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Ok, this is merely a matter of taste, but up to now the usage
in Coq is rather to use capital letters instead of _ in the
names of inner modules.
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For the moment, the compatibility names about these new modules
are still used in the rest of Coq.
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Gmap uses Pervasives.compare which may interact badly with
structures like pairs of kernel names
For the moment, we consider elements in classes and coercions only
according to their user kernel name: this provides maximal compatibility.
But it could be interesting to try using comparision according to
canonical kernel names...
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- a module KernelPair for improving sharing between constant and mind
- shorter representation than a pair when possible
- exports comparisions on constant and mind and ...
- a kn_equal function instead of Int.equal (kn_ord ...) 0
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I hope I did not forget some [with] clauses. Otherwise, some
stack frame will be missing from the debug.
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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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hints.
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the new Int module. Only the most obvious were removed, so there
are a lot more in the wild.
This may sound heavyweight, but it has two advantages:
1. Monomorphization is explicit, hence we do not miss particular
optimizations of equality when doing it carelessly with the generic
equality.
2. When we have removed all the generic equalities on integers, we
will be able to write something like "let (=) = ()" to retrieve all
its other uses (mostly faulty) spread throughout the code, statically.
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Extend "Print Opaque Dependencies" for transparent dependencies as
well
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writing our own comparison functions, and enforcing monomorphization
in many places. This should be more efficient, btw. Still a work
in progress.
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instead of a general constr: this is the most common case and does
not loose generality (one can simply define constrs before Hint Resolving
them). Benefits:
- Natural semantics for typeclasses, not class resolution needed at
Hint Resolve time, meaning less trouble for users as well.
- Ability to [Hint Remove] any hint so declared.
- Simplifies the implementation as well.
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peculiarly messy, I hope I did not introduce too many bugs.
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Util module.
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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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compiler warnings).
I was afraid that such a brutal refactoring breaks some obscure
invariant about linking order and side-effects but the standard
library still compiles.
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especially about unused definitions, unused opens and unused rec
flags.
The following patch uses information gathered using these warnings to
clean Coq source tree. In this patch, I focused on warnings whose fix
are very unlikely to introduce bugs.
(a) "unused rec flags". They cannot change the semantics of the program
but only allow the inliner to do a better job.
(b) "unused type definitions". I only removed type definitions that were
given to functors that do not require them. Some type definitions were
used as documentation to obtain better error messages, but were not
ascribed to any definition. I superficially mentioned them in one
arbitrary chosen definition to remove the warning. This is unaesthetic
but I did not find a better way.
(c) "unused for loop index". The following idiom of imperative
programming is used at several places: "for i = 1 to n do
that_side_effect () done". I replaced "i" with "_i" to remove the
warning... but, there is a combinator named "Util.repeat" that
would only cost us a function call while improving readibility.
Should'nt we use it?
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They are still marked as safe if they are part of a module type, though.
Also local assumptions such as "Hypothesis" or "Context" are displayed
as unsafe if they happen to be defined without a section.
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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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grammar.cma
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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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- 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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We now accept the following code: Definition E := 0. Module E. End E.
Techically, we simply allow the same label to occur at most twice in
a structure_body, which is a (label * structure_field_body) list).
These two label occurences should not be at the same level of fields
(e.g. a SFBmodule and a SFBmind are ok, but not two SFBmodule's or
a SFBmodule and a SFBmodtype). Gain : a minimal amount of code change.
Drawback : no more simple List.assoc or equivalent should be performed
on a structure_body ...
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