Thu, 22 Jan 2015 13:21:57 +0100
Incorporate requested changes from Mozilla in review:
https://bugzilla.mozilla.org/show_bug.cgi?id=1123480#c6
michael@0 | 1 | /* deflate.c -- compress data using the deflation algorithm |
michael@0 | 2 | * Copyright (C) 1995-2010 Jean-loup Gailly and Mark Adler |
michael@0 | 3 | * For conditions of distribution and use, see copyright notice in zlib.h |
michael@0 | 4 | */ |
michael@0 | 5 | |
michael@0 | 6 | /* |
michael@0 | 7 | * ALGORITHM |
michael@0 | 8 | * |
michael@0 | 9 | * The "deflation" process depends on being able to identify portions |
michael@0 | 10 | * of the input text which are identical to earlier input (within a |
michael@0 | 11 | * sliding window trailing behind the input currently being processed). |
michael@0 | 12 | * |
michael@0 | 13 | * The most straightforward technique turns out to be the fastest for |
michael@0 | 14 | * most input files: try all possible matches and select the longest. |
michael@0 | 15 | * The key feature of this algorithm is that insertions into the string |
michael@0 | 16 | * dictionary are very simple and thus fast, and deletions are avoided |
michael@0 | 17 | * completely. Insertions are performed at each input character, whereas |
michael@0 | 18 | * string matches are performed only when the previous match ends. So it |
michael@0 | 19 | * is preferable to spend more time in matches to allow very fast string |
michael@0 | 20 | * insertions and avoid deletions. The matching algorithm for small |
michael@0 | 21 | * strings is inspired from that of Rabin & Karp. A brute force approach |
michael@0 | 22 | * is used to find longer strings when a small match has been found. |
michael@0 | 23 | * A similar algorithm is used in comic (by Jan-Mark Wams) and freeze |
michael@0 | 24 | * (by Leonid Broukhis). |
michael@0 | 25 | * A previous version of this file used a more sophisticated algorithm |
michael@0 | 26 | * (by Fiala and Greene) which is guaranteed to run in linear amortized |
michael@0 | 27 | * time, but has a larger average cost, uses more memory and is patented. |
michael@0 | 28 | * However the F&G algorithm may be faster for some highly redundant |
michael@0 | 29 | * files if the parameter max_chain_length (described below) is too large. |
michael@0 | 30 | * |
michael@0 | 31 | * ACKNOWLEDGEMENTS |
michael@0 | 32 | * |
michael@0 | 33 | * The idea of lazy evaluation of matches is due to Jan-Mark Wams, and |
michael@0 | 34 | * I found it in 'freeze' written by Leonid Broukhis. |
michael@0 | 35 | * Thanks to many people for bug reports and testing. |
michael@0 | 36 | * |
michael@0 | 37 | * REFERENCES |
michael@0 | 38 | * |
michael@0 | 39 | * Deutsch, L.P.,"DEFLATE Compressed Data Format Specification". |
michael@0 | 40 | * Available in http://www.ietf.org/rfc/rfc1951.txt |
michael@0 | 41 | * |
michael@0 | 42 | * A description of the Rabin and Karp algorithm is given in the book |
michael@0 | 43 | * "Algorithms" by R. Sedgewick, Addison-Wesley, p252. |
michael@0 | 44 | * |
michael@0 | 45 | * Fiala,E.R., and Greene,D.H. |
michael@0 | 46 | * Data Compression with Finite Windows, Comm.ACM, 32,4 (1989) 490-595 |
michael@0 | 47 | * |
michael@0 | 48 | */ |
michael@0 | 49 | |
michael@0 | 50 | /* @(#) $Id$ */ |
michael@0 | 51 | |
michael@0 | 52 | #include "deflate.h" |
michael@0 | 53 | |
michael@0 | 54 | const char deflate_copyright[] = |
michael@0 | 55 | " deflate 1.2.5 Copyright 1995-2010 Jean-loup Gailly and Mark Adler "; |
michael@0 | 56 | /* |
michael@0 | 57 | If you use the zlib library in a product, an acknowledgment is welcome |
michael@0 | 58 | in the documentation of your product. If for some reason you cannot |
michael@0 | 59 | include such an acknowledgment, I would appreciate that you keep this |
michael@0 | 60 | copyright string in the executable of your product. |
michael@0 | 61 | */ |
michael@0 | 62 | |
michael@0 | 63 | /* =========================================================================== |
michael@0 | 64 | * Function prototypes. |
michael@0 | 65 | */ |
michael@0 | 66 | typedef enum { |
michael@0 | 67 | need_more, /* block not completed, need more input or more output */ |
michael@0 | 68 | block_done, /* block flush performed */ |
michael@0 | 69 | finish_started, /* finish started, need only more output at next deflate */ |
michael@0 | 70 | finish_done /* finish done, accept no more input or output */ |
michael@0 | 71 | } block_state; |
michael@0 | 72 | |
michael@0 | 73 | typedef block_state (*compress_func) OF((deflate_state *s, int flush)); |
michael@0 | 74 | /* Compression function. Returns the block state after the call. */ |
michael@0 | 75 | |
michael@0 | 76 | local void fill_window OF((deflate_state *s)); |
michael@0 | 77 | local block_state deflate_stored OF((deflate_state *s, int flush)); |
michael@0 | 78 | local block_state deflate_fast OF((deflate_state *s, int flush)); |
michael@0 | 79 | #ifndef FASTEST |
michael@0 | 80 | local block_state deflate_slow OF((deflate_state *s, int flush)); |
michael@0 | 81 | #endif |
michael@0 | 82 | local block_state deflate_rle OF((deflate_state *s, int flush)); |
michael@0 | 83 | local block_state deflate_huff OF((deflate_state *s, int flush)); |
michael@0 | 84 | local void lm_init OF((deflate_state *s)); |
michael@0 | 85 | local void putShortMSB OF((deflate_state *s, uInt b)); |
michael@0 | 86 | local void flush_pending OF((z_streamp strm)); |
michael@0 | 87 | local int read_buf OF((z_streamp strm, Bytef *buf, unsigned size)); |
michael@0 | 88 | #ifdef ASMV |
michael@0 | 89 | void match_init OF((void)); /* asm code initialization */ |
michael@0 | 90 | uInt longest_match OF((deflate_state *s, IPos cur_match)); |
michael@0 | 91 | #else |
michael@0 | 92 | local uInt longest_match OF((deflate_state *s, IPos cur_match)); |
michael@0 | 93 | #endif |
michael@0 | 94 | |
michael@0 | 95 | #ifdef DEBUG |
michael@0 | 96 | local void check_match OF((deflate_state *s, IPos start, IPos match, |
michael@0 | 97 | int length)); |
michael@0 | 98 | #endif |
michael@0 | 99 | |
michael@0 | 100 | /* =========================================================================== |
michael@0 | 101 | * Local data |
michael@0 | 102 | */ |
michael@0 | 103 | |
michael@0 | 104 | #define NIL 0 |
michael@0 | 105 | /* Tail of hash chains */ |
michael@0 | 106 | |
michael@0 | 107 | #ifndef TOO_FAR |
michael@0 | 108 | # define TOO_FAR 4096 |
michael@0 | 109 | #endif |
michael@0 | 110 | /* Matches of length 3 are discarded if their distance exceeds TOO_FAR */ |
michael@0 | 111 | |
michael@0 | 112 | /* Values for max_lazy_match, good_match and max_chain_length, depending on |
michael@0 | 113 | * the desired pack level (0..9). The values given below have been tuned to |
michael@0 | 114 | * exclude worst case performance for pathological files. Better values may be |
michael@0 | 115 | * found for specific files. |
michael@0 | 116 | */ |
michael@0 | 117 | typedef struct config_s { |
michael@0 | 118 | ush good_length; /* reduce lazy search above this match length */ |
michael@0 | 119 | ush max_lazy; /* do not perform lazy search above this match length */ |
michael@0 | 120 | ush nice_length; /* quit search above this match length */ |
michael@0 | 121 | ush max_chain; |
michael@0 | 122 | compress_func func; |
michael@0 | 123 | } config; |
michael@0 | 124 | |
michael@0 | 125 | #ifdef FASTEST |
michael@0 | 126 | local const config configuration_table[2] = { |
michael@0 | 127 | /* good lazy nice chain */ |
michael@0 | 128 | /* 0 */ {0, 0, 0, 0, deflate_stored}, /* store only */ |
michael@0 | 129 | /* 1 */ {4, 4, 8, 4, deflate_fast}}; /* max speed, no lazy matches */ |
michael@0 | 130 | #else |
michael@0 | 131 | local const config configuration_table[10] = { |
michael@0 | 132 | /* good lazy nice chain */ |
michael@0 | 133 | /* 0 */ {0, 0, 0, 0, deflate_stored}, /* store only */ |
michael@0 | 134 | /* 1 */ {4, 4, 8, 4, deflate_fast}, /* max speed, no lazy matches */ |
michael@0 | 135 | /* 2 */ {4, 5, 16, 8, deflate_fast}, |
michael@0 | 136 | /* 3 */ {4, 6, 32, 32, deflate_fast}, |
michael@0 | 137 | |
michael@0 | 138 | /* 4 */ {4, 4, 16, 16, deflate_slow}, /* lazy matches */ |
michael@0 | 139 | /* 5 */ {8, 16, 32, 32, deflate_slow}, |
michael@0 | 140 | /* 6 */ {8, 16, 128, 128, deflate_slow}, |
michael@0 | 141 | /* 7 */ {8, 32, 128, 256, deflate_slow}, |
michael@0 | 142 | /* 8 */ {32, 128, 258, 1024, deflate_slow}, |
michael@0 | 143 | /* 9 */ {32, 258, 258, 4096, deflate_slow}}; /* max compression */ |
michael@0 | 144 | #endif |
michael@0 | 145 | |
michael@0 | 146 | /* Note: the deflate() code requires max_lazy >= MIN_MATCH and max_chain >= 4 |
michael@0 | 147 | * For deflate_fast() (levels <= 3) good is ignored and lazy has a different |
michael@0 | 148 | * meaning. |
michael@0 | 149 | */ |
michael@0 | 150 | |
michael@0 | 151 | #define EQUAL 0 |
michael@0 | 152 | /* result of memcmp for equal strings */ |
michael@0 | 153 | |
michael@0 | 154 | #ifndef NO_DUMMY_DECL |
michael@0 | 155 | struct static_tree_desc_s {int dummy;}; /* for buggy compilers */ |
michael@0 | 156 | #endif |
michael@0 | 157 | |
michael@0 | 158 | /* =========================================================================== |
michael@0 | 159 | * Update a hash value with the given input byte |
michael@0 | 160 | * IN assertion: all calls to to UPDATE_HASH are made with consecutive |
michael@0 | 161 | * input characters, so that a running hash key can be computed from the |
michael@0 | 162 | * previous key instead of complete recalculation each time. |
michael@0 | 163 | */ |
michael@0 | 164 | #define UPDATE_HASH(s,h,c) (h = (((h)<<s->hash_shift) ^ (c)) & s->hash_mask) |
michael@0 | 165 | |
michael@0 | 166 | |
michael@0 | 167 | /* =========================================================================== |
michael@0 | 168 | * Insert string str in the dictionary and set match_head to the previous head |
michael@0 | 169 | * of the hash chain (the most recent string with same hash key). Return |
michael@0 | 170 | * the previous length of the hash chain. |
michael@0 | 171 | * If this file is compiled with -DFASTEST, the compression level is forced |
michael@0 | 172 | * to 1, and no hash chains are maintained. |
michael@0 | 173 | * IN assertion: all calls to to INSERT_STRING are made with consecutive |
michael@0 | 174 | * input characters and the first MIN_MATCH bytes of str are valid |
michael@0 | 175 | * (except for the last MIN_MATCH-1 bytes of the input file). |
michael@0 | 176 | */ |
michael@0 | 177 | #ifdef FASTEST |
michael@0 | 178 | #define INSERT_STRING(s, str, match_head) \ |
michael@0 | 179 | (UPDATE_HASH(s, s->ins_h, s->window[(str) + (MIN_MATCH-1)]), \ |
michael@0 | 180 | match_head = s->head[s->ins_h], \ |
michael@0 | 181 | s->head[s->ins_h] = (Pos)(str)) |
michael@0 | 182 | #else |
michael@0 | 183 | #define INSERT_STRING(s, str, match_head) \ |
michael@0 | 184 | (UPDATE_HASH(s, s->ins_h, s->window[(str) + (MIN_MATCH-1)]), \ |
michael@0 | 185 | match_head = s->prev[(str) & s->w_mask] = s->head[s->ins_h], \ |
michael@0 | 186 | s->head[s->ins_h] = (Pos)(str)) |
michael@0 | 187 | #endif |
michael@0 | 188 | |
michael@0 | 189 | /* =========================================================================== |
michael@0 | 190 | * Initialize the hash table (avoiding 64K overflow for 16 bit systems). |
michael@0 | 191 | * prev[] will be initialized on the fly. |
michael@0 | 192 | */ |
michael@0 | 193 | #define CLEAR_HASH(s) \ |
michael@0 | 194 | s->head[s->hash_size-1] = NIL; \ |
michael@0 | 195 | zmemzero((Bytef *)s->head, (unsigned)(s->hash_size-1)*sizeof(*s->head)); |
michael@0 | 196 | |
michael@0 | 197 | /* ========================================================================= */ |
michael@0 | 198 | int ZEXPORT deflateInit_(strm, level, version, stream_size) |
michael@0 | 199 | z_streamp strm; |
michael@0 | 200 | int level; |
michael@0 | 201 | const char *version; |
michael@0 | 202 | int stream_size; |
michael@0 | 203 | { |
michael@0 | 204 | return deflateInit2_(strm, level, Z_DEFLATED, MAX_WBITS, DEF_MEM_LEVEL, |
michael@0 | 205 | Z_DEFAULT_STRATEGY, version, stream_size); |
michael@0 | 206 | /* To do: ignore strm->next_in if we use it as window */ |
michael@0 | 207 | } |
michael@0 | 208 | |
michael@0 | 209 | /* ========================================================================= */ |
michael@0 | 210 | int ZEXPORT deflateInit2_(strm, level, method, windowBits, memLevel, strategy, |
michael@0 | 211 | version, stream_size) |
michael@0 | 212 | z_streamp strm; |
michael@0 | 213 | int level; |
michael@0 | 214 | int method; |
michael@0 | 215 | int windowBits; |
michael@0 | 216 | int memLevel; |
michael@0 | 217 | int strategy; |
michael@0 | 218 | const char *version; |
michael@0 | 219 | int stream_size; |
michael@0 | 220 | { |
michael@0 | 221 | deflate_state *s; |
michael@0 | 222 | int wrap = 1; |
michael@0 | 223 | static const char my_version[] = ZLIB_VERSION; |
michael@0 | 224 | |
michael@0 | 225 | ushf *overlay; |
michael@0 | 226 | /* We overlay pending_buf and d_buf+l_buf. This works since the average |
michael@0 | 227 | * output size for (length,distance) codes is <= 24 bits. |
michael@0 | 228 | */ |
michael@0 | 229 | |
michael@0 | 230 | if (version == Z_NULL || version[0] != my_version[0] || |
michael@0 | 231 | stream_size != sizeof(z_stream)) { |
michael@0 | 232 | return Z_VERSION_ERROR; |
michael@0 | 233 | } |
michael@0 | 234 | if (strm == Z_NULL) return Z_STREAM_ERROR; |
michael@0 | 235 | |
michael@0 | 236 | strm->msg = Z_NULL; |
michael@0 | 237 | if (strm->zalloc == (alloc_func)0) { |
michael@0 | 238 | strm->zalloc = zcalloc; |
michael@0 | 239 | strm->opaque = (voidpf)0; |
michael@0 | 240 | } |
michael@0 | 241 | if (strm->zfree == (free_func)0) strm->zfree = zcfree; |
michael@0 | 242 | |
michael@0 | 243 | #ifdef FASTEST |
michael@0 | 244 | if (level != 0) level = 1; |
michael@0 | 245 | #else |
michael@0 | 246 | if (level == Z_DEFAULT_COMPRESSION) level = 6; |
michael@0 | 247 | #endif |
michael@0 | 248 | |
michael@0 | 249 | if (windowBits < 0) { /* suppress zlib wrapper */ |
michael@0 | 250 | wrap = 0; |
michael@0 | 251 | windowBits = -windowBits; |
michael@0 | 252 | } |
michael@0 | 253 | #ifdef GZIP |
michael@0 | 254 | else if (windowBits > 15) { |
michael@0 | 255 | wrap = 2; /* write gzip wrapper instead */ |
michael@0 | 256 | windowBits -= 16; |
michael@0 | 257 | } |
michael@0 | 258 | #endif |
michael@0 | 259 | if (memLevel < 1 || memLevel > MAX_MEM_LEVEL || method != Z_DEFLATED || |
michael@0 | 260 | windowBits < 8 || windowBits > 15 || level < 0 || level > 9 || |
michael@0 | 261 | strategy < 0 || strategy > Z_FIXED) { |
michael@0 | 262 | return Z_STREAM_ERROR; |
michael@0 | 263 | } |
michael@0 | 264 | if (windowBits == 8) windowBits = 9; /* until 256-byte window bug fixed */ |
michael@0 | 265 | s = (deflate_state *) ZALLOC(strm, 1, sizeof(deflate_state)); |
michael@0 | 266 | if (s == Z_NULL) return Z_MEM_ERROR; |
michael@0 | 267 | strm->state = (struct internal_state FAR *)s; |
michael@0 | 268 | s->strm = strm; |
michael@0 | 269 | |
michael@0 | 270 | s->wrap = wrap; |
michael@0 | 271 | s->gzhead = Z_NULL; |
michael@0 | 272 | s->w_bits = windowBits; |
michael@0 | 273 | s->w_size = 1 << s->w_bits; |
michael@0 | 274 | s->w_mask = s->w_size - 1; |
michael@0 | 275 | |
michael@0 | 276 | s->hash_bits = memLevel + 7; |
michael@0 | 277 | s->hash_size = 1 << s->hash_bits; |
michael@0 | 278 | s->hash_mask = s->hash_size - 1; |
michael@0 | 279 | s->hash_shift = ((s->hash_bits+MIN_MATCH-1)/MIN_MATCH); |
michael@0 | 280 | |
michael@0 | 281 | s->window = (Bytef *) ZALLOC(strm, s->w_size, 2*sizeof(Byte)); |
michael@0 | 282 | s->prev = (Posf *) ZALLOC(strm, s->w_size, sizeof(Pos)); |
michael@0 | 283 | s->head = (Posf *) ZALLOC(strm, s->hash_size, sizeof(Pos)); |
michael@0 | 284 | |
michael@0 | 285 | s->high_water = 0; /* nothing written to s->window yet */ |
michael@0 | 286 | |
michael@0 | 287 | s->lit_bufsize = 1 << (memLevel + 6); /* 16K elements by default */ |
michael@0 | 288 | |
michael@0 | 289 | overlay = (ushf *) ZALLOC(strm, s->lit_bufsize, sizeof(ush)+2); |
michael@0 | 290 | s->pending_buf = (uchf *) overlay; |
michael@0 | 291 | s->pending_buf_size = (ulg)s->lit_bufsize * (sizeof(ush)+2L); |
michael@0 | 292 | |
michael@0 | 293 | if (s->window == Z_NULL || s->prev == Z_NULL || s->head == Z_NULL || |
michael@0 | 294 | s->pending_buf == Z_NULL) { |
michael@0 | 295 | s->status = FINISH_STATE; |
michael@0 | 296 | strm->msg = (char*)ERR_MSG(Z_MEM_ERROR); |
michael@0 | 297 | deflateEnd (strm); |
michael@0 | 298 | return Z_MEM_ERROR; |
michael@0 | 299 | } |
michael@0 | 300 | s->d_buf = overlay + s->lit_bufsize/sizeof(ush); |
michael@0 | 301 | s->l_buf = s->pending_buf + (1+sizeof(ush))*s->lit_bufsize; |
michael@0 | 302 | |
michael@0 | 303 | s->level = level; |
michael@0 | 304 | s->strategy = strategy; |
michael@0 | 305 | s->method = (Byte)method; |
michael@0 | 306 | |
michael@0 | 307 | return deflateReset(strm); |
michael@0 | 308 | } |
michael@0 | 309 | |
michael@0 | 310 | /* ========================================================================= */ |
michael@0 | 311 | int ZEXPORT deflateSetDictionary (strm, dictionary, dictLength) |
michael@0 | 312 | z_streamp strm; |
michael@0 | 313 | const Bytef *dictionary; |
michael@0 | 314 | uInt dictLength; |
michael@0 | 315 | { |
michael@0 | 316 | deflate_state *s; |
michael@0 | 317 | uInt length = dictLength; |
michael@0 | 318 | uInt n; |
michael@0 | 319 | IPos hash_head = 0; |
michael@0 | 320 | |
michael@0 | 321 | if (strm == Z_NULL || strm->state == Z_NULL || dictionary == Z_NULL || |
michael@0 | 322 | strm->state->wrap == 2 || |
michael@0 | 323 | (strm->state->wrap == 1 && strm->state->status != INIT_STATE)) |
michael@0 | 324 | return Z_STREAM_ERROR; |
michael@0 | 325 | |
michael@0 | 326 | s = strm->state; |
michael@0 | 327 | if (s->wrap) |
michael@0 | 328 | strm->adler = adler32(strm->adler, dictionary, dictLength); |
michael@0 | 329 | |
michael@0 | 330 | if (length < MIN_MATCH) return Z_OK; |
michael@0 | 331 | if (length > s->w_size) { |
michael@0 | 332 | length = s->w_size; |
michael@0 | 333 | dictionary += dictLength - length; /* use the tail of the dictionary */ |
michael@0 | 334 | } |
michael@0 | 335 | zmemcpy(s->window, dictionary, length); |
michael@0 | 336 | s->strstart = length; |
michael@0 | 337 | s->block_start = (long)length; |
michael@0 | 338 | |
michael@0 | 339 | /* Insert all strings in the hash table (except for the last two bytes). |
michael@0 | 340 | * s->lookahead stays null, so s->ins_h will be recomputed at the next |
michael@0 | 341 | * call of fill_window. |
michael@0 | 342 | */ |
michael@0 | 343 | s->ins_h = s->window[0]; |
michael@0 | 344 | UPDATE_HASH(s, s->ins_h, s->window[1]); |
michael@0 | 345 | for (n = 0; n <= length - MIN_MATCH; n++) { |
michael@0 | 346 | INSERT_STRING(s, n, hash_head); |
michael@0 | 347 | } |
michael@0 | 348 | if (hash_head) hash_head = 0; /* to make compiler happy */ |
michael@0 | 349 | return Z_OK; |
michael@0 | 350 | } |
michael@0 | 351 | |
michael@0 | 352 | /* ========================================================================= */ |
michael@0 | 353 | int ZEXPORT deflateReset (strm) |
michael@0 | 354 | z_streamp strm; |
michael@0 | 355 | { |
michael@0 | 356 | deflate_state *s; |
michael@0 | 357 | |
michael@0 | 358 | if (strm == Z_NULL || strm->state == Z_NULL || |
michael@0 | 359 | strm->zalloc == (alloc_func)0 || strm->zfree == (free_func)0) { |
michael@0 | 360 | return Z_STREAM_ERROR; |
michael@0 | 361 | } |
michael@0 | 362 | |
michael@0 | 363 | strm->total_in = strm->total_out = 0; |
michael@0 | 364 | strm->msg = Z_NULL; /* use zfree if we ever allocate msg dynamically */ |
michael@0 | 365 | strm->data_type = Z_UNKNOWN; |
michael@0 | 366 | |
michael@0 | 367 | s = (deflate_state *)strm->state; |
michael@0 | 368 | s->pending = 0; |
michael@0 | 369 | s->pending_out = s->pending_buf; |
michael@0 | 370 | |
michael@0 | 371 | if (s->wrap < 0) { |
michael@0 | 372 | s->wrap = -s->wrap; /* was made negative by deflate(..., Z_FINISH); */ |
michael@0 | 373 | } |
michael@0 | 374 | s->status = s->wrap ? INIT_STATE : BUSY_STATE; |
michael@0 | 375 | strm->adler = |
michael@0 | 376 | #ifdef GZIP |
michael@0 | 377 | s->wrap == 2 ? crc32(0L, Z_NULL, 0) : |
michael@0 | 378 | #endif |
michael@0 | 379 | adler32(0L, Z_NULL, 0); |
michael@0 | 380 | s->last_flush = Z_NO_FLUSH; |
michael@0 | 381 | |
michael@0 | 382 | _tr_init(s); |
michael@0 | 383 | lm_init(s); |
michael@0 | 384 | |
michael@0 | 385 | return Z_OK; |
michael@0 | 386 | } |
michael@0 | 387 | |
michael@0 | 388 | /* ========================================================================= */ |
michael@0 | 389 | int ZEXPORT deflateSetHeader (strm, head) |
michael@0 | 390 | z_streamp strm; |
michael@0 | 391 | gz_headerp head; |
michael@0 | 392 | { |
michael@0 | 393 | if (strm == Z_NULL || strm->state == Z_NULL) return Z_STREAM_ERROR; |
michael@0 | 394 | if (strm->state->wrap != 2) return Z_STREAM_ERROR; |
michael@0 | 395 | strm->state->gzhead = head; |
michael@0 | 396 | return Z_OK; |
michael@0 | 397 | } |
michael@0 | 398 | |
michael@0 | 399 | /* ========================================================================= */ |
michael@0 | 400 | int ZEXPORT deflatePrime (strm, bits, value) |
michael@0 | 401 | z_streamp strm; |
michael@0 | 402 | int bits; |
michael@0 | 403 | int value; |
michael@0 | 404 | { |
michael@0 | 405 | if (strm == Z_NULL || strm->state == Z_NULL) return Z_STREAM_ERROR; |
michael@0 | 406 | strm->state->bi_valid = bits; |
michael@0 | 407 | strm->state->bi_buf = (ush)(value & ((1 << bits) - 1)); |
michael@0 | 408 | return Z_OK; |
michael@0 | 409 | } |
michael@0 | 410 | |
michael@0 | 411 | /* ========================================================================= */ |
michael@0 | 412 | int ZEXPORT deflateParams(strm, level, strategy) |
michael@0 | 413 | z_streamp strm; |
michael@0 | 414 | int level; |
michael@0 | 415 | int strategy; |
michael@0 | 416 | { |
michael@0 | 417 | deflate_state *s; |
michael@0 | 418 | compress_func func; |
michael@0 | 419 | int err = Z_OK; |
michael@0 | 420 | |
michael@0 | 421 | if (strm == Z_NULL || strm->state == Z_NULL) return Z_STREAM_ERROR; |
michael@0 | 422 | s = strm->state; |
michael@0 | 423 | |
michael@0 | 424 | #ifdef FASTEST |
michael@0 | 425 | if (level != 0) level = 1; |
michael@0 | 426 | #else |
michael@0 | 427 | if (level == Z_DEFAULT_COMPRESSION) level = 6; |
michael@0 | 428 | #endif |
michael@0 | 429 | if (level < 0 || level > 9 || strategy < 0 || strategy > Z_FIXED) { |
michael@0 | 430 | return Z_STREAM_ERROR; |
michael@0 | 431 | } |
michael@0 | 432 | func = configuration_table[s->level].func; |
michael@0 | 433 | |
michael@0 | 434 | if ((strategy != s->strategy || func != configuration_table[level].func) && |
michael@0 | 435 | strm->total_in != 0) { |
michael@0 | 436 | /* Flush the last buffer: */ |
michael@0 | 437 | err = deflate(strm, Z_BLOCK); |
michael@0 | 438 | } |
michael@0 | 439 | if (s->level != level) { |
michael@0 | 440 | s->level = level; |
michael@0 | 441 | s->max_lazy_match = configuration_table[level].max_lazy; |
michael@0 | 442 | s->good_match = configuration_table[level].good_length; |
michael@0 | 443 | s->nice_match = configuration_table[level].nice_length; |
michael@0 | 444 | s->max_chain_length = configuration_table[level].max_chain; |
michael@0 | 445 | } |
michael@0 | 446 | s->strategy = strategy; |
michael@0 | 447 | return err; |
michael@0 | 448 | } |
michael@0 | 449 | |
michael@0 | 450 | /* ========================================================================= */ |
michael@0 | 451 | int ZEXPORT deflateTune(strm, good_length, max_lazy, nice_length, max_chain) |
michael@0 | 452 | z_streamp strm; |
michael@0 | 453 | int good_length; |
michael@0 | 454 | int max_lazy; |
michael@0 | 455 | int nice_length; |
michael@0 | 456 | int max_chain; |
michael@0 | 457 | { |
michael@0 | 458 | deflate_state *s; |
michael@0 | 459 | |
michael@0 | 460 | if (strm == Z_NULL || strm->state == Z_NULL) return Z_STREAM_ERROR; |
michael@0 | 461 | s = strm->state; |
michael@0 | 462 | s->good_match = good_length; |
michael@0 | 463 | s->max_lazy_match = max_lazy; |
michael@0 | 464 | s->nice_match = nice_length; |
michael@0 | 465 | s->max_chain_length = max_chain; |
michael@0 | 466 | return Z_OK; |
michael@0 | 467 | } |
michael@0 | 468 | |
michael@0 | 469 | /* ========================================================================= |
michael@0 | 470 | * For the default windowBits of 15 and memLevel of 8, this function returns |
michael@0 | 471 | * a close to exact, as well as small, upper bound on the compressed size. |
michael@0 | 472 | * They are coded as constants here for a reason--if the #define's are |
michael@0 | 473 | * changed, then this function needs to be changed as well. The return |
michael@0 | 474 | * value for 15 and 8 only works for those exact settings. |
michael@0 | 475 | * |
michael@0 | 476 | * For any setting other than those defaults for windowBits and memLevel, |
michael@0 | 477 | * the value returned is a conservative worst case for the maximum expansion |
michael@0 | 478 | * resulting from using fixed blocks instead of stored blocks, which deflate |
michael@0 | 479 | * can emit on compressed data for some combinations of the parameters. |
michael@0 | 480 | * |
michael@0 | 481 | * This function could be more sophisticated to provide closer upper bounds for |
michael@0 | 482 | * every combination of windowBits and memLevel. But even the conservative |
michael@0 | 483 | * upper bound of about 14% expansion does not seem onerous for output buffer |
michael@0 | 484 | * allocation. |
michael@0 | 485 | */ |
michael@0 | 486 | uLong ZEXPORT deflateBound(strm, sourceLen) |
michael@0 | 487 | z_streamp strm; |
michael@0 | 488 | uLong sourceLen; |
michael@0 | 489 | { |
michael@0 | 490 | deflate_state *s; |
michael@0 | 491 | uLong complen, wraplen; |
michael@0 | 492 | Bytef *str; |
michael@0 | 493 | |
michael@0 | 494 | /* conservative upper bound for compressed data */ |
michael@0 | 495 | complen = sourceLen + |
michael@0 | 496 | ((sourceLen + 7) >> 3) + ((sourceLen + 63) >> 6) + 5; |
michael@0 | 497 | |
michael@0 | 498 | /* if can't get parameters, return conservative bound plus zlib wrapper */ |
michael@0 | 499 | if (strm == Z_NULL || strm->state == Z_NULL) |
michael@0 | 500 | return complen + 6; |
michael@0 | 501 | |
michael@0 | 502 | /* compute wrapper length */ |
michael@0 | 503 | s = strm->state; |
michael@0 | 504 | switch (s->wrap) { |
michael@0 | 505 | case 0: /* raw deflate */ |
michael@0 | 506 | wraplen = 0; |
michael@0 | 507 | break; |
michael@0 | 508 | case 1: /* zlib wrapper */ |
michael@0 | 509 | wraplen = 6 + (s->strstart ? 4 : 0); |
michael@0 | 510 | break; |
michael@0 | 511 | case 2: /* gzip wrapper */ |
michael@0 | 512 | wraplen = 18; |
michael@0 | 513 | if (s->gzhead != Z_NULL) { /* user-supplied gzip header */ |
michael@0 | 514 | if (s->gzhead->extra != Z_NULL) |
michael@0 | 515 | wraplen += 2 + s->gzhead->extra_len; |
michael@0 | 516 | str = s->gzhead->name; |
michael@0 | 517 | if (str != Z_NULL) |
michael@0 | 518 | do { |
michael@0 | 519 | wraplen++; |
michael@0 | 520 | } while (*str++); |
michael@0 | 521 | str = s->gzhead->comment; |
michael@0 | 522 | if (str != Z_NULL) |
michael@0 | 523 | do { |
michael@0 | 524 | wraplen++; |
michael@0 | 525 | } while (*str++); |
michael@0 | 526 | if (s->gzhead->hcrc) |
michael@0 | 527 | wraplen += 2; |
michael@0 | 528 | } |
michael@0 | 529 | break; |
michael@0 | 530 | default: /* for compiler happiness */ |
michael@0 | 531 | wraplen = 6; |
michael@0 | 532 | } |
michael@0 | 533 | |
michael@0 | 534 | /* if not default parameters, return conservative bound */ |
michael@0 | 535 | if (s->w_bits != 15 || s->hash_bits != 8 + 7) |
michael@0 | 536 | return complen + wraplen; |
michael@0 | 537 | |
michael@0 | 538 | /* default settings: return tight bound for that case */ |
michael@0 | 539 | return sourceLen + (sourceLen >> 12) + (sourceLen >> 14) + |
michael@0 | 540 | (sourceLen >> 25) + 13 - 6 + wraplen; |
michael@0 | 541 | } |
michael@0 | 542 | |
michael@0 | 543 | /* ========================================================================= |
michael@0 | 544 | * Put a short in the pending buffer. The 16-bit value is put in MSB order. |
michael@0 | 545 | * IN assertion: the stream state is correct and there is enough room in |
michael@0 | 546 | * pending_buf. |
michael@0 | 547 | */ |
michael@0 | 548 | local void putShortMSB (s, b) |
michael@0 | 549 | deflate_state *s; |
michael@0 | 550 | uInt b; |
michael@0 | 551 | { |
michael@0 | 552 | put_byte(s, (Byte)(b >> 8)); |
michael@0 | 553 | put_byte(s, (Byte)(b & 0xff)); |
michael@0 | 554 | } |
michael@0 | 555 | |
michael@0 | 556 | /* ========================================================================= |
michael@0 | 557 | * Flush as much pending output as possible. All deflate() output goes |
michael@0 | 558 | * through this function so some applications may wish to modify it |
michael@0 | 559 | * to avoid allocating a large strm->next_out buffer and copying into it. |
michael@0 | 560 | * (See also read_buf()). |
michael@0 | 561 | */ |
michael@0 | 562 | local void flush_pending(strm) |
michael@0 | 563 | z_streamp strm; |
michael@0 | 564 | { |
michael@0 | 565 | unsigned len = strm->state->pending; |
michael@0 | 566 | |
michael@0 | 567 | if (len > strm->avail_out) len = strm->avail_out; |
michael@0 | 568 | if (len == 0) return; |
michael@0 | 569 | |
michael@0 | 570 | zmemcpy(strm->next_out, strm->state->pending_out, len); |
michael@0 | 571 | strm->next_out += len; |
michael@0 | 572 | strm->state->pending_out += len; |
michael@0 | 573 | strm->total_out += len; |
michael@0 | 574 | strm->avail_out -= len; |
michael@0 | 575 | strm->state->pending -= len; |
michael@0 | 576 | if (strm->state->pending == 0) { |
michael@0 | 577 | strm->state->pending_out = strm->state->pending_buf; |
michael@0 | 578 | } |
michael@0 | 579 | } |
michael@0 | 580 | |
michael@0 | 581 | /* ========================================================================= */ |
michael@0 | 582 | int ZEXPORT deflate (strm, flush) |
michael@0 | 583 | z_streamp strm; |
michael@0 | 584 | int flush; |
michael@0 | 585 | { |
michael@0 | 586 | int old_flush; /* value of flush param for previous deflate call */ |
michael@0 | 587 | deflate_state *s; |
michael@0 | 588 | |
michael@0 | 589 | if (strm == Z_NULL || strm->state == Z_NULL || |
michael@0 | 590 | flush > Z_BLOCK || flush < 0) { |
michael@0 | 591 | return Z_STREAM_ERROR; |
michael@0 | 592 | } |
michael@0 | 593 | s = strm->state; |
michael@0 | 594 | |
michael@0 | 595 | if (strm->next_out == Z_NULL || |
michael@0 | 596 | (strm->next_in == Z_NULL && strm->avail_in != 0) || |
michael@0 | 597 | (s->status == FINISH_STATE && flush != Z_FINISH)) { |
michael@0 | 598 | ERR_RETURN(strm, Z_STREAM_ERROR); |
michael@0 | 599 | } |
michael@0 | 600 | if (strm->avail_out == 0) ERR_RETURN(strm, Z_BUF_ERROR); |
michael@0 | 601 | |
michael@0 | 602 | s->strm = strm; /* just in case */ |
michael@0 | 603 | old_flush = s->last_flush; |
michael@0 | 604 | s->last_flush = flush; |
michael@0 | 605 | |
michael@0 | 606 | /* Write the header */ |
michael@0 | 607 | if (s->status == INIT_STATE) { |
michael@0 | 608 | #ifdef GZIP |
michael@0 | 609 | if (s->wrap == 2) { |
michael@0 | 610 | strm->adler = crc32(0L, Z_NULL, 0); |
michael@0 | 611 | put_byte(s, 31); |
michael@0 | 612 | put_byte(s, 139); |
michael@0 | 613 | put_byte(s, 8); |
michael@0 | 614 | if (s->gzhead == Z_NULL) { |
michael@0 | 615 | put_byte(s, 0); |
michael@0 | 616 | put_byte(s, 0); |
michael@0 | 617 | put_byte(s, 0); |
michael@0 | 618 | put_byte(s, 0); |
michael@0 | 619 | put_byte(s, 0); |
michael@0 | 620 | put_byte(s, s->level == 9 ? 2 : |
michael@0 | 621 | (s->strategy >= Z_HUFFMAN_ONLY || s->level < 2 ? |
michael@0 | 622 | 4 : 0)); |
michael@0 | 623 | put_byte(s, OS_CODE); |
michael@0 | 624 | s->status = BUSY_STATE; |
michael@0 | 625 | } |
michael@0 | 626 | else { |
michael@0 | 627 | put_byte(s, (s->gzhead->text ? 1 : 0) + |
michael@0 | 628 | (s->gzhead->hcrc ? 2 : 0) + |
michael@0 | 629 | (s->gzhead->extra == Z_NULL ? 0 : 4) + |
michael@0 | 630 | (s->gzhead->name == Z_NULL ? 0 : 8) + |
michael@0 | 631 | (s->gzhead->comment == Z_NULL ? 0 : 16) |
michael@0 | 632 | ); |
michael@0 | 633 | put_byte(s, (Byte)(s->gzhead->time & 0xff)); |
michael@0 | 634 | put_byte(s, (Byte)((s->gzhead->time >> 8) & 0xff)); |
michael@0 | 635 | put_byte(s, (Byte)((s->gzhead->time >> 16) & 0xff)); |
michael@0 | 636 | put_byte(s, (Byte)((s->gzhead->time >> 24) & 0xff)); |
michael@0 | 637 | put_byte(s, s->level == 9 ? 2 : |
michael@0 | 638 | (s->strategy >= Z_HUFFMAN_ONLY || s->level < 2 ? |
michael@0 | 639 | 4 : 0)); |
michael@0 | 640 | put_byte(s, s->gzhead->os & 0xff); |
michael@0 | 641 | if (s->gzhead->extra != Z_NULL) { |
michael@0 | 642 | put_byte(s, s->gzhead->extra_len & 0xff); |
michael@0 | 643 | put_byte(s, (s->gzhead->extra_len >> 8) & 0xff); |
michael@0 | 644 | } |
michael@0 | 645 | if (s->gzhead->hcrc) |
michael@0 | 646 | strm->adler = crc32(strm->adler, s->pending_buf, |
michael@0 | 647 | s->pending); |
michael@0 | 648 | s->gzindex = 0; |
michael@0 | 649 | s->status = EXTRA_STATE; |
michael@0 | 650 | } |
michael@0 | 651 | } |
michael@0 | 652 | else |
michael@0 | 653 | #endif |
michael@0 | 654 | { |
michael@0 | 655 | uInt header = (Z_DEFLATED + ((s->w_bits-8)<<4)) << 8; |
michael@0 | 656 | uInt level_flags; |
michael@0 | 657 | |
michael@0 | 658 | if (s->strategy >= Z_HUFFMAN_ONLY || s->level < 2) |
michael@0 | 659 | level_flags = 0; |
michael@0 | 660 | else if (s->level < 6) |
michael@0 | 661 | level_flags = 1; |
michael@0 | 662 | else if (s->level == 6) |
michael@0 | 663 | level_flags = 2; |
michael@0 | 664 | else |
michael@0 | 665 | level_flags = 3; |
michael@0 | 666 | header |= (level_flags << 6); |
michael@0 | 667 | if (s->strstart != 0) header |= PRESET_DICT; |
michael@0 | 668 | header += 31 - (header % 31); |
michael@0 | 669 | |
michael@0 | 670 | s->status = BUSY_STATE; |
michael@0 | 671 | putShortMSB(s, header); |
michael@0 | 672 | |
michael@0 | 673 | /* Save the adler32 of the preset dictionary: */ |
michael@0 | 674 | if (s->strstart != 0) { |
michael@0 | 675 | putShortMSB(s, (uInt)(strm->adler >> 16)); |
michael@0 | 676 | putShortMSB(s, (uInt)(strm->adler & 0xffff)); |
michael@0 | 677 | } |
michael@0 | 678 | strm->adler = adler32(0L, Z_NULL, 0); |
michael@0 | 679 | } |
michael@0 | 680 | } |
michael@0 | 681 | #ifdef GZIP |
michael@0 | 682 | if (s->status == EXTRA_STATE) { |
michael@0 | 683 | if (s->gzhead->extra != Z_NULL) { |
michael@0 | 684 | uInt beg = s->pending; /* start of bytes to update crc */ |
michael@0 | 685 | |
michael@0 | 686 | while (s->gzindex < (s->gzhead->extra_len & 0xffff)) { |
michael@0 | 687 | if (s->pending == s->pending_buf_size) { |
michael@0 | 688 | if (s->gzhead->hcrc && s->pending > beg) |
michael@0 | 689 | strm->adler = crc32(strm->adler, s->pending_buf + beg, |
michael@0 | 690 | s->pending - beg); |
michael@0 | 691 | flush_pending(strm); |
michael@0 | 692 | beg = s->pending; |
michael@0 | 693 | if (s->pending == s->pending_buf_size) |
michael@0 | 694 | break; |
michael@0 | 695 | } |
michael@0 | 696 | put_byte(s, s->gzhead->extra[s->gzindex]); |
michael@0 | 697 | s->gzindex++; |
michael@0 | 698 | } |
michael@0 | 699 | if (s->gzhead->hcrc && s->pending > beg) |
michael@0 | 700 | strm->adler = crc32(strm->adler, s->pending_buf + beg, |
michael@0 | 701 | s->pending - beg); |
michael@0 | 702 | if (s->gzindex == s->gzhead->extra_len) { |
michael@0 | 703 | s->gzindex = 0; |
michael@0 | 704 | s->status = NAME_STATE; |
michael@0 | 705 | } |
michael@0 | 706 | } |
michael@0 | 707 | else |
michael@0 | 708 | s->status = NAME_STATE; |
michael@0 | 709 | } |
michael@0 | 710 | if (s->status == NAME_STATE) { |
michael@0 | 711 | if (s->gzhead->name != Z_NULL) { |
michael@0 | 712 | uInt beg = s->pending; /* start of bytes to update crc */ |
michael@0 | 713 | int val; |
michael@0 | 714 | |
michael@0 | 715 | do { |
michael@0 | 716 | if (s->pending == s->pending_buf_size) { |
michael@0 | 717 | if (s->gzhead->hcrc && s->pending > beg) |
michael@0 | 718 | strm->adler = crc32(strm->adler, s->pending_buf + beg, |
michael@0 | 719 | s->pending - beg); |
michael@0 | 720 | flush_pending(strm); |
michael@0 | 721 | beg = s->pending; |
michael@0 | 722 | if (s->pending == s->pending_buf_size) { |
michael@0 | 723 | val = 1; |
michael@0 | 724 | break; |
michael@0 | 725 | } |
michael@0 | 726 | } |
michael@0 | 727 | val = s->gzhead->name[s->gzindex++]; |
michael@0 | 728 | put_byte(s, val); |
michael@0 | 729 | } while (val != 0); |
michael@0 | 730 | if (s->gzhead->hcrc && s->pending > beg) |
michael@0 | 731 | strm->adler = crc32(strm->adler, s->pending_buf + beg, |
michael@0 | 732 | s->pending - beg); |
michael@0 | 733 | if (val == 0) { |
michael@0 | 734 | s->gzindex = 0; |
michael@0 | 735 | s->status = COMMENT_STATE; |
michael@0 | 736 | } |
michael@0 | 737 | } |
michael@0 | 738 | else |
michael@0 | 739 | s->status = COMMENT_STATE; |
michael@0 | 740 | } |
michael@0 | 741 | if (s->status == COMMENT_STATE) { |
michael@0 | 742 | if (s->gzhead->comment != Z_NULL) { |
michael@0 | 743 | uInt beg = s->pending; /* start of bytes to update crc */ |
michael@0 | 744 | int val; |
michael@0 | 745 | |
michael@0 | 746 | do { |
michael@0 | 747 | if (s->pending == s->pending_buf_size) { |
michael@0 | 748 | if (s->gzhead->hcrc && s->pending > beg) |
michael@0 | 749 | strm->adler = crc32(strm->adler, s->pending_buf + beg, |
michael@0 | 750 | s->pending - beg); |
michael@0 | 751 | flush_pending(strm); |
michael@0 | 752 | beg = s->pending; |
michael@0 | 753 | if (s->pending == s->pending_buf_size) { |
michael@0 | 754 | val = 1; |
michael@0 | 755 | break; |
michael@0 | 756 | } |
michael@0 | 757 | } |
michael@0 | 758 | val = s->gzhead->comment[s->gzindex++]; |
michael@0 | 759 | put_byte(s, val); |
michael@0 | 760 | } while (val != 0); |
michael@0 | 761 | if (s->gzhead->hcrc && s->pending > beg) |
michael@0 | 762 | strm->adler = crc32(strm->adler, s->pending_buf + beg, |
michael@0 | 763 | s->pending - beg); |
michael@0 | 764 | if (val == 0) |
michael@0 | 765 | s->status = HCRC_STATE; |
michael@0 | 766 | } |
michael@0 | 767 | else |
michael@0 | 768 | s->status = HCRC_STATE; |
michael@0 | 769 | } |
michael@0 | 770 | if (s->status == HCRC_STATE) { |
michael@0 | 771 | if (s->gzhead->hcrc) { |
michael@0 | 772 | if (s->pending + 2 > s->pending_buf_size) |
michael@0 | 773 | flush_pending(strm); |
michael@0 | 774 | if (s->pending + 2 <= s->pending_buf_size) { |
michael@0 | 775 | put_byte(s, (Byte)(strm->adler & 0xff)); |
michael@0 | 776 | put_byte(s, (Byte)((strm->adler >> 8) & 0xff)); |
michael@0 | 777 | strm->adler = crc32(0L, Z_NULL, 0); |
michael@0 | 778 | s->status = BUSY_STATE; |
michael@0 | 779 | } |
michael@0 | 780 | } |
michael@0 | 781 | else |
michael@0 | 782 | s->status = BUSY_STATE; |
michael@0 | 783 | } |
michael@0 | 784 | #endif |
michael@0 | 785 | |
michael@0 | 786 | /* Flush as much pending output as possible */ |
michael@0 | 787 | if (s->pending != 0) { |
michael@0 | 788 | flush_pending(strm); |
michael@0 | 789 | if (strm->avail_out == 0) { |
michael@0 | 790 | /* Since avail_out is 0, deflate will be called again with |
michael@0 | 791 | * more output space, but possibly with both pending and |
michael@0 | 792 | * avail_in equal to zero. There won't be anything to do, |
michael@0 | 793 | * but this is not an error situation so make sure we |
michael@0 | 794 | * return OK instead of BUF_ERROR at next call of deflate: |
michael@0 | 795 | */ |
michael@0 | 796 | s->last_flush = -1; |
michael@0 | 797 | return Z_OK; |
michael@0 | 798 | } |
michael@0 | 799 | |
michael@0 | 800 | /* Make sure there is something to do and avoid duplicate consecutive |
michael@0 | 801 | * flushes. For repeated and useless calls with Z_FINISH, we keep |
michael@0 | 802 | * returning Z_STREAM_END instead of Z_BUF_ERROR. |
michael@0 | 803 | */ |
michael@0 | 804 | } else if (strm->avail_in == 0 && flush <= old_flush && |
michael@0 | 805 | flush != Z_FINISH) { |
michael@0 | 806 | ERR_RETURN(strm, Z_BUF_ERROR); |
michael@0 | 807 | } |
michael@0 | 808 | |
michael@0 | 809 | /* User must not provide more input after the first FINISH: */ |
michael@0 | 810 | if (s->status == FINISH_STATE && strm->avail_in != 0) { |
michael@0 | 811 | ERR_RETURN(strm, Z_BUF_ERROR); |
michael@0 | 812 | } |
michael@0 | 813 | |
michael@0 | 814 | /* Start a new block or continue the current one. |
michael@0 | 815 | */ |
michael@0 | 816 | if (strm->avail_in != 0 || s->lookahead != 0 || |
michael@0 | 817 | (flush != Z_NO_FLUSH && s->status != FINISH_STATE)) { |
michael@0 | 818 | block_state bstate; |
michael@0 | 819 | |
michael@0 | 820 | bstate = s->strategy == Z_HUFFMAN_ONLY ? deflate_huff(s, flush) : |
michael@0 | 821 | (s->strategy == Z_RLE ? deflate_rle(s, flush) : |
michael@0 | 822 | (*(configuration_table[s->level].func))(s, flush)); |
michael@0 | 823 | |
michael@0 | 824 | if (bstate == finish_started || bstate == finish_done) { |
michael@0 | 825 | s->status = FINISH_STATE; |
michael@0 | 826 | } |
michael@0 | 827 | if (bstate == need_more || bstate == finish_started) { |
michael@0 | 828 | if (strm->avail_out == 0) { |
michael@0 | 829 | s->last_flush = -1; /* avoid BUF_ERROR next call, see above */ |
michael@0 | 830 | } |
michael@0 | 831 | return Z_OK; |
michael@0 | 832 | /* If flush != Z_NO_FLUSH && avail_out == 0, the next call |
michael@0 | 833 | * of deflate should use the same flush parameter to make sure |
michael@0 | 834 | * that the flush is complete. So we don't have to output an |
michael@0 | 835 | * empty block here, this will be done at next call. This also |
michael@0 | 836 | * ensures that for a very small output buffer, we emit at most |
michael@0 | 837 | * one empty block. |
michael@0 | 838 | */ |
michael@0 | 839 | } |
michael@0 | 840 | if (bstate == block_done) { |
michael@0 | 841 | if (flush == Z_PARTIAL_FLUSH) { |
michael@0 | 842 | _tr_align(s); |
michael@0 | 843 | } else if (flush != Z_BLOCK) { /* FULL_FLUSH or SYNC_FLUSH */ |
michael@0 | 844 | _tr_stored_block(s, (char*)0, 0L, 0); |
michael@0 | 845 | /* For a full flush, this empty block will be recognized |
michael@0 | 846 | * as a special marker by inflate_sync(). |
michael@0 | 847 | */ |
michael@0 | 848 | if (flush == Z_FULL_FLUSH) { |
michael@0 | 849 | CLEAR_HASH(s); /* forget history */ |
michael@0 | 850 | if (s->lookahead == 0) { |
michael@0 | 851 | s->strstart = 0; |
michael@0 | 852 | s->block_start = 0L; |
michael@0 | 853 | } |
michael@0 | 854 | } |
michael@0 | 855 | } |
michael@0 | 856 | flush_pending(strm); |
michael@0 | 857 | if (strm->avail_out == 0) { |
michael@0 | 858 | s->last_flush = -1; /* avoid BUF_ERROR at next call, see above */ |
michael@0 | 859 | return Z_OK; |
michael@0 | 860 | } |
michael@0 | 861 | } |
michael@0 | 862 | } |
michael@0 | 863 | Assert(strm->avail_out > 0, "bug2"); |
michael@0 | 864 | |
michael@0 | 865 | if (flush != Z_FINISH) return Z_OK; |
michael@0 | 866 | if (s->wrap <= 0) return Z_STREAM_END; |
michael@0 | 867 | |
michael@0 | 868 | /* Write the trailer */ |
michael@0 | 869 | #ifdef GZIP |
michael@0 | 870 | if (s->wrap == 2) { |
michael@0 | 871 | put_byte(s, (Byte)(strm->adler & 0xff)); |
michael@0 | 872 | put_byte(s, (Byte)((strm->adler >> 8) & 0xff)); |
michael@0 | 873 | put_byte(s, (Byte)((strm->adler >> 16) & 0xff)); |
michael@0 | 874 | put_byte(s, (Byte)((strm->adler >> 24) & 0xff)); |
michael@0 | 875 | put_byte(s, (Byte)(strm->total_in & 0xff)); |
michael@0 | 876 | put_byte(s, (Byte)((strm->total_in >> 8) & 0xff)); |
michael@0 | 877 | put_byte(s, (Byte)((strm->total_in >> 16) & 0xff)); |
michael@0 | 878 | put_byte(s, (Byte)((strm->total_in >> 24) & 0xff)); |
michael@0 | 879 | } |
michael@0 | 880 | else |
michael@0 | 881 | #endif |
michael@0 | 882 | { |
michael@0 | 883 | putShortMSB(s, (uInt)(strm->adler >> 16)); |
michael@0 | 884 | putShortMSB(s, (uInt)(strm->adler & 0xffff)); |
michael@0 | 885 | } |
michael@0 | 886 | flush_pending(strm); |
michael@0 | 887 | /* If avail_out is zero, the application will call deflate again |
michael@0 | 888 | * to flush the rest. |
michael@0 | 889 | */ |
michael@0 | 890 | if (s->wrap > 0) s->wrap = -s->wrap; /* write the trailer only once! */ |
michael@0 | 891 | return s->pending != 0 ? Z_OK : Z_STREAM_END; |
michael@0 | 892 | } |
michael@0 | 893 | |
michael@0 | 894 | /* ========================================================================= */ |
michael@0 | 895 | int ZEXPORT deflateEnd (strm) |
michael@0 | 896 | z_streamp strm; |
michael@0 | 897 | { |
michael@0 | 898 | int status; |
michael@0 | 899 | |
michael@0 | 900 | if (strm == Z_NULL || strm->state == Z_NULL) return Z_STREAM_ERROR; |
michael@0 | 901 | |
michael@0 | 902 | status = strm->state->status; |
michael@0 | 903 | if (status != INIT_STATE && |
michael@0 | 904 | status != EXTRA_STATE && |
michael@0 | 905 | status != NAME_STATE && |
michael@0 | 906 | status != COMMENT_STATE && |
michael@0 | 907 | status != HCRC_STATE && |
michael@0 | 908 | status != BUSY_STATE && |
michael@0 | 909 | status != FINISH_STATE) { |
michael@0 | 910 | return Z_STREAM_ERROR; |
michael@0 | 911 | } |
michael@0 | 912 | |
michael@0 | 913 | /* Deallocate in reverse order of allocations: */ |
michael@0 | 914 | TRY_FREE(strm, strm->state->pending_buf); |
michael@0 | 915 | TRY_FREE(strm, strm->state->head); |
michael@0 | 916 | TRY_FREE(strm, strm->state->prev); |
michael@0 | 917 | TRY_FREE(strm, strm->state->window); |
michael@0 | 918 | |
michael@0 | 919 | ZFREE(strm, strm->state); |
michael@0 | 920 | strm->state = Z_NULL; |
michael@0 | 921 | |
michael@0 | 922 | return status == BUSY_STATE ? Z_DATA_ERROR : Z_OK; |
michael@0 | 923 | } |
michael@0 | 924 | |
michael@0 | 925 | /* ========================================================================= |
michael@0 | 926 | * Copy the source state to the destination state. |
michael@0 | 927 | * To simplify the source, this is not supported for 16-bit MSDOS (which |
michael@0 | 928 | * doesn't have enough memory anyway to duplicate compression states). |
michael@0 | 929 | */ |
michael@0 | 930 | int ZEXPORT deflateCopy (dest, source) |
michael@0 | 931 | z_streamp dest; |
michael@0 | 932 | z_streamp source; |
michael@0 | 933 | { |
michael@0 | 934 | #ifdef MAXSEG_64K |
michael@0 | 935 | return Z_STREAM_ERROR; |
michael@0 | 936 | #else |
michael@0 | 937 | deflate_state *ds; |
michael@0 | 938 | deflate_state *ss; |
michael@0 | 939 | ushf *overlay; |
michael@0 | 940 | |
michael@0 | 941 | |
michael@0 | 942 | if (source == Z_NULL || dest == Z_NULL || source->state == Z_NULL) { |
michael@0 | 943 | return Z_STREAM_ERROR; |
michael@0 | 944 | } |
michael@0 | 945 | |
michael@0 | 946 | ss = source->state; |
michael@0 | 947 | |
michael@0 | 948 | zmemcpy(dest, source, sizeof(z_stream)); |
michael@0 | 949 | |
michael@0 | 950 | ds = (deflate_state *) ZALLOC(dest, 1, sizeof(deflate_state)); |
michael@0 | 951 | if (ds == Z_NULL) return Z_MEM_ERROR; |
michael@0 | 952 | dest->state = (struct internal_state FAR *) ds; |
michael@0 | 953 | zmemcpy(ds, ss, sizeof(deflate_state)); |
michael@0 | 954 | ds->strm = dest; |
michael@0 | 955 | |
michael@0 | 956 | ds->window = (Bytef *) ZALLOC(dest, ds->w_size, 2*sizeof(Byte)); |
michael@0 | 957 | ds->prev = (Posf *) ZALLOC(dest, ds->w_size, sizeof(Pos)); |
michael@0 | 958 | ds->head = (Posf *) ZALLOC(dest, ds->hash_size, sizeof(Pos)); |
michael@0 | 959 | overlay = (ushf *) ZALLOC(dest, ds->lit_bufsize, sizeof(ush)+2); |
michael@0 | 960 | ds->pending_buf = (uchf *) overlay; |
michael@0 | 961 | |
michael@0 | 962 | if (ds->window == Z_NULL || ds->prev == Z_NULL || ds->head == Z_NULL || |
michael@0 | 963 | ds->pending_buf == Z_NULL) { |
michael@0 | 964 | deflateEnd (dest); |
michael@0 | 965 | return Z_MEM_ERROR; |
michael@0 | 966 | } |
michael@0 | 967 | /* following zmemcpy do not work for 16-bit MSDOS */ |
michael@0 | 968 | zmemcpy(ds->window, ss->window, ds->w_size * 2 * sizeof(Byte)); |
michael@0 | 969 | zmemcpy(ds->prev, ss->prev, ds->w_size * sizeof(Pos)); |
michael@0 | 970 | zmemcpy(ds->head, ss->head, ds->hash_size * sizeof(Pos)); |
michael@0 | 971 | zmemcpy(ds->pending_buf, ss->pending_buf, (uInt)ds->pending_buf_size); |
michael@0 | 972 | |
michael@0 | 973 | ds->pending_out = ds->pending_buf + (ss->pending_out - ss->pending_buf); |
michael@0 | 974 | ds->d_buf = overlay + ds->lit_bufsize/sizeof(ush); |
michael@0 | 975 | ds->l_buf = ds->pending_buf + (1+sizeof(ush))*ds->lit_bufsize; |
michael@0 | 976 | |
michael@0 | 977 | ds->l_desc.dyn_tree = ds->dyn_ltree; |
michael@0 | 978 | ds->d_desc.dyn_tree = ds->dyn_dtree; |
michael@0 | 979 | ds->bl_desc.dyn_tree = ds->bl_tree; |
michael@0 | 980 | |
michael@0 | 981 | return Z_OK; |
michael@0 | 982 | #endif /* MAXSEG_64K */ |
michael@0 | 983 | } |
michael@0 | 984 | |
michael@0 | 985 | /* =========================================================================== |
michael@0 | 986 | * Read a new buffer from the current input stream, update the adler32 |
michael@0 | 987 | * and total number of bytes read. All deflate() input goes through |
michael@0 | 988 | * this function so some applications may wish to modify it to avoid |
michael@0 | 989 | * allocating a large strm->next_in buffer and copying from it. |
michael@0 | 990 | * (See also flush_pending()). |
michael@0 | 991 | */ |
michael@0 | 992 | local int read_buf(strm, buf, size) |
michael@0 | 993 | z_streamp strm; |
michael@0 | 994 | Bytef *buf; |
michael@0 | 995 | unsigned size; |
michael@0 | 996 | { |
michael@0 | 997 | unsigned len = strm->avail_in; |
michael@0 | 998 | |
michael@0 | 999 | if (len > size) len = size; |
michael@0 | 1000 | if (len == 0) return 0; |
michael@0 | 1001 | |
michael@0 | 1002 | strm->avail_in -= len; |
michael@0 | 1003 | |
michael@0 | 1004 | if (strm->state->wrap == 1) { |
michael@0 | 1005 | strm->adler = adler32(strm->adler, strm->next_in, len); |
michael@0 | 1006 | } |
michael@0 | 1007 | #ifdef GZIP |
michael@0 | 1008 | else if (strm->state->wrap == 2) { |
michael@0 | 1009 | strm->adler = crc32(strm->adler, strm->next_in, len); |
michael@0 | 1010 | } |
michael@0 | 1011 | #endif |
michael@0 | 1012 | zmemcpy(buf, strm->next_in, len); |
michael@0 | 1013 | strm->next_in += len; |
michael@0 | 1014 | strm->total_in += len; |
michael@0 | 1015 | |
michael@0 | 1016 | return (int)len; |
michael@0 | 1017 | } |
michael@0 | 1018 | |
michael@0 | 1019 | /* =========================================================================== |
michael@0 | 1020 | * Initialize the "longest match" routines for a new zlib stream |
michael@0 | 1021 | */ |
michael@0 | 1022 | local void lm_init (s) |
michael@0 | 1023 | deflate_state *s; |
michael@0 | 1024 | { |
michael@0 | 1025 | s->window_size = (ulg)2L*s->w_size; |
michael@0 | 1026 | |
michael@0 | 1027 | CLEAR_HASH(s); |
michael@0 | 1028 | |
michael@0 | 1029 | /* Set the default configuration parameters: |
michael@0 | 1030 | */ |
michael@0 | 1031 | s->max_lazy_match = configuration_table[s->level].max_lazy; |
michael@0 | 1032 | s->good_match = configuration_table[s->level].good_length; |
michael@0 | 1033 | s->nice_match = configuration_table[s->level].nice_length; |
michael@0 | 1034 | s->max_chain_length = configuration_table[s->level].max_chain; |
michael@0 | 1035 | |
michael@0 | 1036 | s->strstart = 0; |
michael@0 | 1037 | s->block_start = 0L; |
michael@0 | 1038 | s->lookahead = 0; |
michael@0 | 1039 | s->match_length = s->prev_length = MIN_MATCH-1; |
michael@0 | 1040 | s->match_available = 0; |
michael@0 | 1041 | s->ins_h = 0; |
michael@0 | 1042 | #ifndef FASTEST |
michael@0 | 1043 | #ifdef ASMV |
michael@0 | 1044 | match_init(); /* initialize the asm code */ |
michael@0 | 1045 | #endif |
michael@0 | 1046 | #endif |
michael@0 | 1047 | } |
michael@0 | 1048 | |
michael@0 | 1049 | #ifndef FASTEST |
michael@0 | 1050 | /* =========================================================================== |
michael@0 | 1051 | * Set match_start to the longest match starting at the given string and |
michael@0 | 1052 | * return its length. Matches shorter or equal to prev_length are discarded, |
michael@0 | 1053 | * in which case the result is equal to prev_length and match_start is |
michael@0 | 1054 | * garbage. |
michael@0 | 1055 | * IN assertions: cur_match is the head of the hash chain for the current |
michael@0 | 1056 | * string (strstart) and its distance is <= MAX_DIST, and prev_length >= 1 |
michael@0 | 1057 | * OUT assertion: the match length is not greater than s->lookahead. |
michael@0 | 1058 | */ |
michael@0 | 1059 | #ifndef ASMV |
michael@0 | 1060 | /* For 80x86 and 680x0, an optimized version will be provided in match.asm or |
michael@0 | 1061 | * match.S. The code will be functionally equivalent. |
michael@0 | 1062 | */ |
michael@0 | 1063 | local uInt longest_match(s, cur_match) |
michael@0 | 1064 | deflate_state *s; |
michael@0 | 1065 | IPos cur_match; /* current match */ |
michael@0 | 1066 | { |
michael@0 | 1067 | unsigned chain_length = s->max_chain_length;/* max hash chain length */ |
michael@0 | 1068 | register Bytef *scan = s->window + s->strstart; /* current string */ |
michael@0 | 1069 | register Bytef *match; /* matched string */ |
michael@0 | 1070 | register int len; /* length of current match */ |
michael@0 | 1071 | int best_len = s->prev_length; /* best match length so far */ |
michael@0 | 1072 | int nice_match = s->nice_match; /* stop if match long enough */ |
michael@0 | 1073 | IPos limit = s->strstart > (IPos)MAX_DIST(s) ? |
michael@0 | 1074 | s->strstart - (IPos)MAX_DIST(s) : NIL; |
michael@0 | 1075 | /* Stop when cur_match becomes <= limit. To simplify the code, |
michael@0 | 1076 | * we prevent matches with the string of window index 0. |
michael@0 | 1077 | */ |
michael@0 | 1078 | Posf *prev = s->prev; |
michael@0 | 1079 | uInt wmask = s->w_mask; |
michael@0 | 1080 | |
michael@0 | 1081 | #ifdef UNALIGNED_OK |
michael@0 | 1082 | /* Compare two bytes at a time. Note: this is not always beneficial. |
michael@0 | 1083 | * Try with and without -DUNALIGNED_OK to check. |
michael@0 | 1084 | */ |
michael@0 | 1085 | register Bytef *strend = s->window + s->strstart + MAX_MATCH - 1; |
michael@0 | 1086 | register ush scan_start = *(ushf*)scan; |
michael@0 | 1087 | register ush scan_end = *(ushf*)(scan+best_len-1); |
michael@0 | 1088 | #else |
michael@0 | 1089 | register Bytef *strend = s->window + s->strstart + MAX_MATCH; |
michael@0 | 1090 | register Byte scan_end1 = scan[best_len-1]; |
michael@0 | 1091 | register Byte scan_end = scan[best_len]; |
michael@0 | 1092 | #endif |
michael@0 | 1093 | |
michael@0 | 1094 | /* The code is optimized for HASH_BITS >= 8 and MAX_MATCH-2 multiple of 16. |
michael@0 | 1095 | * It is easy to get rid of this optimization if necessary. |
michael@0 | 1096 | */ |
michael@0 | 1097 | Assert(s->hash_bits >= 8 && MAX_MATCH == 258, "Code too clever"); |
michael@0 | 1098 | |
michael@0 | 1099 | /* Do not waste too much time if we already have a good match: */ |
michael@0 | 1100 | if (s->prev_length >= s->good_match) { |
michael@0 | 1101 | chain_length >>= 2; |
michael@0 | 1102 | } |
michael@0 | 1103 | /* Do not look for matches beyond the end of the input. This is necessary |
michael@0 | 1104 | * to make deflate deterministic. |
michael@0 | 1105 | */ |
michael@0 | 1106 | if ((uInt)nice_match > s->lookahead) nice_match = s->lookahead; |
michael@0 | 1107 | |
michael@0 | 1108 | Assert((ulg)s->strstart <= s->window_size-MIN_LOOKAHEAD, "need lookahead"); |
michael@0 | 1109 | |
michael@0 | 1110 | do { |
michael@0 | 1111 | Assert(cur_match < s->strstart, "no future"); |
michael@0 | 1112 | match = s->window + cur_match; |
michael@0 | 1113 | |
michael@0 | 1114 | /* Skip to next match if the match length cannot increase |
michael@0 | 1115 | * or if the match length is less than 2. Note that the checks below |
michael@0 | 1116 | * for insufficient lookahead only occur occasionally for performance |
michael@0 | 1117 | * reasons. Therefore uninitialized memory will be accessed, and |
michael@0 | 1118 | * conditional jumps will be made that depend on those values. |
michael@0 | 1119 | * However the length of the match is limited to the lookahead, so |
michael@0 | 1120 | * the output of deflate is not affected by the uninitialized values. |
michael@0 | 1121 | */ |
michael@0 | 1122 | #if (defined(UNALIGNED_OK) && MAX_MATCH == 258) |
michael@0 | 1123 | /* This code assumes sizeof(unsigned short) == 2. Do not use |
michael@0 | 1124 | * UNALIGNED_OK if your compiler uses a different size. |
michael@0 | 1125 | */ |
michael@0 | 1126 | if (*(ushf*)(match+best_len-1) != scan_end || |
michael@0 | 1127 | *(ushf*)match != scan_start) continue; |
michael@0 | 1128 | |
michael@0 | 1129 | /* It is not necessary to compare scan[2] and match[2] since they are |
michael@0 | 1130 | * always equal when the other bytes match, given that the hash keys |
michael@0 | 1131 | * are equal and that HASH_BITS >= 8. Compare 2 bytes at a time at |
michael@0 | 1132 | * strstart+3, +5, ... up to strstart+257. We check for insufficient |
michael@0 | 1133 | * lookahead only every 4th comparison; the 128th check will be made |
michael@0 | 1134 | * at strstart+257. If MAX_MATCH-2 is not a multiple of 8, it is |
michael@0 | 1135 | * necessary to put more guard bytes at the end of the window, or |
michael@0 | 1136 | * to check more often for insufficient lookahead. |
michael@0 | 1137 | */ |
michael@0 | 1138 | Assert(scan[2] == match[2], "scan[2]?"); |
michael@0 | 1139 | scan++, match++; |
michael@0 | 1140 | do { |
michael@0 | 1141 | } while (*(ushf*)(scan+=2) == *(ushf*)(match+=2) && |
michael@0 | 1142 | *(ushf*)(scan+=2) == *(ushf*)(match+=2) && |
michael@0 | 1143 | *(ushf*)(scan+=2) == *(ushf*)(match+=2) && |
michael@0 | 1144 | *(ushf*)(scan+=2) == *(ushf*)(match+=2) && |
michael@0 | 1145 | scan < strend); |
michael@0 | 1146 | /* The funny "do {}" generates better code on most compilers */ |
michael@0 | 1147 | |
michael@0 | 1148 | /* Here, scan <= window+strstart+257 */ |
michael@0 | 1149 | Assert(scan <= s->window+(unsigned)(s->window_size-1), "wild scan"); |
michael@0 | 1150 | if (*scan == *match) scan++; |
michael@0 | 1151 | |
michael@0 | 1152 | len = (MAX_MATCH - 1) - (int)(strend-scan); |
michael@0 | 1153 | scan = strend - (MAX_MATCH-1); |
michael@0 | 1154 | |
michael@0 | 1155 | #else /* UNALIGNED_OK */ |
michael@0 | 1156 | |
michael@0 | 1157 | if (match[best_len] != scan_end || |
michael@0 | 1158 | match[best_len-1] != scan_end1 || |
michael@0 | 1159 | *match != *scan || |
michael@0 | 1160 | *++match != scan[1]) continue; |
michael@0 | 1161 | |
michael@0 | 1162 | /* The check at best_len-1 can be removed because it will be made |
michael@0 | 1163 | * again later. (This heuristic is not always a win.) |
michael@0 | 1164 | * It is not necessary to compare scan[2] and match[2] since they |
michael@0 | 1165 | * are always equal when the other bytes match, given that |
michael@0 | 1166 | * the hash keys are equal and that HASH_BITS >= 8. |
michael@0 | 1167 | */ |
michael@0 | 1168 | scan += 2, match++; |
michael@0 | 1169 | Assert(*scan == *match, "match[2]?"); |
michael@0 | 1170 | |
michael@0 | 1171 | /* We check for insufficient lookahead only every 8th comparison; |
michael@0 | 1172 | * the 256th check will be made at strstart+258. |
michael@0 | 1173 | */ |
michael@0 | 1174 | do { |
michael@0 | 1175 | } while (*++scan == *++match && *++scan == *++match && |
michael@0 | 1176 | *++scan == *++match && *++scan == *++match && |
michael@0 | 1177 | *++scan == *++match && *++scan == *++match && |
michael@0 | 1178 | *++scan == *++match && *++scan == *++match && |
michael@0 | 1179 | scan < strend); |
michael@0 | 1180 | |
michael@0 | 1181 | Assert(scan <= s->window+(unsigned)(s->window_size-1), "wild scan"); |
michael@0 | 1182 | |
michael@0 | 1183 | len = MAX_MATCH - (int)(strend - scan); |
michael@0 | 1184 | scan = strend - MAX_MATCH; |
michael@0 | 1185 | |
michael@0 | 1186 | #endif /* UNALIGNED_OK */ |
michael@0 | 1187 | |
michael@0 | 1188 | if (len > best_len) { |
michael@0 | 1189 | s->match_start = cur_match; |
michael@0 | 1190 | best_len = len; |
michael@0 | 1191 | if (len >= nice_match) break; |
michael@0 | 1192 | #ifdef UNALIGNED_OK |
michael@0 | 1193 | scan_end = *(ushf*)(scan+best_len-1); |
michael@0 | 1194 | #else |
michael@0 | 1195 | scan_end1 = scan[best_len-1]; |
michael@0 | 1196 | scan_end = scan[best_len]; |
michael@0 | 1197 | #endif |
michael@0 | 1198 | } |
michael@0 | 1199 | } while ((cur_match = prev[cur_match & wmask]) > limit |
michael@0 | 1200 | && --chain_length != 0); |
michael@0 | 1201 | |
michael@0 | 1202 | if ((uInt)best_len <= s->lookahead) return (uInt)best_len; |
michael@0 | 1203 | return s->lookahead; |
michael@0 | 1204 | } |
michael@0 | 1205 | #endif /* ASMV */ |
michael@0 | 1206 | |
michael@0 | 1207 | #else /* FASTEST */ |
michael@0 | 1208 | |
michael@0 | 1209 | /* --------------------------------------------------------------------------- |
michael@0 | 1210 | * Optimized version for FASTEST only |
michael@0 | 1211 | */ |
michael@0 | 1212 | local uInt longest_match(s, cur_match) |
michael@0 | 1213 | deflate_state *s; |
michael@0 | 1214 | IPos cur_match; /* current match */ |
michael@0 | 1215 | { |
michael@0 | 1216 | register Bytef *scan = s->window + s->strstart; /* current string */ |
michael@0 | 1217 | register Bytef *match; /* matched string */ |
michael@0 | 1218 | register int len; /* length of current match */ |
michael@0 | 1219 | register Bytef *strend = s->window + s->strstart + MAX_MATCH; |
michael@0 | 1220 | |
michael@0 | 1221 | /* The code is optimized for HASH_BITS >= 8 and MAX_MATCH-2 multiple of 16. |
michael@0 | 1222 | * It is easy to get rid of this optimization if necessary. |
michael@0 | 1223 | */ |
michael@0 | 1224 | Assert(s->hash_bits >= 8 && MAX_MATCH == 258, "Code too clever"); |
michael@0 | 1225 | |
michael@0 | 1226 | Assert((ulg)s->strstart <= s->window_size-MIN_LOOKAHEAD, "need lookahead"); |
michael@0 | 1227 | |
michael@0 | 1228 | Assert(cur_match < s->strstart, "no future"); |
michael@0 | 1229 | |
michael@0 | 1230 | match = s->window + cur_match; |
michael@0 | 1231 | |
michael@0 | 1232 | /* Return failure if the match length is less than 2: |
michael@0 | 1233 | */ |
michael@0 | 1234 | if (match[0] != scan[0] || match[1] != scan[1]) return MIN_MATCH-1; |
michael@0 | 1235 | |
michael@0 | 1236 | /* The check at best_len-1 can be removed because it will be made |
michael@0 | 1237 | * again later. (This heuristic is not always a win.) |
michael@0 | 1238 | * It is not necessary to compare scan[2] and match[2] since they |
michael@0 | 1239 | * are always equal when the other bytes match, given that |
michael@0 | 1240 | * the hash keys are equal and that HASH_BITS >= 8. |
michael@0 | 1241 | */ |
michael@0 | 1242 | scan += 2, match += 2; |
michael@0 | 1243 | Assert(*scan == *match, "match[2]?"); |
michael@0 | 1244 | |
michael@0 | 1245 | /* We check for insufficient lookahead only every 8th comparison; |
michael@0 | 1246 | * the 256th check will be made at strstart+258. |
michael@0 | 1247 | */ |
michael@0 | 1248 | do { |
michael@0 | 1249 | } while (*++scan == *++match && *++scan == *++match && |
michael@0 | 1250 | *++scan == *++match && *++scan == *++match && |
michael@0 | 1251 | *++scan == *++match && *++scan == *++match && |
michael@0 | 1252 | *++scan == *++match && *++scan == *++match && |
michael@0 | 1253 | scan < strend); |
michael@0 | 1254 | |
michael@0 | 1255 | Assert(scan <= s->window+(unsigned)(s->window_size-1), "wild scan"); |
michael@0 | 1256 | |
michael@0 | 1257 | len = MAX_MATCH - (int)(strend - scan); |
michael@0 | 1258 | |
michael@0 | 1259 | if (len < MIN_MATCH) return MIN_MATCH - 1; |
michael@0 | 1260 | |
michael@0 | 1261 | s->match_start = cur_match; |
michael@0 | 1262 | return (uInt)len <= s->lookahead ? (uInt)len : s->lookahead; |
michael@0 | 1263 | } |
michael@0 | 1264 | |
michael@0 | 1265 | #endif /* FASTEST */ |
michael@0 | 1266 | |
michael@0 | 1267 | #ifdef DEBUG |
michael@0 | 1268 | /* =========================================================================== |
michael@0 | 1269 | * Check that the match at match_start is indeed a match. |
michael@0 | 1270 | */ |
michael@0 | 1271 | local void check_match(s, start, match, length) |
michael@0 | 1272 | deflate_state *s; |
michael@0 | 1273 | IPos start, match; |
michael@0 | 1274 | int length; |
michael@0 | 1275 | { |
michael@0 | 1276 | /* check that the match is indeed a match */ |
michael@0 | 1277 | if (zmemcmp(s->window + match, |
michael@0 | 1278 | s->window + start, length) != EQUAL) { |
michael@0 | 1279 | fprintf(stderr, " start %u, match %u, length %d\n", |
michael@0 | 1280 | start, match, length); |
michael@0 | 1281 | do { |
michael@0 | 1282 | fprintf(stderr, "%c%c", s->window[match++], s->window[start++]); |
michael@0 | 1283 | } while (--length != 0); |
michael@0 | 1284 | z_error("invalid match"); |
michael@0 | 1285 | } |
michael@0 | 1286 | if (z_verbose > 1) { |
michael@0 | 1287 | fprintf(stderr,"\\[%d,%d]", start-match, length); |
michael@0 | 1288 | do { putc(s->window[start++], stderr); } while (--length != 0); |
michael@0 | 1289 | } |
michael@0 | 1290 | } |
michael@0 | 1291 | #else |
michael@0 | 1292 | # define check_match(s, start, match, length) |
michael@0 | 1293 | #endif /* DEBUG */ |
michael@0 | 1294 | |
michael@0 | 1295 | /* =========================================================================== |
michael@0 | 1296 | * Fill the window when the lookahead becomes insufficient. |
michael@0 | 1297 | * Updates strstart and lookahead. |
michael@0 | 1298 | * |
michael@0 | 1299 | * IN assertion: lookahead < MIN_LOOKAHEAD |
michael@0 | 1300 | * OUT assertions: strstart <= window_size-MIN_LOOKAHEAD |
michael@0 | 1301 | * At least one byte has been read, or avail_in == 0; reads are |
michael@0 | 1302 | * performed for at least two bytes (required for the zip translate_eol |
michael@0 | 1303 | * option -- not supported here). |
michael@0 | 1304 | */ |
michael@0 | 1305 | local void fill_window(s) |
michael@0 | 1306 | deflate_state *s; |
michael@0 | 1307 | { |
michael@0 | 1308 | register unsigned n, m; |
michael@0 | 1309 | register Posf *p; |
michael@0 | 1310 | unsigned more; /* Amount of free space at the end of the window. */ |
michael@0 | 1311 | uInt wsize = s->w_size; |
michael@0 | 1312 | |
michael@0 | 1313 | do { |
michael@0 | 1314 | more = (unsigned)(s->window_size -(ulg)s->lookahead -(ulg)s->strstart); |
michael@0 | 1315 | |
michael@0 | 1316 | /* Deal with !@#$% 64K limit: */ |
michael@0 | 1317 | if (sizeof(int) <= 2) { |
michael@0 | 1318 | if (more == 0 && s->strstart == 0 && s->lookahead == 0) { |
michael@0 | 1319 | more = wsize; |
michael@0 | 1320 | |
michael@0 | 1321 | } else if (more == (unsigned)(-1)) { |
michael@0 | 1322 | /* Very unlikely, but possible on 16 bit machine if |
michael@0 | 1323 | * strstart == 0 && lookahead == 1 (input done a byte at time) |
michael@0 | 1324 | */ |
michael@0 | 1325 | more--; |
michael@0 | 1326 | } |
michael@0 | 1327 | } |
michael@0 | 1328 | |
michael@0 | 1329 | /* If the window is almost full and there is insufficient lookahead, |
michael@0 | 1330 | * move the upper half to the lower one to make room in the upper half. |
michael@0 | 1331 | */ |
michael@0 | 1332 | if (s->strstart >= wsize+MAX_DIST(s)) { |
michael@0 | 1333 | |
michael@0 | 1334 | zmemcpy(s->window, s->window+wsize, (unsigned)wsize); |
michael@0 | 1335 | s->match_start -= wsize; |
michael@0 | 1336 | s->strstart -= wsize; /* we now have strstart >= MAX_DIST */ |
michael@0 | 1337 | s->block_start -= (long) wsize; |
michael@0 | 1338 | |
michael@0 | 1339 | /* Slide the hash table (could be avoided with 32 bit values |
michael@0 | 1340 | at the expense of memory usage). We slide even when level == 0 |
michael@0 | 1341 | to keep the hash table consistent if we switch back to level > 0 |
michael@0 | 1342 | later. (Using level 0 permanently is not an optimal usage of |
michael@0 | 1343 | zlib, so we don't care about this pathological case.) |
michael@0 | 1344 | */ |
michael@0 | 1345 | n = s->hash_size; |
michael@0 | 1346 | p = &s->head[n]; |
michael@0 | 1347 | do { |
michael@0 | 1348 | m = *--p; |
michael@0 | 1349 | *p = (Pos)(m >= wsize ? m-wsize : NIL); |
michael@0 | 1350 | } while (--n); |
michael@0 | 1351 | |
michael@0 | 1352 | n = wsize; |
michael@0 | 1353 | #ifndef FASTEST |
michael@0 | 1354 | p = &s->prev[n]; |
michael@0 | 1355 | do { |
michael@0 | 1356 | m = *--p; |
michael@0 | 1357 | *p = (Pos)(m >= wsize ? m-wsize : NIL); |
michael@0 | 1358 | /* If n is not on any hash chain, prev[n] is garbage but |
michael@0 | 1359 | * its value will never be used. |
michael@0 | 1360 | */ |
michael@0 | 1361 | } while (--n); |
michael@0 | 1362 | #endif |
michael@0 | 1363 | more += wsize; |
michael@0 | 1364 | } |
michael@0 | 1365 | if (s->strm->avail_in == 0) return; |
michael@0 | 1366 | |
michael@0 | 1367 | /* If there was no sliding: |
michael@0 | 1368 | * strstart <= WSIZE+MAX_DIST-1 && lookahead <= MIN_LOOKAHEAD - 1 && |
michael@0 | 1369 | * more == window_size - lookahead - strstart |
michael@0 | 1370 | * => more >= window_size - (MIN_LOOKAHEAD-1 + WSIZE + MAX_DIST-1) |
michael@0 | 1371 | * => more >= window_size - 2*WSIZE + 2 |
michael@0 | 1372 | * In the BIG_MEM or MMAP case (not yet supported), |
michael@0 | 1373 | * window_size == input_size + MIN_LOOKAHEAD && |
michael@0 | 1374 | * strstart + s->lookahead <= input_size => more >= MIN_LOOKAHEAD. |
michael@0 | 1375 | * Otherwise, window_size == 2*WSIZE so more >= 2. |
michael@0 | 1376 | * If there was sliding, more >= WSIZE. So in all cases, more >= 2. |
michael@0 | 1377 | */ |
michael@0 | 1378 | Assert(more >= 2, "more < 2"); |
michael@0 | 1379 | |
michael@0 | 1380 | n = read_buf(s->strm, s->window + s->strstart + s->lookahead, more); |
michael@0 | 1381 | s->lookahead += n; |
michael@0 | 1382 | |
michael@0 | 1383 | /* Initialize the hash value now that we have some input: */ |
michael@0 | 1384 | if (s->lookahead >= MIN_MATCH) { |
michael@0 | 1385 | s->ins_h = s->window[s->strstart]; |
michael@0 | 1386 | UPDATE_HASH(s, s->ins_h, s->window[s->strstart+1]); |
michael@0 | 1387 | #if MIN_MATCH != 3 |
michael@0 | 1388 | Call UPDATE_HASH() MIN_MATCH-3 more times |
michael@0 | 1389 | #endif |
michael@0 | 1390 | } |
michael@0 | 1391 | /* If the whole input has less than MIN_MATCH bytes, ins_h is garbage, |
michael@0 | 1392 | * but this is not important since only literal bytes will be emitted. |
michael@0 | 1393 | */ |
michael@0 | 1394 | |
michael@0 | 1395 | } while (s->lookahead < MIN_LOOKAHEAD && s->strm->avail_in != 0); |
michael@0 | 1396 | |
michael@0 | 1397 | /* If the WIN_INIT bytes after the end of the current data have never been |
michael@0 | 1398 | * written, then zero those bytes in order to avoid memory check reports of |
michael@0 | 1399 | * the use of uninitialized (or uninitialised as Julian writes) bytes by |
michael@0 | 1400 | * the longest match routines. Update the high water mark for the next |
michael@0 | 1401 | * time through here. WIN_INIT is set to MAX_MATCH since the longest match |
michael@0 | 1402 | * routines allow scanning to strstart + MAX_MATCH, ignoring lookahead. |
michael@0 | 1403 | */ |
michael@0 | 1404 | if (s->high_water < s->window_size) { |
michael@0 | 1405 | ulg curr = s->strstart + (ulg)(s->lookahead); |
michael@0 | 1406 | ulg init; |
michael@0 | 1407 | |
michael@0 | 1408 | if (s->high_water < curr) { |
michael@0 | 1409 | /* Previous high water mark below current data -- zero WIN_INIT |
michael@0 | 1410 | * bytes or up to end of window, whichever is less. |
michael@0 | 1411 | */ |
michael@0 | 1412 | init = s->window_size - curr; |
michael@0 | 1413 | if (init > WIN_INIT) |
michael@0 | 1414 | init = WIN_INIT; |
michael@0 | 1415 | zmemzero(s->window + curr, (unsigned)init); |
michael@0 | 1416 | s->high_water = curr + init; |
michael@0 | 1417 | } |
michael@0 | 1418 | else if (s->high_water < (ulg)curr + WIN_INIT) { |
michael@0 | 1419 | /* High water mark at or above current data, but below current data |
michael@0 | 1420 | * plus WIN_INIT -- zero out to current data plus WIN_INIT, or up |
michael@0 | 1421 | * to end of window, whichever is less. |
michael@0 | 1422 | */ |
michael@0 | 1423 | init = (ulg)curr + WIN_INIT - s->high_water; |
michael@0 | 1424 | if (init > s->window_size - s->high_water) |
michael@0 | 1425 | init = s->window_size - s->high_water; |
michael@0 | 1426 | zmemzero(s->window + s->high_water, (unsigned)init); |
michael@0 | 1427 | s->high_water += init; |
michael@0 | 1428 | } |
michael@0 | 1429 | } |
michael@0 | 1430 | } |
michael@0 | 1431 | |
michael@0 | 1432 | /* =========================================================================== |
michael@0 | 1433 | * Flush the current block, with given end-of-file flag. |
michael@0 | 1434 | * IN assertion: strstart is set to the end of the current match. |
michael@0 | 1435 | */ |
michael@0 | 1436 | #define FLUSH_BLOCK_ONLY(s, last) { \ |
michael@0 | 1437 | _tr_flush_block(s, (s->block_start >= 0L ? \ |
michael@0 | 1438 | (charf *)&s->window[(unsigned)s->block_start] : \ |
michael@0 | 1439 | (charf *)Z_NULL), \ |
michael@0 | 1440 | (ulg)((long)s->strstart - s->block_start), \ |
michael@0 | 1441 | (last)); \ |
michael@0 | 1442 | s->block_start = s->strstart; \ |
michael@0 | 1443 | flush_pending(s->strm); \ |
michael@0 | 1444 | Tracev((stderr,"[FLUSH]")); \ |
michael@0 | 1445 | } |
michael@0 | 1446 | |
michael@0 | 1447 | /* Same but force premature exit if necessary. */ |
michael@0 | 1448 | #define FLUSH_BLOCK(s, last) { \ |
michael@0 | 1449 | FLUSH_BLOCK_ONLY(s, last); \ |
michael@0 | 1450 | if (s->strm->avail_out == 0) return (last) ? finish_started : need_more; \ |
michael@0 | 1451 | } |
michael@0 | 1452 | |
michael@0 | 1453 | /* =========================================================================== |
michael@0 | 1454 | * Copy without compression as much as possible from the input stream, return |
michael@0 | 1455 | * the current block state. |
michael@0 | 1456 | * This function does not insert new strings in the dictionary since |
michael@0 | 1457 | * uncompressible data is probably not useful. This function is used |
michael@0 | 1458 | * only for the level=0 compression option. |
michael@0 | 1459 | * NOTE: this function should be optimized to avoid extra copying from |
michael@0 | 1460 | * window to pending_buf. |
michael@0 | 1461 | */ |
michael@0 | 1462 | local block_state deflate_stored(s, flush) |
michael@0 | 1463 | deflate_state *s; |
michael@0 | 1464 | int flush; |
michael@0 | 1465 | { |
michael@0 | 1466 | /* Stored blocks are limited to 0xffff bytes, pending_buf is limited |
michael@0 | 1467 | * to pending_buf_size, and each stored block has a 5 byte header: |
michael@0 | 1468 | */ |
michael@0 | 1469 | ulg max_block_size = 0xffff; |
michael@0 | 1470 | ulg max_start; |
michael@0 | 1471 | |
michael@0 | 1472 | if (max_block_size > s->pending_buf_size - 5) { |
michael@0 | 1473 | max_block_size = s->pending_buf_size - 5; |
michael@0 | 1474 | } |
michael@0 | 1475 | |
michael@0 | 1476 | /* Copy as much as possible from input to output: */ |
michael@0 | 1477 | for (;;) { |
michael@0 | 1478 | /* Fill the window as much as possible: */ |
michael@0 | 1479 | if (s->lookahead <= 1) { |
michael@0 | 1480 | |
michael@0 | 1481 | Assert(s->strstart < s->w_size+MAX_DIST(s) || |
michael@0 | 1482 | s->block_start >= (long)s->w_size, "slide too late"); |
michael@0 | 1483 | |
michael@0 | 1484 | fill_window(s); |
michael@0 | 1485 | if (s->lookahead == 0 && flush == Z_NO_FLUSH) return need_more; |
michael@0 | 1486 | |
michael@0 | 1487 | if (s->lookahead == 0) break; /* flush the current block */ |
michael@0 | 1488 | } |
michael@0 | 1489 | Assert(s->block_start >= 0L, "block gone"); |
michael@0 | 1490 | |
michael@0 | 1491 | s->strstart += s->lookahead; |
michael@0 | 1492 | s->lookahead = 0; |
michael@0 | 1493 | |
michael@0 | 1494 | /* Emit a stored block if pending_buf will be full: */ |
michael@0 | 1495 | max_start = s->block_start + max_block_size; |
michael@0 | 1496 | if (s->strstart == 0 || (ulg)s->strstart >= max_start) { |
michael@0 | 1497 | /* strstart == 0 is possible when wraparound on 16-bit machine */ |
michael@0 | 1498 | s->lookahead = (uInt)(s->strstart - max_start); |
michael@0 | 1499 | s->strstart = (uInt)max_start; |
michael@0 | 1500 | FLUSH_BLOCK(s, 0); |
michael@0 | 1501 | } |
michael@0 | 1502 | /* Flush if we may have to slide, otherwise block_start may become |
michael@0 | 1503 | * negative and the data will be gone: |
michael@0 | 1504 | */ |
michael@0 | 1505 | if (s->strstart - (uInt)s->block_start >= MAX_DIST(s)) { |
michael@0 | 1506 | FLUSH_BLOCK(s, 0); |
michael@0 | 1507 | } |
michael@0 | 1508 | } |
michael@0 | 1509 | FLUSH_BLOCK(s, flush == Z_FINISH); |
michael@0 | 1510 | return flush == Z_FINISH ? finish_done : block_done; |
michael@0 | 1511 | } |
michael@0 | 1512 | |
michael@0 | 1513 | /* =========================================================================== |
michael@0 | 1514 | * Compress as much as possible from the input stream, return the current |
michael@0 | 1515 | * block state. |
michael@0 | 1516 | * This function does not perform lazy evaluation of matches and inserts |
michael@0 | 1517 | * new strings in the dictionary only for unmatched strings or for short |
michael@0 | 1518 | * matches. It is used only for the fast compression options. |
michael@0 | 1519 | */ |
michael@0 | 1520 | local block_state deflate_fast(s, flush) |
michael@0 | 1521 | deflate_state *s; |
michael@0 | 1522 | int flush; |
michael@0 | 1523 | { |
michael@0 | 1524 | IPos hash_head; /* head of the hash chain */ |
michael@0 | 1525 | int bflush; /* set if current block must be flushed */ |
michael@0 | 1526 | |
michael@0 | 1527 | for (;;) { |
michael@0 | 1528 | /* Make sure that we always have enough lookahead, except |
michael@0 | 1529 | * at the end of the input file. We need MAX_MATCH bytes |
michael@0 | 1530 | * for the next match, plus MIN_MATCH bytes to insert the |
michael@0 | 1531 | * string following the next match. |
michael@0 | 1532 | */ |
michael@0 | 1533 | if (s->lookahead < MIN_LOOKAHEAD) { |
michael@0 | 1534 | fill_window(s); |
michael@0 | 1535 | if (s->lookahead < MIN_LOOKAHEAD && flush == Z_NO_FLUSH) { |
michael@0 | 1536 | return need_more; |
michael@0 | 1537 | } |
michael@0 | 1538 | if (s->lookahead == 0) break; /* flush the current block */ |
michael@0 | 1539 | } |
michael@0 | 1540 | |
michael@0 | 1541 | /* Insert the string window[strstart .. strstart+2] in the |
michael@0 | 1542 | * dictionary, and set hash_head to the head of the hash chain: |
michael@0 | 1543 | */ |
michael@0 | 1544 | hash_head = NIL; |
michael@0 | 1545 | if (s->lookahead >= MIN_MATCH) { |
michael@0 | 1546 | INSERT_STRING(s, s->strstart, hash_head); |
michael@0 | 1547 | } |
michael@0 | 1548 | |
michael@0 | 1549 | /* Find the longest match, discarding those <= prev_length. |
michael@0 | 1550 | * At this point we have always match_length < MIN_MATCH |
michael@0 | 1551 | */ |
michael@0 | 1552 | if (hash_head != NIL && s->strstart - hash_head <= MAX_DIST(s)) { |
michael@0 | 1553 | /* To simplify the code, we prevent matches with the string |
michael@0 | 1554 | * of window index 0 (in particular we have to avoid a match |
michael@0 | 1555 | * of the string with itself at the start of the input file). |
michael@0 | 1556 | */ |
michael@0 | 1557 | s->match_length = longest_match (s, hash_head); |
michael@0 | 1558 | /* longest_match() sets match_start */ |
michael@0 | 1559 | } |
michael@0 | 1560 | if (s->match_length >= MIN_MATCH) { |
michael@0 | 1561 | check_match(s, s->strstart, s->match_start, s->match_length); |
michael@0 | 1562 | |
michael@0 | 1563 | _tr_tally_dist(s, s->strstart - s->match_start, |
michael@0 | 1564 | s->match_length - MIN_MATCH, bflush); |
michael@0 | 1565 | |
michael@0 | 1566 | s->lookahead -= s->match_length; |
michael@0 | 1567 | |
michael@0 | 1568 | /* Insert new strings in the hash table only if the match length |
michael@0 | 1569 | * is not too large. This saves time but degrades compression. |
michael@0 | 1570 | */ |
michael@0 | 1571 | #ifndef FASTEST |
michael@0 | 1572 | if (s->match_length <= s->max_insert_length && |
michael@0 | 1573 | s->lookahead >= MIN_MATCH) { |
michael@0 | 1574 | s->match_length--; /* string at strstart already in table */ |
michael@0 | 1575 | do { |
michael@0 | 1576 | s->strstart++; |
michael@0 | 1577 | INSERT_STRING(s, s->strstart, hash_head); |
michael@0 | 1578 | /* strstart never exceeds WSIZE-MAX_MATCH, so there are |
michael@0 | 1579 | * always MIN_MATCH bytes ahead. |
michael@0 | 1580 | */ |
michael@0 | 1581 | } while (--s->match_length != 0); |
michael@0 | 1582 | s->strstart++; |
michael@0 | 1583 | } else |
michael@0 | 1584 | #endif |
michael@0 | 1585 | { |
michael@0 | 1586 | s->strstart += s->match_length; |
michael@0 | 1587 | s->match_length = 0; |
michael@0 | 1588 | s->ins_h = s->window[s->strstart]; |
michael@0 | 1589 | UPDATE_HASH(s, s->ins_h, s->window[s->strstart+1]); |
michael@0 | 1590 | #if MIN_MATCH != 3 |
michael@0 | 1591 | Call UPDATE_HASH() MIN_MATCH-3 more times |
michael@0 | 1592 | #endif |
michael@0 | 1593 | /* If lookahead < MIN_MATCH, ins_h is garbage, but it does not |
michael@0 | 1594 | * matter since it will be recomputed at next deflate call. |
michael@0 | 1595 | */ |
michael@0 | 1596 | } |
michael@0 | 1597 | } else { |
michael@0 | 1598 | /* No match, output a literal byte */ |
michael@0 | 1599 | Tracevv((stderr,"%c", s->window[s->strstart])); |
michael@0 | 1600 | _tr_tally_lit (s, s->window[s->strstart], bflush); |
michael@0 | 1601 | s->lookahead--; |
michael@0 | 1602 | s->strstart++; |
michael@0 | 1603 | } |
michael@0 | 1604 | if (bflush) FLUSH_BLOCK(s, 0); |
michael@0 | 1605 | } |
michael@0 | 1606 | FLUSH_BLOCK(s, flush == Z_FINISH); |
michael@0 | 1607 | return flush == Z_FINISH ? finish_done : block_done; |
michael@0 | 1608 | } |
michael@0 | 1609 | |
michael@0 | 1610 | #ifndef FASTEST |
michael@0 | 1611 | /* =========================================================================== |
michael@0 | 1612 | * Same as above, but achieves better compression. We use a lazy |
michael@0 | 1613 | * evaluation for matches: a match is finally adopted only if there is |
michael@0 | 1614 | * no better match at the next window position. |
michael@0 | 1615 | */ |
michael@0 | 1616 | local block_state deflate_slow(s, flush) |
michael@0 | 1617 | deflate_state *s; |
michael@0 | 1618 | int flush; |
michael@0 | 1619 | { |
michael@0 | 1620 | IPos hash_head; /* head of hash chain */ |
michael@0 | 1621 | int bflush; /* set if current block must be flushed */ |
michael@0 | 1622 | |
michael@0 | 1623 | /* Process the input block. */ |
michael@0 | 1624 | for (;;) { |
michael@0 | 1625 | /* Make sure that we always have enough lookahead, except |
michael@0 | 1626 | * at the end of the input file. We need MAX_MATCH bytes |
michael@0 | 1627 | * for the next match, plus MIN_MATCH bytes to insert the |
michael@0 | 1628 | * string following the next match. |
michael@0 | 1629 | */ |
michael@0 | 1630 | if (s->lookahead < MIN_LOOKAHEAD) { |
michael@0 | 1631 | fill_window(s); |
michael@0 | 1632 | if (s->lookahead < MIN_LOOKAHEAD && flush == Z_NO_FLUSH) { |
michael@0 | 1633 | return need_more; |
michael@0 | 1634 | } |
michael@0 | 1635 | if (s->lookahead == 0) break; /* flush the current block */ |
michael@0 | 1636 | } |
michael@0 | 1637 | |
michael@0 | 1638 | /* Insert the string window[strstart .. strstart+2] in the |
michael@0 | 1639 | * dictionary, and set hash_head to the head of the hash chain: |
michael@0 | 1640 | */ |
michael@0 | 1641 | hash_head = NIL; |
michael@0 | 1642 | if (s->lookahead >= MIN_MATCH) { |
michael@0 | 1643 | INSERT_STRING(s, s->strstart, hash_head); |
michael@0 | 1644 | } |
michael@0 | 1645 | |
michael@0 | 1646 | /* Find the longest match, discarding those <= prev_length. |
michael@0 | 1647 | */ |
michael@0 | 1648 | s->prev_length = s->match_length, s->prev_match = s->match_start; |
michael@0 | 1649 | s->match_length = MIN_MATCH-1; |
michael@0 | 1650 | |
michael@0 | 1651 | if (hash_head != NIL && s->prev_length < s->max_lazy_match && |
michael@0 | 1652 | s->strstart - hash_head <= MAX_DIST(s)) { |
michael@0 | 1653 | /* To simplify the code, we prevent matches with the string |
michael@0 | 1654 | * of window index 0 (in particular we have to avoid a match |
michael@0 | 1655 | * of the string with itself at the start of the input file). |
michael@0 | 1656 | */ |
michael@0 | 1657 | s->match_length = longest_match (s, hash_head); |
michael@0 | 1658 | /* longest_match() sets match_start */ |
michael@0 | 1659 | |
michael@0 | 1660 | if (s->match_length <= 5 && (s->strategy == Z_FILTERED |
michael@0 | 1661 | #if TOO_FAR <= 32767 |
michael@0 | 1662 | || (s->match_length == MIN_MATCH && |
michael@0 | 1663 | s->strstart - s->match_start > TOO_FAR) |
michael@0 | 1664 | #endif |
michael@0 | 1665 | )) { |
michael@0 | 1666 | |
michael@0 | 1667 | /* If prev_match is also MIN_MATCH, match_start is garbage |
michael@0 | 1668 | * but we will ignore the current match anyway. |
michael@0 | 1669 | */ |
michael@0 | 1670 | s->match_length = MIN_MATCH-1; |
michael@0 | 1671 | } |
michael@0 | 1672 | } |
michael@0 | 1673 | /* If there was a match at the previous step and the current |
michael@0 | 1674 | * match is not better, output the previous match: |
michael@0 | 1675 | */ |
michael@0 | 1676 | if (s->prev_length >= MIN_MATCH && s->match_length <= s->prev_length) { |
michael@0 | 1677 | uInt max_insert = s->strstart + s->lookahead - MIN_MATCH; |
michael@0 | 1678 | /* Do not insert strings in hash table beyond this. */ |
michael@0 | 1679 | |
michael@0 | 1680 | check_match(s, s->strstart-1, s->prev_match, s->prev_length); |
michael@0 | 1681 | |
michael@0 | 1682 | _tr_tally_dist(s, s->strstart -1 - s->prev_match, |
michael@0 | 1683 | s->prev_length - MIN_MATCH, bflush); |
michael@0 | 1684 | |
michael@0 | 1685 | /* Insert in hash table all strings up to the end of the match. |
michael@0 | 1686 | * strstart-1 and strstart are already inserted. If there is not |
michael@0 | 1687 | * enough lookahead, the last two strings are not inserted in |
michael@0 | 1688 | * the hash table. |
michael@0 | 1689 | */ |
michael@0 | 1690 | s->lookahead -= s->prev_length-1; |
michael@0 | 1691 | s->prev_length -= 2; |
michael@0 | 1692 | do { |
michael@0 | 1693 | if (++s->strstart <= max_insert) { |
michael@0 | 1694 | INSERT_STRING(s, s->strstart, hash_head); |
michael@0 | 1695 | } |
michael@0 | 1696 | } while (--s->prev_length != 0); |
michael@0 | 1697 | s->match_available = 0; |
michael@0 | 1698 | s->match_length = MIN_MATCH-1; |
michael@0 | 1699 | s->strstart++; |
michael@0 | 1700 | |
michael@0 | 1701 | if (bflush) FLUSH_BLOCK(s, 0); |
michael@0 | 1702 | |
michael@0 | 1703 | } else if (s->match_available) { |
michael@0 | 1704 | /* If there was no match at the previous position, output a |
michael@0 | 1705 | * single literal. If there was a match but the current match |
michael@0 | 1706 | * is longer, truncate the previous match to a single literal. |
michael@0 | 1707 | */ |
michael@0 | 1708 | Tracevv((stderr,"%c", s->window[s->strstart-1])); |
michael@0 | 1709 | _tr_tally_lit(s, s->window[s->strstart-1], bflush); |
michael@0 | 1710 | if (bflush) { |
michael@0 | 1711 | FLUSH_BLOCK_ONLY(s, 0); |
michael@0 | 1712 | } |
michael@0 | 1713 | s->strstart++; |
michael@0 | 1714 | s->lookahead--; |
michael@0 | 1715 | if (s->strm->avail_out == 0) return need_more; |
michael@0 | 1716 | } else { |
michael@0 | 1717 | /* There is no previous match to compare with, wait for |
michael@0 | 1718 | * the next step to decide. |
michael@0 | 1719 | */ |
michael@0 | 1720 | s->match_available = 1; |
michael@0 | 1721 | s->strstart++; |
michael@0 | 1722 | s->lookahead--; |
michael@0 | 1723 | } |
michael@0 | 1724 | } |
michael@0 | 1725 | Assert (flush != Z_NO_FLUSH, "no flush?"); |
michael@0 | 1726 | if (s->match_available) { |
michael@0 | 1727 | Tracevv((stderr,"%c", s->window[s->strstart-1])); |
michael@0 | 1728 | _tr_tally_lit(s, s->window[s->strstart-1], bflush); |
michael@0 | 1729 | s->match_available = 0; |
michael@0 | 1730 | } |
michael@0 | 1731 | FLUSH_BLOCK(s, flush == Z_FINISH); |
michael@0 | 1732 | return flush == Z_FINISH ? finish_done : block_done; |
michael@0 | 1733 | } |
michael@0 | 1734 | #endif /* FASTEST */ |
michael@0 | 1735 | |
michael@0 | 1736 | /* =========================================================================== |
michael@0 | 1737 | * For Z_RLE, simply look for runs of bytes, generate matches only of distance |
michael@0 | 1738 | * one. Do not maintain a hash table. (It will be regenerated if this run of |
michael@0 | 1739 | * deflate switches away from Z_RLE.) |
michael@0 | 1740 | */ |
michael@0 | 1741 | local block_state deflate_rle(s, flush) |
michael@0 | 1742 | deflate_state *s; |
michael@0 | 1743 | int flush; |
michael@0 | 1744 | { |
michael@0 | 1745 | int bflush; /* set if current block must be flushed */ |
michael@0 | 1746 | uInt prev; /* byte at distance one to match */ |
michael@0 | 1747 | Bytef *scan, *strend; /* scan goes up to strend for length of run */ |
michael@0 | 1748 | |
michael@0 | 1749 | for (;;) { |
michael@0 | 1750 | /* Make sure that we always have enough lookahead, except |
michael@0 | 1751 | * at the end of the input file. We need MAX_MATCH bytes |
michael@0 | 1752 | * for the longest encodable run. |
michael@0 | 1753 | */ |
michael@0 | 1754 | if (s->lookahead < MAX_MATCH) { |
michael@0 | 1755 | fill_window(s); |
michael@0 | 1756 | if (s->lookahead < MAX_MATCH && flush == Z_NO_FLUSH) { |
michael@0 | 1757 | return need_more; |
michael@0 | 1758 | } |
michael@0 | 1759 | if (s->lookahead == 0) break; /* flush the current block */ |
michael@0 | 1760 | } |
michael@0 | 1761 | |
michael@0 | 1762 | /* See how many times the previous byte repeats */ |
michael@0 | 1763 | s->match_length = 0; |
michael@0 | 1764 | if (s->lookahead >= MIN_MATCH && s->strstart > 0) { |
michael@0 | 1765 | scan = s->window + s->strstart - 1; |
michael@0 | 1766 | prev = *scan; |
michael@0 | 1767 | if (prev == *++scan && prev == *++scan && prev == *++scan) { |
michael@0 | 1768 | strend = s->window + s->strstart + MAX_MATCH; |
michael@0 | 1769 | do { |
michael@0 | 1770 | } while (prev == *++scan && prev == *++scan && |
michael@0 | 1771 | prev == *++scan && prev == *++scan && |
michael@0 | 1772 | prev == *++scan && prev == *++scan && |
michael@0 | 1773 | prev == *++scan && prev == *++scan && |
michael@0 | 1774 | scan < strend); |
michael@0 | 1775 | s->match_length = MAX_MATCH - (int)(strend - scan); |
michael@0 | 1776 | if (s->match_length > s->lookahead) |
michael@0 | 1777 | s->match_length = s->lookahead; |
michael@0 | 1778 | } |
michael@0 | 1779 | } |
michael@0 | 1780 | |
michael@0 | 1781 | /* Emit match if have run of MIN_MATCH or longer, else emit literal */ |
michael@0 | 1782 | if (s->match_length >= MIN_MATCH) { |
michael@0 | 1783 | check_match(s, s->strstart, s->strstart - 1, s->match_length); |
michael@0 | 1784 | |
michael@0 | 1785 | _tr_tally_dist(s, 1, s->match_length - MIN_MATCH, bflush); |
michael@0 | 1786 | |
michael@0 | 1787 | s->lookahead -= s->match_length; |
michael@0 | 1788 | s->strstart += s->match_length; |
michael@0 | 1789 | s->match_length = 0; |
michael@0 | 1790 | } else { |
michael@0 | 1791 | /* No match, output a literal byte */ |
michael@0 | 1792 | Tracevv((stderr,"%c", s->window[s->strstart])); |
michael@0 | 1793 | _tr_tally_lit (s, s->window[s->strstart], bflush); |
michael@0 | 1794 | s->lookahead--; |
michael@0 | 1795 | s->strstart++; |
michael@0 | 1796 | } |
michael@0 | 1797 | if (bflush) FLUSH_BLOCK(s, 0); |
michael@0 | 1798 | } |
michael@0 | 1799 | FLUSH_BLOCK(s, flush == Z_FINISH); |
michael@0 | 1800 | return flush == Z_FINISH ? finish_done : block_done; |
michael@0 | 1801 | } |
michael@0 | 1802 | |
michael@0 | 1803 | /* =========================================================================== |
michael@0 | 1804 | * For Z_HUFFMAN_ONLY, do not look for matches. Do not maintain a hash table. |
michael@0 | 1805 | * (It will be regenerated if this run of deflate switches away from Huffman.) |
michael@0 | 1806 | */ |
michael@0 | 1807 | local block_state deflate_huff(s, flush) |
michael@0 | 1808 | deflate_state *s; |
michael@0 | 1809 | int flush; |
michael@0 | 1810 | { |
michael@0 | 1811 | int bflush; /* set if current block must be flushed */ |
michael@0 | 1812 | |
michael@0 | 1813 | for (;;) { |
michael@0 | 1814 | /* Make sure that we have a literal to write. */ |
michael@0 | 1815 | if (s->lookahead == 0) { |
michael@0 | 1816 | fill_window(s); |
michael@0 | 1817 | if (s->lookahead == 0) { |
michael@0 | 1818 | if (flush == Z_NO_FLUSH) |
michael@0 | 1819 | return need_more; |
michael@0 | 1820 | break; /* flush the current block */ |
michael@0 | 1821 | } |
michael@0 | 1822 | } |
michael@0 | 1823 | |
michael@0 | 1824 | /* Output a literal byte */ |
michael@0 | 1825 | s->match_length = 0; |
michael@0 | 1826 | Tracevv((stderr,"%c", s->window[s->strstart])); |
michael@0 | 1827 | _tr_tally_lit (s, s->window[s->strstart], bflush); |
michael@0 | 1828 | s->lookahead--; |
michael@0 | 1829 | s->strstart++; |
michael@0 | 1830 | if (bflush) FLUSH_BLOCK(s, 0); |
michael@0 | 1831 | } |
michael@0 | 1832 | FLUSH_BLOCK(s, flush == Z_FINISH); |
michael@0 | 1833 | return flush == Z_FINISH ? finish_done : block_done; |
michael@0 | 1834 | } |