@[inline, reducible]
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- Lean.IR.UniqueIds.checkId id = modifyGet fun (s : Lean.IR.IndexSet) => if Lean.RBTree.contains s id = true then (false, s) else (true, Lean.RBTree.insert s id)
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- Lean.IR.UniqueIds.checkParams ps = Array.allM (fun (p : Lean.IR.Param) => Lean.IR.UniqueIds.checkId p.x.idx) ps 0 (Array.size ps)
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Return true if variable, parameter and join point ids are unique
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@[inline, reducible]
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- Lean.IR.NormalizeIds.normIndex x m = match Lean.RBMap.find? m x with | some y => y | none => x
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- Lean.IR.NormalizeIds.normArg x = match x with | Lean.IR.Arg.var x => Lean.IR.Arg.var <$> Lean.IR.NormalizeIds.normVar x | other => pure other
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- Lean.IR.NormalizeIds.normArgs as m = Array.map (fun (a : Lean.IR.Arg) => Lean.IR.NormalizeIds.normArg a m) as
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@[inline, reducible]
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@[inline]
def
Lean.IR.NormalizeIds.withVar
{α : Type}
(x : Lean.IR.VarId)
(k : Lean.IR.VarId → Lean.IR.NormalizeIds.N α)
:
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- Lean.IR.NormalizeIds.withVar x k m = do let n ← getModify fun (n : Nat) => n + 1 k { idx := n } (Lean.RBMap.insert m x.idx n)
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@[inline]
def
Lean.IR.NormalizeIds.withJP
{α : Type}
(x : Lean.IR.JoinPointId)
(k : Lean.IR.JoinPointId → Lean.IR.NormalizeIds.N α)
:
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- Lean.IR.NormalizeIds.withJP x k m = do let n ← getModify fun (n : Nat) => n + 1 k { idx := n } (Lean.RBMap.insert m x.idx n)
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@[inline]
def
Lean.IR.NormalizeIds.withParams
{α : Type}
(ps : Array Lean.IR.Param)
(k : Array Lean.IR.Param → Lean.IR.NormalizeIds.N α)
:
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- Lean.IR.NormalizeIds.instMonadLiftMN = { monadLift := fun {α : Type} (x : Lean.IR.NormalizeIds.M α) (m : Lean.IR.IndexRenaming) => pure (x m) }
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Apply a function f : VarId → VarId
to variable occurrences.
The following functions assume the IR code does not have variable shadowing.
@[inline]
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- Lean.IR.MapVars.mapArg f x = match x with | Lean.IR.Arg.var x => Lean.IR.Arg.var (f x) | a => a
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- Lean.IR.MapVars.mapArgs f as = Array.map (Lean.IR.MapVars.mapArg f) as
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@[inline]
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Replace x
with y
in b
. This function assumes b
does not shadow x
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- Lean.IR.FnBody.replaceVar x y b = Lean.IR.FnBody.mapVars (fun (z : Lean.IR.VarId) => if (x == z) = true then y else z) b