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deflate.c revision 1.1.1.4.2.1
      1          1.1  christos /* deflate.c -- compress data using the deflation algorithm
      2  1.1.1.4.2.1  perseant  * Copyright (C) 1995-2022 Jean-loup Gailly and Mark Adler
      3          1.1  christos  * For conditions of distribution and use, see copyright notice in zlib.h
      4          1.1  christos  */
      5          1.1  christos 
      6          1.1  christos /*
      7          1.1  christos  *  ALGORITHM
      8          1.1  christos  *
      9          1.1  christos  *      The "deflation" process depends on being able to identify portions
     10          1.1  christos  *      of the input text which are identical to earlier input (within a
     11          1.1  christos  *      sliding window trailing behind the input currently being processed).
     12          1.1  christos  *
     13          1.1  christos  *      The most straightforward technique turns out to be the fastest for
     14          1.1  christos  *      most input files: try all possible matches and select the longest.
     15          1.1  christos  *      The key feature of this algorithm is that insertions into the string
     16          1.1  christos  *      dictionary are very simple and thus fast, and deletions are avoided
     17          1.1  christos  *      completely. Insertions are performed at each input character, whereas
     18          1.1  christos  *      string matches are performed only when the previous match ends. So it
     19          1.1  christos  *      is preferable to spend more time in matches to allow very fast string
     20          1.1  christos  *      insertions and avoid deletions. The matching algorithm for small
     21          1.1  christos  *      strings is inspired from that of Rabin & Karp. A brute force approach
     22          1.1  christos  *      is used to find longer strings when a small match has been found.
     23          1.1  christos  *      A similar algorithm is used in comic (by Jan-Mark Wams) and freeze
     24          1.1  christos  *      (by Leonid Broukhis).
     25          1.1  christos  *         A previous version of this file used a more sophisticated algorithm
     26          1.1  christos  *      (by Fiala and Greene) which is guaranteed to run in linear amortized
     27          1.1  christos  *      time, but has a larger average cost, uses more memory and is patented.
     28          1.1  christos  *      However the F&G algorithm may be faster for some highly redundant
     29          1.1  christos  *      files if the parameter max_chain_length (described below) is too large.
     30          1.1  christos  *
     31          1.1  christos  *  ACKNOWLEDGEMENTS
     32          1.1  christos  *
     33          1.1  christos  *      The idea of lazy evaluation of matches is due to Jan-Mark Wams, and
     34          1.1  christos  *      I found it in 'freeze' written by Leonid Broukhis.
     35          1.1  christos  *      Thanks to many people for bug reports and testing.
     36          1.1  christos  *
     37          1.1  christos  *  REFERENCES
     38          1.1  christos  *
     39          1.1  christos  *      Deutsch, L.P.,"DEFLATE Compressed Data Format Specification".
     40          1.1  christos  *      Available in http://tools.ietf.org/html/rfc1951
     41          1.1  christos  *
     42          1.1  christos  *      A description of the Rabin and Karp algorithm is given in the book
     43          1.1  christos  *         "Algorithms" by R. Sedgewick, Addison-Wesley, p252.
     44          1.1  christos  *
     45          1.1  christos  *      Fiala,E.R., and Greene,D.H.
     46          1.1  christos  *         Data Compression with Finite Windows, Comm.ACM, 32,4 (1989) 490-595
     47          1.1  christos  *
     48          1.1  christos  */
     49          1.1  christos 
     50  1.1.1.4.2.1  perseant /* @(#) Id */
     51          1.1  christos 
     52          1.1  christos #include "deflate.h"
     53          1.1  christos 
     54          1.1  christos const char deflate_copyright[] =
     55  1.1.1.4.2.1  perseant    " deflate 1.2.12 Copyright 1995-2022 Jean-loup Gailly and Mark Adler ";
     56          1.1  christos /*
     57          1.1  christos   If you use the zlib library in a product, an acknowledgment is welcome
     58          1.1  christos   in the documentation of your product. If for some reason you cannot
     59          1.1  christos   include such an acknowledgment, I would appreciate that you keep this
     60          1.1  christos   copyright string in the executable of your product.
     61          1.1  christos  */
     62          1.1  christos 
     63          1.1  christos /* ===========================================================================
     64          1.1  christos  *  Function prototypes.
     65          1.1  christos  */
     66          1.1  christos typedef enum {
     67          1.1  christos     need_more,      /* block not completed, need more input or more output */
     68          1.1  christos     block_done,     /* block flush performed */
     69          1.1  christos     finish_started, /* finish started, need only more output at next deflate */
     70          1.1  christos     finish_done     /* finish done, accept no more input or output */
     71          1.1  christos } block_state;
     72          1.1  christos 
     73          1.1  christos typedef block_state (*compress_func) OF((deflate_state *s, int flush));
     74          1.1  christos /* Compression function. Returns the block state after the call. */
     75          1.1  christos 
     76      1.1.1.3  christos local int deflateStateCheck      OF((z_streamp strm));
     77      1.1.1.3  christos local void slide_hash     OF((deflate_state *s));
     78          1.1  christos local void fill_window    OF((deflate_state *s));
     79          1.1  christos local block_state deflate_stored OF((deflate_state *s, int flush));
     80          1.1  christos local block_state deflate_fast   OF((deflate_state *s, int flush));
     81          1.1  christos #ifndef FASTEST
     82          1.1  christos local block_state deflate_slow   OF((deflate_state *s, int flush));
     83          1.1  christos #endif
     84          1.1  christos local block_state deflate_rle    OF((deflate_state *s, int flush));
     85          1.1  christos local block_state deflate_huff   OF((deflate_state *s, int flush));
     86          1.1  christos local void lm_init        OF((deflate_state *s));
     87          1.1  christos local void putShortMSB    OF((deflate_state *s, uInt b));
     88          1.1  christos local void flush_pending  OF((z_streamp strm));
     89      1.1.1.3  christos local unsigned read_buf   OF((z_streamp strm, Bytef *buf, unsigned size));
     90          1.1  christos #ifdef ASMV
     91      1.1.1.3  christos #  pragma message("Assembler code may have bugs -- use at your own risk")
     92          1.1  christos       void match_init OF((void)); /* asm code initialization */
     93          1.1  christos       uInt longest_match  OF((deflate_state *s, IPos cur_match));
     94          1.1  christos #else
     95          1.1  christos local uInt longest_match  OF((deflate_state *s, IPos cur_match));
     96          1.1  christos #endif
     97          1.1  christos 
     98      1.1.1.3  christos #ifdef ZLIB_DEBUG
     99          1.1  christos local  void check_match OF((deflate_state *s, IPos start, IPos match,
    100          1.1  christos                             int length));
    101          1.1  christos #endif
    102          1.1  christos 
    103          1.1  christos /* ===========================================================================
    104          1.1  christos  * Local data
    105          1.1  christos  */
    106          1.1  christos 
    107          1.1  christos #define NIL 0
    108          1.1  christos /* Tail of hash chains */
    109          1.1  christos 
    110          1.1  christos #ifndef TOO_FAR
    111          1.1  christos #  define TOO_FAR 4096
    112          1.1  christos #endif
    113          1.1  christos /* Matches of length 3 are discarded if their distance exceeds TOO_FAR */
    114          1.1  christos 
    115          1.1  christos /* Values for max_lazy_match, good_match and max_chain_length, depending on
    116          1.1  christos  * the desired pack level (0..9). The values given below have been tuned to
    117          1.1  christos  * exclude worst case performance for pathological files. Better values may be
    118          1.1  christos  * found for specific files.
    119          1.1  christos  */
    120          1.1  christos typedef struct config_s {
    121          1.1  christos    ush good_length; /* reduce lazy search above this match length */
    122          1.1  christos    ush max_lazy;    /* do not perform lazy search above this match length */
    123          1.1  christos    ush nice_length; /* quit search above this match length */
    124          1.1  christos    ush max_chain;
    125          1.1  christos    compress_func func;
    126          1.1  christos } config;
    127          1.1  christos 
    128          1.1  christos #ifdef FASTEST
    129          1.1  christos local const config configuration_table[2] = {
    130          1.1  christos /*      good lazy nice chain */
    131          1.1  christos /* 0 */ {0,    0,  0,    0, deflate_stored},  /* store only */
    132          1.1  christos /* 1 */ {4,    4,  8,    4, deflate_fast}}; /* max speed, no lazy matches */
    133          1.1  christos #else
    134          1.1  christos local const config configuration_table[10] = {
    135          1.1  christos /*      good lazy nice chain */
    136          1.1  christos /* 0 */ {0,    0,  0,    0, deflate_stored},  /* store only */
    137          1.1  christos /* 1 */ {4,    4,  8,    4, deflate_fast}, /* max speed, no lazy matches */
    138          1.1  christos /* 2 */ {4,    5, 16,    8, deflate_fast},
    139          1.1  christos /* 3 */ {4,    6, 32,   32, deflate_fast},
    140          1.1  christos 
    141          1.1  christos /* 4 */ {4,    4, 16,   16, deflate_slow},  /* lazy matches */
    142          1.1  christos /* 5 */ {8,   16, 32,   32, deflate_slow},
    143          1.1  christos /* 6 */ {8,   16, 128, 128, deflate_slow},
    144          1.1  christos /* 7 */ {8,   32, 128, 256, deflate_slow},
    145          1.1  christos /* 8 */ {32, 128, 258, 1024, deflate_slow},
    146          1.1  christos /* 9 */ {32, 258, 258, 4096, deflate_slow}}; /* max compression */
    147          1.1  christos #endif
    148          1.1  christos 
    149          1.1  christos /* Note: the deflate() code requires max_lazy >= MIN_MATCH and max_chain >= 4
    150          1.1  christos  * For deflate_fast() (levels <= 3) good is ignored and lazy has a different
    151          1.1  christos  * meaning.
    152          1.1  christos  */
    153          1.1  christos 
    154          1.1  christos /* rank Z_BLOCK between Z_NO_FLUSH and Z_PARTIAL_FLUSH */
    155      1.1.1.3  christos #define RANK(f) (((f) * 2) - ((f) > 4 ? 9 : 0))
    156          1.1  christos 
    157          1.1  christos /* ===========================================================================
    158          1.1  christos  * Update a hash value with the given input byte
    159      1.1.1.3  christos  * IN  assertion: all calls to UPDATE_HASH are made with consecutive input
    160      1.1.1.3  christos  *    characters, so that a running hash key can be computed from the previous
    161      1.1.1.3  christos  *    key instead of complete recalculation each time.
    162          1.1  christos  */
    163          1.1  christos #define UPDATE_HASH(s,h,c) (h = (((h)<<s->hash_shift) ^ (c)) & s->hash_mask)
    164          1.1  christos 
    165          1.1  christos 
    166          1.1  christos /* ===========================================================================
    167          1.1  christos  * Insert string str in the dictionary and set match_head to the previous head
    168          1.1  christos  * of the hash chain (the most recent string with same hash key). Return
    169          1.1  christos  * the previous length of the hash chain.
    170          1.1  christos  * If this file is compiled with -DFASTEST, the compression level is forced
    171          1.1  christos  * to 1, and no hash chains are maintained.
    172      1.1.1.3  christos  * IN  assertion: all calls to INSERT_STRING are made with consecutive input
    173      1.1.1.3  christos  *    characters and the first MIN_MATCH bytes of str are valid (except for
    174      1.1.1.3  christos  *    the last MIN_MATCH-1 bytes of the input file).
    175          1.1  christos  */
    176          1.1  christos #ifdef FASTEST
    177          1.1  christos #define INSERT_STRING(s, str, match_head) \
    178          1.1  christos    (UPDATE_HASH(s, s->ins_h, s->window[(str) + (MIN_MATCH-1)]), \
    179          1.1  christos     match_head = s->head[s->ins_h], \
    180          1.1  christos     s->head[s->ins_h] = (Pos)(str))
    181          1.1  christos #else
    182          1.1  christos #define INSERT_STRING(s, str, match_head) \
    183          1.1  christos    (UPDATE_HASH(s, s->ins_h, s->window[(str) + (MIN_MATCH-1)]), \
    184          1.1  christos     match_head = s->prev[(str) & s->w_mask] = s->head[s->ins_h], \
    185          1.1  christos     s->head[s->ins_h] = (Pos)(str))
    186          1.1  christos #endif
    187          1.1  christos 
    188          1.1  christos /* ===========================================================================
    189          1.1  christos  * Initialize the hash table (avoiding 64K overflow for 16 bit systems).
    190          1.1  christos  * prev[] will be initialized on the fly.
    191          1.1  christos  */
    192          1.1  christos #define CLEAR_HASH(s) \
    193  1.1.1.4.2.1  perseant     do { \
    194  1.1.1.4.2.1  perseant         s->head[s->hash_size-1] = NIL; \
    195  1.1.1.4.2.1  perseant         zmemzero((Bytef *)s->head, \
    196  1.1.1.4.2.1  perseant                  (unsigned)(s->hash_size-1)*sizeof(*s->head)); \
    197  1.1.1.4.2.1  perseant     } while (0)
    198          1.1  christos 
    199      1.1.1.3  christos /* ===========================================================================
    200      1.1.1.3  christos  * Slide the hash table when sliding the window down (could be avoided with 32
    201      1.1.1.3  christos  * bit values at the expense of memory usage). We slide even when level == 0 to
    202      1.1.1.3  christos  * keep the hash table consistent if we switch back to level > 0 later.
    203      1.1.1.3  christos  */
    204      1.1.1.3  christos local void slide_hash(s)
    205      1.1.1.3  christos     deflate_state *s;
    206      1.1.1.3  christos {
    207      1.1.1.3  christos     unsigned n, m;
    208      1.1.1.3  christos     Posf *p;
    209      1.1.1.3  christos     uInt wsize = s->w_size;
    210      1.1.1.3  christos 
    211      1.1.1.3  christos     n = s->hash_size;
    212      1.1.1.3  christos     p = &s->head[n];
    213      1.1.1.3  christos     do {
    214      1.1.1.3  christos         m = *--p;
    215      1.1.1.3  christos         *p = (Pos)(m >= wsize ? m - wsize : NIL);
    216      1.1.1.3  christos     } while (--n);
    217      1.1.1.3  christos     n = wsize;
    218      1.1.1.3  christos #ifndef FASTEST
    219      1.1.1.3  christos     p = &s->prev[n];
    220      1.1.1.3  christos     do {
    221      1.1.1.3  christos         m = *--p;
    222      1.1.1.3  christos         *p = (Pos)(m >= wsize ? m - wsize : NIL);
    223      1.1.1.3  christos         /* If n is not on any hash chain, prev[n] is garbage but
    224      1.1.1.3  christos          * its value will never be used.
    225      1.1.1.3  christos          */
    226      1.1.1.3  christos     } while (--n);
    227      1.1.1.3  christos #endif
    228      1.1.1.3  christos }
    229      1.1.1.3  christos 
    230          1.1  christos /* ========================================================================= */
    231          1.1  christos int ZEXPORT deflateInit_(strm, level, version, stream_size)
    232          1.1  christos     z_streamp strm;
    233          1.1  christos     int level;
    234          1.1  christos     const char *version;
    235          1.1  christos     int stream_size;
    236          1.1  christos {
    237          1.1  christos     return deflateInit2_(strm, level, Z_DEFLATED, MAX_WBITS, DEF_MEM_LEVEL,
    238          1.1  christos                          Z_DEFAULT_STRATEGY, version, stream_size);
    239          1.1  christos     /* To do: ignore strm->next_in if we use it as window */
    240          1.1  christos }
    241          1.1  christos 
    242          1.1  christos /* ========================================================================= */
    243          1.1  christos int ZEXPORT deflateInit2_(strm, level, method, windowBits, memLevel, strategy,
    244          1.1  christos                   version, stream_size)
    245          1.1  christos     z_streamp strm;
    246          1.1  christos     int  level;
    247          1.1  christos     int  method;
    248          1.1  christos     int  windowBits;
    249          1.1  christos     int  memLevel;
    250          1.1  christos     int  strategy;
    251          1.1  christos     const char *version;
    252          1.1  christos     int stream_size;
    253          1.1  christos {
    254          1.1  christos     deflate_state *s;
    255          1.1  christos     int wrap = 1;
    256          1.1  christos     static const char my_version[] = ZLIB_VERSION;
    257          1.1  christos 
    258          1.1  christos     if (version == Z_NULL || version[0] != my_version[0] ||
    259          1.1  christos         stream_size != sizeof(z_stream)) {
    260          1.1  christos         return Z_VERSION_ERROR;
    261          1.1  christos     }
    262          1.1  christos     if (strm == Z_NULL) return Z_STREAM_ERROR;
    263          1.1  christos 
    264          1.1  christos     strm->msg = Z_NULL;
    265          1.1  christos     if (strm->zalloc == (alloc_func)0) {
    266          1.1  christos #ifdef Z_SOLO
    267          1.1  christos         return Z_STREAM_ERROR;
    268          1.1  christos #else
    269          1.1  christos         strm->zalloc = zcalloc;
    270          1.1  christos         strm->opaque = (voidpf)0;
    271          1.1  christos #endif
    272          1.1  christos     }
    273          1.1  christos     if (strm->zfree == (free_func)0)
    274          1.1  christos #ifdef Z_SOLO
    275          1.1  christos         return Z_STREAM_ERROR;
    276          1.1  christos #else
    277          1.1  christos         strm->zfree = zcfree;
    278          1.1  christos #endif
    279          1.1  christos 
    280          1.1  christos #ifdef FASTEST
    281          1.1  christos     if (level != 0) level = 1;
    282          1.1  christos #else
    283          1.1  christos     if (level == Z_DEFAULT_COMPRESSION) level = 6;
    284          1.1  christos #endif
    285          1.1  christos 
    286          1.1  christos     if (windowBits < 0) { /* suppress zlib wrapper */
    287          1.1  christos         wrap = 0;
    288          1.1  christos         windowBits = -windowBits;
    289          1.1  christos     }
    290          1.1  christos #ifdef GZIP
    291          1.1  christos     else if (windowBits > 15) {
    292          1.1  christos         wrap = 2;       /* write gzip wrapper instead */
    293          1.1  christos         windowBits -= 16;
    294          1.1  christos     }
    295          1.1  christos #endif
    296          1.1  christos     if (memLevel < 1 || memLevel > MAX_MEM_LEVEL || method != Z_DEFLATED ||
    297          1.1  christos         windowBits < 8 || windowBits > 15 || level < 0 || level > 9 ||
    298      1.1.1.3  christos         strategy < 0 || strategy > Z_FIXED || (windowBits == 8 && wrap != 1)) {
    299          1.1  christos         return Z_STREAM_ERROR;
    300          1.1  christos     }
    301          1.1  christos     if (windowBits == 8) windowBits = 9;  /* until 256-byte window bug fixed */
    302          1.1  christos     s = (deflate_state *) ZALLOC(strm, 1, sizeof(deflate_state));
    303          1.1  christos     if (s == Z_NULL) return Z_MEM_ERROR;
    304          1.1  christos     strm->state = (struct internal_state FAR *)s;
    305          1.1  christos     s->strm = strm;
    306      1.1.1.3  christos     s->status = INIT_STATE;     /* to pass state test in deflateReset() */
    307          1.1  christos 
    308          1.1  christos     s->wrap = wrap;
    309          1.1  christos     s->gzhead = Z_NULL;
    310      1.1.1.3  christos     s->w_bits = (uInt)windowBits;
    311          1.1  christos     s->w_size = 1 << s->w_bits;
    312          1.1  christos     s->w_mask = s->w_size - 1;
    313          1.1  christos 
    314      1.1.1.3  christos     s->hash_bits = (uInt)memLevel + 7;
    315          1.1  christos     s->hash_size = 1 << s->hash_bits;
    316          1.1  christos     s->hash_mask = s->hash_size - 1;
    317          1.1  christos     s->hash_shift =  ((s->hash_bits+MIN_MATCH-1)/MIN_MATCH);
    318          1.1  christos 
    319          1.1  christos     s->window = (Bytef *) ZALLOC(strm, s->w_size, 2*sizeof(Byte));
    320          1.1  christos     s->prev   = (Posf *)  ZALLOC(strm, s->w_size, sizeof(Pos));
    321          1.1  christos     s->head   = (Posf *)  ZALLOC(strm, s->hash_size, sizeof(Pos));
    322          1.1  christos 
    323          1.1  christos     s->high_water = 0;      /* nothing written to s->window yet */
    324          1.1  christos 
    325          1.1  christos     s->lit_bufsize = 1 << (memLevel + 6); /* 16K elements by default */
    326          1.1  christos 
    327  1.1.1.4.2.1  perseant     /* We overlay pending_buf and sym_buf. This works since the average size
    328  1.1.1.4.2.1  perseant      * for length/distance pairs over any compressed block is assured to be 31
    329  1.1.1.4.2.1  perseant      * bits or less.
    330  1.1.1.4.2.1  perseant      *
    331  1.1.1.4.2.1  perseant      * Analysis: The longest fixed codes are a length code of 8 bits plus 5
    332  1.1.1.4.2.1  perseant      * extra bits, for lengths 131 to 257. The longest fixed distance codes are
    333  1.1.1.4.2.1  perseant      * 5 bits plus 13 extra bits, for distances 16385 to 32768. The longest
    334  1.1.1.4.2.1  perseant      * possible fixed-codes length/distance pair is then 31 bits total.
    335  1.1.1.4.2.1  perseant      *
    336  1.1.1.4.2.1  perseant      * sym_buf starts one-fourth of the way into pending_buf. So there are
    337  1.1.1.4.2.1  perseant      * three bytes in sym_buf for every four bytes in pending_buf. Each symbol
    338  1.1.1.4.2.1  perseant      * in sym_buf is three bytes -- two for the distance and one for the
    339  1.1.1.4.2.1  perseant      * literal/length. As each symbol is consumed, the pointer to the next
    340  1.1.1.4.2.1  perseant      * sym_buf value to read moves forward three bytes. From that symbol, up to
    341  1.1.1.4.2.1  perseant      * 31 bits are written to pending_buf. The closest the written pending_buf
    342  1.1.1.4.2.1  perseant      * bits gets to the next sym_buf symbol to read is just before the last
    343  1.1.1.4.2.1  perseant      * code is written. At that time, 31*(n-2) bits have been written, just
    344  1.1.1.4.2.1  perseant      * after 24*(n-2) bits have been consumed from sym_buf. sym_buf starts at
    345  1.1.1.4.2.1  perseant      * 8*n bits into pending_buf. (Note that the symbol buffer fills when n-1
    346  1.1.1.4.2.1  perseant      * symbols are written.) The closest the writing gets to what is unread is
    347  1.1.1.4.2.1  perseant      * then n+14 bits. Here n is lit_bufsize, which is 16384 by default, and
    348  1.1.1.4.2.1  perseant      * can range from 128 to 32768.
    349  1.1.1.4.2.1  perseant      *
    350  1.1.1.4.2.1  perseant      * Therefore, at a minimum, there are 142 bits of space between what is
    351  1.1.1.4.2.1  perseant      * written and what is read in the overlain buffers, so the symbols cannot
    352  1.1.1.4.2.1  perseant      * be overwritten by the compressed data. That space is actually 139 bits,
    353  1.1.1.4.2.1  perseant      * due to the three-bit fixed-code block header.
    354  1.1.1.4.2.1  perseant      *
    355  1.1.1.4.2.1  perseant      * That covers the case where either Z_FIXED is specified, forcing fixed
    356  1.1.1.4.2.1  perseant      * codes, or when the use of fixed codes is chosen, because that choice
    357  1.1.1.4.2.1  perseant      * results in a smaller compressed block than dynamic codes. That latter
    358  1.1.1.4.2.1  perseant      * condition then assures that the above analysis also covers all dynamic
    359  1.1.1.4.2.1  perseant      * blocks. A dynamic-code block will only be chosen to be emitted if it has
    360  1.1.1.4.2.1  perseant      * fewer bits than a fixed-code block would for the same set of symbols.
    361  1.1.1.4.2.1  perseant      * Therefore its average symbol length is assured to be less than 31. So
    362  1.1.1.4.2.1  perseant      * the compressed data for a dynamic block also cannot overwrite the
    363  1.1.1.4.2.1  perseant      * symbols from which it is being constructed.
    364  1.1.1.4.2.1  perseant      */
    365  1.1.1.4.2.1  perseant 
    366  1.1.1.4.2.1  perseant     s->pending_buf = (uchf *) ZALLOC(strm, s->lit_bufsize, 4);
    367  1.1.1.4.2.1  perseant     s->pending_buf_size = (ulg)s->lit_bufsize * 4;
    368          1.1  christos 
    369          1.1  christos     if (s->window == Z_NULL || s->prev == Z_NULL || s->head == Z_NULL ||
    370          1.1  christos         s->pending_buf == Z_NULL) {
    371          1.1  christos         s->status = FINISH_STATE;
    372      1.1.1.2  christos         strm->msg = ERR_MSG(Z_MEM_ERROR);
    373          1.1  christos         deflateEnd (strm);
    374          1.1  christos         return Z_MEM_ERROR;
    375          1.1  christos     }
    376  1.1.1.4.2.1  perseant     s->sym_buf = s->pending_buf + s->lit_bufsize;
    377  1.1.1.4.2.1  perseant     s->sym_end = (s->lit_bufsize - 1) * 3;
    378  1.1.1.4.2.1  perseant     /* We avoid equality with lit_bufsize*3 because of wraparound at 64K
    379  1.1.1.4.2.1  perseant      * on 16 bit machines and because stored blocks are restricted to
    380  1.1.1.4.2.1  perseant      * 64K-1 bytes.
    381  1.1.1.4.2.1  perseant      */
    382          1.1  christos 
    383          1.1  christos     s->level = level;
    384          1.1  christos     s->strategy = strategy;
    385          1.1  christos     s->method = (Byte)method;
    386          1.1  christos 
    387          1.1  christos     return deflateReset(strm);
    388          1.1  christos }
    389          1.1  christos 
    390      1.1.1.3  christos /* =========================================================================
    391      1.1.1.3  christos  * Check for a valid deflate stream state. Return 0 if ok, 1 if not.
    392      1.1.1.3  christos  */
    393      1.1.1.3  christos local int deflateStateCheck (strm)
    394      1.1.1.3  christos     z_streamp strm;
    395      1.1.1.3  christos {
    396      1.1.1.3  christos     deflate_state *s;
    397      1.1.1.3  christos     if (strm == Z_NULL ||
    398      1.1.1.3  christos         strm->zalloc == (alloc_func)0 || strm->zfree == (free_func)0)
    399      1.1.1.3  christos         return 1;
    400      1.1.1.3  christos     s = strm->state;
    401      1.1.1.3  christos     if (s == Z_NULL || s->strm != strm || (s->status != INIT_STATE &&
    402      1.1.1.3  christos #ifdef GZIP
    403      1.1.1.3  christos                                            s->status != GZIP_STATE &&
    404      1.1.1.3  christos #endif
    405      1.1.1.3  christos                                            s->status != EXTRA_STATE &&
    406      1.1.1.3  christos                                            s->status != NAME_STATE &&
    407      1.1.1.3  christos                                            s->status != COMMENT_STATE &&
    408      1.1.1.3  christos                                            s->status != HCRC_STATE &&
    409      1.1.1.3  christos                                            s->status != BUSY_STATE &&
    410      1.1.1.3  christos                                            s->status != FINISH_STATE))
    411      1.1.1.3  christos         return 1;
    412      1.1.1.3  christos     return 0;
    413      1.1.1.3  christos }
    414      1.1.1.3  christos 
    415          1.1  christos /* ========================================================================= */
    416          1.1  christos int ZEXPORT deflateSetDictionary (strm, dictionary, dictLength)
    417          1.1  christos     z_streamp strm;
    418          1.1  christos     const Bytef *dictionary;
    419          1.1  christos     uInt  dictLength;
    420          1.1  christos {
    421          1.1  christos     deflate_state *s;
    422          1.1  christos     uInt str, n;
    423          1.1  christos     int wrap;
    424          1.1  christos     unsigned avail;
    425      1.1.1.2  christos     z_const unsigned char *next;
    426          1.1  christos 
    427      1.1.1.3  christos     if (deflateStateCheck(strm) || dictionary == Z_NULL)
    428          1.1  christos         return Z_STREAM_ERROR;
    429          1.1  christos     s = strm->state;
    430          1.1  christos     wrap = s->wrap;
    431          1.1  christos     if (wrap == 2 || (wrap == 1 && s->status != INIT_STATE) || s->lookahead)
    432          1.1  christos         return Z_STREAM_ERROR;
    433          1.1  christos 
    434          1.1  christos     /* when using zlib wrappers, compute Adler-32 for provided dictionary */
    435          1.1  christos     if (wrap == 1)
    436          1.1  christos         strm->adler = adler32(strm->adler, dictionary, dictLength);
    437          1.1  christos     s->wrap = 0;                    /* avoid computing Adler-32 in read_buf */
    438          1.1  christos 
    439          1.1  christos     /* if dictionary would fill window, just replace the history */
    440          1.1  christos     if (dictLength >= s->w_size) {
    441          1.1  christos         if (wrap == 0) {            /* already empty otherwise */
    442          1.1  christos             CLEAR_HASH(s);
    443          1.1  christos             s->strstart = 0;
    444          1.1  christos             s->block_start = 0L;
    445          1.1  christos             s->insert = 0;
    446          1.1  christos         }
    447          1.1  christos         dictionary += dictLength - s->w_size;  /* use the tail */
    448          1.1  christos         dictLength = s->w_size;
    449          1.1  christos     }
    450          1.1  christos 
    451          1.1  christos     /* insert dictionary into window and hash */
    452          1.1  christos     avail = strm->avail_in;
    453          1.1  christos     next = strm->next_in;
    454          1.1  christos     strm->avail_in = dictLength;
    455      1.1.1.2  christos     strm->next_in = (z_const Bytef *)dictionary;
    456          1.1  christos     fill_window(s);
    457          1.1  christos     while (s->lookahead >= MIN_MATCH) {
    458          1.1  christos         str = s->strstart;
    459          1.1  christos         n = s->lookahead - (MIN_MATCH-1);
    460          1.1  christos         do {
    461          1.1  christos             UPDATE_HASH(s, s->ins_h, s->window[str + MIN_MATCH-1]);
    462          1.1  christos #ifndef FASTEST
    463          1.1  christos             s->prev[str & s->w_mask] = s->head[s->ins_h];
    464          1.1  christos #endif
    465          1.1  christos             s->head[s->ins_h] = (Pos)str;
    466          1.1  christos             str++;
    467          1.1  christos         } while (--n);
    468          1.1  christos         s->strstart = str;
    469          1.1  christos         s->lookahead = MIN_MATCH-1;
    470          1.1  christos         fill_window(s);
    471          1.1  christos     }
    472          1.1  christos     s->strstart += s->lookahead;
    473          1.1  christos     s->block_start = (long)s->strstart;
    474          1.1  christos     s->insert = s->lookahead;
    475          1.1  christos     s->lookahead = 0;
    476          1.1  christos     s->match_length = s->prev_length = MIN_MATCH-1;
    477          1.1  christos     s->match_available = 0;
    478          1.1  christos     strm->next_in = next;
    479          1.1  christos     strm->avail_in = avail;
    480          1.1  christos     s->wrap = wrap;
    481          1.1  christos     return Z_OK;
    482          1.1  christos }
    483          1.1  christos 
    484          1.1  christos /* ========================================================================= */
    485      1.1.1.3  christos int ZEXPORT deflateGetDictionary (strm, dictionary, dictLength)
    486      1.1.1.3  christos     z_streamp strm;
    487      1.1.1.3  christos     Bytef *dictionary;
    488      1.1.1.3  christos     uInt  *dictLength;
    489      1.1.1.3  christos {
    490      1.1.1.3  christos     deflate_state *s;
    491      1.1.1.3  christos     uInt len;
    492      1.1.1.3  christos 
    493      1.1.1.3  christos     if (deflateStateCheck(strm))
    494      1.1.1.3  christos         return Z_STREAM_ERROR;
    495      1.1.1.3  christos     s = strm->state;
    496      1.1.1.3  christos     len = s->strstart + s->lookahead;
    497      1.1.1.3  christos     if (len > s->w_size)
    498      1.1.1.3  christos         len = s->w_size;
    499      1.1.1.3  christos     if (dictionary != Z_NULL && len)
    500      1.1.1.3  christos         zmemcpy(dictionary, s->window + s->strstart + s->lookahead - len, len);
    501      1.1.1.3  christos     if (dictLength != Z_NULL)
    502      1.1.1.3  christos         *dictLength = len;
    503      1.1.1.3  christos     return Z_OK;
    504      1.1.1.3  christos }
    505      1.1.1.3  christos 
    506      1.1.1.3  christos /* ========================================================================= */
    507          1.1  christos int ZEXPORT deflateResetKeep (strm)
    508          1.1  christos     z_streamp strm;
    509          1.1  christos {
    510          1.1  christos     deflate_state *s;
    511          1.1  christos 
    512      1.1.1.3  christos     if (deflateStateCheck(strm)) {
    513          1.1  christos         return Z_STREAM_ERROR;
    514          1.1  christos     }
    515          1.1  christos 
    516          1.1  christos     strm->total_in = strm->total_out = 0;
    517          1.1  christos     strm->msg = Z_NULL; /* use zfree if we ever allocate msg dynamically */
    518          1.1  christos     strm->data_type = Z_UNKNOWN;
    519          1.1  christos 
    520          1.1  christos     s = (deflate_state *)strm->state;
    521          1.1  christos     s->pending = 0;
    522          1.1  christos     s->pending_out = s->pending_buf;
    523          1.1  christos 
    524          1.1  christos     if (s->wrap < 0) {
    525          1.1  christos         s->wrap = -s->wrap; /* was made negative by deflate(..., Z_FINISH); */
    526          1.1  christos     }
    527      1.1.1.3  christos     s->status =
    528      1.1.1.3  christos #ifdef GZIP
    529      1.1.1.3  christos         s->wrap == 2 ? GZIP_STATE :
    530      1.1.1.3  christos #endif
    531  1.1.1.4.2.1  perseant         INIT_STATE;
    532          1.1  christos     strm->adler =
    533          1.1  christos #ifdef GZIP
    534          1.1  christos         s->wrap == 2 ? crc32(0L, Z_NULL, 0) :
    535          1.1  christos #endif
    536          1.1  christos         adler32(0L, Z_NULL, 0);
    537  1.1.1.4.2.1  perseant     s->last_flush = -2;
    538          1.1  christos 
    539          1.1  christos     _tr_init(s);
    540          1.1  christos 
    541          1.1  christos     return Z_OK;
    542          1.1  christos }
    543          1.1  christos 
    544          1.1  christos /* ========================================================================= */
    545          1.1  christos int ZEXPORT deflateReset (strm)
    546          1.1  christos     z_streamp strm;
    547          1.1  christos {
    548          1.1  christos     int ret;
    549          1.1  christos 
    550          1.1  christos     ret = deflateResetKeep(strm);
    551          1.1  christos     if (ret == Z_OK)
    552          1.1  christos         lm_init(strm->state);
    553          1.1  christos     return ret;
    554          1.1  christos }
    555          1.1  christos 
    556          1.1  christos /* ========================================================================= */
    557          1.1  christos int ZEXPORT deflateSetHeader (strm, head)
    558          1.1  christos     z_streamp strm;
    559          1.1  christos     gz_headerp head;
    560          1.1  christos {
    561      1.1.1.3  christos     if (deflateStateCheck(strm) || strm->state->wrap != 2)
    562      1.1.1.3  christos         return Z_STREAM_ERROR;
    563          1.1  christos     strm->state->gzhead = head;
    564          1.1  christos     return Z_OK;
    565          1.1  christos }
    566          1.1  christos 
    567          1.1  christos /* ========================================================================= */
    568          1.1  christos int ZEXPORT deflatePending (strm, pending, bits)
    569          1.1  christos     unsigned *pending;
    570          1.1  christos     int *bits;
    571          1.1  christos     z_streamp strm;
    572          1.1  christos {
    573      1.1.1.3  christos     if (deflateStateCheck(strm)) return Z_STREAM_ERROR;
    574          1.1  christos     if (pending != Z_NULL)
    575          1.1  christos         *pending = strm->state->pending;
    576          1.1  christos     if (bits != Z_NULL)
    577          1.1  christos         *bits = strm->state->bi_valid;
    578          1.1  christos     return Z_OK;
    579          1.1  christos }
    580          1.1  christos 
    581          1.1  christos /* ========================================================================= */
    582          1.1  christos int ZEXPORT deflatePrime (strm, bits, value)
    583          1.1  christos     z_streamp strm;
    584          1.1  christos     int bits;
    585          1.1  christos     int value;
    586          1.1  christos {
    587          1.1  christos     deflate_state *s;
    588          1.1  christos     int put;
    589          1.1  christos 
    590      1.1.1.3  christos     if (deflateStateCheck(strm)) return Z_STREAM_ERROR;
    591          1.1  christos     s = strm->state;
    592  1.1.1.4.2.1  perseant     if (bits < 0 || bits > 16 ||
    593  1.1.1.4.2.1  perseant         s->sym_buf < s->pending_out + ((Buf_size + 7) >> 3))
    594          1.1  christos         return Z_BUF_ERROR;
    595          1.1  christos     do {
    596          1.1  christos         put = Buf_size - s->bi_valid;
    597          1.1  christos         if (put > bits)
    598          1.1  christos             put = bits;
    599          1.1  christos         s->bi_buf |= (ush)((value & ((1 << put) - 1)) << s->bi_valid);
    600          1.1  christos         s->bi_valid += put;
    601          1.1  christos         _tr_flush_bits(s);
    602          1.1  christos         value >>= put;
    603          1.1  christos         bits -= put;
    604          1.1  christos     } while (bits);
    605          1.1  christos     return Z_OK;
    606          1.1  christos }
    607          1.1  christos 
    608          1.1  christos /* ========================================================================= */
    609          1.1  christos int ZEXPORT deflateParams(strm, level, strategy)
    610          1.1  christos     z_streamp strm;
    611          1.1  christos     int level;
    612          1.1  christos     int strategy;
    613          1.1  christos {
    614          1.1  christos     deflate_state *s;
    615          1.1  christos     compress_func func;
    616          1.1  christos 
    617      1.1.1.3  christos     if (deflateStateCheck(strm)) return Z_STREAM_ERROR;
    618          1.1  christos     s = strm->state;
    619          1.1  christos 
    620          1.1  christos #ifdef FASTEST
    621          1.1  christos     if (level != 0) level = 1;
    622          1.1  christos #else
    623          1.1  christos     if (level == Z_DEFAULT_COMPRESSION) level = 6;
    624          1.1  christos #endif
    625          1.1  christos     if (level < 0 || level > 9 || strategy < 0 || strategy > Z_FIXED) {
    626          1.1  christos         return Z_STREAM_ERROR;
    627          1.1  christos     }
    628          1.1  christos     func = configuration_table[s->level].func;
    629          1.1  christos 
    630          1.1  christos     if ((strategy != s->strategy || func != configuration_table[level].func) &&
    631  1.1.1.4.2.1  perseant         s->last_flush != -2) {
    632          1.1  christos         /* Flush the last buffer: */
    633      1.1.1.3  christos         int err = deflate(strm, Z_BLOCK);
    634      1.1.1.3  christos         if (err == Z_STREAM_ERROR)
    635      1.1.1.3  christos             return err;
    636  1.1.1.4.2.1  perseant         if (strm->avail_in || (s->strstart - s->block_start) + s->lookahead)
    637      1.1.1.3  christos             return Z_BUF_ERROR;
    638          1.1  christos     }
    639          1.1  christos     if (s->level != level) {
    640      1.1.1.3  christos         if (s->level == 0 && s->matches != 0) {
    641      1.1.1.3  christos             if (s->matches == 1)
    642      1.1.1.3  christos                 slide_hash(s);
    643      1.1.1.3  christos             else
    644      1.1.1.3  christos                 CLEAR_HASH(s);
    645      1.1.1.3  christos             s->matches = 0;
    646      1.1.1.3  christos         }
    647          1.1  christos         s->level = level;
    648          1.1  christos         s->max_lazy_match   = configuration_table[level].max_lazy;
    649          1.1  christos         s->good_match       = configuration_table[level].good_length;
    650          1.1  christos         s->nice_match       = configuration_table[level].nice_length;
    651          1.1  christos         s->max_chain_length = configuration_table[level].max_chain;
    652          1.1  christos     }
    653          1.1  christos     s->strategy = strategy;
    654      1.1.1.3  christos     return Z_OK;
    655          1.1  christos }
    656          1.1  christos 
    657          1.1  christos /* ========================================================================= */
    658          1.1  christos int ZEXPORT deflateTune(strm, good_length, max_lazy, nice_length, max_chain)
    659          1.1  christos     z_streamp strm;
    660          1.1  christos     int good_length;
    661          1.1  christos     int max_lazy;
    662          1.1  christos     int nice_length;
    663          1.1  christos     int max_chain;
    664          1.1  christos {
    665          1.1  christos     deflate_state *s;
    666          1.1  christos 
    667      1.1.1.3  christos     if (deflateStateCheck(strm)) return Z_STREAM_ERROR;
    668          1.1  christos     s = strm->state;
    669      1.1.1.3  christos     s->good_match = (uInt)good_length;
    670      1.1.1.3  christos     s->max_lazy_match = (uInt)max_lazy;
    671          1.1  christos     s->nice_match = nice_length;
    672      1.1.1.3  christos     s->max_chain_length = (uInt)max_chain;
    673          1.1  christos     return Z_OK;
    674          1.1  christos }
    675          1.1  christos 
    676          1.1  christos /* =========================================================================
    677          1.1  christos  * For the default windowBits of 15 and memLevel of 8, this function returns
    678          1.1  christos  * a close to exact, as well as small, upper bound on the compressed size.
    679          1.1  christos  * They are coded as constants here for a reason--if the #define's are
    680          1.1  christos  * changed, then this function needs to be changed as well.  The return
    681          1.1  christos  * value for 15 and 8 only works for those exact settings.
    682          1.1  christos  *
    683          1.1  christos  * For any setting other than those defaults for windowBits and memLevel,
    684          1.1  christos  * the value returned is a conservative worst case for the maximum expansion
    685          1.1  christos  * resulting from using fixed blocks instead of stored blocks, which deflate
    686          1.1  christos  * can emit on compressed data for some combinations of the parameters.
    687          1.1  christos  *
    688          1.1  christos  * This function could be more sophisticated to provide closer upper bounds for
    689          1.1  christos  * every combination of windowBits and memLevel.  But even the conservative
    690          1.1  christos  * upper bound of about 14% expansion does not seem onerous for output buffer
    691          1.1  christos  * allocation.
    692          1.1  christos  */
    693          1.1  christos uLong ZEXPORT deflateBound(strm, sourceLen)
    694          1.1  christos     z_streamp strm;
    695          1.1  christos     uLong sourceLen;
    696          1.1  christos {
    697          1.1  christos     deflate_state *s;
    698          1.1  christos     uLong complen, wraplen;
    699          1.1  christos 
    700          1.1  christos     /* conservative upper bound for compressed data */
    701          1.1  christos     complen = sourceLen +
    702          1.1  christos               ((sourceLen + 7) >> 3) + ((sourceLen + 63) >> 6) + 5;
    703          1.1  christos 
    704          1.1  christos     /* if can't get parameters, return conservative bound plus zlib wrapper */
    705      1.1.1.3  christos     if (deflateStateCheck(strm))
    706          1.1  christos         return complen + 6;
    707          1.1  christos 
    708          1.1  christos     /* compute wrapper length */
    709          1.1  christos     s = strm->state;
    710          1.1  christos     switch (s->wrap) {
    711          1.1  christos     case 0:                                 /* raw deflate */
    712          1.1  christos         wraplen = 0;
    713          1.1  christos         break;
    714          1.1  christos     case 1:                                 /* zlib wrapper */
    715          1.1  christos         wraplen = 6 + (s->strstart ? 4 : 0);
    716          1.1  christos         break;
    717      1.1.1.3  christos #ifdef GZIP
    718          1.1  christos     case 2:                                 /* gzip wrapper */
    719          1.1  christos         wraplen = 18;
    720          1.1  christos         if (s->gzhead != Z_NULL) {          /* user-supplied gzip header */
    721      1.1.1.3  christos             Bytef *str;
    722          1.1  christos             if (s->gzhead->extra != Z_NULL)
    723          1.1  christos                 wraplen += 2 + s->gzhead->extra_len;
    724          1.1  christos             str = s->gzhead->name;
    725          1.1  christos             if (str != Z_NULL)
    726          1.1  christos                 do {
    727          1.1  christos                     wraplen++;
    728          1.1  christos                 } while (*str++);
    729          1.1  christos             str = s->gzhead->comment;
    730          1.1  christos             if (str != Z_NULL)
    731          1.1  christos                 do {
    732          1.1  christos                     wraplen++;
    733          1.1  christos                 } while (*str++);
    734          1.1  christos             if (s->gzhead->hcrc)
    735          1.1  christos                 wraplen += 2;
    736          1.1  christos         }
    737          1.1  christos         break;
    738      1.1.1.3  christos #endif
    739          1.1  christos     default:                                /* for compiler happiness */
    740          1.1  christos         wraplen = 6;
    741          1.1  christos     }
    742          1.1  christos 
    743          1.1  christos     /* if not default parameters, return conservative bound */
    744          1.1  christos     if (s->w_bits != 15 || s->hash_bits != 8 + 7)
    745          1.1  christos         return complen + wraplen;
    746          1.1  christos 
    747          1.1  christos     /* default settings: return tight bound for that case */
    748          1.1  christos     return sourceLen + (sourceLen >> 12) + (sourceLen >> 14) +
    749          1.1  christos            (sourceLen >> 25) + 13 - 6 + wraplen;
    750          1.1  christos }
    751          1.1  christos 
    752          1.1  christos /* =========================================================================
    753          1.1  christos  * Put a short in the pending buffer. The 16-bit value is put in MSB order.
    754          1.1  christos  * IN assertion: the stream state is correct and there is enough room in
    755          1.1  christos  * pending_buf.
    756          1.1  christos  */
    757          1.1  christos local void putShortMSB (s, b)
    758          1.1  christos     deflate_state *s;
    759          1.1  christos     uInt b;
    760          1.1  christos {
    761          1.1  christos     put_byte(s, (Byte)(b >> 8));
    762          1.1  christos     put_byte(s, (Byte)(b & 0xff));
    763          1.1  christos }
    764          1.1  christos 
    765          1.1  christos /* =========================================================================
    766      1.1.1.3  christos  * Flush as much pending output as possible. All deflate() output, except for
    767      1.1.1.3  christos  * some deflate_stored() output, goes through this function so some
    768      1.1.1.3  christos  * applications may wish to modify it to avoid allocating a large
    769      1.1.1.3  christos  * strm->next_out buffer and copying into it. (See also read_buf()).
    770          1.1  christos  */
    771          1.1  christos local void flush_pending(strm)
    772          1.1  christos     z_streamp strm;
    773          1.1  christos {
    774          1.1  christos     unsigned len;
    775          1.1  christos     deflate_state *s = strm->state;
    776          1.1  christos 
    777          1.1  christos     _tr_flush_bits(s);
    778          1.1  christos     len = s->pending;
    779          1.1  christos     if (len > strm->avail_out) len = strm->avail_out;
    780          1.1  christos     if (len == 0) return;
    781          1.1  christos 
    782          1.1  christos     zmemcpy(strm->next_out, s->pending_out, len);
    783          1.1  christos     strm->next_out  += len;
    784          1.1  christos     s->pending_out  += len;
    785          1.1  christos     strm->total_out += len;
    786      1.1.1.3  christos     strm->avail_out -= len;
    787      1.1.1.3  christos     s->pending      -= len;
    788          1.1  christos     if (s->pending == 0) {
    789          1.1  christos         s->pending_out = s->pending_buf;
    790          1.1  christos     }
    791          1.1  christos }
    792          1.1  christos 
    793      1.1.1.3  christos /* ===========================================================================
    794      1.1.1.3  christos  * Update the header CRC with the bytes s->pending_buf[beg..s->pending - 1].
    795      1.1.1.3  christos  */
    796      1.1.1.3  christos #define HCRC_UPDATE(beg) \
    797      1.1.1.3  christos     do { \
    798      1.1.1.3  christos         if (s->gzhead->hcrc && s->pending > (beg)) \
    799      1.1.1.3  christos             strm->adler = crc32(strm->adler, s->pending_buf + (beg), \
    800      1.1.1.3  christos                                 s->pending - (beg)); \
    801      1.1.1.3  christos     } while (0)
    802      1.1.1.3  christos 
    803          1.1  christos /* ========================================================================= */
    804          1.1  christos int ZEXPORT deflate (strm, flush)
    805          1.1  christos     z_streamp strm;
    806          1.1  christos     int flush;
    807          1.1  christos {
    808          1.1  christos     int old_flush; /* value of flush param for previous deflate call */
    809          1.1  christos     deflate_state *s;
    810          1.1  christos 
    811      1.1.1.3  christos     if (deflateStateCheck(strm) || flush > Z_BLOCK || flush < 0) {
    812          1.1  christos         return Z_STREAM_ERROR;
    813          1.1  christos     }
    814          1.1  christos     s = strm->state;
    815          1.1  christos 
    816          1.1  christos     if (strm->next_out == Z_NULL ||
    817      1.1.1.3  christos         (strm->avail_in != 0 && strm->next_in == Z_NULL) ||
    818          1.1  christos         (s->status == FINISH_STATE && flush != Z_FINISH)) {
    819          1.1  christos         ERR_RETURN(strm, Z_STREAM_ERROR);
    820          1.1  christos     }
    821          1.1  christos     if (strm->avail_out == 0) ERR_RETURN(strm, Z_BUF_ERROR);
    822          1.1  christos 
    823          1.1  christos     old_flush = s->last_flush;
    824          1.1  christos     s->last_flush = flush;
    825          1.1  christos 
    826      1.1.1.3  christos     /* Flush as much pending output as possible */
    827      1.1.1.3  christos     if (s->pending != 0) {
    828      1.1.1.3  christos         flush_pending(strm);
    829      1.1.1.3  christos         if (strm->avail_out == 0) {
    830      1.1.1.3  christos             /* Since avail_out is 0, deflate will be called again with
    831      1.1.1.3  christos              * more output space, but possibly with both pending and
    832      1.1.1.3  christos              * avail_in equal to zero. There won't be anything to do,
    833      1.1.1.3  christos              * but this is not an error situation so make sure we
    834      1.1.1.3  christos              * return OK instead of BUF_ERROR at next call of deflate:
    835      1.1.1.3  christos              */
    836      1.1.1.3  christos             s->last_flush = -1;
    837      1.1.1.3  christos             return Z_OK;
    838      1.1.1.3  christos         }
    839      1.1.1.3  christos 
    840      1.1.1.3  christos     /* Make sure there is something to do and avoid duplicate consecutive
    841      1.1.1.3  christos      * flushes. For repeated and useless calls with Z_FINISH, we keep
    842      1.1.1.3  christos      * returning Z_STREAM_END instead of Z_BUF_ERROR.
    843      1.1.1.3  christos      */
    844      1.1.1.3  christos     } else if (strm->avail_in == 0 && RANK(flush) <= RANK(old_flush) &&
    845      1.1.1.3  christos                flush != Z_FINISH) {
    846      1.1.1.3  christos         ERR_RETURN(strm, Z_BUF_ERROR);
    847      1.1.1.3  christos     }
    848      1.1.1.3  christos 
    849      1.1.1.3  christos     /* User must not provide more input after the first FINISH: */
    850      1.1.1.3  christos     if (s->status == FINISH_STATE && strm->avail_in != 0) {
    851      1.1.1.3  christos         ERR_RETURN(strm, Z_BUF_ERROR);
    852      1.1.1.3  christos     }
    853      1.1.1.3  christos 
    854          1.1  christos     /* Write the header */
    855  1.1.1.4.2.1  perseant     if (s->status == INIT_STATE && s->wrap == 0)
    856  1.1.1.4.2.1  perseant         s->status = BUSY_STATE;
    857          1.1  christos     if (s->status == INIT_STATE) {
    858      1.1.1.3  christos         /* zlib header */
    859      1.1.1.3  christos         uInt header = (Z_DEFLATED + ((s->w_bits-8)<<4)) << 8;
    860      1.1.1.3  christos         uInt level_flags;
    861      1.1.1.3  christos 
    862      1.1.1.3  christos         if (s->strategy >= Z_HUFFMAN_ONLY || s->level < 2)
    863      1.1.1.3  christos             level_flags = 0;
    864      1.1.1.3  christos         else if (s->level < 6)
    865      1.1.1.3  christos             level_flags = 1;
    866      1.1.1.3  christos         else if (s->level == 6)
    867      1.1.1.3  christos             level_flags = 2;
    868          1.1  christos         else
    869      1.1.1.3  christos             level_flags = 3;
    870      1.1.1.3  christos         header |= (level_flags << 6);
    871      1.1.1.3  christos         if (s->strstart != 0) header |= PRESET_DICT;
    872      1.1.1.3  christos         header += 31 - (header % 31);
    873      1.1.1.3  christos 
    874      1.1.1.3  christos         putShortMSB(s, header);
    875      1.1.1.3  christos 
    876      1.1.1.3  christos         /* Save the adler32 of the preset dictionary: */
    877      1.1.1.3  christos         if (s->strstart != 0) {
    878      1.1.1.3  christos             putShortMSB(s, (uInt)(strm->adler >> 16));
    879      1.1.1.3  christos             putShortMSB(s, (uInt)(strm->adler & 0xffff));
    880      1.1.1.3  christos         }
    881      1.1.1.3  christos         strm->adler = adler32(0L, Z_NULL, 0);
    882      1.1.1.3  christos         s->status = BUSY_STATE;
    883          1.1  christos 
    884      1.1.1.3  christos         /* Compression must start with an empty pending buffer */
    885      1.1.1.3  christos         flush_pending(strm);
    886      1.1.1.3  christos         if (s->pending != 0) {
    887      1.1.1.3  christos             s->last_flush = -1;
    888      1.1.1.3  christos             return Z_OK;
    889      1.1.1.3  christos         }
    890      1.1.1.3  christos     }
    891      1.1.1.3  christos #ifdef GZIP
    892      1.1.1.3  christos     if (s->status == GZIP_STATE) {
    893      1.1.1.3  christos         /* gzip header */
    894      1.1.1.3  christos         strm->adler = crc32(0L, Z_NULL, 0);
    895      1.1.1.3  christos         put_byte(s, 31);
    896      1.1.1.3  christos         put_byte(s, 139);
    897      1.1.1.3  christos         put_byte(s, 8);
    898      1.1.1.3  christos         if (s->gzhead == Z_NULL) {
    899      1.1.1.3  christos             put_byte(s, 0);
    900      1.1.1.3  christos             put_byte(s, 0);
    901      1.1.1.3  christos             put_byte(s, 0);
    902      1.1.1.3  christos             put_byte(s, 0);
    903      1.1.1.3  christos             put_byte(s, 0);
    904      1.1.1.3  christos             put_byte(s, s->level == 9 ? 2 :
    905      1.1.1.3  christos                      (s->strategy >= Z_HUFFMAN_ONLY || s->level < 2 ?
    906      1.1.1.3  christos                       4 : 0));
    907      1.1.1.3  christos             put_byte(s, OS_CODE);
    908          1.1  christos             s->status = BUSY_STATE;
    909          1.1  christos 
    910      1.1.1.3  christos             /* Compression must start with an empty pending buffer */
    911      1.1.1.3  christos             flush_pending(strm);
    912      1.1.1.3  christos             if (s->pending != 0) {
    913      1.1.1.3  christos                 s->last_flush = -1;
    914      1.1.1.3  christos                 return Z_OK;
    915          1.1  christos             }
    916      1.1.1.3  christos         }
    917      1.1.1.3  christos         else {
    918      1.1.1.3  christos             put_byte(s, (s->gzhead->text ? 1 : 0) +
    919      1.1.1.3  christos                      (s->gzhead->hcrc ? 2 : 0) +
    920      1.1.1.3  christos                      (s->gzhead->extra == Z_NULL ? 0 : 4) +
    921      1.1.1.3  christos                      (s->gzhead->name == Z_NULL ? 0 : 8) +
    922      1.1.1.3  christos                      (s->gzhead->comment == Z_NULL ? 0 : 16)
    923      1.1.1.3  christos                      );
    924      1.1.1.3  christos             put_byte(s, (Byte)(s->gzhead->time & 0xff));
    925      1.1.1.3  christos             put_byte(s, (Byte)((s->gzhead->time >> 8) & 0xff));
    926      1.1.1.3  christos             put_byte(s, (Byte)((s->gzhead->time >> 16) & 0xff));
    927      1.1.1.3  christos             put_byte(s, (Byte)((s->gzhead->time >> 24) & 0xff));
    928      1.1.1.3  christos             put_byte(s, s->level == 9 ? 2 :
    929      1.1.1.3  christos                      (s->strategy >= Z_HUFFMAN_ONLY || s->level < 2 ?
    930      1.1.1.3  christos                       4 : 0));
    931      1.1.1.3  christos             put_byte(s, s->gzhead->os & 0xff);
    932      1.1.1.3  christos             if (s->gzhead->extra != Z_NULL) {
    933      1.1.1.3  christos                 put_byte(s, s->gzhead->extra_len & 0xff);
    934      1.1.1.3  christos                 put_byte(s, (s->gzhead->extra_len >> 8) & 0xff);
    935      1.1.1.3  christos             }
    936      1.1.1.3  christos             if (s->gzhead->hcrc)
    937      1.1.1.3  christos                 strm->adler = crc32(strm->adler, s->pending_buf,
    938      1.1.1.3  christos                                     s->pending);
    939      1.1.1.3  christos             s->gzindex = 0;
    940      1.1.1.3  christos             s->status = EXTRA_STATE;
    941          1.1  christos         }
    942          1.1  christos     }
    943          1.1  christos     if (s->status == EXTRA_STATE) {
    944          1.1  christos         if (s->gzhead->extra != Z_NULL) {
    945      1.1.1.3  christos             ulg beg = s->pending;   /* start of bytes to update crc */
    946      1.1.1.3  christos             uInt left = (s->gzhead->extra_len & 0xffff) - s->gzindex;
    947      1.1.1.3  christos             while (s->pending + left > s->pending_buf_size) {
    948      1.1.1.3  christos                 uInt copy = s->pending_buf_size - s->pending;
    949      1.1.1.3  christos                 zmemcpy(s->pending_buf + s->pending,
    950      1.1.1.3  christos                         s->gzhead->extra + s->gzindex, copy);
    951      1.1.1.3  christos                 s->pending = s->pending_buf_size;
    952      1.1.1.3  christos                 HCRC_UPDATE(beg);
    953      1.1.1.3  christos                 s->gzindex += copy;
    954      1.1.1.3  christos                 flush_pending(strm);
    955      1.1.1.3  christos                 if (s->pending != 0) {
    956      1.1.1.3  christos                     s->last_flush = -1;
    957      1.1.1.3  christos                     return Z_OK;
    958          1.1  christos                 }
    959      1.1.1.3  christos                 beg = 0;
    960      1.1.1.3  christos                 left -= copy;
    961          1.1  christos             }
    962      1.1.1.3  christos             zmemcpy(s->pending_buf + s->pending,
    963      1.1.1.3  christos                     s->gzhead->extra + s->gzindex, left);
    964      1.1.1.3  christos             s->pending += left;
    965      1.1.1.3  christos             HCRC_UPDATE(beg);
    966      1.1.1.3  christos             s->gzindex = 0;
    967          1.1  christos         }
    968      1.1.1.3  christos         s->status = NAME_STATE;
    969          1.1  christos     }
    970          1.1  christos     if (s->status == NAME_STATE) {
    971          1.1  christos         if (s->gzhead->name != Z_NULL) {
    972      1.1.1.3  christos             ulg beg = s->pending;   /* start of bytes to update crc */
    973          1.1  christos             int val;
    974          1.1  christos             do {
    975          1.1  christos                 if (s->pending == s->pending_buf_size) {
    976      1.1.1.3  christos                     HCRC_UPDATE(beg);
    977          1.1  christos                     flush_pending(strm);
    978      1.1.1.3  christos                     if (s->pending != 0) {
    979      1.1.1.3  christos                         s->last_flush = -1;
    980      1.1.1.3  christos                         return Z_OK;
    981          1.1  christos                     }
    982      1.1.1.3  christos                     beg = 0;
    983          1.1  christos                 }
    984          1.1  christos                 val = s->gzhead->name[s->gzindex++];
    985          1.1  christos                 put_byte(s, val);
    986          1.1  christos             } while (val != 0);
    987      1.1.1.3  christos             HCRC_UPDATE(beg);
    988      1.1.1.3  christos             s->gzindex = 0;
    989          1.1  christos         }
    990      1.1.1.3  christos         s->status = COMMENT_STATE;
    991          1.1  christos     }
    992          1.1  christos     if (s->status == COMMENT_STATE) {
    993          1.1  christos         if (s->gzhead->comment != Z_NULL) {
    994      1.1.1.3  christos             ulg beg = s->pending;   /* start of bytes to update crc */
    995          1.1  christos             int val;
    996          1.1  christos             do {
    997          1.1  christos                 if (s->pending == s->pending_buf_size) {
    998      1.1.1.3  christos                     HCRC_UPDATE(beg);
    999          1.1  christos                     flush_pending(strm);
   1000      1.1.1.3  christos                     if (s->pending != 0) {
   1001      1.1.1.3  christos                         s->last_flush = -1;
   1002      1.1.1.3  christos                         return Z_OK;
   1003          1.1  christos                     }
   1004      1.1.1.3  christos                     beg = 0;
   1005          1.1  christos                 }
   1006          1.1  christos                 val = s->gzhead->comment[s->gzindex++];
   1007          1.1  christos                 put_byte(s, val);
   1008          1.1  christos             } while (val != 0);
   1009      1.1.1.3  christos             HCRC_UPDATE(beg);
   1010          1.1  christos         }
   1011      1.1.1.3  christos         s->status = HCRC_STATE;
   1012          1.1  christos     }
   1013          1.1  christos     if (s->status == HCRC_STATE) {
   1014          1.1  christos         if (s->gzhead->hcrc) {
   1015      1.1.1.3  christos             if (s->pending + 2 > s->pending_buf_size) {
   1016          1.1  christos                 flush_pending(strm);
   1017      1.1.1.3  christos                 if (s->pending != 0) {
   1018      1.1.1.3  christos                     s->last_flush = -1;
   1019      1.1.1.3  christos                     return Z_OK;
   1020      1.1.1.3  christos                 }
   1021          1.1  christos             }
   1022      1.1.1.3  christos             put_byte(s, (Byte)(strm->adler & 0xff));
   1023      1.1.1.3  christos             put_byte(s, (Byte)((strm->adler >> 8) & 0xff));
   1024      1.1.1.3  christos             strm->adler = crc32(0L, Z_NULL, 0);
   1025          1.1  christos         }
   1026      1.1.1.3  christos         s->status = BUSY_STATE;
   1027          1.1  christos 
   1028      1.1.1.3  christos         /* Compression must start with an empty pending buffer */
   1029          1.1  christos         flush_pending(strm);
   1030      1.1.1.3  christos         if (s->pending != 0) {
   1031          1.1  christos             s->last_flush = -1;
   1032          1.1  christos             return Z_OK;
   1033          1.1  christos         }
   1034          1.1  christos     }
   1035      1.1.1.3  christos #endif
   1036          1.1  christos 
   1037          1.1  christos     /* Start a new block or continue the current one.
   1038          1.1  christos      */
   1039          1.1  christos     if (strm->avail_in != 0 || s->lookahead != 0 ||
   1040          1.1  christos         (flush != Z_NO_FLUSH && s->status != FINISH_STATE)) {
   1041          1.1  christos         block_state bstate;
   1042          1.1  christos 
   1043      1.1.1.3  christos         bstate = s->level == 0 ? deflate_stored(s, flush) :
   1044      1.1.1.3  christos                  s->strategy == Z_HUFFMAN_ONLY ? deflate_huff(s, flush) :
   1045      1.1.1.3  christos                  s->strategy == Z_RLE ? deflate_rle(s, flush) :
   1046      1.1.1.3  christos                  (*(configuration_table[s->level].func))(s, flush);
   1047          1.1  christos 
   1048          1.1  christos         if (bstate == finish_started || bstate == finish_done) {
   1049          1.1  christos             s->status = FINISH_STATE;
   1050          1.1  christos         }
   1051          1.1  christos         if (bstate == need_more || bstate == finish_started) {
   1052          1.1  christos             if (strm->avail_out == 0) {
   1053          1.1  christos                 s->last_flush = -1; /* avoid BUF_ERROR next call, see above */
   1054          1.1  christos             }
   1055          1.1  christos             return Z_OK;
   1056          1.1  christos             /* If flush != Z_NO_FLUSH && avail_out == 0, the next call
   1057          1.1  christos              * of deflate should use the same flush parameter to make sure
   1058          1.1  christos              * that the flush is complete. So we don't have to output an
   1059          1.1  christos              * empty block here, this will be done at next call. This also
   1060          1.1  christos              * ensures that for a very small output buffer, we emit at most
   1061          1.1  christos              * one empty block.
   1062          1.1  christos              */
   1063          1.1  christos         }
   1064          1.1  christos         if (bstate == block_done) {
   1065          1.1  christos             if (flush == Z_PARTIAL_FLUSH) {
   1066          1.1  christos                 _tr_align(s);
   1067          1.1  christos             } else if (flush != Z_BLOCK) { /* FULL_FLUSH or SYNC_FLUSH */
   1068          1.1  christos                 _tr_stored_block(s, (char*)0, 0L, 0);
   1069          1.1  christos                 /* For a full flush, this empty block will be recognized
   1070          1.1  christos                  * as a special marker by inflate_sync().
   1071          1.1  christos                  */
   1072          1.1  christos                 if (flush == Z_FULL_FLUSH) {
   1073          1.1  christos                     CLEAR_HASH(s);             /* forget history */
   1074          1.1  christos                     if (s->lookahead == 0) {
   1075          1.1  christos                         s->strstart = 0;
   1076          1.1  christos                         s->block_start = 0L;
   1077          1.1  christos                         s->insert = 0;
   1078          1.1  christos                     }
   1079          1.1  christos                 }
   1080          1.1  christos             }
   1081          1.1  christos             flush_pending(strm);
   1082          1.1  christos             if (strm->avail_out == 0) {
   1083          1.1  christos               s->last_flush = -1; /* avoid BUF_ERROR at next call, see above */
   1084          1.1  christos               return Z_OK;
   1085          1.1  christos             }
   1086          1.1  christos         }
   1087          1.1  christos     }
   1088          1.1  christos 
   1089          1.1  christos     if (flush != Z_FINISH) return Z_OK;
   1090          1.1  christos     if (s->wrap <= 0) return Z_STREAM_END;
   1091          1.1  christos 
   1092          1.1  christos     /* Write the trailer */
   1093          1.1  christos #ifdef GZIP
   1094          1.1  christos     if (s->wrap == 2) {
   1095          1.1  christos         put_byte(s, (Byte)(strm->adler & 0xff));
   1096          1.1  christos         put_byte(s, (Byte)((strm->adler >> 8) & 0xff));
   1097          1.1  christos         put_byte(s, (Byte)((strm->adler >> 16) & 0xff));
   1098          1.1  christos         put_byte(s, (Byte)((strm->adler >> 24) & 0xff));
   1099          1.1  christos         put_byte(s, (Byte)(strm->total_in & 0xff));
   1100          1.1  christos         put_byte(s, (Byte)((strm->total_in >> 8) & 0xff));
   1101          1.1  christos         put_byte(s, (Byte)((strm->total_in >> 16) & 0xff));
   1102          1.1  christos         put_byte(s, (Byte)((strm->total_in >> 24) & 0xff));
   1103          1.1  christos     }
   1104          1.1  christos     else
   1105          1.1  christos #endif
   1106          1.1  christos     {
   1107          1.1  christos         putShortMSB(s, (uInt)(strm->adler >> 16));
   1108          1.1  christos         putShortMSB(s, (uInt)(strm->adler & 0xffff));
   1109          1.1  christos     }
   1110          1.1  christos     flush_pending(strm);
   1111          1.1  christos     /* If avail_out is zero, the application will call deflate again
   1112          1.1  christos      * to flush the rest.
   1113          1.1  christos      */
   1114          1.1  christos     if (s->wrap > 0) s->wrap = -s->wrap; /* write the trailer only once! */
   1115          1.1  christos     return s->pending != 0 ? Z_OK : Z_STREAM_END;
   1116          1.1  christos }
   1117          1.1  christos 
   1118          1.1  christos /* ========================================================================= */
   1119          1.1  christos int ZEXPORT deflateEnd (strm)
   1120          1.1  christos     z_streamp strm;
   1121          1.1  christos {
   1122          1.1  christos     int status;
   1123          1.1  christos 
   1124      1.1.1.3  christos     if (deflateStateCheck(strm)) return Z_STREAM_ERROR;
   1125          1.1  christos 
   1126          1.1  christos     status = strm->state->status;
   1127          1.1  christos 
   1128          1.1  christos     /* Deallocate in reverse order of allocations: */
   1129          1.1  christos     TRY_FREE(strm, strm->state->pending_buf);
   1130          1.1  christos     TRY_FREE(strm, strm->state->head);
   1131          1.1  christos     TRY_FREE(strm, strm->state->prev);
   1132          1.1  christos     TRY_FREE(strm, strm->state->window);
   1133          1.1  christos 
   1134          1.1  christos     ZFREE(strm, strm->state);
   1135          1.1  christos     strm->state = Z_NULL;
   1136          1.1  christos 
   1137          1.1  christos     return status == BUSY_STATE ? Z_DATA_ERROR : Z_OK;
   1138          1.1  christos }
   1139          1.1  christos 
   1140          1.1  christos /* =========================================================================
   1141          1.1  christos  * Copy the source state to the destination state.
   1142          1.1  christos  * To simplify the source, this is not supported for 16-bit MSDOS (which
   1143          1.1  christos  * doesn't have enough memory anyway to duplicate compression states).
   1144          1.1  christos  */
   1145          1.1  christos int ZEXPORT deflateCopy (dest, source)
   1146          1.1  christos     z_streamp dest;
   1147          1.1  christos     z_streamp source;
   1148          1.1  christos {
   1149          1.1  christos #ifdef MAXSEG_64K
   1150          1.1  christos     return Z_STREAM_ERROR;
   1151          1.1  christos #else
   1152          1.1  christos     deflate_state *ds;
   1153          1.1  christos     deflate_state *ss;
   1154          1.1  christos 
   1155          1.1  christos 
   1156      1.1.1.3  christos     if (deflateStateCheck(source) || dest == Z_NULL) {
   1157          1.1  christos         return Z_STREAM_ERROR;
   1158          1.1  christos     }
   1159          1.1  christos 
   1160          1.1  christos     ss = source->state;
   1161          1.1  christos 
   1162          1.1  christos     zmemcpy((voidpf)dest, (voidpf)source, sizeof(z_stream));
   1163          1.1  christos 
   1164          1.1  christos     ds = (deflate_state *) ZALLOC(dest, 1, sizeof(deflate_state));
   1165          1.1  christos     if (ds == Z_NULL) return Z_MEM_ERROR;
   1166          1.1  christos     dest->state = (struct internal_state FAR *) ds;
   1167          1.1  christos     zmemcpy((voidpf)ds, (voidpf)ss, sizeof(deflate_state));
   1168          1.1  christos     ds->strm = dest;
   1169          1.1  christos 
   1170          1.1  christos     ds->window = (Bytef *) ZALLOC(dest, ds->w_size, 2*sizeof(Byte));
   1171          1.1  christos     ds->prev   = (Posf *)  ZALLOC(dest, ds->w_size, sizeof(Pos));
   1172          1.1  christos     ds->head   = (Posf *)  ZALLOC(dest, ds->hash_size, sizeof(Pos));
   1173  1.1.1.4.2.1  perseant     ds->pending_buf = (uchf *) ZALLOC(dest, ds->lit_bufsize, 4);
   1174          1.1  christos 
   1175          1.1  christos     if (ds->window == Z_NULL || ds->prev == Z_NULL || ds->head == Z_NULL ||
   1176          1.1  christos         ds->pending_buf == Z_NULL) {
   1177          1.1  christos         deflateEnd (dest);
   1178          1.1  christos         return Z_MEM_ERROR;
   1179          1.1  christos     }
   1180          1.1  christos     /* following zmemcpy do not work for 16-bit MSDOS */
   1181          1.1  christos     zmemcpy(ds->window, ss->window, ds->w_size * 2 * sizeof(Byte));
   1182          1.1  christos     zmemcpy((voidpf)ds->prev, (voidpf)ss->prev, ds->w_size * sizeof(Pos));
   1183          1.1  christos     zmemcpy((voidpf)ds->head, (voidpf)ss->head, ds->hash_size * sizeof(Pos));
   1184          1.1  christos     zmemcpy(ds->pending_buf, ss->pending_buf, (uInt)ds->pending_buf_size);
   1185          1.1  christos 
   1186          1.1  christos     ds->pending_out = ds->pending_buf + (ss->pending_out - ss->pending_buf);
   1187  1.1.1.4.2.1  perseant     ds->sym_buf = ds->pending_buf + ds->lit_bufsize;
   1188          1.1  christos 
   1189          1.1  christos     ds->l_desc.dyn_tree = ds->dyn_ltree;
   1190          1.1  christos     ds->d_desc.dyn_tree = ds->dyn_dtree;
   1191          1.1  christos     ds->bl_desc.dyn_tree = ds->bl_tree;
   1192          1.1  christos 
   1193          1.1  christos     return Z_OK;
   1194          1.1  christos #endif /* MAXSEG_64K */
   1195          1.1  christos }
   1196          1.1  christos 
   1197          1.1  christos /* ===========================================================================
   1198          1.1  christos  * Read a new buffer from the current input stream, update the adler32
   1199          1.1  christos  * and total number of bytes read.  All deflate() input goes through
   1200          1.1  christos  * this function so some applications may wish to modify it to avoid
   1201          1.1  christos  * allocating a large strm->next_in buffer and copying from it.
   1202          1.1  christos  * (See also flush_pending()).
   1203          1.1  christos  */
   1204      1.1.1.3  christos local unsigned read_buf(strm, buf, size)
   1205          1.1  christos     z_streamp strm;
   1206          1.1  christos     Bytef *buf;
   1207          1.1  christos     unsigned size;
   1208          1.1  christos {
   1209          1.1  christos     unsigned len = strm->avail_in;
   1210          1.1  christos 
   1211          1.1  christos     if (len > size) len = size;
   1212          1.1  christos     if (len == 0) return 0;
   1213          1.1  christos 
   1214          1.1  christos     strm->avail_in  -= len;
   1215          1.1  christos 
   1216          1.1  christos     zmemcpy(buf, strm->next_in, len);
   1217          1.1  christos     if (strm->state->wrap == 1) {
   1218          1.1  christos         strm->adler = adler32(strm->adler, buf, len);
   1219          1.1  christos     }
   1220          1.1  christos #ifdef GZIP
   1221          1.1  christos     else if (strm->state->wrap == 2) {
   1222          1.1  christos         strm->adler = crc32(strm->adler, buf, len);
   1223          1.1  christos     }
   1224          1.1  christos #endif
   1225          1.1  christos     strm->next_in  += len;
   1226          1.1  christos     strm->total_in += len;
   1227          1.1  christos 
   1228      1.1.1.3  christos     return len;
   1229          1.1  christos }
   1230          1.1  christos 
   1231          1.1  christos /* ===========================================================================
   1232          1.1  christos  * Initialize the "longest match" routines for a new zlib stream
   1233          1.1  christos  */
   1234          1.1  christos local void lm_init (s)
   1235          1.1  christos     deflate_state *s;
   1236          1.1  christos {
   1237          1.1  christos     s->window_size = (ulg)2L*s->w_size;
   1238          1.1  christos 
   1239          1.1  christos     CLEAR_HASH(s);
   1240          1.1  christos 
   1241          1.1  christos     /* Set the default configuration parameters:
   1242          1.1  christos      */
   1243          1.1  christos     s->max_lazy_match   = configuration_table[s->level].max_lazy;
   1244          1.1  christos     s->good_match       = configuration_table[s->level].good_length;
   1245          1.1  christos     s->nice_match       = configuration_table[s->level].nice_length;
   1246          1.1  christos     s->max_chain_length = configuration_table[s->level].max_chain;
   1247          1.1  christos 
   1248          1.1  christos     s->strstart = 0;
   1249          1.1  christos     s->block_start = 0L;
   1250          1.1  christos     s->lookahead = 0;
   1251          1.1  christos     s->insert = 0;
   1252          1.1  christos     s->match_length = s->prev_length = MIN_MATCH-1;
   1253          1.1  christos     s->match_available = 0;
   1254          1.1  christos     s->ins_h = 0;
   1255          1.1  christos #ifndef FASTEST
   1256          1.1  christos #ifdef ASMV
   1257          1.1  christos     match_init(); /* initialize the asm code */
   1258          1.1  christos #endif
   1259          1.1  christos #endif
   1260          1.1  christos }
   1261          1.1  christos 
   1262          1.1  christos #ifndef FASTEST
   1263          1.1  christos /* ===========================================================================
   1264          1.1  christos  * Set match_start to the longest match starting at the given string and
   1265          1.1  christos  * return its length. Matches shorter or equal to prev_length are discarded,
   1266          1.1  christos  * in which case the result is equal to prev_length and match_start is
   1267          1.1  christos  * garbage.
   1268          1.1  christos  * IN assertions: cur_match is the head of the hash chain for the current
   1269          1.1  christos  *   string (strstart) and its distance is <= MAX_DIST, and prev_length >= 1
   1270          1.1  christos  * OUT assertion: the match length is not greater than s->lookahead.
   1271          1.1  christos  */
   1272          1.1  christos #ifndef ASMV
   1273          1.1  christos /* For 80x86 and 680x0, an optimized version will be provided in match.asm or
   1274          1.1  christos  * match.S. The code will be functionally equivalent.
   1275          1.1  christos  */
   1276          1.1  christos local uInt longest_match(s, cur_match)
   1277          1.1  christos     deflate_state *s;
   1278          1.1  christos     IPos cur_match;                             /* current match */
   1279          1.1  christos {
   1280          1.1  christos     unsigned chain_length = s->max_chain_length;/* max hash chain length */
   1281          1.1  christos     register Bytef *scan = s->window + s->strstart; /* current string */
   1282      1.1.1.3  christos     register Bytef *match;                      /* matched string */
   1283          1.1  christos     register int len;                           /* length of current match */
   1284      1.1.1.3  christos     int best_len = (int)s->prev_length;         /* best match length so far */
   1285          1.1  christos     int nice_match = s->nice_match;             /* stop if match long enough */
   1286          1.1  christos     IPos limit = s->strstart > (IPos)MAX_DIST(s) ?
   1287          1.1  christos         s->strstart - (IPos)MAX_DIST(s) : NIL;
   1288          1.1  christos     /* Stop when cur_match becomes <= limit. To simplify the code,
   1289          1.1  christos      * we prevent matches with the string of window index 0.
   1290          1.1  christos      */
   1291          1.1  christos     Posf *prev = s->prev;
   1292          1.1  christos     uInt wmask = s->w_mask;
   1293          1.1  christos 
   1294          1.1  christos #ifdef UNALIGNED_OK
   1295          1.1  christos     /* Compare two bytes at a time. Note: this is not always beneficial.
   1296          1.1  christos      * Try with and without -DUNALIGNED_OK to check.
   1297          1.1  christos      */
   1298          1.1  christos     register Bytef *strend = s->window + s->strstart + MAX_MATCH - 1;
   1299          1.1  christos     register ush scan_start = *(ushf*)scan;
   1300          1.1  christos     register ush scan_end   = *(ushf*)(scan+best_len-1);
   1301          1.1  christos #else
   1302          1.1  christos     register Bytef *strend = s->window + s->strstart + MAX_MATCH;
   1303          1.1  christos     register Byte scan_end1  = scan[best_len-1];
   1304          1.1  christos     register Byte scan_end   = scan[best_len];
   1305          1.1  christos #endif
   1306          1.1  christos 
   1307          1.1  christos     /* The code is optimized for HASH_BITS >= 8 and MAX_MATCH-2 multiple of 16.
   1308          1.1  christos      * It is easy to get rid of this optimization if necessary.
   1309          1.1  christos      */
   1310          1.1  christos     Assert(s->hash_bits >= 8 && MAX_MATCH == 258, "Code too clever");
   1311          1.1  christos 
   1312          1.1  christos     /* Do not waste too much time if we already have a good match: */
   1313          1.1  christos     if (s->prev_length >= s->good_match) {
   1314          1.1  christos         chain_length >>= 2;
   1315          1.1  christos     }
   1316          1.1  christos     /* Do not look for matches beyond the end of the input. This is necessary
   1317          1.1  christos      * to make deflate deterministic.
   1318          1.1  christos      */
   1319      1.1.1.3  christos     if ((uInt)nice_match > s->lookahead) nice_match = (int)s->lookahead;
   1320          1.1  christos 
   1321          1.1  christos     Assert((ulg)s->strstart <= s->window_size-MIN_LOOKAHEAD, "need lookahead");
   1322          1.1  christos 
   1323          1.1  christos     do {
   1324          1.1  christos         Assert(cur_match < s->strstart, "no future");
   1325          1.1  christos         match = s->window + cur_match;
   1326          1.1  christos 
   1327          1.1  christos         /* Skip to next match if the match length cannot increase
   1328          1.1  christos          * or if the match length is less than 2.  Note that the checks below
   1329          1.1  christos          * for insufficient lookahead only occur occasionally for performance
   1330          1.1  christos          * reasons.  Therefore uninitialized memory will be accessed, and
   1331          1.1  christos          * conditional jumps will be made that depend on those values.
   1332          1.1  christos          * However the length of the match is limited to the lookahead, so
   1333          1.1  christos          * the output of deflate is not affected by the uninitialized values.
   1334          1.1  christos          */
   1335          1.1  christos #if (defined(UNALIGNED_OK) && MAX_MATCH == 258)
   1336          1.1  christos         /* This code assumes sizeof(unsigned short) == 2. Do not use
   1337          1.1  christos          * UNALIGNED_OK if your compiler uses a different size.
   1338          1.1  christos          */
   1339          1.1  christos         if (*(ushf*)(match+best_len-1) != scan_end ||
   1340          1.1  christos             *(ushf*)match != scan_start) continue;
   1341          1.1  christos 
   1342          1.1  christos         /* It is not necessary to compare scan[2] and match[2] since they are
   1343          1.1  christos          * always equal when the other bytes match, given that the hash keys
   1344          1.1  christos          * are equal and that HASH_BITS >= 8. Compare 2 bytes at a time at
   1345          1.1  christos          * strstart+3, +5, ... up to strstart+257. We check for insufficient
   1346          1.1  christos          * lookahead only every 4th comparison; the 128th check will be made
   1347          1.1  christos          * at strstart+257. If MAX_MATCH-2 is not a multiple of 8, it is
   1348          1.1  christos          * necessary to put more guard bytes at the end of the window, or
   1349          1.1  christos          * to check more often for insufficient lookahead.
   1350          1.1  christos          */
   1351          1.1  christos         Assert(scan[2] == match[2], "scan[2]?");
   1352          1.1  christos         scan++, match++;
   1353          1.1  christos         do {
   1354          1.1  christos         } while (*(ushf*)(scan+=2) == *(ushf*)(match+=2) &&
   1355          1.1  christos                  *(ushf*)(scan+=2) == *(ushf*)(match+=2) &&
   1356          1.1  christos                  *(ushf*)(scan+=2) == *(ushf*)(match+=2) &&
   1357          1.1  christos                  *(ushf*)(scan+=2) == *(ushf*)(match+=2) &&
   1358          1.1  christos                  scan < strend);
   1359          1.1  christos         /* The funny "do {}" generates better code on most compilers */
   1360          1.1  christos 
   1361          1.1  christos         /* Here, scan <= window+strstart+257 */
   1362          1.1  christos         Assert(scan <= s->window+(unsigned)(s->window_size-1), "wild scan");
   1363          1.1  christos         if (*scan == *match) scan++;
   1364          1.1  christos 
   1365          1.1  christos         len = (MAX_MATCH - 1) - (int)(strend-scan);
   1366          1.1  christos         scan = strend - (MAX_MATCH-1);
   1367          1.1  christos 
   1368          1.1  christos #else /* UNALIGNED_OK */
   1369          1.1  christos 
   1370          1.1  christos         if (match[best_len]   != scan_end  ||
   1371          1.1  christos             match[best_len-1] != scan_end1 ||
   1372          1.1  christos             *match            != *scan     ||
   1373          1.1  christos             *++match          != scan[1])      continue;
   1374          1.1  christos 
   1375          1.1  christos         /* The check at best_len-1 can be removed because it will be made
   1376          1.1  christos          * again later. (This heuristic is not always a win.)
   1377          1.1  christos          * It is not necessary to compare scan[2] and match[2] since they
   1378          1.1  christos          * are always equal when the other bytes match, given that
   1379          1.1  christos          * the hash keys are equal and that HASH_BITS >= 8.
   1380          1.1  christos          */
   1381          1.1  christos         scan += 2, match++;
   1382          1.1  christos         Assert(*scan == *match, "match[2]?");
   1383          1.1  christos 
   1384          1.1  christos         /* We check for insufficient lookahead only every 8th comparison;
   1385          1.1  christos          * the 256th check will be made at strstart+258.
   1386          1.1  christos          */
   1387          1.1  christos         do {
   1388          1.1  christos         } while (*++scan == *++match && *++scan == *++match &&
   1389          1.1  christos                  *++scan == *++match && *++scan == *++match &&
   1390          1.1  christos                  *++scan == *++match && *++scan == *++match &&
   1391          1.1  christos                  *++scan == *++match && *++scan == *++match &&
   1392          1.1  christos                  scan < strend);
   1393          1.1  christos 
   1394          1.1  christos         Assert(scan <= s->window+(unsigned)(s->window_size-1), "wild scan");
   1395          1.1  christos 
   1396          1.1  christos         len = MAX_MATCH - (int)(strend - scan);
   1397          1.1  christos         scan = strend - MAX_MATCH;
   1398          1.1  christos 
   1399          1.1  christos #endif /* UNALIGNED_OK */
   1400          1.1  christos 
   1401          1.1  christos         if (len > best_len) {
   1402          1.1  christos             s->match_start = cur_match;
   1403          1.1  christos             best_len = len;
   1404          1.1  christos             if (len >= nice_match) break;
   1405          1.1  christos #ifdef UNALIGNED_OK
   1406          1.1  christos             scan_end = *(ushf*)(scan+best_len-1);
   1407          1.1  christos #else
   1408          1.1  christos             scan_end1  = scan[best_len-1];
   1409          1.1  christos             scan_end   = scan[best_len];
   1410          1.1  christos #endif
   1411          1.1  christos         }
   1412          1.1  christos     } while ((cur_match = prev[cur_match & wmask]) > limit
   1413          1.1  christos              && --chain_length != 0);
   1414          1.1  christos 
   1415          1.1  christos     if ((uInt)best_len <= s->lookahead) return (uInt)best_len;
   1416          1.1  christos     return s->lookahead;
   1417          1.1  christos }
   1418          1.1  christos #endif /* ASMV */
   1419          1.1  christos 
   1420          1.1  christos #else /* FASTEST */
   1421          1.1  christos 
   1422          1.1  christos /* ---------------------------------------------------------------------------
   1423          1.1  christos  * Optimized version for FASTEST only
   1424          1.1  christos  */
   1425          1.1  christos local uInt longest_match(s, cur_match)
   1426          1.1  christos     deflate_state *s;
   1427          1.1  christos     IPos cur_match;                             /* current match */
   1428          1.1  christos {
   1429          1.1  christos     register Bytef *scan = s->window + s->strstart; /* current string */
   1430          1.1  christos     register Bytef *match;                       /* matched string */
   1431          1.1  christos     register int len;                           /* length of current match */
   1432          1.1  christos     register Bytef *strend = s->window + s->strstart + MAX_MATCH;
   1433          1.1  christos 
   1434          1.1  christos     /* The code is optimized for HASH_BITS >= 8 and MAX_MATCH-2 multiple of 16.
   1435          1.1  christos      * It is easy to get rid of this optimization if necessary.
   1436          1.1  christos      */
   1437          1.1  christos     Assert(s->hash_bits >= 8 && MAX_MATCH == 258, "Code too clever");
   1438          1.1  christos 
   1439          1.1  christos     Assert((ulg)s->strstart <= s->window_size-MIN_LOOKAHEAD, "need lookahead");
   1440          1.1  christos 
   1441          1.1  christos     Assert(cur_match < s->strstart, "no future");
   1442          1.1  christos 
   1443          1.1  christos     match = s->window + cur_match;
   1444          1.1  christos 
   1445          1.1  christos     /* Return failure if the match length is less than 2:
   1446          1.1  christos      */
   1447          1.1  christos     if (match[0] != scan[0] || match[1] != scan[1]) return MIN_MATCH-1;
   1448          1.1  christos 
   1449          1.1  christos     /* The check at best_len-1 can be removed because it will be made
   1450          1.1  christos      * again later. (This heuristic is not always a win.)
   1451          1.1  christos      * It is not necessary to compare scan[2] and match[2] since they
   1452          1.1  christos      * are always equal when the other bytes match, given that
   1453          1.1  christos      * the hash keys are equal and that HASH_BITS >= 8.
   1454          1.1  christos      */
   1455          1.1  christos     scan += 2, match += 2;
   1456          1.1  christos     Assert(*scan == *match, "match[2]?");
   1457          1.1  christos 
   1458          1.1  christos     /* We check for insufficient lookahead only every 8th comparison;
   1459          1.1  christos      * the 256th check will be made at strstart+258.
   1460          1.1  christos      */
   1461          1.1  christos     do {
   1462          1.1  christos     } while (*++scan == *++match && *++scan == *++match &&
   1463          1.1  christos              *++scan == *++match && *++scan == *++match &&
   1464          1.1  christos              *++scan == *++match && *++scan == *++match &&
   1465          1.1  christos              *++scan == *++match && *++scan == *++match &&
   1466          1.1  christos              scan < strend);
   1467          1.1  christos 
   1468          1.1  christos     Assert(scan <= s->window+(unsigned)(s->window_size-1), "wild scan");
   1469          1.1  christos 
   1470          1.1  christos     len = MAX_MATCH - (int)(strend - scan);
   1471          1.1  christos 
   1472          1.1  christos     if (len < MIN_MATCH) return MIN_MATCH - 1;
   1473          1.1  christos 
   1474          1.1  christos     s->match_start = cur_match;
   1475          1.1  christos     return (uInt)len <= s->lookahead ? (uInt)len : s->lookahead;
   1476          1.1  christos }
   1477          1.1  christos 
   1478          1.1  christos #endif /* FASTEST */
   1479          1.1  christos 
   1480      1.1.1.3  christos #ifdef ZLIB_DEBUG
   1481      1.1.1.3  christos 
   1482      1.1.1.3  christos #define EQUAL 0
   1483      1.1.1.3  christos /* result of memcmp for equal strings */
   1484      1.1.1.3  christos 
   1485          1.1  christos /* ===========================================================================
   1486          1.1  christos  * Check that the match at match_start is indeed a match.
   1487          1.1  christos  */
   1488          1.1  christos local void check_match(s, start, match, length)
   1489          1.1  christos     deflate_state *s;
   1490          1.1  christos     IPos start, match;
   1491          1.1  christos     int length;
   1492          1.1  christos {
   1493          1.1  christos     /* check that the match is indeed a match */
   1494          1.1  christos     if (zmemcmp(s->window + match,
   1495          1.1  christos                 s->window + start, length) != EQUAL) {
   1496          1.1  christos         fprintf(stderr, " start %u, match %u, length %d\n",
   1497          1.1  christos                 start, match, length);
   1498          1.1  christos         do {
   1499          1.1  christos             fprintf(stderr, "%c%c", s->window[match++], s->window[start++]);
   1500          1.1  christos         } while (--length != 0);
   1501          1.1  christos         z_error("invalid match");
   1502          1.1  christos     }
   1503          1.1  christos     if (z_verbose > 1) {
   1504          1.1  christos         fprintf(stderr,"\\[%d,%d]", start-match, length);
   1505          1.1  christos         do { putc(s->window[start++], stderr); } while (--length != 0);
   1506          1.1  christos     }
   1507          1.1  christos }
   1508          1.1  christos #else
   1509          1.1  christos #  define check_match(s, start, match, length)
   1510      1.1.1.3  christos #endif /* ZLIB_DEBUG */
   1511          1.1  christos 
   1512          1.1  christos /* ===========================================================================
   1513          1.1  christos  * Fill the window when the lookahead becomes insufficient.
   1514          1.1  christos  * Updates strstart and lookahead.
   1515          1.1  christos  *
   1516          1.1  christos  * IN assertion: lookahead < MIN_LOOKAHEAD
   1517          1.1  christos  * OUT assertions: strstart <= window_size-MIN_LOOKAHEAD
   1518          1.1  christos  *    At least one byte has been read, or avail_in == 0; reads are
   1519          1.1  christos  *    performed for at least two bytes (required for the zip translate_eol
   1520          1.1  christos  *    option -- not supported here).
   1521          1.1  christos  */
   1522          1.1  christos local void fill_window(s)
   1523          1.1  christos     deflate_state *s;
   1524          1.1  christos {
   1525      1.1.1.3  christos     unsigned n;
   1526          1.1  christos     unsigned more;    /* Amount of free space at the end of the window. */
   1527          1.1  christos     uInt wsize = s->w_size;
   1528          1.1  christos 
   1529          1.1  christos     Assert(s->lookahead < MIN_LOOKAHEAD, "already enough lookahead");
   1530          1.1  christos 
   1531          1.1  christos     do {
   1532          1.1  christos         more = (unsigned)(s->window_size -(ulg)s->lookahead -(ulg)s->strstart);
   1533          1.1  christos 
   1534          1.1  christos         /* Deal with !@#$% 64K limit: */
   1535          1.1  christos         if (sizeof(int) <= 2) {
   1536          1.1  christos             if (more == 0 && s->strstart == 0 && s->lookahead == 0) {
   1537          1.1  christos                 more = wsize;
   1538          1.1  christos 
   1539          1.1  christos             } else if (more == (unsigned)(-1)) {
   1540          1.1  christos                 /* Very unlikely, but possible on 16 bit machine if
   1541          1.1  christos                  * strstart == 0 && lookahead == 1 (input done a byte at time)
   1542          1.1  christos                  */
   1543          1.1  christos                 more--;
   1544          1.1  christos             }
   1545          1.1  christos         }
   1546          1.1  christos 
   1547          1.1  christos         /* If the window is almost full and there is insufficient lookahead,
   1548          1.1  christos          * move the upper half to the lower one to make room in the upper half.
   1549          1.1  christos          */
   1550          1.1  christos         if (s->strstart >= wsize+MAX_DIST(s)) {
   1551          1.1  christos 
   1552      1.1.1.3  christos             zmemcpy(s->window, s->window+wsize, (unsigned)wsize - more);
   1553          1.1  christos             s->match_start -= wsize;
   1554          1.1  christos             s->strstart    -= wsize; /* we now have strstart >= MAX_DIST */
   1555          1.1  christos             s->block_start -= (long) wsize;
   1556  1.1.1.4.2.1  perseant             if (s->insert > s->strstart)
   1557  1.1.1.4.2.1  perseant                 s->insert = s->strstart;
   1558      1.1.1.3  christos             slide_hash(s);
   1559          1.1  christos             more += wsize;
   1560          1.1  christos         }
   1561          1.1  christos         if (s->strm->avail_in == 0) break;
   1562          1.1  christos 
   1563          1.1  christos         /* If there was no sliding:
   1564          1.1  christos          *    strstart <= WSIZE+MAX_DIST-1 && lookahead <= MIN_LOOKAHEAD - 1 &&
   1565          1.1  christos          *    more == window_size - lookahead - strstart
   1566          1.1  christos          * => more >= window_size - (MIN_LOOKAHEAD-1 + WSIZE + MAX_DIST-1)
   1567          1.1  christos          * => more >= window_size - 2*WSIZE + 2
   1568          1.1  christos          * In the BIG_MEM or MMAP case (not yet supported),
   1569          1.1  christos          *   window_size == input_size + MIN_LOOKAHEAD  &&
   1570          1.1  christos          *   strstart + s->lookahead <= input_size => more >= MIN_LOOKAHEAD.
   1571          1.1  christos          * Otherwise, window_size == 2*WSIZE so more >= 2.
   1572          1.1  christos          * If there was sliding, more >= WSIZE. So in all cases, more >= 2.
   1573          1.1  christos          */
   1574          1.1  christos         Assert(more >= 2, "more < 2");
   1575          1.1  christos 
   1576          1.1  christos         n = read_buf(s->strm, s->window + s->strstart + s->lookahead, more);
   1577          1.1  christos         s->lookahead += n;
   1578          1.1  christos 
   1579          1.1  christos         /* Initialize the hash value now that we have some input: */
   1580          1.1  christos         if (s->lookahead + s->insert >= MIN_MATCH) {
   1581          1.1  christos             uInt str = s->strstart - s->insert;
   1582          1.1  christos             s->ins_h = s->window[str];
   1583          1.1  christos             UPDATE_HASH(s, s->ins_h, s->window[str + 1]);
   1584          1.1  christos #if MIN_MATCH != 3
   1585          1.1  christos             Call UPDATE_HASH() MIN_MATCH-3 more times
   1586          1.1  christos #endif
   1587          1.1  christos             while (s->insert) {
   1588          1.1  christos                 UPDATE_HASH(s, s->ins_h, s->window[str + MIN_MATCH-1]);
   1589          1.1  christos #ifndef FASTEST
   1590          1.1  christos                 s->prev[str & s->w_mask] = s->head[s->ins_h];
   1591          1.1  christos #endif
   1592          1.1  christos                 s->head[s->ins_h] = (Pos)str;
   1593          1.1  christos                 str++;
   1594          1.1  christos                 s->insert--;
   1595          1.1  christos                 if (s->lookahead + s->insert < MIN_MATCH)
   1596          1.1  christos                     break;
   1597          1.1  christos             }
   1598          1.1  christos         }
   1599          1.1  christos         /* If the whole input has less than MIN_MATCH bytes, ins_h is garbage,
   1600          1.1  christos          * but this is not important since only literal bytes will be emitted.
   1601          1.1  christos          */
   1602          1.1  christos 
   1603          1.1  christos     } while (s->lookahead < MIN_LOOKAHEAD && s->strm->avail_in != 0);
   1604          1.1  christos 
   1605          1.1  christos     /* If the WIN_INIT bytes after the end of the current data have never been
   1606          1.1  christos      * written, then zero those bytes in order to avoid memory check reports of
   1607          1.1  christos      * the use of uninitialized (or uninitialised as Julian writes) bytes by
   1608          1.1  christos      * the longest match routines.  Update the high water mark for the next
   1609          1.1  christos      * time through here.  WIN_INIT is set to MAX_MATCH since the longest match
   1610          1.1  christos      * routines allow scanning to strstart + MAX_MATCH, ignoring lookahead.
   1611          1.1  christos      */
   1612          1.1  christos     if (s->high_water < s->window_size) {
   1613          1.1  christos         ulg curr = s->strstart + (ulg)(s->lookahead);
   1614          1.1  christos         ulg init;
   1615          1.1  christos 
   1616          1.1  christos         if (s->high_water < curr) {
   1617          1.1  christos             /* Previous high water mark below current data -- zero WIN_INIT
   1618          1.1  christos              * bytes or up to end of window, whichever is less.
   1619          1.1  christos              */
   1620          1.1  christos             init = s->window_size - curr;
   1621          1.1  christos             if (init > WIN_INIT)
   1622          1.1  christos                 init = WIN_INIT;
   1623          1.1  christos             zmemzero(s->window + curr, (unsigned)init);
   1624          1.1  christos             s->high_water = curr + init;
   1625          1.1  christos         }
   1626          1.1  christos         else if (s->high_water < (ulg)curr + WIN_INIT) {
   1627          1.1  christos             /* High water mark at or above current data, but below current data
   1628          1.1  christos              * plus WIN_INIT -- zero out to current data plus WIN_INIT, or up
   1629          1.1  christos              * to end of window, whichever is less.
   1630          1.1  christos              */
   1631          1.1  christos             init = (ulg)curr + WIN_INIT - s->high_water;
   1632          1.1  christos             if (init > s->window_size - s->high_water)
   1633          1.1  christos                 init = s->window_size - s->high_water;
   1634          1.1  christos             zmemzero(s->window + s->high_water, (unsigned)init);
   1635          1.1  christos             s->high_water += init;
   1636          1.1  christos         }
   1637          1.1  christos     }
   1638          1.1  christos 
   1639          1.1  christos     Assert((ulg)s->strstart <= s->window_size - MIN_LOOKAHEAD,
   1640          1.1  christos            "not enough room for search");
   1641          1.1  christos }
   1642          1.1  christos 
   1643          1.1  christos /* ===========================================================================
   1644          1.1  christos  * Flush the current block, with given end-of-file flag.
   1645          1.1  christos  * IN assertion: strstart is set to the end of the current match.
   1646          1.1  christos  */
   1647          1.1  christos #define FLUSH_BLOCK_ONLY(s, last) { \
   1648          1.1  christos    _tr_flush_block(s, (s->block_start >= 0L ? \
   1649          1.1  christos                    (charf *)&s->window[(unsigned)s->block_start] : \
   1650          1.1  christos                    (charf *)Z_NULL), \
   1651          1.1  christos                 (ulg)((long)s->strstart - s->block_start), \
   1652          1.1  christos                 (last)); \
   1653          1.1  christos    s->block_start = s->strstart; \
   1654          1.1  christos    flush_pending(s->strm); \
   1655          1.1  christos    Tracev((stderr,"[FLUSH]")); \
   1656          1.1  christos }
   1657          1.1  christos 
   1658          1.1  christos /* Same but force premature exit if necessary. */
   1659          1.1  christos #define FLUSH_BLOCK(s, last) { \
   1660          1.1  christos    FLUSH_BLOCK_ONLY(s, last); \
   1661          1.1  christos    if (s->strm->avail_out == 0) return (last) ? finish_started : need_more; \
   1662          1.1  christos }
   1663          1.1  christos 
   1664      1.1.1.3  christos /* Maximum stored block length in deflate format (not including header). */
   1665      1.1.1.3  christos #define MAX_STORED 65535
   1666      1.1.1.3  christos 
   1667      1.1.1.3  christos /* Minimum of a and b. */
   1668      1.1.1.3  christos #define MIN(a, b) ((a) > (b) ? (b) : (a))
   1669      1.1.1.3  christos 
   1670          1.1  christos /* ===========================================================================
   1671          1.1  christos  * Copy without compression as much as possible from the input stream, return
   1672          1.1  christos  * the current block state.
   1673      1.1.1.3  christos  *
   1674      1.1.1.3  christos  * In case deflateParams() is used to later switch to a non-zero compression
   1675      1.1.1.3  christos  * level, s->matches (otherwise unused when storing) keeps track of the number
   1676      1.1.1.3  christos  * of hash table slides to perform. If s->matches is 1, then one hash table
   1677      1.1.1.3  christos  * slide will be done when switching. If s->matches is 2, the maximum value
   1678      1.1.1.3  christos  * allowed here, then the hash table will be cleared, since two or more slides
   1679      1.1.1.3  christos  * is the same as a clear.
   1680      1.1.1.3  christos  *
   1681      1.1.1.3  christos  * deflate_stored() is written to minimize the number of times an input byte is
   1682      1.1.1.3  christos  * copied. It is most efficient with large input and output buffers, which
   1683      1.1.1.3  christos  * maximizes the opportunites to have a single copy from next_in to next_out.
   1684          1.1  christos  */
   1685          1.1  christos local block_state deflate_stored(s, flush)
   1686          1.1  christos     deflate_state *s;
   1687          1.1  christos     int flush;
   1688          1.1  christos {
   1689      1.1.1.3  christos     /* Smallest worthy block size when not flushing or finishing. By default
   1690      1.1.1.3  christos      * this is 32K. This can be as small as 507 bytes for memLevel == 1. For
   1691      1.1.1.3  christos      * large input and output buffers, the stored block size will be larger.
   1692          1.1  christos      */
   1693      1.1.1.3  christos     unsigned min_block = MIN(s->pending_buf_size - 5, s->w_size);
   1694          1.1  christos 
   1695      1.1.1.3  christos     /* Copy as many min_block or larger stored blocks directly to next_out as
   1696      1.1.1.3  christos      * possible. If flushing, copy the remaining available input to next_out as
   1697      1.1.1.3  christos      * stored blocks, if there is enough space.
   1698      1.1.1.3  christos      */
   1699      1.1.1.3  christos     unsigned len, left, have, last = 0;
   1700      1.1.1.3  christos     unsigned used = s->strm->avail_in;
   1701      1.1.1.3  christos     do {
   1702      1.1.1.3  christos         /* Set len to the maximum size block that we can copy directly with the
   1703      1.1.1.3  christos          * available input data and output space. Set left to how much of that
   1704      1.1.1.3  christos          * would be copied from what's left in the window.
   1705      1.1.1.3  christos          */
   1706      1.1.1.3  christos         len = MAX_STORED;       /* maximum deflate stored block length */
   1707      1.1.1.3  christos         have = (s->bi_valid + 42) >> 3;         /* number of header bytes */
   1708      1.1.1.3  christos         if (s->strm->avail_out < have)          /* need room for header */
   1709      1.1.1.3  christos             break;
   1710      1.1.1.3  christos             /* maximum stored block length that will fit in avail_out: */
   1711      1.1.1.3  christos         have = s->strm->avail_out - have;
   1712      1.1.1.3  christos         left = s->strstart - s->block_start;    /* bytes left in window */
   1713      1.1.1.3  christos         if (len > (ulg)left + s->strm->avail_in)
   1714      1.1.1.3  christos             len = left + s->strm->avail_in;     /* limit len to the input */
   1715      1.1.1.3  christos         if (len > have)
   1716      1.1.1.3  christos             len = have;                         /* limit len to the output */
   1717      1.1.1.3  christos 
   1718      1.1.1.3  christos         /* If the stored block would be less than min_block in length, or if
   1719      1.1.1.3  christos          * unable to copy all of the available input when flushing, then try
   1720      1.1.1.3  christos          * copying to the window and the pending buffer instead. Also don't
   1721      1.1.1.3  christos          * write an empty block when flushing -- deflate() does that.
   1722      1.1.1.3  christos          */
   1723      1.1.1.3  christos         if (len < min_block && ((len == 0 && flush != Z_FINISH) ||
   1724      1.1.1.3  christos                                 flush == Z_NO_FLUSH ||
   1725      1.1.1.3  christos                                 len != left + s->strm->avail_in))
   1726      1.1.1.3  christos             break;
   1727          1.1  christos 
   1728      1.1.1.3  christos         /* Make a dummy stored block in pending to get the header bytes,
   1729      1.1.1.3  christos          * including any pending bits. This also updates the debugging counts.
   1730      1.1.1.3  christos          */
   1731      1.1.1.3  christos         last = flush == Z_FINISH && len == left + s->strm->avail_in ? 1 : 0;
   1732      1.1.1.3  christos         _tr_stored_block(s, (char *)0, 0L, last);
   1733          1.1  christos 
   1734      1.1.1.3  christos         /* Replace the lengths in the dummy stored block with len. */
   1735      1.1.1.3  christos         s->pending_buf[s->pending - 4] = len;
   1736      1.1.1.3  christos         s->pending_buf[s->pending - 3] = len >> 8;
   1737      1.1.1.3  christos         s->pending_buf[s->pending - 2] = ~len;
   1738      1.1.1.3  christos         s->pending_buf[s->pending - 1] = ~len >> 8;
   1739      1.1.1.3  christos 
   1740      1.1.1.3  christos         /* Write the stored block header bytes. */
   1741      1.1.1.3  christos         flush_pending(s->strm);
   1742      1.1.1.3  christos 
   1743      1.1.1.3  christos #ifdef ZLIB_DEBUG
   1744      1.1.1.3  christos         /* Update debugging counts for the data about to be copied. */
   1745      1.1.1.3  christos         s->compressed_len += len << 3;
   1746      1.1.1.3  christos         s->bits_sent += len << 3;
   1747      1.1.1.3  christos #endif
   1748      1.1.1.3  christos 
   1749      1.1.1.3  christos         /* Copy uncompressed bytes from the window to next_out. */
   1750      1.1.1.3  christos         if (left) {
   1751      1.1.1.3  christos             if (left > len)
   1752      1.1.1.3  christos                 left = len;
   1753      1.1.1.3  christos             zmemcpy(s->strm->next_out, s->window + s->block_start, left);
   1754      1.1.1.3  christos             s->strm->next_out += left;
   1755      1.1.1.3  christos             s->strm->avail_out -= left;
   1756      1.1.1.3  christos             s->strm->total_out += left;
   1757      1.1.1.3  christos             s->block_start += left;
   1758      1.1.1.3  christos             len -= left;
   1759          1.1  christos         }
   1760          1.1  christos 
   1761      1.1.1.3  christos         /* Copy uncompressed bytes directly from next_in to next_out, updating
   1762      1.1.1.3  christos          * the check value.
   1763      1.1.1.3  christos          */
   1764      1.1.1.3  christos         if (len) {
   1765      1.1.1.3  christos             read_buf(s->strm, s->strm->next_out, len);
   1766      1.1.1.3  christos             s->strm->next_out += len;
   1767      1.1.1.3  christos             s->strm->avail_out -= len;
   1768      1.1.1.3  christos             s->strm->total_out += len;
   1769      1.1.1.3  christos         }
   1770      1.1.1.3  christos     } while (last == 0);
   1771      1.1.1.3  christos 
   1772      1.1.1.3  christos     /* Update the sliding window with the last s->w_size bytes of the copied
   1773      1.1.1.3  christos      * data, or append all of the copied data to the existing window if less
   1774      1.1.1.3  christos      * than s->w_size bytes were copied. Also update the number of bytes to
   1775      1.1.1.3  christos      * insert in the hash tables, in the event that deflateParams() switches to
   1776      1.1.1.3  christos      * a non-zero compression level.
   1777      1.1.1.3  christos      */
   1778      1.1.1.3  christos     used -= s->strm->avail_in;      /* number of input bytes directly copied */
   1779      1.1.1.3  christos     if (used) {
   1780      1.1.1.3  christos         /* If any input was used, then no unused input remains in the window,
   1781      1.1.1.3  christos          * therefore s->block_start == s->strstart.
   1782          1.1  christos          */
   1783      1.1.1.3  christos         if (used >= s->w_size) {    /* supplant the previous history */
   1784      1.1.1.3  christos             s->matches = 2;         /* clear hash */
   1785      1.1.1.3  christos             zmemcpy(s->window, s->strm->next_in - s->w_size, s->w_size);
   1786      1.1.1.3  christos             s->strstart = s->w_size;
   1787  1.1.1.4.2.1  perseant             s->insert = s->strstart;
   1788      1.1.1.3  christos         }
   1789      1.1.1.3  christos         else {
   1790      1.1.1.3  christos             if (s->window_size - s->strstart <= used) {
   1791      1.1.1.3  christos                 /* Slide the window down. */
   1792      1.1.1.3  christos                 s->strstart -= s->w_size;
   1793      1.1.1.3  christos                 zmemcpy(s->window, s->window + s->w_size, s->strstart);
   1794      1.1.1.3  christos                 if (s->matches < 2)
   1795      1.1.1.3  christos                     s->matches++;   /* add a pending slide_hash() */
   1796  1.1.1.4.2.1  perseant                 if (s->insert > s->strstart)
   1797  1.1.1.4.2.1  perseant                     s->insert = s->strstart;
   1798      1.1.1.3  christos             }
   1799      1.1.1.3  christos             zmemcpy(s->window + s->strstart, s->strm->next_in - used, used);
   1800      1.1.1.3  christos             s->strstart += used;
   1801  1.1.1.4.2.1  perseant             s->insert += MIN(used, s->w_size - s->insert);
   1802          1.1  christos         }
   1803      1.1.1.3  christos         s->block_start = s->strstart;
   1804          1.1  christos     }
   1805      1.1.1.3  christos     if (s->high_water < s->strstart)
   1806      1.1.1.3  christos         s->high_water = s->strstart;
   1807      1.1.1.3  christos 
   1808      1.1.1.3  christos     /* If the last block was written to next_out, then done. */
   1809      1.1.1.3  christos     if (last)
   1810          1.1  christos         return finish_done;
   1811      1.1.1.3  christos 
   1812      1.1.1.3  christos     /* If flushing and all input has been consumed, then done. */
   1813      1.1.1.3  christos     if (flush != Z_NO_FLUSH && flush != Z_FINISH &&
   1814      1.1.1.3  christos         s->strm->avail_in == 0 && (long)s->strstart == s->block_start)
   1815      1.1.1.3  christos         return block_done;
   1816      1.1.1.3  christos 
   1817      1.1.1.3  christos     /* Fill the window with any remaining input. */
   1818  1.1.1.4.2.1  perseant     have = s->window_size - s->strstart;
   1819      1.1.1.3  christos     if (s->strm->avail_in > have && s->block_start >= (long)s->w_size) {
   1820      1.1.1.3  christos         /* Slide the window down. */
   1821      1.1.1.3  christos         s->block_start -= s->w_size;
   1822      1.1.1.3  christos         s->strstart -= s->w_size;
   1823      1.1.1.3  christos         zmemcpy(s->window, s->window + s->w_size, s->strstart);
   1824      1.1.1.3  christos         if (s->matches < 2)
   1825      1.1.1.3  christos             s->matches++;           /* add a pending slide_hash() */
   1826      1.1.1.3  christos         have += s->w_size;          /* more space now */
   1827  1.1.1.4.2.1  perseant         if (s->insert > s->strstart)
   1828  1.1.1.4.2.1  perseant             s->insert = s->strstart;
   1829      1.1.1.3  christos     }
   1830      1.1.1.3  christos     if (have > s->strm->avail_in)
   1831      1.1.1.3  christos         have = s->strm->avail_in;
   1832      1.1.1.3  christos     if (have) {
   1833      1.1.1.3  christos         read_buf(s->strm, s->window + s->strstart, have);
   1834      1.1.1.3  christos         s->strstart += have;
   1835  1.1.1.4.2.1  perseant         s->insert += MIN(have, s->w_size - s->insert);
   1836      1.1.1.3  christos     }
   1837      1.1.1.3  christos     if (s->high_water < s->strstart)
   1838      1.1.1.3  christos         s->high_water = s->strstart;
   1839      1.1.1.3  christos 
   1840      1.1.1.3  christos     /* There was not enough avail_out to write a complete worthy or flushed
   1841      1.1.1.3  christos      * stored block to next_out. Write a stored block to pending instead, if we
   1842      1.1.1.3  christos      * have enough input for a worthy block, or if flushing and there is enough
   1843      1.1.1.3  christos      * room for the remaining input as a stored block in the pending buffer.
   1844      1.1.1.3  christos      */
   1845      1.1.1.3  christos     have = (s->bi_valid + 42) >> 3;         /* number of header bytes */
   1846      1.1.1.3  christos         /* maximum stored block length that will fit in pending: */
   1847      1.1.1.3  christos     have = MIN(s->pending_buf_size - have, MAX_STORED);
   1848      1.1.1.3  christos     min_block = MIN(have, s->w_size);
   1849      1.1.1.3  christos     left = s->strstart - s->block_start;
   1850      1.1.1.3  christos     if (left >= min_block ||
   1851      1.1.1.3  christos         ((left || flush == Z_FINISH) && flush != Z_NO_FLUSH &&
   1852      1.1.1.3  christos          s->strm->avail_in == 0 && left <= have)) {
   1853      1.1.1.3  christos         len = MIN(left, have);
   1854      1.1.1.3  christos         last = flush == Z_FINISH && s->strm->avail_in == 0 &&
   1855      1.1.1.3  christos                len == left ? 1 : 0;
   1856      1.1.1.3  christos         _tr_stored_block(s, (charf *)s->window + s->block_start, len, last);
   1857      1.1.1.3  christos         s->block_start += len;
   1858      1.1.1.3  christos         flush_pending(s->strm);
   1859          1.1  christos     }
   1860      1.1.1.3  christos 
   1861      1.1.1.3  christos     /* We've done all we can with the available input and output. */
   1862      1.1.1.3  christos     return last ? finish_started : need_more;
   1863          1.1  christos }
   1864          1.1  christos 
   1865          1.1  christos /* ===========================================================================
   1866          1.1  christos  * Compress as much as possible from the input stream, return the current
   1867          1.1  christos  * block state.
   1868          1.1  christos  * This function does not perform lazy evaluation of matches and inserts
   1869          1.1  christos  * new strings in the dictionary only for unmatched strings or for short
   1870          1.1  christos  * matches. It is used only for the fast compression options.
   1871          1.1  christos  */
   1872          1.1  christos local block_state deflate_fast(s, flush)
   1873          1.1  christos     deflate_state *s;
   1874          1.1  christos     int flush;
   1875          1.1  christos {
   1876          1.1  christos     IPos hash_head;       /* head of the hash chain */
   1877          1.1  christos     int bflush;           /* set if current block must be flushed */
   1878          1.1  christos 
   1879          1.1  christos     for (;;) {
   1880          1.1  christos         /* Make sure that we always have enough lookahead, except
   1881          1.1  christos          * at the end of the input file. We need MAX_MATCH bytes
   1882          1.1  christos          * for the next match, plus MIN_MATCH bytes to insert the
   1883          1.1  christos          * string following the next match.
   1884          1.1  christos          */
   1885          1.1  christos         if (s->lookahead < MIN_LOOKAHEAD) {
   1886          1.1  christos             fill_window(s);
   1887          1.1  christos             if (s->lookahead < MIN_LOOKAHEAD && flush == Z_NO_FLUSH) {
   1888          1.1  christos                 return need_more;
   1889          1.1  christos             }
   1890          1.1  christos             if (s->lookahead == 0) break; /* flush the current block */
   1891          1.1  christos         }
   1892          1.1  christos 
   1893          1.1  christos         /* Insert the string window[strstart .. strstart+2] in the
   1894          1.1  christos          * dictionary, and set hash_head to the head of the hash chain:
   1895          1.1  christos          */
   1896          1.1  christos         hash_head = NIL;
   1897          1.1  christos         if (s->lookahead >= MIN_MATCH) {
   1898          1.1  christos             INSERT_STRING(s, s->strstart, hash_head);
   1899          1.1  christos         }
   1900          1.1  christos 
   1901          1.1  christos         /* Find the longest match, discarding those <= prev_length.
   1902          1.1  christos          * At this point we have always match_length < MIN_MATCH
   1903          1.1  christos          */
   1904          1.1  christos         if (hash_head != NIL && s->strstart - hash_head <= MAX_DIST(s)) {
   1905          1.1  christos             /* To simplify the code, we prevent matches with the string
   1906          1.1  christos              * of window index 0 (in particular we have to avoid a match
   1907          1.1  christos              * of the string with itself at the start of the input file).
   1908          1.1  christos              */
   1909          1.1  christos             s->match_length = longest_match (s, hash_head);
   1910          1.1  christos             /* longest_match() sets match_start */
   1911          1.1  christos         }
   1912          1.1  christos         if (s->match_length >= MIN_MATCH) {
   1913          1.1  christos             check_match(s, s->strstart, s->match_start, s->match_length);
   1914          1.1  christos 
   1915          1.1  christos             _tr_tally_dist(s, s->strstart - s->match_start,
   1916          1.1  christos                            s->match_length - MIN_MATCH, bflush);
   1917          1.1  christos 
   1918          1.1  christos             s->lookahead -= s->match_length;
   1919          1.1  christos 
   1920          1.1  christos             /* Insert new strings in the hash table only if the match length
   1921          1.1  christos              * is not too large. This saves time but degrades compression.
   1922          1.1  christos              */
   1923          1.1  christos #ifndef FASTEST
   1924          1.1  christos             if (s->match_length <= s->max_insert_length &&
   1925          1.1  christos                 s->lookahead >= MIN_MATCH) {
   1926          1.1  christos                 s->match_length--; /* string at strstart already in table */
   1927          1.1  christos                 do {
   1928          1.1  christos                     s->strstart++;
   1929          1.1  christos                     INSERT_STRING(s, s->strstart, hash_head);
   1930          1.1  christos                     /* strstart never exceeds WSIZE-MAX_MATCH, so there are
   1931          1.1  christos                      * always MIN_MATCH bytes ahead.
   1932          1.1  christos                      */
   1933          1.1  christos                 } while (--s->match_length != 0);
   1934          1.1  christos                 s->strstart++;
   1935          1.1  christos             } else
   1936          1.1  christos #endif
   1937          1.1  christos             {
   1938          1.1  christos                 s->strstart += s->match_length;
   1939          1.1  christos                 s->match_length = 0;
   1940          1.1  christos                 s->ins_h = s->window[s->strstart];
   1941          1.1  christos                 UPDATE_HASH(s, s->ins_h, s->window[s->strstart+1]);
   1942          1.1  christos #if MIN_MATCH != 3
   1943          1.1  christos                 Call UPDATE_HASH() MIN_MATCH-3 more times
   1944          1.1  christos #endif
   1945          1.1  christos                 /* If lookahead < MIN_MATCH, ins_h is garbage, but it does not
   1946          1.1  christos                  * matter since it will be recomputed at next deflate call.
   1947          1.1  christos                  */
   1948          1.1  christos             }
   1949          1.1  christos         } else {
   1950          1.1  christos             /* No match, output a literal byte */
   1951          1.1  christos             Tracevv((stderr,"%c", s->window[s->strstart]));
   1952          1.1  christos             _tr_tally_lit (s, s->window[s->strstart], bflush);
   1953          1.1  christos             s->lookahead--;
   1954          1.1  christos             s->strstart++;
   1955          1.1  christos         }
   1956          1.1  christos         if (bflush) FLUSH_BLOCK(s, 0);
   1957          1.1  christos     }
   1958          1.1  christos     s->insert = s->strstart < MIN_MATCH-1 ? s->strstart : MIN_MATCH-1;
   1959          1.1  christos     if (flush == Z_FINISH) {
   1960          1.1  christos         FLUSH_BLOCK(s, 1);
   1961          1.1  christos         return finish_done;
   1962          1.1  christos     }
   1963  1.1.1.4.2.1  perseant     if (s->sym_next)
   1964          1.1  christos         FLUSH_BLOCK(s, 0);
   1965          1.1  christos     return block_done;
   1966          1.1  christos }
   1967          1.1  christos 
   1968          1.1  christos #ifndef FASTEST
   1969          1.1  christos /* ===========================================================================
   1970          1.1  christos  * Same as above, but achieves better compression. We use a lazy
   1971          1.1  christos  * evaluation for matches: a match is finally adopted only if there is
   1972          1.1  christos  * no better match at the next window position.
   1973          1.1  christos  */
   1974          1.1  christos local block_state deflate_slow(s, flush)
   1975          1.1  christos     deflate_state *s;
   1976          1.1  christos     int flush;
   1977          1.1  christos {
   1978          1.1  christos     IPos hash_head;          /* head of hash chain */
   1979          1.1  christos     int bflush;              /* set if current block must be flushed */
   1980          1.1  christos 
   1981          1.1  christos     /* Process the input block. */
   1982          1.1  christos     for (;;) {
   1983          1.1  christos         /* Make sure that we always have enough lookahead, except
   1984          1.1  christos          * at the end of the input file. We need MAX_MATCH bytes
   1985          1.1  christos          * for the next match, plus MIN_MATCH bytes to insert the
   1986          1.1  christos          * string following the next match.
   1987          1.1  christos          */
   1988          1.1  christos         if (s->lookahead < MIN_LOOKAHEAD) {
   1989          1.1  christos             fill_window(s);
   1990          1.1  christos             if (s->lookahead < MIN_LOOKAHEAD && flush == Z_NO_FLUSH) {
   1991          1.1  christos                 return need_more;
   1992          1.1  christos             }
   1993          1.1  christos             if (s->lookahead == 0) break; /* flush the current block */
   1994          1.1  christos         }
   1995          1.1  christos 
   1996          1.1  christos         /* Insert the string window[strstart .. strstart+2] in the
   1997          1.1  christos          * dictionary, and set hash_head to the head of the hash chain:
   1998          1.1  christos          */
   1999          1.1  christos         hash_head = NIL;
   2000          1.1  christos         if (s->lookahead >= MIN_MATCH) {
   2001          1.1  christos             INSERT_STRING(s, s->strstart, hash_head);
   2002          1.1  christos         }
   2003          1.1  christos 
   2004          1.1  christos         /* Find the longest match, discarding those <= prev_length.
   2005          1.1  christos          */
   2006          1.1  christos         s->prev_length = s->match_length, s->prev_match = s->match_start;
   2007          1.1  christos         s->match_length = MIN_MATCH-1;
   2008          1.1  christos 
   2009          1.1  christos         if (hash_head != NIL && s->prev_length < s->max_lazy_match &&
   2010          1.1  christos             s->strstart - hash_head <= MAX_DIST(s)) {
   2011          1.1  christos             /* To simplify the code, we prevent matches with the string
   2012          1.1  christos              * of window index 0 (in particular we have to avoid a match
   2013          1.1  christos              * of the string with itself at the start of the input file).
   2014          1.1  christos              */
   2015          1.1  christos             s->match_length = longest_match (s, hash_head);
   2016          1.1  christos             /* longest_match() sets match_start */
   2017          1.1  christos 
   2018          1.1  christos             if (s->match_length <= 5 && (s->strategy == Z_FILTERED
   2019          1.1  christos #if TOO_FAR <= 32767
   2020          1.1  christos                 || (s->match_length == MIN_MATCH &&
   2021          1.1  christos                     s->strstart - s->match_start > TOO_FAR)
   2022          1.1  christos #endif
   2023          1.1  christos                 )) {
   2024          1.1  christos 
   2025          1.1  christos                 /* If prev_match is also MIN_MATCH, match_start is garbage
   2026          1.1  christos                  * but we will ignore the current match anyway.
   2027          1.1  christos                  */
   2028          1.1  christos                 s->match_length = MIN_MATCH-1;
   2029          1.1  christos             }
   2030          1.1  christos         }
   2031          1.1  christos         /* If there was a match at the previous step and the current
   2032          1.1  christos          * match is not better, output the previous match:
   2033          1.1  christos          */
   2034          1.1  christos         if (s->prev_length >= MIN_MATCH && s->match_length <= s->prev_length) {
   2035          1.1  christos             uInt max_insert = s->strstart + s->lookahead - MIN_MATCH;
   2036          1.1  christos             /* Do not insert strings in hash table beyond this. */
   2037          1.1  christos 
   2038          1.1  christos             check_match(s, s->strstart-1, s->prev_match, s->prev_length);
   2039          1.1  christos 
   2040          1.1  christos             _tr_tally_dist(s, s->strstart -1 - s->prev_match,
   2041          1.1  christos                            s->prev_length - MIN_MATCH, bflush);
   2042          1.1  christos 
   2043          1.1  christos             /* Insert in hash table all strings up to the end of the match.
   2044          1.1  christos              * strstart-1 and strstart are already inserted. If there is not
   2045          1.1  christos              * enough lookahead, the last two strings are not inserted in
   2046          1.1  christos              * the hash table.
   2047          1.1  christos              */
   2048          1.1  christos             s->lookahead -= s->prev_length-1;
   2049          1.1  christos             s->prev_length -= 2;
   2050          1.1  christos             do {
   2051          1.1  christos                 if (++s->strstart <= max_insert) {
   2052          1.1  christos                     INSERT_STRING(s, s->strstart, hash_head);
   2053          1.1  christos                 }
   2054          1.1  christos             } while (--s->prev_length != 0);
   2055          1.1  christos             s->match_available = 0;
   2056          1.1  christos             s->match_length = MIN_MATCH-1;
   2057          1.1  christos             s->strstart++;
   2058          1.1  christos 
   2059          1.1  christos             if (bflush) FLUSH_BLOCK(s, 0);
   2060          1.1  christos 
   2061          1.1  christos         } else if (s->match_available) {
   2062          1.1  christos             /* If there was no match at the previous position, output a
   2063          1.1  christos              * single literal. If there was a match but the current match
   2064          1.1  christos              * is longer, truncate the previous match to a single literal.
   2065          1.1  christos              */
   2066          1.1  christos             Tracevv((stderr,"%c", s->window[s->strstart-1]));
   2067          1.1  christos             _tr_tally_lit(s, s->window[s->strstart-1], bflush);
   2068          1.1  christos             if (bflush) {
   2069          1.1  christos                 FLUSH_BLOCK_ONLY(s, 0);
   2070          1.1  christos             }
   2071          1.1  christos             s->strstart++;
   2072          1.1  christos             s->lookahead--;
   2073          1.1  christos             if (s->strm->avail_out == 0) return need_more;
   2074          1.1  christos         } else {
   2075          1.1  christos             /* There is no previous match to compare with, wait for
   2076          1.1  christos              * the next step to decide.
   2077          1.1  christos              */
   2078          1.1  christos             s->match_available = 1;
   2079          1.1  christos             s->strstart++;
   2080          1.1  christos             s->lookahead--;
   2081          1.1  christos         }
   2082          1.1  christos     }
   2083          1.1  christos     Assert (flush != Z_NO_FLUSH, "no flush?");
   2084          1.1  christos     if (s->match_available) {
   2085          1.1  christos         Tracevv((stderr,"%c", s->window[s->strstart-1]));
   2086          1.1  christos         _tr_tally_lit(s, s->window[s->strstart-1], bflush);
   2087          1.1  christos         s->match_available = 0;
   2088          1.1  christos     }
   2089          1.1  christos     s->insert = s->strstart < MIN_MATCH-1 ? s->strstart : MIN_MATCH-1;
   2090          1.1  christos     if (flush == Z_FINISH) {
   2091          1.1  christos         FLUSH_BLOCK(s, 1);
   2092          1.1  christos         return finish_done;
   2093          1.1  christos     }
   2094  1.1.1.4.2.1  perseant     if (s->sym_next)
   2095          1.1  christos         FLUSH_BLOCK(s, 0);
   2096          1.1  christos     return block_done;
   2097          1.1  christos }
   2098          1.1  christos #endif /* FASTEST */
   2099          1.1  christos 
   2100          1.1  christos /* ===========================================================================
   2101          1.1  christos  * For Z_RLE, simply look for runs of bytes, generate matches only of distance
   2102          1.1  christos  * one.  Do not maintain a hash table.  (It will be regenerated if this run of
   2103          1.1  christos  * deflate switches away from Z_RLE.)
   2104          1.1  christos  */
   2105          1.1  christos local block_state deflate_rle(s, flush)
   2106          1.1  christos     deflate_state *s;
   2107          1.1  christos     int flush;
   2108          1.1  christos {
   2109          1.1  christos     int bflush;             /* set if current block must be flushed */
   2110          1.1  christos     uInt prev;              /* byte at distance one to match */
   2111          1.1  christos     Bytef *scan, *strend;   /* scan goes up to strend for length of run */
   2112          1.1  christos 
   2113          1.1  christos     for (;;) {
   2114          1.1  christos         /* Make sure that we always have enough lookahead, except
   2115          1.1  christos          * at the end of the input file. We need MAX_MATCH bytes
   2116          1.1  christos          * for the longest run, plus one for the unrolled loop.
   2117          1.1  christos          */
   2118          1.1  christos         if (s->lookahead <= MAX_MATCH) {
   2119          1.1  christos             fill_window(s);
   2120          1.1  christos             if (s->lookahead <= MAX_MATCH && flush == Z_NO_FLUSH) {
   2121          1.1  christos                 return need_more;
   2122          1.1  christos             }
   2123          1.1  christos             if (s->lookahead == 0) break; /* flush the current block */
   2124          1.1  christos         }
   2125          1.1  christos 
   2126          1.1  christos         /* See how many times the previous byte repeats */
   2127          1.1  christos         s->match_length = 0;
   2128          1.1  christos         if (s->lookahead >= MIN_MATCH && s->strstart > 0) {
   2129          1.1  christos             scan = s->window + s->strstart - 1;
   2130          1.1  christos             prev = *scan;
   2131          1.1  christos             if (prev == *++scan && prev == *++scan && prev == *++scan) {
   2132          1.1  christos                 strend = s->window + s->strstart + MAX_MATCH;
   2133          1.1  christos                 do {
   2134          1.1  christos                 } while (prev == *++scan && prev == *++scan &&
   2135          1.1  christos                          prev == *++scan && prev == *++scan &&
   2136          1.1  christos                          prev == *++scan && prev == *++scan &&
   2137          1.1  christos                          prev == *++scan && prev == *++scan &&
   2138          1.1  christos                          scan < strend);
   2139      1.1.1.3  christos                 s->match_length = MAX_MATCH - (uInt)(strend - scan);
   2140          1.1  christos                 if (s->match_length > s->lookahead)
   2141          1.1  christos                     s->match_length = s->lookahead;
   2142          1.1  christos             }
   2143          1.1  christos             Assert(scan <= s->window+(uInt)(s->window_size-1), "wild scan");
   2144          1.1  christos         }
   2145          1.1  christos 
   2146          1.1  christos         /* Emit match if have run of MIN_MATCH or longer, else emit literal */
   2147          1.1  christos         if (s->match_length >= MIN_MATCH) {
   2148          1.1  christos             check_match(s, s->strstart, s->strstart - 1, s->match_length);
   2149          1.1  christos 
   2150          1.1  christos             _tr_tally_dist(s, 1, s->match_length - MIN_MATCH, bflush);
   2151          1.1  christos 
   2152          1.1  christos             s->lookahead -= s->match_length;
   2153          1.1  christos             s->strstart += s->match_length;
   2154          1.1  christos             s->match_length = 0;
   2155          1.1  christos         } else {
   2156          1.1  christos             /* No match, output a literal byte */
   2157          1.1  christos             Tracevv((stderr,"%c", s->window[s->strstart]));
   2158          1.1  christos             _tr_tally_lit (s, s->window[s->strstart], bflush);
   2159          1.1  christos             s->lookahead--;
   2160          1.1  christos             s->strstart++;
   2161          1.1  christos         }
   2162          1.1  christos         if (bflush) FLUSH_BLOCK(s, 0);
   2163          1.1  christos     }
   2164          1.1  christos     s->insert = 0;
   2165          1.1  christos     if (flush == Z_FINISH) {
   2166          1.1  christos         FLUSH_BLOCK(s, 1);
   2167          1.1  christos         return finish_done;
   2168          1.1  christos     }
   2169  1.1.1.4.2.1  perseant     if (s->sym_next)
   2170          1.1  christos         FLUSH_BLOCK(s, 0);
   2171          1.1  christos     return block_done;
   2172          1.1  christos }
   2173          1.1  christos 
   2174          1.1  christos /* ===========================================================================
   2175          1.1  christos  * For Z_HUFFMAN_ONLY, do not look for matches.  Do not maintain a hash table.
   2176          1.1  christos  * (It will be regenerated if this run of deflate switches away from Huffman.)
   2177          1.1  christos  */
   2178          1.1  christos local block_state deflate_huff(s, flush)
   2179          1.1  christos     deflate_state *s;
   2180          1.1  christos     int flush;
   2181          1.1  christos {
   2182          1.1  christos     int bflush;             /* set if current block must be flushed */
   2183          1.1  christos 
   2184          1.1  christos     for (;;) {
   2185          1.1  christos         /* Make sure that we have a literal to write. */
   2186          1.1  christos         if (s->lookahead == 0) {
   2187          1.1  christos             fill_window(s);
   2188          1.1  christos             if (s->lookahead == 0) {
   2189          1.1  christos                 if (flush == Z_NO_FLUSH)
   2190          1.1  christos                     return need_more;
   2191          1.1  christos                 break;      /* flush the current block */
   2192          1.1  christos             }
   2193          1.1  christos         }
   2194          1.1  christos 
   2195          1.1  christos         /* Output a literal byte */
   2196          1.1  christos         s->match_length = 0;
   2197          1.1  christos         Tracevv((stderr,"%c", s->window[s->strstart]));
   2198          1.1  christos         _tr_tally_lit (s, s->window[s->strstart], bflush);
   2199          1.1  christos         s->lookahead--;
   2200          1.1  christos         s->strstart++;
   2201          1.1  christos         if (bflush) FLUSH_BLOCK(s, 0);
   2202          1.1  christos     }
   2203          1.1  christos     s->insert = 0;
   2204          1.1  christos     if (flush == Z_FINISH) {
   2205          1.1  christos         FLUSH_BLOCK(s, 1);
   2206          1.1  christos         return finish_done;
   2207          1.1  christos     }
   2208  1.1.1.4.2.1  perseant     if (s->sym_next)
   2209          1.1  christos         FLUSH_BLOCK(s, 0);
   2210          1.1  christos     return block_done;
   2211          1.1  christos }
   2212