323 lines
10 KiB
JavaScript
323 lines
10 KiB
JavaScript
// META: global=window,worker,shadowrealm
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// META: script=../resources/recording-streams.js
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// META: script=../resources/rs-utils.js
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// META: script=../resources/test-utils.js
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'use strict';
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// The size() function of readableStrategy can re-entrantly call back into the TransformStream implementation. This
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// makes it risky to cache state across the call to ReadableStreamDefaultControllerEnqueue. These tests attempt to catch
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// such errors. They are separated from the other strategy tests because no real user code should ever do anything like
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// this.
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//
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// There is no such issue with writableStrategy size() because it is never called from within TransformStream
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// algorithms.
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const error1 = new Error('error1');
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error1.name = 'error1';
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promise_test(() => {
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let controller;
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let calls = 0;
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const ts = new TransformStream({
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start(c) {
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controller = c;
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}
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}, undefined, {
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size() {
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++calls;
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if (calls < 2) {
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controller.enqueue('b');
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}
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return 1;
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},
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highWaterMark: Infinity
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});
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const writer = ts.writable.getWriter();
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return Promise.all([writer.write('a'), writer.close()])
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.then(() => readableStreamToArray(ts.readable))
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.then(array => assert_array_equals(array, ['b', 'a'], 'array should contain two chunks'));
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}, 'enqueue() inside size() should work');
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promise_test(() => {
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let controller;
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const ts = new TransformStream({
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start(c) {
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controller = c;
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}
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}, undefined, {
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size() {
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// The readable queue is empty.
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controller.terminate();
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// The readable state has gone from "readable" to "closed".
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return 1;
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// This chunk will be enqueued, but will be impossible to read because the state is already "closed".
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},
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highWaterMark: Infinity
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});
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const writer = ts.writable.getWriter();
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return writer.write('a')
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.then(() => readableStreamToArray(ts.readable))
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.then(array => assert_array_equals(array, [], 'array should contain no chunks'));
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// The chunk 'a' is still in readable's queue. readable is closed so 'a' cannot be read. writable's queue is empty and
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// it is still writable.
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}, 'terminate() inside size() should work');
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promise_test(t => {
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let controller;
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const ts = new TransformStream({
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start(c) {
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controller = c;
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}
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}, undefined, {
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size() {
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controller.error(error1);
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return 1;
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},
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highWaterMark: Infinity
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});
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const writer = ts.writable.getWriter();
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return writer.write('a')
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.then(() => promise_rejects_exactly(t, error1, ts.readable.getReader().read(), 'read() should reject'));
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}, 'error() inside size() should work');
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promise_test(() => {
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let controller;
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const ts = new TransformStream({
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start(c) {
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controller = c;
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}
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}, undefined, {
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size() {
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assert_equals(controller.desiredSize, 1, 'desiredSize should be 1');
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return 1;
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},
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highWaterMark: 1
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});
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const writer = ts.writable.getWriter();
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return Promise.all([writer.write('a'), writer.close()])
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.then(() => readableStreamToArray(ts.readable))
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.then(array => assert_array_equals(array, ['a'], 'array should contain one chunk'));
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}, 'desiredSize inside size() should work');
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promise_test(t => {
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let cancelPromise;
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const ts = new TransformStream({}, undefined, {
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size() {
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cancelPromise = ts.readable.cancel(error1);
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return 1;
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},
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highWaterMark: Infinity
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});
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const writer = ts.writable.getWriter();
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return writer.write('a')
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.then(() => {
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promise_rejects_exactly(t, error1, writer.closed, 'writer.closed should reject');
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return cancelPromise;
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});
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}, 'readable cancel() inside size() should work');
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promise_test(() => {
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let controller;
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let pipeToPromise;
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const ws = recordingWritableStream();
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const ts = new TransformStream({
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start(c) {
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controller = c;
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}
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}, undefined, {
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size() {
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if (!pipeToPromise) {
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pipeToPromise = ts.readable.pipeTo(ws);
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}
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return 1;
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},
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highWaterMark: 1
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});
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// Allow promise returned by start() to resolve so that enqueue() will happen synchronously.
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return delay(0).then(() => {
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controller.enqueue('a');
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assert_not_equals(pipeToPromise, undefined);
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// Some pipeTo() implementations need an additional chunk enqueued in order for the first one to be processed. See
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// https://github.com/whatwg/streams/issues/794 for background.
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controller.enqueue('a');
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// Give pipeTo() a chance to process the queued chunks.
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return delay(0);
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}).then(() => {
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assert_array_equals(ws.events, ['write', 'a', 'write', 'a'], 'ws should contain two chunks');
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controller.terminate();
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return pipeToPromise;
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}).then(() => {
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assert_array_equals(ws.events, ['write', 'a', 'write', 'a', 'close'], 'target should have been closed');
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});
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}, 'pipeTo() inside size() should work');
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promise_test(() => {
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let controller;
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let readPromise;
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let calls = 0;
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let reader;
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const ts = new TransformStream({
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start(c) {
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controller = c;
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}
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}, undefined, {
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size() {
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// This is triggered by controller.enqueue(). The queue is empty and there are no pending reads. pull() is called
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// synchronously, allowing transform() to proceed asynchronously. This results in a second call to enqueue(),
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// which resolves this pending read() without calling size() again.
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readPromise = reader.read();
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++calls;
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return 1;
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},
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highWaterMark: 0
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});
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reader = ts.readable.getReader();
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const writer = ts.writable.getWriter();
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let writeResolved = false;
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const writePromise = writer.write('b').then(() => {
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writeResolved = true;
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});
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return flushAsyncEvents().then(() => {
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assert_false(writeResolved);
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controller.enqueue('a');
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assert_equals(calls, 1, 'size() should have been called once');
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return delay(0);
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}).then(() => {
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assert_true(writeResolved);
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assert_equals(calls, 1, 'size() should only be called once');
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return readPromise;
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}).then(({ value, done }) => {
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assert_false(done, 'done should be false');
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// See https://github.com/whatwg/streams/issues/794 for why this chunk is not 'a'.
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assert_equals(value, 'b', 'chunk should have been read');
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assert_equals(calls, 1, 'calls should still be 1');
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return writePromise;
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});
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}, 'read() inside of size() should work');
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promise_test(() => {
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let writer;
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let writePromise1;
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let calls = 0;
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const ts = new TransformStream({}, undefined, {
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size() {
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++calls;
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if (calls < 2) {
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writePromise1 = writer.write('a');
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}
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return 1;
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},
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highWaterMark: Infinity
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});
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writer = ts.writable.getWriter();
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// Give pull() a chance to be called.
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return delay(0).then(() => {
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// This write results in a synchronous call to transform(), enqueue(), and size().
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const writePromise2 = writer.write('b');
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assert_equals(calls, 1, 'size() should have been called once');
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return Promise.all([writePromise1, writePromise2, writer.close()]);
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}).then(() => {
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assert_equals(calls, 2, 'size() should have been called twice');
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return readableStreamToArray(ts.readable);
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}).then(array => {
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assert_array_equals(array, ['b', 'a'], 'both chunks should have been enqueued');
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assert_equals(calls, 2, 'calls should still be 2');
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});
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}, 'writer.write() inside size() should work');
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promise_test(() => {
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let controller;
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let writer;
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let writePromise;
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let calls = 0;
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const ts = new TransformStream({
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start(c) {
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controller = c;
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}
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}, undefined, {
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size() {
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++calls;
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if (calls < 2) {
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writePromise = writer.write('a');
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}
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return 1;
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},
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highWaterMark: Infinity
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});
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writer = ts.writable.getWriter();
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// Give pull() a chance to be called.
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return delay(0).then(() => {
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// This enqueue results in synchronous calls to size(), write(), transform() and enqueue().
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controller.enqueue('b');
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assert_equals(calls, 2, 'size() should have been called twice');
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return Promise.all([writePromise, writer.close()]);
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}).then(() => {
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return readableStreamToArray(ts.readable);
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}).then(array => {
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// Because one call to enqueue() is nested inside the other, they finish in the opposite order that they were
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// called, so the chunks end up reverse order.
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assert_array_equals(array, ['a', 'b'], 'both chunks should have been enqueued');
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assert_equals(calls, 2, 'calls should still be 2');
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});
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}, 'synchronous writer.write() inside size() should work');
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promise_test(() => {
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let writer;
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let closePromise;
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let controller;
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const ts = new TransformStream({
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start(c) {
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controller = c;
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}
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}, undefined, {
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size() {
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closePromise = writer.close();
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return 1;
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},
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highWaterMark: 1
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});
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writer = ts.writable.getWriter();
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const reader = ts.readable.getReader();
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// Wait for the promise returned by start() to be resolved so that the call to close() will result in a synchronous
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// call to TransformStreamDefaultSink.
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return delay(0).then(() => {
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controller.enqueue('a');
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return reader.read();
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}).then(({ value, done }) => {
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assert_false(done, 'done should be false');
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assert_equals(value, 'a', 'value should be correct');
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return reader.read();
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}).then(({ done }) => {
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assert_true(done, 'done should be true');
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return closePromise;
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});
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}, 'writer.close() inside size() should work');
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promise_test(t => {
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let abortPromise;
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let controller;
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const ts = new TransformStream({
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start(c) {
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controller = c;
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}
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}, undefined, {
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size() {
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abortPromise = ts.writable.abort(error1);
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return 1;
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},
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highWaterMark: 1
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});
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const reader = ts.readable.getReader();
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// Wait for the promise returned by start() to be resolved so that the call to abort() will result in a synchronous
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// call to TransformStreamDefaultSink.
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return delay(0).then(() => {
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controller.enqueue('a');
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return reader.read();
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}).then(({ value, done }) => {
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assert_false(done, 'done should be false');
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assert_equals(value, 'a', 'value should be correct');
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return Promise.all([promise_rejects_exactly(t, error1, reader.read(), 'read() should reject'), abortPromise]);
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});
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}, 'writer.abort() inside size() should work');
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