cws/main_cw03.tex
author Christian Urban <christian.urban@kcl.ac.uk>
Thu, 10 Nov 2022 19:41:04 +0000
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permissions -rw-r--r--
updated
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% !TEX program = xelatex
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\documentclass{article}
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\usepackage{../styles/style}
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\usepackage{../styles/langs}
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\usepackage{disclaimer}
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\usepackage{tikz}
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\usepackage{pgf}
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\usepackage{pgfplots}
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\usepackage{stackengine}
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%% \usepackage{accents}
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\newcommand\barbelow[1]{\stackunder[1.2pt]{#1}{\raisebox{-4mm}{\boldmath$\uparrow$}}}
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\begin{filecontents}{re-python2.data}
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1 0.033
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5 0.036
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18 0.059
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19 0.084 
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20 0.141
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21 0.248
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22 0.485
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23 0.878
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24 1.71
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25 3.40
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26 7.08
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27 14.12
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\end{filecontents}
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\begin{filecontents}{re-java.data}
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5  0.00298
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10  0.00418
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15  0.00996
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16  0.01710
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17  0.03492
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18  0.03303
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19  0.05084
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20  0.10177
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21  0.19960
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23  0.82234
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24  1.70251
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25  3.36112
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26  6.63998
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27  13.35120
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28  29.81185
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\end{filecontents}
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\begin{filecontents}{re-js.data}
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5   0.061
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20  0.070
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23  0.131
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25  0.308
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26  0.564
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28  1.994
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30  7.648
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31  15.881 
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32  32.190
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\end{filecontents}
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\begin{filecontents}{re-java9.data}
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1000  0.01410
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2000  0.04882
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3000  0.10609
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4000  0.17456
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5000  0.27530
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6000  0.41116
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7000  0.53741
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8000  0.70261
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9000  0.93981
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10000 0.97419
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11000 1.28697
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12000 1.51387
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14000 2.07079
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16000 2.69846
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20000 4.41823
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24000 6.46077
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26000 7.64373
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30000 9.99446
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34000 12.966885
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38000 16.281621
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42000 19.180228
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46000 21.984721
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50000 26.950203
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60000 43.0327746
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\end{filecontents}
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\begin{filecontents}{re-swift.data}
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5   0.001
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10  0.001
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15  0.009
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20  0.178
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23  1.399
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24  2.893
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26  11.357
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27  22.430
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\end{filecontents}
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\begin{filecontents}{re-dart.data}
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20 0.042
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21 0.084
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22 0.190
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23 0.340
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25 1.369
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26 2.700
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28 10.908
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\end{filecontents}
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\begin{document}
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% BF IDE
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% https://www.microsoft.com/en-us/p/brainf-ck/9nblgggzhvq5
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\section*{Main Part 3 (Scala, 7 Marks)}
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\mbox{}\hfill\textit{``Java is the most distressing thing to happen to computing since MS-DOS.''}\smallskip\\
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\mbox{}\hfill\textit{ --- Alan Kay, the inventor of object-oriented programming}\bigskip\medskip
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\noindent
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This part is about a regular expression matcher described by
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Brzozowski in 1964.  The
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background is that ``out-of-the-box'' regular expression matching in
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mainstream languages like Java, JavaScript and Python can sometimes be
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excruciatingly slow.  You are supposed to implement a regular
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expression matcher that is much, much faster. \bigskip
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\IMPORTANTNONE{}
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\noindent
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Also note that the running time of each part will be restricted to a
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maximum of 30 seconds on my laptop.  
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\DISCLAIMER{}
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\subsection*{Reference Implementation}
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This Scala assignment comes with a reference implementation in form of
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a \texttt{jar}-file. This allows you to run any test cases on your own
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computer. For example you can call Scala on the command line with the
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option \texttt{-cp re.jar} and then query any function from the
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\texttt{re.scala} template file. As usual you have to prefix the calls
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with \texttt{M3} or import this object.  Since some tasks
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are time sensitive, you can check the reference implementation as
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follows: if you want to know, for example, how long it takes to match
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strings of $a$'s using the regular expression $(a^*)^*\cdot b$ you can
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query as follows:
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\begin{lstlisting}[xleftmargin=1mm,numbers=none,basicstyle=\ttfamily\small]
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$ scala -cp re.jar
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scala> import M3._  
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scala> for (i <- 0 to 5000000 by 500000) {
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  | println(f"$i: ${time_needed(2, matcher(EVIL, "a" * i))}%.5f secs.")
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  | }
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0: 0.00002 secs.
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500000: 0.10608 secs.
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1000000: 0.22286 secs.
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1500000: 0.35982 secs.
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2000000: 0.45828 secs.
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2500000: 0.59558 secs.
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3000000: 0.73191 secs.
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3500000: 0.83499 secs.
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4000000: 0.99149 secs.
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4500000: 1.15395 secs.
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5000000: 1.29659 secs.
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\end{lstlisting}%$
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\subsection*{Preliminaries}
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The task is to implement a regular expression matcher that is based on
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derivatives of regular expressions. Most of the functions are defined by
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recursion over regular expressions and can be elegantly implemented
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using Scala's pattern-matching. The implementation should deal with the
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following regular expressions, which have been predefined in the file
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\texttt{re.scala}:
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\begin{center}
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\begin{tabular}{lcll}
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  $r$ & $::=$ & $\ZERO$     & cannot match anything\\
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      &   $|$ & $\ONE$      & can only match the empty string\\
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      &   $|$ & $c$         & can match a single character (in this case $c$)\\
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      &   $|$ & $r_1 + r_2$ & can match a string either with $r_1$ or with $r_2$\\
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  &   $|$ & $r_1\cdot r_2$ & can match the first part of a string with $r_1$ and\\
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          &  & & then the second part with $r_2$\\
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      &   $|$ & $r^*$       & can match a string with zero or more copies of $r$\\
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\end{tabular}
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\end{center}
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\noindent 
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Why? Regular expressions are
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one of the simplest ways to match patterns in text, and
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are endlessly useful for searching, editing and analysing data in all
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sorts of places (for example analysing network traffic in order to
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detect security breaches). However, you need to be fast, otherwise you
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will stumble over problems such as recently reported at
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{\small
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\begin{itemize}
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\item[$\bullet$] \url{https://blog.cloudflare.com/details-of-the-cloudflare-outage-on-july-2-2019}  
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\item[$\bullet$] \texttt{\href{https://web.archive.org/web/20160801163029/https://www.stackstatus.net/post/147710624694/outage-postmortem-july-20-2016}{https://stackstatus.net/post/147710624694/outage-postmortem-july-20-2016}}
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\item[$\bullet$] \url{https://vimeo.com/112065252}
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\item[$\bullet$] \url{https://davidvgalbraith.com/how-i-fixed-atom}  
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\end{itemize}}
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% Knowing how to match regular expressions and strings will let you
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% solve a lot of problems that vex other humans.
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\subsubsection*{Tasks (file re.scala)}
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The file \texttt{re.scala} has already a definition for regular
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expressions and also defines some handy shorthand notation for regular
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expressions. The notation in this coursework description matches up
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with the code as follows:
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\begin{center}
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  \begin{tabular}{rcl@{\hspace{10mm}}l}
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    & & code: & shorthand:\smallskip \\ 
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  $\ZERO$ & $\mapsto$ & \texttt{ZERO}\\
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  $\ONE$  & $\mapsto$ & \texttt{ONE}\\
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  $c$     & $\mapsto$ & \texttt{CHAR(c)}\\
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  $\sum rs$ & $\mapsto$ & \texttt{ALTs(rs)}\\  
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  $r_1 + r_2$ & $\mapsto$ & \texttt{ALT(r1, r2)} & \texttt{r1 | r2}\\
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  $\prod rs$ & $\mapsto$ & \texttt{SEQs(rs)}\\  
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  $r_1 \cdot r_2$ & $\mapsto$ & \texttt{SEQ(r1, r2)} & \texttt{r1 $\sim$ r2}\\
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  $r^*$ & $\mapsto$ &  \texttt{STAR(r)} & \texttt{r.\%}
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\end{tabular}    
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\end{center}  
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\noindent
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The alternative regular expressions comes in two versions: one is
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binary (+ / \texttt{ALT}) and the other is n-ary ($\sum$ /
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\texttt{ALTs}). The latter takes a list of regular expressions as
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argument.  In what follows we shall use $rs$ to stand for lists of
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regular expressions. When the list is empty, we shall write $\sum\,[]$;
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if it is non-empty, we sometimes write $\sum\,[r_1,..., r_n]$.
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The binary alternative can be seen as an abbreviation,
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that is $r_1 + r_2 \dn \sum\,[r_1, r_2]$. As a result we can ignore the
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binary version and only implement the n-ary alternative. Similarly
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the sequence regular expression is only implemented with lists and the
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binary version can be obtained by defining $r_1 \cdot r_2 \dn \prod\,[r_1, r_2]$.
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\begin{itemize}
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\item[(1)] Implement a function, called \textit{nullable}, by
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  recursion over regular expressions. This function tests whether a
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  regular expression can match the empty string. This means given a
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  regular expression, it either returns true or false. The function
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  \textit{nullable}
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  is defined as follows:
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\begin{center}
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\begin{tabular}{lcl}
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$\textit{nullable}(\ZERO)$ & $\dn$ & $\textit{false}$\\
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$\textit{nullable}(\ONE)$  & $\dn$ & $\textit{true}$\\
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$\textit{nullable}(c)$     & $\dn$ & $\textit{false}$\\
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$\textit{nullable}(\sum rs)$ & $\dn$ & $\exists r \in rs.\;\textit{nullable}(r)$\\
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$\textit{nullable}(\prod rs)$ & $\dn$ & $\forall r\in rs.\;\textit{nullable}(r)$\\
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$\textit{nullable}(r^*)$ & $\dn$ & $\textit{true}$\\
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\end{tabular}
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\end{center}~\hfill[0.5 Marks]
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\item[(2)] Implement a function, called \textit{der}, by recursion over
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  regular expressions. It takes a character and a regular expression
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  as arguments and calculates the \emph{derivative} of a regular expression according
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  to the rules:
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\begin{center}
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\begin{tabular}{lcl}
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$\textit{der}\;c\;(\ZERO)$ & $\dn$ & $\ZERO$\\
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$\textit{der}\;c\;(\ONE)$  & $\dn$ & $\ZERO$\\
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$\textit{der}\;c\;(d)$     & $\dn$ & $\textit{if}\; c = d\;\textit{then} \;\ONE \; \textit{else} \;\ZERO$\\
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$\textit{der}\;c\;(\sum\;[r_1,..,r_n])$ & $\dn$ & $\sum\;[\textit{der}\;c\;r_1,..,\textit{der}\;c\;r_n]$\\
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$\textit{der}\;c\;(\prod\;[])$ & $\dn$ & $\ZERO$\\  
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$\textit{der}\;c\;(\prod\;r\!::\!rs)$ & $\dn$ & $\textit{if}\;\textit{nullable}(r)$\\
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      & & $\textit{then}\;(\prod\;(\textit{der}\;c\;r)\!::\!rs) + (\textit{der}\;c\;(\prod rs))$\\
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      & & $\textit{else}\;(\prod\;(\textit{der}\;c\;r)\!::\! rs)$\\
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$\textit{der}\;c\;(r^*)$ & $\dn$ & $(\textit{der}\;c\;r)\cdot (r^*)$\\
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\end{tabular}
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\end{center}
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\mbox{}\hfill\mbox{[1 Mark]}
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\item[(3)] We next want to simplify regular expressions: essentially
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  we want to remove $\ZERO$ in regular expressions like $r + \ZERO$
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  and $\ZERO + r$.  However, our n-ary alternative takes a list of
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  regular expressions as argument, and we therefore need a more general
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  ``denesting'' function, which deletes $\ZERO$s and ``spills out'' nested
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  $\sum$s.  This function, called \texttt{denest}, should analyse a
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  list of regular expressions, say $rs$, as follows:
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  \begin{center}
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    \begin{tabular}{lllll}
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      1) &$rs = []$                & $\dn$ & $[]$ & (empty list)\\
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      2) &$rs = \ZERO :: rest$     & $\dn$ & $\texttt{denest}\;rest$ & (throw away $\ZERO$)\\
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      3) &$rs = (\sum rs) :: rest$ & $\dn$ & $rs ::: \texttt{denest}\;rest$ & (spill out $\sum$)\\
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      4) &$rs = r :: rest$         & $\dn$ & $r :: \texttt{denest}\;rest$ & (otherwise)\\
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    \end{tabular}  
ea39bbc8d98d updated
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parents: 390
diff changeset
   306
  \end{center}  
ea39bbc8d98d updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 390
diff changeset
   307
421
Christian Urban <christian.urban@kcl.ac.uk>
parents: 415
diff changeset
   308
  The first clause states that empty lists cannot be further
425
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   309
  denested. The second removes the first $\ZERO$ from the list and recurses.
396
ea39bbc8d98d updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 390
diff changeset
   310
  The third is when the first regular expression is an \texttt{ALTs}, then
ea39bbc8d98d updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 390
diff changeset
   311
  the content of this alternative should be spilled out and appended
425
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   312
  with the denested rest of the list. The last case is for all other
396
ea39bbc8d98d updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 390
diff changeset
   313
  cases where the head of the list is not $\ZERO$ and not an \texttt{ALTs},
425
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   314
  then we just keep the head of the list and denest the rest.\\
396
ea39bbc8d98d updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 390
diff changeset
   315
  \mbox{}\hfill\mbox{[1 Mark]}
ea39bbc8d98d updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 390
diff changeset
   316
425
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   317
\item[(4)] Implement the function \texttt{flts} which flattens our
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   318
  n-ary sequence regular expression $\prod$. Like \texttt{denest}, this
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   319
  function is intended to delete $\ONE$s and spill out nested $\prod$s.
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   320
  Unfortunately, there is a special case to do with $\ZERO$: If this function encounters a $\ZERO$, then
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   321
  the whole ``product'' should be $\ZERO$. The problem is that the $\ZERO$ can be anywhere
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   322
  inside the list. The easiest way to implement this function is therefore by using an
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   323
  accumulator, which when called is set to \texttt{Nil}. This means \textit{flts} takes
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   324
  two arguments (which are both lists of regular expressions)
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   325
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   326
  \[
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   327
  \texttt{flts}\;rs\;acc  
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   328
  \]
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   329
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   330
  This function analyses the list $rs$ as follows
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   331
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   332
  \begin{center}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   333
    \begin{tabular}{@{}lllll@{}}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   334
      1) &$rs = []$                   & $\dn$ & $acc$ & (empty list)\\
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   335
      2) &$rs = \ZERO :: rest$        & $\dn$ & $[\ZERO]$ & (special case for $\ZERO$)\\
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   336
      3) &$rs = \ONE :: rest$         & $\dn$ & $\texttt{flts}\,rest\,acc$ & (throw away $\ONE$)\\
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   337
      4) &$rs = (\prod rs) :: rest$ & $\dn$ & $\texttt{flts}\;rest\,(acc ::: rs)$ & (spill out $\prod$)\\
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   338
      5) &$rs = r :: rest$            & $\dn$ & $\texttt{flts}\;rest\,(acc ::: [r])$& (otherwise)\\
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   339
    \end{tabular}  
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   340
  \end{center}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   341
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   342
  In the first case we just return whatever has accumulated in
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   343
  $acc$. In the fourth case we spill out the $rs$ by appending the
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   344
  $rs$ to the end of the accumulator. Similarly in the last case we
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   345
  append the single regular expression $r$ to the end of the
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   346
  accumulator. I let you think why the ``end'' is needed. \mbox{}\hfill\mbox{[1 Mark]}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   347
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   348
\item[(5)] Before we can simplify regular expressions, we need what is often called
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   349
  \emph{smart constructors} for $\sum$ and $\prod$. While the ``normal'' constructors
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   350
  \texttt{ALTs} and \texttt{SEQs} give us alternatives and sequences, respectively, \emph{smart}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   351
  constructors might return something different depending on what list of regular expressions
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   352
  they are given as argument.
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   353
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   354
  \begin{center}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   355
  \begin{tabular}{@{}c@{\hspace{9mm}}c@{}}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   356
    \begin{tabular}{l@{\hspace{2mm}}l@{\hspace{1mm}}ll}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   357
      & $\sum^{smart}$\smallskip\\
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   358
      1) & $rs = []$  & $\dn$ & $\ZERO$\\ 
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   359
      2) & $rs = [r]$ & $\dn$ & $r$\\ \\
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   360
      3) & otherwise  & $\dn$ & $\sum\,rs$
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   361
    \end{tabular} &
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   362
    \begin{tabular}{l@{\hspace{2mm}}l@{\hspace{1mm}}ll}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   363
        & $\prod^{smart}$\smallskip\\              
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   364
        1) & $rs = []$ & $\dn$ & $\ONE$\\
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   365
        2a) & $rs = [\ZERO]$ & $\dn$ & $\ZERO$\\
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   366
        2b) & $rs = [r]$ & $\dn$ & $r$\\
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   367
        3) & otherwise  & $\dn$ & $\prod\,rs$
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   368
    \end{tabular}              
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   369
  \end{tabular}    
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   370
  \end{center}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   371
  \mbox{}\hfill\mbox{[0.5 Marks]}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   372
  
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   373
\item[(6)] Implement the function \textit{simp}, which recursively
224
1a45c9bcc77b updated
Christian Urban <urbanc@in.tum.de>
parents: 222
diff changeset
   374
  traverses a regular expression, and on the way up simplifies every
1a45c9bcc77b updated
Christian Urban <urbanc@in.tum.de>
parents: 222
diff changeset
   375
  regular expression on the left (see below) to the regular expression
1a45c9bcc77b updated
Christian Urban <urbanc@in.tum.de>
parents: 222
diff changeset
   376
  on the right, except it does not simplify inside ${}^*$-regular
425
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   377
  expressions and also does not simplify $\ZERO$, $\ONE$ and characters.
105
0f9f774c7697 updated
Christian Urban <christian dot urban at kcl dot ac dot uk>
parents: 100
diff changeset
   378
0f9f774c7697 updated
Christian Urban <christian dot urban at kcl dot ac dot uk>
parents: 100
diff changeset
   379
  \begin{center}
425
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   380
    \begin{tabular}{@{}l@{\hspace{3mm}}c@{\hspace{3mm}}ll@{}}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   381
      LHS: & & RHS:\smallskip\\
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   382
$\sum\;[r_1,..,r_n]$ & $\mapsto$ & $\sum^{smart}\;(\texttt{(denest + distinct)}[simp(r_1),..,simp(r_n)])$\\
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   383
      $\prod\;[r_1,..,r_n]$ & $\mapsto$ & $\prod^{smart}\;(\texttt{(flts)}[simp(r_1),..,simp(r_n)])$\\
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   384
      $r$ & $\mapsto$ & $r$ \quad (all other cases)
218
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   385
\end{tabular}
396
ea39bbc8d98d updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 390
diff changeset
   386
\end{center}
ea39bbc8d98d updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 390
diff changeset
   387
425
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   388
The first case is as follows: first apply $simp$ to all regular
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   389
expressions $r_1,.. ,r_n$; then denest the resulting list using
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   390
\texttt{denest}; after that remove all duplicates in this list (this can be
415
368556c8df56 updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 412
diff changeset
   391
done in Scala using the function
425
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   392
\texttt{\_.distinct}). Finally, you end up with a list of (simplified)
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   393
regular expressions; apply the smart constructor $\sum^{smart}$ to this list.
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   394
Similarly in the $\prod$ case: simplify first all regular
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   395
expressions $r_1,.. ,r_n$; then flatten the resulting list using \texttt{flts} and apply the
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   396
smart constructor $\prod^{smart}$ to the result. In all other cases, just return the
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   397
input $r$ as is.
415
368556c8df56 updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 412
diff changeset
   398
  
105
0f9f774c7697 updated
Christian Urban <christian dot urban at kcl dot ac dot uk>
parents: 100
diff changeset
   399
218
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   400
  For example the regular expression
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   401
  \[(r_1 + \ZERO) \cdot \ONE + ((\ONE + r_2) + r_3) \cdot (r_4 \cdot \ZERO)\]
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   402
425
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   403
  simplifies to just $r_1$. \mbox{}\hfill\mbox{[1 Mark]}
218
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   404
425
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   405
\item[(7)] Implement two functions: The first, called \textit{ders},
218
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   406
  takes a list of characters and a regular expression as arguments, and
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   407
  builds the derivative w.r.t.~the list as follows:
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   408
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   409
\begin{center}
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   410
\begin{tabular}{lcl}
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   411
$\textit{ders}\;(Nil)\;r$ & $\dn$ & $r$\\
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   412
  $\textit{ders}\;(c::cs)\;r$  & $\dn$ &
425
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   413
    $\textit{ders}\;cs\;(\textit{simp}\,(\textit{der}\;c\;r))$\\
218
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   414
\end{tabular}
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   415
\end{center}
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   416
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   417
Note that this function is different from \textit{der}, which only
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   418
takes a single character.
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   419
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   420
The second function, called \textit{matcher}, takes a string and a
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   421
regular expression as arguments. It builds first the derivatives
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   422
according to \textit{ders} and after that tests whether the resulting
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   423
derivative regular expression can match the empty string (using
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   424
\textit{nullable}).  For example the \textit{matcher} will produce
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   425
true for the regular expression $(a\cdot b)\cdot c$ and the string
425
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   426
$abc$, but false if you give it the string $ab$. \hfill[0.5 Mark]
218
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   427
425
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   428
\item[(8)] Implement a function, called \textit{size}, by recursion
218
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   429
  over regular expressions. If a regular expression is seen as a tree,
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   430
  then \textit{size} should return the number of nodes in such a
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   431
  tree. Therefore this function is defined as follows:
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   432
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   433
\begin{center}
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   434
\begin{tabular}{lcl}
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   435
$\textit{size}(\ZERO)$ & $\dn$ & $1$\\
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   436
$\textit{size}(\ONE)$  & $\dn$ & $1$\\
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   437
$\textit{size}(c)$     & $\dn$ & $1$\\
396
ea39bbc8d98d updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 390
diff changeset
   438
$\textit{size}(\sum\,[r_1,..,r_n]$ & $\dn$ & $1 + \textit{size}(r_1) + ... + \textit{size}(r_n)$\\
425
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   439
$\textit{size}(\prod\,[r_1,..,r_n]$ & $\dn$ & $1 + \textit{size}(r_1) + ... + \textit{size}(r_n)$\\
218
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   440
$\textit{size}(r^*)$ & $\dn$ & $1 + \textit{size}(r)$\\
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   441
\end{tabular}
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   442
\end{center}
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   443
224
1a45c9bcc77b updated
Christian Urban <urbanc@in.tum.de>
parents: 222
diff changeset
   444
You can use \textit{size} in order to test how much the ``evil'' regular
218
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   445
expression $(a^*)^* \cdot b$ grows when taking successive derivatives
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   446
according the letter $a$ without simplification and then compare it to
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   447
taking the derivative, but simplify the result.  The sizes
396
ea39bbc8d98d updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 390
diff changeset
   448
are given in \texttt{re.scala}. \hfill[0.5 Marks]
221
d061f3a94fa7 updated
Christian Urban <urbanc@in.tum.de>
parents: 218
diff changeset
   449
425
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   450
\item[(9)] You do not have to implement anything specific under this
221
d061f3a94fa7 updated
Christian Urban <urbanc@in.tum.de>
parents: 218
diff changeset
   451
  task.  The purpose here is that you will be marked for some ``power''
d061f3a94fa7 updated
Christian Urban <urbanc@in.tum.de>
parents: 218
diff changeset
   452
  test cases. For example can your matcher decide within 30 seconds
d061f3a94fa7 updated
Christian Urban <urbanc@in.tum.de>
parents: 218
diff changeset
   453
  whether the regular expression $(a^*)^*\cdot b$ matches strings of the
d061f3a94fa7 updated
Christian Urban <urbanc@in.tum.de>
parents: 218
diff changeset
   454
  form $aaa\ldots{}aaaa$, for say 1 Million $a$'s. And does simplification
d061f3a94fa7 updated
Christian Urban <urbanc@in.tum.de>
parents: 218
diff changeset
   455
  simplify the regular expression
d061f3a94fa7 updated
Christian Urban <urbanc@in.tum.de>
parents: 218
diff changeset
   456
d061f3a94fa7 updated
Christian Urban <urbanc@in.tum.de>
parents: 218
diff changeset
   457
  \[
d061f3a94fa7 updated
Christian Urban <urbanc@in.tum.de>
parents: 218
diff changeset
   458
  \texttt{SEQ(SEQ(SEQ(..., ONE | ONE) , ONE | ONE), ONE | ONE)}
d061f3a94fa7 updated
Christian Urban <urbanc@in.tum.de>
parents: 218
diff changeset
   459
  \]  
d061f3a94fa7 updated
Christian Urban <urbanc@in.tum.de>
parents: 218
diff changeset
   460
d061f3a94fa7 updated
Christian Urban <urbanc@in.tum.de>
parents: 218
diff changeset
   461
  \noindent correctly to just \texttt{ONE}, where \texttt{SEQ} is nested
245
744496a2bade added marking
Christian Urban <urbanc@in.tum.de>
parents: 224
diff changeset
   462
  50 or more times?\\
396
ea39bbc8d98d updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 390
diff changeset
   463
  \mbox{}\hfill[1 Mark]
105
0f9f774c7697 updated
Christian Urban <christian dot urban at kcl dot ac dot uk>
parents: 100
diff changeset
   464
\end{itemize}
0f9f774c7697 updated
Christian Urban <christian dot urban at kcl dot ac dot uk>
parents: 100
diff changeset
   465
218
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   466
\subsection*{Background}
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   467
396
ea39bbc8d98d updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 390
diff changeset
   468
Although easily implementable in Scala (ok maybe the \texttt{simp} functions and
425
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   469
the constructors \texttt{ALTs}/\texttt{SEQs} needs a bit more thinking), the idea behind the
396
ea39bbc8d98d updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 390
diff changeset
   470
derivative function might not so easy to be seen. To understand its
ea39bbc8d98d updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 390
diff changeset
   471
purpose better, assume a regular expression $r$ can match strings of
ea39bbc8d98d updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 390
diff changeset
   472
the form $c\!::\!cs$ (that means strings which start with a character
ea39bbc8d98d updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 390
diff changeset
   473
$c$ and have some rest, or tail, $cs$). If you take the derivative of
ea39bbc8d98d updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 390
diff changeset
   474
$r$ with respect to the character $c$, then you obtain a regular
ea39bbc8d98d updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 390
diff changeset
   475
expression that can match all the strings $cs$.  In other words, the
ea39bbc8d98d updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 390
diff changeset
   476
regular expression $\textit{der}\;c\;r$ can match the same strings
ea39bbc8d98d updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 390
diff changeset
   477
$c\!::\!cs$ that can be matched by $r$, except that the $c$ is chopped
ea39bbc8d98d updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 390
diff changeset
   478
off.
218
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   479
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   480
Assume now $r$ can match the string $abc$. If you take the derivative
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   481
according to $a$ then you obtain a regular expression that can match
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   482
$bc$ (it is $abc$ where the $a$ has been chopped off). If you now
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   483
build the derivative $\textit{der}\;b\;(\textit{der}\;a\;r)$ you
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   484
obtain a regular expression that can match the string $c$ (it is $bc$
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   485
where $b$ is chopped off). If you finally build the derivative of this
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   486
according $c$, that is
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   487
$\textit{der}\;c\;(\textit{der}\;b\;(\textit{der}\;a\;r))$, you obtain
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   488
a regular expression that can match the empty string. You can test
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   489
whether this is indeed the case using the function nullable, which is
425
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   490
what the matcher you have implemented is doing.
218
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   491
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   492
The purpose of the $\textit{simp}$ function is to keep the regular
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   493
expressions small. Normally the derivative function makes the regular
425
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   494
expression bigger (see the \texttt{SEQs} case and the example in Task (2)) and the
218
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   495
algorithm would be slower and slower over time. The $\textit{simp}$
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   496
function counters this increase in size and the result is that the
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   497
algorithm is fast throughout.  By the way, this algorithm is by Janusz
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   498
Brzozowski who came up with the idea of derivatives in 1964 in his PhD
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   499
thesis.
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   500
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   501
\begin{center}\small
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   502
\url{https://en.wikipedia.org/wiki/Janusz_Brzozowski_(computer_scientist)}
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   503
\end{center}
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   504
105
0f9f774c7697 updated
Christian Urban <christian dot urban at kcl dot ac dot uk>
parents: 100
diff changeset
   505
218
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   506
If you want to see how badly the regular expression matchers do in
425
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   507
Java\footnote{Version 8 and below; Version 9 and above does not seem
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   508
  to be as catastrophic, but still much worse than the regular
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   509
  expression matcher based on derivatives. BTW, Scala uses the regular
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   510
  expression matcher provided by the Java libraries. So is just as bad.}, JavaScript,
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   511
Python Swift and Dart with the ``evil'' regular expression
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   512
$(a^*)^*\cdot b$, then have a look at the graphs below (you can try it
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   513
out for yourself: have a look at the files
351
97d01d2a93b1 updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 311
diff changeset
   514
\texttt{catastrophic9.java}, \texttt{catastrophic.js},
425
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   515
\texttt{catastrophic.py} etc on KEATS). Compare this with the matcher
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   516
you have implemented. How long can a string of $a$'s be in your
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   517
matcher and still stay within the 30 seconds time limit? It should be
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   518
mu(uu)$^*$ch better than your off-the-shelf matcher in your
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   519
bog-standard language.
78
85f2f75abeeb updated
Christian Urban <urbanc@in.tum.de>
parents: 75
diff changeset
   520
218
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   521
\begin{center}
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   522
\begin{tabular}{@{}cc@{}}
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   523
\multicolumn{2}{c}{Graph: $(a^*)^*\cdot b$ and strings 
421
Christian Urban <christian.urban@kcl.ac.uk>
parents: 415
diff changeset
   524
           $\underbrace{a\ldots a}_{n}$}\medskip\\
218
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   525
  
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   526
\begin{tikzpicture}
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   527
\begin{axis}[
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   528
    xlabel={$n$},
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   529
    x label style={at={(1.05,0.0)}},
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   530
    ylabel={time in secs},
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   531
    y label style={at={(0.06,0.5)}},
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   532
    enlargelimits=false,
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   533
    xtick={0,5,...,30},
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   534
    xmax=33,
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   535
    ymax=45,
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   536
    ytick={0,5,...,40},
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   537
    scaled ticks=false,
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   538
    axis lines=left,
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   539
    width=6cm,
421
Christian Urban <christian.urban@kcl.ac.uk>
parents: 415
diff changeset
   540
    height=5.5cm, 
351
97d01d2a93b1 updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 311
diff changeset
   541
    legend entries={Python, Java 8, JavaScript, Swift, Dart},  
222
ec9cbf969edf updated
Christian Urban <urbanc@in.tum.de>
parents: 221
diff changeset
   542
    legend pos=north west,
ec9cbf969edf updated
Christian Urban <urbanc@in.tum.de>
parents: 221
diff changeset
   543
    legend cell align=left]
218
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   544
\addplot[blue,mark=*, mark options={fill=white}] table {re-python2.data};
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   545
\addplot[cyan,mark=*, mark options={fill=white}] table {re-java.data};
221
d061f3a94fa7 updated
Christian Urban <urbanc@in.tum.de>
parents: 218
diff changeset
   546
\addplot[red,mark=*, mark options={fill=white}] table {re-js.data};
351
97d01d2a93b1 updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 311
diff changeset
   547
\addplot[magenta,mark=*, mark options={fill=white}] table {re-swift.data};
97d01d2a93b1 updated
Christian Urban <christian.urban@kcl.ac.uk>
parents: 311
diff changeset
   548
\addplot[brown,mark=*, mark options={fill=white}] table {re-dart.data};
218
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   549
\end{axis}
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   550
\end{tikzpicture}
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   551
  & 
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   552
\begin{tikzpicture}
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   553
\begin{axis}[
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   554
    xlabel={$n$},
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   555
    x label style={at={(1.05,0.0)}},
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   556
    ylabel={time in secs},
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   557
    y label style={at={(0.06,0.5)}},
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   558
    %enlargelimits=false,
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   559
    %xtick={0,5000,...,30000},
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   560
    xmax=65000,
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   561
    ymax=45,
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   562
    ytick={0,5,...,40},
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   563
    scaled ticks=false,
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   564
    axis lines=left,
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   565
    width=6cm,
421
Christian Urban <christian.urban@kcl.ac.uk>
parents: 415
diff changeset
   566
    height=5.5cm, 
218
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   567
    legend entries={Java 9},  
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   568
    legend pos=north west]
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   569
\addplot[cyan,mark=*, mark options={fill=white}] table {re-java9.data};
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   570
\end{axis}
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   571
\end{tikzpicture}
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   572
\end{tabular}  
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   573
\end{center}
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   574
\newpage
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   575
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   576
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   577
ae788eeea8a0 updated
Christian Urban <urbanc@in.tum.de>
parents: 111
diff changeset
   578
6
aae256985251 updated
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   579
aae256985251 updated
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   580
\end{document}
aae256985251 updated
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   581
68
8da9e0c16194 updated
Christian Urban <urbanc@in.tum.de>
parents: 62
diff changeset
   582
425
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   583
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   584
For example given the regular expression $r = (a \cdot b) \cdot c$, the derivatives
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   585
w.r.t.~the characters $a$, $b$ and $c$ are
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   586
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   587
\begin{center}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   588
  \begin{tabular}{lcll}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   589
    $\textit{der}\;a\;r$ & $=$ & $(\ONE \cdot b)\cdot c$ & \quad($= r'$)\\
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   590
    $\textit{der}\;b\;r$ & $=$ & $(\ZERO \cdot b)\cdot c$\\
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   591
    $\textit{der}\;c\;r$ & $=$ & $(\ZERO \cdot b)\cdot c$
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   592
  \end{tabular}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   593
\end{center}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   594
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   595
Let $r'$ stand for the first derivative, then taking the derivatives of $r'$
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   596
w.r.t.~the characters $a$, $b$ and $c$ gives
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   597
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   598
\begin{center}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   599
  \begin{tabular}{lcll}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   600
    $\textit{der}\;a\;r'$ & $=$ & $((\ZERO \cdot b) + \ZERO)\cdot c$ \\
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   601
    $\textit{der}\;b\;r'$ & $=$ & $((\ZERO \cdot b) + \ONE)\cdot c$ & \quad($= r''$)\\
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   602
    $\textit{der}\;c\;r'$ & $=$ & $((\ZERO \cdot b) + \ZERO)\cdot c$
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   603
  \end{tabular}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   604
\end{center}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   605
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   606
One more example: Let $r''$ stand for the second derivative above,
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   607
then taking the derivatives of $r''$ w.r.t.~the characters $a$, $b$
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   608
and $c$ gives
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   609
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   610
\begin{center}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   611
  \begin{tabular}{lcll}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   612
    $\textit{der}\;a\;r''$ & $=$ & $((\ZERO \cdot b) + \ZERO) \cdot c + \ZERO$ \\
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   613
    $\textit{der}\;b\;r''$ & $=$ & $((\ZERO \cdot b) + \ZERO) \cdot c + \ZERO$\\
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   614
    $\textit{der}\;c\;r''$ & $=$ & $((\ZERO \cdot b) + \ZERO) \cdot c + \ONE$ &
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   615
    (is $\textit{nullable}$)                      
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   616
  \end{tabular}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   617
\end{center}
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   618
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   619
Note, the last derivative can match the empty string, that is it is \textit{nullable}.
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   620
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   621
6e990ae2c6a3 updated solutions and templates
Christian Urban <christian.urban@kcl.ac.uk>
parents: 423
diff changeset
   622
6
aae256985251 updated
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   623
%%% Local Variables: 
aae256985251 updated
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   624
%%% mode: latex
aae256985251 updated
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   625
%%% TeX-master: t
aae256985251 updated
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   626
%%% End: