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|
%
% (c) The AQUA Project, Glasgow University, 1996-98
%
\section[CmdLineOpts]{Things to do with command-line options}
\begin{code}
module CmdLineOpts (
CoreToDo(..),
SimplifierSwitch(..),
StgToDo(..),
SwitchResult(..),
classifyOpts,
intSwitchSet,
switchIsOn,
src_filename,
-- debugging opts
opt_D_dump_absC,
opt_D_dump_asm,
opt_D_dump_cpranal,
opt_D_dump_cse,
opt_D_dump_deriv,
opt_D_dump_ds,
opt_D_dump_flatC,
opt_D_dump_foreign,
opt_D_dump_inlinings,
opt_D_dump_occur_anal,
opt_D_dump_parsed,
opt_D_dump_realC,
opt_D_dump_rn,
opt_D_dump_rules,
opt_D_dump_simpl,
opt_D_dump_simpl_iterations,
opt_D_dump_simpl_stats,
opt_D_dump_spec,
opt_D_dump_stg,
opt_D_dump_stranal,
opt_D_dump_tc,
opt_D_dump_types,
opt_D_dump_usagesp,
opt_D_dump_worker_wrapper,
opt_D_show_passes,
opt_D_dump_rn_trace,
opt_D_dump_rn_stats,
opt_D_dump_stix,
opt_D_dump_minimal_imports,
opt_D_source_stats,
opt_D_verbose_core2core,
opt_D_verbose_stg2stg,
opt_DoCoreLinting,
opt_DoStgLinting,
opt_DoUSPLinting,
opt_PprStyle_Debug,
opt_PprStyle_NoPrags,
opt_PprUserLength,
-- warning opts
opt_WarnDuplicateExports,
opt_WarnHiShadows,
opt_WarnIncompletePatterns,
opt_WarnMissingFields,
opt_WarnMissingMethods,
opt_WarnMissingSigs,
opt_WarnNameShadowing,
opt_WarnOverlappingPatterns,
opt_WarnSimplePatterns,
opt_WarnTypeDefaults,
opt_WarnUnusedBinds,
opt_WarnUnusedImports,
opt_WarnUnusedMatches,
opt_WarnDeprecations,
-- profiling opts
opt_AutoSccsOnAllToplevs,
opt_AutoSccsOnExportedToplevs,
opt_AutoSccsOnIndividualCafs,
opt_AutoSccsOnDicts,
opt_SccProfilingOn,
opt_DoTickyProfiling,
-- language opts
opt_AllStrict,
opt_DictsStrict,
opt_MaxContextReductionDepth,
opt_AllowOverlappingInstances,
opt_AllowUndecidableInstances,
opt_GlasgowExts,
opt_IrrefutableTuples,
opt_NumbersStrict,
opt_Parallel,
opt_SMP,
-- optimisation opts
opt_DoEtaReduction,
opt_DoSemiTagging,
opt_FoldrBuildOn,
opt_LiberateCaseThreshold,
opt_StgDoLetNoEscapes,
opt_UnfoldCasms,
opt_UsageSPOn,
opt_UnboxStrictFields,
opt_SimplNoPreInlining,
opt_SimplDoEtaReduction,
opt_SimplDoLambdaEtaExpansion,
opt_SimplCaseOfCase,
opt_SimplCaseMerge,
opt_SimplPedanticBottoms,
-- Unfolding control
opt_UF_HiFileThreshold,
opt_UF_CreationThreshold,
opt_UF_UseThreshold,
opt_UF_ScrutConDiscount,
opt_UF_FunAppDiscount,
opt_UF_PrimArgDiscount,
opt_UF_KeenessFactor,
opt_UF_CheapOp,
opt_UF_DearOp,
-- misc opts
opt_InPackage,
opt_EmitCExternDecls,
opt_EnsureSplittableC,
opt_GranMacros,
opt_HiMap,
opt_HiMapSep,
opt_HiVersion,
opt_HistorySize,
opt_IgnoreAsserts,
opt_IgnoreIfacePragmas,
opt_NoHiCheck,
opt_NoImplicitPrelude,
opt_OmitBlackHoling,
opt_OmitInterfacePragmas,
opt_ProduceExportCStubs,
opt_ProduceExportHStubs,
opt_ProduceHi,
opt_NoPruneTyDecls,
opt_NoPruneDecls,
opt_ReportCompile,
opt_SourceUnchanged,
opt_Static,
opt_Unregisterised,
opt_Verbose,
opt_OutputLanguage,
opt_OutputFile,
-- Code generation
opt_UseVanillaRegs,
opt_UseFloatRegs,
opt_UseDoubleRegs,
opt_UseLongRegs
) where
#include "HsVersions.h"
import Array ( array, (//) )
import GlaExts
import Argv
import Constants -- Default values for some flags
import FastString ( headFS )
import Maybes ( assocMaybe, firstJust, maybeToBool )
import Panic ( panic, panic# )
#if __GLASGOW_HASKELL__ < 301
import ArrBase ( Array(..) )
#else
import PrelArr ( Array(..) )
#endif
\end{code}
A command-line {\em switch} is (generally) either on or off; e.g., the
``verbose'' (-v) switch is either on or off.
A list of {\em ToDo}s is things to be done in a particular part of
processing. A (fictitious) example for the Core-to-Core simplifier
might be: run the simplifier, then run the strictness analyser, then
run the simplifier again (three ``todos'').
There are three ``to-do processing centers'' at the moment. In the
main loop (\tr{main/Main.lhs}), in the Core-to-Core processing loop
(\tr{simplCore/SimplCore.lhs), and in the STG-to-STG processing loop
(\tr{simplStg/SimplStg.lhs}).
%************************************************************************
%* *
\subsection{Datatypes associated with command-line options}
%* *
%************************************************************************
\begin{code}
data SwitchResult
= SwBool Bool -- on/off
| SwString FAST_STRING -- nothing or a String
| SwInt Int -- nothing or an Int
\end{code}
\begin{code}
data CoreToDo -- These are diff core-to-core passes,
-- which may be invoked in any order,
-- as many times as you like.
= CoreDoSimplify -- The core-to-core simplifier.
(SimplifierSwitch -> SwitchResult)
-- Each run of the simplifier can take a different
-- set of simplifier-specific flags.
| CoreDoFloatInwards
| CoreDoFloatOutwards Bool -- True <=> float lambdas to top level
| CoreLiberateCase
| CoreDoPrintCore
| CoreDoStaticArgs
| CoreDoStrictness
| CoreDoWorkerWrapper
| CoreDoSpecialising
| CoreDoUSPInf
| CoreDoCPResult
| CoreCSE
\end{code}
\begin{code}
data StgToDo
= StgDoStaticArgs
| StgDoLambdaLift
| StgDoMassageForProfiling -- should be (next to) last
-- There's also setStgVarInfo, but its absolute "lastness"
-- is so critical that it is hardwired in (no flag).
| D_stg_stats
\end{code}
\begin{code}
data SimplifierSwitch
= MaxSimplifierIterations Int
| SimplInlinePhase Int
| DontApplyRules
| NoCaseOfCase
| SimplLetToCase
\end{code}
%************************************************************************
%* *
\subsection{Classifying command-line options}
%* *
%************************************************************************
\begin{code}
lookUp :: FAST_STRING -> Bool
lookup_int :: String -> Maybe Int
lookup_def_int :: String -> Int -> Int
lookup_def_float :: String -> Float -> Float
lookup_str :: String -> Maybe String
lookUp sw = maybeToBool (assoc_opts sw)
lookup_str sw = firstJust (map (startsWith sw) unpacked_opts)
lookup_int sw = case (lookup_str sw) of
Nothing -> Nothing
Just xx -> Just (read xx)
lookup_def_int sw def = case (lookup_str sw) of
Nothing -> def -- Use default
Just xx -> read xx
lookup_def_char sw def = case (lookup_str sw) of
Just (xx:_) -> xx
_ -> def -- Use default
lookup_def_float sw def = case (lookup_str sw) of
Nothing -> def -- Use default
Just xx -> read xx
assoc_opts = assocMaybe [ (a, True) | a <- argv ]
unpacked_opts = map _UNPK_ argv
{-
Putting the compiler options into temporary at-files
may turn out to be necessary later on if we turn hsc into
a pure Win32 application where I think there's a command-line
length limit of 255. unpacked_opts understands the @ option.
assoc_opts = assocMaybe [ (_PK_ a, True) | a <- unpacked_opts ]
unpacked_opts :: [String]
unpacked_opts =
concat $
map (expandAts) $
map _UNPK_ argv
where
expandAts ('@':fname) = words (unsafePerformIO (readFile fname))
expandAts l = [l]
-}
\end{code}
\begin{code}
src_filename :: FAST_STRING
src_filename = case argv of
filename : rest | headFS filename /= '-' -> filename
otherwise -> panic "no filename"
\end{code}
\begin{code}
-- debugging opts
opt_D_dump_all {- do not -} = lookUp SLIT("-ddump-all")
opt_D_dump_most {- export -} = opt_D_dump_all || lookUp SLIT("-ddump-most")
opt_D_dump_absC = opt_D_dump_all || lookUp SLIT("-ddump-absC")
opt_D_dump_asm = opt_D_dump_all || lookUp SLIT("-ddump-asm")
opt_D_dump_cpranal = opt_D_dump_most || lookUp SLIT("-ddump-cpranal")
opt_D_dump_deriv = opt_D_dump_most || lookUp SLIT("-ddump-deriv")
opt_D_dump_ds = opt_D_dump_most || lookUp SLIT("-ddump-ds")
opt_D_dump_flatC = opt_D_dump_all || lookUp SLIT("-ddump-flatC")
opt_D_dump_foreign = opt_D_dump_most || lookUp SLIT("-ddump-foreign-stubs")
opt_D_dump_inlinings = opt_D_dump_all || lookUp SLIT("-ddump-inlinings")
opt_D_dump_occur_anal = opt_D_dump_all || lookUp SLIT("-ddump-occur-anal")
opt_D_dump_parsed = opt_D_dump_most || lookUp SLIT("-ddump-parsed")
opt_D_dump_realC = opt_D_dump_all || lookUp SLIT("-ddump-realC")
opt_D_dump_rn = opt_D_dump_most || lookUp SLIT("-ddump-rn")
opt_D_dump_simpl = opt_D_dump_most || lookUp SLIT("-ddump-simpl")
opt_D_dump_simpl_iterations = opt_D_dump_all || lookUp SLIT("-ddump-simpl-iterations")
opt_D_dump_spec = opt_D_dump_most || lookUp SLIT("-ddump-spec")
opt_D_dump_stg = opt_D_dump_most || lookUp SLIT("-ddump-stg")
opt_D_dump_stranal = opt_D_dump_most || lookUp SLIT("-ddump-stranal")
opt_D_dump_tc = opt_D_dump_most || lookUp SLIT("-ddump-tc")
opt_D_dump_types = opt_D_dump_most || lookUp SLIT("-ddump-types")
opt_D_dump_rules = opt_D_dump_most || lookUp SLIT("-ddump-rules")
opt_D_dump_usagesp = opt_D_dump_most || lookUp SLIT("-ddump-usagesp")
opt_D_dump_cse = opt_D_dump_most || lookUp SLIT("-ddump-cse")
opt_D_dump_worker_wrapper = opt_D_dump_most || lookUp SLIT("-ddump-workwrap")
opt_D_show_passes = opt_D_dump_most || lookUp SLIT("-dshow-passes")
opt_D_dump_rn_trace = opt_D_dump_all || lookUp SLIT("-ddump-rn-trace")
opt_D_dump_rn_stats = opt_D_dump_most || lookUp SLIT("-ddump-rn-stats")
opt_D_dump_stix = opt_D_dump_all || lookUp SLIT("-ddump-stix")
opt_D_dump_simpl_stats = opt_D_dump_most || lookUp SLIT("-ddump-simpl-stats")
opt_D_source_stats = opt_D_dump_most || lookUp SLIT("-dsource-stats")
opt_D_verbose_core2core = opt_D_dump_all || lookUp SLIT("-dverbose-simpl")
opt_D_verbose_stg2stg = opt_D_dump_all || lookUp SLIT("-dverbose-stg")
opt_D_dump_minimal_imports = lookUp SLIT("-ddump-minimal-imports")
opt_DoCoreLinting = lookUp SLIT("-dcore-lint")
opt_DoStgLinting = lookUp SLIT("-dstg-lint")
opt_DoUSPLinting = lookUp SLIT("-dusagesp-lint")
opt_PprStyle_NoPrags = lookUp SLIT("-dppr-noprags")
opt_PprStyle_Debug = lookUp SLIT("-dppr-debug")
opt_PprUserLength = lookup_def_int "-dppr-user-length" 5 --ToDo: give this a name
-- warning opts
opt_WarnDuplicateExports = lookUp SLIT("-fwarn-duplicate-exports")
opt_WarnHiShadows = lookUp SLIT("-fwarn-hi-shadowing")
opt_WarnIncompletePatterns = lookUp SLIT("-fwarn-incomplete-patterns")
opt_WarnMissingFields = lookUp SLIT("-fwarn-missing-fields")
opt_WarnMissingMethods = lookUp SLIT("-fwarn-missing-methods")
opt_WarnMissingSigs = lookUp SLIT("-fwarn-missing-signatures")
opt_WarnNameShadowing = lookUp SLIT("-fwarn-name-shadowing")
opt_WarnOverlappingPatterns = lookUp SLIT("-fwarn-overlapping-patterns")
opt_WarnSimplePatterns = lookUp SLIT("-fwarn-simple-patterns")
opt_WarnTypeDefaults = lookUp SLIT("-fwarn-type-defaults")
opt_WarnUnusedBinds = lookUp SLIT("-fwarn-unused-binds")
opt_WarnUnusedImports = lookUp SLIT("-fwarn-unused-imports")
opt_WarnUnusedMatches = lookUp SLIT("-fwarn-unused-matches")
opt_WarnDeprecations = lookUp SLIT("-fwarn-deprecations")
-- profiling opts
opt_AutoSccsOnAllToplevs = lookUp SLIT("-fauto-sccs-on-all-toplevs")
opt_AutoSccsOnExportedToplevs = lookUp SLIT("-fauto-sccs-on-exported-toplevs")
opt_AutoSccsOnIndividualCafs = lookUp SLIT("-fauto-sccs-on-individual-cafs")
opt_AutoSccsOnDicts = lookUp SLIT("-fauto-sccs-on-dicts")
opt_SccProfilingOn = lookUp SLIT("-fscc-profiling")
opt_DoTickyProfiling = lookUp SLIT("-fticky-ticky")
-- language opts
opt_AllStrict = lookUp SLIT("-fall-strict")
opt_DictsStrict = lookUp SLIT("-fdicts-strict")
opt_AllowOverlappingInstances = lookUp SLIT("-fallow-overlapping-instances")
opt_AllowUndecidableInstances = lookUp SLIT("-fallow-undecidable-instances")
opt_GlasgowExts = lookUp SLIT("-fglasgow-exts")
opt_IrrefutableTuples = lookUp SLIT("-firrefutable-tuples")
opt_MaxContextReductionDepth = lookup_def_int "-fcontext-stack" mAX_CONTEXT_REDUCTION_DEPTH
opt_NumbersStrict = lookUp SLIT("-fnumbers-strict")
opt_Parallel = lookUp SLIT("-fparallel")
opt_SMP = lookUp SLIT("-fsmp")
-- optimisation opts
opt_DoEtaReduction = lookUp SLIT("-fdo-eta-reduction")
opt_DoSemiTagging = lookUp SLIT("-fsemi-tagging")
opt_FoldrBuildOn = lookUp SLIT("-ffoldr-build-on")
opt_LiberateCaseThreshold = lookup_def_int "-fliberate-case-threshold" (10::Int)
opt_StgDoLetNoEscapes = lookUp SLIT("-flet-no-escape")
opt_UnfoldCasms = lookUp SLIT("-funfold-casms-in-hi-file")
opt_UsageSPOn = lookUp SLIT("-fusagesp-on")
opt_UnboxStrictFields = lookUp SLIT("-funbox-strict-fields")
{-
The optional '-inpackage=P' flag tells what package
we are compiling this module for.
The Prelude, for example is compiled with '-package prelude'
-}
opt_InPackage = case lookup_str "-inpackage=" of
Just p -> _PK_ p
Nothing -> SLIT("Main") -- The package name if none is specified
opt_EmitCExternDecls = lookUp SLIT("-femit-extern-decls")
opt_EnsureSplittableC = lookUp SLIT("-fglobalise-toplev-names")
opt_GranMacros = lookUp SLIT("-fgransim")
opt_HiMap = lookup_str "-himap=" -- file saying where to look for .hi files
opt_HiMapSep = lookup_def_char "-himap-sep=" ':'
opt_HiVersion = lookup_def_int "-fhi-version=" 0 -- what version we're compiling.
opt_HistorySize = lookup_def_int "-fhistory-size" 20
opt_IgnoreAsserts = lookUp SLIT("-fignore-asserts")
opt_IgnoreIfacePragmas = lookUp SLIT("-fignore-interface-pragmas")
opt_NoHiCheck = lookUp SLIT("-fno-hi-version-check")
opt_NoImplicitPrelude = lookUp SLIT("-fno-implicit-prelude")
opt_OmitBlackHoling = lookUp SLIT("-dno-black-holing")
opt_OmitInterfacePragmas = lookUp SLIT("-fomit-interface-pragmas")
opt_ProduceExportCStubs = lookup_str "-F="
opt_ProduceExportHStubs = lookup_str "-FH="
opt_ProduceHi = lookup_str "-hifile=" -- the one to produce this time
-- Language for output: "C", "asm", "java", maybe more
-- Nothing => don't output anything
opt_OutputLanguage :: Maybe String
opt_OutputLanguage = lookup_str "-olang="
opt_OutputFile :: String
opt_OutputFile = case lookup_str "-ofile=" of
Nothing -> panic "No output file specified (-ofile=xxx)"
Just f -> f
-- Simplifier switches
opt_SimplNoPreInlining = lookUp SLIT("-fno-pre-inlining")
-- NoPreInlining is there just to see how bad things
-- get if you don't do it!
opt_SimplDoEtaReduction = lookUp SLIT("-fdo-eta-reduction")
opt_SimplDoLambdaEtaExpansion = lookUp SLIT("-fdo-lambda-eta-expansion")
opt_SimplCaseOfCase = lookUp SLIT("-fcase-of-case")
opt_SimplCaseMerge = lookUp SLIT("-fcase-merge")
opt_SimplPedanticBottoms = lookUp SLIT("-fpedantic-bottoms")
-- Unfolding control
opt_UF_HiFileThreshold = lookup_def_int "-funfolding-interface-threshold" (45::Int)
opt_UF_CreationThreshold = lookup_def_int "-funfolding-creation-threshold" (45::Int)
opt_UF_UseThreshold = lookup_def_int "-funfolding-use-threshold" (8::Int) -- Discounts can be big
opt_UF_ScrutConDiscount = lookup_def_int "-funfolding-con-discount" (2::Int)
opt_UF_FunAppDiscount = lookup_def_int "-funfolding-fun-discount" (6::Int) -- It's great to inline a fn
opt_UF_PrimArgDiscount = lookup_def_int "-funfolding-prim-discount" (1::Int)
opt_UF_KeenessFactor = lookup_def_float "-funfolding-keeness-factor" (1.5::Float)
opt_UF_CheapOp = ( 1 :: Int) -- Only one instruction; and the args are charged for
opt_UF_DearOp = ( 4 :: Int)
opt_ReportCompile = lookUp SLIT("-freport-compile")
opt_NoPruneDecls = lookUp SLIT("-fno-prune-decls")
opt_NoPruneTyDecls = lookUp SLIT("-fno-prune-tydecls")
opt_SourceUnchanged = lookUp SLIT("-fsource-unchanged")
opt_Static = lookUp SLIT("-static")
opt_Unregisterised = lookUp SLIT("-funregisterised")
opt_Verbose = lookUp SLIT("-v")
opt_UseVanillaRegs | opt_Unregisterised = 0
| otherwise = mAX_Real_Vanilla_REG
opt_UseFloatRegs | opt_Unregisterised = 0
| otherwise = mAX_Real_Float_REG
opt_UseDoubleRegs | opt_Unregisterised = 0
| otherwise = mAX_Real_Double_REG
opt_UseLongRegs | opt_Unregisterised = 0
| otherwise = mAX_Real_Long_REG
\end{code}
\begin{code}
classifyOpts :: ([CoreToDo], -- Core-to-Core processing spec
[StgToDo]) -- STG-to-STG processing spec
classifyOpts = sep argv [] [] -- accumulators...
where
sep :: [FAST_STRING] -- cmd-line opts (input)
-> [CoreToDo] -> [StgToDo] -- to_do accumulators
-> ([CoreToDo], [StgToDo]) -- result
sep [] core_td stg_td -- all done!
= (reverse core_td, reverse stg_td)
# define CORE_TD(to_do) sep opts (to_do:core_td) stg_td
# define STG_TD(to_do) sep opts core_td (to_do:stg_td)
sep (opt1:opts) core_td stg_td
= case (_UNPK_ opt1) of -- the non-"just match a string" options are at the end...
',' : _ -> sep opts core_td stg_td -- it is for the parser
"-fsimplify" -> -- gather up SimplifierSwitches specially...
simpl_sep opts defaultSimplSwitches core_td stg_td
"-ffloat-inwards" -> CORE_TD(CoreDoFloatInwards)
"-ffloat-outwards" -> CORE_TD(CoreDoFloatOutwards False)
"-ffloat-outwards-full" -> CORE_TD(CoreDoFloatOutwards True)
"-fliberate-case" -> CORE_TD(CoreLiberateCase)
"-fcse" -> CORE_TD(CoreCSE)
"-fprint-core" -> CORE_TD(CoreDoPrintCore)
"-fstatic-args" -> CORE_TD(CoreDoStaticArgs)
"-fstrictness" -> CORE_TD(CoreDoStrictness)
"-fworker-wrapper" -> CORE_TD(CoreDoWorkerWrapper)
"-fspecialise" -> CORE_TD(CoreDoSpecialising)
"-fusagesp" -> CORE_TD(CoreDoUSPInf)
"-fcpr-analyse" -> CORE_TD(CoreDoCPResult)
"-fstg-static-args" -> STG_TD(StgDoStaticArgs)
"-dstg-stats" -> STG_TD(D_stg_stats)
"-flambda-lift" -> STG_TD(StgDoLambdaLift)
"-fmassage-stg-for-profiling" -> STG_TD(StgDoMassageForProfiling)
_ -> -- NB: the driver is really supposed to handle bad options
sep opts core_td stg_td
----------------
simpl_sep :: [FAST_STRING] -- cmd-line opts (input)
-> [SimplifierSwitch] -- simplifier-switch accumulator
-> [CoreToDo] -> [StgToDo] -- to_do accumulators
-> ([CoreToDo], [StgToDo]) -- result
-- "simpl_sep" tailcalls "sep" once it's seen one set
-- of SimplifierSwitches for a CoreDoSimplify.
#ifdef DEBUG
simpl_sep input@[] simpl_sw core_td stg_td
= panic "simpl_sep []"
#endif
-- The SimplifierSwitches should be delimited by "[" and "]".
simpl_sep (opt1:opts) simpl_sw core_td stg_td
= case (_UNPK_ opt1) of
"[" -> simpl_sep opts simpl_sw core_td stg_td
"]" -> let
this_simpl = CoreDoSimplify (isAmongSimpl simpl_sw)
in
sep opts (this_simpl : core_td) stg_td
opt -> case matchSimplSw opt of
Just sw -> simpl_sep opts (sw:simpl_sw) core_td stg_td
Nothing -> simpl_sep opts simpl_sw core_td stg_td
matchSimplSw opt
= firstJust [ matchSwInt opt "-fmax-simplifier-iterations" MaxSimplifierIterations
, matchSwInt opt "-finline-phase" SimplInlinePhase
, matchSwBool opt "-fno-rules" DontApplyRules
, matchSwBool opt "-fno-case-of-case" NoCaseOfCase
, matchSwBool opt "-flet-to-case" SimplLetToCase
]
matchSwBool :: String -> String -> a -> Maybe a
matchSwBool opt str sw | opt == str = Just sw
| otherwise = Nothing
matchSwInt :: String -> String -> (Int -> a) -> Maybe a
matchSwInt opt str sw = case startsWith str opt of
Just opt_left -> Just (sw (read opt_left))
Nothing -> Nothing
\end{code}
%************************************************************************
%* *
\subsection{Switch ordering}
%* *
%************************************************************************
In spite of the @Produce*@ constructor, these things behave just like
enumeration types.
\begin{code}
instance Eq SimplifierSwitch where
a == b = tagOf_SimplSwitch a _EQ_ tagOf_SimplSwitch b
instance Ord SimplifierSwitch where
a < b = tagOf_SimplSwitch a _LT_ tagOf_SimplSwitch b
a <= b = tagOf_SimplSwitch a _LE_ tagOf_SimplSwitch b
tagOf_SimplSwitch (SimplInlinePhase _) = ILIT(1)
tagOf_SimplSwitch (MaxSimplifierIterations _) = ILIT(2)
tagOf_SimplSwitch DontApplyRules = ILIT(3)
tagOf_SimplSwitch SimplLetToCase = ILIT(4)
tagOf_SimplSwitch NoCaseOfCase = ILIT(5)
-- If you add anything here, be sure to change lAST_SIMPL_SWITCH_TAG, too!
lAST_SIMPL_SWITCH_TAG = 5
\end{code}
%************************************************************************
%* *
\subsection{Switch lookup}
%* *
%************************************************************************
\begin{code}
isAmongSimpl :: [SimplifierSwitch] -> SimplifierSwitch -> SwitchResult
isAmongSimpl on_switches -- Switches mentioned later occur *earlier*
-- in the list; defaults right at the end.
= let
tidied_on_switches = foldl rm_dups [] on_switches
-- The fold*l* ensures that we keep the latest switches;
-- ie the ones that occur earliest in the list.
sw_tbl :: Array Int SwitchResult
sw_tbl = (array (0, lAST_SIMPL_SWITCH_TAG) -- bounds...
all_undefined)
// defined_elems
all_undefined = [ (i, SwBool False) | i <- [0 .. lAST_SIMPL_SWITCH_TAG ] ]
defined_elems = map mk_assoc_elem tidied_on_switches
in
-- (avoid some unboxing, bounds checking, and other horrible things:)
#if __GLASGOW_HASKELL__ < 405
case sw_tbl of { Array bounds_who_needs_'em stuff ->
#else
case sw_tbl of { Array _ _ stuff ->
#endif
\ switch ->
case (indexArray# stuff (tagOf_SimplSwitch switch)) of
#if __GLASGOW_HASKELL__ < 400
Lift v -> v
#elif __GLASGOW_HASKELL__ < 403
(# _, v #) -> v
#else
(# v #) -> v
#endif
}
where
mk_assoc_elem k@(MaxSimplifierIterations lvl) = (IBOX(tagOf_SimplSwitch k), SwInt lvl)
mk_assoc_elem k@(SimplInlinePhase n) = (IBOX(tagOf_SimplSwitch k), SwInt n)
mk_assoc_elem k = (IBOX(tagOf_SimplSwitch k), SwBool True) -- I'm here, Mom!
-- cannot have duplicates if we are going to use the array thing
rm_dups switches_so_far switch
= if switch `is_elem` switches_so_far
then switches_so_far
else switch : switches_so_far
where
sw `is_elem` [] = False
sw `is_elem` (s:ss) = (tagOf_SimplSwitch sw) _EQ_ (tagOf_SimplSwitch s)
|| sw `is_elem` ss
\end{code}
Default settings for simplifier switches
\begin{code}
defaultSimplSwitches = [MaxSimplifierIterations 1]
\end{code}
%************************************************************************
%* *
\subsection{Misc functions for command-line options}
%* *
%************************************************************************
\begin{code}
switchIsOn :: (switch -> SwitchResult) -> switch -> Bool
switchIsOn lookup_fn switch
= case (lookup_fn switch) of
SwBool False -> False
_ -> True
intSwitchSet :: (switch -> SwitchResult)
-> (Int -> switch)
-> Maybe Int
intSwitchSet lookup_fn switch
= case (lookup_fn (switch (panic "intSwitchSet"))) of
SwInt int -> Just int
_ -> Nothing
\end{code}
\begin{code}
startsWith :: String -> String -> Maybe String
-- startsWith pfx (pfx++rest) = Just rest
startsWith [] str = Just str
startsWith (c:cs) (s:ss)
= if c /= s then Nothing else startsWith cs ss
startsWith _ [] = Nothing
endsWith :: String -> String -> Maybe String
endsWith cs ss
= case (startsWith (reverse cs) (reverse ss)) of
Nothing -> Nothing
Just rs -> Just (reverse rs)
\end{code}
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