package wax-lib
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Libraries for Wax, a Rust-like syntax for WebAssembly
Install
dune-project
Dependency
Authors
Maintainers
Sources
wax-0.1.0.tbz
sha256=41b580846af8d41bdf6c3f005f62e38feda3e60fe2e9e4aa440db34ce515a153
sha512=4b3a181fcc7d743194a8647260870fb5190770066a197bcc48104c2b77fd40c643228b795c2bcd6b29a120820e969eb42a37a9bcec98b3f608d13f152d9f6579
doc/src/wax-lib.conversion/recover_loops.ml.html
Source file recover_loops.ml
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A trailing-test [loop { B; br_if 'L C; }] has no leading-test [while] equivalent, so it is left as a bare [loop]. The synthesised loop label is kept on the recovered loop only when the body still branches to it after the back-edge is removed (a "continue"); otherwise it is dropped and the label-less form re-lowers to a fresh synthetic label. The reference test is exhaustive and conservative — erring toward keeping the label is safe, dropping a still-referenced one would dangle — so a missed constructor is a compile error, not silently wrong output. Folding is the exact inverse of the lowering, so re-lowering reproduces the original [loop] byte-for-byte and the rewrite always preserves runtime semantics. Meant to run on {!From_wasm.module_} output, after {!Recover_dispatch.module_} and before {!Sink_let.module_} (which would otherwise sink locals into the loop body and hide the shape). *) let is_void (t : functype) = t.params = [||] && t.results = [||] (* Whether any branch within [i] targets the label [name] — a "continue" to a recovered loop, which forces the label to be kept. *) let rec refs_instr name (i : location instr) : bool = let any = List.exists (refs_instr name) in let opt = function Some x -> refs_instr name x | None -> false in let lab (l : label) = String.equal l.desc name in match i.desc with | Br (l, e) -> lab l || opt e | Br_if (l, e) -> lab l || refs_instr name e | Br_table (ls, e) -> List.exists lab ls || refs_instr name e | Hinted (_, e) | On (e, _) -> refs_instr name e | Br_on_null (l, e) | Br_on_non_null (l, e) -> lab l || refs_instr name e | Br_on_cast (l, _, e) | Br_on_cast_fail (l, _, e) -> lab l || refs_instr name e | Br_on_cast_desc_eq (l, _, e, d) | Br_on_cast_desc_eq_fail (l, _, e, d) -> lab l || refs_instr name e || refs_instr name d | Dispatch { index; cases; default; arms } -> lab default || List.exists lab cases || refs_instr name index || List.exists (fun (_, b) -> any b.desc) arms | Match { scrutinee; arms; default } -> refs_instr name scrutinee || List.exists (fun (_, b) -> any b.desc) arms || any default.desc | Block { block; _ } | Loop { block; _ } | TryTable { block; _ } -> any block.desc | While { cond; step; block; _ } -> refs_instr name cond || opt step || any block.desc | If { cond; if_block; else_block; _ } -> ( refs_instr name cond || any if_block.desc || match else_block with Some b -> any b.desc | None -> false) | Try { block; catches; catch_all; _ } -> ( any block.desc || List.exists (fun (_, b) -> any b.desc) catches || match catch_all with Some b -> any b.desc | None -> false) | TryCatch { block; arms; _ } -> any block.desc || List.exists (fun a -> any a.arm_body.desc) arms | If_annotation { then_body; else_body; _ } -> ( any then_body.desc || match else_body with Some b -> any b.desc | None -> false) | Set (_, _, e) | Tee (_, e) | Labelled (_, e) | Cast (e, _) | Test (e, _) | NonNull e | StructGet (e, _) | GetDescriptor e | StructDefaultDesc e | ArrayDefault (_, e) | UnOp (_, e) | ThrowRef e | ContNew (_, e) -> refs_instr name e | Call (a, l) | TailCall (a, l) -> refs_instr name a || any l | Struct (_, fs) -> List.exists (fun (_, e) -> opt e) fs | StructDesc (d, fs) -> refs_instr name d || List.exists (fun (_, e) -> opt e) fs | CastDesc (a, _, b) | StructSet (a, _, b) | Array (_, a, b) | ArraySegment (_, _, a, b) | ArrayGet (a, b) | BinOp (_, a, b) -> refs_instr name a || refs_instr name b | ArraySet (a, b, c) | Select (a, b, c) -> refs_instr name a || refs_instr name b || refs_instr name c | ArrayFixed (_, l) | ContBind (_, _, l) | Suspend (_, l) | Resume (_, _, l) | ResumeThrow (_, _, _, l) | ResumeThrowRef (_, _, l) | Switch (_, _, l) | Throw (_, l) | Sequence l -> any l | Let (_, e) | Return e -> opt e | Unreachable | Nop | Hole | Null | Get _ | Path _ | Char _ | String _ | Int _ | Float _ | StructDefault _ -> false let refs_list name l = List.exists (refs_instr name) l (* Whether the (already-rewritten) body of void loop [l] still references [l] after dropping its back-edge, with [cond] the loop's recovered test. *) let keep_label l cond body = if refs_list l.desc body || refs_instr l.desc cond then Some l else None (* Whether [i] reads the variable [name] (a [Get]). Conservative: unlisted forms report [false], which only makes the induction-step heuristic in [fold_loop] fire less often, never wrongly. *) let rec reads_var name (i : location instr) : bool = let any = List.exists (reads_var name) in match i.desc with | Get id -> String.equal id.desc name | BinOp (_, a, b) | ArrayGet (a, b) -> reads_var name a || reads_var name b | UnOp (_, e) | Cast (e, _) | Test (e, _) | NonNull e | StructGet (e, _) | GetDescriptor e | Hinted (_, e) | On (e, _) -> reads_var name e | Select (a, b, c) -> reads_var name a || reads_var name b || reads_var name c | Call (f, args) | TailCall (f, args) -> reads_var name f || any args | Tee (id, e) -> String.equal id.desc name || reads_var name e | Set (id, _, e) -> String.equal id.desc name || reads_var name e | Block { block; _ } | Loop { block; _ } -> any block.desc | If { cond; if_block; else_block; _ } -> ( reads_var name cond || any if_block.desc || match else_block with Some b -> any b.desc | None -> false) | _ -> false (* Fold an already-rewritten void [loop] labelled [l] into a [while] when its body is the leading-test shape, else leave it a [loop]. *) let fold_loop l typ block = match block.desc with (* Leading test: the body is a single label-less void [if] with no else whose own body ends in the back-edge. *) | [ { desc = If { label = None; typ = it; cond; if_block; else_block = None }; _; }; ] when is_void it -> ( match List.rev if_block.desc with | { desc = Br (bl, None); _ } :: rev_body when String.equal bl.desc l.desc -> ( let body = List.rev rev_body in match body with (* Continue-expression shape (see [Ast_utils.lower_while]): the body is a labelled block (the continue target) whose own body branches to it, followed by the step, then the loop back-edge. Recover it as [while 'blk cond : (step) { inner }]. *) | [ { desc = Block { label = Some blk; typ = bt; block = inner }; _ }; step; ] when is_void bt && (not (String.equal blk.desc l.desc)) && refs_list blk.desc inner.desc -> While { label = Some blk; cond; step = Some step; block = inner } | _ -> ( let label = keep_label l cond body in (* Readability recovery: with no continue (label dropped, so re-lowering is byte-identical), present a trailing induction-variable update — an assignment to a variable the condition reads — as a continue-expression, so index-and-stride loops read as [while i <s n : (i += 1) { … }]. Kept conservative: at least one other body statement must remain. *) match (label, List.rev body) with | ( None, ({ desc = Set (x, _, _); _ } as step) :: (_ :: _ as rev_rest) ) when reads_var x.desc cond -> While { label = None; cond; step = Some step; block = { block with desc = List.rev rev_rest }; } | _ -> While { label; cond; step = None; block = { block with desc = body }; })) | _ -> Loop { label = Some l; typ; block }) | _ -> Loop { label = Some l; typ; block } let rec rewrite_instr (i : location instr) : location instr = { i with desc = rewrite_desc i.desc } and rewrite_list l = List.map rewrite_instr l and rewrite_desc (desc : location instr_desc) : location instr_desc = match desc with | Loop { label = Some l; typ; block } when is_void typ -> fold_loop l typ { block with desc = rewrite_list block.desc } | Loop { label; typ; block } -> Loop { label; typ; block = { block with desc = rewrite_list block.desc } } | Block { label; typ; block } -> Block { label; typ; block = { block with desc = rewrite_list block.desc } } | While { label; cond; step; block } -> While { label; cond = rewrite_instr cond; step = Option.map rewrite_instr step; block = { block with desc = rewrite_list block.desc }; } | If { label; typ; cond; if_block; else_block } -> If { label; typ; cond = rewrite_instr cond; if_block = { if_block with desc = rewrite_list if_block.desc }; else_block = Option.map (fun b -> { b with desc = rewrite_list b.desc }) else_block; } | TryTable { label; typ; catches; block } -> TryTable { label; typ; catches; block = { block with desc = rewrite_list block.desc }; } | TryCatch { label; typ; block; arms } -> TryCatch { label; typ; block = { block with desc = rewrite_list block.desc }; arms = List.map (fun a -> { a with arm_body = { a.arm_body with desc = rewrite_list a.arm_body.desc }; }) arms; } | Try { label; typ; block; catches; catch_all } -> Try { label; typ; block = { block with desc = rewrite_list block.desc }; catches = List.map (fun (t, l) -> (t, { l with desc = rewrite_list l.desc })) catches; catch_all = Option.map (fun b -> { b with desc = rewrite_list b.desc }) catch_all; } | Dispatch { index; cases; default; arms } -> Dispatch { index = rewrite_instr index; cases; default; arms = List.map (fun (l, b) -> (l, { b with desc = rewrite_list b.desc })) arms; } | Match { scrutinee; arms; default } -> Match { scrutinee = rewrite_instr scrutinee; arms = List.map (fun (p, b) -> (p, { b with desc = rewrite_list b.desc })) arms; default = { default with desc = rewrite_list default.desc }; } | If_annotation { cond; then_body; else_body } -> If_annotation { cond; then_body = { then_body with desc = rewrite_list then_body.desc }; else_body = Option.map (fun b -> { b with desc = rewrite_list b.desc }) else_body; } | Set (x, op, e) -> Set (x, op, rewrite_instr e) | Tee (x, e) -> Tee (x, rewrite_instr e) | Labelled (l, e) -> Labelled (l, rewrite_instr e) | Call (t, args) -> Call (rewrite_instr t, List.map rewrite_instr args) | TailCall (t, args) -> TailCall (rewrite_instr t, List.map rewrite_instr args) | Cast (e, t) -> Cast (rewrite_instr e, t) | CastDesc (e, t, d) -> CastDesc (rewrite_instr e, t, rewrite_instr d) | Test (e, t) -> Test (rewrite_instr e, t) | NonNull e -> NonNull (rewrite_instr e) | Struct (idx, fs) -> Struct (idx, List.map (fun (n, e) -> (n, Option.map rewrite_instr e)) fs) | StructDesc (d, fs) -> StructDesc ( rewrite_instr d, List.map (fun (n, e) -> (n, Option.map rewrite_instr e)) fs ) | StructDefaultDesc d -> StructDefaultDesc (rewrite_instr d) | StructGet (e, x) -> StructGet (rewrite_instr e, x) | GetDescriptor e -> GetDescriptor (rewrite_instr e) | StructSet (e, x, v) -> StructSet (rewrite_instr e, x, rewrite_instr v) | Array (idx, a, b) -> Array (idx, rewrite_instr a, rewrite_instr b) | ArrayDefault (idx, e) -> ArrayDefault (idx, rewrite_instr e) | ArrayFixed (idx, l) -> ArrayFixed (idx, List.map rewrite_instr l) | ArraySegment (idx, d, a, b) -> ArraySegment (idx, d, rewrite_instr a, rewrite_instr b) | ArrayGet (a, b) -> ArrayGet (rewrite_instr a, rewrite_instr b) | ArraySet (a, b, c) -> ArraySet (rewrite_instr a, rewrite_instr b, rewrite_instr c) | BinOp (op, a, b) -> BinOp (op, rewrite_instr a, rewrite_instr b) | UnOp (op, e) -> UnOp (op, rewrite_instr e) | Let (bs, e) -> Let (bs, Option.map rewrite_instr e) | Br (l, e) -> Br (l, Option.map rewrite_instr e) | Br_if (l, e) -> Br_if (l, rewrite_instr e) | Hinted (h, e) -> Hinted (h, rewrite_instr e) | On (e, h) -> On (rewrite_instr e, h) | Br_table (ls, e) -> Br_table (ls, rewrite_instr e) | Br_on_null (l, e) -> Br_on_null (l, rewrite_instr e) | Br_on_non_null (l, e) -> Br_on_non_null (l, rewrite_instr e) | Br_on_cast (l, t, e) -> Br_on_cast (l, t, rewrite_instr e) | Br_on_cast_fail (l, t, e) -> Br_on_cast_fail (l, t, rewrite_instr e) | Br_on_cast_desc_eq (l, t, e, d) -> Br_on_cast_desc_eq (l, t, rewrite_instr e, rewrite_instr d) | Br_on_cast_desc_eq_fail (l, t, e, d) -> Br_on_cast_desc_eq_fail (l, t, rewrite_instr e, rewrite_instr d) | Throw (idx, e) -> Throw (idx, List.map rewrite_instr e) | ThrowRef e -> ThrowRef (rewrite_instr e) | ContNew (ct, e) -> ContNew (ct, rewrite_instr e) | ContBind (src, dst, l) -> ContBind (src, dst, List.map rewrite_instr l) | Suspend (tag, l) -> Suspend (tag, List.map rewrite_instr l) | Resume (ct, h, l) -> Resume (ct, h, List.map rewrite_instr l) | ResumeThrow (ct, tag, h, l) -> ResumeThrow (ct, tag, h, List.map rewrite_instr l) | ResumeThrowRef (ct, h, l) -> ResumeThrowRef (ct, h, List.map rewrite_instr l) | Switch (ct, tag, l) -> Switch (ct, tag, List.map rewrite_instr l) | Return e -> Return (Option.map rewrite_instr e) | Sequence l -> Sequence (List.map rewrite_instr l) | Select (a, b, c) -> Select (rewrite_instr a, rewrite_instr b, rewrite_instr c) | ( Unreachable | Nop | Hole | Null | Get _ | Path _ | Char _ | String _ | Int _ | Float _ | StructDefault _ ) as x -> x let rec field_desc (f : location modulefield) = let map_fields = List.map (fun a -> { a with desc = field_desc a.desc }) in match f with | Func ({ body = label, instrs; _ } as r) -> Func { r with body = (label, rewrite_list instrs) } | Conditional ({ then_fields; else_fields; _ } as r) -> Conditional { r with then_fields = { then_fields with desc = map_fields then_fields.desc }; else_fields = Option.map (fun b -> { b with desc = map_fields b.desc }) else_fields; } | ( Type _ | Module_annotation _ | Import _ | Import_group _ | Global _ | Tag _ | Memory _ | Data _ | Table _ | Elem _ ) as f -> f let module_ (m : location module_) : location module_ = List.map (fun a -> { a with desc = field_desc a.desc }) m
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