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There are currently two other clashs : Lexer and Errors, but for
the moment these ones haven't impacted my experiments with extraction
and compiler-libs, while this Matching issue had. And anyway the new
name is more descriptive, in the spirit of the recent TacticMatching.
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Impacts MapleMode.
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Since the new proof engine, Hiddentac has been essentially trivial.
Here is what happened to the functions defined there
- Aliases, or tactics that were trivial to inline were systematically inlined
- Tactics used only in tacinterp have been moved to tacinterp
- Other tactics have been moved to a new module Tactics.Simple.
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As a result the use of the glist-style interface for manipulating goals has almost been removed.
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Proofview.Goal.enter is meant to eventually replace the Goal.sensitive monad.
This commit changes the type of Proofview.Goal.enter from taking a four argument function (environment, evar_map, hyps, concl) from a one argument function of abstract type Proofview.Goal.t. It will be both more extensible and more akin to old-style tactics.
This commit also changes the type of Proofview.Goal.{concl,hyps,env} from monadic operations to projection from a Proofview.Goal.t.
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It was a bad idea. The new API based on lists seems more sensible.
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On the compilation of Coq, we can see an increase of ~20% compile time on
my completely non-scientific tests. Hopefully this can be fixed.
There are a lot of low hanging fruits, but this is an iso-functionality commit.
With a few exceptions which were not necessary for the compilation of the theories:
- The declarative mode is not yet ported
- The timeout tactical is currently deactivated because it needs some subtle
I/O. The framework is ready to handle it, but I haven't done it yet.
- For much the same reason, the ltac debugger is unplugged. It will be more
difficult, but will eventually be back.
A few comments:
I occasionnally used a coercion from [unit Proofview.tactic] to the old
[Prooftype.tactic]. It should work smoothely, but loses any backtracking
information: the coerced tactics has at most one success.
- It is used in autorewrite (it shouldn't be a problem there). Autorewrite's
code is fairly old and tricky
- It is used in eauto, mostly for "Hint Extern". It may be an issue as time goes
as we might want to have various success in a "Hint Extern". But it would
require a heavy port of eauto.ml4
- It is used in typeclass eauto, but with a little help from Matthieu, it should
be easy to port the whole thing to the new tactic engine, actually simplifying
the code.
- It is used in fourier. I believe it to be inocuous.
- It is used in firstorder and congruence. I think it's ok. Their code is
somewhat intricate and I'm not sure they would be easy to actually port.
- It is used heavily in Function. And honestly, I have no idea whether it can do
harm or not.
Updates:
(11 June 2013) Pierre-Marie Pédrot contributed the rebase over his new stream based
architecture for Ltac matching (r16533), which avoid painfully and expensively
working around the exception-throwing control flow of the previous API.
(11 October 2013) Rebasing over recent commits (somewhere in r16721-r16730)
rendered a major bug in my implementation of Tacticals.New.tclREPEAT_MAIN
apparent. It caused Field_theory.v to loop. The bug made rewrite !lemma,
rewrite ?lemma and autorewrite incorrect (tclREPEAT_MAIN was essentially
tclREPEAT, causing rewrites to be tried in the side-conditions of conditional
rewrites as well). The new implementation makes Coq faster, but it is
pretty much impossible to tell if it is significant at all.
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This instance of gen_tactic_expr was used only to decorate
tactics via Refiner.abstract_tactics and alii, but these
expressions are now ignored by the new proof-engine (no "info"...).
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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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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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This variant was ignoring its second argument, and didn't exactly
respect its documented specification. This is fixed by removing the
variant altogether.
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- Many of them were broken, some of them after Pierre B's rework
of mli for ocamldoc, but not only (many bad annotation, many files
with no svn property about Id, etc)
- Useless for those of us that work with git-svn (and a fortiori
in a forthcoming git-only setting)
- Even in svn, they seem to be of little interest
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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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- "*" implements Arthur Charguéraud's "introv"
- "**" works as "; intros" (see also "*" in ssreflect).
- Simplifying the proof of Z_eq_dec, as suggested by Frédéric Blanqui.
- Shy attempt to seize the opportunity to clean Zarith_dec but Coq's
library is really going anarchically (see a summary of the various
formulations of total order, dichotomy of order and decidability of
equality and in stdlib-project.tex in branch V8revised-theories).
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majuscule - si pas un ident ou un terme - et se terminent par un point).
Restent quelques utilisations de "error" qui sont liées à des usages internes,
ne faudrait-il pas utiliser des exceptions plus spécifiques à la place ?
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discriminate/injection/simplify_eq acceptent maintenant un terme
comme argument. Les clauses "with" et les variantes "e" sont aussi
acceptées. Aussi, discriminate sans argument essaie maintenant
toutes les hyps quantifiées (au lieu de traiter seulement les buts
t1<>t2).
--This line, and those below, will be ignored--
M doc/refman/RefMan-tac.tex
M CHANGES
M pretyping/evd.ml
M pretyping/termops.ml
M pretyping/termops.mli
M pretyping/clenv.ml
M tactics/extratactics.ml4
M tactics/inv.ml
M tactics/equality.ml
M tactics/tactics.mli
M tactics/equality.mli
M tactics/tacticals.ml
M tactics/eqdecide.ml4
M tactics/tacinterp.ml
M tactics/tactics.ml
M tactics/extratactics.mli
M toplevel/auto_ind_decl.ml
M contrib/funind/invfun.ml
M test-suite/success/Discriminate.v
M test-suite/success/Injection.v
M proofs/clenvtac.mli
M proofs/clenvtac.ml
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juste rewrite in <id>, on a maintenant rewrite in <clause>.
Ainsi rewrite H in H1,H2 |- * === rewrite H in H1; rewrite H in H2; rewrite H
Pour l'instant rewrite H in * |- signifie: faire une fois
"try rewrite H in Hi" sur toutes les hypotheses Hi du contexte sauf H
En particulier, n'echoue pour l'instant pas s'il n'y a rien a
reecrire nulle part.
NB: rewrite H in * === rewrite H in * |- * === rewrite H in * |- ; rewrite H
ATTENTION: la syntaxe de rewrite ayant changé, j'adapte interface en conséquence.
Est-ce la bonne facon de faire ?
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la compilation de fichiers comme hipattern.ml (renommé en
hipattern.ml4)
- Extension de eqdecide.ml4 pour qu'il gère les buts sans
quantificateurs, basés soient sur sumbool soit sur or, et à symétrie
près de la disjunction.
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(mécanismes de renommage des noms de constantes, de module, de ltac et de certaines variables liées de lemmes et de tactiques, mécanisme d'ajout d'arguments implicites, etc.)
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list_skipn n l
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pour compatibilité avec les modules.
Globalisation partielle des invocations de tactiques hors définitions
(partielle car noms des Intros/Assert/Inversion/... non connus).
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Simplify_eq et Injection
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et Injection
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