trees.c revision 1.6.8.1 1 1.6.8.1 perseant /* $NetBSD: trees.c,v 1.6.8.1 2025/08/02 05:18:28 perseant Exp $ */
2 1.1 christos
3 1.1 christos /* trees.c -- output deflated data using Huffman coding
4 1.6.8.1 perseant * Copyright (C) 1995-2024 Jean-loup Gailly
5 1.4 christos * detect_data_type() function provided freely by Cosmin Truta, 2006
6 1.1 christos * For conditions of distribution and use, see copyright notice in zlib.h
7 1.1 christos */
8 1.1 christos
9 1.1 christos /*
10 1.1 christos * ALGORITHM
11 1.1 christos *
12 1.1 christos * The "deflation" process uses several Huffman trees. The more
13 1.1 christos * common source values are represented by shorter bit sequences.
14 1.1 christos *
15 1.1 christos * Each code tree is stored in a compressed form which is itself
16 1.1 christos * a Huffman encoding of the lengths of all the code strings (in
17 1.1 christos * ascending order by source values). The actual code strings are
18 1.1 christos * reconstructed from the lengths in the inflate process, as described
19 1.1 christos * in the deflate specification.
20 1.1 christos *
21 1.1 christos * REFERENCES
22 1.1 christos *
23 1.1 christos * Deutsch, L.P.,"'Deflate' Compressed Data Format Specification".
24 1.1 christos * Available in ftp.uu.net:/pub/archiving/zip/doc/deflate-1.1.doc
25 1.1 christos *
26 1.1 christos * Storer, James A.
27 1.1 christos * Data Compression: Methods and Theory, pp. 49-50.
28 1.1 christos * Computer Science Press, 1988. ISBN 0-7167-8156-5.
29 1.1 christos *
30 1.1 christos * Sedgewick, R.
31 1.1 christos * Algorithms, p290.
32 1.1 christos * Addison-Wesley, 1983. ISBN 0-201-06672-6.
33 1.1 christos */
34 1.1 christos
35 1.6 christos /* @(#) Id */
36 1.1 christos
37 1.1 christos /* #define GEN_TREES_H */
38 1.1 christos
39 1.1 christos #include "deflate.h"
40 1.1 christos
41 1.2 christos #ifdef ZLIB_DEBUG
42 1.1 christos # include <ctype.h>
43 1.1 christos #endif
44 1.1 christos
45 1.1 christos /* ===========================================================================
46 1.1 christos * Constants
47 1.1 christos */
48 1.1 christos
49 1.1 christos #define MAX_BL_BITS 7
50 1.1 christos /* Bit length codes must not exceed MAX_BL_BITS bits */
51 1.1 christos
52 1.1 christos #define END_BLOCK 256
53 1.1 christos /* end of block literal code */
54 1.1 christos
55 1.1 christos #define REP_3_6 16
56 1.1 christos /* repeat previous bit length 3-6 times (2 bits of repeat count) */
57 1.1 christos
58 1.1 christos #define REPZ_3_10 17
59 1.1 christos /* repeat a zero length 3-10 times (3 bits of repeat count) */
60 1.1 christos
61 1.1 christos #define REPZ_11_138 18
62 1.1 christos /* repeat a zero length 11-138 times (7 bits of repeat count) */
63 1.1 christos
64 1.1 christos local const int extra_lbits[LENGTH_CODES] /* extra bits for each length code */
65 1.1 christos = {0,0,0,0,0,0,0,0,1,1,1,1,2,2,2,2,3,3,3,3,4,4,4,4,5,5,5,5,0};
66 1.1 christos
67 1.1 christos local const int extra_dbits[D_CODES] /* extra bits for each distance code */
68 1.1 christos = {0,0,0,0,1,1,2,2,3,3,4,4,5,5,6,6,7,7,8,8,9,9,10,10,11,11,12,12,13,13};
69 1.1 christos
70 1.1 christos local const int extra_blbits[BL_CODES]/* extra bits for each bit length code */
71 1.1 christos = {0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,2,3,7};
72 1.1 christos
73 1.1 christos local const uch bl_order[BL_CODES]
74 1.1 christos = {16,17,18,0,8,7,9,6,10,5,11,4,12,3,13,2,14,1,15};
75 1.1 christos /* The lengths of the bit length codes are sent in order of decreasing
76 1.1 christos * probability, to avoid transmitting the lengths for unused bit length codes.
77 1.1 christos */
78 1.1 christos
79 1.1 christos /* ===========================================================================
80 1.1 christos * Local data. These are initialized only once.
81 1.1 christos */
82 1.1 christos
83 1.1 christos #define DIST_CODE_LEN 512 /* see definition of array dist_code below */
84 1.1 christos
85 1.1 christos #if defined(GEN_TREES_H) || !defined(STDC)
86 1.1 christos /* non ANSI compilers may not accept trees.h */
87 1.1 christos
88 1.1 christos local ct_data static_ltree[L_CODES+2];
89 1.1 christos /* The static literal tree. Since the bit lengths are imposed, there is no
90 1.1 christos * need for the L_CODES extra codes used during heap construction. However
91 1.1 christos * The codes 286 and 287 are needed to build a canonical tree (see _tr_init
92 1.1 christos * below).
93 1.1 christos */
94 1.1 christos
95 1.1 christos local ct_data static_dtree[D_CODES];
96 1.1 christos /* The static distance tree. (Actually a trivial tree since all codes use
97 1.1 christos * 5 bits.)
98 1.1 christos */
99 1.1 christos
100 1.1 christos uch _dist_code[DIST_CODE_LEN];
101 1.1 christos /* Distance codes. The first 256 values correspond to the distances
102 1.1 christos * 3 .. 258, the last 256 values correspond to the top 8 bits of
103 1.1 christos * the 15 bit distances.
104 1.1 christos */
105 1.1 christos
106 1.1 christos uch _length_code[MAX_MATCH-MIN_MATCH+1];
107 1.1 christos /* length code for each normalized match length (0 == MIN_MATCH) */
108 1.1 christos
109 1.1 christos local int base_length[LENGTH_CODES];
110 1.1 christos /* First normalized length for each code (0 = MIN_MATCH) */
111 1.1 christos
112 1.1 christos local int base_dist[D_CODES];
113 1.1 christos /* First normalized distance for each code (0 = distance of 1) */
114 1.1 christos
115 1.1 christos #else
116 1.1 christos # include "trees.h"
117 1.1 christos #endif /* GEN_TREES_H */
118 1.1 christos
119 1.1 christos struct static_tree_desc_s {
120 1.1 christos const ct_data *static_tree; /* static tree or NULL */
121 1.1 christos const intf *extra_bits; /* extra bits for each code or NULL */
122 1.1 christos int extra_base; /* base index for extra_bits */
123 1.1 christos int elems; /* max number of elements in the tree */
124 1.1 christos int max_length; /* max bit length for the codes */
125 1.1 christos };
126 1.1 christos
127 1.6.8.1 perseant #ifdef NO_INIT_GLOBAL_POINTERS
128 1.6.8.1 perseant # define TCONST
129 1.6.8.1 perseant #else
130 1.6.8.1 perseant # define TCONST const
131 1.6.8.1 perseant #endif
132 1.6.8.1 perseant
133 1.6.8.1 perseant local TCONST static_tree_desc static_l_desc =
134 1.1 christos {static_ltree, extra_lbits, LITERALS+1, L_CODES, MAX_BITS};
135 1.1 christos
136 1.6.8.1 perseant local TCONST static_tree_desc static_d_desc =
137 1.1 christos {static_dtree, extra_dbits, 0, D_CODES, MAX_BITS};
138 1.1 christos
139 1.6.8.1 perseant local TCONST static_tree_desc static_bl_desc =
140 1.1 christos {(const ct_data *)0, extra_blbits, 0, BL_CODES, MAX_BL_BITS};
141 1.1 christos
142 1.1 christos /* ===========================================================================
143 1.6.8.1 perseant * Output a short LSB first on the stream.
144 1.6.8.1 perseant * IN assertion: there is enough room in pendingBuf.
145 1.6.8.1 perseant */
146 1.6.8.1 perseant #define put_short(s, w) { \
147 1.6.8.1 perseant put_byte(s, (uch)((w) & 0xff)); \
148 1.6.8.1 perseant put_byte(s, (uch)((ush)(w) >> 8)); \
149 1.6.8.1 perseant }
150 1.6.8.1 perseant
151 1.6.8.1 perseant /* ===========================================================================
152 1.6.8.1 perseant * Reverse the first len bits of a code, using straightforward code (a faster
153 1.6.8.1 perseant * method would use a table)
154 1.6.8.1 perseant * IN assertion: 1 <= len <= 15
155 1.1 christos */
156 1.6.8.1 perseant local unsigned bi_reverse(unsigned code, int len) {
157 1.6.8.1 perseant register unsigned res = 0;
158 1.6.8.1 perseant do {
159 1.6.8.1 perseant res |= code & 1;
160 1.6.8.1 perseant code >>= 1, res <<= 1;
161 1.6.8.1 perseant } while (--len > 0);
162 1.6.8.1 perseant return res >> 1;
163 1.6.8.1 perseant }
164 1.1 christos
165 1.6.8.1 perseant /* ===========================================================================
166 1.6.8.1 perseant * Flush the bit buffer, keeping at most 7 bits in it.
167 1.6.8.1 perseant */
168 1.6.8.1 perseant local void bi_flush(deflate_state *s) {
169 1.6.8.1 perseant if (s->bi_valid == 16) {
170 1.6.8.1 perseant put_short(s, s->bi_buf);
171 1.6.8.1 perseant s->bi_buf = 0;
172 1.6.8.1 perseant s->bi_valid = 0;
173 1.6.8.1 perseant } else if (s->bi_valid >= 8) {
174 1.6.8.1 perseant put_byte(s, (Byte)s->bi_buf);
175 1.6.8.1 perseant s->bi_buf >>= 8;
176 1.6.8.1 perseant s->bi_valid -= 8;
177 1.6.8.1 perseant }
178 1.6.8.1 perseant }
179 1.6.8.1 perseant
180 1.6.8.1 perseant /* ===========================================================================
181 1.6.8.1 perseant * Flush the bit buffer and align the output on a byte boundary
182 1.6.8.1 perseant */
183 1.6.8.1 perseant local void bi_windup(deflate_state *s) {
184 1.6.8.1 perseant if (s->bi_valid > 8) {
185 1.6.8.1 perseant put_short(s, s->bi_buf);
186 1.6.8.1 perseant } else if (s->bi_valid > 0) {
187 1.6.8.1 perseant put_byte(s, (Byte)s->bi_buf);
188 1.6.8.1 perseant }
189 1.6.8.1 perseant s->bi_buf = 0;
190 1.6.8.1 perseant s->bi_valid = 0;
191 1.6.8.1 perseant #ifdef ZLIB_DEBUG
192 1.6.8.1 perseant s->bits_sent = (s->bits_sent + 7) & ~7;
193 1.6.8.1 perseant #endif
194 1.6.8.1 perseant }
195 1.6.8.1 perseant
196 1.6.8.1 perseant /* ===========================================================================
197 1.6.8.1 perseant * Generate the codes for a given tree and bit counts (which need not be
198 1.6.8.1 perseant * optimal).
199 1.6.8.1 perseant * IN assertion: the array bl_count contains the bit length statistics for
200 1.6.8.1 perseant * the given tree and the field len is set for all tree elements.
201 1.6.8.1 perseant * OUT assertion: the field code is set for all tree elements of non
202 1.6.8.1 perseant * zero code length.
203 1.6.8.1 perseant */
204 1.6.8.1 perseant local void gen_codes(ct_data *tree, int max_code, ushf *bl_count) {
205 1.6.8.1 perseant ush next_code[MAX_BITS+1]; /* next code value for each bit length */
206 1.6.8.1 perseant unsigned code = 0; /* running code value */
207 1.6.8.1 perseant int bits; /* bit index */
208 1.6.8.1 perseant int n; /* code index */
209 1.6.8.1 perseant
210 1.6.8.1 perseant /* The distribution counts are first used to generate the code values
211 1.6.8.1 perseant * without bit reversal.
212 1.6.8.1 perseant */
213 1.6.8.1 perseant for (bits = 1; bits <= MAX_BITS; bits++) {
214 1.6.8.1 perseant code = (code + bl_count[bits - 1]) << 1;
215 1.6.8.1 perseant next_code[bits] = (ush)code;
216 1.6.8.1 perseant }
217 1.6.8.1 perseant /* Check that the bit counts in bl_count are consistent. The last code
218 1.6.8.1 perseant * must be all ones.
219 1.6.8.1 perseant */
220 1.6.8.1 perseant Assert (code + bl_count[MAX_BITS] - 1 == (1 << MAX_BITS) - 1,
221 1.6.8.1 perseant "inconsistent bit counts");
222 1.6.8.1 perseant Tracev((stderr,"\ngen_codes: max_code %d ", max_code));
223 1.6.8.1 perseant
224 1.6.8.1 perseant for (n = 0; n <= max_code; n++) {
225 1.6.8.1 perseant int len = tree[n].Len;
226 1.6.8.1 perseant if (len == 0) continue;
227 1.6.8.1 perseant /* Now reverse the bits */
228 1.6.8.1 perseant tree[n].Code = (ush)bi_reverse(next_code[len]++, len);
229 1.6.8.1 perseant
230 1.6.8.1 perseant Tracecv(tree != static_ltree, (stderr,"\nn %3d %c l %2d c %4x (%x) ",
231 1.6.8.1 perseant n, (isgraph(n) ? n : ' '), len, tree[n].Code, next_code[len] - 1));
232 1.6.8.1 perseant }
233 1.6.8.1 perseant }
234 1.1 christos
235 1.1 christos #ifdef GEN_TREES_H
236 1.6.8.1 perseant local void gen_trees_header(void);
237 1.1 christos #endif
238 1.1 christos
239 1.2 christos #ifndef ZLIB_DEBUG
240 1.1 christos # define send_code(s, c, tree) send_bits(s, tree[c].Code, tree[c].Len)
241 1.1 christos /* Send a code of the given tree. c and tree must not have side effects */
242 1.1 christos
243 1.4 christos #else /* !ZLIB_DEBUG */
244 1.1 christos # define send_code(s, c, tree) \
245 1.1 christos { if (z_verbose>2) fprintf(stderr,"\ncd %3d ",(c)); \
246 1.1 christos send_bits(s, tree[c].Code, tree[c].Len); }
247 1.1 christos #endif
248 1.1 christos
249 1.1 christos /* ===========================================================================
250 1.1 christos * Send a value on a given number of bits.
251 1.1 christos * IN assertion: length <= 16 and value fits in length bits.
252 1.1 christos */
253 1.2 christos #ifdef ZLIB_DEBUG
254 1.6.8.1 perseant local void send_bits(deflate_state *s, int value, int length) {
255 1.1 christos Tracevv((stderr," l %2d v %4x ", length, value));
256 1.1 christos Assert(length > 0 && length <= 15, "invalid length");
257 1.1 christos s->bits_sent += (ulg)length;
258 1.1 christos
259 1.1 christos /* If not enough room in bi_buf, use (valid) bits from bi_buf and
260 1.6 christos * (16 - bi_valid) bits from value, leaving (width - (16 - bi_valid))
261 1.1 christos * unused bits in value.
262 1.1 christos */
263 1.1 christos if (s->bi_valid > (int)Buf_size - length) {
264 1.4 christos s->bi_buf |= (ush)value << s->bi_valid;
265 1.1 christos put_short(s, s->bi_buf);
266 1.1 christos s->bi_buf = (ush)value >> (Buf_size - s->bi_valid);
267 1.1 christos s->bi_valid += length - Buf_size;
268 1.1 christos } else {
269 1.4 christos s->bi_buf |= (ush)value << s->bi_valid;
270 1.1 christos s->bi_valid += length;
271 1.1 christos }
272 1.1 christos }
273 1.2 christos #else /* !ZLIB_DEBUG */
274 1.1 christos
275 1.1 christos #define send_bits(s, value, length) \
276 1.1 christos { int len = length;\
277 1.1 christos if (s->bi_valid > (int)Buf_size - len) {\
278 1.4 christos int val = (int)value;\
279 1.4 christos s->bi_buf |= (ush)val << s->bi_valid;\
280 1.1 christos put_short(s, s->bi_buf);\
281 1.1 christos s->bi_buf = (ush)val >> (Buf_size - s->bi_valid);\
282 1.1 christos s->bi_valid += len - Buf_size;\
283 1.1 christos } else {\
284 1.4 christos s->bi_buf |= (ush)(value) << s->bi_valid;\
285 1.1 christos s->bi_valid += len;\
286 1.1 christos }\
287 1.1 christos }
288 1.2 christos #endif /* ZLIB_DEBUG */
289 1.1 christos
290 1.1 christos
291 1.1 christos /* the arguments must not have side effects */
292 1.1 christos
293 1.1 christos /* ===========================================================================
294 1.1 christos * Initialize the various 'constant' tables.
295 1.1 christos */
296 1.6.8.1 perseant local void tr_static_init(void) {
297 1.1 christos #if defined(GEN_TREES_H) || !defined(STDC)
298 1.1 christos static int static_init_done = 0;
299 1.1 christos int n; /* iterates over tree elements */
300 1.1 christos int bits; /* bit counter */
301 1.1 christos int length; /* length value */
302 1.1 christos int code; /* code value */
303 1.1 christos int dist; /* distance index */
304 1.1 christos ush bl_count[MAX_BITS+1];
305 1.1 christos /* number of codes at each bit length for an optimal tree */
306 1.1 christos
307 1.1 christos if (static_init_done) return;
308 1.1 christos
309 1.1 christos /* For some embedded targets, global variables are not initialized: */
310 1.4 christos #ifdef NO_INIT_GLOBAL_POINTERS
311 1.1 christos static_l_desc.static_tree = static_ltree;
312 1.1 christos static_l_desc.extra_bits = extra_lbits;
313 1.1 christos static_d_desc.static_tree = static_dtree;
314 1.1 christos static_d_desc.extra_bits = extra_dbits;
315 1.1 christos static_bl_desc.extra_bits = extra_blbits;
316 1.4 christos #endif
317 1.1 christos
318 1.1 christos /* Initialize the mapping length (0..255) -> length code (0..28) */
319 1.1 christos length = 0;
320 1.1 christos for (code = 0; code < LENGTH_CODES-1; code++) {
321 1.1 christos base_length[code] = length;
322 1.6 christos for (n = 0; n < (1 << extra_lbits[code]); n++) {
323 1.1 christos _length_code[length++] = (uch)code;
324 1.1 christos }
325 1.1 christos }
326 1.1 christos Assert (length == 256, "tr_static_init: length != 256");
327 1.1 christos /* Note that the length 255 (match length 258) can be represented
328 1.1 christos * in two different ways: code 284 + 5 bits or code 285, so we
329 1.1 christos * overwrite length_code[255] to use the best encoding:
330 1.1 christos */
331 1.6 christos _length_code[length - 1] = (uch)code;
332 1.1 christos
333 1.1 christos /* Initialize the mapping dist (0..32K) -> dist code (0..29) */
334 1.1 christos dist = 0;
335 1.1 christos for (code = 0 ; code < 16; code++) {
336 1.1 christos base_dist[code] = dist;
337 1.6 christos for (n = 0; n < (1 << extra_dbits[code]); n++) {
338 1.1 christos _dist_code[dist++] = (uch)code;
339 1.1 christos }
340 1.1 christos }
341 1.1 christos Assert (dist == 256, "tr_static_init: dist != 256");
342 1.1 christos dist >>= 7; /* from now on, all distances are divided by 128 */
343 1.1 christos for ( ; code < D_CODES; code++) {
344 1.1 christos base_dist[code] = dist << 7;
345 1.6 christos for (n = 0; n < (1 << (extra_dbits[code] - 7)); n++) {
346 1.1 christos _dist_code[256 + dist++] = (uch)code;
347 1.1 christos }
348 1.1 christos }
349 1.6 christos Assert (dist == 256, "tr_static_init: 256 + dist != 512");
350 1.1 christos
351 1.1 christos /* Construct the codes of the static literal tree */
352 1.1 christos for (bits = 0; bits <= MAX_BITS; bits++) bl_count[bits] = 0;
353 1.1 christos n = 0;
354 1.1 christos while (n <= 143) static_ltree[n++].Len = 8, bl_count[8]++;
355 1.1 christos while (n <= 255) static_ltree[n++].Len = 9, bl_count[9]++;
356 1.1 christos while (n <= 279) static_ltree[n++].Len = 7, bl_count[7]++;
357 1.1 christos while (n <= 287) static_ltree[n++].Len = 8, bl_count[8]++;
358 1.1 christos /* Codes 286 and 287 do not exist, but we must include them in the
359 1.1 christos * tree construction to get a canonical Huffman tree (longest code
360 1.1 christos * all ones)
361 1.1 christos */
362 1.1 christos gen_codes((ct_data *)static_ltree, L_CODES+1, bl_count);
363 1.1 christos
364 1.1 christos /* The static distance tree is trivial: */
365 1.1 christos for (n = 0; n < D_CODES; n++) {
366 1.1 christos static_dtree[n].Len = 5;
367 1.1 christos static_dtree[n].Code = bi_reverse((unsigned)n, 5);
368 1.1 christos }
369 1.1 christos static_init_done = 1;
370 1.1 christos
371 1.1 christos # ifdef GEN_TREES_H
372 1.1 christos gen_trees_header();
373 1.1 christos # endif
374 1.1 christos #endif /* defined(GEN_TREES_H) || !defined(STDC) */
375 1.1 christos }
376 1.1 christos
377 1.1 christos /* ===========================================================================
378 1.6 christos * Generate the file trees.h describing the static trees.
379 1.1 christos */
380 1.1 christos #ifdef GEN_TREES_H
381 1.2 christos # ifndef ZLIB_DEBUG
382 1.1 christos # include <stdio.h>
383 1.1 christos # endif
384 1.1 christos
385 1.1 christos # define SEPARATOR(i, last, width) \
386 1.1 christos ((i) == (last)? "\n};\n\n" : \
387 1.6 christos ((i) % (width) == (width) - 1 ? ",\n" : ", "))
388 1.1 christos
389 1.6.8.1 perseant void gen_trees_header(void) {
390 1.1 christos FILE *header = fopen("trees.h", "w");
391 1.1 christos int i;
392 1.1 christos
393 1.1 christos Assert (header != NULL, "Can't open trees.h");
394 1.1 christos fprintf(header,
395 1.1 christos "/* header created automatically with -DGEN_TREES_H */\n\n");
396 1.1 christos
397 1.1 christos fprintf(header, "local const ct_data static_ltree[L_CODES+2] = {\n");
398 1.1 christos for (i = 0; i < L_CODES+2; i++) {
399 1.1 christos fprintf(header, "{{%3u},{%3u}}%s", static_ltree[i].Code,
400 1.1 christos static_ltree[i].Len, SEPARATOR(i, L_CODES+1, 5));
401 1.1 christos }
402 1.1 christos
403 1.1 christos fprintf(header, "local const ct_data static_dtree[D_CODES] = {\n");
404 1.1 christos for (i = 0; i < D_CODES; i++) {
405 1.1 christos fprintf(header, "{{%2u},{%2u}}%s", static_dtree[i].Code,
406 1.1 christos static_dtree[i].Len, SEPARATOR(i, D_CODES-1, 5));
407 1.1 christos }
408 1.1 christos
409 1.4 christos fprintf(header, "const uch ZLIB_INTERNAL _dist_code[DIST_CODE_LEN] = {\n");
410 1.1 christos for (i = 0; i < DIST_CODE_LEN; i++) {
411 1.1 christos fprintf(header, "%2u%s", _dist_code[i],
412 1.1 christos SEPARATOR(i, DIST_CODE_LEN-1, 20));
413 1.1 christos }
414 1.1 christos
415 1.4 christos fprintf(header,
416 1.4 christos "const uch ZLIB_INTERNAL _length_code[MAX_MATCH-MIN_MATCH+1]= {\n");
417 1.1 christos for (i = 0; i < MAX_MATCH-MIN_MATCH+1; i++) {
418 1.1 christos fprintf(header, "%2u%s", _length_code[i],
419 1.1 christos SEPARATOR(i, MAX_MATCH-MIN_MATCH, 20));
420 1.1 christos }
421 1.1 christos
422 1.1 christos fprintf(header, "local const int base_length[LENGTH_CODES] = {\n");
423 1.1 christos for (i = 0; i < LENGTH_CODES; i++) {
424 1.1 christos fprintf(header, "%1u%s", base_length[i],
425 1.1 christos SEPARATOR(i, LENGTH_CODES-1, 20));
426 1.1 christos }
427 1.1 christos
428 1.1 christos fprintf(header, "local const int base_dist[D_CODES] = {\n");
429 1.1 christos for (i = 0; i < D_CODES; i++) {
430 1.1 christos fprintf(header, "%5u%s", base_dist[i],
431 1.1 christos SEPARATOR(i, D_CODES-1, 10));
432 1.1 christos }
433 1.1 christos
434 1.1 christos fclose(header);
435 1.1 christos }
436 1.1 christos #endif /* GEN_TREES_H */
437 1.1 christos
438 1.1 christos /* ===========================================================================
439 1.6.8.1 perseant * Initialize a new block.
440 1.6.8.1 perseant */
441 1.6.8.1 perseant local void init_block(deflate_state *s) {
442 1.6.8.1 perseant int n; /* iterates over tree elements */
443 1.6.8.1 perseant
444 1.6.8.1 perseant /* Initialize the trees. */
445 1.6.8.1 perseant for (n = 0; n < L_CODES; n++) s->dyn_ltree[n].Freq = 0;
446 1.6.8.1 perseant for (n = 0; n < D_CODES; n++) s->dyn_dtree[n].Freq = 0;
447 1.6.8.1 perseant for (n = 0; n < BL_CODES; n++) s->bl_tree[n].Freq = 0;
448 1.6.8.1 perseant
449 1.6.8.1 perseant s->dyn_ltree[END_BLOCK].Freq = 1;
450 1.6.8.1 perseant s->opt_len = s->static_len = 0L;
451 1.6.8.1 perseant s->sym_next = s->matches = 0;
452 1.6.8.1 perseant }
453 1.6.8.1 perseant
454 1.6.8.1 perseant /* ===========================================================================
455 1.1 christos * Initialize the tree data structures for a new zlib stream.
456 1.1 christos */
457 1.6.8.1 perseant void ZLIB_INTERNAL _tr_init(deflate_state *s) {
458 1.1 christos tr_static_init();
459 1.1 christos
460 1.1 christos s->l_desc.dyn_tree = s->dyn_ltree;
461 1.1 christos s->l_desc.stat_desc = &static_l_desc;
462 1.1 christos
463 1.1 christos s->d_desc.dyn_tree = s->dyn_dtree;
464 1.1 christos s->d_desc.stat_desc = &static_d_desc;
465 1.1 christos
466 1.1 christos s->bl_desc.dyn_tree = s->bl_tree;
467 1.1 christos s->bl_desc.stat_desc = &static_bl_desc;
468 1.1 christos
469 1.1 christos s->bi_buf = 0;
470 1.1 christos s->bi_valid = 0;
471 1.2 christos #ifdef ZLIB_DEBUG
472 1.1 christos s->compressed_len = 0L;
473 1.1 christos s->bits_sent = 0L;
474 1.1 christos #endif
475 1.1 christos
476 1.1 christos /* Initialize the first block of the first file: */
477 1.1 christos init_block(s);
478 1.1 christos }
479 1.1 christos
480 1.1 christos #define SMALLEST 1
481 1.1 christos /* Index within the heap array of least frequent node in the Huffman tree */
482 1.1 christos
483 1.1 christos
484 1.1 christos /* ===========================================================================
485 1.1 christos * Remove the smallest element from the heap and recreate the heap with
486 1.1 christos * one less element. Updates heap and heap_len.
487 1.1 christos */
488 1.1 christos #define pqremove(s, tree, top) \
489 1.1 christos {\
490 1.1 christos top = s->heap[SMALLEST]; \
491 1.1 christos s->heap[SMALLEST] = s->heap[s->heap_len--]; \
492 1.1 christos pqdownheap(s, tree, SMALLEST); \
493 1.1 christos }
494 1.1 christos
495 1.1 christos /* ===========================================================================
496 1.1 christos * Compares to subtrees, using the tree depth as tie breaker when
497 1.1 christos * the subtrees have equal frequency. This minimizes the worst case length.
498 1.1 christos */
499 1.1 christos #define smaller(tree, n, m, depth) \
500 1.1 christos (tree[n].Freq < tree[m].Freq || \
501 1.1 christos (tree[n].Freq == tree[m].Freq && depth[n] <= depth[m]))
502 1.1 christos
503 1.1 christos /* ===========================================================================
504 1.1 christos * Restore the heap property by moving down the tree starting at node k,
505 1.1 christos * exchanging a node with the smallest of its two sons if necessary, stopping
506 1.1 christos * when the heap property is re-established (each father smaller than its
507 1.1 christos * two sons).
508 1.1 christos */
509 1.6.8.1 perseant local void pqdownheap(deflate_state *s, ct_data *tree, int k) {
510 1.1 christos int v = s->heap[k];
511 1.1 christos int j = k << 1; /* left son of k */
512 1.1 christos while (j <= s->heap_len) {
513 1.1 christos /* Set j to the smallest of the two sons: */
514 1.1 christos if (j < s->heap_len &&
515 1.6 christos smaller(tree, s->heap[j + 1], s->heap[j], s->depth)) {
516 1.1 christos j++;
517 1.1 christos }
518 1.1 christos /* Exit if v is smaller than both sons */
519 1.1 christos if (smaller(tree, v, s->heap[j], s->depth)) break;
520 1.1 christos
521 1.1 christos /* Exchange v with the smallest son */
522 1.1 christos s->heap[k] = s->heap[j]; k = j;
523 1.1 christos
524 1.1 christos /* And continue down the tree, setting j to the left son of k */
525 1.1 christos j <<= 1;
526 1.1 christos }
527 1.1 christos s->heap[k] = v;
528 1.1 christos }
529 1.1 christos
530 1.1 christos /* ===========================================================================
531 1.1 christos * Compute the optimal bit lengths for a tree and update the total bit length
532 1.1 christos * for the current block.
533 1.1 christos * IN assertion: the fields freq and dad are set, heap[heap_max] and
534 1.1 christos * above are the tree nodes sorted by increasing frequency.
535 1.1 christos * OUT assertions: the field len is set to the optimal bit length, the
536 1.1 christos * array bl_count contains the frequencies for each bit length.
537 1.1 christos * The length opt_len is updated; static_len is also updated if stree is
538 1.1 christos * not null.
539 1.1 christos */
540 1.6.8.1 perseant local void gen_bitlen(deflate_state *s, tree_desc *desc) {
541 1.1 christos ct_data *tree = desc->dyn_tree;
542 1.1 christos int max_code = desc->max_code;
543 1.1 christos const ct_data *stree = desc->stat_desc->static_tree;
544 1.1 christos const intf *extra = desc->stat_desc->extra_bits;
545 1.1 christos int base = desc->stat_desc->extra_base;
546 1.1 christos int max_length = desc->stat_desc->max_length;
547 1.1 christos int h; /* heap index */
548 1.1 christos int n, m; /* iterate over the tree elements */
549 1.1 christos int bits; /* bit length */
550 1.1 christos int xbits; /* extra bits */
551 1.1 christos ush f; /* frequency */
552 1.1 christos int overflow = 0; /* number of elements with bit length too large */
553 1.1 christos
554 1.1 christos for (bits = 0; bits <= MAX_BITS; bits++) s->bl_count[bits] = 0;
555 1.1 christos
556 1.1 christos /* In a first pass, compute the optimal bit lengths (which may
557 1.1 christos * overflow in the case of the bit length tree).
558 1.1 christos */
559 1.1 christos tree[s->heap[s->heap_max]].Len = 0; /* root of the heap */
560 1.1 christos
561 1.6 christos for (h = s->heap_max + 1; h < HEAP_SIZE; h++) {
562 1.1 christos n = s->heap[h];
563 1.1 christos bits = tree[tree[n].Dad].Len + 1;
564 1.1 christos if (bits > max_length) bits = max_length, overflow++;
565 1.1 christos tree[n].Len = (ush)bits;
566 1.1 christos /* We overwrite tree[n].Dad which is no longer needed */
567 1.1 christos
568 1.1 christos if (n > max_code) continue; /* not a leaf node */
569 1.1 christos
570 1.1 christos s->bl_count[bits]++;
571 1.1 christos xbits = 0;
572 1.6 christos if (n >= base) xbits = extra[n - base];
573 1.1 christos f = tree[n].Freq;
574 1.4 christos s->opt_len += (ulg)f * (unsigned)(bits + xbits);
575 1.4 christos if (stree) s->static_len += (ulg)f * (unsigned)(stree[n].Len + xbits);
576 1.1 christos }
577 1.1 christos if (overflow == 0) return;
578 1.1 christos
579 1.4 christos Tracev((stderr,"\nbit length overflow\n"));
580 1.1 christos /* This happens for example on obj2 and pic of the Calgary corpus */
581 1.1 christos
582 1.1 christos /* Find the first bit length which could increase: */
583 1.1 christos do {
584 1.6 christos bits = max_length - 1;
585 1.1 christos while (s->bl_count[bits] == 0) bits--;
586 1.6 christos s->bl_count[bits]--; /* move one leaf down the tree */
587 1.6 christos s->bl_count[bits + 1] += 2; /* move one overflow item as its brother */
588 1.1 christos s->bl_count[max_length]--;
589 1.1 christos /* The brother of the overflow item also moves one step up,
590 1.1 christos * but this does not affect bl_count[max_length]
591 1.1 christos */
592 1.1 christos overflow -= 2;
593 1.1 christos } while (overflow > 0);
594 1.1 christos
595 1.1 christos /* Now recompute all bit lengths, scanning in increasing frequency.
596 1.1 christos * h is still equal to HEAP_SIZE. (It is simpler to reconstruct all
597 1.1 christos * lengths instead of fixing only the wrong ones. This idea is taken
598 1.1 christos * from 'ar' written by Haruhiko Okumura.)
599 1.1 christos */
600 1.1 christos for (bits = max_length; bits != 0; bits--) {
601 1.1 christos n = s->bl_count[bits];
602 1.1 christos while (n != 0) {
603 1.1 christos m = s->heap[--h];
604 1.1 christos if (m > max_code) continue;
605 1.1 christos if ((unsigned) tree[m].Len != (unsigned) bits) {
606 1.4 christos Tracev((stderr,"code %d bits %d->%d\n", m, tree[m].Len, bits));
607 1.4 christos s->opt_len += ((ulg)bits - tree[m].Len) * tree[m].Freq;
608 1.1 christos tree[m].Len = (ush)bits;
609 1.1 christos }
610 1.1 christos n--;
611 1.1 christos }
612 1.1 christos }
613 1.1 christos }
614 1.1 christos
615 1.6.8.1 perseant #ifdef DUMP_BL_TREE
616 1.6.8.1 perseant # include <stdio.h>
617 1.6.8.1 perseant #endif
618 1.1 christos
619 1.1 christos /* ===========================================================================
620 1.1 christos * Construct one Huffman tree and assigns the code bit strings and lengths.
621 1.1 christos * Update the total bit length for the current block.
622 1.1 christos * IN assertion: the field freq is set for all tree elements.
623 1.1 christos * OUT assertions: the fields len and code are set to the optimal bit length
624 1.1 christos * and corresponding code. The length opt_len is updated; static_len is
625 1.1 christos * also updated if stree is not null. The field max_code is set.
626 1.1 christos */
627 1.6.8.1 perseant local void build_tree(deflate_state *s, tree_desc *desc) {
628 1.1 christos ct_data *tree = desc->dyn_tree;
629 1.1 christos const ct_data *stree = desc->stat_desc->static_tree;
630 1.1 christos int elems = desc->stat_desc->elems;
631 1.1 christos int n, m; /* iterate over heap elements */
632 1.1 christos int max_code = -1; /* largest code with non zero frequency */
633 1.1 christos int node; /* new node being created */
634 1.1 christos
635 1.1 christos /* Construct the initial heap, with least frequent element in
636 1.6 christos * heap[SMALLEST]. The sons of heap[n] are heap[2*n] and heap[2*n + 1].
637 1.1 christos * heap[0] is not used.
638 1.1 christos */
639 1.1 christos s->heap_len = 0, s->heap_max = HEAP_SIZE;
640 1.1 christos
641 1.1 christos for (n = 0; n < elems; n++) {
642 1.1 christos if (tree[n].Freq != 0) {
643 1.1 christos s->heap[++(s->heap_len)] = max_code = n;
644 1.1 christos s->depth[n] = 0;
645 1.1 christos } else {
646 1.1 christos tree[n].Len = 0;
647 1.1 christos }
648 1.1 christos }
649 1.1 christos
650 1.1 christos /* The pkzip format requires that at least one distance code exists,
651 1.1 christos * and that at least one bit should be sent even if there is only one
652 1.1 christos * possible code. So to avoid special checks later on we force at least
653 1.1 christos * two codes of non zero frequency.
654 1.1 christos */
655 1.1 christos while (s->heap_len < 2) {
656 1.1 christos node = s->heap[++(s->heap_len)] = (max_code < 2 ? ++max_code : 0);
657 1.1 christos tree[node].Freq = 1;
658 1.1 christos s->depth[node] = 0;
659 1.1 christos s->opt_len--; if (stree) s->static_len -= stree[node].Len;
660 1.1 christos /* node is 0 or 1 so it does not have extra bits */
661 1.1 christos }
662 1.1 christos desc->max_code = max_code;
663 1.1 christos
664 1.6 christos /* The elements heap[heap_len/2 + 1 .. heap_len] are leaves of the tree,
665 1.1 christos * establish sub-heaps of increasing lengths:
666 1.1 christos */
667 1.1 christos for (n = s->heap_len/2; n >= 1; n--) pqdownheap(s, tree, n);
668 1.1 christos
669 1.1 christos /* Construct the Huffman tree by repeatedly combining the least two
670 1.1 christos * frequent nodes.
671 1.1 christos */
672 1.1 christos node = elems; /* next internal node of the tree */
673 1.1 christos do {
674 1.1 christos pqremove(s, tree, n); /* n = node of least frequency */
675 1.1 christos m = s->heap[SMALLEST]; /* m = node of next least frequency */
676 1.1 christos
677 1.1 christos s->heap[--(s->heap_max)] = n; /* keep the nodes sorted by frequency */
678 1.1 christos s->heap[--(s->heap_max)] = m;
679 1.1 christos
680 1.1 christos /* Create a new node father of n and m */
681 1.1 christos tree[node].Freq = tree[n].Freq + tree[m].Freq;
682 1.1 christos s->depth[node] = (uch)((s->depth[n] >= s->depth[m] ?
683 1.1 christos s->depth[n] : s->depth[m]) + 1);
684 1.1 christos tree[n].Dad = tree[m].Dad = (ush)node;
685 1.1 christos #ifdef DUMP_BL_TREE
686 1.1 christos if (tree == s->bl_tree) {
687 1.1 christos fprintf(stderr,"\nnode %d(%d), sons %d(%d) %d(%d)",
688 1.1 christos node, tree[node].Freq, n, tree[n].Freq, m, tree[m].Freq);
689 1.1 christos }
690 1.1 christos #endif
691 1.1 christos /* and insert the new node in the heap */
692 1.1 christos s->heap[SMALLEST] = node++;
693 1.1 christos pqdownheap(s, tree, SMALLEST);
694 1.1 christos
695 1.1 christos } while (s->heap_len >= 2);
696 1.1 christos
697 1.1 christos s->heap[--(s->heap_max)] = s->heap[SMALLEST];
698 1.1 christos
699 1.1 christos /* At this point, the fields freq and dad are set. We can now
700 1.1 christos * generate the bit lengths.
701 1.1 christos */
702 1.1 christos gen_bitlen(s, (tree_desc *)desc);
703 1.1 christos
704 1.1 christos /* The field len is now set, we can generate the bit codes */
705 1.1 christos gen_codes ((ct_data *)tree, max_code, s->bl_count);
706 1.1 christos }
707 1.1 christos
708 1.1 christos /* ===========================================================================
709 1.1 christos * Scan a literal or distance tree to determine the frequencies of the codes
710 1.1 christos * in the bit length tree.
711 1.1 christos */
712 1.6.8.1 perseant local void scan_tree(deflate_state *s, ct_data *tree, int max_code) {
713 1.1 christos int n; /* iterates over all tree elements */
714 1.1 christos int prevlen = -1; /* last emitted length */
715 1.1 christos int curlen; /* length of current code */
716 1.1 christos int nextlen = tree[0].Len; /* length of next code */
717 1.1 christos int count = 0; /* repeat count of the current code */
718 1.1 christos int max_count = 7; /* max repeat count */
719 1.1 christos int min_count = 4; /* min repeat count */
720 1.1 christos
721 1.1 christos if (nextlen == 0) max_count = 138, min_count = 3;
722 1.6 christos tree[max_code + 1].Len = (ush)0xffff; /* guard */
723 1.1 christos
724 1.1 christos for (n = 0; n <= max_code; n++) {
725 1.6 christos curlen = nextlen; nextlen = tree[n + 1].Len;
726 1.1 christos if (++count < max_count && curlen == nextlen) {
727 1.1 christos continue;
728 1.1 christos } else if (count < min_count) {
729 1.1 christos s->bl_tree[curlen].Freq += count;
730 1.1 christos } else if (curlen != 0) {
731 1.1 christos if (curlen != prevlen) s->bl_tree[curlen].Freq++;
732 1.1 christos s->bl_tree[REP_3_6].Freq++;
733 1.1 christos } else if (count <= 10) {
734 1.1 christos s->bl_tree[REPZ_3_10].Freq++;
735 1.1 christos } else {
736 1.1 christos s->bl_tree[REPZ_11_138].Freq++;
737 1.1 christos }
738 1.1 christos count = 0; prevlen = curlen;
739 1.1 christos if (nextlen == 0) {
740 1.1 christos max_count = 138, min_count = 3;
741 1.1 christos } else if (curlen == nextlen) {
742 1.1 christos max_count = 6, min_count = 3;
743 1.1 christos } else {
744 1.1 christos max_count = 7, min_count = 4;
745 1.1 christos }
746 1.1 christos }
747 1.1 christos }
748 1.1 christos
749 1.1 christos /* ===========================================================================
750 1.1 christos * Send a literal or distance tree in compressed form, using the codes in
751 1.1 christos * bl_tree.
752 1.1 christos */
753 1.6.8.1 perseant local void send_tree(deflate_state *s, ct_data *tree, int max_code) {
754 1.1 christos int n; /* iterates over all tree elements */
755 1.1 christos int prevlen = -1; /* last emitted length */
756 1.1 christos int curlen; /* length of current code */
757 1.1 christos int nextlen = tree[0].Len; /* length of next code */
758 1.1 christos int count = 0; /* repeat count of the current code */
759 1.1 christos int max_count = 7; /* max repeat count */
760 1.1 christos int min_count = 4; /* min repeat count */
761 1.1 christos
762 1.6 christos /* tree[max_code + 1].Len = -1; */ /* guard already set */
763 1.1 christos if (nextlen == 0) max_count = 138, min_count = 3;
764 1.1 christos
765 1.1 christos for (n = 0; n <= max_code; n++) {
766 1.6 christos curlen = nextlen; nextlen = tree[n + 1].Len;
767 1.1 christos if (++count < max_count && curlen == nextlen) {
768 1.1 christos continue;
769 1.1 christos } else if (count < min_count) {
770 1.1 christos do { send_code(s, curlen, s->bl_tree); } while (--count != 0);
771 1.1 christos
772 1.1 christos } else if (curlen != 0) {
773 1.1 christos if (curlen != prevlen) {
774 1.1 christos send_code(s, curlen, s->bl_tree); count--;
775 1.1 christos }
776 1.1 christos Assert(count >= 3 && count <= 6, " 3_6?");
777 1.6 christos send_code(s, REP_3_6, s->bl_tree); send_bits(s, count - 3, 2);
778 1.1 christos
779 1.1 christos } else if (count <= 10) {
780 1.6 christos send_code(s, REPZ_3_10, s->bl_tree); send_bits(s, count - 3, 3);
781 1.1 christos
782 1.1 christos } else {
783 1.6 christos send_code(s, REPZ_11_138, s->bl_tree); send_bits(s, count - 11, 7);
784 1.1 christos }
785 1.1 christos count = 0; prevlen = curlen;
786 1.1 christos if (nextlen == 0) {
787 1.1 christos max_count = 138, min_count = 3;
788 1.1 christos } else if (curlen == nextlen) {
789 1.1 christos max_count = 6, min_count = 3;
790 1.1 christos } else {
791 1.1 christos max_count = 7, min_count = 4;
792 1.1 christos }
793 1.1 christos }
794 1.1 christos }
795 1.1 christos
796 1.1 christos /* ===========================================================================
797 1.1 christos * Construct the Huffman tree for the bit lengths and return the index in
798 1.1 christos * bl_order of the last bit length code to send.
799 1.1 christos */
800 1.6.8.1 perseant local int build_bl_tree(deflate_state *s) {
801 1.1 christos int max_blindex; /* index of last bit length code of non zero freq */
802 1.1 christos
803 1.1 christos /* Determine the bit length frequencies for literal and distance trees */
804 1.1 christos scan_tree(s, (ct_data *)s->dyn_ltree, s->l_desc.max_code);
805 1.1 christos scan_tree(s, (ct_data *)s->dyn_dtree, s->d_desc.max_code);
806 1.1 christos
807 1.1 christos /* Build the bit length tree: */
808 1.1 christos build_tree(s, (tree_desc *)(&(s->bl_desc)));
809 1.6 christos /* opt_len now includes the length of the tree representations, except the
810 1.6 christos * lengths of the bit lengths codes and the 5 + 5 + 4 bits for the counts.
811 1.1 christos */
812 1.1 christos
813 1.1 christos /* Determine the number of bit length codes to send. The pkzip format
814 1.1 christos * requires that at least 4 bit length codes be sent. (appnote.txt says
815 1.1 christos * 3 but the actual value used is 4.)
816 1.1 christos */
817 1.1 christos for (max_blindex = BL_CODES-1; max_blindex >= 3; max_blindex--) {
818 1.1 christos if (s->bl_tree[bl_order[max_blindex]].Len != 0) break;
819 1.1 christos }
820 1.1 christos /* Update opt_len to include the bit length tree and counts */
821 1.6 christos s->opt_len += 3*((ulg)max_blindex + 1) + 5 + 5 + 4;
822 1.1 christos Tracev((stderr, "\ndyn trees: dyn %ld, stat %ld",
823 1.1 christos s->opt_len, s->static_len));
824 1.1 christos
825 1.1 christos return max_blindex;
826 1.1 christos }
827 1.1 christos
828 1.1 christos /* ===========================================================================
829 1.1 christos * Send the header for a block using dynamic Huffman trees: the counts, the
830 1.1 christos * lengths of the bit length codes, the literal tree and the distance tree.
831 1.1 christos * IN assertion: lcodes >= 257, dcodes >= 1, blcodes >= 4.
832 1.1 christos */
833 1.6.8.1 perseant local void send_all_trees(deflate_state *s, int lcodes, int dcodes,
834 1.6.8.1 perseant int blcodes) {
835 1.1 christos int rank; /* index in bl_order */
836 1.1 christos
837 1.1 christos Assert (lcodes >= 257 && dcodes >= 1 && blcodes >= 4, "not enough codes");
838 1.1 christos Assert (lcodes <= L_CODES && dcodes <= D_CODES && blcodes <= BL_CODES,
839 1.1 christos "too many codes");
840 1.1 christos Tracev((stderr, "\nbl counts: "));
841 1.6 christos send_bits(s, lcodes - 257, 5); /* not +255 as stated in appnote.txt */
842 1.6 christos send_bits(s, dcodes - 1, 5);
843 1.6 christos send_bits(s, blcodes - 4, 4); /* not -3 as stated in appnote.txt */
844 1.1 christos for (rank = 0; rank < blcodes; rank++) {
845 1.1 christos Tracev((stderr, "\nbl code %2d ", bl_order[rank]));
846 1.1 christos send_bits(s, s->bl_tree[bl_order[rank]].Len, 3);
847 1.1 christos }
848 1.1 christos Tracev((stderr, "\nbl tree: sent %ld", s->bits_sent));
849 1.1 christos
850 1.6 christos send_tree(s, (ct_data *)s->dyn_ltree, lcodes - 1); /* literal tree */
851 1.1 christos Tracev((stderr, "\nlit tree: sent %ld", s->bits_sent));
852 1.1 christos
853 1.6 christos send_tree(s, (ct_data *)s->dyn_dtree, dcodes - 1); /* distance tree */
854 1.1 christos Tracev((stderr, "\ndist tree: sent %ld", s->bits_sent));
855 1.1 christos }
856 1.1 christos
857 1.1 christos /* ===========================================================================
858 1.1 christos * Send a stored block
859 1.1 christos */
860 1.6.8.1 perseant void ZLIB_INTERNAL _tr_stored_block(deflate_state *s, charf *buf,
861 1.6.8.1 perseant ulg stored_len, int last) {
862 1.6 christos send_bits(s, (STORED_BLOCK<<1) + last, 3); /* send block type */
863 1.4 christos bi_windup(s); /* align on byte boundary */
864 1.4 christos put_short(s, (ush)stored_len);
865 1.4 christos put_short(s, (ush)~stored_len);
866 1.6 christos if (stored_len)
867 1.6 christos zmemcpy(s->pending_buf + s->pending, (Bytef *)buf, stored_len);
868 1.4 christos s->pending += stored_len;
869 1.2 christos #ifdef ZLIB_DEBUG
870 1.1 christos s->compressed_len = (s->compressed_len + 3 + 7) & (ulg)~7L;
871 1.1 christos s->compressed_len += (stored_len + 4) << 3;
872 1.4 christos s->bits_sent += 2*16;
873 1.6 christos s->bits_sent += stored_len << 3;
874 1.1 christos #endif
875 1.4 christos }
876 1.4 christos
877 1.4 christos /* ===========================================================================
878 1.4 christos * Flush the bits in the bit buffer to pending output (leaves at most 7 bits)
879 1.4 christos */
880 1.6.8.1 perseant void ZLIB_INTERNAL _tr_flush_bits(deflate_state *s) {
881 1.4 christos bi_flush(s);
882 1.1 christos }
883 1.1 christos
884 1.1 christos /* ===========================================================================
885 1.1 christos * Send one empty static block to give enough lookahead for inflate.
886 1.1 christos * This takes 10 bits, of which 7 may remain in the bit buffer.
887 1.1 christos */
888 1.6.8.1 perseant void ZLIB_INTERNAL _tr_align(deflate_state *s) {
889 1.1 christos send_bits(s, STATIC_TREES<<1, 3);
890 1.1 christos send_code(s, END_BLOCK, static_ltree);
891 1.2 christos #ifdef ZLIB_DEBUG
892 1.1 christos s->compressed_len += 10L; /* 3 for block type, 7 for EOB */
893 1.1 christos #endif
894 1.1 christos bi_flush(s);
895 1.1 christos }
896 1.1 christos
897 1.1 christos /* ===========================================================================
898 1.6.8.1 perseant * Send the block data compressed using the given Huffman trees
899 1.6.8.1 perseant */
900 1.6.8.1 perseant local void compress_block(deflate_state *s, const ct_data *ltree,
901 1.6.8.1 perseant const ct_data *dtree) {
902 1.6.8.1 perseant unsigned dist; /* distance of matched string */
903 1.6.8.1 perseant int lc; /* match length or unmatched char (if dist == 0) */
904 1.6.8.1 perseant unsigned sx = 0; /* running index in symbol buffers */
905 1.6.8.1 perseant unsigned code; /* the code to send */
906 1.6.8.1 perseant int extra; /* number of extra bits to send */
907 1.6.8.1 perseant
908 1.6.8.1 perseant if (s->sym_next != 0) do {
909 1.6.8.1 perseant #ifdef LIT_MEM
910 1.6.8.1 perseant dist = s->d_buf[sx];
911 1.6.8.1 perseant lc = s->l_buf[sx++];
912 1.6.8.1 perseant #else
913 1.6.8.1 perseant dist = s->sym_buf[sx++] & 0xff;
914 1.6.8.1 perseant dist += (unsigned)(s->sym_buf[sx++] & 0xff) << 8;
915 1.6.8.1 perseant lc = s->sym_buf[sx++];
916 1.6.8.1 perseant #endif
917 1.6.8.1 perseant if (dist == 0) {
918 1.6.8.1 perseant send_code(s, lc, ltree); /* send a literal byte */
919 1.6.8.1 perseant Tracecv(isgraph(lc), (stderr," '%c' ", lc));
920 1.6.8.1 perseant } else {
921 1.6.8.1 perseant /* Here, lc is the match length - MIN_MATCH */
922 1.6.8.1 perseant code = _length_code[lc];
923 1.6.8.1 perseant send_code(s, code + LITERALS + 1, ltree); /* send length code */
924 1.6.8.1 perseant extra = extra_lbits[code];
925 1.6.8.1 perseant if (extra != 0) {
926 1.6.8.1 perseant lc -= base_length[code];
927 1.6.8.1 perseant send_bits(s, lc, extra); /* send the extra length bits */
928 1.6.8.1 perseant }
929 1.6.8.1 perseant dist--; /* dist is now the match distance - 1 */
930 1.6.8.1 perseant code = d_code(dist);
931 1.6.8.1 perseant Assert (code < D_CODES, "bad d_code");
932 1.6.8.1 perseant
933 1.6.8.1 perseant send_code(s, code, dtree); /* send the distance code */
934 1.6.8.1 perseant extra = extra_dbits[code];
935 1.6.8.1 perseant if (extra != 0) {
936 1.6.8.1 perseant dist -= (unsigned)base_dist[code];
937 1.6.8.1 perseant send_bits(s, dist, extra); /* send the extra distance bits */
938 1.6.8.1 perseant }
939 1.6.8.1 perseant } /* literal or match pair ? */
940 1.6.8.1 perseant
941 1.6.8.1 perseant /* Check for no overlay of pending_buf on needed symbols */
942 1.6.8.1 perseant #ifdef LIT_MEM
943 1.6.8.1 perseant Assert(s->pending < 2 * (s->lit_bufsize + sx), "pendingBuf overflow");
944 1.6.8.1 perseant #else
945 1.6.8.1 perseant Assert(s->pending < s->lit_bufsize + sx, "pendingBuf overflow");
946 1.6.8.1 perseant #endif
947 1.6.8.1 perseant
948 1.6.8.1 perseant } while (sx < s->sym_next);
949 1.6.8.1 perseant
950 1.6.8.1 perseant send_code(s, END_BLOCK, ltree);
951 1.6.8.1 perseant }
952 1.6.8.1 perseant
953 1.6.8.1 perseant /* ===========================================================================
954 1.6.8.1 perseant * Check if the data type is TEXT or BINARY, using the following algorithm:
955 1.6.8.1 perseant * - TEXT if the two conditions below are satisfied:
956 1.6.8.1 perseant * a) There are no non-portable control characters belonging to the
957 1.6.8.1 perseant * "block list" (0..6, 14..25, 28..31).
958 1.6.8.1 perseant * b) There is at least one printable character belonging to the
959 1.6.8.1 perseant * "allow list" (9 {TAB}, 10 {LF}, 13 {CR}, 32..255).
960 1.6.8.1 perseant * - BINARY otherwise.
961 1.6.8.1 perseant * - The following partially-portable control characters form a
962 1.6.8.1 perseant * "gray list" that is ignored in this detection algorithm:
963 1.6.8.1 perseant * (7 {BEL}, 8 {BS}, 11 {VT}, 12 {FF}, 26 {SUB}, 27 {ESC}).
964 1.6.8.1 perseant * IN assertion: the fields Freq of dyn_ltree are set.
965 1.6.8.1 perseant */
966 1.6.8.1 perseant local int detect_data_type(deflate_state *s) {
967 1.6.8.1 perseant /* block_mask is the bit mask of block-listed bytes
968 1.6.8.1 perseant * set bits 0..6, 14..25, and 28..31
969 1.6.8.1 perseant * 0xf3ffc07f = binary 11110011111111111100000001111111
970 1.6.8.1 perseant */
971 1.6.8.1 perseant unsigned long block_mask = 0xf3ffc07fUL;
972 1.6.8.1 perseant int n;
973 1.6.8.1 perseant
974 1.6.8.1 perseant /* Check for non-textual ("block-listed") bytes. */
975 1.6.8.1 perseant for (n = 0; n <= 31; n++, block_mask >>= 1)
976 1.6.8.1 perseant if ((block_mask & 1) && (s->dyn_ltree[n].Freq != 0))
977 1.6.8.1 perseant return Z_BINARY;
978 1.6.8.1 perseant
979 1.6.8.1 perseant /* Check for textual ("allow-listed") bytes. */
980 1.6.8.1 perseant if (s->dyn_ltree[9].Freq != 0 || s->dyn_ltree[10].Freq != 0
981 1.6.8.1 perseant || s->dyn_ltree[13].Freq != 0)
982 1.6.8.1 perseant return Z_TEXT;
983 1.6.8.1 perseant for (n = 32; n < LITERALS; n++)
984 1.6.8.1 perseant if (s->dyn_ltree[n].Freq != 0)
985 1.6.8.1 perseant return Z_TEXT;
986 1.6.8.1 perseant
987 1.6.8.1 perseant /* There are no "block-listed" or "allow-listed" bytes:
988 1.6.8.1 perseant * this stream either is empty or has tolerated ("gray-listed") bytes only.
989 1.6.8.1 perseant */
990 1.6.8.1 perseant return Z_BINARY;
991 1.6.8.1 perseant }
992 1.6.8.1 perseant
993 1.6.8.1 perseant /* ===========================================================================
994 1.1 christos * Determine the best encoding for the current block: dynamic trees, static
995 1.6 christos * trees or store, and write out the encoded block.
996 1.1 christos */
997 1.6.8.1 perseant void ZLIB_INTERNAL _tr_flush_block(deflate_state *s, charf *buf,
998 1.6.8.1 perseant ulg stored_len, int last) {
999 1.1 christos ulg opt_lenb, static_lenb; /* opt_len and static_len in bytes */
1000 1.1 christos int max_blindex = 0; /* index of last bit length code of non zero freq */
1001 1.1 christos
1002 1.1 christos /* Build the Huffman trees unless a stored block is forced */
1003 1.1 christos if (s->level > 0) {
1004 1.1 christos
1005 1.1 christos /* Check if the file is binary or text */
1006 1.4 christos if (s->strm->data_type == Z_UNKNOWN)
1007 1.4 christos s->strm->data_type = detect_data_type(s);
1008 1.1 christos
1009 1.1 christos /* Construct the literal and distance trees */
1010 1.1 christos build_tree(s, (tree_desc *)(&(s->l_desc)));
1011 1.1 christos Tracev((stderr, "\nlit data: dyn %ld, stat %ld", s->opt_len,
1012 1.1 christos s->static_len));
1013 1.1 christos
1014 1.1 christos build_tree(s, (tree_desc *)(&(s->d_desc)));
1015 1.1 christos Tracev((stderr, "\ndist data: dyn %ld, stat %ld", s->opt_len,
1016 1.1 christos s->static_len));
1017 1.1 christos /* At this point, opt_len and static_len are the total bit lengths of
1018 1.1 christos * the compressed block data, excluding the tree representations.
1019 1.1 christos */
1020 1.1 christos
1021 1.1 christos /* Build the bit length tree for the above two trees, and get the index
1022 1.1 christos * in bl_order of the last bit length code to send.
1023 1.1 christos */
1024 1.1 christos max_blindex = build_bl_tree(s);
1025 1.1 christos
1026 1.1 christos /* Determine the best encoding. Compute the block lengths in bytes. */
1027 1.6 christos opt_lenb = (s->opt_len + 3 + 7) >> 3;
1028 1.6 christos static_lenb = (s->static_len + 3 + 7) >> 3;
1029 1.1 christos
1030 1.1 christos Tracev((stderr, "\nopt %lu(%lu) stat %lu(%lu) stored %lu lit %u ",
1031 1.1 christos opt_lenb, s->opt_len, static_lenb, s->static_len, stored_len,
1032 1.5 wiz s->sym_next / 3));
1033 1.1 christos
1034 1.6 christos #ifndef FORCE_STATIC
1035 1.6 christos if (static_lenb <= opt_lenb || s->strategy == Z_FIXED)
1036 1.6 christos #endif
1037 1.6 christos opt_lenb = static_lenb;
1038 1.1 christos
1039 1.1 christos } else {
1040 1.1 christos Assert(buf != (char*)0, "lost buf");
1041 1.1 christos opt_lenb = static_lenb = stored_len + 5; /* force a stored block */
1042 1.1 christos }
1043 1.1 christos
1044 1.1 christos #ifdef FORCE_STORED
1045 1.1 christos if (buf != (char*)0) { /* force stored block */
1046 1.1 christos #else
1047 1.6 christos if (stored_len + 4 <= opt_lenb && buf != (char*)0) {
1048 1.1 christos /* 4: two words for the lengths */
1049 1.1 christos #endif
1050 1.1 christos /* The test buf != NULL is only necessary if LIT_BUFSIZE > WSIZE.
1051 1.1 christos * Otherwise we can't have processed more than WSIZE input bytes since
1052 1.1 christos * the last block flush, because compression would have been
1053 1.1 christos * successful. If LIT_BUFSIZE <= WSIZE, it is never too late to
1054 1.1 christos * transform a block into a stored block.
1055 1.1 christos */
1056 1.4 christos _tr_stored_block(s, buf, stored_len, last);
1057 1.1 christos
1058 1.6 christos } else if (static_lenb == opt_lenb) {
1059 1.6 christos send_bits(s, (STATIC_TREES<<1) + last, 3);
1060 1.4 christos compress_block(s, (const ct_data *)static_ltree,
1061 1.4 christos (const ct_data *)static_dtree);
1062 1.2 christos #ifdef ZLIB_DEBUG
1063 1.1 christos s->compressed_len += 3 + s->static_len;
1064 1.1 christos #endif
1065 1.1 christos } else {
1066 1.6 christos send_bits(s, (DYN_TREES<<1) + last, 3);
1067 1.6 christos send_all_trees(s, s->l_desc.max_code + 1, s->d_desc.max_code + 1,
1068 1.6 christos max_blindex + 1);
1069 1.4 christos compress_block(s, (const ct_data *)s->dyn_ltree,
1070 1.4 christos (const ct_data *)s->dyn_dtree);
1071 1.2 christos #ifdef ZLIB_DEBUG
1072 1.1 christos s->compressed_len += 3 + s->opt_len;
1073 1.1 christos #endif
1074 1.1 christos }
1075 1.1 christos Assert (s->compressed_len == s->bits_sent, "bad compressed size");
1076 1.1 christos /* The above check is made mod 2^32, for files larger than 512 MB
1077 1.1 christos * and uLong implemented on 32 bits.
1078 1.1 christos */
1079 1.1 christos init_block(s);
1080 1.1 christos
1081 1.4 christos if (last) {
1082 1.1 christos bi_windup(s);
1083 1.2 christos #ifdef ZLIB_DEBUG
1084 1.1 christos s->compressed_len += 7; /* align on byte boundary */
1085 1.1 christos #endif
1086 1.1 christos }
1087 1.6 christos Tracev((stderr,"\ncomprlen %lu(%lu) ", s->compressed_len >> 3,
1088 1.6 christos s->compressed_len - 7*last));
1089 1.1 christos }
1090 1.1 christos
1091 1.1 christos /* ===========================================================================
1092 1.1 christos * Save the match info and tally the frequency counts. Return true if
1093 1.1 christos * the current block must be flushed.
1094 1.1 christos */
1095 1.6.8.1 perseant int ZLIB_INTERNAL _tr_tally(deflate_state *s, unsigned dist, unsigned lc) {
1096 1.6.8.1 perseant #ifdef LIT_MEM
1097 1.6.8.1 perseant s->d_buf[s->sym_next] = (ush)dist;
1098 1.6.8.1 perseant s->l_buf[s->sym_next++] = (uch)lc;
1099 1.6.8.1 perseant #else
1100 1.6 christos s->sym_buf[s->sym_next++] = (uch)dist;
1101 1.6 christos s->sym_buf[s->sym_next++] = (uch)(dist >> 8);
1102 1.6 christos s->sym_buf[s->sym_next++] = (uch)lc;
1103 1.6.8.1 perseant #endif
1104 1.1 christos if (dist == 0) {
1105 1.1 christos /* lc is the unmatched char */
1106 1.1 christos s->dyn_ltree[lc].Freq++;
1107 1.1 christos } else {
1108 1.1 christos s->matches++;
1109 1.1 christos /* Here, lc is the match length - MIN_MATCH */
1110 1.1 christos dist--; /* dist = match distance - 1 */
1111 1.1 christos Assert((ush)dist < (ush)MAX_DIST(s) &&
1112 1.1 christos (ush)lc <= (ush)(MAX_MATCH-MIN_MATCH) &&
1113 1.1 christos (ush)d_code(dist) < (ush)D_CODES, "_tr_tally: bad match");
1114 1.1 christos
1115 1.6 christos s->dyn_ltree[_length_code[lc] + LITERALS + 1].Freq++;
1116 1.1 christos s->dyn_dtree[d_code(dist)].Freq++;
1117 1.1 christos }
1118 1.5 wiz return (s->sym_next == s->sym_end);
1119 1.1 christos }
1120