 +0100652 ptr += sizeof(CentralDirectoryRecord) + file_name_length + extra_length + comment_length;
653 if ((ptr - cd_ptr) > static_cast<int64_t>(cd_length)) {
Mark Salyzyn088bf902014-05-08 16:02:20 -0700654 ALOGW("Zip: bad CD advance (%tu vs %zu) at entry %" PRIu16,
655 ptr - cd_ptr, cd_length, i);
Narayan Kamath7462f022013-11-21 13:05:04 +0000656 goto bail;
657 }
658 }
Mark Salyzyn088bf902014-05-08 16:02:20 -0700659 ALOGV("+++ zip good scan %" PRIu16 " entries", num_entries);
Narayan Kamath7462f022013-11-21 13:05:04 +0000660
661 result = 0;
662
663bail:
664 return result;
665}
666
667static int32_t OpenArchiveInternal(ZipArchive* archive,
668 const char* debug_file_name) {
669 int32_t result = -1;
670 if ((result = MapCentralDirectory(archive->fd, debug_file_name, archive))) {
671 return result;
672 }
673
674 if ((result = ParseZipArchive(archive))) {
675 return result;
676 }
677
678 return 0;
679}
680
681int32_t OpenArchiveFd(int fd, const char* debug_file_name,
682 ZipArchiveHandle* handle) {
Neil Fullerb1a113f2014-07-25 14:43:04 +0100683 ZipArchive* archive = new ZipArchive(fd);
Narayan Kamath7462f022013-11-21 13:05:04 +0000684 *handle = archive;
Narayan Kamath7462f022013-11-21 13:05:04 +0000685 return OpenArchiveInternal(archive, debug_file_name);
686}
687
688int32_t OpenArchive(const char* fileName, ZipArchiveHandle* handle) {
Neil Fullerb1a113f2014-07-25 14:43:04 +0100689 const int fd = open(fileName, O_RDONLY | O_BINARY, 0);
690 ZipArchive* archive = new ZipArchive(fd);
Narayan Kamath7462f022013-11-21 13:05:04 +0000691 *handle = archive;
692
Narayan Kamath7462f022013-11-21 13:05:04 +0000693 if (fd < 0) {
694 ALOGW("Unable to open '%s': %s", fileName, strerror(errno));
695 return kIoError;
Narayan Kamath7462f022013-11-21 13:05:04 +0000696 }
Narayan Kamath7462f022013-11-21 13:05:04 +0000697 return OpenArchiveInternal(archive, fileName);
698}
699
700/*
701 * Close a ZipArchive, closing the file and freeing the contents.
702 */
703void CloseArchive(ZipArchiveHandle handle) {
704 ZipArchive* archive = (ZipArchive*) handle;
705 ALOGV("Closing archive %p", archive);
Neil Fullerb1a113f2014-07-25 14:43:04 +0100706 delete archive;
Narayan Kamath7462f022013-11-21 13:05:04 +0000707}
708
709static int32_t UpdateEntryFromDataDescriptor(int fd,
710 ZipEntry *entry) {
Narayan Kamath926973e2014-06-09 14:18:14 +0100711 uint8_t ddBuf[sizeof(DataDescriptor) + sizeof(DataDescriptor::kOptSignature)];
Narayan Kamath7462f022013-11-21 13:05:04 +0000712 ssize_t actual = TEMP_FAILURE_RETRY(read(fd, ddBuf, sizeof(ddBuf)));
713 if (actual != sizeof(ddBuf)) {
714 return kIoError;
715 }
716
Narayan Kamath926973e2014-06-09 14:18:14 +0100717 const uint32_t ddSignature = *(reinterpret_cast<const uint32_t*>(ddBuf));
718 const uint16_t offset = (ddSignature == DataDescriptor::kOptSignature) ? 4 : 0;
719 const DataDescriptor* descriptor = reinterpret_cast<const DataDescriptor*>(ddBuf + offset);
Narayan Kamath7462f022013-11-21 13:05:04 +0000720
Narayan Kamath926973e2014-06-09 14:18:14 +0100721 entry->crc32 = descriptor->crc32;
722 entry->compressed_length = descriptor->compressed_size;
723 entry->uncompressed_length = descriptor->uncompressed_size;
Narayan Kamath7462f022013-11-21 13:05:04 +0000724
725 return 0;
726}
727
728// Attempts to read |len| bytes into |buf| at offset |off|.
729//
730// This method uses pread64 on platforms that support it and
731// lseek64 + read on platforms that don't. This implies that
732// callers should not rely on the |fd| offset being incremented
733// as a side effect of this call.
734static inline ssize_t ReadAtOffset(int fd, uint8_t* buf, size_t len,
735 off64_t off) {
736#ifdef HAVE_PREAD
737 return TEMP_FAILURE_RETRY(pread64(fd, buf, len, off));
738#else
739 // The only supported platform that doesn't support pread at the moment
740 // is Windows. Only recent versions of windows support unix like forks,
741 // and even there the semantics are quite different.
742 if (lseek64(fd, off, SEEK_SET) != off) {
Mark Salyzyn99ef9912014-03-14 14:26:22 -0700743 ALOGW("Zip: failed seek to offset %" PRId64, off);
Narayan Kamath7462f022013-11-21 13:05:04 +0000744 return kIoError;
745 }
746
747 return TEMP_FAILURE_RETRY(read(fd, buf, len));
748#endif // HAVE_PREAD
749}
750
751static int32_t FindEntry(const ZipArchive* archive, const int ent,
752 ZipEntry* data) {
753 const uint16_t nameLen = archive->hash_table[ent].name_length;
754 const char* name = archive->hash_table[ent].name;
755
756 // Recover the start of the central directory entry from the filename
757 // pointer. The filename is the first entry past the fixed-size data,
758 // so we can just subtract back from that.
Narayan Kamath926973e2014-06-09 14:18:14 +0100759 const uint8_t* ptr = reinterpret_cast<const uint8_t*>(name);
760 ptr -= sizeof(CentralDirectoryRecord);
Narayan Kamath7462f022013-11-21 13:05:04 +0000761
762 // This is the base of our mmapped region, we have to sanity check that
763 // the name that's in the hash table is a pointer to a location within
764 // this mapped region.
Narayan Kamath926973e2014-06-09 14:18:14 +0100765 const uint8_t* base_ptr = reinterpret_cast<const uint8_t*>(
766 archive->directory_map->getDataPtr());
Narayan Kamatheaf98852013-12-11 14:51:51 +0000767 if (ptr < base_ptr || ptr > base_ptr + archive->directory_map->getDataLength()) {
Narayan Kamath7462f022013-11-21 13:05:04 +0000768 ALOGW("Zip: Invalid entry pointer");
769 return kInvalidOffset;
770 }
771
Narayan Kamath926973e2014-06-09 14:18:14 +0100772 const CentralDirectoryRecord *cdr =
773 reinterpret_cast<const CentralDirectoryRecord*>(ptr);
774
Narayan Kamath7462f022013-11-21 13:05:04 +0000775 // The offset of the start of the central directory in the zipfile.
776 // We keep this lying around so that we can sanity check all our lengths
777 // and our per-file structures.
778 const off64_t cd_offset = archive->directory_offset;
779
780 // Fill out the compression method, modification time, crc32
781 // and other interesting attributes from the central directory. These
782 // will later be compared against values from the local file header.
Narayan Kamath926973e2014-06-09 14:18:14 +0100783 data->method = cdr->compression_method;
784 data->mod_time = cdr->last_mod_time;
785 data->crc32 = cdr->crc32;
786 data->compressed_length = cdr->compressed_size;
787 data->uncompressed_length = cdr->uncompressed_size;
Narayan Kamath7462f022013-11-21 13:05:04 +0000788
789 // Figure out the local header offset from the central directory. The
790 // actual file data will begin after the local header and the name /
791 // extra comments.
Narayan Kamath926973e2014-06-09 14:18:14 +0100792 const off64_t local_header_offset = cdr->local_file_header_offset;
793 if (local_header_offset + static_cast<off64_t>(sizeof(LocalFileHeader)) >= cd_offset) {
Narayan Kamath7462f022013-11-21 13:05:04 +0000794 ALOGW("Zip: bad local hdr offset in zip");
795 return kInvalidOffset;
796 }
797
Narayan Kamath926973e2014-06-09 14:18:14 +0100798 uint8_t lfh_buf[sizeof(LocalFileHeader)];
Narayan Kamath7462f022013-11-21 13:05:04 +0000799 ssize_t actual = ReadAtOffset(archive->fd, lfh_buf, sizeof(lfh_buf),
800 local_header_offset);
801 if (actual != sizeof(lfh_buf)) {
Mark Salyzyn56a90a02014-05-08 17:20:55 -0700802 ALOGW("Zip: failed reading lfh name from offset %" PRId64, (int64_t)local_header_offset);
Narayan Kamath7462f022013-11-21 13:05:04 +0000803 return kIoError;
804 }
805
Narayan Kamath926973e2014-06-09 14:18:14 +0100806 const LocalFileHeader *lfh = reinterpret_cast<const LocalFileHeader*>(lfh_buf);
807
808 if (lfh->lfh_signature != LocalFileHeader::kSignature) {
Mark Salyzyn99ef9912014-03-14 14:26:22 -0700809 ALOGW("Zip: didn't find signature at start of lfh, offset=%" PRId64,
Narayan Kamath926973e2014-06-09 14:18:14 +0100810 static_cast<int64_t>(local_header_offset));
Narayan Kamath7462f022013-11-21 13:05:04 +0000811 return kInvalidOffset;
812 }
813
814 // Paranoia: Match the values specified in the local file header
815 // to those specified in the central directory.
Narayan Kamath926973e2014-06-09 14:18:14 +0100816 if ((lfh->gpb_flags & kGPBDDFlagMask) == 0) {
Narayan Kamath7462f022013-11-21 13:05:04 +0000817 data->has_data_descriptor = 0;
Narayan Kamath926973e2014-06-09 14:18:14 +0100818 if (data->compressed_length != lfh->compressed_size
819 || data->uncompressed_length != lfh->uncompressed_size
820 || data->crc32 != lfh->crc32) {
Mark Salyzyn088bf902014-05-08 16:02:20 -0700821 ALOGW("Zip: size/crc32 mismatch. expected {%" PRIu32 ", %" PRIu32
822 ", %" PRIx32 "}, was {%" PRIu32 ", %" PRIu32 ", %" PRIx32 "}",
Narayan Kamath7462f022013-11-21 13:05:04 +0000823 data->compressed_length, data->uncompressed_length, data->crc32,
Narayan Kamath926973e2014-06-09 14:18:14 +0100824 lfh->compressed_size, lfh->uncompressed_size, lfh->crc32);
Narayan Kamath7462f022013-11-21 13:05:04 +0000825 return kInconsistentInformation;
826 }
827 } else {
828 data->has_data_descriptor = 1;
829 }
830
831 // Check that the local file header name matches the declared
832 // name in the central directory.
Narayan Kamath926973e2014-06-09 14:18:14 +0100833 if (lfh->file_name_length == nameLen) {
834 const off64_t name_offset = local_header_offset + sizeof(LocalFileHeader);
835 if (name_offset + lfh->file_name_length >= cd_offset) {
Narayan Kamath7462f022013-11-21 13:05:04 +0000836 ALOGW("Zip: Invalid declared length");
837 return kInvalidOffset;
838 }
839
840 uint8_t* name_buf = (uint8_t*) malloc(nameLen);
841 ssize_t actual = ReadAtOffset(archive->fd, name_buf, nameLen,
842 name_offset);
843
844 if (actual != nameLen) {
Mark Salyzyn56a90a02014-05-08 17:20:55 -0700845 ALOGW("Zip: failed reading lfh name from offset %" PRId64, (int64_t)name_offset);
Narayan Kamath7462f022013-11-21 13:05:04 +0000846 free(name_buf);
847 return kIoError;
848 }
849
850 if (memcmp(name, name_buf, nameLen)) {
851 free(name_buf);
852 return kInconsistentInformation;
853 }
854
855 free(name_buf);
856 } else {
857 ALOGW("Zip: lfh name did not match central directory.");
858 return kInconsistentInformation;
859 }
860
Narayan Kamath926973e2014-06-09 14:18:14 +0100861 const off64_t data_offset = local_header_offset + sizeof(LocalFileHeader)
862 + lfh->file_name_length + lfh->extra_field_length;
Narayan Kamath48953a12014-01-24 12:32:39 +0000863 if (data_offset > cd_offset) {
Mark Salyzyn56a90a02014-05-08 17:20:55 -0700864 ALOGW("Zip: bad data offset %" PRId64 " in zip", (int64_t)data_offset);
Narayan Kamath7462f022013-11-21 13:05:04 +0000865 return kInvalidOffset;
866 }
867
868 if ((off64_t)(data_offset + data->compressed_length) > cd_offset) {
Mark Salyzyn088bf902014-05-08 16:02:20 -0700869 ALOGW("Zip: bad compressed length in zip (%" PRId64 " + %" PRIu32 " > %" PRId64 ")",
Mark Salyzyn56a90a02014-05-08 17:20:55 -0700870 (int64_t)data_offset, data->compressed_length, (int64_t)cd_offset);
Narayan Kamath7462f022013-11-21 13:05:04 +0000871 return kInvalidOffset;
872 }
873
874 if (data->method == kCompressStored &&
875 (off64_t)(data_offset + data->uncompressed_length) > cd_offset) {
Mark Salyzyn088bf902014-05-08 16:02:20 -0700876 ALOGW("Zip: bad uncompressed length in zip (%" PRId64 " + %" PRIu32 " > %" PRId64 ")",
Mark Salyzyn96c5c992014-05-08 19:16:40 -0700877 (int64_t)data_offset, data->uncompressed_length, (int64_t)cd_offset);
Narayan Kamath7462f022013-11-21 13:05:04 +0000878 return kInvalidOffset;
879 }
880
881 data->offset = data_offset;
882 return 0;
883}
884
885struct IterationHandle {
886 uint32_t position;
887 const char* prefix;
888 uint16_t prefix_len;
889 ZipArchive* archive;
890};
891
892int32_t StartIteration(ZipArchiveHandle handle, void** cookie_ptr, const char* prefix) {
893 ZipArchive* archive = (ZipArchive *) handle;
894
895 if (archive == NULL || archive->hash_table == NULL) {
896 ALOGW("Zip: Invalid ZipArchiveHandle");
897 return kInvalidHandle;
898 }
899
900 IterationHandle* cookie = (IterationHandle*) malloc(sizeof(IterationHandle));
901 cookie->position = 0;
Narayan Kamath7462f022013-11-21 13:05:04 +0000902 cookie->archive = archive;
903 if (prefix != NULL) {
Piotr Jastrzebski34e03bd2014-08-08 15:59:12 +0100904 cookie->prefix = strdup(prefix);
Narayan Kamath7462f022013-11-21 13:05:04 +0000905 cookie->prefix_len = strlen(prefix);
Piotr Jastrzebski34e03bd2014-08-08 15:59:12 +0100906 } else {
907 cookie->prefix = NULL;
Narayan Kamath7462f022013-11-21 13:05:04 +0000908 }
909
910 *cookie_ptr = cookie ;
911 return 0;
912}
913
Piotr Jastrzebski79c8b342014-08-08 14:02:17 +0100914void EndIteration(void* cookie) {
915 if (cookie != NULL) {
Piotr Jastrzebski34e03bd2014-08-08 15:59:12 +0100916 IterationHandle* handle = reinterpret_cast<IterationHandle*>(cookie);
917 if (handle->prefix != NULL) {
918 free(const_cast<char*>(handle->prefix));
919 }
Piotr Jastrzebski79c8b342014-08-08 14:02:17 +0100920 free(cookie);
921 }
922}
923
Narayan Kamath7462f022013-11-21 13:05:04 +0000924int32_t FindEntry(const ZipArchiveHandle handle, const char* entryName,
925 ZipEntry* data) {
926 const ZipArchive* archive = (ZipArchive*) handle;
927 const int nameLen = strlen(entryName);
928 if (nameLen == 0 || nameLen > 65535) {
929 ALOGW("Zip: Invalid filename %s", entryName);
930 return kInvalidEntryName;
931 }
932
933 const int64_t ent = EntryToIndex(archive->hash_table,
934 archive->hash_table_size, entryName, nameLen);
935
936 if (ent < 0) {
Narayan Kamatha1ff8012013-12-31 10:27:59 +0000937 ALOGV("Zip: Could not find entry %.*s", nameLen, entryName);
Narayan Kamath7462f022013-11-21 13:05:04 +0000938 return ent;
939 }
940
941 return FindEntry(archive, ent, data);
942}
943
944int32_t Next(void* cookie, ZipEntry* data, ZipEntryName* name) {
945 IterationHandle* handle = (IterationHandle *) cookie;
946 if (handle == NULL) {
947 return kInvalidHandle;
948 }
949
950 ZipArchive* archive = handle->archive;
951 if (archive == NULL || archive->hash_table == NULL) {
952 ALOGW("Zip: Invalid ZipArchiveHandle");
953 return kInvalidHandle;
954 }
955
956 const uint32_t currentOffset = handle->position;
957 const uint32_t hash_table_length = archive->hash_table_size;
958 const ZipEntryName *hash_table = archive->hash_table;
959
960 for (uint32_t i = currentOffset; i < hash_table_length; ++i) {
961 if (hash_table[i].name != NULL &&
962 (handle->prefix == NULL ||
963 (memcmp(handle->prefix, hash_table[i].name, handle->prefix_len) == 0))) {
964 handle->position = (i + 1);
965 const int error = FindEntry(archive, i, data);
966 if (!error) {
967 name->name = hash_table[i].name;
968 name->name_length = hash_table[i].name_length;
969 }
970
971 return error;
972 }
973 }
974
975 handle->position = 0;
976 return kIterationEnd;
977}
978
979static int32_t InflateToFile(int fd, const ZipEntry* entry,
980 uint8_t* begin, uint32_t length,
981 uint64_t* crc_out) {
982 int32_t result = -1;
983 const uint32_t kBufSize = 32768;
984 uint8_t read_buf[kBufSize];
985 uint8_t write_buf[kBufSize];
986 z_stream zstream;
987 int zerr;
988
989 /*
990 * Initialize the zlib stream struct.
991 */
992 memset(&zstream, 0, sizeof(zstream));
993 zstream.zalloc = Z_NULL;
994 zstream.zfree = Z_NULL;
995 zstream.opaque = Z_NULL;
996 zstream.next_in = NULL;
997 zstream.avail_in = 0;
998 zstream.next_out = (Bytef*) write_buf;
999 zstream.avail_out = kBufSize;
1000 zstream.data_type = Z_UNKNOWN;
1001
1002 /*
1003 * Use the undocumented "negative window bits" feature to tell zlib
1004 * that there's no zlib header waiting for it.
1005 */
1006 zerr = inflateInit2(&zstream, -MAX_WBITS);
1007 if (zerr != Z_OK) {
1008 if (zerr == Z_VERSION_ERROR) {
1009 ALOGE("Installed zlib is not compatible with linked version (%s)",
1010 ZLIB_VERSION);
1011 } else {
1012 ALOGW("Call to inflateInit2 failed (zerr=%d)", zerr);
1013 }
1014
1015 return kZlibError;
1016 }
1017
1018 const uint32_t uncompressed_length = entry->uncompressed_length;
1019
1020 uint32_t compressed_length = entry->compressed_length;
1021 uint32_t write_count = 0;
1022 do {
1023 /* read as much as we can */
1024 if (zstream.avail_in == 0) {
Mark Salyzyn51d562d2014-05-05 14:38:05 -07001025 const ZD_TYPE getSize = (compressed_length > kBufSize) ? kBufSize : compressed_length;
1026 const ZD_TYPE actual = TEMP_FAILURE_RETRY(read(fd, read_buf, getSize));
Narayan Kamath7462f022013-11-21 13:05:04 +00001027 if (actual != getSize) {
Mark Salyzyn51d562d2014-05-05 14:38:05 -07001028 ALOGW("Zip: inflate read failed (" ZD " vs " ZD ")", actual, getSize);
Narayan Kamath7462f022013-11-21 13:05:04 +00001029 result = kIoError;
1030 goto z_bail;
1031 }
1032
1033 compressed_length -= getSize;
1034
1035 zstream.next_in = read_buf;
1036 zstream.avail_in = getSize;
1037 }
1038
1039 /* uncompress the data */
1040 zerr = inflate(&zstream, Z_NO_FLUSH);
1041 if (zerr != Z_OK && zerr != Z_STREAM_END) {
1042 ALOGW("Zip: inflate zerr=%d (nIn=%p aIn=%u nOut=%p aOut=%u)",
1043 zerr, zstream.next_in, zstream.avail_in,
1044 zstream.next_out, zstream.avail_out);
1045 result = kZlibError;
1046 goto z_bail;
1047 }
1048
1049 /* write when we're full or when we're done */
1050 if (zstream.avail_out == 0 ||
1051 (zerr == Z_STREAM_END && zstream.avail_out != kBufSize)) {
1052 const size_t write_size = zstream.next_out - write_buf;
1053 // The file might have declared a bogus length.
1054 if (write_size + write_count > length) {
1055 goto z_bail;
1056 }
1057 memcpy(begin + write_count, write_buf, write_size);
1058 write_count += write_size;
1059
1060 zstream.next_out = write_buf;
1061 zstream.avail_out = kBufSize;
1062 }
1063 } while (zerr == Z_OK);
1064
1065 assert(zerr == Z_STREAM_END); /* other errors should've been caught */
1066
1067 // stream.adler holds the crc32 value for such streams.
1068 *crc_out = zstream.adler;
1069
1070 if (zstream.total_out != uncompressed_length || compressed_length != 0) {
Mark Salyzyn088bf902014-05-08 16:02:20 -07001071 ALOGW("Zip: size mismatch on inflated file (%lu vs %" PRIu32 ")",
Narayan Kamath7462f022013-11-21 13:05:04 +00001072 zstream.total_out, uncompressed_length);
1073 result = kInconsistentInformation;
1074 goto z_bail;
1075 }
1076
1077 result = 0;
1078
1079z_bail:
1080 inflateEnd(&zstream); /* free up any allocated structures */
1081
1082 return result;
1083}
1084
1085int32_t ExtractToMemory(ZipArchiveHandle handle,
1086 ZipEntry* entry, uint8_t* begin, uint32_t size) {
1087 ZipArchive* archive = (ZipArchive*) handle;
1088 const uint16_t method = entry->method;
1089 off64_t data_offset = entry->offset;
1090
1091 if (lseek64(archive->fd, data_offset, SEEK_SET) != data_offset) {
Mark Salyzyn56a90a02014-05-08 17:20:55 -07001092 ALOGW("Zip: lseek to data at %" PRId64 " failed", (int64_t)data_offset);
Narayan Kamath7462f022013-11-21 13:05:04 +00001093 return kIoError;
1094 }
1095
1096 // this should default to kUnknownCompressionMethod.
1097 int32_t return_value = -1;
1098 uint64_t crc = 0;
1099 if (method == kCompressStored) {
1100 return_value = CopyFileToFile(archive->fd, begin, size, &crc);
1101 } else if (method == kCompressDeflated) {
1102 return_value = InflateToFile(archive->fd, entry, begin, size, &crc);
1103 }
1104
1105 if (!return_value && entry->has_data_descriptor) {
1106 return_value = UpdateEntryFromDataDescriptor(archive->fd, entry);
1107 if (return_value) {
1108 return return_value;
1109 }
1110 }
1111
1112 // TODO: Fix this check by passing the right flags to inflate2 so that
1113 // it calculates the CRC for us.
1114 if (entry->crc32 != crc && false) {
Mark Salyzyn088bf902014-05-08 16:02:20 -07001115 ALOGW("Zip: crc mismatch: expected %" PRIu32 ", was %" PRIu64, entry->crc32, crc);
Narayan Kamath7462f022013-11-21 13:05:04 +00001116 return kInconsistentInformation;
1117 }
1118
1119 return return_value;
1120}
1121
1122int32_t ExtractEntryToFile(ZipArchiveHandle handle,
1123 ZipEntry* entry, int fd) {
1124 const int32_t declared_length = entry->uncompressed_length;
1125
Narayan Kamath00a258c2013-12-13 16:06:19 +00001126 const off64_t current_offset = lseek64(fd, 0, SEEK_CUR);
1127 if (current_offset == -1) {
1128 ALOGW("Zip: unable to seek to current location on fd %d: %s", fd,
1129 strerror(errno));
Narayan Kamath7462f022013-11-21 13:05:04 +00001130 return kIoError;
1131 }
1132
Narayan Kamath00a258c2013-12-13 16:06:19 +00001133 int result = TEMP_FAILURE_RETRY(ftruncate(fd, declared_length + current_offset));
1134 if (result == -1) {
Mark Salyzyn99ef9912014-03-14 14:26:22 -07001135 ALOGW("Zip: unable to truncate file to %" PRId64 ": %s",
Mark Salyzyn56a90a02014-05-08 17:20:55 -07001136 (int64_t)(declared_length + current_offset), strerror(errno));
Narayan Kamath00a258c2013-12-13 16:06:19 +00001137 return kIoError;
1138 }
1139
Narayan Kamath48953a12014-01-24 12:32:39 +00001140 // Don't attempt to map a region of length 0. We still need the
1141 // ftruncate() though, since the API guarantees that we will truncate
1142 // the file to the end of the uncompressed output.
1143 if (declared_length == 0) {
1144 return 0;
1145 }
1146
Narayan Kamath00a258c2013-12-13 16:06:19 +00001147 android::FileMap* map = MapFileSegment(fd, current_offset, declared_length,
Narayan Kamatheaf98852013-12-11 14:51:51 +00001148 false, kTempMappingFileName);
1149 if (map == NULL) {
1150 return kMmapFailed;
Narayan Kamath7462f022013-11-21 13:05:04 +00001151 }
1152
Narayan Kamatheaf98852013-12-11 14:51:51 +00001153 const int32_t error = ExtractToMemory(handle, entry,
1154 reinterpret_cast<uint8_t*>(map->getDataPtr()),
1155 map->getDataLength());
1156 map->release();
Narayan Kamath7462f022013-11-21 13:05:04 +00001157 return error;
1158}
1159
1160const char* ErrorCodeString(int32_t error_code) {
1161 if (error_code > kErrorMessageLowerBound && error_code < kErrorMessageUpperBound) {
1162 return kErrorMessages[error_code * -1];
1163 }
1164
1165 return kErrorMessages[0];
1166}
1167
1168int GetFileDescriptor(const ZipArchiveHandle handle) {
1169 return ((ZipArchive*) handle)->fd;
1170}
1171