mirror of https://github.com/zulip/zulip.git
130 lines
4.3 KiB
JavaScript
130 lines
4.3 KiB
JavaScript
"use strict";
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const assert = require("node:assert/strict");
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const {make_user} = require("./lib/example_user");
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const {mock_esm, zrequire} = require("./lib/namespace");
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const {run_test, noop} = require("./lib/test");
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/*
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Our test from an earlier example verifies that the update events
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leads to a name change inside the people object, but it obviously
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kind of glosses over the other interactions.
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We can go a step further and verify the sequence of operations that
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happen during an event. This concept is called "stubbing", and you
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can find libraries to help do stubbing. Here we will just build our
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own lightweight stubbing system, which is almost trivially easy to
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do in a language like JavaScript.
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*/
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// First we tell the compiler to skip certain modules and just
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// replace them with {}.
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const direct_message_group_data = mock_esm("../src/direct_message_group_data");
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const message_lists = mock_esm("../src/message_lists");
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const message_notifications = mock_esm("../src/message_notifications");
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const message_util = mock_esm("../src/message_util");
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const pm_list = mock_esm("../src/pm_list");
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const stream_list = mock_esm("../src/stream_list");
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const unread_ops = mock_esm("../src/unread_ops");
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const unread_ui = mock_esm("../src/unread_ui");
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message_lists.current = {
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data: {
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filter: {
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can_apply_locally() {
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return true;
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},
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},
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},
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};
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message_lists.all_rendered_message_lists = () => [message_lists.current];
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message_lists.non_rendered_data = () => [];
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// And we will also test some real code, of course.
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const message_events = zrequire("message_events");
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const message_store = zrequire("message_store");
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const people = zrequire("people");
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const isaac = make_user({
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email: "isaac@example.com",
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user_id: 30,
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full_name: "Isaac Newton",
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});
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people.add_active_user(isaac);
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/*
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Next we create a test_helper that will allow us to redirect methods to an
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events array, and we can then later verify that the sequence of side effect
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is as predicted.
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(Note that for now we don't simulate return values nor do we inspect the
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arguments to these functions. We could easily extend our helper to do more.)
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The forthcoming example is a pretty extreme example, where we are calling a
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pretty high level method that dispatches a lot of its work out to other
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objects.
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*/
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function test_helper({override}) {
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const events = [];
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return {
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redirect(module, func_name) {
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override(module, func_name, () => {
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events.push([module, func_name]);
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});
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},
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events,
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};
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}
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run_test("insert_message", ({override}) => {
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message_store.clear_for_testing();
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override(pm_list, "update_private_messages", noop);
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const helper = test_helper({override});
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const new_message = {
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sender_id: isaac.user_id,
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id: 1001,
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content: "example content",
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topic: "Foo",
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type: "stream",
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};
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assert.equal(message_store.get(new_message.id), undefined);
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helper.redirect(direct_message_group_data, "process_loaded_messages");
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helper.redirect(message_notifications, "received_messages");
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helper.redirect(message_util, "add_new_messages");
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helper.redirect(stream_list, "update_streams_sidebar");
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helper.redirect(unread_ops, "process_visible");
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helper.redirect(unread_ui, "update_unread_counts");
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message_events.insert_new_messages([new_message]);
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// Even though we have stubbed a *lot* of code, our
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// tests can still verify the main "narrative" of how
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// the code invokes various objects when a new message
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// comes in:
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assert.deepEqual(helper.events, [
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[direct_message_group_data, "process_loaded_messages"],
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[message_util, "add_new_messages"],
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[unread_ui, "update_unread_counts"],
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[unread_ops, "process_visible"],
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[message_notifications, "received_messages"],
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[stream_list, "update_streams_sidebar"],
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]);
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// Despite all of our stubbing/mocking, the call to
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// insert_new_messages will have created a very important
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// side effect that we can verify:
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const inserted_message = message_store.get(new_message.id);
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assert.equal(inserted_message.id, new_message.id);
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assert.equal(inserted_message.content, "example content");
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});
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