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(* Copyright (c) 2008, Adam Chlipala
* All rights reserved.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions are met:
*
* - Redistributions of source code must retain the above copyright notice,
* this list of conditions and the following disclaimer.
* - Redistributions in binary form must reproduce the above copyright notice,
* this list of conditions and the following disclaimer in the documentation
* and/or other materials provided with the distribution.
* - The names of contributors may not be used to endorse or promote products
* derived from this software without specific prior written permission.
*
* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
* AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
* ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
* LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
* SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
* INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
* CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
* ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
* POSSIBILITY OF SUCH DAMAGE.
*)
(* Remove unused definitions from a file *)
structure Shake :> SHAKE = struct
val sliceDb = ref false
open Core
structure U = CoreUtil
structure IS = IntBinarySet
structure IM = IntBinaryMap
type free = {
con : IS.set,
exp : IS.set
}
val dummyt = (TRecord (CRecord ((KType, ErrorMsg.dummySpan), []), ErrorMsg.dummySpan), ErrorMsg.dummySpan)
val dummye = (EPrim (Prim.String ""), ErrorMsg.dummySpan)
fun tupleC cs = (CTuple cs, ErrorMsg.dummySpan)
fun tupleE es = (ERecord (map (fn e => (dummyt, e, dummyt)) es), ErrorMsg.dummySpan)
fun shake file =
let
val usedVarsC = U.Con.fold {kind = fn (_, st) => st,
con = fn (c, cs) =>
case c of
CNamed n => IS.add (cs, n)
| _ => cs}
val usedVars = U.Exp.fold {kind = fn (_, st) => st,
con = fn (c, st as (es, cs)) =>
case c of
CNamed n => (es, IS.add (cs, n))
| _ => st,
exp = fn (e, st as (es, cs)) =>
case e of
ENamed n => (IS.add (es, n), cs)
| _ => st}
val (usedE, usedC) =
List.foldl
(fn ((DExport (_, n, _), _), st as (usedE, usedC)) =>
if !sliceDb then
st
else
(IS.add (usedE, n), usedC)
| ((DTable (_, _, c, _, pe, pc, ce, cc), _), (usedE, usedC)) =>
let
val usedC = usedVarsC usedC c
val usedC = usedVarsC usedC pc
val usedC = usedVarsC usedC cc
val (usedE, usedC) = usedVars (usedE, usedC) pe
val (usedE, usedC) = usedVars (usedE, usedC) ce
in
(usedE, usedC)
end
| ((DTask (e1, e2), _), st) =>
if !sliceDb then
st
else
usedVars (usedVars st e1) e2
| (_, acc) => acc) (IS.empty, IS.empty) file
val (cdef, edef) = foldl (fn ((DCon (_, n, _, c), _), (cdef, edef)) => (IM.insert (cdef, n, [c]), edef)
| ((DDatatype dts, _), (cdef, edef)) =>
(foldl (fn ((_, n, _, xncs), cdef) =>
IM.insert (cdef, n, List.mapPartial #3 xncs)) cdef dts, edef)
| ((DVal (_, n, t, e, _), _), (cdef, edef)) => (cdef, IM.insert (edef, n, ([], t, e)))
| ((DValRec vis, _), (cdef, edef)) =>
let
val all_ns = map (fn (_, n, _, _, _) => n) vis
in
(cdef, foldl (fn ((_, n, t, e, _), edef) =>
IM.insert (edef, n, (all_ns, t, e))) edef vis)
end
| ((DExport _, _), acc) => acc
| ((DTable (_, n, c, _, e1, c1, e2, c2), _), (cdef, edef)) =>
(cdef, IM.insert (edef, n, ([], tupleC [c, c1, c2], tupleE [e1, e2])))
| ((DSequence (_, n, _), _), (cdef, edef)) =>
(cdef, IM.insert (edef, n, ([], dummyt, dummye)))
| ((DView (_, n, _, _, c), _), (cdef, edef)) =>
(cdef, IM.insert (edef, n, ([], c, dummye)))
| ((DDatabase _, _), acc) => acc
| ((DCookie (_, n, c, _), _), (cdef, edef)) =>
(cdef, IM.insert (edef, n, ([], c, dummye)))
| ((DStyle (_, n, _), _), (cdef, edef)) =>
(cdef, IM.insert (edef, n, ([], dummyt, dummye)))
| ((DTask _, _), acc) => acc)
(IM.empty, IM.empty) file
fun kind (_, s) = s
fun con (c, s) =
case c of
CNamed n =>
if IS.member (#con s, n) then
s
else
let
val s' = {con = IS.add (#con s, n),
exp = #exp s}
in
case IM.find (cdef, n) of
NONE => s'
| SOME cs => foldl (fn (c, s') => shakeCon s' c) s' cs
end
| _ => s
and shakeCon s = U.Con.fold {kind = kind, con = con} s
(*val () = print "=====\nSHAKE\n=====\n"
val current = ref 0*)
fun exp (e, s) =
let
fun check n =
if IS.member (#exp s, n) then
s
else
let
val s' = {exp = IS.add (#exp s, n),
con = #con s}
in
(*print ("Need " ^ Int.toString n ^ " <-- " ^ Int.toString (!current) ^ "\n");*)
case IM.find (edef, n) of
NONE => s'
| SOME (ns, t, e) =>
let
(*val old = !current
val () = current := n*)
val s' = shakeExp (shakeCon s' t) e
in
(*current := old;*)
foldl (fn (n, s') => exp (ENamed n, s')) s' ns
end
end
in
case e of
ENamed n => check n
| EServerCall (n, _, _) => check n
| _ => s
end
and shakeExp s = U.Exp.fold {kind = kind, con = con, exp = exp} s
val s = {con = usedC, exp = usedE}
val s = IS.foldl (fn (n, s) =>
case IM.find (edef, n) of
NONE => raise Fail "Shake: Couldn't find 'val'"
| SOME (ns, t, e) =>
let
(*val () = current := n*)
val s = shakeExp (shakeCon s t) e
in
foldl (fn (n, s) => exp (ENamed n, s)) s ns
end) s usedE
val s = IS.foldl (fn (n, s) =>
case IM.find (cdef, n) of
NONE => raise Fail ("Shake: Couldn't find 'con' " ^ Int.toString n)
| SOME cs => foldl (fn (c, s) => shakeCon s c) s cs) s usedC
in
List.filter (fn (DCon (_, n, _, _), _) => IS.member (#con s, n)
| (DDatatype dts, _) => List.exists (fn (_, n, _, _) => IS.member (#con s, n)) dts
| (DVal (_, n, _, _, _), _) => IS.member (#exp s, n)
| (DValRec vis, _) => List.exists (fn (_, n, _, _, _) => IS.member (#exp s, n)) vis
| (DExport _, _) => not (!sliceDb)
| (DView _, _) => true
| (DSequence _, _) => true
| (DTable _, _) => true
| (DDatabase _, _) => not (!sliceDb)
| (DCookie _, _) => not (!sliceDb)
| (DStyle _, _) => not (!sliceDb)
| (DTask _, _) => not (!sliceDb)) file
end
end
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