Coverage Report

Created: 2022-10-16 06:06

/src/bzip2/compress.c
Line
Count
Source (jump to first uncovered line)
1
2
/*-------------------------------------------------------------*/
3
/*--- Compression machinery (not incl block sorting)        ---*/
4
/*---                                            compress.c ---*/
5
/*-------------------------------------------------------------*/
6
7
/* ------------------------------------------------------------------
8
   This file is part of bzip2/libbzip2, a program and library for
9
   lossless, block-sorting data compression.
10
11
   bzip2/libbzip2 version 1.0.8 of 13 July 2019
12
   Copyright (C) 1996-2019 Julian Seward <jseward@acm.org>
13
14
   Please read the WARNING, DISCLAIMER and PATENTS sections in the 
15
   README file.
16
17
   This program is released under the terms of the license contained
18
   in the file LICENSE.
19
   ------------------------------------------------------------------ */
20
21
22
/* CHANGES
23
    0.9.0    -- original version.
24
    0.9.0a/b -- no changes in this file.
25
    0.9.0c   -- changed setting of nGroups in sendMTFValues() 
26
                so as to do a bit better on small files
27
*/
28
29
#include "bzlib_private.h"
30
31
32
/*---------------------------------------------------*/
33
/*--- Bit stream I/O                              ---*/
34
/*---------------------------------------------------*/
35
36
/*---------------------------------------------------*/
37
void BZ2_bsInitWrite ( EState* s )
38
4.71k
{
39
4.71k
   s->bsLive = 0;
40
4.71k
   s->bsBuff = 0;
41
4.71k
}
42
43
44
/*---------------------------------------------------*/
45
static
46
void bsFinishWrite ( EState* s )
47
4.71k
{
48
13.5k
   while (s->bsLive > 0) {
49
8.85k
      s->zbits[s->numZ] = (UChar)(s->bsBuff >> 24);
50
8.85k
      s->numZ++;
51
8.85k
      s->bsBuff <<= 8;
52
8.85k
      s->bsLive -= 8;
53
8.85k
   }
54
4.71k
}
55
56
57
/*---------------------------------------------------*/
58
166M
#define bsNEEDW(nz)                           \
59
166M
{                                             \
60
301M
   while (s->bsLive >= 8) {                   \
61
135M
      s->zbits[s->numZ]                       \
62
135M
         = (UChar)(s->bsBuff >> 24);          \
63
135M
      s->numZ++;                              \
64
135M
      s->bsBuff <<= 8;                        \
65
135M
      s->bsLive -= 8;                         \
66
135M
   }                                          \
67
166M
}
68
69
70
/*---------------------------------------------------*/
71
static
72
__inline__
73
void bsW ( EState* s, Int32 n, UInt32 v )
74
166M
{
75
166M
   bsNEEDW ( n );
76
166M
   s->bsBuff |= (v << (32 - s->bsLive - n));
77
166M
   s->bsLive += n;
78
166M
}
79
80
81
/*---------------------------------------------------*/
82
static
83
void bsPutUInt32 ( EState* s, UInt32 u )
84
11.1k
{
85
11.1k
   bsW ( s, 8, (u >> 24) & 0xffL );
86
11.1k
   bsW ( s, 8, (u >> 16) & 0xffL );
87
11.1k
   bsW ( s, 8, (u >>  8) & 0xffL );
88
11.1k
   bsW ( s, 8,  u        & 0xffL );
89
11.1k
}
90
91
92
/*---------------------------------------------------*/
93
static
94
void bsPutUChar ( EState* s, UChar c )
95
85.8k
{
96
85.8k
   bsW( s, 8, (UInt32)c );
97
85.8k
}
98
99
100
/*---------------------------------------------------*/
101
/*--- The back end proper                         ---*/
102
/*---------------------------------------------------*/
103
104
/*---------------------------------------------------*/
105
static
106
void makeMaps_e ( EState* s )
107
6.44k
{
108
6.44k
   Int32 i;
109
6.44k
   s->nInUse = 0;
110
1.65M
   for (i = 0; i < 256; i++)
111
1.65M
      if (s->inUse[i]) {
112
760k
         s->unseqToSeq[i] = s->nInUse;
113
760k
         s->nInUse++;
114
760k
      }
115
6.44k
}
116
117
118
/*---------------------------------------------------*/
119
static
120
void generateMTFValues ( EState* s )
121
6.44k
{
122
6.44k
   UChar   yy[256];
123
6.44k
   Int32   i, j;
124
6.44k
   Int32   zPend;
125
6.44k
   Int32   wr;
126
6.44k
   Int32   EOB;
127
128
   /* 
129
      After sorting (eg, here),
130
         s->arr1 [ 0 .. s->nblock-1 ] holds sorted order,
131
         and
132
         ((UChar*)s->arr2) [ 0 .. s->nblock-1 ] 
133
         holds the original block data.
134
135
      The first thing to do is generate the MTF values,
136
      and put them in
137
         ((UInt16*)s->arr1) [ 0 .. s->nblock-1 ].
138
      Because there are strictly fewer or equal MTF values
139
      than block values, ptr values in this area are overwritten
140
      with MTF values only when they are no longer needed.
141
142
      The final compressed bitstream is generated into the
143
      area starting at
144
         (UChar*) (&((UChar*)s->arr2)[s->nblock])
145
146
      These storage aliases are set up in bzCompressInit(),
147
      except for the last one, which is arranged in 
148
      compressBlock().
149
   */
150
6.44k
   UInt32* ptr   = s->ptr;
151
6.44k
   UChar* block  = s->block;
152
6.44k
   UInt16* mtfv  = s->mtfv;
153
154
6.44k
   makeMaps_e ( s );
155
6.44k
   EOB = s->nInUse+1;
156
157
779k
   for (i = 0; i <= EOB; i++) s->mtfFreq[i] = 0;
158
159
6.44k
   wr = 0;
160
6.44k
   zPend = 0;
161
767k
   for (i = 0; i < s->nInUse; i++) yy[i] = (UChar) i;
162
163
348M
   for (i = 0; i < s->nblock; i++) {
164
348M
      UChar ll_i;
165
348M
      AssertD ( wr <= i, "generateMTFValues(1)" );
166
348M
      j = ptr[i]-1; if (j < 0) j += s->nblock;
167
348M
      ll_i = s->unseqToSeq[block[j]];
168
348M
      AssertD ( ll_i < s->nInUse, "generateMTFValues(2a)" );
169
170
348M
      if (yy[0] == ll_i) { 
171
214M
         zPend++;
172
214M
      } else {
173
174
133M
         if (zPend > 0) {
175
13.6M
            zPend--;
176
16.6M
            while (True) {
177
16.6M
               if (zPend & 1) {
178
2.42M
                  mtfv[wr] = BZ_RUNB; wr++; 
179
2.42M
                  s->mtfFreq[BZ_RUNB]++; 
180
14.1M
               } else {
181
14.1M
                  mtfv[wr] = BZ_RUNA; wr++; 
182
14.1M
                  s->mtfFreq[BZ_RUNA]++; 
183
14.1M
               }
184
16.6M
               if (zPend < 2) break;
185
2.98M
               zPend = (zPend - 2) / 2;
186
2.98M
            };
187
13.6M
            zPend = 0;
188
13.6M
         }
189
133M
         {
190
133M
            register UChar  rtmp;
191
133M
            register UChar* ryy_j;
192
133M
            register UChar  rll_i;
193
133M
            rtmp  = yy[1];
194
133M
            yy[1] = yy[0];
195
133M
            ryy_j = &(yy[1]);
196
133M
            rll_i = ll_i;
197
15.5G
            while ( rll_i != rtmp ) {
198
15.4G
               register UChar rtmp2;
199
15.4G
               ryy_j++;
200
15.4G
               rtmp2  = rtmp;
201
15.4G
               rtmp   = *ryy_j;
202
15.4G
               *ryy_j = rtmp2;
203
15.4G
            };
204
133M
            yy[0] = rtmp;
205
133M
            j = ryy_j - &(yy[0]);
206
133M
            mtfv[wr] = j+1; wr++; s->mtfFreq[j+1]++;
207
133M
         }
208
209
133M
      }
210
348M
   }
211
212
6.44k
   if (zPend > 0) {
213
2.61k
      zPend--;
214
9.81k
      while (True) {
215
9.81k
         if (zPend & 1) {
216
4.12k
            mtfv[wr] = BZ_RUNB; wr++; 
217
4.12k
            s->mtfFreq[BZ_RUNB]++; 
218
5.69k
         } else {
219
5.69k
            mtfv[wr] = BZ_RUNA; wr++; 
220
5.69k
            s->mtfFreq[BZ_RUNA]++; 
221
5.69k
         }
222
9.81k
         if (zPend < 2) break;
223
7.20k
         zPend = (zPend - 2) / 2;
224
7.20k
      };
225
2.61k
      zPend = 0;
226
2.61k
   }
227
228
6.44k
   mtfv[wr] = EOB; wr++; s->mtfFreq[EOB]++;
229
230
6.44k
   s->nMTF = wr;
231
6.44k
}
232
233
234
/*---------------------------------------------------*/
235
773k
#define BZ_LESSER_ICOST  0
236
8.07M
#define BZ_GREATER_ICOST 15
237
238
static
239
void sendMTFValues ( EState* s )
240
6.44k
{
241
6.44k
   Int32 v, t, i, j, gs, ge, totc, bt, bc, iter;
242
6.44k
   Int32 nSelectors, alphaSize, minLen, maxLen, selCtr;
243
6.44k
   Int32 nGroups, nBytes;
244
245
   /*--
246
   UChar  len [BZ_N_GROUPS][BZ_MAX_ALPHA_SIZE];
247
   is a global since the decoder also needs it.
248
249
   Int32  code[BZ_N_GROUPS][BZ_MAX_ALPHA_SIZE];
250
   Int32  rfreq[BZ_N_GROUPS][BZ_MAX_ALPHA_SIZE];
251
   are also globals only used in this proc.
252
   Made global to keep stack frame size small.
253
   --*/
254
255
256
6.44k
   UInt16 cost[BZ_N_GROUPS];
257
6.44k
   Int32  fave[BZ_N_GROUPS];
258
259
6.44k
   UInt16* mtfv = s->mtfv;
260
261
6.44k
   if (s->verbosity >= 3)
262
0
      VPrintf3( "      %d in block, %d after MTF & 1-2 coding, "
263
6.44k
                "%d+2 syms in use\n", 
264
6.44k
                s->nblock, s->nMTF, s->nInUse );
265
266
6.44k
   alphaSize = s->nInUse+2;
267
45.1k
   for (t = 0; t < BZ_N_GROUPS; t++)
268
4.67M
      for (v = 0; v < alphaSize; v++)
269
4.64M
         s->len[t][v] = BZ_GREATER_ICOST;
270
271
   /*--- Decide how many coding tables to use ---*/
272
6.44k
   AssertH ( s->nMTF > 0, 3001 );
273
6.44k
   if (s->nMTF < 200)  nGroups = 2; else
274
4.18k
   if (s->nMTF < 600)  nGroups = 3; else
275
3.24k
   if (s->nMTF < 1200) nGroups = 4; else
276
2.83k
   if (s->nMTF < 2400) nGroups = 5; else
277
2.48k
                       nGroups = 6;
278
279
   /*--- Generate an initial set of coding tables ---*/
280
6.44k
   { 
281
6.44k
      Int32 nPart, remF, tFreq, aFreq;
282
283
6.44k
      nPart = nGroups;
284
6.44k
      remF  = s->nMTF;
285
6.44k
      gs = 0;
286
32.1k
      while (nPart > 0) {
287
25.6k
         tFreq = remF / nPart;
288
25.6k
         ge = gs-1;
289
25.6k
         aFreq = 0;
290
804k
         while (aFreq < tFreq && ge < alphaSize-1) {
291
778k
            ge++;
292
778k
            aFreq += s->mtfFreq[ge];
293
778k
         }
294
295
25.6k
         if (ge > gs 
296
25.6k
             && nPart != nGroups && nPart != 1 
297
25.6k
             && ((nGroups-nPart) % 2 == 1)) {
298
5.28k
            aFreq -= s->mtfFreq[ge];
299
5.28k
            ge--;
300
5.28k
         }
301
302
25.6k
         if (s->verbosity >= 3)
303
0
            VPrintf5( "      initial group %d, [%d .. %d], "
304
25.6k
                      "has %d syms (%4.1f%%)\n",
305
25.6k
                      nPart, gs, ge, aFreq, 
306
25.6k
                      (100.0 * (float)aFreq) / (float)(s->nMTF) );
307
 
308
4.23M
         for (v = 0; v < alphaSize; v++)
309
4.20M
            if (v >= gs && v <= ge) 
310
773k
               s->len[nPart-1][v] = BZ_LESSER_ICOST; else
311
3.43M
               s->len[nPart-1][v] = BZ_GREATER_ICOST;
312
 
313
25.6k
         nPart--;
314
25.6k
         gs = ge+1;
315
25.6k
         remF -= aFreq;
316
25.6k
      }
317
6.44k
   }
318
319
   /*--- 
320
      Iterate up to BZ_N_ITERS times to improve the tables.
321
   ---*/
322
32.2k
   for (iter = 0; iter < BZ_N_ITERS; iter++) {
323
324
180k
      for (t = 0; t < BZ_N_GROUPS; t++) fave[t] = 0;
325
326
128k
      for (t = 0; t < nGroups; t++)
327
16.9M
         for (v = 0; v < alphaSize; v++)
328
16.8M
            s->rfreq[t][v] = 0;
329
330
      /*---
331
        Set up an auxiliary length table which is used to fast-track
332
  the common case (nGroups == 6). 
333
      ---*/
334
25.7k
      if (nGroups == 6) {
335
2.38M
         for (v = 0; v < alphaSize; v++) {
336
2.37M
            s->len_pack[v][0] = (s->len[1][v] << 16) | s->len[0][v];
337
2.37M
            s->len_pack[v][1] = (s->len[3][v] << 16) | s->len[2][v];
338
2.37M
            s->len_pack[v][2] = (s->len[5][v] << 16) | s->len[4][v];
339
2.37M
   }
340
9.95k
      }
341
342
25.7k
      nSelectors = 0;
343
25.7k
      totc = 0;
344
25.7k
      gs = 0;
345
12.0M
      while (True) {
346
347
         /*--- Set group start & end marks. --*/
348
12.0M
         if (gs >= s->nMTF) break;
349
12.0M
         ge = gs + BZ_G_SIZE - 1; 
350
12.0M
         if (ge >= s->nMTF) ge = s->nMTF-1;
351
352
         /*-- 
353
            Calculate the cost of this group as coded
354
            by each of the coding tables.
355
         --*/
356
84.3M
         for (t = 0; t < BZ_N_GROUPS; t++) cost[t] = 0;
357
358
12.0M
         if (nGroups == 6 && 50 == ge-gs+1) {
359
            /*--- fast track the common case ---*/
360
11.9M
            register UInt32 cost01, cost23, cost45;
361
11.9M
            register UInt16 icv;
362
11.9M
            cost01 = cost23 = cost45 = 0;
363
364
11.9M
#           define BZ_ITER(nn)                \
365
595M
               icv = mtfv[gs+(nn)];           \
366
595M
               cost01 += s->len_pack[icv][0]; \
367
595M
               cost23 += s->len_pack[icv][1]; \
368
595M
               cost45 += s->len_pack[icv][2]; \
369
11.9M
370
11.9M
            BZ_ITER(0);  BZ_ITER(1);  BZ_ITER(2);  BZ_ITER(3);  BZ_ITER(4);
371
11.9M
            BZ_ITER(5);  BZ_ITER(6);  BZ_ITER(7);  BZ_ITER(8);  BZ_ITER(9);
372
11.9M
            BZ_ITER(10); BZ_ITER(11); BZ_ITER(12); BZ_ITER(13); BZ_ITER(14);
373
11.9M
            BZ_ITER(15); BZ_ITER(16); BZ_ITER(17); BZ_ITER(18); BZ_ITER(19);
374
11.9M
            BZ_ITER(20); BZ_ITER(21); BZ_ITER(22); BZ_ITER(23); BZ_ITER(24);
375
11.9M
            BZ_ITER(25); BZ_ITER(26); BZ_ITER(27); BZ_ITER(28); BZ_ITER(29);
376
11.9M
            BZ_ITER(30); BZ_ITER(31); BZ_ITER(32); BZ_ITER(33); BZ_ITER(34);
377
11.9M
            BZ_ITER(35); BZ_ITER(36); BZ_ITER(37); BZ_ITER(38); BZ_ITER(39);
378
11.9M
            BZ_ITER(40); BZ_ITER(41); BZ_ITER(42); BZ_ITER(43); BZ_ITER(44);
379
11.9M
            BZ_ITER(45); BZ_ITER(46); BZ_ITER(47); BZ_ITER(48); BZ_ITER(49);
380
381
11.9M
#           undef BZ_ITER
382
383
11.9M
            cost[0] = cost01 & 0xffff; cost[1] = cost01 >> 16;
384
11.9M
            cost[2] = cost23 & 0xffff; cost[3] = cost23 >> 16;
385
11.9M
            cost[4] = cost45 & 0xffff; cost[5] = cost45 >> 16;
386
387
11.9M
         } else {
388
      /*--- slow version which correctly handles all situations ---*/
389
5.87M
            for (i = gs; i <= ge; i++) { 
390
5.74M
               UInt16 icv = mtfv[i];
391
29.0M
               for (t = 0; t < nGroups; t++) cost[t] += s->len[t][icv];
392
5.74M
            }
393
128k
         }
394
 
395
         /*-- 
396
            Find the coding table which is best for this group,
397
            and record its identity in the selector table.
398
         --*/
399
12.0M
         bc = 999999999; bt = -1;
400
84.0M
         for (t = 0; t < nGroups; t++)
401
72.0M
            if (cost[t] < bc) { bc = cost[t]; bt = t; };
402
12.0M
         totc += bc;
403
12.0M
         fave[bt]++;
404
12.0M
         s->selector[nSelectors] = bt;
405
12.0M
         nSelectors++;
406
407
         /*-- 
408
            Increment the symbol frequencies for the selected table.
409
          --*/
410
12.0M
         if (nGroups == 6 && 50 == ge-gs+1) {
411
            /*--- fast track the common case ---*/
412
413
595M
#           define BZ_ITUR(nn) s->rfreq[bt][ mtfv[gs+(nn)] ]++
414
415
11.9M
            BZ_ITUR(0);  BZ_ITUR(1);  BZ_ITUR(2);  BZ_ITUR(3);  BZ_ITUR(4);
416
11.9M
            BZ_ITUR(5);  BZ_ITUR(6);  BZ_ITUR(7);  BZ_ITUR(8);  BZ_ITUR(9);
417
11.9M
            BZ_ITUR(10); BZ_ITUR(11); BZ_ITUR(12); BZ_ITUR(13); BZ_ITUR(14);
418
11.9M
            BZ_ITUR(15); BZ_ITUR(16); BZ_ITUR(17); BZ_ITUR(18); BZ_ITUR(19);
419
11.9M
            BZ_ITUR(20); BZ_ITUR(21); BZ_ITUR(22); BZ_ITUR(23); BZ_ITUR(24);
420
11.9M
            BZ_ITUR(25); BZ_ITUR(26); BZ_ITUR(27); BZ_ITUR(28); BZ_ITUR(29);
421
11.9M
            BZ_ITUR(30); BZ_ITUR(31); BZ_ITUR(32); BZ_ITUR(33); BZ_ITUR(34);
422
11.9M
            BZ_ITUR(35); BZ_ITUR(36); BZ_ITUR(37); BZ_ITUR(38); BZ_ITUR(39);
423
11.9M
            BZ_ITUR(40); BZ_ITUR(41); BZ_ITUR(42); BZ_ITUR(43); BZ_ITUR(44);
424
11.9M
            BZ_ITUR(45); BZ_ITUR(46); BZ_ITUR(47); BZ_ITUR(48); BZ_ITUR(49);
425
426
11.9M
#           undef BZ_ITUR
427
428
11.9M
         } else {
429
      /*--- slow version which correctly handles all situations ---*/
430
5.87M
            for (i = gs; i <= ge; i++)
431
5.74M
               s->rfreq[bt][ mtfv[i] ]++;
432
128k
         }
433
434
12.0M
         gs = ge+1;
435
12.0M
      }
436
25.7k
      if (s->verbosity >= 3) {
437
0
         VPrintf2 ( "      pass %d: size is %d, grp uses are ", 
438
0
                   iter+1, totc/8 );
439
0
         for (t = 0; t < nGroups; t++)
440
0
            VPrintf1 ( "%d ", fave[t] );
441
0
         VPrintf0 ( "\n" );
442
0
      }
443
444
      /*--
445
        Recompute the tables based on the accumulated frequencies.
446
      --*/
447
      /* maxLen was changed from 20 to 17 in bzip2-1.0.3.  See 
448
         comment in huffman.c for details. */
449
128k
      for (t = 0; t < nGroups; t++)
450
102k
         BZ2_hbMakeCodeLengths ( &(s->len[t][0]), &(s->rfreq[t][0]), 
451
102k
                                 alphaSize, 17 /*20*/ );
452
25.7k
   }
453
454
455
6.44k
   AssertH( nGroups < 8, 3002 );
456
6.44k
   AssertH( nSelectors < 32768 &&
457
6.44k
            nSelectors <= BZ_MAX_SELECTORS,
458
6.44k
            3003 );
459
460
461
   /*--- Compute MTF values for the selectors. ---*/
462
6.44k
   {
463
6.44k
      UChar pos[BZ_N_GROUPS], ll_i, tmp2, tmp;
464
32.1k
      for (i = 0; i < nGroups; i++) pos[i] = i;
465
3.01M
      for (i = 0; i < nSelectors; i++) {
466
3.01M
         ll_i = s->selector[i];
467
3.01M
         j = 0;
468
3.01M
         tmp = pos[j];
469
8.37M
         while ( ll_i != tmp ) {
470
5.36M
            j++;
471
5.36M
            tmp2 = tmp;
472
5.36M
            tmp = pos[j];
473
5.36M
            pos[j] = tmp2;
474
5.36M
         };
475
3.01M
         pos[0] = tmp;
476
3.01M
         s->selectorMtf[i] = j;
477
3.01M
      }
478
6.44k
   };
479
480
   /*--- Assign actual codes for the tables. --*/
481
32.1k
   for (t = 0; t < nGroups; t++) {
482
25.6k
      minLen = 32;
483
25.6k
      maxLen = 0;
484
4.23M
      for (i = 0; i < alphaSize; i++) {
485
4.20M
         if (s->len[t][i] > maxLen) maxLen = s->len[t][i];
486
4.20M
         if (s->len[t][i] < minLen) minLen = s->len[t][i];
487
4.20M
      }
488
25.6k
      AssertH ( !(maxLen > 17 /*20*/ ), 3004 );
489
25.6k
      AssertH ( !(minLen < 1),  3005 );
490
25.6k
      BZ2_hbAssignCodes ( &(s->code[t][0]), &(s->len[t][0]), 
491
25.6k
                          minLen, maxLen, alphaSize );
492
25.6k
   }
493
494
   /*--- Transmit the mapping table. ---*/
495
6.44k
   { 
496
6.44k
      Bool inUse16[16];
497
109k
      for (i = 0; i < 16; i++) {
498
103k
          inUse16[i] = False;
499
1.75M
          for (j = 0; j < 16; j++)
500
1.65M
             if (s->inUse[i * 16 + j]) inUse16[i] = True;
501
103k
      }
502
     
503
6.44k
      nBytes = s->numZ;
504
109k
      for (i = 0; i < 16; i++)
505
103k
         if (inUse16[i]) bsW(s,1,1); else bsW(s,1,0);
506
507
109k
      for (i = 0; i < 16; i++)
508
103k
         if (inUse16[i])
509
1.21M
            for (j = 0; j < 16; j++) {
510
1.14M
               if (s->inUse[i * 16 + j]) bsW(s,1,1); else bsW(s,1,0);
511
1.14M
            }
512
513
6.44k
      if (s->verbosity >= 3) 
514
0
         VPrintf1( "      bytes: mapping %d, ", s->numZ-nBytes );
515
6.44k
   }
516
517
   /*--- Now the selectors. ---*/
518
6.44k
   nBytes = s->numZ;
519
6.44k
   bsW ( s, 3, nGroups );
520
6.44k
   bsW ( s, 15, nSelectors );
521
3.01M
   for (i = 0; i < nSelectors; i++) { 
522
8.37M
      for (j = 0; j < s->selectorMtf[i]; j++) bsW(s,1,1);
523
3.01M
      bsW(s,1,0);
524
3.01M
   }
525
6.44k
   if (s->verbosity >= 3)
526
0
      VPrintf1( "selectors %d, ", s->numZ-nBytes );
527
528
   /*--- Now the coding tables. ---*/
529
6.44k
   nBytes = s->numZ;
530
531
32.1k
   for (t = 0; t < nGroups; t++) {
532
25.6k
      Int32 curr = s->len[t][0];
533
25.6k
      bsW ( s, 5, curr );
534
4.23M
      for (i = 0; i < alphaSize; i++) {
535
5.07M
         while (curr < s->len[t][i]) { bsW(s,2,2); curr++; /* 10 */ };
536
4.99M
         while (curr > s->len[t][i]) { bsW(s,2,3); curr--; /* 11 */ };
537
4.20M
         bsW ( s, 1, 0 );
538
4.20M
      }
539
25.6k
   }
540
541
6.44k
   if (s->verbosity >= 3)
542
0
      VPrintf1 ( "code lengths %d, ", s->numZ-nBytes );
543
544
   /*--- And finally, the block data proper ---*/
545
6.44k
   nBytes = s->numZ;
546
6.44k
   selCtr = 0;
547
6.44k
   gs = 0;
548
3.01M
   while (True) {
549
3.01M
      if (gs >= s->nMTF) break;
550
3.01M
      ge = gs + BZ_G_SIZE - 1; 
551
3.01M
      if (ge >= s->nMTF) ge = s->nMTF-1;
552
3.01M
      AssertH ( s->selector[selCtr] < nGroups, 3006 );
553
554
3.01M
      if (nGroups == 6 && 50 == ge-gs+1) {
555
            /*--- fast track the common case ---*/
556
2.97M
            UInt16 mtfv_i;
557
2.97M
            UChar* s_len_sel_selCtr 
558
2.97M
               = &(s->len[s->selector[selCtr]][0]);
559
2.97M
            Int32* s_code_sel_selCtr
560
2.97M
               = &(s->code[s->selector[selCtr]][0]);
561
562
2.97M
#           define BZ_ITAH(nn)                      \
563
148M
               mtfv_i = mtfv[gs+(nn)];              \
564
148M
               bsW ( s,                             \
565
148M
                     s_len_sel_selCtr[mtfv_i],      \
566
148M
                     s_code_sel_selCtr[mtfv_i] )
567
568
2.97M
            BZ_ITAH(0);  BZ_ITAH(1);  BZ_ITAH(2);  BZ_ITAH(3);  BZ_ITAH(4);
569
2.97M
            BZ_ITAH(5);  BZ_ITAH(6);  BZ_ITAH(7);  BZ_ITAH(8);  BZ_ITAH(9);
570
2.97M
            BZ_ITAH(10); BZ_ITAH(11); BZ_ITAH(12); BZ_ITAH(13); BZ_ITAH(14);
571
2.97M
            BZ_ITAH(15); BZ_ITAH(16); BZ_ITAH(17); BZ_ITAH(18); BZ_ITAH(19);
572
2.97M
            BZ_ITAH(20); BZ_ITAH(21); BZ_ITAH(22); BZ_ITAH(23); BZ_ITAH(24);
573
2.97M
            BZ_ITAH(25); BZ_ITAH(26); BZ_ITAH(27); BZ_ITAH(28); BZ_ITAH(29);
574
2.97M
            BZ_ITAH(30); BZ_ITAH(31); BZ_ITAH(32); BZ_ITAH(33); BZ_ITAH(34);
575
2.97M
            BZ_ITAH(35); BZ_ITAH(36); BZ_ITAH(37); BZ_ITAH(38); BZ_ITAH(39);
576
2.97M
            BZ_ITAH(40); BZ_ITAH(41); BZ_ITAH(42); BZ_ITAH(43); BZ_ITAH(44);
577
2.97M
            BZ_ITAH(45); BZ_ITAH(46); BZ_ITAH(47); BZ_ITAH(48); BZ_ITAH(49);
578
579
2.97M
#           undef BZ_ITAH
580
581
2.97M
      } else {
582
   /*--- slow version which correctly handles all situations ---*/
583
1.46M
         for (i = gs; i <= ge; i++) {
584
1.43M
            bsW ( s, 
585
1.43M
                  s->len  [s->selector[selCtr]] [mtfv[i]],
586
1.43M
                  s->code [s->selector[selCtr]] [mtfv[i]] );
587
1.43M
         }
588
32.0k
      }
589
590
591
3.01M
      gs = ge+1;
592
3.01M
      selCtr++;
593
3.01M
   }
594
6.44k
   AssertH( selCtr == nSelectors, 3007 );
595
596
6.44k
   if (s->verbosity >= 3)
597
0
      VPrintf1( "codes %d\n", s->numZ-nBytes );
598
6.44k
}
599
600
601
/*---------------------------------------------------*/
602
void BZ2_compressBlock ( EState* s, Bool is_last_block )
603
6.44k
{
604
6.44k
   if (s->nblock > 0) {
605
606
6.44k
      BZ_FINALISE_CRC ( s->blockCRC );
607
6.44k
      s->combinedCRC = (s->combinedCRC << 1) | (s->combinedCRC >> 31);
608
6.44k
      s->combinedCRC ^= s->blockCRC;
609
6.44k
      if (s->blockNo > 1) s->numZ = 0;
610
611
6.44k
      if (s->verbosity >= 2)
612
0
         VPrintf4( "    block %d: crc = 0x%08x, "
613
6.44k
                   "combined CRC = 0x%08x, size = %d\n",
614
6.44k
                   s->blockNo, s->blockCRC, s->combinedCRC, s->nblock );
615
616
6.44k
      BZ2_blockSort ( s );
617
6.44k
   }
618
619
6.44k
   s->zbits = (UChar*) (&((UChar*)s->arr2)[s->nblock]);
620
621
   /*-- If this is the first block, create the stream header. --*/
622
6.44k
   if (s->blockNo == 1) {
623
4.71k
      BZ2_bsInitWrite ( s );
624
4.71k
      bsPutUChar ( s, BZ_HDR_B );
625
4.71k
      bsPutUChar ( s, BZ_HDR_Z );
626
4.71k
      bsPutUChar ( s, BZ_HDR_h );
627
4.71k
      bsPutUChar ( s, (UChar)(BZ_HDR_0 + s->blockSize100k) );
628
4.71k
   }
629
630
6.44k
   if (s->nblock > 0) {
631
632
6.44k
      bsPutUChar ( s, 0x31 ); bsPutUChar ( s, 0x41 );
633
6.44k
      bsPutUChar ( s, 0x59 ); bsPutUChar ( s, 0x26 );
634
6.44k
      bsPutUChar ( s, 0x53 ); bsPutUChar ( s, 0x59 );
635
636
      /*-- Now the block's CRC, so it is in a known place. --*/
637
6.44k
      bsPutUInt32 ( s, s->blockCRC );
638
639
      /*-- 
640
         Now a single bit indicating (non-)randomisation. 
641
         As of version 0.9.5, we use a better sorting algorithm
642
         which makes randomisation unnecessary.  So always set
643
         the randomised bit to 'no'.  Of course, the decoder
644
         still needs to be able to handle randomised blocks
645
         so as to maintain backwards compatibility with
646
         older versions of bzip2.
647
      --*/
648
6.44k
      bsW(s,1,0);
649
650
6.44k
      bsW ( s, 24, s->origPtr );
651
6.44k
      generateMTFValues ( s );
652
6.44k
      sendMTFValues ( s );
653
6.44k
   }
654
655
656
   /*-- If this is the last block, add the stream trailer. --*/
657
6.44k
   if (is_last_block) {
658
659
4.71k
      bsPutUChar ( s, 0x17 ); bsPutUChar ( s, 0x72 );
660
4.71k
      bsPutUChar ( s, 0x45 ); bsPutUChar ( s, 0x38 );
661
4.71k
      bsPutUChar ( s, 0x50 ); bsPutUChar ( s, 0x90 );
662
4.71k
      bsPutUInt32 ( s, s->combinedCRC );
663
4.71k
      if (s->verbosity >= 2)
664
0
         VPrintf1( "    final combined CRC = 0x%08x\n   ", s->combinedCRC );
665
4.71k
      bsFinishWrite ( s );
666
4.71k
   }
667
6.44k
}
668
669
670
/*-------------------------------------------------------------*/
671
/*--- end                                        compress.c ---*/
672
/*-------------------------------------------------------------*/