doc-src/TutorialI/CTL/document/Base.tex
author wenzelm
Mon, 23 Oct 2000 22:07:08 +0200
changeset 10306 b0ab988a27a9
parent 10281 9554ce1c2e54
child 10362 c6b197ccf1f1
permissions -rw-r--r--
* HOL: default proof step now includes 'intro_classes';
Ignore whitespace changes - Everywhere: Within whitespace: At end of lines:
10123
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
     1
%
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
     2
\begin{isabellebody}%
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
     3
\def\isabellecontext{Base}%
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
     4
%
10281
9554ce1c2e54 *** empty log message ***
nipkow
parents: 10192
diff changeset
     5
\isamarkupsection{Case study: Verified model checking}
10123
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
     6
%
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
     7
\begin{isamarkuptext}%
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
     8
Model checking is a very popular technique for the verification of finite
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
     9
state systems (implementations) w.r.t.\ temporal logic formulae
10192
4c2584e23ade *** empty log message ***
nipkow
parents: 10186
diff changeset
    10
(specifications) \cite{ClarkeGP-book,Huth-Ryan-book}. Its foundations are completely set theoretic
10186
499637e8f2c6 *** empty log message ***
nipkow
parents: 10178
diff changeset
    11
and this section shall explore them a little in HOL. This is done in two steps: first
10178
aecb5bf6f76f *** empty log message ***
nipkow
parents: 10133
diff changeset
    12
we consider a simple modal logic called propositional dynamic
10123
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    13
logic (PDL) which we then extend to the temporal logic CTL used in many real
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    14
model checkers. In each case we give both a traditional semantics (\isa{{\isasymTurnstile}}) and a
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    15
recursive function \isa{mc} that maps a formula into the set of all states of
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    16
the system where the formula is valid. If the system has a finite number of
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    17
states, \isa{mc} is directly executable, i.e.\ a model checker, albeit not a
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    18
very efficient one. The main proof obligation is to show that the semantics
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    19
and the model checker agree.
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    20
10133
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    21
\underscoreon
10123
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    22
10133
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    23
Our models are \emph{transition systems}, i.e.\ sets of \emph{states} with
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    24
transitions between them, as shown in this simple example:
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    25
\begin{center}
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    26
\unitlength.5mm
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    27
\thicklines
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    28
\begin{picture}(100,60)
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    29
\put(50,50){\circle{20}}
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    30
\put(50,50){\makebox(0,0){$p,q$}}
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    31
\put(61,55){\makebox(0,0)[l]{$s_0$}}
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    32
\put(44,42){\vector(-1,-1){26}}
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    33
\put(16,18){\vector(1,1){26}}
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    34
\put(57,43){\vector(1,-1){26}}
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    35
\put(10,10){\circle{20}}
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    36
\put(10,10){\makebox(0,0){$q,r$}}
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    37
\put(-1,15){\makebox(0,0)[r]{$s_1$}}
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    38
\put(20,10){\vector(1,0){60}}
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    39
\put(90,10){\circle{20}}
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    40
\put(90,10){\makebox(0,0){$r$}}
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    41
\put(98, 5){\line(1,0){10}}
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    42
\put(108, 5){\line(0,1){10}}
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    43
\put(108,15){\vector(-1,0){10}}
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    44
\put(91,21){\makebox(0,0)[bl]{$s_2$}}
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    45
\end{picture}
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    46
\end{center}
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    47
Each state has a unique name or number ($s_0,s_1,s_2$), and in each
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    48
state certain \emph{atomic propositions} ($p,q,r$) are true.
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    49
The aim of temporal logic is to formalize statements such as ``there is no
10186
499637e8f2c6 *** empty log message ***
nipkow
parents: 10178
diff changeset
    50
path starting from $s_2$ leading to a state where $p$ or $q$
499637e8f2c6 *** empty log message ***
nipkow
parents: 10178
diff changeset
    51
are true'', which is true, and ``on all paths starting from $s_0$ $q$ is always true'',
499637e8f2c6 *** empty log message ***
nipkow
parents: 10178
diff changeset
    52
which is false.
10123
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    53
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    54
Abstracting from this concrete example, we assume there is some type of
10281
9554ce1c2e54 *** empty log message ***
nipkow
parents: 10192
diff changeset
    55
states:%
10133
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    56
\end{isamarkuptext}%
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    57
\isacommand{typedecl}\ state%
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    58
\begin{isamarkuptext}%
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    59
\noindent
10281
9554ce1c2e54 *** empty log message ***
nipkow
parents: 10192
diff changeset
    60
Command \isacommand{typedecl} merely declares a new type but without
9554ce1c2e54 *** empty log message ***
nipkow
parents: 10192
diff changeset
    61
defining it (see also \S\ref{sec:typedecl}). Thus we know nothing
9554ce1c2e54 *** empty log message ***
nipkow
parents: 10192
diff changeset
    62
about the type other than its existence. That is exactly what we need
9554ce1c2e54 *** empty log message ***
nipkow
parents: 10192
diff changeset
    63
because \isa{state} really is an implicit parameter of our model.  Of
9554ce1c2e54 *** empty log message ***
nipkow
parents: 10192
diff changeset
    64
course it would have been more generic to make \isa{state} a type
9554ce1c2e54 *** empty log message ***
nipkow
parents: 10192
diff changeset
    65
parameter of everything but declaring \isa{state} globally as above
9554ce1c2e54 *** empty log message ***
nipkow
parents: 10192
diff changeset
    66
reduces clutter.  Similarly we declare an arbitrary but fixed
9554ce1c2e54 *** empty log message ***
nipkow
parents: 10192
diff changeset
    67
transition system, i.e.\ relation between states:%
10133
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    68
\end{isamarkuptext}%
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    69
\isacommand{consts}\ M\ {\isacharcolon}{\isacharcolon}\ {\isachardoublequote}{\isacharparenleft}state\ {\isasymtimes}\ state{\isacharparenright}set{\isachardoublequote}%
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    70
\begin{isamarkuptext}%
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    71
\noindent
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    72
Again, we could have made \isa{M} a parameter of everything.
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    73
Finally we introduce a type of atomic propositions%
10123
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    74
\end{isamarkuptext}%
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    75
\isacommand{typedecl}\ atom%
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    76
\begin{isamarkuptext}%
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    77
\noindent
10133
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    78
and a \emph{labelling function}%
10123
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    79
\end{isamarkuptext}%
10133
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    80
\isacommand{consts}\ L\ {\isacharcolon}{\isacharcolon}\ {\isachardoublequote}state\ {\isasymRightarrow}\ atom\ set{\isachardoublequote}%
10123
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    81
\begin{isamarkuptext}%
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    82
\noindent
10133
e187dacd248f *** empty log message ***
nipkow
parents: 10123
diff changeset
    83
telling us which atomic propositions are true in each state.%
10123
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    84
\end{isamarkuptext}%
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    85
\end{isabellebody}%
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    86
%%% Local Variables:
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    87
%%% mode: latex
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    88
%%% TeX-master: "root"
9469c039ff57 *** empty log message ***
nipkow
parents:
diff changeset
    89
%%% End: