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are declared as such, but I suspect Coq to contain some more.
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These annotations are purely optional, but could be quite helpful
when trying to understand the code, and in particular trying to
trace which which data-structure may end in the libobject part
of a vo. By the way, we performed some code simplifications :
- in Library, a part of the REQUIRE objects was unused.
- in Declaremods, we removed some checks that were marked as
useless, this allows to slightly simplify the stored objects.
To investigate someday : in recordops, the RECMETHODS is storing
some evar_maps. This is ok for the moment, but might not be in
the future (cf previous commit on auto hints). This RECMETHODS
was not detected by my earlier tests : not used in the stdlib ?
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constructors as non relevant for injection. Also made injection
failing in such situation.
Incidentally, this fixes a loop in Invfun.reflexivity_with_destruct_cases
(observed in the compilation of CoinductiveReals.LNP_Digit). The
most probable explanation is that this loop was formerly protected by
a failing rewrite which stopped failing after revision 14549 made
second-order pattern-matching more powerful.
Also suppressed dead code in Invfun.intros_with_rewrite.
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There were some confusion on the role of clear_proofs which was
applicable only to the global named_context. Hopefully made things
clearer.
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Tactics set/remember and destruct/induction take benefit of it.
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evars when rewriting. Use it for autorewrite and subst. Accept evars
instantiation in multi_rewrite so that rewrite alone remains
compatible (it is used in contribs, e.g. Godel, in places where it
does not seem absurd to allow it), but there are no good reason for
it. Comments welcome.
+ addition of some tests for rewriting (one being related to commit 14217)
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plugins so that errors are indeed processed. Not sure this is the best
way to do it. Maybe funind should use with_heavy_rollback for
delimitating its use of vernac commands.
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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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This reverts commit 33434695615806a85cec88452c93ea69ffc0e719.
Conflicts:
kernel/term_typing.ml
test-suite/success/polymorphism.v
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The recent experiment with -dont-load-proofs in the stdlib showed that
this options isn't fully safe: some axioms were generated (Include ?
functor application ? This is still to be fully understood).
Instead, I've implemented an idea of Yann: only load opaque proofs when
we need them. This is almost as fast as -dont-load-proofs (on the stdlib,
we're now 15% faster than before instead of 20% faster with -dont-load-proofs),
but fully compatible with Coq standard behavior.
Technically, the const_body field of Declarations.constant_body now regroup
const_body + const_opaque + const_inline in a ternary type. It is now either:
- Undef : an axiom or parameter, with an inline info
- Def : a transparent definition, with a constr_substituted
- OpaqueDef : an opaque definition, with a lazy constr_substitued
Accessing the lazy constr of an OpaqueDef might trigger the read on disk of
the final section of a .vo, where opaque proofs are located.
Some functions (body_of_constant, is_opaque, constant_has_body) emulate
the behavior of the old fields. The rest of Coq (including the checker)
has been adapted accordingly, either via direct access to the new const_body
or via these new functions. Many places look nicer now (ok, subjective notion).
There are now three options: -lazy-load-proofs (default), -force-load-proofs
(earlier semantics), -dont-load-proofs. Note that -outputstate now implies
-force-load-proofs (otherwise the marshaling fails on some delayed lazy).
On the way, I fixed what looked like a bug : a module type
(T with Definition x := c) was accepted even when x in T was opaque.
I also tried to clarify Subtyping.check_constant.
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intern_env
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According to B. Gregoire, this stuff is obsolete. Fine control
on when to launch the VM in conversion problems is now provided
by VMcast. We were already almost never boxing definitions anymore
in stdlib files.
"(Un)Boxed Definition foo" will now trigger a parsing error,
same with Fixpoint. The option "(Un)Set Boxed Definitions"
aren't there anymore, but tolerated (as no-ops), since unknown
options raise a warning instead of an error by default.
Some more cleaning could be done in the vm.
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Rationale: the expansion ignores the TYPED clause when
{RAW,GLOB}_TYPED are given. Indeed, in this case, the final type is a
consequence of either "INTERPRETED BY" (if given), or the default one
based on GLOB_TYPED.
This avoids the pitfall of the "raw" argument extension, where the
TYPED clause was unused and totally misleading.
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perl -pi -e 's/(mk)R(Ref|Var|Evar|PatVar|App|Lambda|Prod|LetIn|Case
s|LetTuple|If|Rec|Sort|Hole|Cast|Dynamic|Prop|Type|Fix|CoFix|Struct
Rec|WfRec|MeasureRec)/\1G\2/g' **/*.ml*
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perl -pi -e 's/(\W|_)raw((?:sort|_prop|terms?|_branch|_red_flag|pat
tern|_constr_of|_of_pat)(?:\W|_))/\1glob_\2/g;s/glob__/glob_/g;s/(\
W)R((?:Prop|Type|Fix|CoFix|StructRec|WfRec|MeasureRec)\W)/\1G\2/g;s
/glob_terms?/glob_constr/g' **/*.ml*
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There was a discrepancy of the notions "raw" and "globalized" between
constrs and tactics, and some confusion of the notions in
e.g. genarg.mli (see all globwit_* there). This commit is a first step
towards unification of terminology between constrs and
tactics. Changes in module names will be done separately.
In extraargs.ml4, the "ARGUMENT EXTEND raw" and related stuff, even
affected by this change, has not been touched and highlights another
confusion in "ARGUMENT EXTEND" in general that will be addressed
later.
The funind plugin doesn't respect the same naming conventions as the
rest, so leave some "raw" there for now... they will be addressed
later.
This big commit has been generated with the following command (wrapped
here, but should be on a *single* line):
perl -pi -e 's/(\W(?:|pp|pr_l)|_)raw((?:constrs?|type|vars|_binder|
_context|decl|_decompose|_compose|_make)(?:\W|_))/\1glob_\2/g;s/glo
b__/glob_/g;s/prraw/prglob/g;s/(\W)R((?:Ref|Var|Evar|PatVar|App|Lam
bda|Prod|LetIn|Cases|LetTuple|If|Rec|Sort|Hole|Cast|Dynamic)\W)/\1G
\2/g' `git ls-files|grep -v dev/doc/changes.txt`
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option of "auto". Works for not too complicated hints (e.g. "@pair _ _ 0").
Would be simpler if make_apply_entry supported lemmas containing evars.
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Arguments bound with tactic(_) in TACTIC EXTEND rules are now of type
glob_tactic_expr, instead of glob_tactic_expr * tactic. Only the first
component is kept, the second one can be obtained with
Tacinterp.eval_tactic.
Rationale: these declare parsing rules, and eval_tactic is a semantic
action, and therefore should be done in the rule body
instead. Moreover, having the glob_tactic_expr and its evaluation
captured by these rules was quite confusing IMHO.
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Functions from Termops were sometimes fully qualified, sometimes not
in the same module. This commit makes their usage more uniform.
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These functions are applied much more often without labels than with
them (the alternate of adding the label wherever relevant changes 124
lines instead of 41). Moreover, this is more consistent with the Term
module and there is no ambiguity in argument types. This commit goes
towards elimination of occurrences of OCaml warning 6.
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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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scheme was called on an unknown function anme).
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to their signature of implicit positions and scopes) is computed.
A bit of documentation in constrintern.mli.
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thunks. Move from [lazy] to [delayed] in subtac.
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a 3 state type to allow:
* KernelVerbose / KernelSilent : handle the display of messages launch by Coq
* UserVerbose : handle the display of messages launch by user actions
Coq will still behaves the same way (TODOs in the code mark the places
where we can now change the behaviour). I'll remove them in a few days
when we'll have agreed on the correct behaviour.
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checking function was used instead of a test of existence in the context.
Also restricted constr_of_id which had no reason to interpret a
posteriori an already interpreted identifier as a global
reference. Consequently adapted funind.
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These declarations (e.g. make -C .. bin/coqtop.byte) are quite
annoying when debugging stuff over the whole archive: all of a
sudden, M-x recompile isn't doing what you intended just because
you've visited some specific files. Instead:
- Feel free to rather add intermediate targets in the Makefile if
they aren't there yet.
- For avoiding typing the -C with many .. after, you can have a
look at my recursively-descending make:
http://www.pps.jussieu.fr/~letouzey/download/make.sh
which is to be renamed make and placed in a bin dir with more
priority than /usr/bin. Beware! I've already add a few bad surprises
with this hack, but it's really convenient nonetheless.
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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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