1. 21 Dec, 2015 1 commit
  2. 15 Dec, 2015 2 commits
    • Ben Gamari's avatar
      Expose enabled language extensions to TH · c1e25536
      Ben Gamari authored
      This exposes `template-haskell` functions for querying the language
      extensions which are enabled when compiling a module,
      
      - an `isExtEnabled` function to check whether an extension is enabled
      - an `extsEnabled` function to obtain a full list of enabled extensions
      
      To avoid code duplication this adds a `GHC.LanguageExtensions` module to
      `ghc-boot` and moves `DynFlags.ExtensionFlag` into it. A happy
      consequence of this is that the ungainly `DynFlags` lost around 500
      lines. Moreover, flags corresponding to language extensions are now
      clearly distinguished from other flags due to the `LangExt.*` prefix.
      
      Updates haddock submodule.
      
      This fixes #10820.
      
      Test Plan: validate
      
      Reviewers: austin, spinda, hvr, goldfire, alanz
      
      Reviewed By: goldfire
      
      Subscribers: mpickering, RyanGlScott, hvr, simonpj, thomie
      
      Differential Revision: https://phabricator.haskell.org/D1200
      
      GHC Trac Issues: #10820
      c1e25536
    • Simon Peyton Jones's avatar
      Allow recursive (undecidable) superclasses · 6eabb6dd
      Simon Peyton Jones authored
      This patch fulfils the request in Trac #11067, #10318, and #10592,
      by lifting the conservative restrictions on superclass constraints.
      
      These restrictions are there (and have been since Haskell was born) to
      ensure that the transitive superclasses of a class constraint is a finite
      set.  However (a) this restriction is conservative, and can be annoying
      when there really is no recursion, and (b) sometimes genuinely recursive
      superclasses are useful (see the tickets).
      
      Dimitrios and I worked out that there is actually a relatively simple way
      to do the job. It’s described in some detail in
      
         Note [The superclass story] in TcCanonical
         Note [Expanding superclasses] in TcType
      
      In brief, the idea is to expand superclasses only finitely, but to
      iterate (using a loop that already existed) if there are more
      superclasses to explore.
      
      Other small things
      
      - I improved grouping of error messages a bit in TcErrors
      
      - I re-centred the haddock.compiler test, which was at 9.8%
        above the norm, and which this patch pushed slightly over
      6eabb6dd
  3. 11 Dec, 2015 1 commit
    • eir@cis.upenn.edu's avatar
      Add kind equalities to GHC. · 67465497
      eir@cis.upenn.edu authored
      This implements the ideas originally put forward in
      "System FC with Explicit Kind Equality" (ICFP'13).
      
      There are several noteworthy changes with this patch:
       * We now have casts in types. These change the kind
         of a type. See new constructor `CastTy`.
      
       * All types and all constructors can be promoted.
         This includes GADT constructors. GADT pattern matches
         take place in type family equations. In Core,
         types can now be applied to coercions via the
         `CoercionTy` constructor.
      
       * Coercions can now be heterogeneous, relating types
         of different kinds. A coercion proving `t1 :: k1 ~ t2 :: k2`
         proves both that `t1` and `t2` are the same and also that
         `k1` and `k2` are the same.
      
       * The `Coercion` type has been significantly enhanced.
         The documentation in `docs/core-spec/core-spec.pdf` reflects
         the new reality.
      
       * The type of `*` is now `*`. No more `BOX`.
      
       * Users can write explicit kind variables in their code,
         anywhere they can write type variables. ...
      67465497
  4. 07 Dec, 2015 1 commit
    • Alan Zimmerman's avatar
      Refactor ConDecl · 51a5e68d
      Alan Zimmerman authored
      The ConDecl type in HsDecls is an uneasy compromise. For the most part,
      HsSyn directly reflects the syntax written by the programmer; and that
      gives just the right "pegs" on which to hang Alan's API annotations. But
      ConDecl doesn't properly reflect the syntax of Haskell-98 and GADT-style
      data type declarations.
      
      To be concrete, here's a draft new data type
      
      ```lang=hs
      data ConDecl name
        | ConDeclGADT
            { con_names   :: [Located name]
            , con_type    :: LHsSigType name  -- The type after the ‘::’
            , con_doc     :: Maybe LHsDocString }
      
        | ConDeclH98
            { con_name    :: Located name
      
            , con_qvars     :: Maybe (LHsQTyVars name)
              -- User-written forall (if any), and its implicit
              -- kind variables
              -- Non-Nothing needs -XExistentialQuantification
      
            , con_cxt       :: Maybe (LHsContext name)
              -- ^ User-written context (if any)
      
            , con_details   :: HsConDeclDetails name
                -- ^ Arguments
      
            , con_doc       :: Maybe LHsDocString
                -- ^ A possible Haddock comment.
            } deriving (Typeable)
      ```
      
      Note that
      
          For GADTs, just keep a type. That's what the user writes.
          NB:HsType can represent records on the LHS of an arrow:
      
            { x:Int,y:Bool} -> T
      
          con_qvars and con_cxt are both Maybe because they are both
          optional (the forall and the context of an existential data type
      
          For ConDeclGADT the type variables of the data type do not scope
          over the con_type; whereas for ConDeclH98 they do scope over con_cxt
          and con_details.
      
      Updates haddock submodule.
      
      Test Plan: ./validate
      
      Reviewers: simonpj, erikd, hvr, goldfire, austin, bgamari
      
      Subscribers: erikd, goldfire, thomie, mpickering
      
      Differential Revision: https://phabricator.haskell.org/D1558
      
      GHC Trac Issues: #11028
      51a5e68d
  5. 01 Dec, 2015 1 commit
    • Simon Peyton Jones's avatar
      Refactor treatment of wildcards · 1e041b73
      Simon Peyton Jones authored
      This patch began as a modest refactoring of HsType and friends, to
      clarify and tidy up exactly where quantification takes place in types.
      Although initially driven by making the implementation of wildcards more
      tidy (and fixing a number of bugs), I gradually got drawn into a pretty
      big process, which I've been doing on and off for quite a long time.
      
      There is one compiler performance regression as a result of all
      this, in perf/compiler/T3064.  I still need to look into that.
      
      * The principal driving change is described in Note [HsType binders]
        in HsType.  Well worth reading!
      
      * Those data type changes drive almost everything else.  In particular
        we now statically know where
      
             (a) implicit quantification only (LHsSigType),
                 e.g. in instance declaratios and SPECIALISE signatures
      
             (b) implicit quantification and wildcards (LHsSigWcType)
                 can appear, e.g. in function type signatures
      
      * As part of this change, HsForAllTy is (a) simplified (no wildcards)
        and (b) split into HsForAllTy and HsQualTy.  The two contructors
        appear when and only when the correponding user-level construct
        appears.  Again see Note [HsType binders].
      
        HsExplicitFlag disappears altogether.
      
      * Other simplifications
      
           - ExprWithTySig no longer needs an ExprWithTySigOut variant
      
           - TypeSig no longer needs a PostRn name [name] field
             for wildcards
      
           - PatSynSig records a LHsSigType rather than the decomposed
             pieces
      
           - The mysterious 'GenericSig' is now 'ClassOpSig'
      
      * Renamed LHsTyVarBndrs to LHsQTyVars
      
      * There are some uninteresting knock-on changes in Haddock,
        because of the HsSyn changes
      
      I also did a bunch of loosely-related changes:
      
      * We already had type synonyms CoercionN/CoercionR for nominal and
        representational coercions.  I've added similar treatment for
      
            TcCoercionN/TcCoercionR
      
            mkWpCastN/mkWpCastN
      
        All just type synonyms but jolly useful.
      
      * I record-ised ForeignImport and ForeignExport
      
      * I improved the (poor) fix to Trac #10896, by making
        TcTyClsDecls.checkValidTyCl recover from errors, but adding a
        harmless, abstract TyCon to the envt if so.
      
      * I did some significant refactoring in RnEnv.lookupSubBndrOcc,
        for reasons that I have (embarrassingly) now totally forgotten.
        It had to do with something to do with import and export
      
      Updates haddock submodule.
      1e041b73
  6. 27 Nov, 2015 1 commit
  7. 25 Nov, 2015 1 commit
    • Simon Peyton Jones's avatar
      Refactor default methods (Trac #11105) · 924f8517
      Simon Peyton Jones authored
      This patch does some signficant refactoring to the treatment
      of default methods in class declarations, and more generally
      to the type checking of type/class decls.
      
      Highlights:
      
      * When the class has a generic-default method, such as
           class C a where
             op :: a -> a -> Bool
             default op :: Ord a => a -> a -> a
        the ClassOpItem records the type of the generic-default,
        in this case the type (Ord a => a -> a -> a)
      
      * I killed off Class.DefMeth in favour of the very-similar
        BasicTypes.DefMethSpec.  However it turned out to be better
        to use a Maybe, thus
            Maybe (DefMethSpec Type)
        with Nothing meaning "no default method".
      
      * In TcTyClsDecls.tcTyClGroup, we used to accumulate a [TyThing],
        but I found a way to make it much simpler, accumulating only
        a [TyCon].  Much less wrapping and unwrapping.
      
      * On the way I also fixed Trac #10896 in a better way. Instead
        of killing off all ambiguity checks whenever there are any type
        errors (the fix in commit 8e8b9ed9), I instead recover in
        TcTyClsDecls.checkValidTyCl.
      
      There was a lot of associated simplification all round
      924f8517
  8. 22 Nov, 2015 1 commit
    • Alan Zimmerman's avatar
      ApiAnnotations: Make all RdrName occurences Located · 3df9563e
      Alan Zimmerman authored
      At the moment the API Annotations can only be used on the ParsedSource,
      as there are changes made to the RenamedSource that prevent it from
      being used to round trip source code.
      
      It is possible to build a map from every Located Name in the
      RenamedSource from its location to the Name, which can then be used when
      resolved names are required when changing the ParsedSource.
      
      However, there are instances where the identifier is not located,
      specifically
      
        (GHC.VarPat name)
        (GHC.HsVar name)
        (GHC.UserTyVar name)
        (GHC.HsTyVar name)
      
      Replace each of the name types above with (Located name)
      
      Updates the haddock submodule.
      
      Test Plan: ./validate
      
      Reviewers: austin, goldfire, bgamari
      
      Reviewed By: bgamari
      
      Subscribers: goldfire, thomie, mpickering
      
      Differential Revision: https://phabricator.haskell.org/D1512
      
      GHC Trac Issues: #11019
      3df9563e
  9. 09 Nov, 2015 1 commit
  10. 30 Oct, 2015 1 commit
    • Ben Gamari's avatar
      Generate Typeable info at definition sites · 91c6b1f5
      Ben Gamari authored
      This is the second attempt at merging D757.
      
      This patch implements the idea floated in Trac #9858, namely that we
      should generate type-representation information at the data type
      declaration site, rather than when solving a Typeable constraint.
      
      However, this turned out quite a bit harder than I expected. I still
      think it's the right thing to do, and it's done now, but it was quite
      a struggle.
      
      See particularly
      
       * Note [Grand plan for Typeable] in TcTypeable (which is a new module)
       * Note [The overall promotion story] in DataCon (clarifies existing
      stuff)
      
      The most painful bit was that to generate Typeable instances (ie
      TyConRepName bindings) for every TyCon is tricky for types in ghc-prim
      etc:
      
       * We need to have enough data types around to *define* a TyCon
       * Many of these types are wired-in
      
      Also, to minimise the code generated for each data type, I wanted to
      generate pure data, not CAFs with unpackCString# stuff floating about.
      
      Performance
      ~~~~~~~~~~~
      Three perf/compiler tests start to allocate quite a bit more. This isn't
      surprising, because they all allocate zillions of data types, with
      practically no other code, esp. T1969
      
       * T1969:    GHC allocates 19% more
       * T4801:    GHC allocates 13% more
       * T5321FD:  GHC allocates 13% more
       * T9675:    GHC allocates 11% more
       * T783:     GHC allocates 11% more
       * T5642:    GHC allocates 10% more
      
      I'm treating this as acceptable. The payoff comes in Typeable-heavy
      code.
      
      Remaining to do
      ~~~~~~~~~~~~~~~
      
       * I think that "TyCon" and "Module" are over-generic names to use for
         the runtime type representations used in GHC.Typeable. Better might
      be
         "TrTyCon" and "TrModule". But I have not yet done this
      
       * Add more info the the "TyCon" e.g. source location where it was
         defined
      
       * Use the new "Module" type to help with Trac Trac #10068
      
       * It would be possible to generate TyConRepName (ie Typeable
         instances) selectively rather than all the time. We'd need to persist
         the information in interface files. Lacking a motivating reason I
      have
         not done this, but it would not be difficult.
      
      Refactoring
      ~~~~~~~~~~~
      As is so often the case, I ended up refactoring more than I intended.
      In particular
      
       * In TyCon, a type *family* (whether type or data) is repesented by a
         FamilyTyCon
           * a algebraic data type (including data/newtype instances) is
             represented by AlgTyCon This wasn't true before; a data family
             was represented as an AlgTyCon. There are some corresponding
             changes in IfaceSyn.
      
           * Also get rid of the (unhelpfully named) tyConParent.
      
       * In TyCon define 'Promoted', isomorphic to Maybe, used when things are
         optionally promoted; and use it elsewhere in GHC.
      
       * Cleanup handling of knownKeyNames
      
       * Each TyCon, including promoted TyCons, contains its TyConRepName, if
         it has one. This is, in effect, the name of its Typeable instance.
      
      Updates haddock submodule
      
      Test Plan: Let Harbormaster validate
      
      Reviewers: austin, hvr, goldfire
      
      Subscribers: goldfire, thomie
      
      Differential Revision: https://phabricator.haskell.org/D1404
      
      GHC Trac Issues: #9858
      91c6b1f5
  11. 29 Oct, 2015 4 commits
    • Ben Gamari's avatar
      Revert "Generate Typeable info at definition sites" · bbaf76f9
      Ben Gamari authored
      This reverts commit bef2f03e.
      
      This merge was botched
      
      Also reverts haddock submodule.
      bbaf76f9
    • Ben Gamari's avatar
      Generate Typeable info at definition sites · bef2f03e
      Ben Gamari authored
      This patch implements the idea floated in Trac #9858, namely that we
      should generate type-representation information at the data type
      declaration site, rather than when solving a Typeable constraint.
      
      However, this turned out quite a bit harder than I expected. I still
      think it's the right thing to do, and it's done now, but it was quite
      a struggle.
      
      See particularly
      
       * Note [Grand plan for Typeable] in TcTypeable (which is a new module)
       * Note [The overall promotion story] in DataCon (clarifies existing stuff)
      
      The most painful bit was that to generate Typeable instances (ie
      TyConRepName bindings) for every TyCon is tricky for types in ghc-prim
      etc:
      
       * We need to have enough data types around to *define* a TyCon
       * Many of these types are wired-in
      
      Also, to minimise the code generated for each data type, I wanted to
      generate pure data, not CAFs with unpackCString# stuff floating about.
      
      Performance
      ~~~~~~~~~~~
      Three perf/compiler tests start to allocate quite a bit more. This isn't
      surprising, because they all allocate zillions of data types, with
      practically no other code, esp. T1969
      
       * T3294:   GHC allocates 110% more (filed #11030 to track this)
       * T1969:   GHC allocates 30% more
       * T4801:   GHC allocates 14% more
       * T5321FD: GHC allocates 13% more
       * T783:    GHC allocates 12% more
       * T9675:   GHC allocates 12% more
       * T5642:   GHC allocates 10% more
       * T9961:   GHC allocates 6% more
      
       * T9203:   Program allocates 54% less
      
      I'm treating this as acceptable. The payoff comes in Typeable-heavy
      code.
      
      Remaining to do
      ~~~~~~~~~~~~~~~
      
       * I think that "TyCon" and "Module" are over-generic names to use for
         the runtime type representations used in GHC.Typeable. Better might be
         "TrTyCon" and "TrModule". But I have not yet done this
      
       * Add more info the the "TyCon" e.g. source location where it was
         defined
      
       * Use the new "Module" type to help with Trac Trac #10068
      
       * It would be possible to generate TyConRepName (ie Typeable
         instances) selectively rather than all the time. We'd need to persist
         the information in interface files. Lacking a motivating reason I have
         not done this, but it would not be difficult.
      
      Refactoring
      ~~~~~~~~~~~
      As is so often the case, I ended up refactoring more than I intended.
      In particular
      
       * In TyCon, a type *family* (whether type or data) is repesented by a
         FamilyTyCon
           * a algebraic data type (including data/newtype instances) is
             represented by AlgTyCon This wasn't true before; a data family
             was represented as an AlgTyCon. There are some corresponding
             changes in IfaceSyn.
      
           * Also get rid of the (unhelpfully named) tyConParent.
      
       * In TyCon define 'Promoted', isomorphic to Maybe, used when things are
         optionally promoted; and use it elsewhere in GHC.
      
       * Cleanup handling of knownKeyNames
      
       * Each TyCon, including promoted TyCons, contains its TyConRepName, if
         it has one. This is, in effect, the name of its Typeable instance.
      
      Requires update of the haddock submodule.
      
      Differential Revision: https://phabricator.haskell.org/D757
      bef2f03e
    • Ben Gamari's avatar
    • Matthew Pickering's avatar
      Record pattern synonyms · 2a74a64e
      Matthew Pickering authored
      This patch implements an extension to pattern synonyms which allows user
      to specify pattern synonyms using record syntax. Doing so generates
      appropriate selectors and update functions.
      
      === Interaction with Duplicate Record Fields ===
      
      The implementation given here isn't quite as general as it could be with
      respect to the recently-introduced `DuplicateRecordFields` extension.
      
      Consider the following module:
      
          {-# LANGUAGE DuplicateRecordFields #-}
          {-# LANGUAGE PatternSynonyms #-}
      
          module Main where
      
          pattern S{a, b} = (a, b)
          pattern T{a}    = Just a
      
          main = do
            print S{ a = "fst", b = "snd" }
            print T{ a = "a" }
      
      In principle, this ought to work, because there is no ambiguity. But at
      the moment it leads to a "multiple declarations of a" error. The problem
      is that pattern synonym record selectors don't do the same name mangling
      as normal datatypes when DuplicateRecordFields is enabled. They could,
      but this would require some work to track the field label and selector
      name separately.
      
      In particular, we currently represent datatype selectors in the third
      component of AvailTC, but pattern synonym selectors are just represented
      as Avails (because they don't have a corresponding type constructor).
      Moreover, the GlobalRdrElt for a selector currently requires it to have
      a parent tycon.
      
      (example due to Adam Gundry)
      
      === Updating Explicitly Bidirectional Pattern Synonyms ===
      
      Consider the following
      
      ```
      pattern Silly{a} <- [a] where
        Silly a = [a, a]
      
      f1 = a [5] -- 5
      
      f2 = [5] {a = 6} -- currently [6,6]
      ```
      
      === Fixing Polymorphic Updates ===
      
      They were fixed by adding these two lines in `dsExpr`. This might break
      record updates but will be easy to fix.
      
      ```
      + ; let req_wrap = mkWpTyApps (mkTyVarTys univ_tvs)
      
      - , pat_wrap = idHsWrapper }
      +, pat_wrap = req_wrap }
      ```
      
      === Mixed selectors error ===
      
      Note [Mixed Record Field Updates]
      ~~~~~~~~~~~~~~~~~~~~~~~~~~~~
      
      Consider the following pattern synonym.
      
          data MyRec = MyRec { foo :: Int, qux :: String }
      
          pattern HisRec{f1, f2} = MyRec{foo = f1, qux=f2}
      
      This allows updates such as the following
      
          updater :: MyRec -> MyRec
          updater a = a {f1 = 1 }
      
      It would also make sense to allow the following update (which we
      reject).
      
          updater a = a {f1 = 1, qux = "two" } ==? MyRec 1 "two"
      
      This leads to confusing behaviour when the selectors in fact refer the
      same field.
      
          updater a = a {f1 = 1, foo = 2} ==? ???
      
      For this reason, we reject a mixture of pattern synonym and normal
      record selectors in the same update block. Although of course we still
      allow the following.
      
          updater a = (a {f1 = 1}) {foo = 2}
      
          > updater (MyRec 0 "str")
          MyRec 2 "str"
      2a74a64e
  12. 16 Oct, 2015 1 commit
    • Adam Gundry's avatar
      Implement DuplicateRecordFields · b1884b0e
      Adam Gundry authored
      This implements DuplicateRecordFields, the first part of the
      OverloadedRecordFields extension, as described at
      https://ghc.haskell.org/trac/ghc/wiki/Records/OverloadedRecordFields/DuplicateRecordFields
      
      This includes fairly wide-ranging changes in order to allow multiple
      records within the same module to use the same field names.  Note that
      it does *not* allow record selector functions to be used if they are
      ambiguous, and it does not have any form of type-based disambiguation
      for selectors (but it does for updates). Subsequent parts will make
      overloading selectors possible using orthogonal extensions, as
      described on the wiki pages.  This part touches quite a lot of the
      codebase, and requires changes to several GHC API datatypes in order
      to distinguish between field labels (which may be overloaded) and
      selector function names (which are always unique).
      
      The Haddock submodule has been adapted to compile with the GHC API
      changes, but it will need further work to properly support modules
      that use the DuplicateRecordFields extension.
      
      Test Plan: New tests added in testsuite/tests/overloadedrecflds; these
      will be extended once the other parts are implemented.
      
      Reviewers: goldfire, bgamari, simonpj, austin
      
      Subscribers: sjcjoosten, haggholm, mpickering, bgamari, tibbe, thomie,
      goldfire
      
      Differential Revision: https://phabricator.haskell.org/D761
      b1884b0e
  13. 21 Sep, 2015 1 commit
    • eir@cis.upenn.edu's avatar
      Perform a validity check on assoc type defaults. · e27b267f
      eir@cis.upenn.edu authored
      This fixes #10817 and #10899. A knock-on effect is that we must
      now remember locations of associated type defaults for error
      messages during validity checking. This isn't too bad, but it
      increases the size of the diff somewhat.
      
      Test cases: indexed-types/should_fail/T108{17,99}
      e27b267f
  14. 19 Sep, 2015 1 commit
    • eir@cis.upenn.edu's avatar
      Fix #10815 by kind-checking type patterns against known kinds. · 2d4db40a
      eir@cis.upenn.edu authored
      tcFamTyPats now must take information about the instantiation of any
      class variables, when checking the instance of an associated type.
      
      Getting this to work out required some unexpected refactoring in
      TcDeriv. TcDeriv needs to look at class instances because of the
      possibility of associated datatypes with `deriving` specs. TcDeriv
      worked over the user-specified instances. But any data family instances
      were already processed, and TcDeriv had no way of finding the rep
      tycons. Indeed, TcDeriv *re-type-checked* any data family instances
      in an attempt to rediscover what GHC already knew. So, this commit
      introduces better tracking of compiled data families between TcInstDcls
      and TcDeriv to streamline all of this.
      2d4db40a
  15. 11 Sep, 2015 1 commit
    • Simon Peyton Jones's avatar
      Improve rejigConRes (again) · a870738a
      Simon Peyton Jones authored
      I think this patch finally works around the delicacy in the strictness
      of TcTyClsDecls.rejigConRes.   See the notes with that function and
      Note [Checking GADT return types].
      
      As a result, we fix Trac #10836, and improve Trac #7175
      a870738a
  16. 03 Sep, 2015 1 commit
  17. 10 Aug, 2015 1 commit
  18. 03 Aug, 2015 1 commit
    • thomasw's avatar
      Support wild cards in data/type family instances · d9d2102e
      thomasw authored
      Handle anonymous wild cards in type or data family instance
      declarations like
      unnamed type variables. For instance (pun intented):
      
          type family F (a :: *) (b :: *) :: *
          type instance F Int _ = Int
      
      Is now the same as:
      
          type family F (a :: *) (b :: *) :: *
          type instance F Int x = Int
      
      Note that unlike wild cards in partial type signatures, no errors (or
      warnings
      with -XPartialTypeSignatures) are generated for these wild cards, as
      there is
      nothing interesting to report to the user, i.e. the inferred kind.
      
      Only anonymous wild cards are supported here, named and
      extra-constraints wild
      card are not.
      
      Test Plan: pass new tests
      
      Reviewers: goldfire, austin, simonpj, bgamari
      
      Reviewed By: simonpj, bgamari
      
      Subscribers: goldfire, thomie
      
      Differential Revision: https://phabricator.haskell.org/D1092
      
      GHC Trac Issues: #3699, #10586
      d9d2102e
  19. 31 Jul, 2015 1 commit
  20. 27 Jul, 2015 1 commit
    • Adam Sandberg Eriksson's avatar
      Implementation of StrictData language extension · f842ad6c
      Adam Sandberg Eriksson authored
      This implements the `StrictData` language extension, which lets the
      programmer default to strict data fields in datatype declarations on a
      per-module basis.
      
      Specification and motivation can be found at
      https://ghc.haskell.org/trac/ghc/wiki/StrictPragma
      
      This includes a tricky parser change due to conflicts regarding `~` in
      the type level syntax: all ~'s are parsed as strictness annotations (see
      `strict_mark` in Parser.y) and then turned into equality constraints at
      the appropriate places using `RdrHsSyn.splitTilde`.
      
      Updates haddock submodule.
      
      Test Plan: Validate through Harbormaster.
      
      Reviewers: goldfire, austin, hvr, simonpj, tibbe, bgamari
      
      Reviewed By: simonpj, tibbe, bgamari
      
      Subscribers: lelf, simonpj, alanz, goldfire, thomie, bgamari, mpickering
      
      Differential Revision: https://phabricator.haskell.org/D1033
      
      GHC Trac Issues: #8347
      f842ad6c
  21. 21 Jul, 2015 1 commit
    • Simon Peyton Jones's avatar
      Refactor self-boot info · 3c44a46b
      Simon Peyton Jones authored
      This patch is a simple refactoring that prepares for a later one,
      related to Trac #10083.
      
      * Add a field tcg_self_boot :: SelfBootInfo to TcGblEnv,
        where SelfBootInfo is a new data type, describing the
        hi-boot file, if any, for the module being compiled.
      
      * Make tcHiBootIface return SelfBootInfo, a new data type
      
      * Make other functions get SelfBootInfo from the monad.
      
      * Remove tcg_mod_name from TcGblEnv; it was barely used and
        simpler to pass around explicitly.
      3c44a46b
  22. 18 Jun, 2015 1 commit
    • Simon Peyton Jones's avatar
      Report arity errors correctly despite kinds · 5879d5aa
      Simon Peyton Jones authored
      Trac #10516 pointed out that when reporting arity errors
      (like "T needs 2 arguments but has been given 1"), we should
      not count kind arguments, since they are implicit.  If we
      include kind args in the count, we get very confusing error
      messages indeed.
      
      I did a little bit of refactoring which make some
      error messages wobble around.  But the payload of
      this fix is in TcValidity.tyConArityErr
      5879d5aa
  23. 18 May, 2015 1 commit
    • Simon Peyton Jones's avatar
      Refactor tuple constraints · ffc21506
      Simon Peyton Jones authored
      Make tuple constraints be handled by a perfectly ordinary
      type class, with the component constraints being the
      superclasses:
          class (c1, c2) => (c2, c2)
      
      This change was provoked by
      
        #10359  inability to re-use a given tuple
                constraint as a whole
      
        #9858   confusion between term tuples
                and constraint tuples
      
      but it's generally a very nice simplification. We get rid of
       -  In Type, the TuplePred constructor of PredTree,
          and all the code that dealt with TuplePreds
       -  In TcEvidence, the constructors EvTupleMk, EvTupleSel
      
      See Note [How tuples work] in TysWiredIn.
      
      Of course, nothing is ever entirely simple. This one
      proved quite fiddly.
      
      - I did quite a bit of renaming, which makes this patch
        touch a lot of modules. In partiuclar tupleCon -> tupleDataCon.
      
      - I made constraint tuples known-key rather than wired-in.
        This is different to boxed/unboxed tuples, but it proved
        awkward to have all the superclass selectors wired-in.
        Easier just to use the standard mechanims.
      
      - While I was fiddling with known-key names, I split the TH Name
        definitions out of DsMeta into a new module THNames.  That meant
        that the known-key names can all be gathered in PrelInfo, without
        causing module loops.
      
      - I found that the parser was parsing an import item like
            T( .. )
        as a *data constructor* T, and then using setRdrNameSpace to
        fix it.  Stupid!  So I changed the parser to parse a *type
        constructor* T, which means less use of setRdrNameSpace.
      
        I also improved setRdrNameSpace to behave better on Exact Names.
        Largely on priciple; I don't think it matters a lot.
      
      - When compiling a data type declaration for a wired-in thing like
        tuples (,), or lists, we don't really need to look at the
        declaration.  We have the wired-in thing!  And not doing so avoids
        having to line up the uniques for data constructor workers etc.
        See Note [Declarations for wired-in things]
      
      - I found that FunDeps.oclose wasn't taking superclasses into
        account; easily fixed.
      
      - Some error message refactoring for invalid constraints in TcValidity
      
      - Haddock needs to absorb the change too; so there is a submodule update
      ffc21506
  24. 14 May, 2015 1 commit
    • Austin Seipp's avatar
      Revert multiple commits · 3cf8ecdc
      Austin Seipp authored
      This reverts multiple commits from Simon:
      
        - 04a484ea Test Trac #10359
        - a9ccd37a Test Trac #10403
        - c0aae6f6 Test Trac #10248
        - eb6ca851 Make the "matchable-given" check happen first
        - ca173aa3 Add a case to checkValidTyCon
        - 51cbad15 Update haddock submodule
        - 6e1174da Separate transCloVarSet from fixVarSet
        - a8493e03 Fix imports in HscMain (stage2)
        - a154944b Two wibbles to fix the build
        - 5910a1bc Change in capitalisation of error msg
        - 130e93aa Refactor tuple constraints
        - 8da785d5 Delete commented-out line
      
      These break the build by causing Haddock to fail mysteriously when
      trying to examine GHC.Prim it seems.
      3cf8ecdc
  25. 13 May, 2015 2 commits
    • Simon Peyton Jones's avatar
      Add a case to checkValidTyCon · ca173aa3
      Simon Peyton Jones authored
      Apparently when Haddock'ing, we check GHC.Prim.
      So checkValidTyCon must not crash when dealing with
      PrimTyCons; and it was doing so in dataConStupidTheta.
      
      The fix is easy, but I'm puzzled about why Haddock needs to
      typecheck GHC.Prim.
      ca173aa3
    • Simon Peyton Jones's avatar
      Refactor tuple constraints · 130e93aa
      Simon Peyton Jones authored
      Make tuple constraints be handled by a perfectly ordinary
      type class, with the component constraints being the
      superclasses:
          class (c1, c2) => (c2, c2)
      
      This change was provoked by
      
        #10359  inability to re-use a given tuple
                constraint as a whole
      
        #9858   confusion between term tuples
                and constraint tuples
      
      but it's generally a very nice simplification. We get rid of
       -  In Type, the TuplePred constructor of PredTree,
          and all the code that dealt with TuplePreds
       -  In TcEvidence, the constructors EvTupleMk, EvTupleSel
      
      See Note [How tuples work] in TysWiredIn.
      
      Of course, nothing is ever entirely simple. This one
      proved quite fiddly.
      
      - I did quite a bit of renaming, which makes this patch
        touch a lot of modules. In partiuclar tupleCon -> tupleDataCon.
      
      - I made constraint tuples known-key rather than wired-in.
        This is different to boxed/unboxed tuples, but it proved
        awkward to have all the superclass selectors wired-in.
        Easier just to use the standard mechanims.
      
      - While I was fiddling with known-key names, I split the TH Name
        definitions out of DsMeta into a new module THNames.  That meant
        that the known-key names can all be gathered in PrelInfo, without
        causing module loops.
      
      - I found that the parser was parsing an import item like
            T( .. )
        as a *data constructor* T, and then using setRdrNameSpace to
        fix it.  Stupid!  So I changed the parser to parse a *type
        constructor* T, which means less use of setRdrNameSpace.
      
        I also improved setRdrNameSpace to behave better on Exact Names.
        Largely on priciple; I don't think it matters a lot.
      
      - When compiling a data type declaration for a wired-in thing like
        tuples (,), or lists, we don't really need to look at the
        declaration.  We have the wired-in thing!  And not doing so avoids
        having to line up the uniques for data constructor workers etc.
        See Note [Declarations for wired-in things]
      
      - I found that FunDeps.oclose wasn't taking superclasses into
        account; easily fixed.
      
      - Some error message refactoring for invalid constraints in TcValidity
      130e93aa
  26. 04 May, 2015 1 commit
    • Adam Gundry's avatar
      Permit empty closed type families · 4efa4213
      Adam Gundry authored
      Fixes #9840 and #10306, and includes an alternative resolution to #8028.
      This permits empty closed type families, and documents them in the user
      guide. It updates the Haddock submodule to support the API change.
      
      Test Plan: Added `indexed-types/should_compile/T9840` and updated
      `indexed-types/should_fail/ClosedFam4` and `th/T8028`.
      
      Reviewers: austin, simonpj, goldfire
      
      Reviewed By: goldfire
      
      Subscribers: bgamari, jstolarek, thomie, goldfire
      
      Differential Revision: https://phabricator.haskell.org/D841
      
      GHC Trac Issues: #9840, #10306
      4efa4213
  27. 09 Apr, 2015 1 commit
  28. 18 Mar, 2015 1 commit
  29. 04 Mar, 2015 1 commit
    • Simon Peyton Jones's avatar
      A raft of small changes associated with -XConstrainedClassMethods · f66e0e69
      Simon Peyton Jones authored
      See Trac #7854.  Specifically:
      
      * Major clean up and simplification of check_op in checkValidClass;
        specifically
           - use checkValidType on the entire method-selector type to detect
             ambiguity
           - put a specific test for -XConstrainedClassMethods
      
      * Make -XConstrainedClassMethods be implied by -XMultiParamTypeClasses
        (a bit ad-hoc but see #7854), and document in the user manual.
      
      * Do the checkAmbiguity test just once in TcValidity.checkValidType,
        rather than repeatedly at every level. See Note [When to call checkAmbiguity]
      
      * Add -XAllowAmbiguousTypes in GHC.IP, since 'ip' really is ambiguous.
        (It's a rather magic function.)
      
      * Improve location info for check_op in checkValidClass
      
      * Update quite a few tests, which had genuinely-ambiguous class
        method signatures.  Some I fixed by making them unambiguous; some
        by adding -XAllowAmbiguousTypes
      f66e0e69
  30. 02 Mar, 2015 1 commit
  31. 10 Feb, 2015 1 commit
  32. 06 Feb, 2015 1 commit
  33. 16 Jan, 2015 1 commit
    • Alan Zimmerman's avatar
      API Annotations tweaks. · 11881ec6
      Alan Zimmerman authored
      Summary:
      HsTyLit now has SourceText
      
      Update documentation of HsSyn to reflect which annotations are attached to which element.
      
      Ensure that the parser always keeps HsSCC and HsTickPragma values, to
      be ignored in the desugar phase if not needed
      
      Bringing in SourceText for pragmas
      
      Add Location in NPlusKPat
      
      Add Location in FunDep
      
      Make RecCon payload Located
      
      Explicitly add AnnVal to RdrName where it is compound
      
      Add Location in IPBind
      
      Add Location to name in IEThingAbs
      
      Add Maybe (Located id,Bool) to Match to track fun_id,infix
        This includes converting Match into a record and adding a note about why
        the fun_id needs to be replicated in the Match.
      
      Add Location in KindedTyVar
      
      Sort out semi-colons for parsing
      
        - import statements
        - stmts
        - decls
        - decls_cls
        - decls_inst
      
      This updates the haddock submodule.
      
      Test Plan: ./validate
      
      Reviewers: hvr, austin, goldfire, simonpj
      
      Reviewed By: simonpj
      
      Subscribers: thomie, carter
      
      Differential Revision: https://phabricator.haskell.org/D538
      11881ec6
  34. 08 Jan, 2015 1 commit
    • Simon Peyton Jones's avatar
      Improve HsBang · 9564bb8c
      Simon Peyton Jones authored
      Provoked by questions from Johan
      
       - Improve comments, fix misleading stuff
       - Add commented synonyms for HsSrcBang, HsImplBang, and use them throughout
       - Rename HsUserBang to HsSrcBang
       - Rename dataConStrictMarks to dataConSrcBangs
                dataConRepBangs    to dataConImplBangs
      
      This renaming affects Haddock in a trivial way, hence submodule update
      9564bb8c
  35. 06 Jan, 2015 1 commit
    • Simon Peyton Jones's avatar
      Major patch to add -fwarn-redundant-constraints · 32973bf3
      Simon Peyton Jones authored
      The idea was promted by Trac #9939, but it was Christmas, so I did
      some recreational programming that went much further.
      
      The idea is to warn when a constraint in a user-supplied context is
      redundant.  Everything is described in detail in
        Note [Tracking redundant constraints]
      in TcSimplify.
      
      Main changes:
      
       * The new ic_status field in an implication, of type ImplicStatus.
         It replaces ic_insol, and includes information about redundant
         constraints.
      
       * New function TcSimplify.setImplicationStatus sets the ic_status.
      
       * TcSigInfo has sig_report_redundant field to say whenther a
         redundant constraint should be reported; and similarly
         the FunSigCtxt constructor of UserTypeCtxt
      
       * EvBinds has a field eb_is_given, to record whether it is a given
         or wanted binding. Some consequential chagnes to creating an evidence
         binding (so that we record whether it is given or wanted).
      
       * AbsBinds field abs_ev_binds is now a *list* of TcEvBiinds;
         see Note [Typechecking plan for instance declarations] in
         TcInstDcls
      
       * Some significant changes to the type checking of instance
         declarations; Note [Typechecking plan for instance declarations]
         in TcInstDcls.
      
       * I found that TcErrors.relevantBindings was failing to zonk the
         origin of the constraint it was looking at, and hence failing to
         find some relevant bindings.  Easy to fix, and orthogonal to
         everything else, but hard to disentangle.
      
      Some minor refactorig:
      
       * TcMType.newSimpleWanteds moves to Inst, renamed as newWanteds
      
       * TcClassDcl and TcInstDcls now have their own code for typechecking
         a method body, rather than sharing a single function. The shared
         function (ws TcClassDcl.tcInstanceMethodBody) didn't have much code
         and the differences were growing confusing.
      
       * Add new function TcRnMonad.pushLevelAndCaptureConstraints, and
         use it
      
       * Add new function Bag.catBagMaybes, and use it in TcSimplify
      32973bf3