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2021-01-16Drop support for Coq 8.10 and deprecate the `deprecate` notationKazuhiko Sakaguchi
- The `deprecate` notation and `iota_add` have been deprecated. All the uses of the `deprecate` notation have been replaced with the `deprecated` attribute. - Deprecation aliases in `ssrnat` and `ssrnum` introduced in MathComp 1.11+beta1 have been removed. - Remove `VDFILE` related hacks from `Makefile.common`.
2020-11-20Merge pull request #663 from CohenCyril/clean_headaffeldt-aist
Using Arguments / to deal with volatile definitions
2020-11-20Using Arguments / to deal with volatile definitionsCyril Cohen
2020-11-19Removing duplicate clears and turning the warning into an errorCyril Cohen
2020-11-19add declare scopesReynald Affeldt
2020-09-29rename mem_imset to imset_f (with deprecation)Christian Doczkal
2020-06-09fix coq 8.12 warningsCyril Cohen
2019-12-28Refactoring and linting especially polydivKazuhiko Sakaguchi
- Replace `altP eqP` and `altP (_ =P _)` with `eqVneq`: The improved `eqVneq` lemma (#351) is redesigned as a comparison predicate and introduces a hypothesis in the form of `x != y` in the second case. Thus, `case: (altP eqP)`, `case: (altP (x =P _))` and `case: (altP (x =P y))` idioms can be replaced with `case: eqVneq`, `case: (eqVneq x)` and `case: (eqVneq x y)` respectively. This replacement slightly simplifies and reduces proof scripts. - use `have [] :=` rather than `case` if it is better. - `by apply:` -> `exact:`. - `apply/lem1; apply/lem2` or `apply: lem1; apply: lem2` -> `apply/lem1/lem2`. - `move/lem1; move/lem2` -> `move/lem1/lem2`. - Remove `GRing.` prefix if applicable. - `negbTE` -> `negPf`, `eq_refl` -> `eqxx` and `sym_equal` -> `esym`.
2019-12-11Use `deprecate` notation in ssrnumKazuhiko Sakaguchi
2019-12-11Make an appropriate use of the order library everywhere (#278, #280, #282, ↵Kazuhiko Sakaguchi
#283, #285, #286, #288, #296, #330, #334, and #341) ssrnum related changes: - Redefine the intermediate structure between `idomainType` and `numDomainType`, which is `normedDomainType` (normed integral domain without an order). - Generalize (by using `normedDomainType` or the order structures), relocate (to order.v), and rename ssrnum related definitions and lemmas. - Add a compatibility module `Num.mc_1_9` and export it to check compilation. - Remove the use of the deprecated definitions and lemmas from entire theories. - Implement factories mechanism to construct several ordered and num structures from fewer axioms. order related changes: - Reorganize the hierarchy of finite lattice structures. Finite lattices have top and bottom elements except for empty set. Therefore we removed finite lattice structures without top and bottom. - Reorganize the theory modules in order.v: + `LTheory` (lattice and partial order, without complement and totality) + `CTheory` (`LTheory` + complement) + `Theory` (all) - Give a unique head symbol for `Total.mixin_of`. - Replace reverse and `^r` with converse and `^c` respectively. - Fix packing and cloning functions and notations. - Provide more ordered type instances: Products and lists can be ordered in two different ways: the lexicographical ordering and the pointwise ordering. Now their canonical instances are not exported to make the users choose them. - Export `Order.*.Exports` modules by default. - Specify the core hint database explicitly in order.v. (see #252) - Apply 80 chars per line restriction. General changes: - Give consistency to shape of formulae and namings of `lt_def` and `lt_neqAle` like lemmas: lt_def x y : (x < y) = (y != x) && (x <= y), lt_neqAle x y : (x < y) = (x != y) && (x <= y). - Enable notation overloading by using scopes and displays: + Define `min` and `max` notations (`minr` and `maxr` for `ring_display`) as aliases of `meet` and `join` specialized for `total_display`. + Provide the `ring_display` version of `le`, `lt`, `ge`, `gt`, `leif`, and `comparable` notations and their explicit variants in `Num.Def`. + Define 3 variants of `[arg min_(i < n | P) F]` and `[arg max_(i < n | P) F]` notations in `nat_scope` (specialized for nat), `order_scope` (general version), and `ring_scope` (specialized for `ring_display`). - Update documents and put CHANGELOG entries.
2019-11-27Explicit `bigop` enumeration handlingGeorges Gonthier
Added lemmas `big_enum_cond`, `big_enum` and `big_enumP` to handle more explicitly big ops iterating over explicit enumerations in a `finType`. The previous practice was to rely on the convertibility between `enum A` and `filter A (index_enum T)`, sometimes explicitly via the `filter_index_enum` equality, more often than not implicitly. Both are likely to fail after the integration of `finmap`, as the `choiceType` theory can’t guarantee that the order in selected enumerations is consistent. For this reason `big_enum` and the related (but currently unused) `big_image` lemmas are restricted to the abelian case. The `big_enumP` lemma can be used to handle enumerations in the non-abelian case, as explained in the `bigop.v` internal documentation. The Changelog entry enjoins clients to stop relying on either `filter_index_enum` and convertibility (though this PR still provides both), and warns about the restriction of the `big_image` lemma set to the abelian case, as it it a possible source of incompatibility.
2019-05-17refactor `seq` permutation theoryGeorges Gonthier
- Change the naming of permutation lemmas so they conform to a consistent policy: `perm_eq` lemmas have a `perm_` (_not_ `perm_eq`) prefix, or sometimes a `_perm` suffix for lemmas that _prove_ `perm_eq` using a property when there is also a lemma _using_ `perm_eq` for the same property. Lemmas that do not concern `perm_eq` do _not_ have `perm` in their name. - Change the definition of `permutations` for a time- and space- back-to-front generation algorithm. - Add frequency tally operations `tally`, `incr_tally`, `wf_tally` and `tally_seq`, used by the improved `permutation` algorithm. - add deprecated aliases for renamed lemmas
2019-05-06add `deprecate` helper notation; no `perm` in non-`perm_eq` lemma namesGeorges Gonthier
- add notation support for lemma renaming PRs, helping clients adjust to the name change by emitting warning or raising errors when the old name is used. The default is to emit warnings, but clients can change this to silence (if electing to delay migration) or errors (to help with actual migration). Usage: Notation old_id := (deprecate old_id new_id) (only parsing). —> Caveat 1: only prenex maximal implicit of `new_id` are preserved, so, as `Notation` does not support on-demand implicits, the latter should be added explicitly as in `(deprecate old new _ _)`. —> Caveat 2: the warnings are emitted by a tactic-in-term, which is interpreted during type elaboration. As the SSReflect elaborator may re-infer type in arguments multiple times (notably, views and arguments to `apply` and `rewrite`), clients may see duplicate warnings. - use the `deprecate` facility to introduce the first part of the refactoring of `seq` permutation lemmas : only lemmas concerning `perm_eq` should have `perm` as a component of their name. - document local additions in `ssreflect.v` and `ssrbool.v` - add 8.8 `odd-order` regression - the explicit beta-redex idiom use in the `perm_uniq` and `leq_min_perm` aliases avoids a strange name-sensitive bug of view interpretation in Coq 8.7.
2019-04-29Generalise use of `{pred T}` from coq/coq#9995Georges Gonthier
Use `{pred T}` systematically for generic _collective_ boolean predicate. Use `PredType` to construct `predType` instances. Instrument core `ssreflect` files to replicate these and other new features introduces by coq/coq#9555 (`nonPropType` interface, `simpl_rel` that simplifies with `inE`).
2019-04-26Cleaning Require and Require ImportsCyril Cohen
2018-12-13Adjust implicits of cancellation lemmasGeorges Gonthier
Like injectivity lemmas, instances of cancellation lemmas (whose conclusion is `cancel ? ?`, `{in ?, cancel ? ?}`, `pcancel`, or `ocancel`) are passed to generic lemmas such as `canRL` or `canLR_in`. Thus such lemmas should not have trailing on-demand implicits _just before_ the `cancel` conclusion, as these would be inconvenient to insert (requiring essentially an explicit eta-expansion). We therefore use `Arguments` or `Prenex Implicits` directives to make all such arguments maximally inserted implicits. We don’t, however make other arguments implicit, so as not to spoil direct instantiation of the lemmas (in, e.g., `rewrite -[y](invmK injf)`). We have also tried to do this with lemmas whose statement matches a `cancel`, i.e., ending in `forall x, g (E[x]) = x` (where pattern unification will pick up `f = fun x => E[x]`). We also adjusted implicits of a few stray injectivity lemmas, and defined constants. We provide a shorthand for reindexing a bigop with a permutation. Finally we used the new implicit signatures to simplify proofs that use injectivity or cancellation lemmas.
2018-12-11Fix some new warnings emitted by Coq 8.10:Anton Trunov
``` Warning: Adding and removing hints in the core database implicitly is deprecated. Please specify a hint database. [implicit-core-hint-db,deprecated] ```
2018-12-04Document parameter names whenever possibleAnton Trunov
As suggested by @ggonthier [here](https://github.com/math-comp/math-comp/pull/249#pullrequestreview-177938295) > One of the design ideas for the `Arguments` command was that it would allow to centralise the documentation of the application of constants. In that spirit it would be in my opinion better to make as much use of this as possible, and to document the parameter names whenever possible, especially that of implicit parameters. and [here](https://github.com/math-comp/math-comp/pull/253#discussion_r237434163): > As a general rule, defined functional constants should have maximal prenex implicit arguments, as this facilitates their use as arguments to functionals, because this mimics the way function constants are treated in functional programming languages with Hindley-Milner type inference. Conversely, lemmas and theorems should have on-demand implicit arguments, possibly interspersed with explicit ones, as it's fairly common for other lemmas to have universally quantified premises; also, this makes it easier to specify such arguments with the apply: tactic. This policy may be amended for lemmas that are used as functional arguments, such as reflection or cancellation lemmas. Unfortunately there is currently no easy way to tell Coq to use different defaults for definitions and lemmas, so MathComp sticks to the on-demand default, as there are significantly more lemmas than definition, and use the Prenex Implicits to redress matters in bulk for definitions. However, this is not completely systematic, and is sometimes omitted for constants that are not used as functional arguments in the library, or inside the sections in which the definition occur, since such commands need to be repeated after the section is closed. Since Arguments commands should document the intended constant usage as best as possible, they should follow the implicits policy - even in cases such as this where the Prenex Implicits had been skipped.
2018-11-21Merge Arguments and Prenex ImplicitsAnton Trunov
See the discussion here: https://github.com/math-comp/math-comp/pull/242#discussion_r233778114
2018-03-04Change deprecated Arguments Scope to ArgumentsJasper Hugunin
2018-02-22Change Implicit Arguments to Arguments in characterJasper Hugunin
2018-02-06running semi-automated linting on the whole libraryCyril Cohen
2016-11-07update copyright bannerAssia Mahboubi
2016-08-25Enriched numClosedFieldType so that it factors a lot of theory from both ↵Cyril Cohen
complex and algC. The definitions of 'i, conjC, Re, Im, n.-root, sqrtC and their theory have been moved to the numClosedFieldType structure in ssrnum. This covers boths the uses in algC and complex.v. To that end the numClosedFieldType structure has been enriched with conjugation and 'i. Note that 'i can be deduced from the property of algebraic closure and is only here to let the user chose which definitional equality should hold on 'i. Same thing for conjC that could be written `|x|^+2/x, the only nontrivial (up to my knowledge) property is the fact that conjugation is a ring morphism.
2015-07-28update copyright bannerEnrico Tassi
2015-07-17Updating files + reorganizing everythingCyril Cohen
2015-04-09character for v8.5Cyril Cohen
2015-03-09Initial commitEnrico Tassi