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170 lines
6.1 KiB
Text
170 lines
6.1 KiB
Text
# This grammar is released under an MIT license
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# Author: William Howard (http://github.com/whoward)
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# Source: https://github.com/whoward/cadenza/blob/master/src/cadenza.y
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class Cadenza::RaccParser
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/* expect this many shift/reduce conflicts */
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expect 37
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rule
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target
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: document
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| /* none */ { result = nil }
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;
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parameter_list
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: logical_expression { result = [val[0]] }
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| parameter_list ',' logical_expression { result = val[0].push(val[2]) }
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;
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/* this has a shift/reduce conflict but since Racc will shift in this case it is the correct behavior */
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primary_expression
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: IDENTIFIER { result = VariableNode.new(val[0].value) }
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| IDENTIFIER parameter_list { result = VariableNode.new(val[0].value, val[1]) }
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| INTEGER { result = ConstantNode.new(val[0].value) }
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| REAL { result = ConstantNode.new(val[0].value) }
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| STRING { result = ConstantNode.new(val[0].value) }
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| '(' filtered_expression ')' { result = val[1] }
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;
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multiplicative_expression
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: primary_expression
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| multiplicative_expression '*' primary_expression { result = OperationNode.new(val[0], "*", val[2]) }
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| multiplicative_expression '/' primary_expression { result = OperationNode.new(val[0], "/", val[2]) }
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;
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additive_expression
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: multiplicative_expression
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| additive_expression '+' multiplicative_expression { result = OperationNode.new(val[0], "+", val[2]) }
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| additive_expression '-' multiplicative_expression { result = OperationNode.new(val[0], "-", val[2]) }
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;
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boolean_expression
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: additive_expression
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| boolean_expression OP_EQ additive_expression { result = OperationNode.new(val[0], "==", val[2]) }
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| boolean_expression OP_NEQ additive_expression { result = OperationNode.new(val[0], "!=", val[2]) }
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| boolean_expression OP_LEQ additive_expression { result = OperationNode.new(val[0], "<=", val[2]) }
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| boolean_expression OP_GEQ additive_expression { result = OperationNode.new(val[0], ">=", val[2]) }
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| boolean_expression '>' additive_expression { result = OperationNode.new(val[0], ">", val[2]) }
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| boolean_expression '<' additive_expression { result = OperationNode.new(val[0], "<", val[2]) }
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;
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inverse_expression
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: boolean_expression
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| NOT boolean_expression { result = BooleanInverseNode.new(val[1]) }
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;
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logical_expression
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: inverse_expression
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| logical_expression AND inverse_expression { result = OperationNode.new(val[0], "and", val[2]) }
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| logical_expression OR inverse_expression { result = OperationNode.new(val[0], "or", val[2]) }
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;
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filter
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: IDENTIFIER { result = FilterNode.new(val[0].value) }
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| IDENTIFIER ':' parameter_list { result = FilterNode.new(val[0].value, val[2]) }
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;
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filter_list
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: filter { result = [val[0]] }
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| filter_list '|' filter { result = val[0].push(val[2]) }
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;
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filtered_expression
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: logical_expression
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| logical_expression '|' filter_list { result = FilteredValueNode.new(val[0], val[2]) }
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;
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inject_statement
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: VAR_OPEN filtered_expression VAR_CLOSE { result = val[1] }
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;
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if_tag
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: STMT_OPEN IF logical_expression STMT_CLOSE { open_scope!; result = val[2] }
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| STMT_OPEN UNLESS logical_expression STMT_CLOSE { open_scope!; result = BooleanInverseNode.new(val[2]) }
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;
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else_tag
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: STMT_OPEN ELSE STMT_CLOSE { result = close_scope!; open_scope! }
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;
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end_if_tag
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: STMT_OPEN ENDIF STMT_CLOSE { result = close_scope! }
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| STMT_OPEN ENDUNLESS STMT_CLOSE { result = close_scope! }
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;
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if_block
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: if_tag end_if_tag { result = IfNode.new(val[0], val[1]) }
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| if_tag document end_if_tag { result = IfNode.new(val[0], val[2]) }
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| if_tag else_tag document end_if_tag { result = IfNode.new(val[0], val[1], val[3]) }
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| if_tag document else_tag end_if_tag { result = IfNode.new(val[0], val[2], val[3]) }
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| if_tag document else_tag document end_if_tag { result = IfNode.new(val[0], val[2], val[4]) }
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;
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for_tag
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: STMT_OPEN FOR IDENTIFIER IN filtered_expression STMT_CLOSE { open_scope!; result = [val[2].value, val[4]] }
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;
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end_for_tag
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: STMT_OPEN ENDFOR STMT_CLOSE { result = close_scope! }
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;
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/* this has a shift/reduce conflict but since Racc will shift in this case it is the correct behavior */
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for_block
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: for_tag end_for_tag { result = ForNode.new(VariableNode.new(val[0].first), val[0].last, val[1]) }
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| for_tag document end_for_tag { result = ForNode.new(VariableNode.new(val[0].first), val[0].last, val[2]) }
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;
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block_tag
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: STMT_OPEN BLOCK IDENTIFIER STMT_CLOSE { result = open_block_scope!(val[2].value) }
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;
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end_block_tag
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: STMT_OPEN ENDBLOCK STMT_CLOSE { result = close_block_scope! }
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;
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/* this has a shift/reduce conflict but since Racc will shift in this case it is the correct behavior */
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block_block
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: block_tag end_block_tag { result = BlockNode.new(val[0], val[1]) }
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| block_tag document end_block_tag { result = BlockNode.new(val[0], val[2]) }
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;
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generic_block_tag
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: STMT_OPEN IDENTIFIER STMT_CLOSE { open_scope!; result = [val[1].value, []] }
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| STMT_OPEN IDENTIFIER parameter_list STMT_CLOSE { open_scope!; result = [val[1].value, val[2]] }
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;
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end_generic_block_tag
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: STMT_OPEN END STMT_CLOSE { result = close_scope! }
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;
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generic_block
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: generic_block_tag document end_generic_block_tag { result = GenericBlockNode.new(val[0].first, val[2], val[0].last) }
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;
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extends_statement
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: STMT_OPEN EXTENDS STRING STMT_CLOSE { result = val[2].value }
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| STMT_OPEN EXTENDS IDENTIFIER STMT_CLOSE { result = VariableNode.new(val[2].value) }
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;
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document_component
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: TEXT_BLOCK { result = TextNode.new(val[0].value) }
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| inject_statement
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| if_block
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| for_block
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| generic_block
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| block_block
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;
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document
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: document_component { push val[0] }
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| document document_component { push val[1] }
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| extends_statement { document.extends = val[0] }
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| document extends_statement { document.extends = val[1] }
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;
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---- header ----
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# racc_parser.rb : generated by racc
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---- inner ----
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