39     if (pain_points_heaps_[h].empty()) 
continue;
    40     *priority = pain_points_heaps_[h].
PeekTop().
key;
    42     pain_points_heaps_[h].
Pop(NULL);
    51   for (
int col = 0; col < ratings->
dimension(); ++col) {
    53     for (
int row = col + 1; row < row_end; ++row) {
    55       if (coord.
Valid(*ratings) &&
    62                           true, max_char_wh_ratio_, word_res);
   110       float priority = ol_dif > 0 ? (vse->
ratings_sum-rat_subtr)/ol_dif : 0.0;
   112                         priority, 
true, max_char_wh_ratio_, word_res);
   113     } 
else if (debug_level_ > 3) {
   114       tprintf(
"NO pain point (Classified) for col=%d row=%d type=%s\n",
   115               pain_coord.
col, pain_coord.
row,
   119       for (b_it.mark_cycle_pt(); !b_it.cycled_list(); b_it.forward()) {
   125     curr_vse = parent_vse;
   126     curr_b = curr_vse->
curr_b;
   135   for (
int d = 0; d < fixpt.
size(); ++d) {
   148     bool ok_to_extend, 
float max_char_wh_ratio,
   155   if (debug_level_ > 3) {
   156     tprintf(
"Generating pain point for col=%d row=%d type=%s\n",
   157             col, row, LMPainPointsTypeName[pp_type]);
   162                                max_char_wh_ratio, word_res, debug_level_,
   173                                    max_char_wh_ratio, word_res, debug_level_,
   178     if (debug_level_ > 3) {
   179       tprintf(
"Discarded pain point with a bad shape\n");
   185   if (pain_points_heaps_[pp_type].size() < max_heap_size_) {
   189       priority = special_priority;
   191       priority = associate_stats.
gap_sum;
   194     pain_points_heaps_[pp_type].
Push(&pain_point);
   196       tprintf(
"Added pain point with priority %g\n", priority);
   200     if (debug_level_) 
tprintf(
"Pain points heap is full\n");
   212     for (
int j = 0; j < heap->
size(); ++j)
   213       (*heap)[j].data.MapForSplit(index);
 
GenericVector< Pair > * heap()
 
bool GeneratePainPoint(int col, int row, LMPainPointsType pp_type, float special_priority, bool ok_to_extend, float max_char_wh_ratio, WERD_RES *word_res)
 
const Pair & PeekTop() const
 
static const float kLooseMaxCharWhRatio
 
void GenerateInitial(WERD_RES *word_res)
 
LMPainPointsType Deque(MATRIX_COORD *pp, float *priority)
 
void RemapForSplit(int index)
 
bool bad_fixed_pitch_right_gap
 
static const float kDefaultPainPointPriorityAdjustment
 
bool bad_fixed_pitch_wh_ratio
 
static float ComputeOutlineLength(float rating_cert_scale, const BLOB_CHOICE &b)
 
bool Valid(const MATRIX &m) const
 
void GenerateFromPath(float rating_cert_scale, ViterbiStateEntry *vse, WERD_RES *word_res)
 
const MATRIX_COORD & matrix_cell()
 
void GenerateFromAmbigs(const DANGERR &fixpt, ViterbiStateEntry *vse, WERD_RES *word_res)
 
ViterbiStateEntry * parent_vse
 
bool Classified(int col, int row, int wildcard_id) const
 
static void ComputeStats(int col, int row, const AssociateStats *parent_stats, int parent_path_length, bool fixed_pitch, float max_char_wh_ratio, WERD_RES *word_res, bool debug, AssociateStats *stats)
 
UNICHAR_ID WildcardID() const
 
BLOB_CHOICE * curr_b
Pointers to BLOB_CHOICE and parent ViterbiStateEntry (not owned by this).