{-# LANGUAGE CPP #-}
{-# LANGUAGE DeriveFunctor #-}
{-# LANGUAGE ViewPatterns #-}
module Specialise ( specProgram, specUnfolding ) where
#include "HsVersions.h"
import GhcPrelude
import Id
import TcType hiding( substTy )
import Type hiding( substTy, extendTvSubstList )
import Predicate
import Module( Module, HasModule(..) )
import Coercion( Coercion )
import CoreMonad
import qualified CoreSubst
import CoreUnfold
import Var ( isLocalVar )
import VarSet
import VarEnv
import CoreSyn
import Rules
import CoreOpt ( collectBindersPushingCo )
import CoreUtils ( exprIsTrivial, mkCast, exprType )
import CoreFVs
import CoreArity ( etaExpandToJoinPointRule )
import UniqSupply
import Name
import MkId ( voidArgId, voidPrimId )
import Maybes ( mapMaybe, isJust )
import MonadUtils ( foldlM )
import BasicTypes
import HscTypes
import Bag
import DynFlags
import Util
import Outputable
import FastString
import State
import UniqDFM
import TyCoRep (TyCoBinder (..))
import Control.Monad
import qualified Control.Monad.Fail as MonadFail
specProgram :: ModGuts -> CoreM ModGuts
specProgram :: ModGuts -> CoreM ModGuts
specProgram guts :: ModGuts
guts@(ModGuts { mg_module :: ModGuts -> Module
mg_module = Module
this_mod
, mg_rules :: ModGuts -> [CoreRule]
mg_rules = [CoreRule]
local_rules
, mg_binds :: ModGuts -> CoreProgram
mg_binds = CoreProgram
binds })
= do { DynFlags
dflags <- CoreM DynFlags
forall (m :: * -> *). HasDynFlags m => m DynFlags
getDynFlags
; (CoreProgram
binds', UsageDetails
uds) <- DynFlags
-> Module
-> SpecM (CoreProgram, UsageDetails)
-> CoreM (CoreProgram, UsageDetails)
forall a. DynFlags -> Module -> SpecM a -> CoreM a
runSpecM DynFlags
dflags Module
this_mod (CoreProgram -> SpecM (CoreProgram, UsageDetails)
go CoreProgram
binds)
; RuleBase
hpt_rules <- CoreM RuleBase
getRuleBase
; let rule_base :: RuleBase
rule_base = RuleBase -> [CoreRule] -> RuleBase
extendRuleBaseList RuleBase
hpt_rules [CoreRule]
local_rules
; ([CoreRule]
new_rules, CoreProgram
spec_binds) <- DynFlags
-> Module
-> SpecEnv
-> VarSet
-> [Id]
-> RuleBase
-> UsageDetails
-> CoreM ([CoreRule], CoreProgram)
specImports DynFlags
dflags Module
this_mod SpecEnv
top_env VarSet
emptyVarSet
[] RuleBase
rule_base UsageDetails
uds
; let final_binds :: CoreProgram
final_binds
| CoreProgram -> Bool
forall (t :: * -> *) a. Foldable t => t a -> Bool
null CoreProgram
spec_binds = CoreProgram
binds'
| Bool
otherwise = [(Id, Expr Id)] -> Bind Id
forall b. [(b, Expr b)] -> Bind b
Rec (CoreProgram -> [(Id, Expr Id)]
forall b. [Bind b] -> [(b, Expr b)]
flattenBinds CoreProgram
spec_binds) Bind Id -> CoreProgram -> CoreProgram
forall a. a -> [a] -> [a]
: CoreProgram
binds'
; ModGuts -> CoreM ModGuts
forall (m :: * -> *) a. Monad m => a -> m a
return (ModGuts
guts { mg_binds :: CoreProgram
mg_binds = CoreProgram
final_binds
, mg_rules :: [CoreRule]
mg_rules = [CoreRule]
new_rules [CoreRule] -> [CoreRule] -> [CoreRule]
forall a. [a] -> [a] -> [a]
++ [CoreRule]
local_rules }) }
where
top_env :: SpecEnv
top_env = SE :: Subst -> VarSet -> SpecEnv
SE { se_subst :: Subst
se_subst = InScopeSet -> Subst
CoreSubst.mkEmptySubst (InScopeSet -> Subst) -> InScopeSet -> Subst
forall a b. (a -> b) -> a -> b
$ VarSet -> InScopeSet
mkInScopeSet (VarSet -> InScopeSet) -> VarSet -> InScopeSet
forall a b. (a -> b) -> a -> b
$ [Id] -> VarSet
mkVarSet ([Id] -> VarSet) -> [Id] -> VarSet
forall a b. (a -> b) -> a -> b
$
CoreProgram -> [Id]
forall b. [Bind b] -> [b]
bindersOfBinds CoreProgram
binds
, se_interesting :: VarSet
se_interesting = VarSet
emptyVarSet }
go :: CoreProgram -> SpecM (CoreProgram, UsageDetails)
go [] = (CoreProgram, UsageDetails) -> SpecM (CoreProgram, UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return ([], UsageDetails
emptyUDs)
go (Bind Id
bind:CoreProgram
binds) = do (CoreProgram
binds', UsageDetails
uds) <- CoreProgram -> SpecM (CoreProgram, UsageDetails)
go CoreProgram
binds
(CoreProgram
bind', UsageDetails
uds') <- SpecEnv
-> Bind Id -> UsageDetails -> SpecM (CoreProgram, UsageDetails)
specBind SpecEnv
top_env Bind Id
bind UsageDetails
uds
(CoreProgram, UsageDetails) -> SpecM (CoreProgram, UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return (CoreProgram
bind' CoreProgram -> CoreProgram -> CoreProgram
forall a. [a] -> [a] -> [a]
++ CoreProgram
binds', UsageDetails
uds')
data SpecArg
=
SpecType Type
| UnspecType
| SpecDict DictExpr
| UnspecArg
instance Outputable SpecArg where
ppr :: SpecArg -> SDoc
ppr (SpecType Type
t) = String -> SDoc
text String
"SpecType" SDoc -> SDoc -> SDoc
<+> Type -> SDoc
forall a. Outputable a => a -> SDoc
ppr Type
t
ppr SpecArg
UnspecType = String -> SDoc
text String
"UnspecType"
ppr (SpecDict Expr Id
d) = String -> SDoc
text String
"SpecDict" SDoc -> SDoc -> SDoc
<+> Expr Id -> SDoc
forall a. Outputable a => a -> SDoc
ppr Expr Id
d
ppr SpecArg
UnspecArg = String -> SDoc
text String
"UnspecArg"
getSpecDicts :: [SpecArg] -> [DictExpr]
getSpecDicts :: [SpecArg] -> [Expr Id]
getSpecDicts = (SpecArg -> Maybe (Expr Id)) -> [SpecArg] -> [Expr Id]
forall a b. (a -> Maybe b) -> [a] -> [b]
mapMaybe SpecArg -> Maybe (Expr Id)
go
where
go :: SpecArg -> Maybe (Expr Id)
go (SpecDict Expr Id
d) = Expr Id -> Maybe (Expr Id)
forall a. a -> Maybe a
Just Expr Id
d
go SpecArg
_ = Maybe (Expr Id)
forall a. Maybe a
Nothing
getSpecTypes :: [SpecArg] -> [Type]
getSpecTypes :: [SpecArg] -> [Type]
getSpecTypes = (SpecArg -> Maybe Type) -> [SpecArg] -> [Type]
forall a b. (a -> Maybe b) -> [a] -> [b]
mapMaybe SpecArg -> Maybe Type
go
where
go :: SpecArg -> Maybe Type
go (SpecType Type
t) = Type -> Maybe Type
forall a. a -> Maybe a
Just Type
t
go SpecArg
_ = Maybe Type
forall a. Maybe a
Nothing
isUnspecArg :: SpecArg -> Bool
isUnspecArg :: SpecArg -> Bool
isUnspecArg SpecArg
UnspecArg = Bool
True
isUnspecArg SpecArg
UnspecType = Bool
True
isUnspecArg SpecArg
_ = Bool
False
isValueArg :: SpecArg -> Bool
isValueArg :: SpecArg -> Bool
isValueArg SpecArg
UnspecArg = Bool
True
isValueArg (SpecDict Expr Id
_) = Bool
True
isValueArg SpecArg
_ = Bool
False
specHeader
:: SpecEnv
-> [CoreBndr]
-> [SpecArg]
-> SpecM (
SpecEnv
, [CoreBndr]
, [CoreBndr]
, [CoreArg]
, [CoreBndr]
, [DictBind]
, [CoreExpr]
)
SpecEnv
env (Id
bndr : [Id]
bndrs) (SpecType Type
t : [SpecArg]
args)
= do { let env' :: SpecEnv
env' = SpecEnv -> [(Id, Type)] -> SpecEnv
extendTvSubstList SpecEnv
env [(Id
bndr, Type
t)]
; (SpecEnv
env'', [Id]
unused_bndrs, [Id]
rule_bs, [Expr Id]
rule_es, [Id]
bs', [DictBind]
dx, [Expr Id]
spec_args)
<- SpecEnv
-> [Id]
-> [SpecArg]
-> SpecM
(SpecEnv, [Id], [Id], [Expr Id], [Id], [DictBind], [Expr Id])
specHeader SpecEnv
env' [Id]
bndrs [SpecArg]
args
; (SpecEnv, [Id], [Id], [Expr Id], [Id], [DictBind], [Expr Id])
-> SpecM
(SpecEnv, [Id], [Id], [Expr Id], [Id], [DictBind], [Expr Id])
forall (f :: * -> *) a. Applicative f => a -> f a
pure ( SpecEnv
env''
, [Id]
unused_bndrs
, [Id]
rule_bs
, Type -> Expr Id
forall b. Type -> Expr b
Type Type
t Expr Id -> [Expr Id] -> [Expr Id]
forall a. a -> [a] -> [a]
: [Expr Id]
rule_es
, [Id]
bs'
, [DictBind]
dx
, Type -> Expr Id
forall b. Type -> Expr b
Type Type
t Expr Id -> [Expr Id] -> [Expr Id]
forall a. a -> [a] -> [a]
: [Expr Id]
spec_args
)
}
specHeader SpecEnv
env (Id
bndr : [Id]
bndrs) (SpecArg
UnspecType : [SpecArg]
args)
= do { let (SpecEnv
env', Id
bndr') = SpecEnv -> Id -> (SpecEnv, Id)
substBndr SpecEnv
env Id
bndr
; (SpecEnv
env'', [Id]
unused_bndrs, [Id]
rule_bs, [Expr Id]
rule_es, [Id]
bs', [DictBind]
dx, [Expr Id]
spec_args)
<- SpecEnv
-> [Id]
-> [SpecArg]
-> SpecM
(SpecEnv, [Id], [Id], [Expr Id], [Id], [DictBind], [Expr Id])
specHeader SpecEnv
env' [Id]
bndrs [SpecArg]
args
; (SpecEnv, [Id], [Id], [Expr Id], [Id], [DictBind], [Expr Id])
-> SpecM
(SpecEnv, [Id], [Id], [Expr Id], [Id], [DictBind], [Expr Id])
forall (f :: * -> *) a. Applicative f => a -> f a
pure ( SpecEnv
env''
, [Id]
unused_bndrs
, Id
bndr' Id -> [Id] -> [Id]
forall a. a -> [a] -> [a]
: [Id]
rule_bs
, Id -> Expr Id
forall b. Id -> Expr b
varToCoreExpr Id
bndr' Expr Id -> [Expr Id] -> [Expr Id]
forall a. a -> [a] -> [a]
: [Expr Id]
rule_es
, Id
bndr' Id -> [Id] -> [Id]
forall a. a -> [a] -> [a]
: [Id]
bs'
, [DictBind]
dx
, Id -> Expr Id
forall b. Id -> Expr b
varToCoreExpr Id
bndr' Expr Id -> [Expr Id] -> [Expr Id]
forall a. a -> [a] -> [a]
: [Expr Id]
spec_args
)
}
specHeader SpecEnv
env (Id
bndr : [Id]
bndrs) (SpecDict Expr Id
d : [SpecArg]
args)
= do { Id
inst_dict_id <- SpecEnv -> Id -> SpecM Id
newDictBndr SpecEnv
env Id
bndr
; let (SpecEnv
rhs_env2, [DictBind]
dx_binds, [Expr Id]
spec_dict_args')
= SpecEnv
-> [Id] -> [Expr Id] -> [Id] -> (SpecEnv, [DictBind], [Expr Id])
bindAuxiliaryDicts SpecEnv
env [Id
bndr] [Expr Id
d] [Id
inst_dict_id]
; (SpecEnv
env', [Id]
unused_bndrs, [Id]
rule_bs, [Expr Id]
rule_es, [Id]
bs', [DictBind]
dx, [Expr Id]
spec_args)
<- SpecEnv
-> [Id]
-> [SpecArg]
-> SpecM
(SpecEnv, [Id], [Id], [Expr Id], [Id], [DictBind], [Expr Id])
specHeader SpecEnv
rhs_env2 [Id]
bndrs [SpecArg]
args
; (SpecEnv, [Id], [Id], [Expr Id], [Id], [DictBind], [Expr Id])
-> SpecM
(SpecEnv, [Id], [Id], [Expr Id], [Id], [DictBind], [Expr Id])
forall (f :: * -> *) a. Applicative f => a -> f a
pure ( SpecEnv
env'
, [Id]
unused_bndrs
, Expr Id -> [Id]
exprFreeIdsList (Id -> Expr Id
forall b. Id -> Expr b
varToCoreExpr Id
inst_dict_id) [Id] -> [Id] -> [Id]
forall a. [a] -> [a] -> [a]
++ [Id]
rule_bs
, Id -> Expr Id
forall b. Id -> Expr b
varToCoreExpr Id
inst_dict_id Expr Id -> [Expr Id] -> [Expr Id]
forall a. a -> [a] -> [a]
: [Expr Id]
rule_es
, [Id]
bs'
, [DictBind]
dx_binds [DictBind] -> [DictBind] -> [DictBind]
forall a. [a] -> [a] -> [a]
++ [DictBind]
dx
, [Expr Id]
spec_dict_args' [Expr Id] -> [Expr Id] -> [Expr Id]
forall a. [a] -> [a] -> [a]
++ [Expr Id]
spec_args
)
}
specHeader SpecEnv
env (Id
bndr : [Id]
bndrs) (SpecArg
UnspecArg : [SpecArg]
args)
= do { let (SpecEnv
env', Id
bndr') = SpecEnv -> Id -> (SpecEnv, Id)
substBndr SpecEnv
env Id
bndr
; (SpecEnv
env'', [Id]
unused_bndrs, [Id]
rule_bs, [Expr Id]
rule_es, [Id]
bs', [DictBind]
dx, [Expr Id]
spec_args)
<- SpecEnv
-> [Id]
-> [SpecArg]
-> SpecM
(SpecEnv, [Id], [Id], [Expr Id], [Id], [DictBind], [Expr Id])
specHeader SpecEnv
env' [Id]
bndrs [SpecArg]
args
; (SpecEnv, [Id], [Id], [Expr Id], [Id], [DictBind], [Expr Id])
-> SpecM
(SpecEnv, [Id], [Id], [Expr Id], [Id], [DictBind], [Expr Id])
forall (f :: * -> *) a. Applicative f => a -> f a
pure ( SpecEnv
env''
, [Id]
unused_bndrs
, Id
bndr' Id -> [Id] -> [Id]
forall a. a -> [a] -> [a]
: [Id]
rule_bs
, Id -> Expr Id
forall b. Id -> Expr b
varToCoreExpr Id
bndr' Expr Id -> [Expr Id] -> [Expr Id]
forall a. a -> [a] -> [a]
: [Expr Id]
rule_es
, Id
bndr' Id -> [Id] -> [Id]
forall a. a -> [a] -> [a]
: [Id]
bs'
, [DictBind]
dx
, Id -> Expr Id
forall b. Id -> Expr b
varToCoreExpr Id
bndr' Expr Id -> [Expr Id] -> [Expr Id]
forall a. a -> [a] -> [a]
: [Expr Id]
spec_args
)
}
specHeader SpecEnv
env [Id]
bndrs [] = (SpecEnv, [Id], [Id], [Expr Id], [Id], [DictBind], [Expr Id])
-> SpecM
(SpecEnv, [Id], [Id], [Expr Id], [Id], [DictBind], [Expr Id])
forall (f :: * -> *) a. Applicative f => a -> f a
pure (SpecEnv
env, [Id]
bndrs, [], [], [], [], [])
specHeader SpecEnv
env [] [SpecArg]
_ = (SpecEnv, [Id], [Id], [Expr Id], [Id], [DictBind], [Expr Id])
-> SpecM
(SpecEnv, [Id], [Id], [Expr Id], [Id], [DictBind], [Expr Id])
forall (f :: * -> *) a. Applicative f => a -> f a
pure (SpecEnv
env, [], [], [], [], [], [])
specImports :: DynFlags
-> Module
-> SpecEnv
-> VarSet
-> [Id]
-> RuleBase
-> UsageDetails
-> CoreM ( [CoreRule]
, [CoreBind] )
specImports :: DynFlags
-> Module
-> SpecEnv
-> VarSet
-> [Id]
-> RuleBase
-> UsageDetails
-> CoreM ([CoreRule], CoreProgram)
specImports DynFlags
dflags Module
this_mod SpecEnv
top_env VarSet
done [Id]
callers RuleBase
rule_base
(MkUD { ud_binds :: UsageDetails -> Bag DictBind
ud_binds = Bag DictBind
dict_binds, ud_calls :: UsageDetails -> CallDetails
ud_calls = CallDetails
calls })
| Bool -> Bool
not (Bool -> Bool) -> Bool -> Bool
forall a b. (a -> b) -> a -> b
$ GeneralFlag -> DynFlags -> Bool
gopt GeneralFlag
Opt_CrossModuleSpecialise DynFlags
dflags
= ([CoreRule], CoreProgram) -> CoreM ([CoreRule], CoreProgram)
forall (m :: * -> *) a. Monad m => a -> m a
return ([], [])
| Bool
otherwise
= do { let import_calls :: [CallInfoSet]
import_calls = CallDetails -> [CallInfoSet]
forall a. DVarEnv a -> [a]
dVarEnvElts CallDetails
calls
; ([CoreRule]
rules, CoreProgram
spec_binds) <- RuleBase -> [CallInfoSet] -> CoreM ([CoreRule], CoreProgram)
go RuleBase
rule_base [CallInfoSet]
import_calls
; let spec_binds' :: CoreProgram
spec_binds' = Bag DictBind -> CoreProgram -> CoreProgram
wrapDictBinds Bag DictBind
dict_binds CoreProgram
spec_binds
; ([CoreRule], CoreProgram) -> CoreM ([CoreRule], CoreProgram)
forall (m :: * -> *) a. Monad m => a -> m a
return ([CoreRule]
rules, CoreProgram
spec_binds') }
where
go :: RuleBase -> [CallInfoSet] -> CoreM ([CoreRule], [CoreBind])
go :: RuleBase -> [CallInfoSet] -> CoreM ([CoreRule], CoreProgram)
go RuleBase
_ [] = ([CoreRule], CoreProgram) -> CoreM ([CoreRule], CoreProgram)
forall (m :: * -> *) a. Monad m => a -> m a
return ([], [])
go RuleBase
rb (cis :: CallInfoSet
cis@(CIS Id
fn Bag CallInfo
_) : [CallInfoSet]
other_calls)
= do { let ok_calls :: [CallInfo]
ok_calls = CallInfoSet -> Bag DictBind -> [CallInfo]
filterCalls CallInfoSet
cis Bag DictBind
dict_binds
; ([CoreRule]
rules1, CoreProgram
spec_binds1) <- DynFlags
-> Module
-> SpecEnv
-> VarSet
-> [Id]
-> RuleBase
-> Id
-> [CallInfo]
-> CoreM ([CoreRule], CoreProgram)
specImport DynFlags
dflags Module
this_mod SpecEnv
top_env
VarSet
done [Id]
callers RuleBase
rb Id
fn [CallInfo]
ok_calls
; ([CoreRule]
rules2, CoreProgram
spec_binds2) <- RuleBase -> [CallInfoSet] -> CoreM ([CoreRule], CoreProgram)
go (RuleBase -> [CoreRule] -> RuleBase
extendRuleBaseList RuleBase
rb [CoreRule]
rules1) [CallInfoSet]
other_calls
; ([CoreRule], CoreProgram) -> CoreM ([CoreRule], CoreProgram)
forall (m :: * -> *) a. Monad m => a -> m a
return ([CoreRule]
rules1 [CoreRule] -> [CoreRule] -> [CoreRule]
forall a. [a] -> [a] -> [a]
++ [CoreRule]
rules2, CoreProgram
spec_binds1 CoreProgram -> CoreProgram -> CoreProgram
forall a. [a] -> [a] -> [a]
++ CoreProgram
spec_binds2) }
specImport :: DynFlags
-> Module
-> SpecEnv
-> VarSet
-> [Id]
-> RuleBase
-> Id -> [CallInfo]
-> CoreM ( [CoreRule]
, [CoreBind] )
specImport :: DynFlags
-> Module
-> SpecEnv
-> VarSet
-> [Id]
-> RuleBase
-> Id
-> [CallInfo]
-> CoreM ([CoreRule], CoreProgram)
specImport DynFlags
dflags Module
this_mod SpecEnv
top_env VarSet
done [Id]
callers RuleBase
rb Id
fn [CallInfo]
calls_for_fn
| Id
fn Id -> VarSet -> Bool
`elemVarSet` VarSet
done
= ([CoreRule], CoreProgram) -> CoreM ([CoreRule], CoreProgram)
forall (m :: * -> *) a. Monad m => a -> m a
return ([], [])
| [CallInfo] -> Bool
forall (t :: * -> *) a. Foldable t => t a -> Bool
null [CallInfo]
calls_for_fn
= ([CoreRule], CoreProgram) -> CoreM ([CoreRule], CoreProgram)
forall (m :: * -> *) a. Monad m => a -> m a
return ([], [])
| DynFlags -> Unfolding -> Bool
wantSpecImport DynFlags
dflags Unfolding
unfolding
, Just Expr Id
rhs <- Unfolding -> Maybe (Expr Id)
maybeUnfoldingTemplate Unfolding
unfolding
= do {
; HscEnv
hsc_env <- CoreM HscEnv
getHscEnv
; ExternalPackageState
eps <- IO ExternalPackageState -> CoreM ExternalPackageState
forall (m :: * -> *) a. MonadIO m => IO a -> m a
liftIO (IO ExternalPackageState -> CoreM ExternalPackageState)
-> IO ExternalPackageState -> CoreM ExternalPackageState
forall a b. (a -> b) -> a -> b
$ HscEnv -> IO ExternalPackageState
hscEPS HscEnv
hsc_env
; ModuleSet
vis_orphs <- CoreM ModuleSet
getVisibleOrphanMods
; let full_rb :: RuleBase
full_rb = RuleBase -> RuleBase -> RuleBase
unionRuleBase RuleBase
rb (ExternalPackageState -> RuleBase
eps_rule_base ExternalPackageState
eps)
rules_for_fn :: [CoreRule]
rules_for_fn = RuleEnv -> Id -> [CoreRule]
getRules (RuleBase -> ModuleSet -> RuleEnv
RuleEnv RuleBase
full_rb ModuleSet
vis_orphs) Id
fn
; ([CoreRule]
rules1, [(Id, Expr Id)]
spec_pairs, UsageDetails
uds)
<-
DynFlags
-> Module
-> SpecM ([CoreRule], [(Id, Expr Id)], UsageDetails)
-> CoreM ([CoreRule], [(Id, Expr Id)], UsageDetails)
forall a. DynFlags -> Module -> SpecM a -> CoreM a
runSpecM DynFlags
dflags Module
this_mod (SpecM ([CoreRule], [(Id, Expr Id)], UsageDetails)
-> CoreM ([CoreRule], [(Id, Expr Id)], UsageDetails))
-> SpecM ([CoreRule], [(Id, Expr Id)], UsageDetails)
-> CoreM ([CoreRule], [(Id, Expr Id)], UsageDetails)
forall a b. (a -> b) -> a -> b
$
Maybe Module
-> SpecEnv
-> [CoreRule]
-> [CallInfo]
-> Id
-> Expr Id
-> SpecM ([CoreRule], [(Id, Expr Id)], UsageDetails)
specCalls (Module -> Maybe Module
forall a. a -> Maybe a
Just Module
this_mod) SpecEnv
top_env [CoreRule]
rules_for_fn [CallInfo]
calls_for_fn Id
fn Expr Id
rhs
; let spec_binds1 :: CoreProgram
spec_binds1 = [Id -> Expr Id -> Bind Id
forall b. b -> Expr b -> Bind b
NonRec Id
b Expr Id
r | (Id
b,Expr Id
r) <- [(Id, Expr Id)]
spec_pairs]
; ([CoreRule]
rules2, CoreProgram
spec_binds2) <-
DynFlags
-> Module
-> SpecEnv
-> VarSet
-> [Id]
-> RuleBase
-> UsageDetails
-> CoreM ([CoreRule], CoreProgram)
specImports DynFlags
dflags Module
this_mod SpecEnv
top_env
(VarSet -> Id -> VarSet
extendVarSet VarSet
done Id
fn)
(Id
fnId -> [Id] -> [Id]
forall a. a -> [a] -> [a]
:[Id]
callers)
(RuleBase -> [CoreRule] -> RuleBase
extendRuleBaseList RuleBase
rb [CoreRule]
rules1)
UsageDetails
uds
; let final_binds :: CoreProgram
final_binds = CoreProgram
spec_binds2 CoreProgram -> CoreProgram -> CoreProgram
forall a. [a] -> [a] -> [a]
++ CoreProgram
spec_binds1
; ([CoreRule], CoreProgram) -> CoreM ([CoreRule], CoreProgram)
forall (m :: * -> *) a. Monad m => a -> m a
return ([CoreRule]
rules2 [CoreRule] -> [CoreRule] -> [CoreRule]
forall a. [a] -> [a] -> [a]
++ [CoreRule]
rules1, CoreProgram
final_binds) }
| Bool
otherwise = do { DynFlags -> [Id] -> Id -> [CallInfo] -> CoreM ()
tryWarnMissingSpecs DynFlags
dflags [Id]
callers Id
fn [CallInfo]
calls_for_fn
; ([CoreRule], CoreProgram) -> CoreM ([CoreRule], CoreProgram)
forall (m :: * -> *) a. Monad m => a -> m a
return ([], [])}
where
unfolding :: Unfolding
unfolding = Id -> Unfolding
realIdUnfolding Id
fn
tryWarnMissingSpecs :: DynFlags -> [Id] -> Id -> [CallInfo] -> CoreM ()
tryWarnMissingSpecs :: DynFlags -> [Id] -> Id -> [CallInfo] -> CoreM ()
tryWarnMissingSpecs DynFlags
dflags [Id]
callers Id
fn [CallInfo]
calls_for_fn
| WarningFlag -> DynFlags -> Bool
wopt WarningFlag
Opt_WarnMissedSpecs DynFlags
dflags
Bool -> Bool -> Bool
&& Bool -> Bool
not ([Id] -> Bool
forall (t :: * -> *) a. Foldable t => t a -> Bool
null [Id]
callers)
Bool -> Bool -> Bool
&& Bool
allCallersInlined = WarnReason -> CoreM ()
doWarn (WarnReason -> CoreM ()) -> WarnReason -> CoreM ()
forall a b. (a -> b) -> a -> b
$ WarningFlag -> WarnReason
Reason WarningFlag
Opt_WarnMissedSpecs
| WarningFlag -> DynFlags -> Bool
wopt WarningFlag
Opt_WarnAllMissedSpecs DynFlags
dflags = WarnReason -> CoreM ()
doWarn (WarnReason -> CoreM ()) -> WarnReason -> CoreM ()
forall a b. (a -> b) -> a -> b
$ WarningFlag -> WarnReason
Reason WarningFlag
Opt_WarnAllMissedSpecs
| Bool
otherwise = () -> CoreM ()
forall (m :: * -> *) a. Monad m => a -> m a
return ()
where
allCallersInlined :: Bool
allCallersInlined = (Id -> Bool) -> [Id] -> Bool
forall (t :: * -> *) a. Foldable t => (a -> Bool) -> t a -> Bool
all (InlinePragma -> Bool
isAnyInlinePragma (InlinePragma -> Bool) -> (Id -> InlinePragma) -> Id -> Bool
forall b c a. (b -> c) -> (a -> b) -> a -> c
. Id -> InlinePragma
idInlinePragma) [Id]
callers
doWarn :: WarnReason -> CoreM ()
doWarn WarnReason
reason =
WarnReason -> SDoc -> CoreM ()
warnMsg WarnReason
reason
([SDoc] -> SDoc
vcat [ SDoc -> Int -> SDoc -> SDoc
hang (String -> SDoc
text (String
"Could not specialise imported function") SDoc -> SDoc -> SDoc
<+> SDoc -> SDoc
quotes (Id -> SDoc
forall a. Outputable a => a -> SDoc
ppr Id
fn))
Int
2 ([SDoc] -> SDoc
vcat [ String -> SDoc
text String
"when specialising" SDoc -> SDoc -> SDoc
<+> SDoc -> SDoc
quotes (Id -> SDoc
forall a. Outputable a => a -> SDoc
ppr Id
caller)
| Id
caller <- [Id]
callers])
, SDoc -> SDoc
whenPprDebug (String -> SDoc
text String
"calls:" SDoc -> SDoc -> SDoc
<+> [SDoc] -> SDoc
vcat ((CallInfo -> SDoc) -> [CallInfo] -> [SDoc]
forall a b. (a -> b) -> [a] -> [b]
map (Id -> CallInfo -> SDoc
pprCallInfo Id
fn) [CallInfo]
calls_for_fn))
, String -> SDoc
text String
"Probable fix: add INLINABLE pragma on" SDoc -> SDoc -> SDoc
<+> SDoc -> SDoc
quotes (Id -> SDoc
forall a. Outputable a => a -> SDoc
ppr Id
fn) ])
wantSpecImport :: DynFlags -> Unfolding -> Bool
wantSpecImport :: DynFlags -> Unfolding -> Bool
wantSpecImport DynFlags
dflags Unfolding
unf
= case Unfolding
unf of
Unfolding
NoUnfolding -> Bool
False
Unfolding
BootUnfolding -> Bool
False
OtherCon {} -> Bool
False
DFunUnfolding {} -> Bool
True
CoreUnfolding { uf_src :: Unfolding -> UnfoldingSource
uf_src = UnfoldingSource
src, uf_guidance :: Unfolding -> UnfoldingGuidance
uf_guidance = UnfoldingGuidance
_guidance }
| GeneralFlag -> DynFlags -> Bool
gopt GeneralFlag
Opt_SpecialiseAggressively DynFlags
dflags -> Bool
True
| UnfoldingSource -> Bool
isStableSource UnfoldingSource
src -> Bool
True
| Bool
otherwise -> Bool
False
data SpecEnv
= SE { SpecEnv -> Subst
se_subst :: CoreSubst.Subst
, SpecEnv -> VarSet
se_interesting :: VarSet
}
specVar :: SpecEnv -> Id -> CoreExpr
specVar :: SpecEnv -> Id -> Expr Id
specVar SpecEnv
env Id
v = SDoc -> Subst -> Id -> Expr Id
CoreSubst.lookupIdSubst (String -> SDoc
text String
"specVar") (SpecEnv -> Subst
se_subst SpecEnv
env) Id
v
specExpr :: SpecEnv -> CoreExpr -> SpecM (CoreExpr, UsageDetails)
specExpr :: SpecEnv -> Expr Id -> SpecM (Expr Id, UsageDetails)
specExpr SpecEnv
env (Type Type
ty) = (Expr Id, UsageDetails) -> SpecM (Expr Id, UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return (Type -> Expr Id
forall b. Type -> Expr b
Type (SpecEnv -> Type -> Type
substTy SpecEnv
env Type
ty), UsageDetails
emptyUDs)
specExpr SpecEnv
env (Coercion Coercion
co) = (Expr Id, UsageDetails) -> SpecM (Expr Id, UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return (Coercion -> Expr Id
forall b. Coercion -> Expr b
Coercion (SpecEnv -> Coercion -> Coercion
substCo SpecEnv
env Coercion
co), UsageDetails
emptyUDs)
specExpr SpecEnv
env (Var Id
v) = (Expr Id, UsageDetails) -> SpecM (Expr Id, UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return (SpecEnv -> Id -> Expr Id
specVar SpecEnv
env Id
v, UsageDetails
emptyUDs)
specExpr SpecEnv
_ (Lit Literal
lit) = (Expr Id, UsageDetails) -> SpecM (Expr Id, UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return (Literal -> Expr Id
forall b. Literal -> Expr b
Lit Literal
lit, UsageDetails
emptyUDs)
specExpr SpecEnv
env (Cast Expr Id
e Coercion
co)
= do { (Expr Id
e', UsageDetails
uds) <- SpecEnv -> Expr Id -> SpecM (Expr Id, UsageDetails)
specExpr SpecEnv
env Expr Id
e
; (Expr Id, UsageDetails) -> SpecM (Expr Id, UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return ((Expr Id -> Coercion -> Expr Id
mkCast Expr Id
e' (SpecEnv -> Coercion -> Coercion
substCo SpecEnv
env Coercion
co)), UsageDetails
uds) }
specExpr SpecEnv
env (Tick Tickish Id
tickish Expr Id
body)
= do { (Expr Id
body', UsageDetails
uds) <- SpecEnv -> Expr Id -> SpecM (Expr Id, UsageDetails)
specExpr SpecEnv
env Expr Id
body
; (Expr Id, UsageDetails) -> SpecM (Expr Id, UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return (Tickish Id -> Expr Id -> Expr Id
forall b. Tickish Id -> Expr b -> Expr b
Tick (SpecEnv -> Tickish Id -> Tickish Id
specTickish SpecEnv
env Tickish Id
tickish) Expr Id
body', UsageDetails
uds) }
specExpr SpecEnv
env expr :: Expr Id
expr@(App {})
= Expr Id -> [Expr Id] -> SpecM (Expr Id, UsageDetails)
go Expr Id
expr []
where
go :: Expr Id -> [Expr Id] -> SpecM (Expr Id, UsageDetails)
go (App Expr Id
fun Expr Id
arg) [Expr Id]
args = do (Expr Id
arg', UsageDetails
uds_arg) <- SpecEnv -> Expr Id -> SpecM (Expr Id, UsageDetails)
specExpr SpecEnv
env Expr Id
arg
(Expr Id
fun', UsageDetails
uds_app) <- Expr Id -> [Expr Id] -> SpecM (Expr Id, UsageDetails)
go Expr Id
fun (Expr Id
arg'Expr Id -> [Expr Id] -> [Expr Id]
forall a. a -> [a] -> [a]
:[Expr Id]
args)
(Expr Id, UsageDetails) -> SpecM (Expr Id, UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return (Expr Id -> Expr Id -> Expr Id
forall b. Expr b -> Expr b -> Expr b
App Expr Id
fun' Expr Id
arg', UsageDetails
uds_arg UsageDetails -> UsageDetails -> UsageDetails
`plusUDs` UsageDetails
uds_app)
go (Var Id
f) [Expr Id]
args = case SpecEnv -> Id -> Expr Id
specVar SpecEnv
env Id
f of
Var Id
f' -> (Expr Id, UsageDetails) -> SpecM (Expr Id, UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return (Id -> Expr Id
forall b. Id -> Expr b
Var Id
f', SpecEnv -> Id -> [Expr Id] -> UsageDetails
mkCallUDs SpecEnv
env Id
f' [Expr Id]
args)
Expr Id
e' -> (Expr Id, UsageDetails) -> SpecM (Expr Id, UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return (Expr Id
e', UsageDetails
emptyUDs)
go Expr Id
other [Expr Id]
_ = SpecEnv -> Expr Id -> SpecM (Expr Id, UsageDetails)
specExpr SpecEnv
env Expr Id
other
specExpr SpecEnv
env e :: Expr Id
e@(Lam Id
_ Expr Id
_) = do
(Expr Id
body', UsageDetails
uds) <- SpecEnv -> Expr Id -> SpecM (Expr Id, UsageDetails)
specExpr SpecEnv
env' Expr Id
body
let (UsageDetails
free_uds, Bag DictBind
dumped_dbs) = [Id] -> UsageDetails -> (UsageDetails, Bag DictBind)
dumpUDs [Id]
bndrs' UsageDetails
uds
(Expr Id, UsageDetails) -> SpecM (Expr Id, UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return ([Id] -> Expr Id -> Expr Id
forall b. [b] -> Expr b -> Expr b
mkLams [Id]
bndrs' (Bag DictBind -> Expr Id -> Expr Id
wrapDictBindsE Bag DictBind
dumped_dbs Expr Id
body'), UsageDetails
free_uds)
where
([Id]
bndrs, Expr Id
body) = Expr Id -> ([Id], Expr Id)
forall b. Expr b -> ([b], Expr b)
collectBinders Expr Id
e
(SpecEnv
env', [Id]
bndrs') = SpecEnv -> [Id] -> (SpecEnv, [Id])
substBndrs SpecEnv
env [Id]
bndrs
specExpr SpecEnv
env (Case Expr Id
scrut Id
case_bndr Type
ty [Alt Id]
alts)
= do { (Expr Id
scrut', UsageDetails
scrut_uds) <- SpecEnv -> Expr Id -> SpecM (Expr Id, UsageDetails)
specExpr SpecEnv
env Expr Id
scrut
; (Expr Id
scrut'', Id
case_bndr', [Alt Id]
alts', UsageDetails
alts_uds)
<- SpecEnv
-> Expr Id
-> Id
-> [Alt Id]
-> SpecM (Expr Id, Id, [Alt Id], UsageDetails)
specCase SpecEnv
env Expr Id
scrut' Id
case_bndr [Alt Id]
alts
; (Expr Id, UsageDetails) -> SpecM (Expr Id, UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return (Expr Id -> Id -> Type -> [Alt Id] -> Expr Id
forall b. Expr b -> b -> Type -> [Alt b] -> Expr b
Case Expr Id
scrut'' Id
case_bndr' (SpecEnv -> Type -> Type
substTy SpecEnv
env Type
ty) [Alt Id]
alts'
, UsageDetails
scrut_uds UsageDetails -> UsageDetails -> UsageDetails
`plusUDs` UsageDetails
alts_uds) }
specExpr SpecEnv
env (Let Bind Id
bind Expr Id
body)
= do {
(SpecEnv
rhs_env, SpecEnv
body_env, Bind Id
bind') <- SpecEnv -> Bind Id -> SpecM (SpecEnv, SpecEnv, Bind Id)
cloneBindSM SpecEnv
env Bind Id
bind
; (Expr Id
body', UsageDetails
body_uds) <- SpecEnv -> Expr Id -> SpecM (Expr Id, UsageDetails)
specExpr SpecEnv
body_env Expr Id
body
; (CoreProgram
binds', UsageDetails
uds) <- SpecEnv
-> Bind Id -> UsageDetails -> SpecM (CoreProgram, UsageDetails)
specBind SpecEnv
rhs_env Bind Id
bind' UsageDetails
body_uds
; (Expr Id, UsageDetails) -> SpecM (Expr Id, UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return ((Bind Id -> Expr Id -> Expr Id)
-> Expr Id -> CoreProgram -> Expr Id
forall (t :: * -> *) a b.
Foldable t =>
(a -> b -> b) -> b -> t a -> b
foldr Bind Id -> Expr Id -> Expr Id
forall b. Bind b -> Expr b -> Expr b
Let Expr Id
body' CoreProgram
binds', UsageDetails
uds) }
specTickish :: SpecEnv -> Tickish Id -> Tickish Id
specTickish :: SpecEnv -> Tickish Id -> Tickish Id
specTickish SpecEnv
env (Breakpoint Int
ix [Id]
ids)
= Int -> [Id] -> Tickish Id
forall id. Int -> [id] -> Tickish id
Breakpoint Int
ix [ Id
id' | Id
id <- [Id]
ids, Var Id
id' <- [SpecEnv -> Id -> Expr Id
specVar SpecEnv
env Id
id]]
specTickish SpecEnv
_ Tickish Id
other_tickish = Tickish Id
other_tickish
specCase :: SpecEnv
-> CoreExpr
-> Id -> [CoreAlt]
-> SpecM ( CoreExpr
, Id
, [CoreAlt]
, UsageDetails)
specCase :: SpecEnv
-> Expr Id
-> Id
-> [Alt Id]
-> SpecM (Expr Id, Id, [Alt Id], UsageDetails)
specCase SpecEnv
env Expr Id
scrut' Id
case_bndr [(AltCon
con, [Id]
args, Expr Id
rhs)]
| Id -> Bool
isDictId Id
case_bndr
, SpecEnv -> Expr Id -> Bool
interestingDict SpecEnv
env Expr Id
scrut'
, Bool -> Bool
not (Id -> Bool
isDeadBinder Id
case_bndr Bool -> Bool -> Bool
&& [Id] -> Bool
forall (t :: * -> *) a. Foldable t => t a -> Bool
null [Id]
sc_args')
= do { (Id
case_bndr_flt : [Id]
sc_args_flt) <- (Id -> SpecM Id) -> [Id] -> SpecM [Id]
forall (t :: * -> *) (m :: * -> *) a b.
(Traversable t, Monad m) =>
(a -> m b) -> t a -> m (t b)
mapM Id -> SpecM Id
forall (m :: * -> *). MonadUnique m => Id -> m Id
clone_me (Id
case_bndr' Id -> [Id] -> [Id]
forall a. a -> [a] -> [a]
: [Id]
sc_args')
; let sc_rhss :: [Expr Id]
sc_rhss = [ Expr Id -> Id -> Type -> [Alt Id] -> Expr Id
forall b. Expr b -> b -> Type -> [Alt b] -> Expr b
Case (Id -> Expr Id
forall b. Id -> Expr b
Var Id
case_bndr_flt) Id
case_bndr' (Id -> Type
idType Id
sc_arg')
[(AltCon
con, [Id]
args', Id -> Expr Id
forall b. Id -> Expr b
Var Id
sc_arg')]
| Id
sc_arg' <- [Id]
sc_args' ]
mb_sc_flts :: [Maybe DictId]
mb_sc_flts :: [Maybe Id]
mb_sc_flts = (Id -> Maybe Id) -> [Id] -> [Maybe Id]
forall a b. (a -> b) -> [a] -> [b]
map (VarEnv Id -> Id -> Maybe Id
forall a. VarEnv a -> Id -> Maybe a
lookupVarEnv VarEnv Id
clone_env) [Id]
args'
clone_env :: VarEnv Id
clone_env = [Id] -> [Id] -> VarEnv Id
forall a. [Id] -> [a] -> VarEnv a
zipVarEnv [Id]
sc_args' [Id]
sc_args_flt
subst_prs :: [(Id, Expr b)]
subst_prs = (Id
case_bndr, Id -> Expr b
forall b. Id -> Expr b
Var Id
case_bndr_flt)
(Id, Expr b) -> [(Id, Expr b)] -> [(Id, Expr b)]
forall a. a -> [a] -> [a]
: [ (Id
arg, Id -> Expr b
forall b. Id -> Expr b
Var Id
sc_flt)
| (Id
arg, Just Id
sc_flt) <- [Id]
args [Id] -> [Maybe Id] -> [(Id, Maybe Id)]
forall a b. [a] -> [b] -> [(a, b)]
`zip` [Maybe Id]
mb_sc_flts ]
env_rhs' :: SpecEnv
env_rhs' = SpecEnv
env_rhs { se_subst :: Subst
se_subst = Subst -> [(Id, Expr Id)] -> Subst
CoreSubst.extendIdSubstList (SpecEnv -> Subst
se_subst SpecEnv
env_rhs) [(Id, Expr Id)]
forall b. [(Id, Expr b)]
subst_prs
, se_interesting :: VarSet
se_interesting = SpecEnv -> VarSet
se_interesting SpecEnv
env_rhs VarSet -> [Id] -> VarSet
`extendVarSetList`
(Id
case_bndr_flt Id -> [Id] -> [Id]
forall a. a -> [a] -> [a]
: [Id]
sc_args_flt) }
; (Expr Id
rhs', UsageDetails
rhs_uds) <- SpecEnv -> Expr Id -> SpecM (Expr Id, UsageDetails)
specExpr SpecEnv
env_rhs' Expr Id
rhs
; let scrut_bind :: DictBind
scrut_bind = Bind Id -> DictBind
mkDB (Id -> Expr Id -> Bind Id
forall b. b -> Expr b -> Bind b
NonRec Id
case_bndr_flt Expr Id
scrut')
case_bndr_set :: VarSet
case_bndr_set = Id -> VarSet
unitVarSet Id
case_bndr_flt
sc_binds :: [DictBind]
sc_binds = [(Id -> Expr Id -> Bind Id
forall b. b -> Expr b -> Bind b
NonRec Id
sc_arg_flt Expr Id
sc_rhs, VarSet
case_bndr_set)
| (Id
sc_arg_flt, Expr Id
sc_rhs) <- [Id]
sc_args_flt [Id] -> [Expr Id] -> [(Id, Expr Id)]
forall a b. [a] -> [b] -> [(a, b)]
`zip` [Expr Id]
sc_rhss ]
flt_binds :: [DictBind]
flt_binds = DictBind
scrut_bind DictBind -> [DictBind] -> [DictBind]
forall a. a -> [a] -> [a]
: [DictBind]
sc_binds
(UsageDetails
free_uds, Bag DictBind
dumped_dbs) = [Id] -> UsageDetails -> (UsageDetails, Bag DictBind)
dumpUDs (Id
case_bndr'Id -> [Id] -> [Id]
forall a. a -> [a] -> [a]
:[Id]
args') UsageDetails
rhs_uds
all_uds :: UsageDetails
all_uds = [DictBind]
flt_binds [DictBind] -> UsageDetails -> UsageDetails
`addDictBinds` UsageDetails
free_uds
alt' :: Alt Id
alt' = (AltCon
con, [Id]
args', Bag DictBind -> Expr Id -> Expr Id
wrapDictBindsE Bag DictBind
dumped_dbs Expr Id
rhs')
; (Expr Id, Id, [Alt Id], UsageDetails)
-> SpecM (Expr Id, Id, [Alt Id], UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return (Id -> Expr Id
forall b. Id -> Expr b
Var Id
case_bndr_flt, Id
case_bndr', [Alt Id
alt'], UsageDetails
all_uds) }
where
(SpecEnv
env_rhs, (Id
case_bndr':[Id]
args')) = SpecEnv -> [Id] -> (SpecEnv, [Id])
substBndrs SpecEnv
env (Id
case_bndrId -> [Id] -> [Id]
forall a. a -> [a] -> [a]
:[Id]
args)
sc_args' :: [Id]
sc_args' = (Id -> Bool) -> [Id] -> [Id]
forall a. (a -> Bool) -> [a] -> [a]
filter Id -> Bool
is_flt_sc_arg [Id]
args'
clone_me :: Id -> m Id
clone_me Id
bndr = do { Unique
uniq <- m Unique
forall (m :: * -> *). MonadUnique m => m Unique
getUniqueM
; Id -> m Id
forall (m :: * -> *) a. Monad m => a -> m a
return (OccName -> Unique -> Type -> SrcSpan -> Id
mkUserLocalOrCoVar OccName
occ Unique
uniq Type
ty SrcSpan
loc) }
where
name :: Name
name = Id -> Name
idName Id
bndr
ty :: Type
ty = Id -> Type
idType Id
bndr
occ :: OccName
occ = Name -> OccName
nameOccName Name
name
loc :: SrcSpan
loc = Name -> SrcSpan
forall a. NamedThing a => a -> SrcSpan
getSrcSpan Name
name
arg_set :: VarSet
arg_set = [Id] -> VarSet
mkVarSet [Id]
args'
is_flt_sc_arg :: Id -> Bool
is_flt_sc_arg Id
var = Id -> Bool
isId Id
var
Bool -> Bool -> Bool
&& Bool -> Bool
not (Id -> Bool
isDeadBinder Id
var)
Bool -> Bool -> Bool
&& Type -> Bool
isDictTy Type
var_ty
Bool -> Bool -> Bool
&& Bool -> Bool
not (Type -> VarSet
tyCoVarsOfType Type
var_ty VarSet -> VarSet -> Bool
`intersectsVarSet` VarSet
arg_set)
where
var_ty :: Type
var_ty = Id -> Type
idType Id
var
specCase SpecEnv
env Expr Id
scrut Id
case_bndr [Alt Id]
alts
= do { ([Alt Id]
alts', UsageDetails
uds_alts) <- (Alt Id -> SpecM (Alt Id, UsageDetails))
-> [Alt Id] -> SpecM ([Alt Id], UsageDetails)
forall a b.
(a -> SpecM (b, UsageDetails)) -> [a] -> SpecM ([b], UsageDetails)
mapAndCombineSM Alt Id -> SpecM (Alt Id, UsageDetails)
forall a.
(a, [Id], Expr Id) -> SpecM ((a, [Id], Expr Id), UsageDetails)
spec_alt [Alt Id]
alts
; (Expr Id, Id, [Alt Id], UsageDetails)
-> SpecM (Expr Id, Id, [Alt Id], UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return (Expr Id
scrut, Id
case_bndr', [Alt Id]
alts', UsageDetails
uds_alts) }
where
(SpecEnv
env_alt, Id
case_bndr') = SpecEnv -> Id -> (SpecEnv, Id)
substBndr SpecEnv
env Id
case_bndr
spec_alt :: (a, [Id], Expr Id) -> SpecM ((a, [Id], Expr Id), UsageDetails)
spec_alt (a
con, [Id]
args, Expr Id
rhs) = do
(Expr Id
rhs', UsageDetails
uds) <- SpecEnv -> Expr Id -> SpecM (Expr Id, UsageDetails)
specExpr SpecEnv
env_rhs Expr Id
rhs
let (UsageDetails
free_uds, Bag DictBind
dumped_dbs) = [Id] -> UsageDetails -> (UsageDetails, Bag DictBind)
dumpUDs (Id
case_bndr' Id -> [Id] -> [Id]
forall a. a -> [a] -> [a]
: [Id]
args') UsageDetails
uds
((a, [Id], Expr Id), UsageDetails)
-> SpecM ((a, [Id], Expr Id), UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return ((a
con, [Id]
args', Bag DictBind -> Expr Id -> Expr Id
wrapDictBindsE Bag DictBind
dumped_dbs Expr Id
rhs'), UsageDetails
free_uds)
where
(SpecEnv
env_rhs, [Id]
args') = SpecEnv -> [Id] -> (SpecEnv, [Id])
substBndrs SpecEnv
env_alt [Id]
args
specBind :: SpecEnv
-> CoreBind
-> UsageDetails
-> SpecM ([CoreBind],
UsageDetails)
specBind :: SpecEnv
-> Bind Id -> UsageDetails -> SpecM (CoreProgram, UsageDetails)
specBind SpecEnv
rhs_env (NonRec Id
fn Expr Id
rhs) UsageDetails
body_uds
= do { (Expr Id
rhs', UsageDetails
rhs_uds) <- SpecEnv -> Expr Id -> SpecM (Expr Id, UsageDetails)
specExpr SpecEnv
rhs_env Expr Id
rhs
; (Id
fn', [(Id, Expr Id)]
spec_defns, UsageDetails
body_uds1) <- SpecEnv
-> UsageDetails
-> Id
-> Expr Id
-> SpecM (Id, [(Id, Expr Id)], UsageDetails)
specDefn SpecEnv
rhs_env UsageDetails
body_uds Id
fn Expr Id
rhs
; let pairs :: [(Id, Expr Id)]
pairs = [(Id, Expr Id)]
spec_defns [(Id, Expr Id)] -> [(Id, Expr Id)] -> [(Id, Expr Id)]
forall a. [a] -> [a] -> [a]
++ [(Id
fn', Expr Id
rhs')]
combined_uds :: UsageDetails
combined_uds = UsageDetails
body_uds1 UsageDetails -> UsageDetails -> UsageDetails
`plusUDs` UsageDetails
rhs_uds
(UsageDetails
free_uds, Bag DictBind
dump_dbs, Bool
float_all) = [Id] -> UsageDetails -> (UsageDetails, Bag DictBind, Bool)
dumpBindUDs [Id
fn] UsageDetails
combined_uds
final_binds :: [DictBind]
final_binds :: [DictBind]
final_binds
| Bool -> Bool
not (Bag DictBind -> Bool
forall a. Bag a -> Bool
isEmptyBag Bag DictBind
dump_dbs)
, Bool -> Bool
not ([(Id, Expr Id)] -> Bool
forall (t :: * -> *) a. Foldable t => t a -> Bool
null [(Id, Expr Id)]
spec_defns)
= [[(Id, Expr Id)] -> Bag DictBind -> DictBind
recWithDumpedDicts [(Id, Expr Id)]
pairs Bag DictBind
dump_dbs]
| Bool
otherwise
= [Bind Id -> DictBind
mkDB (Bind Id -> DictBind) -> Bind Id -> DictBind
forall a b. (a -> b) -> a -> b
$ Id -> Expr Id -> Bind Id
forall b. b -> Expr b -> Bind b
NonRec Id
b Expr Id
r | (Id
b,Expr Id
r) <- [(Id, Expr Id)]
pairs]
[DictBind] -> [DictBind] -> [DictBind]
forall a. [a] -> [a] -> [a]
++ Bag DictBind -> [DictBind]
forall a. Bag a -> [a]
bagToList Bag DictBind
dump_dbs
; if Bool
float_all then
(CoreProgram, UsageDetails) -> SpecM (CoreProgram, UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return ([], UsageDetails
free_uds UsageDetails -> [DictBind] -> UsageDetails
`snocDictBinds` [DictBind]
final_binds)
else
(CoreProgram, UsageDetails) -> SpecM (CoreProgram, UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return ((DictBind -> Bind Id) -> [DictBind] -> CoreProgram
forall a b. (a -> b) -> [a] -> [b]
map DictBind -> Bind Id
forall a b. (a, b) -> a
fst [DictBind]
final_binds, UsageDetails
free_uds) }
specBind SpecEnv
rhs_env (Rec [(Id, Expr Id)]
pairs) UsageDetails
body_uds
= do { let ([Id]
bndrs,[Expr Id]
rhss) = [(Id, Expr Id)] -> ([Id], [Expr Id])
forall a b. [(a, b)] -> ([a], [b])
unzip [(Id, Expr Id)]
pairs
; ([Expr Id]
rhss', UsageDetails
rhs_uds) <- (Expr Id -> SpecM (Expr Id, UsageDetails))
-> [Expr Id] -> SpecM ([Expr Id], UsageDetails)
forall a b.
(a -> SpecM (b, UsageDetails)) -> [a] -> SpecM ([b], UsageDetails)
mapAndCombineSM (SpecEnv -> Expr Id -> SpecM (Expr Id, UsageDetails)
specExpr SpecEnv
rhs_env) [Expr Id]
rhss
; let scope_uds :: UsageDetails
scope_uds = UsageDetails
body_uds UsageDetails -> UsageDetails -> UsageDetails
`plusUDs` UsageDetails
rhs_uds
; ([Id]
bndrs1, [(Id, Expr Id)]
spec_defns1, UsageDetails
uds1) <- SpecEnv
-> UsageDetails
-> [(Id, Expr Id)]
-> SpecM ([Id], [(Id, Expr Id)], UsageDetails)
specDefns SpecEnv
rhs_env UsageDetails
scope_uds [(Id, Expr Id)]
pairs
; ([Id]
bndrs3, [(Id, Expr Id)]
spec_defns3, UsageDetails
uds3)
<- if [(Id, Expr Id)] -> Bool
forall (t :: * -> *) a. Foldable t => t a -> Bool
null [(Id, Expr Id)]
spec_defns1
then ([Id], [(Id, Expr Id)], UsageDetails)
-> SpecM ([Id], [(Id, Expr Id)], UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return ([Id]
bndrs1, [], UsageDetails
uds1)
else do {
([Id]
bndrs2, [(Id, Expr Id)]
spec_defns2, UsageDetails
uds2)
<- SpecEnv
-> UsageDetails
-> [(Id, Expr Id)]
-> SpecM ([Id], [(Id, Expr Id)], UsageDetails)
specDefns SpecEnv
rhs_env UsageDetails
uds1 ([Id]
bndrs1 [Id] -> [Expr Id] -> [(Id, Expr Id)]
forall a b. [a] -> [b] -> [(a, b)]
`zip` [Expr Id]
rhss)
; ([Id], [(Id, Expr Id)], UsageDetails)
-> SpecM ([Id], [(Id, Expr Id)], UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return ([Id]
bndrs2, [(Id, Expr Id)]
spec_defns2 [(Id, Expr Id)] -> [(Id, Expr Id)] -> [(Id, Expr Id)]
forall a. [a] -> [a] -> [a]
++ [(Id, Expr Id)]
spec_defns1, UsageDetails
uds2) }
; let (UsageDetails
final_uds, Bag DictBind
dumped_dbs, Bool
float_all) = [Id] -> UsageDetails -> (UsageDetails, Bag DictBind, Bool)
dumpBindUDs [Id]
bndrs UsageDetails
uds3
final_bind :: DictBind
final_bind = [(Id, Expr Id)] -> Bag DictBind -> DictBind
recWithDumpedDicts ([(Id, Expr Id)]
spec_defns3 [(Id, Expr Id)] -> [(Id, Expr Id)] -> [(Id, Expr Id)]
forall a. [a] -> [a] -> [a]
++ [Id] -> [Expr Id] -> [(Id, Expr Id)]
forall a b. [a] -> [b] -> [(a, b)]
zip [Id]
bndrs3 [Expr Id]
rhss')
Bag DictBind
dumped_dbs
; if Bool
float_all then
(CoreProgram, UsageDetails) -> SpecM (CoreProgram, UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return ([], UsageDetails
final_uds UsageDetails -> DictBind -> UsageDetails
`snocDictBind` DictBind
final_bind)
else
(CoreProgram, UsageDetails) -> SpecM (CoreProgram, UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return ([DictBind -> Bind Id
forall a b. (a, b) -> a
fst DictBind
final_bind], UsageDetails
final_uds) }
specDefns :: SpecEnv
-> UsageDetails
-> [(OutId,InExpr)]
-> SpecM ([OutId],
[(OutId,OutExpr)],
UsageDetails)
specDefns :: SpecEnv
-> UsageDetails
-> [(Id, Expr Id)]
-> SpecM ([Id], [(Id, Expr Id)], UsageDetails)
specDefns SpecEnv
_env UsageDetails
uds []
= ([Id], [(Id, Expr Id)], UsageDetails)
-> SpecM ([Id], [(Id, Expr Id)], UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return ([], [], UsageDetails
uds)
specDefns SpecEnv
env UsageDetails
uds ((Id
bndr,Expr Id
rhs):[(Id, Expr Id)]
pairs)
= do { ([Id]
bndrs1, [(Id, Expr Id)]
spec_defns1, UsageDetails
uds1) <- SpecEnv
-> UsageDetails
-> [(Id, Expr Id)]
-> SpecM ([Id], [(Id, Expr Id)], UsageDetails)
specDefns SpecEnv
env UsageDetails
uds [(Id, Expr Id)]
pairs
; (Id
bndr1, [(Id, Expr Id)]
spec_defns2, UsageDetails
uds2) <- SpecEnv
-> UsageDetails
-> Id
-> Expr Id
-> SpecM (Id, [(Id, Expr Id)], UsageDetails)
specDefn SpecEnv
env UsageDetails
uds1 Id
bndr Expr Id
rhs
; ([Id], [(Id, Expr Id)], UsageDetails)
-> SpecM ([Id], [(Id, Expr Id)], UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return (Id
bndr1 Id -> [Id] -> [Id]
forall a. a -> [a] -> [a]
: [Id]
bndrs1, [(Id, Expr Id)]
spec_defns1 [(Id, Expr Id)] -> [(Id, Expr Id)] -> [(Id, Expr Id)]
forall a. [a] -> [a] -> [a]
++ [(Id, Expr Id)]
spec_defns2, UsageDetails
uds2) }
specDefn :: SpecEnv
-> UsageDetails
-> OutId -> InExpr
-> SpecM (Id,
[(Id,CoreExpr)],
UsageDetails)
specDefn :: SpecEnv
-> UsageDetails
-> Id
-> Expr Id
-> SpecM (Id, [(Id, Expr Id)], UsageDetails)
specDefn SpecEnv
env UsageDetails
body_uds Id
fn Expr Id
rhs
= do { let (UsageDetails
body_uds_without_me, [CallInfo]
calls_for_me) = Id -> UsageDetails -> (UsageDetails, [CallInfo])
callsForMe Id
fn UsageDetails
body_uds
rules_for_me :: [CoreRule]
rules_for_me = Id -> [CoreRule]
idCoreRules Id
fn
; ([CoreRule]
rules, [(Id, Expr Id)]
spec_defns, UsageDetails
spec_uds) <- Maybe Module
-> SpecEnv
-> [CoreRule]
-> [CallInfo]
-> Id
-> Expr Id
-> SpecM ([CoreRule], [(Id, Expr Id)], UsageDetails)
specCalls Maybe Module
forall a. Maybe a
Nothing SpecEnv
env [CoreRule]
rules_for_me
[CallInfo]
calls_for_me Id
fn Expr Id
rhs
; (Id, [(Id, Expr Id)], UsageDetails)
-> SpecM (Id, [(Id, Expr Id)], UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return ( Id
fn Id -> [CoreRule] -> Id
`addIdSpecialisations` [CoreRule]
rules
, [(Id, Expr Id)]
spec_defns
, UsageDetails
body_uds_without_me UsageDetails -> UsageDetails -> UsageDetails
`plusUDs` UsageDetails
spec_uds) }
specCalls :: Maybe Module
-> SpecEnv
-> [CoreRule]
-> [CallInfo]
-> OutId -> InExpr
-> SpecM SpecInfo
type SpecInfo = ( [CoreRule]
, [(Id,CoreExpr)]
, UsageDetails )
specCalls :: Maybe Module
-> SpecEnv
-> [CoreRule]
-> [CallInfo]
-> Id
-> Expr Id
-> SpecM ([CoreRule], [(Id, Expr Id)], UsageDetails)
specCalls Maybe Module
mb_mod SpecEnv
env [CoreRule]
existing_rules [CallInfo]
calls_for_me Id
fn Expr Id
rhs
| [TyCoBinder] -> Int
callSpecArity [TyCoBinder]
pis Int -> Int -> Bool
forall a. Ord a => a -> a -> Bool
<= Int
fn_arity
Bool -> Bool -> Bool
&& [CallInfo] -> Bool
forall a. [a] -> Bool
notNull [CallInfo]
calls_for_me
Bool -> Bool -> Bool
&& Bool -> Bool
not (Activation -> Bool
isNeverActive (Id -> Activation
idInlineActivation Id
fn))
=
(([CoreRule], [(Id, Expr Id)], UsageDetails)
-> CallInfo -> SpecM ([CoreRule], [(Id, Expr Id)], UsageDetails))
-> ([CoreRule], [(Id, Expr Id)], UsageDetails)
-> [CallInfo]
-> SpecM ([CoreRule], [(Id, Expr Id)], UsageDetails)
forall (t :: * -> *) (m :: * -> *) b a.
(Foldable t, Monad m) =>
(b -> a -> m b) -> b -> t a -> m b
foldlM ([CoreRule], [(Id, Expr Id)], UsageDetails)
-> CallInfo -> SpecM ([CoreRule], [(Id, Expr Id)], UsageDetails)
spec_call ([], [], UsageDetails
emptyUDs) [CallInfo]
calls_for_me
| Bool
otherwise
= WARN( not (exprIsTrivial rhs) && notNull calls_for_me,
text "Missed specialisation opportunity for"
<+> ppr fn $$ _trace_doc )
([CoreRule], [(Id, Expr Id)], UsageDetails)
-> SpecM ([CoreRule], [(Id, Expr Id)], UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return ([], [], UsageDetails
emptyUDs)
where
_trace_doc :: SDoc
_trace_doc = [SDoc] -> SDoc
sep [ [Id] -> SDoc
forall a. Outputable a => a -> SDoc
ppr [Id]
rhs_tyvars, [Id] -> SDoc
forall a. Outputable a => a -> SDoc
ppr [Id]
rhs_bndrs
, Activation -> SDoc
forall a. Outputable a => a -> SDoc
ppr (Id -> Activation
idInlineActivation Id
fn) ]
fn_type :: Type
fn_type = Id -> Type
idType Id
fn
fn_arity :: Int
fn_arity = Id -> Int
idArity Id
fn
fn_unf :: Unfolding
fn_unf = Id -> Unfolding
realIdUnfolding Id
fn
pis :: [TyCoBinder]
pis = ([TyCoBinder], Type) -> [TyCoBinder]
forall a b. (a, b) -> a
fst (([TyCoBinder], Type) -> [TyCoBinder])
-> ([TyCoBinder], Type) -> [TyCoBinder]
forall a b. (a -> b) -> a -> b
$ Type -> ([TyCoBinder], Type)
splitPiTys Type
fn_type
theta :: [Type]
theta = [TyCoBinder] -> [Type]
getTheta [TyCoBinder]
pis
n_dicts :: Int
n_dicts = [Type] -> Int
forall (t :: * -> *) a. Foldable t => t a -> Int
length [Type]
theta
inl_prag :: InlinePragma
inl_prag = Id -> InlinePragma
idInlinePragma Id
fn
inl_act :: Activation
inl_act = InlinePragma -> Activation
inlinePragmaActivation InlinePragma
inl_prag
is_local :: Bool
is_local = Id -> Bool
isLocalId Id
fn
([Id]
rhs_bndrs, Expr Id
rhs_body) = Expr Id -> ([Id], Expr Id)
collectBindersPushingCo Expr Id
rhs
rhs_tyvars :: [Id]
rhs_tyvars = (Id -> Bool) -> [Id] -> [Id]
forall a. (a -> Bool) -> [a] -> [a]
filter Id -> Bool
isTyVar [Id]
rhs_bndrs
in_scope :: InScopeSet
in_scope = Subst -> InScopeSet
CoreSubst.substInScope (SpecEnv -> Subst
se_subst SpecEnv
env)
already_covered :: DynFlags -> [CoreRule] -> [CoreExpr] -> Bool
already_covered :: DynFlags -> [CoreRule] -> [Expr Id] -> Bool
already_covered DynFlags
dflags [CoreRule]
new_rules [Expr Id]
args
= Maybe (CoreRule, Expr Id) -> Bool
forall a. Maybe a -> Bool
isJust (DynFlags
-> InScopeEnv
-> (Activation -> Bool)
-> Id
-> [Expr Id]
-> [CoreRule]
-> Maybe (CoreRule, Expr Id)
lookupRule DynFlags
dflags (InScopeSet
in_scope, Id -> Unfolding
realIdUnfolding)
(Bool -> Activation -> Bool
forall a b. a -> b -> a
const Bool
True) Id
fn [Expr Id]
args
([CoreRule]
new_rules [CoreRule] -> [CoreRule] -> [CoreRule]
forall a. [a] -> [a] -> [a]
++ [CoreRule]
existing_rules))
spec_call :: SpecInfo
-> CallInfo
-> SpecM SpecInfo
spec_call :: ([CoreRule], [(Id, Expr Id)], UsageDetails)
-> CallInfo -> SpecM ([CoreRule], [(Id, Expr Id)], UsageDetails)
spec_call spec_acc :: ([CoreRule], [(Id, Expr Id)], UsageDetails)
spec_acc@([CoreRule]
rules_acc, [(Id, Expr Id)]
pairs_acc, UsageDetails
uds_acc)
(CI { ci_key :: CallInfo -> [SpecArg]
ci_key = [SpecArg]
call_args, ci_arity :: CallInfo -> Int
ci_arity = Int
call_arity })
= ASSERT(call_arity <= fn_arity)
do { (SpecEnv
rhs_env2, [Id]
unused_bndrs, [Id]
rule_bndrs, [Expr Id]
rule_args, [Id]
unspec_bndrs, [DictBind]
dx_binds, [Expr Id]
spec_args)
<- SpecEnv
-> [Id]
-> [SpecArg]
-> SpecM
(SpecEnv, [Id], [Id], [Expr Id], [Id], [DictBind], [Expr Id])
specHeader SpecEnv
env [Id]
rhs_bndrs ([SpecArg]
-> SpecM
(SpecEnv, [Id], [Id], [Expr Id], [Id], [DictBind], [Expr Id]))
-> [SpecArg]
-> SpecM
(SpecEnv, [Id], [Id], [Expr Id], [Id], [DictBind], [Expr Id])
forall a b. (a -> b) -> a -> b
$ (SpecArg -> Bool) -> [SpecArg] -> [SpecArg]
forall a. (a -> Bool) -> [a] -> [a]
dropWhileEndLE SpecArg -> Bool
isUnspecArg [SpecArg]
call_args
; let rhs_body' :: Expr Id
rhs_body' = [Id] -> Expr Id -> Expr Id
forall b. [b] -> Expr b -> Expr b
mkLams [Id]
unused_bndrs Expr Id
rhs_body
; DynFlags
dflags <- SpecM DynFlags
forall (m :: * -> *). HasDynFlags m => m DynFlags
getDynFlags
; if DynFlags -> [CoreRule] -> [Expr Id] -> Bool
already_covered DynFlags
dflags [CoreRule]
rules_acc [Expr Id]
rule_args
then ([CoreRule], [(Id, Expr Id)], UsageDetails)
-> SpecM ([CoreRule], [(Id, Expr Id)], UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return ([CoreRule], [(Id, Expr Id)], UsageDetails)
spec_acc
else
do
{
let body :: Expr Id
body = [Id] -> Expr Id -> Expr Id
forall b. [b] -> Expr b -> Expr b
mkLams [Id]
unspec_bndrs Expr Id
rhs_body'
body_ty :: Type
body_ty = SpecEnv -> Type -> Type
substTy SpecEnv
rhs_env2 (Type -> Type) -> Type -> Type
forall a b. (a -> b) -> a -> b
$ Expr Id -> Type
exprType Expr Id
body
([Id]
lam_extra_args, [Id]
app_args)
| HasDebugCallStack => Type -> Bool
Type -> Bool
isUnliftedType Type
body_ty
, Bool -> Bool
not (Id -> Bool
isJoinId Id
fn)
= ([Id
voidArgId], Id
voidPrimId Id -> [Id] -> [Id]
forall a. a -> [a] -> [a]
: [Id]
unspec_bndrs)
| Bool
otherwise = ([], [Id]
unspec_bndrs)
join_arity_change :: Int
join_arity_change = [Id] -> Int
forall (t :: * -> *) a. Foldable t => t a -> Int
length [Id]
app_args Int -> Int -> Int
forall a. Num a => a -> a -> a
- [Expr Id] -> Int
forall (t :: * -> *) a. Foldable t => t a -> Int
length [Expr Id]
rule_args
spec_join_arity :: Maybe Int
spec_join_arity | Just Int
orig_join_arity <- Id -> Maybe Int
isJoinId_maybe Id
fn
= Int -> Maybe Int
forall a. a -> Maybe a
Just (Int
orig_join_arity Int -> Int -> Int
forall a. Num a => a -> a -> a
+ Int
join_arity_change)
| Bool
otherwise
= Maybe Int
forall a. Maybe a
Nothing
; (Expr Id
spec_rhs, UsageDetails
rhs_uds) <- SpecEnv -> Expr Id -> SpecM (Expr Id, UsageDetails)
specExpr SpecEnv
rhs_env2 ([Id] -> Expr Id -> Expr Id
forall b. [b] -> Expr b -> Expr b
mkLams [Id]
lam_extra_args Expr Id
body)
; let spec_id_ty :: Type
spec_id_ty = Expr Id -> Type
exprType Expr Id
spec_rhs
; Id
spec_f <- Id -> Type -> Maybe Int -> SpecM Id
newSpecIdSM Id
fn Type
spec_id_ty Maybe Int
spec_join_arity
; Module
this_mod <- SpecM Module
forall (m :: * -> *). HasModule m => m Module
getModule
; let
herald :: SDoc
herald = case Maybe Module
mb_mod of
Maybe Module
Nothing
-> String -> SDoc
text String
"SPEC"
Just Module
this_mod
-> String -> SDoc
text String
"SPEC/" SDoc -> SDoc -> SDoc
<> Module -> SDoc
forall a. Outputable a => a -> SDoc
ppr Module
this_mod
rule_name :: FastString
rule_name = String -> FastString
mkFastString (String -> FastString) -> String -> FastString
forall a b. (a -> b) -> a -> b
$ DynFlags -> SDoc -> String
showSDoc DynFlags
dflags (SDoc -> String) -> SDoc -> String
forall a b. (a -> b) -> a -> b
$
SDoc
herald SDoc -> SDoc -> SDoc
<+> FastString -> SDoc
ftext (OccName -> FastString
occNameFS (Id -> OccName
forall a. NamedThing a => a -> OccName
getOccName Id
fn))
SDoc -> SDoc -> SDoc
<+> [SDoc] -> SDoc
hsep ((SpecArg -> Maybe SDoc) -> [SpecArg] -> [SDoc]
forall a b. (a -> Maybe b) -> [a] -> [b]
mapMaybe SpecArg -> Maybe SDoc
ppr_call_key_ty [SpecArg]
call_args)
rule_wout_eta :: CoreRule
rule_wout_eta = Module
-> Bool
-> Bool
-> FastString
-> Activation
-> Name
-> [Id]
-> [Expr Id]
-> Expr Id
-> CoreRule
mkRule
Module
this_mod
Bool
True
Bool
is_local
FastString
rule_name
Activation
inl_act
(Id -> Name
idName Id
fn)
[Id]
rule_bndrs
[Expr Id]
rule_args
(Expr Id -> [Id] -> Expr Id
forall b. Expr b -> [Id] -> Expr b
mkVarApps (Id -> Expr Id
forall b. Id -> Expr b
Var Id
spec_f) [Id]
app_args)
spec_rule :: CoreRule
spec_rule
= case Id -> Maybe Int
isJoinId_maybe Id
fn of
Just Int
join_arity -> Int -> CoreRule -> CoreRule
etaExpandToJoinPointRule Int
join_arity
CoreRule
rule_wout_eta
Maybe Int
Nothing -> CoreRule
rule_wout_eta
spec_uds :: UsageDetails
spec_uds = (DictBind -> UsageDetails -> UsageDetails)
-> UsageDetails -> [DictBind] -> UsageDetails
forall (t :: * -> *) a b.
Foldable t =>
(a -> b -> b) -> b -> t a -> b
foldr DictBind -> UsageDetails -> UsageDetails
consDictBind UsageDetails
rhs_uds [DictBind]
dx_binds
(InlinePragma
spec_inl_prag, Unfolding
spec_unf)
| Bool -> Bool
not Bool
is_local Bool -> Bool -> Bool
&& OccInfo -> Bool
isStrongLoopBreaker (Id -> OccInfo
idOccInfo Id
fn)
= (InlinePragma
neverInlinePragma, Unfolding
noUnfolding)
| InlinePragma { inl_inline :: InlinePragma -> InlineSpec
inl_inline = InlineSpec
Inlinable } <- InlinePragma
inl_prag
= (InlinePragma
inl_prag { inl_inline :: InlineSpec
inl_inline = InlineSpec
NoUserInline }, Unfolding
noUnfolding)
| Bool
otherwise
= (InlinePragma
inl_prag, DynFlags
-> [Id] -> (Expr Id -> Expr Id) -> Int -> Unfolding -> Unfolding
specUnfolding DynFlags
dflags [Id]
unspec_bndrs Expr Id -> Expr Id
spec_app Int
n_dicts Unfolding
fn_unf)
spec_app :: Expr Id -> Expr Id
spec_app Expr Id
e = Expr Id
e Expr Id -> [Expr Id] -> Expr Id
forall b. Expr b -> [Expr b] -> Expr b
`mkApps` [Expr Id]
spec_args
spec_f_w_arity :: Id
spec_f_w_arity = Id
spec_f Id -> Int -> Id
`setIdArity` Int -> Int -> Int
forall a. Ord a => a -> a -> a
max Int
0 (Int
fn_arity Int -> Int -> Int
forall a. Num a => a -> a -> a
- Int
n_dicts)
Id -> InlinePragma -> Id
`setInlinePragma` InlinePragma
spec_inl_prag
Id -> Unfolding -> Id
`setIdUnfolding` Unfolding
spec_unf
Id -> Maybe Int -> Id
`asJoinId_maybe` Maybe Int
spec_join_arity
_rule_trace_doc :: SDoc
_rule_trace_doc = [SDoc] -> SDoc
vcat [ Id -> SDoc
forall a. Outputable a => a -> SDoc
ppr Id
spec_f, Type -> SDoc
forall a. Outputable a => a -> SDoc
ppr Type
fn_type, Type -> SDoc
forall a. Outputable a => a -> SDoc
ppr Type
spec_id_ty
, [Id] -> SDoc
forall a. Outputable a => a -> SDoc
ppr [Id]
rhs_bndrs, [SpecArg] -> SDoc
forall a. Outputable a => a -> SDoc
ppr [SpecArg]
call_args
, CoreRule -> SDoc
forall a. Outputable a => a -> SDoc
ppr CoreRule
spec_rule
]
;
([CoreRule], [(Id, Expr Id)], UsageDetails)
-> SpecM ([CoreRule], [(Id, Expr Id)], UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return ( CoreRule
spec_rule CoreRule -> [CoreRule] -> [CoreRule]
forall a. a -> [a] -> [a]
: [CoreRule]
rules_acc
, (Id
spec_f_w_arity, Expr Id
spec_rhs) (Id, Expr Id) -> [(Id, Expr Id)] -> [(Id, Expr Id)]
forall a. a -> [a] -> [a]
: [(Id, Expr Id)]
pairs_acc
, UsageDetails
spec_uds UsageDetails -> UsageDetails -> UsageDetails
`plusUDs` UsageDetails
uds_acc
) } }
bindAuxiliaryDicts
:: SpecEnv
-> [DictId] -> [CoreExpr]
-> [DictId]
-> (SpecEnv,
[DictBind],
[CoreExpr])
bindAuxiliaryDicts :: SpecEnv
-> [Id] -> [Expr Id] -> [Id] -> (SpecEnv, [DictBind], [Expr Id])
bindAuxiliaryDicts env :: SpecEnv
env@(SE { se_subst :: SpecEnv -> Subst
se_subst = Subst
subst, se_interesting :: SpecEnv -> VarSet
se_interesting = VarSet
interesting })
[Id]
orig_dict_ids [Expr Id]
call_ds [Id]
inst_dict_ids
= (SpecEnv
env', [DictBind]
dx_binds, [Expr Id]
spec_dict_args)
where
([DictBind]
dx_binds, [Expr Id]
spec_dict_args) = [Expr Id] -> [Id] -> ([DictBind], [Expr Id])
go [Expr Id]
call_ds [Id]
inst_dict_ids
env' :: SpecEnv
env' = SpecEnv
env { se_subst :: Subst
se_subst = Subst
subst Subst -> [(Id, Expr Id)] -> Subst
`CoreSubst.extendSubstList`
([Id]
orig_dict_ids [Id] -> [Expr Id] -> [(Id, Expr Id)]
forall a b. [a] -> [b] -> [(a, b)]
`zip` [Expr Id]
spec_dict_args)
Subst -> [Id] -> Subst
`CoreSubst.extendInScopeList` [Id]
dx_ids
, se_interesting :: VarSet
se_interesting = VarSet
interesting VarSet -> VarSet -> VarSet
`unionVarSet` VarSet
interesting_dicts }
dx_ids :: [Id]
dx_ids = [Id
dx_id | (NonRec Id
dx_id Expr Id
_, VarSet
_) <- [DictBind]
dx_binds]
interesting_dicts :: VarSet
interesting_dicts = [Id] -> VarSet
mkVarSet [ Id
dx_id | (NonRec Id
dx_id Expr Id
dx, VarSet
_) <- [DictBind]
dx_binds
, SpecEnv -> Expr Id -> Bool
interestingDict SpecEnv
env Expr Id
dx ]
go :: [CoreExpr] -> [CoreBndr] -> ([DictBind], [CoreExpr])
go :: [Expr Id] -> [Id] -> ([DictBind], [Expr Id])
go [] [Id]
_ = ([], [])
go (Expr Id
dx:[Expr Id]
dxs) (Id
dx_id:[Id]
dx_ids)
| Expr Id -> Bool
exprIsTrivial Expr Id
dx = ([DictBind]
dx_binds, Expr Id
dx Expr Id -> [Expr Id] -> [Expr Id]
forall a. a -> [a] -> [a]
: [Expr Id]
args)
| Bool
otherwise = (Bind Id -> DictBind
mkDB (Id -> Expr Id -> Bind Id
forall b. b -> Expr b -> Bind b
NonRec Id
dx_id Expr Id
dx) DictBind -> [DictBind] -> [DictBind]
forall a. a -> [a] -> [a]
: [DictBind]
dx_binds, Id -> Expr Id
forall b. Id -> Expr b
Var Id
dx_id Expr Id -> [Expr Id] -> [Expr Id]
forall a. a -> [a] -> [a]
: [Expr Id]
args)
where
([DictBind]
dx_binds, [Expr Id]
args) = [Expr Id] -> [Id] -> ([DictBind], [Expr Id])
go [Expr Id]
dxs [Id]
dx_ids
go [Expr Id]
_ [Id]
_ = String -> SDoc -> ([DictBind], [Expr Id])
forall a. HasCallStack => String -> SDoc -> a
pprPanic String
"bindAuxiliaryDicts" ([Id] -> SDoc
forall a. Outputable a => a -> SDoc
ppr [Id]
orig_dict_ids SDoc -> SDoc -> SDoc
$$ [Expr Id] -> SDoc
forall a. Outputable a => a -> SDoc
ppr [Expr Id]
call_ds SDoc -> SDoc -> SDoc
$$ [Id] -> SDoc
forall a. Outputable a => a -> SDoc
ppr [Id]
inst_dict_ids)
data UsageDetails
= MkUD {
UsageDetails -> Bag DictBind
ud_binds :: !(Bag DictBind),
UsageDetails -> CallDetails
ud_calls :: !CallDetails
}
type DictBind = (CoreBind, VarSet)
instance Outputable UsageDetails where
ppr :: UsageDetails -> SDoc
ppr (MkUD { ud_binds :: UsageDetails -> Bag DictBind
ud_binds = Bag DictBind
dbs, ud_calls :: UsageDetails -> CallDetails
ud_calls = CallDetails
calls })
= String -> SDoc
text String
"MkUD" SDoc -> SDoc -> SDoc
<+> SDoc -> SDoc
braces ([SDoc] -> SDoc
sep (SDoc -> [SDoc] -> [SDoc]
punctuate SDoc
comma
[String -> SDoc
text String
"binds" SDoc -> SDoc -> SDoc
<+> SDoc
equals SDoc -> SDoc -> SDoc
<+> Bag DictBind -> SDoc
forall a. Outputable a => a -> SDoc
ppr Bag DictBind
dbs,
String -> SDoc
text String
"calls" SDoc -> SDoc -> SDoc
<+> SDoc
equals SDoc -> SDoc -> SDoc
<+> CallDetails -> SDoc
forall a. Outputable a => a -> SDoc
ppr CallDetails
calls]))
emptyUDs :: UsageDetails
emptyUDs :: UsageDetails
emptyUDs = MkUD :: Bag DictBind -> CallDetails -> UsageDetails
MkUD { ud_binds :: Bag DictBind
ud_binds = Bag DictBind
forall a. Bag a
emptyBag, ud_calls :: CallDetails
ud_calls = CallDetails
forall a. DVarEnv a
emptyDVarEnv }
type CallDetails = DIdEnv CallInfoSet
data CallInfoSet = CIS Id (Bag CallInfo)
data CallInfo
= CI { CallInfo -> [SpecArg]
ci_key :: [SpecArg]
, CallInfo -> Int
ci_arity :: Int
, CallInfo -> VarSet
ci_fvs :: VarSet
}
type DictExpr = CoreExpr
ciSetFilter :: (CallInfo -> Bool) -> CallInfoSet -> CallInfoSet
ciSetFilter :: (CallInfo -> Bool) -> CallInfoSet -> CallInfoSet
ciSetFilter CallInfo -> Bool
p (CIS Id
id Bag CallInfo
a) = Id -> Bag CallInfo -> CallInfoSet
CIS Id
id ((CallInfo -> Bool) -> Bag CallInfo -> Bag CallInfo
forall a. (a -> Bool) -> Bag a -> Bag a
filterBag CallInfo -> Bool
p Bag CallInfo
a)
instance Outputable CallInfoSet where
ppr :: CallInfoSet -> SDoc
ppr (CIS Id
fn Bag CallInfo
map) = SDoc -> Int -> SDoc -> SDoc
hang (String -> SDoc
text String
"CIS" SDoc -> SDoc -> SDoc
<+> Id -> SDoc
forall a. Outputable a => a -> SDoc
ppr Id
fn)
Int
2 (Bag CallInfo -> SDoc
forall a. Outputable a => a -> SDoc
ppr Bag CallInfo
map)
pprCallInfo :: Id -> CallInfo -> SDoc
pprCallInfo :: Id -> CallInfo -> SDoc
pprCallInfo Id
fn (CI { ci_key :: CallInfo -> [SpecArg]
ci_key = [SpecArg]
key })
= Id -> SDoc
forall a. Outputable a => a -> SDoc
ppr Id
fn SDoc -> SDoc -> SDoc
<+> [SpecArg] -> SDoc
forall a. Outputable a => a -> SDoc
ppr [SpecArg]
key
ppr_call_key_ty :: SpecArg -> Maybe SDoc
ppr_call_key_ty :: SpecArg -> Maybe SDoc
ppr_call_key_ty (SpecType Type
ty) = SDoc -> Maybe SDoc
forall a. a -> Maybe a
Just (SDoc -> Maybe SDoc) -> SDoc -> Maybe SDoc
forall a b. (a -> b) -> a -> b
$ Char -> SDoc
char Char
'@' SDoc -> SDoc -> SDoc
<+> Type -> SDoc
pprParendType Type
ty
ppr_call_key_ty SpecArg
UnspecType = SDoc -> Maybe SDoc
forall a. a -> Maybe a
Just (SDoc -> Maybe SDoc) -> SDoc -> Maybe SDoc
forall a b. (a -> b) -> a -> b
$ Char -> SDoc
char Char
'_'
ppr_call_key_ty (SpecDict Expr Id
_) = Maybe SDoc
forall a. Maybe a
Nothing
ppr_call_key_ty SpecArg
UnspecArg = Maybe SDoc
forall a. Maybe a
Nothing
instance Outputable CallInfo where
ppr :: CallInfo -> SDoc
ppr (CI { ci_key :: CallInfo -> [SpecArg]
ci_key = [SpecArg]
key, ci_fvs :: CallInfo -> VarSet
ci_fvs = VarSet
fvs })
= String -> SDoc
text String
"CI" SDoc -> SDoc -> SDoc
<> SDoc -> SDoc
braces ([SDoc] -> SDoc
hsep [ [SDoc] -> SDoc
fsep ((SpecArg -> Maybe SDoc) -> [SpecArg] -> [SDoc]
forall a b. (a -> Maybe b) -> [a] -> [b]
mapMaybe SpecArg -> Maybe SDoc
ppr_call_key_ty [SpecArg]
key), VarSet -> SDoc
forall a. Outputable a => a -> SDoc
ppr VarSet
fvs ])
unionCalls :: CallDetails -> CallDetails -> CallDetails
unionCalls :: CallDetails -> CallDetails -> CallDetails
unionCalls CallDetails
c1 CallDetails
c2 = (CallInfoSet -> CallInfoSet -> CallInfoSet)
-> CallDetails -> CallDetails -> CallDetails
forall a. (a -> a -> a) -> DVarEnv a -> DVarEnv a -> DVarEnv a
plusDVarEnv_C CallInfoSet -> CallInfoSet -> CallInfoSet
unionCallInfoSet CallDetails
c1 CallDetails
c2
unionCallInfoSet :: CallInfoSet -> CallInfoSet -> CallInfoSet
unionCallInfoSet :: CallInfoSet -> CallInfoSet -> CallInfoSet
unionCallInfoSet (CIS Id
f Bag CallInfo
calls1) (CIS Id
_ Bag CallInfo
calls2) =
Id -> Bag CallInfo -> CallInfoSet
CIS Id
f (Bag CallInfo
calls1 Bag CallInfo -> Bag CallInfo -> Bag CallInfo
forall a. Bag a -> Bag a -> Bag a
`unionBags` Bag CallInfo
calls2)
callDetailsFVs :: CallDetails -> VarSet
callDetailsFVs :: CallDetails -> VarSet
callDetailsFVs CallDetails
calls =
(CallInfoSet -> VarSet -> VarSet)
-> VarSet -> CallDetails -> VarSet
forall elt a. (elt -> a -> a) -> a -> UniqDFM elt -> a
nonDetFoldUDFM (VarSet -> VarSet -> VarSet
unionVarSet (VarSet -> VarSet -> VarSet)
-> (CallInfoSet -> VarSet) -> CallInfoSet -> VarSet -> VarSet
forall b c a. (b -> c) -> (a -> b) -> a -> c
. CallInfoSet -> VarSet
callInfoFVs) VarSet
emptyVarSet CallDetails
calls
callInfoFVs :: CallInfoSet -> VarSet
callInfoFVs :: CallInfoSet -> VarSet
callInfoFVs (CIS Id
_ Bag CallInfo
call_info) =
(CallInfo -> VarSet -> VarSet) -> VarSet -> Bag CallInfo -> VarSet
forall (t :: * -> *) a b.
Foldable t =>
(a -> b -> b) -> b -> t a -> b
foldr (\(CI { ci_fvs :: CallInfo -> VarSet
ci_fvs = VarSet
fv }) VarSet
vs -> VarSet -> VarSet -> VarSet
unionVarSet VarSet
fv VarSet
vs) VarSet
emptyVarSet Bag CallInfo
call_info
computeArity :: [SpecArg] -> Int
computeArity :: [SpecArg] -> Int
computeArity = [SpecArg] -> Int
forall (t :: * -> *) a. Foldable t => t a -> Int
length ([SpecArg] -> Int) -> ([SpecArg] -> [SpecArg]) -> [SpecArg] -> Int
forall b c a. (b -> c) -> (a -> b) -> a -> c
. (SpecArg -> Bool) -> [SpecArg] -> [SpecArg]
forall a. (a -> Bool) -> [a] -> [a]
filter SpecArg -> Bool
isValueArg ([SpecArg] -> [SpecArg])
-> ([SpecArg] -> [SpecArg]) -> [SpecArg] -> [SpecArg]
forall b c a. (b -> c) -> (a -> b) -> a -> c
. (SpecArg -> Bool) -> [SpecArg] -> [SpecArg]
forall a. (a -> Bool) -> [a] -> [a]
dropWhileEndLE SpecArg -> Bool
isUnspecArg
callSpecArity :: [TyCoBinder] -> Int
callSpecArity :: [TyCoBinder] -> Int
callSpecArity = [TyCoBinder] -> Int
forall (t :: * -> *) a. Foldable t => t a -> Int
length ([TyCoBinder] -> Int)
-> ([TyCoBinder] -> [TyCoBinder]) -> [TyCoBinder] -> Int
forall b c a. (b -> c) -> (a -> b) -> a -> c
. (TyCoBinder -> Bool) -> [TyCoBinder] -> [TyCoBinder]
forall a. (a -> Bool) -> [a] -> [a]
filter (Bool -> Bool
not (Bool -> Bool) -> (TyCoBinder -> Bool) -> TyCoBinder -> Bool
forall b c a. (b -> c) -> (a -> b) -> a -> c
. TyCoBinder -> Bool
isNamedBinder) ([TyCoBinder] -> [TyCoBinder])
-> ([TyCoBinder] -> [TyCoBinder]) -> [TyCoBinder] -> [TyCoBinder]
forall b c a. (b -> c) -> (a -> b) -> a -> c
. (TyCoBinder -> Bool) -> [TyCoBinder] -> [TyCoBinder]
forall a. (a -> Bool) -> [a] -> [a]
dropWhileEndLE TyCoBinder -> Bool
isVisibleBinder
getTheta :: [TyCoBinder] -> [PredType]
getTheta :: [TyCoBinder] -> [Type]
getTheta = (TyCoBinder -> Type) -> [TyCoBinder] -> [Type]
forall (f :: * -> *) a b. Functor f => (a -> b) -> f a -> f b
fmap TyCoBinder -> Type
tyBinderType ([TyCoBinder] -> [Type])
-> ([TyCoBinder] -> [TyCoBinder]) -> [TyCoBinder] -> [Type]
forall b c a. (b -> c) -> (a -> b) -> a -> c
. (TyCoBinder -> Bool) -> [TyCoBinder] -> [TyCoBinder]
forall a. (a -> Bool) -> [a] -> [a]
filter TyCoBinder -> Bool
isInvisibleBinder ([TyCoBinder] -> [TyCoBinder])
-> ([TyCoBinder] -> [TyCoBinder]) -> [TyCoBinder] -> [TyCoBinder]
forall b c a. (b -> c) -> (a -> b) -> a -> c
. (TyCoBinder -> Bool) -> [TyCoBinder] -> [TyCoBinder]
forall a. (a -> Bool) -> [a] -> [a]
filter (Bool -> Bool
not (Bool -> Bool) -> (TyCoBinder -> Bool) -> TyCoBinder -> Bool
forall b c a. (b -> c) -> (a -> b) -> a -> c
. TyCoBinder -> Bool
isNamedBinder)
singleCall :: Id -> [SpecArg] -> UsageDetails
singleCall :: Id -> [SpecArg] -> UsageDetails
singleCall Id
id [SpecArg]
args
= MkUD :: Bag DictBind -> CallDetails -> UsageDetails
MkUD {ud_binds :: Bag DictBind
ud_binds = Bag DictBind
forall a. Bag a
emptyBag,
ud_calls :: CallDetails
ud_calls = Id -> CallInfoSet -> CallDetails
forall a. Id -> a -> DVarEnv a
unitDVarEnv Id
id (CallInfoSet -> CallDetails) -> CallInfoSet -> CallDetails
forall a b. (a -> b) -> a -> b
$ Id -> Bag CallInfo -> CallInfoSet
CIS Id
id (Bag CallInfo -> CallInfoSet) -> Bag CallInfo -> CallInfoSet
forall a b. (a -> b) -> a -> b
$
CallInfo -> Bag CallInfo
forall a. a -> Bag a
unitBag (CI :: [SpecArg] -> Int -> VarSet -> CallInfo
CI { ci_key :: [SpecArg]
ci_key = [SpecArg]
args
, ci_arity :: Int
ci_arity = [SpecArg] -> Int
computeArity [SpecArg]
args
, ci_fvs :: VarSet
ci_fvs = VarSet
call_fvs }) }
where
tys :: [Type]
tys = [SpecArg] -> [Type]
getSpecTypes [SpecArg]
args
dicts :: [Expr Id]
dicts = [SpecArg] -> [Expr Id]
getSpecDicts [SpecArg]
args
call_fvs :: VarSet
call_fvs = [Expr Id] -> VarSet
exprsFreeVars [Expr Id]
dicts VarSet -> VarSet -> VarSet
`unionVarSet` VarSet
tys_fvs
tys_fvs :: VarSet
tys_fvs = [Type] -> VarSet
tyCoVarsOfTypes [Type]
tys
mkCallUDs, mkCallUDs' :: SpecEnv -> Id -> [CoreExpr] -> UsageDetails
mkCallUDs :: SpecEnv -> Id -> [Expr Id] -> UsageDetails
mkCallUDs SpecEnv
env Id
f [Expr Id]
args
=
UsageDetails
res
where
res :: UsageDetails
res = SpecEnv -> Id -> [Expr Id] -> UsageDetails
mkCallUDs' SpecEnv
env Id
f [Expr Id]
args
mkCallUDs' :: SpecEnv -> Id -> [Expr Id] -> UsageDetails
mkCallUDs' SpecEnv
env Id
f [Expr Id]
args
| Bool -> Bool
not (Id -> Bool
want_calls_for Id
f)
Bool -> Bool -> Bool
|| [Type] -> Bool
forall (t :: * -> *) a. Foldable t => t a -> Bool
null [Type]
theta
= UsageDetails
emptyUDs
| Bool -> Bool
not ((Type -> Bool) -> [Type] -> Bool
forall (t :: * -> *) a. Foldable t => (a -> Bool) -> t a -> Bool
all Type -> Bool
type_determines_value [Type]
theta)
Bool -> Bool -> Bool
|| Bool -> Bool
not ([SpecArg] -> Int
computeArity [SpecArg]
ci_key Int -> Int -> Bool
forall a. Ord a => a -> a -> Bool
<= Id -> Int
idArity Id
f)
Bool -> Bool -> Bool
|| Bool -> Bool
not ([Expr Id] -> Int
forall (t :: * -> *) a. Foldable t => t a -> Int
length [Expr Id]
dicts Int -> Int -> Bool
forall a. Eq a => a -> a -> Bool
== [Type] -> Int
forall (t :: * -> *) a. Foldable t => t a -> Int
length [Type]
theta)
Bool -> Bool -> Bool
|| Bool -> Bool
not ((Expr Id -> Bool) -> [Expr Id] -> Bool
forall (t :: * -> *) a. Foldable t => (a -> Bool) -> t a -> Bool
any (SpecEnv -> Expr Id -> Bool
interestingDict SpecEnv
env) [Expr Id]
dicts)
=
UsageDetails
emptyUDs
| Bool
otherwise
=
Id -> [SpecArg] -> UsageDetails
singleCall Id
f [SpecArg]
ci_key
where
_trace_doc :: SDoc
_trace_doc = [SDoc] -> SDoc
vcat [Id -> SDoc
forall a. Outputable a => a -> SDoc
ppr Id
f, [Expr Id] -> SDoc
forall a. Outputable a => a -> SDoc
ppr [Expr Id]
args, [Bool] -> SDoc
forall a. Outputable a => a -> SDoc
ppr ((Expr Id -> Bool) -> [Expr Id] -> [Bool]
forall a b. (a -> b) -> [a] -> [b]
map (SpecEnv -> Expr Id -> Bool
interestingDict SpecEnv
env) [Expr Id]
dicts)]
pis :: [TyCoBinder]
pis = ([TyCoBinder], Type) -> [TyCoBinder]
forall a b. (a, b) -> a
fst (([TyCoBinder], Type) -> [TyCoBinder])
-> ([TyCoBinder], Type) -> [TyCoBinder]
forall a b. (a -> b) -> a -> b
$ Type -> ([TyCoBinder], Type)
splitPiTys (Type -> ([TyCoBinder], Type)) -> Type -> ([TyCoBinder], Type)
forall a b. (a -> b) -> a -> b
$ Id -> Type
idType Id
f
theta :: [Type]
theta = [TyCoBinder] -> [Type]
getTheta [TyCoBinder]
pis
constrained_tyvars :: VarSet
constrained_tyvars = [Type] -> VarSet
tyCoVarsOfTypes [Type]
theta
ci_key :: [SpecArg]
ci_key :: [SpecArg]
ci_key = ((TyCoBinder, Expr Id) -> SpecArg)
-> [(TyCoBinder, Expr Id)] -> [SpecArg]
forall (f :: * -> *) a b. Functor f => (a -> b) -> f a -> f b
fmap (\(TyCoBinder
t, Expr Id
a) ->
case TyCoBinder
t of
Named (TyCoVarBinder -> Id
forall tv argf. VarBndr tv argf -> tv
binderVar -> Id
tyVar)
| Id
tyVar Id -> VarSet -> Bool
`elemVarSet` VarSet
constrained_tyvars
-> case Expr Id
a of
Type Type
ty -> Type -> SpecArg
SpecType Type
ty
Expr Id
_ -> String -> SDoc -> SpecArg
forall a. HasCallStack => String -> SDoc -> a
pprPanic String
"ci_key" (SDoc -> SpecArg) -> SDoc -> SpecArg
forall a b. (a -> b) -> a -> b
$ Expr Id -> SDoc
forall a. Outputable a => a -> SDoc
ppr Expr Id
a
| Bool
otherwise
-> SpecArg
UnspecType
Anon AnonArgFlag
InvisArg Type
_ -> Expr Id -> SpecArg
SpecDict Expr Id
a
Anon AnonArgFlag
VisArg Type
_ -> SpecArg
UnspecArg
) ([(TyCoBinder, Expr Id)] -> [SpecArg])
-> [(TyCoBinder, Expr Id)] -> [SpecArg]
forall a b. (a -> b) -> a -> b
$ [TyCoBinder] -> [Expr Id] -> [(TyCoBinder, Expr Id)]
forall a b. [a] -> [b] -> [(a, b)]
zip [TyCoBinder]
pis [Expr Id]
args
dicts :: [Expr Id]
dicts = [SpecArg] -> [Expr Id]
getSpecDicts [SpecArg]
ci_key
want_calls_for :: Id -> Bool
want_calls_for Id
f = Id -> Bool
isLocalId Id
f Bool -> Bool -> Bool
|| Maybe (Expr Id) -> Bool
forall a. Maybe a -> Bool
isJust (Unfolding -> Maybe (Expr Id)
maybeUnfoldingTemplate (Id -> Unfolding
realIdUnfolding Id
f))
type_determines_value :: Type -> Bool
type_determines_value Type
pred
= case Type -> Pred
classifyPredType Type
pred of
ClassPred Class
cls [Type]
_ -> Bool -> Bool
not (Class -> Bool
isIPClass Class
cls)
EqPred {} -> Bool
True
IrredPred {} -> Bool
True
ForAllPred {} -> Bool
True
interestingDict :: SpecEnv -> CoreExpr -> Bool
interestingDict :: SpecEnv -> Expr Id -> Bool
interestingDict SpecEnv
env (Var Id
v) = Unfolding -> Bool
hasSomeUnfolding (Id -> Unfolding
idUnfolding Id
v)
Bool -> Bool -> Bool
|| Id -> Bool
isDataConWorkId Id
v
Bool -> Bool -> Bool
|| Id
v Id -> VarSet -> Bool
`elemVarSet` SpecEnv -> VarSet
se_interesting SpecEnv
env
interestingDict SpecEnv
_ (Type Type
_) = Bool
False
interestingDict SpecEnv
_ (Coercion Coercion
_) = Bool
False
interestingDict SpecEnv
env (App Expr Id
fn (Type Type
_)) = SpecEnv -> Expr Id -> Bool
interestingDict SpecEnv
env Expr Id
fn
interestingDict SpecEnv
env (App Expr Id
fn (Coercion Coercion
_)) = SpecEnv -> Expr Id -> Bool
interestingDict SpecEnv
env Expr Id
fn
interestingDict SpecEnv
env (Tick Tickish Id
_ Expr Id
a) = SpecEnv -> Expr Id -> Bool
interestingDict SpecEnv
env Expr Id
a
interestingDict SpecEnv
env (Cast Expr Id
e Coercion
_) = SpecEnv -> Expr Id -> Bool
interestingDict SpecEnv
env Expr Id
e
interestingDict SpecEnv
_ Expr Id
_ = Bool
True
plusUDs :: UsageDetails -> UsageDetails -> UsageDetails
plusUDs :: UsageDetails -> UsageDetails -> UsageDetails
plusUDs (MkUD {ud_binds :: UsageDetails -> Bag DictBind
ud_binds = Bag DictBind
db1, ud_calls :: UsageDetails -> CallDetails
ud_calls = CallDetails
calls1})
(MkUD {ud_binds :: UsageDetails -> Bag DictBind
ud_binds = Bag DictBind
db2, ud_calls :: UsageDetails -> CallDetails
ud_calls = CallDetails
calls2})
= MkUD :: Bag DictBind -> CallDetails -> UsageDetails
MkUD { ud_binds :: Bag DictBind
ud_binds = Bag DictBind
db1 Bag DictBind -> Bag DictBind -> Bag DictBind
forall a. Bag a -> Bag a -> Bag a
`unionBags` Bag DictBind
db2
, ud_calls :: CallDetails
ud_calls = CallDetails
calls1 CallDetails -> CallDetails -> CallDetails
`unionCalls` CallDetails
calls2 }
_dictBindBndrs :: Bag DictBind -> [Id]
_dictBindBndrs :: Bag DictBind -> [Id]
_dictBindBndrs Bag DictBind
dbs = (DictBind -> [Id] -> [Id]) -> [Id] -> Bag DictBind -> [Id]
forall (t :: * -> *) a b.
Foldable t =>
(a -> b -> b) -> b -> t a -> b
foldr ([Id] -> [Id] -> [Id]
forall a. [a] -> [a] -> [a]
(++) ([Id] -> [Id] -> [Id])
-> (DictBind -> [Id]) -> DictBind -> [Id] -> [Id]
forall b c a. (b -> c) -> (a -> b) -> a -> c
. Bind Id -> [Id]
forall b. Bind b -> [b]
bindersOf (Bind Id -> [Id]) -> (DictBind -> Bind Id) -> DictBind -> [Id]
forall b c a. (b -> c) -> (a -> b) -> a -> c
. DictBind -> Bind Id
forall a b. (a, b) -> a
fst) [] Bag DictBind
dbs
mkDB :: CoreBind -> DictBind
mkDB :: Bind Id -> DictBind
mkDB Bind Id
bind = (Bind Id
bind, Bind Id -> VarSet
bind_fvs Bind Id
bind)
bind_fvs :: CoreBind -> VarSet
bind_fvs :: Bind Id -> VarSet
bind_fvs (NonRec Id
bndr Expr Id
rhs) = (Id, Expr Id) -> VarSet
pair_fvs (Id
bndr,Expr Id
rhs)
bind_fvs (Rec [(Id, Expr Id)]
prs) = (VarSet -> Id -> VarSet) -> VarSet -> [Id] -> VarSet
forall (t :: * -> *) b a.
Foldable t =>
(b -> a -> b) -> b -> t a -> b
foldl' VarSet -> Id -> VarSet
delVarSet VarSet
rhs_fvs [Id]
bndrs
where
bndrs :: [Id]
bndrs = ((Id, Expr Id) -> Id) -> [(Id, Expr Id)] -> [Id]
forall a b. (a -> b) -> [a] -> [b]
map (Id, Expr Id) -> Id
forall a b. (a, b) -> a
fst [(Id, Expr Id)]
prs
rhs_fvs :: VarSet
rhs_fvs = [VarSet] -> VarSet
unionVarSets (((Id, Expr Id) -> VarSet) -> [(Id, Expr Id)] -> [VarSet]
forall a b. (a -> b) -> [a] -> [b]
map (Id, Expr Id) -> VarSet
pair_fvs [(Id, Expr Id)]
prs)
pair_fvs :: (Id, CoreExpr) -> VarSet
pair_fvs :: (Id, Expr Id) -> VarSet
pair_fvs (Id
bndr, Expr Id
rhs) = (Id -> Bool) -> Expr Id -> VarSet
exprSomeFreeVars Id -> Bool
interesting Expr Id
rhs
VarSet -> VarSet -> VarSet
`unionVarSet` Id -> VarSet
idFreeVars Id
bndr
where
interesting :: InterestingVarFun
interesting :: Id -> Bool
interesting Id
v = Id -> Bool
isLocalVar Id
v Bool -> Bool -> Bool
|| (Id -> Bool
isId Id
v Bool -> Bool -> Bool
&& Id -> Bool
isDFunId Id
v)
recWithDumpedDicts :: [(Id,CoreExpr)] -> Bag DictBind ->DictBind
recWithDumpedDicts :: [(Id, Expr Id)] -> Bag DictBind -> DictBind
recWithDumpedDicts [(Id, Expr Id)]
pairs Bag DictBind
dbs
= ([(Id, Expr Id)] -> Bind Id
forall b. [(b, Expr b)] -> Bind b
Rec [(Id, Expr Id)]
bindings, VarSet
fvs)
where
([(Id, Expr Id)]
bindings, VarSet
fvs) = (DictBind
-> ([(Id, Expr Id)], VarSet) -> ([(Id, Expr Id)], VarSet))
-> ([(Id, Expr Id)], VarSet)
-> Bag DictBind
-> ([(Id, Expr Id)], VarSet)
forall (t :: * -> *) a b.
Foldable t =>
(a -> b -> b) -> b -> t a -> b
foldr DictBind -> ([(Id, Expr Id)], VarSet) -> ([(Id, Expr Id)], VarSet)
forall a.
(Bind a, VarSet)
-> ([(a, Expr a)], VarSet) -> ([(a, Expr a)], VarSet)
add
([], VarSet
emptyVarSet)
(Bag DictBind
dbs Bag DictBind -> DictBind -> Bag DictBind
forall a. Bag a -> a -> Bag a
`snocBag` Bind Id -> DictBind
mkDB ([(Id, Expr Id)] -> Bind Id
forall b. [(b, Expr b)] -> Bind b
Rec [(Id, Expr Id)]
pairs))
add :: (Bind a, VarSet)
-> ([(a, Expr a)], VarSet) -> ([(a, Expr a)], VarSet)
add (NonRec a
b Expr a
r, VarSet
fvs') ([(a, Expr a)]
pairs, VarSet
fvs) =
((a
b,Expr a
r) (a, Expr a) -> [(a, Expr a)] -> [(a, Expr a)]
forall a. a -> [a] -> [a]
: [(a, Expr a)]
pairs, VarSet
fvs VarSet -> VarSet -> VarSet
`unionVarSet` VarSet
fvs')
add (Rec [(a, Expr a)]
prs1, VarSet
fvs') ([(a, Expr a)]
pairs, VarSet
fvs) =
([(a, Expr a)]
prs1 [(a, Expr a)] -> [(a, Expr a)] -> [(a, Expr a)]
forall a. [a] -> [a] -> [a]
++ [(a, Expr a)]
pairs, VarSet
fvs VarSet -> VarSet -> VarSet
`unionVarSet` VarSet
fvs')
snocDictBinds :: UsageDetails -> [DictBind] -> UsageDetails
snocDictBinds :: UsageDetails -> [DictBind] -> UsageDetails
snocDictBinds UsageDetails
uds [DictBind]
dbs
= UsageDetails
uds { ud_binds :: Bag DictBind
ud_binds = UsageDetails -> Bag DictBind
ud_binds UsageDetails
uds Bag DictBind -> Bag DictBind -> Bag DictBind
forall a. Bag a -> Bag a -> Bag a
`unionBags` [DictBind] -> Bag DictBind
forall a. [a] -> Bag a
listToBag [DictBind]
dbs }
consDictBind :: DictBind -> UsageDetails -> UsageDetails
consDictBind :: DictBind -> UsageDetails -> UsageDetails
consDictBind DictBind
bind UsageDetails
uds = UsageDetails
uds { ud_binds :: Bag DictBind
ud_binds = DictBind
bind DictBind -> Bag DictBind -> Bag DictBind
forall a. a -> Bag a -> Bag a
`consBag` UsageDetails -> Bag DictBind
ud_binds UsageDetails
uds }
addDictBinds :: [DictBind] -> UsageDetails -> UsageDetails
addDictBinds :: [DictBind] -> UsageDetails -> UsageDetails
addDictBinds [DictBind]
binds UsageDetails
uds = UsageDetails
uds { ud_binds :: Bag DictBind
ud_binds = [DictBind] -> Bag DictBind
forall a. [a] -> Bag a
listToBag [DictBind]
binds Bag DictBind -> Bag DictBind -> Bag DictBind
forall a. Bag a -> Bag a -> Bag a
`unionBags` UsageDetails -> Bag DictBind
ud_binds UsageDetails
uds }
snocDictBind :: UsageDetails -> DictBind -> UsageDetails
snocDictBind :: UsageDetails -> DictBind -> UsageDetails
snocDictBind UsageDetails
uds DictBind
bind = UsageDetails
uds { ud_binds :: Bag DictBind
ud_binds = UsageDetails -> Bag DictBind
ud_binds UsageDetails
uds Bag DictBind -> DictBind -> Bag DictBind
forall a. Bag a -> a -> Bag a
`snocBag` DictBind
bind }
wrapDictBinds :: Bag DictBind -> [CoreBind] -> [CoreBind]
wrapDictBinds :: Bag DictBind -> CoreProgram -> CoreProgram
wrapDictBinds Bag DictBind
dbs CoreProgram
binds
= (DictBind -> CoreProgram -> CoreProgram)
-> CoreProgram -> Bag DictBind -> CoreProgram
forall (t :: * -> *) a b.
Foldable t =>
(a -> b -> b) -> b -> t a -> b
foldr DictBind -> CoreProgram -> CoreProgram
forall a b. (a, b) -> [a] -> [a]
add CoreProgram
binds Bag DictBind
dbs
where
add :: (a, b) -> [a] -> [a]
add (a
bind,b
_) [a]
binds = a
bind a -> [a] -> [a]
forall a. a -> [a] -> [a]
: [a]
binds
wrapDictBindsE :: Bag DictBind -> CoreExpr -> CoreExpr
wrapDictBindsE :: Bag DictBind -> Expr Id -> Expr Id
wrapDictBindsE Bag DictBind
dbs Expr Id
expr
= (DictBind -> Expr Id -> Expr Id)
-> Expr Id -> Bag DictBind -> Expr Id
forall (t :: * -> *) a b.
Foldable t =>
(a -> b -> b) -> b -> t a -> b
foldr DictBind -> Expr Id -> Expr Id
forall b b. (Bind b, b) -> Expr b -> Expr b
add Expr Id
expr Bag DictBind
dbs
where
add :: (Bind b, b) -> Expr b -> Expr b
add (Bind b
bind,b
_) Expr b
expr = Bind b -> Expr b -> Expr b
forall b. Bind b -> Expr b -> Expr b
Let Bind b
bind Expr b
expr
dumpUDs :: [CoreBndr] -> UsageDetails -> (UsageDetails, Bag DictBind)
dumpUDs :: [Id] -> UsageDetails -> (UsageDetails, Bag DictBind)
dumpUDs [Id]
bndrs uds :: UsageDetails
uds@(MkUD { ud_binds :: UsageDetails -> Bag DictBind
ud_binds = Bag DictBind
orig_dbs, ud_calls :: UsageDetails -> CallDetails
ud_calls = CallDetails
orig_calls })
| [Id] -> Bool
forall (t :: * -> *) a. Foldable t => t a -> Bool
null [Id]
bndrs = (UsageDetails
uds, Bag DictBind
forall a. Bag a
emptyBag)
| Bool
otherwise =
(UsageDetails
free_uds, Bag DictBind
dump_dbs)
where
free_uds :: UsageDetails
free_uds = MkUD :: Bag DictBind -> CallDetails -> UsageDetails
MkUD { ud_binds :: Bag DictBind
ud_binds = Bag DictBind
free_dbs, ud_calls :: CallDetails
ud_calls = CallDetails
free_calls }
bndr_set :: VarSet
bndr_set = [Id] -> VarSet
mkVarSet [Id]
bndrs
(Bag DictBind
free_dbs, Bag DictBind
dump_dbs, VarSet
dump_set) = Bag DictBind -> VarSet -> (Bag DictBind, Bag DictBind, VarSet)
splitDictBinds Bag DictBind
orig_dbs VarSet
bndr_set
free_calls :: CallDetails
free_calls = VarSet -> CallDetails -> CallDetails
deleteCallsMentioning VarSet
dump_set (CallDetails -> CallDetails) -> CallDetails -> CallDetails
forall a b. (a -> b) -> a -> b
$
[Id] -> CallDetails -> CallDetails
deleteCallsFor [Id]
bndrs CallDetails
orig_calls
dumpBindUDs :: [CoreBndr] -> UsageDetails -> (UsageDetails, Bag DictBind, Bool)
dumpBindUDs :: [Id] -> UsageDetails -> (UsageDetails, Bag DictBind, Bool)
dumpBindUDs [Id]
bndrs (MkUD { ud_binds :: UsageDetails -> Bag DictBind
ud_binds = Bag DictBind
orig_dbs, ud_calls :: UsageDetails -> CallDetails
ud_calls = CallDetails
orig_calls })
=
(UsageDetails
free_uds, Bag DictBind
dump_dbs, Bool
float_all)
where
free_uds :: UsageDetails
free_uds = MkUD :: Bag DictBind -> CallDetails -> UsageDetails
MkUD { ud_binds :: Bag DictBind
ud_binds = Bag DictBind
free_dbs, ud_calls :: CallDetails
ud_calls = CallDetails
free_calls }
bndr_set :: VarSet
bndr_set = [Id] -> VarSet
mkVarSet [Id]
bndrs
(Bag DictBind
free_dbs, Bag DictBind
dump_dbs, VarSet
dump_set) = Bag DictBind -> VarSet -> (Bag DictBind, Bag DictBind, VarSet)
splitDictBinds Bag DictBind
orig_dbs VarSet
bndr_set
free_calls :: CallDetails
free_calls = [Id] -> CallDetails -> CallDetails
deleteCallsFor [Id]
bndrs CallDetails
orig_calls
float_all :: Bool
float_all = VarSet
dump_set VarSet -> VarSet -> Bool
`intersectsVarSet` CallDetails -> VarSet
callDetailsFVs CallDetails
free_calls
callsForMe :: Id -> UsageDetails -> (UsageDetails, [CallInfo])
callsForMe :: Id -> UsageDetails -> (UsageDetails, [CallInfo])
callsForMe Id
fn (MkUD { ud_binds :: UsageDetails -> Bag DictBind
ud_binds = Bag DictBind
orig_dbs, ud_calls :: UsageDetails -> CallDetails
ud_calls = CallDetails
orig_calls })
=
(UsageDetails
uds_without_me, [CallInfo]
calls_for_me)
where
uds_without_me :: UsageDetails
uds_without_me = MkUD :: Bag DictBind -> CallDetails -> UsageDetails
MkUD { ud_binds :: Bag DictBind
ud_binds = Bag DictBind
orig_dbs
, ud_calls :: CallDetails
ud_calls = CallDetails -> Id -> CallDetails
forall a. DVarEnv a -> Id -> DVarEnv a
delDVarEnv CallDetails
orig_calls Id
fn }
calls_for_me :: [CallInfo]
calls_for_me = case CallDetails -> Id -> Maybe CallInfoSet
forall a. DVarEnv a -> Id -> Maybe a
lookupDVarEnv CallDetails
orig_calls Id
fn of
Maybe CallInfoSet
Nothing -> []
Just CallInfoSet
cis -> CallInfoSet -> Bag DictBind -> [CallInfo]
filterCalls CallInfoSet
cis Bag DictBind
orig_dbs
filterCalls :: CallInfoSet -> Bag DictBind -> [CallInfo]
filterCalls :: CallInfoSet -> Bag DictBind -> [CallInfo]
filterCalls (CIS Id
fn Bag CallInfo
call_bag) Bag DictBind
dbs
= (CallInfo -> Bool) -> [CallInfo] -> [CallInfo]
forall a. (a -> Bool) -> [a] -> [a]
filter CallInfo -> Bool
ok_call (Bag CallInfo -> [CallInfo]
forall a. Bag a -> [a]
bagToList Bag CallInfo
call_bag)
where
dump_set :: VarSet
dump_set = (VarSet -> DictBind -> VarSet) -> VarSet -> Bag DictBind -> VarSet
forall (t :: * -> *) b a.
Foldable t =>
(b -> a -> b) -> b -> t a -> b
foldl' VarSet -> DictBind -> VarSet
go (Id -> VarSet
unitVarSet Id
fn) Bag DictBind
dbs
go :: VarSet -> DictBind -> VarSet
go VarSet
so_far (Bind Id
db,VarSet
fvs) | VarSet
fvs VarSet -> VarSet -> Bool
`intersectsVarSet` VarSet
so_far
= VarSet -> [Id] -> VarSet
extendVarSetList VarSet
so_far (Bind Id -> [Id]
forall b. Bind b -> [b]
bindersOf Bind Id
db)
| Bool
otherwise = VarSet
so_far
ok_call :: CallInfo -> Bool
ok_call (CI { ci_fvs :: CallInfo -> VarSet
ci_fvs = VarSet
fvs }) = Bool -> Bool
not (VarSet
fvs VarSet -> VarSet -> Bool
`intersectsVarSet` VarSet
dump_set)
splitDictBinds :: Bag DictBind -> IdSet -> (Bag DictBind, Bag DictBind, IdSet)
splitDictBinds :: Bag DictBind -> VarSet -> (Bag DictBind, Bag DictBind, VarSet)
splitDictBinds Bag DictBind
dbs VarSet
bndr_set
= ((Bag DictBind, Bag DictBind, VarSet)
-> DictBind -> (Bag DictBind, Bag DictBind, VarSet))
-> (Bag DictBind, Bag DictBind, VarSet)
-> Bag DictBind
-> (Bag DictBind, Bag DictBind, VarSet)
forall (t :: * -> *) b a.
Foldable t =>
(b -> a -> b) -> b -> t a -> b
foldl' (Bag DictBind, Bag DictBind, VarSet)
-> DictBind -> (Bag DictBind, Bag DictBind, VarSet)
split_db (Bag DictBind
forall a. Bag a
emptyBag, Bag DictBind
forall a. Bag a
emptyBag, VarSet
bndr_set) Bag DictBind
dbs
where
split_db :: (Bag DictBind, Bag DictBind, VarSet)
-> DictBind -> (Bag DictBind, Bag DictBind, VarSet)
split_db (Bag DictBind
free_dbs, Bag DictBind
dump_dbs, VarSet
dump_idset) db :: DictBind
db@(Bind Id
bind, VarSet
fvs)
| VarSet
dump_idset VarSet -> VarSet -> Bool
`intersectsVarSet` VarSet
fvs
= (Bag DictBind
free_dbs, Bag DictBind
dump_dbs Bag DictBind -> DictBind -> Bag DictBind
forall a. Bag a -> a -> Bag a
`snocBag` DictBind
db,
VarSet -> [Id] -> VarSet
extendVarSetList VarSet
dump_idset (Bind Id -> [Id]
forall b. Bind b -> [b]
bindersOf Bind Id
bind))
| Bool
otherwise
= (Bag DictBind
free_dbs Bag DictBind -> DictBind -> Bag DictBind
forall a. Bag a -> a -> Bag a
`snocBag` DictBind
db, Bag DictBind
dump_dbs, VarSet
dump_idset)
deleteCallsMentioning :: VarSet -> CallDetails -> CallDetails
deleteCallsMentioning :: VarSet -> CallDetails -> CallDetails
deleteCallsMentioning VarSet
bs CallDetails
calls
= (CallInfoSet -> CallInfoSet) -> CallDetails -> CallDetails
forall a b. (a -> b) -> DVarEnv a -> DVarEnv b
mapDVarEnv ((CallInfo -> Bool) -> CallInfoSet -> CallInfoSet
ciSetFilter CallInfo -> Bool
keep_call) CallDetails
calls
where
keep_call :: CallInfo -> Bool
keep_call (CI { ci_fvs :: CallInfo -> VarSet
ci_fvs = VarSet
fvs }) = Bool -> Bool
not (VarSet
fvs VarSet -> VarSet -> Bool
`intersectsVarSet` VarSet
bs)
deleteCallsFor :: [Id] -> CallDetails -> CallDetails
deleteCallsFor :: [Id] -> CallDetails -> CallDetails
deleteCallsFor [Id]
bs CallDetails
calls = CallDetails -> [Id] -> CallDetails
forall a. DVarEnv a -> [Id] -> DVarEnv a
delDVarEnvList CallDetails
calls [Id]
bs
newtype SpecM a = SpecM (State SpecState a) deriving (a -> SpecM b -> SpecM a
(a -> b) -> SpecM a -> SpecM b
(forall a b. (a -> b) -> SpecM a -> SpecM b)
-> (forall a b. a -> SpecM b -> SpecM a) -> Functor SpecM
forall a b. a -> SpecM b -> SpecM a
forall a b. (a -> b) -> SpecM a -> SpecM b
forall (f :: * -> *).
(forall a b. (a -> b) -> f a -> f b)
-> (forall a b. a -> f b -> f a) -> Functor f
<$ :: a -> SpecM b -> SpecM a
$c<$ :: forall a b. a -> SpecM b -> SpecM a
fmap :: (a -> b) -> SpecM a -> SpecM b
$cfmap :: forall a b. (a -> b) -> SpecM a -> SpecM b
Functor)
data SpecState = SpecState {
SpecState -> UniqSupply
spec_uniq_supply :: UniqSupply,
SpecState -> Module
spec_module :: Module,
SpecState -> DynFlags
spec_dflags :: DynFlags
}
instance Applicative SpecM where
pure :: a -> SpecM a
pure a
x = State SpecState a -> SpecM a
forall a. State SpecState a -> SpecM a
SpecM (State SpecState a -> SpecM a) -> State SpecState a -> SpecM a
forall a b. (a -> b) -> a -> b
$ a -> State SpecState a
forall (m :: * -> *) a. Monad m => a -> m a
return a
x
<*> :: SpecM (a -> b) -> SpecM a -> SpecM b
(<*>) = SpecM (a -> b) -> SpecM a -> SpecM b
forall (m :: * -> *) a b. Monad m => m (a -> b) -> m a -> m b
ap
instance Monad SpecM where
SpecM State SpecState a
x >>= :: SpecM a -> (a -> SpecM b) -> SpecM b
>>= a -> SpecM b
f = State SpecState b -> SpecM b
forall a. State SpecState a -> SpecM a
SpecM (State SpecState b -> SpecM b) -> State SpecState b -> SpecM b
forall a b. (a -> b) -> a -> b
$ do a
y <- State SpecState a
x
case a -> SpecM b
f a
y of
SpecM State SpecState b
z ->
State SpecState b
z
#if !MIN_VERSION_base(4,13,0)
fail = MonadFail.fail
#endif
instance MonadFail.MonadFail SpecM where
fail :: String -> SpecM a
fail String
str = State SpecState a -> SpecM a
forall a. State SpecState a -> SpecM a
SpecM (State SpecState a -> SpecM a) -> State SpecState a -> SpecM a
forall a b. (a -> b) -> a -> b
$ String -> State SpecState a
forall a. HasCallStack => String -> a
error String
str
instance MonadUnique SpecM where
getUniqueSupplyM :: SpecM UniqSupply
getUniqueSupplyM
= State SpecState UniqSupply -> SpecM UniqSupply
forall a. State SpecState a -> SpecM a
SpecM (State SpecState UniqSupply -> SpecM UniqSupply)
-> State SpecState UniqSupply -> SpecM UniqSupply
forall a b. (a -> b) -> a -> b
$ do SpecState
st <- State SpecState SpecState
forall s. State s s
get
let (UniqSupply
us1, UniqSupply
us2) = UniqSupply -> (UniqSupply, UniqSupply)
splitUniqSupply (UniqSupply -> (UniqSupply, UniqSupply))
-> UniqSupply -> (UniqSupply, UniqSupply)
forall a b. (a -> b) -> a -> b
$ SpecState -> UniqSupply
spec_uniq_supply SpecState
st
SpecState -> State SpecState ()
forall s. s -> State s ()
put (SpecState -> State SpecState ())
-> SpecState -> State SpecState ()
forall a b. (a -> b) -> a -> b
$ SpecState
st { spec_uniq_supply :: UniqSupply
spec_uniq_supply = UniqSupply
us2 }
UniqSupply -> State SpecState UniqSupply
forall (m :: * -> *) a. Monad m => a -> m a
return UniqSupply
us1
getUniqueM :: SpecM Unique
getUniqueM
= State SpecState Unique -> SpecM Unique
forall a. State SpecState a -> SpecM a
SpecM (State SpecState Unique -> SpecM Unique)
-> State SpecState Unique -> SpecM Unique
forall a b. (a -> b) -> a -> b
$ do SpecState
st <- State SpecState SpecState
forall s. State s s
get
let (Unique
u,UniqSupply
us') = UniqSupply -> (Unique, UniqSupply)
takeUniqFromSupply (UniqSupply -> (Unique, UniqSupply))
-> UniqSupply -> (Unique, UniqSupply)
forall a b. (a -> b) -> a -> b
$ SpecState -> UniqSupply
spec_uniq_supply SpecState
st
SpecState -> State SpecState ()
forall s. s -> State s ()
put (SpecState -> State SpecState ())
-> SpecState -> State SpecState ()
forall a b. (a -> b) -> a -> b
$ SpecState
st { spec_uniq_supply :: UniqSupply
spec_uniq_supply = UniqSupply
us' }
Unique -> State SpecState Unique
forall (m :: * -> *) a. Monad m => a -> m a
return Unique
u
instance HasDynFlags SpecM where
getDynFlags :: SpecM DynFlags
getDynFlags = State SpecState DynFlags -> SpecM DynFlags
forall a. State SpecState a -> SpecM a
SpecM (State SpecState DynFlags -> SpecM DynFlags)
-> State SpecState DynFlags -> SpecM DynFlags
forall a b. (a -> b) -> a -> b
$ (SpecState -> DynFlags)
-> State SpecState SpecState -> State SpecState DynFlags
forall (m :: * -> *) a1 r. Monad m => (a1 -> r) -> m a1 -> m r
liftM SpecState -> DynFlags
spec_dflags State SpecState SpecState
forall s. State s s
get
instance HasModule SpecM where
getModule :: SpecM Module
getModule = State SpecState Module -> SpecM Module
forall a. State SpecState a -> SpecM a
SpecM (State SpecState Module -> SpecM Module)
-> State SpecState Module -> SpecM Module
forall a b. (a -> b) -> a -> b
$ (SpecState -> Module)
-> State SpecState SpecState -> State SpecState Module
forall (m :: * -> *) a1 r. Monad m => (a1 -> r) -> m a1 -> m r
liftM SpecState -> Module
spec_module State SpecState SpecState
forall s. State s s
get
runSpecM :: DynFlags -> Module -> SpecM a -> CoreM a
runSpecM :: DynFlags -> Module -> SpecM a -> CoreM a
runSpecM DynFlags
dflags Module
this_mod (SpecM State SpecState a
spec)
= do UniqSupply
us <- CoreM UniqSupply
forall (m :: * -> *). MonadUnique m => m UniqSupply
getUniqueSupplyM
let initialState :: SpecState
initialState = SpecState :: UniqSupply -> Module -> DynFlags -> SpecState
SpecState {
spec_uniq_supply :: UniqSupply
spec_uniq_supply = UniqSupply
us,
spec_module :: Module
spec_module = Module
this_mod,
spec_dflags :: DynFlags
spec_dflags = DynFlags
dflags
}
a -> CoreM a
forall (m :: * -> *) a. Monad m => a -> m a
return (a -> CoreM a) -> a -> CoreM a
forall a b. (a -> b) -> a -> b
$ State SpecState a -> SpecState -> a
forall s a. State s a -> s -> a
evalState State SpecState a
spec SpecState
initialState
mapAndCombineSM :: (a -> SpecM (b, UsageDetails)) -> [a] -> SpecM ([b], UsageDetails)
mapAndCombineSM :: (a -> SpecM (b, UsageDetails)) -> [a] -> SpecM ([b], UsageDetails)
mapAndCombineSM a -> SpecM (b, UsageDetails)
_ [] = ([b], UsageDetails) -> SpecM ([b], UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return ([], UsageDetails
emptyUDs)
mapAndCombineSM a -> SpecM (b, UsageDetails)
f (a
x:[a]
xs) = do (b
y, UsageDetails
uds1) <- a -> SpecM (b, UsageDetails)
f a
x
([b]
ys, UsageDetails
uds2) <- (a -> SpecM (b, UsageDetails)) -> [a] -> SpecM ([b], UsageDetails)
forall a b.
(a -> SpecM (b, UsageDetails)) -> [a] -> SpecM ([b], UsageDetails)
mapAndCombineSM a -> SpecM (b, UsageDetails)
f [a]
xs
([b], UsageDetails) -> SpecM ([b], UsageDetails)
forall (m :: * -> *) a. Monad m => a -> m a
return (b
yb -> [b] -> [b]
forall a. a -> [a] -> [a]
:[b]
ys, UsageDetails
uds1 UsageDetails -> UsageDetails -> UsageDetails
`plusUDs` UsageDetails
uds2)
extendTvSubstList :: SpecEnv -> [(TyVar,Type)] -> SpecEnv
extendTvSubstList :: SpecEnv -> [(Id, Type)] -> SpecEnv
extendTvSubstList SpecEnv
env [(Id, Type)]
tv_binds
= SpecEnv
env { se_subst :: Subst
se_subst = Subst -> [(Id, Type)] -> Subst
CoreSubst.extendTvSubstList (SpecEnv -> Subst
se_subst SpecEnv
env) [(Id, Type)]
tv_binds }
substTy :: SpecEnv -> Type -> Type
substTy :: SpecEnv -> Type -> Type
substTy SpecEnv
env Type
ty = Subst -> Type -> Type
CoreSubst.substTy (SpecEnv -> Subst
se_subst SpecEnv
env) Type
ty
substCo :: SpecEnv -> Coercion -> Coercion
substCo :: SpecEnv -> Coercion -> Coercion
substCo SpecEnv
env Coercion
co = HasCallStack => Subst -> Coercion -> Coercion
Subst -> Coercion -> Coercion
CoreSubst.substCo (SpecEnv -> Subst
se_subst SpecEnv
env) Coercion
co
substBndr :: SpecEnv -> CoreBndr -> (SpecEnv, CoreBndr)
substBndr :: SpecEnv -> Id -> (SpecEnv, Id)
substBndr SpecEnv
env Id
bs = case Subst -> Id -> (Subst, Id)
CoreSubst.substBndr (SpecEnv -> Subst
se_subst SpecEnv
env) Id
bs of
(Subst
subst', Id
bs') -> (SpecEnv
env { se_subst :: Subst
se_subst = Subst
subst' }, Id
bs')
substBndrs :: SpecEnv -> [CoreBndr] -> (SpecEnv, [CoreBndr])
substBndrs :: SpecEnv -> [Id] -> (SpecEnv, [Id])
substBndrs SpecEnv
env [Id]
bs = case Subst -> [Id] -> (Subst, [Id])
CoreSubst.substBndrs (SpecEnv -> Subst
se_subst SpecEnv
env) [Id]
bs of
(Subst
subst', [Id]
bs') -> (SpecEnv
env { se_subst :: Subst
se_subst = Subst
subst' }, [Id]
bs')
cloneBindSM :: SpecEnv -> CoreBind -> SpecM (SpecEnv, SpecEnv, CoreBind)
cloneBindSM :: SpecEnv -> Bind Id -> SpecM (SpecEnv, SpecEnv, Bind Id)
cloneBindSM env :: SpecEnv
env@(SE { se_subst :: SpecEnv -> Subst
se_subst = Subst
subst, se_interesting :: SpecEnv -> VarSet
se_interesting = VarSet
interesting }) (NonRec Id
bndr Expr Id
rhs)
= do { UniqSupply
us <- SpecM UniqSupply
forall (m :: * -> *). MonadUnique m => m UniqSupply
getUniqueSupplyM
; let (Subst
subst', Id
bndr') = Subst -> UniqSupply -> Id -> (Subst, Id)
CoreSubst.cloneIdBndr Subst
subst UniqSupply
us Id
bndr
interesting' :: VarSet
interesting' | SpecEnv -> Expr Id -> Bool
interestingDict SpecEnv
env Expr Id
rhs
= VarSet
interesting VarSet -> Id -> VarSet
`extendVarSet` Id
bndr'
| Bool
otherwise = VarSet
interesting
; (SpecEnv, SpecEnv, Bind Id) -> SpecM (SpecEnv, SpecEnv, Bind Id)
forall (m :: * -> *) a. Monad m => a -> m a
return (SpecEnv
env, SpecEnv
env { se_subst :: Subst
se_subst = Subst
subst', se_interesting :: VarSet
se_interesting = VarSet
interesting' }
, Id -> Expr Id -> Bind Id
forall b. b -> Expr b -> Bind b
NonRec Id
bndr' Expr Id
rhs) }
cloneBindSM env :: SpecEnv
env@(SE { se_subst :: SpecEnv -> Subst
se_subst = Subst
subst, se_interesting :: SpecEnv -> VarSet
se_interesting = VarSet
interesting }) (Rec [(Id, Expr Id)]
pairs)
= do { UniqSupply
us <- SpecM UniqSupply
forall (m :: * -> *). MonadUnique m => m UniqSupply
getUniqueSupplyM
; let (Subst
subst', [Id]
bndrs') = Subst -> UniqSupply -> [Id] -> (Subst, [Id])
CoreSubst.cloneRecIdBndrs Subst
subst UniqSupply
us (((Id, Expr Id) -> Id) -> [(Id, Expr Id)] -> [Id]
forall a b. (a -> b) -> [a] -> [b]
map (Id, Expr Id) -> Id
forall a b. (a, b) -> a
fst [(Id, Expr Id)]
pairs)
env' :: SpecEnv
env' = SpecEnv
env { se_subst :: Subst
se_subst = Subst
subst'
, se_interesting :: VarSet
se_interesting = VarSet
interesting VarSet -> [Id] -> VarSet
`extendVarSetList`
[ Id
v | (Id
v,Expr Id
r) <- [(Id, Expr Id)]
pairs, SpecEnv -> Expr Id -> Bool
interestingDict SpecEnv
env Expr Id
r ] }
; (SpecEnv, SpecEnv, Bind Id) -> SpecM (SpecEnv, SpecEnv, Bind Id)
forall (m :: * -> *) a. Monad m => a -> m a
return (SpecEnv
env', SpecEnv
env', [(Id, Expr Id)] -> Bind Id
forall b. [(b, Expr b)] -> Bind b
Rec ([Id]
bndrs' [Id] -> [Expr Id] -> [(Id, Expr Id)]
forall a b. [a] -> [b] -> [(a, b)]
`zip` ((Id, Expr Id) -> Expr Id) -> [(Id, Expr Id)] -> [Expr Id]
forall a b. (a -> b) -> [a] -> [b]
map (Id, Expr Id) -> Expr Id
forall a b. (a, b) -> b
snd [(Id, Expr Id)]
pairs)) }
newDictBndr :: SpecEnv -> CoreBndr -> SpecM CoreBndr
newDictBndr :: SpecEnv -> Id -> SpecM Id
newDictBndr SpecEnv
env Id
b = do { Unique
uniq <- SpecM Unique
forall (m :: * -> *). MonadUnique m => m Unique
getUniqueM
; let n :: Name
n = Id -> Name
idName Id
b
ty' :: Type
ty' = SpecEnv -> Type -> Type
substTy SpecEnv
env (Id -> Type
idType Id
b)
; Id -> SpecM Id
forall (m :: * -> *) a. Monad m => a -> m a
return (OccName -> Unique -> Type -> SrcSpan -> Id
mkUserLocalOrCoVar (Name -> OccName
nameOccName Name
n) Unique
uniq Type
ty' (Name -> SrcSpan
forall a. NamedThing a => a -> SrcSpan
getSrcSpan Name
n)) }
newSpecIdSM :: Id -> Type -> Maybe JoinArity -> SpecM Id
newSpecIdSM :: Id -> Type -> Maybe Int -> SpecM Id
newSpecIdSM Id
old_id Type
new_ty Maybe Int
join_arity_maybe
= do { Unique
uniq <- SpecM Unique
forall (m :: * -> *). MonadUnique m => m Unique
getUniqueM
; let name :: Name
name = Id -> Name
idName Id
old_id
new_occ :: OccName
new_occ = OccName -> OccName
mkSpecOcc (Name -> OccName
nameOccName Name
name)
new_id :: Id
new_id = OccName -> Unique -> Type -> SrcSpan -> Id
mkUserLocalOrCoVar OccName
new_occ Unique
uniq Type
new_ty (Name -> SrcSpan
forall a. NamedThing a => a -> SrcSpan
getSrcSpan Name
name)
Id -> Maybe Int -> Id
`asJoinId_maybe` Maybe Int
join_arity_maybe
; Id -> SpecM Id
forall (m :: * -> *) a. Monad m => a -> m a
return Id
new_id }