CookBook/FirstSteps.thy
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theory FirstSteps
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imports Base
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begin
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chapter {* First Steps *}
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text {*
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  Isabelle programming is done in SML.  Just like lemmas and proofs, SML-code
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  in Isabelle is part of a theory. If you want to follow the code written in
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  this chapter, we assume you are working inside the theory defined by
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  \begin{center}
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  \begin{tabular}{@ {}l}
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  \isacommand{theory} FirstSteps\\
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  \isacommand{imports} Main\\
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  \isacommand{begin}\\
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  \ldots
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  \end{tabular}
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  \end{center}
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*}
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section {* Including ML-Code *}
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text {*
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  The easiest and quickest way to include code in a theory is
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  by using the \isacommand{ML}-command. For example\smallskip
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\isa{\isacommand{ML}
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\isacharverbatimopen\isanewline
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\hspace{5mm}@{ML "3 + 4"}\isanewline
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\isacharverbatimclose\isanewline
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@{ML_text "> 7"}\smallskip}
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  Expressions inside \isacommand{ML}-commands are immediately evaluated,
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  like ``normal'' Isabelle proof scripts, by using the advance and undo buttons of 
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  your Isabelle environment. The code inside the \isacommand{ML}-command 
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  can also contain value and function bindings, and even those can be
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  undone when the proof script is retracted. In what follows we will drop the 
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  \isacommand{ML} \isa{\isacharverbatimopen \ldots \isacharverbatimclose} whenever
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  we show code and its response.
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  Once a portion of code is relatively stable, one usually wants to 
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  export it to a separate ML-file. Such files can then be included in a 
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  theory by using \isacommand{uses} in the header of the theory, like
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  \begin{center}
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  \begin{tabular}{@ {}l}
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  \isacommand{theory} CookBook\\
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  \isacommand{imports} Main\\
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  \isacommand{uses} @{ML_text "\"file_to_be_included.ML\""} @{text "\<dots>"}\\
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  \isacommand{begin}\\
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  \ldots
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  \end{tabular}
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  \end{center}
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*}
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section {* Debugging and Printing *}
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text {*
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  During development you might find it necessary to inspect some data
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  in your code. This can be done in a ``quick-and-dirty'' fashion using 
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  the function @{ML "warning"}. For example 
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  @{ML [display] "warning \"any string\""}
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  will print out @{ML_text [quotes] "any string"} inside the response buffer
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  of Isabelle.  This function expects a string. If you develop under PolyML,
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  then there is a convenient, though again ``quick-and-dirty'', method for
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  converting values into strings, for example:
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  @{ML [display] "warning (makestring 1)"} 
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  However this only works if the type of what is converted is monomorphic and is not 
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  a function.
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  The function @{ML "warning"} should only be used for testing purposes, because any
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  output this function generates will be overwritten as soon as an error is
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  raised. For printing anything more serious and elaborate, the
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  function @{ML tracing} should be used. This function writes all output into
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  a separate tracing buffer. For example
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  @{ML [display] "tracing \"foo\""}
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  It is also possible to redirect the ``channel'' where the @{ML_text "foo"} is 
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  printed to a separate file, e.g. to prevent Proof General from choking on massive 
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  amounts of trace output. This redirection can be achieved using the code
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*}
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ML{* 
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val strip_specials =
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let
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  fun strip ("\^A" :: _ :: cs) = strip cs
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    | strip (c :: cs) = c :: strip cs
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    | strip [] = [];
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in implode o strip o explode end;
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fun redirect_tracing stream =
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 Output.tracing_fn := (fn s =>
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    (TextIO.output (stream, (strip_specials s));
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     TextIO.output (stream, "\n");
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     TextIO.flushOut stream)); 
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*}
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text {*
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  Calling @{ML "redirect_tracing"} with @{ML "(TextIO.openOut \"foo.bar\")"} 
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  will cause that all tracing information is printed into the file @{ML_text "foo.bar"}.
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*}
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section {* Antiquotations *}
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text {*
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  The main advantage of embedding all code in a theory is that the code can
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  contain references to entities defined on the logical level of Isabelle (by
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  this we mean definitions, theorems, terms and so on). This is done using
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  antiquotations.  For example, one can print out the name of the current
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  theory by typing
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  @{ML_response [display] "Context.theory_name @{theory}" "FirstSteps"}
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  where @{text "@{theory}"} is an antiquotation that is substituted with the
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  current theory (remember that we assumed we are inside the theory 
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  @{ML_text FirstSteps}). The name of this theory can be extracted using 
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  the function @{ML "Context.theory_name"}. 
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  Note, however, that antiquotations are statically scoped, that is the value is
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  determined at ``compile-time'', not ``run-time''. For example the function
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*}
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ML {*
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fun not_current_thyname () = Context.theory_name @{theory}
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*}
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text {*
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  does \emph{not} return the name of the current theory, if it is run in a 
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  different theory. Instead, the code above defines the constant function 
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  that always returns the string @{ML_text "FirstSteps"}, no matter where the
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  function is called. Operationally speaking,  the antiquotation @{text "@{theory}"} is 
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  \emph{not} replaced with code that will look up the current theory in 
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  some data structure and return it. Instead, it is literally
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  replaced with the value representing the theory name.
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  In a similar way you can use antiquotations to refer to theorems or simpsets:
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  @{ML [display] "@{thm allI}"}
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  @{ML [display] "@{simpset}"}
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  While antiquotations have many applications, they were originally introduced to 
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  avoid explicit bindings for theorems such as
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*}
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ML {*
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val allI = thm "allI"
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*}
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text {*
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  These bindings were difficult to maintain and also could be accidentally
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  overwritten by the user. This usually broke definitional
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  packages. Antiquotations solve this problem, since they are ``linked''
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  statically at compile-time. However, that also sometimes limits their
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  applicability. In the course of this introduction, we will learn more about
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  these antiquotations: they greatly simplify Isabelle programming since one
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  can directly access all kinds of logical elements from ML.
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*}
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section {* Terms and Types *}
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text {*
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  One way to construct terms of Isabelle on the ML-level is by using the antiquotation 
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  \mbox{@{text "@{term \<dots>}"}}. For example
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  @{ML_response [display] "@{term \"(a::nat) + b = c\"}" 
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                          "Const (\"op =\", \<dots>)  $ (Const (\"HOL.plus_class.plus\", \<dots>) $ \<dots> $ \<dots>) $ \<dots>"}
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  This will show the term @{term "(a::nat) + b = c"}, but printed using the internal
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  representation of this term. This internal representation corresponds to the 
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  datatype @{ML_type "term"}.
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  The internal representation of terms uses the usual de Bruijn index mechanism where bound 
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  variables are represented by the constructor @{ML Bound}. The index in @{ML Bound} refers to
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  the number of Abstractions (@{ML Abs}) we have to skip until we hit the @{ML Abs} that
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  binds the corresponding variable. However, in Isabelle the names of bound variables are 
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  kept at abstractions for printing purposes, and so should be treated only as comments. 
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  \begin{readmore}
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  Terms are described in detail in \isccite{sec:terms}. Their
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  definition and many useful operations can be found in @{ML_file "Pure/term.ML"}.
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  \end{readmore}
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  Sometimes the internal representation of terms can be surprisingly different
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  from what you see at the user level, because the layers of
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  parsing/type-checking/pretty printing can be quite elaborate. 
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  \begin{exercise}
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  Look at the internal term representation of the following terms, and
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  find out why they are represented like this.
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  \begin{itemize}
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  \item @{term "case x of 0 \<Rightarrow> 0 | Suc y \<Rightarrow> y"}  
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  \item @{term "\<lambda>(x,y). P y x"}  
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  \item @{term "{ [x::int] | x. x \<le> -2 }"}  
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  \end{itemize}
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  Hint: The third term is already quite big, and the pretty printer
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  may omit parts of it by default. If you want to see all of it, you
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  can use the following ML function to set the limit to a value high 
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  enough:
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  \end{exercise}
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  @{ML [display] "print_depth 50"}
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  The antiquotation @{text "@{prop \<dots>}"} constructs terms of propositional type, 
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  inserting the invisible @{text "Trueprop"}-coercions whenever necessary. 
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  Consider for example
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  @{ML_response [display] "@{term \"P x\"}" "Free (\"P\", \<dots>) $ Free (\"x\", \<dots>)"}
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  @{ML_response [display] "@{prop \"P x\"}" 
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                          "Const (\"Trueprop\", \<dots>) $ (Free (\"P\", \<dots>) $ Free (\"x\", \<dots>))"}
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  which inserts the coercion in the latter case and 
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  @{ML_response [display] "@{term \"P x \<Longrightarrow> Q x\"}" "Const (\"==>\", \<dots>) $ \<dots> $ \<dots>"}
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  @{ML_response [display] "@{prop \"P x \<Longrightarrow> Q x\"}" "Const (\"==>\", \<dots>) $ \<dots> $ \<dots>"}
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  which does not (since it is already constructed using the meta-implication). 
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  Types can be constructed using the antiquotation @{text "@{typ \<dots>}"}. For example
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  @{ML_response_fake [display] "@{typ \"bool \<Rightarrow> nat\"}" "bool \<Rightarrow> nat"}
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  \begin{readmore}
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  Types are described in detail in \isccite{sec:types}. Their
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  definition and many useful operations can be found in @{ML_file "Pure/type.ML"}.
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  \end{readmore}
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*}
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section {* Constructing Terms and Types Manually *} 
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text {*
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  While antiquotations are very convenient for constructing terms and types, 
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  they can only construct fixed terms. Unfortunately, one often needs to construct terms
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  dynamically. For example, a function that returns the implication 
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  @{text "\<And>(x::\<tau>). P x \<Longrightarrow> Q x"} taking @{term P}, @{term Q} and the type @{term "\<tau>"}
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  as arguments can only be written as
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*}
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ML {*
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fun make_imp P Q tau =
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  let
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    val x = Free ("x",tau)
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  in Logic.all x (Logic.mk_implies (HOLogic.mk_Trueprop (P $ x),
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                                    HOLogic.mk_Trueprop (Q $ x)))
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  end
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*}
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text {*
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  The reason is that one cannot pass the arguments @{term P}, @{term Q} and 
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  @{term "tau"} into an antiquotation. For example the following does not work as
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  expected.
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*}
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ML {*
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fun make_wrong_imp P Q tau = @{prop "\<And>x. P x \<Longrightarrow> Q x"} 
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*}
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text {*
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  To see this apply @{text "@{term S}"}, @{text "@{term T}"} and @{text "@{typ nat}"} 
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  to both functions. 
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  One tricky point in constructing terms by hand is to obtain the 
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  fully qualified name for constants. For example the names for @{text "zero"} and
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  @{text "+"} are more complex than one first expects, namely 
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  \begin{center}
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  @{ML_text "HOL.zero_class.zero"} and @{ML_text "HOL.plus_class.plus"}. 
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  \end{center}
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  The extra prefixes @{ML_text zero_class} and @{ML_text plus_class} are present because 
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  these constants are defined within type classes; the prefix @{text "HOL"} indicates in 
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  which theory they are defined. Guessing such internal names can sometimes be quite hard. 
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  Therefore Isabelle provides the antiquotation @{text "@{const_name \<dots>}"} which does the 
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  expansion automatically, for example:
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  @{ML_response_fake [display] "@{const_name \"Nil\"}" "List.list.Nil"}
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  (FIXME: Is it useful to explain @{text "@{const_syntax}"}?)
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  Similarly, types can be constructed manually, for example as follows:
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*} 
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ML {*
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fun make_fun_type tau1 tau2 = Type ("fun",[tau1,tau2])
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*}
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text {*
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  which can be equally written as 
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*}
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ML {*
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fun make_fun_type tau1 tau2 = tau1 --> tau2
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*}
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text {*
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  \begin{readmore}
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  There are many functions in @{ML_file "Pure/logic.ML"} and
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  @{ML_file "HOL/hologic.ML"} that make such manual constructions of terms 
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  and types easier.\end{readmore}
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  Have a look at these files and try to solve the following two exercises:
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*}
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text {*
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  \begin{exercise}\label{fun:revsum}
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  Write a function @{ML_text "rev_sum : term -> term"} that takes a
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  term of the form @{text "t\<^isub>1 + t\<^isub>2 + \<dots> + t\<^isub>n"} (whereby @{text "i"} might be zero)
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  and returns the reversed sum @{text "t\<^isub>n + \<dots> + t\<^isub>2 + t\<^isub>1"}. Assume
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  the @{text "t\<^isub>i"} can be arbitrary expressions and also note that @{text "+"} 
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  associates to the left. Try your function on some examples. 
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  \end{exercise}
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  \begin{exercise}\label{fun:makesum}
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  Write a function which takes two terms representing natural numbers
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  in unary (like @{term "Suc (Suc (Suc 0))"}), and produce the unary
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  number representing their sum.
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  \end{exercise}
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*}
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section {* Type-Checking *}
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text {* 
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  We can freely construct and manipulate terms, since they are just
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  arbitrary unchecked trees. However, we eventually want to see if a
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  term is well-formed, or type checks, relative to a theory.
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  Type-checking is done via the function @{ML cterm_of}, which converts 
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  a @{ML_type term} into a  @{ML_type cterm}, a \emph{certified} term. 
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  Unlike @{ML_type term}s, which are just trees, @{ML_type
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  "cterm"}s are abstract objects that are guaranteed to be
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  type-correct, and that can only be constructed via the ``official
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  interfaces''.
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  Type checking is always relative to a theory context. For now we use
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  the @{ML "@{theory}"} antiquotation to get hold of the current theory.
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  For example we can write
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  @{ML_response_fake [display] "cterm_of @{theory} @{term \"a + b = c\"}" "a + b = c"}
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  or use the antiquotation
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  @{ML_response_fake [display] "@{cterm \"(a::nat) + b = c\"}" "a + b = c"}
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  A slightly more elaborate example is
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@{ML_response_fake [display] 
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"let
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  val natT = @{typ \"nat\"}
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  val zero = @{term \"0::nat\"}
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in
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  cterm_of @{theory} 
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  (Const (@{const_name plus}, natT --> natT --> natT) 
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  $ zero $ zero)
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end" "0 + 0"}
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  \begin{exercise}
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  Check that the function defined in Exercise~\ref{fun:revsum} returns a
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  result that type-checks.
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  \end{exercise}
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*}
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section {* Theorems *}
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text {*
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  Just like @{ML_type cterm}s, theorems are abstract objects of type @{ML_type thm} 
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  that can only be built by going through interfaces, which means that all your proofs 
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  will be checked. 
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  To see theorems in ``action'', let us give a proof for the following statement
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*}
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  lemma 
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   assumes assm\<^isub>1: "\<And>(x::nat). P x \<Longrightarrow> Q x" 
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   and     assm\<^isub>2: "P t"
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   shows "Q t" (*<*)oops(*>*) 
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text {*
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  on the ML-level:\footnote{Note that @{text "|>"} is reverse
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  application. This combinator, and several variants are defined in
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  @{ML_file "Pure/General/basics.ML"}.}
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@{ML_response_fake [display]
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"let
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  val thy = @{theory}
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  val assm1 = cterm_of thy @{prop \"\<And>(x::nat). P x \<Longrightarrow> Q x\"}
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diff changeset
   415
  val assm2 = cterm_of thy @{prop \"(P::nat\<Rightarrow>bool) t\"}
10
df09e49b19bf many changes in the FirstSteps section
Christian Urban <urbanc@in.tum.de>
parents: 6
diff changeset
   416
df09e49b19bf many changes in the FirstSteps section
Christian Urban <urbanc@in.tum.de>
parents: 6
diff changeset
   417
  val Pt_implies_Qt = 
df09e49b19bf many changes in the FirstSteps section
Christian Urban <urbanc@in.tum.de>
parents: 6
diff changeset
   418
        assume assm1
42
cd612b489504 tuned mostly antiquotation and text
Christian Urban <urbanc@in.tum.de>
parents: 41
diff changeset
   419
        |> forall_elim (cterm_of thy @{term \"t::nat\"});
10
df09e49b19bf many changes in the FirstSteps section
Christian Urban <urbanc@in.tum.de>
parents: 6
diff changeset
   420
  
df09e49b19bf many changes in the FirstSteps section
Christian Urban <urbanc@in.tum.de>
parents: 6
diff changeset
   421
  val Qt = implies_elim Pt_implies_Qt (assume assm2);
df09e49b19bf many changes in the FirstSteps section
Christian Urban <urbanc@in.tum.de>
parents: 6
diff changeset
   422
in
df09e49b19bf many changes in the FirstSteps section
Christian Urban <urbanc@in.tum.de>
parents: 6
diff changeset
   423
df09e49b19bf many changes in the FirstSteps section
Christian Urban <urbanc@in.tum.de>
parents: 6
diff changeset
   424
  Qt 
df09e49b19bf many changes in the FirstSteps section
Christian Urban <urbanc@in.tum.de>
parents: 6
diff changeset
   425
  |> implies_intr assm2
df09e49b19bf many changes in the FirstSteps section
Christian Urban <urbanc@in.tum.de>
parents: 6
diff changeset
   426
  |> implies_intr assm1
48
609f9ef73494 fixed FIXME's in fake responses
Christian Urban <urbanc@in.tum.de>
parents: 47
diff changeset
   427
end" "\<lbrakk>\<And>x. P x \<Longrightarrow> Q x; P t\<rbrakk> \<Longrightarrow> Q t"}
12
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   428
21
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   429
  This code-snippet constructs the following proof:
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   430
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   431
  \[
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   432
  \infer[(@{text "\<Longrightarrow>"}$-$intro)]{\vdash @{prop "(\<And>x. P x \<Longrightarrow> Q x) \<Longrightarrow> P t \<Longrightarrow> Q t"}}
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   433
    {\infer[(@{text "\<Longrightarrow>"}$-$intro)]{@{prop "\<And>x. P x \<Longrightarrow> Q x"} \vdash @{prop "P t \<Longrightarrow> Q t"}}
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   434
       {\infer[(@{text "\<Longrightarrow>"}$-$elim)]{@{prop "\<And>x. P x \<Longrightarrow> Q x"}, @{prop "P t"} \vdash @{prop "Q t"}}
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   435
          {\infer[(@{text "\<And>"}$-$elim)]{@{prop "\<And>x. P x \<Longrightarrow> Q x"} \vdash @{prop "P t \<Longrightarrow> Q t"}}
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   436
                 {\infer[(assume)]{@{prop "\<And>x. P x \<Longrightarrow> Q x"} \vdash @{prop "\<And>x. P x \<Longrightarrow> Q x"}}{}}
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   437
                 &
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   438
           \infer[(assume)]{@{prop "P t"} \vdash @{prop "P t"}}{}
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   439
          }
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   440
       }
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   441
    }
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   442
  \]
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   443
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   444
13
2b07da8b310d polished and added a subdirectory for the recipes
Christian Urban <urbanc@in.tum.de>
parents: 12
diff changeset
   445
  \begin{readmore}
50
Christian Urban <urbanc@in.tum.de>
parents: 49
diff changeset
   446
  For the functions @{text "assume"}, @{text "forall_elim"} etc 
13
2b07da8b310d polished and added a subdirectory for the recipes
Christian Urban <urbanc@in.tum.de>
parents: 12
diff changeset
   447
  see \isccite{sec:thms}. The basic functions for theorems are defined in
2b07da8b310d polished and added a subdirectory for the recipes
Christian Urban <urbanc@in.tum.de>
parents: 12
diff changeset
   448
  @{ML_file "Pure/thm.ML"}. 
2b07da8b310d polished and added a subdirectory for the recipes
Christian Urban <urbanc@in.tum.de>
parents: 12
diff changeset
   449
  \end{readmore}
12
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   450
10
df09e49b19bf many changes in the FirstSteps section
Christian Urban <urbanc@in.tum.de>
parents: 6
diff changeset
   451
*}
df09e49b19bf many changes in the FirstSteps section
Christian Urban <urbanc@in.tum.de>
parents: 6
diff changeset
   452
df09e49b19bf many changes in the FirstSteps section
Christian Urban <urbanc@in.tum.de>
parents: 6
diff changeset
   453
12
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   454
section {* Tactical Reasoning *}
2
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   455
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   456
text {*
13
2b07da8b310d polished and added a subdirectory for the recipes
Christian Urban <urbanc@in.tum.de>
parents: 12
diff changeset
   457
  The goal-oriented tactical style reasoning of the ML level is similar 
2b07da8b310d polished and added a subdirectory for the recipes
Christian Urban <urbanc@in.tum.de>
parents: 12
diff changeset
   458
  to the @{text apply}-style at the user level, i.e.~the reasoning is centred 
2b07da8b310d polished and added a subdirectory for the recipes
Christian Urban <urbanc@in.tum.de>
parents: 12
diff changeset
   459
  around a \emph{goal}, which is modified in a sequence of proof steps 
2b07da8b310d polished and added a subdirectory for the recipes
Christian Urban <urbanc@in.tum.de>
parents: 12
diff changeset
   460
  until it is solved.
2
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   461
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   462
  A goal (or goal state) is a special @{ML_type thm}, which by
12
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   463
  convention is an implication of the form:
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   464
2
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   465
  @{text[display] "A\<^isub>1 \<Longrightarrow> \<dots> \<Longrightarrow> A\<^isub>n \<Longrightarrow> #(C)"}
12
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   466
49
a0edabf14457 added more material
Christian Urban <urbanc@in.tum.de>
parents: 48
diff changeset
   467
  where @{term C} is the goal to be proved and the @{term "A\<^isub>i"} are the open 
a0edabf14457 added more material
Christian Urban <urbanc@in.tum.de>
parents: 48
diff changeset
   468
  subgoals. 
13
2b07da8b310d polished and added a subdirectory for the recipes
Christian Urban <urbanc@in.tum.de>
parents: 12
diff changeset
   469
  Since the goal @{term C} can potentially be an implication, there is a
12
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   470
  @{text "#"} wrapped around it, which prevents that premises are 
50
Christian Urban <urbanc@in.tum.de>
parents: 49
diff changeset
   471
  misinterpreted as open subgoals. The wrapper @{text "# :: prop \<Rightarrow>
12
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   472
  prop"} is just the identity function and used as a syntactic marker. 
13
2b07da8b310d polished and added a subdirectory for the recipes
Christian Urban <urbanc@in.tum.de>
parents: 12
diff changeset
   473
  
2b07da8b310d polished and added a subdirectory for the recipes
Christian Urban <urbanc@in.tum.de>
parents: 12
diff changeset
   474
  \begin{readmore}
2b07da8b310d polished and added a subdirectory for the recipes
Christian Urban <urbanc@in.tum.de>
parents: 12
diff changeset
   475
  For more on goals see \isccite{sec:tactical-goals}. 
2b07da8b310d polished and added a subdirectory for the recipes
Christian Urban <urbanc@in.tum.de>
parents: 12
diff changeset
   476
  \end{readmore}
2
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   477
12
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   478
  Tactics are functions that map a goal state to a (lazy)
2
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   479
  sequence of successor states, hence the type of a tactic is
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   480
  @{ML_type[display] "thm -> thm Seq.seq"}
12
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   481
  
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   482
  \begin{readmore}
2
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   483
  See @{ML_file "Pure/General/seq.ML"} for the implementation of lazy
13
2b07da8b310d polished and added a subdirectory for the recipes
Christian Urban <urbanc@in.tum.de>
parents: 12
diff changeset
   484
  sequences. However in day-to-day Isabelle programming, one rarely 
2b07da8b310d polished and added a subdirectory for the recipes
Christian Urban <urbanc@in.tum.de>
parents: 12
diff changeset
   485
  constructs sequences explicitly, but uses the predefined tactic 
50
Christian Urban <urbanc@in.tum.de>
parents: 49
diff changeset
   486
  combinators (tacticals) instead. See @{ML_file "Pure/tctical.ML"} 
Christian Urban <urbanc@in.tum.de>
parents: 49
diff changeset
   487
  for the code; see Chapters 3 and 4 in the old Isabelle Reference Manual.
12
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   488
  \end{readmore}
2
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   489
34
527fc0af45e3 Corrected typos.
berghofe
parents: 25
diff changeset
   490
  While tactics can operate on the subgoals (the @{text "A\<^isub>i"} above), they 
13
2b07da8b310d polished and added a subdirectory for the recipes
Christian Urban <urbanc@in.tum.de>
parents: 12
diff changeset
   491
  are expected to leave the conclusion @{term C} intact, with the 
2b07da8b310d polished and added a subdirectory for the recipes
Christian Urban <urbanc@in.tum.de>
parents: 12
diff changeset
   492
  exception of possibly instantiating schematic variables. 
12
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   493
 
13
2b07da8b310d polished and added a subdirectory for the recipes
Christian Urban <urbanc@in.tum.de>
parents: 12
diff changeset
   494
  To see how tactics work, let us transcribe a simple @{text apply}-style 
50
Christian Urban <urbanc@in.tum.de>
parents: 49
diff changeset
   495
  proof into ML:
2
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   496
*}
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   497
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   498
lemma disj_swap: "P \<or> Q \<Longrightarrow> Q \<or> P"
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   499
apply (erule disjE)
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   500
 apply (rule disjI2)
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   501
 apply assumption
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   502
apply (rule disjI1)
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   503
apply assumption
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   504
done
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   505
12
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   506
text {*
21
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   507
  To start the proof, the function  @{ML "Goal.prove"}~@{text "ctxt xs As C tac"} sets 
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   508
  up a goal state for proving the goal @{text C} under the assumptions @{text As} 
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   509
  (empty in the proof at hand) 
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   510
  with the variables @{text xs} that will be generalised once the
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   511
  goal is proved. The @{text "tac"} is the tactic which proves the goal and which 
50
Christian Urban <urbanc@in.tum.de>
parents: 49
diff changeset
   512
  can make use of the local assumptions (there are none in this example).
12
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   513
42
cd612b489504 tuned mostly antiquotation and text
Christian Urban <urbanc@in.tum.de>
parents: 41
diff changeset
   514
@{ML_response_fake [display]
cd612b489504 tuned mostly antiquotation and text
Christian Urban <urbanc@in.tum.de>
parents: 41
diff changeset
   515
"let
2
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   516
  val ctxt = @{context}
42
cd612b489504 tuned mostly antiquotation and text
Christian Urban <urbanc@in.tum.de>
parents: 41
diff changeset
   517
  val goal = @{prop \"P \<or> Q \<Longrightarrow> Q \<or> P\"}
2
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   518
in
42
cd612b489504 tuned mostly antiquotation and text
Christian Urban <urbanc@in.tum.de>
parents: 41
diff changeset
   519
  Goal.prove ctxt [\"P\", \"Q\"] [] goal (fn _ => 
2
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   520
    eresolve_tac [disjE] 1
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   521
    THEN resolve_tac [disjI2] 1
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   522
    THEN assume_tac 1
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   523
    THEN resolve_tac [disjI1] 1
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   524
    THEN assume_tac 1)
48
609f9ef73494 fixed FIXME's in fake responses
Christian Urban <urbanc@in.tum.de>
parents: 47
diff changeset
   525
end" "?P \<or> ?Q \<Longrightarrow> ?Q \<or> ?P"}
21
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   526
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   527
  \begin{readmore}
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   528
  To learn more about the function @{ML Goal.prove} see \isccite{sec:results}.
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   529
  \end{readmore}
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   530
2356e5c70d98 added a proof and tuned the rest
Christian Urban <urbanc@in.tum.de>
parents: 20
diff changeset
   531
42
cd612b489504 tuned mostly antiquotation and text
Christian Urban <urbanc@in.tum.de>
parents: 41
diff changeset
   532
  An alternative way to transcribe this proof is as follows 
2
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   533
42
cd612b489504 tuned mostly antiquotation and text
Christian Urban <urbanc@in.tum.de>
parents: 41
diff changeset
   534
@{ML_response_fake [display]
cd612b489504 tuned mostly antiquotation and text
Christian Urban <urbanc@in.tum.de>
parents: 41
diff changeset
   535
"let
12
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   536
  val ctxt = @{context}
42
cd612b489504 tuned mostly antiquotation and text
Christian Urban <urbanc@in.tum.de>
parents: 41
diff changeset
   537
  val goal = @{prop \"P \<or> Q \<Longrightarrow> Q \<or> P\"}
12
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   538
in
42
cd612b489504 tuned mostly antiquotation and text
Christian Urban <urbanc@in.tum.de>
parents: 41
diff changeset
   539
  Goal.prove ctxt [\"P\", \"Q\"] [] goal (fn _ => 
12
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   540
    (eresolve_tac [disjE] 
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   541
    THEN' resolve_tac [disjI2] 
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   542
    THEN' assume_tac 
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   543
    THEN' resolve_tac [disjI1] 
2f1736cb8f26 various changes by Alex and Christian
Christian Urban <urbanc@in.tum.de>
parents: 11
diff changeset
   544
    THEN' assume_tac) 1)
48
609f9ef73494 fixed FIXME's in fake responses
Christian Urban <urbanc@in.tum.de>
parents: 47
diff changeset
   545
end" "?P \<or> ?Q \<Longrightarrow> ?Q \<or> ?P"}
42
cd612b489504 tuned mostly antiquotation and text
Christian Urban <urbanc@in.tum.de>
parents: 41
diff changeset
   546
cd612b489504 tuned mostly antiquotation and text
Christian Urban <urbanc@in.tum.de>
parents: 41
diff changeset
   547
  (FIXME: are there any advantages/disadvantages about this way?) 
2
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   548
*}
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   549
20
5ae6a1bb91c9 some slight polishing
Christian Urban <urbanc@in.tum.de>
parents: 19
diff changeset
   550
section {* Storing Theorems *}
5ae6a1bb91c9 some slight polishing
Christian Urban <urbanc@in.tum.de>
parents: 19
diff changeset
   551
5ae6a1bb91c9 some slight polishing
Christian Urban <urbanc@in.tum.de>
parents: 19
diff changeset
   552
section {* Theorem Attributes *}
5ae6a1bb91c9 some slight polishing
Christian Urban <urbanc@in.tum.de>
parents: 19
diff changeset
   553
39
631d12c25bde substantial changes to the antiquotations (preliminary version)
Christian Urban <urbanc@in.tum.de>
parents: 34
diff changeset
   554
631d12c25bde substantial changes to the antiquotations (preliminary version)
Christian Urban <urbanc@in.tum.de>
parents: 34
diff changeset
   555
2
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
   556
978a3c2ed7ce split the document into smaller pieces;
Christian Urban <urbanc@in.tum.de>
parents:
diff changeset
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end