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tesseract 3.04.01
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#include "bitvec.h"#include "cutil.h"#include "unichar.h"#include "unicity_table.h"#include "params.h"Go to the source code of this file.
| #define ClassOfChar | ( | Char | ) |
((TrainingData [Char].NumProtos) ? \ (& TrainingData [Char]) : \ NO_CLASS)
ClassOfChar
Return the class of a particular ASCII character value.
| #define PrintProto | ( | Proto | ) |
| #define PrintProtoLine | ( | Proto | ) |
| #define ProtoIn | ( | Class, | |
| Pid | |||
| ) | (& (Class)->Prototypes [Pid]) |
| typedef CLASS_STRUCT* CLASS_TYPE |
| typedef CLASS_STRUCT* CLASSES |
| typedef BIT_VECTOR* CONFIGS |
| typedef PROTO_STRUCT* PROTO |
| int AddConfigToClass | ( | CLASS_TYPE | Class | ) |
Definition at line 63 of file protos.cpp.
{
int NewNumConfigs;
int NewConfig;
int MaxNumProtos;
BIT_VECTOR Config;
MaxNumProtos = Class->MaxNumProtos;
if (Class->NumConfigs >= Class->MaxNumConfigs) {
/* add configs in CONFIG_INCREMENT chunks at a time */
NewNumConfigs = (((Class->MaxNumConfigs + CONFIG_INCREMENT) /
CONFIG_INCREMENT) * CONFIG_INCREMENT);
Class->Configurations =
(CONFIGS) Erealloc (Class->Configurations,
sizeof (BIT_VECTOR) * NewNumConfigs);
Class->MaxNumConfigs = NewNumConfigs;
}
NewConfig = Class->NumConfigs++;
Config = NewBitVector (MaxNumProtos);
Class->Configurations[NewConfig] = Config;
zero_all_bits (Config, WordsInVectorOfSize (MaxNumProtos));
return (NewConfig);
}
| int AddProtoToClass | ( | CLASS_TYPE | Class | ) |
Definition at line 99 of file protos.cpp.
{
int i;
int Bit;
int NewNumProtos;
int NewProto;
BIT_VECTOR Config;
if (Class->NumProtos >= Class->MaxNumProtos) {
/* add protos in PROTO_INCREMENT chunks at a time */
NewNumProtos = (((Class->MaxNumProtos + PROTO_INCREMENT) /
PROTO_INCREMENT) * PROTO_INCREMENT);
Class->Prototypes = (PROTO) Erealloc (Class->Prototypes,
sizeof (PROTO_STRUCT) *
NewNumProtos);
Class->MaxNumProtos = NewNumProtos;
for (i = 0; i < Class->NumConfigs; i++) {
Config = Class->Configurations[i];
Class->Configurations[i] = ExpandBitVector (Config, NewNumProtos);
for (Bit = Class->NumProtos; Bit < NewNumProtos; Bit++)
reset_bit(Config, Bit);
}
}
NewProto = Class->NumProtos++;
if (Class->NumProtos > MAX_NUM_PROTOS) {
tprintf("Ouch! number of protos = %d, vs max of %d!",
Class->NumProtos, MAX_NUM_PROTOS);
}
return (NewProto);
}
| FLOAT32 ClassConfigLength | ( | CLASS_TYPE | Class, |
| BIT_VECTOR | Config | ||
| ) |
| FLOAT32 ClassProtoLength | ( | CLASS_TYPE | Class | ) |
| void FillABC | ( | PROTO | Proto | ) |
Definition at line 198 of file protos.cpp.
| void FreeClass | ( | CLASS_TYPE | Class | ) |
Definition at line 215 of file protos.cpp.
{
if (Class) {
FreeClassFields(Class);
delete Class;
}
}
| void FreeClassFields | ( | CLASS_TYPE | Class | ) |
Definition at line 228 of file protos.cpp.
{
int i;
if (Class) {
if (Class->MaxNumProtos > 0)
memfree (Class->Prototypes);
if (Class->MaxNumConfigs > 0) {
for (i = 0; i < Class->NumConfigs; i++)
FreeBitVector (Class->Configurations[i]);
memfree (Class->Configurations);
}
}
}
| void InitPrototypes | ( | ) |
| CLASS_TYPE NewClass | ( | int | NumProtos, |
| int | NumConfigs | ||
| ) |
Definition at line 248 of file protos.cpp.
{
CLASS_TYPE Class;
Class = new CLASS_STRUCT;
if (NumProtos > 0)
Class->Prototypes = (PROTO) Emalloc (NumProtos * sizeof (PROTO_STRUCT));
if (NumConfigs > 0)
Class->Configurations = (CONFIGS) Emalloc (NumConfigs *
sizeof (BIT_VECTOR));
Class->MaxNumProtos = NumProtos;
Class->MaxNumConfigs = NumConfigs;
Class->NumProtos = 0;
Class->NumConfigs = 0;
return (Class);
}
| void PrintProtos | ( | CLASS_TYPE | Class | ) |
Definition at line 273 of file protos.cpp.
{
inT16 Pid;
for (Pid = 0; Pid < Class->NumProtos; Pid++) {
cprintf ("Proto %d:\t", Pid);
PrintProto (ProtoIn (Class, Pid));
cprintf ("\t");
PrintProtoLine (ProtoIn (Class, Pid));
new_line();
}
}
| char* classify_training_file = "MicroFeatures" |
"Training file"
Definition at line 50 of file protos.cpp.
Definition at line 48 of file protos.cpp.