Commit graph

19 commits

Author SHA1 Message Date
Leonardo de Moura
bf9f7560f7 feat(frontends/lean): (Type u) can't be a proposition
(Type u)  is the old (Type (u+1))
(PType u) is the old (Type u)
Type*     is the old (Type (_+1))
PType*    is the old Type*

The stdlib can be compiled, but we still have > 70 broken tests

See discussion at #1341
2017-01-30 11:54:00 -08:00
Leonardo de Moura
70b7a35cfe fix(library/constructions/has_sizeof): it was assuming that recursive arguments occur after non recursive ones 2017-01-16 22:59:17 -08:00
Leonardo de Moura
554cef1d36 feat(library/tactic/smt/congruence_closure): propagate disequalities 2017-01-03 14:53:27 -08:00
Leonardo de Moura
7f4160bb4b feat(library/constructions): add helper procedures for building injection and inconsistency proofs for constructor equalities 2016-12-25 12:44:33 -08:00
Leonardo de Moura
fe3ed3d383 fix(library/constructions/induction_on): induction_on was not being marked as aux_recursor 2016-12-20 22:41:50 -08:00
Leonardo de Moura
924b4d3bdc refactor(library, library/tactic): move simp_lemmas and eqn_lemmas to tactic folder
They were at src/library because we hoped we would be able to use them
in the type_context unifier. However, the plan did not work for several
reasons. We saved the partial implementation in the branch: https://github.com/leodemoura/lean/tree/type_context_with_refl_lemmas

Here are the problems:

1) We have to be able to rewrite even when the type context is already in tmp-mode.
   This is an issue because the tmp metavariables in the refl lemma clash with the ones created in the type context.

  Solution: implemented lift operation for idx metavariables, and custom
  match. This solution is not perfect since the lifting is extra overhead.

2) The term being "unfolded" may be stuck. Example:

      nat.add n (@one nat ?m)

  will not match the pattern

      nat.add ?x_0 (nat.succ ?x_1)

  because ?m is not assigned yet.
  We can assign it during the matching process because it is a regular metavariable and the matching is performed in
  tmp_mode.

  Possible workaround a) try to instanciate type class instances before we try the refl lemmas.
  This is a potential performance problem because the term can be arbitrarily big.
  The current heuristics we use to speed up the process do not work for the example above.

  Possible workaround b) allow regular metavariables be assigned by type class resolution even
  when we are in tmp-mode.

  We have not tried to implement any of these workarounds.

3) There are many more lazy-delta steps. Before this feature, when we unfold `nat.add a (succ ... (succ b) ...)`,
   we are done with delta-reduction. It is just iota and beta after that.
   However, with refl-lemmas, the term `nat.add a (succ ... (succ b) ...)` produces one lazy-delta step per succ.
   This produces nasty side-effects because of the
   The heuristic (f t =?= f s) ==> (t =?= s).

   Examples such as
       (fib 8) =?= 34
   will take a very long time because of this heuristic.

   Possible workaround: cache failures like we did in Lean2.
   However, failure are only easy to cache if there are no meta-variables.

4) The type context trace gets very confusing since we use is_def_eq for matching lhs while we are computing is_def_eq.
   Possible workaround: disable trace when trying refl_lemmas.

5) We must be able to temporarily disable the feature.
   Example: when proving a refl_lemma for a definition `f`, we may have
   to expand the nested definitions
   (e.g., for match-end blocks)

6) refl/simp lemmas were designed to rewrite elaborated terms.
   Using them during unification may produce a series of unexpected
   behaviors since terms usually contain many regular and universe meta-variables.

7) We need to define a notion of "refl stuck application".
   Right now, a metavar is stuck, a projection is stuck if the structure
   is stuck, a recursor is stuck is the major premise is stuck.
   An application (f ...) is refl-lemma stuck if f has refl-lemmas
   associated with it, AND metavariables occurring in arguments are
   preventing a refl-lemma from being applied.
2016-10-12 14:36:00 -07:00
Leonardo de Moura
a796bda14e refactor(library/tactic): use new simp_lemmas module in the simplifier 2016-10-08 21:54:34 -07:00
Leonardo de Moura
d747fcb17c refactor(library/tactic/simp_lemmas): new caching mechanism 2016-10-06 20:20:01 -07:00
Leonardo de Moura
d59410cc41 refactor(kernel): support only proof irrelevant mode 2016-09-27 17:18:52 -07:00
Leonardo de Moura
d0d75c0923 refactor(kernel): reduce number of configurations supported in the kernel
Now, eta and impredicativity are assumed to be always true.

Motivation: the rest of the system assumes eta.
Regarding impredicativity, we decided to support only the standard library.
2016-09-27 17:07:01 -07:00
Leonardo de Moura
5e5285ee67 refactor(library): rename pr1/pr2 ==> fst/snd 2016-09-21 09:48:39 -07:00
Leonardo de Moura
89f62edaf0 refactor(library): reduce dependecies on old code, simplify normalize module 2016-09-19 22:12:34 -07:00
Leonardo de Moura
c9d054ccaa chore(library/constructions/cases_on): fix warning 2016-09-11 20:39:32 -07:00
Leonardo de Moura
932d14241b chore(kernel): remove support for mutually inductive datatypes from the kernel 2016-09-10 17:39:17 -07:00
Daniel Selsam
b0c5744eea feat(inductive_compiler): support for mutually inductive types 2016-09-10 14:22:27 -07:00
Leonardo de Moura
81a30a69d2 refactor(library/normalize): remove unfold and unfold_full attributes 2016-09-05 08:40:58 -07:00
Leonardo de Moura
f7df7dc9a7 refactor(kernel): add reducibility_hints 2016-09-04 16:30:02 -07:00
Leonardo de Moura
fc4e304b27 refactor(library): move equations to equations_compiler 2016-08-11 10:08:30 -07:00
Leonardo de Moura
f056f0f2cb refactor(library): definitional ==> constructions 2016-08-11 10:08:22 -07:00