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authoraspiwack2013-11-02 15:34:01 +0000
committeraspiwack2013-11-02 15:34:01 +0000
commit260965dcf60d793ba01110ace8945cf51ef6531f (patch)
treed07323383e16bb5a63492e2721cf0502ba931716 /plugins/funind/indfun_common.ml
parent328279514e65f47a689e2d23f132c43c86870c05 (diff)
Makes the new Proofview.tactic the basic type of Ltac.
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. git-svn-id: svn+ssh://scm.gforge.inria.fr/svn/coq/trunk@16967 85f007b7-540e-0410-9357-904b9bb8a0f7
Diffstat (limited to 'plugins/funind/indfun_common.ml')
-rw-r--r--plugins/funind/indfun_common.ml4
1 files changed, 2 insertions, 2 deletions
diff --git a/plugins/funind/indfun_common.ml b/plugins/funind/indfun_common.ml
index 04cc139c01..e5b975e149 100644
--- a/plugins/funind/indfun_common.ml
+++ b/plugins/funind/indfun_common.ml
@@ -484,7 +484,7 @@ let jmeq_refl () =
with e when Errors.noncritical e -> raise (ToShow e)
let h_intros l =
- tclMAP h_intro l
+ tclMAP (fun x -> Proofview.V82.of_tactic (h_intro x)) l
let h_id = Id.of_string "h"
let hrec_id = Id.of_string "hrec"
@@ -503,5 +503,5 @@ let evaluable_of_global_reference r = (* Tacred.evaluable_of_global_reference (G
let list_rewrite (rev:bool) (eqs: (constr*bool) list) =
tclREPEAT
(List.fold_right
- (fun (eq,b) i -> tclORELSE ((if b then Equality.rewriteLR else Equality.rewriteRL) eq) i)
+ (fun (eq,b) i -> tclORELSE (Proofview.V82.of_tactic ((if b then Equality.rewriteLR else Equality.rewriteRL) eq)) i)
(if rev then (List.rev eqs) else eqs) (tclFAIL 0 (mt())));;