test: add tests for NetworkButton component

This commit is contained in:
David Laganiere 2023-01-15 10:40:56 -05:00
parent 8931a780aa
commit 04c3f267a7
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4 changed files with 222 additions and 2 deletions

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@ -0,0 +1,39 @@
import { render, screen } from "@testing-library/react";
import NetworkButton from "components/HomeLoggedIn/components/NetworkButton";
import { testNetwork } from "../../data/network";
import { Router } from "react-router-dom";
import { createMemoryHistory } from "history";
describe("NetworkHeader", () => {
it("renders NetworkButton unchanged", () => {
const history = createMemoryHistory();
const { container } = render(
<Router history={history}>
<NetworkButton network={testNetwork} />
</Router>
);
expect(container).toMatchSnapshot();
});
test("renders NetworkHeader with a test network", () => {
const history = createMemoryHistory();
render(
<Router history={history}>
<NetworkButton network={testNetwork} />
</Router>
);
const networkButton = screen.getByRole("button", {
name: "0d303702cd0f1fc6 new-net-11166",
});
const networkLink = screen.getByRole("link", {
name: "0d303702cd0f1fc6 new-net-11166",
});
expect(networkButton).toBeInTheDocument();
expect(networkLink).toBeInTheDocument();
});
});

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@ -0,0 +1,30 @@
// Jest Snapshot v1, https://goo.gl/fbAQLP
exports[`NetworkHeader renders NetworkButton unchanged 1`] = `
<div>
<div
class="netBtn"
role="button"
>
<a
class="makeStyles-link-1"
href="/network/0d303702cd0f1fc6"
>
<ul
class="MuiList-root makeStyles-flexContainer-2 MuiList-padding"
>
<li
class="MuiListItem-root makeStyles-nwid-4 MuiListItem-gutters"
>
0d303702cd0f1fc6
</li>
<li
class="MuiListItem-root makeStyles-name-3 MuiListItem-gutters"
>
new-net-11166
</li>
</ul>
</a>
</div>
</div>
`;

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@ -0,0 +1,149 @@
import * as IP from "utils/IP";
describe("IP", () => {
describe("getCIDRAddress()", () => {
test("throws and error if start parameter is not a valid IPv4", () => {
expect(() => {
IP.getCIDRAddress(1, "1.1.1.1");
}).toThrow("ipaddr: the address has neither IPv6 nor IPv4 format");
});
test("throws and error if end parameter is not a valid IPv4", () => {
expect(() => {
IP.getCIDRAddress("1.1.1.1", 1);
}).toThrow("ipaddr: the address has neither IPv6 nor IPv4 format");
});
test("returns /32 if both IPv4 addresses are the same", () => {
expect(IP.getCIDRAddress("1.1.1.1", "1.1.1.1")).toBe("1.1.1.0/32");
});
test("returns different values depending on how many bits are different between start and end IPv4 addresses", () => {
expect(IP.getCIDRAddress("1.1.1.1", "1.1.1.0")).toBe("1.1.1.0/31");
expect(IP.getCIDRAddress("1.1.1.1", "1.1.1.2")).toBe("1.1.1.0/30");
expect(IP.getCIDRAddress("1.1.1.1", "1.1.1.4")).toBe("1.1.1.0/29");
expect(IP.getCIDRAddress("1.1.1.1", "1.1.1.8")).toBe("1.1.1.0/28");
expect(IP.getCIDRAddress("1.1.1.1", "1.1.2.1")).toBe("1.1.1.0/22");
});
test("returns '<start with last character changed to 0>/32' no matter what valid IPv6 addresses are provided for start and end", () => {
expect(IP.getCIDRAddress("2001:db8:1234::1", "2001:db8:1234::1")).toBe(
"2001:db8:1234::0/32"
);
expect(IP.getCIDRAddress("2001:db8:1234::32", "2001:db8:1234::1")).toBe(
"2001:db8:1234::30/32"
);
expect(IP.getCIDRAddress("2001:db8:1234::3000", "2001:db8:1234::1")).toBe(
"2001:db8:1234::3000/32"
);
expect(IP.getCIDRAddress("2002:db8:1234::1", "2001:db8:1234::1")).toBe(
"2002:db8:1234::0/32"
);
});
});
describe("getCIDR()", () => {
test("throws and error if start parameter is not a valid IPv4", () => {
expect(() => {
IP.getCIDR(1, "1.1.1.1");
}).toThrow("ipaddr: the address has neither IPv6 nor IPv4 format");
});
test("throws and error if end parameter is not a valid IPv4", () => {
expect(() => {
IP.getCIDR("1.1.1.1", 1);
}).toThrow("ipaddr: the address has neither IPv6 nor IPv4 format");
});
test("returns 32 if both IPv4 addresses are the same", () => {
expect(IP.getCIDR("1.1.1.1", "1.1.1.1")).toBe(32);
});
test("returns different values depending on how many bits are different between start and end IPv4 addresses", () => {
expect(IP.getCIDR("1.1.1.1", "1.1.1.0")).toBe(31);
expect(IP.getCIDR("1.1.1.1", "1.1.1.2")).toBe(30);
expect(IP.getCIDR("1.1.1.1", "1.1.1.4")).toBe(29);
expect(IP.getCIDR("1.1.1.1", "1.1.1.8")).toBe(28);
});
test("returns 32 no matter what valid IPv6 addresses are provided for start and end", () => {
expect(IP.getCIDR("2001:db8:1234::1", "2001:db8:1234::1")).toBe(32);
expect(IP.getCIDR("2001:db8:1234::1", "2001:db8:1234::0")).toBe(32);
expect(IP.getCIDR("2001:db8:1234::1", "2001:db8:1234::2")).toBe(32);
expect(IP.getCIDR("2001:db8:1234::1", "2001:db8:1235::1")).toBe(32);
expect(IP.getCIDR("2002:db8:1234::1", "2001:db8:1234::1")).toBe(32);
});
});
describe("toInt()", () => {
test("returns an IP in integer format when given a valid IPv4", () => {
expect(IP.toInt("1.1.1.1")).toBe(16843009);
});
test("throw an error if a string that is not an IP is provided as input", () => {
expect(() => {
IP.toInt("some string that is not an IPv4 or IPv6");
}).toThrow("ipaddr: the address has neither IPv6 nor IPv4 format");
});
test("throw an error if addr is undefined", () => {
expect(IP.toInt).toThrow(
"ipaddr: the address has neither IPv6 nor IPv4 format"
);
});
test("returns 0 when given a valid IPv6", () => {
expect(IP.toInt("2001:db8:1234::1")).toBe(0);
});
});
describe("validateIP()", () => {
test("returns true if the provided string is a valid IPv4 address", () => {
expect(IP.validateIP("1.1.1.1")).toBe(true);
});
test("returns true if the provided string is a valid IPv6 address", () => {
expect(IP.validateIP("2001:db8:1234::1")).toBe(true);
});
test("returns false if the provided string is not a valid IPv4 or IPv6 address", () => {
expect(
IP.validateIP("some string that is not an IPv4 or IPv6 address")
).toBe(false);
});
});
describe("normilizeIP()", () => {
test("returns an IPv4 address with no leading 0's for each octet", () => {
expect(IP.normilizeIP("01.01.01.01")).toBe("1.1.1.1");
});
test("returns an IPv6 address with explicit 0's octets (if any) and no leading 0's (if any)", () => {
expect(IP.normilizeIP("2001:0db8:1234::0001")).toBe(
"2001:db8:1234:0:0:0:0:1"
);
});
test("throw an error if a string that is not an IP is provided as input", () => {
expect(() => {
IP.normilizeIP("some string that is not an IPv4 or IPv6");
}).toThrow("ipaddr: the address has neither IPv6 nor IPv4 format");
});
});
describe("validateCIDR()", () => {
test("returns true if provided a valid IPv4 CIDR address", () => {
expect(IP.validateCIDR("1.1.1.0/24")).toBe(true);
});
test("returns true if provided a valid IPv6 CIDR address", () => {
expect(IP.validateCIDR("2001:0db8:1234::/64")).toBe(true);
});
test("throw an error if a string that is not an IPv4 or IPv6 CIDR is provided as input", () => {
expect(
IP.validateCIDR("some string that is not an IPv4 or IPv6 CIDR address")
).toBe(false);
});
});
});

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@ -5,7 +5,7 @@ export function getCIDRAddress(start, end) {
return start.replace(/.$/, 0) + "/" + cidr;
}
function getCIDR(start, end) {
export function getCIDR(start, end) {
const startInt = toInt(start);
const endInt = toInt(end);
const binaryXOR = startInt ^ endInt;
@ -13,13 +13,15 @@ function getCIDR(start, end) {
return 32;
} else {
const binaryStr = binaryXOR.toString(2);
// TODO: Both types of bits are counted here so using the
// length of binaryStr would simplify the code.
const zeroCount = binaryStr.split("0").length - 1;
const oneCount = binaryStr.split("1").length - 1;
return 32 - (zeroCount + oneCount);
}
}
function toInt(addr) {
export function toInt(addr) {
const ip = ipaddr.parse(addr);
const arr = ip.octets;
let ipInt = 0;