Add CFG construction

This commit is contained in:
Enrico Lumetti 2024-10-13 20:22:53 +02:00
parent 27f24389ae
commit 690985cb87
3 changed files with 99 additions and 4 deletions

View File

@ -17,7 +17,7 @@ build-type: Simple
extra-source-files: README.md
library eoc-lib
exposed-modules: Eoc, Bril
exposed-modules: Eoc, Bril, Bril.CFG
hs-source-dirs: lib
build-depends:
base >=4.13 && <4.18,
@ -25,8 +25,9 @@ library eoc-lib
aeson >= 2.2,
sorted-list ^>= 0.2,
bytestring ^>= 0.11,
scientific ^>= 0.3
default-language: Haskell2010
scientific ^>= 0.3,
containers ^>= 0.6.7
default-language: Haskell2010
default-extensions: DeriveGeneric, OverloadedStrings
executable eoc
@ -46,6 +47,7 @@ test-suite tests
build-depends:
base >=4.13 && <4.18,
HUnit >=1.6,
QuickCheck ^>=2.15,
eoc-lib,
text >= 2.0,
aeson >= 2.2

85
lib/Bril/CFG.hs Normal file
View File

@ -0,0 +1,85 @@
module Bril.CFG (BasicBlock, CFG, createCFG) where
import Bril
import qualified Data.Map.Strict as Map
data BasicBlock = BasicBlock {
instrs :: [Instruction],
incoming :: [String]
}
deriving (Show)
data CFG = CFG {
cfgBlocks :: Map.Map String BasicBlock,
cfgStart :: String
}
deriving (Show)
createCFG :: [Instruction] -> CFG
createCFG instrs =
let
(initCFG, firstLabel) = initializeCFG $ addFallthroughJmp $ splitBBs $ addInitialLabel instrs
cfgBlocks' = foldr processBB (cfgBlocks initCFG) (Map.keys (cfgBlocks initCFG))
in
CFG cfgBlocks' firstLabel
where
processBB :: String -> Map.Map String BasicBlock -> Map.Map String BasicBlock
processBB label m = addBBJumps label (outgoingCFGLabels m label) m
addBBJumps :: String -> [String] -> Map.Map String BasicBlock -> Map.Map String BasicBlock
addBBJumps bblockLabel incomingLabels m = Map.adjust (addLabels incomingLabels) bblockLabel m
addLabels :: [String] -> BasicBlock -> BasicBlock
addLabels labels (BasicBlock instrs incoming) = (BasicBlock instrs (incoming ++ labels))
initializeCFG :: [([Instruction], String)] -> (CFG, String)
initializeCFG instrs =
let mappedBlocks = foldr mapBlock Map.empty instrs -- Map.fromList $ map swap instrs
firstLabel = snd . head $ instrs
in (CFG mappedBlocks firstLabel, firstLabel)
where
mapBlock (instrs, label) m = Map.insert label (BasicBlock instrs []) m
addFallthroughJmp :: [([Instruction], String)] -> [([Instruction], String)]
addFallthroughJmp blocks =
let blocks' = map addJumpToNextBB $ zip blocks $ tail $ map snd blocks
in blocks' ++ [last blocks]
where
addJumpToNextBB (block@(instrs, label), nextLabel)
-- TODO: handle empty instrs
| isJump (last instrs) = block
| otherwise = (instrs ++ [EffectInstr Jmp [] [] [nextLabel]], label)
splitBBs :: [Instruction] -> [([Instruction], String)]
splitBBs instrs = zip (tail basicBlocks) labels
where
(basicBlocks, labels) = foldr splitBBs' ([[]], []) instrs
splitBBs' instr (bblocks, labels)
| isLabel instr = ([] : bblocks, (labelName instr) : labels)
| isJump instr = ([instr] : (tail bblocks) , labels)
| otherwise = ((instr : (head bblocks)) : (tail bblocks), labels)
addInitialLabel :: [Instruction] -> [Instruction]
addInitialLabel instrs@(firstInstr : instrs')
| isLabel firstInstr = instrs
| otherwise = (Label "@start") : instrs
addInitialLabel [] = []
labelName (Label name) = name
isLabel instr = case instr of
(Label _) -> True
_ -> False
isJump instr = case instr of
(EffectInstr op _ _ _) -> op == Jmp || op == Br
_ -> False
outgoingCFGLabels :: Map.Map String BasicBlock -> String -> [String]
outgoingCFGLabels m label =
case Map.lookup label m of
Just bb -> outgoingLabels bb
_ -> []
outgoingLabels :: BasicBlock -> [String]
outgoingLabels (BasicBlock instrs _) =
let (EffectInstr lastOp _ _ labels) = last instrs
in labels

View File

@ -1,7 +1,8 @@
module Main where
import qualified Bril as B
import Data.Aeson (eitherDecode, decode, toJSON, parseJSON, Result(..))
import qualified Bril.CFG as BCFG
import Data.Aeson (eitherDecode, decode, encode, toJSON, parseJSON, Result(..))
import Data.Aeson.Types (parse)
import Data.Text
import Data.Maybe
@ -10,6 +11,7 @@ import Data.Function ((&))
import Control.Exception (try)
import Test.HUnit
import qualified Test.QuickCheck as QC
import qualified System.Exit as Exit
testTypes :: Test
@ -92,6 +94,10 @@ testProgramFromFiles = TestCase $ do
(Right parseResult) -> assertBool "parse add.json" $ isRight parseResult
_ -> assertFailure "cannot open file"
prop_InvariantBrilSerialization :: B.Program -> Bool
prop_InvariantBrilSerialization program =
(decode (encode program)) == (Just program)
tests :: Test
tests = TestList [
@ -104,4 +110,6 @@ tests = TestList [
main :: IO ()
main = do
result <- runTestTT tests
-- QC.quickCheck prop_InvariantBrilSerialization
if failures result > 0 then Exit.exitFailure else Exit.exitSuccess