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native OCaml code.
Warning: the "retroknowledge" mechanism has not been ported to the native
compiler, because integers and persistent arrays will ultimately be defined as
primitive constructions. Until then, computation on numbers may be faster using
the VM, since it takes advantage of machine integers.
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Btw, remove unused code in the xml plugin and in Tactic_printer
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kernel on CAMLP4/5 structures, and consequently should also erase
such structures from vo files.
This modification requires some code duplication, mainly while
reimplementing our own location data type. This is chiefly visible
in the ml4 files, where CAMLP4/5 locations must be manually converted
to our locations with an explicit (!@) cast operator.
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List module. That way, an "open Util" in the header permits using
any function of CList in the List namespace (and in particular, this
permits optimized reimplementations of the List functions, as, for
example, tail-rec implementations.
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All the purely monadic code has been moved to a new module Monads,
where, I'm afraid to confess, I got to use a number of proof transformers
to modularise the definition of tactics. It is still not easy to understand (why
would it with backtracking support?) but at least it's more robust, cleaner,
and more extensible. Plus there is now a Proofview.tclORELSE which will
be used to interprete the Ltac tactical (t1 || t2).
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were closed (i.e. the only remaining ones are those of printing/parsing).
Meanwhile, a simplified interface is provided in loc.mli.
This also permits to put Pp in Clib, because it does not depend on
CAMLP4/5 anymore.
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Two gains:
- no Summary in Grammar.cma
- get rid of the hack concerning error_invalid_pattern_notation
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grammar.cma
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- in g_constr.ml4, we avoid a dependency on Notation_ops by copying
the pseudo-ident hack ldots_var = ".."
- in egrammar.ml4 we duplicate the error message
error_invalid_pattern_notaition.
To adapt via Errors.register_handler...
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Stuff about reductions now in genredexpr.mli, operations in redops.ml
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NB: former Tacexpr.no_move is now Tacexpr.MoveLast
(when introducing, intro with no move is intro as last)
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Corresponding operations in locusops.ml and miscops.ml
The type of occurrences is now a clear algebraic one instead of
a bool*list hard to understand.
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Adds a directory ./intf for pure interfaces.
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- Clib that does not depend on camlpX and is made to be shared by all coq
tools/scripts/...
- Lib that is Coqtop specific
As a side effect for the build system :
- Coq_config is in Clib and does not appears in makefiles
- only the BEST version of coqc and coqmktop is made
- ocamlbuild build system fails latter but is still broken
(ocamldebug finds automatically Unix but not Str. I've probably done something wrong here.)
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Util only depends on Ocaml stdlib and Utf8 tables.
Generic pretty printing and loc functions are in Pp.
Generic errors are in Errors.
+ Training white-spaces, useless open, prlist copies random erasure.
Too many "open Errors" on the contrary.
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printing) of implicit arguments (a priori useful for teaching).
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Example:
Arguments eq_refl {B y}, [B] y.
Check (eq_refl (B := nat)).
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#2168)
We replace Global.lookup_constant by our own code that looks for a module
and enters its implementation. This is still preliminary work, I would prefer
to understand more completely the part about module substitutions when
entering an applied functor. But this code already appears to work quite well.
Anyway, since we only search for constants, we don't need to reconstitute a
100% accurate environment, as long as the same objects are in it.
Note:
- Digging inside module structures is slower than just using
Global.lookup_constant. Hence we try to avoid it as long as we could.
Only in front of axioms (or in front of constant unknown to Global)
do we check whether we have an inner-module implementation for this
constant. There is some memoization of the search for internal
structure_body out of a module_path.
- In case of inner-module axioms, we might not be able to print
its type, but only its long name.
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Instead of the monolitic Cerrors, I introduce a lightweight Errors module
whose error message can be expanded by module introducing exceptions.
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- The experimental syntax "<30>F M" is transformed into "F M [inline at level 30]"
- The earlier syntax !F X should now be written "F X [no inline]"
(note that using ! is still possible for compatibility)
- A new annotation "F M [scope foo_scope to bar_scope]" allow to substitute
foo_scope by bar_scope in all arguments scope of objects in F.
BigN and BigZ are cleaned from the zillions of Arguments Scope used earlier.
Arguments scope for lemmas are fixed for instances of Numbers.
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In particular, the unused lib/tlm.ml and lib/gset.ml are removed
In addition, to simplify code, Libobject.record_object returning only the
('a->obj) function, which is enough almost all the time.
Use Libobject.record_object_full if you really need also the (obj->'a).
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Cf tok.ml, token isn't anymore string*string where first
string encodes the kind of the token, but rather a nice
sum type. Unfortunately, string*string (a.k.a Plexing.pattern)
is still used in some places of Camlp5, so there's a few
conversions back and forth. But the penalty should be quite low,
and having nicer tokens helps in the forthcoming integration
of support for camlp4 post 3.10
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This is a fairly large commit (around 140 files and 7000 lines of code
impacted), it will cause some troubles for sure (I've listed the know
regressions below, there is bound to be more).
At this state of developpement it brings few features to the user, as
the old tactics were
ported with no change. Changes are on the side of the developer mostly.
Here comes a list of the major changes. I will stay brief, but the code
is hopefully well documented so that it is reasonably easy to infer the
details from it.
Feature developer-side:
* Primitives for a "real" refine tactic (generating a goal for each
evar).
* Abstract type of tactics, goals and proofs
* Tactics can act on several goals (formally all the focused goals). An
interesting consequence of this is that the tactical (. ; [ . | ... ])
can be separated in two
tacticals (. ; .) and ( [ . | ... ] ) (although there is a conflict for
this particular syntax). We can also imagine a tactic to reorder the
goals.
* Possibility for a tactic to pass a value to following tactics (a
typical example is
an intro function which tells the following tactics which name it
introduced).
* backtracking primitives for tactics (it is now possible to implement a
tactical '+'
with (a+b);c equivalent to (a;c+b;c) (itself equivalent to
(a;c||b;c)). This is a valuable
tool to implement tactics like "auto" without nowing of the
implementation of tactics.
* A notion of proof modes, which allows to dynamically change the parser
for tactics. It is controlled at user level with the keywords Set
Default Proof Mode (this is the proof mode which is loaded at the start
of each proof) and Proof Mode (switches the proof mode of the current
proof) to control them.
* A new primitive Evd.fold_undefined which operates like an Evd.fold,
except it only goes through the evars whose body is Evar_empty. This is
a common operation throughout the code,
some of the fold-and-test-if-empty occurences have been replaced by
fold_undefined. For now,
it is only implemented as a fold-and-test, but we expect to have some
optimisations coming some day, as there can be a lot of evars in an
evar_map with this new implementation (I've observed a couple of
thousands), whereas there are rarely more than a dozen undefined ones.
Folding being a linear operation, this might result in a significant
speed-up.
* The declarative mode has been moved into the plugins. This is made
possible by the proof mode feature. I tried to document it so that it
can serve as a tutorial for a tactic mode plugin.
Features user-side:
* Unfocus does not go back to the root of the proof if several Focus-s
have been performed.
It only goes back to the point where it was last focused.
* experimental (non-documented) support of keywords
BeginSubproof/EndSubproof:
BeginSubproof focuses on first goal, one can unfocus only with
EndSubproof, and only
if the proof is completed for that goal.
* experimental (non-documented) support for bullets ('+', '-' and '*')
they act as hierarchical BeginSubproof/EndSubproof:
First time one uses '+' (for instance) it focuses on first goal, when
the subproof is
completed, one can use '+' again which unfocuses and focuses on next
first goal.
Meanwhile, one cas use '*' (for instance) to focus more deeply.
Known regressions:
* The xml plugin had some functions related to proof trees. As the
structure of proof changed significantly, they do not work anymore.
* I do not know how to implement info or show script in this new engine.
Actually I don't even know what they were suppose to actually mean in
earlier versions either. I wager they would require some calm thinking
before going back to work.
* Declarative mode not entirely working (in particular proofs by
induction need to be restored).
* A bug in the inversion tactic (observed in some contributions)
* A bug in Program (observed in some contributions)
* Minor change in the 'old' type of tactics causing some contributions
to fail.
* Compilation time takes about 10-15% longer for unknown reasons (I
suspect it might be linked to the fact that I don't perform any
reduction at QED-s, and also to some linear operations on evar_map-s
(see Evd.fold_undefined above)).
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to rawconstr
Also cleaned a bit typing.ml
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* Unicodetable: Update with the standard table for lower case conversion.
* Util: Rewrite "lowercase_unicode" to take the entire unicode character set
into account.
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(This should be a conservative extension of the old version.)
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- Deactivation of short names registration and printing for
abbreviations to identical names, what avoids printing uselessly
qualified names binding where the short name is in fact equivalent.
- New treatment of abbreviations to names: don't insert any maximally
inserted implicit arguments at all at the time of the abbreviation
and use the regular internalization strategy to have them inserted
at use time.
- The previous modifications altogether make redirections of
qualified names easier and avoid the semantic change of r12349 and
hence allows to keep "Notation b := @a" as it was before, i.e. as a
notation for the deactivation of the implicit arguments of a.
- Took benefit of these changes and updated nil/cons/list/app
redefinition in "List.v".
- Fixed parsing/printing notation bugs (loop on partially applied
abreviations for constructors in constrintern.ml + bad reverting of
notations with holes that captured non anonymous variables in
match_cases_pattern).
- Add support for parsing/printing abbreviations to @-like constructors
and for reverting printing for abbreviations to constructors applied
to parameters only (function extern_symbol_pattern).
- Minor error messages fixes and minor APIs cleaning.
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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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reorganization of code) and documentation (in pcoq.mli) of the code
for parsing extensions (TACTIC/VERNAC/ARGUMENT EXTEND, Tactic
Notation, Notation); merged the two copies of interp_entry_name to
avoid they diverge.
- Added support in Tactic Notation for ne_..._list_sep in general and
for (ne_)ident_list(_sep) in particular.
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* generalize the use of .mllib to build all cma, not only in plugins/
* the .mllib in plugins/ now mention Bruno's new _mod.ml files
* lots of .cmo enumerations in Makefile.common are removed, since
they are now in .mllib
* the list of .cmo/.cmi can be retreive via a shell script line,
see for instance rule install-library
* Tolink.core_objs and Tolink.ide now contains ocaml _modules_, not
_files_
* a -I option to coqdep_boot allows to control piority of includes
(some files with the same names in kernel and checker ...)
This is quite a lot of changes, you know who to blame / report to
if something breaks.
... and last but not least I've started playing with ocamlbuild.
The myocamlbuild.ml is far from complete now, but it already allows
to build coqtop.{opt,byte} here. See comments at the top of
myocamlbuild.ml, and don't hesitate to contribute, either for completing
or simplifying it !
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