1 | """
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2 | split.py - Word Splitting
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3 |
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4 | Nice blog post on the complexity/corner cases/differing intuition of splitting
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5 | strings:
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6 |
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7 | https://chriszetter.com/blog/2017/10/29/splitting-strings/
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8 |
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9 | python-dev doesn't want to touch it anymore!
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10 |
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11 | Other possible splitters:
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12 |
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13 | - AwkSplitter -- how does this compare to awk -F?
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14 | - RegexSplitter
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15 | - CsvSplitter
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16 | - TSV2Splitter -- Data is transformed because of # \u0065 in JSON. So it's not
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17 | a pure slice, but neither is IFS splitting because of backslashes.
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18 | - Perl?
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19 | - does perl have a spilt context?
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20 |
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21 | with SPLIT_REGEX = / digit+ / {
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22 | echo $#
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23 | echo $len(argv)
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24 | echo $1 $2
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25 | echo @argv
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26 | }
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27 | """
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28 |
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29 | from _devbuild.gen.runtime_asdl import (scope_e, span_e, emit_i, char_kind_i,
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30 | state_i)
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31 | from _devbuild.gen.value_asdl import (value, value_e, value_t)
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32 | from mycpp.mylib import log
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33 | from core import pyutil
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34 | from frontend import consts
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35 | from mycpp import mylib
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36 | from mycpp.mylib import tagswitch
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37 |
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38 | from typing import List, Tuple, Dict, Optional, TYPE_CHECKING, cast
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39 | if TYPE_CHECKING:
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40 | from core.state import Mem
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41 | from _devbuild.gen.runtime_asdl import span_t
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42 | Span = Tuple[span_t, int]
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43 |
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44 | DEFAULT_IFS = ' \t\n'
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45 |
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46 |
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47 | def _SpansToParts(s, spans):
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48 | # type: (str, List[Span]) -> List[str]
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49 | """Helper for SplitForWordEval."""
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50 | parts = [] # type: List[mylib.BufWriter]
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51 | start_index = 0
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52 |
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53 | # If the last span was black, and we get a backslash, set join_next to merge
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54 | # two black spans.
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55 | join_next = False
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56 | last_span_was_black = False
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57 |
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58 | for span_type, end_index in spans:
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59 | if span_type == span_e.Black:
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60 | if len(parts) and join_next:
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61 | parts[-1].write(s[start_index:end_index])
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62 | join_next = False
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63 | else:
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64 | buf = mylib.BufWriter()
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65 | buf.write(s[start_index:end_index])
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66 | parts.append(buf)
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67 |
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68 | last_span_was_black = True
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69 |
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70 | elif span_type == span_e.Backslash:
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71 | if last_span_was_black:
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72 | join_next = True
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73 | last_span_was_black = False
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74 |
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75 | else:
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76 | last_span_was_black = False
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77 |
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78 | start_index = end_index
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79 |
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80 | result = [buf.getvalue() for buf in parts]
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81 | return result
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82 |
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83 |
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84 | class SplitContext(object):
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85 | """A polymorphic interface to field splitting.
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86 |
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87 | It respects a STACK of IFS values, for example:
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88 |
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89 | echo $x # uses default shell IFS
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90 | IFS=':' myfunc # new splitter
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91 | echo $x # uses default shell IFS again.
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92 | """
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93 |
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94 | def __init__(self, mem):
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95 | # type: (Mem) -> None
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96 | self.mem = mem
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97 | # Split into (ifs_whitespace, ifs_other)
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98 | self.splitters = {
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99 | } # type: Dict[str, IfsSplitter] # aka IFS value -> splitter instance
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100 |
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101 | def _GetSplitter(self, ifs=None):
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102 | # type: (str) -> IfsSplitter
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103 | """Based on the current stack frame, get the splitter."""
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104 | if ifs is None:
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105 | # Like _ESCAPER, this has dynamic scope!
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106 | val = self.mem.GetValue('IFS', scope_e.Dynamic)
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107 |
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108 | UP_val = val
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109 | with tagswitch(val) as case:
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110 | if case(value_e.Undef):
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111 | ifs = DEFAULT_IFS
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112 | elif case(value_e.Str):
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113 | val = cast(value.Str, UP_val)
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114 | ifs = val.s
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115 | else:
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116 | # TODO: Raise proper error
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117 | raise AssertionError("IFS shouldn't be an array")
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118 |
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119 | sp = self.splitters.get(ifs) # cache lookup
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120 | if sp is None:
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121 | # Figure out what kind of splitter we should instantiate.
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122 |
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123 | ifs_whitespace = mylib.BufWriter()
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124 | ifs_other = mylib.BufWriter()
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125 | for c in ifs:
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126 | if c in ' \t\n': # Happens to be the same as DEFAULT_IFS
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127 | ifs_whitespace.write(c)
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128 | else:
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129 | # TODO: \ not supported
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130 | ifs_other.write(c)
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131 |
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132 | sp = IfsSplitter(ifs_whitespace.getvalue(), ifs_other.getvalue())
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133 |
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134 | # NOTE: Technically, we could make the key more precise. IFS=$' \t' is
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135 | # the same as IFS=$'\t '. But most programs probably don't do that, and
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136 | # everything should work in any case.
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137 | self.splitters[ifs] = sp
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138 |
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139 | return sp
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140 |
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141 | def GetJoinChar(self):
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142 | # type: () -> str
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143 | """For decaying arrays by joining, eg.
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144 |
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145 | "$@" -> $@. array
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146 | """
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147 | # https://www.gnu.org/software/bash/manual/bashref.html#Special-Parameters
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148 | # http://pubs.opengroup.org/onlinepubs/9699919799/utilities/V3_chap02.html#tag_18_05_02
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149 | # "When the expansion occurs within a double-quoted string (see
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150 | # Double-Quotes), it shall expand to a single field with the value of
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151 | # each parameter separated by the first character of the IFS variable, or
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152 | # by a <space> if IFS is unset. If IFS is set to a null string, this is
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153 | # not equivalent to unsetting it; its first character does not exist, so
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154 | # the parameter values are concatenated."
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155 | val = self.mem.GetValue('IFS', scope_e.Dynamic) # type: value_t
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156 | UP_val = val
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157 | with tagswitch(val) as case:
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158 | if case(value_e.Undef):
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159 | return ' '
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160 | elif case(value_e.Str):
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161 | val = cast(value.Str, UP_val)
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162 | if len(val.s):
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163 | return val.s[0]
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164 | else:
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165 | return ''
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166 | else:
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167 | # TODO: Raise proper error
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168 | raise AssertionError("IFS shouldn't be an array")
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169 |
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170 | raise AssertionError('for -Wreturn-type in C++')
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171 |
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172 | def Escape(self, s):
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173 | # type: (str) -> str
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174 | """Escape IFS chars."""
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175 | sp = self._GetSplitter()
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176 | return sp.Escape(s)
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177 |
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178 | def SplitForWordEval(self, s, ifs=None):
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179 | # type: (str, Optional[str]) -> List[str]
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180 | """Split used by word evaluation.
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181 |
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182 | Also used by the explicit shSplit() function.
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183 | """
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184 | sp = self._GetSplitter(ifs=ifs)
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185 | spans = sp.Split(s, True)
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186 | if 0:
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187 | for span in spans:
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188 | log('SPAN %s', span)
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189 | return _SpansToParts(s, spans)
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190 |
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191 | def SplitForRead(self, line, allow_escape, do_split):
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192 | # type: (str, bool, bool) -> List[Span]
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193 |
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194 | # None: use the default splitter, consulting $IFS
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195 | # '' : forces IFS='' behavior
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196 | ifs = None if do_split else ''
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197 |
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198 | sp = self._GetSplitter(ifs=ifs)
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199 | return sp.Split(line, allow_escape)
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200 |
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201 |
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202 | class _BaseSplitter(object):
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203 |
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204 | def __init__(self, escape_chars):
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205 | # type: (str) -> None
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206 | self.escape_chars = escape_chars + '\\' # Backslash is always escaped
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207 |
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208 | def Escape(self, s):
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209 | # type: (str) -> str
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210 | # Note the characters here are DYNAMIC, unlike other usages of
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211 | # BackslashEscape().
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212 | return pyutil.BackslashEscape(s, self.escape_chars)
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213 |
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214 |
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215 | class IfsSplitter(_BaseSplitter):
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216 | """Split a string when IFS has non-whitespace characters."""
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217 |
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218 | def __init__(self, ifs_whitespace, ifs_other):
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219 | # type: (str, str) -> None
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220 | _BaseSplitter.__init__(self, ifs_whitespace + ifs_other)
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221 | self.ifs_whitespace = ifs_whitespace
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222 | self.ifs_other = ifs_other
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223 |
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224 | def Split(self, s, allow_escape):
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225 | # type: (str, bool) -> List[Span]
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226 | """
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227 | Args:
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228 | s: string to split
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229 | allow_escape: False for read -r, this means \ doesn't do anything.
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230 |
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231 | Returns:
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232 | List of (runtime.span, end_index) pairs
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233 |
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234 | TODO: This should be (frag, do_split) pairs, to avoid IFS='\'
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235 | double-escaping issue.
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236 | """
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237 | ws_chars = self.ifs_whitespace
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238 | other_chars = self.ifs_other
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239 |
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240 | n = len(s)
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241 | # NOTE: in C, could reserve() this to len(s)
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242 | spans = [] # type: List[Span]
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243 |
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244 | if n == 0:
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245 | return spans # empty
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246 |
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247 | # Ad hoc rule from POSIX: ignore leading whitespace.
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248 | # "IFS white space shall be ignored at the beginning and end of the input"
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249 | # This can't really be handled by the state machine.
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250 |
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251 | i = 0
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252 | while i < n and mylib.ByteInSet(mylib.ByteAt(s, i), ws_chars):
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253 | i += 1
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254 |
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255 | # Append an ignored span.
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256 | if i != 0:
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257 | spans.append((span_e.Delim, i))
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258 |
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259 | # String is ONLY whitespace. We want to skip the last span after the
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260 | # while loop.
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261 | if i == n:
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262 | return spans
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263 |
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264 | state = state_i.Start
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265 | while state != state_i.Done:
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266 | if i < n:
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267 | byte = mylib.ByteAt(s, i)
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268 |
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269 | if mylib.ByteInSet(byte, ws_chars):
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270 | ch = char_kind_i.DE_White
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271 | elif mylib.ByteInSet(byte, other_chars):
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272 | ch = char_kind_i.DE_Gray
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273 | elif allow_escape and mylib.ByteEquals(byte, '\\'):
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274 | ch = char_kind_i.Backslash
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275 | else:
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276 | ch = char_kind_i.Black
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277 |
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278 | elif i == n:
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279 | ch = char_kind_i.Sentinel # one more iterations for the end of string
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280 |
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281 | else:
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282 | raise AssertionError() # shouldn't happen
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283 |
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284 | new_state, action = consts.IfsEdge(state, ch)
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285 | if new_state == state_i.Invalid:
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286 | raise AssertionError('Invalid transition from %r with %r' %
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287 | (state, ch))
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288 |
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289 | if 0:
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290 | log('i %d byte %r ch %s current: %s next: %s %s', i, byte, ch,
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291 | state, new_state, action)
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292 |
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293 | if action == emit_i.Part:
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294 | spans.append((span_e.Black, i))
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295 | elif action == emit_i.Delim:
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296 | spans.append((span_e.Delim, i)) # ignored delimiter
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297 | elif action == emit_i.Empty:
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298 | spans.append((span_e.Delim, i)) # ignored delimiter
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299 | # EMPTY part that is NOT ignored
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300 | spans.append((span_e.Black, i))
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301 | elif action == emit_i.Escape:
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302 | spans.append((span_e.Backslash, i)) # \
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303 | elif action == emit_i.Nothing:
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304 | pass
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305 | else:
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306 | raise AssertionError()
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307 |
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308 | state = new_state
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309 | i += 1
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310 |
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311 | return spans
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