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import os import re from cudatext import * import cudax_lib as appx FN_CONFIG = os.path.join(app_path(APP_DIR_SETTINGS), 'plugins.ini') SECTION = 'complete_from_text' NONWORDS_DEFAULT = '''-+*=/\()[]{}<>"'.,:;~?!@#$%^&|`…''' # without space/tab nonwords = '' def bool_to_str(v): return '1' if v else '0' def str_to_bool(s): return s=='1' # '-' here is none-lexer option_lexers = ini_read(FN_CONFIG, SECTION, 'lexers', '-,ini files ^,markdown,restructuredtext,properties') option_min_len = int(ini_read(FN_CONFIG, SECTION, 'min_len', '3')) option_case_sens = str_to_bool(ini_read(FN_CONFIG, SECTION, 'case_sens', '1')) #option_no_cmt = str_to_bool(ini_read(FN_CONFIG, SECTION, 'no_comments', '1')) #option_no_str = str_to_bool(ini_read(FN_CONFIG, SECTION, 'no_strings', '0')) option_what_editors = int(ini_read(FN_CONFIG, SECTION, 'what_editors', '0')) option_max_lines = int(ini_read(FN_CONFIG, SECTION, 'max_lines', '10000')) option_use_acp = str_to_bool(ini_read(FN_CONFIG, SECTION, 'use_acp', '1')) option_show_acp_first = str_to_bool(ini_read(FN_CONFIG, SECTION, 'show_acp_first', '0')) option_case_split = str_to_bool(ini_read(FN_CONFIG, SECTION, 'case_split', '0')) option_underscore_split = str_to_bool(ini_read(FN_CONFIG, SECTION, 'underscore_split', '0')) option_fuzzy = str_to_bool(ini_read(FN_CONFIG, SECTION, 'fuzzy_search', '1')) def get_editors(ed, lexer): if option_what_editors==0: return [ed] elif option_what_editors==1: return [Editor(h) for h in ed_handles()] elif option_what_editors==2: res = [] for h in ed_handles(): e = Editor(h) if e.get_prop(PROP_LEXER_FILE)==lexer: res += [e] return res def is_lexer_allowed(lex): return (',*,' in ','+option_lexers+',') or (','+(lex or '-').lower()+',' in ','+option_lexers.lower()+',') def isword(s): return s not in ' \t'+nonwords def is_plain_match(stext, sfind): if option_case_sens: return stext.startswith(sfind) else: return stext.upper().startswith(sfind.upper()) def is_fuzzy_match(stext, sfind): '''Ported from CudaText's Pascal code''' stext = stext.upper() sfind = sfind.upper() n = -1 for ch in sfind: n = stext.find(ch, n+1) if n<0: return False return True def is_text_with_begin(s, begin): if option_fuzzy: return is_fuzzy_match(s, begin) if option_case_split or option_underscore_split: if option_case_split and s[0] == begin[0]: searchwords = re.findall('.[^A-Z]*', begin) wordwords = re.findall('.[^A-Z]*', s) swl = len(searchwords) wwl = len(wordwords) if swl <= wwl: for i in range(swl): if not wordwords[i].startswith(searchwords[i]): break else: return True if option_underscore_split: ss = s.strip('_') # ignore starting,ending underscores if '_' in ss: if not option_case_sens: begin = begin.lower() ss = ss.lower() wordwords = re.findall('[^_]+', ss) # PROP_LEX => [PROP, LEX] wwl = len(wordwords) bl = len(begin) if bl <= wwl: # most common case, first chars of each word: PLF|PL|P => PROP_LEXER_FILE for i in range(bl): if begin[i] != wordwords[i][0]: break else: return True if spl_match(begin, wordwords): return True if option_case_sens: return s.startswith(begin) else: return s.upper().startswith(begin.upper()) def spl_match(begin, words): '''returns True if 'begin' fits consecutively into 'words' (prefixes of 'words')''' word = words[0] common_len = 0 for i in range(min(len(begin), len(word))): if begin[i] == word[i]: common_len = i+1 else: break if common_len > 0: if len(begin) == common_len: # last match success return True elif len(words) == 1: # last word - should be full prefix return False for i in range(common_len): # i: 0 and 1 for common_len=2 -> # ... on calling spl_match() 'begin' will always be non-empty - less than full match res = spl_match(begin[common_len-i:], words[1:]) if res: return True return False def escape_regex(s): res = '' for ch in s: if ch in '$^#-+|.?*()[]{}': res += '\\' res += ch return res def get_regex(begin, nonwords): w_content = r'\w' for ch in NONWORDS_DEFAULT: if ch not in nonwords: w_content += escape_regex(ch) repeats = max(1, option_min_len-len(begin)) regex = r'\$?\b' + escape_regex(begin) + '[' + w_content + ']{' + str(repeats) + ',}' #print('begin:', repr(begin)) #print('regex:', repr(regex)) return regex def get_words_list(ed, regex): if ed.get_line_count() > option_max_lines: return [] ''' if option_no_cmt and option_no_str: ops = 'T6' elif option_no_cmt: ops = 'T4' elif option_no_str: ops = 'T5' else: ops = '' res = ed.action(EDACTION_FIND_ALL, regex, 'r'+ops) or [] l = [ed.get_text_substr(*r) for r in res] # slower than via python regex, 3 times ''' flags = re.I if not option_case_sens else 0 l = re.findall(regex, ed.get_text_all(), flags) l = list(set(l)) return l def get_word(ed, x, y): if not 0<=y<ed.get_line_count(): return s = ed.get_text_line(y) if not 0<x<=len(s): return x0 = x while (x0>0) and isword(s[x0-1]): x0-=1 text1 = s[x0:x] x0 = x while (x0<len(s)) and isword(s[x0]): x0+=1 text2 = s[x:x0] return (text1, text2) def _read_acp_file(sfile): with open(sfile, 'r', encoding='utf-8', errors='ignore') as f: lines = f.readlines() return lines def get_acp_words(ed, word1, word2): lex = ed.get_prop(PROP_LEXER_CARET, '') sfile = os.path.join(app_path(APP_DIR_DATA), 'autocomplete', lex+'.acp') if os.path.isfile(sfile): acp_lines = _read_acp_file(sfile) else: sfile = os.path.join(app_path(APP_DIR_DATA), 'autocomplete', lex+'_.acp') if os.path.isfile(sfile): acp_lines = _read_acp_file(sfile) else: return [], set() target_word = word1+word2 if len(acp_lines) > 0 and acp_lines[0].startswith('#chars'): del acp_lines[0] acp_words_plain = [] acp_words_fuzzy = [] words = set() fstr = '{}|{}|{}'+chr(9)+'{}' for line in acp_lines: line = line.rstrip() if not line: continue # using '#chars' #m = re.match('^([^\s]+)\s([\w'+ word_chars +']+)([^|]*)\|?(.*)?$', line) # ^Prefix Word Args Descr? m = re.match('^([^\s]+)\s([^(| ]+)([^|]*)\|?(.*)?$', line) # ^Prefix Word Args Descr? if not m: continue # avoid 'm[index]' to support old Python 3.4 pre, word, args, descr = m.group(1), m.group(2).rstrip(), m.group(3), m.group(4) or '' if len(word) < option_min_len: continue if is_text_with_begin(word, word1) and word != word1 and word != target_word: word = word.replace('%20', ' ') s = fstr.format(pre, word, args, descr) if is_plain_match(word, word1): acp_words_plain.append(s) else: acp_words_fuzzy.append(s) words.add(word) acp_words = acp_words_plain + acp_words_fuzzy return acp_words, words def get_completions(ed_self, x0, y0, with_acp, ignore_lexer=False): lex = ed_self.get_prop(PROP_LEXER_FILE, '') if lex is None: return if not ignore_lexer and not is_lexer_allowed(lex): return global nonwords nonwords = appx.get_opt( 'nonword_chars', NONWORDS_DEFAULT, appx.CONFIG_LEV_ALL, ed_self, lex) word = get_word(ed_self, x0, y0) if not word: return word1, word2 = word if not word1: return # to fix https://github.com/Alexey-T/CudaText/issues/3175 if word1[0].isdigit(): return # filter by word1[0], not by entire word1, because fuzzy must be supported regex = get_regex(word1[0], nonwords) words_by_tabs = [] tab_titles = [] for e in get_editors(ed_self, lex): words_by_tabs.append(get_words_list(e, regex)) title = e.get_prop(PROP_TAB_TITLE).replace('|', '/') tab_titles.append(title) #print('words_by_tabs:', words_by_tabs) words = [] for w in words_by_tabs: words += w def search_tab(w): if option_what_editors in [1, 2]: tabs_found = [] for i, words_by_tabs_ in enumerate(words_by_tabs): if w in words_by_tabs_: tabs_found.append(i) if tabs_found: return '|' + '; '.join([tab_titles[tf] for tf in tabs_found]) return '' else: return '' #exclude numbers #words = [w for w in words if not w.isdigit()] if words: words = sorted(list(set(words))) acp_words, acp_set = get_acp_words(ed_self, word1, word2) if with_acp else ([], set()) if not words and not acp_words: return def get_prefix(w): return 'var' if w.startswith('$') else 'text' word1and2 = word1+word2 words = [w for w in words if w not in acp_set # do not repeat words from .acp and w!=word1 and w!=word1and2 ] words = [w for w in words if is_text_with_begin(w, word1) ] words_plain = [] words_fuzzy = [] for w in words: if is_plain_match(w, word1): words_plain.append(w) else: words_fuzzy.append(w) words = words_plain + words_fuzzy words_decorated = [get_prefix(w)+'|'+w+search_tab(w) for w in words] return (words_decorated, acp_words, word1, word2) class Command: def on_complete(self, ed_self): carets = ed_self.get_carets() if len(carets)!=1: return # don't allow multi-carets x0, y0, x1, y1 = carets[0] if y1>=0: return # don't allow selection res = get_completions(ed_self, x0, y0, option_use_acp) if res is None: return words, acp_words, word1, word2 = res word_list = acp_words+words if option_show_acp_first else words+acp_words ed_self.complete('\n'.join(word_list), len(word1), len(word2)) return True def config(self): ini_write(FN_CONFIG, SECTION, 'lexers', option_lexers) ini_write(FN_CONFIG, SECTION, 'min_len', str(option_min_len)) ini_write(FN_CONFIG, SECTION, 'case_sens', bool_to_str(option_case_sens)) #ini_write(FN_CONFIG, SECTION, 'no_comments', bool_to_str(option_no_cmt)) #ini_write(FN_CONFIG, SECTION, 'no_strings', bool_to_str(option_no_str)) ini_write(FN_CONFIG, SECTION, 'what_editors', str(option_what_editors)) ini_write(FN_CONFIG, SECTION, 'max_lines', str(option_max_lines)) ini_write(FN_CONFIG, SECTION, 'use_acp', bool_to_str(option_use_acp)) ini_write(FN_CONFIG, SECTION, 'show_acp_first', bool_to_str(option_show_acp_first)) ini_write(FN_CONFIG, SECTION, 'fuzzy_search', bool_to_str(option_fuzzy)) ini_write(FN_CONFIG, SECTION, 'case_split', bool_to_str(option_case_split)) ini_write(FN_CONFIG, SECTION, 'underscore_split', bool_to_str(option_underscore_split)) file_open(FN_CONFIG) lines = [ed.get_text_line(i) for i in range(ed.get_line_count())] try: index = lines.index('['+SECTION+']') ed.set_caret(0, index) except: pass
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