/src/freeimage-svn/FreeImage/trunk/Source/LibTIFF4/tif_lzw.c
Line  | Count  | Source  | 
1  |  | /*  | 
2  |  |  * Copyright (c) 1988-1997 Sam Leffler  | 
3  |  |  * Copyright (c) 1991-1997 Silicon Graphics, Inc.  | 
4  |  |  * Copyright (c) 2022 Even Rouault  | 
5  |  |  *  | 
6  |  |  * Permission to use, copy, modify, distribute, and sell this software and  | 
7  |  |  * its documentation for any purpose is hereby granted without fee, provided  | 
8  |  |  * that (i) the above copyright notices and this permission notice appear in  | 
9  |  |  * all copies of the software and related documentation, and (ii) the names of  | 
10  |  |  * Sam Leffler and Silicon Graphics may not be used in any advertising or  | 
11  |  |  * publicity relating to the software without the specific, prior written  | 
12  |  |  * permission of Sam Leffler and Silicon Graphics.  | 
13  |  |  *  | 
14  |  |  * THE SOFTWARE IS PROVIDED "AS-IS" AND WITHOUT WARRANTY OF ANY KIND,  | 
15  |  |  * EXPRESS, IMPLIED OR OTHERWISE, INCLUDING WITHOUT LIMITATION, ANY  | 
16  |  |  * WARRANTY OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE.  | 
17  |  |  *  | 
18  |  |  * IN NO EVENT SHALL SAM LEFFLER OR SILICON GRAPHICS BE LIABLE FOR  | 
19  |  |  * ANY SPECIAL, INCIDENTAL, INDIRECT OR CONSEQUENTIAL DAMAGES OF ANY KIND,  | 
20  |  |  * OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS,  | 
21  |  |  * WHETHER OR NOT ADVISED OF THE POSSIBILITY OF DAMAGE, AND ON ANY THEORY OF  | 
22  |  |  * LIABILITY, ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE  | 
23  |  |  * OF THIS SOFTWARE.  | 
24  |  |  */  | 
25  |  |  | 
26  |  | #include "tiffiop.h"  | 
27  |  | #ifdef LZW_SUPPORT  | 
28  |  | /*  | 
29  |  |  * TIFF Library.  | 
30  |  |  * Rev 5.0 Lempel-Ziv & Welch Compression Support  | 
31  |  |  *  | 
32  |  |  * This code is derived from the compress program whose code is  | 
33  |  |  * derived from software contributed to Berkeley by James A. Woods,  | 
34  |  |  * derived from original work by Spencer Thomas and Joseph Orost.  | 
35  |  |  *  | 
36  |  |  * The original Berkeley copyright notice appears below in its entirety.  | 
37  |  |  */  | 
38  |  | #include "tif_predict.h"  | 
39  |  |  | 
40  |  | #include <stdbool.h>  | 
41  |  | #include <stdio.h>  | 
42  |  | #include <stdlib.h>  | 
43  |  |  | 
44  |  | /* Select the plausible largest natural integer type for the architecture */  | 
45  | 0  | #define SIZEOF_WORDTYPE SIZEOF_SIZE_T  | 
46  |  | typedef size_t WordType;  | 
47  |  |  | 
48  |  | /*  | 
49  |  |  * NB: The 5.0 spec describes a different algorithm than Aldus  | 
50  |  |  *     implements.  Specifically, Aldus does code length transitions  | 
51  |  |  *     one code earlier than should be done (for real LZW).  | 
52  |  |  *     Earlier versions of this library implemented the correct  | 
53  |  |  *     LZW algorithm, but emitted codes in a bit order opposite  | 
54  |  |  *     to the TIFF spec.  Thus, to maintain compatibility w/ Aldus  | 
55  |  |  *     we interpret MSB-LSB ordered codes to be images written w/  | 
56  |  |  *     old versions of this library, but otherwise adhere to the  | 
57  |  |  *     Aldus "off by one" algorithm.  | 
58  |  |  *  | 
59  |  |  * Future revisions to the TIFF spec are expected to "clarify this issue".  | 
60  |  |  */  | 
61  |  | #define LZW_COMPAT /* include backwards compatibility code */  | 
62  |  |  | 
63  | 0  | #define MAXCODE(n) ((1L << (n)) - 1)  | 
64  |  | /*  | 
65  |  |  * The TIFF spec specifies that encoded bit  | 
66  |  |  * strings range from 9 to 12 bits.  | 
67  |  |  */  | 
68  | 0  | #define BITS_MIN 9  /* start with 9 bits */  | 
69  | 0  | #define BITS_MAX 12 /* max of 12 bit strings */  | 
70  |  | /* predefined codes */  | 
71  | 0  | #define CODE_CLEAR 256 /* code to clear string table */  | 
72  | 0  | #define CODE_EOI 257   /* end-of-information code */  | 
73  | 0  | #define CODE_FIRST 258 /* first free code entry */  | 
74  | 0  | #define CODE_MAX MAXCODE(BITS_MAX)  | 
75  | 0  | #define HSIZE 9001L /* 91% occupancy */  | 
76  | 0  | #define HSHIFT (13 - 8)  | 
77  |  | #ifdef LZW_COMPAT  | 
78  |  | /* NB: +1024 is for compatibility with old files */  | 
79  | 0  | #define CSIZE (MAXCODE(BITS_MAX) + 1024L)  | 
80  |  | #else  | 
81  |  | #define CSIZE (MAXCODE(BITS_MAX) + 1L)  | 
82  |  | #endif  | 
83  |  |  | 
84  |  | /*  | 
85  |  |  * State block for each open TIFF file using LZW  | 
86  |  |  * compression/decompression.  Note that the predictor  | 
87  |  |  * state block must be first in this data structure.  | 
88  |  |  */  | 
89  |  | typedef struct  | 
90  |  | { | 
91  |  |     TIFFPredictorState predict; /* predictor super class */  | 
92  |  |  | 
93  |  |     unsigned short nbits;    /* # of bits/code */  | 
94  |  |     unsigned short maxcode;  /* maximum code for lzw_nbits */  | 
95  |  |     unsigned short free_ent; /* next free entry in hash table */  | 
96  |  |     WordType nextdata;       /* next bits of i/o */  | 
97  |  |     long nextbits;           /* # of valid bits in lzw_nextdata */  | 
98  |  |  | 
99  |  |     int rw_mode; /* preserve rw_mode from init */  | 
100  |  | } LZWBaseState;  | 
101  |  |  | 
102  | 0  | #define lzw_nbits base.nbits  | 
103  | 0  | #define lzw_maxcode base.maxcode  | 
104  | 0  | #define lzw_free_ent base.free_ent  | 
105  | 0  | #define lzw_nextdata base.nextdata  | 
106  | 0  | #define lzw_nextbits base.nextbits  | 
107  |  |  | 
108  |  | /*  | 
109  |  |  * Encoding-specific state.  | 
110  |  |  */  | 
111  |  | typedef uint16_t hcode_t; /* codes fit in 16 bits */  | 
112  |  | typedef struct  | 
113  |  | { | 
114  |  |     long hash;  | 
115  |  |     hcode_t code;  | 
116  |  | } hash_t;  | 
117  |  |  | 
118  |  | /*  | 
119  |  |  * Decoding-specific state.  | 
120  |  |  */  | 
121  |  | typedef struct code_ent  | 
122  |  | { | 
123  |  |     struct code_ent *next;  | 
124  |  |     unsigned short length; /* string len, including this token */  | 
125  |  |     /* firstchar should be placed immediately before value in this structure */  | 
126  |  |     unsigned char firstchar; /* first token of string */  | 
127  |  |     unsigned char value;     /* data value */  | 
128  |  |     bool repeated;  | 
129  |  | } code_t;  | 
130  |  |  | 
131  |  | typedef int (*decodeFunc)(TIFF *, uint8_t *, tmsize_t, uint16_t);  | 
132  |  |  | 
133  |  | typedef struct  | 
134  |  | { | 
135  |  |     LZWBaseState base;  | 
136  |  |  | 
137  |  |     /* Decoding specific data */  | 
138  |  |     long dec_nbitsmask;     /* lzw_nbits 1 bits, right adjusted */  | 
139  |  |     tmsize_t dec_restart;   /* restart count */  | 
140  |  |     uint64_t dec_bitsleft;  /* available bits in raw data */  | 
141  |  |     tmsize_t old_tif_rawcc; /* value of tif_rawcc at the end of the previous  | 
142  |  |                                TIFLZWDecode() call */  | 
143  |  |     decodeFunc dec_decode;  /* regular or backwards compatible */  | 
144  |  |     code_t *dec_codep;      /* current recognized code */  | 
145  |  |     code_t *dec_oldcodep;   /* previously recognized code */  | 
146  |  |     code_t *dec_free_entp;  /* next free entry */  | 
147  |  |     code_t *dec_maxcodep;   /* max available entry */  | 
148  |  |     code_t *dec_codetab;    /* kept separate for small machines */  | 
149  |  |     int read_error; /* whether a read error has occurred, and which should cause  | 
150  |  |                        further reads in the same strip/tile to be aborted */  | 
151  |  |  | 
152  |  |     /* Encoding specific data */  | 
153  |  |     int enc_oldcode;         /* last code encountered */  | 
154  |  |     tmsize_t enc_checkpoint; /* point at which to clear table */  | 
155  | 0  | #define CHECK_GAP 10000      /* enc_ratio check interval */  | 
156  |  |     tmsize_t enc_ratio;      /* current compression ratio */  | 
157  |  |     tmsize_t enc_incount;    /* (input) data bytes encoded */  | 
158  |  |     tmsize_t enc_outcount;   /* encoded (output) bytes */  | 
159  |  |     uint8_t *enc_rawlimit;   /* bound on tif_rawdata buffer */  | 
160  |  |     hash_t *enc_hashtab;     /* kept separate for small machines */  | 
161  |  | } LZWCodecState;  | 
162  |  |  | 
163  | 0  | #define LZWState(tif) ((LZWBaseState *)(tif)->tif_data)  | 
164  | 0  | #define LZWDecoderState(tif) ((LZWCodecState *)LZWState(tif))  | 
165  | 0  | #define LZWEncoderState(tif) ((LZWCodecState *)LZWState(tif))  | 
166  |  |  | 
167  |  | static int LZWDecode(TIFF *tif, uint8_t *op0, tmsize_t occ0, uint16_t s);  | 
168  |  | #ifdef LZW_COMPAT  | 
169  |  | static int LZWDecodeCompat(TIFF *tif, uint8_t *op0, tmsize_t occ0, uint16_t s);  | 
170  |  | #endif  | 
171  |  | static void cl_hash(LZWCodecState *);  | 
172  |  |  | 
173  |  | /*  | 
174  |  |  * LZW Decoder.  | 
175  |  |  */  | 
176  |  |  | 
177  |  | static int LZWFixupTags(TIFF *tif)  | 
178  | 0  | { | 
179  | 0  |     (void)tif;  | 
180  | 0  |     return (1);  | 
181  | 0  | }  | 
182  |  |  | 
183  |  | static int LZWSetupDecode(TIFF *tif)  | 
184  | 0  | { | 
185  | 0  |     static const char module[] = "LZWSetupDecode";  | 
186  | 0  |     LZWCodecState *sp = LZWDecoderState(tif);  | 
187  | 0  |     int code;  | 
188  |  | 
  | 
189  | 0  |     if (sp == NULL)  | 
190  | 0  |     { | 
191  |  |         /*  | 
192  |  |          * Allocate state block so tag methods have storage to record  | 
193  |  |          * values.  | 
194  |  |          */  | 
195  | 0  |         tif->tif_data = (uint8_t *)_TIFFmallocExt(tif, sizeof(LZWCodecState));  | 
196  | 0  |         if (tif->tif_data == NULL)  | 
197  | 0  |         { | 
198  | 0  |             TIFFErrorExtR(tif, module, "No space for LZW state block");  | 
199  | 0  |             return (0);  | 
200  | 0  |         }  | 
201  |  |  | 
202  | 0  |         sp = LZWDecoderState(tif);  | 
203  | 0  |         sp->dec_codetab = NULL;  | 
204  | 0  |         sp->dec_decode = NULL;  | 
205  |  |  | 
206  |  |         /*  | 
207  |  |          * Setup predictor setup.  | 
208  |  |          */  | 
209  | 0  |         (void)TIFFPredictorInit(tif);  | 
210  | 0  |     }  | 
211  |  |  | 
212  | 0  |     if (sp->dec_codetab == NULL)  | 
213  | 0  |     { | 
214  | 0  |         sp->dec_codetab = (code_t *)_TIFFmallocExt(tif, CSIZE * sizeof(code_t));  | 
215  | 0  |         if (sp->dec_codetab == NULL)  | 
216  | 0  |         { | 
217  | 0  |             TIFFErrorExtR(tif, module, "No space for LZW code table");  | 
218  | 0  |             return (0);  | 
219  | 0  |         }  | 
220  |  |         /*  | 
221  |  |          * Pre-load the table.  | 
222  |  |          */  | 
223  | 0  |         code = 255;  | 
224  | 0  |         do  | 
225  | 0  |         { | 
226  | 0  |             sp->dec_codetab[code].firstchar = (unsigned char)code;  | 
227  | 0  |             sp->dec_codetab[code].value = (unsigned char)code;  | 
228  | 0  |             sp->dec_codetab[code].repeated = true;  | 
229  | 0  |             sp->dec_codetab[code].length = 1;  | 
230  | 0  |             sp->dec_codetab[code].next = NULL;  | 
231  | 0  |         } while (code--);  | 
232  |  |         /*  | 
233  |  |          * Zero-out the unused entries  */  | 
234  |  |         /* Silence false positive */  | 
235  |  |         /* coverity[overrun-buffer-arg] */  | 
236  | 0  |         memset(&sp->dec_codetab[CODE_CLEAR], 0,  | 
237  | 0  |                (CODE_FIRST - CODE_CLEAR) * sizeof(code_t));  | 
238  | 0  |     }  | 
239  | 0  |     return (1);  | 
240  | 0  | }  | 
241  |  |  | 
242  |  | /*  | 
243  |  |  * Setup state for decoding a strip.  | 
244  |  |  */  | 
245  |  | static int LZWPreDecode(TIFF *tif, uint16_t s)  | 
246  | 0  | { | 
247  | 0  |     static const char module[] = "LZWPreDecode";  | 
248  | 0  |     LZWCodecState *sp = LZWDecoderState(tif);  | 
249  |  | 
  | 
250  | 0  |     (void)s;  | 
251  | 0  |     assert(sp != NULL);  | 
252  | 0  |     if (sp->dec_codetab == NULL)  | 
253  | 0  |     { | 
254  | 0  |         tif->tif_setupdecode(tif);  | 
255  | 0  |         if (sp->dec_codetab == NULL)  | 
256  | 0  |             return (0);  | 
257  | 0  |     }  | 
258  |  |  | 
259  |  |     /*  | 
260  |  |      * Check for old bit-reversed codes.  | 
261  |  |      */  | 
262  | 0  |     if (tif->tif_rawcc >= 2 && tif->tif_rawdata[0] == 0 &&  | 
263  | 0  |         (tif->tif_rawdata[1] & 0x1))  | 
264  | 0  |     { | 
265  | 0  | #ifdef LZW_COMPAT  | 
266  | 0  |         if (!sp->dec_decode)  | 
267  | 0  |         { | 
268  | 0  |             TIFFWarningExtR(tif, module, "Old-style LZW codes, convert file");  | 
269  |  |             /*  | 
270  |  |              * Override default decoding methods with  | 
271  |  |              * ones that deal with the old coding.  | 
272  |  |              * Otherwise the predictor versions set  | 
273  |  |              * above will call the compatibility routines  | 
274  |  |              * through the dec_decode method.  | 
275  |  |              */  | 
276  | 0  |             tif->tif_decoderow = LZWDecodeCompat;  | 
277  | 0  |             tif->tif_decodestrip = LZWDecodeCompat;  | 
278  | 0  |             tif->tif_decodetile = LZWDecodeCompat;  | 
279  |  |             /*  | 
280  |  |              * If doing horizontal differencing, must  | 
281  |  |              * re-setup the predictor logic since we  | 
282  |  |              * switched the basic decoder methods...  | 
283  |  |              */  | 
284  | 0  |             (*tif->tif_setupdecode)(tif);  | 
285  | 0  |             sp->dec_decode = LZWDecodeCompat;  | 
286  | 0  |         }  | 
287  | 0  |         sp->lzw_maxcode = MAXCODE(BITS_MIN);  | 
288  |  | #else  /* !LZW_COMPAT */  | 
289  |  |         if (!sp->dec_decode)  | 
290  |  |         { | 
291  |  |             TIFFErrorExtR(tif, module, "Old-style LZW codes not supported");  | 
292  |  |             sp->dec_decode = LZWDecode;  | 
293  |  |         }  | 
294  |  |         return (0);  | 
295  |  | #endif /* !LZW_COMPAT */  | 
296  | 0  |     }  | 
297  | 0  |     else  | 
298  | 0  |     { | 
299  | 0  |         sp->lzw_maxcode = MAXCODE(BITS_MIN) - 1;  | 
300  | 0  |         sp->dec_decode = LZWDecode;  | 
301  | 0  |     }  | 
302  | 0  |     sp->lzw_nbits = BITS_MIN;  | 
303  | 0  |     sp->lzw_nextbits = 0;  | 
304  | 0  |     sp->lzw_nextdata = 0;  | 
305  |  | 
  | 
306  | 0  |     sp->dec_restart = 0;  | 
307  | 0  |     sp->dec_nbitsmask = MAXCODE(BITS_MIN);  | 
308  | 0  |     sp->dec_bitsleft = 0;  | 
309  | 0  |     sp->old_tif_rawcc = 0;  | 
310  | 0  |     sp->dec_free_entp = sp->dec_codetab - 1; // + CODE_FIRST;  | 
311  |  |     /*  | 
312  |  |      * Zero entries that are not yet filled in.  We do  | 
313  |  |      * this to guard against bogus input data that causes  | 
314  |  |      * us to index into undefined entries.  If you can  | 
315  |  |      * come up with a way to safely bounds-check input codes  | 
316  |  |      * while decoding then you can remove this operation.  | 
317  |  |      */  | 
318  | 0  |     sp->dec_oldcodep = &sp->dec_codetab[0];  | 
319  | 0  |     sp->dec_maxcodep = &sp->dec_codetab[sp->dec_nbitsmask - 1];  | 
320  | 0  |     sp->read_error = 0;  | 
321  | 0  |     return (1);  | 
322  | 0  | }  | 
323  |  |  | 
324  |  | /*  | 
325  |  |  * Decode a "hunk of data".  | 
326  |  |  */  | 
327  |  |  | 
328  |  | /* Get the next 32 or 64-bit from the input data */  | 
329  |  | #ifdef WORDS_BIGENDIAN  | 
330  |  | #define GetNextData(nextdata, bp) memcpy(&nextdata, bp, sizeof(nextdata))  | 
331  |  | #elif SIZEOF_WORDTYPE == 8  | 
332  |  | #if defined(_M_X64)  | 
333  |  | #define GetNextData(nextdata, bp) nextdata = _byteswap_uint64(*(uint64_t *)(bp))  | 
334  |  | #elif defined(__GNUC__)  | 
335  |  | #define GetNextData(nextdata, bp)                                              \  | 
336  | 0  |     memcpy(&nextdata, bp, sizeof(nextdata));                                   \  | 
337  | 0  |     nextdata = __builtin_bswap64(nextdata)  | 
338  |  | #else  | 
339  |  | #define GetNextData(nextdata, bp)                                              \  | 
340  |  |     nextdata = (((uint64_t)bp[0]) << 56) | (((uint64_t)bp[1]) << 48) |         \  | 
341  |  |                (((uint64_t)bp[2]) << 40) | (((uint64_t)bp[3]) << 32) |         \  | 
342  |  |                (((uint64_t)bp[4]) << 24) | (((uint64_t)bp[5]) << 16) |         \  | 
343  |  |                (((uint64_t)bp[6]) << 8) | (((uint64_t)bp[7]))  | 
344  |  | #endif  | 
345  |  | #elif SIZEOF_WORDTYPE == 4  | 
346  |  | #if defined(_M_X86)  | 
347  |  | #define GetNextData(nextdata, bp)                                              \  | 
348  |  |     nextdata = _byteswap_ulong(*(unsigned long *)(bp))  | 
349  |  | #elif defined(__GNUC__)  | 
350  |  | #define GetNextData(nextdata, bp)                                              \  | 
351  |  |     memcpy(&nextdata, bp, sizeof(nextdata));                                   \  | 
352  |  |     nextdata = __builtin_bswap32(nextdata)  | 
353  |  | #else  | 
354  |  | #define GetNextData(nextdata, bp)                                              \  | 
355  |  |     nextdata = (((uint32_t)bp[0]) << 24) | (((uint32_t)bp[1]) << 16) |         \  | 
356  |  |                (((uint32_t)bp[2]) << 8) | (((uint32_t)bp[3]))  | 
357  |  | #endif  | 
358  |  | #else  | 
359  |  | #error "Unhandled SIZEOF_WORDTYPE"  | 
360  |  | #endif  | 
361  |  |  | 
362  |  | #define GetNextCodeLZW()                                                       \  | 
363  | 0  |     do                                                                         \  | 
364  | 0  |     {                                                                          \ | 
365  | 0  |         nextbits -= nbits;                                                     \  | 
366  | 0  |         if (nextbits < 0)                                                      \  | 
367  | 0  |         {                                                                      \ | 
368  | 0  |             if (dec_bitsleft >= 8 * SIZEOF_WORDTYPE)                           \  | 
369  | 0  |             {                                                                  \ | 
370  | 0  |                 unsigned codetmp = (unsigned)(nextdata << (-nextbits));        \  | 
371  | 0  |                 GetNextData(nextdata, bp);                                     \  | 
372  | 0  |                 bp += SIZEOF_WORDTYPE;                                         \  | 
373  | 0  |                 nextbits += 8 * SIZEOF_WORDTYPE;                               \  | 
374  | 0  |                 dec_bitsleft -= 8 * SIZEOF_WORDTYPE;                           \  | 
375  | 0  |                 code = (WordType)((codetmp | (nextdata >> nextbits)) &         \  | 
376  | 0  |                                   nbitsmask);                                  \  | 
377  | 0  |                 break;                                                         \  | 
378  | 0  |             }                                                                  \  | 
379  | 0  |             else                                                               \  | 
380  | 0  |             {                                                                  \ | 
381  | 0  |                 if (dec_bitsleft < 8)                                          \  | 
382  | 0  |                 {                                                              \ | 
383  | 0  |                     goto no_eoi;                                               \  | 
384  | 0  |                 }                                                              \  | 
385  | 0  |                 nextdata = (nextdata << 8) | *(bp)++;                          \  | 
386  | 0  |                 nextbits += 8;                                                 \  | 
387  | 0  |                 dec_bitsleft -= 8;                                             \  | 
388  | 0  |                 if (nextbits < 0)                                              \  | 
389  | 0  |                 {                                                              \ | 
390  | 0  |                     if (dec_bitsleft < 8)                                      \  | 
391  | 0  |                     {                                                          \ | 
392  | 0  |                         goto no_eoi;                                           \  | 
393  | 0  |                     }                                                          \  | 
394  | 0  |                     nextdata = (nextdata << 8) | *(bp)++;                      \  | 
395  | 0  |                     nextbits += 8;                                             \  | 
396  | 0  |                     dec_bitsleft -= 8;                                         \  | 
397  | 0  |                 }                                                              \  | 
398  | 0  |             }                                                                  \  | 
399  | 0  |         }                                                                      \  | 
400  | 0  |         code = (WordType)((nextdata >> nextbits) & nbitsmask);                 \  | 
401  | 0  |     } while (0)  | 
402  |  |  | 
403  |  | static int LZWDecode(TIFF *tif, uint8_t *op0, tmsize_t occ0, uint16_t s)  | 
404  | 0  | { | 
405  | 0  |     static const char module[] = "LZWDecode";  | 
406  | 0  |     LZWCodecState *sp = LZWDecoderState(tif);  | 
407  | 0  |     uint8_t *op = (uint8_t *)op0;  | 
408  | 0  |     tmsize_t occ = occ0;  | 
409  | 0  |     uint8_t *bp;  | 
410  | 0  |     long nbits, nextbits, nbitsmask;  | 
411  | 0  |     WordType nextdata;  | 
412  | 0  |     code_t *free_entp, *maxcodep, *oldcodep;  | 
413  |  | 
  | 
414  | 0  |     (void)s;  | 
415  | 0  |     assert(sp != NULL);  | 
416  | 0  |     assert(sp->dec_codetab != NULL);  | 
417  |  | 
  | 
418  | 0  |     if (sp->read_error)  | 
419  | 0  |     { | 
420  | 0  |         TIFFErrorExtR(tif, module,  | 
421  | 0  |                       "LZWDecode: Scanline %" PRIu32 " cannot be read due to "  | 
422  | 0  |                       "previous error",  | 
423  | 0  |                       tif->tif_row);  | 
424  | 0  |         return 0;  | 
425  | 0  |     }  | 
426  |  |  | 
427  |  |     /*  | 
428  |  |      * Restart interrupted output operation.  | 
429  |  |      */  | 
430  | 0  |     if (sp->dec_restart)  | 
431  | 0  |     { | 
432  | 0  |         tmsize_t residue;  | 
433  |  | 
  | 
434  | 0  |         code_t *codep = sp->dec_codep;  | 
435  | 0  |         residue = codep->length - sp->dec_restart;  | 
436  | 0  |         if (residue > occ)  | 
437  | 0  |         { | 
438  |  |             /*  | 
439  |  |              * Residue from previous decode is sufficient  | 
440  |  |              * to satisfy decode request.  Skip to the  | 
441  |  |              * start of the decoded string, place decoded  | 
442  |  |              * values in the output buffer, and return.  | 
443  |  |              */  | 
444  | 0  |             sp->dec_restart += occ;  | 
445  | 0  |             do  | 
446  | 0  |             { | 
447  | 0  |                 codep = codep->next;  | 
448  | 0  |             } while (--residue > occ && codep);  | 
449  | 0  |             if (codep)  | 
450  | 0  |             { | 
451  | 0  |                 uint8_t *tp = op + occ;  | 
452  | 0  |                 do  | 
453  | 0  |                 { | 
454  | 0  |                     *--tp = codep->value;  | 
455  | 0  |                     codep = codep->next;  | 
456  | 0  |                 } while (--occ && codep);  | 
457  | 0  |             }  | 
458  | 0  |             return (1);  | 
459  | 0  |         }  | 
460  |  |         /*  | 
461  |  |          * Residue satisfies only part of the decode request.  | 
462  |  |          */  | 
463  | 0  |         op += residue;  | 
464  | 0  |         occ -= residue;  | 
465  | 0  |         uint8_t *tp = op;  | 
466  | 0  |         do  | 
467  | 0  |         { | 
468  | 0  |             *--tp = codep->value;  | 
469  | 0  |             codep = codep->next;  | 
470  | 0  |         } while (--residue && codep);  | 
471  | 0  |         sp->dec_restart = 0;  | 
472  | 0  |     }  | 
473  |  |  | 
474  | 0  |     bp = (uint8_t *)tif->tif_rawcp;  | 
475  | 0  |     sp->dec_bitsleft += (((uint64_t)tif->tif_rawcc - sp->old_tif_rawcc) << 3);  | 
476  | 0  |     uint64_t dec_bitsleft = sp->dec_bitsleft;  | 
477  | 0  |     nbits = sp->lzw_nbits;  | 
478  | 0  |     nextdata = sp->lzw_nextdata;  | 
479  | 0  |     nextbits = sp->lzw_nextbits;  | 
480  | 0  |     nbitsmask = sp->dec_nbitsmask;  | 
481  | 0  |     oldcodep = sp->dec_oldcodep;  | 
482  | 0  |     free_entp = sp->dec_free_entp;  | 
483  | 0  |     maxcodep = sp->dec_maxcodep;  | 
484  | 0  |     code_t *const dec_codetab = sp->dec_codetab;  | 
485  | 0  |     code_t *codep;  | 
486  |  | 
  | 
487  | 0  |     if (occ == 0)  | 
488  | 0  |     { | 
489  | 0  |         goto after_loop;  | 
490  | 0  |     }  | 
491  |  |  | 
492  | 0  | begin:  | 
493  | 0  | { | 
494  | 0  |     WordType code;  | 
495  | 0  |     GetNextCodeLZW();  | 
496  | 0  |     codep = dec_codetab + code;  | 
497  | 0  |     if (code >= CODE_FIRST)  | 
498  | 0  |         goto code_above_or_equal_to_258;  | 
499  | 0  |     if (code < 256)  | 
500  | 0  |         goto code_below_256;  | 
501  | 0  |     if (code == CODE_EOI)  | 
502  | 0  |         goto after_loop;  | 
503  | 0  |     goto code_clear;  | 
504  |  |  | 
505  | 0  | code_below_256:  | 
506  | 0  | { | 
507  | 0  |     if (codep > free_entp)  | 
508  | 0  |         goto error_code;  | 
509  | 0  |     free_entp->next = oldcodep;  | 
510  | 0  |     free_entp->firstchar = oldcodep->firstchar;  | 
511  | 0  |     free_entp->length = oldcodep->length + 1;  | 
512  | 0  |     free_entp->value = (uint8_t)code;  | 
513  | 0  |     free_entp->repeated =  | 
514  | 0  |         (bool)(oldcodep->repeated & (oldcodep->value == code));  | 
515  | 0  |     if (++free_entp > maxcodep)  | 
516  | 0  |     { | 
517  | 0  |         if (++nbits > BITS_MAX) /* should not happen for a conformant encoder */  | 
518  | 0  |             nbits = BITS_MAX;  | 
519  | 0  |         nbitsmask = MAXCODE(nbits);  | 
520  | 0  |         maxcodep = dec_codetab + nbitsmask - 1;  | 
521  | 0  |         if (free_entp >= &dec_codetab[CSIZE])  | 
522  | 0  |         { | 
523  |  |             /* At that point, the next valid states are either EOI or a */  | 
524  |  |             /* CODE_CLEAR. If a regular code is read, at the next */  | 
525  |  |             /* attempt at registering a new entry, we will error out */  | 
526  |  |             /* due to setting free_entp before any valid code */  | 
527  | 0  |             free_entp = dec_codetab - 1;  | 
528  | 0  |         }  | 
529  | 0  |     }  | 
530  | 0  |     oldcodep = codep;  | 
531  | 0  |     *op++ = (uint8_t)code;  | 
532  | 0  |     occ--;  | 
533  | 0  |     if (occ == 0)  | 
534  | 0  |         goto after_loop;  | 
535  | 0  |     goto begin;  | 
536  | 0  | }  | 
537  |  |  | 
538  | 0  | code_above_or_equal_to_258:  | 
539  | 0  | { | 
540  |  |     /*  | 
541  |  |      * Add the new entry to the code table.  | 
542  |  |      */  | 
543  |  | 
  | 
544  | 0  |     if (codep >= free_entp)  | 
545  | 0  |     { | 
546  | 0  |         if (codep != free_entp)  | 
547  | 0  |             goto error_code;  | 
548  | 0  |         free_entp->value = oldcodep->firstchar;  | 
549  | 0  |     }  | 
550  | 0  |     else  | 
551  | 0  |     { | 
552  | 0  |         free_entp->value = codep->firstchar;  | 
553  | 0  |     }  | 
554  | 0  |     free_entp->repeated =  | 
555  | 0  |         (bool)(oldcodep->repeated & (oldcodep->value == free_entp->value));  | 
556  | 0  |     free_entp->next = oldcodep;  | 
557  |  | 
  | 
558  | 0  |     free_entp->firstchar = oldcodep->firstchar;  | 
559  | 0  |     free_entp->length = oldcodep->length + 1;  | 
560  | 0  |     if (++free_entp > maxcodep)  | 
561  | 0  |     { | 
562  | 0  |         if (++nbits > BITS_MAX) /* should not happen for a conformant encoder */  | 
563  | 0  |             nbits = BITS_MAX;  | 
564  | 0  |         nbitsmask = MAXCODE(nbits);  | 
565  | 0  |         maxcodep = dec_codetab + nbitsmask - 1;  | 
566  | 0  |         if (free_entp >= &dec_codetab[CSIZE])  | 
567  | 0  |         { | 
568  |  |             /* At that point, the next valid states are either EOI or a */  | 
569  |  |             /* CODE_CLEAR. If a regular code is read, at the next */  | 
570  |  |             /* attempt at registering a new entry, we will error out */  | 
571  |  |             /* due to setting free_entp before any valid code */  | 
572  | 0  |             free_entp = dec_codetab - 1;  | 
573  | 0  |         }  | 
574  | 0  |     }  | 
575  | 0  |     oldcodep = codep;  | 
576  |  |  | 
577  |  |     /*  | 
578  |  |      * Code maps to a string, copy string  | 
579  |  |      * value to output (written in reverse).  | 
580  |  |      */  | 
581  |  |     /* tiny bit faster on x86_64 to store in unsigned short than int */  | 
582  | 0  |     unsigned short len = codep->length;  | 
583  |  | 
  | 
584  | 0  |     if (len < 3) /* equivalent to len == 2 given all other conditions */  | 
585  | 0  |     { | 
586  | 0  |         if (occ <= 2)  | 
587  | 0  |         { | 
588  | 0  |             if (occ == 2)  | 
589  | 0  |             { | 
590  | 0  |                 memcpy(op, &(codep->firstchar), 2);  | 
591  | 0  |                 op += 2;  | 
592  | 0  |                 occ -= 2;  | 
593  | 0  |                 goto after_loop;  | 
594  | 0  |             }  | 
595  | 0  |             goto too_short_buffer;  | 
596  | 0  |         }  | 
597  |  |  | 
598  | 0  |         memcpy(op, &(codep->firstchar), 2);  | 
599  | 0  |         op += 2;  | 
600  | 0  |         occ -= 2;  | 
601  | 0  |         goto begin; /* we can save the comparison occ > 0 */  | 
602  | 0  |     }  | 
603  |  |  | 
604  | 0  |     if (len == 3)  | 
605  | 0  |     { | 
606  | 0  |         if (occ <= 3)  | 
607  | 0  |         { | 
608  | 0  |             if (occ == 3)  | 
609  | 0  |             { | 
610  | 0  |                 op[0] = codep->firstchar;  | 
611  | 0  |                 op[1] = codep->next->value;  | 
612  | 0  |                 op[2] = codep->value;  | 
613  | 0  |                 op += 3;  | 
614  | 0  |                 occ -= 3;  | 
615  | 0  |                 goto after_loop;  | 
616  | 0  |             }  | 
617  | 0  |             goto too_short_buffer;  | 
618  | 0  |         }  | 
619  |  |  | 
620  | 0  |         op[0] = codep->firstchar;  | 
621  | 0  |         op[1] = codep->next->value;  | 
622  | 0  |         op[2] = codep->value;  | 
623  | 0  |         op += 3;  | 
624  | 0  |         occ -= 3;  | 
625  | 0  |         goto begin; /* we can save the comparison occ > 0 */  | 
626  | 0  |     }  | 
627  |  |  | 
628  | 0  |     if (len > occ)  | 
629  | 0  |     { | 
630  | 0  |         goto too_short_buffer;  | 
631  | 0  |     }  | 
632  |  |  | 
633  | 0  |     if (codep->repeated)  | 
634  | 0  |     { | 
635  | 0  |         memset(op, codep->value, len);  | 
636  | 0  |         op += len;  | 
637  | 0  |         occ -= len;  | 
638  | 0  |         if (occ == 0)  | 
639  | 0  |             goto after_loop;  | 
640  | 0  |         goto begin;  | 
641  | 0  |     }  | 
642  |  |  | 
643  | 0  |     uint8_t *tp = op + len;  | 
644  |  | 
  | 
645  | 0  |     assert(len >= 4);  | 
646  |  | 
  | 
647  | 0  |     *--tp = codep->value;  | 
648  | 0  |     codep = codep->next;  | 
649  | 0  |     *--tp = codep->value;  | 
650  | 0  |     codep = codep->next;  | 
651  | 0  |     *--tp = codep->value;  | 
652  | 0  |     codep = codep->next;  | 
653  | 0  |     *--tp = codep->value;  | 
654  | 0  |     if (tp > op)  | 
655  | 0  |     { | 
656  | 0  |         do  | 
657  | 0  |         { | 
658  | 0  |             codep = codep->next;  | 
659  | 0  |             *--tp = codep->value;  | 
660  | 0  |         } while (tp > op);  | 
661  | 0  |     }  | 
662  |  | 
  | 
663  | 0  |     assert(occ >= len);  | 
664  | 0  |     op += len;  | 
665  | 0  |     occ -= len;  | 
666  | 0  |     if (occ == 0)  | 
667  | 0  |         goto after_loop;  | 
668  | 0  |     goto begin;  | 
669  | 0  | }  | 
670  |  |  | 
671  | 0  | code_clear:  | 
672  | 0  | { | 
673  | 0  |     free_entp = dec_codetab + CODE_FIRST;  | 
674  | 0  |     nbits = BITS_MIN;  | 
675  | 0  |     nbitsmask = MAXCODE(BITS_MIN);  | 
676  | 0  |     maxcodep = dec_codetab + nbitsmask - 1;  | 
677  | 0  |     do  | 
678  | 0  |     { | 
679  | 0  |         GetNextCodeLZW();  | 
680  | 0  |     } while (code == CODE_CLEAR); /* consecutive CODE_CLEAR codes */  | 
681  | 0  |     if (code == CODE_EOI)  | 
682  | 0  |         goto after_loop;  | 
683  | 0  |     if (code > CODE_EOI)  | 
684  | 0  |     { | 
685  | 0  |         goto error_code;  | 
686  | 0  |     }  | 
687  | 0  |     *op++ = (uint8_t)code;  | 
688  | 0  |     occ--;  | 
689  | 0  |     oldcodep = dec_codetab + code;  | 
690  | 0  |     if (occ == 0)  | 
691  | 0  |         goto after_loop;  | 
692  | 0  |     goto begin;  | 
693  | 0  | }  | 
694  | 0  | }  | 
695  |  |  | 
696  | 0  | too_short_buffer:  | 
697  | 0  | { | 
698  |  |     /*  | 
699  |  |      * String is too long for decode buffer,  | 
700  |  |      * locate portion that will fit, copy to  | 
701  |  |      * the decode buffer, and setup restart  | 
702  |  |      * logic for the next decoding call.  | 
703  |  |      */  | 
704  | 0  |     sp->dec_codep = codep;  | 
705  | 0  |     do  | 
706  | 0  |     { | 
707  | 0  |         codep = codep->next;  | 
708  | 0  |     } while (codep->length > occ);  | 
709  |  | 
  | 
710  | 0  |     sp->dec_restart = occ;  | 
711  | 0  |     uint8_t *tp = op + occ;  | 
712  | 0  |     do  | 
713  | 0  |     { | 
714  | 0  |         *--tp = codep->value;  | 
715  | 0  |         codep = codep->next;  | 
716  | 0  |     } while (--occ);  | 
717  | 0  | }  | 
718  |  | 
  | 
719  | 0  | after_loop:  | 
720  | 0  |     tif->tif_rawcc -= (tmsize_t)((uint8_t *)bp - tif->tif_rawcp);  | 
721  | 0  |     tif->tif_rawcp = (uint8_t *)bp;  | 
722  | 0  |     sp->old_tif_rawcc = tif->tif_rawcc;  | 
723  | 0  |     sp->dec_bitsleft = dec_bitsleft;  | 
724  | 0  |     sp->lzw_nbits = (unsigned short)nbits;  | 
725  | 0  |     sp->lzw_nextdata = nextdata;  | 
726  | 0  |     sp->lzw_nextbits = nextbits;  | 
727  | 0  |     sp->dec_nbitsmask = nbitsmask;  | 
728  | 0  |     sp->dec_oldcodep = oldcodep;  | 
729  | 0  |     sp->dec_free_entp = free_entp;  | 
730  | 0  |     sp->dec_maxcodep = maxcodep;  | 
731  |  | 
  | 
732  | 0  |     if (occ > 0)  | 
733  | 0  |     { | 
734  | 0  |         TIFFErrorExtR(tif, module,  | 
735  | 0  |                       "Not enough data at scanline %" PRIu32 " (short %" PRIu64  | 
736  | 0  |                       " bytes)",  | 
737  | 0  |                       tif->tif_row, (uint64_t)occ);  | 
738  | 0  |         return (0);  | 
739  | 0  |     }  | 
740  | 0  |     return (1);  | 
741  |  |  | 
742  | 0  | no_eoi:  | 
743  | 0  |     sp->read_error = 1;  | 
744  | 0  |     TIFFErrorExtR(tif, module,  | 
745  | 0  |                   "LZWDecode: Strip %" PRIu32 " not terminated with EOI code",  | 
746  | 0  |                   tif->tif_curstrip);  | 
747  | 0  |     return 0;  | 
748  | 0  | error_code:  | 
749  | 0  |     sp->read_error = 1;  | 
750  | 0  |     TIFFErrorExtR(tif, tif->tif_name, "Using code not yet in table");  | 
751  | 0  |     return 0;  | 
752  | 0  | }  | 
753  |  |  | 
754  |  | #ifdef LZW_COMPAT  | 
755  |  |  | 
756  |  | /*  | 
757  |  |  * This check shouldn't be necessary because each  | 
758  |  |  * strip is suppose to be terminated with CODE_EOI.  | 
759  |  |  */  | 
760  |  | #define NextCode(_tif, _sp, _bp, _code, _get, dec_bitsleft)                    \  | 
761  | 0  |     {                                                                          \ | 
762  | 0  |         if (dec_bitsleft < (uint64_t)nbits)                                    \  | 
763  | 0  |         {                                                                      \ | 
764  | 0  |             TIFFWarningExtR(_tif, module,                                      \  | 
765  | 0  |                             "LZWDecode: Strip %" PRIu32                        \  | 
766  | 0  |                             " not terminated with EOI code",                   \  | 
767  | 0  |                             _tif->tif_curstrip);                               \  | 
768  | 0  |             _code = CODE_EOI;                                                  \  | 
769  | 0  |         }                                                                      \  | 
770  | 0  |         else                                                                   \  | 
771  | 0  |         {                                                                      \ | 
772  | 0  |             _get(_sp, _bp, _code);                                             \  | 
773  | 0  |             dec_bitsleft -= nbits;                                             \  | 
774  | 0  |         }                                                                      \  | 
775  | 0  |     }  | 
776  |  |  | 
777  |  | /*  | 
778  |  |  * Decode a "hunk of data" for old images.  | 
779  |  |  */  | 
780  |  | #define GetNextCodeCompat(sp, bp, code)                                        \  | 
781  | 0  |     {                                                                          \ | 
782  | 0  |         nextdata |= (unsigned long)*(bp)++ << nextbits;                        \  | 
783  | 0  |         nextbits += 8;                                                         \  | 
784  | 0  |         if (nextbits < nbits)                                                  \  | 
785  | 0  |         {                                                                      \ | 
786  | 0  |             nextdata |= (unsigned long)*(bp)++ << nextbits;                    \  | 
787  | 0  |             nextbits += 8;                                                     \  | 
788  | 0  |         }                                                                      \  | 
789  | 0  |         code = (hcode_t)(nextdata & nbitsmask);                                \  | 
790  | 0  |         nextdata >>= nbits;                                                    \  | 
791  | 0  |         nextbits -= nbits;                                                     \  | 
792  | 0  |     }  | 
793  |  |  | 
794  |  | static int LZWDecodeCompat(TIFF *tif, uint8_t *op0, tmsize_t occ0, uint16_t s)  | 
795  | 0  | { | 
796  | 0  |     static const char module[] = "LZWDecodeCompat";  | 
797  | 0  |     LZWCodecState *sp = LZWDecoderState(tif);  | 
798  | 0  |     uint8_t *op = (uint8_t *)op0;  | 
799  | 0  |     tmsize_t occ = occ0;  | 
800  | 0  |     uint8_t *tp;  | 
801  | 0  |     uint8_t *bp;  | 
802  | 0  |     int code, nbits;  | 
803  | 0  |     int len;  | 
804  | 0  |     long nextbits, nbitsmask;  | 
805  | 0  |     WordType nextdata;  | 
806  | 0  |     code_t *codep, *free_entp, *maxcodep, *oldcodep;  | 
807  |  | 
  | 
808  | 0  |     (void)s;  | 
809  | 0  |     assert(sp != NULL);  | 
810  |  |  | 
811  |  |     /*  | 
812  |  |      * Restart interrupted output operation.  | 
813  |  |      */  | 
814  | 0  |     if (sp->dec_restart)  | 
815  | 0  |     { | 
816  | 0  |         tmsize_t residue;  | 
817  |  | 
  | 
818  | 0  |         codep = sp->dec_codep;  | 
819  | 0  |         residue = codep->length - sp->dec_restart;  | 
820  | 0  |         if (residue > occ)  | 
821  | 0  |         { | 
822  |  |             /*  | 
823  |  |              * Residue from previous decode is sufficient  | 
824  |  |              * to satisfy decode request.  Skip to the  | 
825  |  |              * start of the decoded string, place decoded  | 
826  |  |              * values in the output buffer, and return.  | 
827  |  |              */  | 
828  | 0  |             sp->dec_restart += occ;  | 
829  | 0  |             do  | 
830  | 0  |             { | 
831  | 0  |                 codep = codep->next;  | 
832  | 0  |             } while (--residue > occ);  | 
833  | 0  |             tp = op + occ;  | 
834  | 0  |             do  | 
835  | 0  |             { | 
836  | 0  |                 *--tp = codep->value;  | 
837  | 0  |                 codep = codep->next;  | 
838  | 0  |             } while (--occ);  | 
839  | 0  |             return (1);  | 
840  | 0  |         }  | 
841  |  |         /*  | 
842  |  |          * Residue satisfies only part of the decode request.  | 
843  |  |          */  | 
844  | 0  |         op += residue;  | 
845  | 0  |         occ -= residue;  | 
846  | 0  |         tp = op;  | 
847  | 0  |         do  | 
848  | 0  |         { | 
849  | 0  |             *--tp = codep->value;  | 
850  | 0  |             codep = codep->next;  | 
851  | 0  |         } while (--residue);  | 
852  | 0  |         sp->dec_restart = 0;  | 
853  | 0  |     }  | 
854  |  |  | 
855  | 0  |     bp = (uint8_t *)tif->tif_rawcp;  | 
856  |  | 
  | 
857  | 0  |     sp->dec_bitsleft += (((uint64_t)tif->tif_rawcc - sp->old_tif_rawcc) << 3);  | 
858  | 0  |     uint64_t dec_bitsleft = sp->dec_bitsleft;  | 
859  |  | 
  | 
860  | 0  |     nbits = sp->lzw_nbits;  | 
861  | 0  |     nextdata = sp->lzw_nextdata;  | 
862  | 0  |     nextbits = sp->lzw_nextbits;  | 
863  | 0  |     nbitsmask = sp->dec_nbitsmask;  | 
864  | 0  |     oldcodep = sp->dec_oldcodep;  | 
865  | 0  |     free_entp = sp->dec_free_entp;  | 
866  | 0  |     maxcodep = sp->dec_maxcodep;  | 
867  |  | 
  | 
868  | 0  |     while (occ > 0)  | 
869  | 0  |     { | 
870  | 0  |         NextCode(tif, sp, bp, code, GetNextCodeCompat, dec_bitsleft);  | 
871  | 0  |         if (code == CODE_EOI)  | 
872  | 0  |             break;  | 
873  | 0  |         if (code == CODE_CLEAR)  | 
874  | 0  |         { | 
875  | 0  |             do  | 
876  | 0  |             { | 
877  | 0  |                 free_entp = sp->dec_codetab + CODE_FIRST;  | 
878  | 0  |                 _TIFFmemset(free_entp, 0,  | 
879  | 0  |                             (CSIZE - CODE_FIRST) * sizeof(code_t));  | 
880  | 0  |                 nbits = BITS_MIN;  | 
881  | 0  |                 nbitsmask = MAXCODE(BITS_MIN);  | 
882  | 0  |                 maxcodep = sp->dec_codetab + nbitsmask;  | 
883  | 0  |                 NextCode(tif, sp, bp, code, GetNextCodeCompat, dec_bitsleft);  | 
884  | 0  |             } while (code == CODE_CLEAR); /* consecutive CODE_CLEAR codes */  | 
885  | 0  |             if (code == CODE_EOI)  | 
886  | 0  |                 break;  | 
887  | 0  |             if (code > CODE_CLEAR)  | 
888  | 0  |             { | 
889  | 0  |                 TIFFErrorExtR(  | 
890  | 0  |                     tif, tif->tif_name,  | 
891  | 0  |                     "LZWDecode: Corrupted LZW table at scanline %" PRIu32,  | 
892  | 0  |                     tif->tif_row);  | 
893  | 0  |                 return (0);  | 
894  | 0  |             }  | 
895  | 0  |             *op++ = (uint8_t)code;  | 
896  | 0  |             occ--;  | 
897  | 0  |             oldcodep = sp->dec_codetab + code;  | 
898  | 0  |             continue;  | 
899  | 0  |         }  | 
900  | 0  |         codep = sp->dec_codetab + code;  | 
901  |  |  | 
902  |  |         /*  | 
903  |  |          * Add the new entry to the code table.  | 
904  |  |          */  | 
905  | 0  |         if (free_entp < &sp->dec_codetab[0] ||  | 
906  | 0  |             free_entp >= &sp->dec_codetab[CSIZE])  | 
907  | 0  |         { | 
908  | 0  |             TIFFErrorExtR(tif, module,  | 
909  | 0  |                           "Corrupted LZW table at scanline %" PRIu32,  | 
910  | 0  |                           tif->tif_row);  | 
911  | 0  |             return (0);  | 
912  | 0  |         }  | 
913  |  |  | 
914  | 0  |         free_entp->next = oldcodep;  | 
915  | 0  |         if (free_entp->next < &sp->dec_codetab[0] ||  | 
916  | 0  |             free_entp->next >= &sp->dec_codetab[CSIZE])  | 
917  | 0  |         { | 
918  | 0  |             TIFFErrorExtR(tif, module,  | 
919  | 0  |                           "Corrupted LZW table at scanline %" PRIu32,  | 
920  | 0  |                           tif->tif_row);  | 
921  | 0  |             return (0);  | 
922  | 0  |         }  | 
923  | 0  |         free_entp->firstchar = free_entp->next->firstchar;  | 
924  | 0  |         free_entp->length = free_entp->next->length + 1;  | 
925  | 0  |         free_entp->value =  | 
926  | 0  |             (codep < free_entp) ? codep->firstchar : free_entp->firstchar;  | 
927  | 0  |         if (++free_entp > maxcodep)  | 
928  | 0  |         { | 
929  | 0  |             if (++nbits > BITS_MAX) /* should not happen */  | 
930  | 0  |                 nbits = BITS_MAX;  | 
931  | 0  |             nbitsmask = MAXCODE(nbits);  | 
932  | 0  |             maxcodep = sp->dec_codetab + nbitsmask;  | 
933  | 0  |         }  | 
934  | 0  |         oldcodep = codep;  | 
935  | 0  |         if (code >= 256)  | 
936  | 0  |         { | 
937  |  |             /*  | 
938  |  |              * Code maps to a string, copy string  | 
939  |  |              * value to output (written in reverse).  | 
940  |  |              */  | 
941  | 0  |             if (codep->length == 0)  | 
942  | 0  |             { | 
943  | 0  |                 TIFFErrorExtR(  | 
944  | 0  |                     tif, module,  | 
945  | 0  |                     "Wrong length of decoded "  | 
946  | 0  |                     "string: data probably corrupted at scanline %" PRIu32,  | 
947  | 0  |                     tif->tif_row);  | 
948  | 0  |                 return (0);  | 
949  | 0  |             }  | 
950  | 0  |             if (codep->length > occ)  | 
951  | 0  |             { | 
952  |  |                 /*  | 
953  |  |                  * String is too long for decode buffer,  | 
954  |  |                  * locate portion that will fit, copy to  | 
955  |  |                  * the decode buffer, and setup restart  | 
956  |  |                  * logic for the next decoding call.  | 
957  |  |                  */  | 
958  | 0  |                 sp->dec_codep = codep;  | 
959  | 0  |                 do  | 
960  | 0  |                 { | 
961  | 0  |                     codep = codep->next;  | 
962  | 0  |                 } while (codep->length > occ);  | 
963  | 0  |                 sp->dec_restart = occ;  | 
964  | 0  |                 tp = op + occ;  | 
965  | 0  |                 do  | 
966  | 0  |                 { | 
967  | 0  |                     *--tp = codep->value;  | 
968  | 0  |                     codep = codep->next;  | 
969  | 0  |                 } while (--occ);  | 
970  | 0  |                 break;  | 
971  | 0  |             }  | 
972  | 0  |             len = codep->length;  | 
973  | 0  |             tp = op + len;  | 
974  | 0  |             do  | 
975  | 0  |             { | 
976  | 0  |                 *--tp = codep->value;  | 
977  | 0  |                 codep = codep->next;  | 
978  | 0  |             } while (codep && tp > op);  | 
979  | 0  |             assert(occ >= len);  | 
980  | 0  |             op += len;  | 
981  | 0  |             occ -= len;  | 
982  | 0  |         }  | 
983  | 0  |         else  | 
984  | 0  |         { | 
985  | 0  |             *op++ = (uint8_t)code;  | 
986  | 0  |             occ--;  | 
987  | 0  |         }  | 
988  | 0  |     }  | 
989  |  |  | 
990  | 0  |     tif->tif_rawcc -= (tmsize_t)((uint8_t *)bp - tif->tif_rawcp);  | 
991  | 0  |     tif->tif_rawcp = (uint8_t *)bp;  | 
992  |  | 
  | 
993  | 0  |     sp->old_tif_rawcc = tif->tif_rawcc;  | 
994  | 0  |     sp->dec_bitsleft = dec_bitsleft;  | 
995  |  | 
  | 
996  | 0  |     sp->lzw_nbits = (unsigned short)nbits;  | 
997  | 0  |     sp->lzw_nextdata = nextdata;  | 
998  | 0  |     sp->lzw_nextbits = nextbits;  | 
999  | 0  |     sp->dec_nbitsmask = nbitsmask;  | 
1000  | 0  |     sp->dec_oldcodep = oldcodep;  | 
1001  | 0  |     sp->dec_free_entp = free_entp;  | 
1002  | 0  |     sp->dec_maxcodep = maxcodep;  | 
1003  |  | 
  | 
1004  | 0  |     if (occ > 0)  | 
1005  | 0  |     { | 
1006  | 0  |         TIFFErrorExtR(tif, module,  | 
1007  | 0  |                       "Not enough data at scanline %" PRIu32 " (short %" PRIu64  | 
1008  | 0  |                       " bytes)",  | 
1009  | 0  |                       tif->tif_row, (uint64_t)occ);  | 
1010  | 0  |         return (0);  | 
1011  | 0  |     }  | 
1012  | 0  |     return (1);  | 
1013  | 0  | }  | 
1014  |  | #endif /* LZW_COMPAT */  | 
1015  |  |  | 
1016  |  | /*  | 
1017  |  |  * LZW Encoding.  | 
1018  |  |  */  | 
1019  |  |  | 
1020  |  | static int LZWSetupEncode(TIFF *tif)  | 
1021  | 0  | { | 
1022  | 0  |     static const char module[] = "LZWSetupEncode";  | 
1023  | 0  |     LZWCodecState *sp = LZWEncoderState(tif);  | 
1024  |  | 
  | 
1025  | 0  |     assert(sp != NULL);  | 
1026  | 0  |     sp->enc_hashtab = (hash_t *)_TIFFmallocExt(tif, HSIZE * sizeof(hash_t));  | 
1027  | 0  |     if (sp->enc_hashtab == NULL)  | 
1028  | 0  |     { | 
1029  | 0  |         TIFFErrorExtR(tif, module, "No space for LZW hash table");  | 
1030  | 0  |         return (0);  | 
1031  | 0  |     }  | 
1032  | 0  |     return (1);  | 
1033  | 0  | }  | 
1034  |  |  | 
1035  |  | /*  | 
1036  |  |  * Reset encoding state at the start of a strip.  | 
1037  |  |  */  | 
1038  |  | static int LZWPreEncode(TIFF *tif, uint16_t s)  | 
1039  | 0  | { | 
1040  | 0  |     LZWCodecState *sp = LZWEncoderState(tif);  | 
1041  |  | 
  | 
1042  | 0  |     (void)s;  | 
1043  | 0  |     assert(sp != NULL);  | 
1044  |  | 
  | 
1045  | 0  |     if (sp->enc_hashtab == NULL)  | 
1046  | 0  |     { | 
1047  | 0  |         tif->tif_setupencode(tif);  | 
1048  | 0  |     }  | 
1049  |  | 
  | 
1050  | 0  |     sp->lzw_nbits = BITS_MIN;  | 
1051  | 0  |     sp->lzw_maxcode = MAXCODE(BITS_MIN);  | 
1052  | 0  |     sp->lzw_free_ent = CODE_FIRST;  | 
1053  | 0  |     sp->lzw_nextbits = 0;  | 
1054  | 0  |     sp->lzw_nextdata = 0;  | 
1055  | 0  |     sp->enc_checkpoint = CHECK_GAP;  | 
1056  | 0  |     sp->enc_ratio = 0;  | 
1057  | 0  |     sp->enc_incount = 0;  | 
1058  | 0  |     sp->enc_outcount = 0;  | 
1059  |  |     /*  | 
1060  |  |      * The 4 here insures there is space for 2 max-sized  | 
1061  |  |      * codes in LZWEncode and LZWPostDecode.  | 
1062  |  |      */  | 
1063  | 0  |     sp->enc_rawlimit = tif->tif_rawdata + tif->tif_rawdatasize - 1 - 4;  | 
1064  | 0  |     cl_hash(sp);                   /* clear hash table */  | 
1065  | 0  |     sp->enc_oldcode = (hcode_t)-1; /* generates CODE_CLEAR in LZWEncode */  | 
1066  | 0  |     return (1);  | 
1067  | 0  | }  | 
1068  |  |  | 
1069  |  | #define CALCRATIO(sp, rat)                                                     \  | 
1070  | 0  |     {                                                                          \ | 
1071  | 0  |         if (incount > 0x007fffff)                                              \  | 
1072  | 0  |         { /* NB: shift will overflow */                                        \ | 
1073  | 0  |             rat = outcount >> 8;                                               \  | 
1074  | 0  |             rat = (rat == 0 ? 0x7fffffff : incount / rat);                     \  | 
1075  | 0  |         }                                                                      \  | 
1076  | 0  |         else                                                                   \  | 
1077  | 0  |             rat = (incount << 8) / outcount;                                   \  | 
1078  | 0  |     }  | 
1079  |  |  | 
1080  |  | /* Explicit 0xff masking to make icc -check=conversions happy */  | 
1081  |  | #define PutNextCode(op, c)                                                     \  | 
1082  | 0  |     {                                                                          \ | 
1083  | 0  |         nextdata = (nextdata << nbits) | c;                                    \  | 
1084  | 0  |         nextbits += nbits;                                                     \  | 
1085  | 0  |         *op++ = (unsigned char)((nextdata >> (nextbits - 8)) & 0xff);          \  | 
1086  | 0  |         nextbits -= 8;                                                         \  | 
1087  | 0  |         if (nextbits >= 8)                                                     \  | 
1088  | 0  |         {                                                                      \ | 
1089  | 0  |             *op++ = (unsigned char)((nextdata >> (nextbits - 8)) & 0xff);      \  | 
1090  | 0  |             nextbits -= 8;                                                     \  | 
1091  | 0  |         }                                                                      \  | 
1092  | 0  |         outcount += nbits;                                                     \  | 
1093  | 0  |     }  | 
1094  |  |  | 
1095  |  | /*  | 
1096  |  |  * Encode a chunk of pixels.  | 
1097  |  |  *  | 
1098  |  |  * Uses an open addressing double hashing (no chaining) on the  | 
1099  |  |  * prefix code/next character combination.  We do a variant of  | 
1100  |  |  * Knuth's algorithm D (vol. 3, sec. 6.4) along with G. Knott's  | 
1101  |  |  * relatively-prime secondary probe.  Here, the modular division  | 
1102  |  |  * first probe is gives way to a faster exclusive-or manipulation.  | 
1103  |  |  * Also do block compression with an adaptive reset, whereby the  | 
1104  |  |  * code table is cleared when the compression ratio decreases,  | 
1105  |  |  * but after the table fills.  The variable-length output codes  | 
1106  |  |  * are re-sized at this point, and a CODE_CLEAR is generated  | 
1107  |  |  * for the decoder.  | 
1108  |  |  */  | 
1109  |  | static int LZWEncode(TIFF *tif, uint8_t *bp, tmsize_t cc, uint16_t s)  | 
1110  | 0  | { | 
1111  | 0  |     register LZWCodecState *sp = LZWEncoderState(tif);  | 
1112  | 0  |     register long fcode;  | 
1113  | 0  |     register hash_t *hp;  | 
1114  | 0  |     register int h, c;  | 
1115  | 0  |     hcode_t ent;  | 
1116  | 0  |     long disp;  | 
1117  | 0  |     tmsize_t incount, outcount, checkpoint;  | 
1118  | 0  |     WordType nextdata;  | 
1119  | 0  |     long nextbits;  | 
1120  | 0  |     int free_ent, maxcode, nbits;  | 
1121  | 0  |     uint8_t *op;  | 
1122  | 0  |     uint8_t *limit;  | 
1123  |  | 
  | 
1124  | 0  |     (void)s;  | 
1125  | 0  |     if (sp == NULL)  | 
1126  | 0  |         return (0);  | 
1127  |  |  | 
1128  | 0  |     assert(sp->enc_hashtab != NULL);  | 
1129  |  |  | 
1130  |  |     /*  | 
1131  |  |      * Load local state.  | 
1132  |  |      */  | 
1133  | 0  |     incount = sp->enc_incount;  | 
1134  | 0  |     outcount = sp->enc_outcount;  | 
1135  | 0  |     checkpoint = sp->enc_checkpoint;  | 
1136  | 0  |     nextdata = sp->lzw_nextdata;  | 
1137  | 0  |     nextbits = sp->lzw_nextbits;  | 
1138  | 0  |     free_ent = sp->lzw_free_ent;  | 
1139  | 0  |     maxcode = sp->lzw_maxcode;  | 
1140  | 0  |     nbits = sp->lzw_nbits;  | 
1141  | 0  |     op = tif->tif_rawcp;  | 
1142  | 0  |     limit = sp->enc_rawlimit;  | 
1143  | 0  |     ent = (hcode_t)sp->enc_oldcode;  | 
1144  |  | 
  | 
1145  | 0  |     if (ent == (hcode_t)-1 && cc > 0)  | 
1146  | 0  |     { | 
1147  |  |         /*  | 
1148  |  |          * NB: This is safe because it can only happen  | 
1149  |  |          *     at the start of a strip where we know there  | 
1150  |  |          *     is space in the data buffer.  | 
1151  |  |          */  | 
1152  | 0  |         PutNextCode(op, CODE_CLEAR);  | 
1153  | 0  |         ent = *bp++;  | 
1154  | 0  |         cc--;  | 
1155  | 0  |         incount++;  | 
1156  | 0  |     }  | 
1157  | 0  |     while (cc > 0)  | 
1158  | 0  |     { | 
1159  | 0  |         c = *bp++;  | 
1160  | 0  |         cc--;  | 
1161  | 0  |         incount++;  | 
1162  | 0  |         fcode = ((long)c << BITS_MAX) + ent;  | 
1163  | 0  |         h = (c << HSHIFT) ^ ent; /* xor hashing */  | 
1164  |  | #ifdef _WINDOWS  | 
1165  |  |         /*  | 
1166  |  |          * Check hash index for an overflow.  | 
1167  |  |          */  | 
1168  |  |         if (h >= HSIZE)  | 
1169  |  |             h -= HSIZE;  | 
1170  |  | #endif  | 
1171  | 0  |         hp = &sp->enc_hashtab[h];  | 
1172  | 0  |         if (hp->hash == fcode)  | 
1173  | 0  |         { | 
1174  | 0  |             ent = hp->code;  | 
1175  | 0  |             continue;  | 
1176  | 0  |         }  | 
1177  | 0  |         if (hp->hash >= 0)  | 
1178  | 0  |         { | 
1179  |  |             /*  | 
1180  |  |              * Primary hash failed, check secondary hash.  | 
1181  |  |              */  | 
1182  | 0  |             disp = HSIZE - h;  | 
1183  | 0  |             if (h == 0)  | 
1184  | 0  |                 disp = 1;  | 
1185  | 0  |             do  | 
1186  | 0  |             { | 
1187  |  |                 /*  | 
1188  |  |                  * Avoid pointer arithmetic because of  | 
1189  |  |                  * wraparound problems with segments.  | 
1190  |  |                  */  | 
1191  | 0  |                 if ((h -= disp) < 0)  | 
1192  | 0  |                     h += HSIZE;  | 
1193  | 0  |                 hp = &sp->enc_hashtab[h];  | 
1194  | 0  |                 if (hp->hash == fcode)  | 
1195  | 0  |                 { | 
1196  | 0  |                     ent = hp->code;  | 
1197  | 0  |                     goto hit;  | 
1198  | 0  |                 }  | 
1199  | 0  |             } while (hp->hash >= 0);  | 
1200  | 0  |         }  | 
1201  |  |         /*  | 
1202  |  |          * New entry, emit code and add to table.  | 
1203  |  |          */  | 
1204  |  |         /*  | 
1205  |  |          * Verify there is space in the buffer for the code  | 
1206  |  |          * and any potential Clear code that might be emitted  | 
1207  |  |          * below.  The value of limit is setup so that there  | 
1208  |  |          * are at least 4 bytes free--room for 2 codes.  | 
1209  |  |          */  | 
1210  | 0  |         if (op > limit)  | 
1211  | 0  |         { | 
1212  | 0  |             tif->tif_rawcc = (tmsize_t)(op - tif->tif_rawdata);  | 
1213  | 0  |             if (!TIFFFlushData1(tif))  | 
1214  | 0  |                 return 0;  | 
1215  | 0  |             op = tif->tif_rawdata;  | 
1216  | 0  |         }  | 
1217  | 0  |         PutNextCode(op, ent);  | 
1218  | 0  |         ent = (hcode_t)c;  | 
1219  | 0  |         hp->code = (hcode_t)(free_ent++);  | 
1220  | 0  |         hp->hash = fcode;  | 
1221  | 0  |         if (free_ent == CODE_MAX - 1)  | 
1222  | 0  |         { | 
1223  |  |             /* table is full, emit clear code and reset */  | 
1224  | 0  |             cl_hash(sp);  | 
1225  | 0  |             sp->enc_ratio = 0;  | 
1226  | 0  |             incount = 0;  | 
1227  | 0  |             outcount = 0;  | 
1228  | 0  |             free_ent = CODE_FIRST;  | 
1229  | 0  |             PutNextCode(op, CODE_CLEAR);  | 
1230  | 0  |             nbits = BITS_MIN;  | 
1231  | 0  |             maxcode = MAXCODE(BITS_MIN);  | 
1232  | 0  |         }  | 
1233  | 0  |         else  | 
1234  | 0  |         { | 
1235  |  |             /*  | 
1236  |  |              * If the next entry is going to be too big for  | 
1237  |  |              * the code size, then increase it, if possible.  | 
1238  |  |              */  | 
1239  | 0  |             if (free_ent > maxcode)  | 
1240  | 0  |             { | 
1241  | 0  |                 nbits++;  | 
1242  | 0  |                 assert(nbits <= BITS_MAX);  | 
1243  | 0  |                 maxcode = (int)MAXCODE(nbits);  | 
1244  | 0  |             }  | 
1245  | 0  |             else if (incount >= checkpoint)  | 
1246  | 0  |             { | 
1247  | 0  |                 tmsize_t rat;  | 
1248  |  |                 /*  | 
1249  |  |                  * Check compression ratio and, if things seem  | 
1250  |  |                  * to be slipping, clear the hash table and  | 
1251  |  |                  * reset state.  The compression ratio is a  | 
1252  |  |                  * 24+8-bit fractional number.  | 
1253  |  |                  */  | 
1254  | 0  |                 checkpoint = incount + CHECK_GAP;  | 
1255  | 0  |                 CALCRATIO(sp, rat);  | 
1256  | 0  |                 if (rat <= sp->enc_ratio)  | 
1257  | 0  |                 { | 
1258  | 0  |                     cl_hash(sp);  | 
1259  | 0  |                     sp->enc_ratio = 0;  | 
1260  | 0  |                     incount = 0;  | 
1261  | 0  |                     outcount = 0;  | 
1262  | 0  |                     free_ent = CODE_FIRST;  | 
1263  | 0  |                     PutNextCode(op, CODE_CLEAR);  | 
1264  | 0  |                     nbits = BITS_MIN;  | 
1265  | 0  |                     maxcode = MAXCODE(BITS_MIN);  | 
1266  | 0  |                 }  | 
1267  | 0  |                 else  | 
1268  | 0  |                     sp->enc_ratio = rat;  | 
1269  | 0  |             }  | 
1270  | 0  |         }  | 
1271  | 0  |     hit:;  | 
1272  | 0  |     }  | 
1273  |  |  | 
1274  |  |     /*  | 
1275  |  |      * Restore global state.  | 
1276  |  |      */  | 
1277  | 0  |     sp->enc_incount = incount;  | 
1278  | 0  |     sp->enc_outcount = outcount;  | 
1279  | 0  |     sp->enc_checkpoint = checkpoint;  | 
1280  | 0  |     sp->enc_oldcode = ent;  | 
1281  | 0  |     sp->lzw_nextdata = nextdata;  | 
1282  | 0  |     sp->lzw_nextbits = nextbits;  | 
1283  | 0  |     sp->lzw_free_ent = (unsigned short)free_ent;  | 
1284  | 0  |     sp->lzw_maxcode = (unsigned short)maxcode;  | 
1285  | 0  |     sp->lzw_nbits = (unsigned short)nbits;  | 
1286  | 0  |     tif->tif_rawcp = op;  | 
1287  | 0  |     return (1);  | 
1288  | 0  | }  | 
1289  |  |  | 
1290  |  | /*  | 
1291  |  |  * Finish off an encoded strip by flushing the last  | 
1292  |  |  * string and tacking on an End Of Information code.  | 
1293  |  |  */  | 
1294  |  | static int LZWPostEncode(TIFF *tif)  | 
1295  | 0  | { | 
1296  | 0  |     register LZWCodecState *sp = LZWEncoderState(tif);  | 
1297  | 0  |     uint8_t *op = tif->tif_rawcp;  | 
1298  | 0  |     long nextbits = sp->lzw_nextbits;  | 
1299  | 0  |     WordType nextdata = sp->lzw_nextdata;  | 
1300  | 0  |     tmsize_t outcount = sp->enc_outcount;  | 
1301  | 0  |     int nbits = sp->lzw_nbits;  | 
1302  |  | 
  | 
1303  | 0  |     if (op > sp->enc_rawlimit)  | 
1304  | 0  |     { | 
1305  | 0  |         tif->tif_rawcc = (tmsize_t)(op - tif->tif_rawdata);  | 
1306  | 0  |         if (!TIFFFlushData1(tif))  | 
1307  | 0  |             return 0;  | 
1308  | 0  |         op = tif->tif_rawdata;  | 
1309  | 0  |     }  | 
1310  | 0  |     if (sp->enc_oldcode != (hcode_t)-1)  | 
1311  | 0  |     { | 
1312  | 0  |         int free_ent = sp->lzw_free_ent;  | 
1313  |  | 
  | 
1314  | 0  |         PutNextCode(op, sp->enc_oldcode);  | 
1315  | 0  |         sp->enc_oldcode = (hcode_t)-1;  | 
1316  | 0  |         free_ent++;  | 
1317  |  | 
  | 
1318  | 0  |         if (free_ent == CODE_MAX - 1)  | 
1319  | 0  |         { | 
1320  |  |             /* table is full, emit clear code and reset */  | 
1321  | 0  |             outcount = 0;  | 
1322  | 0  |             PutNextCode(op, CODE_CLEAR);  | 
1323  | 0  |             nbits = BITS_MIN;  | 
1324  | 0  |         }  | 
1325  | 0  |         else  | 
1326  | 0  |         { | 
1327  |  |             /*  | 
1328  |  |              * If the next entry is going to be too big for  | 
1329  |  |              * the code size, then increase it, if possible.  | 
1330  |  |              */  | 
1331  | 0  |             if (free_ent > sp->lzw_maxcode)  | 
1332  | 0  |             { | 
1333  | 0  |                 nbits++;  | 
1334  | 0  |                 assert(nbits <= BITS_MAX);  | 
1335  | 0  |             }  | 
1336  | 0  |         }  | 
1337  | 0  |     }  | 
1338  | 0  |     PutNextCode(op, CODE_EOI);  | 
1339  |  |     /* Explicit 0xff masking to make icc -check=conversions happy */  | 
1340  | 0  |     if (nextbits > 0)  | 
1341  | 0  |         *op++ = (unsigned char)((nextdata << (8 - nextbits)) & 0xff);  | 
1342  | 0  |     tif->tif_rawcc = (tmsize_t)(op - tif->tif_rawdata);  | 
1343  | 0  |     (void)outcount;  | 
1344  | 0  |     return (1);  | 
1345  | 0  | }  | 
1346  |  |  | 
1347  |  | /*  | 
1348  |  |  * Reset encoding hash table.  | 
1349  |  |  */  | 
1350  |  | static void cl_hash(LZWCodecState *sp)  | 
1351  | 0  | { | 
1352  | 0  |     register hash_t *hp = &sp->enc_hashtab[HSIZE - 1];  | 
1353  | 0  |     register long i = HSIZE - 8;  | 
1354  |  | 
  | 
1355  | 0  |     do  | 
1356  | 0  |     { | 
1357  | 0  |         i -= 8;  | 
1358  | 0  |         hp[-7].hash = -1;  | 
1359  | 0  |         hp[-6].hash = -1;  | 
1360  | 0  |         hp[-5].hash = -1;  | 
1361  | 0  |         hp[-4].hash = -1;  | 
1362  | 0  |         hp[-3].hash = -1;  | 
1363  | 0  |         hp[-2].hash = -1;  | 
1364  | 0  |         hp[-1].hash = -1;  | 
1365  | 0  |         hp[0].hash = -1;  | 
1366  | 0  |         hp -= 8;  | 
1367  | 0  |     } while (i >= 0);  | 
1368  | 0  |     for (i += 8; i > 0; i--, hp--)  | 
1369  | 0  |         hp->hash = -1;  | 
1370  | 0  | }  | 
1371  |  |  | 
1372  |  | static void LZWCleanup(TIFF *tif)  | 
1373  | 0  | { | 
1374  | 0  |     (void)TIFFPredictorCleanup(tif);  | 
1375  |  | 
  | 
1376  | 0  |     assert(tif->tif_data != 0);  | 
1377  |  | 
  | 
1378  | 0  |     if (LZWDecoderState(tif)->dec_codetab)  | 
1379  | 0  |         _TIFFfreeExt(tif, LZWDecoderState(tif)->dec_codetab);  | 
1380  |  | 
  | 
1381  | 0  |     if (LZWEncoderState(tif)->enc_hashtab)  | 
1382  | 0  |         _TIFFfreeExt(tif, LZWEncoderState(tif)->enc_hashtab);  | 
1383  |  | 
  | 
1384  | 0  |     _TIFFfreeExt(tif, tif->tif_data);  | 
1385  | 0  |     tif->tif_data = NULL;  | 
1386  |  | 
  | 
1387  | 0  |     _TIFFSetDefaultCompressionState(tif);  | 
1388  | 0  | }  | 
1389  |  |  | 
1390  |  | int TIFFInitLZW(TIFF *tif, int scheme)  | 
1391  | 0  | { | 
1392  | 0  |     static const char module[] = "TIFFInitLZW";  | 
1393  | 0  |     (void)scheme;  | 
1394  | 0  |     assert(scheme == COMPRESSION_LZW);  | 
1395  |  |     /*  | 
1396  |  |      * Allocate state block so tag methods have storage to record values.  | 
1397  |  |      */  | 
1398  | 0  |     tif->tif_data = (uint8_t *)_TIFFmallocExt(tif, sizeof(LZWCodecState));  | 
1399  | 0  |     if (tif->tif_data == NULL)  | 
1400  | 0  |         goto bad;  | 
1401  | 0  |     LZWDecoderState(tif)->dec_codetab = NULL;  | 
1402  | 0  |     LZWDecoderState(tif)->dec_decode = NULL;  | 
1403  | 0  |     LZWEncoderState(tif)->enc_hashtab = NULL;  | 
1404  | 0  |     LZWState(tif)->rw_mode = tif->tif_mode;  | 
1405  |  |  | 
1406  |  |     /*  | 
1407  |  |      * Install codec methods.  | 
1408  |  |      */  | 
1409  | 0  |     tif->tif_fixuptags = LZWFixupTags;  | 
1410  | 0  |     tif->tif_setupdecode = LZWSetupDecode;  | 
1411  | 0  |     tif->tif_predecode = LZWPreDecode;  | 
1412  | 0  |     tif->tif_decoderow = LZWDecode;  | 
1413  | 0  |     tif->tif_decodestrip = LZWDecode;  | 
1414  | 0  |     tif->tif_decodetile = LZWDecode;  | 
1415  | 0  |     tif->tif_setupencode = LZWSetupEncode;  | 
1416  | 0  |     tif->tif_preencode = LZWPreEncode;  | 
1417  | 0  |     tif->tif_postencode = LZWPostEncode;  | 
1418  | 0  |     tif->tif_encoderow = LZWEncode;  | 
1419  | 0  |     tif->tif_encodestrip = LZWEncode;  | 
1420  | 0  |     tif->tif_encodetile = LZWEncode;  | 
1421  | 0  |     tif->tif_cleanup = LZWCleanup;  | 
1422  |  |     /*  | 
1423  |  |      * Setup predictor setup.  | 
1424  |  |      */  | 
1425  | 0  |     (void)TIFFPredictorInit(tif);  | 
1426  | 0  |     return (1);  | 
1427  | 0  | bad:  | 
1428  | 0  |     TIFFErrorExtR(tif, module, "No space for LZW state block");  | 
1429  | 0  |     return (0);  | 
1430  | 0  | }  | 
1431  |  |  | 
1432  |  | /*  | 
1433  |  |  * Copyright (c) 1985, 1986 The Regents of the University of California.  | 
1434  |  |  * All rights reserved.  | 
1435  |  |  *  | 
1436  |  |  * This code is derived from software contributed to Berkeley by  | 
1437  |  |  * James A. Woods, derived from original work by Spencer Thomas  | 
1438  |  |  * and Joseph Orost.  | 
1439  |  |  *  | 
1440  |  |  * Redistribution and use in source and binary forms are permitted  | 
1441  |  |  * provided that the above copyright notice and this paragraph are  | 
1442  |  |  * duplicated in all such forms and that any documentation,  | 
1443  |  |  * advertising materials, and other materials related to such  | 
1444  |  |  * distribution and use acknowledge that the software was developed  | 
1445  |  |  * by the University of California, Berkeley.  The name of the  | 
1446  |  |  * University may not be used to endorse or promote products derived  | 
1447  |  |  * from this software without specific prior written permission.  | 
1448  |  |  * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR  | 
1449  |  |  * IMPLIED WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED  | 
1450  |  |  * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.  | 
1451  |  |  */  | 
1452  |  | #endif /* LZW_SUPPORT */  |