forked from GitHub/gf-core
PGF Web Service: include entire completion in full mode
When using full=yes in the web service 'complete' command,
you now get an additional field 'seq' with the longest possible completion.
So, given:
lin
f1 = ss "the" ;
f2 = ss ("the red house" | "the real deal") ;
and trying to complete on input "th", you get:
[
{
"from": "TestCnc",
"brackets": {
"cat": "_",
"fid": 0,
"index": 0,
"fun": "_",
"children": []
},
"text": "th",
"completions": [
{
"token": "the",
"funs": [
{
"fun": "f1",
"hyps": [],
"cat": "C",
"seq": "the"
},
{
"fun": "f2",
"hyps": [],
"cat": "C",
"seq": "the red house"
},
{
"fun": "f2",
"hyps": [],
"cat": "C",
"seq": "the real deal"
}
]
}
]
}
]
This commit is contained in:
@@ -15,7 +15,7 @@ module PGF.Parse
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import Data.Array.IArray
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import Data.Array.Base (unsafeAt)
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import Data.List (isPrefixOf, foldl')
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import Data.List (isPrefixOf, foldl', intercalate)
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import Data.Maybe (fromMaybe, maybeToList)
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import qualified Data.Map as Map
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import qualified PGF.TrieMap as TrieMap
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@@ -506,14 +506,26 @@ type Continuation = TrieMap.TrieMap Token ActiveSet
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-- | Return the Continuation of a Parsestate with exportable types
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-- Used by PGFService
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getContinuationInfo :: ParseState -> Map.Map [Token] [(FunId, CId)]
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getContinuationInfo :: ParseState -> Map.Map [Token] [(FunId, CId, String)]
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getContinuationInfo pstate = Map.map (map f . Set.toList) contMap
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where
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PState abstr concr chart cont = pstate
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contMap = Map.fromList (TrieMap.toList cont) -- always get [([], _::ActiveSet)]
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f :: Active -> (FunId,CId)
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f (Active int dotpos funid seqid pargs ak) = (funid, cid)
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where CncFun cid _ = cncfuns concr ! funid
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f :: Active -> (FunId,CId,String)
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f (Active int dotpos funid seqid pargs ak) = (funid, cid, seq)
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where
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CncFun cid _ = cncfuns concr ! funid
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seq = showSeq dotpos (sequences concr ! seqid)
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showSeq :: DotPos -> Sequence -> String
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showSeq pos seq = intercalate " " $ scan (drop (pos-1) (elems seq))
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where
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-- Scan left-to-right, stop at first non-token
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scan :: [Symbol] -> [String]
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scan [] = []
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scan (sym:syms) = case sym of
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SymKS token -> token : scan syms
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_ -> []
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----------------------------------------------------------------
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-- Error State
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@@ -30,7 +30,7 @@ import Control.Monad
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import Control.Monad.State(State,evalState,get,put)
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import Data.Char
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import Data.Function (on)
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import Data.List (sortBy,intersperse,mapAccumL,nub,isSuffixOf)
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import Data.List (sortBy,intersperse,mapAccumL,nub,isSuffixOf,nubBy)
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import qualified Data.Map as Map
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import Data.Maybe
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import System.Random
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@@ -594,18 +594,19 @@ completionInfo :: PGF -> PGF.Token -> PGF.ParseState -> JSValue
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completionInfo pgf token pstate =
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makeObj
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["token".= token
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,"funs" .= (nub (map mkFun funs))
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,"funs" .= (map mkFun (nubBy ignoreFunIds funs))
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]
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where
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contInfo = PGF.getContinuationInfo pstate
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funs = snd . head $ Map.toList contInfo -- always get [([],_)] ; funs :: [(fid,cid)]
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mkFun (funid,cid) = case PGF.functionType pgf cid of
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funs = snd . head $ Map.toList contInfo -- always get [([],_)] ; funs :: [(fid,cid,seq)]
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ignoreFunIds (_,cid1,seq1) (_,cid2,seq2) = (cid1,seq1) == (cid2,seq2)
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mkFun (funid,cid,seq) = case PGF.functionType pgf cid of
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Just typ ->
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makeObj [ "fid".=funid, "fun".=cid, "hyps".=hyps', "cat".=cat ]
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makeObj [ {-"fid".=funid,-} "fun".=cid, "hyps".=hyps', "cat".=cat, "seq".=seq ]
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where
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(hyps,cat,es) = PGF.unType typ
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hyps' = [ PGF.showType [] typ | (_,_,typ) <- hyps ]
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Nothing -> makeObj [] -- shouldn't happen
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Nothing -> makeObj [ "error".=("Function "++show cid++" not found") ] -- shouldn't happen
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doLinearize :: PGF -> PGF.Tree -> To -> JSValue
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doLinearize pgf tree (tos,unlex) = showJSON
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