1 | #!/usr/bin/env python2
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2 | """gen_python.py: Generate Python code from an ASDL schema."""
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3 | from __future__ import print_function
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4 |
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5 | from collections import defaultdict
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6 |
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7 | from asdl import ast
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8 | from asdl import visitor
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9 | from asdl.util import log
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10 |
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11 | _ = log # shut up lint
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12 |
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13 | _PRIMITIVES = {
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14 | 'string': 'str',
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15 | 'int': 'int',
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16 | 'uint16': 'int',
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17 | 'BigInt': 'mops.BigInt',
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18 | 'float': 'float',
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19 | 'bool': 'bool',
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20 | 'any': 'Any',
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21 | # TODO: frontend/syntax.asdl should properly import id enum instead of
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22 | # hard-coding it here.
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23 | 'id': 'Id_t',
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24 | }
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25 |
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26 |
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27 | def _MyPyType(typ):
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28 | """ASDL type to MyPy Type."""
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29 | if isinstance(typ, ast.ParameterizedType):
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30 |
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31 | if typ.type_name == 'Dict':
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32 | k_type = _MyPyType(typ.children[0])
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33 | v_type = _MyPyType(typ.children[1])
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34 | return 'Dict[%s, %s]' % (k_type, v_type)
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35 |
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36 | if typ.type_name == 'List':
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37 | return 'List[%s]' % _MyPyType(typ.children[0])
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38 |
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39 | if typ.type_name == 'Optional':
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40 | return 'Optional[%s]' % _MyPyType(typ.children[0])
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41 |
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42 | elif isinstance(typ, ast.NamedType):
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43 | if typ.resolved:
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44 | if isinstance(typ.resolved, ast.Sum): # includes SimpleSum
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45 | return '%s_t' % typ.name
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46 | if isinstance(typ.resolved, ast.Product):
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47 | return typ.name
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48 | if isinstance(typ.resolved, ast.Use):
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49 | return ast.TypeNameHeuristic(typ.name)
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50 |
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51 | # 'id' falls through here
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52 | return _PRIMITIVES[typ.name]
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53 |
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54 | else:
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55 | raise AssertionError()
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56 |
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57 |
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58 | def _DefaultValue(typ, mypy_type):
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59 | """Values that the static CreateNull() constructor passes.
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60 |
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61 | mypy_type is used to cast None, to maintain mypy --strict for ASDL.
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62 |
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63 | We circumvent the type system on CreateNull(). Then the user is
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64 | responsible for filling in all the fields. If they do so, we can
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65 | rely on it when reading fields at runtime.
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66 | """
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67 | if isinstance(typ, ast.ParameterizedType):
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68 | type_name = typ.type_name
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69 |
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70 | if type_name == 'Optional':
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71 | return "cast('%s', None)" % mypy_type
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72 |
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73 | if type_name == 'List':
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74 | return "[] if alloc_lists else cast('%s', None)" % mypy_type
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75 |
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76 | if type_name == 'Dict': # TODO: can respect alloc_dicts=True
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77 | return "cast('%s', None)" % mypy_type
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78 |
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79 | raise AssertionError(type_name)
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80 |
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81 | if isinstance(typ, ast.NamedType):
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82 | type_name = typ.name
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83 |
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84 | if type_name == 'id': # hard-coded HACK
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85 | return '-1'
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86 |
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87 | if type_name == 'int':
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88 | return '-1'
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89 |
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90 | if type_name == 'BigInt':
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91 | return 'mops.BigInt(-1)'
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92 |
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93 | if type_name == 'bool':
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94 | return 'False'
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95 |
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96 | if type_name == 'float':
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97 | return '0.0' # or should it be NaN?
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98 |
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99 | if type_name == 'string':
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100 | return "''"
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101 |
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102 | if isinstance(typ.resolved, ast.SimpleSum):
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103 | sum_type = typ.resolved
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104 | # Just make it the first variant. We could define "Undef" for
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105 | # each enum, but it doesn't seem worth it.
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106 | return '%s_e.%s' % (type_name, sum_type.types[0].name)
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107 |
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108 | # CompoundSum or Product type
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109 | return 'cast(%s, None)' % mypy_type
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110 |
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111 | else:
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112 | raise AssertionError()
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113 |
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114 |
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115 | def _HNodeExpr(abbrev, typ, var_name):
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116 | # type: (str, ast.TypeExpr, str) -> str
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117 | none_guard = False
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118 |
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119 | if typ.IsOptional():
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120 | typ = typ.children[0] # descend one level
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121 |
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122 | if isinstance(typ, ast.ParameterizedType):
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123 | code_str = '%s.%s()' % (var_name, abbrev)
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124 | none_guard = True
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125 |
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126 | elif isinstance(typ, ast.NamedType):
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127 | type_name = typ.name
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128 |
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129 | if type_name == 'bool':
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130 | code_str = "hnode.Leaf('T' if %s else 'F', color_e.OtherConst)" % var_name
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131 |
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132 | elif type_name in ('int', 'uint16'):
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133 | code_str = 'hnode.Leaf(str(%s), color_e.OtherConst)' % var_name
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134 |
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135 | elif type_name == 'BigInt':
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136 | code_str = 'hnode.Leaf(mops.ToStr(%s), color_e.OtherConst)' % var_name
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137 |
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138 | elif type_name == 'float':
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139 | code_str = 'hnode.Leaf(str(%s), color_e.OtherConst)' % var_name
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140 |
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141 | elif type_name == 'string':
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142 | code_str = 'NewLeaf(%s, color_e.StringConst)' % var_name
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143 |
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144 | elif type_name == 'any': # TODO: Remove this. Used for value.Obj().
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145 | code_str = 'hnode.External(%s)' % var_name
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146 |
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147 | elif type_name == 'id': # was meta.UserType
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148 | # This assumes it's Id, which is a simple SumType. TODO: Remove this.
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149 | code_str = 'hnode.Leaf(Id_str(%s), color_e.UserType)' % var_name
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150 |
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151 | elif typ.resolved and isinstance(typ.resolved, ast.SimpleSum):
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152 | code_str = 'hnode.Leaf(%s_str(%s), color_e.TypeName)' % (type_name,
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153 | var_name)
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154 |
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155 | else:
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156 | code_str = '%s.%s(trav=trav)' % (var_name, abbrev)
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157 | none_guard = True
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158 |
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159 | else:
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160 | raise AssertionError()
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161 |
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162 | return code_str, none_guard
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163 |
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164 |
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165 | class GenMyPyVisitor(visitor.AsdlVisitor):
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166 | """Generate Python code with MyPy type annotations."""
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167 |
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168 | def __init__(self,
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169 | f,
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170 | abbrev_mod_entries=None,
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171 | pretty_print_methods=True,
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172 | py_init_n=False,
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173 | simple_int_sums=None):
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174 |
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175 | visitor.AsdlVisitor.__init__(self, f)
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176 | self.abbrev_mod_entries = abbrev_mod_entries or []
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177 | self.pretty_print_methods = pretty_print_methods
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178 | self.py_init_n = py_init_n
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179 |
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180 | # For Id to use different code gen. It's used like an integer, not just
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181 | # like an enum.
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182 | self.simple_int_sums = simple_int_sums or []
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183 |
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184 | self._shared_type_tags = {}
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185 | self._product_counter = 64 # matches asdl/gen_cpp.py
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186 |
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187 | self._products = []
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188 | self._product_bases = defaultdict(list)
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189 |
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190 | def _EmitDict(self, name, d, depth):
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191 | self.Emit('_%s_str = {' % name, depth)
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192 | for k in sorted(d):
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193 | self.Emit('%d: %r,' % (k, d[k]), depth + 1)
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194 | self.Emit('}', depth)
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195 | self.Emit('', depth)
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196 |
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197 | def VisitSimpleSum(self, sum, sum_name, depth):
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198 | int_to_str = {}
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199 | variants = []
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200 | for i, variant in enumerate(sum.types):
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201 | tag_num = i + 1
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202 | tag_str = '%s.%s' % (sum_name, variant.name)
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203 | int_to_str[tag_num] = tag_str
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204 | variants.append((variant, tag_num))
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205 |
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206 | add_suffix = not ('no_namespace_suffix' in sum.generate)
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207 | gen_integers = 'integers' in sum.generate or 'uint16' in sum.generate
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208 |
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209 | if gen_integers:
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210 | self.Emit('%s_t = int # type alias for integer' % sum_name)
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211 | self.Emit('')
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212 |
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213 | i_name = ('%s_i' % sum_name) if add_suffix else sum_name
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214 |
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215 | self.Emit('class %s(object):' % i_name, depth)
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216 |
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217 | for variant, tag_num in variants:
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218 | line = ' %s = %d' % (variant.name, tag_num)
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219 | self.Emit(line, depth)
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220 |
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221 | # Help in sizing array. Note that we're 1-based.
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222 | line = ' %s = %d' % ('ARRAY_SIZE', len(variants) + 1)
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223 | self.Emit(line, depth)
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224 |
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225 | else:
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226 | # First emit a type
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227 | self.Emit('class %s_t(pybase.SimpleObj):' % sum_name, depth)
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228 | self.Emit(' pass', depth)
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229 | self.Emit('', depth)
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230 |
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231 | # Now emit a namespace
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232 | e_name = ('%s_e' % sum_name) if add_suffix else sum_name
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233 | self.Emit('class %s(object):' % e_name, depth)
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234 |
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235 | for variant, tag_num in variants:
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236 | line = ' %s = %s_t(%d)' % (variant.name, sum_name, tag_num)
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237 | self.Emit(line, depth)
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238 |
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239 | self.Emit('', depth)
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240 |
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241 | self._EmitDict(sum_name, int_to_str, depth)
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242 |
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243 | self.Emit('def %s_str(val):' % sum_name, depth)
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244 | self.Emit(' # type: (%s_t) -> str' % sum_name, depth)
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245 | self.Emit(' return _%s_str[val]' % sum_name, depth)
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246 | self.Emit('', depth)
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247 |
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248 | def _EmitCodeForField(self, abbrev, field, counter):
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249 | """Generate code that returns an hnode for a field."""
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250 | out_val_name = 'x%d' % counter
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251 |
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252 | if field.typ.IsList():
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253 | iter_name = 'i%d' % counter
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254 |
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255 | typ = field.typ
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256 | if typ.type_name == 'Optional': # descend one level
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257 | typ = typ.children[0]
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258 | item_type = typ.children[0]
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259 |
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260 | self.Emit(' if self.%s is not None: # List' % field.name)
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261 | self.Emit(' %s = hnode.Array([])' % out_val_name)
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262 | self.Emit(' for %s in self.%s:' % (iter_name, field.name))
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263 | child_code_str, none_guard = _HNodeExpr(abbrev, item_type,
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264 | iter_name)
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265 |
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266 | if none_guard: # e.g. for List[Optional[value_t]]
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267 | # TODO: could consolidate with asdl/runtime.py NewLeaf(), which
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268 | # also uses _ to mean None/nullptr
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269 | self.Emit(
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270 | ' h = (hnode.Leaf("_", color_e.OtherConst) if %s is None else %s)'
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271 | % (iter_name, child_code_str))
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272 | self.Emit(' %s.children.append(h)' % out_val_name)
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273 | else:
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274 | self.Emit(' %s.children.append(%s)' %
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275 | (out_val_name, child_code_str))
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276 |
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277 | self.Emit(' L.append(Field(%r, %s))' %
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278 | (field.name, out_val_name))
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279 |
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280 | elif field.typ.IsDict():
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281 | k = 'k%d' % counter
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282 | v = 'v%d' % counter
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283 |
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284 | typ = field.typ
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285 | if typ.type_name == 'Optional': # descend one level
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286 | typ = typ.children[0]
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287 |
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288 | k_typ = typ.children[0]
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289 | v_typ = typ.children[1]
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290 |
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291 | k_code_str, _ = _HNodeExpr(abbrev, k_typ, k)
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292 | v_code_str, _ = _HNodeExpr(abbrev, v_typ, v)
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293 |
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294 | self.Emit(' if self.%s is not None: # Dict' % field.name)
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295 | self.Emit(' m = hnode.Leaf("Dict", color_e.OtherConst)')
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296 | self.Emit(' %s = hnode.Array([m])' % out_val_name)
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297 | self.Emit(' for %s, %s in self.%s.iteritems():' %
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298 | (k, v, field.name))
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299 | self.Emit(' %s.children.append(%s)' %
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300 | (out_val_name, k_code_str))
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301 | self.Emit(' %s.children.append(%s)' %
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302 | (out_val_name, v_code_str))
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303 | self.Emit(' L.append(Field(%r, %s))' %
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304 | (field.name, out_val_name))
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305 |
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306 | elif field.typ.IsOptional():
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307 | typ = field.typ.children[0]
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308 |
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309 | self.Emit(' if self.%s is not None: # Optional' % field.name)
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310 | child_code_str, _ = _HNodeExpr(abbrev, typ, 'self.%s' % field.name)
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311 | self.Emit(' %s = %s' % (out_val_name, child_code_str))
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312 | self.Emit(' L.append(Field(%r, %s))' %
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313 | (field.name, out_val_name))
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314 |
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315 | else:
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316 | var_name = 'self.%s' % field.name
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317 | code_str, obj_none_guard = _HNodeExpr(abbrev, field.typ, var_name)
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318 | depth = self.current_depth
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319 | if obj_none_guard: # to satisfy MyPy type system
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320 | self.Emit(' assert self.%s is not None' % field.name)
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321 | self.Emit(' %s = %s' % (out_val_name, code_str), depth)
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322 |
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323 | self.Emit(' L.append(Field(%r, %s))' % (field.name, out_val_name),
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324 | depth)
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325 |
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326 | def _GenClass(self,
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327 | ast_node,
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328 | class_name,
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329 | base_classes,
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330 | tag_num,
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331 | class_ns=''):
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332 | """Used for both Sum variants ("constructors") and Product types.
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333 |
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334 | Args:
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335 | class_ns: for variants like value.Str
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336 | """
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337 | self.Emit('class %s(%s):' % (class_name, ', '.join(base_classes)))
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338 | self.Emit(' _type_tag = %d' % tag_num)
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339 |
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340 | all_fields = ast_node.fields
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341 |
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342 | field_names = [f.name for f in all_fields]
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343 |
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344 | quoted_fields = repr(tuple(field_names))
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345 | self.Emit(' __slots__ = %s' % quoted_fields)
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346 | self.Emit('')
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347 |
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348 | #
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349 | # __init__
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350 | #
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351 |
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352 | args = [f.name for f in ast_node.fields]
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353 |
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354 | self.Emit(' def __init__(self, %s):' % ', '.join(args))
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355 |
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356 | arg_types = []
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357 | default_vals = []
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358 | for f in ast_node.fields:
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359 | mypy_type = _MyPyType(f.typ)
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360 | arg_types.append(mypy_type)
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361 |
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362 | d_str = _DefaultValue(f.typ, mypy_type)
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363 | default_vals.append(d_str)
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364 |
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365 | self.Emit(' # type: (%s) -> None' % ', '.join(arg_types),
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366 | reflow=False)
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367 |
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368 | if not all_fields:
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369 | self.Emit(' pass') # for types like NoOp
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370 |
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371 | for f in ast_node.fields:
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372 | # don't wrap the type comment
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373 | self.Emit(' self.%s = %s' % (f.name, f.name), reflow=False)
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374 |
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375 | self.Emit('')
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376 |
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377 | pretty_cls_name = '%s%s' % (class_ns, class_name)
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378 |
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379 | if len(all_fields) and not self.py_init_n:
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380 | self.Emit(' @staticmethod')
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381 | self.Emit(' def CreateNull(alloc_lists=False):')
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382 | self.Emit(' # type: () -> %s%s' % (class_ns, class_name))
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383 | self.Emit(' return %s%s(%s)' %
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384 | (class_ns, class_name, ', '.join(default_vals)),
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385 | reflow=False)
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386 | self.Emit('')
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387 |
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388 | if not self.pretty_print_methods:
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389 | return
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390 |
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391 | #
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392 | # PrettyTree
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393 | #
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394 |
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395 | self.Emit(' def PrettyTree(self, trav=None):')
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396 | self.Emit(' # type: (Optional[TraversalState]) -> hnode_t')
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397 | self.Emit(' trav = trav or TraversalState()')
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398 | self.Emit(' heap_id = id(self)')
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399 | self.Emit(' if heap_id in trav.seen:')
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400 | # cut off recursion
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401 | self.Emit(' return hnode.AlreadySeen(heap_id)')
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402 | self.Emit(' trav.seen[heap_id] = True')
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403 |
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404 | self.Emit(' out_node = NewRecord(%r)' % pretty_cls_name)
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405 | self.Emit(' L = out_node.fields')
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406 | self.Emit('')
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407 |
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408 | # Use the runtime type to be more like asdl/format.py
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409 | for local_id, field in enumerate(all_fields):
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410 | #log('%s :: %s', field_name, field_desc)
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411 | self.Indent()
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412 | self._EmitCodeForField('PrettyTree', field, local_id)
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413 | self.Dedent()
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414 | self.Emit('')
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415 | self.Emit(' return out_node')
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416 | self.Emit('')
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417 |
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418 | #
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419 | # _AbbreviatedTree
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420 | #
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421 |
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422 | self.Emit(' def _AbbreviatedTree(self, trav=None):')
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423 | self.Emit(' # type: (Optional[TraversalState]) -> hnode_t')
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424 | self.Emit(' trav = trav or TraversalState()')
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425 | self.Emit(' heap_id = id(self)')
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426 | self.Emit(' if heap_id in trav.seen:')
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427 | # cut off recursion
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428 | self.Emit(' return hnode.AlreadySeen(heap_id)')
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429 | self.Emit(' trav.seen[heap_id] = True')
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430 | self.Emit(' out_node = NewRecord(%r)' % pretty_cls_name)
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431 | self.Emit(' L = out_node.fields')
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432 |
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433 | for local_id, field in enumerate(ast_node.fields):
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434 | self.Indent()
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435 | self._EmitCodeForField('AbbreviatedTree', field, local_id)
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436 | self.Dedent()
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437 | self.Emit('')
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438 | self.Emit(' return out_node')
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439 | self.Emit('')
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440 |
|
441 | self.Emit(' def AbbreviatedTree(self, trav=None):')
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442 | self.Emit(' # type: (Optional[TraversalState]) -> hnode_t')
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443 | abbrev_name = '_%s' % class_name
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444 | if abbrev_name in self.abbrev_mod_entries:
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445 | self.Emit(' p = %s(self)' % abbrev_name)
|
446 | # If the user function didn't return anything, fall back.
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447 | self.Emit(
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448 | ' return p if p else self._AbbreviatedTree(trav=trav)')
|
449 | else:
|
450 | self.Emit(' return self._AbbreviatedTree(trav=trav)')
|
451 | self.Emit('')
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452 |
|
453 | def VisitCompoundSum(self, sum, sum_name, depth):
|
454 | """Note that the following is_simple:
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455 |
|
456 | cflow = Break | Continue
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457 |
|
458 | But this is compound:
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459 |
|
460 | cflow = Break | Continue | Return(int val)
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461 |
|
462 | The generated code changes depending on which one it is.
|
463 | """
|
464 | #log('%d variants in %s', len(sum.types), sum_name)
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465 |
|
466 | # We emit THREE Python types for each meta.CompoundType:
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467 | #
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468 | # 1. enum for tag (cflow_e)
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469 | # 2. base class for inheritance (cflow_t)
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470 | # 3. namespace for classes (cflow) -- TODO: Get rid of this one.
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471 | #
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472 | # Should code use cflow_e.tag or isinstance()?
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473 | # isinstance() is better for MyPy I think. But tag is better for C++.
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474 | # int tag = static_cast<cflow>(node).tag;
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475 |
|
476 | int_to_str = {}
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477 |
|
478 | # enum for the tag
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479 | self.Emit('class %s_e(object):' % sum_name, depth)
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480 |
|
481 | for i, variant in enumerate(sum.types):
|
482 | if variant.shared_type:
|
483 | tag_num = self._shared_type_tags[variant.shared_type]
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484 | # e.g. DoubleQuoted may have base types expr_t, word_part_t
|
485 | base_class = sum_name + '_t'
|
486 | bases = self._product_bases[variant.shared_type]
|
487 | if base_class in bases:
|
488 | raise RuntimeError(
|
489 | "Two tags in sum %r refer to product type %r" %
|
490 | (sum_name, variant.shared_type))
|
491 |
|
492 | else:
|
493 | bases.append(base_class)
|
494 | else:
|
495 | tag_num = i + 1
|
496 | self.Emit(' %s = %d' % (variant.name, tag_num), depth)
|
497 | int_to_str[tag_num] = variant.name
|
498 | self.Emit('', depth)
|
499 |
|
500 | self._EmitDict(sum_name, int_to_str, depth)
|
501 |
|
502 | self.Emit('def %s_str(tag, dot=True):' % sum_name, depth)
|
503 | self.Emit(' # type: (int, bool) -> str', depth)
|
504 | self.Emit(' v = _%s_str[tag]' % sum_name, depth)
|
505 | self.Emit(' if dot:', depth)
|
506 | self.Emit(' return "%s.%%s" %% v' % sum_name, depth)
|
507 | self.Emit(' else:', depth)
|
508 | self.Emit(' return v', depth)
|
509 | self.Emit('', depth)
|
510 |
|
511 | # the base class, e.g. 'oil_cmd'
|
512 | self.Emit('class %s_t(pybase.CompoundObj):' % sum_name, depth)
|
513 | self.Indent()
|
514 | depth = self.current_depth
|
515 |
|
516 | # To imitate C++ API
|
517 | self.Emit('def tag(self):')
|
518 | self.Emit(' # type: () -> int')
|
519 | self.Emit(' return self._type_tag')
|
520 |
|
521 | # This is what we would do in C++, but we don't need it in Python because
|
522 | # every function is virtual.
|
523 | if 0:
|
524 | #if self.pretty_print_methods:
|
525 | for abbrev in 'PrettyTree', '_AbbreviatedTree', 'AbbreviatedTree':
|
526 | self.Emit('')
|
527 | self.Emit('def %s(self):' % abbrev, depth)
|
528 | self.Emit(' # type: () -> hnode_t', depth)
|
529 | self.Indent()
|
530 | depth = self.current_depth
|
531 | self.Emit('UP_self = self', depth)
|
532 | self.Emit('', depth)
|
533 |
|
534 | for variant in sum.types:
|
535 | if variant.shared_type:
|
536 | subtype_name = variant.shared_type
|
537 | else:
|
538 | subtype_name = '%s__%s' % (sum_name, variant.name)
|
539 |
|
540 | self.Emit(
|
541 | 'if self.tag() == %s_e.%s:' % (sum_name, variant.name),
|
542 | depth)
|
543 | self.Emit(' self = cast(%s, UP_self)' % subtype_name,
|
544 | depth)
|
545 | self.Emit(' return self.%s()' % abbrev, depth)
|
546 |
|
547 | self.Emit('raise AssertionError()', depth)
|
548 |
|
549 | self.Dedent()
|
550 | depth = self.current_depth
|
551 | else:
|
552 | # Otherwise it's empty
|
553 | self.Emit('pass', depth)
|
554 |
|
555 | self.Dedent()
|
556 | depth = self.current_depth
|
557 | self.Emit('')
|
558 |
|
559 | # Declare any zero argument singleton classes outside of the main
|
560 | # "namespace" class.
|
561 | for i, variant in enumerate(sum.types):
|
562 | if variant.shared_type:
|
563 | continue # Don't generate a class for shared types.
|
564 | if len(variant.fields) == 0:
|
565 | # We must use the old-style naming here, ie. command__NoOp, in order
|
566 | # to support zero field variants as constants.
|
567 | class_name = '%s__%s' % (sum_name, variant.name)
|
568 | self._GenClass(variant, class_name, (sum_name + '_t', ), i + 1)
|
569 |
|
570 | # Class that's just a NAMESPACE, e.g. for value.Str
|
571 | self.Emit('class %s(object):' % sum_name, depth)
|
572 |
|
573 | self.Indent()
|
574 |
|
575 | for i, variant in enumerate(sum.types):
|
576 | if variant.shared_type:
|
577 | continue
|
578 |
|
579 | if len(variant.fields) == 0:
|
580 | self.Emit('%s = %s__%s()' %
|
581 | (variant.name, sum_name, variant.name))
|
582 | self.Emit('')
|
583 | else:
|
584 | # Use fully-qualified name, so we can have osh_cmd.Simple and
|
585 | # oil_cmd.Simple.
|
586 | fq_name = variant.name
|
587 | self._GenClass(variant,
|
588 | fq_name, (sum_name + '_t', ),
|
589 | i + 1,
|
590 | class_ns=sum_name + '.')
|
591 | self.Emit(' pass', depth) # in case every variant is first class
|
592 |
|
593 | self.Dedent()
|
594 | self.Emit('')
|
595 |
|
596 | def VisitProduct(self, product, name, depth):
|
597 | self._shared_type_tags[name] = self._product_counter
|
598 | # Create a tuple of _GenClass args to create LAST. They may inherit from
|
599 | # sum types that have yet to be defined.
|
600 | self._products.append((product, name, depth, self._product_counter))
|
601 | self._product_counter += 1
|
602 |
|
603 | def EmitFooter(self):
|
604 | # Now generate all the product types we deferred.
|
605 | for args in self._products:
|
606 | ast_node, name, depth, tag_num = args
|
607 | # Figure out base classes AFTERWARD.
|
608 | bases = self._product_bases[name]
|
609 | if not bases:
|
610 | bases = ('pybase.CompoundObj', )
|
611 | self._GenClass(ast_node, name, bases, tag_num)
|