421fd3929d
This brings our constants back in line with the changed spec text. We already use kExprTableGet and kExprTableSet, but for locals and globals we still use the old wording. This renaming is mostly mechanical. PS1 was created using: ag -l 'kExpr(Get|Set|Tee)Local' src test | \ xargs -L1 sed -E 's/kExpr(Get|Set|Tee)Local\b/kExprLocal\1/g' -i PS2 contains manual fixes. R=mstarzinger@chromium.org Bug: v8:9810 Change-Id: I1617f1b2a100685a3bf56218e76845a9481959c5 Reviewed-on: https://chromium-review.googlesource.com/c/v8/v8/+/1847354 Reviewed-by: Michael Starzinger <mstarzinger@chromium.org> Commit-Queue: Clemens Backes <clemensb@chromium.org> Cr-Commit-Position: refs/heads/master@{#64161}
207 lines
7.2 KiB
JavaScript
207 lines
7.2 KiB
JavaScript
// Copyright 2018 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: --experimental-wasm-threads
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load("test/mjsunit/wasm/wasm-module-builder.js");
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const kSequenceLength = 8192;
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const kNumberOfWorkers = 4;
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const kBitMask = kNumberOfWorkers - 1;
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const kSequenceStartAddress = 32;
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function makeWorkerCodeForOpcode(compareExchangeOpcode, size, functionName,
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builder) {
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let loadMemOpcode = kTrapUnreachable;
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switch (size) {
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case 32:
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loadMemOpcode = kExprI32LoadMem;
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break;
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case 16:
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loadMemOpcode = kExprI32LoadMem16U;
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break;
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case 8:
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loadMemOpcode = kExprI32LoadMem8U;
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break;
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default:
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throw "!";
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}
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const kArgMemoryCell = 0; // target for atomic ops
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const kArgSequencePtr = 1; // address of sequence
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const kArgSeqenceLength = 2; // lenght of sequence
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const kArgWorkerId = 3; // id of this worker
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const kArgBitMask = 4; // mask to extract worker id from value
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const kLocalCurrentOffset = 5; // current position in sequence in bytes
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const kLocalExpectedValue = 6; // the value we are waiting for
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const kLocalNextValue = 7; // the value to write in the update
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let body = [
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// Turn sequence length to equivalent in bytes.
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kExprLocalGet, kArgSeqenceLength,
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kExprI32Const, size / 8,
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kExprI32Mul,
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kExprLocalSet, kArgSeqenceLength,
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// Outer block so we have something to jump for return.
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...[kExprBlock, kWasmStmt,
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// Set counter to 0.
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kExprI32Const, 0,
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kExprLocalSet, kLocalCurrentOffset,
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// Outer loop until maxcount.
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...[kExprLoop, kWasmStmt,
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// Find the next value to wait for.
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...[kExprLoop, kWasmStmt,
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// Check end of sequence.
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kExprLocalGet, kLocalCurrentOffset,
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kExprLocalGet, kArgSeqenceLength,
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kExprI32Eq,
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kExprBrIf, 2, // return
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...[kExprBlock, kWasmStmt,
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// Load next value.
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kExprLocalGet, kArgSequencePtr,
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kExprLocalGet, kLocalCurrentOffset,
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kExprI32Add,
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loadMemOpcode, 0, 0,
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// Mask off bits.
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kExprLocalGet, kArgBitMask,
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kExprI32And,
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// Compare with worker id.
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kExprLocalGet, kArgWorkerId,
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kExprI32Eq,
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kExprBrIf, 0,
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// Not found, increment position.
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kExprLocalGet, kLocalCurrentOffset,
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kExprI32Const, size / 8,
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kExprI32Add,
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kExprLocalSet, kLocalCurrentOffset,
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kExprBr, 1,
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kExprEnd
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],
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// Found, end loop.
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kExprEnd
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],
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// Load expected value to local.
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kExprLocalGet, kArgSequencePtr,
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kExprLocalGet, kLocalCurrentOffset,
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kExprI32Add,
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loadMemOpcode, 0, 0,
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kExprLocalSet, kLocalExpectedValue,
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// Load value after expected one.
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kExprLocalGet, kArgSequencePtr,
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kExprLocalGet, kLocalCurrentOffset,
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kExprI32Add,
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kExprI32Const, size / 8,
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kExprI32Add,
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loadMemOpcode, 0, 0,
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kExprLocalSet, kLocalNextValue,
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// Hammer on memory until value found.
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...[kExprLoop, kWasmStmt,
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// Load address.
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kExprLocalGet, kArgMemoryCell,
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// Load expected value.
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kExprLocalGet, kLocalExpectedValue,
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// Load updated value.
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kExprLocalGet, kLocalNextValue,
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// Try update.
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kAtomicPrefix, compareExchangeOpcode, 0, 0,
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// Load expected value.
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kExprLocalGet, kLocalExpectedValue,
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// Spin if not what expected.
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kExprI32Ne,
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kExprBrIf, 0,
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kExprEnd
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],
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// Next iteration of loop.
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kExprLocalGet, kLocalCurrentOffset,
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kExprI32Const, size / 8,
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kExprI32Add,
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kExprLocalSet, kLocalCurrentOffset,
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kExprBr, 0,
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kExprEnd
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], // outer loop
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kExprEnd
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], // the block
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kExprReturn
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];
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builder.addFunction(functionName, makeSig([kWasmI32, kWasmI32, kWasmI32,
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kWasmI32, kWasmI32
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], []))
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.addLocals({
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i32_count: 3
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})
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.addBody(body)
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.exportAs(functionName);
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}
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function generateSequence(typedarray, start, count) {
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let end = count + start;
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for (let i = start; i < end; i++) {
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typedarray[i] = Math.floor(Math.random() * 256);
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}
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}
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function spawnWorker(module, memory, address, sequence) {
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let workers = [];
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for (let i = 0; i < kNumberOfWorkers; i++) {
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let worker = new Worker(
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`onmessage = function(msg) {
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this.instance = new WebAssembly.Instance(msg.module,
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{m: {imported_mem: msg.memory}});
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instance.exports.worker(msg.address, msg.sequence, msg.sequenceLength, msg.workerId,
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msg.bitMask);
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postMessage({workerId: msg.workerId});
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}`,
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{type: 'string'}
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);
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workers.push(worker);
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worker.postMessage({
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module: module,
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memory: memory,
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address: address,
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sequence: sequence,
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sequenceLength: kSequenceLength,
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workerId: i,
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bitMask: kBitMask
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});
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}
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return workers;
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}
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function waitForWorkers(workers) {
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for (let worker of workers) {
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worker.getMessage();
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worker.terminate();
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}
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}
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function testOpcode(opcode, opcodeSize) {
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print("Testing I32AtomicCompareExchange" + opcodeSize);
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let builder = new WasmModuleBuilder();
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builder.addImportedMemory("m", "imported_mem", 0, 1, "shared");
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makeWorkerCodeForOpcode(opcode, opcodeSize, "worker", builder);
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let memory = new WebAssembly.Memory({
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initial: 1,
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maximum: 1,
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shared: true
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});
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let memoryView = new Uint8Array(memory.buffer);
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generateSequence(memoryView, kSequenceStartAddress, kSequenceLength * (opcodeSize / 8));
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let module = new WebAssembly.Module(builder.toBuffer());
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let workers = spawnWorker(module, memory, 0, kSequenceStartAddress);
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// Fire the workers off
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for (let i = opcodeSize / 8 - 1; i >= 0; i--) {
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memoryView[i] = memoryView[kSequenceStartAddress + i];
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}
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waitForWorkers(workers);
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print("DONE");
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}
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testOpcode(kExprI32AtomicCompareExchange, 32);
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testOpcode(kExprI32AtomicCompareExchange16U, 16);
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testOpcode(kExprI32AtomicCompareExchange8U, 8);
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