1. 18 Feb, 2016 1 commit
    • Simon Peyton Jones's avatar
      Fix desugaring of bang-pattern let-bindings · 01449eb5
      Simon Peyton Jones authored
      When implementing Strict Haskell, the patch 46a03fbe didn't faithfully
      implement the semantics given in the manual. In particular there was
      an ad-hoc case in mkSelectorBinds for "strict and no binders" that
      didn't work.
      
      This patch fixes it, curing Trac #11572.
      
      Howver it forced me to think about banged let-bindings, and I rather
      think we do not have quite the right semantics yet, so I've opened
      Trac #11601.
      01449eb5
  2. 11 Feb, 2016 1 commit
  3. 27 Jan, 2016 1 commit
    • eir@cis.upenn.edu's avatar
      Refactor the typechecker to use ExpTypes. · 00cbbab3
      eir@cis.upenn.edu authored
      The idea here is described in [wiki:Typechecker]. Briefly,
      this refactor keeps solid track of "synthesis" mode vs
      "checking" in GHC's bidirectional type-checking algorithm.
      When in synthesis mode, the expected type is just an IORef
      to write to.
      
      In addition, this patch does a significant reworking of
      RebindableSyntax, allowing much more freedom in the types
      of the rebindable operators. For example, we can now have
      `negate :: Int -> Bool` and
      `(>>=) :: m a -> (forall x. a x -> m b) -> m b`. The magic
      is in tcSyntaxOp.
      
      This addresses tickets #11397, #11452, and #11458.
      
      Tests:
        typecheck/should_compile/{RebindHR,RebindNegate,T11397,T11458}
        th/T11452
      00cbbab3
  4. 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
      Comment layout only · 947e44fe
      Simon Peyton Jones authored
      947e44fe
  5. 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. For backward compatibility,
         automatic inference of kind-variable binding is still permitted.
      
       * The new extension `TypeInType` turns on the new user-facing
         features.
      
       * Type families and synonyms are now promoted to kinds. This causes
         trouble with parsing `*`, leading to the somewhat awkward new
         `HsAppsTy` constructor for `HsType`. This is dispatched with in
         the renamer, where the kind `*` can be told apart from a
         type-level multiplication operator. Without `-XTypeInType` the
         old behavior persists. With `-XTypeInType`, you need to import
         `Data.Kind` to get `*`, also known as `Type`.
      
       * The kind-checking algorithms in TcHsType have been significantly
         rewritten to allow for enhanced kinds.
      
       * The new features are still quite experimental and may be in flux.
      
       * TODO: Several open tickets: #11195, #11196, #11197, #11198, #11203.
      
       * TODO: Update user manual.
      
      Tickets addressed: #9017, #9173, #7961, #10524, #8566, #11142.
      Updates Haddock submodule.
      67465497
  6. 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
  7. 18 Nov, 2015 1 commit
    • msosn's avatar
      Fix inconsistent pretty-printing of type families · c61759d5
      msosn authored
      After the changes, the three functions used to print type families
      were identical, so they are refactored into one.
      
      Original RHSs of data instance declarations are recreated and
      printed in user error messages.
      
      RHSs containing representation TyCons are printed in the
      Coercion Axioms section in a typechecker dump.
      
      Add vbar to the list of SDocs exported by Outputable.
      Replace all text "|" docs with it.
      
      Fixes #10839
      
      Reviewers: goldfire, jstolarek, austin, bgamari
      
      Reviewed By: jstolarek
      
      Subscribers: jstolarek, thomie
      
      Differential Revision: https://phabricator.haskell.org/D1441
      
      GHC Trac Issues: #10839
      c61759d5
  8. 14 Nov, 2015 1 commit
  9. 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
  10. 29 Oct, 2015 2 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
  11. 17 Sep, 2015 1 commit
  12. 30 Jul, 2015 1 commit
    • Simon Peyton Jones's avatar
      Define DsUtils.mkCastDs and use it · 92d25672
      Simon Peyton Jones authored
      This change avoids a spurious WARNing from mkCast.  In the output of
      the desugarer (only, I think) we can have a cast where the type of the
      expression and cast don't syntactically match, because of an enclosing
      type-let binding.
      92d25672
  13. 16 Dec, 2014 1 commit
  14. 03 Dec, 2014 1 commit
  15. 21 Nov, 2014 1 commit
    • Simon Peyton Jones's avatar
      Rejig builders for pattern synonyms, especially unlifted ones · e8762081
      Simon Peyton Jones authored
      When a pattern synonym is for an unlifted pattern, its "builder" would
      naturally be a top-level unlifted binding, which isn't allowed.  So we
      give it an extra Void# argument.
      
      Our Plan A involved then making *two* Ids for these builders, with
      some consequential fuss in the desugarer.  This was more pain than I
      liked, so I've re-jigged it.
      
       * There is just one builder for a pattern synonym.
      
       * It may have an extra Void# arg, but this decision is signalled
         by the Bool in the psBuilder field.
      
         I did the same for the psMatcher field.
      
         Both Bools are serialised into interface files, so there is
         absolutely no doubt whether that extra Void# argument is required.
      
       * I renamed "wrapper" to "builder".  We have too may "wrappers"
      
       * In order to deal with typecchecking occurrences of P in expressions,
         I refactored the tcInferId code in TcExpr.
      
      All of this allowed me to revert 5fe872
         "Apply compulsory unfoldings during desugaring, except for `seq` which is special."
      which turned out to be a rather messy hack in DsBinds
      e8762081
  16. 08 Nov, 2014 1 commit
    • Gergő Érdi's avatar
      In pattern synonym matchers, support unboxed continuation results (fixes #9783). · 474e535b
      Gergő Érdi authored
      This requires ensuring the continuations have arguments by adding a dummy
      Void# argument when needed. This is so that matching on a pattern synonym
      is lazy even when the result is unboxed, e.g.
      
          pattern P = ()
          f P = 0#
      
      In this case, without dummy arguments, the generated matcher's type would be
      
         $mP :: forall (r :: ?). () -> r -> r -> r
      
      which is called in `f` at type `() -> Int# -> Int# -> Int#`,
      so it would be strict, in particular, in the failure continuation
      of `patError`.
      
      We work around this by making sure both continuations have arguments:
      
        $mP :: forall (r :: ?). () -> (Void# -> r) -> (Void# -> r) -> r
      
      Of course, if `P` (and thus, the success continuation) has any arguments,
      we are only adding the extra dummy argument to the failure continuation.
      474e535b
  17. 26 Sep, 2014 1 commit
  18. 05 Jun, 2014 1 commit
    • Simon Peyton Jones's avatar
      Fix egregious instantiation bug in matchOneConLike (fixing Trac #9023) · 0a55a3ca
      Simon Peyton Jones authored
      We simply weren't giving anything like the right instantiating types
      to patSynInstArgTys in matchOneConLike.
      
      To get these instantiating types would have involved matching the
      result type of the pattern synonym with the pattern type, which is
      tiresome.  So instead I changed ConPatOut so that instead of recording
      the type of the *whole* pattern (in old field pat_ty), it not records
      the *instantiating* types (in new field pat_arg_tys).  Then we canuse
      TcHsSyn.conLikeResTy to get the pattern type when needed.
      
      There are lots of knock-on incidental effects, but they mostly made
      the code simpler, so I'm happy.
      0a55a3ca
  19. 15 May, 2014 1 commit
    • Herbert Valerio Riedel's avatar
      Add LANGUAGE pragmas to compiler/ source files · 23892440
      Herbert Valerio Riedel authored
      In some cases, the layout of the LANGUAGE/OPTIONS_GHC lines has been
      reorganized, while following the convention, to
      
      - place `{-# LANGUAGE #-}` pragmas at the top of the source file, before
        any `{-# OPTIONS_GHC #-}`-lines.
      
      - Moreover, if the list of language extensions fit into a single
        `{-# LANGUAGE ... -#}`-line (shorter than 80 characters), keep it on one
        line. Otherwise split into `{-# LANGUAGE ... -#}`-lines for each
        individual language extension. In both cases, try to keep the
        enumeration alphabetically ordered.
        (The latter layout is preferable as it's more diff-friendly)
      
      While at it, this also replaces obsolete `{-# OPTIONS ... #-}` pragma
      occurences by `{-# OPTIONS_GHC ... #-}` pragmas.
      23892440
  20. 12 May, 2014 1 commit
  21. 20 Jan, 2014 1 commit
    • Gergő Érdi's avatar
      Implement pattern synonyms · 4f8369bf
      Gergő Érdi authored
      This patch implements Pattern Synonyms (enabled by -XPatternSynonyms),
      allowing y ou to assign names to a pattern and abstract over it.
      
      The rundown is this:
      
        * Named patterns are introduced by the new 'pattern' keyword, and can
          be either *unidirectional* or *bidirectional*. A unidirectional
          pattern is, in the simplest sense, simply an 'alias' for a pattern,
          where the LHS may mention variables to occur in the RHS. A
          bidirectional pattern synonym occurs when a pattern may also be used
          in expression context.
      
        * Unidirectional patterns are declared like thus:
      
              pattern P x <- x:_
      
          The synonym 'P' may only occur in a pattern context:
      
              foo :: [Int] -> Maybe Int
              foo (P x) = Just x
              foo _     = Nothing
      
        * Bidirectional patterns are declared like thus:
      
              pattern P x y = [x, y]
      
          Here, P may not only occur as a pattern, but also as an expression
          when given values for 'x' and 'y', i.e.
      
              bar :: Int -> [Int]
              bar x = P x 10
      
        * Patterns can't yet have their own type signatures; signatures are inferred.
      
        * Pattern synonyms may not be recursive, c.f. type synonyms.
      
        * Pattern synonyms are also exported/imported using the 'pattern'
          keyword in an import/export decl, i.e.
      
              module Foo (pattern Bar) where ...
      
          Note that pattern synonyms share the namespace of constructors, so
          this disambiguation is required as a there may also be a 'Bar'
          type in scope as well as the 'Bar' pattern.
      
        * The semantics of a pattern synonym differ slightly from a typical
          pattern: when using a synonym, the pattern itself is matched,
          followed by all the arguments. This means that the strictness
          differs slightly:
      
              pattern P x y <- [x, y]
      
              f (P True True) = True
              f _             = False
      
              g [True, True] = True
              g _            = False
      
          In the example, while `g (False:undefined)` evaluates to False,
          `f (False:undefined)` results in undefined as both `x` and `y`
          arguments are matched to `True`.
      
      For more information, see the wiki:
      
          https://ghc.haskell.org/trac/ghc/wiki/PatternSynonyms
          https://ghc.haskell.org/trac/ghc/wiki/PatternSynonyms/Implementation
      
      Reviewed-by: Simon Peyton Jones's avatarSimon Peyton Jones <simonpj@microsoft.com>
      Signed-off-by: default avatarAustin Seipp <austin@well-typed.com>
      4f8369bf
  22. 22 Nov, 2013 1 commit
    • Simon Peyton Jones's avatar
      Replace (State# RealWorld) with Void# where we just want a 0-bit value · f4384647
      Simon Peyton Jones authored
      We were re-using the super-magical "state token" type (which has
      VoidRep and is zero bits wide) for situations in which we simply want
      to lambda-abstract over a zero-bit argument. For example, join points:
      
         case (case x of { True -> e1; False -> e2 }) of
            Red  -> f1
            Blue -> True
      
      ==>
      
        let $j1 = \voidArg::Void# -> f1
        in
        case x of
          True -> case e1 of
                    Red -> $j1 void
                    Blue -> True
          False -> case e2 of
                    Red -> $j1 void
                    Blue -> True
      
      This patch introduces
      
         * The new primitive type GHC.Prim.Void#, with PrimRep = VoidRep
      
         * A new global Id GHC.Prim.voidPrimId :: Void#.
           This has no binding because the code generator drops it,
           but is used as an argument (eg in the call of $j1)
      
         * A new local Id, MkId.voidArgId, which can be lambda-bound
           when you need to lambda-abstract over it.
      
      and uses them throughout.
      
      Now the State# thing is used only when we need state!
      f4384647
  23. 01 Oct, 2013 1 commit
  24. 30 Jan, 2013 1 commit
  25. 04 Jan, 2013 1 commit
    • Simon Peyton Jones's avatar
      Allow empty case expressions (and lambda-case) with -XEmptyCase · 3671e674
      Simon Peyton Jones authored
      The main changes are:
        * Parser accepts empty case alternatives
        * Renamer checks that -XEmptyCase is on in that case
        * (Typechecker is pretty much unchanged.)
        * Desugarer desugars empty case alternatives, esp:
            - Match.matchWrapper and Match.match now accept empty eqns
            - New function matchEmpty deals with the empty case
            - See Note [Empty case alternatives] in Match
      
      This patch contains most of the work, but it's a bit mixed up
      with a refactoring of MatchGroup that I did at the same time
      (next commit).
      3671e674
  26. 14 Dec, 2012 1 commit
    • Simon Peyton Jones's avatar
      Major refactoring of the way that UNPACK pragmas are handled · faa8ff40
      Simon Peyton Jones authored
      The situation was pretty dire.  The way in which data constructors
      were handled, notably the mapping between their *source* argument types
      and their *representation* argument types (after seq'ing and unpacking)
      was scattered in three different places, and hard to keep in sync.
      
      Now it is all in one place:
      
       * The dcRep field of a DataCon gives its representation,
         specified by a DataConRep
      
       * As well as having the wrapper, the DataConRep has a "boxer"
         of type DataConBoxer (defined in MkId for loopy reasons).
         The boxer used at a pattern match to reconstruct the source-level
         arguments from the rep-level bindings in the pattern match.
      
       * The unboxing in the wrapper and the boxing in the boxer are dual,
         and are now constructed together, by MkId.mkDataConRep. This is
         the key function of this change.
      
       * All the computeBoxingStrategy code in TcTyClsDcls disappears.
      
      Much nicer.
      
      There is a little bit of refactoring left to do; the strange
      deepSplitProductType functions are now called only in WwLib, so
      I moved them there, and I think they could be tidied up further.
      faa8ff40
  27. 06 Nov, 2012 1 commit
  28. 03 Oct, 2012 1 commit
    • Simon Peyton Jones's avatar
      This big patch re-factors the way in which arrow-syntax is handled · ba56d20d
      Simon Peyton Jones authored
      All the work was done by Dan Winograd-Cort.
      
      The main thing is that arrow comamnds now have their own
      data type HsCmd (defined in HsExpr).  Previously it was
      punned with the HsExpr type, which was jolly confusing,
      and made it hard to do anything arrow-specific.
      
      To make this work, we now parameterise
        * MatchGroup
        * Match
        * GRHSs, GRHS
        * StmtLR and friends
      over the "body", that is the kind of thing they
      enclose.  This "body" parameter can be instantiated to
      either LHsExpr or LHsCmd respectively.
      
      Everything else is really a knock-on effect; there should
      be no change (yet!) in behaviour.  But it should be a sounder
      basis for fixing bugs.
      ba56d20d
  29. 17 Sep, 2012 1 commit
  30. 12 Jun, 2012 1 commit
  31. 19 Dec, 2011 1 commit
  32. 16 Nov, 2011 1 commit
  33. 10 Nov, 2011 1 commit
    • chak@cse.unsw.edu.au.'s avatar
      GHC is now independent of the DPH library structure · 0bfe5c05
      chak@cse.unsw.edu.au. authored
      * if -XParallelArrays is given, the symbols for the desugarer are
        taken from 'Data.Array.Parallel' (from whichever package is
        exposed and has the module — the home package is fine, too)
      * if -fvectorise is given, the symbols for the vectoriser are
        taken from 'Data.Array.Parallel.Prim' (as above)
      
      (There is one wired in symbol left, namely the data constructor
      'base:GHC.PArr.[::]. It'll die another day.)
      0bfe5c05
  34. 09 Nov, 2011 1 commit
  35. 04 Nov, 2011 1 commit
  36. 02 Nov, 2011 1 commit
    • Simon Marlow's avatar
      Overhaul of infrastructure for profiling, coverage (HPC) and breakpoints · 7bb0447d
      Simon Marlow authored
      User visible changes
      ====================
      
      Profilng
      --------
      
      Flags renamed (the old ones are still accepted for now):
      
        OLD            NEW
        ---------      ------------
        -auto-all      -fprof-auto
        -auto          -fprof-exported
        -caf-all       -fprof-cafs
      
      New flags:
      
        -fprof-auto              Annotates all bindings (not just top-level
                                 ones) with SCCs
      
        -fprof-top               Annotates just top-level bindings with SCCs
      
        -fprof-exported          Annotates just exported bindings with SCCs
      
        -fprof-no-count-entries  Do not maintain entry counts when profiling
                                 (can make profiled code go faster; useful with
                                 heap profiling where entry counts are not used)
      
      Cost-centre stacks have a new semantics, which should in most cases
      result in more useful and intuitive profiles.  If you find this not to
      be the case, please let me know.  This is the area where I have been
      experimenting most, and the current solution is probably not the
      final version, however it does address all the outstanding bugs and
      seems to be better than GHC 7.2.
      
      Stack traces
      ------------
      
      +RTS -xc now gives more information.  If the exception originates from
      a CAF (as is common, because GHC tends to lift exceptions out to the
      top-level), then the RTS walks up the stack and reports the stack in
      the enclosing update frame(s).
      
      Result: +RTS -xc is much more useful now - but you still have to
      compile for profiling to get it.  I've played around a little with
      adding 'head []' to GHC itself, and +RTS -xc does pinpoint the problem
      quite accurately.
      
      I plan to add more facilities for stack tracing (e.g. in GHCi) in the
      future.
      
      Coverage (HPC)
      --------------
      
       * derived instances are now coloured yellow if they weren't used
       * likewise record field names
       * entry counts are more accurate (hpc --fun-entry-count)
       * tab width is now correct (markup was previously off in source with
         tabs)
      
      Internal changes
      ================
      
      In Core, the Note constructor has been replaced by
      
              Tick (Tickish b) (Expr b)
      
      which is used to represent all the kinds of source annotation we
      support: profiling SCCs, HPC ticks, and GHCi breakpoints.
      
      Depending on the properties of the Tickish, different transformations
      apply to Tick.  See CoreUtils.mkTick for details.
      
      Tickets
      =======
      
      This commit closes the following tickets, test cases to follow:
      
        - Close #2552: not a bug, but the behaviour is now more intuitive
          (test is T2552)
      
        - Close #680 (test is T680)
      
        - Close #1531 (test is result001)
      
        - Close #949 (test is T949)
      
        - Close #2466: test case has bitrotted (doesn't compile against current
          version of vector-space package)
      7bb0447d
  37. 06 Sep, 2011 1 commit
    • batterseapower's avatar
      Implement -XConstraintKind · 9729fe7c
      batterseapower authored
      Basically as documented in http://hackage.haskell.org/trac/ghc/wiki/KindFact,
      this patch adds a new kind Constraint such that:
      
        Show :: * -> Constraint
        (?x::Int) :: Constraint
        (Int ~ a) :: Constraint
      
      And you can write *any* type with kind Constraint to the left of (=>):
      even if that type is a type synonym, type variable, indexed type or so on.
      
      The following (somewhat related) changes are also made:
       1. We now box equality evidence. This is required because we want
          to give (Int ~ a) the *lifted* kind Constraint
       2. For similar reasons, implicit parameters can now only be of
          a lifted kind. (?x::Int#) => ty is now ruled out
       3. Implicit parameter constraints are now allowed in superclasses
          and instance contexts (this just falls out as OK with the new
          constraint solver)
      
      Internally the following major changes were made:
       1. There is now no PredTy in the Type data type. Instead
          GHC checks the kind of a type to figure out if it is a predicate
       2. There is now no AClass TyThing: we represent classes as TyThings
          just as a ATyCon (classes had TyCons anyway)
       3. What used to be (~) is now pretty-printed as (~#). The box
          constructor EqBox :: (a ~# b) -> (a ~ b)
       4. The type LCoercion is used internally in the constraint solver
          and type checker to represent coercions with free variables
          of type (a ~ b) rather than (a ~# b)
      9729fe7c
  38. 05 Sep, 2011 1 commit