+hsGroupBinders :: HsGroup Name -> [Name]
+hsGroupBinders (HsGroup { hs_valds = val_decls, hs_tyclds = tycl_decls,
+ hs_instds = inst_decls, hs_fords = foreign_decls })
+-- Collect the binders of a Group
+ = collectHsValBinders val_decls
+ ++ hsTyClDeclsBinders tycl_decls inst_decls
+ ++ hsForeignDeclsBinders foreign_decls
+
+hsForeignDeclsBinders :: [LForeignDecl Name] -> [Name]
+hsForeignDeclsBinders foreign_decls
+ = [n | L _ (ForeignImport (L _ n) _ _) <- foreign_decls]
+
+hsTyClDeclsBinders :: [[LTyClDecl Name]] -> [Located (InstDecl Name)] -> [Name]
+hsTyClDeclsBinders tycl_decls inst_decls
+ = [n | d <- instDeclATs inst_decls ++ concat tycl_decls
+ , L _ n <- hsTyClDeclBinders d]
+
+hsTyClDeclBinders :: Eq name => Located (TyClDecl name) -> [Located name]
+-- ^ Returns all the /binding/ names of the decl, along with their SrcLocs.
+-- The first one is guaranteed to be the name of the decl. For record fields
+-- mentioned in multiple constructors, the SrcLoc will be from the first
+-- occurence. We use the equality to filter out duplicate field names
+
+hsTyClDeclBinders (L _ (TyFamily {tcdLName = name})) = [name]
+hsTyClDeclBinders (L _ (TySynonym {tcdLName = name})) = [name]
+hsTyClDeclBinders (L _ (ForeignType {tcdLName = name})) = [name]
+
+hsTyClDeclBinders (L _ (ClassDecl {tcdLName = cls_name, tcdSigs = sigs, tcdATs = ats}))
+ = cls_name :
+ concatMap hsTyClDeclBinders ats ++ [n | L _ (TypeSig n _) <- sigs]
+
+hsTyClDeclBinders (L _ (TyData {tcdLName = tc_name, tcdCons = cons}))
+ = tc_name : hsConDeclsBinders cons
+
+hsConDeclsBinders :: (Eq name) => [LConDecl name] -> [Located name]
+ -- See hsTyClDeclBinders for what this does
+ -- The function is boringly complicated because of the records
+ -- And since we only have equality, we have to be a little careful
+hsConDeclsBinders cons
+ = snd (foldl do_one ([], []) cons)
+ where
+ do_one (flds_seen, acc) (L _ (ConDecl { con_name = lname, con_details = RecCon flds }))
+ = (map unLoc new_flds ++ flds_seen, lname : new_flds ++ acc)
+ where
+ new_flds = filterOut (\f -> unLoc f `elem` flds_seen)
+ (map cd_fld_name flds)
+
+ do_one (flds_seen, acc) (L _ (ConDecl { con_name = lname }))
+ = (flds_seen, lname:acc)
+\end{code}
+
+
+%************************************************************************
+%* *
+ Collecting binders the user did not write
+%* *
+%************************************************************************
+
+The job of this family of functions is to run through binding sites and find the set of all Names
+that were defined "implicitly", without being explicitly written by the user.
+
+The main purpose is to find names introduced by record wildcards so that we can avoid
+warning the user when they don't use those names (#4404)
+
+\begin{code}
+lStmtsImplicits :: [LStmtLR Name idR] -> NameSet
+lStmtsImplicits = hs_lstmts
+ where
+ hs_lstmts :: [LStmtLR Name idR] -> NameSet
+ hs_lstmts = foldr (\stmt rest -> unionNameSets (hs_stmt (unLoc stmt)) rest) emptyNameSet
+
+ hs_stmt (BindStmt pat _ _ _) = lPatImplicits pat
+ hs_stmt (LetStmt binds) = hs_local_binds binds
+ hs_stmt (ExprStmt {}) = emptyNameSet
+ hs_stmt (LastStmt {}) = emptyNameSet
+ hs_stmt (ParStmt xs _ _ _) = hs_lstmts $ concatMap fst xs
+
+ hs_stmt (TransStmt { trS_stmts = stmts }) = hs_lstmts stmts
+ hs_stmt (RecStmt { recS_stmts = ss }) = hs_lstmts ss
+
+ hs_local_binds (HsValBinds val_binds) = hsValBindsImplicits val_binds
+ hs_local_binds (HsIPBinds _) = emptyNameSet
+ hs_local_binds EmptyLocalBinds = emptyNameSet
+
+hsValBindsImplicits :: HsValBindsLR Name idR -> NameSet
+hsValBindsImplicits (ValBindsOut binds _)
+ = unionManyNameSets [foldBag unionNameSets (hs_bind . unLoc) emptyNameSet hs_binds | (_rec, hs_binds) <- binds]
+ where
+ hs_bind (PatBind { pat_lhs = lpat }) = lPatImplicits lpat
+ hs_bind _ = emptyNameSet
+hsValBindsImplicits (ValBindsIn {}) = pprPanic "hsValBindsImplicits: ValBindsIn" empty
+
+lPatImplicits :: LPat Name -> NameSet
+lPatImplicits = hs_lpat
+ where
+ hs_lpat (L _ pat) = hs_pat pat
+
+ hs_lpats = foldr (\pat rest -> hs_lpat pat `unionNameSets` rest) emptyNameSet
+
+ hs_pat (LazyPat pat) = hs_lpat pat
+ hs_pat (BangPat pat) = hs_lpat pat
+ hs_pat (AsPat _ pat) = hs_lpat pat
+ hs_pat (ViewPat _ pat _) = hs_lpat pat
+ hs_pat (ParPat pat) = hs_lpat pat
+ hs_pat (ListPat pats _) = hs_lpats pats
+ hs_pat (PArrPat pats _) = hs_lpats pats
+ hs_pat (TuplePat pats _ _) = hs_lpats pats
+
+ hs_pat (SigPatIn pat _) = hs_lpat pat
+ hs_pat (SigPatOut pat _) = hs_lpat pat
+ hs_pat (CoPat _ pat _) = hs_pat pat
+
+ hs_pat (ConPatIn _ ps) = details ps
+ hs_pat (ConPatOut {pat_args=ps}) = details ps
+
+ hs_pat _ = emptyNameSet
+
+ details (PrefixCon ps) = hs_lpats ps
+ details (RecCon fs) = hs_lpats explicit `unionNameSets` mkNameSet (collectPatsBinders implicit)
+ where (explicit, implicit) = partitionEithers [if pat_explicit then Left pat else Right pat
+ | (i, fld) <- [0..] `zip` rec_flds fs
+ , let pat = hsRecFieldArg fld
+ pat_explicit = maybe True (i<) (rec_dotdot fs)]
+ details (InfixCon p1 p2) = hs_lpat p1 `unionNameSets` hs_lpat p2
+\end{code}
+
+
+%************************************************************************
+%* *
+ Collecting type signatures from patterns
+%* *
+%************************************************************************
+
+\begin{code}