------------------------------------------------------------------------------
--- Just preprocess a file, put the result in a temp. file (used by the
--- compilation manager during the summary phase).
-
-preprocess :: FilePath -> IO FilePath
-preprocess filename =
- ASSERT(haskellish_src_file filename)
- do restoreDynFlags -- Restore to state of last save
- pipeline <- genPipeline (StopBefore Hsc) ("preprocess") False
- defaultHscLang filename
- runPipeline pipeline filename False{-no linking-} False{-no -o flag-}
-
------------------------------------------------------------------------------
--- Compile a single module, under the control of the compilation manager.
---
--- This is the interface between the compilation manager and the
--- compiler proper (hsc), where we deal with tedious details like
--- reading the OPTIONS pragma from the source file, and passing the
--- output of hsc through the C compiler.
-
--- The driver sits between 'compile' and 'hscMain', translating calls
--- to the former into calls to the latter, and results from the latter
--- into results from the former. It does things like preprocessing
--- the .hs file if necessary, and compiling up the .stub_c files to
--- generate Linkables.
-
--- NB. No old interface can also mean that the source has changed.
-
-compile :: GhciMode -- distinguish batch from interactive
- -> ModSummary -- summary, including source
- -> Bool -- True <=> source unchanged
- -> Bool -- True <=> have object
- -> Maybe ModIface -- old interface, if available
- -> HomeSymbolTable -- for home module ModDetails
- -> HomeIfaceTable -- for home module Ifaces
- -> PersistentCompilerState -- persistent compiler state
- -> IO CompResult
-
-data CompResult
- = CompOK PersistentCompilerState -- updated PCS
- ModDetails -- new details (HST additions)
- ModIface -- new iface (HIT additions)
- (Maybe Linkable)
- -- new code; Nothing => compilation was not reqd
- -- (old code is still valid)
-
- | CompErrs PersistentCompilerState -- updated PCS
-
-
-compile ghci_mode summary source_unchanged have_object
- old_iface hst hit pcs = do
- dyn_flags <- restoreDynFlags -- Restore to the state of the last save
-
-
- showPass dyn_flags
- (showSDoc (text "Compiling" <+> ppr (name_of_summary summary)))
-
- let verb = verbosity dyn_flags
- let location = ms_location summary
- let input_fn = unJust "compile:hs" (ml_hs_file location)
- let input_fnpp = unJust "compile:hspp" (ml_hspp_file location)
-
- when (verb >= 2) (hPutStrLn stderr ("compile: input file " ++ input_fnpp))
-
- opts <- getOptionsFromSource input_fnpp
- processArgs dynamic_flags opts []
- dyn_flags <- getDynFlags
-
- let hsc_lang = hscLang dyn_flags
- (basename, _) = splitFilename input_fn
-
- output_fn <- case hsc_lang of
- HscAsm -> newTempName (phaseInputExt As)
- HscC -> newTempName (phaseInputExt HCc)
- HscJava -> newTempName "java" -- ToDo
- HscILX -> return (basename ++ ".ilx") -- newTempName "ilx" -- ToDo
- HscInterpreted -> return (error "no output file")
-
- let dyn_flags' = dyn_flags { hscOutName = output_fn,
- hscStubCOutName = basename ++ "_stub.c",
- hscStubHOutName = basename ++ "_stub.h",
- extCoreName = basename ++ ".core" }
-
- -- figure out which header files to #include in a generated .hc file
- c_includes <- getPackageCIncludes
- cmdline_includes <- dynFlag cmdlineHcIncludes -- -#include options
-
- let cc_injects = unlines (map mk_include
- (c_includes ++ reverse cmdline_includes))
- mk_include h_file =
- case h_file of
- '"':_{-"-} -> "#include "++h_file
- '<':_ -> "#include "++h_file
- _ -> "#include \""++h_file++"\""
-
- writeIORef v_HCHeader cc_injects
-
- -- run the compiler
- hsc_result <- hscMain ghci_mode dyn_flags'
- (ms_mod summary) location
- source_unchanged have_object old_iface hst hit pcs
-
- case hsc_result of
- HscFail pcs -> return (CompErrs pcs)
-
- HscNoRecomp pcs details iface -> return (CompOK pcs details iface Nothing)
-
- HscRecomp pcs details iface
- stub_h_exists stub_c_exists maybe_interpreted_code -> do
-
- let
- maybe_stub_o <- compileStub dyn_flags' stub_c_exists
- let stub_unlinked = case maybe_stub_o of
- Nothing -> []
- Just stub_o -> [ DotO stub_o ]
-
- (hs_unlinked, unlinked_time) <-
- case hsc_lang of
-
- -- in interpreted mode, just return the compiled code
- -- as our "unlinked" object.
- HscInterpreted ->
- case maybe_interpreted_code of
- Just (bcos,itbl_env) -> do tm <- getClockTime
- return ([BCOs bcos itbl_env], tm)
- Nothing -> panic "compile: no interpreted code"
-
- -- we're in batch mode: finish the compilation pipeline.
- _other -> do pipe <- genPipeline (StopBefore Ln) "" True
- hsc_lang output_fn
- -- runPipeline takes input_fn so it can split off
- -- the base name and use it as the base of
- -- the output object file.
- let (basename, suffix) = splitFilename input_fn
- o_file <- pipeLoop pipe output_fn False False
- basename suffix
- o_time <- getModificationTime o_file
- return ([DotO o_file], o_time)
-
- let linkable = LM unlinked_time (moduleName (ms_mod summary))
- (hs_unlinked ++ stub_unlinked)
-
- return (CompOK pcs details iface (Just linkable))
-
-
------------------------------------------------------------------------------
--- stub .h and .c files (for foreign export support)
-
-compileStub dflags stub_c_exists
- | not stub_c_exists = return Nothing
- | stub_c_exists = do
- -- compile the _stub.c file w/ gcc
- let stub_c = hscStubCOutName dflags
- pipeline <- genPipeline (StopBefore Ln) "" True defaultHscLang stub_c
- stub_o <- runPipeline pipeline stub_c False{-no linking-}
- False{-no -o option-}
-
- return (Just stub_o)