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1- Management of the name-space in a modular development / sharing of non-logical objects.
2- Performance of atomic module operations (adding a module to the environment, subtyping ...).
1-
There are 3 module constructions which derive equalities on fields from a module to another:
Let P be a module path and foo a field of P
Module M := P.
Module M.
Include P.
...
End M.
Declare Module K : S with Module M := P.
In this 3 cases we don't want to be bothered by the duplication of names.
Of course, M.foo delta reduce to P.foo but many non-logical features of coq
do not work modulo conversion (they use eq_constr or constr_pat object).
To engender a transparent name-space (ie using P.foo or M.foo is the same thing)
we quotient the name-space by the equivalence relation on names induced by the
3 constructions above.
To implement this, the types constant and mutual_inductive are now couples of
kernel_names. The first projection correspond to the name used by the user and the second
projection to the canonical name, for example the internal name of M.foo is
(M.foo,P.foo).
So:
*************************************************************************************
* Use the eq_(con,mind,constructor,gr,egr...) function and not = on names values *
*************************************************************************************
Map and Set indexed on names are ordered on user name for the kernel side
and on canonical name outside. Thus we have sharing of notation, hints... for free
(also for a posteriori declaration of them, ex: a notation on M.foo will be
avaible on P.foo). If you want to use this, use the appropriate compare function
defined in name.ml or libnames.ml.
2-
No more time explosion (i hoppe) when using modules i have re-implemented atomic
module operations so that they are all linear in the size of the module. We also
have no more unique identifier (internal module names) for modules, it is now based
on a section_path like mechanism => we have less substitutions to perform at require,
module closing and subtyping but we pre-compute more information hence if we instanciate
several functors then we have bigger vo.
Last thing, the checker will not work well on vo(s) that contains one of the 3 constructions
above, i will work on it soon...
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splay_prod_n, lam_it -> it_mkLambda, splay_lambda -> splay_lam). Added
shortcuts for "fst (decompose_prod t)" and co.
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correction d'un bug sur Import/Export module.
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(i.e. "Inductive unit := tt." conduisait à "t:Prop" alors que le
principe de la hiérarchie d'univers est d'être cumulative -- et que
Set en soit le niveau 0).
Une solution aurait été de poser Prop <= Set mais on adopte une autre
solution. Pour éviter le côté contre-intuitif d'avoir unit dans Type
et Prop <= Set, on garde la représentation de Prop au sein de la
hiérarchie prédicative sous la forme "Type (max ([],[])" (le niveau
sans aucune contrainte inférieure, appelons Type -1) et on adapte les
fonctions de sous-typage et de typage pour qu'elle prenne en compte la
règle Type -1 <= Prop (cf reduction.ml, reductionops.ml, et effets
incidents dans Termops.refresh_universes et Univ.super).
Petite uniformisation des noms d'univers et de sortes au passage
(univ.ml, univ.mli, term.ml, term.mli et les autres fichiers).
git-svn-id: svn+ssh://scm.gforge.inria.fr/svn/coq/trunk@10859 85f007b7-540e-0410-9357-904b9bb8a0f7
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is line, and those below, will be ignored--
M kernel/mod_subst.mli
M kernel/mod_typing.ml
M kernel/mod_subst.ml
M kernel/subtyping.ml
M kernel/modops.ml
M library/declaremods.ml
git-svn-id: svn+ssh://scm.gforge.inria.fr/svn/coq/trunk@10849 85f007b7-540e-0410-9357-904b9bb8a0f7
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-is line, and those below, will be ignored--
M kernel/mod_typing.ml
M kernel/subtyping.ml
M kernel/modops.ml
M library/declaremods.ml
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kernel:
-declaration.ml
unification des representations pour les modules et modules types.
(type struct_expr_body)
-mod_typing.ml
le typage des modules est separe de l'evaluation des modules
-modops.ml
nouvelle fonction qui pour toutes expressions de structure calcule
sa forme evaluee.(eval_struct)
-safe_typing.ml
ajout du support du nouvel operateur Include.(add_include).
library:
-declaremods.ml
nouveaux objets Include et Module-alias et gestion de la resolution de noms pour
les alias via la nametab.
parsing:
-g_vernac.ml4:
nouvelles regles pour le support des Includes et pour l'application des signatures
fonctorielles.
extraction:
Adaptation a la nouvelle representation des modules et support de l'operateur with.
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de deux signatures de modules.
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les interfaces de module (bug similaire à #1302 mais pour les
définitions -- au lieu des inductifs)
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(suppression au passage d'un cast dans constant_entry_of_com - ce
n'est pas normal qu'on force le type s'il n'est pas déjà présent mais
en même temps il semble que ce cast serve pour rafraîchir les univers
algébriques...)
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inductifs dans le test de sous-typage (exigence du même nombre
d'arguments uniformes attendus mais pas d'exigence spéciale sur les
définitions locales du contexte à partir du moment où les types et
constructeurs sont convertibles quand généralisés par rapport au
contexte de paramètres)
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trouve sa place)
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- prise en compte du niveau à la déclaration du type comme une fonction
des sortes des conclusions des paramètres uniformes
- suppression du retypage de chaque instance de type inductif (trop coûteux)
et donc abandon de l'idée de calculer une sorte minimale même dans
des cas comme Inductive t (b:bool) := c : (if b then Prop else Type) -> t.
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Ajout de cast indiquant au kernel la strategie a suivre
Resolution du bug sur les coinductifs
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ocaml 3.09
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parameters.
2. however, the code is still not working if the parameters are referenced
later on in the module signature. To fix this the representation of
terms must be changed to unify references to constants, inductive types and
constructors.
3. thus the code above is prefixed by an error that suggest to the user how
to avoid the problem right now. Note: the above code has not been commented
out to keep it in synch with the other changes in the kernel. However, it
is dead code for now.
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1. when applying a functor F(X) := B to a module M, the obtained module
is no longer B{X.t := M.t for all t}, but B{X.t := b where b is the
body of t in M}. In principle it is now easy to fine tune the behaviour
to choose whether b or M.t must be used. This change implies modifications
both inside and outside the kernel.
2. for each object in the library it is now necessary to define the behaviour
w.r.t. the substitution {X.t := b}. Notice that in many many cases the
pre-existing behaviour w.r.t. the substitution {X.t := M.t} was broken
(in the sense that it used to break several invariants). This commit
fixes the behaviours for most of the objects, excluded
a) coercions: a future commit should allow any term to be declared
as a coercion; moreover the invariant that just a coercion path
exists between two classes will be broken by the instantiation.
b) global references when used as arguments of a few tactics/commands
In all the other cases the behaviour implemented is the one that looks
to me as the one expected by the user (if possible):
[ terminology: not expanded (X.t := M.t) vs expanded (X.t := b) ]
a) argument scopes: not expanded
b) SYNTAXCONSTANT: expanded
c) implicit arguments: not expanded
d) coercions: expansion to be done (for now not expanded)
e) concrete syntax tree for patterns: expanded
f) concrete syntax tree for raw terms: expanded
g) evaluable references (used by unfold, delta expansion, etc.): not
expanded
h) auto's hints: expanded when possible (i.e. when the expansion of the
head of the pattern is rigid)
i) realizers (for program extraction): nothing is done since the actual
code does not look for the realizer of definitions with a body;
however this solution is fragile.
l) syntax and notation: expanded
m) structures and canonical structures: an invariant says that no
parameter can happear in them ==> the substitution always yelds the
original term
n) stuff related to V7 syntax: since this part of the code is doomed
to disappear, I have made no effort to fix a reasonable semantics;
not expanded is the default one applied
o) RefArgTypes: to be understood. For now a warning is issued whether
expanded != not expanded, and the not expanded solution is chosen.
git-svn-id: svn+ssh://scm.gforge.inria.fr/svn/coq/trunk@6555 85f007b7-540e-0410-9357-904b9bb8a0f7
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the new module kernel/mod_subst.ml.
MOTIVATION: mod_subst is compiled after kernel/term.ml; thus it is now
possible to define substitutions that also delta-expand constants
(by associating the delta-expanded form to the constant name).
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MOVITATION: in a forthcoming commit the application of a substitution to a
constant will return a constr and not a constant. The application of a
substitution to a kernel_name will return a kernel_name. Thus "constant"
should be use as a kernel name for references that can be delta-expanded.
KNOWN PROBLEMS: the only problem faced is in pretyping/recordops.ml (the code
that implements "Canonical Structure"s). The ADT is violated once in this
ocaml module. My feeling is that the implementation of "Canonical Structure"s
should be rewritten to avoid this situation.
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sa signature
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- fixed the problem with passing atomic tactics to ltacs
- restructured the distrib Makefile (can build a package from
the CVS working dir)
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noms uniques
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