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* Improved syntax and semantics for Nix expressions.
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91
src/eval.hh
91
src/eval.hh
@ -10,67 +10,62 @@ extern "C" {
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using namespace std;
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/* Abstract syntax of Nix values:
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/* Abstract syntax of Nix expressions.
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e := Deref(e) -- external expression
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| Hash(h) -- value reference
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| Str(s) -- string constant
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| Bool(b) -- boolean constant
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| Var(x) -- variable
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| App(e, e) -- application
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| Lam(x, e) -- lambda abstraction
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| Exec(platform, e, [Arg(e, e)])
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-- primitive; execute e with args e* on platform
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;
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An expression describes a (partial) state of the file system in a
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referentially transparent way. The operational effect of
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evaluating an expression is that the state described by the
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expression is realised.
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TODO: Deref(e) allows computed external expressions, which might be
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too expressive; perhaps this should be Deref(h).
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File : String * Content * [Expr] -> Expr
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Semantics
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File(path, content, refs) specifies a file object (its full path
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and contents), along with all file objects referenced by it (that
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is, that it has pointers to). We assume that all files are
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self-referential. This prevents us from having to deal with
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cycles.
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Each rule given as eval(e) => e', i.e., expression e has a normal
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form e'.
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Derive : String * Expr * [Expr] * [String] -> Expr
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eval(Deref(Hash(h))) => eval(loadExpr(h))
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Derive(platform, builder, ins, outs) specifies the creation of new
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file objects (in paths declared by `outs') by the execution of a
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program `builder' on a platform `platform'. This execution takes
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place in a file system state and in an environment given by `ins'.
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eval(Hash(h)) => Hash(h) # idem for Str, Bool
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Str : String -> Expr
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eval(App(e1, e2)) => eval(App(e1', e2))
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where e1' = eval(e1)
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A string constant.
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eval(App(Lam(var, body), arg)) =>
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eval(subst(var, arg, body))
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Tup : Expr * Expr -> Expr
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eval(Exec(platform, prog, args)) => Hash(h)
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where
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fn = ... name of the output (random or by hashing expr) ...
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h =
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if exec( fn
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, eval(platform) => Str(...)
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, getFile(eval(prog))
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, map(makeArg . eval, args)
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) then
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hashPath(fn)
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else
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undef
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... register ...
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Tuples of expressions.
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makeArg(Arg(Str(nm), (Hash(h), h))) => (nm, getFile(h))
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makeArg(Arg(Str(nm), (Str(s), _))) => (nm, s)
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makeArg(Arg(Str(nm), (Bool(True), _))) => (nm, "1")
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makeArg(Arg(Str(nm), (Bool(False), _))) => (nm, undef)
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Regular : String -> Content
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Directory : [(String, Content)] -> Content
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Hash : String -> Content
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subst(x, e1, e2) is defined as a generic topdown term
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traversal of e2, replacing each `Var(x)' with e1, and not
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descending into `Lam(x, _)'.
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File content, given either explicitly or implicitly through a cryptographic hash.
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Note: all stored expressions must be closed. !!! ugly
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The set of expressions in {\em $f$-normal form} is as follows:
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File : String * Content * [FExpr] -> FExpr
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These are completely evaluated Nix expressions.
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The set of expressions in {\em $d$-normal form} is as follows:
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File : String * Content * [DExpr] -> DExpr
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Derive : String * DExpr * [Tup] * [String] -> DExpr
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Tup : Str * DExpr -> Tup
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Tup : Str * Str -> Tup
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Str : String -> Str
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These are Nix expressions in which the file system result of Derive
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expressions has not yet been computed. This is useful for, e.g.,
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querying dependencies.
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getFile :: Hash -> FileName
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loadExpr :: Hash -> FileName
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hashExpr :: Expr -> Hash
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hashPath :: FileName -> Hash
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exec :: FileName -> Platform -> FileName -> [(String, String)] -> Status
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*/
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typedef ATerm Expr;
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