Total Complexity | 563 |
Total Lines | 1792 |
Duplicated Lines | 2.12 % |
Changes | 0 |
Duplicate code is one of the most pungent code smells. A rule that is often used is to re-structure code once it is duplicated in three or more places.
Common duplication problems, and corresponding solutions are:
Complex classes like abydos.stemmer often do a lot of different things. To break such a class down, we need to identify a cohesive component within that class. A common approach to find such a component is to look for fields/methods that share the same prefixes, or suffixes.
Once you have determined the fields that belong together, you can apply the Extract Class refactoring. If the component makes sense as a sub-class, Extract Subclass is also a candidate, and is often faster.
1 | # -*- coding: utf-8 -*- |
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2 | |||
3 | # Copyright 2014-2018 by Christopher C. Little. |
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4 | # This file is part of Abydos. |
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5 | # |
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6 | # Abydos is free software: you can redistribute it and/or modify |
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7 | # it under the terms of the GNU General Public License as published by |
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8 | # the Free Software Foundation, either version 3 of the License, or |
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9 | # (at your option) any later version. |
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10 | # |
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11 | # Abydos is distributed in the hope that it will be useful, |
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12 | # but WITHOUT ANY WARRANTY; without even the implied warranty of |
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13 | # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the |
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14 | # GNU General Public License for more details. |
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15 | # |
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16 | # You should have received a copy of the GNU General Public License |
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17 | # along with Abydos. If not, see <http://www.gnu.org/licenses/>. |
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18 | |||
19 | """abydos.stemmer. |
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20 | |||
21 | The stemmer module defines word stemmers including: |
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22 | |||
23 | - the Lovins stemmer |
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24 | - the Porter and Porter2 (Snowball English) stemmers |
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25 | - Snowball stemmers for German, Dutch, Norwegian, Swedish, and Danish |
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26 | - CLEF German, German plus, and Swedish stemmers |
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27 | - Caumann's German stemmer |
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28 | """ |
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29 | |||
30 | from __future__ import unicode_literals |
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31 | |||
32 | import unicodedata |
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33 | |||
34 | from six import text_type |
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35 | from six.moves import range |
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36 | |||
37 | |||
38 | def lovins(word): |
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39 | """Return Lovins stem. |
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40 | |||
41 | Lovins stemmer |
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42 | |||
43 | The Lovins stemmer is described in Julie Beth Lovins's article at: |
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44 | http://www.mt-archive.info/MT-1968-Lovins.pdf |
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45 | |||
46 | :param word: the word to stem |
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47 | :returns: word stem |
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48 | :rtype: string |
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49 | |||
50 | >>> lovins('reading') |
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51 | 'read' |
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52 | >>> lovins('suspension') |
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53 | 'suspens' |
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54 | >>> lovins('elusiveness') |
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55 | 'elus' |
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56 | """ |
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57 | # pylint: disable=too-many-branches, too-many-locals |
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58 | |||
59 | # lowercase, normalize, and compose |
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60 | word = unicodedata.normalize('NFC', text_type(word.lower())) |
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61 | |||
62 | def cond_b(word, suffix_len): |
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63 | """Return Lovins' condition B.""" |
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64 | return len(word)-suffix_len >= 3 |
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65 | |||
66 | def cond_c(word, suffix_len): |
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67 | """Return Lovins' condition C.""" |
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68 | return len(word)-suffix_len >= 4 |
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69 | |||
70 | def cond_d(word, suffix_len): |
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71 | """Return Lovins' condition D.""" |
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72 | return len(word)-suffix_len >= 5 |
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73 | |||
74 | def cond_e(word, suffix_len): |
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75 | """Return Lovins' condition E.""" |
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76 | return word[-suffix_len-1] != 'e' |
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77 | |||
78 | def cond_f(word, suffix_len): |
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79 | """Return Lovins' condition F.""" |
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80 | return (len(word)-suffix_len >= 3 and |
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81 | word[-suffix_len-1] != 'e') |
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82 | |||
83 | def cond_g(word, suffix_len): |
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84 | """Return Lovins' condition G.""" |
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85 | return (len(word)-suffix_len >= 3 and |
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86 | word[-suffix_len-1] == 'f') |
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87 | |||
88 | def cond_h(word, suffix_len): |
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89 | """Return Lovins' condition H.""" |
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90 | return (word[-suffix_len-1] == 't' or |
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91 | word[-suffix_len-2:-suffix_len] == 'll') |
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92 | |||
93 | def cond_i(word, suffix_len): |
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94 | """Return Lovins' condition I.""" |
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95 | return word[-suffix_len-1] not in {'e', 'o'} |
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96 | |||
97 | def cond_j(word, suffix_len): |
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98 | """Return Lovins' condition J.""" |
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99 | return word[-suffix_len-1] not in {'a', 'e'} |
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100 | |||
101 | def cond_k(word, suffix_len): |
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102 | """Return Lovins' condition K.""" |
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103 | return (len(word)-suffix_len >= 3 and |
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104 | (word[-suffix_len-1] in {'i', 'l'} or |
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105 | (word[-suffix_len-3] == 'u' and word[-suffix_len-1] == 'e'))) |
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106 | |||
107 | def cond_l(word, suffix_len): |
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108 | """Return Lovins' condition L.""" |
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109 | return (word[-suffix_len-1] not in {'s', 'u', 'x'} or |
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110 | word[-suffix_len-1] == 'os') |
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111 | |||
112 | def cond_m(word, suffix_len): |
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113 | """Return Lovins' condition M.""" |
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114 | return word[-suffix_len-1] not in {'a', 'c', 'e', 'm'} |
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115 | |||
116 | def cond_n(word, suffix_len): |
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117 | """Return Lovins' condition N.""" |
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118 | if len(word)-suffix_len >= 3: |
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119 | if word[-suffix_len-3] == 's': |
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120 | if len(word)-suffix_len >= 4: |
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121 | return True |
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122 | else: |
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123 | return True |
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124 | return False |
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125 | |||
126 | def cond_o(word, suffix_len): |
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127 | """Return Lovins' condition O.""" |
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128 | return word[-suffix_len-1] in {'i', 'l'} |
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129 | |||
130 | def cond_p(word, suffix_len): |
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131 | """Return Lovins' condition P.""" |
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132 | return word[-suffix_len-1] != 'c' |
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133 | |||
134 | def cond_q(word, suffix_len): |
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135 | """Return Lovins' condition Q.""" |
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136 | return (len(word)-suffix_len >= 3 and |
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137 | word[-suffix_len-1] not in {'l', 'n'}) |
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138 | |||
139 | def cond_r(word, suffix_len): |
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140 | """Return Lovins' condition R.""" |
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141 | return word[-suffix_len-1] in {'n', 'r'} |
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142 | |||
143 | def cond_s(word, suffix_len): |
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144 | """Return Lovins' condition S.""" |
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145 | return (word[-suffix_len-2:-suffix_len] == 'dr' or |
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146 | (word[-suffix_len-1] == 't' and |
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147 | word[-suffix_len-2:-suffix_len] != 'tt')) |
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148 | |||
149 | def cond_t(word, suffix_len): |
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150 | """Return Lovins' condition T.""" |
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151 | return (word[-suffix_len-1] in {'s', 't'} and |
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152 | word[-suffix_len-2:-suffix_len] != 'ot') |
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153 | |||
154 | def cond_u(word, suffix_len): |
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155 | """Return Lovins' condition U.""" |
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156 | return word[-suffix_len-1] in {'l', 'm', 'n', 'r'} |
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157 | |||
158 | def cond_v(word, suffix_len): |
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159 | """Return Lovins' condition V.""" |
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160 | return word[-suffix_len-1] == 'c' |
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161 | |||
162 | def cond_w(word, suffix_len): |
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163 | """Return Lovins' condition W.""" |
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164 | return word[-suffix_len-1] not in {'s', 'u'} |
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165 | |||
166 | def cond_x(word, suffix_len): |
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167 | """Return Lovins' condition X.""" |
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168 | return (word[-suffix_len-1] in {'i', 'l'} or |
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169 | (word[-suffix_len-3:-suffix_len] == 'u' and |
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170 | word[-suffix_len-1] == 'e')) |
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171 | |||
172 | def cond_y(word, suffix_len): |
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173 | """Return Lovins' condition Y.""" |
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174 | return word[-suffix_len-2:-suffix_len] == 'in' |
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175 | |||
176 | def cond_z(word, suffix_len): |
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177 | """Return Lovins' condition Z.""" |
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178 | return word[-suffix_len-1] != 'f' |
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179 | |||
180 | def cond_aa(word, suffix_len): |
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181 | """Return Lovins' condition AA.""" |
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182 | return (word[-suffix_len-1] in {'d', 'f', 'l', 't'} or |
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183 | word[-suffix_len-2:-suffix_len] in {'ph', 'th', 'er', 'or', |
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184 | 'es'}) |
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185 | |||
186 | def cond_bb(word, suffix_len): |
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187 | """Return Lovins' condition BB.""" |
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188 | return (len(word)-suffix_len >= 3 and |
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189 | word[-suffix_len-3:-suffix_len] != 'met' and |
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190 | word[-suffix_len-4:-suffix_len] != 'ryst') |
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191 | |||
192 | def cond_cc(word, suffix_len): |
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193 | """Return Lovins' condition CC.""" |
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194 | return word[-suffix_len-1] == 'l' |
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195 | |||
196 | suffix = {'alistically': cond_b, 'arizability': None, |
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197 | 'izationally': cond_b, 'antialness': None, |
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198 | 'arisations': None, 'arizations': None, 'entialness': None, |
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199 | 'allically': cond_c, 'antaneous': None, 'antiality': None, |
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200 | 'arisation': None, 'arization': None, 'ationally': cond_b, |
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201 | 'ativeness': None, 'eableness': cond_e, 'entations': None, |
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202 | 'entiality': None, 'entialize': None, 'entiation': None, |
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203 | 'ionalness': None, 'istically': None, 'itousness': None, |
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204 | 'izability': None, 'izational': None, 'ableness': None, |
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205 | 'arizable': None, 'entation': None, 'entially': None, |
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206 | 'eousness': None, 'ibleness': None, 'icalness': None, |
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207 | 'ionalism': None, 'ionality': None, 'ionalize': None, |
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208 | 'iousness': None, 'izations': None, 'lessness': None, |
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209 | 'ability': None, 'aically': None, 'alistic': cond_b, |
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210 | 'alities': None, 'ariness': cond_e, 'aristic': None, |
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211 | 'arizing': None, 'ateness': None, 'atingly': None, |
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212 | 'ational': cond_b, 'atively': None, 'ativism': None, |
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213 | 'elihood': cond_e, 'encible': None, 'entally': None, |
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214 | 'entials': None, 'entiate': None, 'entness': None, |
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215 | 'fulness': None, 'ibility': None, 'icalism': None, |
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216 | 'icalist': None, 'icality': None, 'icalize': None, |
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217 | 'ication': cond_g, 'icianry': None, 'ination': None, |
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218 | 'ingness': None, 'ionally': None, 'isation': None, |
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219 | 'ishness': None, 'istical': None, 'iteness': None, |
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220 | 'iveness': None, 'ivistic': None, 'ivities': None, |
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221 | 'ization': cond_f, 'izement': None, 'oidally': None, |
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222 | 'ousness': None, 'aceous': None, 'acious': cond_b, |
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223 | 'action': cond_g, 'alness': None, 'ancial': None, |
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224 | 'ancies': None, 'ancing': cond_b, 'ariser': None, |
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225 | 'arized': None, 'arizer': None, 'atable': None, |
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226 | 'ations': cond_b, 'atives': None, 'eature': cond_z, |
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227 | 'efully': None, 'encies': None, 'encing': None, |
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228 | 'ential': None, 'enting': cond_c, 'entist': None, |
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229 | 'eously': None, 'ialist': None, 'iality': None, |
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230 | 'ialize': None, 'ically': None, 'icance': None, |
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231 | 'icians': None, 'icists': None, 'ifully': None, |
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232 | 'ionals': None, 'ionate': cond_d, 'ioning': None, |
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233 | 'ionist': None, 'iously': None, 'istics': None, |
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234 | 'izable': cond_e, 'lessly': None, 'nesses': None, |
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235 | 'oidism': None, 'acies': None, 'acity': None, |
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236 | 'aging': cond_b, 'aical': None, 'alist': None, |
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237 | 'alism': cond_b, 'ality': None, 'alize': None, |
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238 | 'allic': cond_bb, 'anced': cond_b, 'ances': cond_b, |
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239 | 'antic': cond_c, 'arial': None, 'aries': None, |
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240 | 'arily': None, 'arity': cond_b, 'arize': None, |
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241 | 'aroid': None, 'ately': None, 'ating': cond_i, |
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242 | 'ation': cond_b, 'ative': None, 'ators': None, |
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243 | 'atory': None, 'ature': cond_e, 'early': cond_y, |
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244 | 'ehood': None, 'eless': None, 'elity': None, |
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245 | 'ement': None, 'enced': None, 'ences': None, |
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246 | 'eness': cond_e, 'ening': cond_e, 'ental': None, |
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247 | 'ented': cond_c, 'ently': None, 'fully': None, |
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248 | 'ially': None, 'icant': None, 'ician': None, |
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249 | 'icide': None, 'icism': None, 'icist': None, |
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250 | 'icity': None, 'idine': cond_i, 'iedly': None, |
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251 | 'ihood': None, 'inate': None, 'iness': None, |
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252 | 'ingly': cond_b, 'inism': cond_j, 'inity': cond_cc, |
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253 | 'ional': None, 'ioned': None, 'ished': None, |
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254 | 'istic': None, 'ities': None, 'itous': None, |
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255 | 'ively': None, 'ivity': None, 'izers': cond_f, |
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256 | 'izing': cond_f, 'oidal': None, 'oides': None, |
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257 | 'otide': None, 'ously': None, 'able': None, 'ably': None, |
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258 | 'ages': cond_b, 'ally': cond_b, 'ance': cond_b, 'ancy': cond_b, |
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259 | 'ants': cond_b, 'aric': None, 'arly': cond_k, 'ated': cond_i, |
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260 | 'ates': None, 'atic': cond_b, 'ator': None, 'ealy': cond_y, |
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261 | 'edly': cond_e, 'eful': None, 'eity': None, 'ence': None, |
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262 | 'ency': None, 'ened': cond_e, 'enly': cond_e, 'eous': None, |
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263 | 'hood': None, 'ials': None, 'ians': None, 'ible': None, |
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264 | 'ibly': None, 'ical': None, 'ides': cond_l, 'iers': None, |
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265 | 'iful': None, 'ines': cond_m, 'ings': cond_n, 'ions': cond_b, |
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266 | 'ious': None, 'isms': cond_b, 'ists': None, 'itic': cond_h, |
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267 | 'ized': cond_f, 'izer': cond_f, 'less': None, 'lily': None, |
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268 | 'ness': None, 'ogen': None, 'ward': None, 'wise': None, |
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269 | 'ying': cond_b, 'yish': None, 'acy': None, 'age': cond_b, |
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270 | 'aic': None, 'als': cond_bb, 'ant': cond_b, 'ars': cond_o, |
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271 | 'ary': cond_f, 'ata': None, 'ate': None, 'eal': cond_y, |
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272 | 'ear': cond_y, 'ely': cond_e, 'ene': cond_e, 'ent': cond_c, |
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273 | 'ery': cond_e, 'ese': None, 'ful': None, 'ial': None, |
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274 | 'ian': None, 'ics': None, 'ide': cond_l, 'ied': None, |
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275 | 'ier': None, 'ies': cond_p, 'ily': None, 'ine': cond_m, |
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276 | 'ing': cond_n, 'ion': cond_q, 'ish': cond_c, 'ism': cond_b, |
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277 | 'ist': None, 'ite': cond_aa, 'ity': None, 'ium': None, |
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278 | 'ive': None, 'ize': cond_f, 'oid': None, 'one': cond_r, |
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279 | 'ous': None, 'ae': None, 'al': cond_bb, 'ar': cond_x, |
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280 | 'as': cond_b, 'ed': cond_e, 'en': cond_f, 'es': cond_e, |
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281 | 'ia': None, 'ic': None, 'is': None, 'ly': cond_b, |
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282 | 'on': cond_s, 'or': cond_t, 'um': cond_u, 'us': cond_v, |
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283 | 'yl': cond_r, '\'s': None, 's\'': None, 'a': None, |
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284 | 'e': None, 'i': None, 'o': None, 's': cond_w, 'y': cond_b} |
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285 | |||
286 | for suffix_len in range(11, 0, -1): |
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287 | ending = word[-suffix_len:] |
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288 | if (ending in suffix and |
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289 | len(word)-suffix_len >= 2 and |
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290 | (suffix[ending] is None or |
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291 | suffix[ending](word, suffix_len))): |
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292 | word = word[:-suffix_len] |
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293 | break |
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294 | |||
295 | def recode9(stem): |
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296 | """Return Lovins' conditional recode rule 9.""" |
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297 | if stem[-3:-2] in {'a', 'i', 'o'}: |
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298 | return stem |
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299 | return stem[:-2]+'l' |
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300 | |||
301 | def recode24(stem): |
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302 | """Return Lovins' conditional recode rule 24.""" |
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303 | if stem[-4:-3] == 's': |
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304 | return stem |
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305 | return stem[:-1]+'s' |
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306 | |||
307 | def recode28(stem): |
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308 | """Return Lovins' conditional recode rule 28.""" |
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309 | if stem[-4:-3] in {'p', 't'}: |
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310 | return stem |
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311 | return stem[:-1]+'s' |
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312 | |||
313 | def recode30(stem): |
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314 | """Return Lovins' conditional recode rule 30.""" |
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315 | if stem[-4:-3] == 'm': |
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316 | return stem |
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317 | return stem[:-1]+'s' |
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318 | |||
319 | def recode32(stem): |
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320 | """Return Lovins' conditional recode rule 32.""" |
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321 | if stem[-3:-2] == 'n': |
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322 | return stem |
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323 | return stem[:-1]+'s' |
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324 | |||
325 | if word[-2:] in {'bb', 'dd', 'gg', 'll', 'mm', 'nn', 'pp', 'rr', 'ss', |
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326 | 'tt'}: |
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327 | word = word[:-1] |
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328 | |||
329 | recode = (('iev', 'ief'), |
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330 | ('uct', 'uc'), |
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331 | ('umpt', 'um'), |
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332 | ('rpt', 'rb'), |
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333 | ('urs', 'ur'), |
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334 | ('istr', 'ister'), |
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335 | ('metr', 'meter'), |
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336 | ('olv', 'olut'), |
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337 | ('ul', recode9), |
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338 | ('bex', 'bic'), |
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339 | ('dex', 'dic'), |
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340 | ('pex', 'pic'), |
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341 | ('tex', 'tic'), |
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342 | ('ax', 'ac'), |
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343 | ('ex', 'ec'), |
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344 | ('ix', 'ic'), |
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345 | ('lux', 'luc'), |
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346 | ('uad', 'uas'), |
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347 | ('vad', 'vas'), |
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348 | ('cid', 'cis'), |
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349 | ('lid', 'lis'), |
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350 | ('erid', 'eris'), |
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351 | ('pand', 'pans'), |
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352 | ('end', recode24), |
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353 | ('ond', 'ons'), |
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354 | ('lud', 'lus'), |
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355 | ('rud', 'rus'), |
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356 | ('her', recode28), |
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357 | ('mit', 'mis'), |
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358 | ('ent', recode30), |
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359 | ('ert', 'ers'), |
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360 | ('et', recode32), |
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361 | ('yt', 'ys'), |
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362 | ('yz', 'ys')) |
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363 | |||
364 | for ending, replacement in recode: |
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365 | if word.endswith(ending): |
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366 | if callable(replacement): |
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367 | word = replacement(word) |
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368 | else: |
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369 | word = word[:-len(ending)] + replacement |
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370 | |||
371 | return word |
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372 | |||
373 | |||
374 | def _m_degree(term, vowels): |
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375 | """Return Porter helper function _m_degree value. |
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376 | |||
377 | m-degree is equal to the number of V to C transitions |
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378 | |||
379 | :param term: the word for which to calculate the m-degree |
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380 | :param vowels: the set of vowels in the language |
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381 | :returns: the m-degree as defined in the Porter stemmer definition |
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382 | """ |
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383 | mdeg = 0 |
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384 | last_was_vowel = False |
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385 | for letter in term: |
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386 | if letter in vowels: |
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387 | last_was_vowel = True |
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388 | else: |
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389 | if last_was_vowel: |
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390 | mdeg += 1 |
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391 | last_was_vowel = False |
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392 | return mdeg |
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393 | |||
394 | |||
395 | def _sb_has_vowel(term, vowels): |
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396 | """Return Porter helper function _sb_has_vowel value. |
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397 | |||
398 | :param term: the word to scan for vowels |
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399 | :param vowels: the set of vowels in the language |
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400 | :returns: true iff a vowel exists in the term (as defined in the Porter |
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401 | stemmer definition) |
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402 | """ |
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403 | for letter in term: |
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404 | if letter in vowels: |
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405 | return True |
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406 | return False |
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407 | |||
408 | |||
409 | def _ends_in_doubled_cons(term, vowels): |
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410 | """Return Porter helper function _ends_in_doubled_cons value. |
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411 | |||
412 | :param term: the word to check for a final doubled consonant |
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413 | :param vowels: the set of vowels in the language |
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414 | :returns: true iff the stem ends in a doubled consonant (as defined in the |
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415 | Porter stemmer definition) |
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416 | """ |
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417 | if len(term) > 1 and term[-1] not in vowels and term[-2] == term[-1]: |
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418 | return True |
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419 | return False |
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420 | |||
421 | |||
422 | def _ends_in_cvc(term, vowels): |
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423 | """Return Porter helper function _ends_in_cvc value. |
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424 | |||
425 | :param term: the word to scan for cvc |
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426 | :param vowels: the set of vowels in the language |
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427 | :returns: true iff the stem ends in cvc (as defined in the Porter stemmer |
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428 | definition) |
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429 | """ |
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430 | if len(term) > 2 and (term[-1] not in vowels and |
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431 | term[-2] in vowels and |
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432 | term[-3] not in vowels and |
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433 | term[-1] not in tuple('wxY')): |
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434 | return True |
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435 | return False |
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436 | |||
437 | |||
438 | def porter(word, early_english=False): |
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439 | """Return Porter stem. |
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440 | |||
441 | The Porter stemmer is defined at: |
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442 | http://snowball.tartarus.org/algorithms/porter/stemmer.html |
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443 | |||
444 | :param word: the word to calculate the stem of |
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445 | :param early_english: set to True in order to remove -eth & -est (2nd & 3rd |
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446 | person singular verbal agreement suffixes) |
||
447 | :returns: word stem |
||
448 | :rtype: str |
||
449 | |||
450 | >>> porter('reading') |
||
451 | 'read' |
||
452 | >>> porter('suspension') |
||
453 | 'suspens' |
||
454 | >>> porter('elusiveness') |
||
455 | 'elus' |
||
456 | |||
457 | >>> porter('eateth', early_english=True) |
||
458 | 'eat' |
||
459 | """ |
||
460 | # pylint: disable=too-many-branches |
||
461 | |||
462 | # lowercase, normalize, and compose |
||
463 | word = unicodedata.normalize('NFC', text_type(word.lower())) |
||
464 | |||
465 | # Return word if stem is shorter than 2 |
||
466 | if len(word) < 3: |
||
467 | return word |
||
468 | |||
469 | _vowels = {'a', 'e', 'i', 'o', 'u', 'y'} |
||
470 | # Re-map consonantal y to Y (Y will be C, y will be V) |
||
471 | if word[0] == 'y': |
||
472 | word = 'Y' + word[1:] |
||
473 | for i in range(1, len(word)): |
||
474 | if word[i] == 'y' and word[i-1] in _vowels: |
||
475 | word = word[:i] + 'Y' + word[i+1:] |
||
476 | |||
477 | # Step 1a |
||
478 | if word[-1] == 's': |
||
479 | if word[-4:] == 'sses': |
||
480 | word = word[:-2] |
||
481 | elif word[-3:] == 'ies': |
||
482 | word = word[:-2] |
||
483 | elif word[-2:] == 'ss': |
||
484 | pass |
||
485 | else: |
||
486 | word = word[:-1] |
||
487 | |||
488 | # Step 1b |
||
489 | step1b_flag = False |
||
490 | if word[-3:] == 'eed': |
||
491 | if _m_degree(word[:-3], _vowels) > 0: |
||
492 | word = word[:-1] |
||
493 | elif word[-2:] == 'ed': |
||
494 | if _sb_has_vowel(word[:-2], _vowels): |
||
495 | word = word[:-2] |
||
496 | step1b_flag = True |
||
497 | elif word[-3:] == 'ing': |
||
498 | if _sb_has_vowel(word[:-3], _vowels): |
||
499 | word = word[:-3] |
||
500 | step1b_flag = True |
||
501 | elif early_english: |
||
502 | if word[-3:] == 'est': |
||
503 | if _sb_has_vowel(word[:-3], _vowels): |
||
504 | word = word[:-3] |
||
505 | step1b_flag = True |
||
506 | elif word[-3:] == 'eth': |
||
507 | if _sb_has_vowel(word[:-3], _vowels): |
||
508 | word = word[:-3] |
||
509 | step1b_flag = True |
||
510 | |||
511 | if step1b_flag: |
||
512 | if word[-2:] in {'at', 'bl', 'iz'}: |
||
513 | word += 'e' |
||
514 | elif (_ends_in_doubled_cons(word, _vowels) and |
||
515 | word[-1] not in {'l', 's', 'z'}): |
||
516 | word = word[:-1] |
||
517 | elif _m_degree(word, _vowels) == 1 and _ends_in_cvc(word, _vowels): |
||
518 | word += 'e' |
||
519 | |||
520 | # Step 1c |
||
521 | if word[-1] in {'Y', 'y'} and _sb_has_vowel(word[:-1], _vowels): |
||
522 | word = word[:-1] + 'i' |
||
523 | |||
524 | # Step 2 |
||
525 | if len(word) > 1: |
||
526 | if word[-2] == 'a': |
||
527 | if word[-7:] == 'ational': |
||
528 | if _m_degree(word[:-7], _vowels) > 0: |
||
529 | word = word[:-5] + 'e' |
||
530 | elif word[-6:] == 'tional': |
||
531 | if _m_degree(word[:-6], _vowels) > 0: |
||
532 | word = word[:-2] |
||
533 | elif word[-2] == 'c': |
||
534 | if word[-4:] in {'enci', 'anci'}: |
||
535 | if _m_degree(word[:-4], _vowels) > 0: |
||
536 | word = word[:-1] + 'e' |
||
537 | elif word[-2] == 'e': |
||
538 | if word[-4:] == 'izer': |
||
539 | if _m_degree(word[:-4], _vowels) > 0: |
||
540 | word = word[:-1] |
||
541 | elif word[-2] == 'g': |
||
542 | if word[-4:] == 'logi': |
||
543 | if _m_degree(word[:-4], _vowels) > 0: |
||
544 | word = word[:-1] |
||
545 | elif word[-2] == 'l': |
||
546 | if word[-3:] == 'bli': |
||
547 | if _m_degree(word[:-3], _vowels) > 0: |
||
548 | word = word[:-1] + 'e' |
||
549 | elif word[-4:] == 'alli': |
||
550 | if _m_degree(word[:-4], _vowels) > 0: |
||
551 | word = word[:-2] |
||
552 | elif word[-5:] == 'entli': |
||
553 | if _m_degree(word[:-5], _vowels) > 0: |
||
554 | word = word[:-2] |
||
555 | elif word[-3:] == 'eli': |
||
556 | if _m_degree(word[:-3], _vowels) > 0: |
||
557 | word = word[:-2] |
||
558 | elif word[-5:] == 'ousli': |
||
559 | if _m_degree(word[:-5], _vowels) > 0: |
||
560 | word = word[:-2] |
||
561 | elif word[-2] == 'o': |
||
562 | if word[-7:] == 'ization': |
||
563 | if _m_degree(word[:-7], _vowels) > 0: |
||
564 | word = word[:-5] + 'e' |
||
565 | elif word[-5:] == 'ation': |
||
566 | if _m_degree(word[:-5], _vowels) > 0: |
||
567 | word = word[:-3] + 'e' |
||
568 | elif word[-4:] == 'ator': |
||
569 | if _m_degree(word[:-4], _vowels) > 0: |
||
570 | word = word[:-2] + 'e' |
||
571 | elif word[-2] == 's': |
||
572 | if word[-5:] == 'alism': |
||
573 | if _m_degree(word[:-5], _vowels) > 0: |
||
574 | word = word[:-3] |
||
575 | elif word[-7:] in {'iveness', 'fulness', 'ousness'}: |
||
576 | if _m_degree(word[:-7], _vowels) > 0: |
||
577 | word = word[:-4] |
||
578 | elif word[-2] == 't': |
||
579 | if word[-5:] == 'aliti': |
||
580 | if _m_degree(word[:-5], _vowels) > 0: |
||
581 | word = word[:-3] |
||
582 | elif word[-5:] == 'iviti': |
||
583 | if _m_degree(word[:-5], _vowels) > 0: |
||
584 | word = word[:-3] + 'e' |
||
585 | elif word[-6:] == 'biliti': |
||
586 | if _m_degree(word[:-6], _vowels) > 0: |
||
587 | word = word[:-5] + 'le' |
||
588 | |||
589 | # Step 3 |
||
590 | if word[-5:] == 'icate': |
||
591 | if _m_degree(word[:-5], _vowels) > 0: |
||
592 | word = word[:-3] |
||
593 | elif word[-5:] == 'ative': |
||
594 | if _m_degree(word[:-5], _vowels) > 0: |
||
595 | word = word[:-5] |
||
596 | elif word[-5:] in {'alize', 'iciti'}: |
||
597 | if _m_degree(word[:-5], _vowels) > 0: |
||
598 | word = word[:-3] |
||
599 | elif word[-4:] == 'ical': |
||
600 | if _m_degree(word[:-4], _vowels) > 0: |
||
601 | word = word[:-2] |
||
602 | elif word[-3:] == 'ful': |
||
603 | if _m_degree(word[:-3], _vowels) > 0: |
||
604 | word = word[:-3] |
||
605 | elif word[-4:] == 'ness': |
||
606 | if _m_degree(word[:-4], _vowels) > 0: |
||
607 | word = word[:-4] |
||
608 | |||
609 | # Step 4 |
||
610 | if word[-2:] == 'al': |
||
611 | if _m_degree(word[:-2], _vowels) > 1: |
||
612 | word = word[:-2] |
||
613 | elif word[-4:] == 'ance': |
||
614 | if _m_degree(word[:-4], _vowels) > 1: |
||
615 | word = word[:-4] |
||
616 | elif word[-4:] == 'ence': |
||
617 | if _m_degree(word[:-4], _vowels) > 1: |
||
618 | word = word[:-4] |
||
619 | elif word[-2:] == 'er': |
||
620 | if _m_degree(word[:-2], _vowels) > 1: |
||
621 | word = word[:-2] |
||
622 | elif word[-2:] == 'ic': |
||
623 | if _m_degree(word[:-2], _vowels) > 1: |
||
624 | word = word[:-2] |
||
625 | elif word[-4:] == 'able': |
||
626 | if _m_degree(word[:-4], _vowels) > 1: |
||
627 | word = word[:-4] |
||
628 | elif word[-4:] == 'ible': |
||
629 | if _m_degree(word[:-4], _vowels) > 1: |
||
630 | word = word[:-4] |
||
631 | elif word[-3:] == 'ant': |
||
632 | if _m_degree(word[:-3], _vowels) > 1: |
||
633 | word = word[:-3] |
||
634 | elif word[-5:] == 'ement': |
||
635 | if _m_degree(word[:-5], _vowels) > 1: |
||
636 | word = word[:-5] |
||
637 | elif word[-4:] == 'ment': |
||
638 | if _m_degree(word[:-4], _vowels) > 1: |
||
639 | word = word[:-4] |
||
640 | elif word[-3:] == 'ent': |
||
641 | if _m_degree(word[:-3], _vowels) > 1: |
||
642 | word = word[:-3] |
||
643 | elif word[-4:] in {'sion', 'tion'}: |
||
644 | if _m_degree(word[:-3], _vowels) > 1: |
||
645 | word = word[:-3] |
||
646 | elif word[-2:] == 'ou': |
||
647 | if _m_degree(word[:-2], _vowels) > 1: |
||
648 | word = word[:-2] |
||
649 | elif word[-3:] == 'ism': |
||
650 | if _m_degree(word[:-3], _vowels) > 1: |
||
651 | word = word[:-3] |
||
652 | elif word[-3:] == 'ate': |
||
653 | if _m_degree(word[:-3], _vowels) > 1: |
||
654 | word = word[:-3] |
||
655 | elif word[-3:] == 'iti': |
||
656 | if _m_degree(word[:-3], _vowels) > 1: |
||
657 | word = word[:-3] |
||
658 | elif word[-3:] == 'ous': |
||
659 | if _m_degree(word[:-3], _vowels) > 1: |
||
660 | word = word[:-3] |
||
661 | elif word[-3:] == 'ive': |
||
662 | if _m_degree(word[:-3], _vowels) > 1: |
||
663 | word = word[:-3] |
||
664 | elif word[-3:] == 'ize': |
||
665 | if _m_degree(word[:-3], _vowels) > 1: |
||
666 | word = word[:-3] |
||
667 | |||
668 | # Step 5a |
||
669 | if word[-1] == 'e': |
||
670 | if _m_degree(word[:-1], _vowels) > 1: |
||
671 | word = word[:-1] |
||
672 | elif (_m_degree(word[:-1], _vowels) == 1 and |
||
673 | not _ends_in_cvc(word[:-1], _vowels)): |
||
674 | word = word[:-1] |
||
675 | |||
676 | # Step 5b |
||
677 | if word[-2:] == 'll' and _m_degree(word, _vowels) > 1: |
||
678 | word = word[:-1] |
||
679 | |||
680 | # Change 'Y' back to 'y' if it survived stemming |
||
681 | for i in range(len(word)): |
||
682 | if word[i] == 'Y': |
||
683 | word = word[:i] + 'y' + word[i+1:] |
||
684 | |||
685 | return word |
||
686 | |||
687 | |||
688 | def _sb_r1(term, vowels, r1_prefixes=None): |
||
689 | """Return the R1 region, as defined in the Porter2 specification.""" |
||
690 | vowel_found = False |
||
691 | if hasattr(r1_prefixes, '__iter__'): |
||
692 | for prefix in r1_prefixes: |
||
693 | if term[:len(prefix)] == prefix: |
||
694 | return len(prefix) |
||
695 | |||
696 | for i in range(len(term)): |
||
697 | if not vowel_found and term[i] in vowels: |
||
698 | vowel_found = True |
||
699 | elif vowel_found and term[i] not in vowels: |
||
700 | return i + 1 |
||
701 | return len(term) |
||
702 | |||
703 | |||
704 | def _sb_r2(term, vowels, r1_prefixes=None): |
||
705 | """Return the R2 region, as defined in the Porter2 specification.""" |
||
706 | r1_start = _sb_r1(term, vowels, r1_prefixes) |
||
707 | return r1_start + _sb_r1(term[r1_start:], vowels) |
||
708 | |||
709 | |||
710 | def _sb_ends_in_short_syllable(term, vowels, codanonvowels): |
||
711 | """Return True iff term ends in a short syllable. |
||
712 | |||
713 | (...according to the Porter2 specification.) |
||
714 | |||
715 | NB: This is akin to the CVC test from the Porter stemmer. The description |
||
716 | is unfortunately poor/ambiguous. |
||
717 | """ |
||
718 | if not term: |
||
719 | return False |
||
720 | if len(term) == 2: |
||
721 | if term[-2] in vowels and term[-1] not in vowels: |
||
722 | return True |
||
723 | elif len(term) >= 3: |
||
724 | if ((term[-3] not in vowels and term[-2] in vowels and |
||
725 | term[-1] in codanonvowels)): |
||
726 | return True |
||
727 | return False |
||
728 | |||
729 | |||
730 | def _sb_short_word(term, vowels, codanonvowels, r1_prefixes=None): |
||
731 | """Return True iff term is a short word. |
||
732 | |||
733 | (...according to the Porter2 specification.) |
||
734 | """ |
||
735 | if ((_sb_r1(term, vowels, r1_prefixes) == len(term) and |
||
736 | _sb_ends_in_short_syllable(term, vowels, codanonvowels))): |
||
737 | return True |
||
738 | return False |
||
739 | |||
740 | |||
741 | def porter2(word, early_english=False): |
||
742 | """Return the Porter2 (Snowball English) stem. |
||
743 | |||
744 | The Porter2 (Snowball English) stemmer is defined at: |
||
745 | http://snowball.tartarus.org/algorithms/english/stemmer.html |
||
746 | |||
747 | :param word: the word to calculate the stem of |
||
748 | :param early_english: set to True in order to remove -eth & -est (2nd & 3rd |
||
749 | person singular verbal agreement suffixes) |
||
750 | :returns: word stem |
||
751 | :rtype: str |
||
752 | |||
753 | >>> porter2('reading') |
||
754 | 'read' |
||
755 | >>> porter2('suspension') |
||
756 | 'suspens' |
||
757 | >>> porter2('elusiveness') |
||
758 | 'elus' |
||
759 | |||
760 | >>> porter2('eateth', early_english=True) |
||
761 | 'eat' |
||
762 | """ |
||
763 | # pylint: disable=too-many-branches |
||
764 | # pylint: disable=too-many-return-statements |
||
765 | |||
766 | _vowels = {'a', 'e', 'i', 'o', 'u', 'y'} |
||
767 | _codanonvowels = {"'", 'b', 'c', 'd', 'f', 'g', 'h', 'j', 'k', 'l', 'm', |
||
768 | 'n', 'p', 'q', 'r', 's', 't', 'v', 'z'} |
||
769 | _doubles = {'bb', 'dd', 'ff', 'gg', 'mm', 'nn', 'pp', 'rr', 'tt'} |
||
770 | _li = {'c', 'd', 'e', 'g', 'h', 'k', 'm', 'n', 'r', 't'} |
||
771 | |||
772 | # R1 prefixes should be in order from longest to shortest to prevent |
||
773 | # masking |
||
774 | _r1_prefixes = ('commun', 'gener', 'arsen') |
||
775 | _exception1dict = { # special changes: |
||
776 | 'skis': 'ski', 'skies': 'sky', 'dying': 'die', |
||
777 | 'lying': 'lie', 'tying': 'tie', |
||
778 | # special -LY cases: |
||
779 | 'idly': 'idl', 'gently': 'gentl', 'ugly': 'ugli', |
||
780 | 'early': 'earli', 'only': 'onli', 'singly': 'singl'} |
||
781 | _exception1set = {'sky', 'news', 'howe', 'atlas', 'cosmos', 'bias', |
||
782 | 'andes'} |
||
783 | _exception2set = {'inning', 'outing', 'canning', 'herring', 'earring', |
||
784 | 'proceed', 'exceed', 'succeed'} |
||
785 | |||
786 | # lowercase, normalize, and compose |
||
787 | word = unicodedata.normalize('NFC', text_type(word.lower())) |
||
788 | # replace apostrophe-like characters with U+0027, per |
||
789 | # http://snowball.tartarus.org/texts/apostrophe.html |
||
790 | word = word.replace('’', '\'') |
||
791 | word = word.replace('’', '\'') |
||
792 | |||
793 | # Exceptions 1 |
||
794 | if word in _exception1dict: |
||
795 | return _exception1dict[word] |
||
796 | elif word in _exception1set: |
||
797 | return word |
||
798 | |||
799 | # Return word if stem is shorter than 3 |
||
800 | if len(word) < 3: |
||
801 | return word |
||
802 | |||
803 | # Remove initial ', if present. |
||
804 | while word and word[0] == '\'': |
||
805 | word = word[1:] |
||
806 | # Return word if stem is shorter than 2 |
||
807 | if len(word) < 2: |
||
808 | return word |
||
809 | |||
810 | # Re-map vocalic Y to y (Y will be C, y will be V) |
||
811 | if word[0] == 'y': |
||
812 | word = 'Y' + word[1:] |
||
813 | for i in range(1, len(word)): |
||
814 | if word[i] == 'y' and word[i-1] in _vowels: |
||
815 | word = word[:i] + 'Y' + word[i+1:] |
||
816 | |||
817 | r1_start = _sb_r1(word, _vowels, _r1_prefixes) |
||
818 | r2_start = _sb_r2(word, _vowels, _r1_prefixes) |
||
819 | |||
820 | # Step 0 |
||
821 | if word[-3:] == '\'s\'': |
||
822 | word = word[:-3] |
||
823 | elif word[-2:] == '\'s': |
||
824 | word = word[:-2] |
||
825 | elif word[-1:] == '\'': |
||
826 | word = word[:-1] |
||
827 | # Return word if stem is shorter than 2 |
||
828 | if len(word) < 3: |
||
829 | return word |
||
830 | |||
831 | # Step 1a |
||
832 | if word[-4:] == 'sses': |
||
833 | word = word[:-2] |
||
834 | elif word[-3:] in {'ied', 'ies'}: |
||
835 | if len(word) > 4: |
||
836 | word = word[:-2] |
||
837 | else: |
||
838 | word = word[:-1] |
||
839 | elif word[-2:] in {'us', 'ss'}: |
||
840 | pass |
||
841 | elif word[-1] == 's': |
||
842 | if _sb_has_vowel(word[:-2], _vowels): |
||
843 | word = word[:-1] |
||
844 | |||
845 | # Exceptions 2 |
||
846 | if word in _exception2set: |
||
847 | return word |
||
848 | |||
849 | # Step 1b |
||
850 | step1b_flag = False |
||
851 | if word[-5:] == 'eedly': |
||
852 | if len(word[r1_start:]) >= 5: |
||
853 | word = word[:-3] |
||
854 | elif word[-5:] == 'ingly': |
||
855 | if _sb_has_vowel(word[:-5], _vowels): |
||
856 | word = word[:-5] |
||
857 | step1b_flag = True |
||
858 | elif word[-4:] == 'edly': |
||
859 | if _sb_has_vowel(word[:-4], _vowels): |
||
860 | word = word[:-4] |
||
861 | step1b_flag = True |
||
862 | elif word[-3:] == 'eed': |
||
863 | if len(word[r1_start:]) >= 3: |
||
864 | word = word[:-1] |
||
865 | elif word[-3:] == 'ing': |
||
866 | if _sb_has_vowel(word[:-3], _vowels): |
||
867 | word = word[:-3] |
||
868 | step1b_flag = True |
||
869 | elif word[-2:] == 'ed': |
||
870 | if _sb_has_vowel(word[:-2], _vowels): |
||
871 | word = word[:-2] |
||
872 | step1b_flag = True |
||
873 | elif early_english: |
||
874 | if word[-3:] == 'est': |
||
875 | if _sb_has_vowel(word[:-3], _vowels): |
||
876 | word = word[:-3] |
||
877 | step1b_flag = True |
||
878 | elif word[-3:] == 'eth': |
||
879 | if _sb_has_vowel(word[:-3], _vowels): |
||
880 | word = word[:-3] |
||
881 | step1b_flag = True |
||
882 | |||
883 | if step1b_flag: |
||
884 | if word[-2:] in {'at', 'bl', 'iz'}: |
||
885 | word += 'e' |
||
886 | elif word[-2:] in _doubles: |
||
887 | word = word[:-1] |
||
888 | elif _sb_short_word(word, _vowels, _codanonvowels, _r1_prefixes): |
||
889 | word += 'e' |
||
890 | |||
891 | # Step 1c |
||
892 | if ((len(word) > 2 and word[-1] in {'Y', 'y'} and |
||
893 | word[-2] not in _vowels)): |
||
894 | word = word[:-1] + 'i' |
||
895 | |||
896 | # Step 2 |
||
897 | if word[-2] == 'a': |
||
898 | if word[-7:] == 'ational': |
||
899 | if len(word[r1_start:]) >= 7: |
||
900 | word = word[:-5] + 'e' |
||
901 | elif word[-6:] == 'tional': |
||
902 | if len(word[r1_start:]) >= 6: |
||
903 | word = word[:-2] |
||
904 | elif word[-2] == 'c': |
||
905 | if word[-4:] in {'enci', 'anci'}: |
||
906 | if len(word[r1_start:]) >= 4: |
||
907 | word = word[:-1] + 'e' |
||
908 | elif word[-2] == 'e': |
||
909 | if word[-4:] == 'izer': |
||
910 | if len(word[r1_start:]) >= 4: |
||
911 | word = word[:-1] |
||
912 | elif word[-2] == 'g': |
||
913 | if word[-3:] == 'ogi': |
||
914 | if ((r1_start >= 1 and len(word[r1_start:]) >= 3 and |
||
915 | word[-4] == 'l')): |
||
916 | word = word[:-1] |
||
917 | elif word[-2] == 'l': |
||
918 | if word[-6:] == 'lessli': |
||
919 | if len(word[r1_start:]) >= 6: |
||
920 | word = word[:-2] |
||
921 | elif word[-5:] in {'entli', 'fulli', 'ousli'}: |
||
922 | if len(word[r1_start:]) >= 5: |
||
923 | word = word[:-2] |
||
924 | elif word[-4:] == 'abli': |
||
925 | if len(word[r1_start:]) >= 4: |
||
926 | word = word[:-1] + 'e' |
||
927 | elif word[-4:] == 'alli': |
||
928 | if len(word[r1_start:]) >= 4: |
||
929 | word = word[:-2] |
||
930 | elif word[-3:] == 'bli': |
||
931 | if len(word[r1_start:]) >= 3: |
||
932 | word = word[:-1] + 'e' |
||
933 | elif word[-2:] == 'li': |
||
934 | if ((r1_start >= 1 and len(word[r1_start:]) >= 2 and |
||
935 | word[-3] in _li)): |
||
936 | word = word[:-2] |
||
937 | elif word[-2] == 'o': |
||
938 | if word[-7:] == 'ization': |
||
939 | if len(word[r1_start:]) >= 7: |
||
940 | word = word[:-5] + 'e' |
||
941 | elif word[-5:] == 'ation': |
||
942 | if len(word[r1_start:]) >= 5: |
||
943 | word = word[:-3] + 'e' |
||
944 | elif word[-4:] == 'ator': |
||
945 | if len(word[r1_start:]) >= 4: |
||
946 | word = word[:-2] + 'e' |
||
947 | elif word[-2] == 's': |
||
948 | if word[-7:] in {'fulness', 'ousness', 'iveness'}: |
||
949 | if len(word[r1_start:]) >= 7: |
||
950 | word = word[:-4] |
||
951 | elif word[-5:] == 'alism': |
||
952 | if len(word[r1_start:]) >= 5: |
||
953 | word = word[:-3] |
||
954 | elif word[-2] == 't': |
||
955 | if word[-6:] == 'biliti': |
||
956 | if len(word[r1_start:]) >= 6: |
||
957 | word = word[:-5] + 'le' |
||
958 | elif word[-5:] == 'aliti': |
||
959 | if len(word[r1_start:]) >= 5: |
||
960 | word = word[:-3] |
||
961 | elif word[-5:] == 'iviti': |
||
962 | if len(word[r1_start:]) >= 5: |
||
963 | word = word[:-3] + 'e' |
||
964 | |||
965 | # Step 3 |
||
966 | if word[-7:] == 'ational': |
||
967 | if len(word[r1_start:]) >= 7: |
||
968 | word = word[:-5] + 'e' |
||
969 | elif word[-6:] == 'tional': |
||
970 | if len(word[r1_start:]) >= 6: |
||
971 | word = word[:-2] |
||
972 | elif word[-5:] in {'alize', 'icate', 'iciti'}: |
||
973 | if len(word[r1_start:]) >= 5: |
||
974 | word = word[:-3] |
||
975 | elif word[-5:] == 'ative': |
||
976 | if len(word[r2_start:]) >= 5: |
||
977 | word = word[:-5] |
||
978 | elif word[-4:] == 'ical': |
||
979 | if len(word[r1_start:]) >= 4: |
||
980 | word = word[:-2] |
||
981 | elif word[-4:] == 'ness': |
||
982 | if len(word[r1_start:]) >= 4: |
||
983 | word = word[:-4] |
||
984 | elif word[-3:] == 'ful': |
||
985 | if len(word[r1_start:]) >= 3: |
||
986 | word = word[:-3] |
||
987 | |||
988 | # Step 4 |
||
989 | for suffix in ('ement', 'ance', 'ence', 'able', 'ible', 'ment', 'ant', |
||
990 | 'ent', 'ism', 'ate', 'iti', 'ous', 'ive', 'ize', 'al', 'er', |
||
991 | 'ic'): |
||
992 | if word[-len(suffix):] == suffix: |
||
993 | if len(word[r2_start:]) >= len(suffix): |
||
994 | word = word[:-len(suffix)] |
||
995 | break |
||
996 | else: |
||
997 | if word[-3:] == 'ion': |
||
998 | if ((len(word[r2_start:]) >= 3 and len(word) >= 4 and |
||
999 | word[-4] in tuple('st'))): |
||
1000 | word = word[:-3] |
||
1001 | |||
1002 | # Step 5 |
||
1003 | if word[-1] == 'e': |
||
1004 | if (len(word[r2_start:]) >= 1 or |
||
1005 | (len(word[r1_start:]) >= 1 and |
||
1006 | not _sb_ends_in_short_syllable(word[:-1], _vowels, |
||
1007 | _codanonvowels))): |
||
1008 | word = word[:-1] |
||
1009 | elif word[-1] == 'l': |
||
1010 | if len(word[r2_start:]) >= 1 and word[-2] == 'l': |
||
1011 | word = word[:-1] |
||
1012 | |||
1013 | # Change 'Y' back to 'y' if it survived stemming |
||
1014 | for i in range(0, len(word)): |
||
1015 | if word[i] == 'Y': |
||
1016 | word = word[:i] + 'y' + word[i+1:] |
||
1017 | |||
1018 | return word |
||
1019 | |||
1020 | |||
1021 | def sb_german(word, alternate_vowels=False): |
||
1022 | """Return Snowball German stem. |
||
1023 | |||
1024 | The Snowball German stemmer is defined at: |
||
1025 | http://snowball.tartarus.org/algorithms/german/stemmer.html |
||
1026 | |||
1027 | :param word: the word to calculate the stem of |
||
1028 | :param alternate_vowels: composes ae as ä, oe as ö, and ue as ü before |
||
1029 | running the algorithm |
||
1030 | :returns: word stem |
||
1031 | :rtype: str |
||
1032 | |||
1033 | >>> sb_german('lesen') |
||
1034 | 'les' |
||
1035 | >>> sb_german('graues') |
||
1036 | 'grau' |
||
1037 | >>> sb_german('buchstabieren') |
||
1038 | 'buchstabi' |
||
1039 | """ |
||
1040 | # pylint: disable=too-many-branches |
||
1041 | |||
1042 | _vowels = {'a', 'e', 'i', 'o', 'u', 'y', 'ä', 'ö', 'ü'} |
||
1043 | _s_endings = {'b', 'd', 'f', 'g', 'h', 'k', 'l', 'm', 'n', 'r', 't'} |
||
1044 | _st_endings = {'b', 'd', 'f', 'g', 'h', 'k', 'l', 'm', 'n', 't'} |
||
1045 | |||
1046 | # lowercase, normalize, and compose |
||
1047 | word = unicodedata.normalize('NFC', word.lower()) |
||
1048 | word = word.replace('ß', 'ss') |
||
1049 | |||
1050 | if len(word) > 2: |
||
1051 | for i in range(2, len(word)): |
||
1052 | if word[i] in _vowels and word[i-2] in _vowels: |
||
1053 | if word[i-1] == 'u': |
||
1054 | word = word[:i-1] + 'U' + word[i:] |
||
1055 | elif word[i-1] == 'y': |
||
1056 | word = word[:i-1] + 'Y' + word[i:] |
||
1057 | |||
1058 | if alternate_vowels: |
||
1059 | word = word.replace('ae', 'ä') |
||
1060 | word = word.replace('oe', 'ö') |
||
1061 | word = word.replace('que', 'Q') |
||
1062 | word = word.replace('ue', 'ü') |
||
1063 | word = word.replace('Q', 'que') |
||
1064 | |||
1065 | r1_start = max(3, _sb_r1(word, _vowels)) |
||
1066 | r2_start = _sb_r2(word, _vowels) |
||
1067 | |||
1068 | # Step 1 |
||
1069 | niss_flag = False |
||
1070 | if word[-3:] == 'ern': |
||
1071 | if len(word[r1_start:]) >= 3: |
||
1072 | word = word[:-3] |
||
1073 | elif word[-2:] == 'em': |
||
1074 | if len(word[r1_start:]) >= 2: |
||
1075 | word = word[:-2] |
||
1076 | elif word[-2:] == 'er': |
||
1077 | if len(word[r1_start:]) >= 2: |
||
1078 | word = word[:-2] |
||
1079 | elif word[-2:] == 'en': |
||
1080 | if len(word[r1_start:]) >= 2: |
||
1081 | word = word[:-2] |
||
1082 | niss_flag = True |
||
1083 | elif word[-2:] == 'es': |
||
1084 | if len(word[r1_start:]) >= 2: |
||
1085 | word = word[:-2] |
||
1086 | niss_flag = True |
||
1087 | elif word[-1:] == 'e': |
||
1088 | if len(word[r1_start:]) >= 1: |
||
1089 | word = word[:-1] |
||
1090 | niss_flag = True |
||
1091 | elif word[-1:] == 's': |
||
1092 | if ((len(word[r1_start:]) >= 1 and len(word) >= 2 and |
||
1093 | word[-2] in _s_endings)): |
||
1094 | word = word[:-1] |
||
1095 | |||
1096 | if niss_flag and word[-4:] == 'niss': |
||
1097 | word = word[:-1] |
||
1098 | |||
1099 | # Step 2 |
||
1100 | if word[-3:] == 'est': |
||
1101 | if len(word[r1_start:]) >= 3: |
||
1102 | word = word[:-3] |
||
1103 | elif word[-2:] == 'en': |
||
1104 | if len(word[r1_start:]) >= 2: |
||
1105 | word = word[:-2] |
||
1106 | elif word[-2:] == 'er': |
||
1107 | if len(word[r1_start:]) >= 2: |
||
1108 | word = word[:-2] |
||
1109 | elif word[-2:] == 'st': |
||
1110 | if ((len(word[r1_start:]) >= 2 and len(word) >= 6 and |
||
1111 | word[-3] in _st_endings)): |
||
1112 | word = word[:-2] |
||
1113 | |||
1114 | # Step 3 |
||
1115 | if word[-4:] == 'isch': |
||
1116 | if len(word[r2_start:]) >= 4 and word[-5] != 'e': |
||
1117 | word = word[:-4] |
||
1118 | elif word[-4:] in {'lich', 'heit'}: |
||
1119 | if len(word[r2_start:]) >= 4: |
||
1120 | word = word[:-4] |
||
1121 | if ((word[-2:] in {'er', 'en'} and |
||
1122 | len(word[r1_start:]) >= 2)): |
||
1123 | word = word[:-2] |
||
1124 | elif word[-4:] == 'keit': |
||
1125 | if len(word[r2_start:]) >= 4: |
||
1126 | word = word[:-4] |
||
1127 | if word[-4:] == 'lich' and len(word[r2_start:]) >= 4: |
||
1128 | word = word[:-4] |
||
1129 | elif word[-2:] == 'ig' and len(word[r2_start:]) >= 2: |
||
1130 | word = word[:-2] |
||
1131 | elif word[-3:] in {'end', 'ung'}: |
||
1132 | if len(word[r2_start:]) >= 3: |
||
1133 | word = word[:-3] |
||
1134 | if ((word[-2:] == 'ig' and len(word[r2_start:]) >= 2 and |
||
1135 | word[-3] != 'e')): |
||
1136 | word = word[:-2] |
||
1137 | elif word[-2:] in {'ig', 'ik'}: |
||
1138 | if len(word[r2_start:]) >= 2 and word[-3] != 'e': |
||
1139 | word = word[:-2] |
||
1140 | |||
1141 | # Change 'Y' and 'U' back to lowercase if survived stemming |
||
1142 | for i in range(0, len(word)): |
||
1143 | if word[i] == 'Y': |
||
1144 | word = word[:i] + 'y' + word[i+1:] |
||
1145 | elif word[i] == 'U': |
||
1146 | word = word[:i] + 'u' + word[i+1:] |
||
1147 | |||
1148 | # Remove umlauts |
||
1149 | _umlauts = dict(zip((ord(_) for _ in 'äöü'), 'aou')) |
||
1150 | word = word.translate(_umlauts) |
||
1151 | |||
1152 | return word |
||
1153 | |||
1154 | |||
1155 | def sb_dutch(word): |
||
1156 | """Return Snowball Dutch stem. |
||
1157 | |||
1158 | The Snowball Dutch stemmer is defined at: |
||
1159 | http://snowball.tartarus.org/algorithms/dutch/stemmer.html |
||
1160 | |||
1161 | :param word: the word to calculate the stem of |
||
1162 | :returns: word stem |
||
1163 | :rtype: str |
||
1164 | |||
1165 | >>> sb_dutch('lezen') |
||
1166 | 'lez' |
||
1167 | >>> sb_dutch('opschorting') |
||
1168 | 'opschort' |
||
1169 | >>> sb_dutch('ongrijpbaarheid') |
||
1170 | 'ongrijp' |
||
1171 | """ |
||
1172 | # pylint: disable=too-many-branches |
||
1173 | |||
1174 | _vowels = {'a', 'e', 'i', 'o', 'u', 'y', 'è'} |
||
1175 | _not_s_endings = {'a', 'e', 'i', 'j', 'o', 'u', 'y', 'è'} |
||
1176 | |||
1177 | def _undouble(word): |
||
1178 | """Undouble endings -kk, -dd, and -tt.""" |
||
1179 | if ((len(word) > 1 and word[-1] == word[-2] and |
||
1180 | word[-1] in {'d', 'k', 't'})): |
||
1181 | return word[:-1] |
||
1182 | return word |
||
1183 | |||
1184 | # lowercase, normalize, decompose, filter umlauts & acutes out, and compose |
||
1185 | word = unicodedata.normalize('NFC', text_type(word.lower())) |
||
1186 | _accented = dict(zip((ord(_) for _ in 'äëïöüáéíóú'), 'aeiouaeiou')) |
||
1187 | word = word.translate(_accented) |
||
1188 | |||
1189 | for i in range(len(word)): |
||
1190 | if i == 0 and word[0] == 'y': |
||
1191 | word = 'Y' + word[1:] |
||
1192 | elif word[i] == 'y' and word[i-1] in _vowels: |
||
1193 | word = word[:i] + 'Y' + word[i+1:] |
||
1194 | elif (word[i] == 'i' and word[i-1] in _vowels and i+1 < len(word) and |
||
1195 | word[i+1] in _vowels): |
||
1196 | word = word[:i] + 'I' + word[i+1:] |
||
1197 | |||
1198 | r1_start = max(3, _sb_r1(word, _vowels)) |
||
1199 | r2_start = _sb_r2(word, _vowels) |
||
1200 | |||
1201 | # Step 1 |
||
1202 | if word[-5:] == 'heden': |
||
1203 | if len(word[r1_start:]) >= 5: |
||
1204 | word = word[:-3] + 'id' |
||
1205 | elif word[-3:] == 'ene': |
||
1206 | if ((len(word[r1_start:]) >= 3 and |
||
1207 | (word[-4] not in _vowels and word[-6:-3] != 'gem'))): |
||
1208 | word = _undouble(word[:-3]) |
||
1209 | elif word[-2:] == 'en': |
||
1210 | if ((len(word[r1_start:]) >= 2 and |
||
1211 | (word[-3] not in _vowels and word[-5:-2] != 'gem'))): |
||
1212 | word = _undouble(word[:-2]) |
||
1213 | elif word[-2:] == 'se': |
||
1214 | if len(word[r1_start:]) >= 2 and word[-3] not in _not_s_endings: |
||
1215 | word = word[:-2] |
||
1216 | elif word[-1:] == 's': |
||
1217 | if len(word[r1_start:]) >= 1 and word[-2] not in _not_s_endings: |
||
1218 | word = word[:-1] |
||
1219 | |||
1220 | # Step 2 |
||
1221 | e_removed = False |
||
1222 | if word[-1:] == 'e': |
||
1223 | if len(word[r1_start:]) >= 1 and word[-2] not in _vowels: |
||
1224 | word = _undouble(word[:-1]) |
||
1225 | e_removed = True |
||
1226 | |||
1227 | # Step 3a |
||
1228 | if word[-4:] == 'heid': |
||
1229 | if len(word[r2_start:]) >= 4 and word[-5] != 'c': |
||
1230 | word = word[:-4] |
||
1231 | if word[-2:] == 'en': |
||
1232 | if ((len(word[r1_start:]) >= 2 and |
||
1233 | (word[-3] not in _vowels and word[-5:-2] != 'gem'))): |
||
1234 | word = _undouble(word[:-2]) |
||
1235 | |||
1236 | # Step 3b |
||
1237 | if word[-4:] == 'lijk': |
||
1238 | if len(word[r2_start:]) >= 4: |
||
1239 | word = word[:-4] |
||
1240 | # Repeat step 2 |
||
1241 | if word[-1:] == 'e': |
||
1242 | if len(word[r1_start:]) >= 1 and word[-2] not in _vowels: |
||
1243 | word = _undouble(word[:-1]) |
||
1244 | elif word[-4:] == 'baar': |
||
1245 | if len(word[r2_start:]) >= 4: |
||
1246 | word = word[:-4] |
||
1247 | elif word[-3:] in ('end', 'ing'): |
||
1248 | if len(word[r2_start:]) >= 3: |
||
1249 | word = word[:-3] |
||
1250 | if ((word[-2:] == 'ig' and len(word[r2_start:]) >= 2 and |
||
1251 | word[-3] != 'e')): |
||
1252 | word = word[:-2] |
||
1253 | else: |
||
1254 | word = _undouble(word) |
||
1255 | elif word[-3:] == 'bar': |
||
1256 | if len(word[r2_start:]) >= 3 and e_removed: |
||
1257 | word = word[:-3] |
||
1258 | elif word[-2:] == 'ig': |
||
1259 | if len(word[r2_start:]) >= 2 and word[-3] != 'e': |
||
1260 | word = word[:-2] |
||
1261 | |||
1262 | # Step 4 |
||
1263 | if ((len(word) >= 4 and |
||
1264 | word[-3] == word[-2] and word[-2] in {'a', 'e', 'o', 'u'} and |
||
1265 | word[-4] not in _vowels and |
||
1266 | word[-1] not in _vowels and word[-1] != 'I')): |
||
1267 | word = word[:-2] + word[-1] |
||
1268 | |||
1269 | # Change 'Y' and 'U' back to lowercase if survived stemming |
||
1270 | for i in range(0, len(word)): |
||
1271 | if word[i] == 'Y': |
||
1272 | word = word[:i] + 'y' + word[i+1:] |
||
1273 | elif word[i] == 'I': |
||
1274 | word = word[:i] + 'i' + word[i+1:] |
||
1275 | |||
1276 | return word |
||
1277 | |||
1278 | |||
1279 | def sb_norwegian(word): |
||
1280 | """Return Snowball Norwegian stem. |
||
1281 | |||
1282 | The Snowball Norwegian stemmer is defined at: |
||
1283 | http://snowball.tartarus.org/algorithms/norwegian/stemmer.html |
||
1284 | |||
1285 | :param word: the word to calculate the stem of |
||
1286 | :returns: word stem |
||
1287 | :rtype: str |
||
1288 | |||
1289 | >>> sb_norwegian('lese') |
||
1290 | 'les' |
||
1291 | >>> sb_norwegian('suspensjon') |
||
1292 | 'suspensjon' |
||
1293 | >>> sb_norwegian('sikkerhet') |
||
1294 | 'sikker' |
||
1295 | """ |
||
1296 | _vowels = {'a', 'e', 'i', 'o', 'u', 'y', 'å', 'æ', 'ø'} |
||
1297 | _s_endings = {'b', 'c', 'd', 'f', 'g', 'h', 'j', 'l', 'm', 'n', 'o', 'p', |
||
1298 | 'r', 't', 'v', 'y', 'z'} |
||
1299 | # lowercase, normalize, and compose |
||
1300 | word = unicodedata.normalize('NFC', text_type(word.lower())) |
||
1301 | |||
1302 | r1_start = min(max(3, _sb_r1(word, _vowels)), len(word)) |
||
1303 | |||
1304 | # Step 1 |
||
1305 | _r1 = word[r1_start:] |
||
1306 | if _r1[-7:] == 'hetenes': |
||
1307 | word = word[:-7] |
||
1308 | elif _r1[-6:] in {'hetene', 'hetens'}: |
||
1309 | word = word[:-6] |
||
1310 | elif _r1[-5:] in {'heten', 'heter', 'endes'}: |
||
1311 | word = word[:-5] |
||
1312 | elif _r1[-4:] in {'ande', 'ende', 'edes', 'enes', 'erte'}: |
||
1313 | if word[-4:] == 'erte': |
||
1314 | word = word[:-2] |
||
1315 | else: |
||
1316 | word = word[:-4] |
||
1317 | elif _r1[-3:] in {'ede', 'ane', 'ene', 'ens', 'ers', 'ets', 'het', 'ast', |
||
1318 | 'ert'}: |
||
1319 | if word[-3:] == 'ert': |
||
1320 | word = word[:-1] |
||
1321 | else: |
||
1322 | word = word[:-3] |
||
1323 | elif _r1[-2:] in {'en', 'ar', 'er', 'as', 'es', 'et'}: |
||
1324 | word = word[:-2] |
||
1325 | elif _r1[-1:] in {'a', 'e'}: |
||
1326 | word = word[:-1] |
||
1327 | elif _r1[-1:] == 's': |
||
1328 | if (((len(word) > 1 and word[-2] in _s_endings) or |
||
1329 | (len(word) > 2 and word[-2] == 'k' and word[-3] not in _vowels))): |
||
1330 | word = word[:-1] |
||
1331 | |||
1332 | # Step 2 |
||
1333 | if word[r1_start:][-2:] in {'dt', 'vt'}: |
||
1334 | word = word[:-1] |
||
1335 | |||
1336 | # Step 3 |
||
1337 | _r1 = word[r1_start:] |
||
1338 | if _r1[-7:] == 'hetslov': |
||
1339 | word = word[:-7] |
||
1340 | elif _r1[-4:] in {'eleg', 'elig', 'elov', 'slov'}: |
||
1341 | word = word[:-4] |
||
1342 | elif _r1[-3:] in {'leg', 'eig', 'lig', 'els', 'lov'}: |
||
1343 | word = word[:-3] |
||
1344 | elif _r1[-2:] == 'ig': |
||
1345 | word = word[:-2] |
||
1346 | |||
1347 | return word |
||
1348 | |||
1349 | |||
1350 | def sb_swedish(word): |
||
1351 | """Return Snowball Swedish stem. |
||
1352 | |||
1353 | The Snowball Swedish stemmer is defined at: |
||
1354 | http://snowball.tartarus.org/algorithms/swedish/stemmer.html |
||
1355 | |||
1356 | :param word: the word to calculate the stem of |
||
1357 | :returns: word stem |
||
1358 | :rtype: str |
||
1359 | |||
1360 | >>> sb_swedish('undervisa') |
||
1361 | 'undervis' |
||
1362 | >>> sb_swedish('suspension') |
||
1363 | 'suspension' |
||
1364 | >>> sb_swedish('visshet') |
||
1365 | 'viss' |
||
1366 | """ |
||
1367 | _vowels = {'a', 'e', 'i', 'o', 'u', 'y', 'ä', 'å', 'ö'} |
||
1368 | _s_endings = {'b', 'c', 'd', 'f', 'g', 'h', 'j', 'k', 'l', 'm', 'n', |
||
1369 | 'o', 'p', 'r', 't', 'v', 'y'} |
||
1370 | |||
1371 | # lowercase, normalize, and compose |
||
1372 | word = unicodedata.normalize('NFC', text_type(word.lower())) |
||
1373 | |||
1374 | r1_start = min(max(3, _sb_r1(word, _vowels)), len(word)) |
||
1375 | |||
1376 | # Step 1 |
||
1377 | _r1 = word[r1_start:] |
||
1378 | View Code Duplication | if _r1[-7:] == 'heterna': |
|
1379 | word = word[:-7] |
||
1380 | elif _r1[-6:] == 'hetens': |
||
1381 | word = word[:-6] |
||
1382 | elif _r1[-5:] in {'anden', 'heten', 'heter', 'arnas', 'ernas', 'ornas', |
||
1383 | 'andes', 'arens', 'andet'}: |
||
1384 | word = word[:-5] |
||
1385 | elif _r1[-4:] in {'arna', 'erna', 'orna', 'ande', 'arne', 'aste', 'aren', |
||
1386 | 'ades', 'erns'}: |
||
1387 | word = word[:-4] |
||
1388 | elif _r1[-3:] in {'ade', 'are', 'ern', 'ens', 'het', 'ast'}: |
||
1389 | word = word[:-3] |
||
1390 | elif _r1[-2:] in {'ad', 'en', 'ar', 'er', 'or', 'as', 'es', 'at'}: |
||
1391 | word = word[:-2] |
||
1392 | elif _r1[-1:] in {'a', 'e'}: |
||
1393 | word = word[:-1] |
||
1394 | elif _r1[-1:] == 's': |
||
1395 | if len(word) > 1 and word[-2] in _s_endings: |
||
1396 | word = word[:-1] |
||
1397 | |||
1398 | # Step 2 |
||
1399 | if word[r1_start:][-2:] in {'dd', 'gd', 'nn', 'dt', 'gt', 'kt', 'tt'}: |
||
1400 | word = word[:-1] |
||
1401 | |||
1402 | # Step 3 |
||
1403 | _r1 = word[r1_start:] |
||
1404 | if _r1[-5:] == 'fullt': |
||
1405 | word = word[:-1] |
||
1406 | elif _r1[-4:] == 'löst': |
||
1407 | word = word[:-1] |
||
1408 | elif _r1[-3:] in {'lig', 'els'}: |
||
1409 | word = word[:-3] |
||
1410 | elif _r1[-2:] == 'ig': |
||
1411 | word = word[:-2] |
||
1412 | |||
1413 | return word |
||
1414 | |||
1415 | |||
1416 | def sb_danish(word): |
||
1417 | """Return Snowball Danish stem. |
||
1418 | |||
1419 | The Snowball Danish stemmer is defined at: |
||
1420 | http://snowball.tartarus.org/algorithms/danish/stemmer.html |
||
1421 | |||
1422 | :param word: the word to calculate the stem of |
||
1423 | :returns: word stem |
||
1424 | :rtype: str |
||
1425 | |||
1426 | >>> sb_danish('underviser') |
||
1427 | 'undervis' |
||
1428 | >>> sb_danish('suspension') |
||
1429 | 'suspension' |
||
1430 | >>> sb_danish('sikkerhed') |
||
1431 | 'sikker' |
||
1432 | """ |
||
1433 | _vowels = {'a', 'e', 'i', 'o', 'u', 'y', 'å', 'æ', 'ø'} |
||
1434 | _s_endings = {'a', 'b', 'c', 'd', 'f', 'g', 'h', 'j', 'k', 'l', 'm', 'n', |
||
1435 | 'o', 'p', 'r', 't', 'v', 'y', 'z', 'å'} |
||
1436 | |||
1437 | # lowercase, normalize, and compose |
||
1438 | word = unicodedata.normalize('NFC', text_type(word.lower())) |
||
1439 | |||
1440 | r1_start = min(max(3, _sb_r1(word, _vowels)), len(word)) |
||
1441 | |||
1442 | # Step 1 |
||
1443 | _r1 = word[r1_start:] |
||
1444 | View Code Duplication | if _r1[-7:] == 'erendes': |
|
1445 | word = word[:-7] |
||
1446 | elif _r1[-6:] in {'erende', 'hedens'}: |
||
1447 | word = word[:-6] |
||
1448 | elif _r1[-5:] in {'ethed', 'erede', 'heden', 'heder', 'endes', 'ernes', |
||
1449 | 'erens', 'erets'}: |
||
1450 | word = word[:-5] |
||
1451 | elif _r1[-4:] in {'ered', 'ende', 'erne', 'eren', 'erer', 'heds', 'enes', |
||
1452 | 'eres', 'eret'}: |
||
1453 | word = word[:-4] |
||
1454 | elif _r1[-3:] in {'hed', 'ene', 'ere', 'ens', 'ers', 'ets'}: |
||
1455 | word = word[:-3] |
||
1456 | elif _r1[-2:] in {'en', 'er', 'es', 'et'}: |
||
1457 | word = word[:-2] |
||
1458 | elif _r1[-1:] == 'e': |
||
1459 | word = word[:-1] |
||
1460 | elif _r1[-1:] == 's': |
||
1461 | if len(word) > 1 and word[-2] in _s_endings: |
||
1462 | word = word[:-1] |
||
1463 | |||
1464 | # Step 2 |
||
1465 | if word[r1_start:][-2:] in {'gd', 'dt', 'gt', 'kt'}: |
||
1466 | word = word[:-1] |
||
1467 | |||
1468 | # Step 3 |
||
1469 | if word[-4:] == 'igst': |
||
1470 | word = word[:-2] |
||
1471 | |||
1472 | _r1 = word[r1_start:] |
||
1473 | repeat_step2 = False |
||
1474 | if _r1[-4:] == 'elig': |
||
1475 | word = word[:-4] |
||
1476 | repeat_step2 = True |
||
1477 | elif _r1[-4:] == 'løst': |
||
1478 | word = word[:-1] |
||
1479 | elif _r1[-3:] in {'lig', 'els'}: |
||
1480 | word = word[:-3] |
||
1481 | repeat_step2 = True |
||
1482 | elif _r1[-2:] == 'ig': |
||
1483 | word = word[:-2] |
||
1484 | repeat_step2 = True |
||
1485 | |||
1486 | if repeat_step2: |
||
1487 | if word[r1_start:][-2:] in {'gd', 'dt', 'gt', 'kt'}: |
||
1488 | word = word[:-1] |
||
1489 | |||
1490 | # Step 4 |
||
1491 | if ((len(word[r1_start:]) >= 1 and len(word) >= 2 and |
||
1492 | word[-1] == word[-2] and word[-1] not in _vowels)): |
||
1493 | word = word[:-1] |
||
1494 | |||
1495 | return word |
||
1496 | |||
1497 | |||
1498 | def clef_german(word): |
||
1499 | """Return CLEF German stem. |
||
1500 | |||
1501 | The CLEF German stemmer is defined at: |
||
1502 | http://members.unine.ch/jacques.savoy/clef/germanStemmer.txt |
||
1503 | |||
1504 | :param word: the word to calculate the stem of |
||
1505 | :returns: word stem |
||
1506 | :rtype: str |
||
1507 | |||
1508 | >>> clef_german('lesen') |
||
1509 | 'lese' |
||
1510 | >>> clef_german('graues') |
||
1511 | 'grau' |
||
1512 | >>> clef_german('buchstabieren') |
||
1513 | 'buchstabier' |
||
1514 | """ |
||
1515 | # lowercase, normalize, and compose |
||
1516 | word = unicodedata.normalize('NFC', text_type(word.lower())) |
||
1517 | |||
1518 | # remove umlauts |
||
1519 | _umlauts = dict(zip((ord(_) for _ in 'äöü'), 'aou')) |
||
1520 | word = word.translate(_umlauts) |
||
1521 | |||
1522 | # remove plurals |
||
1523 | wlen = len(word)-1 |
||
1524 | |||
1525 | if wlen > 3: |
||
1526 | if wlen > 5: |
||
1527 | if word[-3:] == 'nen': |
||
1528 | return word[:-3] |
||
1529 | if wlen > 4: |
||
1530 | if word[-2:] in {'en', 'se', 'es', 'er'}: |
||
1531 | return word[:-2] |
||
1532 | if word[-1] in {'e', 'n', 'r', 's'}: |
||
1533 | return word[:-1] |
||
1534 | return word |
||
1535 | |||
1536 | |||
1537 | def clef_german_plus(word): |
||
1538 | """Return 'CLEF German stemmer plus' stem. |
||
1539 | |||
1540 | The CLEF German stemmer plus is defined at: |
||
1541 | http://members.unine.ch/jacques.savoy/clef/germanStemmerPlus.txt |
||
1542 | |||
1543 | :param word: the word to calculate the stem of |
||
1544 | :returns: word stem |
||
1545 | :rtype: str |
||
1546 | |||
1547 | >>> clef_german_plus('lesen') |
||
1548 | 'les' |
||
1549 | >>> clef_german_plus('graues') |
||
1550 | 'grau' |
||
1551 | >>> clef_german_plus('buchstabieren') |
||
1552 | 'buchstabi' |
||
1553 | """ |
||
1554 | _st_ending = {'b', 'd', 'f', 'g', 'h', 'k', 'l', 'm', 'n', 't'} |
||
1555 | |||
1556 | # lowercase, normalize, and compose |
||
1557 | word = unicodedata.normalize('NFC', text_type(word.lower())) |
||
1558 | |||
1559 | # remove umlauts |
||
1560 | _accents = dict(zip((ord(_) for _ in 'äàáâöòóôïìíîüùúû'), |
||
1561 | 'aaaaooooiiiiuuuu')) |
||
1562 | word = word.translate(_accents) |
||
1563 | |||
1564 | # Step 1 |
||
1565 | wlen = len(word)-1 |
||
1566 | if wlen > 4 and word[-3:] == 'ern': |
||
1567 | word = word[:-3] |
||
1568 | elif wlen > 3 and word[-2:] in {'em', 'en', 'er', 'es'}: |
||
1569 | word = word[:-2] |
||
1570 | elif wlen > 2 and (word[-1] == 'e' or |
||
1571 | (word[-1] == 's' and word[-2] in _st_ending)): |
||
1572 | word = word[:-1] |
||
1573 | |||
1574 | # Step 2 |
||
1575 | wlen = len(word)-1 |
||
1576 | if wlen > 4 and word[-3:] == 'est': |
||
1577 | word = word[:-3] |
||
1578 | elif wlen > 3 and (word[-2:] in {'er', 'en'} or |
||
1579 | (word[-2:] == 'st' and word[-3] in _st_ending)): |
||
1580 | word = word[:-2] |
||
1581 | |||
1582 | return word |
||
1583 | |||
1584 | |||
1585 | def clef_swedish(word): |
||
1586 | """Return CLEF Swedish stem. |
||
1587 | |||
1588 | The CLEF Swedish stemmer is defined at: |
||
1589 | http://members.unine.ch/jacques.savoy/clef/swedishStemmer.txt |
||
1590 | |||
1591 | :param word: the word to calculate the stem of |
||
1592 | :returns: word stem |
||
1593 | :rtype: str |
||
1594 | |||
1595 | >>> clef_swedish('undervisa') |
||
1596 | 'undervis' |
||
1597 | >>> clef_swedish('suspension') |
||
1598 | 'suspensio' |
||
1599 | >>> clef_swedish('visshet') |
||
1600 | 'viss' |
||
1601 | """ |
||
1602 | wlen = len(word)-1 |
||
1603 | |||
1604 | if wlen > 3 and word[-1] == 's': |
||
1605 | word = word[:-1] |
||
1606 | wlen -= 1 |
||
1607 | |||
1608 | if wlen > 6: |
||
1609 | if word[-5:] in {'elser', 'heten'}: |
||
1610 | return word[:-5] |
||
1611 | if wlen > 5: |
||
1612 | if word[-4:] in {'arne', 'erna', 'ande', 'else', 'aste', 'orna', |
||
1613 | 'aren'}: |
||
1614 | return word[:-4] |
||
1615 | if wlen > 4: |
||
1616 | if word[-3:] in {'are', 'ast', 'het'}: |
||
1617 | return word[:-3] |
||
1618 | if wlen > 3: |
||
1619 | if word[-2:] in {'ar', 'er', 'or', 'en', 'at', 'te', 'et'}: |
||
1620 | return word[:-2] |
||
1621 | if wlen > 2: |
||
1622 | if word[-1] in {'a', 'e', 'n', 't'}: |
||
1623 | return word[:-1] |
||
1624 | return word |
||
1625 | |||
1626 | |||
1627 | def caumanns(word): |
||
1628 | """Return Caumanns German stem. |
||
1629 | |||
1630 | Jörg Caumanns' stemmer is described in his article at: |
||
1631 | http://edocs.fu-berlin.de/docs/servlets/MCRFileNodeServlet/FUDOCS_derivate_000000000350/tr-b-99-16.pdf |
||
1632 | |||
1633 | This implementation is based on the GermanStemFilter described at: |
||
1634 | http://www.evelix.ch/unternehmen/Blog/evelix/2013/11/11/inner-workings-of-the-german-analyzer-in-lucene |
||
1635 | |||
1636 | :param word: the word to calculate the stem of |
||
1637 | :returns: word stem |
||
1638 | :rtype: str |
||
1639 | |||
1640 | >>> caumanns('lesen') |
||
1641 | 'les' |
||
1642 | >>> caumanns('graues') |
||
1643 | 'grau' |
||
1644 | >>> caumanns('buchstabieren') |
||
1645 | 'buchstabier' |
||
1646 | """ |
||
1647 | if not word: |
||
1648 | return '' |
||
1649 | |||
1650 | upper_initial = word[0].isupper() |
||
1651 | word = unicodedata.normalize('NFC', text_type(word.lower())) |
||
1652 | |||
1653 | # # Part 2: Substitution |
||
1654 | # 1. Change umlauts to corresponding vowels & ß to ss |
||
1655 | _umlauts = dict(zip((ord(_) for _ in 'äöü'), 'aou')) |
||
1656 | word = word.translate(_umlauts) |
||
1657 | word = word.replace('ß', 'ss') |
||
1658 | |||
1659 | # 2. Change second of doubled characters to * |
||
1660 | newword = word[0] |
||
1661 | for i in range(1, len(word)): |
||
1662 | if newword[i-1] == word[i]: |
||
1663 | newword += '*' |
||
1664 | else: |
||
1665 | newword += word[i] |
||
1666 | word = newword |
||
1667 | |||
1668 | # 3. Replace sch, ch, ei, ie with $, §, %, & |
||
1669 | word = word.replace('sch', '$') |
||
1670 | word = word.replace('ch', '§') |
||
1671 | word = word.replace('ei', '%') |
||
1672 | word = word.replace('ie', '&') |
||
1673 | word = word.replace('ig', '#') |
||
1674 | word = word.replace('st', '!') |
||
1675 | |||
1676 | # # Part 1: Recursive Context-Free Stripping |
||
1677 | # 1. Remove the following 7 suffixes recursively |
||
1678 | while len(word) > 3: |
||
1679 | if (((len(word) > 4 and word[-2:] in {'em', 'er'}) or |
||
1680 | (len(word) > 5 and word[-2:] == 'nd'))): |
||
1681 | word = word[:-2] |
||
1682 | elif ((word[-1] in {'e', 's', 'n'}) or |
||
1683 | (not upper_initial and word[-1] in {'t', '!'})): |
||
1684 | word = word[:-1] |
||
1685 | else: |
||
1686 | break |
||
1687 | |||
1688 | # Additional optimizations: |
||
1689 | if len(word) > 5 and word[-5:] == 'erin*': |
||
1690 | word = word[:-1] |
||
1691 | if word[-1] == 'z': |
||
1692 | word = word[:-1] + 'x' |
||
1693 | |||
1694 | # Reverse substitutions: |
||
1695 | word = word.replace('$', 'sch') |
||
1696 | word = word.replace('§', 'ch') |
||
1697 | word = word.replace('%', 'ei') |
||
1698 | word = word.replace('&', 'ie') |
||
1699 | word = word.replace('#', 'ig') |
||
1700 | word = word.replace('!', 'st') |
||
1701 | |||
1702 | # Expand doubled |
||
1703 | word = ''.join([word[0]] + [word[i-1] if word[i] == '*' else word[i] for |
||
1704 | i in range(1, len(word))]) |
||
1705 | |||
1706 | # Finally, convert gege to ge |
||
1707 | if len(word) > 4: |
||
1708 | word = word.replace('gege', 'ge', 1) |
||
1709 | |||
1710 | return word |
||
1711 | |||
1712 | |||
1713 | # def uealite(word): |
||
1714 | # """Return UEA-Lite stem. |
||
1715 | # |
||
1716 | # The UEA-Lite stemmer is defined in Marie-Claire Jenkins and Dan Smith's |
||
1717 | # article at: |
||
1718 | # http://wayback.archive.org/web/20121012154211/http://www.uea.ac.uk/polopoly_fs/1.85493!stemmer25feb.pdf |
||
1719 | # |
||
1720 | # :param word: the word to calculate the stem of |
||
1721 | # :returns: word stem |
||
1722 | # :rtype: str |
||
1723 | # """ |
||
1724 | # return word |
||
1725 | |||
1726 | |||
1727 | def lancaster(word): |
||
1728 | """Return Lancaster stem. |
||
1729 | |||
1730 | Implementation of the Lancaster Stemming Algorithm, developed by |
||
1731 | Chris Paice, with the assistance of Gareth Husk |
||
1732 | |||
1733 | Arguments: |
||
1734 | word -- the word to calculate the stem of |
||
1735 | |||
1736 | Description: |
||
1737 | The Lancaster Stemming Algorithm, described at: |
||
1738 | http://wayback.archive.org/web/20140826000545/http://www.comp.lancs.ac.uk/computing/research/stemming/Links/paice.htm |
||
1739 | |||
1740 | Based on the Paice & Husk's original Pascal reference implementation: |
||
1741 | http://wayback.archive.org/web/20150104225538/http://www.comp.lancs.ac.uk/computing/research/stemming/Files/Pascal.zip |
||
1742 | """ |
||
1743 | _lancaster_rules = ('ai*2.', 'a*1.', 'bb1.', 'city3s.', 'ci2>', 'cn1t>', |
||
1744 | 'dd1.', 'dei3y>', 'deec2ss.', 'dee1.', 'de2>', |
||
1745 | 'dooh4>', 'e1>', 'feil1v.', 'fi2>', 'gni3>', 'gai3y.', |
||
1746 | 'ga2>', 'gg1.', 'ht*2.', 'hsiug5ct.', 'hsi3>', 'i*1.', |
||
1747 | 'i1y>', 'ji1d.', 'juf1s.', 'ju1d.', 'jo1d.', 'jeh1r.', |
||
1748 | 'jrev1t.', 'jsim2t.', 'jn1d.', 'j1s.', 'lbaifi6.', |
||
1749 | 'lbai4y.', 'lba3>', 'lbi3.', 'lib2l>', 'lc1.', |
||
1750 | 'lufi4y.', 'luf3>', 'lu2.', 'lai3>', 'lau3>', 'la2>', |
||
1751 | 'll1.', 'mui3.', 'mu*2.', 'msi3>', 'mm1.', 'nois4j>', |
||
1752 | 'noix4ct.', 'noi3>', 'nai3>', 'na2>', 'nee0.', 'ne2>', |
||
1753 | 'nn1.', 'pihs4>', 'pp1.', 're2>', 'rae0.', 'ra2.', |
||
1754 | 'ro2>', 'ru2>', 'rr1.', 'rt1>', 'rei3y>', 'sei3y>', |
||
1755 | 'sis2.', 'si2>', 'ssen4>', 'ss0.', 'suo3>', 'su*2.', |
||
1756 | 's*1>', 's0.', 'tacilp4y.', 'ta2>', 'tnem4>', 'tne3>', |
||
1757 | 'tna3>', 'tpir2b.', 'tpro2b.', 'tcud1.', 'tpmus2.', |
||
1758 | 'tpec2iv.', 'tulo2v.', 'tsis0.', 'tsi3>', 'tt1.', |
||
1759 | 'uqi3.', 'ugo1.', 'vis3j>', 'vie0.', 'vi2>', 'ylb1>', |
||
1760 | 'yli3y>', 'ylp0.', 'yl2>', 'ygo1.', 'yhp1.', 'ymo1.', |
||
1761 | 'ypo1.', 'yti3>', 'yte3>', 'ytl2.', 'yrtsi5.', |
||
1762 | 'yra3>', 'yro3>', 'yfi3.', 'ycn2t>', 'yca3>', 'zi2>', |
||
1763 | 'zy1s.') |
||
1764 | |||
1765 | _rule_table = [] |
||
1766 | _rule_index = {'a': -1, 'b': -1, 'c': -1, 'd': -1, 'e': -1, 'f': -1, |
||
1767 | 'g': -1, 'h': -1, 'i': -1, 'j': -1, 'k': -1, 'l': -1, |
||
1768 | 'm': -1, 'n': -1, 'o': -1, 'p': -1, 'q': -1, 'r': -1, |
||
1769 | 's': -1, 't': -1, 'u': -1, 'v': -1, 'w': -1, 'x': -1, |
||
1770 | 'y': -1, 'z': -1} |
||
1771 | |||
1772 | def read_rules(stem_rules=_lancaster_rules): |
||
1773 | """Read the rules table. |
||
1774 | |||
1775 | read_rules reads in stemming rules from a text file and enter them |
||
1776 | into _rule_table. _rule_index is set up to provide faster access to |
||
1777 | relevant rules. |
||
1778 | """ |
||
1779 | for rule in stem_rules: |
||
1780 | _rule_table.append(rule) |
||
1781 | if _rule_index[rule[0]] == -1: |
||
1782 | _rule_index[rule[0]] = len(_rule_table)-1 |
||
1783 | |||
1784 | def stemmers(word): |
||
1785 | """Reduce a word. |
||
1786 | |||
1787 | stemmers takes the specified word and reduces it to a set by |
||
1788 | referring to _rule_table |
||
1789 | """ |
||
1790 | # TODO: This looks very incomplete. |
||
1791 | return word |
||
1792 |