| author | Christian Urban <christian.urban@kcl.ac.uk> |
| Wed, 01 Oct 2025 10:37:20 +0100 | |
| changeset 996 | e37c4d6c08fe |
| parent 992 | c3dd3a98f919 |
| permissions | -rw-r--r-- |
| 630 | 1 |
% !TEX program = xelatex |
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\documentclass{article}
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\usepackage{../style}
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\usepackage{../langs}
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\usepackage[normalem]{ulem}
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\begin{document}
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\section*{Coursework 2}
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\noindent This coursework is worth 10\% and is due on \cwTWO{} at
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16:00. You are asked to implement the Sulzmann \& Lu lexer for the |
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WHILE language. You can do the implementation in any programming |
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language you like, but you need to submit the source code with which |
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you answered the questions, otherwise a mark of 0\% will be |
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awarded. %You need to submit your written answers as pdf---see attached |
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% questionaire. Code send as code. |
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If you use Scala in your code, a |
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good place to start is the file \texttt{lexer.sc} and
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\texttt{token.sc} uploaded to KEATS. The template file on Github is
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called \texttt{cw02.sc}. The example files are in the subdirectory
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\texttt{examples}. The main function that will be tested is
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called \texttt{tokenise}. The marks will be distributed such that
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3 marks are given for the correct \texttt{WHILE\_REGS} regular
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expression; 5 marks for the correct \texttt{inj} and \texttt{mkeps}
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definitions; and two marks when \texttt{tokenise} produces the correct
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results for the example files. |
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\subsection*{Testing\alert}
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For the marking, the functions that will be tested are |
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\texttt{tokenise}, \texttt{inj} and \texttt{mkeps}.
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\subsection*{Disclaimer\alert}
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It should be understood that the work you submit represents |
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your own effort. |
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%You have not copied from anyone else |
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%including CoPilot, ChatGPT \& Co. |
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An |
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exception is the Scala code from KEATS and the code I showed |
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during the lectures, which you can both freely use. You can |
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also use your own code from CW~1. |
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%But do not |
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%be tempted to ask Github Copilot for help or do any other |
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%shenanigans like this! |
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\subsection*{Task 1}
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To implement a lexer for the WHILE language, you first |
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need to design the appropriate regular expressions for the |
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following eleven syntactic entities: |
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\begin{enumerate}
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\item keywords are |
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\begin{center}
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\texttt{while},
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\texttt{if},
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\texttt{then},
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\texttt{else},
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\texttt{do},
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\texttt{for},
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\texttt{upto},
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\texttt{true},
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\texttt{false},
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\texttt{read},
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\texttt{write},
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\texttt{skip}
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\end{center}
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\item operators are: |
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\texttt{+},
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\texttt{-},
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\texttt{*},
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\texttt{\%},
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\texttt{/},
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\texttt{==},
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\texttt{!=},
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\texttt{>},
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\texttt{<},
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\texttt{<=},
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\texttt{>=},
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\texttt{:=},
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\texttt{\&\&},
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\texttt{||}
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\item letters are uppercase and lowercase |
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\item symbols are letters plus the characters |
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\texttt{.},
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\texttt{\_},
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\texttt{>},
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\texttt{<},
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\texttt{=},
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\texttt{;},
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\texttt{,} (comma),
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\texttt{$\backslash$} and
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\texttt{:}
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\item parentheses are \texttt{(}, \texttt{\{}, \texttt{)} and \texttt{\}}
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\item digits are \pcode{0} to \pcode{9}
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\item there are semicolons \texttt{;}
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\item whitespaces are either \texttt{" "} (one or more) or \texttt{$\backslash$n} or
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\texttt{$\backslash$t} or \texttt{$\backslash$r}
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\item identifiers are letters followed by underscores \texttt{\_\!\_}, letters
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or digits |
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\item for numbers give |
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a regular expression that can recognise \pcode{0}, but not numbers
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with leading zeroes, such as \pcode{001}
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\item strings are enclosed by double quotes, like \texttt{"\ldots"}, and consisting of
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symbols, digits, parentheses, whitespaces and \texttt{$\backslash$n} (note the latter is not the escaped version but \texttt{$\backslash$} followed by \texttt{n}, otherwise we would not be able to indicate in our strings when to write a newline).
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\item comments start with \texttt{//} and contain symbols, spaces, parentheses and digits until the end-of-the-line markers
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\item endo-of-line-markers are \texttt{$\backslash$n} and \texttt{$\backslash$r$\backslash$n}
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\end{enumerate}
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\noindent |
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You can use the basic regular expressions |
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\[ |
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\ZERO,\; \ONE,\; c,\; r_1 + r_2,\; r_1 \cdot r_2,\; r^* |
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\] |
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\noindent |
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but also the following extended regular expressions |
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\begin{center}
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\begin{tabular}{ll}
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$[c_1,c_2,\ldots,c_n]$ & a set of characters\\ |
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$r^+$ & one or more times $r$\\ |
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$r^?$ & optional $r$\\ |
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$r^{\{n\}}$ & n-times $r$\\
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\end{tabular}
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\end{center}
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\noindent |
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Later on you will also need the record regular expression: |
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\begin{center}
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\begin{tabular}{ll}
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$REC(x:r)$ & record regular expression\\ |
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\end{tabular}
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\end{center}
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\noindent Try to design your regular expressions to be as |
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small as possible. For example you should use character sets |
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for identifiers and numbers. Feel free to use the general |
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character constructor \textit{CFUN} introduced in CW 1.
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\subsection*{Task 2}
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Implement the Sulzmann \& Lu lexer from the lectures. For |
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this you need to implement the functions $nullable$ and $der$ |
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(you can use your code from CW~1), as well as $mkeps$ and |
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$inj$. These functions need to be appropriately extended for |
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the extended regular expressions from Task 1. The definitions |
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you need to create are: |
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\begin{center}
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\begin{tabular}{@ {}l@ {\hspace{2mm}}c@ {\hspace{2mm}}l@ {}}
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$mkeps([c_1,c_2,\ldots,c_n])$ & $\dn$ & $?$\\ |
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$mkeps(r^+)$ & $\dn$ & $?$\\ |
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$mkeps(r^?)$ & $\dn$ & $?$\\ |
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$mkeps(r^{\{n\}})$ & $\dn$ & $?$\medskip\\
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$inj\, ([c_1,c_2,\ldots,c_n])\,c\,\ldots$ & $\dn$ & $?$\\ |
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$inj\, (r^+)\,c\,\ldots$ & $\dn$ & $?$\\ |
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$inj\, (r^?)\,c\,\ldots$ & $\dn$ & $?$\\ |
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$inj\, (r^{\{n\}})\,c\,\ldots$ & $\dn$ & $?$\\
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\end{tabular}
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\end{center}
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\noindent where $inj$ takes three arguments: a regular |
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expression, a character and a value. Test your lexer code |
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with at least the two small examples below: |
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\begin{center}
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\begin{tabular}{ll}
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regex: & string:\smallskip\\ |
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$a^{\{3\}}$ & $aaa$\\
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| 458 | 182 |
$(a + \ONE)^{\{3\}}$ & $aa$
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\end{tabular}
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\end{center}
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\noindent Both strings should be successfully lexed by the |
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respective regular expression, that means the lexer returns |
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in both examples a value. |
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|
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|
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Also add the record regular expression from the |
| 968 | 193 |
lectures to your lexer and complete the function |
194 |
\pcode{env} so that it returns all assignments from a value (this then
|
|
195 |
allows you to extract easily the tokens from a value in the next |
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| 986 | 196 |
task).\medskip |
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|
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\noindent |
| 968 | 199 |
Finally make that the function \texttt{lexing\_simp} generates
|
| 992 | 200 |
with the regular expression from Task 1 for the string |
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\begin{center}
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\code{"read n;"}
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\end{center}
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\noindent |
| 968 | 207 |
the following pairs: |
208 |
||
209 |
\begin{center}
|
|
210 |
\texttt{List((k,read), (w, ), (i,n), (s,;))}
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|
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\end{center}
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|
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||
213 |
||
214 |
||
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|
|
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|
| 986 | 217 |
\subsection*{Task 3}
|
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|
| 992 | 219 |
Make sure your lexer from Task 2 also simplifies regular expressions after |
| 968 | 220 |
each derivation step and rectifies the computed values after each |
221 |
injection. Use this lexer to tokenise the six WHILE programs |
|
222 |
in the \texttt{examples} directory. Make sure that the \texttt{tokenise}
|
|
223 |
function filters out whitespaces and comments.\bigskip |
|
|
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224 |
|
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| 968 | 226 |
% \begin{figure}[h]
|
227 |
% \mbox{\lstinputlisting[language=While,xleftmargin=10mm]{../cwtests/cw02/fib.while}}
|
|
228 |
% \caption{Fibonacci program in the WHILE language.\label{fib}}
|
|
229 |
% \end{figure}
|
|
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| 968 | 231 |
% \begin{figure}[h]
|
232 |
% \mbox{\lstinputlisting[language=While,xleftmargin=10mm]{../cwtests/cw02/loops.while}}
|
|
233 |
% \caption{The three-nested-loops program in the WHILE language.
|
|
234 |
% (Usually used for timing measurements.)\label{loop}}
|
|
235 |
% \end{figure}
|
|
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| 968 | 237 |
% \begin{figure}[h]
|
238 |
% \mbox{\lstinputlisting[language=While,xleftmargin=10mm]{../cwtests/cw02/factors.while}}
|
|
239 |
% \caption{A program that calculates factors for numbers in the WHILE
|
|
240 |
% language.\label{factors}}
|
|
241 |
% \end{figure}
|
|
| 659 | 242 |
|
| 968 | 243 |
% \begin{figure}[h]
|
244 |
% \mbox{\lstinputlisting[language=While,xleftmargin=10mm]{../cwtests/cw02/collatz2.while}}
|
|
245 |
% \caption{A program that calculates the Collatz series for numbers
|
|
246 |
% between 1 and 100.\label{collatz}}
|
|
247 |
% \end{figure}
|
|
| 748 | 248 |
|
| 968 | 249 |
% \clearpage |
250 |
% \newpage |
|
251 |
% \section*{Answers}
|
|
| 918 | 252 |
|
| 968 | 253 |
% \mbox{}
|
| 918 | 254 |
|
| 968 | 255 |
% \noindent |
| 986 | 256 |
% \textbf{Task 2:}\\ (Use mathematical notation, such as $r^+$, rather than code, such as \code{PLUS(r)})
|
| 918 | 257 |
|
| 968 | 258 |
% \begin{center}
|
259 |
% \def\arraystretch{1.6}
|
|
260 |
% \begin{tabular}{@ {}l@ {\hspace{2mm}}c@ {\hspace{2mm}}l@ {}}
|
|
261 |
% $mkeps([c_1,c_2,\ldots,c_n])$ & $\dn$ & \uline{\hspace{8cm}}\\
|
|
262 |
% $mkeps(r^+)$ & $\dn$ & \uline{\hspace{8cm}}\\
|
|
263 |
% $mkeps(r^?)$ & $\dn$ & \uline{\hspace{8cm}}\\
|
|
264 |
% $mkeps(r^{\{n\}})$ & $\dn$ & \uline{\hspace{8cm}}\bigskip\\
|
|
265 |
% $inj\, ([c_1,c_2,\ldots,c_n])\,c\,\ldots$ & $\dn$ & \uline{\hspace{8cm}}\\
|
|
266 |
% $inj\, (r^+)\,c\,\ldots$ & $\dn$ & \uline{\hspace{8cm}}\\
|
|
267 |
% $inj\, (r^?)\,c\,\ldots$ & $\dn$ & \uline{\hspace{8cm}}\\
|
|
268 |
% $inj\, (r^{\{n\}})\,c\,\ldots$ & $\dn$ & \uline{\hspace{8cm}}\\
|
|
269 |
% \end{tabular}
|
|
270 |
% \end{center}\bigskip
|
|
| 918 | 271 |
|
| 968 | 272 |
% \noindent |
273 |
% Tokens for \code{"read n;"}\\
|
|
| 918 | 274 |
|
| 968 | 275 |
% \noindent |
276 |
% \uline{\hfill}\medskip
|
|
| 918 | 277 |
|
| 968 | 278 |
% \noindent |
279 |
% \uline{\hfill}\medskip
|
|
| 918 | 280 |
|
| 968 | 281 |
% \noindent |
282 |
% \uline{\hfill}\medskip
|
|
| 918 | 283 |
|
| 968 | 284 |
% \noindent |
285 |
% \uline{\hfill}\medskip
|
|
| 918 | 286 |
|
287 |
||
|
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parents:
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changeset
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288 |
\end{document}
|
|
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parents:
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changeset
|
289 |
|
|
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parents:
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changeset
|
290 |
%%% Local Variables: |
|
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parents:
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changeset
|
291 |
%%% mode: latex |
|
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|
292 |
%%% TeX-master: t |
|
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293 |
%%% End: |