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{-# LANGUAGE LambdaCase #-}
module Interpreter (
runInlineScript,
runInlineScript',
runScriptFile,
evaluate
) where
import qualified Data.Map as M
import qualified Data.List as L
import qualified Data.Maybe as MB
import Data.Function ( on )
import Control.Monad.State
import Control.Monad.Except
import Control.Exception ( try )
import Utils
import Builtins
import Tokenizer ( tokenize' )
import Parser ( parse )
_curryCall :: [AST] -> LFunction -> LContext AST
_curryCall [] f = return $ (makeNonsenseAST $ ASTFunction f)
_curryCall (arg:[]) f = f arg
_curryCall (arg:rest) f = do
g <- _curryCall rest f
case astNode g of
ASTFunction f' -> f' arg
other -> throwL (astPos g) $ "cannot call value " ++ show other ++ " as a function"
curryCall :: [AST] -> LFunction -> LContext AST
curryCall [] f = f (makeNonsenseAST ASTUnit)
curryCall args f = _curryCall args f
traverseAndReplace :: String -> AST -> AST -> AST
traverseAndReplace param arg ast@AST { astNode = ASTSymbol sym }
| sym == param = arg
| otherwise = ast
traverseAndReplace param arg ast@AST { astNode = ASTFunctionCall body } =
ast { astNode = ASTFunctionCall $ (map (traverseAndReplace param arg) body) }
traverseAndReplace param arg ast@AST { astNode = ASTVector vec } =
ast { astNode = ASTVector $ (map (traverseAndReplace param arg) vec) }
traverseAndReplace param arg ast@AST { astNode = ASTHashMap hmap } =
ast { astNode = ASTHashMap $ M.assocs hmap
$> L.concatMap (\(a, b) -> [a, b])
.> map (traverseAndReplace param arg)
.> asPairs .> M.fromList }
traverseAndReplace _ _ other = other
foldSymValPairs :: [(String, AST)] -> AST -> AST
foldSymValPairs [] body = body
foldSymValPairs ((sym, val):rest) body =
let replacedRestVals = map (snd .> traverseAndReplace sym val) rest
replacedRest = zip (map fst rest) (replacedRestVals)
replacedBody = traverseAndReplace sym val body
in foldSymValPairs replacedRest replacedBody
letArgsToSymValPairs :: [AST] -> LContext (String, AST)
letArgsToSymValPairs args =
case args of
[AST { astNode = ASTSymbol symbol' }, value'] -> do
evaledValue <- evaluate value'
return (symbol', evaledValue)
[AST { astNode = ASTSymbol "lazy" }, AST { astNode = ASTSymbol symbol' }, value'] -> do
return (symbol', value')
other -> throwL (astPos $ head other) $ "let! called with invalid args " ++ show other
defineUserFunction :: AST -> [AST] -> LContext LFunction
defineUserFunction paramAst@AST { astNode = ASTSymbol param } exprs = return fn where
fn :: LFunction
fn arg =
let ret = do
let replacedExprs = map (traverseAndReplace param arg) exprs
let letExprs = take (length exprs - 1) replacedExprs
letSymValPairs <- letExprs
$> mapM (\case AST { astNode = ASTFunctionCall v } -> return $ drop 1 v
ast -> throwL (astPos ast) $ "unreachable: map letExprs, ast: " ++ show ast)
.> fmap (mapM $ letArgsToSymValPairs) .> join
let body = head $ drop (length exprs - 1) replacedExprs
let newBody = traverseAndReplace param arg body
$> foldSymValPairs letSymValPairs
evaluate newBody
in ret `catchError`
appendError ("in a function definition at " ++ astPos paramAst)
defineUserFunction param exprs = throwL (astPos param)
$ "unreachable: defineUserFunction, param: " ++ show param ++ ", exprs: " ++ show exprs
defineUserFunctionWithLetExprs :: [AST] -> [AST] -> LContext LFunction
defineUserFunctionWithLetExprs [] exprs =
-- the position info is nonsensical, but it should never get read anyway
defineUserFunction (makeNonsenseAST $ ASTSymbol "unit") exprs
defineUserFunctionWithLetExprs (param:[]) exprs =
defineUserFunction param exprs
defineUserFunctionWithLetExprs (AST { astNode = ASTSymbol param }:rest) exprs = return fn where
fn :: LFunction
fn arg = do
let newExprs = map (traverseAndReplace param arg) exprs
ret <- defineUserFunctionWithLetExprs rest newExprs
-- the returned AST will not have the correct position info, but that's fine
-- because the info is overridden in evaluateFunctionDef anyway
return $ makeNonsenseAST $ ASTFunction $ ret
defineUserFunctionWithLetExprs (param:_) _ = throwL (astPos $ param)
$ "unreachable: defineUserFunctionWithLetExprs, param: " ++ show param
evaluateFunctionDef :: [AST] -> LContext AST
evaluateFunctionDef asts = do
let defAst = head asts
args = tail asts
(params'', exprs) <- case args of
args'
| length args' < 2 ->
throwL (astPos defAst) $ "\\ called with " ++ show (length args) ++ " arguments"
| otherwise -> return $ (head args', tail args')
AST { astNode = ASTVector params' } <- assertIsASTVector params''
params <- mapM assertIsASTSymbol params'
env <- getEnv
let isParamNameShadowing name = MB.isJust $ resolveSymbol name env
let shadowingParamM = L.find (asSymbol .> isParamNameShadowing) params
case shadowingParamM of
Just shadowingParam -> throwL (astPos shadowingParam)
$ "parameter is shadowing already defined symbol " ++ show (astNode shadowingParam)
Nothing -> return ()
let letExprs = take (length exprs - 1) exprs
let nonLetExprM = L.find (not . isLetAST) letExprs
case nonLetExprM of
Just nonLetExpr -> throwL (astPos nonLetExpr)
$ "non-let expression in function definition before body: " ++ show nonLetExpr
Nothing -> return ()
fn <- defineUserFunctionWithLetExprs params exprs
return $ defAst { astNode = ASTFunction fn }
where
isLetAST AST { astNode = ASTFunctionCall (AST { astNode = ASTSymbol "let!" }:_) } = True
isLetAST _ = False
asSymbol AST { astNode = ASTSymbol sym } = sym
asSymbol ast = error $ "unreachable: evaluateFunctionDef asSymbol, ast: " ++ show ast
evaluateMatch :: [AST] -> LContext AST
evaluateMatch asts = do
let matchAst = head asts
args = tail asts
(actualExpr, rest) <- case args of
[] -> throwL (astPos matchAst) $ "match called with no arguments"
(_:[]) -> throwL (astPos matchAst) "empty match cases"
(a:b) -> return (a, b)
pairs <- (asPairsM rest) `catchError`
(\_ -> throwL (astPos matchAst) $ "invalid number of arguments passed to match\n"
++ "- matching on expr: " ++ show actualExpr ++ "\n"
++ "- arguments: " ++ show rest)
evaledActual <- evaluate actualExpr
ret <- matchPairs (actualExpr, evaledActual) pairs
return $ matchAst { astNode = astNode ret }
where
matchPairs :: (AST, AST) -> [(AST, AST)] -> LContext AST
matchPairs (actualExpr, evaledActual) [] = throwL (astPos actualExpr)
$ "matching case not found when matching on expression: " ++ show actualExpr
++ " (actual value: " ++ show evaledActual ++ ")"
matchPairs (actualExpr, evaledActual) ((matcher, branch):restPairs) = do
evaledMatcher <- evaluate matcher
if evaledActual == evaledMatcher
then evaluate branch
else matchPairs (actualExpr, evaledActual) restPairs
evaluateLet :: [AST] -> LContext AST
evaluateLet asts = do
let letAst = head asts
args = tail asts
d <- getDepth
when (d > 1) $ throwL (astPos letAst) $ "let! can only be called on the top level or in a function definition, current depth: " ++ show d
(symbol, value) <- letArgsToSymValPairs args
env <- getEnv
when (MB.isJust $ resolveSymbol symbol env) $ throwL (astPos letAst) $ "symbol already defined: " ++ symbol
insertThisEnv symbol value
return $ letAst { astNode = ASTUnit }
evaluateEnv :: [AST] -> LContext AST
evaluateEnv asts = do
let envAst = head asts
d <- getDepth
when (d > 1) $ throwL (astPos envAst) $ "env! can only be called on the top level, current depth: " ++ show d
env <- getEnv
let pairs = M.assocs (M.union (envThis env) (envImported env))
let longestKey = L.maximumBy (compare `on` (length . fst)) pairs $> fst
let pad s = s ++ take (length longestKey + 4 - length s) (L.repeat ' ')
let rows = pairs $> map (\(k, v) -> pad k ++ show v)
liftIO $ mapM_ putStrLn rows
return $ envAst { astNode = ASTUnit }
evaluateImport :: [AST] -> LContext AST
evaluateImport asts = do
let importAst = head asts
args = tail asts
d <- getDepth
when (d > 1) $ throwL (astPos importAst) $ "import! can only be called on the top level, current depth: " ++ show d
config <- getConfig
let initialState = LState {
stateConfig = config,
stateDepth = 0,
stateEnv = emptyEnv { envImported = builtinEnv }
}
case args of
-- non-qualified import
[AST { astNode = ASTString path }] -> do
LState { stateEnv = evaledRawEnv } <- lift $ execStateT (runScriptFile path) initialState
let exportedEnvMap = envThis evaledRawEnv
env <- getEnv
let importedEnv = envImported env
putImportedEnv $ M.union importedEnv exportedEnvMap
return $ importAst { astNode = ASTUnit }
_ -> throwL (astPos importAst) $ "invalid arguments passed to import!: " ++ show args
evaluateUserFunction :: [AST] -> LContext AST
evaluateUserFunction children = do
let fnAst = head children
args = tail children
fnEvaled <- evaluate fnAst
AST { astNode = (ASTFunction fn) } <- assertIsASTFunction fnEvaled
evaledArgs <- mapM evaluate args
doubleEvaledArgs <- mapM evaluate evaledArgs
result <- curryCall (reverse doubleEvaledArgs) fn
-- todo: maybe remove double eval here? can't remember why it was added
return $ fnAst { astNode = astNode result }
resolveSymbol :: String -> Env -> Maybe AST
resolveSymbol sym Env { envThis = envThis, envImported = envImported }
| (MB.isJust $ thisValM) = thisValM
| (MB.isJust $ importedValM) = importedValM
| otherwise = Nothing
where
thisValM = M.lookup sym envThis
importedValM = M.lookup sym envImported
evaluateSymbol :: AST -> LContext AST
evaluateSymbol ast@AST { astNode = ASTSymbol sym } = do
env <- getEnv
let val = resolveSymbol sym env
case val of
Just ast' -> return ast'
Nothing -> throwL (astPos ast) $ "symbol " ++ sym ++ " not defined in environment"
evaluateSymbol ast = throwL (astPos ast) $ "unreachable: evaluateSymbol, ast: " ++ show ast
evaluate :: AST -> LContext AST
evaluate ast@AST { astNode = fnc@(ASTFunctionCall args@(x:_)) } =
do config <- getConfig
when (configPrintCallStack config) $ liftIO $ putStrLn $ "fn call: " ++ show fnc
incrementDepth
let task = case astNode x of
-- remember to add these as reseved keywords in Builtins!
ASTSymbol "\\" ->
evaluateFunctionDef args
ASTSymbol "match" ->
evaluateMatch args
ASTSymbol "let!" ->
evaluateLet args
ASTSymbol "env!" ->
evaluateEnv args
ASTSymbol "import!" ->
evaluateImport args
_ ->
evaluateUserFunction args
ret <- task `catchError`
appendError ("when calling function " ++ show x ++ " at " ++ astPos ast)
decrementDepth
return ret
evaluate ast@AST { astNode = (ASTSymbol _) } =
evaluateSymbol ast
evaluate ast@AST { astNode = (ASTVector vec) } =
do incrementDepth
rets <- mapM evaluate vec `catchError`
appendError ("when evaluating elements of vector " ++ show vec ++ " at " ++ astPos ast)
decrementDepth
return $ ast { astNode = ASTVector rets }
evaluate other =
return other
-- LIB
runScriptFile :: String -> LContext [AST]
runScriptFile fileName = do
let srcM :: IO (Either IOError String)
srcM = try $ readFile fileName
srcM' <- liftIO srcM
src <- case srcM' of
Right s -> return s
Left _ -> throwL "" $ "Failed to open file: \"" ++ fileName ++ "\""
runInlineScript fileName src
runInlineScript :: String -> String -> LContext [AST]
runInlineScript fileName src =
runInlineScript' 1 fileName src
runInlineScript' :: LineNo -> String -> String -> LContext [AST]
runInlineScript' lineNo fileName src = do
tokenized <- tokenize' (lineNo, 1) fileName src
LState { stateConfig = config } <- get
when (configVerboseMode config) $ liftIO $ putStrLn $ "tokenized:\t\t" ++ show tokenized
parsed <- parse tokenized
when (configVerboseMode config) $ do
let output = "parsed:\t\t\t" ++ (map show parsed $> L.intercalate "\n\t\t\t")
liftIO $ putStrLn output
evaluated <- foldEvaluate parsed
when (configPrintEvaled config) $ do
liftIO $ mapM_ putStrLn (map show evaluated)
return evaluated
where
foldEvaluate :: [AST] -> LContext [AST]
foldEvaluate [] = return []
foldEvaluate (ast:rest) = do
newAst <- evaluate ast
restEvaled <- foldEvaluate rest
return $ newAst : restEvaled
|