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# Copyright 2019 The Meson development team
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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# http://www.apache.org/licenses/LICENSE-2.0
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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# This class contains the basic functionality needed to run any interpreter
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# or an interpreter-based tool
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from .. import mparser
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from . import AstVisitor
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import re
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arithmic_map = {
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'add': '+',
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'sub': '-',
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'mod': '%',
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'mul': '*',
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'div': '/'
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}
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class AstPrinter(AstVisitor):
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def __init__(self, indent: int = 2, arg_newline_cutoff: int = 5):
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self.result = ''
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self.indent = indent
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self.arg_newline_cutoff = arg_newline_cutoff
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self.ci = ''
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self.is_newline = True
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self.last_level = 0
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def post_process(self):
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self.result = re.sub(r'\s+\n', '\n', self.result)
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def append(self, data: str, node: mparser.BaseNode):
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level = 0
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if node and hasattr(node, 'level'):
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level = node.level
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else:
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level = self.last_level
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self.last_level = level
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if self.is_newline:
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self.result += ' ' * (level * self.indent)
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self.result += data
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self.is_newline = False
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def append_padded(self, data: str, node: mparser.BaseNode):
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if self.result[-1] not in [' ', '\n']:
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data = ' ' + data
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self.append(data + ' ', node)
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def newline(self):
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self.result += '\n'
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self.is_newline = True
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def visit_BooleanNode(self, node: mparser.BooleanNode):
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self.append('true' if node.value else 'false', node)
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def visit_IdNode(self, node: mparser.IdNode):
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self.append(node.value, node)
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def visit_NumberNode(self, node: mparser.NumberNode):
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self.append(str(node.value), node)
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def visit_StringNode(self, node: mparser.StringNode):
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self.append("'" + node.value + "'", node)
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def visit_ContinueNode(self, node: mparser.ContinueNode):
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self.append('continue', node)
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def visit_BreakNode(self, node: mparser.BreakNode):
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self.append('break', node)
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def visit_ArrayNode(self, node: mparser.ArrayNode):
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self.append('[', node)
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node.args.accept(self)
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self.append(']', node)
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def visit_DictNode(self, node: mparser.DictNode):
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self.append('{', node)
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node.args.accept(self)
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self.append('}', node)
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def visit_OrNode(self, node: mparser.OrNode):
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node.left.accept(self)
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self.append_padded('or', node)
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node.right.accept(self)
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def visit_AndNode(self, node: mparser.AndNode):
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node.left.accept(self)
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self.append_padded('and', node)
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node.right.accept(self)
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def visit_ComparisonNode(self, node: mparser.ComparisonNode):
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node.left.accept(self)
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self.append_padded(mparser.comparison_map[node.ctype], node)
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node.right.accept(self)
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def visit_ArithmeticNode(self, node: mparser.ArithmeticNode):
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node.left.accept(self)
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self.append_padded(arithmic_map[node.operation], node)
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node.right.accept(self)
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def visit_NotNode(self, node: mparser.NotNode):
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self.append_padded('not', node)
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node.value.accept(self)
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def visit_CodeBlockNode(self, node: mparser.CodeBlockNode):
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for i in node.lines:
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i.accept(self)
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self.newline()
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def visit_IndexNode(self, node: mparser.IndexNode):
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self.append('[', node)
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node.index.accept(self)
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self.append(']', node)
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def visit_MethodNode(self, node: mparser.MethodNode):
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node.source_object.accept(self)
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self.append('.' + node.name + '(', node)
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node.args.accept(self)
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self.append(')', node)
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def visit_FunctionNode(self, node: mparser.FunctionNode):
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self.append(node.func_name + '(', node)
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node.args.accept(self)
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self.append(')', node)
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def visit_AssignmentNode(self, node: mparser.AssignmentNode):
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self.append(node.var_name + ' = ', node)
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node.value.accept(self)
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def visit_PlusAssignmentNode(self, node: mparser.PlusAssignmentNode):
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self.append(node.var_name + ' += ', node)
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node.value.accept(self)
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def visit_ForeachClauseNode(self, node: mparser.ForeachClauseNode):
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varnames = [x.value for x in node.varnames]
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self.append_padded('foreach', node)
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self.append_padded(', '.join(varnames), node)
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self.append_padded(':', node)
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node.items.accept(self)
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self.newline()
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node.block.accept(self)
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self.append('endforeach', node)
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def visit_IfClauseNode(self, node: mparser.IfClauseNode):
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prefix = ''
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for i in node.ifs:
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self.append_padded(prefix + 'if', node)
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prefix = 'el'
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i.accept(self)
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if node.elseblock:
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self.append('else', node)
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node.elseblock.accept(self)
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self.append('endif', node)
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def visit_UMinusNode(self, node: mparser.UMinusNode):
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self.append_padded('-', node)
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node.value.accept(self)
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def visit_IfNode(self, node: mparser.IfNode):
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node.condition.accept(self)
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self.newline()
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node.block.accept(self)
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def visit_TernaryNode(self, node: mparser.TernaryNode):
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node.condition.accept(self)
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self.append_padded('?', node)
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node.trueblock.accept(self)
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self.append_padded(':', node)
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node.falseblock.accept(self)
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def visit_ArgumentNode(self, node: mparser.ArgumentNode):
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break_args = True if (len(node.arguments) + len(node.kwargs)) > self.arg_newline_cutoff else False
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for i in node.arguments + list(node.kwargs.values()):
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if not isinstance(i, mparser.ElementaryNode):
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break_args = True
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if break_args:
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self.newline()
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for i in node.arguments:
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i.accept(self)
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self.append(', ', node)
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if break_args:
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self.newline()
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for key, val in node.kwargs.items():
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self.append(key, node)
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self.append_padded(':', node)
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val.accept(self)
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self.append(', ', node)
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if break_args:
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self.newline()
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if break_args:
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self.result = re.sub(r', \n$', '\n', self.result)
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else:
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self.result = re.sub(r', $', '', self.result)
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