00001 /* zlib.h -- interface of the 'zlib' general purpose compression library 00002 version 1.2.3.3, October 2nd, 2006 00003 00004 Copyright (C) 1995-2006 Jean-loup Gailly and Mark Adler 00005 00006 This software is provided 'as-is', without any express or implied 00007 warranty. In no event will the authors be held liable for any damages 00008 arising from the use of this software. 00009 00010 Permission is granted to anyone to use this software for any purpose, 00011 including commercial applications, and to alter it and redistribute it 00012 freely, subject to the following restrictions: 00013 00014 1. The origin of this software must not be misrepresented; you must not 00015 claim that you wrote the original software. If you use this software 00016 in a product, an acknowledgment in the product documentation would be 00017 appreciated but is not required. 00018 2. Altered source versions must be plainly marked as such, and must not be 00019 misrepresented as being the original software. 00020 3. This notice may not be removed or altered from any source distribution. 00021 00022 Jean-loup Gailly Mark Adler 00023 jloup@gzip.org madler@alumni.caltech.edu 00024 00025 00026 The data format used by the zlib library is described by RFCs (Request for 00027 Comments) 1950 to 1952 in the files http://www.ietf.org/rfc/rfc1950.txt 00028 (zlib format), rfc1951.txt (deflate format) and rfc1952.txt (gzip format). 00029 */ 00030 00031 #ifndef ZLIB_H 00032 #define ZLIB_H 00033 00034 #include "zconf.h" 00035 00036 #ifdef __cplusplus 00037 extern "C" { 00038 #endif 00039 00040 #define ZLIB_VERSION "1.2.3.3" 00041 #define ZLIB_VERNUM 0x1233 00042 #define ZLIB_VER_MAJOR 1 00043 #define ZLIB_VER_MINOR 2 00044 #define ZLIB_VER_REVISION 3 00045 00046 /* 00047 The 'zlib' compression library provides in-memory compression and 00048 decompression functions, including integrity checks of the uncompressed 00049 data. This version of the library supports only one compression method 00050 (deflation) but other algorithms will be added later and will have the same 00051 stream interface. 00052 00053 Compression can be done in a single step if the buffers are large 00054 enough (for example if an input file is mmap'ed), or can be done by 00055 repeated calls of the compression function. In the latter case, the 00056 application must provide more input and/or consume the output 00057 (providing more output space) before each call. 00058 00059 The compressed data format used by default by the in-memory functions is 00060 the zlib format, which is a zlib wrapper documented in RFC 1950, wrapped 00061 around a deflate stream, which is itself documented in RFC 1951. 00062 00063 The library also supports reading and writing files in gzip (.gz) format 00064 with an interface similar to that of stdio using the functions that start 00065 with "gz". The gzip format is different from the zlib format. gzip is a 00066 gzip wrapper, documented in RFC 1952, wrapped around a deflate stream. 00067 00068 This library can optionally read and write gzip streams in memory as well. 00069 00070 The zlib format was designed to be compact and fast for use in memory 00071 and on communications channels. The gzip format was designed for single- 00072 file compression on file systems, has a larger header than zlib to maintain 00073 directory information, and uses a different, slower check method than zlib. 00074 00075 The library does not install any signal handler. The decoder checks 00076 the consistency of the compressed data, so the library should never 00077 crash even in case of corrupted input. 00078 */ 00079 00080 typedef voidpf (*alloc_func) OF((voidpf opaque, uInt items, uInt size)); 00081 typedef void (*free_func) OF((voidpf opaque, voidpf address)); 00082 00083 struct internal_state; 00084 00085 typedef struct z_stream_s { 00086 Bytef *next_in; /* next input byte */ 00087 uInt avail_in; /* number of bytes available at next_in */ 00088 uLong total_in; /* total nb of input bytes read so far */ 00089 00090 Bytef *next_out; /* next output byte should be put there */ 00091 uInt avail_out; /* remaining free space at next_out */ 00092 uLong total_out; /* total nb of bytes output so far */ 00093 00094 char *msg; /* last error message, NULL if no error */ 00095 struct internal_state FAR *state; /* not visible by applications */ 00096 00097 alloc_func zalloc; /* used to allocate the internal state */ 00098 free_func zfree; /* used to free the internal state */ 00099 voidpf opaque; /* private data object passed to zalloc and zfree */ 00100 00101 int data_type; /* best guess about the data type: binary or text */ 00102 uLong adler; /* adler32 value of the uncompressed data */ 00103 uLong reserved; /* reserved for future use */ 00104 } z_stream; 00105 00106 typedef z_stream FAR *z_streamp; 00107 00108 /* 00109 gzip header information passed to and from zlib routines. See RFC 1952 00110 for more details on the meanings of these fields. 00111 */ 00112 typedef struct gz_header_s { 00113 int text; /* true if compressed data believed to be text */ 00114 uLong time; /* modification time */ 00115 int xflags; /* extra flags (not used when writing a gzip file) */ 00116 int os; /* operating system */ 00117 Bytef *extra; /* pointer to extra field or Z_NULL if none */ 00118 uInt extra_len; /* extra field length (valid if extra != Z_NULL) */ 00119 uInt extra_max; /* space at extra (only when reading header) */ 00120 Bytef *name; /* pointer to zero-terminated file name or Z_NULL */ 00121 uInt name_max; /* space at name (only when reading header) */ 00122 Bytef *comment; /* pointer to zero-terminated comment or Z_NULL */ 00123 uInt comm_max; /* space at comment (only when reading header) */ 00124 int hcrc; /* true if there was or will be a header crc */ 00125 int done; /* true when done reading gzip header (not used 00126 when writing a gzip file) */ 00127 } gz_header; 00128 00129 typedef gz_header FAR *gz_headerp; 00130 00131 /* 00132 The application must update next_in and avail_in when avail_in has 00133 dropped to zero. It must update next_out and avail_out when avail_out 00134 has dropped to zero. The application must initialize zalloc, zfree and 00135 opaque before calling the init function. All other fields are set by the 00136 compression library and must not be updated by the application. 00137 00138 The opaque value provided by the application will be passed as the first 00139 parameter for calls of zalloc and zfree. This can be useful for custom 00140 memory management. The compression library attaches no meaning to the 00141 opaque value. 00142 00143 zalloc must return Z_NULL if there is not enough memory for the object. 00144 If zlib is used in a multi-threaded application, zalloc and zfree must be 00145 thread safe. 00146 00147 On 16-bit systems, the functions zalloc and zfree must be able to allocate 00148 exactly 65536 bytes, but will not be required to allocate more than this 00149 if the symbol MAXSEG_64K is defined (see zconf.h). WARNING: On MSDOS, 00150 pointers returned by zalloc for objects of exactly 65536 bytes *must* 00151 have their offset normalized to zero. The default allocation function 00152 provided by this library ensures this (see zutil.c). To reduce memory 00153 requirements and avoid any allocation of 64K objects, at the expense of 00154 compression ratio, compile the library with -DMAX_WBITS=14 (see zconf.h). 00155 00156 The fields total_in and total_out can be used for statistics or 00157 progress reports. After compression, total_in holds the total size of 00158 the uncompressed data and may be saved for use in the decompressor 00159 (particularly if the decompressor wants to decompress everything in 00160 a single step). 00161 */ 00162 00163 /* constants */ 00164 00165 #define Z_NO_FLUSH 0 00166 #define Z_PARTIAL_FLUSH 1 /* will be removed, use Z_SYNC_FLUSH instead */ 00167 #define Z_SYNC_FLUSH 2 00168 #define Z_FULL_FLUSH 3 00169 #define Z_FINISH 4 00170 #define Z_BLOCK 5 00171 /* Allowed flush values; see deflate() and inflate() below for details */ 00172 00173 #define Z_OK 0 00174 #define Z_STREAM_END 1 00175 #define Z_NEED_DICT 2 00176 #define Z_ERRNO (-1) 00177 #define Z_STREAM_ERROR (-2) 00178 #define Z_DATA_ERROR (-3) 00179 #define Z_MEM_ERROR (-4) 00180 #define Z_BUF_ERROR (-5) 00181 #define Z_VERSION_ERROR (-6) 00182 /* Return codes for the compression/decompression functions. Negative 00183 * values are errors, positive values are used for special but normal events. 00184 */ 00185 00186 #define Z_NO_COMPRESSION 0 00187 #define Z_BEST_SPEED 1 00188 #define Z_BEST_COMPRESSION 9 00189 #define Z_DEFAULT_COMPRESSION (-1) 00190 /* compression levels */ 00191 00192 #define Z_FILTERED 1 00193 #define Z_HUFFMAN_ONLY 2 00194 #define Z_RLE 3 00195 #define Z_FIXED 4 00196 #define Z_DEFAULT_STRATEGY 0 00197 /* compression strategy; see deflateInit2() below for details */ 00198 00199 #define Z_BINARY 0 00200 #define Z_TEXT 1 00201 #define Z_ASCII Z_TEXT /* for compatibility with 1.2.2 and earlier */ 00202 #define Z_UNKNOWN 2 00203 /* Possible values of the data_type field (though see inflate()) */ 00204 00205 #define Z_DEFLATED 8 00206 /* The deflate compression method (the only one supported in this version) */ 00207 00208 #define Z_NULL 0 /* for initializing zalloc, zfree, opaque */ 00209 00210 #define zlib_version zlibVersion() 00211 /* for compatibility with versions < 1.0.2 */ 00212 00213 /* basic functions */ 00214 00215 ZEXTERN const char * ZEXPORT zlibVersion OF((void)); 00216 /* The application can compare zlibVersion and ZLIB_VERSION for consistency. 00217 If the first character differs, the library code actually used is 00218 not compatible with the zlib.h header file used by the application. 00219 This check is automatically made by deflateInit and inflateInit. 00220 */ 00221 00222 /* 00223 ZEXTERN int ZEXPORT deflateInit OF((z_streamp strm, int level)); 00224 00225 Initializes the internal stream state for compression. The fields 00226 zalloc, zfree and opaque must be initialized before by the caller. 00227 If zalloc and zfree are set to Z_NULL, deflateInit updates them to 00228 use default allocation functions. 00229 00230 The compression level must be Z_DEFAULT_COMPRESSION, or between 0 and 9: 00231 1 gives best speed, 9 gives best compression, 0 gives no compression at 00232 all (the input data is simply copied a block at a time). 00233 Z_DEFAULT_COMPRESSION requests a default compromise between speed and 00234 compression (currently equivalent to level 6). 00235 00236 deflateInit returns Z_OK if success, Z_MEM_ERROR if there was not 00237 enough memory, Z_STREAM_ERROR if level is not a valid compression level, 00238 Z_VERSION_ERROR if the zlib library version (zlib_version) is incompatible 00239 with the version assumed by the caller (ZLIB_VERSION). 00240 msg is set to null if there is no error message. deflateInit does not 00241 perform any compression: this will be done by deflate(). 00242 */ 00243 00244 00245 ZEXTERN int ZEXPORT deflate OF((z_streamp strm, int flush)); 00246 /* 00247 deflate compresses as much data as possible, and stops when the input 00248 buffer becomes empty or the output buffer becomes full. It may introduce some 00249 output latency (reading input without producing any output) except when 00250 forced to flush. 00251 00252 The detailed semantics are as follows. deflate performs one or both of the 00253 following actions: 00254 00255 - Compress more input starting at next_in and update next_in and avail_in 00256 accordingly. If not all input can be processed (because there is not 00257 enough room in the output buffer), next_in and avail_in are updated and 00258 processing will resume at this point for the next call of deflate(). 00259 00260 - Provide more output starting at next_out and update next_out and avail_out 00261 accordingly. This action is forced if the parameter flush is non zero. 00262 Forcing flush frequently degrades the compression ratio, so this parameter 00263 should be set only when necessary (in interactive applications). 00264 Some output may be provided even if flush is not set. 00265 00266 Before the call of deflate(), the application should ensure that at least 00267 one of the actions is possible, by providing more input and/or consuming 00268 more output, and updating avail_in or avail_out accordingly; avail_out 00269 should never be zero before the call. The application can consume the 00270 compressed output when it wants, for example when the output buffer is full 00271 (avail_out == 0), or after each call of deflate(). If deflate returns Z_OK 00272 and with zero avail_out, it must be called again after making room in the 00273 output buffer because there might be more output pending. 00274 00275 Normally the parameter flush is set to Z_NO_FLUSH, which allows deflate to 00276 decide how much data to accumualte before producing output, in order to 00277 maximize compression. 00278 00279 If the parameter flush is set to Z_SYNC_FLUSH, all pending output is 00280 flushed to the output buffer and the output is aligned on a byte boundary, so 00281 that the decompressor can get all input data available so far. (In particular 00282 avail_in is zero after the call if enough output space has been provided 00283 before the call.) Flushing may degrade compression for some compression 00284 algorithms and so it should be used only when necessary. 00285 00286 If flush is set to Z_FULL_FLUSH, all output is flushed as with 00287 Z_SYNC_FLUSH, and the compression state is reset so that decompression can 00288 restart from this point if previous compressed data has been damaged or if 00289 random access is desired. Using Z_FULL_FLUSH too often can seriously degrade 00290 compression. 00291 00292 If deflate returns with avail_out == 0, this function must be called again 00293 with the same value of the flush parameter and more output space (updated 00294 avail_out), until the flush is complete (deflate returns with non-zero 00295 avail_out). In the case of a Z_FULL_FLUSH or Z_SYNC_FLUSH, make sure that 00296 avail_out is greater than six to avoid repeated flush markers due to 00297 avail_out == 0 on return. 00298 00299 If the parameter flush is set to Z_FINISH, pending input is processed, 00300 pending output is flushed and deflate returns with Z_STREAM_END if there 00301 was enough output space; if deflate returns with Z_OK, this function must be 00302 called again with Z_FINISH and more output space (updated avail_out) but no 00303 more input data, until it returns with Z_STREAM_END or an error. After 00304 deflate has returned Z_STREAM_END, the only possible operations on the 00305 stream are deflateReset or deflateEnd. 00306 00307 Z_FINISH can be used immediately after deflateInit if all the compression 00308 is to be done in a single step. In this case, avail_out must be at least 00309 the value returned by deflateBound (see below). If deflate does not return 00310 Z_STREAM_END, then it must be called again as described above. 00311 00312 deflate() sets strm->adler to the adler32 checksum of all input read 00313 so far (that is, total_in bytes). 00314 00315 deflate() may update strm->data_type if it can make a good guess about 00316 the input data type (Z_BINARY or Z_TEXT). In doubt, the data is considered 00317 binary. This field is only for information purposes and does not affect 00318 the compression algorithm in any manner. 00319 00320 deflate() returns Z_OK if some progress has been made (more input 00321 processed or more output produced), Z_STREAM_END if all input has been 00322 consumed and all output has been produced (only when flush is set to 00323 Z_FINISH), Z_STREAM_ERROR if the stream state was inconsistent (for example 00324 if next_in or next_out was NULL), Z_BUF_ERROR if no progress is possible 00325 (for example avail_in or avail_out was zero). Note that Z_BUF_ERROR is not 00326 fatal, and deflate() can be called again with more input and more output 00327 space to continue compressing. 00328 */ 00329 00330 00331 ZEXTERN int ZEXPORT deflateEnd OF((z_streamp strm)); 00332 /* 00333 All dynamically allocated data structures for this stream are freed. 00334 This function discards any unprocessed input and does not flush any 00335 pending output. 00336 00337 deflateEnd returns Z_OK if success, Z_STREAM_ERROR if the 00338 stream state was inconsistent, Z_DATA_ERROR if the stream was freed 00339 prematurely (some input or output was discarded). In the error case, 00340 msg may be set but then points to a static string (which must not be 00341 deallocated). 00342 */ 00343 00344 00345 /* 00346 ZEXTERN int ZEXPORT inflateInit OF((z_streamp strm)); 00347 00348 Initializes the internal stream state for decompression. The fields 00349 next_in, avail_in, zalloc, zfree and opaque must be initialized before by 00350 the caller. If next_in is not Z_NULL and avail_in is large enough (the exact 00351 value depends on the compression method), inflateInit determines the 00352 compression method from the zlib header and allocates all data structures 00353 accordingly; otherwise the allocation will be deferred to the first call of 00354 inflate. If zalloc and zfree are set to Z_NULL, inflateInit updates them to 00355 use default allocation functions. 00356 00357 inflateInit returns Z_OK if success, Z_MEM_ERROR if there was not enough 00358 memory, Z_VERSION_ERROR if the zlib library version is incompatible with the 00359 version assumed by the caller, or Z_STREAM_ERROR if the parameters are 00360 invalid, such as a null pointer to the structure. msg is set to null if 00361 there is no error message. inflateInit does not perform any decompression 00362 apart from possibly reading the zlib header if present: actual decompression 00363 will be done by inflate(). (So next_in and avail_in may be modified, but 00364 next_out and avail_out are unused and unchanged.) The current 00365 implementation of inflateInit() does not process any header information -- 00366 that is deferred until inflate() is called. 00367 */ 00368 00369 00370 ZEXTERN int ZEXPORT inflate OF((z_streamp strm, int flush)); 00371 /* 00372 inflate decompresses as much data as possible, and stops when the input 00373 buffer becomes empty or the output buffer becomes full. It may introduce 00374 some output latency (reading input without producing any output) except when 00375 forced to flush. 00376 00377 The detailed semantics are as follows. inflate performs one or both of the 00378 following actions: 00379 00380 - Decompress more input starting at next_in and update next_in and avail_in 00381 accordingly. If not all input can be processed (because there is not 00382 enough room in the output buffer), next_in is updated and processing 00383 will resume at this point for the next call of inflate(). 00384 00385 - Provide more output starting at next_out and update next_out and avail_out 00386 accordingly. inflate() provides as much output as possible, until there 00387 is no more input data or no more space in the output buffer (see below 00388 about the flush parameter). 00389 00390 Before the call of inflate(), the application should ensure that at least 00391 one of the actions is possible, by providing more input and/or consuming 00392 more output, and updating the next_* and avail_* values accordingly. 00393 The application can consume the uncompressed output when it wants, for 00394 example when the output buffer is full (avail_out == 0), or after each 00395 call of inflate(). If inflate returns Z_OK and with zero avail_out, it 00396 must be called again after making room in the output buffer because there 00397 might be more output pending. 00398 00399 The flush parameter of inflate() can be Z_NO_FLUSH, Z_SYNC_FLUSH, 00400 Z_FINISH, or Z_BLOCK. Z_SYNC_FLUSH requests that inflate() flush as much 00401 output as possible to the output buffer. Z_BLOCK requests that inflate() stop 00402 if and when it gets to the next deflate block boundary. When decoding the 00403 zlib or gzip format, this will cause inflate() to return immediately after 00404 the header and before the first block. When doing a raw inflate, inflate() 00405 will go ahead and process the first block, and will return when it gets to 00406 the end of that block, or when it runs out of data. 00407 00408 The Z_BLOCK option assists in appending to or combining deflate streams. 00409 Also to assist in this, on return inflate() will set strm->data_type to the 00410 number of unused bits in the last byte taken from strm->next_in, plus 64 00411 if inflate() is currently decoding the last block in the deflate stream, 00412 plus 128 if inflate() returned immediately after decoding an end-of-block 00413 code or decoding the complete header up to just before the first byte of the 00414 deflate stream. The end-of-block will not be indicated until all of the 00415 uncompressed data from that block has been written to strm->next_out. The 00416 number of unused bits may in general be greater than seven, except when 00417 bit 7 of data_type is set, in which case the number of unused bits will be 00418 less than eight. 00419 00420 inflate() should normally be called until it returns Z_STREAM_END or an 00421 error. However if all decompression is to be performed in a single step 00422 (a single call of inflate), the parameter flush should be set to 00423 Z_FINISH. In this case all pending input is processed and all pending 00424 output is flushed; avail_out must be large enough to hold all the 00425 uncompressed data. (The size of the uncompressed data may have been saved 00426 by the compressor for this purpose.) The next operation on this stream must 00427 be inflateEnd to deallocate the decompression state. The use of Z_FINISH 00428 is never required, but can be used to inform inflate that a faster approach 00429 may be used for the single inflate() call. 00430 00431 In this implementation, inflate() always flushes as much output as 00432 possible to the output buffer, and always uses the faster approach on the 00433 first call. So the only effect of the flush parameter in this implementation 00434 is on the return value of inflate(), as noted below, or when it returns early 00435 because Z_BLOCK is used. 00436 00437 If a preset dictionary is needed after this call (see inflateSetDictionary 00438 below), inflate sets strm->adler to the adler32 checksum of the dictionary 00439 chosen by the compressor and returns Z_NEED_DICT; otherwise it sets 00440 strm->adler to the adler32 checksum of all output produced so far (that is, 00441 total_out bytes) and returns Z_OK, Z_STREAM_END or an error code as described 00442 below. At the end of the stream, inflate() checks that its computed adler32 00443 checksum is equal to that saved by the compressor and returns Z_STREAM_END 00444 only if the checksum is correct. 00445 00446 inflate() will decompress and check either zlib-wrapped or gzip-wrapped 00447 deflate data. The header type is detected automatically. Any information 00448 contained in the gzip header is not retained, so applications that need that 00449 information should instead use raw inflate, see inflateInit2() below, or 00450 inflateBack() and perform their own processing of the gzip header and 00451 trailer. 00452 00453 inflate() returns Z_OK if some progress has been made (more input processed 00454 or more output produced), Z_STREAM_END if the end of the compressed data has 00455 been reached and all uncompressed output has been produced, Z_NEED_DICT if a 00456 preset dictionary is needed at this point, Z_DATA_ERROR if the input data was 00457 corrupted (input stream not conforming to the zlib format or incorrect check 00458 value), Z_STREAM_ERROR if the stream structure was inconsistent (for example 00459 if next_in or next_out was NULL), Z_MEM_ERROR if there was not enough memory, 00460 Z_BUF_ERROR if no progress is possible or if there was not enough room in the 00461 output buffer when Z_FINISH is used. Note that Z_BUF_ERROR is not fatal, and 00462 inflate() can be called again with more input and more output space to 00463 continue decompressing. If Z_DATA_ERROR is returned, the application may then 00464 call inflateSync() to look for a good compression block if a partial recovery 00465 of the data is desired. 00466 */ 00467 00468 00469 ZEXTERN int ZEXPORT inflateEnd OF((z_streamp strm)); 00470 /* 00471 All dynamically allocated data structures for this stream are freed. 00472 This function discards any unprocessed input and does not flush any 00473 pending output. 00474 00475 inflateEnd returns Z_OK if success, Z_STREAM_ERROR if the stream state 00476 was inconsistent. In the error case, msg may be set but then points to a 00477 static string (which must not be deallocated). 00478 */ 00479 00480 /* Advanced functions */ 00481 00482 /* 00483 The following functions are needed only in some special applications. 00484 */ 00485 00486 /* 00487 ZEXTERN int ZEXPORT deflateInit2 OF((z_streamp strm, 00488 int level, 00489 int method, 00490 int windowBits, 00491 int memLevel, 00492 int strategy)); 00493 00494 This is another version of deflateInit with more compression options. The 00495 fields next_in, zalloc, zfree and opaque must be initialized before by 00496 the caller. 00497 00498 The method parameter is the compression method. It must be Z_DEFLATED in 00499 this version of the library. 00500 00501 The windowBits parameter is the base two logarithm of the window size 00502 (the size of the history buffer). It should be in the range 8..15 for this 00503 version of the library. Larger values of this parameter result in better 00504 compression at the expense of memory usage. The default value is 15 if 00505 deflateInit is used instead. 00506 00507 windowBits can also be -8..-15 for raw deflate. In this case, -windowBits 00508 determines the window size. deflate() will then generate raw deflate data 00509 with no zlib header or trailer, and will not compute an adler32 check value. 00510 00511 windowBits can also be greater than 15 for optional gzip encoding. Add 00512 16 to windowBits to write a simple gzip header and trailer around the 00513 compressed data instead of a zlib wrapper. The gzip header will have no 00514 file name, no extra data, no comment, no modification time (set to zero), 00515 no header crc, and the operating system will be set to 255 (unknown). If a 00516 gzip stream is being written, strm->adler is a crc32 instead of an adler32. 00517 00518 The memLevel parameter specifies how much memory should be allocated 00519 for the internal compression state. memLevel=1 uses minimum memory but 00520 is slow and reduces compression ratio; memLevel=9 uses maximum memory 00521 for optimal speed. The default value is 8. See zconf.h for total memory 00522 usage as a function of windowBits and memLevel. 00523 00524 The strategy parameter is used to tune the compression algorithm. Use the 00525 value Z_DEFAULT_STRATEGY for normal data, Z_FILTERED for data produced by a 00526 filter (or predictor), Z_HUFFMAN_ONLY to force Huffman encoding only (no 00527 string match), or Z_RLE to limit match distances to one (run-length 00528 encoding). Filtered data consists mostly of small values with a somewhat 00529 random distribution. In this case, the compression algorithm is tuned to 00530 compress them better. The effect of Z_FILTERED is to force more Huffman 00531 coding and less string matching; it is somewhat intermediate between 00532 Z_DEFAULT and Z_HUFFMAN_ONLY. Z_RLE is designed to be almost as fast as 00533 Z_HUFFMAN_ONLY, but give better compression for PNG image data. The strategy 00534 parameter only affects the compression ratio but not the correctness of the 00535 compressed output even if it is not set appropriately. Z_FIXED prevents the 00536 use of dynamic Huffman codes, allowing for a simpler decoder for special 00537 applications. 00538 00539 deflateInit2 returns Z_OK if success, Z_MEM_ERROR if there was not enough 00540 memory, Z_STREAM_ERROR if a parameter is invalid (such as an invalid 00541 method). msg is set to null if there is no error message. deflateInit2 does 00542 not perform any compression: this will be done by deflate(). 00543 */ 00544 00545 ZEXTERN int ZEXPORT deflateSetDictionary OF((z_streamp strm, 00546 const Bytef *dictionary, 00547 uInt dictLength)); 00548 /* 00549 Initializes the compression dictionary from the given byte sequence 00550 without producing any compressed output. This function must be called 00551 immediately after deflateInit, deflateInit2 or deflateReset, before any 00552 call of deflate. The compressor and decompressor must use exactly the same 00553 dictionary (see inflateSetDictionary). 00554 00555 The dictionary should consist of strings (byte sequences) that are likely 00556 to be encountered later in the data to be compressed, with the most commonly 00557 used strings preferably put towards the end of the dictionary. Using a 00558 dictionary is most useful when the data to be compressed is short and can be 00559 predicted with good accuracy; the data can then be compressed better than 00560 with the default empty dictionary. 00561 00562 Depending on the size of the compression data structures selected by 00563 deflateInit or deflateInit2, a part of the dictionary may in effect be 00564 discarded, for example if the dictionary is larger than the window size in 00565 deflate or deflate2. Thus the strings most likely to be useful should be 00566 put at the end of the dictionary, not at the front. In addition, the 00567 current implementation of deflate will use at most the window size minus 00568 262 bytes of the provided dictionary. 00569 00570 Upon return of this function, strm->adler is set to the adler32 value 00571 of the dictionary; the decompressor may later use this value to determine 00572 which dictionary has been used by the compressor. (The adler32 value 00573 applies to the whole dictionary even if only a subset of the dictionary is 00574 actually used by the compressor.) If a raw deflate was requested, then the 00575 adler32 value is not computed and strm->adler is not set. 00576 00577 deflateSetDictionary returns Z_OK if success, or Z_STREAM_ERROR if a 00578 parameter is invalid (such as NULL dictionary) or the stream state is 00579 inconsistent (for example if deflate has already been called for this stream 00580 or if the compression method is bsort). deflateSetDictionary does not 00581 perform any compression: this will be done by deflate(). 00582 */ 00583 00584 ZEXTERN int ZEXPORT deflateCopy OF((z_streamp dest, 00585 z_streamp source)); 00586 /* 00587 Sets the destination stream as a complete copy of the source stream. 00588 00589 This function can be useful when several compression strategies will be 00590 tried, for example when there are several ways of pre-processing the input 00591 data with a filter. The streams that will be discarded should then be freed 00592 by calling deflateEnd. Note that deflateCopy duplicates the internal 00593 compression state which can be quite large, so this strategy is slow and 00594 can consume lots of memory. 00595 00596 deflateCopy returns Z_OK if success, Z_MEM_ERROR if there was not 00597 enough memory, Z_STREAM_ERROR if the source stream state was inconsistent 00598 (such as zalloc being NULL). msg is left unchanged in both source and 00599 destination. 00600 */ 00601 00602 ZEXTERN int ZEXPORT deflateReset OF((z_streamp strm)); 00603 /* 00604 This function is equivalent to deflateEnd followed by deflateInit, 00605 but does not free and reallocate all the internal compression state. 00606 The stream will keep the same compression level and any other attributes 00607 that may have been set by deflateInit2. 00608 00609 deflateReset returns Z_OK if success, or Z_STREAM_ERROR if the source 00610 stream state was inconsistent (such as zalloc or state being NULL). 00611 */ 00612 00613 ZEXTERN int ZEXPORT deflateParams OF((z_streamp strm, 00614 int level, 00615 int strategy)); 00616 /* 00617 Dynamically update the compression level and compression strategy. The 00618 interpretation of level and strategy is as in deflateInit2. This can be 00619 used to switch between compression and straight copy of the input data, or 00620 to switch to a different kind of input data requiring a different 00621 strategy. If the compression level is changed, the input available so far 00622 is compressed with the old level (and may be flushed); the new level will 00623 take effect only at the next call of deflate(). 00624 00625 Before the call of deflateParams, the stream state must be set as for 00626 a call of deflate(), since the currently available input may have to 00627 be compressed and flushed. In particular, strm->avail_out must be non-zero. 00628 00629 deflateParams returns Z_OK if success, Z_STREAM_ERROR if the source 00630 stream state was inconsistent or if a parameter was invalid, Z_BUF_ERROR 00631 if strm->avail_out was zero. 00632 */ 00633 00634 ZEXTERN int ZEXPORT deflateTune OF((z_streamp strm, 00635 int good_length, 00636 int max_lazy, 00637 int nice_length, 00638 int max_chain)); 00639 /* 00640 Fine tune deflate's internal compression parameters. This should only be 00641 used by someone who understands the algorithm used by zlib's deflate for 00642 searching for the best matching string, and even then only by the most 00643 fanatic optimizer trying to squeeze out the last compressed bit for their 00644 specific input data. Read the deflate.c source code for the meaning of the 00645 max_lazy, good_length, nice_length, and max_chain parameters. 00646 00647 deflateTune() can be called after deflateInit() or deflateInit2(), and 00648 returns Z_OK on success, or Z_STREAM_ERROR for an invalid deflate stream. 00649 */ 00650 00651 ZEXTERN uLong ZEXPORT deflateBound OF((z_streamp strm, 00652 uLong sourceLen)); 00653 /* 00654 deflateBound() returns an upper bound on the compressed size after 00655 deflation of sourceLen bytes. It must be called after deflateInit() or 00656 deflateInit2(), and after deflateSetHeader(), if used. This would be used 00657 to allocate an output buffer for deflation in a single pass, and so would be 00658 called before deflate(). 00659 */ 00660 00661 ZEXTERN int ZEXPORT deflatePrime OF((z_streamp strm, 00662 int bits, 00663 int value)); 00664 /* 00665 deflatePrime() inserts bits in the deflate output stream. The intent 00666 is that this function is used to start off the deflate output with the 00667 bits leftover from a previous deflate stream when appending to it. As such, 00668 this function can only be used for raw deflate, and must be used before the 00669 first deflate() call after a deflateInit2() or deflateReset(). bits must be 00670 less than or equal to 16, and that many of the least significant bits of 00671 value will be inserted in the output. 00672 00673 deflatePrime returns Z_OK if success, or Z_STREAM_ERROR if the source 00674 stream state was inconsistent. 00675 */ 00676 00677 ZEXTERN int ZEXPORT deflateSetHeader OF((z_streamp strm, 00678 gz_headerp head)); 00679 /* 00680 deflateSetHeader() provides gzip header information for when a gzip 00681 stream is requested by deflateInit2(). deflateSetHeader() may be called 00682 after deflateInit2() or deflateReset() and before the first call of 00683 deflate(). The text, time, os, extra field, name, and comment information 00684 in the provided gz_header structure are written to the gzip header (xflag is 00685 ignored -- the extra flags are set according to the compression level). The 00686 caller must assure that, if not Z_NULL, name and comment are terminated with 00687 a zero byte, and that if extra is not Z_NULL, that extra_len bytes are 00688 available there. If hcrc is true, a gzip header crc is included. Note that 00689 the current versions of the command-line version of gzip (up through version 00690 1.3.x) do not support header crc's, and will report that it is a "multi-part 00691 gzip file" and give up. 00692 00693 If deflateSetHeader is not used, the default gzip header has text false, 00694 the time set to zero, and os set to 255, with no extra, name, or comment 00695 fields. The gzip header is returned to the default state by deflateReset(). 00696 00697 deflateSetHeader returns Z_OK if success, or Z_STREAM_ERROR if the source 00698 stream state was inconsistent. 00699 */ 00700 00701 /* 00702 ZEXTERN int ZEXPORT inflateInit2 OF((z_streamp strm, 00703 int windowBits)); 00704 00705 This is another version of inflateInit with an extra parameter. The 00706 fields next_in, avail_in, zalloc, zfree and opaque must be initialized 00707 before by the caller. 00708 00709 The windowBits parameter is the base two logarithm of the maximum window 00710 size (the size of the history buffer). It should be in the range 8..15 for 00711 this version of the library. The default value is 15 if inflateInit is used 00712 instead. windowBits must be greater than or equal to the windowBits value 00713 provided to deflateInit2() while compressing, or it must be equal to 15 if 00714 deflateInit2() was not used. If a compressed stream with a larger window 00715 size is given as input, inflate() will return with the error code 00716 Z_DATA_ERROR instead of trying to allocate a larger window. 00717 00718 windowBits can also be -8..-15 for raw inflate. In this case, -windowBits 00719 determines the window size. inflate() will then process raw deflate data, 00720 not looking for a zlib or gzip header, not generating a check value, and not 00721 looking for any check values for comparison at the end of the stream. This 00722 is for use with other formats that use the deflate compressed data format 00723 such as zip. Those formats provide their own check values. If a custom 00724 format is developed using the raw deflate format for compressed data, it is 00725 recommended that a check value such as an adler32 or a crc32 be applied to 00726 the uncompressed data as is done in the zlib, gzip, and zip formats. For 00727 most applications, the zlib format should be used as is. Note that comments 00728 above on the use in deflateInit2() applies to the magnitude of windowBits. 00729 00730 windowBits can also be greater than 15 for optional gzip decoding. Add 00731 32 to windowBits to enable zlib and gzip decoding with automatic header 00732 detection, or add 16 to decode only the gzip format (the zlib format will 00733 return a Z_DATA_ERROR). If a gzip stream is being decoded, strm->adler is 00734 a crc32 instead of an adler32. 00735 00736 inflateInit2 returns Z_OK if success, Z_MEM_ERROR if there was not enough 00737 memory, Z_VERSION_ERROR if the zlib library version is incompatible with the 00738 version assumed by the caller, or Z_STREAM_ERROR if the parameters are 00739 invalid, such as a null pointer to the structure. msg is set to null if 00740 there is no error message. inflateInit2 does not perform any decompression 00741 apart from possibly reading the zlib header if present: actual decompression 00742 will be done by inflate(). (So next_in and avail_in may be modified, but 00743 next_out and avail_out are unused and unchanged.) The current 00744 implementation of inflateInit2() does not process any header information -- 00745 that is deferred until inflate() is called. 00746 */ 00747 00748 ZEXTERN int ZEXPORT inflateSetDictionary OF((z_streamp strm, 00749 const Bytef *dictionary, 00750 uInt dictLength)); 00751 /* 00752 Initializes the decompression dictionary from the given uncompressed byte 00753 sequence. This function must be called immediately after a call of inflate, 00754 if that call returned Z_NEED_DICT. The dictionary chosen by the compressor 00755 can be determined from the adler32 value returned by that call of inflate. 00756 The compressor and decompressor must use exactly the same dictionary (see 00757 deflateSetDictionary). For raw inflate, this function can be called 00758 immediately after inflateInit2() or inflateReset() and before any call of 00759 inflate() to set the dictionary. The application must insure that the 00760 dictionary that was used for compression is provided. 00761 00762 inflateSetDictionary returns Z_OK if success, Z_STREAM_ERROR if a 00763 parameter is invalid (such as NULL dictionary) or the stream state is 00764 inconsistent, Z_DATA_ERROR if the given dictionary doesn't match the 00765 expected one (incorrect adler32 value). inflateSetDictionary does not 00766 perform any decompression: this will be done by subsequent calls of 00767 inflate(). 00768 */ 00769 00770 ZEXTERN int ZEXPORT inflateSync OF((z_streamp strm)); 00771 /* 00772 Skips invalid compressed data until a full flush point (see above the 00773 description of deflate with Z_FULL_FLUSH) can be found, or until all 00774 available input is skipped. No output is provided. 00775 00776 inflateSync returns Z_OK if a full flush point has been found, Z_BUF_ERROR 00777 if no more input was provided, Z_DATA_ERROR if no flush point has been found, 00778 or Z_STREAM_ERROR if the stream structure was inconsistent. In the success 00779 case, the application may save the current current value of total_in which 00780 indicates where valid compressed data was found. In the error case, the 00781 application may repeatedly call inflateSync, providing more input each time, 00782 until success or end of the input data. 00783 */ 00784 00785 ZEXTERN int ZEXPORT inflateCopy OF((z_streamp dest, 00786 z_streamp source)); 00787 /* 00788 Sets the destination stream as a complete copy of the source stream. 00789 00790 This function can be useful when randomly accessing a large stream. The 00791 first pass through the stream can periodically record the inflate state, 00792 allowing restarting inflate at those points when randomly accessing the 00793 stream. 00794 00795 inflateCopy returns Z_OK if success, Z_MEM_ERROR if there was not 00796 enough memory, Z_STREAM_ERROR if the source stream state was inconsistent 00797 (such as zalloc being NULL). msg is left unchanged in both source and 00798 destination. 00799 */ 00800 00801 ZEXTERN int ZEXPORT inflateReset OF((z_streamp strm)); 00802 /* 00803 This function is equivalent to inflateEnd followed by inflateInit, 00804 but does not free and reallocate all the internal decompression state. 00805 The stream will keep attributes that may have been set by inflateInit2. 00806 00807 inflateReset returns Z_OK if success, or Z_STREAM_ERROR if the source 00808 stream state was inconsistent (such as zalloc or state being NULL). 00809 */ 00810 00811 ZEXTERN int ZEXPORT inflatePrime OF((z_streamp strm, 00812 int bits, 00813 int value)); 00814 /* 00815 This function inserts bits in the inflate input stream. The intent is 00816 that this function is used to start inflating at a bit position in the 00817 middle of a byte. The provided bits will be used before any bytes are used 00818 from next_in. This function should only be used with raw inflate, and 00819 should be used before the first inflate() call after inflateInit2() or 00820 inflateReset(). bits must be less than or equal to 16, and that many of the 00821 least significant bits of value will be inserted in the input. 00822 00823 inflatePrime returns Z_OK if success, or Z_STREAM_ERROR if the source 00824 stream state was inconsistent. 00825 */ 00826 00827 ZEXTERN int ZEXPORT inflateGetHeader OF((z_streamp strm, 00828 gz_headerp head)); 00829 /* 00830 inflateGetHeader() requests that gzip header information be stored in the 00831 provided gz_header structure. inflateGetHeader() may be called after 00832 inflateInit2() or inflateReset(), and before the first call of inflate(). 00833 As inflate() processes the gzip stream, head->done is zero until the header 00834 is completed, at which time head->done is set to one. If a zlib stream is 00835 being decoded, then head->done is set to -1 to indicate that there will be 00836 no gzip header information forthcoming. Note that Z_BLOCK can be used to 00837 force inflate() to return immediately after header processing is complete 00838 and before any actual data is decompressed. 00839 00840 The text, time, xflags, and os fields are filled in with the gzip header 00841 contents. hcrc is set to true if there is a header CRC. (The header CRC 00842 was valid if done is set to one.) If extra is not Z_NULL, then extra_max 00843 contains the maximum number of bytes to write to extra. Once done is true, 00844 extra_len contains the actual extra field length, and extra contains the 00845 extra field, or that field truncated if extra_max is less than extra_len. 00846 If name is not Z_NULL, then up to name_max characters are written there, 00847 terminated with a zero unless the length is greater than name_max. If 00848 comment is not Z_NULL, then up to comm_max characters are written there, 00849 terminated with a zero unless the length is greater than comm_max. When 00850 any of extra, name, or comment are not Z_NULL and the respective field is 00851 not present in the header, then that field is set to Z_NULL to signal its 00852 absence. This allows the use of deflateSetHeader() with the returned 00853 structure to duplicate the header. However if those fields are set to 00854 allocated memory, then the application will need to save those pointers 00855 elsewhere so that they can be eventually freed. 00856 00857 If inflateGetHeader is not used, then the header information is simply 00858 discarded. The header is always checked for validity, including the header 00859 CRC if present. inflateReset() will reset the process to discard the header 00860 information. The application would need to call inflateGetHeader() again to 00861 retrieve the header from the next gzip stream. 00862 00863 inflateGetHeader returns Z_OK if success, or Z_STREAM_ERROR if the source 00864 stream state was inconsistent. 00865 */ 00866 00867 /* 00868 ZEXTERN int ZEXPORT inflateBackInit OF((z_streamp strm, int windowBits, 00869 unsigned char FAR *window)); 00870 00871 Initialize the internal stream state for decompression using inflateBack() 00872 calls. The fields zalloc, zfree and opaque in strm must be initialized 00873 before the call. If zalloc and zfree are Z_NULL, then the default library- 00874 derived memory allocation routines are used. windowBits is the base two 00875 logarithm of the window size, in the range 8..15. window is a caller 00876 supplied buffer of that size. Except for special applications where it is 00877 assured that deflate was used with small window sizes, windowBits must be 15 00878 and a 32K byte window must be supplied to be able to decompress general 00879 deflate streams. 00880 00881 See inflateBack() for the usage of these routines. 00882 00883 inflateBackInit will return Z_OK on success, Z_STREAM_ERROR if any of 00884 the paramaters are invalid, Z_MEM_ERROR if the internal state could not 00885 be allocated, or Z_VERSION_ERROR if the version of the library does not 00886 match the version of the header file. 00887 */ 00888 00889 typedef unsigned (*in_func) OF((void FAR *, unsigned char FAR * FAR *)); 00890 typedef int (*out_func) OF((void FAR *, unsigned char FAR *, unsigned)); 00891 00892 ZEXTERN int ZEXPORT inflateBack OF((z_streamp strm, 00893 in_func in, void FAR *in_desc, 00894 out_func out, void FAR *out_desc)); 00895 /* 00896 inflateBack() does a raw inflate with a single call using a call-back 00897 interface for input and output. This is more efficient than inflate() for 00898 file i/o applications in that it avoids copying between the output and the 00899 sliding window by simply making the window itself the output buffer. This 00900 function trusts the application to not change the output buffer passed by 00901 the output function, at least until inflateBack() returns. 00902 00903 inflateBackInit() must be called first to allocate the internal state 00904 and to initialize the state with the user-provided window buffer. 00905 inflateBack() may then be used multiple times to inflate a complete, raw 00906 deflate stream with each call. inflateBackEnd() is then called to free 00907 the allocated state. 00908 00909 A raw deflate stream is one with no zlib or gzip header or trailer. 00910 This routine would normally be used in a utility that reads zip or gzip 00911 files and writes out uncompressed files. The utility would decode the 00912 header and process the trailer on its own, hence this routine expects 00913 only the raw deflate stream to decompress. This is different from the 00914 normal behavior of inflate(), which expects either a zlib or gzip header and 00915 trailer around the deflate stream. 00916 00917 inflateBack() uses two subroutines supplied by the caller that are then 00918 called by inflateBack() for input and output. inflateBack() calls those 00919 routines until it reads a complete deflate stream and writes out all of the 00920 uncompressed data, or until it encounters an error. The function's 00921 parameters and return types are defined above in the in_func and out_func 00922 typedefs. inflateBack() will call in(in_desc, &buf) which should return the 00923 number of bytes of provided input, and a pointer to that input in buf. If 00924 there is no input available, in() must return zero--buf is ignored in that 00925 case--and inflateBack() will return a buffer error. inflateBack() will call 00926 out(out_desc, buf, len) to write the uncompressed data buf[0..len-1]. out() 00927 should return zero on success, or non-zero on failure. If out() returns 00928 non-zero, inflateBack() will return with an error. Neither in() nor out() 00929 are permitted to change the contents of the window provided to 00930 inflateBackInit(), which is also the buffer that out() uses to write from. 00931 The length written by out() will be at most the window size. Any non-zero 00932 amount of input may be provided by in(). 00933 00934 For convenience, inflateBack() can be provided input on the first call by 00935 setting strm->next_in and strm->avail_in. If that input is exhausted, then 00936 in() will be called. Therefore strm->next_in must be initialized before 00937 calling inflateBack(). If strm->next_in is Z_NULL, then in() will be called 00938 immediately for input. If strm->next_in is not Z_NULL, then strm->avail_in 00939 must also be initialized, and then if strm->avail_in is not zero, input will 00940 initially be taken from strm->next_in[0 .. strm->avail_in - 1]. 00941 00942 The in_desc and out_desc parameters of inflateBack() is passed as the 00943 first parameter of in() and out() respectively when they are called. These 00944 descriptors can be optionally used to pass any information that the caller- 00945 supplied in() and out() functions need to do their job. 00946 00947 On return, inflateBack() will set strm->next_in and strm->avail_in to 00948 pass back any unused input that was provided by the last in() call. The 00949 return values of inflateBack() can be Z_STREAM_END on success, Z_BUF_ERROR 00950 if in() or out() returned an error, Z_DATA_ERROR if there was a format 00951 error in the deflate stream (in which case strm->msg is set to indicate the 00952 nature of the error), or Z_STREAM_ERROR if the stream was not properly 00953 initialized. In the case of Z_BUF_ERROR, an input or output error can be 00954 distinguished using strm->next_in which will be Z_NULL only if in() returned 00955 an error. If strm->next is not Z_NULL, then the Z_BUF_ERROR was due to 00956 out() returning non-zero. (in() will always be called before out(), so 00957 strm->next_in is assured to be defined if out() returns non-zero.) Note 00958 that inflateBack() cannot return Z_OK. 00959 */ 00960 00961 ZEXTERN int ZEXPORT inflateBackEnd OF((z_streamp strm)); 00962 /* 00963 All memory allocated by inflateBackInit() is freed. 00964 00965 inflateBackEnd() returns Z_OK on success, or Z_STREAM_ERROR if the stream 00966 state was inconsistent. 00967 */ 00968 00969 ZEXTERN uLong ZEXPORT zlibCompileFlags OF((void)); 00970 /* Return flags indicating compile-time options. 00971 00972 Type sizes, two bits each, 00 = 16 bits, 01 = 32, 10 = 64, 11 = other: 00973 1.0: size of uInt 00974 3.2: size of uLong 00975 5.4: size of voidpf (pointer) 00976 7.6: size of z_off_t 00977 00978 Compiler, assembler, and debug options: 00979 8: DEBUG 00980 9: ASMV or ASMINF -- use ASM code 00981 10: ZLIB_WINAPI -- exported functions use the WINAPI calling convention 00982 11: 0 (reserved) 00983 00984 One-time table building (smaller code, but not thread-safe if true): 00985 12: BUILDFIXED -- build static block decoding tables when needed 00986 13: DYNAMIC_CRC_TABLE -- build CRC calculation tables when needed 00987 14,15: 0 (reserved) 00988 00989 Library content (indicates missing functionality): 00990 16: NO_GZCOMPRESS -- gz* functions cannot compress (to avoid linking 00991 deflate code when not needed) 00992 17: NO_GZIP -- deflate can't write gzip streams, and inflate can't detect 00993 and decode gzip streams (to avoid linking crc code) 00994 18-19: 0 (reserved) 00995 00996 Operation variations (changes in library functionality): 00997 20: PKZIP_BUG_WORKAROUND -- slightly more permissive inflate 00998 21: FASTEST -- deflate algorithm with only one, lowest compression level 00999 22,23: 0 (reserved) 01000 01001 The sprintf variant used by gzprintf (zero is best): 01002 24: 0 = vs*, 1 = s* -- 1 means limited to 20 arguments after the format 01003 25: 0 = *nprintf, 1 = *printf -- 1 means gzprintf() not secure! 01004 26: 0 = returns value, 1 = void -- 1 means inferred string length returned 01005 01006 Remainder: 01007 27-31: 0 (reserved) 01008 */ 01009 01010 01011 /* utility functions */ 01012 01013 /* 01014 The following utility functions are implemented on top of the 01015 basic stream-oriented functions. To simplify the interface, some 01016 default options are assumed (compression level and memory usage, 01017 standard memory allocation functions). The source code of these 01018 utility functions can easily be modified if you need special options. 01019 */ 01020 01021 ZEXTERN int ZEXPORT compress OF((Bytef *dest, uLongf *destLen, 01022 const Bytef *source, uLong sourceLen)); 01023 /* 01024 Compresses the source buffer into the destination buffer. sourceLen is 01025 the byte length of the source buffer. Upon entry, destLen is the total 01026 size of the destination buffer, which must be at least the value returned 01027 by compressBound(sourceLen). Upon exit, destLen is the actual size of the 01028 compressed buffer. 01029 This function can be used to compress a whole file at once if the 01030 input file is mmap'ed. 01031 compress returns Z_OK if success, Z_MEM_ERROR if there was not 01032 enough memory, Z_BUF_ERROR if there was not enough room in the output 01033 buffer. 01034 */ 01035 01036 ZEXTERN int ZEXPORT compress2 OF((Bytef *dest, uLongf *destLen, 01037 const Bytef *source, uLong sourceLen, 01038 int level)); 01039 /* 01040 Compresses the source buffer into the destination buffer. The level 01041 parameter has the same meaning as in deflateInit. sourceLen is the byte 01042 length of the source buffer. Upon entry, destLen is the total size of the 01043 destination buffer, which must be at least the value returned by 01044 compressBound(sourceLen). Upon exit, destLen is the actual size of the 01045 compressed buffer. 01046 01047 compress2 returns Z_OK if success, Z_MEM_ERROR if there was not enough 01048 memory, Z_BUF_ERROR if there was not enough room in the output buffer, 01049 Z_STREAM_ERROR if the level parameter is invalid. 01050 */ 01051 01052 ZEXTERN uLong ZEXPORT compressBound OF((uLong sourceLen)); 01053 /* 01054 compressBound() returns an upper bound on the compressed size after 01055 compress() or compress2() on sourceLen bytes. It would be used before 01056 a compress() or compress2() call to allocate the destination buffer. 01057 */ 01058 01059 ZEXTERN int ZEXPORT uncompress OF((Bytef *dest, uLongf *destLen, 01060 const Bytef *source, uLong sourceLen)); 01061 /* 01062 Decompresses the source buffer into the destination buffer. sourceLen is 01063 the byte length of the source buffer. Upon entry, destLen is the total 01064 size of the destination buffer, which must be large enough to hold the 01065 entire uncompressed data. (The size of the uncompressed data must have 01066 been saved previously by the compressor and transmitted to the decompressor 01067 by some mechanism outside the scope of this compression library.) 01068 Upon exit, destLen is the actual size of the compressed buffer. 01069 This function can be used to decompress a whole file at once if the 01070 input file is mmap'ed. 01071 01072 uncompress returns Z_OK if success, Z_MEM_ERROR if there was not 01073 enough memory, Z_BUF_ERROR if there was not enough room in the output 01074 buffer, or Z_DATA_ERROR if the input data was corrupted or incomplete. 01075 */ 01076 01077 01078 typedef voidp gzFile; 01079 01080 /* 01081 ZEXTERN gzFile ZEXPORT gzopen OF((const char *path, const char *mode)); 01082 01083 Opens a gzip (.gz) file for reading or writing. The mode parameter 01084 is as in fopen ("rb" or "wb") but can also include a compression level 01085 ("wb9") or a strategy: 'f' for filtered data as in "wb6f", 'h' for 01086 Huffman only compression as in "wb1h", or 'R' for run-length encoding 01087 as in "wb1R". (See the description of deflateInit2 for more information 01088 about the strategy parameter.) 01089 01090 gzopen can be used to read a file which is not in gzip format; in this 01091 case gzread will directly read from the file without decompression. 01092 01093 gzopen returns NULL if the file could not be opened or if there was 01094 insufficient memory to allocate the (de)compression state; errno 01095 can be checked to distinguish the two cases (if errno is zero, the 01096 zlib error is Z_MEM_ERROR). */ 01097 01098 ZEXTERN gzFile ZEXPORT gzdopen OF((int fd, const char *mode)); 01099 /* 01100 gzdopen() associates a gzFile with the file descriptor fd. File 01101 descriptors are obtained from calls like open, dup, creat, pipe or 01102 fileno (in the file has been previously opened with fopen). 01103 The mode parameter is as in gzopen. 01104 The next call of gzclose on the returned gzFile will also close the 01105 file descriptor fd, just like fclose(fdopen(fd), mode) closes the file 01106 descriptor fd. If you want to keep fd open, use gzdopen(dup(fd), mode). 01107 gzdopen returns NULL if there was insufficient memory to allocate 01108 the (de)compression state. 01109 */ 01110 01111 ZEXTERN int ZEXPORT gzsetparams OF((gzFile file, int level, int strategy)); 01112 /* 01113 Dynamically update the compression level or strategy. See the description 01114 of deflateInit2 for the meaning of these parameters. 01115 gzsetparams returns Z_OK if success, or Z_STREAM_ERROR if the file was not 01116 opened for writing. 01117 */ 01118 01119 ZEXTERN int ZEXPORT gzread OF((gzFile file, voidp buf, unsigned len)); 01120 /* 01121 Reads the given number of uncompressed bytes from the compressed file. 01122 If the input file was not in gzip format, gzread copies the given number 01123 of bytes into the buffer. 01124 gzread returns the number of uncompressed bytes actually read (0 for 01125 end of file, -1 for error). */ 01126 01127 ZEXTERN int ZEXPORT gzwrite OF((gzFile file, 01128 voidpc buf, unsigned len)); 01129 /* 01130 Writes the given number of uncompressed bytes into the compressed file. 01131 gzwrite returns the number of uncompressed bytes actually written 01132 (0 in case of error). 01133 */ 01134 01135 ZEXTERN int ZEXPORTVA gzprintf OF((gzFile file, const char *format, ...)); 01136 /* 01137 Converts, formats, and writes the args to the compressed file under 01138 control of the format string, as in fprintf. gzprintf returns the number of 01139 uncompressed bytes actually written (0 in case of error). The number of 01140 uncompressed bytes written is limited to 4095. The caller should assure that 01141 this limit is not exceeded. If it is exceeded, then gzprintf() will return 01142 return an error (0) with nothing written. In this case, there may also be a 01143 buffer overflow with unpredictable consequences, which is possible only if 01144 zlib was compiled with the insecure functions sprintf() or vsprintf() 01145 because the secure snprintf() or vsnprintf() functions were not available. 01146 */ 01147 01148 ZEXTERN int ZEXPORT gzputs OF((gzFile file, const char *s)); 01149 /* 01150 Writes the given null-terminated string to the compressed file, excluding 01151 the terminating null character. 01152 gzputs returns the number of characters written, or -1 in case of error. 01153 */ 01154 01155 ZEXTERN char * ZEXPORT gzgets OF((gzFile file, char *buf, int len)); 01156 /* 01157 Reads bytes from the compressed file until len-1 characters are read, or 01158 a newline character is read and transferred to buf, or an end-of-file 01159 condition is encountered. The string is then terminated with a null 01160 character. 01161 gzgets returns buf, or Z_NULL in case of error. 01162 */ 01163 01164 ZEXTERN int ZEXPORT gzputc OF((gzFile file, int c)); 01165 /* 01166 Writes c, converted to an unsigned char, into the compressed file. 01167 gzputc returns the value that was written, or -1 in case of error. 01168 */ 01169 01170 ZEXTERN int ZEXPORT gzgetc OF((gzFile file)); 01171 /* 01172 Reads one byte from the compressed file. gzgetc returns this byte 01173 or -1 in case of end of file or error. 01174 */ 01175 01176 ZEXTERN int ZEXPORT gzungetc OF((int c, gzFile file)); 01177 /* 01178 Push one character back onto the stream to be read again later. 01179 Only one character of push-back is allowed. gzungetc() returns the 01180 character pushed, or -1 on failure. gzungetc() will fail if a 01181 character has been pushed but not read yet, or if c is -1. The pushed 01182 character will be discarded if the stream is repositioned with gzseek() 01183 or gzrewind(). 01184 */ 01185 01186 ZEXTERN int ZEXPORT gzflush OF((gzFile file, int flush)); 01187 /* 01188 Flushes all pending output into the compressed file. The parameter 01189 flush is as in the deflate() function. The return value is the zlib 01190 error number (see function gzerror below). gzflush returns Z_OK if 01191 the flush parameter is Z_FINISH and all output could be flushed. 01192 gzflush should be called only when strictly necessary because it can 01193 degrade compression. 01194 */ 01195 01196 /* 01197 ZEXTERN z_off_t ZEXPORT gzseek OF((gzFile file, 01198 z_off_t offset, int whence)); 01199 01200 Sets the starting position for the next gzread or gzwrite on the 01201 given compressed file. The offset represents a number of bytes in the 01202 uncompressed data stream. The whence parameter is defined as in lseek(2); 01203 the value SEEK_END is not supported. 01204 If the file is opened for reading, this function is emulated but can be 01205 extremely slow. If the file is opened for writing, only forward seeks are 01206 supported; gzseek then compresses a sequence of zeroes up to the new 01207 starting position. 01208 01209 gzseek returns the resulting offset location as measured in bytes from 01210 the beginning of the uncompressed stream, or -1 in case of error, in 01211 particular if the file is opened for writing and the new starting position 01212 would be before the current position. 01213 */ 01214 01215 ZEXTERN int ZEXPORT gzrewind OF((gzFile file)); 01216 /* 01217 Rewinds the given file. This function is supported only for reading. 01218 01219 gzrewind(file) is equivalent to (int)gzseek(file, 0L, SEEK_SET) 01220 */ 01221 01222 /* 01223 ZEXTERN z_off_t ZEXPORT gztell OF((gzFile file)); 01224 01225 Returns the starting position for the next gzread or gzwrite on the 01226 given compressed file. This position represents a number of bytes in the 01227 uncompressed data stream. 01228 01229 gztell(file) is equivalent to gzseek(file, 0L, SEEK_CUR) 01230 */ 01231 01232 ZEXTERN int ZEXPORT gzeof OF((gzFile file)); 01233 /* 01234 Returns 1 when EOF has previously been detected reading the given 01235 input stream, otherwise zero. 01236 */ 01237 01238 ZEXTERN int ZEXPORT gzdirect OF((gzFile file)); 01239 /* 01240 Returns 1 if file is being read directly without decompression, otherwise 01241 zero. 01242 */ 01243 01244 ZEXTERN int ZEXPORT gzclose OF((gzFile file)); 01245 /* 01246 Flushes all pending output if necessary, closes the compressed file 01247 and deallocates all the (de)compression state. The return value is the zlib 01248 error number. Note that once file is close, you cannot call gzerror with 01249 file, since its structures have been deallocated. 01250 */ 01251 01252 ZEXTERN const char * ZEXPORT gzerror OF((gzFile file, int *errnum)); 01253 /* 01254 Returns the error message for the last error which occurred on the 01255 given compressed file. errnum is set to zlib error number. If an 01256 error occurred in the file system and not in the compression library, 01257 errnum is set to Z_ERRNO and the application may consult errno 01258 to get the exact error code. 01259 01260 The application must not modify the returned string and future calls to 01261 this function may invalidate the returned string. 01262 */ 01263 01264 ZEXTERN void ZEXPORT gzclearerr OF((gzFile file)); 01265 /* 01266 Clears the error and end-of-file flags for file. This is analogous to the 01267 clearerr() function in stdio. This is useful for continuing to read a gzip 01268 file that is being written concurrently. 01269 */ 01270 01271 /* checksum functions */ 01272 01273 /* 01274 These functions are not related to compression but are exported 01275 anyway because they might be useful in applications using the 01276 compression library. 01277 */ 01278 01279 ZEXTERN uLong ZEXPORT adler32 OF((uLong adler, const Bytef *buf, uInt len)); 01280 /* 01281 Update a running Adler-32 checksum with the bytes buf[0..len-1] and 01282 return the updated checksum. If buf is NULL, this function returns 01283 the required initial value for the checksum. 01284 An Adler-32 checksum is almost as reliable as a CRC32 but can be computed 01285 much faster. Usage example: 01286 01287 uLong adler = adler32(0L, Z_NULL, 0); 01288 01289 while (read_buffer(buffer, length) != EOF) { 01290 adler = adler32(adler, buffer, length); 01291 } 01292 if (adler != original_adler) error(); 01293 */ 01294 01295 /* 01296 ZEXTERN uLong ZEXPORT adler32_combine OF((uLong adler1, uLong adler2, 01297 z_off_t len2)); 01298 01299 Combine two Adler-32 checksums into one. For two sequences of bytes, seq1 01300 and seq2 with lengths len1 and len2, Adler-32 checksums were calculated for 01301 each, adler1 and adler2. adler32_combine() returns the Adler-32 checksum of 01302 seq1 and seq2 concatenated, requiring only adler1, adler2, and len2. 01303 */ 01304 01305 ZEXTERN uLong ZEXPORT crc32 OF((uLong crc, const Bytef *buf, uInt len)); 01306 /* 01307 Update a running CRC-32 with the bytes buf[0..len-1] and return the 01308 updated CRC-32. If buf is NULL, this function returns the required initial 01309 value for the for the crc. Pre- and post-conditioning (one's complement) is 01310 performed within this function so it shouldn't be done by the application. 01311 Usage example: 01312 01313 uLong crc = crc32(0L, Z_NULL, 0); 01314 01315 while (read_buffer(buffer, length) != EOF) { 01316 crc = crc32(crc, buffer, length); 01317 } 01318 if (crc != original_crc) error(); 01319 */ 01320 01321 /* 01322 ZEXTERN uLong ZEXPORT crc32_combine OF((uLong crc1, uLong crc2, z_off_t len2)); 01323 01324 Combine two CRC-32 check values into one. For two sequences of bytes, 01325 seq1 and seq2 with lengths len1 and len2, CRC-32 check values were 01326 calculated for each, crc1 and crc2. crc32_combine() returns the CRC-32 01327 check value of seq1 and seq2 concatenated, requiring only crc1, crc2, and 01328 len2. 01329 */ 01330 01331 01332 /* various hacks, don't look :) */ 01333 01334 /* deflateInit and inflateInit are macros to allow checking the zlib version 01335 * and the compiler's view of z_stream: 01336 */ 01337 ZEXTERN int ZEXPORT deflateInit_ OF((z_streamp strm, int level, 01338 const char *version, int stream_size)); 01339 ZEXTERN int ZEXPORT inflateInit_ OF((z_streamp strm, 01340 const char *version, int stream_size)); 01341 ZEXTERN int ZEXPORT deflateInit2_ OF((z_streamp strm, int level, int method, 01342 int windowBits, int memLevel, 01343 int strategy, const char *version, 01344 int stream_size)); 01345 ZEXTERN int ZEXPORT inflateInit2_ OF((z_streamp strm, int windowBits, 01346 const char *version, int stream_size)); 01347 ZEXTERN int ZEXPORT inflateBackInit_ OF((z_streamp strm, int windowBits, 01348 unsigned char FAR *window, 01349 const char *version, 01350 int stream_size)); 01351 #define deflateInit(strm, level) \ 01352 deflateInit_((strm), (level), ZLIB_VERSION, sizeof(z_stream)) 01353 #define inflateInit(strm) \ 01354 inflateInit_((strm), ZLIB_VERSION, sizeof(z_stream)) 01355 #define deflateInit2(strm, level, method, windowBits, memLevel, strategy) \ 01356 deflateInit2_((strm),(level),(method),(windowBits),(memLevel),\ 01357 (strategy), ZLIB_VERSION, sizeof(z_stream)) 01358 #define inflateInit2(strm, windowBits) \ 01359 inflateInit2_((strm), (windowBits), ZLIB_VERSION, sizeof(z_stream)) 01360 #define inflateBackInit(strm, windowBits, window) \ 01361 inflateBackInit_((strm), (windowBits), (window), \ 01362 ZLIB_VERSION, sizeof(z_stream)) 01363 01364 #ifdef _LARGEFILE64_SOURCE 01365 ZEXTERN gzFile ZEXPORT gzopen64 OF((const char *, const char *)); 01366 ZEXTERN off64_t ZEXPORT gzseek64 OF((gzFile, off64_t, int)); 01367 ZEXTERN off64_t ZEXPORT gztell64 OF((gzFile)); 01368 ZEXTERN uLong ZEXPORT adler32_combine64 OF((uLong, uLong, off64_t)); 01369 ZEXTERN uLong ZEXPORT crc32_combine64 OF((uLong, uLong, off64_t)); 01370 #endif 01371 01372 #if _FILE_OFFSET_BITS == 64 01373 # define gzopen gzopen64 01374 # define gzseek gzseek64 01375 # define gztell gztell64 01376 # define adler32_combine adler32_combine64 01377 # define crc32_combine crc32_combine64 01378 #else 01379 ZEXTERN gzFile ZEXPORT gzopen OF((const char *, const char *)); 01380 ZEXTERN z_off_t ZEXPORT gzseek OF((gzFile, z_off_t, int)); 01381 ZEXTERN z_off_t ZEXPORT gztell OF((gzFile)); 01382 ZEXTERN uLong ZEXPORT adler32_combine OF((uLong, uLong, z_off_t)); 01383 ZEXTERN uLong ZEXPORT crc32_combine OF((uLong, uLong, z_off_t)); 01384 #endif 01385 01386 #if !defined(ZUTIL_H) && !defined(NO_DUMMY_DECL) 01387 struct internal_state {int dummy;}; /* hack for buggy compilers */ 01388 #endif 01389 01390 ZEXTERN const char * ZEXPORT zError OF((int)); 01391 ZEXTERN int ZEXPORT inflateSyncPoint OF((z_streamp)); 01392 ZEXTERN const uLongf * ZEXPORT get_crc_table OF((void)); 01393 ZEXTERN int ZEXPORT inflateUndermine OF((z_streamp, int)); 01394 01395 #ifdef __cplusplus 01396 } 01397 #endif 01398 01399 #endif /* ZLIB_H */
1.5.9