Coverage Report

Created: 2026-08-31 07:17

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libjpeg-turbo.main/src/jddctmgr.c
Line
Count
Source
1
/*
2
 * jddctmgr.c
3
 *
4
 * This file was part of the Independent JPEG Group's software:
5
 * Copyright (C) 1994-1996, Thomas G. Lane.
6
 * Modified 2002-2010 by Guido Vollbeding.
7
 * libjpeg-turbo Modifications:
8
 * Copyright 2009 Pierre Ossman <ossman@cendio.se> for Cendio AB
9
 * Copyright (C) 2010, 2015, 2022, 2025-2026, D. R. Commander.
10
 * For conditions of distribution and use, see the accompanying README.ijg
11
 * file.
12
 *
13
 * This file contains the inverse-DCT management logic.
14
 * This code selects a particular IDCT implementation to be used,
15
 * and it performs related housekeeping chores.  No code in this file
16
 * is executed per IDCT step, only during output pass setup.
17
 *
18
 * Note that the IDCT routines are responsible for performing coefficient
19
 * dequantization as well as the IDCT proper.  This module sets up the
20
 * dequantization multiplier table needed by the IDCT routine.
21
 */
22
23
#define JPEG_INTERNALS
24
#include "jinclude.h"
25
#include "jpeglib.h"
26
#include "jdct.h"               /* Private declarations for DCT subsystem */
27
#ifdef WITH_SIMD
28
#include "../simd/jsimddct.h"
29
#endif
30
#include "jpegapicomp.h"
31
32
33
#if defined(DCT_ISLOW_SUPPORTED) || defined(DCT_IFAST_SUPPORTED) || \
34
    defined(DCT_FLOAT_SUPPORTED)
35
36
/*
37
 * The decompressor input side (jdinput.c) saves away the appropriate
38
 * quantization table for each component at the start of the first scan
39
 * involving that component.  (This is necessary in order to correctly
40
 * decode files that reuse Q-table slots.)
41
 * When we are ready to make an output pass, the saved Q-table is converted
42
 * to a multiplier table that will actually be used by the IDCT routine.
43
 * The multiplier table contents are IDCT-method-dependent.  To support
44
 * application changes in IDCT method between scans, we can remake the
45
 * multiplier tables if necessary.
46
 * In buffered-image mode, the first output pass may occur before any data
47
 * has been seen for some components, and thus before their Q-tables have
48
 * been saved away.  To handle this case, multiplier tables are preset
49
 * to zeroes; the result of the IDCT will be a neutral gray level.
50
 */
51
52
53
/* Private subobject for this module */
54
55
typedef struct {
56
  struct jpeg_inverse_dct pub;  /* public fields */
57
58
  /* This array contains the IDCT method code that each multiplier table
59
   * is currently set up for, or -1 if it's not yet set up.
60
   * The actual multiplier tables are pointed to by dct_table in the
61
   * per-component comp_info structures.
62
   */
63
  int cur_method[MAX_COMPONENTS];
64
} my_idct_controller;
65
66
typedef my_idct_controller *my_idct_ptr;
67
68
69
/* Allocated multiplier tables: big enough for any supported variant */
70
71
typedef union {
72
  ISLOW_MULT_TYPE islow_array[DCTSIZE2];
73
#ifdef DCT_IFAST_SUPPORTED
74
  IFAST_MULT_TYPE ifast_array[DCTSIZE2];
75
#endif
76
#ifdef DCT_FLOAT_SUPPORTED
77
  FLOAT_MULT_TYPE float_array[DCTSIZE2];
78
#endif
79
} multiplier_table;
80
81
82
/* The current scaled-IDCT routines require ISLOW-style multiplier tables,
83
 * so be sure to compile that code if either ISLOW or SCALING is requested.
84
 */
85
#ifdef DCT_ISLOW_SUPPORTED
86
#define PROVIDE_ISLOW_TABLES
87
#else
88
#ifdef IDCT_SCALING_SUPPORTED
89
#define PROVIDE_ISLOW_TABLES
90
#endif
91
#endif
92
93
94
/*
95
 * Prepare for an output pass.
96
 * Here we select the proper IDCT routine for each component and build
97
 * a matching multiplier table.
98
 */
99
100
METHODDEF(void)
101
start_pass(j_decompress_ptr cinfo)
102
11.7k
{
103
11.7k
  my_idct_ptr idct = (my_idct_ptr)cinfo->idct;
104
11.7k
  int ci, i;
105
11.7k
  jpeg_component_info *compptr;
106
11.7k
  int method = 0;
107
11.7k
  _inverse_DCT_method_ptr method_ptr = NULL;
108
11.7k
  JQUANT_TBL *qtbl;
109
110
29.3k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
111
17.6k
       ci++, compptr++) {
112
    /* Select the proper IDCT routine for this component's scaling */
113
17.6k
    switch (compptr->_DCT_scaled_size) {
114
0
#ifdef IDCT_SCALING_SUPPORTED
115
3.42k
    case 1:
116
3.42k
      method_ptr = _jpeg_idct_1x1;
117
3.42k
      method = JDCT_ISLOW;      /* jidctred uses islow-style table */
118
3.42k
      break;
119
495
    case 2:
120
#ifdef WITH_SIMD
121
189
      if (jsimd_set_idct_2x2(cinfo))
122
189
        method_ptr = jsimd_idct_2x2;
123
0
      else
124
0
#endif
125
306
        method_ptr = _jpeg_idct_2x2;
126
495
      method = JDCT_ISLOW;      /* jidctred uses islow-style table */
127
495
      break;
128
0
    case 3:
129
0
      method_ptr = _jpeg_idct_3x3;
130
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
131
0
      break;
132
3.43k
    case 4:
133
#ifdef WITH_SIMD
134
1.85k
      if (jsimd_set_idct_4x4(cinfo))
135
1.85k
        method_ptr = jsimd_idct_4x4;
136
0
      else
137
0
#endif
138
1.57k
        method_ptr = _jpeg_idct_4x4;
139
3.43k
      method = JDCT_ISLOW;      /* jidctred uses islow-style table */
140
3.43k
      break;
141
0
    case 5:
142
0
      method_ptr = _jpeg_idct_5x5;
143
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
144
0
      break;
145
0
    case 6:
146
0
      method_ptr = _jpeg_idct_6x6;
147
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
148
0
      break;
149
0
    case 7:
150
0
      method_ptr = _jpeg_idct_7x7;
151
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
152
0
      break;
153
0
#endif
154
10.2k
    case DCTSIZE:
155
10.2k
      switch (cinfo->dct_method) {
156
0
#ifdef DCT_ISLOW_SUPPORTED
157
6.29k
      case JDCT_ISLOW:
158
#ifdef WITH_SIMD
159
3.21k
        if (jsimd_set_idct_islow(cinfo))
160
3.21k
          method_ptr = jsimd_idct_islow;
161
0
        else
162
0
#endif
163
3.07k
          method_ptr = _jpeg_idct_islow;
164
6.29k
        method = JDCT_ISLOW;
165
6.29k
        break;
166
0
#endif
167
0
#ifdef DCT_IFAST_SUPPORTED
168
3.97k
      case JDCT_IFAST:
169
#ifdef WITH_SIMD
170
2.08k
        if (jsimd_set_idct_ifast(cinfo))
171
2.08k
          method_ptr = jsimd_idct_ifast;
172
0
        else
173
0
#endif
174
1.88k
          method_ptr = _jpeg_idct_ifast;
175
3.97k
        method = JDCT_IFAST;
176
3.97k
        break;
177
0
#endif
178
0
#ifdef DCT_FLOAT_SUPPORTED
179
0
      case JDCT_FLOAT:
180
#ifdef WITH_SIMD
181
0
        if (jsimd_set_idct_float(cinfo))
182
0
          method_ptr = jsimd_idct_float;
183
0
        else
184
0
#endif
185
0
          method_ptr = _jpeg_idct_float;
186
0
        method = JDCT_FLOAT;
187
0
        break;
188
0
#endif
189
0
      default:
190
0
        ERREXIT(cinfo, JERR_NOT_COMPILED);
191
0
        break;
192
10.2k
      }
193
10.2k
      break;
194
10.2k
#ifdef IDCT_SCALING_SUPPORTED
195
10.2k
    case 9:
196
0
      method_ptr = _jpeg_idct_9x9;
197
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
198
0
      break;
199
0
    case 10:
200
0
      method_ptr = _jpeg_idct_10x10;
201
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
202
0
      break;
203
0
    case 11:
204
0
      method_ptr = _jpeg_idct_11x11;
205
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
206
0
      break;
207
0
    case 12:
208
0
      method_ptr = _jpeg_idct_12x12;
209
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
210
0
      break;
211
0
    case 13:
212
0
      method_ptr = _jpeg_idct_13x13;
213
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
214
0
      break;
215
0
    case 14:
216
0
      method_ptr = _jpeg_idct_14x14;
217
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
218
0
      break;
219
0
    case 15:
220
0
      method_ptr = _jpeg_idct_15x15;
221
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
222
0
      break;
223
0
    case 16:
224
0
      method_ptr = _jpeg_idct_16x16;
225
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
226
0
      break;
227
0
#endif
228
0
    default:
229
0
      ERREXIT1(cinfo, JERR_BAD_DCTSIZE, compptr->_DCT_scaled_size);
230
0
      break;
231
17.6k
    }
232
17.6k
    idct->pub._inverse_DCT[ci] = method_ptr;
233
    /* Create multiplier table from quant table.
234
     * However, we can skip this if the component is uninteresting
235
     * or if we already built the table.  Also, if no quant table
236
     * has yet been saved for the component, we leave the
237
     * multiplier table all-zero; we'll be reading zeroes from the
238
     * coefficient controller's buffer anyway.
239
     */
240
17.6k
    if (!compptr->component_needed || idct->cur_method[ci] == method)
241
2.00k
      continue;
242
15.6k
    qtbl = compptr->quant_table;
243
15.6k
    if (qtbl == NULL)           /* happens if no data yet for component */
244
3.13k
      continue;
245
12.4k
    idct->cur_method[ci] = method;
246
12.4k
    switch (method) {
247
0
#ifdef PROVIDE_ISLOW_TABLES
248
9.26k
    case JDCT_ISLOW:
249
9.26k
      {
250
        /* For LL&M IDCT method, multipliers are equal to raw quantization
251
         * coefficients, but are stored as ints to ensure access efficiency.
252
         */
253
9.26k
        ISLOW_MULT_TYPE *ismtbl = (ISLOW_MULT_TYPE *)compptr->dct_table;
254
602k
        for (i = 0; i < DCTSIZE2; i++) {
255
593k
          ismtbl[i] = (ISLOW_MULT_TYPE)qtbl->quantval[i];
256
593k
        }
257
9.26k
      }
258
9.26k
      break;
259
0
#endif
260
0
#ifdef DCT_IFAST_SUPPORTED
261
3.20k
    case JDCT_IFAST:
262
3.20k
      {
263
        /* For AA&N IDCT method, multipliers are equal to quantization
264
         * coefficients scaled by scalefactor[row]*scalefactor[col], where
265
         *   scalefactor[0] = 1
266
         *   scalefactor[k] = cos(k*PI/16) * sqrt(2)    for k=1..7
267
         * For integer operation, the multiplier table is to be scaled by
268
         * IFAST_SCALE_BITS.
269
         */
270
3.20k
        IFAST_MULT_TYPE *ifmtbl = (IFAST_MULT_TYPE *)compptr->dct_table;
271
3.20k
#define CONST_BITS  14
272
3.20k
        static const INT16 aanscales[DCTSIZE2] = {
273
          /* precomputed values scaled up by 14 bits */
274
3.20k
          16384, 22725, 21407, 19266, 16384, 12873,  8867,  4520,
275
3.20k
          22725, 31521, 29692, 26722, 22725, 17855, 12299,  6270,
276
3.20k
          21407, 29692, 27969, 25172, 21407, 16819, 11585,  5906,
277
3.20k
          19266, 26722, 25172, 22654, 19266, 15137, 10426,  5315,
278
3.20k
          16384, 22725, 21407, 19266, 16384, 12873,  8867,  4520,
279
3.20k
          12873, 17855, 16819, 15137, 12873, 10114,  6967,  3552,
280
3.20k
           8867, 12299, 11585, 10426,  8867,  6967,  4799,  2446,
281
3.20k
           4520,  6270,  5906,  5315,  4520,  3552,  2446,  1247
282
3.20k
        };
283
3.20k
        SHIFT_TEMPS
284
285
208k
        for (i = 0; i < DCTSIZE2; i++) {
286
205k
          ifmtbl[i] = (IFAST_MULT_TYPE)
287
205k
            DESCALE(MULTIPLY16V16((JLONG)qtbl->quantval[i],
288
205k
                                  (JLONG)aanscales[i]),
289
205k
                    CONST_BITS - IFAST_SCALE_BITS);
290
205k
        }
291
3.20k
      }
292
3.20k
      break;
293
0
#endif
294
0
#ifdef DCT_FLOAT_SUPPORTED
295
0
    case JDCT_FLOAT:
296
0
      {
297
        /* For float AA&N IDCT method, multipliers are equal to quantization
298
         * coefficients scaled by scalefactor[row]*scalefactor[col], where
299
         *   scalefactor[0] = 1
300
         *   scalefactor[k] = cos(k*PI/16) * sqrt(2)    for k=1..7
301
         */
302
0
        FLOAT_MULT_TYPE *fmtbl = (FLOAT_MULT_TYPE *)compptr->dct_table;
303
0
        int row, col;
304
0
        static const double aanscalefactor[DCTSIZE] = {
305
0
          1.0, 1.387039845, 1.306562965, 1.175875602,
306
0
          1.0, 0.785694958, 0.541196100, 0.275899379
307
0
        };
308
309
0
        i = 0;
310
0
        for (row = 0; row < DCTSIZE; row++) {
311
0
          for (col = 0; col < DCTSIZE; col++) {
312
0
            fmtbl[i] = (FLOAT_MULT_TYPE)
313
0
              ((double)qtbl->quantval[i] *
314
0
               aanscalefactor[row] * aanscalefactor[col]);
315
0
            i++;
316
0
          }
317
0
        }
318
0
      }
319
0
      break;
320
0
#endif
321
0
    default:
322
0
      ERREXIT(cinfo, JERR_NOT_COMPILED);
323
0
      break;
324
12.4k
    }
325
12.4k
  }
326
11.7k
}
jddctmgr-8.c:start_pass
Line
Count
Source
102
6.47k
{
103
6.47k
  my_idct_ptr idct = (my_idct_ptr)cinfo->idct;
104
6.47k
  int ci, i;
105
6.47k
  jpeg_component_info *compptr;
106
6.47k
  int method = 0;
107
6.47k
  _inverse_DCT_method_ptr method_ptr = NULL;
108
6.47k
  JQUANT_TBL *qtbl;
109
110
15.6k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
111
9.20k
       ci++, compptr++) {
112
    /* Select the proper IDCT routine for this component's scaling */
113
9.20k
    switch (compptr->_DCT_scaled_size) {
114
0
#ifdef IDCT_SCALING_SUPPORTED
115
1.85k
    case 1:
116
1.85k
      method_ptr = _jpeg_idct_1x1;
117
1.85k
      method = JDCT_ISLOW;      /* jidctred uses islow-style table */
118
1.85k
      break;
119
189
    case 2:
120
189
#ifdef WITH_SIMD
121
189
      if (jsimd_set_idct_2x2(cinfo))
122
189
        method_ptr = jsimd_idct_2x2;
123
0
      else
124
0
#endif
125
0
        method_ptr = _jpeg_idct_2x2;
126
189
      method = JDCT_ISLOW;      /* jidctred uses islow-style table */
127
189
      break;
128
0
    case 3:
129
0
      method_ptr = _jpeg_idct_3x3;
130
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
131
0
      break;
132
1.85k
    case 4:
133
1.85k
#ifdef WITH_SIMD
134
1.85k
      if (jsimd_set_idct_4x4(cinfo))
135
1.85k
        method_ptr = jsimd_idct_4x4;
136
0
      else
137
0
#endif
138
0
        method_ptr = _jpeg_idct_4x4;
139
1.85k
      method = JDCT_ISLOW;      /* jidctred uses islow-style table */
140
1.85k
      break;
141
0
    case 5:
142
0
      method_ptr = _jpeg_idct_5x5;
143
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
144
0
      break;
145
0
    case 6:
146
0
      method_ptr = _jpeg_idct_6x6;
147
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
148
0
      break;
149
0
    case 7:
150
0
      method_ptr = _jpeg_idct_7x7;
151
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
152
0
      break;
153
0
#endif
154
5.30k
    case DCTSIZE:
155
5.30k
      switch (cinfo->dct_method) {
156
0
#ifdef DCT_ISLOW_SUPPORTED
157
3.21k
      case JDCT_ISLOW:
158
3.21k
#ifdef WITH_SIMD
159
3.21k
        if (jsimd_set_idct_islow(cinfo))
160
3.21k
          method_ptr = jsimd_idct_islow;
161
0
        else
162
0
#endif
163
0
          method_ptr = _jpeg_idct_islow;
164
3.21k
        method = JDCT_ISLOW;
165
3.21k
        break;
166
0
#endif
167
0
#ifdef DCT_IFAST_SUPPORTED
168
2.08k
      case JDCT_IFAST:
169
2.08k
#ifdef WITH_SIMD
170
2.08k
        if (jsimd_set_idct_ifast(cinfo))
171
2.08k
          method_ptr = jsimd_idct_ifast;
172
0
        else
173
0
#endif
174
0
          method_ptr = _jpeg_idct_ifast;
175
2.08k
        method = JDCT_IFAST;
176
2.08k
        break;
177
0
#endif
178
0
#ifdef DCT_FLOAT_SUPPORTED
179
0
      case JDCT_FLOAT:
180
0
#ifdef WITH_SIMD
181
0
        if (jsimd_set_idct_float(cinfo))
182
0
          method_ptr = jsimd_idct_float;
183
0
        else
184
0
#endif
185
0
          method_ptr = _jpeg_idct_float;
186
0
        method = JDCT_FLOAT;
187
0
        break;
188
0
#endif
189
0
      default:
190
0
        ERREXIT(cinfo, JERR_NOT_COMPILED);
191
0
        break;
192
5.30k
      }
193
5.30k
      break;
194
5.30k
#ifdef IDCT_SCALING_SUPPORTED
195
5.30k
    case 9:
196
0
      method_ptr = _jpeg_idct_9x9;
197
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
198
0
      break;
199
0
    case 10:
200
0
      method_ptr = _jpeg_idct_10x10;
201
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
202
0
      break;
203
0
    case 11:
204
0
      method_ptr = _jpeg_idct_11x11;
205
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
206
0
      break;
207
0
    case 12:
208
0
      method_ptr = _jpeg_idct_12x12;
209
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
210
0
      break;
211
0
    case 13:
212
0
      method_ptr = _jpeg_idct_13x13;
213
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
214
0
      break;
215
0
    case 14:
216
0
      method_ptr = _jpeg_idct_14x14;
217
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
218
0
      break;
219
0
    case 15:
220
0
      method_ptr = _jpeg_idct_15x15;
221
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
222
0
      break;
223
0
    case 16:
224
0
      method_ptr = _jpeg_idct_16x16;
225
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
226
0
      break;
227
0
#endif
228
0
    default:
229
0
      ERREXIT1(cinfo, JERR_BAD_DCTSIZE, compptr->_DCT_scaled_size);
230
0
      break;
231
9.20k
    }
232
9.20k
    idct->pub._inverse_DCT[ci] = method_ptr;
233
    /* Create multiplier table from quant table.
234
     * However, we can skip this if the component is uninteresting
235
     * or if we already built the table.  Also, if no quant table
236
     * has yet been saved for the component, we leave the
237
     * multiplier table all-zero; we'll be reading zeroes from the
238
     * coefficient controller's buffer anyway.
239
     */
240
9.20k
    if (!compptr->component_needed || idct->cur_method[ci] == method)
241
974
      continue;
242
8.23k
    qtbl = compptr->quant_table;
243
8.23k
    if (qtbl == NULL)           /* happens if no data yet for component */
244
1.34k
      continue;
245
6.88k
    idct->cur_method[ci] = method;
246
6.88k
    switch (method) {
247
0
#ifdef PROVIDE_ISLOW_TABLES
248
5.12k
    case JDCT_ISLOW:
249
5.12k
      {
250
        /* For LL&M IDCT method, multipliers are equal to raw quantization
251
         * coefficients, but are stored as ints to ensure access efficiency.
252
         */
253
5.12k
        ISLOW_MULT_TYPE *ismtbl = (ISLOW_MULT_TYPE *)compptr->dct_table;
254
333k
        for (i = 0; i < DCTSIZE2; i++) {
255
327k
          ismtbl[i] = (ISLOW_MULT_TYPE)qtbl->quantval[i];
256
327k
        }
257
5.12k
      }
258
5.12k
      break;
259
0
#endif
260
0
#ifdef DCT_IFAST_SUPPORTED
261
1.76k
    case JDCT_IFAST:
262
1.76k
      {
263
        /* For AA&N IDCT method, multipliers are equal to quantization
264
         * coefficients scaled by scalefactor[row]*scalefactor[col], where
265
         *   scalefactor[0] = 1
266
         *   scalefactor[k] = cos(k*PI/16) * sqrt(2)    for k=1..7
267
         * For integer operation, the multiplier table is to be scaled by
268
         * IFAST_SCALE_BITS.
269
         */
270
1.76k
        IFAST_MULT_TYPE *ifmtbl = (IFAST_MULT_TYPE *)compptr->dct_table;
271
1.76k
#define CONST_BITS  14
272
1.76k
        static const INT16 aanscales[DCTSIZE2] = {
273
          /* precomputed values scaled up by 14 bits */
274
1.76k
          16384, 22725, 21407, 19266, 16384, 12873,  8867,  4520,
275
1.76k
          22725, 31521, 29692, 26722, 22725, 17855, 12299,  6270,
276
1.76k
          21407, 29692, 27969, 25172, 21407, 16819, 11585,  5906,
277
1.76k
          19266, 26722, 25172, 22654, 19266, 15137, 10426,  5315,
278
1.76k
          16384, 22725, 21407, 19266, 16384, 12873,  8867,  4520,
279
1.76k
          12873, 17855, 16819, 15137, 12873, 10114,  6967,  3552,
280
1.76k
           8867, 12299, 11585, 10426,  8867,  6967,  4799,  2446,
281
1.76k
           4520,  6270,  5906,  5315,  4520,  3552,  2446,  1247
282
1.76k
        };
283
1.76k
        SHIFT_TEMPS
284
285
114k
        for (i = 0; i < DCTSIZE2; i++) {
286
112k
          ifmtbl[i] = (IFAST_MULT_TYPE)
287
112k
            DESCALE(MULTIPLY16V16((JLONG)qtbl->quantval[i],
288
112k
                                  (JLONG)aanscales[i]),
289
112k
                    CONST_BITS - IFAST_SCALE_BITS);
290
112k
        }
291
1.76k
      }
292
1.76k
      break;
293
0
#endif
294
0
#ifdef DCT_FLOAT_SUPPORTED
295
0
    case JDCT_FLOAT:
296
0
      {
297
        /* For float AA&N IDCT method, multipliers are equal to quantization
298
         * coefficients scaled by scalefactor[row]*scalefactor[col], where
299
         *   scalefactor[0] = 1
300
         *   scalefactor[k] = cos(k*PI/16) * sqrt(2)    for k=1..7
301
         */
302
0
        FLOAT_MULT_TYPE *fmtbl = (FLOAT_MULT_TYPE *)compptr->dct_table;
303
0
        int row, col;
304
0
        static const double aanscalefactor[DCTSIZE] = {
305
0
          1.0, 1.387039845, 1.306562965, 1.175875602,
306
0
          1.0, 0.785694958, 0.541196100, 0.275899379
307
0
        };
308
309
0
        i = 0;
310
0
        for (row = 0; row < DCTSIZE; row++) {
311
0
          for (col = 0; col < DCTSIZE; col++) {
312
0
            fmtbl[i] = (FLOAT_MULT_TYPE)
313
0
              ((double)qtbl->quantval[i] *
314
0
               aanscalefactor[row] * aanscalefactor[col]);
315
0
            i++;
316
0
          }
317
0
        }
318
0
      }
319
0
      break;
320
0
#endif
321
0
    default:
322
0
      ERREXIT(cinfo, JERR_NOT_COMPILED);
323
0
      break;
324
6.88k
    }
325
6.88k
  }
326
6.47k
}
jddctmgr-12.c:start_pass
Line
Count
Source
102
5.25k
{
103
5.25k
  my_idct_ptr idct = (my_idct_ptr)cinfo->idct;
104
5.25k
  int ci, i;
105
5.25k
  jpeg_component_info *compptr;
106
5.25k
  int method = 0;
107
5.25k
  _inverse_DCT_method_ptr method_ptr = NULL;
108
5.25k
  JQUANT_TBL *qtbl;
109
110
13.6k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
111
8.40k
       ci++, compptr++) {
112
    /* Select the proper IDCT routine for this component's scaling */
113
8.40k
    switch (compptr->_DCT_scaled_size) {
114
0
#ifdef IDCT_SCALING_SUPPORTED
115
1.56k
    case 1:
116
1.56k
      method_ptr = _jpeg_idct_1x1;
117
1.56k
      method = JDCT_ISLOW;      /* jidctred uses islow-style table */
118
1.56k
      break;
119
306
    case 2:
120
#ifdef WITH_SIMD
121
      if (jsimd_set_idct_2x2(cinfo))
122
        method_ptr = jsimd_idct_2x2;
123
      else
124
#endif
125
306
        method_ptr = _jpeg_idct_2x2;
126
306
      method = JDCT_ISLOW;      /* jidctred uses islow-style table */
127
306
      break;
128
0
    case 3:
129
0
      method_ptr = _jpeg_idct_3x3;
130
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
131
0
      break;
132
1.57k
    case 4:
133
#ifdef WITH_SIMD
134
      if (jsimd_set_idct_4x4(cinfo))
135
        method_ptr = jsimd_idct_4x4;
136
      else
137
#endif
138
1.57k
        method_ptr = _jpeg_idct_4x4;
139
1.57k
      method = JDCT_ISLOW;      /* jidctred uses islow-style table */
140
1.57k
      break;
141
0
    case 5:
142
0
      method_ptr = _jpeg_idct_5x5;
143
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
144
0
      break;
145
0
    case 6:
146
0
      method_ptr = _jpeg_idct_6x6;
147
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
148
0
      break;
149
0
    case 7:
150
0
      method_ptr = _jpeg_idct_7x7;
151
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
152
0
      break;
153
0
#endif
154
4.96k
    case DCTSIZE:
155
4.96k
      switch (cinfo->dct_method) {
156
0
#ifdef DCT_ISLOW_SUPPORTED
157
3.07k
      case JDCT_ISLOW:
158
#ifdef WITH_SIMD
159
        if (jsimd_set_idct_islow(cinfo))
160
          method_ptr = jsimd_idct_islow;
161
        else
162
#endif
163
3.07k
          method_ptr = _jpeg_idct_islow;
164
3.07k
        method = JDCT_ISLOW;
165
3.07k
        break;
166
0
#endif
167
0
#ifdef DCT_IFAST_SUPPORTED
168
1.88k
      case JDCT_IFAST:
169
#ifdef WITH_SIMD
170
        if (jsimd_set_idct_ifast(cinfo))
171
          method_ptr = jsimd_idct_ifast;
172
        else
173
#endif
174
1.88k
          method_ptr = _jpeg_idct_ifast;
175
1.88k
        method = JDCT_IFAST;
176
1.88k
        break;
177
0
#endif
178
0
#ifdef DCT_FLOAT_SUPPORTED
179
0
      case JDCT_FLOAT:
180
#ifdef WITH_SIMD
181
        if (jsimd_set_idct_float(cinfo))
182
          method_ptr = jsimd_idct_float;
183
        else
184
#endif
185
0
          method_ptr = _jpeg_idct_float;
186
0
        method = JDCT_FLOAT;
187
0
        break;
188
0
#endif
189
0
      default:
190
0
        ERREXIT(cinfo, JERR_NOT_COMPILED);
191
0
        break;
192
4.96k
      }
193
4.96k
      break;
194
4.96k
#ifdef IDCT_SCALING_SUPPORTED
195
4.96k
    case 9:
196
0
      method_ptr = _jpeg_idct_9x9;
197
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
198
0
      break;
199
0
    case 10:
200
0
      method_ptr = _jpeg_idct_10x10;
201
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
202
0
      break;
203
0
    case 11:
204
0
      method_ptr = _jpeg_idct_11x11;
205
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
206
0
      break;
207
0
    case 12:
208
0
      method_ptr = _jpeg_idct_12x12;
209
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
210
0
      break;
211
0
    case 13:
212
0
      method_ptr = _jpeg_idct_13x13;
213
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
214
0
      break;
215
0
    case 14:
216
0
      method_ptr = _jpeg_idct_14x14;
217
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
218
0
      break;
219
0
    case 15:
220
0
      method_ptr = _jpeg_idct_15x15;
221
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
222
0
      break;
223
0
    case 16:
224
0
      method_ptr = _jpeg_idct_16x16;
225
0
      method = JDCT_ISLOW;      /* jidctint uses islow-style table */
226
0
      break;
227
0
#endif
228
0
    default:
229
0
      ERREXIT1(cinfo, JERR_BAD_DCTSIZE, compptr->_DCT_scaled_size);
230
0
      break;
231
8.40k
    }
232
8.40k
    idct->pub._inverse_DCT[ci] = method_ptr;
233
    /* Create multiplier table from quant table.
234
     * However, we can skip this if the component is uninteresting
235
     * or if we already built the table.  Also, if no quant table
236
     * has yet been saved for the component, we leave the
237
     * multiplier table all-zero; we'll be reading zeroes from the
238
     * coefficient controller's buffer anyway.
239
     */
240
8.40k
    if (!compptr->component_needed || idct->cur_method[ci] == method)
241
1.03k
      continue;
242
7.37k
    qtbl = compptr->quant_table;
243
7.37k
    if (qtbl == NULL)           /* happens if no data yet for component */
244
1.79k
      continue;
245
5.58k
    idct->cur_method[ci] = method;
246
5.58k
    switch (method) {
247
0
#ifdef PROVIDE_ISLOW_TABLES
248
4.14k
    case JDCT_ISLOW:
249
4.14k
      {
250
        /* For LL&M IDCT method, multipliers are equal to raw quantization
251
         * coefficients, but are stored as ints to ensure access efficiency.
252
         */
253
4.14k
        ISLOW_MULT_TYPE *ismtbl = (ISLOW_MULT_TYPE *)compptr->dct_table;
254
269k
        for (i = 0; i < DCTSIZE2; i++) {
255
265k
          ismtbl[i] = (ISLOW_MULT_TYPE)qtbl->quantval[i];
256
265k
        }
257
4.14k
      }
258
4.14k
      break;
259
0
#endif
260
0
#ifdef DCT_IFAST_SUPPORTED
261
1.44k
    case JDCT_IFAST:
262
1.44k
      {
263
        /* For AA&N IDCT method, multipliers are equal to quantization
264
         * coefficients scaled by scalefactor[row]*scalefactor[col], where
265
         *   scalefactor[0] = 1
266
         *   scalefactor[k] = cos(k*PI/16) * sqrt(2)    for k=1..7
267
         * For integer operation, the multiplier table is to be scaled by
268
         * IFAST_SCALE_BITS.
269
         */
270
1.44k
        IFAST_MULT_TYPE *ifmtbl = (IFAST_MULT_TYPE *)compptr->dct_table;
271
1.44k
#define CONST_BITS  14
272
1.44k
        static const INT16 aanscales[DCTSIZE2] = {
273
          /* precomputed values scaled up by 14 bits */
274
1.44k
          16384, 22725, 21407, 19266, 16384, 12873,  8867,  4520,
275
1.44k
          22725, 31521, 29692, 26722, 22725, 17855, 12299,  6270,
276
1.44k
          21407, 29692, 27969, 25172, 21407, 16819, 11585,  5906,
277
1.44k
          19266, 26722, 25172, 22654, 19266, 15137, 10426,  5315,
278
1.44k
          16384, 22725, 21407, 19266, 16384, 12873,  8867,  4520,
279
1.44k
          12873, 17855, 16819, 15137, 12873, 10114,  6967,  3552,
280
1.44k
           8867, 12299, 11585, 10426,  8867,  6967,  4799,  2446,
281
1.44k
           4520,  6270,  5906,  5315,  4520,  3552,  2446,  1247
282
1.44k
        };
283
1.44k
        SHIFT_TEMPS
284
285
93.7k
        for (i = 0; i < DCTSIZE2; i++) {
286
92.3k
          ifmtbl[i] = (IFAST_MULT_TYPE)
287
92.3k
            DESCALE(MULTIPLY16V16((JLONG)qtbl->quantval[i],
288
92.3k
                                  (JLONG)aanscales[i]),
289
92.3k
                    CONST_BITS - IFAST_SCALE_BITS);
290
92.3k
        }
291
1.44k
      }
292
1.44k
      break;
293
0
#endif
294
0
#ifdef DCT_FLOAT_SUPPORTED
295
0
    case JDCT_FLOAT:
296
0
      {
297
        /* For float AA&N IDCT method, multipliers are equal to quantization
298
         * coefficients scaled by scalefactor[row]*scalefactor[col], where
299
         *   scalefactor[0] = 1
300
         *   scalefactor[k] = cos(k*PI/16) * sqrt(2)    for k=1..7
301
         */
302
0
        FLOAT_MULT_TYPE *fmtbl = (FLOAT_MULT_TYPE *)compptr->dct_table;
303
0
        int row, col;
304
0
        static const double aanscalefactor[DCTSIZE] = {
305
0
          1.0, 1.387039845, 1.306562965, 1.175875602,
306
0
          1.0, 0.785694958, 0.541196100, 0.275899379
307
0
        };
308
309
0
        i = 0;
310
0
        for (row = 0; row < DCTSIZE; row++) {
311
0
          for (col = 0; col < DCTSIZE; col++) {
312
0
            fmtbl[i] = (FLOAT_MULT_TYPE)
313
0
              ((double)qtbl->quantval[i] *
314
0
               aanscalefactor[row] * aanscalefactor[col]);
315
0
            i++;
316
0
          }
317
0
        }
318
0
      }
319
0
      break;
320
0
#endif
321
0
    default:
322
0
      ERREXIT(cinfo, JERR_NOT_COMPILED);
323
0
      break;
324
5.58k
    }
325
5.58k
  }
326
5.25k
}
327
328
329
/*
330
 * Initialize IDCT manager.
331
 */
332
333
GLOBAL(void)
334
_jinit_inverse_dct(j_decompress_ptr cinfo)
335
16.0k
{
336
16.0k
  my_idct_ptr idct;
337
16.0k
  int ci;
338
16.0k
  jpeg_component_info *compptr;
339
340
16.0k
  if (cinfo->data_precision != BITS_IN_JSAMPLE)
341
0
    ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
342
343
16.0k
  idct = (my_idct_ptr)
344
16.0k
    (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_IMAGE,
345
16.0k
                                sizeof(my_idct_controller));
346
16.0k
  cinfo->idct = (struct jpeg_inverse_dct *)idct;
347
16.0k
  idct->pub.start_pass = start_pass;
348
349
40.5k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
350
24.5k
       ci++, compptr++) {
351
    /* Allocate and pre-zero a multiplier table for each component */
352
24.5k
    compptr->dct_table =
353
24.5k
      (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_IMAGE,
354
24.5k
                                  sizeof(multiplier_table));
355
24.5k
    memset(compptr->dct_table, 0, sizeof(multiplier_table));
356
    /* Mark multiplier table not yet set up for any method */
357
24.5k
    idct->cur_method[ci] = -1;
358
24.5k
  }
359
16.0k
}
jinit_inverse_dct
Line
Count
Source
335
9.72k
{
336
9.72k
  my_idct_ptr idct;
337
9.72k
  int ci;
338
9.72k
  jpeg_component_info *compptr;
339
340
9.72k
  if (cinfo->data_precision != BITS_IN_JSAMPLE)
341
0
    ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
342
343
9.72k
  idct = (my_idct_ptr)
344
9.72k
    (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_IMAGE,
345
9.72k
                                sizeof(my_idct_controller));
346
9.72k
  cinfo->idct = (struct jpeg_inverse_dct *)idct;
347
9.72k
  idct->pub.start_pass = start_pass;
348
349
23.8k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
350
14.0k
       ci++, compptr++) {
351
    /* Allocate and pre-zero a multiplier table for each component */
352
14.0k
    compptr->dct_table =
353
14.0k
      (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_IMAGE,
354
14.0k
                                  sizeof(multiplier_table));
355
14.0k
    memset(compptr->dct_table, 0, sizeof(multiplier_table));
356
    /* Mark multiplier table not yet set up for any method */
357
14.0k
    idct->cur_method[ci] = -1;
358
14.0k
  }
359
9.72k
}
j12init_inverse_dct
Line
Count
Source
335
6.28k
{
336
6.28k
  my_idct_ptr idct;
337
6.28k
  int ci;
338
6.28k
  jpeg_component_info *compptr;
339
340
6.28k
  if (cinfo->data_precision != BITS_IN_JSAMPLE)
341
0
    ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
342
343
6.28k
  idct = (my_idct_ptr)
344
6.28k
    (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_IMAGE,
345
6.28k
                                sizeof(my_idct_controller));
346
6.28k
  cinfo->idct = (struct jpeg_inverse_dct *)idct;
347
6.28k
  idct->pub.start_pass = start_pass;
348
349
16.7k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
350
10.4k
       ci++, compptr++) {
351
    /* Allocate and pre-zero a multiplier table for each component */
352
10.4k
    compptr->dct_table =
353
10.4k
      (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_IMAGE,
354
10.4k
                                  sizeof(multiplier_table));
355
10.4k
    memset(compptr->dct_table, 0, sizeof(multiplier_table));
356
    /* Mark multiplier table not yet set up for any method */
357
10.4k
    idct->cur_method[ci] = -1;
358
10.4k
  }
359
6.28k
}
360
361
#endif /* defined(DCT_ISLOW_SUPPORTED) || defined(DCT_IFAST_SUPPORTED) ||
362
          defined(DCT_FLOAT_SUPPORTED) */