mirror of
https://github.com/xiaoyifang/goldendict-ng.git
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ee966c4d2d
and their header files necessary to build GoldenDict on 64-bit Intel Macs. Included program icon into application package. Minor code clarification in keyboardstate.cc
173 lines
5.2 KiB
C++
173 lines
5.2 KiB
C++
#include "hunvisapi.h"
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#include "hashmgr.hxx"
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#include "affixmgr.hxx"
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#include "suggestmgr.hxx"
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#include "langnum.hxx"
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#define SPELL_XML "<?xml?>"
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#define MAXDIC 20
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#define MAXSUGGESTION 15
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#define MAXSHARPS 5
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#define HUNSPELL_OK (1 << 0)
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#define HUNSPELL_OK_WARN (1 << 1)
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#ifndef _MYSPELLMGR_HXX_
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#define _MYSPELLMGR_HXX_
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class LIBHUNSPELL_DLL_EXPORTED Hunspell
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{
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AffixMgr* pAMgr;
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HashMgr* pHMgr[MAXDIC];
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int maxdic;
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SuggestMgr* pSMgr;
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char * affixpath;
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char * encoding;
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struct cs_info * csconv;
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int langnum;
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int utf8;
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int complexprefixes;
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char** wordbreak;
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public:
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/* Hunspell(aff, dic) - constructor of Hunspell class
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* input: path of affix file and dictionary file
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*/
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Hunspell(const char * affpath, const char * dpath, const char * key = NULL);
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~Hunspell();
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/* load extra dictionaries (only dic files) */
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int add_dic(const char * dpath, const char * key = NULL);
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/* spell(word) - spellcheck word
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* output: 0 = bad word, not 0 = good word
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*
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* plus output:
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* info: information bit array, fields:
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* SPELL_COMPOUND = a compound word
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* SPELL_FORBIDDEN = an explicit forbidden word
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* root: root (stem), when input is a word with affix(es)
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*/
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int spell(const char * word, int * info = NULL, char ** root = NULL);
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/* suggest(suggestions, word) - search suggestions
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* input: pointer to an array of strings pointer and the (bad) word
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* array of strings pointer (here *slst) may not be initialized
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* output: number of suggestions in string array, and suggestions in
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* a newly allocated array of strings (*slts will be NULL when number
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* of suggestion equals 0.)
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*/
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int suggest(char*** slst, const char * word);
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/* deallocate suggestion lists */
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void free_list(char *** slst, int n);
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char * get_dic_encoding();
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/* morphological functions */
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/* analyze(result, word) - morphological analysis of the word */
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int analyze(char*** slst, const char * word);
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/* stem(result, word) - stemmer function */
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int stem(char*** slst, const char * word);
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/* stem(result, analysis, n) - get stems from a morph. analysis
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* example:
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* char ** result, result2;
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* int n1 = analyze(&result, "words");
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* int n2 = stem(&result2, result, n1);
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*/
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int stem(char*** slst, char ** morph, int n);
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/* generate(result, word, word2) - morphological generation by example(s) */
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int generate(char*** slst, const char * word, const char * word2);
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/* generate(result, word, desc, n) - generation by morph. description(s)
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* example:
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* char ** result;
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* char * affix = "is:plural"; // description depends from dictionaries, too
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* int n = generate(&result, "word", &affix, 1);
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* for (int i = 0; i < n; i++) printf("%s\n", result[i]);
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*/
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int generate(char*** slst, const char * word, char ** desc, int n);
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/* functions for run-time modification of the dictionary */
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/* add word to the run-time dictionary */
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int add(const char * word);
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/* add word to the run-time dictionary with affix flags of
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* the example (a dictionary word): Hunspell will recognize
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* affixed forms of the new word, too.
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*/
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int add_with_affix(const char * word, const char * example);
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/* remove word from the run-time dictionary */
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int remove(const char * word);
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/* other */
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/* get extra word characters definied in affix file for tokenization */
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const char * get_wordchars();
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unsigned short * get_wordchars_utf16(int * len);
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struct cs_info * get_csconv();
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const char * get_version();
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int get_langnum() const;
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/* experimental and deprecated functions */
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#ifdef HUNSPELL_EXPERIMENTAL
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/* suffix is an affix flag string, similarly in dictionary files */
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int put_word_suffix(const char * word, const char * suffix);
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char * morph_with_correction(const char * word);
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/* spec. suggestions */
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int suggest_auto(char*** slst, const char * word);
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int suggest_pos_stems(char*** slst, const char * word);
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#endif
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private:
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int cleanword(char *, const char *, int * pcaptype, int * pabbrev);
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int cleanword2(char *, const char *, w_char *, int * w_len, int * pcaptype, int * pabbrev);
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void mkinitcap(char *);
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int mkinitcap2(char * p, w_char * u, int nc);
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int mkinitsmall2(char * p, w_char * u, int nc);
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void mkallcap(char *);
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int mkallcap2(char * p, w_char * u, int nc);
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void mkallsmall(char *);
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int mkallsmall2(char * p, w_char * u, int nc);
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struct hentry * checkword(const char *, int * info, char **root);
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char * sharps_u8_l1(char * dest, char * source);
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hentry * spellsharps(char * base, char *, int, int, char * tmp, int * info, char **root);
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int is_keepcase(const hentry * rv);
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int insert_sug(char ***slst, char * word, int ns);
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void cat_result(char * result, char * st);
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char * stem_description(const char * desc);
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int spellml(char*** slst, const char * word);
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int get_xml_par(char * dest, const char * par, int maxl);
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const char * get_xml_pos(const char * s, const char * attr);
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int get_xml_list(char ***slst, char * list, const char * tag);
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int check_xml_par(const char * q, const char * attr, const char * value);
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};
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#endif
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