All Classes Namespaces Files Functions Variables Typedefs Enumerations Enumerator Friends Macros Modules Pages
tesseract::MasterTrainer Class Reference

#include <mastertrainer.h>

Public Member Functions

 MasterTrainer (NormalizationMode norm_mode, bool shape_analysis, bool replicate_samples, int debug_level)
 
 ~MasterTrainer ()
 
bool Serialize (FILE *fp) const
 
bool DeSerialize (bool swap, FILE *fp)
 
void LoadUnicharset (const char *filename)
 
void SetFeatureSpace (const IntFeatureSpace &fs)
 
void ReadTrainingSamples (const char *page_name, const FEATURE_DEFS_STRUCT &feature_defs, bool verification)
 
void AddSample (bool verification, const char *unichar_str, TrainingSample *sample)
 
void LoadPageImages (const char *filename)
 
void PostLoadCleanup ()
 
void PreTrainingSetup ()
 
void SetupMasterShapes ()
 
void IncludeJunk ()
 
void ReplicateAndRandomizeSamplesIfRequired ()
 
bool LoadFontInfo (const char *filename)
 
bool LoadXHeights (const char *filename)
 
bool AddSpacingInfo (const char *filename)
 
int GetFontInfoId (const char *font_name)
 
int GetBestMatchingFontInfoId (const char *filename)
 
const STRINGGetTRFileName (int index) const
 
void SetupFlatShapeTable (ShapeTable *shape_table)
 
CLUSTERERSetupForClustering (const ShapeTable &shape_table, const FEATURE_DEFS_STRUCT &feature_defs, int shape_id, int *num_samples)
 
void WriteInttempAndPFFMTable (const UNICHARSET &unicharset, const UNICHARSET &shape_set, const ShapeTable &shape_table, CLASS_STRUCT *float_classes, const char *inttemp_file, const char *pffmtable_file)
 
const UNICHARSETunicharset () const
 
TrainingSampleSetGetSamples ()
 
const ShapeTablemaster_shapes () const
 
void DebugCanonical (const char *unichar_str1, const char *unichar_str2)
 
void DisplaySamples (const char *unichar_str1, int cloud_font, const char *unichar_str2, int canonical_font)
 
void TestClassifierVOld (bool replicate_samples, ShapeClassifier *test_classifier, ShapeClassifier *old_classifier)
 
void TestClassifierOnSamples (CountTypes error_mode, int report_level, bool replicate_samples, ShapeClassifier *test_classifier, STRING *report_string)
 
double TestClassifier (CountTypes error_mode, int report_level, bool replicate_samples, TrainingSampleSet *samples, ShapeClassifier *test_classifier, STRING *report_string)
 
float ShapeDistance (const ShapeTable &shapes, int s1, int s2)
 

Detailed Description

Definition at line 69 of file mastertrainer.h.

Constructor & Destructor Documentation

tesseract::MasterTrainer::MasterTrainer ( NormalizationMode  norm_mode,
bool  shape_analysis,
bool  replicate_samples,
int  debug_level 
)

Definition at line 54 of file mastertrainer.cpp.

58  : norm_mode_(norm_mode), samples_(fontinfo_table_),
59  junk_samples_(fontinfo_table_), verify_samples_(fontinfo_table_),
60  charsetsize_(0),
61  enable_shape_anaylsis_(shape_analysis),
62  enable_replication_(replicate_samples),
63  fragments_(NULL), prev_unichar_id_(-1), debug_level_(debug_level) {
64 }
#define NULL
Definition: host.h:144
tesseract::MasterTrainer::~MasterTrainer ( )

Definition at line 66 of file mastertrainer.cpp.

66  {
67  delete [] fragments_;
68  for (int p = 0; p < page_images_.size(); ++p)
69  pixDestroy(&page_images_[p]);
70 }
int size() const
Definition: genericvector.h:72

Member Function Documentation

void tesseract::MasterTrainer::AddSample ( bool  verification,
const char *  unichar_str,
TrainingSample sample 
)

Definition at line 186 of file mastertrainer.cpp.

187  {
188  if (verification) {
189  verify_samples_.AddSample(unichar, sample);
190  prev_unichar_id_ = -1;
191  } else if (unicharset_.contains_unichar(unichar)) {
192  if (prev_unichar_id_ >= 0)
193  fragments_[prev_unichar_id_] = -1;
194  prev_unichar_id_ = samples_.AddSample(unichar, sample);
195  if (flat_shapes_.FindShape(prev_unichar_id_, sample->font_id()) < 0)
196  flat_shapes_.AddShape(prev_unichar_id_, sample->font_id());
197  } else {
198  int junk_id = junk_samples_.AddSample(unichar, sample);
199  if (prev_unichar_id_ >= 0) {
201  if (frag != NULL && frag->is_natural()) {
202  if (fragments_[prev_unichar_id_] == 0)
203  fragments_[prev_unichar_id_] = junk_id;
204  else if (fragments_[prev_unichar_id_] != junk_id)
205  fragments_[prev_unichar_id_] = -1;
206  }
207  delete frag;
208  }
209  prev_unichar_id_ = -1;
210  }
211 }
static CHAR_FRAGMENT * parse_from_string(const char *str)
bool is_natural() const
Definition: unicharset.h:107
int AddSample(const char *unichar, TrainingSample *sample)
Definition: cluster.h:32
int FindShape(int unichar_id, int font_id) const
Definition: shapetable.cpp:396
bool contains_unichar(const char *const unichar_repr) const
Definition: unicharset.cpp:644
#define NULL
Definition: host.h:144
int AddShape(int unichar_id, int font_id)
Definition: shapetable.cpp:346
bool tesseract::MasterTrainer::AddSpacingInfo ( const char *  filename)

Definition at line 427 of file mastertrainer.cpp.

427  {
428  FILE* fontinfo_file = fopen(filename, "rb");
429  if (fontinfo_file == NULL)
430  return true; // We silently ignore missing files!
431  // Find the fontinfo_id.
432  int fontinfo_id = GetBestMatchingFontInfoId(filename);
433  if (fontinfo_id < 0) {
434  tprintf("No font found matching fontinfo filename %s\n", filename);
435  fclose(fontinfo_file);
436  return false;
437  }
438  tprintf("Reading spacing from %s for font %d...\n", filename, fontinfo_id);
439  // TODO(rays) scale should probably be a double, but keep as an int for now
440  // to duplicate current behavior.
441  int scale = kBlnXHeight / xheights_[fontinfo_id];
442  int num_unichars;
443  char uch[UNICHAR_LEN];
444  char kerned_uch[UNICHAR_LEN];
445  int x_gap, x_gap_before, x_gap_after, num_kerned;
446  ASSERT_HOST(tfscanf(fontinfo_file, "%d\n", &num_unichars) == 1);
447  FontInfo *fi = &fontinfo_table_.get(fontinfo_id);
448  fi->init_spacing(unicharset_.size());
449  FontSpacingInfo *spacing = NULL;
450  for (int l = 0; l < num_unichars; ++l) {
451  if (tfscanf(fontinfo_file, "%s %d %d %d",
452  uch, &x_gap_before, &x_gap_after, &num_kerned) != 4) {
453  tprintf("Bad format of font spacing file %s\n", filename);
454  fclose(fontinfo_file);
455  return false;
456  }
457  bool valid = unicharset_.contains_unichar(uch);
458  if (valid) {
459  spacing = new FontSpacingInfo();
460  spacing->x_gap_before = static_cast<inT16>(x_gap_before * scale);
461  spacing->x_gap_after = static_cast<inT16>(x_gap_after * scale);
462  }
463  for (int k = 0; k < num_kerned; ++k) {
464  if (tfscanf(fontinfo_file, "%s %d", kerned_uch, &x_gap) != 2) {
465  tprintf("Bad format of font spacing file %s\n", filename);
466  fclose(fontinfo_file);
467  delete spacing;
468  return false;
469  }
470  if (!valid || !unicharset_.contains_unichar(kerned_uch)) continue;
471  spacing->kerned_unichar_ids.push_back(
472  unicharset_.unichar_to_id(kerned_uch));
473  spacing->kerned_x_gaps.push_back(static_cast<inT16>(x_gap * scale));
474  }
475  if (valid) fi->add_spacing(unicharset_.unichar_to_id(uch), spacing);
476  }
477  fclose(fontinfo_file);
478  return true;
479 }
const int kBlnXHeight
Definition: normalis.h:28
const UNICHAR_ID unichar_to_id(const char *const unichar_repr) const
Definition: unicharset.cpp:194
#define tprintf(...)
Definition: tprintf.h:31
int tfscanf(FILE *stream, const char *format,...)
Definition: scanutils.cpp:229
#define ASSERT_HOST(x)
Definition: errcode.h:84
int GetBestMatchingFontInfoId(const char *filename)
bool contains_unichar(const char *const unichar_repr) const
Definition: unicharset.cpp:644
#define NULL
Definition: host.h:144
#define UNICHAR_LEN
Definition: unichar.h:30
int size() const
Definition: unicharset.h:297
T & get(int index) const
short inT16
Definition: host.h:100
void tesseract::MasterTrainer::DebugCanonical ( const char *  unichar_str1,
const char *  unichar_str2 
)

Definition at line 643 of file mastertrainer.cpp.

644  {
645  int class_id1 = unicharset_.unichar_to_id(unichar_str1);
646  int class_id2 = unicharset_.unichar_to_id(unichar_str2);
647  if (class_id2 == INVALID_UNICHAR_ID)
648  class_id2 = class_id1;
649  if (class_id1 == INVALID_UNICHAR_ID) {
650  tprintf("No unicharset entry found for %s\n", unichar_str1);
651  return;
652  } else {
653  tprintf("Font ambiguities for unichar %d = %s and %d = %s\n",
654  class_id1, unichar_str1, class_id2, unichar_str2);
655  }
656  int num_fonts = samples_.NumFonts();
657  const IntFeatureMap& feature_map = feature_map_;
658  // Iterate the fonts to get the similarity with other fonst of the same
659  // class.
660  tprintf(" ");
661  for (int f = 0; f < num_fonts; ++f) {
662  if (samples_.NumClassSamples(f, class_id2, false) == 0)
663  continue;
664  tprintf("%6d", f);
665  }
666  tprintf("\n");
667  for (int f1 = 0; f1 < num_fonts; ++f1) {
668  // Map the features of the canonical_sample.
669  if (samples_.NumClassSamples(f1, class_id1, false) == 0)
670  continue;
671  tprintf("%4d ", f1);
672  for (int f2 = 0; f2 < num_fonts; ++f2) {
673  if (samples_.NumClassSamples(f2, class_id2, false) == 0)
674  continue;
675  float dist = samples_.ClusterDistance(f1, class_id1, f2, class_id2,
676  feature_map);
677  tprintf(" %5.3f", dist);
678  }
679  tprintf("\n");
680  }
681  // Build a fake ShapeTable containing all the sample types.
682  ShapeTable shapes(unicharset_);
683  for (int f = 0; f < num_fonts; ++f) {
684  if (samples_.NumClassSamples(f, class_id1, true) > 0)
685  shapes.AddShape(class_id1, f);
686  if (class_id1 != class_id2 &&
687  samples_.NumClassSamples(f, class_id2, true) > 0)
688  shapes.AddShape(class_id2, f);
689  }
690 }
const UNICHAR_ID unichar_to_id(const char *const unichar_repr) const
Definition: unicharset.cpp:194
float ClusterDistance(int font_id1, int class_id1, int font_id2, int class_id2, const IntFeatureMap &feature_map)
#define tprintf(...)
Definition: tprintf.h:31
int NumClassSamples(int font_id, int class_id, bool randomize) const
bool tesseract::MasterTrainer::DeSerialize ( bool  swap,
FILE *  fp 
)

Definition at line 91 of file mastertrainer.cpp.

91  {
92  if (fread(&norm_mode_, sizeof(norm_mode_), 1, fp) != 1) return false;
93  if (swap) {
94  ReverseN(&norm_mode_, sizeof(norm_mode_));
95  }
96  if (!unicharset_.load_from_file(fp)) return false;
97  charsetsize_ = unicharset_.size();
98  if (!feature_space_.DeSerialize(swap, fp)) return false;
99  feature_map_.Init(feature_space_);
100  if (!samples_.DeSerialize(swap, fp)) return false;
101  if (!junk_samples_.DeSerialize(swap, fp)) return false;
102  if (!verify_samples_.DeSerialize(swap, fp)) return false;
103  if (!master_shapes_.DeSerialize(swap, fp)) return false;
104  if (!flat_shapes_.DeSerialize(swap, fp)) return false;
105  if (!fontinfo_table_.DeSerialize(swap, fp)) return false;
106  if (!xheights_.DeSerialize(swap, fp)) return false;
107  return true;
108 }
bool DeSerialize(bool swap, FILE *fp)
bool load_from_file(const char *const filename, bool skip_fragments)
Definition: unicharset.h:346
bool DeSerialize(bool swap, FILE *fp)
Definition: shapetable.cpp:256
void Init(const IntFeatureSpace &feature_space)
bool DeSerialize(bool swap, FILE *fp)
void ReverseN(void *ptr, int num_bytes)
Definition: helpers.h:177
bool DeSerialize(bool swap, FILE *fp)
Definition: fontinfo.cpp:54
int size() const
Definition: unicharset.h:297
bool DeSerialize(bool swap, FILE *fp)
void tesseract::MasterTrainer::DisplaySamples ( const char *  unichar_str1,
int  cloud_font,
const char *  unichar_str2,
int  canonical_font 
)

Definition at line 703 of file mastertrainer.cpp.

705  {
706  const IntFeatureMap& feature_map = feature_map_;
707  const IntFeatureSpace& feature_space = feature_map.feature_space();
708  ScrollView* f_window = CreateFeatureSpaceWindow("Features", 100, 500);
710  f_window);
711  int class_id2 = samples_.unicharset().unichar_to_id(unichar_str2);
712  if (class_id2 != INVALID_UNICHAR_ID && canonical_font >= 0) {
713  const TrainingSample* sample = samples_.GetCanonicalSample(canonical_font,
714  class_id2);
715  for (int f = 0; f < sample->num_features(); ++f) {
716  RenderIntFeature(f_window, &sample->features()[f], ScrollView::RED);
717  }
718  }
719  int class_id1 = samples_.unicharset().unichar_to_id(unichar_str1);
720  if (class_id1 != INVALID_UNICHAR_ID && cloud_font >= 0) {
721  const BitVector& cloud = samples_.GetCloudFeatures(cloud_font, class_id1);
722  for (int f = 0; f < cloud.size(); ++f) {
723  if (cloud[f]) {
724  INT_FEATURE_STRUCT feature =
725  feature_map.InverseIndexFeature(f);
726  RenderIntFeature(f_window, &feature, ScrollView::GREEN);
727  }
728  }
729  }
730  f_window->Update();
731  ScrollView* s_window = CreateFeatureSpaceWindow("Samples", 100, 500);
732  SVEventType ev_type;
733  do {
734  SVEvent* ev;
735  // Wait until a click or popup event.
736  ev = f_window->AwaitEvent(SVET_ANY);
737  ev_type = ev->type;
738  if (ev_type == SVET_CLICK) {
739  int feature_index = feature_space.XYToFeatureIndex(ev->x, ev->y);
740  if (feature_index >= 0) {
741  // Iterate samples and display those with the feature.
742  Shape shape;
743  shape.AddToShape(class_id1, cloud_font);
744  s_window->Clear();
745  samples_.DisplaySamplesWithFeature(feature_index, shape,
746  feature_space, ScrollView::GREEN,
747  s_window);
748  s_window->Update();
749  }
750  }
751  delete ev;
752  } while (ev_type != SVET_DESTROY);
753 }
const UNICHAR_ID unichar_to_id(const char *const unichar_repr) const
Definition: unicharset.cpp:194
void ClearFeatureSpaceWindow(NORM_METHOD norm_method, ScrollView *window)
Definition: intproto.cpp:1104
static void Update()
Definition: scrollview.cpp:715
int y
Definition: scrollview.h:67
const IntFeatureSpace & feature_space() const
Definition: intfeaturemap.h:60
SVEventType
Definition: scrollview.h:45
void Clear()
Definition: scrollview.cpp:595
void DisplaySamplesWithFeature(int f_index, const Shape &shape, const IntFeatureSpace &feature_space, ScrollView::Color color, ScrollView *window) const
SVEvent * AwaitEvent(SVEventType type)
Definition: scrollview.cpp:449
const BitVector & GetCloudFeatures(int font_id, int class_id) const
void RenderIntFeature(ScrollView *window, const INT_FEATURE_STRUCT *Feature, ScrollView::Color color)
Definition: intproto.cpp:1770
const UNICHARSET & unicharset() const
const TrainingSample * GetCanonicalSample(int font_id, int class_id) const
Definition: cluster.h:32
SVEventType type
Definition: scrollview.h:64
ScrollView * CreateFeatureSpaceWindow(const char *name, int xpos, int ypos)
Definition: intproto.cpp:1936
int x
Definition: scrollview.h:66
int tesseract::MasterTrainer::GetBestMatchingFontInfoId ( const char *  filename)

Definition at line 494 of file mastertrainer.cpp.

494  {
495  int fontinfo_id = -1;
496  int best_len = 0;
497  for (int f = 0; f < fontinfo_table_.size(); ++f) {
498  if (strstr(filename, fontinfo_table_.get(f).name) != NULL) {
499  int len = strlen(fontinfo_table_.get(f).name);
500  // Use the longest matching length in case a substring of a font matched.
501  if (len > best_len) {
502  best_len = len;
503  fontinfo_id = f;
504  }
505  }
506  }
507  return fontinfo_id;
508 }
int size() const
Definition: genericvector.h:72
#define NULL
Definition: host.h:144
T & get(int index) const
int tesseract::MasterTrainer::GetFontInfoId ( const char *  font_name)

Definition at line 483 of file mastertrainer.cpp.

483  {
484  FontInfo fontinfo;
485  // We are only borrowing the string, so it is OK to const cast it.
486  fontinfo.name = const_cast<char*>(font_name);
487  fontinfo.properties = 0; // Not used to lookup in the table
488  fontinfo.universal_id = 0;
489  return fontinfo_table_.get_index(fontinfo);
490 }
int get_index(T object) const
TrainingSampleSet* tesseract::MasterTrainer::GetSamples ( )
inline

Definition at line 192 of file mastertrainer.h.

192  {
193  return &samples_;
194  }
const STRING& tesseract::MasterTrainer::GetTRFileName ( int  index) const
inline

Definition at line 165 of file mastertrainer.h.

165  {
166  return tr_filenames_[index];
167  }
void tesseract::MasterTrainer::IncludeJunk ( )

Definition at line 314 of file mastertrainer.cpp.

314  {
315  // Get ids of fragments in junk_samples_ that replace the dead chars.
316  const UNICHARSET& junk_set = junk_samples_.unicharset();
317  const UNICHARSET& sample_set = samples_.unicharset();
318  int num_junks = junk_samples_.num_samples();
319  tprintf("Moving %d junk samples to master sample set.\n", num_junks);
320  for (int s = 0; s < num_junks; ++s) {
321  TrainingSample* sample = junk_samples_.mutable_sample(s);
322  int junk_id = sample->class_id();
323  const char* junk_utf8 = junk_set.id_to_unichar(junk_id);
324  int sample_id = sample_set.unichar_to_id(junk_utf8);
325  if (sample_id == INVALID_UNICHAR_ID)
326  sample_id = 0;
327  sample->set_class_id(sample_id);
328  junk_samples_.extract_sample(s);
329  samples_.AddSample(sample_id, sample);
330  }
331  junk_samples_.DeleteDeadSamples();
332  samples_.OrganizeByFontAndClass();
333 }
const UNICHAR_ID unichar_to_id(const char *const unichar_repr) const
Definition: unicharset.cpp:194
#define tprintf(...)
Definition: tprintf.h:31
TrainingSample * extract_sample(int index)
const char *const id_to_unichar(UNICHAR_ID id) const
Definition: unicharset.cpp:266
UNICHAR_ID class_id() const
int AddSample(const char *unichar, TrainingSample *sample)
const UNICHARSET & unicharset() const
Definition: cluster.h:32
TrainingSample * mutable_sample(int index)
bool tesseract::MasterTrainer::LoadFontInfo ( const char *  filename)

Definition at line 352 of file mastertrainer.cpp.

352  {
353  FILE* fp = fopen(filename, "rb");
354  if (fp == NULL) {
355  fprintf(stderr, "Failed to load font_properties from %s\n", filename);
356  return false;
357  }
358  int italic, bold, fixed, serif, fraktur;
359  while (!feof(fp)) {
360  FontInfo fontinfo;
361  char* font_name = new char[1024];
362  fontinfo.name = font_name;
363  fontinfo.properties = 0;
364  fontinfo.universal_id = 0;
365  if (tfscanf(fp, "%1024s %i %i %i %i %i\n", font_name,
366  &italic, &bold, &fixed, &serif, &fraktur) != 6)
367  continue;
368  fontinfo.properties =
369  (italic << 0) +
370  (bold << 1) +
371  (fixed << 2) +
372  (serif << 3) +
373  (fraktur << 4);
374  if (!fontinfo_table_.contains(fontinfo)) {
375  fontinfo_table_.push_back(fontinfo);
376  }
377  }
378  fclose(fp);
379  return true;
380 }
int push_back(T object)
int tfscanf(FILE *stream, const char *format,...)
Definition: scanutils.cpp:229
bool contains(T object) const
#define NULL
Definition: host.h:144
void tesseract::MasterTrainer::LoadPageImages ( const char *  filename)

Definition at line 216 of file mastertrainer.cpp.

216  {
217  int page;
218  Pix* pix;
219  for (page = 0; (pix = pixReadTiff(filename, page)) != NULL; ++page) {
220  page_images_.push_back(pix);
221  }
222  tprintf("Loaded %d page images from %s\n", page, filename);
223 }
int push_back(T object)
#define tprintf(...)
Definition: tprintf.h:31
#define NULL
Definition: host.h:144
void tesseract::MasterTrainer::LoadUnicharset ( const char *  filename)

Definition at line 111 of file mastertrainer.cpp.

111  {
112  if (!unicharset_.load_from_file(filename)) {
113  tprintf("Failed to load unicharset from file %s\n"
114  "Building unicharset for training from scratch...\n",
115  filename);
116  unicharset_.clear();
117  UNICHARSET initialized;
118  // Add special characters, as they were removed by the clear, but the
119  // default constructor puts them in.
120  unicharset_.AppendOtherUnicharset(initialized);
121  }
122  charsetsize_ = unicharset_.size();
123  delete [] fragments_;
124  fragments_ = new int[charsetsize_];
125  memset(fragments_, 0, sizeof(*fragments_) * charsetsize_);
126  samples_.LoadUnicharset(filename);
127  junk_samples_.LoadUnicharset(filename);
128  verify_samples_.LoadUnicharset(filename);
129 }
#define tprintf(...)
Definition: tprintf.h:31
bool load_from_file(const char *const filename, bool skip_fragments)
Definition: unicharset.h:346
void AppendOtherUnicharset(const UNICHARSET &src)
Definition: unicharset.cpp:439
void LoadUnicharset(const char *filename)
void clear()
Definition: unicharset.h:266
int size() const
Definition: unicharset.h:297
bool tesseract::MasterTrainer::LoadXHeights ( const char *  filename)

Definition at line 384 of file mastertrainer.cpp.

384  {
385  tprintf("fontinfo table is of size %d\n", fontinfo_table_.size());
386  xheights_.init_to_size(fontinfo_table_.size(), -1);
387  if (filename == NULL) return true;
388  FILE *f = fopen(filename, "rb");
389  if (f == NULL) {
390  fprintf(stderr, "Failed to load font xheights from %s\n", filename);
391  return false;
392  }
393  tprintf("Reading x-heights from %s ...\n", filename);
394  FontInfo fontinfo;
395  fontinfo.properties = 0; // Not used to lookup in the table.
396  fontinfo.universal_id = 0;
397  char buffer[1024];
398  int xht;
399  int total_xheight = 0;
400  int xheight_count = 0;
401  while (!feof(f)) {
402  if (tfscanf(f, "%1023s %d\n", buffer, &xht) != 2)
403  continue;
404  buffer[1023] = '\0';
405  fontinfo.name = buffer;
406  if (!fontinfo_table_.contains(fontinfo)) continue;
407  int fontinfo_id = fontinfo_table_.get_index(fontinfo);
408  xheights_[fontinfo_id] = xht;
409  total_xheight += xht;
410  ++xheight_count;
411  }
412  if (xheight_count == 0) {
413  fprintf(stderr, "No valid xheights in %s!\n", filename);
414  fclose(f);
415  return false;
416  }
417  int mean_xheight = DivRounded(total_xheight, xheight_count);
418  for (int i = 0; i < fontinfo_table_.size(); ++i) {
419  if (xheights_[i] < 0)
420  xheights_[i] = mean_xheight;
421  }
422  fclose(f);
423  return true;
424 } // LoadXHeights
int size() const
Definition: genericvector.h:72
#define tprintf(...)
Definition: tprintf.h:31
int tfscanf(FILE *stream, const char *format,...)
Definition: scanutils.cpp:229
void init_to_size(int size, T t)
bool contains(T object) const
int DivRounded(int a, int b)
Definition: helpers.h:166
#define NULL
Definition: host.h:144
int get_index(T object) const
const ShapeTable& tesseract::MasterTrainer::master_shapes ( ) const
inline

Definition at line 195 of file mastertrainer.h.

195  {
196  return master_shapes_;
197  }
void tesseract::MasterTrainer::PostLoadCleanup ( )

Definition at line 230 of file mastertrainer.cpp.

230  {
231  if (debug_level_ > 0)
232  tprintf("PostLoadCleanup...\n");
233  if (enable_shape_anaylsis_)
234  ReplaceFragmentedSamples();
235  SampleIterator sample_it;
236  sample_it.Init(NULL, NULL, true, &verify_samples_);
237  sample_it.NormalizeSamples();
238  verify_samples_.OrganizeByFontAndClass();
239 
240  samples_.IndexFeatures(feature_space_);
241  // TODO(rays) DeleteOutliers is currently turned off to prove NOP-ness
242  // against current training.
243  // samples_.DeleteOutliers(feature_space_, debug_level_ > 0);
244  samples_.OrganizeByFontAndClass();
245  if (debug_level_ > 0)
246  tprintf("ComputeCanonicalSamples...\n");
247  samples_.ComputeCanonicalSamples(feature_map_, debug_level_ > 0);
248 }
#define tprintf(...)
Definition: tprintf.h:31
void IndexFeatures(const IntFeatureSpace &feature_space)
#define NULL
Definition: host.h:144
void ComputeCanonicalSamples(const IntFeatureMap &map, bool debug)
void tesseract::MasterTrainer::PreTrainingSetup ( )

Definition at line 253 of file mastertrainer.cpp.

253  {
254  if (debug_level_ > 0)
255  tprintf("PreTrainingSetup...\n");
256  samples_.IndexFeatures(feature_space_);
257  samples_.ComputeCanonicalFeatures();
258  if (debug_level_ > 0)
259  tprintf("ComputeCloudFeatures...\n");
260  samples_.ComputeCloudFeatures(feature_space_.Size());
261 }
void ComputeCloudFeatures(int feature_space_size)
#define tprintf(...)
Definition: tprintf.h:31
void IndexFeatures(const IntFeatureSpace &feature_space)
void tesseract::MasterTrainer::ReadTrainingSamples ( const char *  page_name,
const FEATURE_DEFS_STRUCT feature_defs,
bool  verification 
)

Definition at line 135 of file mastertrainer.cpp.

137  {
138  char buffer[2048];
139  int int_feature_type = ShortNameToFeatureType(feature_defs, kIntFeatureType);
140  int micro_feature_type = ShortNameToFeatureType(feature_defs,
142  int cn_feature_type = ShortNameToFeatureType(feature_defs, kCNFeatureType);
143  int geo_feature_type = ShortNameToFeatureType(feature_defs, kGeoFeatureType);
144 
145  FILE* fp = Efopen(page_name, "rb");
146  if (fp == NULL) {
147  tprintf("Failed to open tr file: %s\n", page_name);
148  return;
149  }
150  tr_filenames_.push_back(STRING(page_name));
151  while (fgets(buffer, sizeof(buffer), fp) != NULL) {
152  if (buffer[0] == '\n')
153  continue;
154 
155  char* space = strchr(buffer, ' ');
156  if (space == NULL) {
157  tprintf("Bad format in tr file, reading fontname, unichar\n");
158  continue;
159  }
160  *space++ = '\0';
161  int font_id = GetFontInfoId(buffer);
162  if (font_id < 0) font_id = 0;
163  int page_number;
164  STRING unichar;
165  TBOX bounding_box;
166  if (!ParseBoxFileStr(space, &page_number, &unichar, &bounding_box)) {
167  tprintf("Bad format in tr file, reading box coords\n");
168  continue;
169  }
170  CHAR_DESC char_desc = ReadCharDescription(feature_defs, fp);
171  TrainingSample* sample = new TrainingSample;
172  sample->set_font_id(font_id);
173  sample->set_page_num(page_number + page_images_.size());
174  sample->set_bounding_box(bounding_box);
175  sample->ExtractCharDesc(int_feature_type, micro_feature_type,
176  cn_feature_type, geo_feature_type, char_desc);
177  AddSample(verification, unichar.string(), sample);
178  FreeCharDescription(char_desc);
179  }
180  charsetsize_ = unicharset_.size();
181  fclose(fp);
182 }
CHAR_DESC ReadCharDescription(const FEATURE_DEFS_STRUCT &FeatureDefs, FILE *File)
Definition: featdefs.cpp:263
int size() const
Definition: genericvector.h:72
FILE * Efopen(const char *Name, const char *Mode)
Definition: efio.cpp:43
int push_back(T object)
void FreeCharDescription(CHAR_DESC CharDesc)
Definition: featdefs.cpp:141
#define tprintf(...)
Definition: tprintf.h:31
const char * kIntFeatureType
Definition: featdefs.cpp:43
bool ParseBoxFileStr(const char *boxfile_str, int *page_number, STRING *utf8_str, TBOX *bounding_box)
Definition: boxread.cpp:165
void AddSample(bool verification, const char *unichar_str, TrainingSample *sample)
const char * kCNFeatureType
Definition: featdefs.cpp:42
int GetFontInfoId(const char *font_name)
const char * kGeoFeatureType
Definition: featdefs.cpp:44
const char * kMicroFeatureType
Definition: featdefs.cpp:41
Definition: cluster.h:32
Definition: rect.h:30
int ShortNameToFeatureType(const FEATURE_DEFS_STRUCT &FeatureDefs, const char *ShortName)
Definition: featdefs.cpp:302
Definition: strngs.h:44
#define NULL
Definition: host.h:144
int size() const
Definition: unicharset.h:297
const char * string() const
Definition: strngs.cpp:193
void tesseract::MasterTrainer::ReplicateAndRandomizeSamplesIfRequired ( )

Definition at line 340 of file mastertrainer.cpp.

340  {
341  if (enable_replication_) {
342  if (debug_level_ > 0)
343  tprintf("ReplicateAndRandomize...\n");
344  verify_samples_.ReplicateAndRandomizeSamples();
345  samples_.ReplicateAndRandomizeSamples();
346  samples_.IndexFeatures(feature_space_);
347  }
348 }
#define tprintf(...)
Definition: tprintf.h:31
void IndexFeatures(const IntFeatureSpace &feature_space)
bool tesseract::MasterTrainer::Serialize ( FILE *  fp) const

Definition at line 75 of file mastertrainer.cpp.

75  {
76  if (fwrite(&norm_mode_, sizeof(norm_mode_), 1, fp) != 1) return false;
77  if (!unicharset_.save_to_file(fp)) return false;
78  if (!feature_space_.Serialize(fp)) return false;
79  if (!samples_.Serialize(fp)) return false;
80  if (!junk_samples_.Serialize(fp)) return false;
81  if (!verify_samples_.Serialize(fp)) return false;
82  if (!master_shapes_.Serialize(fp)) return false;
83  if (!flat_shapes_.Serialize(fp)) return false;
84  if (!fontinfo_table_.Serialize(fp)) return false;
85  if (!xheights_.Serialize(fp)) return false;
86  return true;
87 }
bool Serialize(FILE *fp) const
bool save_to_file(const char *const filename) const
Definition: unicharset.h:306
bool Serialize(FILE *fp) const
Definition: shapetable.cpp:250
bool Serialize(FILE *fp) const
bool Serialize(FILE *fp) const
bool Serialize(FILE *fp) const
Definition: fontinfo.cpp:49
void tesseract::MasterTrainer::SetFeatureSpace ( const IntFeatureSpace fs)
inline

Definition at line 85 of file mastertrainer.h.

85  {
86  feature_space_ = fs;
87  feature_map_.Init(fs);
88  }
void Init(const IntFeatureSpace &feature_space)
void tesseract::MasterTrainer::SetupFlatShapeTable ( ShapeTable shape_table)

Definition at line 511 of file mastertrainer.cpp.

511  {
512  // To exactly mimic the results of the previous implementation, the shapes
513  // must be clustered in order the fonts arrived, and reverse order of the
514  // characters within each font.
515  // Get a list of the fonts in the order they appeared.
516  GenericVector<int> active_fonts;
517  int num_shapes = flat_shapes_.NumShapes();
518  for (int s = 0; s < num_shapes; ++s) {
519  int font = flat_shapes_.GetShape(s)[0].font_ids[0];
520  int f = 0;
521  for (f = 0; f < active_fonts.size(); ++f) {
522  if (active_fonts[f] == font)
523  break;
524  }
525  if (f == active_fonts.size())
526  active_fonts.push_back(font);
527  }
528  // For each font in order, add all the shapes with that font in reverse order.
529  int num_fonts = active_fonts.size();
530  for (int f = 0; f < num_fonts; ++f) {
531  for (int s = num_shapes - 1; s >= 0; --s) {
532  int font = flat_shapes_.GetShape(s)[0].font_ids[0];
533  if (font == active_fonts[f]) {
534  shape_table->AddShape(flat_shapes_.GetShape(s));
535  }
536  }
537  }
538 }
int size() const
Definition: genericvector.h:72
int push_back(T object)
void AddShape(const Shape &other)
Definition: shapetable.cpp:129
const Shape & GetShape(int shape_id) const
Definition: shapetable.h:323
int NumShapes() const
Definition: shapetable.h:278
CLUSTERER * tesseract::MasterTrainer::SetupForClustering ( const ShapeTable shape_table,
const FEATURE_DEFS_STRUCT feature_defs,
int  shape_id,
int *  num_samples 
)

Definition at line 542 of file mastertrainer.cpp.

546  {
547 
548  int desc_index = ShortNameToFeatureType(feature_defs, kMicroFeatureType);
549  int num_params = feature_defs.FeatureDesc[desc_index]->NumParams;
550  ASSERT_HOST(num_params == MFCount);
551  CLUSTERER* clusterer = MakeClusterer(
552  num_params, feature_defs.FeatureDesc[desc_index]->ParamDesc);
553 
554  // We want to iterate over the samples of just the one shape.
555  IndexMapBiDi shape_map;
556  shape_map.Init(shape_table.NumShapes(), false);
557  shape_map.SetMap(shape_id, true);
558  shape_map.Setup();
559  // Reverse the order of the samples to match the previous behavior.
561  SampleIterator it;
562  it.Init(&shape_map, &shape_table, false, &samples_);
563  for (it.Begin(); !it.AtEnd(); it.Next()) {
564  sample_ptrs.push_back(&it.GetSample());
565  }
566  int sample_id = 0;
567  for (int i = sample_ptrs.size() - 1; i >= 0; --i) {
568  const TrainingSample* sample = sample_ptrs[i];
569  int num_features = sample->num_micro_features();
570  for (int f = 0; f < num_features; ++f)
571  MakeSample(clusterer, sample->micro_features()[f], sample_id);
572  ++sample_id;
573  }
574  *num_samples = sample_id;
575  return clusterer;
576 }
int size() const
Definition: genericvector.h:72
int push_back(T object)
const FEATURE_DESC_STRUCT * FeatureDesc[NUM_FEATURE_TYPES]
Definition: featdefs.h:50
Definition: mf.h:30
CLUSTERER * MakeClusterer(inT16 SampleSize, const PARAM_DESC ParamDesc[])
Definition: cluster.cpp:400
SAMPLE * MakeSample(CLUSTERER *Clusterer, const FLOAT32 *Feature, inT32 CharID)
Definition: cluster.cpp:457
#define ASSERT_HOST(x)
Definition: errcode.h:84
const char * kMicroFeatureType
Definition: featdefs.cpp:41
Definition: cluster.h:32
int ShortNameToFeatureType(const FEATURE_DEFS_STRUCT &FeatureDefs, const char *ShortName)
Definition: featdefs.cpp:302
const PARAM_DESC * ParamDesc
Definition: ocrfeatures.h:59
void tesseract::MasterTrainer::SetupMasterShapes ( )

Definition at line 265 of file mastertrainer.cpp.

265  {
266  tprintf("Building master shape table\n");
267  int num_fonts = samples_.NumFonts();
268 
269  ShapeTable char_shapes_begin_fragment(samples_.unicharset());
270  ShapeTable char_shapes_end_fragment(samples_.unicharset());
271  ShapeTable char_shapes(samples_.unicharset());
272  for (int c = 0; c < samples_.charsetsize(); ++c) {
273  ShapeTable shapes(samples_.unicharset());
274  for (int f = 0; f < num_fonts; ++f) {
275  if (samples_.NumClassSamples(f, c, true) > 0)
276  shapes.AddShape(c, f);
277  }
278  ClusterShapes(kMinClusteredShapes, 1, kFontMergeDistance, &shapes);
279 
280  const CHAR_FRAGMENT *fragment = samples_.unicharset().get_fragment(c);
281 
282  if (fragment == NULL)
283  char_shapes.AppendMasterShapes(shapes, NULL);
284  else if (fragment->is_beginning())
285  char_shapes_begin_fragment.AppendMasterShapes(shapes, NULL);
286  else if (fragment->is_ending())
287  char_shapes_end_fragment.AppendMasterShapes(shapes, NULL);
288  else
289  char_shapes.AppendMasterShapes(shapes, NULL);
290  }
292  kFontMergeDistance, &char_shapes_begin_fragment);
293  char_shapes.AppendMasterShapes(char_shapes_begin_fragment, NULL);
295  kFontMergeDistance, &char_shapes_end_fragment);
296  char_shapes.AppendMasterShapes(char_shapes_end_fragment, NULL);
298  kFontMergeDistance, &char_shapes);
299  master_shapes_.AppendMasterShapes(char_shapes, NULL);
300  tprintf("Master shape_table:%s\n", master_shapes_.SummaryStr().string());
301 }
#define tprintf(...)
Definition: tprintf.h:31
STRING SummaryStr() const
Definition: shapetable.cpp:323
const int kMaxUnicharsPerCluster
const CHAR_FRAGMENT * get_fragment(UNICHAR_ID unichar_id) const
Definition: unicharset.h:682
const int kMinClusteredShapes
int NumClassSamples(int font_id, int class_id, bool randomize) const
bool is_ending() const
Definition: unicharset.h:102
const UNICHARSET & unicharset() const
#define NULL
Definition: host.h:144
const float kFontMergeDistance
void AppendMasterShapes(const ShapeTable &other, GenericVector< int > *shape_map)
Definition: shapetable.cpp:666
const char * string() const
Definition: strngs.cpp:193
bool is_beginning() const
Definition: unicharset.h:99
float tesseract::MasterTrainer::ShapeDistance ( const ShapeTable shapes,
int  s1,
int  s2 
)

Definition at line 817 of file mastertrainer.cpp.

817  {
818  const IntFeatureMap& feature_map = feature_map_;
819  const Shape& shape1 = shapes.GetShape(s1);
820  const Shape& shape2 = shapes.GetShape(s2);
821  int num_chars1 = shape1.size();
822  int num_chars2 = shape2.size();
823  float dist_sum = 0.0f;
824  int dist_count = 0;
825  if (num_chars1 > 1 || num_chars2 > 1) {
826  // In the multi-char case try to optimize the calculation by computing
827  // distances between characters of matching font where possible.
828  for (int c1 = 0; c1 < num_chars1; ++c1) {
829  for (int c2 = 0; c2 < num_chars2; ++c2) {
830  dist_sum += samples_.UnicharDistance(shape1[c1], shape2[c2],
831  true, feature_map);
832  ++dist_count;
833  }
834  }
835  } else {
836  // In the single unichar case, there is little alternative, but to compute
837  // the squared-order distance between pairs of fonts.
838  dist_sum = samples_.UnicharDistance(shape1[0], shape2[0],
839  false, feature_map);
840  ++dist_count;
841  }
842  return dist_sum / dist_count;
843 }
float UnicharDistance(const UnicharAndFonts &uf1, const UnicharAndFonts &uf2, bool matched_fonts, const IntFeatureMap &feature_map)
double tesseract::MasterTrainer::TestClassifier ( CountTypes  error_mode,
int  report_level,
bool  replicate_samples,
TrainingSampleSet samples,
ShapeClassifier test_classifier,
STRING report_string 
)

Definition at line 790 of file mastertrainer.cpp.

795  {
796  SampleIterator sample_it;
797  sample_it.Init(NULL, NULL, replicate_samples, samples);
798  if (report_level > 0) {
799  int num_samples = 0;
800  for (sample_it.Begin(); !sample_it.AtEnd(); sample_it.Next())
801  ++num_samples;
802  tprintf("Iterator has charset size of %d/%d, %d shapes, %d samples\n",
803  sample_it.SparseCharsetSize(), sample_it.CompactCharsetSize(),
804  test_classifier->GetShapeTable()->NumShapes(), num_samples);
805  tprintf("Testing %sREPLICATED:\n", replicate_samples ? "" : "NON-");
806  }
807  double unichar_error = 0.0;
808  ErrorCounter::ComputeErrorRate(test_classifier, report_level,
809  error_mode, fontinfo_table_,
810  page_images_, &sample_it, &unichar_error,
811  NULL, report_string);
812  return unichar_error;
813 }
#define tprintf(...)
Definition: tprintf.h:31
static double ComputeErrorRate(ShapeClassifier *classifier, int report_level, CountTypes boosting_mode, const FontInfoTable &fontinfo_table, const GenericVector< Pix * > &page_images, SampleIterator *it, double *unichar_error, double *scaled_error, STRING *fonts_report)
#define NULL
Definition: host.h:144
void tesseract::MasterTrainer::TestClassifierOnSamples ( CountTypes  error_mode,
int  report_level,
bool  replicate_samples,
ShapeClassifier test_classifier,
STRING report_string 
)

Definition at line 768 of file mastertrainer.cpp.

772  {
773  TestClassifier(error_mode, report_level, replicate_samples, &samples_,
774  test_classifier, report_string);
775 }
double TestClassifier(CountTypes error_mode, int report_level, bool replicate_samples, TrainingSampleSet *samples, ShapeClassifier *test_classifier, STRING *report_string)
void tesseract::MasterTrainer::TestClassifierVOld ( bool  replicate_samples,
ShapeClassifier test_classifier,
ShapeClassifier old_classifier 
)

Definition at line 756 of file mastertrainer.cpp.

758  {
759  SampleIterator sample_it;
760  sample_it.Init(NULL, NULL, replicate_samples, &samples_);
761  ErrorCounter::DebugNewErrors(test_classifier, old_classifier,
762  CT_UNICHAR_TOPN_ERR, fontinfo_table_,
763  page_images_, &sample_it);
764 }
static void DebugNewErrors(ShapeClassifier *new_classifier, ShapeClassifier *old_classifier, CountTypes boosting_mode, const FontInfoTable &fontinfo_table, const GenericVector< Pix * > &page_images, SampleIterator *it)
#define NULL
Definition: host.h:144
const UNICHARSET& tesseract::MasterTrainer::unicharset ( ) const
inline

Definition at line 189 of file mastertrainer.h.

189  {
190  return samples_.unicharset();
191  }
const UNICHARSET & unicharset() const
void tesseract::MasterTrainer::WriteInttempAndPFFMTable ( const UNICHARSET unicharset,
const UNICHARSET shape_set,
const ShapeTable shape_table,
CLASS_STRUCT float_classes,
const char *  inttemp_file,
const char *  pffmtable_file 
)

Definition at line 582 of file mastertrainer.cpp.

587  {
588  tesseract::Classify *classify = new tesseract::Classify();
589  // Move the fontinfo table to classify.
590  fontinfo_table_.MoveTo(&classify->get_fontinfo_table());
591  INT_TEMPLATES int_templates = classify->CreateIntTemplates(float_classes,
592  shape_set);
593  FILE* fp = fopen(inttemp_file, "wb");
594  classify->WriteIntTemplates(fp, int_templates, shape_set);
595  fclose(fp);
596  // Now write pffmtable. This is complicated by the fact that the adaptive
597  // classifier still wants one indexed by unichar-id, but the static
598  // classifier needs one indexed by its shape class id.
599  // We put the shapetable_cutoffs in a GenericVector, and compute the
600  // unicharset cutoffs along the way.
601  GenericVector<uinT16> shapetable_cutoffs;
602  GenericVector<uinT16> unichar_cutoffs;
603  for (int c = 0; c < unicharset.size(); ++c)
604  unichar_cutoffs.push_back(0);
605  /* then write out each class */
606  for (int i = 0; i < int_templates->NumClasses; ++i) {
607  INT_CLASS Class = ClassForClassId(int_templates, i);
608  // Todo: Test with min instead of max
609  // int MaxLength = LengthForConfigId(Class, 0);
610  uinT16 max_length = 0;
611  for (int config_id = 0; config_id < Class->NumConfigs; config_id++) {
612  // Todo: Test with min instead of max
613  // if (LengthForConfigId (Class, config_id) < MaxLength)
614  uinT16 length = Class->ConfigLengths[config_id];
615  if (length > max_length)
616  max_length = Class->ConfigLengths[config_id];
617  int shape_id = float_classes[i].font_set.get(config_id);
618  const Shape& shape = shape_table.GetShape(shape_id);
619  for (int c = 0; c < shape.size(); ++c) {
620  int unichar_id = shape[c].unichar_id;
621  if (length > unichar_cutoffs[unichar_id])
622  unichar_cutoffs[unichar_id] = length;
623  }
624  }
625  shapetable_cutoffs.push_back(max_length);
626  }
627  fp = fopen(pffmtable_file, "wb");
628  shapetable_cutoffs.Serialize(fp);
629  for (int c = 0; c < unicharset.size(); ++c) {
630  const char *unichar = unicharset.id_to_unichar(c);
631  if (strcmp(unichar, " ") == 0) {
632  unichar = "NULL";
633  }
634  fprintf(fp, "%s %d\n", unichar, unichar_cutoffs[c]);
635  }
636  fclose(fp);
637  free_int_templates(int_templates);
638  delete classify;
639 }
int push_back(T object)
UnicityTableEqEq< int > font_set
Definition: protos.h:65
bool Serialize(FILE *fp) const
uinT16 ConfigLengths[MAX_NUM_CONFIGS]
Definition: intproto.h:113
INT_TEMPLATES CreateIntTemplates(CLASSES FloatProtos, const UNICHARSET &target_unicharset)
Definition: intproto.cpp:564
const char *const id_to_unichar(UNICHAR_ID id) const
Definition: unicharset.cpp:266
UnicityTable< FontInfo > & get_fontinfo_table()
Definition: classify.h:345
void MoveTo(UnicityTable< FontInfo > *target)
Definition: fontinfo.cpp:106
#define ClassForClassId(T, c)
Definition: intproto.h:181
const T & get(int id) const
Return the object from an id.
void free_int_templates(INT_TEMPLATES templates)
Definition: intproto.cpp:748
uinT8 NumConfigs
Definition: intproto.h:110
void WriteIntTemplates(FILE *File, INT_TEMPLATES Templates, const UNICHARSET &target_unicharset)
Definition: intproto.cpp:1138
int size() const
Definition: unicharset.h:297
unsigned short uinT16
Definition: host.h:101

The documentation for this class was generated from the following files: