TMC3.cpp 21.8 KB
Newer Older
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
1
/* The copyright in this software is being made available under the BSD
David Flynn's avatar
David Flynn committed
2
3
4
 * Licence, included below.  This software may be subject to other third
 * party and contributor rights, including patent rights, and no such
 * rights are granted under this licence.
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
5
 *
David Flynn's avatar
David Flynn committed
6
 * Copyright (c) 2017-2018, ISO/IEC
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
7
8
9
10
11
 * All rights reserved.
 *
 * Redistribution and use in source and binary forms, with or without
 * modification, are permitted provided that the following conditions are met:
 *
David Flynn's avatar
David Flynn committed
12
13
14
15
16
17
18
19
20
21
 * * Redistributions of source code must retain the above copyright
 *   notice, this list of conditions and the following disclaimer.
 *
 * * Redistributions in binary form must reproduce the above copyright
 *   notice, this list of conditions and the following disclaimer in the
 *   documentation and/or other materials provided with the distribution.
 *
 * * Neither the name of the ISO/IEC nor the names of its contributors
 *   may be used to endorse or promote products derived from this
 *   software without specific prior written permission.
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
22
23
24
25
 *
 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
David Flynn's avatar
David Flynn committed
26
27
 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE
 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
28
29
30
31
 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
David Flynn's avatar
David Flynn committed
32
33
 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
 * POSSIBILITY OF SUCH DAMAGE.
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
34
35
36
 */

#include "TMC3.h"
37
#include "program_options_lite.h"
38
#include "io_tlv.h"
39
#include "version.h"
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
40
41
42
43

using namespace std;
using namespace pcc;

44
45
46
47
48
//============================================================================

struct Parameters {
  bool isDecoder;

49
50
51
  // command line parsing should adjust dist2 values according to PQS
  bool positionQuantizationScaleAdjustsDist2;

52
53
54
  // output mode for ply writing (binary or ascii)
  bool outputBinaryPly;

55
56
57
58
  std::string uncompressedDataPath;
  std::string compressedStreamPath;
  std::string reconstructedDataPath;

59
60
61
  // Filename for saving pre inverse scaled point cloud.
  std::string preInvScalePath;

62
63
64
65
66
  pcc::EncoderParams encoder;
  pcc::DecoderParams decoder;

  // todo(df): this should be per-attribute
  ColorTransform colorTransform;
67
68
69

  // todo(df): this should be per-attribute
  int reflectanceScale;
70
71
72
73
};

//============================================================================

74
75
76
int
main(int argc, char* argv[])
{
77
  cout << "MPEG PCC tmc3 version " << ::pcc::version << endl;
78

Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
79
80
81
82
  Parameters params;
  if (!ParseParameters(argc, argv, params)) {
    return -1;
  }
83
84
85
86
87
88
89

  // Timers to count elapsed wall/user time
  pcc::chrono::Stopwatch<std::chrono::steady_clock> clock_wall;
  pcc::chrono::Stopwatch<pcc::chrono::utime_inc_children_clock> clock_user;

  clock_wall.start();

Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
90
  int ret = 0;
91
  if (params.isDecoder) {
92
    ret = Decompress(params, clock_user);
93
94
  } else {
    ret = Compress(params, clock_user);
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
95
96
  }

97
98
99
100
101
102
103
104
  clock_wall.stop();

  using namespace std::chrono;
  auto total_wall = duration_cast<milliseconds>(clock_wall.count()).count();
  auto total_user = duration_cast<milliseconds>(clock_user.count()).count();
  std::cout << "Processing time (wall): " << total_wall / 1000.0 << " s\n";
  std::cout << "Processing time (user): " << total_user / 1000.0 << " s\n";

Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
105
106
107
  return ret;
}

108
109
110
//---------------------------------------------------------------------------
// :: Command line / config parsing helpers

111
112
113
114
template<typename T>
static std::istream&
readUInt(std::istream& in, T& val)
{
115
116
117
118
119
120
  unsigned int tmp;
  in >> tmp;
  val = T(tmp);
  return in;
}

121
122
123
static std::istream&
operator>>(std::istream& in, ColorTransform& val)
{
124
125
126
  return readUInt(in, val);
}

127
namespace pcc {
128
static std::istream&
129
operator>>(std::istream& in, AttributeEncoding& val)
130
{
131
  return readUInt(in, val);
132
133
}
}  // namespace pcc
134

135
namespace pcc {
136
137
138
static std::istream&
operator>>(std::istream& in, GeometryCodecType& val)
{
139
  return readUInt(in, val);
140
141
}
}  // namespace pcc
142

143
namespace pcc {
144
static std::ostream&
145
operator<<(std::ostream& out, const AttributeEncoding& val)
146
{
147
  switch (val) {
148
149
150
  case AttributeEncoding::kPredictingTransform: out << "0 (Pred)"; break;
  case AttributeEncoding::kRAHTransform: out << "1 (RAHT)"; break;
  case AttributeEncoding::kLiftingTransform: out << "2 (Lift)"; break;
151
152
  }
  return out;
153
154
}
}  // namespace pcc
155

156
namespace pcc {
157
158
159
static std::ostream&
operator<<(std::ostream& out, const GeometryCodecType& val)
{
160
  switch (val) {
161
162
  case GeometryCodecType::kOctree: out << "1 (Octree)"; break;
  case GeometryCodecType::kTriSoup: out << "2 (TriSoup)"; break;
163
164
  }
  return out;
165
166
}
}  // namespace pcc
167

168
169
170
//---------------------------------------------------------------------------
// :: Command line / config parsing

171
172
173
bool
ParseParameters(int argc, char* argv[], Parameters& params)
{
174
175
  namespace po = df::program_options_lite;

176
177
178
179
180
  struct {
    AttributeDescription desc;
    AttributeParameterSet aps;
  } params_attr;

181
182
183
184
185
186
187
188
189
190
191
192
193
  bool print_help = false;

  // a helper to set the attribute
  std::function<po::OptionFunc::Func> attribute_setter =
    [&](po::Options&, const std::string& name, po::ErrorReporter) {
      // copy the current state of parsed attribute parameters
      //
      // NB: this does not cause the default values of attr to be restored
      // for the next attribute block.  A side-effect of this is that the
      // following is allowed leading to attribute foo having both X=1 and
      // Y=2:
      //   "--attr.X=1 --attribute foo --attr.Y=2 --attribute foo"
      //
194
195
196
197
198
199
200
201
202
203
204
205
206
207

      // NB: insert returns any existing element
      const auto& it = params.encoder.attributeIdxMap.insert(
        {name, int(params.encoder.attributeIdxMap.size())});

      if (it.second) {
        params.encoder.sps.attributeSets.push_back(params_attr.desc);
        params.encoder.aps.push_back(params_attr.aps);
        return;
      }

      // update existing entry
      params.encoder.sps.attributeSets[it.first->second] = params_attr.desc;
      params.encoder.aps[it.first->second] = params_attr.aps;
208
209
    };

210
  /* clang-format off */
211
212
213
214
215
216
217
218
219
220
221
  // The definition of the program/config options, along with default values.
  //
  // NB: when updating the following tables:
  //      (a) please keep to 80-columns for easier reading at a glance,
  //      (b) do not vertically align values -- it breaks quickly
  //
  po::Options opts;
  opts.addOptions()
  ("help", print_help, false, "this help text")
  ("config,c", po::parseConfigFile, "configuration file name")

222
223
  (po::Section("General"))

224
  ("mode", params.isDecoder, false,
225
226
    "The encoding/decoding mode:\n"
    "  0: encode\n"
227
    "  1: decode")
228
229
230

  // i/o parameters
  ("reconstructedDataPath",
231
232
    params.reconstructedDataPath, {},
    "The ouput reconstructed pointcloud file path (decoder only)")
233
234

  ("uncompressedDataPath",
235
236
    params.uncompressedDataPath, {},
    "The input pointcloud file path")
237
238

  ("compressedStreamPath",
239
240
    params.compressedStreamPath, {},
    "The compressed bitstream path (encoder=output, decoder=input)")
241

242
  ("postRecolorPath",
243
    params.encoder.postRecolorPath, {},
244
    "Recolored pointcloud file path (encoder only)")
245
246

  ("preInvScalePath",
247
    params.preInvScalePath, {},
248
    "Pre inverse scaled pointcloud file path (decoder only)")
249

250
251
252
253
  ("outputBinaryPly",
    params.outputBinaryPly, false,
    "Output ply files using binary (or otherwise ascii) format")

254
  // general
255
  // todo(df): this should be per-attribute
256
  ("colorTransform",
257
258
259
260
    params.colorTransform, COLOR_TRANSFORM_RGB_TO_YCBCR,
    "The colour transform to be applied:\n"
    "  0: none\n"
    "  1: RGB to YCbCr (Rec.709)")
261

262
263
264
265
266
267
  // todo(df): this should be per-attribute
  ("hack.reflectanceScale",
    params.reflectanceScale, 1,
    "scale factor to be applied to reflectance "
    "pre encoding / post reconstruction")

268
269
  // NB: if adding decoder options, uncomment the Decoder section marker
  // (po::Section("Decoder"))
270
271
272

  (po::Section("Encoder"))

273
  ("positionQuantizationScale",
274
    params.encoder.sps.seq_source_geom_scale_factor, 1.f,
275
    "Scale factor to be applied to point positions during quantization process")
276

277
278
279
280
  ("positionQuantizationScaleAdjustsDist2",
    params.positionQuantizationScaleAdjustsDist2, false,
    "Scale dist2 values by squared positionQuantizationScale")

281
  ("mergeDuplicatedPoints",
282
    params.encoder.gps.geom_unique_points_flag, true,
283
    "Enables removal of duplicated points")
284

285
  (po::Section("Geometry"))
286

287
  // tools
288
  ("geometryCodec",
289
    params.encoder.gps.geom_codec_type, GeometryCodecType::kOctree,
290
    "Controls the method used to encode geometry:\n"
291
292
    "  1: octree (TMC3)\n"
    "  2: trisoup (TMC1)")
293

294
  ("neighbourContextRestriction",
295
    params.encoder.gps.neighbour_context_restriction_flag, false,
296
    "Limit geometry octree occupancy contextualisation to sibling nodes")
297

298
  ("neighbourAvailBoundaryLog2",
299
    params.encoder.gps.neighbour_avail_boundary_log2, 0,
300
301
302
    "Defines the avaliability volume for neighbour occupancy lookups."
    " 0: unconstrained")

303
  ("inferredDirectCodingMode",
304
    params.encoder.gps.inferred_direct_coding_mode_enabled_flag, true,
305
    "Permits early termination of the geometry octree for isolated points")
306

307
308
  // (trisoup) geometry parameters
  ("triSoupDepth",  // log2(maxBB+1), where maxBB+1 is analogous to image width
309
    params.encoder.gps.trisoup_depth, 10,
310
    "Depth of voxels (reconstructed points) in trisoup geometry")
311
312

  ("triSoupLevel",
313
    params.encoder.gps.trisoup_triangle_level, 7,
314
    "Level of triangles (reconstructed surface) in trisoup geometry")
315
316

  ("triSoupIntToOrigScale",  // reciprocal of positionQuantizationScale
317
318
    params.encoder.sps.donotuse_trisoup_int_to_orig_scale, 1.f,
    "orig_coords = integer_coords * intToOrigScale")
319

320
321
  (po::Section("Attributes"))

322
323
324
  // attribute processing
  //   NB: Attribute options are special in the way they are applied (see above)
  ("attribute",
325
326
327
    attribute_setter,
    "Encode the given attribute (NB, must appear after the"
    "following attribute parameters)")
328

329
330
331
332
  ("bitdepth",
    params_attr.desc.attr_bitdepth, 8,
    "Attribute bitdepth")

333
  ("transformType",
334
    params_attr.aps.attr_encoding, AttributeEncoding::kPredictingTransform,
335
    "Coding method to use for attribute:\n"
336
    "  0: Hierarchical neighbourhood prediction\n"
337
    "  1: Region Adaptive Hierarchical Transform (RAHT)\n"
338
    "  2: Hierarichical neighbourhood prediction as lifting transform")
339

340
  ("rahtLeafDecimationDepth",
341
    params_attr.aps.raht_binary_level_threshold, 3,
342
343
    "Sets coefficients to zero in the bottom n levels of RAHT tree. "
    "Used for chroma-subsampling in attribute=color only.")
344

345
  ("rahtQuantizationStep",
346
    params_attr.aps.quant_step_size_luma, 0,
347
    "deprecated -- use quantizationStepsLuma")
348
349

  ("rahtDepth",
350
    params_attr.aps.raht_depth, 21,
351
352
    "Number of bits for morton representation of an RAHT co-ordinate"
    "component")
353

354
  ("numberOfNearestNeighborsInPrediction",
355
    params_attr.aps.num_pred_nearest_neighbours, 3,
356
    "Attribute's maximum number of nearest neighbors to be used for prediction")
357

358
359
360
361
362
363
  ("adaptivePredictionThreshold",
    params_attr.aps.adaptive_prediction_threshold, -1,
    "Neighbouring attribute value difference that enables choice of "
    "single|multi predictors. Applies to transformType=2 only.\n"
    "  -1: auto = 2**(bitdepth-2)")

364
  ("levelOfDetailCount",
365
    params_attr.aps.numDetailLevels, 1,
366
    "Attribute's number of levels of detail")
367

368
369
370
  ("quantizationStepLuma",
    params_attr.aps.quant_step_size_luma, 0,
    "Attribute's luma quantization step size")
371

372
373
374
  ("quantizationStepChroma",
    params_attr.aps.quant_step_size_chroma, 0,
    "Attribute's chroma quantization step size")
375

376
377
  ("dist2",
    params_attr.aps.dist2, {},
378
379
    "Attribute's list of squared distances, or initial value for automatic"
    "derivation")
380
  ;
381
  /* clang-format on */
382
383
384
385
386
387
388
389
390
391
392
393
394
395
396

  po::setDefaults(opts);
  po::ErrorReporter err;
  const list<const char*>& argv_unhandled =
    po::scanArgv(opts, argc, (const char**)argv, err);

  for (const auto arg : argv_unhandled) {
    err.warn() << "Unhandled argument ignored: " << arg << "\n";
  }

  if (argc == 1 || print_help) {
    po::doHelp(std::cout, opts, 78);
    return false;
  }

397
398
399
400
  if (int(params.encoder.gps.geom_codec_type) == 0) {
    err.error() << "Bypassed geometry coding is no longer supported\n";
  }

401
  // For trisoup, ensure that positionQuantizationScale is the exact inverse of intToOrigScale.
402
403
404
  if (params.encoder.gps.geom_codec_type == GeometryCodecType::kTriSoup) {
    params.encoder.sps.seq_source_geom_scale_factor =
      1.0f / params.encoder.sps.donotuse_trisoup_int_to_orig_scale;
405
406
  }

407
  // fixup any per-attribute settings
408
  for (const auto& it : params.encoder.attributeIdxMap) {
409
    auto& attr_sps = params.encoder.sps.attributeSets[it.second];
410
411
    auto& attr_aps = params.encoder.aps[it.second];

412
413
414
415
416
    // Avoid wasting bits signalling chroma quant step size for reflectance
    if (it.first == "reflectance") {
      attr_aps.quant_step_size_chroma = 0;
    }

417
418
419
420
421
422
423
424
425
426
427
428
429
430
431
432
433
434
435
    bool isLifting =
      attr_aps.attr_encoding == AttributeEncoding::kPredictingTransform
      || attr_aps.attr_encoding == AttributeEncoding::kLiftingTransform;

    // derive the dist2 values based on an initial value
    if (isLifting && !attr_aps.dist2.empty()) {
      if (attr_aps.dist2.size() < attr_aps.numDetailLevels) {
        attr_aps.dist2.resize(attr_aps.numDetailLevels);
        const double distRatio = 4.0;
        uint64_t d2 = attr_aps.dist2[0];

        for (int i = 1; i < attr_aps.numDetailLevels; ++i) {
          attr_aps.dist2[attr_aps.numDetailLevels - 1 - i] = d2;
          d2 = uint64_t(std::round(distRatio * d2));
        }
        attr_aps.dist2[attr_aps.numDetailLevels - 1] = 0;
      }
    }

436
437
438
439
440
441
442
443
444
445
446
    // In order to simplify specification of dist2 values, which are
    // depending on the scale of the coded point cloud, the following
    // adjust the dist2 values according to PQS.  The user need only
    // specify the unquantised PQS value.
    if (params.positionQuantizationScaleAdjustsDist2) {
      double pqs = params.encoder.sps.seq_source_geom_scale_factor;
      double pqs2 = pqs * pqs;
      for (auto& dist2 : attr_aps.dist2)
        dist2 = int64_t(std::round(pqs2 * dist2));
    }

447
448
449
450
451
452
453
454
455
456
457
    // Set default threshold based on bitdepth
    if (attr_aps.adaptive_prediction_threshold == -1) {
      attr_aps.adaptive_prediction_threshold = 1
        << (attr_sps.attr_bitdepth - 2);
    }

    if (attr_aps.attr_encoding == AttributeEncoding::kLiftingTransform) {
      attr_aps.adaptive_prediction_threshold = 0;
    }

    // For RAHT, ensure that the unused lod count = 0 (prevents mishaps)
458
459
    if (attr_aps.attr_encoding == AttributeEncoding::kRAHTransform) {
      attr_aps.numDetailLevels = 0;
460
      attr_aps.adaptive_prediction_threshold = 0;
461
462
463

      // todo(df): suggest chroma quant_step_size for raht
      attr_aps.quant_step_size_chroma = 0;
464
465
466
    }
  }

467
  // sanity checks
468
469
470
471
472
473
474
475
  for (const auto& it : params.encoder.attributeIdxMap) {
    const auto& attr_sps = params.encoder.sps.attributeSets[it.second];
    const auto& attr_aps = params.encoder.aps[it.second];

    bool isLifting =
      attr_aps.attr_encoding == AttributeEncoding::kPredictingTransform
      || attr_aps.attr_encoding == AttributeEncoding::kLiftingTransform;

476
477
478
479
480
481
482
483
484
485
486
    if (it.first == "color") {
      // todo(??): permit relaxing of the following constraint
      if (attr_sps.attr_bitdepth > 8)
        err.error() << it.first << ".bitdepth must be less than 9\n";
    }

    if (it.first == "reflectance") {
      if (attr_sps.attr_bitdepth > 16)
        err.error() << it.first << ".bitdepth must be less than 17\n";
    }

487
488
    if (isLifting) {
      int lod = attr_aps.numDetailLevels;
489

490
      if (lod > 255 || lod < 1) {
491
        err.error() << it.first
492
                    << ".levelOfDetailCount must be in the range [1,255]\n";
493
      }
494
495
      if (attr_aps.dist2.size() != lod) {
        err.error() << it.first << ".dist2 does not have " << lod
496
                    << " entries\n";
497
      }
498

499
500
501
502
503
      if (attr_aps.adaptive_prediction_threshold < 0) {
        err.error() << it.first
                    << ".adaptivePredictionThreshold must be positive\n";
      }

504
      if (
505
        attr_aps.num_pred_nearest_neighbours
506
        > PCCTMC3MaxPredictionNearestNeighborCount) {
507
508
509
        err.error() << it.first
                    << ".numberOfNearestNeighborsInPrediction must be <= "
                    << PCCTMC3MaxPredictionNearestNeighborCount << "\n";
510
      }
511
    }
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
512
513
  }

514
515
  // check required arguments are specified

516
  if (!params.isDecoder && params.uncompressedDataPath.empty())
517
518
    err.error() << "uncompressedDataPath not set\n";

519
  if (params.isDecoder && params.reconstructedDataPath.empty())
520
521
522
523
524
525
526
527
528
529
    err.error() << "reconstructedDataPath not set\n";

  if (params.compressedStreamPath.empty())
    err.error() << "compressedStreamPath not set\n";

  // report the current configuration (only in the absence of errors so
  // that errors/warnings are more obvious and in the same place).
  if (err.is_errored)
    return false;

530
531
  // Dump the complete derived configuration
  cout << "+ Effective configuration parameters\n";
532

533
  po::dumpCfg(cout, opts, "General", 4);
534
  if (params.isDecoder) {
535
    po::dumpCfg(cout, opts, "Decoder", 4);
536
  } else {
537
538
539
    po::dumpCfg(cout, opts, "Encoder", 4);
    po::dumpCfg(cout, opts, "Geometry", 4);

540
    for (const auto& it : params.encoder.attributeIdxMap) {
541
      // NB: when dumping the config, opts references params_attr
542
543
      params_attr.desc = params.encoder.sps.attributeSets[it.second];
      params_attr.aps = params.encoder.aps[it.second];
544
545
546
      cout << "    " << it.first << "\n";
      po::dumpCfg(cout, opts, "Attributes", 8);
    }
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
547
548
  }

549
550
  cout << endl;

Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
551
552
  return true;
}
553

554
int
555
Compress(Parameters& params, Stopwatch& clock)
556
{
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
557
  PCCPointSet3 pointCloud;
558
559
560
  if (
    !pointCloud.read(params.uncompressedDataPath)
    || pointCloud.getPointCount() == 0) {
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
561
562
563
564
    cout << "Error: can't open input file!" << endl;
    return -1;
  }

565
566
567
568
569
570
571
572
573
574
575
576
577
578
579
580
581
  // Sanitise the input point cloud
  // todo(df): remove the following with generic handling of properties
  bool codeColour = params.encoder.attributeIdxMap.count("color");
  if (!codeColour)
    pointCloud.removeColors();
  assert(codeColour == pointCloud.hasColors());

  bool codeReflectance = params.encoder.attributeIdxMap.count("reflectance");
  if (!codeReflectance)
    pointCloud.removeReflectances();
  assert(codeReflectance == pointCloud.hasReflectances());

  ofstream fout(params.compressedStreamPath, ios::binary);
  if (!fout.is_open()) {
    return -1;
  }

582
583
  clock.start();

Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
584
585
586
  if (params.colorTransform == COLOR_TRANSFORM_RGB_TO_YCBCR) {
    pointCloud.convertRGBToYUV();
  }
587
588
589
590
591
592
593
594
595

  if (params.reflectanceScale > 1 && pointCloud.hasReflectances()) {
    const auto pointCount = pointCloud.getPointCount();
    for (size_t i = 0; i < pointCount; ++i) {
      int val = pointCloud.getReflectance(i) / params.reflectanceScale;
      pointCloud.setReflectance(i, val);
    }
  }

Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
596
597
  PCCTMC3Encoder3 encoder;

598
599
  // The reconstructed point cloud
  std::unique_ptr<PCCPointSet3> reconPointCloud;
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
600
  if (!params.reconstructedDataPath.empty()) {
601
    reconPointCloud.reset(new PCCPointSet3);
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
602
603
  }

604
  int ret = encoder.compress(
605
606
    pointCloud, &params.encoder,
    [&](const PayloadBuffer& buf) { writeTlv(buf, fout); },
607
    reconPointCloud.get());
608
  if (ret) {
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
609
610
611
    cout << "Error: can't compress point cloud!" << endl;
    return -1;
  }
612

613
  std::cout << "Total bitstream size " << fout.tellp() << " B" << std::endl;
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
614
615
  fout.close();

616
617
  clock.stop();

Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
618
619
  if (!params.reconstructedDataPath.empty()) {
    if (params.colorTransform == COLOR_TRANSFORM_RGB_TO_YCBCR) {
620
621
622
623
624
625
626
627
628
      reconPointCloud->convertYUVToRGB();
    }

    if (params.reflectanceScale > 1 && reconPointCloud->hasReflectances()) {
      const auto pointCount = reconPointCloud->getPointCount();
      for (size_t i = 0; i < pointCount; ++i) {
        int val = reconPointCloud->getReflectance(i) * params.reflectanceScale;
        reconPointCloud->setReflectance(i, val);
      }
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
629
    }
630

631
632
    reconPointCloud->write(
      params.reconstructedDataPath, !params.outputBinaryPly);
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
633
634
635
636
  }

  return 0;
}
637
int
638
Decompress(Parameters& params, Stopwatch& clock)
639
{
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
640
641
642
643
644
  ifstream fin(params.compressedStreamPath, ios::binary);
  if (!fin.is_open()) {
    return -1;
  }

645
646
  clock.start();

647
  PayloadBuffer buf;
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
648
  PCCTMC3Decoder3 decoder;
649

650
651
652
  while (true) {
    PayloadBuffer* buf_ptr = &buf;
    readTlv(fin, &buf);
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
653

654
655
656
    // at end of file (or other error), flush decoder
    if (!fin)
      buf_ptr = nullptr;
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
657

658
659
660
    int ret = decoder.decompress(
      params.decoder, buf_ptr, [&](const PCCPointSet3& decodedPointCloud) {
        PCCPointSet3 pointCloud(decodedPointCloud);
661

662
663
664
665
        if (params.colorTransform == COLOR_TRANSFORM_RGB_TO_YCBCR) {
          pointCloud.convertYUVToRGB();
        }

666
667
668
669
670
671
672
673
        if (params.reflectanceScale > 1 && pointCloud.hasReflectances()) {
          const auto pointCount = pointCloud.getPointCount();
          for (size_t i = 0; i < pointCount; ++i) {
            int val = pointCloud.getReflectance(i) * params.reflectanceScale;
            pointCloud.setReflectance(i, val);
          }
        }

674
675
        // Dump the decoded colour using the pre inverse scaled geometry
        if (!params.preInvScalePath.empty()) {
676
          pointCloud.write(params.preInvScalePath, !params.outputBinaryPly);
677
678
        }

679
        decoder.inverseQuantization(pointCloud);
680
681
682

        clock.stop();

683
684
        if (!pointCloud.write(
              params.reconstructedDataPath, !params.outputBinaryPly)) {
685
686
687
688
689
690
691
692
693
694
695
696
697
          cout << "Error: can't open output file!" << endl;
        }

        clock.start();
      });

    if (ret) {
      cout << "Error: can't decompress point cloud!" << endl;
      return -1;
    }

    if (!buf_ptr)
      break;
Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
698
  }
699

700
701
702
703
704
705
  fin.clear();
  fin.seekg(0, ios_base::end);
  std::cout << "Total bitstream size " << fin.tellg() << " B" << std::endl;

  clock.stop();

Khaled Mammou's avatar
TMC3v0  
Khaled Mammou committed
706
707
  return 0;
}