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B iological S cripting L anguage Jared Eng Jay Kota Igor Marfin Amna Qaiser Jared Eng Jay Kota Igor Marfin Amna Qaiser BSL
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Background / Overview Sequence handling DNA, RNA, amino acid etc… Nucleotides A, C, G, T, U, F, L, S, Y, C, etc … Sizeable number Massive amounts
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BSL Functionality Specializes in sequence manipulation, translation, and analysis Methods Access Search Align Map Translate
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Sample Script /* Here is a test script */ start method int TestMethod (Sequence a, Sequence b) Print: a, “myfile.txt”; return 0; end method; new Sequence dnaSeq1 type DNA = “AGGGAACCTT”; new Sequence dnaSeq2 type DNA = “AGGAACTC”; new int dnaSum; dnaSum = TestMethod: dnaSeq1, dnaSeq2; Print: dnaSum; /* End script */
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Syntax and Semantics Primitives and BSL objects (int vs Sequence) Sequence has “type” associated with it Properties: length, type, value Method calls: Align: Sequence, Sequence; User defined methods (Overloading)
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Architecture Overview Used ANTLR Invoke using java BSL_TreeParser Input:.bsl file Outputs java file and compiles the file
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BSL Implementation Method symbol tables Java Classes handle method calls Align is taken care of by Aligner Uses Smith-Waterman Algorithm Approach to implementation Modularity allowed for faster coding time Easier testing
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Testing Plan Phase I BSL Libraries Lexer and Parser (Grammar) Phase II Code Generator Combined Testing
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Lessons and Future Goals Start early Keep minutes Stay focused Incorporate more algorithms Access online databases Make millions and retire early
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