提交 5d627aac 编写于 作者: A amitdo

Remove code that is no longer needed

The code in ccutil/hashfn.h was needed for some old compilers. Now that we support MSVC >= 2010 and compilers that has good support for C++11, we can drop this code.

As a result of this file removal, we now use:
  std::unordered_map
  std::unordered_set
  std::unique_ptr
directly in the codebase with '#include' for the needed headers.
上级 e2ee7806
......@@ -18,7 +18,7 @@ include_HEADERS = \
noinst_HEADERS = \
ambigs.h bits16.h bitvector.h ccutil.h clst.h doubleptr.h elst2.h \
elst.h genericheap.h globaloc.h hashfn.h indexmapbidi.h kdpair.h lsterr.h \
elst.h genericheap.h globaloc.h indexmapbidi.h kdpair.h lsterr.h \
nwmain.h object_cache.h qrsequence.h sorthelper.h stderr.h \
scanutils.h tessdatamanager.h tprintf.h unicity_table.h unicodes.h \
universalambigs.h
......
/**********************************************************************
* File: hashfn.h (Formerly hash.h)
* Description: Portability hacks for hash_map, hash_set and unique_ptr.
* Author: Ray Smith
* Created: Wed Jan 08 14:08:25 PST 2014
*
* (C) Copyright 2014, Google Inc.
** Licensed under the Apache License, Version 2.0 (the "License");
** you may not use this file except in compliance with the License.
** You may obtain a copy of the License at
** http://www.apache.org/licenses/LICENSE-2.0
** Unless required by applicable law or agreed to in writing, software
** distributed under the License is distributed on an "AS IS" BASIS,
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
** See the License for the specific language governing permissions and
** limitations under the License.
*
**********************************************************************/
#ifndef HASHFN_H
#define HASHFN_H
#if (__cplusplus >= 201103L) || defined(_MSC_VER) // Visual Studio
#include <unordered_map>
#include <unordered_set>
#if defined(_MSC_VER) && (_MSC_VER >= 1500 && _MSC_VER < 1600) // VS 2008
#define TessHashMap std::tr1::unordered_map
#define TessHashSet std::tr1::unordered_set
#else // _MSC_VER
#define TessHashMap std::unordered_map
#define TessHashSet std::unordered_set
#include <memory>
#define SmartPtr std::unique_ptr
#define HAVE_UNIQUE_PTR
#endif // _MSC_VER
#elif (defined(__GNUC__) && (((__GNUC__ == 3) && (__GNUC_MINOR__ > 0)) || \
__GNUC__ >= 4)) // gcc
// hash_set is deprecated in gcc
#include <ext/hash_map>
#include <ext/hash_set>
using __gnu_cxx::hash_map;
using __gnu_cxx::hash_set;
#define TessHashMap __gnu_cxx::hash_map
#define TessHashSet __gnu_cxx::hash_set
#else
#include <hash_map>
#include <hash_set>
#define TessHashMap hash_map
#define TessHashSet :hash_set
#endif // gcc
#ifndef HAVE_UNIQUE_PTR
// Trivial smart ptr. Expand to add features of std::unique_ptr as required.
template<class T> class SmartPtr {
public:
SmartPtr() : ptr_(NULL) {}
explicit SmartPtr(T* ptr) : ptr_(ptr) {}
~SmartPtr() {
delete ptr_;
}
T* get() const {
return ptr_;
}
void reset(T* ptr) {
delete ptr_;
ptr_ = ptr;
}
bool operator==(const T* ptr) const {
return ptr_ == ptr;
}
T* operator->() const {
return ptr_;
}
private:
T* ptr_;
};
#endif // HAVE_UNIQUE_PTR
#endif // HASHFN_H
......@@ -57,9 +57,9 @@ struct RadicalStrokedHash {
};
// A hash map to convert unicodes to radical,stroke pair.
typedef TessHashMap<int, RadicalStroke> RSMap;
typedef std::unordered_map<int, RadicalStroke> RSMap;
// A hash map to count occurrences of each radical,stroke pair.
typedef TessHashMap<RadicalStroke, int, RadicalStrokedHash> RSCounts;
typedef std::unordered_map<RadicalStroke, int, RadicalStrokedHash> RSCounts;
// Helper function builds the RSMap from the radical-stroke file, which has
// already been read into a STRING. Returns false on error.
......
......@@ -22,7 +22,8 @@
#ifndef TESSERACT_CCUTIL_UNICHARCOMPRESS_H_
#define TESSERACT_CCUTIL_UNICHARCOMPRESS_H_
#include "hashfn.h"
#include <unordered_map>
#include "serialis.h"
#include "strngs.h"
#include "unicharset.h"
......@@ -236,17 +237,19 @@ class UnicharCompress {
// encoder_ is the only part that is serialized. The rest is computed on load.
GenericVector<RecodedCharID> encoder_;
// Decoder converts the output of encoder back to a unichar-id.
TessHashMap<RecodedCharID, int, RecodedCharID::RecodedCharIDHash> decoder_;
std::unordered_map<RecodedCharID, int,
RecodedCharID::RecodedCharIDHash>
decoder_;
// True if the index is a valid single or start code.
GenericVector<bool> is_valid_start_;
// Maps a prefix code to a list of valid next codes.
// The map owns the vectors.
TessHashMap<RecodedCharID, GenericVectorEqEq<int>*,
std::unordered_map<RecodedCharID, GenericVectorEqEq<int>*,
RecodedCharID::RecodedCharIDHash>
next_codes_;
// Maps a prefix code to a list of valid final codes.
// The map owns the vectors.
TessHashMap<RecodedCharID, GenericVectorEqEq<int>*,
std::unordered_map<RecodedCharID, GenericVectorEqEq<int>*,
RecodedCharID::RecodedCharIDHash>
final_codes_;
// Max of any value in encoder_ + 1.
......
......@@ -1211,7 +1211,7 @@ double LSTMTrainer::ComputeCharError(const GenericVector<int>& truth_str,
// Computes word recall error rate using a very simple bag of words algorithm.
// NOTE that this is destructive on both input strings.
double LSTMTrainer::ComputeWordError(STRING* truth_str, STRING* ocr_str) {
typedef TessHashMap<std::string, int, std::hash<std::string> > StrMap;
typedef std::unordered_map<std::string, int, std::hash<std::string> > StrMap;
GenericVector<STRING> truth_words, ocr_words;
truth_str->split(' ', &truth_words);
if (truth_words.empty()) return 0.0;
......
......@@ -21,9 +21,10 @@
#ifndef TESSERACT_TEXTORD_BBGRID_H_
#define TESSERACT_TEXTORD_BBGRID_H_
#include <unordered_set>
#include "clst.h"
#include "coutln.h"
#include "hashfn.h"
#include "rect.h"
#include "scrollview.h"
......@@ -364,7 +365,7 @@ template<class BBC, class BBC_CLIST, class BBC_C_IT> class GridSearch {
// An iterator over the list at (x_, y_) in the grid_.
BBC_C_IT it_;
// Set of unique returned elements used when unique_mode_ is true.
TessHashSet<BBC*, PtrHash<BBC> > returns_;
std::unordered_set<BBC*, PtrHash<BBC> > returns_;
};
// Sort function to sort a BBC by bounding_box().left().
......
......@@ -46,7 +46,7 @@ const int kMinLigature = 0xfb00;
const int kMaxLigature = 0xfb17; // Don't put the wide Hebrew letters in.
/* static */
SmartPtr<LigatureTable> LigatureTable::instance_;
std::unique_ptr<LigatureTable> LigatureTable::instance_;
/* static */
LigatureTable* LigatureTable::Get() {
......
......@@ -23,8 +23,9 @@
#define TRAININGDATA_LIGATURE_TABLE_H_
#include <string>
#include <unordered_map>
#include <memory>
#include "hashfn.h"
#include "util.h"
namespace tesseract {
......@@ -32,7 +33,7 @@ namespace tesseract {
class PangoFontInfo; // defined in pango_font_info.h
// Map to substitute strings for ligatures.
typedef TessHashMap<string, string, StringHash> LigHash;
typedef std::unordered_map<string, string, StringHash> LigHash;
class LigatureTable {
public:
......@@ -61,7 +62,7 @@ class LigatureTable {
// corresponding ligature characters.
void Init();
static SmartPtr<LigatureTable> instance_;
static std::unique_ptr<LigatureTable> instance_;
LigHash norm_to_lig_table_;
LigHash lig_to_norm_table_;
int min_lig_length_;
......
......@@ -688,7 +688,7 @@ void FontUtils::GetAllRenderableCharacters(const vector<string>& fonts,
// Utilities written to be backward compatible with StringRender
/* static */
int FontUtils::FontScore(const TessHashMap<char32, inT64>& ch_map,
int FontUtils::FontScore(const std::unordered_map<char32, inT64>& ch_map,
const string& fontname, int* raw_score,
vector<bool>* ch_flags) {
PangoFontInfo font_info;
......@@ -704,7 +704,7 @@ int FontUtils::FontScore(const TessHashMap<char32, inT64>& ch_map,
}
*raw_score = 0;
int ok_chars = 0;
for (TessHashMap<char32, inT64>::const_iterator it = ch_map.begin();
for (std::unordered_map<char32, inT64>::const_iterator it = ch_map.begin();
it != ch_map.end(); ++it) {
bool covered = (IsWhitespace(it->first) ||
(pango_coverage_get(coverage, it->first)
......@@ -722,7 +722,7 @@ int FontUtils::FontScore(const TessHashMap<char32, inT64>& ch_map,
/* static */
string FontUtils::BestFonts(const TessHashMap<char32, inT64>& ch_map,
string FontUtils::BestFonts(const std::unordered_map<char32, inT64>& ch_map,
vector<pair<const char*, vector<bool> > >* fonts) {
const double kMinOKFraction = 0.99;
// Weighted fraction of characters that must be renderable in a font to make
......
......@@ -23,9 +23,9 @@
#include <string>
#include <utility>
#include <vector>
#include <unordered_map>
#include "commandlineflags.h"
#include "hashfn.h"
#include "host.h"
#include "pango/pango-font.h"
#include "pango/pango.h"
......@@ -203,7 +203,7 @@ class FontUtils {
// corresponding character (in order of iterating ch_map) can be rendered.
// The return string is a list of the acceptable fonts that were used.
static string BestFonts(
const TessHashMap<char32, inT64>& ch_map,
const std::unordered_map<char32, inT64>& ch_map,
std::vector<std::pair<const char*, std::vector<bool> > >* font_flag);
// FontScore returns the weighted renderability score of the given
......@@ -211,7 +211,7 @@ class FontUtils {
// is also returned in raw_score.
// The values in the bool vector ch_flags correspond to whether the
// corresponding character (in order of iterating ch_map) can be rendered.
static int FontScore(const TessHashMap<char32, inT64>& ch_map,
static int FontScore(const std::unordered_map<char32, inT64>& ch_map,
const string& fontname, int* raw_score,
std::vector<bool>* ch_flags);
......
......@@ -31,8 +31,8 @@
#include <string>
#include <vector>
#include <unordered_map>
#include "hashfn.h"
#include "host.h"
#include "pango_font_info.h"
#include "pango/pango-layout.h"
......@@ -210,7 +210,7 @@ class StringRenderer {
Boxa* page_boxes_;
// Objects cached for subsequent calls to RenderAllFontsToImage()
TessHashMap<char32, inT64> char_map_; // Time-saving char histogram.
std::unordered_map<char32, inT64> char_map_; // Time-saving char histogram.
int total_chars_; // Number in the string to be rendered.
int font_index_; // Index of next font to use in font list.
int last_offset_; // Offset returned from last successful rendering
......
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