Coverage Report

Created: 2025-08-11 08:01

/src/libjpeg-turbo/src/jdmainct.c
Line
Count
Source (jump to first uncovered line)
1
/*
2
 * jdmainct.c
3
 *
4
 * This file was part of the Independent JPEG Group's software:
5
 * Copyright (C) 1994-1996, Thomas G. Lane.
6
 * libjpeg-turbo Modifications:
7
 * Copyright (C) 2010, 2016, 2022, 2024, D. R. Commander.
8
 * For conditions of distribution and use, see the accompanying README.ijg
9
 * file.
10
 *
11
 * This file contains the main buffer controller for decompression.
12
 * The main buffer lies between the JPEG decompressor proper and the
13
 * post-processor; it holds downsampled data in the JPEG colorspace.
14
 *
15
 * Note that this code is bypassed in raw-data mode, since the application
16
 * supplies the equivalent of the main buffer in that case.
17
 */
18
19
#include "jinclude.h"
20
#include "jdmainct.h"
21
22
23
#if BITS_IN_JSAMPLE != 16 || defined(D_LOSSLESS_SUPPORTED)
24
25
/*
26
 * In the current system design, the main buffer need never be a full-image
27
 * buffer; any full-height buffers will be found inside the coefficient,
28
 * difference, or postprocessing controllers.  Nonetheless, the main controller
29
 * is not trivial.  Its responsibility is to provide context rows for
30
 * upsampling/rescaling, and doing this in an efficient fashion is a bit
31
 * tricky.
32
 *
33
 * Postprocessor input data is counted in "row groups".  A row group
34
 * is defined to be (v_samp_factor * DCT_scaled_size / min_DCT_scaled_size)
35
 * sample rows of each component.  (We require DCT_scaled_size values to be
36
 * chosen such that these numbers are integers.  In practice DCT_scaled_size
37
 * values will likely be powers of two, so we actually have the stronger
38
 * condition that DCT_scaled_size / min_DCT_scaled_size is an integer.)
39
 * Upsampling will typically produce max_v_samp_factor pixel rows from each
40
 * row group (times any additional scale factor that the upsampler is
41
 * applying).
42
 *
43
 * The coefficient or difference controller will deliver data to us one iMCU
44
 * row at a time; each iMCU row contains v_samp_factor * DCT_scaled_size sample
45
 * rows, or exactly min_DCT_scaled_size row groups.  (This amount of data
46
 * corresponds to one row of MCUs when the image is fully interleaved.)  Note
47
 * that the number of sample rows varies across components, but the number of
48
 * row groups does not.  Some garbage sample rows may be included in the last
49
 * iMCU row at the bottom of the image.
50
 *
51
 * Depending on the vertical scaling algorithm used, the upsampler may need
52
 * access to the sample row(s) above and below its current input row group.
53
 * The upsampler is required to set need_context_rows TRUE at global selection
54
 * time if so.  When need_context_rows is FALSE, this controller can simply
55
 * obtain one iMCU row at a time from the coefficient or difference controller
56
 * and dole it out as row groups to the postprocessor.
57
 *
58
 * When need_context_rows is TRUE, this controller guarantees that the buffer
59
 * passed to postprocessing contains at least one row group's worth of samples
60
 * above and below the row group(s) being processed.  Note that the context
61
 * rows "above" the first passed row group appear at negative row offsets in
62
 * the passed buffer.  At the top and bottom of the image, the required
63
 * context rows are manufactured by duplicating the first or last real sample
64
 * row; this avoids having special cases in the upsampling inner loops.
65
 *
66
 * The amount of context is fixed at one row group just because that's a
67
 * convenient number for this controller to work with.  The existing
68
 * upsamplers really only need one sample row of context.  An upsampler
69
 * supporting arbitrary output rescaling might wish for more than one row
70
 * group of context when shrinking the image; tough, we don't handle that.
71
 * (This is justified by the assumption that downsizing will be handled mostly
72
 * by adjusting the DCT_scaled_size values, so that the actual scale factor at
73
 * the upsample step needn't be much less than one.)
74
 *
75
 * To provide the desired context, we have to retain the last two row groups
76
 * of one iMCU row while reading in the next iMCU row.  (The last row group
77
 * can't be processed until we have another row group for its below-context,
78
 * and so we have to save the next-to-last group too for its above-context.)
79
 * We could do this most simply by copying data around in our buffer, but
80
 * that'd be very slow.  We can avoid copying any data by creating a rather
81
 * strange pointer structure.  Here's how it works.  We allocate a workspace
82
 * consisting of M+2 row groups (where M = min_DCT_scaled_size is the number
83
 * of row groups per iMCU row).  We create two sets of redundant pointers to
84
 * the workspace.  Labeling the physical row groups 0 to M+1, the synthesized
85
 * pointer lists look like this:
86
 *                   M+1                          M-1
87
 * master pointer --> 0         master pointer --> 0
88
 *                    1                            1
89
 *                   ...                          ...
90
 *                   M-3                          M-3
91
 *                   M-2                           M
92
 *                   M-1                          M+1
93
 *                    M                           M-2
94
 *                   M+1                          M-1
95
 *                    0                            0
96
 * We read alternate iMCU rows using each master pointer; thus the last two
97
 * row groups of the previous iMCU row remain un-overwritten in the workspace.
98
 * The pointer lists are set up so that the required context rows appear to
99
 * be adjacent to the proper places when we pass the pointer lists to the
100
 * upsampler.
101
 *
102
 * The above pictures describe the normal state of the pointer lists.
103
 * At top and bottom of the image, we diddle the pointer lists to duplicate
104
 * the first or last sample row as necessary (this is cheaper than copying
105
 * sample rows around).
106
 *
107
 * This scheme breaks down if M < 2, ie, min_DCT_scaled_size is 1.  In that
108
 * situation each iMCU row provides only one row group so the buffering logic
109
 * must be different (eg, we must read two iMCU rows before we can emit the
110
 * first row group).  For now, we simply do not support providing context
111
 * rows when min_DCT_scaled_size is 1.  That combination seems unlikely to
112
 * be worth providing --- if someone wants a 1/8th-size preview, they probably
113
 * want it quick and dirty, so a context-free upsampler is sufficient.
114
 */
115
116
117
/* Forward declarations */
118
METHODDEF(void) process_data_simple_main(j_decompress_ptr cinfo,
119
                                         _JSAMPARRAY output_buf,
120
                                         JDIMENSION *out_row_ctr,
121
                                         JDIMENSION out_rows_avail);
122
METHODDEF(void) process_data_context_main(j_decompress_ptr cinfo,
123
                                          _JSAMPARRAY output_buf,
124
                                          JDIMENSION *out_row_ctr,
125
                                          JDIMENSION out_rows_avail);
126
#ifdef QUANT_2PASS_SUPPORTED
127
METHODDEF(void) process_data_crank_post(j_decompress_ptr cinfo,
128
                                        _JSAMPARRAY output_buf,
129
                                        JDIMENSION *out_row_ctr,
130
                                        JDIMENSION out_rows_avail);
131
#endif
132
133
134
LOCAL(void)
135
alloc_funny_pointers(j_decompress_ptr cinfo)
136
/* Allocate space for the funny pointer lists.
137
 * This is done only once, not once per pass.
138
 */
139
40.4k
{
140
40.4k
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
141
40.4k
  int ci, rgroup;
142
40.4k
  int M = cinfo->_min_DCT_scaled_size;
143
40.4k
  jpeg_component_info *compptr;
144
40.4k
  _JSAMPARRAY xbuf;
145
146
  /* Get top-level space for component array pointers.
147
   * We alloc both arrays with one call to save a few cycles.
148
   */
149
40.4k
  main_ptr->xbuffer[0] = (_JSAMPIMAGE)
150
40.4k
    (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_IMAGE,
151
40.4k
                                cinfo->num_components * 2 *
152
40.4k
                                sizeof(_JSAMPARRAY));
153
40.4k
  main_ptr->xbuffer[1] = main_ptr->xbuffer[0] + cinfo->num_components;
154
155
188k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
156
147k
       ci++, compptr++) {
157
147k
    rgroup = (compptr->v_samp_factor * compptr->_DCT_scaled_size) /
158
147k
      cinfo->_min_DCT_scaled_size; /* height of a row group of component */
159
    /* Get space for pointer lists --- M+4 row groups in each list.
160
     * We alloc both pointer lists with one call to save a few cycles.
161
     */
162
147k
    xbuf = (_JSAMPARRAY)
163
147k
      (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_IMAGE,
164
147k
                                  2 * (rgroup * (M + 4)) * sizeof(_JSAMPROW));
165
147k
    xbuf += rgroup;             /* want one row group at negative offsets */
166
147k
    main_ptr->xbuffer[0][ci] = xbuf;
167
147k
    xbuf += rgroup * (M + 4);
168
147k
    main_ptr->xbuffer[1][ci] = xbuf;
169
147k
  }
170
40.4k
}
jdmainct-8.c:alloc_funny_pointers
Line
Count
Source
139
30.9k
{
140
30.9k
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
141
30.9k
  int ci, rgroup;
142
30.9k
  int M = cinfo->_min_DCT_scaled_size;
143
30.9k
  jpeg_component_info *compptr;
144
30.9k
  _JSAMPARRAY xbuf;
145
146
  /* Get top-level space for component array pointers.
147
   * We alloc both arrays with one call to save a few cycles.
148
   */
149
30.9k
  main_ptr->xbuffer[0] = (_JSAMPIMAGE)
150
30.9k
    (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_IMAGE,
151
30.9k
                                cinfo->num_components * 2 *
152
30.9k
                                sizeof(_JSAMPARRAY));
153
30.9k
  main_ptr->xbuffer[1] = main_ptr->xbuffer[0] + cinfo->num_components;
154
155
140k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
156
109k
       ci++, compptr++) {
157
109k
    rgroup = (compptr->v_samp_factor * compptr->_DCT_scaled_size) /
158
109k
      cinfo->_min_DCT_scaled_size; /* height of a row group of component */
159
    /* Get space for pointer lists --- M+4 row groups in each list.
160
     * We alloc both pointer lists with one call to save a few cycles.
161
     */
162
109k
    xbuf = (_JSAMPARRAY)
163
109k
      (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_IMAGE,
164
109k
                                  2 * (rgroup * (M + 4)) * sizeof(_JSAMPROW));
165
109k
    xbuf += rgroup;             /* want one row group at negative offsets */
166
109k
    main_ptr->xbuffer[0][ci] = xbuf;
167
109k
    xbuf += rgroup * (M + 4);
168
109k
    main_ptr->xbuffer[1][ci] = xbuf;
169
109k
  }
170
30.9k
}
jdmainct-12.c:alloc_funny_pointers
Line
Count
Source
139
9.49k
{
140
9.49k
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
141
9.49k
  int ci, rgroup;
142
9.49k
  int M = cinfo->_min_DCT_scaled_size;
143
9.49k
  jpeg_component_info *compptr;
144
9.49k
  _JSAMPARRAY xbuf;
145
146
  /* Get top-level space for component array pointers.
147
   * We alloc both arrays with one call to save a few cycles.
148
   */
149
9.49k
  main_ptr->xbuffer[0] = (_JSAMPIMAGE)
150
9.49k
    (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_IMAGE,
151
9.49k
                                cinfo->num_components * 2 *
152
9.49k
                                sizeof(_JSAMPARRAY));
153
9.49k
  main_ptr->xbuffer[1] = main_ptr->xbuffer[0] + cinfo->num_components;
154
155
48.1k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
156
38.6k
       ci++, compptr++) {
157
38.6k
    rgroup = (compptr->v_samp_factor * compptr->_DCT_scaled_size) /
158
38.6k
      cinfo->_min_DCT_scaled_size; /* height of a row group of component */
159
    /* Get space for pointer lists --- M+4 row groups in each list.
160
     * We alloc both pointer lists with one call to save a few cycles.
161
     */
162
38.6k
    xbuf = (_JSAMPARRAY)
163
38.6k
      (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_IMAGE,
164
38.6k
                                  2 * (rgroup * (M + 4)) * sizeof(_JSAMPROW));
165
38.6k
    xbuf += rgroup;             /* want one row group at negative offsets */
166
38.6k
    main_ptr->xbuffer[0][ci] = xbuf;
167
38.6k
    xbuf += rgroup * (M + 4);
168
38.6k
    main_ptr->xbuffer[1][ci] = xbuf;
169
38.6k
  }
170
9.49k
}
Unexecuted instantiation: jdmainct-16.c:alloc_funny_pointers
171
172
173
LOCAL(void)
174
make_funny_pointers(j_decompress_ptr cinfo)
175
/* Create the funny pointer lists discussed in the comments above.
176
 * The actual workspace is already allocated (in main_ptr->buffer),
177
 * and the space for the pointer lists is allocated too.
178
 * This routine just fills in the curiously ordered lists.
179
 * This will be repeated at the beginning of each pass.
180
 */
181
25.0k
{
182
25.0k
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
183
25.0k
  int ci, i, rgroup;
184
25.0k
  int M = cinfo->_min_DCT_scaled_size;
185
25.0k
  jpeg_component_info *compptr;
186
25.0k
  _JSAMPARRAY buf, xbuf0, xbuf1;
187
188
106k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
189
81.4k
       ci++, compptr++) {
190
81.4k
    rgroup = (compptr->v_samp_factor * compptr->_DCT_scaled_size) /
191
81.4k
      cinfo->_min_DCT_scaled_size; /* height of a row group of component */
192
81.4k
    xbuf0 = main_ptr->xbuffer[0][ci];
193
81.4k
    xbuf1 = main_ptr->xbuffer[1][ci];
194
    /* First copy the workspace pointers as-is */
195
81.4k
    buf = main_ptr->buffer[ci];
196
1.55M
    for (i = 0; i < rgroup * (M + 2); i++) {
197
1.47M
      xbuf0[i] = xbuf1[i] = buf[i];
198
1.47M
    }
199
    /* In the second list, put the last four row groups in swapped order */
200
376k
    for (i = 0; i < rgroup * 2; i++) {
201
294k
      xbuf1[rgroup * (M - 2) + i] = buf[rgroup * M + i];
202
294k
      xbuf1[rgroup * M + i] = buf[rgroup * (M - 2) + i];
203
294k
    }
204
    /* The wraparound pointers at top and bottom will be filled later
205
     * (see set_wraparound_pointers, below).  Initially we want the "above"
206
     * pointers to duplicate the first actual data line.  This only needs
207
     * to happen in xbuffer[0].
208
     */
209
228k
    for (i = 0; i < rgroup; i++) {
210
147k
      xbuf0[i - rgroup] = xbuf0[0];
211
147k
    }
212
81.4k
  }
213
25.0k
}
jdmainct-8.c:make_funny_pointers
Line
Count
Source
181
22.7k
{
182
22.7k
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
183
22.7k
  int ci, i, rgroup;
184
22.7k
  int M = cinfo->_min_DCT_scaled_size;
185
22.7k
  jpeg_component_info *compptr;
186
22.7k
  _JSAMPARRAY buf, xbuf0, xbuf1;
187
188
95.4k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
189
72.7k
       ci++, compptr++) {
190
72.7k
    rgroup = (compptr->v_samp_factor * compptr->_DCT_scaled_size) /
191
72.7k
      cinfo->_min_DCT_scaled_size; /* height of a row group of component */
192
72.7k
    xbuf0 = main_ptr->xbuffer[0][ci];
193
72.7k
    xbuf1 = main_ptr->xbuffer[1][ci];
194
    /* First copy the workspace pointers as-is */
195
72.7k
    buf = main_ptr->buffer[ci];
196
1.38M
    for (i = 0; i < rgroup * (M + 2); i++) {
197
1.31M
      xbuf0[i] = xbuf1[i] = buf[i];
198
1.31M
    }
199
    /* In the second list, put the last four row groups in swapped order */
200
335k
    for (i = 0; i < rgroup * 2; i++) {
201
263k
      xbuf1[rgroup * (M - 2) + i] = buf[rgroup * M + i];
202
263k
      xbuf1[rgroup * M + i] = buf[rgroup * (M - 2) + i];
203
263k
    }
204
    /* The wraparound pointers at top and bottom will be filled later
205
     * (see set_wraparound_pointers, below).  Initially we want the "above"
206
     * pointers to duplicate the first actual data line.  This only needs
207
     * to happen in xbuffer[0].
208
     */
209
204k
    for (i = 0; i < rgroup; i++) {
210
131k
      xbuf0[i - rgroup] = xbuf0[0];
211
131k
    }
212
72.7k
  }
213
22.7k
}
jdmainct-12.c:make_funny_pointers
Line
Count
Source
181
2.26k
{
182
2.26k
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
183
2.26k
  int ci, i, rgroup;
184
2.26k
  int M = cinfo->_min_DCT_scaled_size;
185
2.26k
  jpeg_component_info *compptr;
186
2.26k
  _JSAMPARRAY buf, xbuf0, xbuf1;
187
188
10.9k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
189
8.72k
       ci++, compptr++) {
190
8.72k
    rgroup = (compptr->v_samp_factor * compptr->_DCT_scaled_size) /
191
8.72k
      cinfo->_min_DCT_scaled_size; /* height of a row group of component */
192
8.72k
    xbuf0 = main_ptr->xbuffer[0][ci];
193
8.72k
    xbuf1 = main_ptr->xbuffer[1][ci];
194
    /* First copy the workspace pointers as-is */
195
8.72k
    buf = main_ptr->buffer[ci];
196
167k
    for (i = 0; i < rgroup * (M + 2); i++) {
197
158k
      xbuf0[i] = xbuf1[i] = buf[i];
198
158k
    }
199
    /* In the second list, put the last four row groups in swapped order */
200
40.5k
    for (i = 0; i < rgroup * 2; i++) {
201
31.7k
      xbuf1[rgroup * (M - 2) + i] = buf[rgroup * M + i];
202
31.7k
      xbuf1[rgroup * M + i] = buf[rgroup * (M - 2) + i];
203
31.7k
    }
204
    /* The wraparound pointers at top and bottom will be filled later
205
     * (see set_wraparound_pointers, below).  Initially we want the "above"
206
     * pointers to duplicate the first actual data line.  This only needs
207
     * to happen in xbuffer[0].
208
     */
209
24.6k
    for (i = 0; i < rgroup; i++) {
210
15.8k
      xbuf0[i - rgroup] = xbuf0[0];
211
15.8k
    }
212
8.72k
  }
213
2.26k
}
Unexecuted instantiation: jdmainct-16.c:make_funny_pointers
214
215
216
LOCAL(void)
217
set_bottom_pointers(j_decompress_ptr cinfo)
218
/* Change the pointer lists to duplicate the last sample row at the bottom
219
 * of the image.  whichptr indicates which xbuffer holds the final iMCU row.
220
 * Also sets rowgroups_avail to indicate number of nondummy row groups in row.
221
 */
222
24.0k
{
223
24.0k
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
224
24.0k
  int ci, i, rgroup, iMCUheight, rows_left;
225
24.0k
  jpeg_component_info *compptr;
226
24.0k
  _JSAMPARRAY xbuf;
227
228
99.5k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
229
75.4k
       ci++, compptr++) {
230
    /* Count sample rows in one iMCU row and in one row group */
231
75.4k
    iMCUheight = compptr->v_samp_factor * compptr->_DCT_scaled_size;
232
75.4k
    rgroup = iMCUheight / cinfo->_min_DCT_scaled_size;
233
    /* Count nondummy sample rows remaining for this component */
234
75.4k
    rows_left = (int)(compptr->downsampled_height % (JDIMENSION)iMCUheight);
235
75.4k
    if (rows_left == 0) rows_left = iMCUheight;
236
    /* Count nondummy row groups.  Should get same answer for each component,
237
     * so we need only do it once.
238
     */
239
75.4k
    if (ci == 0) {
240
24.0k
      main_ptr->rowgroups_avail = (JDIMENSION)((rows_left - 1) / rgroup + 1);
241
24.0k
    }
242
    /* Duplicate the last real sample row rgroup*2 times; this pads out the
243
     * last partial rowgroup and ensures at least one full rowgroup of context.
244
     */
245
75.4k
    xbuf = main_ptr->xbuffer[main_ptr->whichptr][ci];
246
351k
    for (i = 0; i < rgroup * 2; i++) {
247
276k
      xbuf[rows_left + i] = xbuf[rows_left - 1];
248
276k
    }
249
75.4k
  }
250
24.0k
}
jdmainct-8.c:set_bottom_pointers
Line
Count
Source
222
22.1k
{
223
22.1k
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
224
22.1k
  int ci, i, rgroup, iMCUheight, rows_left;
225
22.1k
  jpeg_component_info *compptr;
226
22.1k
  _JSAMPARRAY xbuf;
227
228
91.1k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
229
69.0k
       ci++, compptr++) {
230
    /* Count sample rows in one iMCU row and in one row group */
231
69.0k
    iMCUheight = compptr->v_samp_factor * compptr->_DCT_scaled_size;
232
69.0k
    rgroup = iMCUheight / cinfo->_min_DCT_scaled_size;
233
    /* Count nondummy sample rows remaining for this component */
234
69.0k
    rows_left = (int)(compptr->downsampled_height % (JDIMENSION)iMCUheight);
235
69.0k
    if (rows_left == 0) rows_left = iMCUheight;
236
    /* Count nondummy row groups.  Should get same answer for each component,
237
     * so we need only do it once.
238
     */
239
69.0k
    if (ci == 0) {
240
22.1k
      main_ptr->rowgroups_avail = (JDIMENSION)((rows_left - 1) / rgroup + 1);
241
22.1k
    }
242
    /* Duplicate the last real sample row rgroup*2 times; this pads out the
243
     * last partial rowgroup and ensures at least one full rowgroup of context.
244
     */
245
69.0k
    xbuf = main_ptr->xbuffer[main_ptr->whichptr][ci];
246
320k
    for (i = 0; i < rgroup * 2; i++) {
247
251k
      xbuf[rows_left + i] = xbuf[rows_left - 1];
248
251k
    }
249
69.0k
  }
250
22.1k
}
jdmainct-12.c:set_bottom_pointers
Line
Count
Source
222
1.93k
{
223
1.93k
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
224
1.93k
  int ci, i, rgroup, iMCUheight, rows_left;
225
1.93k
  jpeg_component_info *compptr;
226
1.93k
  _JSAMPARRAY xbuf;
227
228
8.39k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
229
6.46k
       ci++, compptr++) {
230
    /* Count sample rows in one iMCU row and in one row group */
231
6.46k
    iMCUheight = compptr->v_samp_factor * compptr->_DCT_scaled_size;
232
6.46k
    rgroup = iMCUheight / cinfo->_min_DCT_scaled_size;
233
    /* Count nondummy sample rows remaining for this component */
234
6.46k
    rows_left = (int)(compptr->downsampled_height % (JDIMENSION)iMCUheight);
235
6.46k
    if (rows_left == 0) rows_left = iMCUheight;
236
    /* Count nondummy row groups.  Should get same answer for each component,
237
     * so we need only do it once.
238
     */
239
6.46k
    if (ci == 0) {
240
1.93k
      main_ptr->rowgroups_avail = (JDIMENSION)((rows_left - 1) / rgroup + 1);
241
1.93k
    }
242
    /* Duplicate the last real sample row rgroup*2 times; this pads out the
243
     * last partial rowgroup and ensures at least one full rowgroup of context.
244
     */
245
6.46k
    xbuf = main_ptr->xbuffer[main_ptr->whichptr][ci];
246
31.2k
    for (i = 0; i < rgroup * 2; i++) {
247
24.7k
      xbuf[rows_left + i] = xbuf[rows_left - 1];
248
24.7k
    }
249
6.46k
  }
250
1.93k
}
Unexecuted instantiation: jdmainct-16.c:set_bottom_pointers
251
252
253
/*
254
 * Initialize for a processing pass.
255
 */
256
257
METHODDEF(void)
258
start_pass_main(j_decompress_ptr cinfo, J_BUF_MODE pass_mode)
259
95.6k
{
260
95.6k
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
261
262
95.6k
  switch (pass_mode) {
263
95.6k
  case JBUF_PASS_THRU:
264
95.6k
    if (cinfo->upsample->need_context_rows) {
265
25.0k
      main_ptr->pub._process_data = process_data_context_main;
266
25.0k
      make_funny_pointers(cinfo); /* Create the xbuffer[] lists */
267
25.0k
      main_ptr->whichptr = 0;   /* Read first iMCU row into xbuffer[0] */
268
25.0k
      main_ptr->context_state = CTX_PREPARE_FOR_IMCU;
269
25.0k
      main_ptr->iMCU_row_ctr = 0;
270
70.6k
    } else {
271
      /* Simple case with no context needed */
272
70.6k
      main_ptr->pub._process_data = process_data_simple_main;
273
70.6k
    }
274
95.6k
    main_ptr->buffer_full = FALSE;      /* Mark buffer empty */
275
95.6k
    main_ptr->rowgroup_ctr = 0;
276
95.6k
    break;
277
0
#ifdef QUANT_2PASS_SUPPORTED
278
0
  case JBUF_CRANK_DEST:
279
    /* For last pass of 2-pass quantization, just crank the postprocessor */
280
0
    main_ptr->pub._process_data = process_data_crank_post;
281
0
    break;
282
0
#endif
283
0
  default:
284
0
    ERREXIT(cinfo, JERR_BAD_BUFFER_MODE);
285
0
    break;
286
95.6k
  }
287
95.6k
}
jdmainct-8.c:start_pass_main
Line
Count
Source
259
77.7k
{
260
77.7k
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
261
262
77.7k
  switch (pass_mode) {
263
77.7k
  case JBUF_PASS_THRU:
264
77.7k
    if (cinfo->upsample->need_context_rows) {
265
22.7k
      main_ptr->pub._process_data = process_data_context_main;
266
22.7k
      make_funny_pointers(cinfo); /* Create the xbuffer[] lists */
267
22.7k
      main_ptr->whichptr = 0;   /* Read first iMCU row into xbuffer[0] */
268
22.7k
      main_ptr->context_state = CTX_PREPARE_FOR_IMCU;
269
22.7k
      main_ptr->iMCU_row_ctr = 0;
270
54.9k
    } else {
271
      /* Simple case with no context needed */
272
54.9k
      main_ptr->pub._process_data = process_data_simple_main;
273
54.9k
    }
274
77.7k
    main_ptr->buffer_full = FALSE;      /* Mark buffer empty */
275
77.7k
    main_ptr->rowgroup_ctr = 0;
276
77.7k
    break;
277
0
#ifdef QUANT_2PASS_SUPPORTED
278
0
  case JBUF_CRANK_DEST:
279
    /* For last pass of 2-pass quantization, just crank the postprocessor */
280
0
    main_ptr->pub._process_data = process_data_crank_post;
281
0
    break;
282
0
#endif
283
0
  default:
284
0
    ERREXIT(cinfo, JERR_BAD_BUFFER_MODE);
285
0
    break;
286
77.7k
  }
287
77.7k
}
jdmainct-12.c:start_pass_main
Line
Count
Source
259
12.5k
{
260
12.5k
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
261
262
12.5k
  switch (pass_mode) {
263
12.5k
  case JBUF_PASS_THRU:
264
12.5k
    if (cinfo->upsample->need_context_rows) {
265
2.26k
      main_ptr->pub._process_data = process_data_context_main;
266
2.26k
      make_funny_pointers(cinfo); /* Create the xbuffer[] lists */
267
2.26k
      main_ptr->whichptr = 0;   /* Read first iMCU row into xbuffer[0] */
268
2.26k
      main_ptr->context_state = CTX_PREPARE_FOR_IMCU;
269
2.26k
      main_ptr->iMCU_row_ctr = 0;
270
10.2k
    } else {
271
      /* Simple case with no context needed */
272
10.2k
      main_ptr->pub._process_data = process_data_simple_main;
273
10.2k
    }
274
12.5k
    main_ptr->buffer_full = FALSE;      /* Mark buffer empty */
275
12.5k
    main_ptr->rowgroup_ctr = 0;
276
12.5k
    break;
277
0
#ifdef QUANT_2PASS_SUPPORTED
278
0
  case JBUF_CRANK_DEST:
279
    /* For last pass of 2-pass quantization, just crank the postprocessor */
280
0
    main_ptr->pub._process_data = process_data_crank_post;
281
0
    break;
282
0
#endif
283
0
  default:
284
0
    ERREXIT(cinfo, JERR_BAD_BUFFER_MODE);
285
0
    break;
286
12.5k
  }
287
12.5k
}
jdmainct-16.c:start_pass_main
Line
Count
Source
259
5.41k
{
260
5.41k
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
261
262
5.41k
  switch (pass_mode) {
263
5.41k
  case JBUF_PASS_THRU:
264
5.41k
    if (cinfo->upsample->need_context_rows) {
265
0
      main_ptr->pub._process_data = process_data_context_main;
266
0
      make_funny_pointers(cinfo); /* Create the xbuffer[] lists */
267
0
      main_ptr->whichptr = 0;   /* Read first iMCU row into xbuffer[0] */
268
0
      main_ptr->context_state = CTX_PREPARE_FOR_IMCU;
269
0
      main_ptr->iMCU_row_ctr = 0;
270
5.41k
    } else {
271
      /* Simple case with no context needed */
272
5.41k
      main_ptr->pub._process_data = process_data_simple_main;
273
5.41k
    }
274
5.41k
    main_ptr->buffer_full = FALSE;      /* Mark buffer empty */
275
5.41k
    main_ptr->rowgroup_ctr = 0;
276
5.41k
    break;
277
0
#ifdef QUANT_2PASS_SUPPORTED
278
0
  case JBUF_CRANK_DEST:
279
    /* For last pass of 2-pass quantization, just crank the postprocessor */
280
0
    main_ptr->pub._process_data = process_data_crank_post;
281
0
    break;
282
0
#endif
283
0
  default:
284
0
    ERREXIT(cinfo, JERR_BAD_BUFFER_MODE);
285
0
    break;
286
5.41k
  }
287
5.41k
}
288
289
290
/*
291
 * Process some data.
292
 * This handles the simple case where no context is required.
293
 */
294
295
METHODDEF(void)
296
process_data_simple_main(j_decompress_ptr cinfo, _JSAMPARRAY output_buf,
297
                         JDIMENSION *out_row_ctr, JDIMENSION out_rows_avail)
298
10.5M
{
299
10.5M
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
300
10.5M
  JDIMENSION rowgroups_avail;
301
302
  /* Read input data if we haven't filled the main buffer yet */
303
10.5M
  if (!main_ptr->buffer_full) {
304
1.49M
    if (!(*cinfo->coef->_decompress_data) (cinfo, main_ptr->buffer))
305
0
      return;                   /* suspension forced, can do nothing more */
306
1.49M
    main_ptr->buffer_full = TRUE;       /* OK, we have an iMCU row to work with */
307
1.49M
  }
308
309
  /* There are always min_DCT_scaled_size row groups in an iMCU row. */
310
10.5M
  rowgroups_avail = (JDIMENSION)cinfo->_min_DCT_scaled_size;
311
  /* Note: at the bottom of the image, we may pass extra garbage row groups
312
   * to the postprocessor.  The postprocessor has to check for bottom
313
   * of image anyway (at row resolution), so no point in us doing it too.
314
   */
315
316
  /* Feed the postprocessor */
317
10.5M
  (*cinfo->post->_post_process_data) (cinfo, main_ptr->buffer,
318
10.5M
                                      &main_ptr->rowgroup_ctr, rowgroups_avail,
319
10.5M
                                      output_buf, out_row_ctr, out_rows_avail);
320
321
  /* Has postprocessor consumed all the data yet? If so, mark buffer empty */
322
10.5M
  if (main_ptr->rowgroup_ctr >= rowgroups_avail) {
323
1.44M
    main_ptr->buffer_full = FALSE;
324
1.44M
    main_ptr->rowgroup_ctr = 0;
325
1.44M
  }
326
10.5M
}
jdmainct-8.c:process_data_simple_main
Line
Count
Source
298
9.16M
{
299
9.16M
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
300
9.16M
  JDIMENSION rowgroups_avail;
301
302
  /* Read input data if we haven't filled the main buffer yet */
303
9.16M
  if (!main_ptr->buffer_full) {
304
1.14M
    if (!(*cinfo->coef->_decompress_data) (cinfo, main_ptr->buffer))
305
0
      return;                   /* suspension forced, can do nothing more */
306
1.14M
    main_ptr->buffer_full = TRUE;       /* OK, we have an iMCU row to work with */
307
1.14M
  }
308
309
  /* There are always min_DCT_scaled_size row groups in an iMCU row. */
310
9.16M
  rowgroups_avail = (JDIMENSION)cinfo->_min_DCT_scaled_size;
311
  /* Note: at the bottom of the image, we may pass extra garbage row groups
312
   * to the postprocessor.  The postprocessor has to check for bottom
313
   * of image anyway (at row resolution), so no point in us doing it too.
314
   */
315
316
  /* Feed the postprocessor */
317
9.16M
  (*cinfo->post->_post_process_data) (cinfo, main_ptr->buffer,
318
9.16M
                                      &main_ptr->rowgroup_ctr, rowgroups_avail,
319
9.16M
                                      output_buf, out_row_ctr, out_rows_avail);
320
321
  /* Has postprocessor consumed all the data yet? If so, mark buffer empty */
322
9.16M
  if (main_ptr->rowgroup_ctr >= rowgroups_avail) {
323
1.09M
    main_ptr->buffer_full = FALSE;
324
1.09M
    main_ptr->rowgroup_ctr = 0;
325
1.09M
  }
326
9.16M
}
jdmainct-12.c:process_data_simple_main
Line
Count
Source
298
810k
{
299
810k
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
300
810k
  JDIMENSION rowgroups_avail;
301
302
  /* Read input data if we haven't filled the main buffer yet */
303
810k
  if (!main_ptr->buffer_full) {
304
137k
    if (!(*cinfo->coef->_decompress_data) (cinfo, main_ptr->buffer))
305
0
      return;                   /* suspension forced, can do nothing more */
306
137k
    main_ptr->buffer_full = TRUE;       /* OK, we have an iMCU row to work with */
307
137k
  }
308
309
  /* There are always min_DCT_scaled_size row groups in an iMCU row. */
310
810k
  rowgroups_avail = (JDIMENSION)cinfo->_min_DCT_scaled_size;
311
  /* Note: at the bottom of the image, we may pass extra garbage row groups
312
   * to the postprocessor.  The postprocessor has to check for bottom
313
   * of image anyway (at row resolution), so no point in us doing it too.
314
   */
315
316
  /* Feed the postprocessor */
317
810k
  (*cinfo->post->_post_process_data) (cinfo, main_ptr->buffer,
318
810k
                                      &main_ptr->rowgroup_ctr, rowgroups_avail,
319
810k
                                      output_buf, out_row_ctr, out_rows_avail);
320
321
  /* Has postprocessor consumed all the data yet? If so, mark buffer empty */
322
810k
  if (main_ptr->rowgroup_ctr >= rowgroups_avail) {
323
129k
    main_ptr->buffer_full = FALSE;
324
129k
    main_ptr->rowgroup_ctr = 0;
325
129k
  }
326
810k
}
jdmainct-16.c:process_data_simple_main
Line
Count
Source
298
576k
{
299
576k
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
300
576k
  JDIMENSION rowgroups_avail;
301
302
  /* Read input data if we haven't filled the main buffer yet */
303
576k
  if (!main_ptr->buffer_full) {
304
219k
    if (!(*cinfo->coef->_decompress_data) (cinfo, main_ptr->buffer))
305
0
      return;                   /* suspension forced, can do nothing more */
306
219k
    main_ptr->buffer_full = TRUE;       /* OK, we have an iMCU row to work with */
307
219k
  }
308
309
  /* There are always min_DCT_scaled_size row groups in an iMCU row. */
310
576k
  rowgroups_avail = (JDIMENSION)cinfo->_min_DCT_scaled_size;
311
  /* Note: at the bottom of the image, we may pass extra garbage row groups
312
   * to the postprocessor.  The postprocessor has to check for bottom
313
   * of image anyway (at row resolution), so no point in us doing it too.
314
   */
315
316
  /* Feed the postprocessor */
317
576k
  (*cinfo->post->_post_process_data) (cinfo, main_ptr->buffer,
318
576k
                                      &main_ptr->rowgroup_ctr, rowgroups_avail,
319
576k
                                      output_buf, out_row_ctr, out_rows_avail);
320
321
  /* Has postprocessor consumed all the data yet? If so, mark buffer empty */
322
576k
  if (main_ptr->rowgroup_ctr >= rowgroups_avail) {
323
214k
    main_ptr->buffer_full = FALSE;
324
214k
    main_ptr->rowgroup_ctr = 0;
325
214k
  }
326
576k
}
327
328
329
/*
330
 * Process some data.
331
 * This handles the case where context rows must be provided.
332
 */
333
334
METHODDEF(void)
335
process_data_context_main(j_decompress_ptr cinfo, _JSAMPARRAY output_buf,
336
                          JDIMENSION *out_row_ctr, JDIMENSION out_rows_avail)
337
3.00M
{
338
3.00M
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
339
340
  /* Read input data if we haven't filled the main buffer yet */
341
3.00M
  if (!main_ptr->buffer_full) {
342
159k
    if (!(*cinfo->coef->_decompress_data) (cinfo,
343
159k
                                           main_ptr->xbuffer[main_ptr->whichptr]))
344
0
      return;                   /* suspension forced, can do nothing more */
345
159k
    main_ptr->buffer_full = TRUE;       /* OK, we have an iMCU row to work with */
346
159k
    main_ptr->iMCU_row_ctr++;   /* count rows received */
347
159k
  }
348
349
  /* Postprocessor typically will not swallow all the input data it is handed
350
   * in one call (due to filling the output buffer first).  Must be prepared
351
   * to exit and restart.  This switch lets us keep track of how far we got.
352
   * Note that each case falls through to the next on successful completion.
353
   */
354
3.00M
  switch (main_ptr->context_state) {
355
350k
  case CTX_POSTPONED_ROW:
356
    /* Call postprocessor using previously set pointers for postponed row */
357
350k
    (*cinfo->post->_post_process_data) (cinfo,
358
350k
                                        main_ptr->xbuffer[main_ptr->whichptr],
359
350k
                                        &main_ptr->rowgroup_ctr,
360
350k
                                        main_ptr->rowgroups_avail, output_buf,
361
350k
                                        out_row_ctr, out_rows_avail);
362
350k
    if (main_ptr->rowgroup_ctr < main_ptr->rowgroups_avail)
363
215k
      return;                   /* Need to suspend */
364
135k
    main_ptr->context_state = CTX_PREPARE_FOR_IMCU;
365
135k
    if (*out_row_ctr >= out_rows_avail)
366
135k
      return;                   /* Postprocessor exactly filled output buf */
367
0
    FALLTHROUGH                 /*FALLTHROUGH*/
368
159k
  case CTX_PREPARE_FOR_IMCU:
369
    /* Prepare to process first M-1 row groups of this iMCU row */
370
159k
    main_ptr->rowgroup_ctr = 0;
371
159k
    main_ptr->rowgroups_avail = (JDIMENSION)(cinfo->_min_DCT_scaled_size - 1);
372
    /* Check for bottom of image: if so, tweak pointers to "duplicate"
373
     * the last sample row, and adjust rowgroups_avail to ignore padding rows.
374
     */
375
159k
    if (main_ptr->iMCU_row_ctr == cinfo->total_iMCU_rows)
376
24.0k
      set_bottom_pointers(cinfo);
377
159k
    main_ptr->context_state = CTX_PROCESS_IMCU;
378
159k
    FALLTHROUGH                 /*FALLTHROUGH*/
379
2.65M
  case CTX_PROCESS_IMCU:
380
    /* Call postprocessor using previously set pointers */
381
2.65M
    (*cinfo->post->_post_process_data) (cinfo,
382
2.65M
                                        main_ptr->xbuffer[main_ptr->whichptr],
383
2.65M
                                        &main_ptr->rowgroup_ctr,
384
2.65M
                                        main_ptr->rowgroups_avail, output_buf,
385
2.65M
                                        out_row_ctr, out_rows_avail);
386
2.65M
    if (main_ptr->rowgroup_ctr < main_ptr->rowgroups_avail)
387
2.51M
      return;                   /* Need to suspend */
388
    /* After the first iMCU, change wraparound pointers to normal state */
389
143k
    if (main_ptr->iMCU_row_ctr == 1)
390
14.1k
      set_wraparound_pointers(cinfo);
391
    /* Prepare to load new iMCU row using other xbuffer list */
392
143k
    main_ptr->whichptr ^= 1;    /* 0=>1 or 1=>0 */
393
143k
    main_ptr->buffer_full = FALSE;
394
    /* Still need to process last row group of this iMCU row, */
395
    /* which is saved at index M+1 of the other xbuffer */
396
143k
    main_ptr->rowgroup_ctr = (JDIMENSION)(cinfo->_min_DCT_scaled_size + 1);
397
143k
    main_ptr->rowgroups_avail = (JDIMENSION)(cinfo->_min_DCT_scaled_size + 2);
398
143k
    main_ptr->context_state = CTX_POSTPONED_ROW;
399
3.00M
  }
400
3.00M
}
jdmainct-8.c:process_data_context_main
Line
Count
Source
337
2.53M
{
338
2.53M
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
339
340
  /* Read input data if we haven't filled the main buffer yet */
341
2.53M
  if (!main_ptr->buffer_full) {
342
135k
    if (!(*cinfo->coef->_decompress_data) (cinfo,
343
135k
                                           main_ptr->xbuffer[main_ptr->whichptr]))
344
0
      return;                   /* suspension forced, can do nothing more */
345
135k
    main_ptr->buffer_full = TRUE;       /* OK, we have an iMCU row to work with */
346
135k
    main_ptr->iMCU_row_ctr++;   /* count rows received */
347
135k
  }
348
349
  /* Postprocessor typically will not swallow all the input data it is handed
350
   * in one call (due to filling the output buffer first).  Must be prepared
351
   * to exit and restart.  This switch lets us keep track of how far we got.
352
   * Note that each case falls through to the next on successful completion.
353
   */
354
2.53M
  switch (main_ptr->context_state) {
355
295k
  case CTX_POSTPONED_ROW:
356
    /* Call postprocessor using previously set pointers for postponed row */
357
295k
    (*cinfo->post->_post_process_data) (cinfo,
358
295k
                                        main_ptr->xbuffer[main_ptr->whichptr],
359
295k
                                        &main_ptr->rowgroup_ctr,
360
295k
                                        main_ptr->rowgroups_avail, output_buf,
361
295k
                                        out_row_ctr, out_rows_avail);
362
295k
    if (main_ptr->rowgroup_ctr < main_ptr->rowgroups_avail)
363
182k
      return;                   /* Need to suspend */
364
113k
    main_ptr->context_state = CTX_PREPARE_FOR_IMCU;
365
113k
    if (*out_row_ctr >= out_rows_avail)
366
113k
      return;                   /* Postprocessor exactly filled output buf */
367
0
    FALLTHROUGH                 /*FALLTHROUGH*/
368
135k
  case CTX_PREPARE_FOR_IMCU:
369
    /* Prepare to process first M-1 row groups of this iMCU row */
370
135k
    main_ptr->rowgroup_ctr = 0;
371
135k
    main_ptr->rowgroups_avail = (JDIMENSION)(cinfo->_min_DCT_scaled_size - 1);
372
    /* Check for bottom of image: if so, tweak pointers to "duplicate"
373
     * the last sample row, and adjust rowgroups_avail to ignore padding rows.
374
     */
375
135k
    if (main_ptr->iMCU_row_ctr == cinfo->total_iMCU_rows)
376
22.1k
      set_bottom_pointers(cinfo);
377
135k
    main_ptr->context_state = CTX_PROCESS_IMCU;
378
135k
    FALLTHROUGH                 /*FALLTHROUGH*/
379
2.24M
  case CTX_PROCESS_IMCU:
380
    /* Call postprocessor using previously set pointers */
381
2.24M
    (*cinfo->post->_post_process_data) (cinfo,
382
2.24M
                                        main_ptr->xbuffer[main_ptr->whichptr],
383
2.24M
                                        &main_ptr->rowgroup_ctr,
384
2.24M
                                        main_ptr->rowgroups_avail, output_buf,
385
2.24M
                                        out_row_ctr, out_rows_avail);
386
2.24M
    if (main_ptr->rowgroup_ctr < main_ptr->rowgroups_avail)
387
2.12M
      return;                   /* Need to suspend */
388
    /* After the first iMCU, change wraparound pointers to normal state */
389
120k
    if (main_ptr->iMCU_row_ctr == 1)
390
12.4k
      set_wraparound_pointers(cinfo);
391
    /* Prepare to load new iMCU row using other xbuffer list */
392
120k
    main_ptr->whichptr ^= 1;    /* 0=>1 or 1=>0 */
393
120k
    main_ptr->buffer_full = FALSE;
394
    /* Still need to process last row group of this iMCU row, */
395
    /* which is saved at index M+1 of the other xbuffer */
396
120k
    main_ptr->rowgroup_ctr = (JDIMENSION)(cinfo->_min_DCT_scaled_size + 1);
397
120k
    main_ptr->rowgroups_avail = (JDIMENSION)(cinfo->_min_DCT_scaled_size + 2);
398
120k
    main_ptr->context_state = CTX_POSTPONED_ROW;
399
2.53M
  }
400
2.53M
}
jdmainct-12.c:process_data_context_main
Line
Count
Source
337
469k
{
338
469k
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
339
340
  /* Read input data if we haven't filled the main buffer yet */
341
469k
  if (!main_ptr->buffer_full) {
342
24.3k
    if (!(*cinfo->coef->_decompress_data) (cinfo,
343
24.3k
                                           main_ptr->xbuffer[main_ptr->whichptr]))
344
0
      return;                   /* suspension forced, can do nothing more */
345
24.3k
    main_ptr->buffer_full = TRUE;       /* OK, we have an iMCU row to work with */
346
24.3k
    main_ptr->iMCU_row_ctr++;   /* count rows received */
347
24.3k
  }
348
349
  /* Postprocessor typically will not swallow all the input data it is handed
350
   * in one call (due to filling the output buffer first).  Must be prepared
351
   * to exit and restart.  This switch lets us keep track of how far we got.
352
   * Note that each case falls through to the next on successful completion.
353
   */
354
469k
  switch (main_ptr->context_state) {
355
55.3k
  case CTX_POSTPONED_ROW:
356
    /* Call postprocessor using previously set pointers for postponed row */
357
55.3k
    (*cinfo->post->_post_process_data) (cinfo,
358
55.3k
                                        main_ptr->xbuffer[main_ptr->whichptr],
359
55.3k
                                        &main_ptr->rowgroup_ctr,
360
55.3k
                                        main_ptr->rowgroups_avail, output_buf,
361
55.3k
                                        out_row_ctr, out_rows_avail);
362
55.3k
    if (main_ptr->rowgroup_ctr < main_ptr->rowgroups_avail)
363
32.9k
      return;                   /* Need to suspend */
364
22.3k
    main_ptr->context_state = CTX_PREPARE_FOR_IMCU;
365
22.3k
    if (*out_row_ctr >= out_rows_avail)
366
22.3k
      return;                   /* Postprocessor exactly filled output buf */
367
0
    FALLTHROUGH                 /*FALLTHROUGH*/
368
24.3k
  case CTX_PREPARE_FOR_IMCU:
369
    /* Prepare to process first M-1 row groups of this iMCU row */
370
24.3k
    main_ptr->rowgroup_ctr = 0;
371
24.3k
    main_ptr->rowgroups_avail = (JDIMENSION)(cinfo->_min_DCT_scaled_size - 1);
372
    /* Check for bottom of image: if so, tweak pointers to "duplicate"
373
     * the last sample row, and adjust rowgroups_avail to ignore padding rows.
374
     */
375
24.3k
    if (main_ptr->iMCU_row_ctr == cinfo->total_iMCU_rows)
376
1.93k
      set_bottom_pointers(cinfo);
377
24.3k
    main_ptr->context_state = CTX_PROCESS_IMCU;
378
24.3k
    FALLTHROUGH                 /*FALLTHROUGH*/
379
414k
  case CTX_PROCESS_IMCU:
380
    /* Call postprocessor using previously set pointers */
381
414k
    (*cinfo->post->_post_process_data) (cinfo,
382
414k
                                        main_ptr->xbuffer[main_ptr->whichptr],
383
414k
                                        &main_ptr->rowgroup_ctr,
384
414k
                                        main_ptr->rowgroups_avail, output_buf,
385
414k
                                        out_row_ctr, out_rows_avail);
386
414k
    if (main_ptr->rowgroup_ctr < main_ptr->rowgroups_avail)
387
390k
      return;                   /* Need to suspend */
388
    /* After the first iMCU, change wraparound pointers to normal state */
389
23.2k
    if (main_ptr->iMCU_row_ctr == 1)
390
1.73k
      set_wraparound_pointers(cinfo);
391
    /* Prepare to load new iMCU row using other xbuffer list */
392
23.2k
    main_ptr->whichptr ^= 1;    /* 0=>1 or 1=>0 */
393
23.2k
    main_ptr->buffer_full = FALSE;
394
    /* Still need to process last row group of this iMCU row, */
395
    /* which is saved at index M+1 of the other xbuffer */
396
23.2k
    main_ptr->rowgroup_ctr = (JDIMENSION)(cinfo->_min_DCT_scaled_size + 1);
397
23.2k
    main_ptr->rowgroups_avail = (JDIMENSION)(cinfo->_min_DCT_scaled_size + 2);
398
23.2k
    main_ptr->context_state = CTX_POSTPONED_ROW;
399
469k
  }
400
469k
}
Unexecuted instantiation: jdmainct-16.c:process_data_context_main
401
402
403
/*
404
 * Process some data.
405
 * Final pass of two-pass quantization: just call the postprocessor.
406
 * Source data will be the postprocessor controller's internal buffer.
407
 */
408
409
#ifdef QUANT_2PASS_SUPPORTED
410
411
METHODDEF(void)
412
process_data_crank_post(j_decompress_ptr cinfo, _JSAMPARRAY output_buf,
413
                        JDIMENSION *out_row_ctr, JDIMENSION out_rows_avail)
414
0
{
415
0
  (*cinfo->post->_post_process_data) (cinfo, (_JSAMPIMAGE)NULL,
416
0
                                      (JDIMENSION *)NULL, (JDIMENSION)0,
417
0
                                      output_buf, out_row_ctr, out_rows_avail);
418
0
}
Unexecuted instantiation: jdmainct-8.c:process_data_crank_post
Unexecuted instantiation: jdmainct-12.c:process_data_crank_post
Unexecuted instantiation: jdmainct-16.c:process_data_crank_post
419
420
#endif /* QUANT_2PASS_SUPPORTED */
421
422
423
/*
424
 * Initialize main buffer controller.
425
 */
426
427
GLOBAL(void)
428
_jinit_d_main_controller(j_decompress_ptr cinfo, boolean need_full_buffer)
429
142k
{
430
142k
  my_main_ptr main_ptr;
431
142k
  int ci, rgroup, ngroups;
432
142k
  jpeg_component_info *compptr;
433
434
142k
#ifdef D_LOSSLESS_SUPPORTED
435
142k
  if (cinfo->master->lossless) {
436
#if BITS_IN_JSAMPLE == 8
437
22.4k
    if (cinfo->data_precision > BITS_IN_JSAMPLE || cinfo->data_precision < 2)
438
#else
439
20.7k
    if (cinfo->data_precision > BITS_IN_JSAMPLE ||
440
20.7k
        cinfo->data_precision < BITS_IN_JSAMPLE - 3)
441
0
#endif
442
0
      ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
443
43.1k
  } else
444
99.0k
#endif
445
99.0k
  {
446
99.0k
    if (cinfo->data_precision != BITS_IN_JSAMPLE)
447
0
      ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
448
99.0k
  }
449
450
142k
  main_ptr = (my_main_ptr)
451
142k
    (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_IMAGE,
452
142k
                                sizeof(my_main_controller));
453
142k
  memset(main_ptr, 0, sizeof(my_main_controller));
454
142k
  cinfo->main = (struct jpeg_d_main_controller *)main_ptr;
455
142k
  main_ptr->pub.start_pass = start_pass_main;
456
457
142k
  if (need_full_buffer)         /* shouldn't happen */
458
0
    ERREXIT(cinfo, JERR_BAD_BUFFER_MODE);
459
460
  /* Allocate the workspace.
461
   * ngroups is the number of row groups we need.
462
   */
463
142k
  if (cinfo->upsample->need_context_rows) {
464
40.4k
    if (cinfo->_min_DCT_scaled_size < 2) /* unsupported, see comments above */
465
0
      ERREXIT(cinfo, JERR_NOTIMPL);
466
40.4k
    alloc_funny_pointers(cinfo); /* Alloc space for xbuffer[] lists */
467
40.4k
    ngroups = cinfo->_min_DCT_scaled_size + 2;
468
101k
  } else {
469
101k
    ngroups = cinfo->_min_DCT_scaled_size;
470
101k
  }
471
472
638k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
473
496k
       ci++, compptr++) {
474
496k
    rgroup = (compptr->v_samp_factor * compptr->_DCT_scaled_size) /
475
496k
      cinfo->_min_DCT_scaled_size; /* height of a row group of component */
476
496k
    main_ptr->buffer[ci] = (_JSAMPARRAY)(*cinfo->mem->alloc_sarray)
477
496k
                        ((j_common_ptr)cinfo, JPOOL_IMAGE,
478
496k
                         compptr->width_in_blocks * compptr->_DCT_scaled_size,
479
496k
                         (JDIMENSION)(rgroup * ngroups));
480
496k
  }
481
142k
}
jinit_d_main_controller
Line
Count
Source
429
103k
{
430
103k
  my_main_ptr main_ptr;
431
103k
  int ci, rgroup, ngroups;
432
103k
  jpeg_component_info *compptr;
433
434
103k
#ifdef D_LOSSLESS_SUPPORTED
435
103k
  if (cinfo->master->lossless) {
436
22.4k
#if BITS_IN_JSAMPLE == 8
437
22.4k
    if (cinfo->data_precision > BITS_IN_JSAMPLE || cinfo->data_precision < 2)
438
#else
439
    if (cinfo->data_precision > BITS_IN_JSAMPLE ||
440
        cinfo->data_precision < BITS_IN_JSAMPLE - 3)
441
#endif
442
0
      ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
443
22.4k
  } else
444
81.1k
#endif
445
81.1k
  {
446
81.1k
    if (cinfo->data_precision != BITS_IN_JSAMPLE)
447
0
      ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
448
81.1k
  }
449
450
103k
  main_ptr = (my_main_ptr)
451
103k
    (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_IMAGE,
452
103k
                                sizeof(my_main_controller));
453
103k
  memset(main_ptr, 0, sizeof(my_main_controller));
454
103k
  cinfo->main = (struct jpeg_d_main_controller *)main_ptr;
455
103k
  main_ptr->pub.start_pass = start_pass_main;
456
457
103k
  if (need_full_buffer)         /* shouldn't happen */
458
0
    ERREXIT(cinfo, JERR_BAD_BUFFER_MODE);
459
460
  /* Allocate the workspace.
461
   * ngroups is the number of row groups we need.
462
   */
463
103k
  if (cinfo->upsample->need_context_rows) {
464
30.9k
    if (cinfo->_min_DCT_scaled_size < 2) /* unsupported, see comments above */
465
0
      ERREXIT(cinfo, JERR_NOTIMPL);
466
30.9k
    alloc_funny_pointers(cinfo); /* Alloc space for xbuffer[] lists */
467
30.9k
    ngroups = cinfo->_min_DCT_scaled_size + 2;
468
72.6k
  } else {
469
72.6k
    ngroups = cinfo->_min_DCT_scaled_size;
470
72.6k
  }
471
472
421k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
473
317k
       ci++, compptr++) {
474
317k
    rgroup = (compptr->v_samp_factor * compptr->_DCT_scaled_size) /
475
317k
      cinfo->_min_DCT_scaled_size; /* height of a row group of component */
476
317k
    main_ptr->buffer[ci] = (_JSAMPARRAY)(*cinfo->mem->alloc_sarray)
477
317k
                        ((j_common_ptr)cinfo, JPOOL_IMAGE,
478
317k
                         compptr->width_in_blocks * compptr->_DCT_scaled_size,
479
317k
                         (JDIMENSION)(rgroup * ngroups));
480
317k
  }
481
103k
}
j12init_d_main_controller
Line
Count
Source
429
27.2k
{
430
27.2k
  my_main_ptr main_ptr;
431
27.2k
  int ci, rgroup, ngroups;
432
27.2k
  jpeg_component_info *compptr;
433
434
27.2k
#ifdef D_LOSSLESS_SUPPORTED
435
27.2k
  if (cinfo->master->lossless) {
436
#if BITS_IN_JSAMPLE == 8
437
    if (cinfo->data_precision > BITS_IN_JSAMPLE || cinfo->data_precision < 2)
438
#else
439
9.28k
    if (cinfo->data_precision > BITS_IN_JSAMPLE ||
440
9.28k
        cinfo->data_precision < BITS_IN_JSAMPLE - 3)
441
0
#endif
442
0
      ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
443
9.28k
  } else
444
17.9k
#endif
445
17.9k
  {
446
17.9k
    if (cinfo->data_precision != BITS_IN_JSAMPLE)
447
0
      ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
448
17.9k
  }
449
450
27.2k
  main_ptr = (my_main_ptr)
451
27.2k
    (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_IMAGE,
452
27.2k
                                sizeof(my_main_controller));
453
27.2k
  memset(main_ptr, 0, sizeof(my_main_controller));
454
27.2k
  cinfo->main = (struct jpeg_d_main_controller *)main_ptr;
455
27.2k
  main_ptr->pub.start_pass = start_pass_main;
456
457
27.2k
  if (need_full_buffer)         /* shouldn't happen */
458
0
    ERREXIT(cinfo, JERR_BAD_BUFFER_MODE);
459
460
  /* Allocate the workspace.
461
   * ngroups is the number of row groups we need.
462
   */
463
27.2k
  if (cinfo->upsample->need_context_rows) {
464
9.49k
    if (cinfo->_min_DCT_scaled_size < 2) /* unsupported, see comments above */
465
0
      ERREXIT(cinfo, JERR_NOTIMPL);
466
9.49k
    alloc_funny_pointers(cinfo); /* Alloc space for xbuffer[] lists */
467
9.49k
    ngroups = cinfo->_min_DCT_scaled_size + 2;
468
17.7k
  } else {
469
17.7k
    ngroups = cinfo->_min_DCT_scaled_size;
470
17.7k
  }
471
472
139k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
473
112k
       ci++, compptr++) {
474
112k
    rgroup = (compptr->v_samp_factor * compptr->_DCT_scaled_size) /
475
112k
      cinfo->_min_DCT_scaled_size; /* height of a row group of component */
476
112k
    main_ptr->buffer[ci] = (_JSAMPARRAY)(*cinfo->mem->alloc_sarray)
477
112k
                        ((j_common_ptr)cinfo, JPOOL_IMAGE,
478
112k
                         compptr->width_in_blocks * compptr->_DCT_scaled_size,
479
112k
                         (JDIMENSION)(rgroup * ngroups));
480
112k
  }
481
27.2k
}
j16init_d_main_controller
Line
Count
Source
429
11.4k
{
430
11.4k
  my_main_ptr main_ptr;
431
11.4k
  int ci, rgroup, ngroups;
432
11.4k
  jpeg_component_info *compptr;
433
434
11.4k
#ifdef D_LOSSLESS_SUPPORTED
435
11.4k
  if (cinfo->master->lossless) {
436
#if BITS_IN_JSAMPLE == 8
437
    if (cinfo->data_precision > BITS_IN_JSAMPLE || cinfo->data_precision < 2)
438
#else
439
11.4k
    if (cinfo->data_precision > BITS_IN_JSAMPLE ||
440
11.4k
        cinfo->data_precision < BITS_IN_JSAMPLE - 3)
441
0
#endif
442
0
      ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
443
11.4k
  } else
444
0
#endif
445
0
  {
446
0
    if (cinfo->data_precision != BITS_IN_JSAMPLE)
447
0
      ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
448
0
  }
449
450
11.4k
  main_ptr = (my_main_ptr)
451
11.4k
    (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_IMAGE,
452
11.4k
                                sizeof(my_main_controller));
453
11.4k
  memset(main_ptr, 0, sizeof(my_main_controller));
454
11.4k
  cinfo->main = (struct jpeg_d_main_controller *)main_ptr;
455
11.4k
  main_ptr->pub.start_pass = start_pass_main;
456
457
11.4k
  if (need_full_buffer)         /* shouldn't happen */
458
0
    ERREXIT(cinfo, JERR_BAD_BUFFER_MODE);
459
460
  /* Allocate the workspace.
461
   * ngroups is the number of row groups we need.
462
   */
463
11.4k
  if (cinfo->upsample->need_context_rows) {
464
0
    if (cinfo->_min_DCT_scaled_size < 2) /* unsupported, see comments above */
465
0
      ERREXIT(cinfo, JERR_NOTIMPL);
466
0
    alloc_funny_pointers(cinfo); /* Alloc space for xbuffer[] lists */
467
0
    ngroups = cinfo->_min_DCT_scaled_size + 2;
468
11.4k
  } else {
469
11.4k
    ngroups = cinfo->_min_DCT_scaled_size;
470
11.4k
  }
471
472
77.8k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
473
66.3k
       ci++, compptr++) {
474
66.3k
    rgroup = (compptr->v_samp_factor * compptr->_DCT_scaled_size) /
475
66.3k
      cinfo->_min_DCT_scaled_size; /* height of a row group of component */
476
66.3k
    main_ptr->buffer[ci] = (_JSAMPARRAY)(*cinfo->mem->alloc_sarray)
477
66.3k
                        ((j_common_ptr)cinfo, JPOOL_IMAGE,
478
66.3k
                         compptr->width_in_blocks * compptr->_DCT_scaled_size,
479
66.3k
                         (JDIMENSION)(rgroup * ngroups));
480
66.3k
  }
481
11.4k
}
482
483
#endif /* BITS_IN_JSAMPLE != 16 || defined(D_LOSSLESS_SUPPORTED) */