mirror of https://github.com/zulip/zulip.git
145 lines
4.3 KiB
JavaScript
145 lines
4.3 KiB
JavaScript
"use strict";
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const {strict: assert} = require("assert");
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const {mock_esm, zrequire} = require("../zjsunit/namespace");
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const {run_test} = require("../zjsunit/test");
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/*
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Let's step back and review what we've done so far.
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We've used fairly straightforward testing techniques
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to explore the following modules:
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filter
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message_store
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narrow_state
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people
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stream_data
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util
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We haven't gone deep on any of these objects, but if
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you are interested, all of these objects have test
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suites that have 100% line coverage on the modules
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that implement those objects. For example, you can look
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at people.js in this directory for more tests on the
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people object.
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We can quickly review some testing concepts:
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zrequire - bring in real code
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set_global - create stubs
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assert.equal - verify results
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------
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Let's talk about our next steps.
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An app is pretty useless without an actual data source.
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One of the primary ways that a Zulip client gets data
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is through events. (We also get data at page load, and
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we can also ask the server for data, but that's not in
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the scope of this conversation yet.)
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Chat systems are dynamic. If an admin adds a user, or
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if a user sends a messages, the server immediately sends
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events to all clients so that they can reflect appropriate
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changes in their UI. We're not going to discuss the entire
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"full stack" mechanism here. Instead, we'll focus on
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the client code, starting at the boundary where we
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process events.
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Let's just get started...
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*/
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// We are going to use mock versions of some of our libraries.
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const activity = mock_esm("../../static/js/activity");
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const message_live_update = mock_esm("../../static/js/message_live_update");
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const pm_list = mock_esm("../../static/js/pm_list");
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const settings_users = mock_esm("../../static/js/settings_users");
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// Use real versions of these modules.
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const people = zrequire("people");
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const server_events_dispatch = zrequire("server_events_dispatch");
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const bob = {
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email: "bob@example.com",
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user_id: 33,
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full_name: "Bob Roberts",
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};
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run_test("add users with event", () => {
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people.init();
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const event = {
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type: "realm_user",
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op: "add",
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person: bob,
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};
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assert(!people.is_known_user_id(bob.user_id));
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// Let's simulate dispatching our event!
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server_events_dispatch.dispatch_normal_event(event);
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// And it works!
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assert(people.is_known_user_id(bob.user_id));
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});
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/*
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It's actually a little surprising that adding a user does
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not have side effects beyond the people object. I guess
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we don't immediately update the buddy list, but that's
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because the buddy list gets updated on the next server
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fetch.
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Let's try an update next. To make this work, we will want
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to override some of our stubs.
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This is where we see a little extra benefit from the
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run_test wrapper. It passes us in an object that we
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can use to override data, and that works within the
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scope of the function.
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*/
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run_test("update user with event", (override) => {
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people.init();
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people.add_active_user(bob);
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const new_bob = {
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email: "bob@example.com",
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user_id: bob.user_id,
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full_name: "The Artist Formerly Known as Bob",
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};
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const event = {
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type: "realm_user",
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op: "update",
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person: new_bob,
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};
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// We have to stub a few things. We don't want to test
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// the details of these functions, but we do want to
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// verify that they run. Fortunately, the run_test()
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// wrapper will tell us if we override a method that
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// doesn't get called!
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override(activity, "redraw", () => {});
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override(message_live_update, "update_user_full_name", () => {});
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override(pm_list, "update_private_messages", () => {});
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override(settings_users, "update_user_data", () => {});
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// Dispatch the realm_user/update event, which will update
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// data structures and have other side effects that are
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// stubbed out above.
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server_events_dispatch.dispatch_normal_event(event);
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const user = people.get_by_user_id(bob.user_id);
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// Verify that the code actually did its main job:
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assert.equal(user.full_name, "The Artist Formerly Known as Bob");
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});
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