4fafd076ae
...while on-heap objects are referring to it. This is accomplished by storing a reference to its associated WasmInstanceObject on every WasmTypeInfo object. Details: https://bit.ly/2UxD4hW Fixed: v8:11953 Change-Id: Ifb6f976142356021393d41c50717d210d525d521 Reviewed-on: https://chromium-review.googlesource.com/c/v8/v8/+/3043959 Commit-Queue: Jakob Kummerow <jkummerow@chromium.org> Reviewed-by: Michael Lippautz <mlippautz@chromium.org> Reviewed-by: Manos Koukoutos <manoskouk@chromium.org> Cr-Commit-Position: refs/heads/master@{#75863}
177 lines
5.2 KiB
JavaScript
177 lines
5.2 KiB
JavaScript
// Copyright 2021 the V8 project authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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// Flags: --allow-natives-syntax --experimental-wasm-gc --wasm-gc-js-interop
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// Flags: --expose-gc
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d8.file.execute("test/mjsunit/wasm/wasm-module-builder.js");
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const kIterationsCountForICProgression = 20;
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function createSimpleStruct(field_type, value1, value2) {
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const builder = new WasmModuleBuilder();
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const is_small_int = (field_type == kWasmI8) || (field_type == kWasmI16);
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const parameter_type = is_small_int ? kWasmI32 : field_type;
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const struct_get_opcode = is_small_int ? kExprStructGetS : kExprStructGet;
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const type_index = builder.addStruct([
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{type: field_type, mutability: true},
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]);
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let sig_a_t = makeSig_r_x(kWasmDataRef, parameter_type);
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let sig_t_a = makeSig_r_x(parameter_type, kWasmDataRef);
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let sig_v_at = makeSig([kWasmDataRef, parameter_type], []);
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builder.addFunction("new_struct", sig_a_t)
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.addBody([
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kExprLocalGet, 0, // --
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kGCPrefix, kExprRttCanon, type_index, // --
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kGCPrefix, kExprStructNewWithRtt, type_index]) // --
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.exportAs("new_struct");
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builder.addFunction("get_field", sig_t_a)
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.addBody([
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kExprLocalGet, 0, // --
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kGCPrefix, kExprRttCanon, type_index, // --
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kGCPrefix, kExprRefCast, // --
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kGCPrefix, struct_get_opcode, type_index, 0]) // --
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.exportAs("get_field");
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builder.addFunction("set_field", sig_v_at)
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.addBody([
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kExprLocalGet, 0, // --
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kGCPrefix, kExprRttCanon, type_index, // --
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kGCPrefix, kExprRefCast, // --
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kExprLocalGet, 1, // --
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kGCPrefix, kExprStructSet, type_index, 0]) // --
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.exportAs("set_field");
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let instance = builder.instantiate();
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let new_struct = instance.exports.new_struct;
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let get_field = instance.exports.get_field;
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let set_field = instance.exports.set_field;
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// Check that ctor, getter and setter work.
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let o = new_struct(value1);
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let res;
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res = get_field(o);
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assertEquals(value1, res);
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set_field(o, value2);
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res = get_field(o);
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assertEquals(value2, res);
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return {new_struct, get_field, set_field};
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}
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function SimpleStructInterop(field_type, value_generator,
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value1 = 42, value2 = 111) {
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const { new_struct, get_field, set_field } =
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createSimpleStruct(field_type, value1, value2);
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function f(o, value) {
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for (let i = 0; i < kIterationsCountForICProgression; i++) {
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let store_IC_exception;
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try { o.$field0 = value; } catch (e) { store_IC_exception = e; }
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let set_field_exception;
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try { set_field(o, value); } catch (e) { set_field_exception = e; };
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// set_field() and store IC should throw the same error at the same time.
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assertEquals(set_field_exception, store_IC_exception);
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if (set_field_exception != undefined) continue;
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let expected = get_field(o);
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let v = o.$field0;
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assertEquals(expected, v);
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// "Clear" the field value.
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set_field(o, value1);
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assertEquals(value1, get_field(o));
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o.$field0 = value;
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assertEquals(expected, get_field(o));
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v = o[i];
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assertEquals(undefined, v);
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}
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}
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// Start collecting feedback from scratch.
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%ClearFunctionFeedback(f);
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let o = new_struct(value1);
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for (const value of value_generator()) {
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print("value: " + value);
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f(o, value);
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}
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gc();
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}
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function MakeValueGenerator(max, ValueConstructor = Number) {
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return function*() {
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const max_safe_integer_float = 2**23 - 1;
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yield -max;
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yield -max - ValueConstructor(1);
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yield max;
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yield 0.0;
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yield -0.0;
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yield 0n;
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for (let i = 0; i < 10; i++) {
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yield ValueConstructor(Math.floor((Math.random() - 0.5) * Number(max)));
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}
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// Try some non-trivial values.
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yield 153;
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yield 77n;
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yield ValueConstructor(Number.MAX_SAFE_INTEGER);
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yield ValueConstructor(Number.MIN_SAFE_INTEGER);
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yield ValueConstructor(max_safe_integer_float);
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yield { foo:17 };
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yield "boom";
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yield { valueOf() { return 42; } };
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yield { valueOf() { return 15142n; } };
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yield { valueOf() { return BigInt(max); } };
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yield { toString() { return "" + max; } };
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yield { toString() { return "" + (-max); } };
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yield { toString() { return "5421351n"; } };
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};
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}
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(function TestSimpleStructsInteropI8() {
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const max = 0x7f;
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SimpleStructInterop(kWasmI8, MakeValueGenerator(max));
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})();
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(function TestSimpleStructsInteropI16() {
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const max = 0x7fff;
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SimpleStructInterop(kWasmI16, MakeValueGenerator(max));
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})();
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(function TestSimpleStructsInteropI32() {
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const max = 0x7fffffff;
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SimpleStructInterop(kWasmI32, MakeValueGenerator(max));
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})();
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(function TestSimpleStructsInteropI64() {
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const max = 0x7fffffffffffffn;
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SimpleStructInterop(kWasmI64, MakeValueGenerator(max, BigInt), 42n, 153n);
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})();
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(function TestSimpleStructsInteropF32() {
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const max = 3.402823466e+38;
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SimpleStructInterop(kWasmF32, MakeValueGenerator(max));
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})();
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(function TestSimpleStructsInteropF64() {
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const max = 1.7976931348623157e+308;
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SimpleStructInterop(kWasmF64, MakeValueGenerator(max));
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})();
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