Public Access
Three new client projects, and the wire-contract fix they needed. DodoSSH.Client.Domain holds the decrypted item model and the three-way merge, with no I/O at all — so the suite that decides whether a credential can be lost runs in milliseconds with nothing to mock. Scalars defer to the server on a genuine clash so every replica resolves the same triple identically and two clients cannot ping-pong; directives merge per name so two people each adding one both keep theirs; the jump chain merges as a whole value because its order is the route. Whatever loses is returned rather than dropped. DodoSSH.Client.Storage is EF Core on SQLite, no SQLCipher: the rows are already ciphertext, so an encrypted file would protect protected bytes at the cost of a native dependency. It keeps the server's state and the outbox in separate tables, which is what preserves the common ancestor a merge needs. One pending operation per item, enforced by a unique index. DodoSSH.Client.Sync is the pull/apply/push loop. Pulling never decrypts — a change with no local work pending is plumbed as ciphertext — so a first sync of thousands of items does not run twice as many AEAD operations for nothing. Contracts: EncryptedPayload gains WrappedDataKey and DataKeyId. The specification has required a per-item data key since crypto.md §3, the columns have existed since the first migration and DshAad.ItemPayload binds the id, but this record had nowhere to put either — so a spec-compliant item could not be transmitted at all. Found by writing the client that has to produce one. Also closes a hole in AadResourceType, which had no value for the HostTag and HostCredential that SyncEntityType has always listed. Four bugs the tests found, not review: - SQLite refuses to order or compare its own DateTimeOffset mapping, and throws at execution rather than model build. Collecting tombstones and listing conflicts are both that shape, so this was a crash waiting for the first user with a deleted host. Timestamps are integers now, by convention so a later field cannot be the one left unconverted. - SQLitePCLRaw 2.1.11, which EF resolves, is covered by GHSA-2m69-gcr7-jv3q. Pinned forward as a family. - Resurrecting content from a remote deletion cleared the original before queueing the copy. Two transactions, so a crash between them lost the work; reversed, and the rescued id is derived from the tombstone so a replay coalesces instead of duplicating. - Several equality assertions went through Shouldly's ShouldBe, which compares IEnumerable element-wise and so tested nothing about the Equals these types exist to provide. Corrected; the falsification that caught it went from 2 failures to 6. The push response's cursor is deliberately ignored. It sits after this client's own writes, so adopting it skips anything another client committed at a lower sequence in the window between a pull and a push — permanently. Re-reading one's own writes is idempotent and costs a page. The Contracts doc that invited the shortcut now says so. 593 tests, up from 448. The delete-versus-edit rules, the ancestor retention, the fresh operation id on coalesce and the cursor safeguard were each verified by breaking them and watching the right test fail.
162 lines
6.3 KiB
C#
162 lines
6.3 KiB
C#
using static DodoSSH.Client.Domain.Tests.HostFactory;
|
|
|
|
namespace DodoSSH.Client.Domain.Tests;
|
|
|
|
/// <summary>
|
|
/// Equality of the collection types, and of the host that holds them.
|
|
/// </summary>
|
|
/// <remarks>
|
|
/// This suite guards a failure that would be invisible rather than loud. If any of these compared by
|
|
/// reference, the merge would report every host as changed on every sync pass, two identical edits
|
|
/// would register as a conflict, and the engine would push spurious updates forever. Nothing would
|
|
/// throw and no test elsewhere would obviously fail — which is exactly why these are asserted here.
|
|
/// </remarks>
|
|
public sealed class ValueSemanticsTests
|
|
{
|
|
[Fact]
|
|
public void TwoHostsWithEqualContents_AreEqual()
|
|
{
|
|
var one = Host(jumps: [Bastion, Relay], options: [("Compression", "yes")]);
|
|
var other = Host(jumps: [Bastion, Relay], options: [("Compression", "yes")]);
|
|
|
|
one.ShouldBe(other);
|
|
one.GetHashCode().ShouldBe(other.GetHashCode());
|
|
}
|
|
|
|
[Fact]
|
|
public void AHostDifferingOnlyInACollection_IsNotEqual()
|
|
{
|
|
Host(jumps: [Bastion]).ShouldNotBe(Host(jumps: [Relay]));
|
|
Host(options: [("Compression", "yes")]).ShouldNotBe(Host(options: [("Compression", "no")]));
|
|
}
|
|
|
|
// Note on the assertion style below: these call Equals and the operators directly rather than
|
|
// going through ShouldBe. Both of these types implement IReadOnlyList, and Shouldly compares
|
|
// enumerables element by element — so ShouldBe would pass whatever Equals did, which is the one
|
|
// thing this suite exists to check.
|
|
|
|
[Fact]
|
|
public void AJumpChain_ComparesByContentsAndOrder()
|
|
{
|
|
JumpChain.Create([Bastion, Relay]).Equals(JumpChain.Create([Bastion, Relay])).ShouldBeTrue();
|
|
(JumpChain.Create([Bastion, Relay]) == JumpChain.Create([Bastion, Relay])).ShouldBeTrue();
|
|
|
|
JumpChain.Create([Bastion, Relay]).Equals(JumpChain.Create([Relay, Bastion])).ShouldBeFalse();
|
|
JumpChain.Create([Bastion]).Equals(JumpChain.Create([Bastion, Relay])).ShouldBeFalse();
|
|
|
|
JumpChain.Create([]).Equals(JumpChain.Empty).ShouldBeTrue();
|
|
JumpChain.Create([Bastion]).Equals(null).ShouldBeFalse();
|
|
}
|
|
|
|
[Fact]
|
|
public void AJumpChain_HashesByContents()
|
|
{
|
|
JumpChain.Create([Bastion, Relay]).GetHashCode()
|
|
.ShouldBe(JumpChain.Create([Bastion, Relay]).GetHashCode());
|
|
}
|
|
|
|
[Fact]
|
|
public void AJumpChain_ComparesEqualAcrossTheSpanAndSequenceFactories()
|
|
{
|
|
Guid[] hops = [Bastion, Relay];
|
|
|
|
JumpChain.Create(hops.AsSpan()).Equals(JumpChain.Create(hops.AsEnumerable())).ShouldBeTrue();
|
|
}
|
|
|
|
[Fact]
|
|
public void Directives_CompareIgnoringNameCaseAndInputOrder()
|
|
{
|
|
// Both halves matter. Case, because a merge picks whichever spelling it saw first and two
|
|
// clients must still agree. Order, because the collection canonicalises and a user typing
|
|
// the same two directives in the other order has not changed anything.
|
|
var one = HostOptions.Create([new HostOption("Compression", "yes"), new HostOption("Port", "22")]);
|
|
var other = HostOptions.Create([new HostOption("port", "22"), new HostOption("compression", "yes")]);
|
|
|
|
one.Equals(other).ShouldBeTrue();
|
|
(one == other).ShouldBeTrue();
|
|
one.GetHashCode().ShouldBe(other.GetHashCode());
|
|
}
|
|
|
|
[Fact]
|
|
public void Directives_CompareValuesCaseSensitively()
|
|
{
|
|
// Keywords are case-insensitive in SSH; values are not. "yes" and "YES" happen to mean the
|
|
// same to sshd, but this layer must not decide that for every directive that exists.
|
|
HostOptions.Create([new HostOption("Compression", "yes")])
|
|
.Equals(HostOptions.Create([new HostOption("Compression", "YES")]))
|
|
.ShouldBeFalse();
|
|
}
|
|
|
|
[Fact]
|
|
public void Directives_CompareUnequalWhenOneSideHasMore()
|
|
{
|
|
var one = HostOptions.Create([new HostOption("Compression", "yes")]);
|
|
var other = HostOptions.Create(
|
|
[new HostOption("Compression", "yes"), new HostOption("Port", "22")]);
|
|
|
|
one.Equals(other).ShouldBeFalse();
|
|
HostOptions.Empty.Equals(one).ShouldBeFalse();
|
|
one.Equals(null).ShouldBeFalse();
|
|
}
|
|
|
|
[Fact]
|
|
public void Directives_AreHeldInNameOrder()
|
|
{
|
|
var options = HostOptions.Create(
|
|
[
|
|
new HostOption("ServerAliveInterval", "30"),
|
|
new HostOption("Compression", "yes"),
|
|
]);
|
|
|
|
options[0].Name.ShouldBe("Compression");
|
|
options[1].Name.ShouldBe("ServerAliveInterval");
|
|
}
|
|
|
|
[Fact]
|
|
public void ARepeatedDirectiveName_IsRefused()
|
|
{
|
|
// A repeated keyword has no merge key, so M1 cannot represent it. Refusing is the honest
|
|
// answer; silently keeping one of the two would lose data without saying so.
|
|
var duplicate = new[]
|
|
{
|
|
new HostOption("Compression", "yes"),
|
|
new HostOption("compression", "no"),
|
|
};
|
|
|
|
HostOptions.TryCreate(duplicate, out _, out var error).ShouldBeFalse();
|
|
error.ShouldNotBeNull();
|
|
error.Contains("more than once", StringComparison.Ordinal).ShouldBeTrue();
|
|
|
|
Should.Throw<ArgumentException>(() => HostOptions.Create(duplicate));
|
|
}
|
|
|
|
[Fact]
|
|
public void ABlankDirectiveName_IsRefused()
|
|
{
|
|
HostOptions.TryCreate([new HostOption(" ", "x")], out _, out _).ShouldBeFalse();
|
|
}
|
|
|
|
[Fact]
|
|
public void AHostBuiltWithWith_KeepsCollectionEquality()
|
|
{
|
|
// `with` copies the collection references, so this would pass even under reference equality.
|
|
// It is here because the merge builds its result with an object initialiser rather than
|
|
// `with`, and both paths have to agree.
|
|
var host = Host(options: [("Compression", "yes")]);
|
|
var copy = host with { Notes = "changed" };
|
|
|
|
copy.Options.Equals(host.Options).ShouldBeTrue();
|
|
(copy with { Notes = host.Notes }).ShouldBe(host);
|
|
}
|
|
|
|
[Fact]
|
|
public void TryValidate_RejectsWhatCannotBeStored()
|
|
{
|
|
Host(label: "").TryValidate(out _).ShouldBeFalse();
|
|
Host(hostname: " ").TryValidate(out _).ShouldBeFalse();
|
|
Host(port: 65536).TryValidate(out _).ShouldBeFalse();
|
|
Host(jumps: [Guid.Empty]).TryValidate(out _).ShouldBeFalse();
|
|
Host().TryValidate(out _).ShouldBeTrue();
|
|
}
|
|
}
|