Coverage Report

Created: 2026-06-15 06:19

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libjpeg-turbo/src/jdsample.c
Line
Count
Source
1
/*
2
 * jdsample.c
3
 *
4
 * This file was part of the Independent JPEG Group's software:
5
 * Copyright (C) 1991-1996, Thomas G. Lane.
6
 * libjpeg-turbo Modifications:
7
 * Copyright 2009 Pierre Ossman <ossman@cendio.se> for Cendio AB
8
 * Copyright (C) 2010, 2015-2016, 2022, 2024-2026, D. R. Commander.
9
 * Copyright (C) 2015, Google, Inc.
10
 * Copyright (C) 2019-2020, Arm Limited.
11
 * For conditions of distribution and use, see the accompanying README.ijg
12
 * file.
13
 *
14
 * This file contains upsampling routines.
15
 *
16
 * Upsampling input data is counted in "row groups".  A row group is defined to
17
 * be (v_samp_factor * DCT_scaled_size / min_DCT_scaled_size) sample rows of
18
 * each component.  Upsampling will normally produce max_v_samp_factor rows of
19
 * each component from each row group (but this could vary if the upsampler is
20
 * applying a scale factor of its own).
21
 *
22
 * An excellent reference for image resampling is
23
 *   Digital Image Warping, George Wolberg, 1990.
24
 *   Pub. by IEEE Computer Society Press, Los Alamitos, CA. ISBN 0-8186-8944-7.
25
 */
26
27
#include "jinclude.h"
28
#include "jdsample.h"
29
#ifdef WITH_SIMD
30
#include "../simd/jsimd.h"
31
#endif
32
#include "jpegapicomp.h"
33
#ifdef WITH_PROFILE
34
#include "tjutil.h"
35
#endif
36
37
38
39
#if BITS_IN_JSAMPLE != 16 || defined(D_LOSSLESS_SUPPORTED)
40
41
/*
42
 * Initialize for an upsampling pass.
43
 */
44
45
METHODDEF(void)
46
start_pass_upsample(j_decompress_ptr cinfo)
47
2.02k
{
48
2.02k
  my_upsample_ptr upsample = (my_upsample_ptr)cinfo->upsample;
49
50
  /* Mark the conversion buffer empty */
51
2.02k
  upsample->next_row_out = cinfo->max_v_samp_factor;
52
  /* Initialize total-height counter for detecting bottom of image */
53
2.02k
  upsample->rows_to_go = cinfo->output_height;
54
2.02k
}
jdsample-8.c:start_pass_upsample
Line
Count
Source
47
1.90k
{
48
1.90k
  my_upsample_ptr upsample = (my_upsample_ptr)cinfo->upsample;
49
50
  /* Mark the conversion buffer empty */
51
1.90k
  upsample->next_row_out = cinfo->max_v_samp_factor;
52
  /* Initialize total-height counter for detecting bottom of image */
53
1.90k
  upsample->rows_to_go = cinfo->output_height;
54
1.90k
}
jdsample-12.c:start_pass_upsample
Line
Count
Source
47
111
{
48
111
  my_upsample_ptr upsample = (my_upsample_ptr)cinfo->upsample;
49
50
  /* Mark the conversion buffer empty */
51
111
  upsample->next_row_out = cinfo->max_v_samp_factor;
52
  /* Initialize total-height counter for detecting bottom of image */
53
111
  upsample->rows_to_go = cinfo->output_height;
54
111
}
jdsample-16.c:start_pass_upsample
Line
Count
Source
47
12
{
48
12
  my_upsample_ptr upsample = (my_upsample_ptr)cinfo->upsample;
49
50
  /* Mark the conversion buffer empty */
51
12
  upsample->next_row_out = cinfo->max_v_samp_factor;
52
  /* Initialize total-height counter for detecting bottom of image */
53
12
  upsample->rows_to_go = cinfo->output_height;
54
12
}
55
56
57
/*
58
 * Control routine to do upsampling (and color conversion).
59
 *
60
 * In this version we upsample each component independently.
61
 * We upsample one row group into the conversion buffer, then apply
62
 * color conversion a row at a time.
63
 */
64
65
METHODDEF(void)
66
sep_upsample(j_decompress_ptr cinfo, _JSAMPIMAGE input_buf,
67
             JDIMENSION *in_row_group_ctr, JDIMENSION in_row_groups_avail,
68
             _JSAMPARRAY output_buf, JDIMENSION *out_row_ctr,
69
             JDIMENSION out_rows_avail)
70
536k
{
71
536k
  my_upsample_ptr upsample = (my_upsample_ptr)cinfo->upsample;
72
536k
  int ci;
73
536k
  jpeg_component_info *compptr;
74
536k
  JDIMENSION num_rows;
75
76
  /* Fill the conversion buffer, if it's empty */
77
536k
  if (upsample->next_row_out >= cinfo->max_v_samp_factor) {
78
967k
    for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
79
680k
         ci++, compptr++) {
80
      /* Invoke per-component upsample method.  Notice we pass a POINTER
81
       * to color_buf[ci], so that fullsize_upsample can change it.
82
       */
83
#ifdef WITH_PROFILE
84
      cinfo->master->start = getTime();
85
#endif
86
680k
      (*upsample->methods[ci]) (cinfo, compptr,
87
680k
        input_buf[ci] + (*in_row_group_ctr * upsample->rowgroup_height[ci]),
88
680k
        upsample->color_buf + ci);
89
#ifdef WITH_PROFILE
90
      cinfo->master->upsample_elapsed += getTime() - cinfo->master->start;
91
      cinfo->master->upsample_msamples +=
92
        (double)cinfo->output_width * cinfo->max_v_samp_factor / 1000000.;
93
#endif
94
680k
    }
95
286k
    upsample->next_row_out = 0;
96
286k
  }
97
98
  /* Color-convert and emit rows */
99
100
  /* How many we have in the buffer: */
101
536k
  num_rows = (JDIMENSION)(cinfo->max_v_samp_factor - upsample->next_row_out);
102
  /* Not more than the distance to the end of the image.  Need this test
103
   * in case the image height is not a multiple of max_v_samp_factor:
104
   */
105
536k
  if (num_rows > upsample->rows_to_go)
106
439
    num_rows = upsample->rows_to_go;
107
  /* And not more than what the client can accept: */
108
536k
  out_rows_avail -= *out_row_ctr;
109
536k
  if (num_rows > out_rows_avail)
110
249k
    num_rows = out_rows_avail;
111
112
#ifdef WITH_PROFILE
113
  cinfo->master->start = getTime();
114
#endif
115
536k
  (*cinfo->cconvert->_color_convert) (cinfo, upsample->color_buf,
116
536k
                                      (JDIMENSION)upsample->next_row_out,
117
536k
                                      output_buf + *out_row_ctr,
118
536k
                                      (int)num_rows);
119
#ifdef WITH_PROFILE
120
  cinfo->master->cconvert_elapsed += getTime() - cinfo->master->start;
121
  cinfo->master->cconvert_mpixels +=
122
    (double)cinfo->output_width * num_rows / 1000000.;
123
#endif
124
125
  /* Adjust counts */
126
536k
  *out_row_ctr += num_rows;
127
536k
  upsample->rows_to_go -= num_rows;
128
536k
  upsample->next_row_out += num_rows;
129
  /* When the buffer is emptied, declare this input row group consumed */
130
536k
  if (upsample->next_row_out >= cinfo->max_v_samp_factor)
131
286k
    (*in_row_group_ctr)++;
132
536k
}
jdsample-8.c:sep_upsample
Line
Count
Source
70
536k
{
71
536k
  my_upsample_ptr upsample = (my_upsample_ptr)cinfo->upsample;
72
536k
  int ci;
73
536k
  jpeg_component_info *compptr;
74
536k
  JDIMENSION num_rows;
75
76
  /* Fill the conversion buffer, if it's empty */
77
536k
  if (upsample->next_row_out >= cinfo->max_v_samp_factor) {
78
967k
    for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
79
680k
         ci++, compptr++) {
80
      /* Invoke per-component upsample method.  Notice we pass a POINTER
81
       * to color_buf[ci], so that fullsize_upsample can change it.
82
       */
83
#ifdef WITH_PROFILE
84
      cinfo->master->start = getTime();
85
#endif
86
680k
      (*upsample->methods[ci]) (cinfo, compptr,
87
680k
        input_buf[ci] + (*in_row_group_ctr * upsample->rowgroup_height[ci]),
88
680k
        upsample->color_buf + ci);
89
#ifdef WITH_PROFILE
90
      cinfo->master->upsample_elapsed += getTime() - cinfo->master->start;
91
      cinfo->master->upsample_msamples +=
92
        (double)cinfo->output_width * cinfo->max_v_samp_factor / 1000000.;
93
#endif
94
680k
    }
95
286k
    upsample->next_row_out = 0;
96
286k
  }
97
98
  /* Color-convert and emit rows */
99
100
  /* How many we have in the buffer: */
101
536k
  num_rows = (JDIMENSION)(cinfo->max_v_samp_factor - upsample->next_row_out);
102
  /* Not more than the distance to the end of the image.  Need this test
103
   * in case the image height is not a multiple of max_v_samp_factor:
104
   */
105
536k
  if (num_rows > upsample->rows_to_go)
106
439
    num_rows = upsample->rows_to_go;
107
  /* And not more than what the client can accept: */
108
536k
  out_rows_avail -= *out_row_ctr;
109
536k
  if (num_rows > out_rows_avail)
110
249k
    num_rows = out_rows_avail;
111
112
#ifdef WITH_PROFILE
113
  cinfo->master->start = getTime();
114
#endif
115
536k
  (*cinfo->cconvert->_color_convert) (cinfo, upsample->color_buf,
116
536k
                                      (JDIMENSION)upsample->next_row_out,
117
536k
                                      output_buf + *out_row_ctr,
118
536k
                                      (int)num_rows);
119
#ifdef WITH_PROFILE
120
  cinfo->master->cconvert_elapsed += getTime() - cinfo->master->start;
121
  cinfo->master->cconvert_mpixels +=
122
    (double)cinfo->output_width * num_rows / 1000000.;
123
#endif
124
125
  /* Adjust counts */
126
536k
  *out_row_ctr += num_rows;
127
536k
  upsample->rows_to_go -= num_rows;
128
536k
  upsample->next_row_out += num_rows;
129
  /* When the buffer is emptied, declare this input row group consumed */
130
536k
  if (upsample->next_row_out >= cinfo->max_v_samp_factor)
131
286k
    (*in_row_group_ctr)++;
132
536k
}
Unexecuted instantiation: jdsample-12.c:sep_upsample
Unexecuted instantiation: jdsample-16.c:sep_upsample
133
134
135
/*
136
 * These are the routines invoked by sep_upsample to upsample values of a
137
 * single component.  One row group is processed per call.
138
 */
139
140
141
/*
142
 * For full-size components, we just make color_buf[ci] point at the
143
 * input buffer, and thus avoid copying any data.  Note that this is
144
 * safe only because sep_upsample doesn't declare the input row group
145
 * "consumed" until we are done color converting and emitting it.
146
 */
147
148
METHODDEF(void)
149
fullsize_upsample(j_decompress_ptr cinfo, jpeg_component_info *compptr,
150
                  _JSAMPARRAY input_data, _JSAMPARRAY *output_data_ptr)
151
298k
{
152
298k
  *output_data_ptr = input_data;
153
298k
}
jdsample-8.c:fullsize_upsample
Line
Count
Source
151
298k
{
152
298k
  *output_data_ptr = input_data;
153
298k
}
Unexecuted instantiation: jdsample-12.c:fullsize_upsample
Unexecuted instantiation: jdsample-16.c:fullsize_upsample
154
155
156
/*
157
 * This is a no-op version used for "uninteresting" components.
158
 * These components will not be referenced by color conversion.
159
 */
160
161
METHODDEF(void)
162
noop_upsample(j_decompress_ptr cinfo, jpeg_component_info *compptr,
163
              _JSAMPARRAY input_data, _JSAMPARRAY *output_data_ptr)
164
0
{
165
0
  *output_data_ptr = NULL;      /* safety check */
166
0
}
Unexecuted instantiation: jdsample-8.c:noop_upsample
Unexecuted instantiation: jdsample-12.c:noop_upsample
Unexecuted instantiation: jdsample-16.c:noop_upsample
167
168
169
/*
170
 * This version handles any integral sampling ratios.
171
 * This is not used for typical JPEG files, so it need not be fast.  Nor, for
172
 * that matter, is it particularly accurate: the algorithm is simple
173
 * replication of the input sample onto the corresponding output components.
174
 * The hi-falutin sampling literature refers to this as a "box filter".  A box
175
 * filter tends to introduce visible artifacts, so if you are actually going to
176
 * use 3:1 or 4:1 sampling ratios you would be well advised to improve this
177
 * code.
178
 */
179
180
METHODDEF(void)
181
int_upsample(j_decompress_ptr cinfo, jpeg_component_info *compptr,
182
             _JSAMPARRAY input_data, _JSAMPARRAY *output_data_ptr)
183
75.5k
{
184
75.5k
  my_upsample_ptr upsample = (my_upsample_ptr)cinfo->upsample;
185
75.5k
  _JSAMPARRAY output_data = *output_data_ptr;
186
75.5k
  register _JSAMPROW inptr, outptr;
187
75.5k
  register _JSAMPLE invalue;
188
75.5k
  register int h;
189
75.5k
  _JSAMPROW outend;
190
75.5k
  int h_expand, v_expand;
191
75.5k
  int inrow, outrow;
192
193
75.5k
  h_expand = upsample->h_expand[compptr->component_index];
194
75.5k
  v_expand = upsample->v_expand[compptr->component_index];
195
196
75.5k
  inrow = outrow = 0;
197
155k
  while (outrow < cinfo->max_v_samp_factor) {
198
    /* Generate one output row with proper horizontal expansion */
199
80.3k
    inptr = input_data[inrow];
200
80.3k
    outptr = output_data[outrow];
201
80.3k
    outend = outptr + cinfo->output_width;
202
2.63M
    while (outptr < outend) {
203
2.55M
      invalue = *inptr++;
204
7.33M
      for (h = h_expand; h > 0; h--) {
205
4.78M
        *outptr++ = invalue;
206
4.78M
      }
207
2.55M
    }
208
    /* Generate any additional output rows by duplicating the first one */
209
80.3k
    if (v_expand > 1) {
210
55.1k
      _jcopy_sample_rows(output_data, outrow, output_data, outrow + 1,
211
55.1k
                         v_expand - 1, cinfo->output_width);
212
55.1k
    }
213
80.3k
    inrow++;
214
80.3k
    outrow += v_expand;
215
80.3k
  }
216
75.5k
}
jdsample-8.c:int_upsample
Line
Count
Source
183
75.5k
{
184
75.5k
  my_upsample_ptr upsample = (my_upsample_ptr)cinfo->upsample;
185
75.5k
  _JSAMPARRAY output_data = *output_data_ptr;
186
75.5k
  register _JSAMPROW inptr, outptr;
187
75.5k
  register _JSAMPLE invalue;
188
75.5k
  register int h;
189
75.5k
  _JSAMPROW outend;
190
75.5k
  int h_expand, v_expand;
191
75.5k
  int inrow, outrow;
192
193
75.5k
  h_expand = upsample->h_expand[compptr->component_index];
194
75.5k
  v_expand = upsample->v_expand[compptr->component_index];
195
196
75.5k
  inrow = outrow = 0;
197
155k
  while (outrow < cinfo->max_v_samp_factor) {
198
    /* Generate one output row with proper horizontal expansion */
199
80.3k
    inptr = input_data[inrow];
200
80.3k
    outptr = output_data[outrow];
201
80.3k
    outend = outptr + cinfo->output_width;
202
2.63M
    while (outptr < outend) {
203
2.55M
      invalue = *inptr++;
204
7.33M
      for (h = h_expand; h > 0; h--) {
205
4.78M
        *outptr++ = invalue;
206
4.78M
      }
207
2.55M
    }
208
    /* Generate any additional output rows by duplicating the first one */
209
80.3k
    if (v_expand > 1) {
210
55.1k
      _jcopy_sample_rows(output_data, outrow, output_data, outrow + 1,
211
55.1k
                         v_expand - 1, cinfo->output_width);
212
55.1k
    }
213
80.3k
    inrow++;
214
80.3k
    outrow += v_expand;
215
80.3k
  }
216
75.5k
}
Unexecuted instantiation: jdsample-12.c:int_upsample
Unexecuted instantiation: jdsample-16.c:int_upsample
217
218
219
/*
220
 * Fast processing for the common case of 2:1 horizontal and 1:1 vertical.
221
 * It's still a box filter.
222
 */
223
224
METHODDEF(void)
225
h2v1_upsample(j_decompress_ptr cinfo, jpeg_component_info *compptr,
226
              _JSAMPARRAY input_data, _JSAMPARRAY *output_data_ptr)
227
68.6k
{
228
68.6k
  _JSAMPARRAY output_data = *output_data_ptr;
229
68.6k
  register _JSAMPROW inptr, outptr;
230
68.6k
  register _JSAMPLE invalue;
231
68.6k
  _JSAMPROW outend;
232
68.6k
  int inrow;
233
234
249k
  for (inrow = 0; inrow < cinfo->max_v_samp_factor; inrow++) {
235
181k
    inptr = input_data[inrow];
236
181k
    outptr = output_data[inrow];
237
181k
    outend = outptr + cinfo->output_width;
238
521k
    while (outptr < outend) {
239
340k
      invalue = *inptr++;
240
340k
      *outptr++ = invalue;
241
340k
      *outptr++ = invalue;
242
340k
    }
243
181k
  }
244
68.6k
}
jdsample-8.c:h2v1_upsample
Line
Count
Source
227
68.6k
{
228
68.6k
  _JSAMPARRAY output_data = *output_data_ptr;
229
68.6k
  register _JSAMPROW inptr, outptr;
230
68.6k
  register _JSAMPLE invalue;
231
68.6k
  _JSAMPROW outend;
232
68.6k
  int inrow;
233
234
249k
  for (inrow = 0; inrow < cinfo->max_v_samp_factor; inrow++) {
235
181k
    inptr = input_data[inrow];
236
181k
    outptr = output_data[inrow];
237
181k
    outend = outptr + cinfo->output_width;
238
521k
    while (outptr < outend) {
239
340k
      invalue = *inptr++;
240
340k
      *outptr++ = invalue;
241
340k
      *outptr++ = invalue;
242
340k
    }
243
181k
  }
244
68.6k
}
Unexecuted instantiation: jdsample-12.c:h2v1_upsample
Unexecuted instantiation: jdsample-16.c:h2v1_upsample
245
246
247
/*
248
 * Fast processing for the common case of 2:1 horizontal and 2:1 vertical.
249
 * It's still a box filter.
250
 */
251
252
METHODDEF(void)
253
h2v2_upsample(j_decompress_ptr cinfo, jpeg_component_info *compptr,
254
              _JSAMPARRAY input_data, _JSAMPARRAY *output_data_ptr)
255
85.9k
{
256
85.9k
  _JSAMPARRAY output_data = *output_data_ptr;
257
85.9k
  register _JSAMPROW inptr, outptr;
258
85.9k
  register _JSAMPLE invalue;
259
85.9k
  _JSAMPROW outend;
260
85.9k
  int inrow, outrow;
261
262
85.9k
  inrow = outrow = 0;
263
189k
  while (outrow < cinfo->max_v_samp_factor) {
264
103k
    inptr = input_data[inrow];
265
103k
    outptr = output_data[outrow];
266
103k
    outend = outptr + cinfo->output_width;
267
259k
    while (outptr < outend) {
268
156k
      invalue = *inptr++;
269
156k
      *outptr++ = invalue;
270
156k
      *outptr++ = invalue;
271
156k
    }
272
103k
    _jcopy_sample_rows(output_data, outrow, output_data, outrow + 1, 1,
273
103k
                       cinfo->output_width);
274
103k
    inrow++;
275
103k
    outrow += 2;
276
103k
  }
277
85.9k
}
jdsample-8.c:h2v2_upsample
Line
Count
Source
255
85.9k
{
256
85.9k
  _JSAMPARRAY output_data = *output_data_ptr;
257
85.9k
  register _JSAMPROW inptr, outptr;
258
85.9k
  register _JSAMPLE invalue;
259
85.9k
  _JSAMPROW outend;
260
85.9k
  int inrow, outrow;
261
262
85.9k
  inrow = outrow = 0;
263
189k
  while (outrow < cinfo->max_v_samp_factor) {
264
103k
    inptr = input_data[inrow];
265
103k
    outptr = output_data[outrow];
266
103k
    outend = outptr + cinfo->output_width;
267
259k
    while (outptr < outend) {
268
156k
      invalue = *inptr++;
269
156k
      *outptr++ = invalue;
270
156k
      *outptr++ = invalue;
271
156k
    }
272
103k
    _jcopy_sample_rows(output_data, outrow, output_data, outrow + 1, 1,
273
103k
                       cinfo->output_width);
274
103k
    inrow++;
275
103k
    outrow += 2;
276
103k
  }
277
85.9k
}
Unexecuted instantiation: jdsample-12.c:h2v2_upsample
Unexecuted instantiation: jdsample-16.c:h2v2_upsample
278
279
280
/*
281
 * Fancy processing for the common case of 2:1 horizontal and 1:1 vertical.
282
 *
283
 * The upsampling algorithm is linear interpolation between component centers,
284
 * also known as a "triangle filter".  This is a good compromise between speed
285
 * and visual quality.  The centers of the output components are 1/4 and 3/4 of
286
 * the way between input component centers.
287
 *
288
 * A note about the "bias" calculations: when rounding fractional values to
289
 * integer, we do not want to always round 0.5 up to the next integer.
290
 * If we did that, we'd introduce a noticeable bias towards larger values.
291
 * Instead, this code is arranged so that 0.5 will be rounded up or down at
292
 * alternate pixel locations (a simple ordered dither pattern).
293
 */
294
295
METHODDEF(void)
296
h2v1_fancy_upsample(j_decompress_ptr cinfo, jpeg_component_info *compptr,
297
                    _JSAMPARRAY input_data, _JSAMPARRAY *output_data_ptr)
298
68.3k
{
299
68.3k
  _JSAMPARRAY output_data = *output_data_ptr;
300
68.3k
  register _JSAMPROW inptr, outptr;
301
68.3k
  register int invalue;
302
68.3k
  register JDIMENSION colctr;
303
68.3k
  int inrow;
304
305
191k
  for (inrow = 0; inrow < cinfo->max_v_samp_factor; inrow++) {
306
123k
    inptr = input_data[inrow];
307
123k
    outptr = output_data[inrow];
308
    /* Special case for first column */
309
123k
    invalue = *inptr++;
310
123k
    *outptr++ = (_JSAMPLE)invalue;
311
123k
    *outptr++ = (_JSAMPLE)((invalue * 3 + inptr[0] + 2) >> 2);
312
313
9.46M
    for (colctr = compptr->downsampled_width - 2; colctr > 0; colctr--) {
314
      /* General case: 3/4 * nearer component + 1/4 * further component */
315
9.33M
      invalue = (*inptr++) * 3;
316
9.33M
      *outptr++ = (_JSAMPLE)((invalue + inptr[-2] + 1) >> 2);
317
9.33M
      *outptr++ = (_JSAMPLE)((invalue + inptr[0] + 2) >> 2);
318
9.33M
    }
319
320
    /* Special case for last column */
321
123k
    invalue = *inptr;
322
123k
    *outptr++ = (_JSAMPLE)((invalue * 3 + inptr[-1] + 1) >> 2);
323
123k
    *outptr++ = (_JSAMPLE)invalue;
324
123k
  }
325
68.3k
}
jdsample-8.c:h2v1_fancy_upsample
Line
Count
Source
298
68.3k
{
299
68.3k
  _JSAMPARRAY output_data = *output_data_ptr;
300
68.3k
  register _JSAMPROW inptr, outptr;
301
68.3k
  register int invalue;
302
68.3k
  register JDIMENSION colctr;
303
68.3k
  int inrow;
304
305
191k
  for (inrow = 0; inrow < cinfo->max_v_samp_factor; inrow++) {
306
123k
    inptr = input_data[inrow];
307
123k
    outptr = output_data[inrow];
308
    /* Special case for first column */
309
123k
    invalue = *inptr++;
310
123k
    *outptr++ = (_JSAMPLE)invalue;
311
123k
    *outptr++ = (_JSAMPLE)((invalue * 3 + inptr[0] + 2) >> 2);
312
313
9.46M
    for (colctr = compptr->downsampled_width - 2; colctr > 0; colctr--) {
314
      /* General case: 3/4 * nearer component + 1/4 * further component */
315
9.33M
      invalue = (*inptr++) * 3;
316
9.33M
      *outptr++ = (_JSAMPLE)((invalue + inptr[-2] + 1) >> 2);
317
9.33M
      *outptr++ = (_JSAMPLE)((invalue + inptr[0] + 2) >> 2);
318
9.33M
    }
319
320
    /* Special case for last column */
321
123k
    invalue = *inptr;
322
123k
    *outptr++ = (_JSAMPLE)((invalue * 3 + inptr[-1] + 1) >> 2);
323
123k
    *outptr++ = (_JSAMPLE)invalue;
324
123k
  }
325
68.3k
}
Unexecuted instantiation: jdsample-12.c:h2v1_fancy_upsample
Unexecuted instantiation: jdsample-16.c:h2v1_fancy_upsample
326
327
328
/*
329
 * Fancy processing for 1:1 horizontal and 2:1 vertical (4:4:0 subsampling).
330
 *
331
 * This is a less common case, but it can be encountered when losslessly
332
 * rotating/transposing a JPEG file that uses 4:2:2 chroma subsampling.
333
 */
334
335
METHODDEF(void)
336
h1v2_fancy_upsample(j_decompress_ptr cinfo, jpeg_component_info *compptr,
337
                    _JSAMPARRAY input_data, _JSAMPARRAY *output_data_ptr)
338
48.6k
{
339
48.6k
  _JSAMPARRAY output_data = *output_data_ptr;
340
48.6k
  _JSAMPROW inptr0, inptr1, outptr;
341
#if BITS_IN_JSAMPLE == 8
342
  int thiscolsum, bias;
343
#else
344
  JLONG thiscolsum, bias;
345
#endif
346
48.6k
  JDIMENSION colctr;
347
48.6k
  int inrow, outrow, v;
348
349
48.6k
  inrow = outrow = 0;
350
130k
  while (outrow < cinfo->max_v_samp_factor) {
351
245k
    for (v = 0; v < 2; v++) {
352
      /* inptr0 points to nearest input row, inptr1 points to next nearest */
353
163k
      inptr0 = input_data[inrow];
354
163k
      if (v == 0) {             /* next nearest is row above */
355
81.9k
        inptr1 = input_data[inrow - 1];
356
81.9k
        bias = 1;
357
81.9k
      } else {                  /* next nearest is row below */
358
81.9k
        inptr1 = input_data[inrow + 1];
359
81.9k
        bias = 2;
360
81.9k
      }
361
163k
      outptr = output_data[outrow++];
362
363
17.5M
      for (colctr = 0; colctr < compptr->downsampled_width; colctr++) {
364
17.3M
        thiscolsum = (*inptr0++) * 3 + (*inptr1++);
365
17.3M
        *outptr++ = (_JSAMPLE)((thiscolsum + bias) >> 2);
366
17.3M
      }
367
163k
    }
368
81.9k
    inrow++;
369
81.9k
  }
370
48.6k
}
jdsample-8.c:h1v2_fancy_upsample
Line
Count
Source
338
48.6k
{
339
48.6k
  _JSAMPARRAY output_data = *output_data_ptr;
340
48.6k
  _JSAMPROW inptr0, inptr1, outptr;
341
48.6k
#if BITS_IN_JSAMPLE == 8
342
48.6k
  int thiscolsum, bias;
343
#else
344
  JLONG thiscolsum, bias;
345
#endif
346
48.6k
  JDIMENSION colctr;
347
48.6k
  int inrow, outrow, v;
348
349
48.6k
  inrow = outrow = 0;
350
130k
  while (outrow < cinfo->max_v_samp_factor) {
351
245k
    for (v = 0; v < 2; v++) {
352
      /* inptr0 points to nearest input row, inptr1 points to next nearest */
353
163k
      inptr0 = input_data[inrow];
354
163k
      if (v == 0) {             /* next nearest is row above */
355
81.9k
        inptr1 = input_data[inrow - 1];
356
81.9k
        bias = 1;
357
81.9k
      } else {                  /* next nearest is row below */
358
81.9k
        inptr1 = input_data[inrow + 1];
359
81.9k
        bias = 2;
360
81.9k
      }
361
163k
      outptr = output_data[outrow++];
362
363
17.5M
      for (colctr = 0; colctr < compptr->downsampled_width; colctr++) {
364
17.3M
        thiscolsum = (*inptr0++) * 3 + (*inptr1++);
365
17.3M
        *outptr++ = (_JSAMPLE)((thiscolsum + bias) >> 2);
366
17.3M
      }
367
163k
    }
368
81.9k
    inrow++;
369
81.9k
  }
370
48.6k
}
Unexecuted instantiation: jdsample-12.c:h1v2_fancy_upsample
Unexecuted instantiation: jdsample-16.c:h1v2_fancy_upsample
371
372
373
/*
374
 * Fancy processing for the common case of 2:1 horizontal and 2:1 vertical.
375
 * Again a triangle filter; see comments for h2v1 case, above.
376
 *
377
 * It is OK for us to reference the adjacent input rows because we demanded
378
 * context from the main buffer controller (see initialization code).
379
 */
380
381
METHODDEF(void)
382
h2v2_fancy_upsample(j_decompress_ptr cinfo, jpeg_component_info *compptr,
383
                    _JSAMPARRAY input_data, _JSAMPARRAY *output_data_ptr)
384
35.5k
{
385
35.5k
  _JSAMPARRAY output_data = *output_data_ptr;
386
35.5k
  register _JSAMPROW inptr0, inptr1, outptr;
387
#if BITS_IN_JSAMPLE == 8
388
  register int thiscolsum, lastcolsum, nextcolsum;
389
#else
390
  register JLONG thiscolsum, lastcolsum, nextcolsum;
391
#endif
392
35.5k
  register JDIMENSION colctr;
393
35.5k
  int inrow, outrow, v;
394
395
35.5k
  inrow = outrow = 0;
396
83.1k
  while (outrow < cinfo->max_v_samp_factor) {
397
143k
    for (v = 0; v < 2; v++) {
398
      /* inptr0 points to nearest input row, inptr1 points to next nearest */
399
95.3k
      inptr0 = input_data[inrow];
400
95.3k
      if (v == 0)               /* next nearest is row above */
401
47.6k
        inptr1 = input_data[inrow - 1];
402
47.6k
      else                      /* next nearest is row below */
403
47.6k
        inptr1 = input_data[inrow + 1];
404
95.3k
      outptr = output_data[outrow++];
405
406
      /* Special case for first column */
407
95.3k
      thiscolsum = (*inptr0++) * 3 + (*inptr1++);
408
95.3k
      nextcolsum = (*inptr0++) * 3 + (*inptr1++);
409
95.3k
      *outptr++ = (_JSAMPLE)((thiscolsum * 4 + 8) >> 4);
410
95.3k
      *outptr++ = (_JSAMPLE)((thiscolsum * 3 + nextcolsum + 7) >> 4);
411
95.3k
      lastcolsum = thiscolsum;  thiscolsum = nextcolsum;
412
413
13.6M
      for (colctr = compptr->downsampled_width - 2; colctr > 0; colctr--) {
414
        /* General case: 3/4 * nearer component + 1/4 * further component in
415
         * each dimension, thus 9/16, 3/16, 3/16, 1/16 overall
416
         */
417
13.5M
        nextcolsum = (*inptr0++) * 3 + (*inptr1++);
418
13.5M
        *outptr++ = (_JSAMPLE)((thiscolsum * 3 + lastcolsum + 8) >> 4);
419
13.5M
        *outptr++ = (_JSAMPLE)((thiscolsum * 3 + nextcolsum + 7) >> 4);
420
13.5M
        lastcolsum = thiscolsum;  thiscolsum = nextcolsum;
421
13.5M
      }
422
423
      /* Special case for last column */
424
95.3k
      *outptr++ = (_JSAMPLE)((thiscolsum * 3 + lastcolsum + 8) >> 4);
425
95.3k
      *outptr++ = (_JSAMPLE)((thiscolsum * 4 + 7) >> 4);
426
95.3k
    }
427
47.6k
    inrow++;
428
47.6k
  }
429
35.5k
}
jdsample-8.c:h2v2_fancy_upsample
Line
Count
Source
384
35.5k
{
385
35.5k
  _JSAMPARRAY output_data = *output_data_ptr;
386
35.5k
  register _JSAMPROW inptr0, inptr1, outptr;
387
35.5k
#if BITS_IN_JSAMPLE == 8
388
35.5k
  register int thiscolsum, lastcolsum, nextcolsum;
389
#else
390
  register JLONG thiscolsum, lastcolsum, nextcolsum;
391
#endif
392
35.5k
  register JDIMENSION colctr;
393
35.5k
  int inrow, outrow, v;
394
395
35.5k
  inrow = outrow = 0;
396
83.1k
  while (outrow < cinfo->max_v_samp_factor) {
397
143k
    for (v = 0; v < 2; v++) {
398
      /* inptr0 points to nearest input row, inptr1 points to next nearest */
399
95.3k
      inptr0 = input_data[inrow];
400
95.3k
      if (v == 0)               /* next nearest is row above */
401
47.6k
        inptr1 = input_data[inrow - 1];
402
47.6k
      else                      /* next nearest is row below */
403
47.6k
        inptr1 = input_data[inrow + 1];
404
95.3k
      outptr = output_data[outrow++];
405
406
      /* Special case for first column */
407
95.3k
      thiscolsum = (*inptr0++) * 3 + (*inptr1++);
408
95.3k
      nextcolsum = (*inptr0++) * 3 + (*inptr1++);
409
95.3k
      *outptr++ = (_JSAMPLE)((thiscolsum * 4 + 8) >> 4);
410
95.3k
      *outptr++ = (_JSAMPLE)((thiscolsum * 3 + nextcolsum + 7) >> 4);
411
95.3k
      lastcolsum = thiscolsum;  thiscolsum = nextcolsum;
412
413
13.6M
      for (colctr = compptr->downsampled_width - 2; colctr > 0; colctr--) {
414
        /* General case: 3/4 * nearer component + 1/4 * further component in
415
         * each dimension, thus 9/16, 3/16, 3/16, 1/16 overall
416
         */
417
13.5M
        nextcolsum = (*inptr0++) * 3 + (*inptr1++);
418
13.5M
        *outptr++ = (_JSAMPLE)((thiscolsum * 3 + lastcolsum + 8) >> 4);
419
13.5M
        *outptr++ = (_JSAMPLE)((thiscolsum * 3 + nextcolsum + 7) >> 4);
420
13.5M
        lastcolsum = thiscolsum;  thiscolsum = nextcolsum;
421
13.5M
      }
422
423
      /* Special case for last column */
424
95.3k
      *outptr++ = (_JSAMPLE)((thiscolsum * 3 + lastcolsum + 8) >> 4);
425
95.3k
      *outptr++ = (_JSAMPLE)((thiscolsum * 4 + 7) >> 4);
426
95.3k
    }
427
47.6k
    inrow++;
428
47.6k
  }
429
35.5k
}
Unexecuted instantiation: jdsample-12.c:h2v2_fancy_upsample
Unexecuted instantiation: jdsample-16.c:h2v2_fancy_upsample
430
431
432
/*
433
 * Module initialization routine for upsampling.
434
 */
435
436
GLOBAL(void)
437
_jinit_upsampler(j_decompress_ptr cinfo)
438
4.48k
{
439
4.48k
  my_upsample_ptr upsample;
440
4.48k
  int ci;
441
4.48k
  jpeg_component_info *compptr;
442
4.48k
  boolean need_buffer, do_fancy;
443
4.48k
  int h_in_group, v_in_group, h_out_group, v_out_group;
444
445
4.48k
#ifdef D_LOSSLESS_SUPPORTED
446
4.48k
  if (cinfo->master->lossless) {
447
#if BITS_IN_JSAMPLE == 8
448
480
    if (cinfo->data_precision > BITS_IN_JSAMPLE || cinfo->data_precision < 2)
449
#else
450
887
    if (cinfo->data_precision > BITS_IN_JSAMPLE ||
451
887
        cinfo->data_precision < BITS_IN_JSAMPLE - 3)
452
0
#endif
453
0
      ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
454
1.36k
  } else
455
3.12k
#endif
456
3.12k
  {
457
3.12k
    if (cinfo->data_precision != BITS_IN_JSAMPLE)
458
0
      ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
459
3.12k
  }
460
461
4.48k
  if (!cinfo->master->jinit_upsampler_no_alloc) {
462
4.48k
    upsample = (my_upsample_ptr)
463
4.48k
      (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_IMAGE,
464
4.48k
                                  sizeof(my_upsampler));
465
4.48k
    cinfo->upsample = (struct jpeg_upsampler *)upsample;
466
4.48k
    upsample->pub.start_pass = start_pass_upsample;
467
4.48k
    upsample->pub._upsample = sep_upsample;
468
4.48k
    upsample->pub.need_context_rows = FALSE; /* until we find out differently */
469
4.48k
  } else
470
0
    upsample = (my_upsample_ptr)cinfo->upsample;
471
472
4.48k
  if (cinfo->CCIR601_sampling)  /* this isn't supported */
473
0
    ERREXIT(cinfo, JERR_CCIR601_NOTIMPL);
474
475
  /* jdmainct.c doesn't support context rows when min_DCT_scaled_size = 1,
476
   * so don't ask for it.
477
   */
478
4.48k
  do_fancy = cinfo->do_fancy_upsampling && cinfo->_min_DCT_scaled_size > 1;
479
480
  /* Verify we can handle the sampling factors, select per-component methods,
481
   * and create storage as needed.
482
   */
483
16.3k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
484
11.8k
       ci++, compptr++) {
485
    /* Compute size of an "input group" after IDCT scaling.  This many samples
486
     * are to be converted to max_h_samp_factor * max_v_samp_factor components.
487
     */
488
11.8k
    h_in_group = (compptr->h_samp_factor * compptr->_DCT_scaled_size) /
489
11.8k
                 cinfo->_min_DCT_scaled_size;
490
11.8k
    v_in_group = (compptr->v_samp_factor * compptr->_DCT_scaled_size) /
491
11.8k
                 cinfo->_min_DCT_scaled_size;
492
11.8k
    h_out_group = cinfo->max_h_samp_factor;
493
11.8k
    v_out_group = cinfo->max_v_samp_factor;
494
11.8k
    upsample->rowgroup_height[ci] = v_in_group; /* save for use later */
495
11.8k
    need_buffer = TRUE;
496
11.8k
    if (!compptr->component_needed) {
497
      /* Don't bother to upsample an uninteresting component. */
498
0
      upsample->methods[ci] = noop_upsample;
499
0
      need_buffer = FALSE;
500
11.8k
    } else if (h_in_group == h_out_group && v_in_group == v_out_group) {
501
      /* Fullsize components can be processed without any work. */
502
4.50k
      upsample->methods[ci] = fullsize_upsample;
503
4.50k
      need_buffer = FALSE;
504
7.30k
    } else if (h_in_group * 2 == h_out_group && v_in_group == v_out_group) {
505
      /* Special cases for 2h1v upsampling */
506
773
      if (do_fancy && compptr->downsampled_width > 2) {
507
#ifdef WITH_SIMD
508
350
        if (jsimd_set_h2v1_fancy_upsample(cinfo))
509
0
          upsample->methods[ci] = jsimd_h2v1_fancy_upsample;
510
350
        else
511
350
#endif
512
350
          upsample->methods[ci] = h2v1_fancy_upsample;
513
539
      } else {
514
#ifdef WITH_SIMD
515
158
        if (jsimd_set_h2v1_upsample(cinfo))
516
0
          upsample->methods[ci] = jsimd_h2v1_upsample;
517
158
        else
518
158
#endif
519
158
          upsample->methods[ci] = h2v1_upsample;
520
234
      }
521
6.53k
    } else if (h_in_group == h_out_group &&
522
2.53k
               v_in_group * 2 == v_out_group && do_fancy) {
523
      /* Non-fancy upsampling is handled by the generic method */
524
#if defined(WITH_SIMD) && (SIMD_ARCHITECTURE == ARM64 || SIMD_ARCHITECTURE == ARM)
525
      if (jsimd_set_h1v2_fancy_upsample(cinfo))
526
        upsample->methods[ci] = jsimd_h1v2_fancy_upsample;
527
      else
528
#endif
529
466
        upsample->methods[ci] = h1v2_fancy_upsample;
530
466
      upsample->pub.need_context_rows = TRUE;
531
6.06k
    } else if (h_in_group * 2 == h_out_group &&
532
2.95k
               v_in_group * 2 == v_out_group) {
533
      /* Special cases for 2h2v upsampling */
534
2.69k
      if (do_fancy && compptr->downsampled_width > 2) {
535
#ifdef WITH_SIMD
536
2.26k
        if (jsimd_set_h2v2_fancy_upsample(cinfo))
537
0
          upsample->methods[ci] = jsimd_h2v2_fancy_upsample;
538
2.26k
        else
539
2.26k
#endif
540
2.26k
          upsample->methods[ci] = h2v2_fancy_upsample;
541
2.46k
        upsample->pub.need_context_rows = TRUE;
542
2.46k
      } else {
543
#ifdef WITH_SIMD
544
136
        if (jsimd_set_h2v2_upsample(cinfo))
545
0
          upsample->methods[ci] = jsimd_h2v2_upsample;
546
136
        else
547
136
#endif
548
136
          upsample->methods[ci] = h2v2_upsample;
549
223
      }
550
3.37k
    } else if ((h_out_group % h_in_group) == 0 &&
551
3.36k
               (v_out_group % v_in_group) == 0) {
552
      /* Generic integral-factors upsampling method */
553
3.35k
      upsample->methods[ci] = int_upsample;
554
3.35k
      upsample->h_expand[ci] = (UINT8)(h_out_group / h_in_group);
555
3.35k
      upsample->v_expand[ci] = (UINT8)(v_out_group / v_in_group);
556
3.35k
    } else
557
16
      ERREXIT(cinfo, JERR_FRACT_SAMPLE_NOTIMPL);
558
11.8k
    if (need_buffer && !cinfo->master->jinit_upsampler_no_alloc) {
559
7.28k
      upsample->color_buf[ci] = (_JSAMPARRAY)(*cinfo->mem->alloc_sarray)
560
7.28k
        ((j_common_ptr)cinfo, JPOOL_IMAGE,
561
7.28k
         (JDIMENSION)jround_up((long)cinfo->output_width,
562
7.28k
                               (long)cinfo->max_h_samp_factor),
563
7.28k
         (JDIMENSION)cinfo->max_v_samp_factor);
564
7.28k
    }
565
11.8k
  }
566
4.48k
}
jinit_upsampler
Line
Count
Source
438
3.20k
{
439
3.20k
  my_upsample_ptr upsample;
440
3.20k
  int ci;
441
3.20k
  jpeg_component_info *compptr;
442
3.20k
  boolean need_buffer, do_fancy;
443
3.20k
  int h_in_group, v_in_group, h_out_group, v_out_group;
444
445
3.20k
#ifdef D_LOSSLESS_SUPPORTED
446
3.20k
  if (cinfo->master->lossless) {
447
480
#if BITS_IN_JSAMPLE == 8
448
480
    if (cinfo->data_precision > BITS_IN_JSAMPLE || cinfo->data_precision < 2)
449
#else
450
    if (cinfo->data_precision > BITS_IN_JSAMPLE ||
451
        cinfo->data_precision < BITS_IN_JSAMPLE - 3)
452
#endif
453
0
      ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
454
480
  } else
455
2.72k
#endif
456
2.72k
  {
457
2.72k
    if (cinfo->data_precision != BITS_IN_JSAMPLE)
458
0
      ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
459
2.72k
  }
460
461
3.20k
  if (!cinfo->master->jinit_upsampler_no_alloc) {
462
3.20k
    upsample = (my_upsample_ptr)
463
3.20k
      (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_IMAGE,
464
3.20k
                                  sizeof(my_upsampler));
465
3.20k
    cinfo->upsample = (struct jpeg_upsampler *)upsample;
466
3.20k
    upsample->pub.start_pass = start_pass_upsample;
467
3.20k
    upsample->pub._upsample = sep_upsample;
468
3.20k
    upsample->pub.need_context_rows = FALSE; /* until we find out differently */
469
3.20k
  } else
470
0
    upsample = (my_upsample_ptr)cinfo->upsample;
471
472
3.20k
  if (cinfo->CCIR601_sampling)  /* this isn't supported */
473
0
    ERREXIT(cinfo, JERR_CCIR601_NOTIMPL);
474
475
  /* jdmainct.c doesn't support context rows when min_DCT_scaled_size = 1,
476
   * so don't ask for it.
477
   */
478
3.20k
  do_fancy = cinfo->do_fancy_upsampling && cinfo->_min_DCT_scaled_size > 1;
479
480
  /* Verify we can handle the sampling factors, select per-component methods,
481
   * and create storage as needed.
482
   */
483
11.2k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
484
8.02k
       ci++, compptr++) {
485
    /* Compute size of an "input group" after IDCT scaling.  This many samples
486
     * are to be converted to max_h_samp_factor * max_v_samp_factor components.
487
     */
488
8.02k
    h_in_group = (compptr->h_samp_factor * compptr->_DCT_scaled_size) /
489
8.02k
                 cinfo->_min_DCT_scaled_size;
490
8.02k
    v_in_group = (compptr->v_samp_factor * compptr->_DCT_scaled_size) /
491
8.02k
                 cinfo->_min_DCT_scaled_size;
492
8.02k
    h_out_group = cinfo->max_h_samp_factor;
493
8.02k
    v_out_group = cinfo->max_v_samp_factor;
494
8.02k
    upsample->rowgroup_height[ci] = v_in_group; /* save for use later */
495
8.02k
    need_buffer = TRUE;
496
8.02k
    if (!compptr->component_needed) {
497
      /* Don't bother to upsample an uninteresting component. */
498
0
      upsample->methods[ci] = noop_upsample;
499
0
      need_buffer = FALSE;
500
8.02k
    } else if (h_in_group == h_out_group && v_in_group == v_out_group) {
501
      /* Fullsize components can be processed without any work. */
502
3.36k
      upsample->methods[ci] = fullsize_upsample;
503
3.36k
      need_buffer = FALSE;
504
4.66k
    } else if (h_in_group * 2 == h_out_group && v_in_group == v_out_group) {
505
      /* Special cases for 2h1v upsampling */
506
508
      if (do_fancy && compptr->downsampled_width > 2) {
507
350
#ifdef WITH_SIMD
508
350
        if (jsimd_set_h2v1_fancy_upsample(cinfo))
509
0
          upsample->methods[ci] = jsimd_h2v1_fancy_upsample;
510
350
        else
511
350
#endif
512
350
          upsample->methods[ci] = h2v1_fancy_upsample;
513
350
      } else {
514
158
#ifdef WITH_SIMD
515
158
        if (jsimd_set_h2v1_upsample(cinfo))
516
0
          upsample->methods[ci] = jsimd_h2v1_upsample;
517
158
        else
518
158
#endif
519
158
          upsample->methods[ci] = h2v1_upsample;
520
158
      }
521
4.15k
    } else if (h_in_group == h_out_group &&
522
1.17k
               v_in_group * 2 == v_out_group && do_fancy) {
523
      /* Non-fancy upsampling is handled by the generic method */
524
#if defined(WITH_SIMD) && (SIMD_ARCHITECTURE == ARM64 || SIMD_ARCHITECTURE == ARM)
525
      if (jsimd_set_h1v2_fancy_upsample(cinfo))
526
        upsample->methods[ci] = jsimd_h1v2_fancy_upsample;
527
      else
528
#endif
529
290
        upsample->methods[ci] = h1v2_fancy_upsample;
530
290
      upsample->pub.need_context_rows = TRUE;
531
3.86k
    } else if (h_in_group * 2 == h_out_group &&
532
2.58k
               v_in_group * 2 == v_out_group) {
533
      /* Special cases for 2h2v upsampling */
534
2.40k
      if (do_fancy && compptr->downsampled_width > 2) {
535
2.26k
#ifdef WITH_SIMD
536
2.26k
        if (jsimd_set_h2v2_fancy_upsample(cinfo))
537
0
          upsample->methods[ci] = jsimd_h2v2_fancy_upsample;
538
2.26k
        else
539
2.26k
#endif
540
2.26k
          upsample->methods[ci] = h2v2_fancy_upsample;
541
2.26k
        upsample->pub.need_context_rows = TRUE;
542
2.26k
      } else {
543
136
#ifdef WITH_SIMD
544
136
        if (jsimd_set_h2v2_upsample(cinfo))
545
0
          upsample->methods[ci] = jsimd_h2v2_upsample;
546
136
        else
547
136
#endif
548
136
          upsample->methods[ci] = h2v2_upsample;
549
136
      }
550
2.40k
    } else if ((h_out_group % h_in_group) == 0 &&
551
1.46k
               (v_out_group % v_in_group) == 0) {
552
      /* Generic integral-factors upsampling method */
553
1.46k
      upsample->methods[ci] = int_upsample;
554
1.46k
      upsample->h_expand[ci] = (UINT8)(h_out_group / h_in_group);
555
1.46k
      upsample->v_expand[ci] = (UINT8)(v_out_group / v_in_group);
556
1.46k
    } else
557
4
      ERREXIT(cinfo, JERR_FRACT_SAMPLE_NOTIMPL);
558
8.02k
    if (need_buffer && !cinfo->master->jinit_upsampler_no_alloc) {
559
4.65k
      upsample->color_buf[ci] = (_JSAMPARRAY)(*cinfo->mem->alloc_sarray)
560
4.65k
        ((j_common_ptr)cinfo, JPOOL_IMAGE,
561
4.65k
         (JDIMENSION)jround_up((long)cinfo->output_width,
562
4.65k
                               (long)cinfo->max_h_samp_factor),
563
4.65k
         (JDIMENSION)cinfo->max_v_samp_factor);
564
4.65k
    }
565
8.02k
  }
566
3.20k
}
j12init_upsampler
Line
Count
Source
438
850
{
439
850
  my_upsample_ptr upsample;
440
850
  int ci;
441
850
  jpeg_component_info *compptr;
442
850
  boolean need_buffer, do_fancy;
443
850
  int h_in_group, v_in_group, h_out_group, v_out_group;
444
445
850
#ifdef D_LOSSLESS_SUPPORTED
446
850
  if (cinfo->master->lossless) {
447
#if BITS_IN_JSAMPLE == 8
448
    if (cinfo->data_precision > BITS_IN_JSAMPLE || cinfo->data_precision < 2)
449
#else
450
454
    if (cinfo->data_precision > BITS_IN_JSAMPLE ||
451
454
        cinfo->data_precision < BITS_IN_JSAMPLE - 3)
452
0
#endif
453
0
      ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
454
454
  } else
455
396
#endif
456
396
  {
457
396
    if (cinfo->data_precision != BITS_IN_JSAMPLE)
458
0
      ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
459
396
  }
460
461
850
  if (!cinfo->master->jinit_upsampler_no_alloc) {
462
850
    upsample = (my_upsample_ptr)
463
850
      (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_IMAGE,
464
850
                                  sizeof(my_upsampler));
465
850
    cinfo->upsample = (struct jpeg_upsampler *)upsample;
466
850
    upsample->pub.start_pass = start_pass_upsample;
467
850
    upsample->pub._upsample = sep_upsample;
468
850
    upsample->pub.need_context_rows = FALSE; /* until we find out differently */
469
850
  } else
470
0
    upsample = (my_upsample_ptr)cinfo->upsample;
471
472
850
  if (cinfo->CCIR601_sampling)  /* this isn't supported */
473
0
    ERREXIT(cinfo, JERR_CCIR601_NOTIMPL);
474
475
  /* jdmainct.c doesn't support context rows when min_DCT_scaled_size = 1,
476
   * so don't ask for it.
477
   */
478
850
  do_fancy = cinfo->do_fancy_upsampling && cinfo->_min_DCT_scaled_size > 1;
479
480
  /* Verify we can handle the sampling factors, select per-component methods,
481
   * and create storage as needed.
482
   */
483
3.33k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
484
2.48k
       ci++, compptr++) {
485
    /* Compute size of an "input group" after IDCT scaling.  This many samples
486
     * are to be converted to max_h_samp_factor * max_v_samp_factor components.
487
     */
488
2.48k
    h_in_group = (compptr->h_samp_factor * compptr->_DCT_scaled_size) /
489
2.48k
                 cinfo->_min_DCT_scaled_size;
490
2.48k
    v_in_group = (compptr->v_samp_factor * compptr->_DCT_scaled_size) /
491
2.48k
                 cinfo->_min_DCT_scaled_size;
492
2.48k
    h_out_group = cinfo->max_h_samp_factor;
493
2.48k
    v_out_group = cinfo->max_v_samp_factor;
494
2.48k
    upsample->rowgroup_height[ci] = v_in_group; /* save for use later */
495
2.48k
    need_buffer = TRUE;
496
2.48k
    if (!compptr->component_needed) {
497
      /* Don't bother to upsample an uninteresting component. */
498
0
      upsample->methods[ci] = noop_upsample;
499
0
      need_buffer = FALSE;
500
2.48k
    } else if (h_in_group == h_out_group && v_in_group == v_out_group) {
501
      /* Fullsize components can be processed without any work. */
502
738
      upsample->methods[ci] = fullsize_upsample;
503
738
      need_buffer = FALSE;
504
1.74k
    } else if (h_in_group * 2 == h_out_group && v_in_group == v_out_group) {
505
      /* Special cases for 2h1v upsampling */
506
228
      if (do_fancy && compptr->downsampled_width > 2) {
507
#ifdef WITH_SIMD
508
        if (jsimd_set_h2v1_fancy_upsample(cinfo))
509
          upsample->methods[ci] = jsimd_h2v1_fancy_upsample;
510
        else
511
#endif
512
189
          upsample->methods[ci] = h2v1_fancy_upsample;
513
189
      } else {
514
#ifdef WITH_SIMD
515
        if (jsimd_set_h2v1_upsample(cinfo))
516
          upsample->methods[ci] = jsimd_h2v1_upsample;
517
        else
518
#endif
519
39
          upsample->methods[ci] = h2v1_upsample;
520
39
      }
521
1.51k
    } else if (h_in_group == h_out_group &&
522
772
               v_in_group * 2 == v_out_group && do_fancy) {
523
      /* Non-fancy upsampling is handled by the generic method */
524
#if defined(WITH_SIMD) && (SIMD_ARCHITECTURE == ARM64 || SIMD_ARCHITECTURE == ARM)
525
      if (jsimd_set_h1v2_fancy_upsample(cinfo))
526
        upsample->methods[ci] = jsimd_h1v2_fancy_upsample;
527
      else
528
#endif
529
176
        upsample->methods[ci] = h1v2_fancy_upsample;
530
176
      upsample->pub.need_context_rows = TRUE;
531
1.34k
    } else if (h_in_group * 2 == h_out_group &&
532
324
               v_in_group * 2 == v_out_group) {
533
      /* Special cases for 2h2v upsampling */
534
266
      if (do_fancy && compptr->downsampled_width > 2) {
535
#ifdef WITH_SIMD
536
        if (jsimd_set_h2v2_fancy_upsample(cinfo))
537
          upsample->methods[ci] = jsimd_h2v2_fancy_upsample;
538
        else
539
#endif
540
203
          upsample->methods[ci] = h2v2_fancy_upsample;
541
203
        upsample->pub.need_context_rows = TRUE;
542
203
      } else {
543
#ifdef WITH_SIMD
544
        if (jsimd_set_h2v2_upsample(cinfo))
545
          upsample->methods[ci] = jsimd_h2v2_upsample;
546
        else
547
#endif
548
63
          upsample->methods[ci] = h2v2_upsample;
549
63
      }
550
1.07k
    } else if ((h_out_group % h_in_group) == 0 &&
551
1.07k
               (v_out_group % v_in_group) == 0) {
552
      /* Generic integral-factors upsampling method */
553
1.06k
      upsample->methods[ci] = int_upsample;
554
1.06k
      upsample->h_expand[ci] = (UINT8)(h_out_group / h_in_group);
555
1.06k
      upsample->v_expand[ci] = (UINT8)(v_out_group / v_in_group);
556
1.06k
    } else
557
9
      ERREXIT(cinfo, JERR_FRACT_SAMPLE_NOTIMPL);
558
2.48k
    if (need_buffer && !cinfo->master->jinit_upsampler_no_alloc) {
559
1.73k
      upsample->color_buf[ci] = (_JSAMPARRAY)(*cinfo->mem->alloc_sarray)
560
1.73k
        ((j_common_ptr)cinfo, JPOOL_IMAGE,
561
1.73k
         (JDIMENSION)jround_up((long)cinfo->output_width,
562
1.73k
                               (long)cinfo->max_h_samp_factor),
563
1.73k
         (JDIMENSION)cinfo->max_v_samp_factor);
564
1.73k
    }
565
2.48k
  }
566
850
}
j16init_upsampler
Line
Count
Source
438
433
{
439
433
  my_upsample_ptr upsample;
440
433
  int ci;
441
433
  jpeg_component_info *compptr;
442
433
  boolean need_buffer, do_fancy;
443
433
  int h_in_group, v_in_group, h_out_group, v_out_group;
444
445
433
#ifdef D_LOSSLESS_SUPPORTED
446
433
  if (cinfo->master->lossless) {
447
#if BITS_IN_JSAMPLE == 8
448
    if (cinfo->data_precision > BITS_IN_JSAMPLE || cinfo->data_precision < 2)
449
#else
450
433
    if (cinfo->data_precision > BITS_IN_JSAMPLE ||
451
433
        cinfo->data_precision < BITS_IN_JSAMPLE - 3)
452
0
#endif
453
0
      ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
454
433
  } else
455
0
#endif
456
0
  {
457
0
    if (cinfo->data_precision != BITS_IN_JSAMPLE)
458
0
      ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
459
0
  }
460
461
433
  if (!cinfo->master->jinit_upsampler_no_alloc) {
462
433
    upsample = (my_upsample_ptr)
463
433
      (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_IMAGE,
464
433
                                  sizeof(my_upsampler));
465
433
    cinfo->upsample = (struct jpeg_upsampler *)upsample;
466
433
    upsample->pub.start_pass = start_pass_upsample;
467
433
    upsample->pub._upsample = sep_upsample;
468
433
    upsample->pub.need_context_rows = FALSE; /* until we find out differently */
469
433
  } else
470
0
    upsample = (my_upsample_ptr)cinfo->upsample;
471
472
433
  if (cinfo->CCIR601_sampling)  /* this isn't supported */
473
0
    ERREXIT(cinfo, JERR_CCIR601_NOTIMPL);
474
475
  /* jdmainct.c doesn't support context rows when min_DCT_scaled_size = 1,
476
   * so don't ask for it.
477
   */
478
433
  do_fancy = cinfo->do_fancy_upsampling && cinfo->_min_DCT_scaled_size > 1;
479
480
  /* Verify we can handle the sampling factors, select per-component methods,
481
   * and create storage as needed.
482
   */
483
1.73k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
484
1.30k
       ci++, compptr++) {
485
    /* Compute size of an "input group" after IDCT scaling.  This many samples
486
     * are to be converted to max_h_samp_factor * max_v_samp_factor components.
487
     */
488
1.30k
    h_in_group = (compptr->h_samp_factor * compptr->_DCT_scaled_size) /
489
1.30k
                 cinfo->_min_DCT_scaled_size;
490
1.30k
    v_in_group = (compptr->v_samp_factor * compptr->_DCT_scaled_size) /
491
1.30k
                 cinfo->_min_DCT_scaled_size;
492
1.30k
    h_out_group = cinfo->max_h_samp_factor;
493
1.30k
    v_out_group = cinfo->max_v_samp_factor;
494
1.30k
    upsample->rowgroup_height[ci] = v_in_group; /* save for use later */
495
1.30k
    need_buffer = TRUE;
496
1.30k
    if (!compptr->component_needed) {
497
      /* Don't bother to upsample an uninteresting component. */
498
0
      upsample->methods[ci] = noop_upsample;
499
0
      need_buffer = FALSE;
500
1.30k
    } else if (h_in_group == h_out_group && v_in_group == v_out_group) {
501
      /* Fullsize components can be processed without any work. */
502
409
      upsample->methods[ci] = fullsize_upsample;
503
409
      need_buffer = FALSE;
504
896
    } else if (h_in_group * 2 == h_out_group && v_in_group == v_out_group) {
505
      /* Special cases for 2h1v upsampling */
506
37
      if (do_fancy && compptr->downsampled_width > 2) {
507
#ifdef WITH_SIMD
508
        if (jsimd_set_h2v1_fancy_upsample(cinfo))
509
          upsample->methods[ci] = jsimd_h2v1_fancy_upsample;
510
        else
511
#endif
512
0
          upsample->methods[ci] = h2v1_fancy_upsample;
513
37
      } else {
514
#ifdef WITH_SIMD
515
        if (jsimd_set_h2v1_upsample(cinfo))
516
          upsample->methods[ci] = jsimd_h2v1_upsample;
517
        else
518
#endif
519
37
          upsample->methods[ci] = h2v1_upsample;
520
37
      }
521
859
    } else if (h_in_group == h_out_group &&
522
587
               v_in_group * 2 == v_out_group && do_fancy) {
523
      /* Non-fancy upsampling is handled by the generic method */
524
#if defined(WITH_SIMD) && (SIMD_ARCHITECTURE == ARM64 || SIMD_ARCHITECTURE == ARM)
525
      if (jsimd_set_h1v2_fancy_upsample(cinfo))
526
        upsample->methods[ci] = jsimd_h1v2_fancy_upsample;
527
      else
528
#endif
529
0
        upsample->methods[ci] = h1v2_fancy_upsample;
530
0
      upsample->pub.need_context_rows = TRUE;
531
859
    } else if (h_in_group * 2 == h_out_group &&
532
49
               v_in_group * 2 == v_out_group) {
533
      /* Special cases for 2h2v upsampling */
534
24
      if (do_fancy && compptr->downsampled_width > 2) {
535
#ifdef WITH_SIMD
536
        if (jsimd_set_h2v2_fancy_upsample(cinfo))
537
          upsample->methods[ci] = jsimd_h2v2_fancy_upsample;
538
        else
539
#endif
540
0
          upsample->methods[ci] = h2v2_fancy_upsample;
541
0
        upsample->pub.need_context_rows = TRUE;
542
24
      } else {
543
#ifdef WITH_SIMD
544
        if (jsimd_set_h2v2_upsample(cinfo))
545
          upsample->methods[ci] = jsimd_h2v2_upsample;
546
        else
547
#endif
548
24
          upsample->methods[ci] = h2v2_upsample;
549
24
      }
550
835
    } else if ((h_out_group % h_in_group) == 0 &&
551
834
               (v_out_group % v_in_group) == 0) {
552
      /* Generic integral-factors upsampling method */
553
832
      upsample->methods[ci] = int_upsample;
554
832
      upsample->h_expand[ci] = (UINT8)(h_out_group / h_in_group);
555
832
      upsample->v_expand[ci] = (UINT8)(v_out_group / v_in_group);
556
832
    } else
557
3
      ERREXIT(cinfo, JERR_FRACT_SAMPLE_NOTIMPL);
558
1.30k
    if (need_buffer && !cinfo->master->jinit_upsampler_no_alloc) {
559
893
      upsample->color_buf[ci] = (_JSAMPARRAY)(*cinfo->mem->alloc_sarray)
560
893
        ((j_common_ptr)cinfo, JPOOL_IMAGE,
561
893
         (JDIMENSION)jround_up((long)cinfo->output_width,
562
893
                               (long)cinfo->max_h_samp_factor),
563
893
         (JDIMENSION)cinfo->max_v_samp_factor);
564
893
    }
565
1.30k
  }
566
433
}
567
568
#endif /* BITS_IN_JSAMPLE != 16 || defined(D_LOSSLESS_SUPPORTED) */