Coverage Report

Created: 2026-01-25 06:26

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libjpeg-turbo/src/jdlossls.c
Line
Count
Source
1
/*
2
 * jdlossls.c
3
 *
4
 * This file was part of the Independent JPEG Group's software:
5
 * Copyright (C) 1998, Thomas G. Lane.
6
 * Lossless JPEG Modifications:
7
 * Copyright (C) 1999, Ken Murchison.
8
 * libjpeg-turbo Modifications:
9
 * Copyright (C) 2022, 2024, D. R. Commander.
10
 * For conditions of distribution and use, see the accompanying README.ijg
11
 * file.
12
 *
13
 * This file contains prediction, sample undifferencing, point transform, and
14
 * sample scaling routines for the lossless JPEG decompressor.
15
 */
16
17
#define JPEG_INTERNALS
18
#include "jinclude.h"
19
#include "jpeglib.h"
20
#include "jlossls.h"
21
22
#ifdef D_LOSSLESS_SUPPORTED
23
24
25
/**************** Sample undifferencing (reconstruction) *****************/
26
27
/*
28
 * In order to avoid a performance penalty for checking which predictor is
29
 * being used and which row is being processed for each call of the
30
 * undifferencer, and to promote optimization, we have separate undifferencing
31
 * functions for each predictor selection value.
32
 *
33
 * We are able to avoid duplicating source code by implementing the predictors
34
 * and undifferencers as macros.  Each of the undifferencing functions is
35
 * simply a wrapper around an UNDIFFERENCE macro with the appropriate PREDICTOR
36
 * macro passed as an argument.
37
 */
38
39
/* Predictor for the first column of the first row: 2^(P-Pt-1) */
40
#define INITIAL_PREDICTORx  (1 << (cinfo->data_precision - cinfo->Al - 1))
41
42
/* Predictor for the first column of the remaining rows: Rb */
43
#define INITIAL_PREDICTOR2  prev_row[0]
44
45
46
/*
47
 * 1-Dimensional undifferencer routine.
48
 *
49
 * This macro implements the 1-D horizontal predictor (1).  INITIAL_PREDICTOR
50
 * is used as the special case predictor for the first column, which must be
51
 * either INITIAL_PREDICTOR2 or INITIAL_PREDICTORx.  The remaining samples
52
 * use PREDICTOR1.
53
 *
54
 * The reconstructed sample is supposed to be calculated modulo 2^16, so we
55
 * logically AND the result with 0xFFFF.
56
 */
57
58
#define UNDIFFERENCE_1D(INITIAL_PREDICTOR) \
59
7.71k
  int Ra; \
60
7.71k
  \
61
7.71k
  Ra = (*diff_buf++ + INITIAL_PREDICTOR) & 0xFFFF; \
62
7.71k
  *undiff_buf++ = Ra; \
63
7.71k
  \
64
53.8k
  while (--width) { \
65
46.1k
    Ra = (*diff_buf++ + PREDICTOR1) & 0xFFFF; \
66
46.1k
    *undiff_buf++ = Ra; \
67
46.1k
  }
68
69
70
/*
71
 * 2-Dimensional undifferencer routine.
72
 *
73
 * This macro implements the 2-D horizontal predictors (#2-7).  PREDICTOR2 is
74
 * used as the special case predictor for the first column.  The remaining
75
 * samples use PREDICTOR, which is a function of Ra, Rb, and Rc.
76
 *
77
 * Because prev_row and output_buf may point to the same storage area (in an
78
 * interleaved image with Vi=1, for example), we must take care to buffer Rb/Rc
79
 * before writing the current reconstructed sample value into output_buf.
80
 *
81
 * The reconstructed sample is supposed to be calculated modulo 2^16, so we
82
 * logically AND the result with 0xFFFF.
83
 */
84
85
#define UNDIFFERENCE_2D(PREDICTOR) \
86
91.0k
  int Ra, Rb, Rc; \
87
91.0k
  \
88
91.0k
  Rb = *prev_row++; \
89
91.0k
  Ra = (*diff_buf++ + PREDICTOR2) & 0xFFFF; \
90
91.0k
  *undiff_buf++ = Ra; \
91
91.0k
  \
92
635k
  while (--width) { \
93
544k
    Rc = Rb; \
94
544k
    Rb = *prev_row++; \
95
544k
    Ra = (*diff_buf++ + PREDICTOR) & 0xFFFF; \
96
544k
    *undiff_buf++ = Ra; \
97
544k
  }
98
99
100
/*
101
 * Undifferencers for the second and subsequent rows in a scan or restart
102
 * interval.  The first sample in the row is undifferenced using the vertical
103
 * predictor (2).  The rest of the samples are undifferenced using the
104
 * predictor specified in the scan header.
105
 */
106
107
METHODDEF(void)
108
jpeg_undifference1(j_decompress_ptr cinfo, int comp_index,
109
                   JDIFFROW diff_buf, JDIFFROW prev_row,
110
                   JDIFFROW undiff_buf, JDIMENSION width)
111
4.23k
{
112
4.23k
  UNDIFFERENCE_1D(INITIAL_PREDICTOR2);
113
4.23k
}
jdlossls-8.c:jpeg_undifference1
Line
Count
Source
111
2.03k
{
112
2.03k
  UNDIFFERENCE_1D(INITIAL_PREDICTOR2);
113
2.03k
}
jdlossls-12.c:jpeg_undifference1
Line
Count
Source
111
1.08k
{
112
1.08k
  UNDIFFERENCE_1D(INITIAL_PREDICTOR2);
113
1.08k
}
jdlossls-16.c:jpeg_undifference1
Line
Count
Source
111
1.10k
{
112
1.10k
  UNDIFFERENCE_1D(INITIAL_PREDICTOR2);
113
1.10k
}
114
115
METHODDEF(void)
116
jpeg_undifference2(j_decompress_ptr cinfo, int comp_index,
117
                   JDIFFROW diff_buf, JDIFFROW prev_row,
118
                   JDIFFROW undiff_buf, JDIMENSION width)
119
49.8k
{
120
49.8k
  UNDIFFERENCE_2D(PREDICTOR2);
121
49.8k
  (void)(Rc);
122
49.8k
}
jdlossls-8.c:jpeg_undifference2
Line
Count
Source
119
4.05k
{
120
4.05k
  UNDIFFERENCE_2D(PREDICTOR2);
121
4.05k
  (void)(Rc);
122
4.05k
}
jdlossls-12.c:jpeg_undifference2
Line
Count
Source
119
1.79k
{
120
1.79k
  UNDIFFERENCE_2D(PREDICTOR2);
121
1.79k
  (void)(Rc);
122
1.79k
}
jdlossls-16.c:jpeg_undifference2
Line
Count
Source
119
44.0k
{
120
44.0k
  UNDIFFERENCE_2D(PREDICTOR2);
121
44.0k
  (void)(Rc);
122
44.0k
}
123
124
METHODDEF(void)
125
jpeg_undifference3(j_decompress_ptr cinfo, int comp_index,
126
                   JDIFFROW diff_buf, JDIFFROW prev_row,
127
                   JDIFFROW undiff_buf, JDIMENSION width)
128
7.91k
{
129
7.91k
  UNDIFFERENCE_2D(PREDICTOR3);
130
7.91k
}
jdlossls-8.c:jpeg_undifference3
Line
Count
Source
128
4.88k
{
129
4.88k
  UNDIFFERENCE_2D(PREDICTOR3);
130
4.88k
}
jdlossls-12.c:jpeg_undifference3
Line
Count
Source
128
1.53k
{
129
1.53k
  UNDIFFERENCE_2D(PREDICTOR3);
130
1.53k
}
jdlossls-16.c:jpeg_undifference3
Line
Count
Source
128
1.50k
{
129
1.50k
  UNDIFFERENCE_2D(PREDICTOR3);
130
1.50k
}
131
132
METHODDEF(void)
133
jpeg_undifference4(j_decompress_ptr cinfo, int comp_index,
134
                   JDIFFROW diff_buf, JDIFFROW prev_row,
135
                   JDIFFROW undiff_buf, JDIMENSION width)
136
6.79k
{
137
6.79k
  UNDIFFERENCE_2D(PREDICTOR4);
138
6.79k
}
jdlossls-8.c:jpeg_undifference4
Line
Count
Source
136
3.43k
{
137
3.43k
  UNDIFFERENCE_2D(PREDICTOR4);
138
3.43k
}
jdlossls-12.c:jpeg_undifference4
Line
Count
Source
136
1.89k
{
137
1.89k
  UNDIFFERENCE_2D(PREDICTOR4);
138
1.89k
}
jdlossls-16.c:jpeg_undifference4
Line
Count
Source
136
1.46k
{
137
1.46k
  UNDIFFERENCE_2D(PREDICTOR4);
138
1.46k
}
139
140
METHODDEF(void)
141
jpeg_undifference5(j_decompress_ptr cinfo, int comp_index,
142
                   JDIFFROW diff_buf, JDIFFROW prev_row,
143
                   JDIFFROW undiff_buf, JDIMENSION width)
144
19.6k
{
145
19.6k
  UNDIFFERENCE_2D(PREDICTOR5);
146
19.6k
}
jdlossls-8.c:jpeg_undifference5
Line
Count
Source
144
16.1k
{
145
16.1k
  UNDIFFERENCE_2D(PREDICTOR5);
146
16.1k
}
jdlossls-12.c:jpeg_undifference5
Line
Count
Source
144
2.01k
{
145
2.01k
  UNDIFFERENCE_2D(PREDICTOR5);
146
2.01k
}
jdlossls-16.c:jpeg_undifference5
Line
Count
Source
144
1.55k
{
145
1.55k
  UNDIFFERENCE_2D(PREDICTOR5);
146
1.55k
}
147
148
METHODDEF(void)
149
jpeg_undifference6(j_decompress_ptr cinfo, int comp_index,
150
                   JDIFFROW diff_buf, JDIFFROW prev_row,
151
                   JDIFFROW undiff_buf, JDIMENSION width)
152
3.24k
{
153
3.24k
  UNDIFFERENCE_2D(PREDICTOR6);
154
3.24k
}
jdlossls-8.c:jpeg_undifference6
Line
Count
Source
152
1.03k
{
153
1.03k
  UNDIFFERENCE_2D(PREDICTOR6);
154
1.03k
}
jdlossls-12.c:jpeg_undifference6
Line
Count
Source
152
1.21k
{
153
1.21k
  UNDIFFERENCE_2D(PREDICTOR6);
154
1.21k
}
jdlossls-16.c:jpeg_undifference6
Line
Count
Source
152
993
{
153
993
  UNDIFFERENCE_2D(PREDICTOR6);
154
993
}
155
156
METHODDEF(void)
157
jpeg_undifference7(j_decompress_ptr cinfo, int comp_index,
158
                   JDIFFROW diff_buf, JDIFFROW prev_row,
159
                   JDIFFROW undiff_buf, JDIMENSION width)
160
3.55k
{
161
3.55k
  UNDIFFERENCE_2D(PREDICTOR7);
162
3.55k
  (void)(Rc);
163
3.55k
}
jdlossls-8.c:jpeg_undifference7
Line
Count
Source
160
1.58k
{
161
1.58k
  UNDIFFERENCE_2D(PREDICTOR7);
162
1.58k
  (void)(Rc);
163
1.58k
}
jdlossls-12.c:jpeg_undifference7
Line
Count
Source
160
1.01k
{
161
1.01k
  UNDIFFERENCE_2D(PREDICTOR7);
162
1.01k
  (void)(Rc);
163
1.01k
}
jdlossls-16.c:jpeg_undifference7
Line
Count
Source
160
948
{
161
948
  UNDIFFERENCE_2D(PREDICTOR7);
162
948
  (void)(Rc);
163
948
}
164
165
166
/*
167
 * Undifferencer for the first row in a scan or restart interval.  The first
168
 * sample in the row is undifferenced using the special predictor constant
169
 * x=2^(P-Pt-1).  The rest of the samples are undifferenced using the
170
 * 1-D horizontal predictor (1).
171
 */
172
173
METHODDEF(void)
174
jpeg_undifference_first_row(j_decompress_ptr cinfo, int comp_index,
175
                            JDIFFROW diff_buf, JDIFFROW prev_row,
176
                            JDIFFROW undiff_buf, JDIMENSION width)
177
3.47k
{
178
3.47k
  lossless_decomp_ptr losslessd = (lossless_decomp_ptr)cinfo->idct;
179
180
3.47k
  UNDIFFERENCE_1D(INITIAL_PREDICTORx);
181
182
  /*
183
   * Now that we have undifferenced the first row, we want to use the
184
   * undifferencer that corresponds to the predictor specified in the
185
   * scan header.
186
   */
187
3.47k
  switch (cinfo->Ss) {
188
514
  case 1:
189
514
    losslessd->predict_undifference[comp_index] = jpeg_undifference1;
190
514
    break;
191
612
  case 2:
192
612
    losslessd->predict_undifference[comp_index] = jpeg_undifference2;
193
612
    break;
194
600
  case 3:
195
600
    losslessd->predict_undifference[comp_index] = jpeg_undifference3;
196
600
    break;
197
381
  case 4:
198
381
    losslessd->predict_undifference[comp_index] = jpeg_undifference4;
199
381
    break;
200
391
  case 5:
201
391
    losslessd->predict_undifference[comp_index] = jpeg_undifference5;
202
391
    break;
203
578
  case 6:
204
578
    losslessd->predict_undifference[comp_index] = jpeg_undifference6;
205
578
    break;
206
403
  case 7:
207
403
    losslessd->predict_undifference[comp_index] = jpeg_undifference7;
208
403
    break;
209
3.47k
  }
210
3.47k
}
jdlossls-8.c:jpeg_undifference_first_row
Line
Count
Source
177
1.50k
{
178
1.50k
  lossless_decomp_ptr losslessd = (lossless_decomp_ptr)cinfo->idct;
179
180
1.50k
  UNDIFFERENCE_1D(INITIAL_PREDICTORx);
181
182
  /*
183
   * Now that we have undifferenced the first row, we want to use the
184
   * undifferencer that corresponds to the predictor specified in the
185
   * scan header.
186
   */
187
1.50k
  switch (cinfo->Ss) {
188
310
  case 1:
189
310
    losslessd->predict_undifference[comp_index] = jpeg_undifference1;
190
310
    break;
191
231
  case 2:
192
231
    losslessd->predict_undifference[comp_index] = jpeg_undifference2;
193
231
    break;
194
308
  case 3:
195
308
    losslessd->predict_undifference[comp_index] = jpeg_undifference3;
196
308
    break;
197
181
  case 4:
198
181
    losslessd->predict_undifference[comp_index] = jpeg_undifference4;
199
181
    break;
200
101
  case 5:
201
101
    losslessd->predict_undifference[comp_index] = jpeg_undifference5;
202
101
    break;
203
121
  case 6:
204
121
    losslessd->predict_undifference[comp_index] = jpeg_undifference6;
205
121
    break;
206
255
  case 7:
207
255
    losslessd->predict_undifference[comp_index] = jpeg_undifference7;
208
255
    break;
209
1.50k
  }
210
1.50k
}
jdlossls-12.c:jpeg_undifference_first_row
Line
Count
Source
177
1.19k
{
178
1.19k
  lossless_decomp_ptr losslessd = (lossless_decomp_ptr)cinfo->idct;
179
180
1.19k
  UNDIFFERENCE_1D(INITIAL_PREDICTORx);
181
182
  /*
183
   * Now that we have undifferenced the first row, we want to use the
184
   * undifferencer that corresponds to the predictor specified in the
185
   * scan header.
186
   */
187
1.19k
  switch (cinfo->Ss) {
188
114
  case 1:
189
114
    losslessd->predict_undifference[comp_index] = jpeg_undifference1;
190
114
    break;
191
217
  case 2:
192
217
    losslessd->predict_undifference[comp_index] = jpeg_undifference2;
193
217
    break;
194
162
  case 3:
195
162
    losslessd->predict_undifference[comp_index] = jpeg_undifference3;
196
162
    break;
197
108
  case 4:
198
108
    losslessd->predict_undifference[comp_index] = jpeg_undifference4;
199
108
    break;
200
165
  case 5:
201
165
    losslessd->predict_undifference[comp_index] = jpeg_undifference5;
202
165
    break;
203
348
  case 6:
204
348
    losslessd->predict_undifference[comp_index] = jpeg_undifference6;
205
348
    break;
206
78
  case 7:
207
78
    losslessd->predict_undifference[comp_index] = jpeg_undifference7;
208
78
    break;
209
1.19k
  }
210
1.19k
}
jdlossls-16.c:jpeg_undifference_first_row
Line
Count
Source
177
780
{
178
780
  lossless_decomp_ptr losslessd = (lossless_decomp_ptr)cinfo->idct;
179
180
780
  UNDIFFERENCE_1D(INITIAL_PREDICTORx);
181
182
  /*
183
   * Now that we have undifferenced the first row, we want to use the
184
   * undifferencer that corresponds to the predictor specified in the
185
   * scan header.
186
   */
187
780
  switch (cinfo->Ss) {
188
90
  case 1:
189
90
    losslessd->predict_undifference[comp_index] = jpeg_undifference1;
190
90
    break;
191
164
  case 2:
192
164
    losslessd->predict_undifference[comp_index] = jpeg_undifference2;
193
164
    break;
194
130
  case 3:
195
130
    losslessd->predict_undifference[comp_index] = jpeg_undifference3;
196
130
    break;
197
92
  case 4:
198
92
    losslessd->predict_undifference[comp_index] = jpeg_undifference4;
199
92
    break;
200
125
  case 5:
201
125
    losslessd->predict_undifference[comp_index] = jpeg_undifference5;
202
125
    break;
203
109
  case 6:
204
109
    losslessd->predict_undifference[comp_index] = jpeg_undifference6;
205
109
    break;
206
70
  case 7:
207
70
    losslessd->predict_undifference[comp_index] = jpeg_undifference7;
208
70
    break;
209
780
  }
210
780
}
211
212
213
/*********************** Sample upscaling by 2^Pt ************************/
214
215
METHODDEF(void)
216
simple_upscale(j_decompress_ptr cinfo,
217
               JDIFFROW diff_buf, _JSAMPROW output_buf, JDIMENSION width)
218
76.5k
{
219
435k
  do {
220
435k
    *output_buf++ = (_JSAMPLE)(*diff_buf++ << cinfo->Al);
221
435k
  } while (--width);
222
76.5k
}
jdlossls-8.c:simple_upscale
Line
Count
Source
218
21.8k
{
219
291k
  do {
220
291k
    *output_buf++ = (_JSAMPLE)(*diff_buf++ << cinfo->Al);
221
291k
  } while (--width);
222
21.8k
}
jdlossls-12.c:simple_upscale
Line
Count
Source
218
6.72k
{
219
27.3k
  do {
220
27.3k
    *output_buf++ = (_JSAMPLE)(*diff_buf++ << cinfo->Al);
221
27.3k
  } while (--width);
222
6.72k
}
jdlossls-16.c:simple_upscale
Line
Count
Source
218
47.9k
{
219
116k
  do {
220
116k
    *output_buf++ = (_JSAMPLE)(*diff_buf++ << cinfo->Al);
221
116k
  } while (--width);
222
47.9k
}
223
224
METHODDEF(void)
225
noscale(j_decompress_ptr cinfo,
226
        JDIFFROW diff_buf, _JSAMPROW output_buf, JDIMENSION width)
227
22.2k
{
228
253k
  do {
229
253k
    *output_buf++ = (_JSAMPLE)(*diff_buf++);
230
253k
  } while (--width);
231
22.2k
}
jdlossls-8.c:noscale
Line
Count
Source
227
12.8k
{
228
183k
  do {
229
183k
    *output_buf++ = (_JSAMPLE)(*diff_buf++);
230
183k
  } while (--width);
231
12.8k
}
jdlossls-12.c:noscale
Line
Count
Source
227
5.02k
{
228
39.9k
  do {
229
39.9k
    *output_buf++ = (_JSAMPLE)(*diff_buf++);
230
39.9k
  } while (--width);
231
5.02k
}
jdlossls-16.c:noscale
Line
Count
Source
227
4.38k
{
228
29.6k
  do {
229
29.6k
    *output_buf++ = (_JSAMPLE)(*diff_buf++);
230
29.6k
  } while (--width);
231
4.38k
}
232
233
234
/*
235
 * Initialize for an input processing pass.
236
 */
237
238
METHODDEF(void)
239
start_pass_lossless(j_decompress_ptr cinfo)
240
3.63k
{
241
3.63k
  lossless_decomp_ptr losslessd = (lossless_decomp_ptr)cinfo->idct;
242
3.63k
  int ci;
243
244
  /* Check that the scan parameters Ss, Se, Ah, Al are OK for lossless JPEG.
245
   *
246
   * Ss is the predictor selection value (psv).  Legal values for sequential
247
   * lossless JPEG are: 1 <= psv <= 7.
248
   *
249
   * Se and Ah are not used and should be zero.
250
   *
251
   * Al specifies the point transform (Pt).
252
   * Legal values are: 0 <= Pt <= (data precision - 1).
253
   */
254
3.63k
  if (cinfo->Ss < 1 || cinfo->Ss > 7 ||
255
3.58k
      cinfo->Se != 0 || cinfo->Ah != 0 ||
256
3.51k
      cinfo->Al < 0 || cinfo->Al >= cinfo->data_precision)
257
129
    ERREXIT4(cinfo, JERR_BAD_PROGRESSION,
258
3.63k
             cinfo->Ss, cinfo->Se, cinfo->Ah, cinfo->Al);
259
260
  /* Set undifference functions to first row function */
261
14.1k
  for (ci = 0; ci < cinfo->num_components; ci++)
262
10.4k
    losslessd->predict_undifference[ci] = jpeg_undifference_first_row;
263
264
  /* Set scaler function based on Pt */
265
3.63k
  if (cinfo->Al)
266
1.94k
    losslessd->scaler_scale = simple_upscale;
267
1.69k
  else
268
1.69k
    losslessd->scaler_scale = noscale;
269
3.63k
}
jdlossls-8.c:start_pass_lossless
Line
Count
Source
240
1.49k
{
241
1.49k
  lossless_decomp_ptr losslessd = (lossless_decomp_ptr)cinfo->idct;
242
1.49k
  int ci;
243
244
  /* Check that the scan parameters Ss, Se, Ah, Al are OK for lossless JPEG.
245
   *
246
   * Ss is the predictor selection value (psv).  Legal values for sequential
247
   * lossless JPEG are: 1 <= psv <= 7.
248
   *
249
   * Se and Ah are not used and should be zero.
250
   *
251
   * Al specifies the point transform (Pt).
252
   * Legal values are: 0 <= Pt <= (data precision - 1).
253
   */
254
1.49k
  if (cinfo->Ss < 1 || cinfo->Ss > 7 ||
255
1.48k
      cinfo->Se != 0 || cinfo->Ah != 0 ||
256
1.47k
      cinfo->Al < 0 || cinfo->Al >= cinfo->data_precision)
257
27
    ERREXIT4(cinfo, JERR_BAD_PROGRESSION,
258
1.49k
             cinfo->Ss, cinfo->Se, cinfo->Ah, cinfo->Al);
259
260
  /* Set undifference functions to first row function */
261
5.86k
  for (ci = 0; ci < cinfo->num_components; ci++)
262
4.36k
    losslessd->predict_undifference[ci] = jpeg_undifference_first_row;
263
264
  /* Set scaler function based on Pt */
265
1.49k
  if (cinfo->Al)
266
618
    losslessd->scaler_scale = simple_upscale;
267
879
  else
268
879
    losslessd->scaler_scale = noscale;
269
1.49k
}
jdlossls-12.c:start_pass_lossless
Line
Count
Source
240
1.29k
{
241
1.29k
  lossless_decomp_ptr losslessd = (lossless_decomp_ptr)cinfo->idct;
242
1.29k
  int ci;
243
244
  /* Check that the scan parameters Ss, Se, Ah, Al are OK for lossless JPEG.
245
   *
246
   * Ss is the predictor selection value (psv).  Legal values for sequential
247
   * lossless JPEG are: 1 <= psv <= 7.
248
   *
249
   * Se and Ah are not used and should be zero.
250
   *
251
   * Al specifies the point transform (Pt).
252
   * Legal values are: 0 <= Pt <= (data precision - 1).
253
   */
254
1.29k
  if (cinfo->Ss < 1 || cinfo->Ss > 7 ||
255
1.26k
      cinfo->Se != 0 || cinfo->Ah != 0 ||
256
1.23k
      cinfo->Al < 0 || cinfo->Al >= cinfo->data_precision)
257
59
    ERREXIT4(cinfo, JERR_BAD_PROGRESSION,
258
1.29k
             cinfo->Ss, cinfo->Se, cinfo->Ah, cinfo->Al);
259
260
  /* Set undifference functions to first row function */
261
4.99k
  for (ci = 0; ci < cinfo->num_components; ci++)
262
3.70k
    losslessd->predict_undifference[ci] = jpeg_undifference_first_row;
263
264
  /* Set scaler function based on Pt */
265
1.29k
  if (cinfo->Al)
266
792
    losslessd->scaler_scale = simple_upscale;
267
500
  else
268
500
    losslessd->scaler_scale = noscale;
269
1.29k
}
jdlossls-16.c:start_pass_lossless
Line
Count
Source
240
848
{
241
848
  lossless_decomp_ptr losslessd = (lossless_decomp_ptr)cinfo->idct;
242
848
  int ci;
243
244
  /* Check that the scan parameters Ss, Se, Ah, Al are OK for lossless JPEG.
245
   *
246
   * Ss is the predictor selection value (psv).  Legal values for sequential
247
   * lossless JPEG are: 1 <= psv <= 7.
248
   *
249
   * Se and Ah are not used and should be zero.
250
   *
251
   * Al specifies the point transform (Pt).
252
   * Legal values are: 0 <= Pt <= (data precision - 1).
253
   */
254
848
  if (cinfo->Ss < 1 || cinfo->Ss > 7 ||
255
834
      cinfo->Se != 0 || cinfo->Ah != 0 ||
256
813
      cinfo->Al < 0 || cinfo->Al >= cinfo->data_precision)
257
43
    ERREXIT4(cinfo, JERR_BAD_PROGRESSION,
258
848
             cinfo->Ss, cinfo->Se, cinfo->Ah, cinfo->Al);
259
260
  /* Set undifference functions to first row function */
261
3.26k
  for (ci = 0; ci < cinfo->num_components; ci++)
262
2.41k
    losslessd->predict_undifference[ci] = jpeg_undifference_first_row;
263
264
  /* Set scaler function based on Pt */
265
848
  if (cinfo->Al)
266
534
    losslessd->scaler_scale = simple_upscale;
267
314
  else
268
314
    losslessd->scaler_scale = noscale;
269
848
}
270
271
272
/*
273
 * Initialize the lossless decompressor.
274
 */
275
276
GLOBAL(void)
277
_jinit_lossless_decompressor(j_decompress_ptr cinfo)
278
1.52k
{
279
1.52k
  lossless_decomp_ptr losslessd;
280
281
#if BITS_IN_JSAMPLE == 8
282
576
  if (cinfo->data_precision > BITS_IN_JSAMPLE || cinfo->data_precision < 2)
283
#else
284
946
  if (cinfo->data_precision > BITS_IN_JSAMPLE ||
285
946
      cinfo->data_precision < BITS_IN_JSAMPLE - 3)
286
0
#endif
287
0
    ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
288
289
  /* Create subobject in permanent pool */
290
1.52k
  losslessd = (lossless_decomp_ptr)
291
1.52k
    (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_PERMANENT,
292
1.52k
                                sizeof(jpeg_lossless_decompressor));
293
1.52k
  cinfo->idct = (struct jpeg_inverse_dct *)losslessd;
294
1.52k
  losslessd->pub.start_pass = start_pass_lossless;
295
1.52k
}
jinit_lossless_decompressor
Line
Count
Source
278
576
{
279
576
  lossless_decomp_ptr losslessd;
280
281
576
#if BITS_IN_JSAMPLE == 8
282
576
  if (cinfo->data_precision > BITS_IN_JSAMPLE || cinfo->data_precision < 2)
283
#else
284
  if (cinfo->data_precision > BITS_IN_JSAMPLE ||
285
      cinfo->data_precision < BITS_IN_JSAMPLE - 3)
286
#endif
287
0
    ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
288
289
  /* Create subobject in permanent pool */
290
576
  losslessd = (lossless_decomp_ptr)
291
576
    (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_PERMANENT,
292
576
                                sizeof(jpeg_lossless_decompressor));
293
576
  cinfo->idct = (struct jpeg_inverse_dct *)losslessd;
294
576
  losslessd->pub.start_pass = start_pass_lossless;
295
576
}
j12init_lossless_decompressor
Line
Count
Source
278
489
{
279
489
  lossless_decomp_ptr losslessd;
280
281
#if BITS_IN_JSAMPLE == 8
282
  if (cinfo->data_precision > BITS_IN_JSAMPLE || cinfo->data_precision < 2)
283
#else
284
489
  if (cinfo->data_precision > BITS_IN_JSAMPLE ||
285
489
      cinfo->data_precision < BITS_IN_JSAMPLE - 3)
286
0
#endif
287
0
    ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
288
289
  /* Create subobject in permanent pool */
290
489
  losslessd = (lossless_decomp_ptr)
291
489
    (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_PERMANENT,
292
489
                                sizeof(jpeg_lossless_decompressor));
293
489
  cinfo->idct = (struct jpeg_inverse_dct *)losslessd;
294
489
  losslessd->pub.start_pass = start_pass_lossless;
295
489
}
j16init_lossless_decompressor
Line
Count
Source
278
457
{
279
457
  lossless_decomp_ptr losslessd;
280
281
#if BITS_IN_JSAMPLE == 8
282
  if (cinfo->data_precision > BITS_IN_JSAMPLE || cinfo->data_precision < 2)
283
#else
284
457
  if (cinfo->data_precision > BITS_IN_JSAMPLE ||
285
457
      cinfo->data_precision < BITS_IN_JSAMPLE - 3)
286
0
#endif
287
0
    ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
288
289
  /* Create subobject in permanent pool */
290
457
  losslessd = (lossless_decomp_ptr)
291
457
    (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_PERMANENT,
292
457
                                sizeof(jpeg_lossless_decompressor));
293
457
  cinfo->idct = (struct jpeg_inverse_dct *)losslessd;
294
457
  losslessd->pub.start_pass = start_pass_lossless;
295
457
}
296
297
#endif /* D_LOSSLESS_SUPPORTED */