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Pretty basic, you can weight prefered language and this will impact the result. Say the algorithm "hesitates" between encoding E1 in language L1 and encoding E2 in language L2. By setting L2 with a 1.1 weight, for instance because this is the OS language, or usual prefered language, you may help the algorithm to overcome very tight cases. It can also be helpful when you already know for sure the language of a document, you just don't know its encoding. Then you may set a very high value for this language, or simply set a default value of 0, and set 1 for this language. Only relevant encoding will be taken into account. This is still limited though as generic encoding are still implemented language-agnostic. UTF-8 for instance would be disadvantaged by this weight system until we make it language-aware.
275 lines
8.2 KiB
C++
275 lines
8.2 KiB
C++
/* ***** BEGIN LICENSE BLOCK *****
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* Version: MPL 1.1/GPL 2.0/LGPL 2.1
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*
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* The contents of this file are subject to the Mozilla Public License Version
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* 1.1 (the "License"); you may not use this file except in compliance with
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* the License. You may obtain a copy of the License at
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* http://www.mozilla.org/MPL/
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*
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* Software distributed under the License is distributed on an "AS IS" basis,
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* WITHOUT WARRANTY OF ANY KIND, either express or implied. See the License
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* for the specific language governing rights and limitations under the
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* License.
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*
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* The Original Code is Mozilla Universal charset detector code.
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*
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* The Initial Developer of the Original Code is
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* Netscape Communications Corporation.
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* Portions created by the Initial Developer are Copyright (C) 2001
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* the Initial Developer. All Rights Reserved.
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*
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* Contributor(s):
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* BYVoid <byvoid.kcp@gmail.com>
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*
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* Alternatively, the contents of this file may be used under the terms of
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* either the GNU General Public License Version 2 or later (the "GPL"), or
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* the GNU Lesser General Public License Version 2.1 or later (the "LGPL"),
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* in which case the provisions of the GPL or the LGPL are applicable instead
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* of those above. If you wish to allow use of your version of this file only
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* under the terms of either the GPL or the LGPL, and not to allow others to
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* use your version of this file under the terms of the MPL, indicate your
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* decision by deleting the provisions above and replace them with the notice
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* and other provisions required by the GPL or the LGPL. If you do not delete
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* the provisions above, a recipient may use your version of this file under
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* the terms of any one of the MPL, the GPL or the LGPL.
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*
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* ***** END LICENSE BLOCK ***** */
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#include "uchardet.h"
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#include <string.h>
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#include <stdlib.h>
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#include <map>
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#include <string>
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#include <vector>
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#include "nscore.h"
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#include "nsUniversalDetector.h"
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typedef struct _UChardetCandidate
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{
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char *encoding;
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char *language;
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float confidence;
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} UChardetCandidate;
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class HandleUniversalDetector : public nsUniversalDetector
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{
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protected:
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std::vector<UChardetCandidate> candidates;
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std::vector<UChardetCandidate> weighed_candidates;
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std::map<std::string, float> weights;
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float default_weight;
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public:
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HandleUniversalDetector()
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: nsUniversalDetector(NS_FILTER_ALL), default_weight(1.0)
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{
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}
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virtual ~HandleUniversalDetector()
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{
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Reset();
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}
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virtual void Report(const char *encoding,
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const char *language,
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float confidence)
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{
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std::vector<UChardetCandidate>::iterator it;
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UChardetCandidate candidate;
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for (it = candidates.begin(); it != candidates.end(); it++)
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{
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if (strcmp(it->encoding, encoding) == 0 &&
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it->language && language && strcmp(it->language, language) == 0)
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{
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/* Already reported. Bail out or update the confidence
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* when needed.
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*/
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if (confidence > it->confidence)
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{
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candidates.erase(it);
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break;
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}
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else
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{
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return;
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}
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}
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}
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candidate = UChardetCandidate();
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candidate.encoding = strdup(encoding);
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candidate.language = language ? strdup(language) : NULL;
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candidate.confidence = confidence;
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for (it = candidates.begin(); it != candidates.end(); it++)
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{
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if (it->confidence < confidence)
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break;
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}
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candidates.insert(it, candidate);
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if (weights.size() > 0)
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WeighCandidates();
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}
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virtual void Reset()
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{
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std::vector<UChardetCandidate>::iterator it;
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nsUniversalDetector::Reset();
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for (it = candidates.begin(); it != candidates.end(); it++)
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{
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free(it->encoding);
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if (it->language)
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free(it->language);
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}
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candidates.clear();
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}
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size_t GetCandidates() const
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{
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return candidates.size();
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}
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const char* GetCharset(size_t i)
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{
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if (weights.size() > 0)
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return (weighed_candidates.size() > i) ? weighed_candidates[i].encoding : "";
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return (candidates.size() > i) ? candidates[i].encoding : "";
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}
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float GetConfidence(size_t i)
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{
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if (weights.size() > 0)
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return (weighed_candidates.size() > i) ? weighed_candidates[i].confidence : 0.0;
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return (candidates.size() > i) ? candidates[i].confidence : 0.0;
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}
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const char* GetLanguage(size_t i)
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{
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if (weights.size() > 0)
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return (weighed_candidates.size() > i) ? weighed_candidates[i].language : NULL;
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return (candidates.size() > i) ? candidates[i].language : NULL;
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}
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void WeighLanguage(const char *language,
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float weight)
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{
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weights[language] = weight;
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WeighCandidates();
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}
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void WeighDefault(float weight)
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{
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default_weight = weight;
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WeighCandidates();
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}
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private:
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void WeighCandidates()
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{
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std::vector<UChardetCandidate>::iterator it;
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std::vector<UChardetCandidate>::iterator it2;
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UChardetCandidate candidate;
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weighed_candidates.clear();
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for (it = candidates.begin(); it != candidates.end(); it++)
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{
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std::map<std::string, float>::iterator weight_it;
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float confidence;
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confidence = it->confidence * default_weight;
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if (it->language)
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{
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weight_it = weights.find(it->language);
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if (weight_it != weights.end())
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confidence = weight_it->second * it->confidence;
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}
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candidate = UChardetCandidate();
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candidate.encoding = it->encoding;
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candidate.language = it->language;
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candidate.confidence = confidence;
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for (it2 = weighed_candidates.begin(); it2 != weighed_candidates.end(); it2++)
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{
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if (it2->confidence < confidence)
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break;
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}
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weighed_candidates.insert(it2, candidate);
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}
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}
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};
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uchardet_t uchardet_new(void)
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{
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return reinterpret_cast<uchardet_t> (new HandleUniversalDetector());
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}
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void uchardet_delete(uchardet_t ud)
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{
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delete reinterpret_cast<HandleUniversalDetector*>(ud);
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}
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int uchardet_handle_data(uchardet_t ud, const char * data, size_t len)
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{
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nsresult ret = NS_OK;
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if (len > 0)
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ret = reinterpret_cast<HandleUniversalDetector*>(ud)->HandleData(data, (PRUint32)len);
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return (ret != NS_OK);
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}
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void uchardet_data_end(uchardet_t ud)
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{
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reinterpret_cast<HandleUniversalDetector*>(ud)->DataEnd();
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}
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void uchardet_reset(uchardet_t ud)
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{
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reinterpret_cast<HandleUniversalDetector*>(ud)->Reset();
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}
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const char* uchardet_get_charset(uchardet_t ud)
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{
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return reinterpret_cast<HandleUniversalDetector*>(ud)->GetCharset(0);
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}
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size_t uchardet_get_candidates (uchardet_t ud)
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{
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return reinterpret_cast<HandleUniversalDetector*>(ud)->GetCandidates();
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}
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float uchardet_get_confidence (uchardet_t ud,
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size_t candidate)
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{
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return reinterpret_cast<HandleUniversalDetector*>(ud)->GetConfidence(candidate);
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}
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const char * uchardet_get_encoding (uchardet_t ud,
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size_t candidate)
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{
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return reinterpret_cast<HandleUniversalDetector*>(ud)->GetCharset(candidate);
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}
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const char * uchardet_get_language (uchardet_t ud,
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size_t candidate)
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{
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return reinterpret_cast<HandleUniversalDetector*>(ud)->GetLanguage(candidate);
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}
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void uchardet_weigh_language (uchardet_t ud,
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const char *language,
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float weight)
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{
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reinterpret_cast<HandleUniversalDetector*>(ud)->WeighLanguage(language, weight);
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}
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void uchardet_set_default_weight (uchardet_t ud,
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float weight)
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{
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reinterpret_cast<HandleUniversalDetector*>(ud)->WeighDefault(weight);
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}
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