Coverage Report

Created: 2026-03-04 06:14

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/FreeRDP/libfreerdp/codec/planar.c
Line
Count
Source
1
/**
2
 * FreeRDP: A Remote Desktop Protocol Implementation
3
 * RDP6 Planar Codec
4
 *
5
 * Copyright 2013 Marc-Andre Moreau <marcandre.moreau@gmail.com>
6
 * Copyright 2016 Armin Novak <armin.novak@thincast.com>
7
 * Copyright 2016 Thincast Technologies GmbH
8
 *
9
 * Licensed under the Apache License, Version 2.0 (the "License");
10
 * you may not use this file except in compliance with the License.
11
 * You may obtain a copy of the License at
12
 *
13
 *     http://www.apache.org/licenses/LICENSE-2.0
14
 *
15
 * Unless required by applicable law or agreed to in writing, software
16
 * distributed under the License is distributed on an "AS IS" BASIS,
17
 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
18
 * See the License for the specific language governing permissions and
19
 * limitations under the License.
20
 */
21
22
#include <freerdp/config.h>
23
24
#include <winpr/crt.h>
25
#include <winpr/wtypes.h>
26
#include <winpr/assert.h>
27
#include <winpr/cast.h>
28
#include <winpr/print.h>
29
30
#include <freerdp/primitives.h>
31
#include <freerdp/log.h>
32
#include <freerdp/codec/bitmap.h>
33
#include <freerdp/codec/planar.h>
34
35
#define TAG FREERDP_TAG("codec")
36
37
#define PLANAR_ALIGN(val, align) \
38
11.3k
  ((val) % (align) == 0) ? (val) : ((val) + (align) - (val) % (align))
39
40
typedef struct
41
{
42
  /**
43
   * controlByte:
44
   * [0-3]: nRunLength
45
   * [4-7]: cRawBytes
46
   */
47
  BYTE controlByte;
48
  BYTE* rawValues;
49
} RDP6_RLE_SEGMENT;
50
51
typedef struct
52
{
53
  UINT32 cSegments;
54
  RDP6_RLE_SEGMENT* segments;
55
} RDP6_RLE_SEGMENTS;
56
57
typedef struct
58
{
59
  /**
60
   * formatHeader:
61
   * [0-2]: Color Loss Level (CLL)
62
   *  [3] : Chroma Subsampling (CS)
63
   *  [4] : Run Length Encoding (RLE)
64
   *  [5] : No Alpha (NA)
65
   * [6-7]: Reserved
66
   */
67
  BYTE formatHeader;
68
} RDP6_BITMAP_STREAM;
69
70
struct S_BITMAP_PLANAR_CONTEXT
71
{
72
  UINT32 maxWidth;
73
  UINT32 maxHeight;
74
  UINT32 maxPlaneSize;
75
76
  BOOL AllowSkipAlpha;
77
  BOOL AllowRunLengthEncoding;
78
  BOOL AllowColorSubsampling;
79
  BOOL AllowDynamicColorFidelity;
80
81
  UINT32 ColorLossLevel;
82
83
  BYTE* planes[4];
84
  BYTE* planesBuffer;
85
86
  BYTE* deltaPlanes[4];
87
  BYTE* deltaPlanesBuffer;
88
89
  BYTE* rlePlanes[4];
90
  BYTE* rlePlanesBuffer;
91
92
  BYTE* pTempData;
93
  UINT32 nTempStep;
94
95
  BOOL bgr;
96
  BOOL topdown;
97
};
98
99
static inline BYTE PLANAR_CONTROL_BYTE(UINT32 nRunLength, UINT32 cRawBytes)
100
0
{
101
0
  return WINPR_ASSERTING_INT_CAST(UINT8, ((nRunLength & 0x0F) | ((cRawBytes & 0x0F) << 4)));
102
0
}
103
104
static inline BYTE PLANAR_CONTROL_BYTE_RUN_LENGTH(UINT32 controlByte)
105
27.7M
{
106
27.7M
  return (controlByte & 0x0F);
107
27.7M
}
108
static inline BYTE PLANAR_CONTROL_BYTE_RAW_BYTES(UINT32 controlByte)
109
27.7M
{
110
27.7M
  return ((controlByte >> 4) & 0x0F);
111
27.7M
}
112
113
static inline UINT32 planar_invert_format(BITMAP_PLANAR_CONTEXT* WINPR_RESTRICT planar, BOOL alpha,
114
                                          UINT32 DstFormat)
115
12.0k
{
116
12.0k
  WINPR_ASSERT(planar);
117
12.0k
  if (planar->bgr && alpha)
118
0
  {
119
0
    switch (DstFormat)
120
0
    {
121
0
      case PIXEL_FORMAT_ARGB32:
122
0
        DstFormat = PIXEL_FORMAT_ABGR32;
123
0
        break;
124
0
      case PIXEL_FORMAT_XRGB32:
125
0
        DstFormat = PIXEL_FORMAT_XBGR32;
126
0
        break;
127
0
      case PIXEL_FORMAT_ABGR32:
128
0
        DstFormat = PIXEL_FORMAT_ARGB32;
129
0
        break;
130
0
      case PIXEL_FORMAT_XBGR32:
131
0
        DstFormat = PIXEL_FORMAT_XRGB32;
132
0
        break;
133
0
      case PIXEL_FORMAT_BGRA32:
134
0
        DstFormat = PIXEL_FORMAT_RGBA32;
135
0
        break;
136
0
      case PIXEL_FORMAT_BGRX32:
137
0
        DstFormat = PIXEL_FORMAT_RGBX32;
138
0
        break;
139
0
      case PIXEL_FORMAT_RGBA32:
140
0
        DstFormat = PIXEL_FORMAT_BGRA32;
141
0
        break;
142
0
      case PIXEL_FORMAT_RGBX32:
143
0
        DstFormat = PIXEL_FORMAT_BGRX32;
144
0
        break;
145
0
      case PIXEL_FORMAT_RGB24:
146
0
        DstFormat = PIXEL_FORMAT_BGR24;
147
0
        break;
148
0
      case PIXEL_FORMAT_BGR24:
149
0
        DstFormat = PIXEL_FORMAT_RGB24;
150
0
        break;
151
0
      case PIXEL_FORMAT_RGB16:
152
0
        DstFormat = PIXEL_FORMAT_BGR16;
153
0
        break;
154
0
      case PIXEL_FORMAT_BGR16:
155
0
        DstFormat = PIXEL_FORMAT_RGB16;
156
0
        break;
157
0
      case PIXEL_FORMAT_ARGB15:
158
0
        DstFormat = PIXEL_FORMAT_ABGR15;
159
0
        break;
160
0
      case PIXEL_FORMAT_RGB15:
161
0
        DstFormat = PIXEL_FORMAT_BGR15;
162
0
        break;
163
0
      case PIXEL_FORMAT_ABGR15:
164
0
        DstFormat = PIXEL_FORMAT_ARGB15;
165
0
        break;
166
0
      case PIXEL_FORMAT_BGR15:
167
0
        DstFormat = PIXEL_FORMAT_RGB15;
168
0
        break;
169
0
      default:
170
0
        break;
171
0
    }
172
0
  }
173
12.0k
  return DstFormat;
174
12.0k
}
175
176
static inline BOOL freerdp_bitmap_planar_compress_plane_rle(const BYTE* WINPR_RESTRICT inPlane,
177
                                                            UINT32 width, UINT32 height,
178
                                                            BYTE* WINPR_RESTRICT outPlane,
179
                                                            UINT32* WINPR_RESTRICT dstSize);
180
static inline BYTE* freerdp_bitmap_planar_delta_encode_plane(const BYTE* WINPR_RESTRICT inPlane,
181
                                                             UINT32 width, UINT32 height,
182
                                                             BYTE* WINPR_RESTRICT outPlane);
183
184
static inline INT32 planar_skip_plane_rle(const BYTE* WINPR_RESTRICT pSrcData, UINT32 SrcSize,
185
                                          UINT32 nWidth, UINT32 nHeight)
186
3.28k
{
187
3.28k
  UINT32 used = 0;
188
189
3.28k
  WINPR_ASSERT(pSrcData);
190
191
48.4k
  for (UINT32 y = 0; y < nHeight; y++)
192
47.3k
  {
193
20.4M
    for (UINT32 x = 0; x < nWidth;)
194
20.4M
    {
195
20.4M
      if (used >= SrcSize)
196
487
      {
197
487
        WLog_ERR(TAG, "planar plane used %" PRIu32 " exceeds SrcSize %" PRIu32, used,
198
487
                 SrcSize);
199
487
        return -1;
200
487
      }
201
202
20.4M
      const uint8_t controlByte = pSrcData[used++];
203
20.4M
      uint32_t nRunLength = PLANAR_CONTROL_BYTE_RUN_LENGTH(controlByte);
204
20.4M
      uint32_t cRawBytes = PLANAR_CONTROL_BYTE_RAW_BYTES(controlByte);
205
206
20.4M
      if (nRunLength == 1)
207
26.5k
      {
208
26.5k
        nRunLength = cRawBytes + 16;
209
26.5k
        cRawBytes = 0;
210
26.5k
      }
211
20.3M
      else if (nRunLength == 2)
212
34.7k
      {
213
34.7k
        nRunLength = cRawBytes + 32;
214
34.7k
        cRawBytes = 0;
215
34.7k
      }
216
217
20.4M
      used += cRawBytes;
218
20.4M
      x += cRawBytes;
219
20.4M
      x += nRunLength;
220
221
20.4M
      if (x > nWidth)
222
858
      {
223
858
        WLog_ERR(TAG, "planar plane x %" PRIu32 " exceeds width %" PRIu32, x, nWidth);
224
858
        return -1;
225
858
      }
226
227
20.4M
      if (used > SrcSize)
228
836
      {
229
836
        WLog_ERR(TAG, "planar plane used %" PRIu32 " exceeds SrcSize %" PRId32, used,
230
836
                 INT32_MAX);
231
836
        return -1;
232
836
      }
233
20.4M
    }
234
47.3k
  }
235
236
1.10k
  if (used > INT32_MAX)
237
0
  {
238
0
    WLog_ERR(TAG, "planar plane used %" PRIu32 " exceeds SrcSize %" PRIu32, used, SrcSize);
239
0
    return -1;
240
0
  }
241
1.10k
  return (INT32)used;
242
1.10k
}
243
244
static inline UINT8 clamp(INT16 val)
245
988k
{
246
988k
  return (UINT8)val;
247
988k
}
248
249
static inline INT32 planar_decompress_plane_rle_only(const BYTE* WINPR_RESTRICT pSrcData,
250
                                                     UINT32 SrcSize, BYTE* WINPR_RESTRICT pDstData,
251
                                                     UINT32 nWidth, UINT32 nHeight)
252
612
{
253
612
  BYTE* previousScanline = nullptr;
254
612
  const BYTE* srcp = pSrcData;
255
256
612
  WINPR_ASSERT(nHeight <= INT32_MAX);
257
612
  WINPR_ASSERT(nWidth <= INT32_MAX);
258
259
16.7k
  for (UINT32 y = 0; y < nHeight; y++)
260
16.0k
  {
261
16.0k
    BYTE* dstp = &pDstData[1ULL * (y)*nWidth];
262
16.0k
    INT16 pixel = 0;
263
16.0k
    BYTE* currentScanline = dstp;
264
265
7.28M
    for (UINT32 x = 0; x < nWidth;)
266
7.26M
    {
267
7.26M
      BYTE controlByte = *srcp;
268
7.26M
      srcp++;
269
270
7.26M
      if ((srcp - pSrcData) > SrcSize * 1ll)
271
0
      {
272
0
        WLog_ERR(TAG, "error reading input buffer");
273
0
        return -1;
274
0
      }
275
276
7.26M
      UINT32 nRunLength = PLANAR_CONTROL_BYTE_RUN_LENGTH(controlByte);
277
7.26M
      UINT32 cRawBytes = PLANAR_CONTROL_BYTE_RAW_BYTES(controlByte);
278
279
7.26M
      if (nRunLength == 1)
280
9.49k
      {
281
9.49k
        nRunLength = cRawBytes + 16;
282
9.49k
        cRawBytes = 0;
283
9.49k
      }
284
7.25M
      else if (nRunLength == 2)
285
7.94k
      {
286
7.94k
        nRunLength = cRawBytes + 32;
287
7.94k
        cRawBytes = 0;
288
7.94k
      }
289
290
7.26M
      if (((dstp + (cRawBytes + nRunLength)) - currentScanline) > nWidth * 1ll)
291
0
      {
292
0
        WLog_ERR(TAG, "too many pixels in scanline");
293
0
        return -1;
294
0
      }
295
296
7.26M
      if (!previousScanline)
297
197k
      {
298
        /* first scanline, absolute values */
299
198k
        while (cRawBytes > 0)
300
1.48k
        {
301
1.48k
          pixel = *srcp;
302
1.48k
          srcp++;
303
1.48k
          *dstp = clamp(pixel);
304
1.48k
          dstp++;
305
1.48k
          x++;
306
1.48k
          cRawBytes--;
307
1.48k
        }
308
309
211k
        while (nRunLength > 0)
310
14.6k
        {
311
14.6k
          *dstp = clamp(pixel);
312
14.6k
          dstp++;
313
14.6k
          x++;
314
14.6k
          nRunLength--;
315
14.6k
        }
316
197k
      }
317
7.06M
      else
318
7.06M
      {
319
        /* delta values relative to previous scanline */
320
7.10M
        while (cRawBytes > 0)
321
36.3k
        {
322
36.3k
          UINT8 deltaValue = *srcp;
323
36.3k
          srcp++;
324
325
36.3k
          if (deltaValue & 1)
326
7.52k
          {
327
7.52k
            deltaValue = deltaValue >> 1;
328
7.52k
            deltaValue = deltaValue + 1;
329
7.52k
            pixel = WINPR_ASSERTING_INT_CAST(int16_t, -1 * (int16_t)deltaValue);
330
7.52k
          }
331
28.8k
          else
332
28.8k
          {
333
28.8k
            deltaValue = deltaValue >> 1;
334
28.8k
            pixel = WINPR_ASSERTING_INT_CAST(INT16, deltaValue);
335
28.8k
          }
336
337
36.3k
          const INT16 delta =
338
36.3k
              WINPR_ASSERTING_INT_CAST(int16_t, previousScanline[x] + pixel);
339
36.3k
          *dstp = clamp(delta);
340
36.3k
          dstp++;
341
36.3k
          x++;
342
36.3k
          cRawBytes--;
343
36.3k
        }
344
345
7.52M
        while (nRunLength > 0)
346
454k
        {
347
454k
          const INT16 deltaValue =
348
454k
              WINPR_ASSERTING_INT_CAST(int16_t, previousScanline[x] + pixel);
349
454k
          *dstp = clamp(deltaValue);
350
454k
          dstp++;
351
454k
          x++;
352
454k
          nRunLength--;
353
454k
        }
354
7.06M
      }
355
7.26M
    }
356
357
16.0k
    previousScanline = currentScanline;
358
16.0k
  }
359
360
612
  return (INT32)(srcp - pSrcData);
361
612
}
362
363
static inline INT32 planar_decompress_plane_rle(const BYTE* WINPR_RESTRICT pSrcData, UINT32 SrcSize,
364
                                                BYTE* WINPR_RESTRICT pDstData, UINT32 nDstStep,
365
                                                UINT32 nXDst, UINT32 nYDst, UINT32 nWidth,
366
                                                UINT32 nHeight, UINT32 nChannel, BOOL vFlip)
367
375
{
368
375
  INT32 beg = 0;
369
375
  INT32 end = 0;
370
375
  INT32 inc = 0;
371
375
  BYTE* previousScanline = nullptr;
372
375
  const BYTE* srcp = pSrcData;
373
374
375
  WINPR_ASSERT(nHeight <= INT32_MAX);
375
375
  WINPR_ASSERT(nWidth <= INT32_MAX);
376
375
  WINPR_ASSERT(nDstStep <= INT32_MAX);
377
378
375
  if (vFlip)
379
0
  {
380
0
    beg = (INT32)nHeight - 1;
381
0
    end = -1;
382
0
    inc = -1;
383
0
  }
384
375
  else
385
375
  {
386
375
    beg = 0;
387
375
    end = (INT32)nHeight;
388
375
    inc = 1;
389
375
  }
390
391
13.5k
  for (INT32 y = beg; y != end; y += inc)
392
13.1k
  {
393
13.1k
    const intptr_t off = ((1LL * nYDst + y) * nDstStep) + (4LL * nXDst) + nChannel * 1LL;
394
13.1k
    BYTE* dstp = &pDstData[off];
395
13.1k
    BYTE* currentScanline = dstp;
396
13.1k
    INT16 pixel = 0;
397
398
81.0k
    for (INT32 x = 0; x < (INT32)nWidth;)
399
67.8k
    {
400
67.8k
      const BYTE controlByte = *srcp;
401
67.8k
      srcp++;
402
403
67.8k
      if ((srcp - pSrcData) > SrcSize * 1ll)
404
0
      {
405
0
        WLog_ERR(TAG, "error reading input buffer");
406
0
        return -1;
407
0
      }
408
409
67.8k
      UINT32 nRunLength = PLANAR_CONTROL_BYTE_RUN_LENGTH(controlByte);
410
67.8k
      UINT32 cRawBytes = PLANAR_CONTROL_BYTE_RAW_BYTES(controlByte);
411
412
67.8k
      if (nRunLength == 1)
413
7.21k
      {
414
7.21k
        nRunLength = cRawBytes + 16;
415
7.21k
        cRawBytes = 0;
416
7.21k
      }
417
60.6k
      else if (nRunLength == 2)
418
9.02k
      {
419
9.02k
        nRunLength = cRawBytes + 32;
420
9.02k
        cRawBytes = 0;
421
9.02k
      }
422
423
67.8k
      if (((dstp + (cRawBytes + nRunLength)) - currentScanline) > nWidth * 4ll)
424
0
      {
425
0
        WLog_ERR(TAG, "too many pixels in scanline");
426
0
        return -1;
427
0
      }
428
429
67.8k
      if (!previousScanline)
430
2.80k
      {
431
        /* first scanline, absolute values */
432
4.27k
        while (cRawBytes > 0)
433
1.47k
        {
434
1.47k
          pixel = *srcp;
435
1.47k
          srcp++;
436
1.47k
          *dstp = WINPR_ASSERTING_INT_CAST(BYTE, pixel);
437
1.47k
          dstp += 4;
438
1.47k
          x++;
439
1.47k
          cRawBytes--;
440
1.47k
        }
441
442
14.4k
        while (nRunLength > 0)
443
11.6k
        {
444
11.6k
          *dstp = WINPR_ASSERTING_INT_CAST(BYTE, pixel);
445
11.6k
          dstp += 4;
446
11.6k
          x++;
447
11.6k
          nRunLength--;
448
11.6k
        }
449
2.80k
      }
450
65.0k
      else
451
65.0k
      {
452
        /* delta values relative to previous scanline */
453
116k
        while (cRawBytes > 0)
454
51.7k
        {
455
51.7k
          BYTE deltaValue = *srcp;
456
51.7k
          srcp++;
457
458
51.7k
          if (deltaValue & 1)
459
850
          {
460
850
            deltaValue = deltaValue >> 1;
461
850
            deltaValue = deltaValue + 1;
462
850
            pixel = WINPR_ASSERTING_INT_CAST(int16_t, -deltaValue);
463
850
          }
464
50.9k
          else
465
50.9k
          {
466
50.9k
            deltaValue = deltaValue >> 1;
467
50.9k
            pixel = deltaValue;
468
50.9k
          }
469
470
51.7k
          const INT16 delta =
471
51.7k
              WINPR_ASSERTING_INT_CAST(int16_t, previousScanline[4LL * x] + pixel);
472
51.7k
          *dstp = clamp(delta);
473
51.7k
          dstp += 4;
474
51.7k
          x++;
475
51.7k
          cRawBytes--;
476
51.7k
        }
477
478
494k
        while (nRunLength > 0)
479
429k
        {
480
429k
          const INT16 deltaValue =
481
429k
              WINPR_ASSERTING_INT_CAST(int16_t, pixel + previousScanline[4LL * x]);
482
429k
          *dstp = clamp(deltaValue);
483
429k
          dstp += 4;
484
429k
          x++;
485
429k
          nRunLength--;
486
429k
        }
487
65.0k
      }
488
67.8k
    }
489
490
13.1k
    previousScanline = currentScanline;
491
13.1k
  }
492
493
375
  return (INT32)(srcp - pSrcData);
494
375
}
495
496
static inline INT32 planar_set_plane(BYTE bValue, BYTE* pDstData, UINT32 nDstStep, UINT32 nXDst,
497
                                     UINT32 nYDst, UINT32 nWidth, UINT32 nHeight, UINT32 nChannel,
498
                                     BOOL vFlip)
499
125
{
500
125
  INT32 beg = 0;
501
125
  INT32 end = (INT32)nHeight;
502
125
  INT32 inc = 1;
503
504
125
  WINPR_ASSERT(nHeight <= INT32_MAX);
505
125
  WINPR_ASSERT(nWidth <= INT32_MAX);
506
125
  WINPR_ASSERT(nDstStep <= INT32_MAX);
507
508
125
  if (vFlip)
509
0
  {
510
0
    beg = (INT32)nHeight - 1;
511
0
    end = -1;
512
0
    inc = -1;
513
0
  }
514
515
4.50k
  for (INT32 y = beg; y != end; y += inc)
516
4.38k
  {
517
4.38k
    const intptr_t off = ((1LL * nYDst + y) * nDstStep) + (4LL * nXDst) + nChannel * 1LL;
518
4.38k
    BYTE* dstp = &pDstData[off];
519
520
169k
    for (INT32 x = 0; x < (INT32)nWidth; ++x)
521
164k
    {
522
164k
      *dstp = bValue;
523
164k
      dstp += 4;
524
164k
    }
525
4.38k
  }
526
527
125
  return 0;
528
125
}
529
530
static inline BOOL writeLine(BYTE** WINPR_RESTRICT ppRgba, UINT32 DstFormat, UINT32 width,
531
                             const BYTE** WINPR_RESTRICT ppR, const BYTE** WINPR_RESTRICT ppG,
532
                             const BYTE** WINPR_RESTRICT ppB, const BYTE** WINPR_RESTRICT ppA)
533
48.4k
{
534
48.4k
  WINPR_ASSERT(ppRgba);
535
48.4k
  WINPR_ASSERT(ppR);
536
48.4k
  WINPR_ASSERT(ppG);
537
48.4k
  WINPR_ASSERT(ppB);
538
539
48.4k
  switch (DstFormat)
540
48.4k
  {
541
0
    case PIXEL_FORMAT_BGRA32:
542
0
      for (UINT32 x = 0; x < width; x++)
543
0
      {
544
0
        *(*ppRgba)++ = *(*ppB)++;
545
0
        *(*ppRgba)++ = *(*ppG)++;
546
0
        *(*ppRgba)++ = *(*ppR)++;
547
0
        *(*ppRgba)++ = *(*ppA)++;
548
0
      }
549
550
0
      return TRUE;
551
552
48.4k
    case PIXEL_FORMAT_BGRX32:
553
2.42M
      for (UINT32 x = 0; x < width; x++)
554
2.37M
      {
555
2.37M
        *(*ppRgba)++ = *(*ppB)++;
556
2.37M
        *(*ppRgba)++ = *(*ppG)++;
557
2.37M
        *(*ppRgba)++ = *(*ppR)++;
558
2.37M
        *(*ppRgba)++ = 0xFF;
559
2.37M
      }
560
561
48.4k
      return TRUE;
562
563
0
    default:
564
0
      if (ppA)
565
0
      {
566
0
        for (UINT32 x = 0; x < width; x++)
567
0
        {
568
0
          BYTE alpha = *(*ppA)++;
569
0
          UINT32 color =
570
0
              FreeRDPGetColor(DstFormat, *(*ppR)++, *(*ppG)++, *(*ppB)++, alpha);
571
0
          FreeRDPWriteColor(*ppRgba, DstFormat, color);
572
0
          *ppRgba += FreeRDPGetBytesPerPixel(DstFormat);
573
0
        }
574
0
      }
575
0
      else
576
0
      {
577
0
        const BYTE alpha = 0xFF;
578
579
0
        for (UINT32 x = 0; x < width; x++)
580
0
        {
581
0
          UINT32 color =
582
0
              FreeRDPGetColor(DstFormat, *(*ppR)++, *(*ppG)++, *(*ppB)++, alpha);
583
0
          FreeRDPWriteColor(*ppRgba, DstFormat, color);
584
0
          *ppRgba += FreeRDPGetBytesPerPixel(DstFormat);
585
0
        }
586
0
      }
587
588
0
      return TRUE;
589
48.4k
  }
590
48.4k
}
591
592
static inline BOOL planar_decompress_planes_raw(const BYTE* WINPR_RESTRICT pSrcData[4],
593
                                                BYTE* WINPR_RESTRICT pDstData, UINT32 DstFormat,
594
                                                UINT32 nDstStep, UINT32 nXDst, UINT32 nYDst,
595
                                                UINT32 nWidth, UINT32 nHeight, BOOL vFlip,
596
                                                UINT32 totalHeight)
597
1.11k
{
598
1.11k
  INT32 beg = 0;
599
1.11k
  INT32 end = 0;
600
1.11k
  INT32 inc = 0;
601
1.11k
  const BYTE* pR = pSrcData[0];
602
1.11k
  const BYTE* pG = pSrcData[1];
603
1.11k
  const BYTE* pB = pSrcData[2];
604
1.11k
  const BYTE* pA = pSrcData[3];
605
1.11k
  const UINT32 bpp = FreeRDPGetBytesPerPixel(DstFormat);
606
607
1.11k
  if (vFlip)
608
0
  {
609
0
    beg = WINPR_ASSERTING_INT_CAST(int32_t, nHeight - 1);
610
0
    end = -1;
611
0
    inc = -1;
612
0
  }
613
1.11k
  else
614
1.11k
  {
615
1.11k
    beg = 0;
616
1.11k
    end = WINPR_ASSERTING_INT_CAST(int32_t, nHeight);
617
1.11k
    inc = 1;
618
1.11k
  }
619
620
1.11k
  if (nYDst + nHeight > totalHeight)
621
0
  {
622
0
    WLog_ERR(TAG,
623
0
             "planar plane destination Y %" PRIu32 " + height %" PRIu32
624
0
             " exceeds totalHeight %" PRIu32,
625
0
             nYDst, nHeight, totalHeight);
626
0
    return FALSE;
627
0
  }
628
629
1.11k
  if ((nXDst + nWidth) * bpp > nDstStep)
630
0
  {
631
0
    WLog_ERR(TAG,
632
0
             "planar plane destination (X %" PRIu32 " + width %" PRIu32 ") * bpp %" PRIu32
633
0
             " exceeds stride %" PRIu32,
634
0
             nXDst, nWidth, bpp, nDstStep);
635
0
    return FALSE;
636
0
  }
637
638
49.5k
  for (INT32 y = beg; y != end; y += inc)
639
48.4k
  {
640
48.4k
    BYTE* pRGB = nullptr;
641
642
48.4k
    if (y > WINPR_ASSERTING_INT_CAST(INT64, nHeight))
643
0
    {
644
0
      WLog_ERR(TAG, "planar plane destination Y %" PRId32 " exceeds height %" PRIu32, y,
645
0
               nHeight);
646
0
      return FALSE;
647
0
    }
648
649
48.4k
    const intptr_t off = ((1LL * nYDst + y) * nDstStep) + (1LL * nXDst * bpp);
650
48.4k
    pRGB = &pDstData[off];
651
652
48.4k
    if (!writeLine(&pRGB, DstFormat, nWidth, &pR, &pG, &pB, &pA))
653
0
      return FALSE;
654
48.4k
  }
655
656
1.11k
  return TRUE;
657
1.11k
}
658
659
static BOOL planar_subsample_expand(const BYTE* WINPR_RESTRICT plane, size_t planeLength,
660
                                    UINT32 nWidth, UINT32 nHeight, UINT32 nPlaneWidth,
661
                                    UINT32 nPlaneHeight, BYTE* WINPR_RESTRICT deltaPlane)
662
462
{
663
462
  size_t pos = 0;
664
462
  WINPR_UNUSED(planeLength);
665
666
462
  WINPR_ASSERT(plane);
667
462
  WINPR_ASSERT(deltaPlane);
668
669
462
  if (nWidth > nPlaneWidth * 2)
670
0
  {
671
0
    WLog_ERR(TAG, "planar subsample width %" PRIu32 " > PlaneWidth %" PRIu32 " * 2", nWidth,
672
0
             nPlaneWidth);
673
0
    return FALSE;
674
0
  }
675
676
462
  if (nHeight > nPlaneHeight * 2)
677
0
  {
678
0
    WLog_ERR(TAG, "planar subsample height %" PRIu32 " > PlaneHeight %" PRIu32 " * 2", nHeight,
679
0
             nPlaneHeight);
680
0
    return FALSE;
681
0
  }
682
683
18.2k
  for (size_t y = 0; y < nHeight; y++)
684
17.7k
  {
685
17.7k
    const BYTE* src = plane + y / 2 * nPlaneWidth;
686
687
779k
    for (UINT32 x = 0; x < nWidth; x++)
688
761k
    {
689
761k
      deltaPlane[pos++] = src[x / 2];
690
761k
    }
691
17.7k
  }
692
693
462
  return TRUE;
694
462
}
695
696
#if !defined(WITHOUT_FREERDP_3x_DEPRECATED)
697
BOOL planar_decompress(BITMAP_PLANAR_CONTEXT* WINPR_RESTRICT planar,
698
                       const BYTE* WINPR_RESTRICT pSrcData, UINT32 SrcSize, UINT32 nSrcWidth,
699
                       UINT32 nSrcHeight, BYTE* WINPR_RESTRICT pDstData, UINT32 DstFormat,
700
                       UINT32 nDstStep, UINT32 nXDst, UINT32 nYDst, UINT32 nDstWidth,
701
                       UINT32 nDstHeight, BOOL vFlip)
702
11.3k
{
703
11.3k
  return freerdp_bitmap_decompress_planar(planar, pSrcData, SrcSize, nSrcWidth, nSrcHeight,
704
11.3k
                                          pDstData, DstFormat, nDstStep, nXDst, nYDst, nDstWidth,
705
11.3k
                                          nDstHeight, vFlip);
706
11.3k
}
707
#endif
708
709
BOOL freerdp_bitmap_decompress_planar(BITMAP_PLANAR_CONTEXT* WINPR_RESTRICT planar,
710
                                      const BYTE* WINPR_RESTRICT pSrcData, UINT32 SrcSize,
711
                                      UINT32 nSrcWidth, UINT32 nSrcHeight,
712
                                      BYTE* WINPR_RESTRICT pDstData, UINT32 DstFormat,
713
                                      UINT32 nDstStep, UINT32 nXDst, UINT32 nYDst, UINT32 nDstWidth,
714
                                      UINT32 nDstHeight, BOOL vFlip)
715
11.3k
{
716
11.3k
  BOOL useAlpha = FALSE;
717
11.3k
  INT32 status = 0;
718
11.3k
  INT32 rleSizes[4] = { 0, 0, 0, 0 };
719
11.3k
  UINT32 rawSizes[4] = WINPR_C_ARRAY_INIT;
720
11.3k
  UINT32 rawWidths[4] = WINPR_C_ARRAY_INIT;
721
11.3k
  UINT32 rawHeights[4] = WINPR_C_ARRAY_INIT;
722
11.3k
  const BYTE* planes[4] = WINPR_C_ARRAY_INIT;
723
11.3k
  const UINT32 w = MIN(nSrcWidth, nDstWidth);
724
11.3k
  const UINT32 h = MIN(nSrcHeight, nDstHeight);
725
11.3k
  const primitives_t* prims = primitives_get();
726
727
11.3k
  WINPR_ASSERT(planar);
728
11.3k
  WINPR_ASSERT(prims);
729
730
11.3k
  if (planar->maxWidth < nSrcWidth)
731
0
    return FALSE;
732
11.3k
  if (planar->maxHeight < nSrcHeight)
733
0
    return FALSE;
734
735
11.3k
  const UINT32 bpp = FreeRDPGetBytesPerPixel(DstFormat);
736
11.3k
  if (nDstStep <= 0)
737
11.3k
    nDstStep = nDstWidth * bpp;
738
739
11.3k
  const BYTE* srcp = pSrcData;
740
741
11.3k
  if (!pSrcData)
742
0
  {
743
0
    WLog_ERR(TAG, "Invalid argument pSrcData=nullptr");
744
0
    return FALSE;
745
0
  }
746
747
11.3k
  if (!pDstData)
748
0
  {
749
0
    WLog_ERR(TAG, "Invalid argument pDstData=nullptr");
750
0
    return FALSE;
751
0
  }
752
753
11.3k
  const BYTE FormatHeader = *srcp++;
754
11.3k
  const BYTE cll = (FormatHeader & PLANAR_FORMAT_HEADER_CLL_MASK);
755
11.3k
  const BYTE cs = (FormatHeader & PLANAR_FORMAT_HEADER_CS) != 0;
756
11.3k
  const BYTE rle = (FormatHeader & PLANAR_FORMAT_HEADER_RLE) != 0;
757
11.3k
  const BYTE alpha = !(FormatHeader & PLANAR_FORMAT_HEADER_NA);
758
759
11.3k
  DstFormat = planar_invert_format(planar, alpha, DstFormat);
760
761
11.3k
  if (alpha)
762
5.69k
    useAlpha = FreeRDPColorHasAlpha(DstFormat);
763
764
  // WLog_INFO(TAG, "CLL: %"PRIu32" CS: %"PRIu8" RLE: %"PRIu8" ALPHA: %"PRIu8"", cll, cs, rle,
765
  // alpha);
766
767
11.3k
  if (!cll && cs)
768
266
  {
769
266
    WLog_ERR(TAG, "Chroma subsampling requires YCoCg and does not work with RGB data");
770
266
    return FALSE; /* Chroma subsampling requires YCoCg */
771
266
  }
772
773
11.1k
  const UINT32 subWidth = (nSrcWidth / 2) + (nSrcWidth % 2);
774
11.1k
  const UINT32 subHeight = (nSrcHeight / 2) + (nSrcHeight % 2);
775
11.1k
  const UINT32 planeSize = nSrcWidth * nSrcHeight;
776
11.1k
  const UINT32 subSize = subWidth * subHeight;
777
778
11.1k
  if (!cs)
779
9.57k
  {
780
9.57k
    rawSizes[0] = planeSize; /* LumaOrRedPlane */
781
9.57k
    rawWidths[0] = nSrcWidth;
782
9.57k
    rawHeights[0] = nSrcHeight;
783
9.57k
    rawSizes[1] = planeSize; /* OrangeChromaOrGreenPlane */
784
9.57k
    rawWidths[1] = nSrcWidth;
785
9.57k
    rawHeights[1] = nSrcHeight;
786
9.57k
    rawSizes[2] = planeSize; /* GreenChromaOrBluePlane */
787
9.57k
    rawWidths[2] = nSrcWidth;
788
9.57k
    rawHeights[2] = nSrcHeight;
789
9.57k
    rawSizes[3] = planeSize; /* AlphaPlane */
790
9.57k
    rawWidths[3] = nSrcWidth;
791
9.57k
    rawHeights[3] = nSrcHeight;
792
9.57k
  }
793
1.55k
  else /* Chroma Subsampling */
794
1.55k
  {
795
1.55k
    rawSizes[0] = planeSize; /* LumaOrRedPlane */
796
1.55k
    rawWidths[0] = nSrcWidth;
797
1.55k
    rawHeights[0] = nSrcHeight;
798
1.55k
    rawSizes[1] = subSize; /* OrangeChromaOrGreenPlane */
799
1.55k
    rawWidths[1] = subWidth;
800
1.55k
    rawHeights[1] = subHeight;
801
1.55k
    rawSizes[2] = subSize; /* GreenChromaOrBluePlane */
802
1.55k
    rawWidths[2] = subWidth;
803
1.55k
    rawHeights[2] = subHeight;
804
1.55k
    rawSizes[3] = planeSize; /* AlphaPlane */
805
1.55k
    rawWidths[3] = nSrcWidth;
806
1.55k
    rawHeights[3] = nSrcHeight;
807
1.55k
  }
808
809
11.1k
  const size_t diff = WINPR_ASSERTING_INT_CAST(size_t, (intptr_t)(srcp - pSrcData));
810
11.1k
  if (SrcSize < diff)
811
0
  {
812
0
    WLog_ERR(TAG, "Size mismatch %" PRIu32 " < %" PRIuz, SrcSize, diff);
813
0
    return FALSE;
814
0
  }
815
816
11.1k
  if (!rle) /* RAW */
817
8.61k
  {
818
819
8.61k
    UINT32 base = planeSize * 3;
820
8.61k
    if (cs)
821
632
      base = planeSize + planeSize / 2;
822
823
8.61k
    if (alpha)
824
5.13k
    {
825
5.13k
      if ((SrcSize - diff) < (planeSize + base))
826
4.64k
      {
827
4.64k
        WLog_ERR(TAG, "Alpha plane size mismatch %" PRIuz " < %" PRIu32, SrcSize - diff,
828
4.64k
                 (planeSize + base));
829
4.64k
        return FALSE;
830
4.64k
      }
831
832
490
      planes[3] = srcp;                    /* AlphaPlane */
833
490
      planes[0] = planes[3] + rawSizes[3]; /* LumaOrRedPlane */
834
490
      planes[1] = planes[0] + rawSizes[0]; /* OrangeChromaOrGreenPlane */
835
490
      planes[2] = planes[1] + rawSizes[1]; /* GreenChromaOrBluePlane */
836
837
490
      if ((planes[2] + rawSizes[2]) > &pSrcData[SrcSize])
838
0
      {
839
0
        WLog_ERR(TAG, "plane size mismatch %p + %" PRIu32 " > %p",
840
0
                 WINPR_CXX_COMPAT_CAST(const void*, planes[2]), rawSizes[2],
841
0
                 WINPR_CXX_COMPAT_CAST(const void*, &pSrcData[SrcSize]));
842
0
        return FALSE;
843
0
      }
844
490
    }
845
3.48k
    else
846
3.48k
    {
847
3.48k
      if ((SrcSize - diff) < base)
848
3.06k
      {
849
3.06k
        WLog_ERR(TAG, "plane size mismatch %" PRIuz " < %" PRIu32, SrcSize - diff, base);
850
3.06k
        return FALSE;
851
3.06k
      }
852
853
416
      planes[0] = srcp;                    /* LumaOrRedPlane */
854
416
      planes[1] = planes[0] + rawSizes[0]; /* OrangeChromaOrGreenPlane */
855
416
      planes[2] = planes[1] + rawSizes[1]; /* GreenChromaOrBluePlane */
856
857
416
      if ((planes[2] + rawSizes[2]) > &pSrcData[SrcSize])
858
0
      {
859
0
        WLog_ERR(TAG, "plane size mismatch %p + %" PRIu32 " > %p",
860
0
                 WINPR_CXX_COMPAT_CAST(const void*, planes[2]), rawSizes[2],
861
0
                 WINPR_CXX_COMPAT_CAST(const void*, &pSrcData[SrcSize]));
862
0
        return FALSE;
863
0
      }
864
416
    }
865
8.61k
  }
866
2.51k
  else /* RLE */
867
2.51k
  {
868
2.51k
    if (alpha)
869
456
    {
870
456
      planes[3] = srcp;
871
456
      rleSizes[3] = planar_skip_plane_rle(planes[3], (UINT32)(SrcSize - diff), rawWidths[3],
872
456
                                          rawHeights[3]); /* AlphaPlane */
873
874
456
      if (rleSizes[3] < 0)
875
428
        return FALSE;
876
877
28
      planes[0] = planes[3] + rleSizes[3];
878
28
    }
879
2.05k
    else
880
2.05k
      planes[0] = srcp;
881
882
2.08k
    const size_t diff0 = WINPR_ASSERTING_INT_CAST(size_t, (intptr_t)(planes[0] - pSrcData));
883
2.08k
    if (SrcSize < diff0)
884
0
    {
885
0
      WLog_ERR(TAG, "Size mismatch %" PRIu32 " < %" PRIuz, SrcSize, diff0);
886
0
      return FALSE;
887
0
    }
888
2.08k
    rleSizes[0] = planar_skip_plane_rle(planes[0], (UINT32)(SrcSize - diff0), rawWidths[0],
889
2.08k
                                        rawHeights[0]); /* RedPlane */
890
891
2.08k
    if (rleSizes[0] < 0)
892
1.68k
      return FALSE;
893
894
395
    planes[1] = planes[0] + rleSizes[0];
895
896
395
    const size_t diff1 = WINPR_ASSERTING_INT_CAST(size_t, (intptr_t)(planes[1] - pSrcData));
897
395
    if (SrcSize < diff1)
898
0
    {
899
0
      WLog_ERR(TAG, "Size mismatch %" PRIu32 " < %" PRIuz, SrcSize, diff1);
900
0
      return FALSE;
901
0
    }
902
395
    rleSizes[1] = planar_skip_plane_rle(planes[1], (UINT32)(SrcSize - diff1), rawWidths[1],
903
395
                                        rawHeights[1]); /* GreenPlane */
904
905
395
    if (rleSizes[1] < 1)
906
41
      return FALSE;
907
908
354
    planes[2] = planes[1] + rleSizes[1];
909
354
    const size_t diff2 = WINPR_ASSERTING_INT_CAST(size_t, (intptr_t)(planes[2] - pSrcData));
910
354
    if (SrcSize < diff2)
911
0
    {
912
0
      WLog_ERR(TAG, "Size mismatch %" PRIu32 " < %" PRIuz, SrcSize, diff);
913
0
      return FALSE;
914
0
    }
915
354
    rleSizes[2] = planar_skip_plane_rle(planes[2], (UINT32)(SrcSize - diff2), rawWidths[2],
916
354
                                        rawHeights[2]); /* BluePlane */
917
918
354
    if (rleSizes[2] < 1)
919
25
      return FALSE;
920
354
  }
921
922
1.23k
  if (!cll) /* RGB */
923
639
  {
924
639
    UINT32 TempFormat = 0;
925
639
    BYTE* pTempData = pDstData;
926
639
    UINT32 nTempStep = nDstStep;
927
639
    UINT32 nTotalHeight = nYDst + nDstHeight;
928
929
639
    if (useAlpha)
930
0
      TempFormat = PIXEL_FORMAT_BGRA32;
931
639
    else
932
639
      TempFormat = PIXEL_FORMAT_BGRX32;
933
934
639
    TempFormat = planar_invert_format(planar, alpha, TempFormat);
935
936
639
    if ((TempFormat != DstFormat) || (nSrcWidth != nDstWidth) || (nSrcHeight != nDstHeight))
937
639
    {
938
639
      pTempData = planar->pTempData;
939
639
      nTempStep = planar->nTempStep;
940
639
      nTotalHeight = planar->maxHeight;
941
639
    }
942
943
639
    if (!rle) /* RAW */
944
514
    {
945
514
      if (!planar_decompress_planes_raw(planes, pTempData, TempFormat, nTempStep, nXDst,
946
514
                                        nYDst, nSrcWidth, nSrcHeight, vFlip, nTotalHeight))
947
0
        return FALSE;
948
949
514
      if (alpha)
950
255
        srcp += rawSizes[0] + rawSizes[1] + rawSizes[2] + rawSizes[3];
951
259
      else /* NoAlpha */
952
259
        srcp += rawSizes[0] + rawSizes[1] + rawSizes[2];
953
954
514
      if ((SrcSize - (srcp - pSrcData)) == 1)
955
1
        srcp++; /* pad */
956
514
    }
957
125
    else /* RLE */
958
125
    {
959
125
      if (nYDst + nSrcHeight > nTotalHeight)
960
0
      {
961
0
        WLog_ERR(TAG,
962
0
                 "planar plane destination Y %" PRIu32 " + height %" PRIu32
963
0
                 " exceeds totalHeight %" PRIu32,
964
0
                 nYDst, nSrcHeight, nTotalHeight);
965
0
        return FALSE;
966
0
      }
967
968
125
      if ((nXDst + nSrcWidth) * bpp > nDstStep)
969
0
      {
970
0
        WLog_ERR(TAG,
971
0
                 "planar plane destination (X %" PRIu32 " + width %" PRIu32
972
0
                 ") * bpp %" PRIu32 " exceeds stride %" PRIu32,
973
0
                 nXDst, nSrcWidth, bpp, nDstStep);
974
0
        return FALSE;
975
0
      }
976
977
125
      status = planar_decompress_plane_rle(
978
125
          planes[0], WINPR_ASSERTING_INT_CAST(uint32_t, rleSizes[0]), pTempData, nTempStep,
979
125
          nXDst, nYDst, nSrcWidth, nSrcHeight, 2, vFlip); /* RedPlane */
980
981
125
      if (status < 0)
982
0
        return FALSE;
983
984
125
      status = planar_decompress_plane_rle(
985
125
          planes[1], WINPR_ASSERTING_INT_CAST(uint32_t, rleSizes[1]), pTempData, nTempStep,
986
125
          nXDst, nYDst, nSrcWidth, nSrcHeight, 1, vFlip); /* GreenPlane */
987
988
125
      if (status < 0)
989
0
        return FALSE;
990
991
125
      status = planar_decompress_plane_rle(
992
125
          planes[2], WINPR_ASSERTING_INT_CAST(uint32_t, rleSizes[2]), pTempData, nTempStep,
993
125
          nXDst, nYDst, nSrcWidth, nSrcHeight, 0, vFlip); /* BluePlane */
994
995
125
      if (status < 0)
996
0
        return FALSE;
997
998
125
      srcp += rleSizes[0] + rleSizes[1] + rleSizes[2];
999
1000
125
      if (useAlpha)
1001
0
      {
1002
0
        status = planar_decompress_plane_rle(
1003
0
            planes[3], WINPR_ASSERTING_INT_CAST(uint32_t, rleSizes[3]), pTempData,
1004
0
            nTempStep, nXDst, nYDst, nSrcWidth, nSrcHeight, 3, vFlip); /* AlphaPlane */
1005
0
      }
1006
125
      else
1007
125
        status = planar_set_plane(0xFF, pTempData, nTempStep, nXDst, nYDst, nSrcWidth,
1008
125
                                  nSrcHeight, 3, vFlip);
1009
1010
125
      if (status < 0)
1011
0
        return FALSE;
1012
1013
125
      if (alpha)
1014
4
        srcp += rleSizes[3];
1015
125
    }
1016
1017
639
    if (pTempData != pDstData)
1018
639
    {
1019
639
      if (!freerdp_image_copy_no_overlap(pDstData, DstFormat, nDstStep, nXDst, nYDst, w, h,
1020
639
                                         pTempData, TempFormat, nTempStep, nXDst, nYDst,
1021
639
                                         nullptr, FREERDP_FLIP_NONE))
1022
639
      {
1023
639
        WLog_ERR(TAG, "planar image copy failed");
1024
639
        return FALSE;
1025
639
      }
1026
639
    }
1027
639
  }
1028
596
  else /* YCoCg */
1029
596
  {
1030
596
    UINT32 TempFormat = 0;
1031
596
    BYTE* pTempData = planar->pTempData;
1032
596
    UINT32 nTempStep = planar->nTempStep;
1033
596
    UINT32 nTotalHeight = planar->maxHeight;
1034
596
    BYTE* dst = &pDstData[nXDst * FreeRDPGetBytesPerPixel(DstFormat) + nYDst * nDstStep];
1035
1036
596
    if (useAlpha)
1037
0
      TempFormat = PIXEL_FORMAT_BGRA32;
1038
596
    else
1039
596
      TempFormat = PIXEL_FORMAT_BGRX32;
1040
1041
596
    if (!pTempData)
1042
0
      return FALSE;
1043
1044
596
    if (rle) /* RLE encoded data. Decode and handle it like raw data. */
1045
204
    {
1046
204
      BYTE* rleBuffer[4] = WINPR_C_ARRAY_INIT;
1047
1048
204
      if (!planar->rlePlanesBuffer)
1049
0
        return FALSE;
1050
1051
204
      rleBuffer[3] = planar->rlePlanesBuffer;  /* AlphaPlane */
1052
204
      rleBuffer[0] = rleBuffer[3] + planeSize; /* LumaOrRedPlane */
1053
204
      rleBuffer[1] = rleBuffer[0] + planeSize; /* OrangeChromaOrGreenPlane */
1054
204
      rleBuffer[2] = rleBuffer[1] + planeSize; /* GreenChromaOrBluePlane */
1055
204
      if (useAlpha)
1056
0
      {
1057
0
        status = planar_decompress_plane_rle_only(
1058
0
            planes[3], WINPR_ASSERTING_INT_CAST(uint32_t, rleSizes[3]), rleBuffer[3],
1059
0
            rawWidths[3], rawHeights[3]); /* AlphaPlane */
1060
1061
0
        if (status < 0)
1062
0
          return FALSE;
1063
0
      }
1064
1065
204
      if (alpha)
1066
5
        srcp += rleSizes[3];
1067
1068
204
      status = planar_decompress_plane_rle_only(
1069
204
          planes[0], WINPR_ASSERTING_INT_CAST(uint32_t, rleSizes[0]), rleBuffer[0],
1070
204
          rawWidths[0], rawHeights[0]); /* LumaPlane */
1071
1072
204
      if (status < 0)
1073
0
        return FALSE;
1074
1075
204
      status = planar_decompress_plane_rle_only(
1076
204
          planes[1], WINPR_ASSERTING_INT_CAST(uint32_t, rleSizes[1]), rleBuffer[1],
1077
204
          rawWidths[1], rawHeights[1]); /* OrangeChromaPlane */
1078
1079
204
      if (status < 0)
1080
0
        return FALSE;
1081
1082
204
      status = planar_decompress_plane_rle_only(
1083
204
          planes[2], WINPR_ASSERTING_INT_CAST(uint32_t, rleSizes[2]), rleBuffer[2],
1084
204
          rawWidths[2], rawHeights[2]); /* GreenChromaPlane */
1085
1086
204
      if (status < 0)
1087
0
        return FALSE;
1088
1089
204
      planes[0] = rleBuffer[0];
1090
204
      planes[1] = rleBuffer[1];
1091
204
      planes[2] = rleBuffer[2];
1092
204
      planes[3] = rleBuffer[3];
1093
204
    }
1094
1095
    /* RAW */
1096
596
    {
1097
596
      if (cs)
1098
231
      { /* Chroma subsampling for Co and Cg:
1099
         * Each pixel contains the value that should be expanded to
1100
         * [2x,2y;2x+1,2y;2x+1,2y+1;2x;2y+1] */
1101
231
        if (!planar_subsample_expand(planes[1], rawSizes[1], nSrcWidth, nSrcHeight,
1102
231
                                     rawWidths[1], rawHeights[1], planar->deltaPlanes[0]))
1103
0
          return FALSE;
1104
1105
231
        planes[1] = planar->deltaPlanes[0];
1106
231
        rawSizes[1] = planeSize; /* OrangeChromaOrGreenPlane */
1107
231
        rawWidths[1] = nSrcWidth;
1108
231
        rawHeights[1] = nSrcHeight;
1109
1110
231
        if (!planar_subsample_expand(planes[2], rawSizes[2], nSrcWidth, nSrcHeight,
1111
231
                                     rawWidths[2], rawHeights[2], planar->deltaPlanes[1]))
1112
0
          return FALSE;
1113
1114
231
        planes[2] = planar->deltaPlanes[1];
1115
231
        rawSizes[2] = planeSize; /* GreenChromaOrBluePlane */
1116
231
        rawWidths[2] = nSrcWidth;
1117
231
        rawHeights[2] = nSrcHeight;
1118
231
      }
1119
1120
596
      if (!planar_decompress_planes_raw(planes, pTempData, TempFormat, nTempStep, nXDst,
1121
596
                                        nYDst, nSrcWidth, nSrcHeight, vFlip, nTotalHeight))
1122
0
        return FALSE;
1123
1124
596
      if (alpha)
1125
240
        srcp += rawSizes[0] + rawSizes[1] + rawSizes[2] + rawSizes[3];
1126
356
      else /* NoAlpha */
1127
356
        srcp += rawSizes[0] + rawSizes[1] + rawSizes[2];
1128
1129
596
      if ((SrcSize - (srcp - pSrcData)) == 1)
1130
0
        srcp++; /* pad */
1131
596
    }
1132
1133
596
    WINPR_ASSERT(prims->YCoCgToRGB_8u_AC4R);
1134
596
    int rc = prims->YCoCgToRGB_8u_AC4R(
1135
596
        pTempData, WINPR_ASSERTING_INT_CAST(int32_t, nTempStep), dst, DstFormat,
1136
596
        WINPR_ASSERTING_INT_CAST(int32_t, nDstStep), w, h, cll, useAlpha);
1137
596
    if (rc != PRIMITIVES_SUCCESS)
1138
0
    {
1139
0
      WLog_ERR(TAG, "YCoCgToRGB_8u_AC4R failed with %d", rc);
1140
0
      return FALSE;
1141
0
    }
1142
596
  }
1143
1144
596
  WINPR_UNUSED(srcp);
1145
596
  return TRUE;
1146
1.23k
}
1147
1148
static inline BOOL freerdp_split_color_planes(BITMAP_PLANAR_CONTEXT* WINPR_RESTRICT planar,
1149
                                              const BYTE* WINPR_RESTRICT data, UINT32 format,
1150
                                              UINT32 width, UINT32 height, UINT32 scanline,
1151
                                              BYTE* WINPR_RESTRICT planes[4])
1152
0
{
1153
0
  WINPR_ASSERT(planar);
1154
1155
0
  if ((width > INT32_MAX) || (height > INT32_MAX) || (scanline > INT32_MAX))
1156
0
    return FALSE;
1157
1158
0
  if (scanline == 0)
1159
0
    scanline = width * FreeRDPGetBytesPerPixel(format);
1160
1161
0
  if (planar->topdown)
1162
0
  {
1163
0
    UINT32 k = 0;
1164
0
    for (UINT32 i = 0; i < height; i++)
1165
0
    {
1166
0
      const BYTE* pixel = &data[1ULL * scanline * i];
1167
1168
0
      for (UINT32 j = 0; j < width; j++)
1169
0
      {
1170
0
        const UINT32 color = FreeRDPReadColor(pixel, format);
1171
0
        pixel += FreeRDPGetBytesPerPixel(format);
1172
0
        FreeRDPSplitColor(color, format, &planes[1][k], &planes[2][k], &planes[3][k],
1173
0
                          &planes[0][k], nullptr);
1174
0
        k++;
1175
0
      }
1176
0
    }
1177
0
  }
1178
0
  else
1179
0
  {
1180
0
    UINT32 k = 0;
1181
1182
0
    for (INT64 i = (INT64)height - 1; i >= 0; i--)
1183
0
    {
1184
0
      const BYTE* pixel = &data[1ULL * scanline * (UINT32)i];
1185
1186
0
      for (UINT32 j = 0; j < width; j++)
1187
0
      {
1188
0
        const UINT32 color = FreeRDPReadColor(pixel, format);
1189
0
        pixel += FreeRDPGetBytesPerPixel(format);
1190
0
        FreeRDPSplitColor(color, format, &planes[1][k], &planes[2][k], &planes[3][k],
1191
0
                          &planes[0][k], nullptr);
1192
0
        k++;
1193
0
      }
1194
0
    }
1195
0
  }
1196
0
  return TRUE;
1197
0
}
1198
1199
static inline UINT32 freerdp_bitmap_planar_write_rle_bytes(const BYTE* WINPR_RESTRICT pInBuffer,
1200
                                                           UINT32 cRawBytes, UINT32 nRunLength,
1201
                                                           BYTE* WINPR_RESTRICT pOutBuffer,
1202
                                                           UINT32 outBufferSize)
1203
0
{
1204
0
  const BYTE* pInput = pInBuffer;
1205
0
  BYTE* pOutput = pOutBuffer;
1206
0
  BYTE controlByte = 0;
1207
0
  UINT32 nBytesToWrite = 0;
1208
1209
0
  if (!cRawBytes && !nRunLength)
1210
0
    return 0;
1211
1212
0
  if (nRunLength < 3)
1213
0
  {
1214
0
    cRawBytes += nRunLength;
1215
0
    nRunLength = 0;
1216
0
  }
1217
1218
0
  while (cRawBytes)
1219
0
  {
1220
0
    if (cRawBytes < 16)
1221
0
    {
1222
0
      if (nRunLength > 15)
1223
0
      {
1224
0
        if (nRunLength < 18)
1225
0
        {
1226
0
          controlByte = PLANAR_CONTROL_BYTE(13, cRawBytes);
1227
0
          nRunLength -= 13;
1228
0
          cRawBytes = 0;
1229
0
        }
1230
0
        else
1231
0
        {
1232
0
          controlByte = PLANAR_CONTROL_BYTE(15, cRawBytes);
1233
0
          nRunLength -= 15;
1234
0
          cRawBytes = 0;
1235
0
        }
1236
0
      }
1237
0
      else
1238
0
      {
1239
0
        controlByte = PLANAR_CONTROL_BYTE(nRunLength, cRawBytes);
1240
0
        nRunLength = 0;
1241
0
        cRawBytes = 0;
1242
0
      }
1243
0
    }
1244
0
    else
1245
0
    {
1246
0
      controlByte = PLANAR_CONTROL_BYTE(0, 15);
1247
0
      cRawBytes -= 15;
1248
0
    }
1249
1250
0
    if (outBufferSize < 1)
1251
0
      return 0;
1252
1253
0
    outBufferSize--;
1254
0
    *pOutput = controlByte;
1255
0
    pOutput++;
1256
0
    nBytesToWrite = (controlByte >> 4);
1257
1258
0
    if (nBytesToWrite)
1259
0
    {
1260
0
      if (outBufferSize < nBytesToWrite)
1261
0
        return 0;
1262
1263
0
      outBufferSize -= nBytesToWrite;
1264
0
      CopyMemory(pOutput, pInput, nBytesToWrite);
1265
0
      pOutput += nBytesToWrite;
1266
0
      pInput += nBytesToWrite;
1267
0
    }
1268
0
  }
1269
1270
0
  while (nRunLength)
1271
0
  {
1272
0
    if (nRunLength > 47)
1273
0
    {
1274
0
      if (nRunLength < 50)
1275
0
      {
1276
0
        controlByte = PLANAR_CONTROL_BYTE(2, 13);
1277
0
        nRunLength -= 45;
1278
0
      }
1279
0
      else
1280
0
      {
1281
0
        controlByte = PLANAR_CONTROL_BYTE(2, 15);
1282
0
        nRunLength -= 47;
1283
0
      }
1284
0
    }
1285
0
    else if (nRunLength > 31)
1286
0
    {
1287
0
      controlByte = PLANAR_CONTROL_BYTE(2, (nRunLength - 32));
1288
0
      nRunLength = 0;
1289
0
    }
1290
0
    else if (nRunLength > 15)
1291
0
    {
1292
0
      controlByte = PLANAR_CONTROL_BYTE(1, (nRunLength - 16));
1293
0
      nRunLength = 0;
1294
0
    }
1295
0
    else
1296
0
    {
1297
0
      controlByte = PLANAR_CONTROL_BYTE(nRunLength, 0);
1298
0
      nRunLength = 0;
1299
0
    }
1300
1301
0
    if (outBufferSize < 1)
1302
0
      return 0;
1303
1304
0
    --outBufferSize;
1305
0
    *pOutput = controlByte;
1306
0
    pOutput++;
1307
0
  }
1308
1309
0
  const intptr_t diff = (pOutput - pOutBuffer);
1310
0
  if ((diff < 0) || (diff > UINT32_MAX))
1311
0
    return 0;
1312
0
  return (UINT32)diff;
1313
0
}
1314
1315
static inline UINT32 freerdp_bitmap_planar_encode_rle_bytes(const BYTE* WINPR_RESTRICT pInBuffer,
1316
                                                            UINT32 inBufferSize,
1317
                                                            BYTE* WINPR_RESTRICT pOutBuffer,
1318
                                                            UINT32 outBufferSize)
1319
0
{
1320
0
  BYTE symbol = 0;
1321
0
  const BYTE* pInput = pInBuffer;
1322
0
  BYTE* pOutput = pOutBuffer;
1323
0
  const BYTE* pBytes = nullptr;
1324
0
  UINT32 cRawBytes = 0;
1325
0
  UINT32 nRunLength = 0;
1326
0
  UINT32 nBytesWritten = 0;
1327
0
  UINT32 nTotalBytesWritten = 0;
1328
1329
0
  if (!outBufferSize)
1330
0
    return 0;
1331
1332
0
  do
1333
0
  {
1334
0
    if (!inBufferSize)
1335
0
      break;
1336
1337
0
    const UINT32 bSymbolMatch = (symbol == *pInput) != 0;
1338
0
    symbol = *pInput;
1339
0
    pInput++;
1340
0
    inBufferSize--;
1341
1342
0
    if (nRunLength && !bSymbolMatch)
1343
0
    {
1344
0
      if (nRunLength < 3)
1345
0
      {
1346
0
        cRawBytes += nRunLength;
1347
0
        nRunLength = 0;
1348
0
      }
1349
0
      else
1350
0
      {
1351
0
        pBytes = pInput - (cRawBytes + nRunLength + 1);
1352
0
        nBytesWritten = freerdp_bitmap_planar_write_rle_bytes(pBytes, cRawBytes, nRunLength,
1353
0
                                                              pOutput, outBufferSize);
1354
0
        nRunLength = 0;
1355
1356
0
        if (!nBytesWritten || (nBytesWritten > outBufferSize))
1357
0
          return nRunLength;
1358
1359
0
        nTotalBytesWritten += nBytesWritten;
1360
0
        outBufferSize -= nBytesWritten;
1361
0
        pOutput += nBytesWritten;
1362
0
        cRawBytes = 0;
1363
0
      }
1364
0
    }
1365
1366
0
    nRunLength += bSymbolMatch;
1367
0
    cRawBytes += (!bSymbolMatch) != 0;
1368
0
  } while (outBufferSize);
1369
1370
0
  if (cRawBytes || nRunLength)
1371
0
  {
1372
0
    pBytes = pInput - (cRawBytes + nRunLength);
1373
0
    nBytesWritten = freerdp_bitmap_planar_write_rle_bytes(pBytes, cRawBytes, nRunLength,
1374
0
                                                          pOutput, outBufferSize);
1375
1376
0
    if (!nBytesWritten)
1377
0
      return 0;
1378
1379
0
    nTotalBytesWritten += nBytesWritten;
1380
0
  }
1381
1382
0
  if (inBufferSize)
1383
0
    return 0;
1384
1385
0
  return nTotalBytesWritten;
1386
0
}
1387
1388
BOOL freerdp_bitmap_planar_compress_plane_rle(const BYTE* WINPR_RESTRICT inPlane, UINT32 width,
1389
                                              UINT32 height, BYTE* WINPR_RESTRICT outPlane,
1390
                                              UINT32* WINPR_RESTRICT dstSize)
1391
0
{
1392
0
  if (!outPlane)
1393
0
    return FALSE;
1394
1395
0
  UINT32 index = 0;
1396
0
  const BYTE* pInput = inPlane;
1397
0
  BYTE* pOutput = outPlane;
1398
0
  UINT32 outBufferSize = *dstSize;
1399
0
  UINT32 nTotalBytesWritten = 0;
1400
1401
0
  while (outBufferSize > 0)
1402
0
  {
1403
0
    const UINT32 nBytesWritten =
1404
0
        freerdp_bitmap_planar_encode_rle_bytes(pInput, width, pOutput, outBufferSize);
1405
1406
0
    if ((!nBytesWritten) || (nBytesWritten > outBufferSize))
1407
0
      return FALSE;
1408
1409
0
    outBufferSize -= nBytesWritten;
1410
0
    nTotalBytesWritten += nBytesWritten;
1411
0
    pOutput += nBytesWritten;
1412
0
    pInput += width;
1413
0
    index++;
1414
1415
0
    if (index >= height)
1416
0
      break;
1417
0
  }
1418
1419
0
  *dstSize = nTotalBytesWritten;
1420
0
  return TRUE;
1421
0
}
1422
1423
static inline BOOL freerdp_bitmap_planar_compress_planes_rle(BYTE* WINPR_RESTRICT inPlanes[4],
1424
                                                             UINT32 width, UINT32 height,
1425
                                                             BYTE* WINPR_RESTRICT outPlanes,
1426
                                                             UINT32* WINPR_RESTRICT dstSizes,
1427
                                                             BOOL skipAlpha)
1428
0
{
1429
0
  UINT32 outPlanesSize = width * height * 4;
1430
1431
  /* AlphaPlane */
1432
0
  if (skipAlpha)
1433
0
  {
1434
0
    dstSizes[0] = 0;
1435
0
  }
1436
0
  else
1437
0
  {
1438
0
    dstSizes[0] = outPlanesSize;
1439
1440
0
    if (!freerdp_bitmap_planar_compress_plane_rle(inPlanes[0], width, height, outPlanes,
1441
0
                                                  &dstSizes[0]))
1442
0
      return FALSE;
1443
1444
0
    outPlanes += dstSizes[0];
1445
0
    outPlanesSize -= dstSizes[0];
1446
0
  }
1447
1448
  /* LumaOrRedPlane */
1449
0
  dstSizes[1] = outPlanesSize;
1450
1451
0
  if (!freerdp_bitmap_planar_compress_plane_rle(inPlanes[1], width, height, outPlanes,
1452
0
                                                &dstSizes[1]))
1453
0
    return FALSE;
1454
1455
0
  outPlanes += dstSizes[1];
1456
0
  outPlanesSize -= dstSizes[1];
1457
  /* OrangeChromaOrGreenPlane */
1458
0
  dstSizes[2] = outPlanesSize;
1459
1460
0
  if (!freerdp_bitmap_planar_compress_plane_rle(inPlanes[2], width, height, outPlanes,
1461
0
                                                &dstSizes[2]))
1462
0
    return FALSE;
1463
1464
0
  outPlanes += dstSizes[2];
1465
0
  outPlanesSize -= dstSizes[2];
1466
  /* GreenChromeOrBluePlane */
1467
0
  dstSizes[3] = outPlanesSize;
1468
1469
0
  return (freerdp_bitmap_planar_compress_plane_rle(inPlanes[3], width, height, outPlanes,
1470
0
                                                   &dstSizes[3]));
1471
0
}
1472
1473
BYTE* freerdp_bitmap_planar_delta_encode_plane(const BYTE* WINPR_RESTRICT inPlane, UINT32 width,
1474
                                               UINT32 height, BYTE* WINPR_RESTRICT outPlane)
1475
0
{
1476
0
  if (!outPlane)
1477
0
  {
1478
0
    if (width * height == 0)
1479
0
      return nullptr;
1480
1481
0
    outPlane = (BYTE*)calloc(height, width);
1482
0
    if (!outPlane)
1483
0
      return nullptr;
1484
0
  }
1485
1486
  // first line is copied as is
1487
0
  CopyMemory(outPlane, inPlane, width);
1488
1489
0
  for (UINT32 y = 1; y < height; y++)
1490
0
  {
1491
0
    const size_t off = 1ull * width * y;
1492
0
    BYTE* outPtr = &outPlane[off];
1493
0
    const BYTE* srcPtr = &inPlane[off];
1494
0
    const BYTE* prevLinePtr = &inPlane[off - width];
1495
0
    for (UINT32 x = 0; x < width; x++)
1496
0
    {
1497
0
      const int delta = (int)srcPtr[x] - (int)prevLinePtr[x];
1498
0
      const int s2c1i = (delta >= 0) ? delta : (INT_MAX + delta) + 1;
1499
0
      const int8_t s2c1 = WINPR_CXX_COMPAT_CAST(int8_t, s2c1i);
1500
0
      const uint32_t s2c =
1501
0
          (s2c1 >= 0) ? ((UINT32)s2c1 << 1) : (((UINT32)(~(s2c1) + 1) << 1) - 1);
1502
0
      outPtr[x] = (BYTE)s2c;
1503
0
    }
1504
0
  }
1505
1506
0
  return outPlane;
1507
0
}
1508
1509
static inline BOOL freerdp_bitmap_planar_delta_encode_planes(BYTE* WINPR_RESTRICT inPlanes[4],
1510
                                                             UINT32 width, UINT32 height,
1511
                                                             BYTE* WINPR_RESTRICT outPlanes[4])
1512
0
{
1513
0
  for (UINT32 i = 0; i < 4; i++)
1514
0
  {
1515
0
    outPlanes[i] =
1516
0
        freerdp_bitmap_planar_delta_encode_plane(inPlanes[i], width, height, outPlanes[i]);
1517
1518
0
    if (!outPlanes[i])
1519
0
      return FALSE;
1520
0
  }
1521
1522
0
  return TRUE;
1523
0
}
1524
1525
BYTE* freerdp_bitmap_compress_planar(BITMAP_PLANAR_CONTEXT* WINPR_RESTRICT context,
1526
                                     const BYTE* WINPR_RESTRICT data, UINT32 format, UINT32 width,
1527
                                     UINT32 height, UINT32 scanline, BYTE* WINPR_RESTRICT dstData,
1528
                                     UINT32* WINPR_RESTRICT pDstSize)
1529
0
{
1530
0
  UINT32 size = 0;
1531
0
  BYTE* dstp = nullptr;
1532
0
  UINT32 dstSizes[4] = WINPR_C_ARRAY_INIT;
1533
0
  BYTE FormatHeader = 0;
1534
1535
0
  if (!context || !context->rlePlanesBuffer)
1536
0
    return nullptr;
1537
1538
0
  if (context->AllowSkipAlpha)
1539
0
    FormatHeader |= PLANAR_FORMAT_HEADER_NA;
1540
1541
0
  const UINT32 planeSize = width * height;
1542
1543
0
  if (!context->AllowSkipAlpha)
1544
0
    format = planar_invert_format(context, TRUE, format);
1545
1546
0
  if (!freerdp_split_color_planes(context, data, format, width, height, scanline,
1547
0
                                  context->planes))
1548
0
    return nullptr;
1549
1550
0
  if (context->AllowRunLengthEncoding)
1551
0
  {
1552
0
    if (!freerdp_bitmap_planar_delta_encode_planes(context->planes, width, height,
1553
0
                                                   context->deltaPlanes))
1554
0
      return nullptr;
1555
1556
0
    if (!freerdp_bitmap_planar_compress_planes_rle(context->deltaPlanes, width, height,
1557
0
                                                   context->rlePlanesBuffer, dstSizes,
1558
0
                                                   context->AllowSkipAlpha))
1559
0
      return nullptr;
1560
1561
0
    {
1562
0
      uint32_t offset = 0;
1563
0
      FormatHeader |= PLANAR_FORMAT_HEADER_RLE;
1564
0
      context->rlePlanes[0] = &context->rlePlanesBuffer[offset];
1565
0
      offset += dstSizes[0];
1566
0
      context->rlePlanes[1] = &context->rlePlanesBuffer[offset];
1567
0
      offset += dstSizes[1];
1568
0
      context->rlePlanes[2] = &context->rlePlanesBuffer[offset];
1569
0
      offset += dstSizes[2];
1570
0
      context->rlePlanes[3] = &context->rlePlanesBuffer[offset];
1571
1572
#if defined(WITH_DEBUG_CODECS)
1573
      WLog_DBG(TAG,
1574
               "R: [%" PRIu32 "/%" PRIu32 "] G: [%" PRIu32 "/%" PRIu32 "] B: [%" PRIu32
1575
               " / %" PRIu32 "] ",
1576
               dstSizes[1], planeSize, dstSizes[2], planeSize, dstSizes[3], planeSize);
1577
#endif
1578
0
    }
1579
0
  }
1580
1581
0
  if (FormatHeader & PLANAR_FORMAT_HEADER_RLE)
1582
0
  {
1583
0
    if (!context->AllowRunLengthEncoding)
1584
0
      return nullptr;
1585
1586
0
    if (context->rlePlanes[0] == nullptr)
1587
0
      return nullptr;
1588
1589
0
    if (context->rlePlanes[1] == nullptr)
1590
0
      return nullptr;
1591
1592
0
    if (context->rlePlanes[2] == nullptr)
1593
0
      return nullptr;
1594
1595
0
    if (context->rlePlanes[3] == nullptr)
1596
0
      return nullptr;
1597
0
  }
1598
1599
0
  if (!dstData)
1600
0
  {
1601
0
    size = 1;
1602
1603
0
    if (!(FormatHeader & PLANAR_FORMAT_HEADER_NA))
1604
0
    {
1605
0
      if (FormatHeader & PLANAR_FORMAT_HEADER_RLE)
1606
0
        size += dstSizes[0];
1607
0
      else
1608
0
        size += planeSize;
1609
0
    }
1610
1611
0
    if (FormatHeader & PLANAR_FORMAT_HEADER_RLE)
1612
0
      size += (dstSizes[1] + dstSizes[2] + dstSizes[3]);
1613
0
    else
1614
0
      size += (planeSize * 3);
1615
1616
0
    if (!(FormatHeader & PLANAR_FORMAT_HEADER_RLE))
1617
0
      size++;
1618
1619
0
    dstData = malloc(size);
1620
1621
0
    if (!dstData)
1622
0
      return nullptr;
1623
1624
0
    *pDstSize = size;
1625
0
  }
1626
1627
0
  dstp = dstData;
1628
0
  *dstp = FormatHeader; /* FormatHeader */
1629
0
  dstp++;
1630
1631
  /* AlphaPlane */
1632
1633
0
  if (!(FormatHeader & PLANAR_FORMAT_HEADER_NA))
1634
0
  {
1635
0
    if (FormatHeader & PLANAR_FORMAT_HEADER_RLE)
1636
0
    {
1637
0
      CopyMemory(dstp, context->rlePlanes[0], dstSizes[0]); /* Alpha */
1638
0
      dstp += dstSizes[0];
1639
0
    }
1640
0
    else
1641
0
    {
1642
0
      CopyMemory(dstp, context->planes[0], planeSize); /* Alpha */
1643
0
      dstp += planeSize;
1644
0
    }
1645
0
  }
1646
1647
  /* LumaOrRedPlane */
1648
1649
0
  if (FormatHeader & PLANAR_FORMAT_HEADER_RLE)
1650
0
  {
1651
0
    CopyMemory(dstp, context->rlePlanes[1], dstSizes[1]); /* Red */
1652
0
    dstp += dstSizes[1];
1653
0
  }
1654
0
  else
1655
0
  {
1656
0
    CopyMemory(dstp, context->planes[1], planeSize); /* Red */
1657
0
    dstp += planeSize;
1658
0
  }
1659
1660
  /* OrangeChromaOrGreenPlane */
1661
1662
0
  if (FormatHeader & PLANAR_FORMAT_HEADER_RLE)
1663
0
  {
1664
0
    CopyMemory(dstp, context->rlePlanes[2], dstSizes[2]); /* Green */
1665
0
    dstp += dstSizes[2];
1666
0
  }
1667
0
  else
1668
0
  {
1669
0
    CopyMemory(dstp, context->planes[2], planeSize); /* Green */
1670
0
    dstp += planeSize;
1671
0
  }
1672
1673
  /* GreenChromeOrBluePlane */
1674
1675
0
  if (FormatHeader & PLANAR_FORMAT_HEADER_RLE)
1676
0
  {
1677
0
    CopyMemory(dstp, context->rlePlanes[3], dstSizes[3]); /* Blue */
1678
0
    dstp += dstSizes[3];
1679
0
  }
1680
0
  else
1681
0
  {
1682
0
    CopyMemory(dstp, context->planes[3], planeSize); /* Blue */
1683
0
    dstp += planeSize;
1684
0
  }
1685
1686
  /* Pad1 (1 byte) */
1687
1688
0
  if (!(FormatHeader & PLANAR_FORMAT_HEADER_RLE))
1689
0
  {
1690
0
    *dstp = 0;
1691
0
    dstp++;
1692
0
  }
1693
1694
0
  const intptr_t diff = (dstp - dstData);
1695
0
  if ((diff < 0) || (diff > UINT32_MAX))
1696
0
  {
1697
0
    free(dstData);
1698
0
    return nullptr;
1699
0
  }
1700
0
  size = (UINT32)diff;
1701
0
  *pDstSize = size;
1702
0
  return dstData;
1703
0
}
1704
1705
BOOL freerdp_bitmap_planar_context_reset(BITMAP_PLANAR_CONTEXT* WINPR_RESTRICT context,
1706
                                         UINT32 width, UINT32 height)
1707
5.69k
{
1708
5.69k
  if (!context)
1709
0
    return FALSE;
1710
1711
5.69k
  context->bgr = FALSE;
1712
5.69k
  context->maxWidth = PLANAR_ALIGN(width, 4);
1713
5.69k
  context->maxHeight = PLANAR_ALIGN(height, 4);
1714
5.69k
  {
1715
5.69k
    const UINT64 tmp = (UINT64)context->maxWidth * context->maxHeight;
1716
5.69k
    if (tmp > UINT32_MAX)
1717
0
      return FALSE;
1718
5.69k
    context->maxPlaneSize = (UINT32)tmp;
1719
5.69k
  }
1720
1721
5.69k
  if (context->maxWidth > UINT32_MAX / 4)
1722
0
    return FALSE;
1723
5.69k
  context->nTempStep = context->maxWidth * 4;
1724
1725
5.69k
  memset((void*)context->planes, 0, sizeof(context->planes));
1726
5.69k
  memset((void*)context->rlePlanes, 0, sizeof(context->rlePlanes));
1727
5.69k
  memset((void*)context->deltaPlanes, 0, sizeof(context->deltaPlanes));
1728
1729
5.69k
  if (context->maxPlaneSize > 0)
1730
5.69k
  {
1731
5.69k
    void* tmp = winpr_aligned_recalloc(context->planesBuffer, context->maxPlaneSize, 4, 32);
1732
5.69k
    if (!tmp)
1733
0
      return FALSE;
1734
5.69k
    context->planesBuffer = tmp;
1735
1736
5.69k
    tmp = winpr_aligned_recalloc(context->pTempData, context->maxPlaneSize, 6, 32);
1737
5.69k
    if (!tmp)
1738
0
      return FALSE;
1739
5.69k
    context->pTempData = tmp;
1740
1741
5.69k
    tmp = winpr_aligned_recalloc(context->deltaPlanesBuffer, context->maxPlaneSize, 4, 32);
1742
5.69k
    if (!tmp)
1743
0
      return FALSE;
1744
5.69k
    context->deltaPlanesBuffer = tmp;
1745
1746
5.69k
    tmp = winpr_aligned_recalloc(context->rlePlanesBuffer, context->maxPlaneSize, 4, 32);
1747
5.69k
    if (!tmp)
1748
0
      return FALSE;
1749
5.69k
    context->rlePlanesBuffer = tmp;
1750
1751
5.69k
    context->planes[0] = &context->planesBuffer[0ULL * context->maxPlaneSize];
1752
5.69k
    context->planes[1] = &context->planesBuffer[1ULL * context->maxPlaneSize];
1753
5.69k
    context->planes[2] = &context->planesBuffer[2ULL * context->maxPlaneSize];
1754
5.69k
    context->planes[3] = &context->planesBuffer[3ULL * context->maxPlaneSize];
1755
5.69k
    context->deltaPlanes[0] = &context->deltaPlanesBuffer[0ULL * context->maxPlaneSize];
1756
5.69k
    context->deltaPlanes[1] = &context->deltaPlanesBuffer[1ULL * context->maxPlaneSize];
1757
5.69k
    context->deltaPlanes[2] = &context->deltaPlanesBuffer[2ULL * context->maxPlaneSize];
1758
5.69k
    context->deltaPlanes[3] = &context->deltaPlanesBuffer[3ULL * context->maxPlaneSize];
1759
5.69k
  }
1760
5.69k
  return TRUE;
1761
5.69k
}
1762
1763
BITMAP_PLANAR_CONTEXT* freerdp_bitmap_planar_context_new(DWORD flags, UINT32 maxWidth,
1764
                                                         UINT32 maxHeight)
1765
5.69k
{
1766
5.69k
  BITMAP_PLANAR_CONTEXT* context =
1767
5.69k
      (BITMAP_PLANAR_CONTEXT*)winpr_aligned_calloc(1, sizeof(BITMAP_PLANAR_CONTEXT), 32);
1768
1769
5.69k
  if (!context)
1770
0
    return nullptr;
1771
1772
5.69k
  if (flags & PLANAR_FORMAT_HEADER_NA)
1773
5.69k
    context->AllowSkipAlpha = TRUE;
1774
1775
5.69k
  if (flags & PLANAR_FORMAT_HEADER_RLE)
1776
5.69k
    context->AllowRunLengthEncoding = TRUE;
1777
1778
5.69k
  if (flags & PLANAR_FORMAT_HEADER_CS)
1779
0
    context->AllowColorSubsampling = TRUE;
1780
1781
5.69k
  context->ColorLossLevel = flags & PLANAR_FORMAT_HEADER_CLL_MASK;
1782
1783
5.69k
  if (context->ColorLossLevel)
1784
0
    context->AllowDynamicColorFidelity = TRUE;
1785
1786
5.69k
  if (!freerdp_bitmap_planar_context_reset(context, maxWidth, maxHeight))
1787
0
  {
1788
0
    WINPR_PRAGMA_DIAG_PUSH
1789
0
    WINPR_PRAGMA_DIAG_IGNORED_MISMATCHED_DEALLOC
1790
0
    freerdp_bitmap_planar_context_free(context);
1791
0
    WINPR_PRAGMA_DIAG_POP
1792
0
    return nullptr;
1793
0
  }
1794
1795
5.69k
  return context;
1796
5.69k
}
1797
1798
void freerdp_bitmap_planar_context_free(BITMAP_PLANAR_CONTEXT* context)
1799
5.69k
{
1800
5.69k
  if (!context)
1801
0
    return;
1802
1803
5.69k
  winpr_aligned_free(context->pTempData);
1804
5.69k
  winpr_aligned_free(context->planesBuffer);
1805
5.69k
  winpr_aligned_free(context->deltaPlanesBuffer);
1806
5.69k
  winpr_aligned_free(context->rlePlanesBuffer);
1807
5.69k
  winpr_aligned_free(context);
1808
5.69k
}
1809
1810
void freerdp_planar_switch_bgr(BITMAP_PLANAR_CONTEXT* WINPR_RESTRICT planar, BOOL bgr)
1811
0
{
1812
0
  WINPR_ASSERT(planar);
1813
0
  planar->bgr = bgr;
1814
0
}
1815
1816
void freerdp_planar_topdown_image(BITMAP_PLANAR_CONTEXT* WINPR_RESTRICT planar, BOOL topdown)
1817
0
{
1818
0
  WINPR_ASSERT(planar);
1819
0
  planar->topdown = topdown;
1820
0
}