summaryrefslogtreecommitdiff
path: root/compiler/GHC/Runtime/Debugger.hs
blob: 177a83ea8b9584458bcadc2326239602915655b1 (plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
{-# LANGUAGE MagicHash #-}

-----------------------------------------------------------------------------
--
-- GHCi Interactive debugging commands
--
-- Pepe Iborra (supported by Google SoC) 2006
--
-- ToDo: lots of violation of layering here.  This module should
-- decide whether it is above the GHC API (import GHC and nothing
-- else) or below it.
--
-----------------------------------------------------------------------------

module GHC.Runtime.Debugger (pprintClosureCommand, showTerm, pprTypeAndContents) where

import GhcPrelude

import GHC.Runtime.Linker
import GHC.Runtime.Heap.Inspect

import GHC.Runtime.Interpreter
import GHCi.RemoteTypes
import GHC.Driver.Monad
import GHC.Driver.Types
import Id
import GHC.Iface.Syntax ( showToHeader )
import GHC.Iface.Env    ( newInteractiveBinder )
import Name
import Var hiding ( varName )
import VarSet
import UniqSet
import Type
import GHC
import Outputable
import PprTyThing
import ErrUtils
import MonadUtils
import GHC.Driver.Session
import Exception

import Control.Monad
import Data.List ( (\\) )
import Data.Maybe
import Data.IORef

-------------------------------------
-- | The :print & friends commands
-------------------------------------
pprintClosureCommand :: GhcMonad m => Bool -> Bool -> String -> m ()
pprintClosureCommand bindThings force str = do
  tythings <- (catMaybes . concat) `liftM`
                 mapM (\w -> GHC.parseName w >>=
                                mapM GHC.lookupName)
                      (words str)
  let ids = [id | AnId id <- tythings]

  -- Obtain the terms and the recovered type information
  (subst, terms) <- mapAccumLM go emptyTCvSubst ids

  -- Apply the substitutions obtained after recovering the types
  modifySession $ \hsc_env ->
    hsc_env{hsc_IC = substInteractiveContext (hsc_IC hsc_env) subst}

  -- Finally, print the Terms
  unqual  <- GHC.getPrintUnqual
  docterms <- mapM showTerm terms
  dflags <- getDynFlags
  liftIO $ (printOutputForUser dflags unqual . vcat)
           (zipWith (\id docterm -> ppr id <+> char '=' <+> docterm)
                    ids
                    docterms)
 where
   -- Do the obtainTerm--bindSuspensions-computeSubstitution dance
   go :: GhcMonad m => TCvSubst -> Id -> m (TCvSubst, Term)
   go subst id = do
       let id_ty' = substTy subst (idType id)
           id'    = id `setIdType` id_ty'
       term_    <- GHC.obtainTermFromId maxBound force id'
       term     <- tidyTermTyVars term_
       term'    <- if bindThings
                     then bindSuspensions term
                     else return term
     -- Before leaving, we compare the type obtained to see if it's more specific
     --  Then, we extract a substitution,
     --  mapping the old tyvars to the reconstructed types.
       let reconstructed_type = termType term
       hsc_env <- getSession
       case (improveRTTIType hsc_env id_ty' reconstructed_type) of
         Nothing     -> return (subst, term')
         Just subst' -> do { dflags <- GHC.getSessionDynFlags
                           ; liftIO $
                               dumpIfSet_dyn dflags Opt_D_dump_rtti "RTTI"
                                 FormatText
                                 (fsep $ [text "RTTI Improvement for", ppr id,
                                  text "old substitution:" , ppr subst,
                                  text "new substitution:" , ppr subst'])
                           ; return (subst `unionTCvSubst` subst', term')}

   tidyTermTyVars :: GhcMonad m => Term -> m Term
   tidyTermTyVars t =
     withSession $ \hsc_env -> do
     let env_tvs      = tyThingsTyCoVars $ ic_tythings $ hsc_IC hsc_env
         my_tvs       = termTyCoVars t
         tvs          = env_tvs `minusVarSet` my_tvs
         tyvarOccName = nameOccName . tyVarName
         tidyEnv      = (initTidyOccEnv (map tyvarOccName (nonDetEltsUniqSet tvs))
           -- It's OK to use nonDetEltsUniqSet here because initTidyOccEnv
           -- forgets the ordering immediately by creating an env
                        , getUniqSet $ env_tvs `intersectVarSet` my_tvs)
     return $ mapTermType (snd . tidyOpenType tidyEnv) t

-- | Give names, and bind in the interactive environment, to all the suspensions
--   included (inductively) in a term
bindSuspensions :: GhcMonad m => Term -> m Term
bindSuspensions t = do
      hsc_env <- getSession
      inScope <- GHC.getBindings
      let ictxt        = hsc_IC hsc_env
          prefix       = "_t"
          alreadyUsedNames = map (occNameString . nameOccName . getName) inScope
          availNames   = map ((prefix++) . show) [(1::Int)..] \\ alreadyUsedNames
      availNames_var  <- liftIO $ newIORef availNames
      (t', stuff)     <- liftIO $ foldTerm (nameSuspensionsAndGetInfos hsc_env availNames_var) t
      let (names, tys, fhvs) = unzip3 stuff
      let ids = [ mkVanillaGlobal name ty
                | (name,ty) <- zip names tys]
          new_ic = extendInteractiveContextWithIds ictxt ids
          dl = hsc_dynLinker hsc_env
      liftIO $ extendLinkEnv dl (zip names fhvs)
      setSession hsc_env {hsc_IC = new_ic }
      return t'
     where

--    Processing suspensions. Give names and recopilate info
        nameSuspensionsAndGetInfos :: HscEnv -> IORef [String]
                                   -> TermFold (IO (Term, [(Name,Type,ForeignHValue)]))
        nameSuspensionsAndGetInfos hsc_env freeNames = TermFold
                      {
                        fSuspension = doSuspension hsc_env freeNames
                      , fTerm = \ty dc v tt -> do
                                    tt' <- sequence tt
                                    let (terms,names) = unzip tt'
                                    return (Term ty dc v terms, concat names)
                      , fPrim    = \ty n ->return (Prim ty n,[])
                      , fNewtypeWrap  =
                                \ty dc t -> do
                                    (term, names) <- t
                                    return (NewtypeWrap ty dc term, names)
                      , fRefWrap = \ty t -> do
                                    (term, names) <- t
                                    return (RefWrap ty term, names)
                      }
        doSuspension hsc_env freeNames ct ty hval _name = do
          name <- atomicModifyIORef' freeNames (\x->(tail x, head x))
          n <- newGrimName hsc_env name
          return (Suspension ct ty hval (Just n), [(n,ty,hval)])


--  A custom Term printer to enable the use of Show instances
showTerm :: GhcMonad m => Term -> m SDoc
showTerm term = do
    dflags       <- GHC.getSessionDynFlags
    if gopt Opt_PrintEvldWithShow dflags
       then cPprTerm (liftM2 (++) (\_y->[cPprShowable]) cPprTermBase) term
       else cPprTerm cPprTermBase term
 where
  cPprShowable prec t@Term{ty=ty, val=fhv} =
    if not (isFullyEvaluatedTerm t)
     then return Nothing
     else do
        hsc_env <- getSession
        dflags  <- GHC.getSessionDynFlags
        do
           (new_env, bname) <- bindToFreshName hsc_env ty "showme"
           setSession new_env
                      -- XXX: this tries to disable logging of errors
                      -- does this still do what it is intended to do
                      -- with the changed error handling and logging?
           let noop_log _ _ _ _ _ _ = return ()
               expr = "Prelude.return (Prelude.show " ++
                         showPpr dflags bname ++
                      ") :: Prelude.IO Prelude.String"
               dl   = hsc_dynLinker hsc_env
           _ <- GHC.setSessionDynFlags dflags{log_action=noop_log}
           txt_ <- withExtendedLinkEnv dl
                                       [(bname, fhv)]
                                       (GHC.compileExprRemote expr)
           let myprec = 10 -- application precedence. TODO Infix constructors
           txt <- liftIO $ evalString hsc_env txt_
           if not (null txt) then
             return $ Just $ cparen (prec >= myprec && needsParens txt)
                                    (text txt)
            else return Nothing
         `gfinally` do
           setSession hsc_env
           GHC.setSessionDynFlags dflags
  cPprShowable prec NewtypeWrap{ty=new_ty,wrapped_term=t} =
      cPprShowable prec t{ty=new_ty}
  cPprShowable _ _ = return Nothing

  needsParens ('"':_) = False   -- some simple heuristics to see whether parens
                                -- are redundant in an arbitrary Show output
  needsParens ('(':_) = False
  needsParens txt = ' ' `elem` txt


  bindToFreshName hsc_env ty userName = do
    name <- newGrimName hsc_env userName
    let id       = mkVanillaGlobal name ty
        new_ic   = extendInteractiveContextWithIds (hsc_IC hsc_env) [id]
    return (hsc_env {hsc_IC = new_ic }, name)

--    Create new uniques and give them sequentially numbered names
newGrimName :: MonadIO m => HscEnv -> String -> m Name
newGrimName hsc_env userName
  = liftIO (newInteractiveBinder hsc_env occ noSrcSpan)
  where
    occ = mkOccName varName userName

pprTypeAndContents :: GhcMonad m => Id -> m SDoc
pprTypeAndContents id = do
  dflags  <- GHC.getSessionDynFlags
  let pcontents = gopt Opt_PrintBindContents dflags
      pprdId    = (pprTyThing showToHeader . AnId) id
  if pcontents
    then do
      let depthBound = 100
      -- If the value is an exception, make sure we catch it and
      -- show the exception, rather than propagating the exception out.
      e_term <- gtry $ GHC.obtainTermFromId depthBound False id
      docs_term <- case e_term of
                      Right term -> showTerm term
                      Left  exn  -> return (text "*** Exception:" <+>
                                            text (show (exn :: SomeException)))
      return $ pprdId <+> equals <+> docs_term
    else return pprdId