a draft for the generalized control operators

This commit is contained in:
Krasimir Angelov
2025-05-09 18:58:27 +02:00
parent 544bbd9049
commit 3d7c8ade17
11 changed files with 105 additions and 103 deletions

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@@ -287,10 +287,6 @@ eval env (Markup tag as ts) [] =
do as <- mapM (\(id,t) -> eval env t [] >>= \v -> return (id,v)) as
vs <- mapM (\t -> eval env t []) ts
return (VMarkup tag as vs)
eval env (Reset c t) [] = do let limit All = id
limit (Limit n) = fmap (genericTake n)
vs <- limit c (reset (eval env t []))
return (VMarkup identW [] vs)
eval env (TSymCat d r rs) []= do rs <- forM rs $ \(i,(pv,ty)) ->
case lookup pv env of
Just tnk -> return (i,(tnk,ty))

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@@ -86,7 +86,7 @@ data Value
| VAlts Value [(Value, Value)]
| VStrs [Value]
| VMarkup Ident [(Ident,Value)] [Value]
| VReset Control Value
| VReset Ident (Maybe Value) Value QIdent
| VSymCat Int LIndex [(LIndex, (Value, Type))]
| VError Doc
-- These two constructors are only used internally
@@ -124,7 +124,7 @@ isCanonicalForm False (VFV c vs) = all (isCanonicalForm False) (unvaria
isCanonicalForm flat (VAlts d vs) = all (isCanonicalForm flat . snd) vs
isCanonicalForm flat (VStrs vs) = all (isCanonicalForm flat) vs
isCanonicalForm flat (VMarkup tag as vs) = all (isCanonicalForm flat . snd) as && all (isCanonicalForm flat) vs
isCanonicalForm flat (VReset ctl v) = isCanonicalForm flat v
isCanonicalForm flat (VReset ctl cv v _) = maybe True (isCanonicalForm flat) cv && isCanonicalForm flat v
isCanonicalForm flat _ = False
data ConstValue a
@@ -324,7 +324,7 @@ eval g env c (Markup tag as ts) [] =
vas = mapC (\c (id,t) -> (id,eval g env c t [])) c1 as
vs = mapC (\c t -> eval g env c t []) c2 ts
in (VMarkup tag vas vs)
eval g env c (Reset ctl t) [] = VReset ctl (eval g env c t [])
eval g env c (Reset ctl mb_ct t qid) [] = VReset ctl (fmap (\t -> eval g env c t []) mb_ct) (eval g env c t []) qid
eval g env c (TSymCat d r rs) []= VSymCat d r [(i,(fromJust (lookup pv env),ty)) | (i,(pv,ty)) <- rs]
eval g env c t@(Opts n cs) vs = if null cs
then VError ("No options in expression:" $$ ppTerm Unqualified 0 t)
@@ -422,7 +422,7 @@ bubble v = snd (bubble v)
let (union1,attrs') = mapAccumL descend' Map.empty attrs
(union2,vs') = mapAccumL descend union1 vs
in (union2, VMarkup tag attrs' vs')
bubble (VReset ctl v) = lift1 (VReset ctl) v
bubble (VReset ctl mb_cv v id) = lift1 (\v -> VReset ctl mb_cv v id) v
bubble (VSymCat d i0 vs) =
let (union,vs') = mapAccumL descendC Map.empty vs
in (union, addVariants (VSymCat d i0 vs') union)
@@ -932,26 +932,42 @@ value2termM flat xs (VMarkup tag as vs) = do
as <- mapM (\(id,v) -> value2termM flat xs v >>= \t -> return (id,t)) as
ts <- mapM (value2termM flat xs) vs
return (Markup tag as ts)
value2termM flat xs (VReset ctl v) = do
value2termM flat xs (VReset ctl mb_cv v qid) = do
ts <- reset (value2termM True xs v)
case ctl of
All -> case ts of
[t] -> return t
ts -> return (Markup identW [] ts)
One -> case ts of
[] -> mzero
(t:ts) -> return t
Limit n -> case genericTake n ts of
[t] -> return t
ts -> return (Markup identW [] ts)
Coordination (Just mn) conj id ->
case ts of
[] -> mzero
[t] -> return t
ts -> do let cat = showIdent id
t <- listify mn cat ts
return (App (App (QC (mn,identS ("Conj"++cat))) (QC (mn,conj))) t)
reduce ctl mb_cv ts
where
reduce ctl mb_cv ts
| ctl == cConcat = do
ts' <- case mb_cv of
Just (VInt n) -> return (genericTake n ts)
Nothing -> return ts
_ -> evalError (pp "[concat: .. | ..] requires an integer constant")
case ts of
[t] -> return t
ts -> return (Markup identW [] ts)
| ctl == cOne =
case (ts,mb_cv) of
([] ,Nothing) -> mzero
([] ,Just v) -> value2termM flat xs v
(t:ts,_) -> return t
| ctl == cDefault =
case (ts,mb_cv) of
([] ,Nothing) -> mzero
([] ,Just v) -> value2termM flat xs v
(ts,_) -> msum (map pure ts)
| ctl == cList =
case (ts,mb_cv) of
([], _) -> mzero
([t], _) -> return t
(ts,Just cv) ->
do let cat = showIdent (snd qid)
mn = fst qid
ct <- value2termM flat xs cv
t <- listify mn cat ts
return (App (App (QC (mn,identS ("Conj"++cat))) ct) t)
_ -> evalError (pp "[list: .. | ..] requires an argument")
| otherwise = evalError (pp "Operator" <+> pp ctl <+> pp "is not defined")
listify mn cat [t1,t2] = do return (App (App (QC (mn,identS ("Base"++cat))) t1) t2)
listify mn cat (t1:ts) = do t2 <- listify mn cat ts
return (App (App (QC (mn,identS ("Cons"++cat))) t1) t2)

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@@ -238,21 +238,12 @@ renameTerm env vars = ren vars where
(p',_) <- renpatt p
return $ EPatt minp maxp p'
Reset ctl t -> do
ctl <- case ctl of
Coordination _ conj cat ->
checks [ do t <- renid' (Cn conj)
case t of
Q (mn,id) -> return (Coordination (Just mn) conj cat)
QC (mn,id) -> return (Coordination (Just mn) conj cat)
_ -> return (Coordination Nothing conj cat)
, if showIdent conj == "one"
then return One
else checkError ("Undefined control" <+> pp conj)
]
ctl -> do return ctl
Reset ctl mb_ct t qid -> do
mv_ct <- case mb_ct of
Just ct -> liftM Just $ ren vs ct
Nothing -> return mb_ct
t <- ren vs t
return (Reset ctl t)
return (Reset ctl mv_ct t qid)
_ -> composOp (ren vs) trm

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@@ -370,21 +370,43 @@ tcRho scope c (Markup tag attrs children) mb_ty = do
c1 attrs
res <- mapCM (\c child -> tcRho scope c child Nothing) c2 children
instSigma scope c3 (Markup tag attrs (map fst res)) vtypeMarkup mb_ty
tcRho scope c (Reset ctl t) mb_ty =
let (c1,c2) = split c
in case ctl of
All -> do (t,_) <- tcRho scope c1 t Nothing
instSigma scope c2 (Reset ctl t) vtypeMarkup mb_ty
One -> do (t,ty) <- tcRho scope c t mb_ty
return (Reset ctl t,ty)
Limit n -> do (t,_) <- tcRho scope c1 t Nothing
instSigma scope c2 (Reset ctl t) vtypeMarkup mb_ty
Coordination mb_mn@(Just mn) conj _
-> do tcRho scope c1 (QC (mn,conj)) (Just (VApp poison (mn,identS "Conj") []))
(t,ty) <- tcRho scope c2 t mb_ty
case ty of
VApp c id [] -> return (Reset (Coordination mb_mn conj (snd id)) t, ty)
_ -> evalError (pp "Needs atomic type"<+>ppValue Unqualified 0 ty)
tcRho scope c (Reset ctl mb_ct t qid) mb_ty
| ctl == cConcat = do
let (c1,c23) = split c
(c2,c3 ) = split c23
(t,_) <- tcRho scope c1 t Nothing
mb_ct <- case mb_ct of
Just ct -> do (ct,_) <- tcRho scope c2 ct (Just vtypeInt)
return (Just ct)
Nothing -> return Nothing
instSigma scope c2 (Reset ctl mb_ct t qid) vtypeMarkup mb_ty
| ctl == cOne = do
let (c1,c2) = split c
(t,ty) <- tcRho scope c1 t mb_ty
mb_ct <- case mb_ct of
Just ct -> do (ct,ty) <- tcRho scope c2 ct (Just ty)
return (Just ct)
Nothing -> return Nothing
return (Reset ctl mb_ct t qid,ty)
| ctl == cDefault = do
let (c1,c2) = split c
(t,ty) <- tcRho scope c1 t mb_ty
mb_ct <- case mb_ct of
Just ct -> do (ct,ty) <- tcRho scope c2 ct (Just ty)
return (Just ct)
Nothing -> evalError (pp "[list: .. | ..] requires an argument")
return (Reset ctl mb_ct t qid,ty)
| ctl == cList = do
do let (c1,c2) = split c
mb_ct <- case mb_ct of
Just ct -> do (ct,ty) <- tcRho scope c1 ct Nothing
return (Just ct)
Nothing -> evalError (pp "[list: .. | ..] requires an argument")
(t,ty) <- tcRho scope c2 t mb_ty
case ty of
VApp c qid [] -> return (Reset ctl mb_ct t qid, ty)
_ -> evalError (pp "Needs atomic type"<+>ppValue Unqualified 0 ty)
| otherwise = evalError (pp "Operator" <+> pp ctl <+> pp "is not defined")
tcRho scope s (Opts n cs) mb_ty = do
let (s1,s2,s3) = split3 s
(n,_) <- tcRho scope s1 n Nothing

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@@ -44,7 +44,6 @@ module GF.Grammar.Grammar (
Fun,
QIdent,
BindType(..),
Control(..),
Patt(..),
TInfo(..),
Label(..),
@@ -400,7 +399,7 @@ data Term =
| FV [Term] -- ^ alternatives in free variation: @variants { s ; ... }@
| Markup Ident [(Ident,Term)] [Term]
| Reset Control Term
| Reset Ident (Maybe Term) Term QIdent
| Alts Term [(Term, Term)] -- ^ alternatives by prefix: @pre {t ; s\/c ; ...}@
| Strs [Term] -- ^ conditioning prefix strings: @strs {s ; ...}@
@@ -408,13 +407,6 @@ data Term =
| TSymVar Int Int
deriving (Show, Eq, Ord)
data Control
= All
| One
| Limit Integer
| Coordination (Maybe ModuleName) Ident Ident
deriving (Show, Eq, Ord)
-- | Patterns
data Patt =
PC Ident [Patt] -- ^ constructor pattern: @C p1 ... pn@ @C@

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@@ -129,14 +129,8 @@ term2json (Markup tag attrs children) = makeObj [ ("tag",showJSON tag)
, ("attrs",showJSON (map (\(attr,val) -> (showJSON attr,term2json val)) attrs))
, ("children",showJSON (map term2json children))
]
term2json (Reset ctl t) =
let jctl = case ctl of
All -> showJSON "all"
One -> showJSON "one"
Limit n -> showJSON n
Coordination Nothing conj cat -> makeObj [("conj",showJSON conj), ("cat",showJSON cat)]
Coordination (Just mod) conj cat -> makeObj [("mod",showJSON mod), ("conj",showJSON conj), ("cat",showJSON cat)]
in makeObj [("reset",jctl), ("term",term2json t)]
term2json (Reset ctl ct t qid) =
makeObj ([("ctl",showJSON ctl)]++maybe [] (\t->[("ct",term2json t)]) ct++[("term",term2json t), ("qid",showJSON qid)])
term2json (Alts def alts) = makeObj [("def",term2json def), ("alts",showJSON (map (\(t1,t2) -> (term2json t1, term2json t2)) alts))]
term2json (Strs ts) = makeObj [("strs",showJSON (map term2json ts))]
term2json (EPatt _ _ p) = makeObj [("epatt",patt2json p)]
@@ -186,7 +180,8 @@ json2term o = Vr <$> o!:"vr"
<|> Markup <$> (o!:"tag") <*>
(o!:"attrs" >>= mapM (\(attr,val) -> fmap ((,)attr) (json2term val))) <*>
(o!:"children" >>= mapM json2term)
<|> Reset <$> (readJSON >=> valFromObj "reset" >=> json2ctl) o <*> o!<"term"
<|> Reset <$> o!:"ctl" <*> fmap Just (o!<"ct") <*> o!<"term" <*> o!:"qid"
<|> Reset <$> o!:"ctl" <*> pure Nothing <*> o!<"term" <*> o!:"qid"
<|> Alts <$> (o!<"def") <*> (o!:"alts" >>= mapM (\(x,y) -> liftM2 (,) (json2term x) (json2term y)))
<|> Strs <$> (o!:"strs" >>= mapM json2term)
where
@@ -202,17 +197,6 @@ json2term o = Vr <$> o!:"vr"
mkC [] = Empty
mkC (t:ts) = foldl C t ts
json2ctl (JSString (JSONString "all")) = return All
json2ctl (JSString (JSONString "one")) = return One
json2ctl (JSRational _ i) = return (Limit (round i))
json2ctl (JSObject o) = do
mb_mod <- fmap Just (valFromObj "mod" o) <|> return Nothing
conj <- valFromObj "conj" o
cat <- valFromObj "cat" o
return (Coordination mb_mod conj cat)
json2ctl _ = fail "Invalid control value for reset"
patt2json (PC id ps) = makeObj [("pc",showJSON id),("args",showJSON (map patt2json ps))]
patt2json (PP (mn,id) ps) = makeObj [("mod",showJSON mn),("pc",showJSON id),("args",showJSON (map patt2json ps))]
patt2json (PV id) = makeObj [("pv",showJSON id)]

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@@ -116,7 +116,6 @@ data Token
| T_lam
| T_lamlam
| T_cbrack
| T_reset
| T_ocurly
| T_bar
| T_ccurly
@@ -213,7 +212,6 @@ coreResWords = Map.fromList
, b "?" T_questmark
, b "[" T_obrack
, b "]" T_cbrack
, b "[:" T_reset
, b "\\" T_lam
, b "\\\\" T_lamlam
, b "{" T_ocurly

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@@ -418,7 +418,7 @@ composOp co trm =
ELin c ty -> liftM (ELin c) (co ty)
ImplArg t -> liftM ImplArg (co t)
Markup t as cs -> liftM2 (Markup t) (mapAttrs co as) (mapM co cs)
Reset c t -> liftM (Reset c) (co t)
Reset ctl ct t qid->liftM2 (\mb_ct t->Reset ctl ct t qid) (maybe (pure Nothing) (fmap Just . co) ct) (co t)
Typed t ty -> liftM2 Typed (co t) (co ty)
_ -> return trm -- covers K, Vr, Cn, Sort, EPatt
@@ -459,7 +459,7 @@ collectOp co trm = case trm of
FV ts -> mconcatMap co ts
Strs tt -> mconcatMap co tt
Markup t as cs -> mconcatMap (co.snd) as <> mconcatMap co cs
Reset _ t -> co t
Reset _ ct t _-> maybe mempty co ct <> co t
_ -> mempty -- covers K, Vr, Cn, Sort
mconcatMap f = mconcat . map f

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@@ -68,7 +68,6 @@ import qualified Data.Map as Map
'@' { T_at }
'[' { T_obrack }
']' { T_cbrack }
'[:' { T_reset }
'{' { T_ocurly }
'}' { T_ccurly }
'\\' { T_lam }
@@ -488,8 +487,8 @@ Exp6
| '{' ListLocDef '}' {% mkR $2 }
| '<' ListTupleComp '>' { R (tuple2record $2) }
| '<' Exp ':' Exp '>' { Typed $2 $4 }
| '[:' Control '|' Tag ']' { Reset $2 $4 }
| '[:' Control '|' Exp ']' { Reset $2 $4 }
| '[' Control '|' Tag ']' { Reset (fst $2) (snd $2) $4 undefined }
| '[' Control '|' Exp ']' { Reset (fst $2) (snd $2) $4 undefined }
| '(' Exp ')' { $2 }
ListExp :: { [Term] }
@@ -747,10 +746,9 @@ ListMarkup :: { [Term] }
| Exp { [$1] }
| Markup ListMarkup { $1 : $2 }
Control :: { Control }
: { All }
| Integer { Limit (fromIntegral $1) }
| Ident { Coordination Nothing $1 identW }
Control :: { (Ident,Maybe Term) }
: Ident { ($1, Nothing) }
| Ident ':' Exp6 { ($1, Just $3) }
Attributes :: { [(Ident,Term)] }
Attributes

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@@ -61,6 +61,12 @@ cToStr = identS "toStr"
cMapStr = identS "mapStr"
cError = identS "error"
-- * Used in the delimited continuations
cConcat = identS "concat"
cOne = identS "one"
cDefault = identS "default"
cList = identS "list"
-- * Hacks: dummy identifiers used in various places.
-- Not very nice!

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@@ -256,8 +256,11 @@ ppTerm q d (Markup tag attrs children)
| otherwise = pp "<" <> pp tag <+> hsep (map (ppMarkupAttr q) attrs) <> pp ">" $$
nest 3 (ppMarkupChildren q children) $$
pp "</" <> pp tag <> pp ">"
ppTerm q d (Reset ctl t)
= pp "[:" <> ppControl q ctl <+> pp "|" <> ppTerm q 0 t <> pp "]"
ppTerm q d (Reset ctl ct t _)
= pp "[" <> pp ctl <>
maybe empty (\t -> ':' <+> ppTerm q 6 t) ct <>
pp "|" <> ppTerm q 0 t <>
pp "]"
ppTerm q d (TSymCat i r rs) = pp '<' <> pp i <> pp ',' <> ppLinFun (pp.fst) r rs <> pp '>'
ppTerm q d (TSymVar i r) = pp '<' <> pp i <> pp ',' <> pp '$' <> pp r <> pp '>'
@@ -265,12 +268,8 @@ ppEquation q (ps,e) = hcat (map (ppPatt q 2) ps) <+> "->" <+> ppTerm q 0 e
ppCase q (p,e) = ppPatt q 0 p <+> "=>" <+> ppTerm q 0 e
ppControl q All = empty
ppControl q One = pp "one"
ppControl q (Limit n) = pp n
ppControl q (Coordination mb_mn n _) = ppTerm q 0 (case mb_mn of
Just mn -> QC (mn,n)
Nothing -> Cn n)
ppControl q (id,Nothing) = pp id
ppControl q (id,Just t ) = pp id <> ':' <+> ppTerm q 6 t
instance Pretty Patt where pp = ppPatt Unqualified 0