469 lines
14 KiB
Python
469 lines
14 KiB
Python
# Generated by Snowball 2.2.0 - https://snowballstem.org/
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from .basestemmer import BaseStemmer
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from .among import Among
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class DutchStemmer(BaseStemmer):
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'''
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This class implements the stemming algorithm defined by a snowball script.
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Generated by Snowball 2.2.0 - https://snowballstem.org/
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'''
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a_0 = [
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Among(u"", -1, 6),
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Among(u"\u00E1", 0, 1),
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Among(u"\u00E4", 0, 1),
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Among(u"\u00E9", 0, 2),
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Among(u"\u00EB", 0, 2),
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Among(u"\u00ED", 0, 3),
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Among(u"\u00EF", 0, 3),
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Among(u"\u00F3", 0, 4),
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Among(u"\u00F6", 0, 4),
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Among(u"\u00FA", 0, 5),
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Among(u"\u00FC", 0, 5)
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]
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a_1 = [
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Among(u"", -1, 3),
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Among(u"I", 0, 2),
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Among(u"Y", 0, 1)
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]
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a_2 = [
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Among(u"dd", -1, -1),
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Among(u"kk", -1, -1),
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Among(u"tt", -1, -1)
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]
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a_3 = [
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Among(u"ene", -1, 2),
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Among(u"se", -1, 3),
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Among(u"en", -1, 2),
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Among(u"heden", 2, 1),
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Among(u"s", -1, 3)
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]
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a_4 = [
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Among(u"end", -1, 1),
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Among(u"ig", -1, 2),
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Among(u"ing", -1, 1),
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Among(u"lijk", -1, 3),
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Among(u"baar", -1, 4),
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Among(u"bar", -1, 5)
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]
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a_5 = [
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Among(u"aa", -1, -1),
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Among(u"ee", -1, -1),
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Among(u"oo", -1, -1),
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Among(u"uu", -1, -1)
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]
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g_v = [17, 65, 16, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 128]
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g_v_I = [1, 0, 0, 17, 65, 16, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 128]
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g_v_j = [17, 67, 16, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 128]
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I_p2 = 0
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I_p1 = 0
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B_e_found = False
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def __r_prelude(self):
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v_1 = self.cursor
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while True:
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v_2 = self.cursor
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try:
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self.bra = self.cursor
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among_var = self.find_among(DutchStemmer.a_0)
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if among_var == 0:
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raise lab0()
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self.ket = self.cursor
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if among_var == 1:
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if not self.slice_from(u"a"):
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return False
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elif among_var == 2:
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if not self.slice_from(u"e"):
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return False
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elif among_var == 3:
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if not self.slice_from(u"i"):
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return False
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elif among_var == 4:
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if not self.slice_from(u"o"):
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return False
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elif among_var == 5:
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if not self.slice_from(u"u"):
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return False
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else:
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if self.cursor >= self.limit:
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raise lab0()
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self.cursor += 1
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continue
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except lab0: pass
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self.cursor = v_2
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break
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self.cursor = v_1
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v_3 = self.cursor
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try:
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self.bra = self.cursor
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if not self.eq_s(u"y"):
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self.cursor = v_3
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raise lab1()
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self.ket = self.cursor
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if not self.slice_from(u"Y"):
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return False
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except lab1: pass
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while True:
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v_4 = self.cursor
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try:
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try:
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while True:
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v_5 = self.cursor
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try:
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if not self.in_grouping(DutchStemmer.g_v, 97, 232):
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raise lab4()
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self.bra = self.cursor
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try:
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v_6 = self.cursor
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try:
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if not self.eq_s(u"i"):
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raise lab6()
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self.ket = self.cursor
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if not self.in_grouping(DutchStemmer.g_v, 97, 232):
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raise lab6()
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if not self.slice_from(u"I"):
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return False
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raise lab5()
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except lab6: pass
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self.cursor = v_6
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if not self.eq_s(u"y"):
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raise lab4()
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self.ket = self.cursor
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if not self.slice_from(u"Y"):
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return False
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except lab5: pass
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self.cursor = v_5
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raise lab3()
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except lab4: pass
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self.cursor = v_5
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if self.cursor >= self.limit:
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raise lab2()
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self.cursor += 1
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except lab3: pass
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continue
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except lab2: pass
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self.cursor = v_4
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break
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return True
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def __r_mark_regions(self):
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self.I_p1 = self.limit
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self.I_p2 = self.limit
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if not self.go_out_grouping(DutchStemmer.g_v, 97, 232):
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return False
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self.cursor += 1
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if not self.go_in_grouping(DutchStemmer.g_v, 97, 232):
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return False
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self.cursor += 1
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self.I_p1 = self.cursor
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try:
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if not self.I_p1 < 3:
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raise lab0()
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self.I_p1 = 3
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except lab0: pass
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if not self.go_out_grouping(DutchStemmer.g_v, 97, 232):
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return False
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self.cursor += 1
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if not self.go_in_grouping(DutchStemmer.g_v, 97, 232):
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return False
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self.cursor += 1
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self.I_p2 = self.cursor
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return True
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def __r_postlude(self):
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while True:
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v_1 = self.cursor
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try:
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self.bra = self.cursor
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among_var = self.find_among(DutchStemmer.a_1)
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if among_var == 0:
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raise lab0()
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self.ket = self.cursor
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if among_var == 1:
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if not self.slice_from(u"y"):
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return False
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elif among_var == 2:
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if not self.slice_from(u"i"):
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return False
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else:
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if self.cursor >= self.limit:
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raise lab0()
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self.cursor += 1
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continue
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except lab0: pass
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self.cursor = v_1
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break
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return True
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def __r_R1(self):
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if not self.I_p1 <= self.cursor:
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return False
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return True
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def __r_R2(self):
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if not self.I_p2 <= self.cursor:
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return False
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return True
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def __r_undouble(self):
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v_1 = self.limit - self.cursor
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if self.find_among_b(DutchStemmer.a_2) == 0:
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return False
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self.cursor = self.limit - v_1
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self.ket = self.cursor
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if self.cursor <= self.limit_backward:
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return False
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self.cursor -= 1
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self.bra = self.cursor
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if not self.slice_del():
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return False
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return True
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def __r_e_ending(self):
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self.B_e_found = False
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self.ket = self.cursor
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if not self.eq_s_b(u"e"):
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return False
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self.bra = self.cursor
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if not self.__r_R1():
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return False
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v_1 = self.limit - self.cursor
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if not self.out_grouping_b(DutchStemmer.g_v, 97, 232):
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return False
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self.cursor = self.limit - v_1
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if not self.slice_del():
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return False
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self.B_e_found = True
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if not self.__r_undouble():
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return False
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return True
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def __r_en_ending(self):
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if not self.__r_R1():
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return False
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v_1 = self.limit - self.cursor
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if not self.out_grouping_b(DutchStemmer.g_v, 97, 232):
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return False
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self.cursor = self.limit - v_1
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v_2 = self.limit - self.cursor
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try:
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if not self.eq_s_b(u"gem"):
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raise lab0()
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return False
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except lab0: pass
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self.cursor = self.limit - v_2
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if not self.slice_del():
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return False
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if not self.__r_undouble():
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return False
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return True
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def __r_standard_suffix(self):
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v_1 = self.limit - self.cursor
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try:
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self.ket = self.cursor
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among_var = self.find_among_b(DutchStemmer.a_3)
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if among_var == 0:
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raise lab0()
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self.bra = self.cursor
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if among_var == 1:
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if not self.__r_R1():
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raise lab0()
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if not self.slice_from(u"heid"):
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return False
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elif among_var == 2:
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if not self.__r_en_ending():
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raise lab0()
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else:
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if not self.__r_R1():
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raise lab0()
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if not self.out_grouping_b(DutchStemmer.g_v_j, 97, 232):
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raise lab0()
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if not self.slice_del():
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return False
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except lab0: pass
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self.cursor = self.limit - v_1
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v_2 = self.limit - self.cursor
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self.__r_e_ending()
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self.cursor = self.limit - v_2
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v_3 = self.limit - self.cursor
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try:
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self.ket = self.cursor
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if not self.eq_s_b(u"heid"):
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raise lab1()
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self.bra = self.cursor
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if not self.__r_R2():
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raise lab1()
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v_4 = self.limit - self.cursor
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try:
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if not self.eq_s_b(u"c"):
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raise lab2()
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raise lab1()
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except lab2: pass
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self.cursor = self.limit - v_4
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if not self.slice_del():
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return False
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self.ket = self.cursor
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if not self.eq_s_b(u"en"):
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raise lab1()
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self.bra = self.cursor
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if not self.__r_en_ending():
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raise lab1()
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except lab1: pass
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self.cursor = self.limit - v_3
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v_5 = self.limit - self.cursor
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try:
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self.ket = self.cursor
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among_var = self.find_among_b(DutchStemmer.a_4)
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if among_var == 0:
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raise lab3()
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self.bra = self.cursor
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if among_var == 1:
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if not self.__r_R2():
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raise lab3()
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if not self.slice_del():
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return False
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try:
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v_6 = self.limit - self.cursor
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try:
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self.ket = self.cursor
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if not self.eq_s_b(u"ig"):
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raise lab5()
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self.bra = self.cursor
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if not self.__r_R2():
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raise lab5()
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v_7 = self.limit - self.cursor
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try:
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if not self.eq_s_b(u"e"):
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raise lab6()
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raise lab5()
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except lab6: pass
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self.cursor = self.limit - v_7
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if not self.slice_del():
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return False
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raise lab4()
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except lab5: pass
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self.cursor = self.limit - v_6
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if not self.__r_undouble():
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raise lab3()
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except lab4: pass
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elif among_var == 2:
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if not self.__r_R2():
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raise lab3()
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v_8 = self.limit - self.cursor
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try:
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if not self.eq_s_b(u"e"):
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raise lab7()
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raise lab3()
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except lab7: pass
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self.cursor = self.limit - v_8
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if not self.slice_del():
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return False
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elif among_var == 3:
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if not self.__r_R2():
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raise lab3()
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if not self.slice_del():
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return False
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if not self.__r_e_ending():
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raise lab3()
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elif among_var == 4:
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if not self.__r_R2():
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raise lab3()
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if not self.slice_del():
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return False
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else:
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if not self.__r_R2():
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raise lab3()
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if not self.B_e_found:
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raise lab3()
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if not self.slice_del():
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return False
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except lab3: pass
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self.cursor = self.limit - v_5
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v_9 = self.limit - self.cursor
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try:
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if not self.out_grouping_b(DutchStemmer.g_v_I, 73, 232):
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raise lab8()
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v_10 = self.limit - self.cursor
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if self.find_among_b(DutchStemmer.a_5) == 0:
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raise lab8()
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if not self.out_grouping_b(DutchStemmer.g_v, 97, 232):
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raise lab8()
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self.cursor = self.limit - v_10
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self.ket = self.cursor
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if self.cursor <= self.limit_backward:
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raise lab8()
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self.cursor -= 1
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self.bra = self.cursor
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if not self.slice_del():
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return False
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except lab8: pass
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self.cursor = self.limit - v_9
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return True
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def _stem(self):
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v_1 = self.cursor
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self.__r_prelude()
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self.cursor = v_1
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v_2 = self.cursor
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self.__r_mark_regions()
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self.cursor = v_2
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self.limit_backward = self.cursor
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self.cursor = self.limit
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self.__r_standard_suffix()
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self.cursor = self.limit_backward
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v_4 = self.cursor
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self.__r_postlude()
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self.cursor = v_4
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return True
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class lab0(BaseException): pass
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class lab1(BaseException): pass
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class lab2(BaseException): pass
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class lab3(BaseException): pass
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class lab4(BaseException): pass
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class lab5(BaseException): pass
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class lab6(BaseException): pass
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class lab7(BaseException): pass
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class lab8(BaseException): pass
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