Address race conditions when flushing logs
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378126e746
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@ -99,6 +99,11 @@ class IndexedDBLogStore {
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this.id = "instance-" + Math.random() + Date.now();
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this.index = 0;
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this.db = null;
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// Promise is not null when a flush is IN PROGRESS
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this.flushPromise = null;
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// Promise is not null when flush() is called when one is already in
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// progress.
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this.flushAgainPromise = null;
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}
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/**
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@ -148,35 +153,80 @@ class IndexedDBLogStore {
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}
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/**
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* Flush logs to disk.
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*
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* There are guards to protect against race conditions in order to ensure
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* that all previous flushes have completed before the most recent flush.
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* Consider without guards:
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* - A calls flush() periodically.
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* - B calls flush() and wants to send logs immediately afterwards.
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* - If B doesn't wait for A's flush to complete, B will be missing the
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* contents of A's flush.
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* To protect against this, we set 'flushPromise' when a flush is ongoing.
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* Subsequent calls to flush() during this period return a new promise
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* 'flushAgainPromise' which is chained off the current 'flushPromise'.
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* Subsequent calls to flush() when the first flush hasn't completed will
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* return the same 'flushAgainPromise' as we can guarantee that we WILL
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* do a brand new flush at some point in the future. Once the first flush
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* has completed, 'flushAgainPromise' becomes 'flushPromise' and can be
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* chained again.
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*
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* This guarantees that we will always eventually do a flush when flush() is
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* called.
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*
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* @return {Promise} Resolved when the logs have been flushed.
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*/
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flush() {
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if (this.flushPromise) { // a flush is ongoing
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if (this.flushAgainPromise) { // a flush is queued up, return that.
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return this.flushAgainPromise;
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}
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// queue up a new flush
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this.flushAgainPromise = this.flushPromise.then(() => {
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// the current flush has completed, so shuffle the promises
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// around:
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// flushAgainPromise => flushPromise and null flushAgainPromise.
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// flushPromise has already nulled itself.
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this.flushAgainPromise = null;
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return this.flush();
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});
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return this.flushAgainPromise;
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}
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this.flushPromise = new Promise((resolve, reject) => {
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if (!this.db) {
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// not connected yet or user rejected access for us to r/w to the db
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return Promise.reject(new Error("No connected database"));
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// not connected yet or user rejected access for us to r/w to
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// the db.
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this.flushPromise = null;
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reject(new Error("No connected database"));
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return;
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}
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const lines = this.logger.flush();
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if (lines.length === 0) {
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return Promise.resolve();
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this.flushPromise = null;
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resolve();
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return;
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}
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return new Promise((resolve, reject) => {
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let txn = this.db.transaction(["logs", "logslastmod"], "readwrite");
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let objStore = txn.objectStore("logs");
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objStore.add(this._generateLogEntry(lines));
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let lastModStore = txn.objectStore("logslastmod");
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lastModStore.put(this._generateLastModifiedTime());
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txn.oncomplete = (event) => {
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this.flushPromise = null;
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resolve();
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};
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txn.onerror = (event) => {
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console.error(
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"Failed to flush logs : ", event
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);
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this.flushPromise = null;
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reject(
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new Error("Failed to write logs: " + event.target.errorCode)
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);
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}
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});
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return this.flushPromise;
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}
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/**
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@ -368,17 +418,6 @@ module.exports = {
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return initPromise;
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},
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/**
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* Force-flush the logs to storage.
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* @return {Promise} Resolved when the logs have been flushed.
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*/
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flush: async function() {
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if (!store) {
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return;
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}
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await store.flush();
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},
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/**
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* Clean up old logs.
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* @return Promise Resolves if cleaned logs.
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@ -422,17 +461,20 @@ module.exports = {
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// If in incognito mode, store is null, but we still want bug report
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// sending to work going off the in-memory console logs.
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console.log("Sending bug report.");
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let logs = [];
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if (store) {
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// flush most recent logs
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await store.flush();
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logs = await store.consume();
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}
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// and add the most recent console logs which won't be in the store yet.
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const consoleLogs = logger.flush(); // remove logs from console
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const currentId = store ? store.id : "-";
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logs.unshift({
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lines: consoleLogs,
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id: currentId,
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else {
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logs.push({
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lines: logger.flush(),
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id: "-",
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});
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}
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await new Promise((resolve, reject) => {
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request({
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method: "POST",
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